summaryrefslogtreecommitdiffstats
path: root/drivers
diff options
context:
space:
mode:
Diffstat (limited to 'drivers')
-rw-r--r--drivers/base/hypervisor.c3
-rw-r--r--drivers/block/cryptoloop.c160
-rw-r--r--drivers/char/Kconfig22
-rw-r--r--drivers/char/Makefile2
-rw-r--r--drivers/char/agp/uninorth-agp.c4
-rw-r--r--drivers/char/briq_panel.c268
-rw-r--r--drivers/char/hvc_console.c18
-rw-r--r--drivers/char/hvc_console.h2
-rw-r--r--drivers/char/hvc_iseries.c594
-rw-r--r--drivers/char/hvc_rtas.c2
-rw-r--r--drivers/char/hvc_vio.c7
-rw-r--r--drivers/char/hvsi.c7
-rw-r--r--drivers/char/tpm/tpm_atmel.h4
-rw-r--r--drivers/char/viocons.c31
-rw-r--r--drivers/char/viotape.c6
-rw-r--r--drivers/crypto/Kconfig45
-rw-r--r--drivers/crypto/Makefile8
-rw-r--r--drivers/crypto/padlock-aes.c258
-rw-r--r--drivers/crypto/padlock-generic.c63
-rw-r--r--drivers/crypto/padlock-sha.c318
-rw-r--r--drivers/crypto/padlock.c58
-rw-r--r--drivers/crypto/padlock.h17
-rw-r--r--drivers/i2c/busses/i2c-powermac.c3
-rw-r--r--drivers/ide/ppc/pmac.c8
-rw-r--r--drivers/macintosh/macio_asic.c10
-rw-r--r--drivers/macintosh/macio_sysfs.c8
-rw-r--r--drivers/macintosh/smu.c19
-rw-r--r--drivers/macintosh/therm_adt746x.c8
-rw-r--r--drivers/macintosh/therm_pm72.c14
-rw-r--r--drivers/macintosh/therm_windtunnel.c4
-rw-r--r--drivers/macintosh/via-cuda.c4
-rw-r--r--drivers/macintosh/via-pmu-led.c2
-rw-r--r--drivers/macintosh/via-pmu.c10
-rw-r--r--drivers/macintosh/windfarm_pm81.c4
-rw-r--r--drivers/macintosh/windfarm_pm91.c2
-rw-r--r--drivers/macintosh/windfarm_smu_controls.c13
-rw-r--r--drivers/macintosh/windfarm_smu_sat.c8
-rw-r--r--drivers/macintosh/windfarm_smu_sensors.c12
-rw-r--r--drivers/md/dm-crypt.c146
-rw-r--r--drivers/mtd/Kconfig8
-rw-r--r--drivers/mtd/Makefile1
-rw-r--r--drivers/mtd/chips/cfi_cmdset_0002.c1
-rw-r--r--drivers/mtd/devices/pmc551.c1154
-rw-r--r--drivers/mtd/maps/Kconfig8
-rw-r--r--drivers/mtd/maps/Makefile1
-rw-r--r--drivers/mtd/maps/amd76xrom.c5
-rw-r--r--drivers/mtd/maps/arctic-mtd.c14
-rw-r--r--drivers/mtd/maps/beech-mtd.c14
-rw-r--r--drivers/mtd/maps/cstm_mips_ixx.c18
-rw-r--r--drivers/mtd/maps/ebony.c4
-rw-r--r--drivers/mtd/maps/fortunet.c3
-rw-r--r--drivers/mtd/maps/ichxrom.c3
-rw-r--r--drivers/mtd/maps/iq80310.c118
-rw-r--r--drivers/mtd/maps/ixp4xx.c2
-rw-r--r--drivers/mtd/maps/l440gx.c12
-rw-r--r--drivers/mtd/maps/lasat.c2
-rw-r--r--drivers/mtd/maps/nettel.c34
-rw-r--r--drivers/mtd/maps/ocotea.c4
-rw-r--r--drivers/mtd/maps/pcmciamtd.c4
-rw-r--r--drivers/mtd/maps/physmap.c33
-rw-r--r--drivers/mtd/maps/redwood.c11
-rw-r--r--drivers/mtd/maps/sbc8240.c11
-rw-r--r--drivers/mtd/maps/scx200_docflash.c9
-rw-r--r--drivers/mtd/maps/walnut.c4
-rw-r--r--drivers/mtd/mtdcore.c10
-rw-r--r--drivers/mtd/nand/au1550nd.c11
-rw-r--r--drivers/mtd/nand/edb7312.c3
-rw-r--r--drivers/mtd/nand/ndfc.c2
-rw-r--r--drivers/mtd/nand/ppchameleonevb.c7
-rw-r--r--drivers/mtd/ssfdc.c468
-rw-r--r--drivers/net/bmac.c13
-rw-r--r--drivers/net/ibmveth.c3
-rw-r--r--drivers/net/ibmveth.h27
-rw-r--r--drivers/net/mace.c2
-rw-r--r--drivers/net/ppp_mppe.c68
-rw-r--r--drivers/net/spider_net.c12
-rw-r--r--drivers/net/sungem.c2
-rw-r--r--drivers/net/wireless/airo.c22
-rw-r--r--drivers/pci/hotplug/rpaphp_core.c32
-rw-r--r--drivers/s390/Kconfig30
-rw-r--r--drivers/s390/block/dasd.c8
-rw-r--r--drivers/s390/block/dasd_devmap.c82
-rw-r--r--drivers/s390/block/dasd_eer.c2
-rw-r--r--drivers/s390/block/dasd_int.h1
-rw-r--r--drivers/s390/block/xpram.c2
-rw-r--r--drivers/s390/char/Makefile1
-rw-r--r--drivers/s390/char/monwriter.c292
-rw-r--r--drivers/s390/char/vmcp.c2
-rw-r--r--drivers/s390/char/vmcp.h2
-rw-r--r--drivers/s390/cio/chsc.c5
-rw-r--r--drivers/s390/cio/cio.c95
-rw-r--r--drivers/s390/cio/css.c203
-rw-r--r--drivers/s390/cio/device.c109
-rw-r--r--drivers/s390/cio/device_fsm.c40
-rw-r--r--drivers/s390/cio/device_ops.c17
-rw-r--r--drivers/s390/cio/device_pgid.c81
-rw-r--r--drivers/s390/cio/qdio.c4
-rw-r--r--drivers/s390/cio/qdio.h16
-rw-r--r--drivers/s390/crypto/Makefile15
-rw-r--r--drivers/s390/crypto/ap_bus.c1221
-rw-r--r--drivers/s390/crypto/ap_bus.h158
-rw-r--r--drivers/s390/crypto/z90common.h166
-rw-r--r--drivers/s390/crypto/z90crypt.h71
-rw-r--r--drivers/s390/crypto/z90hardware.c2531
-rw-r--r--drivers/s390/crypto/z90main.c3379
-rw-r--r--drivers/s390/crypto/zcrypt_api.c1091
-rw-r--r--drivers/s390/crypto/zcrypt_api.h141
-rw-r--r--drivers/s390/crypto/zcrypt_cca_key.h350
-rw-r--r--drivers/s390/crypto/zcrypt_cex2a.c435
-rw-r--r--drivers/s390/crypto/zcrypt_cex2a.h126
-rw-r--r--drivers/s390/crypto/zcrypt_error.h133
-rw-r--r--drivers/s390/crypto/zcrypt_mono.c100
-rw-r--r--drivers/s390/crypto/zcrypt_pcica.c418
-rw-r--r--drivers/s390/crypto/zcrypt_pcica.h117
-rw-r--r--drivers/s390/crypto/zcrypt_pcicc.c630
-rw-r--r--drivers/s390/crypto/zcrypt_pcicc.h176
-rw-r--r--drivers/s390/crypto/zcrypt_pcixcc.c951
-rw-r--r--drivers/s390/crypto/zcrypt_pcixcc.h79
-rw-r--r--drivers/s390/s390mach.c17
-rw-r--r--drivers/s390/scsi/zfcp_def.h8
-rw-r--r--drivers/s390/sysinfo.c455
-rw-r--r--drivers/scsi/ibmvscsi/rpa_vscsi.c11
-rw-r--r--drivers/scsi/iscsi_tcp.c134
-rw-r--r--drivers/scsi/iscsi_tcp.h9
-rw-r--r--drivers/scsi/mac53c94.c2
-rw-r--r--drivers/scsi/mesh.c5
-rw-r--r--drivers/scsi/sata_svw.c2
-rw-r--r--drivers/serial/pmac_zilog.c9
-rw-r--r--drivers/video/S3triofb.c12
-rw-r--r--drivers/video/aty/radeon_base.c8
-rw-r--r--drivers/video/aty/radeon_monitor.c12
-rw-r--r--drivers/video/aty/radeon_pm.c4
-rw-r--r--drivers/video/nvidia/nv_of.c12
-rw-r--r--drivers/video/offb.c22
-rw-r--r--drivers/video/riva/fbdev.c5
135 files changed, 10315 insertions, 8024 deletions
diff --git a/drivers/base/hypervisor.c b/drivers/base/hypervisor.c
index 0c85e9d6a44..7080b413ddc 100644
--- a/drivers/base/hypervisor.c
+++ b/drivers/base/hypervisor.c
@@ -1,8 +1,9 @@
/*
* hypervisor.c - /sys/hypervisor subsystem.
*
- * This file is released under the GPLv2
+ * Copyright (C) IBM Corp. 2006
*
+ * This file is released under the GPLv2
*/
#include <linux/kobject.h>
diff --git a/drivers/block/cryptoloop.c b/drivers/block/cryptoloop.c
index 3d4261c39f1..40535036e89 100644
--- a/drivers/block/cryptoloop.c
+++ b/drivers/block/cryptoloop.c
@@ -40,11 +40,13 @@ static int
cryptoloop_init(struct loop_device *lo, const struct loop_info64 *info)
{
int err = -EINVAL;
+ int cipher_len;
+ int mode_len;
char cms[LO_NAME_SIZE]; /* cipher-mode string */
char *cipher;
char *mode;
char *cmsp = cms; /* c-m string pointer */
- struct crypto_tfm *tfm = NULL;
+ struct crypto_blkcipher *tfm;
/* encryption breaks for non sector aligned offsets */
@@ -53,20 +55,39 @@ cryptoloop_init(struct loop_device *lo, const struct loop_info64 *info)
strncpy(cms, info->lo_crypt_name, LO_NAME_SIZE);
cms[LO_NAME_SIZE - 1] = 0;
- cipher = strsep(&cmsp, "-");
- mode = strsep(&cmsp, "-");
-
- if (mode == NULL || strcmp(mode, "cbc") == 0)
- tfm = crypto_alloc_tfm(cipher, CRYPTO_TFM_MODE_CBC |
- CRYPTO_TFM_REQ_MAY_SLEEP);
- else if (strcmp(mode, "ecb") == 0)
- tfm = crypto_alloc_tfm(cipher, CRYPTO_TFM_MODE_ECB |
- CRYPTO_TFM_REQ_MAY_SLEEP);
- if (tfm == NULL)
+
+ cipher = cmsp;
+ cipher_len = strcspn(cmsp, "-");
+
+ mode = cmsp + cipher_len;
+ mode_len = 0;
+ if (*mode) {
+ mode++;
+ mode_len = strcspn(mode, "-");
+ }
+
+ if (!mode_len) {
+ mode = "cbc";
+ mode_len = 3;
+ }
+
+ if (cipher_len + mode_len + 3 > LO_NAME_SIZE)
return -EINVAL;
- err = tfm->crt_u.cipher.cit_setkey(tfm, info->lo_encrypt_key,
- info->lo_encrypt_key_size);
+ memmove(cms, mode, mode_len);
+ cmsp = cms + mode_len;
+ *cmsp++ = '(';
+ memcpy(cmsp, info->lo_crypt_name, cipher_len);
+ cmsp += cipher_len;
+ *cmsp++ = ')';
+ *cmsp = 0;
+
+ tfm = crypto_alloc_blkcipher(cms, 0, CRYPTO_ALG_ASYNC);
+ if (IS_ERR(tfm))
+ return PTR_ERR(tfm);
+
+ err = crypto_blkcipher_setkey(tfm, info->lo_encrypt_key,
+ info->lo_encrypt_key_size);
if (err != 0)
goto out_free_tfm;
@@ -75,99 +96,49 @@ cryptoloop_init(struct loop_device *lo, const struct loop_info64 *info)
return 0;
out_free_tfm:
- crypto_free_tfm(tfm);
+ crypto_free_blkcipher(tfm);
out:
return err;
}
-typedef int (*encdec_ecb_t)(struct crypto_tfm *tfm,
+typedef int (*encdec_cbc_t)(struct blkcipher_desc *desc,
struct scatterlist *sg_out,
struct scatterlist *sg_in,
unsigned int nsg);
-
-static int
-cryptoloop_transfer_ecb(struct loop_device *lo, int cmd,
- struct page *raw_page, unsigned raw_off,
- struct page *loop_page, unsigned loop_off,
- int size, sector_t IV)
-{
- struct crypto_tfm *tfm = (struct crypto_tfm *) lo->key_data;
- struct scatterlist sg_out = { NULL, };
- struct scatterlist sg_in = { NULL, };
-
- encdec_ecb_t encdecfunc;
- struct page *in_page, *out_page;
- unsigned in_offs, out_offs;
-
- if (cmd == READ) {
- in_page = raw_page;
- in_offs = raw_off;
- out_page = loop_page;
- out_offs = loop_off;
- encdecfunc = tfm->crt_u.cipher.cit_decrypt;
- } else {
- in_page = loop_page;
- in_offs = loop_off;
- out_page = raw_page;
- out_offs = raw_off;
- encdecfunc = tfm->crt_u.cipher.cit_encrypt;
- }
-
- while (size > 0) {
- const int sz = min(size, LOOP_IV_SECTOR_SIZE);
-
- sg_in.page = in_page;
- sg_in.offset = in_offs;
- sg_in.length = sz;
-
- sg_out.page = out_page;
- sg_out.offset = out_offs;
- sg_out.length = sz;
-
- encdecfunc(tfm, &sg_out, &sg_in, sz);
-
- size -= sz;
- in_offs += sz;
- out_offs += sz;
- }
-
- return 0;
-}
-
-typedef int (*encdec_cbc_t)(struct crypto_tfm *tfm,
- struct scatterlist *sg_out,
- struct scatterlist *sg_in,
- unsigned int nsg, u8 *iv);
-
static int
-cryptoloop_transfer_cbc(struct loop_device *lo, int cmd,
- struct page *raw_page, unsigned raw_off,
- struct page *loop_page, unsigned loop_off,
- int size, sector_t IV)
+cryptoloop_transfer(struct loop_device *lo, int cmd,
+ struct page *raw_page, unsigned raw_off,
+ struct page *loop_page, unsigned loop_off,
+ int size, sector_t IV)
{
- struct crypto_tfm *tfm = (struct crypto_tfm *) lo->key_data;
+ struct crypto_blkcipher *tfm = lo->key_data;
+ struct blkcipher_desc desc = {
+ .tfm = tfm,
+ .flags = CRYPTO_TFM_REQ_MAY_SLEEP,
+ };
struct scatterlist sg_out = { NULL, };
struct scatterlist sg_in = { NULL, };
encdec_cbc_t encdecfunc;
struct page *in_page, *out_page;
unsigned in_offs, out_offs;
+ int err;
if (cmd == READ) {
in_page = raw_page;
in_offs = raw_off;
out_page = loop_page;
out_offs = loop_off;
- encdecfunc = tfm->crt_u.cipher.cit_decrypt_iv;
+ encdecfunc = crypto_blkcipher_crt(tfm)->decrypt;
} else {
in_page = loop_page;
in_offs = loop_off;
out_page = raw_page;
out_offs = raw_off;
- encdecfunc = tfm->crt_u.cipher.cit_encrypt_iv;
+ encdecfunc = crypto_blkcipher_crt(tfm)->encrypt;
}
while (size > 0) {
@@ -183,7 +154,10 @@ cryptoloop_transfer_cbc(struct loop_device *lo, int cmd,
sg_out.offset = out_offs;
sg_out.length = sz;
- encdecfunc(tfm, &sg_out, &sg_in, sz, (u8 *)iv);
+ desc.info = iv;
+ err = encdecfunc(&desc, &sg_out, &sg_in, sz);
+ if (err)
+ return err;
IV++;
size -= sz;
@@ -195,32 +169,6 @@ cryptoloop_transfer_cbc(struct loop_device *lo, int cmd,
}
static int
-cryptoloop_transfer(struct loop_device *lo, int cmd,
- struct page *raw_page, unsigned raw_off,
- struct page *loop_page, unsigned loop_off,
- int size, sector_t IV)
-{
- struct crypto_tfm *tfm = (struct crypto_tfm *) lo->key_data;
- if(tfm->crt_cipher.cit_mode == CRYPTO_TFM_MODE_ECB)
- {
- lo->transfer = cryptoloop_transfer_ecb;
- return cryptoloop_transfer_ecb(lo, cmd, raw_page, raw_off,
- loop_page, loop_off, size, IV);
- }
- if(tfm->crt_cipher.cit_mode == CRYPTO_TFM_MODE_CBC)
- {
- lo->transfer = cryptoloop_transfer_cbc;
- return cryptoloop_transfer_cbc(lo, cmd, raw_page, raw_off,
- loop_page, loop_off, size, IV);
- }
-
- /* This is not supposed to happen */
-
- printk( KERN_ERR "cryptoloop: unsupported cipher mode in cryptoloop_transfer!\n");
- return -EINVAL;
-}
-
-static int
cryptoloop_ioctl(struct loop_device *lo, int cmd, unsigned long arg)
{
return -EINVAL;
@@ -229,9 +177,9 @@ cryptoloop_ioctl(struct loop_device *lo, int cmd, unsigned long arg)
static int
cryptoloop_release(struct loop_device *lo)
{
- struct crypto_tfm *tfm = (struct crypto_tfm *) lo->key_data;
+ struct crypto_blkcipher *tfm = lo->key_data;
if (tfm != NULL) {
- crypto_free_tfm(tfm);
+ crypto_free_blkcipher(tfm);
lo->key_data = NULL;
return 0;
}
diff --git a/drivers/char/Kconfig b/drivers/char/Kconfig
index c40e487d9f5..52ea94b891f 100644
--- a/drivers/char/Kconfig
+++ b/drivers/char/Kconfig
@@ -495,6 +495,21 @@ config LEGACY_PTY_COUNT
When not in use, each legacy PTY occupies 12 bytes on 32-bit
architectures and 24 bytes on 64-bit architectures.
+config BRIQ_PANEL
+ tristate 'Total Impact briQ front panel driver'
+ depends on PPC_CHRP
+ ---help---
+ The briQ is a small footprint CHRP computer with a frontpanel VFD, a
+ tristate led and two switches. It is the size of a CDROM drive.
+
+ If you have such one and want anything showing on the VFD then you
+ must answer Y here.
+
+ To compile this driver as a module, choose M here: the
+ module will be called briq_panel.
+
+ It's safe to say N here.
+
config PRINTER
tristate "Parallel printer support"
depends on PARPORT
@@ -596,6 +611,13 @@ config HVC_CONSOLE
console. This driver allows each pSeries partition to have a console
which is accessed via the HMC.
+config HVC_ISERIES
+ bool "iSeries Hypervisor Virtual Console support"
+ depends on PPC_ISERIES && !VIOCONS
+ select HVC_DRIVER
+ help
+ iSeries machines support a hypervisor virtual console.
+
config HVC_RTAS
bool "IBM RTAS Console support"
depends on PPC_RTAS
diff --git a/drivers/char/Makefile b/drivers/char/Makefile
index 6e0f4469d8b..8c6dfc62152 100644
--- a/drivers/char/Makefile
+++ b/drivers/char/Makefile
@@ -42,6 +42,7 @@ obj-$(CONFIG_AMIGA_BUILTIN_SERIAL) += amiserial.o
obj-$(CONFIG_SX) += sx.o generic_serial.o
obj-$(CONFIG_RIO) += rio/ generic_serial.o
obj-$(CONFIG_HVC_CONSOLE) += hvc_vio.o hvsi.o
+obj-$(CONFIG_HVC_ISERIES) += hvc_iseries.o
obj-$(CONFIG_HVC_RTAS) += hvc_rtas.o
obj-$(CONFIG_HVC_DRIVER) += hvc_console.o
obj-$(CONFIG_RAW_DRIVER) += raw.o
@@ -51,6 +52,7 @@ obj-$(CONFIG_VIOCONS) += viocons.o
obj-$(CONFIG_VIOTAPE) += viotape.o
obj-$(CONFIG_HVCS) += hvcs.o
obj-$(CONFIG_SGI_MBCS) += mbcs.o
+obj-$(CONFIG_BRIQ_PANEL) += briq_panel.o
obj-$(CONFIG_PRINTER) += lp.o
obj-$(CONFIG_TIPAR) += tipar.o
diff --git a/drivers/char/agp/uninorth-agp.c b/drivers/char/agp/uninorth-agp.c
index 1de1b12043b..91b71e750ee 100644
--- a/drivers/char/agp/uninorth-agp.c
+++ b/drivers/char/agp/uninorth-agp.c
@@ -601,8 +601,8 @@ static int __devinit agp_uninorth_probe(struct pci_dev *pdev,
uninorth_node = of_find_node_by_name(NULL, "u3");
}
if (uninorth_node) {
- int *revprop = (int *)
- get_property(uninorth_node, "device-rev", NULL);
+ const int *revprop = get_property(uninorth_node,
+ "device-rev", NULL);
if (revprop != NULL)
uninorth_rev = *revprop & 0x3f;
of_node_put(uninorth_node);
diff --git a/drivers/char/briq_panel.c b/drivers/char/briq_panel.c
new file mode 100644
index 00000000000..a0e5eac5f33
--- /dev/null
+++ b/drivers/char/briq_panel.c
@@ -0,0 +1,268 @@
+/*
+ * Drivers for the Total Impact PPC based computer "BRIQ"
+ * by Dr. Karsten Jeppesen
+ *
+ */
+
+#include <linux/module.h>
+
+#include <linux/types.h>
+#include <linux/errno.h>
+#include <linux/sched.h>
+#include <linux/tty.h>
+#include <linux/timer.h>
+#include <linux/config.h>
+#include <linux/kernel.h>
+#include <linux/wait.h>
+#include <linux/string.h>
+#include <linux/slab.h>
+#include <linux/ioport.h>
+#include <linux/delay.h>
+#include <linux/miscdevice.h>
+#include <linux/fs.h>
+#include <linux/mm.h>
+#include <linux/init.h>
+
+#include <asm/uaccess.h>
+#include <asm/io.h>
+#include <asm/prom.h>
+
+#define BRIQ_PANEL_MINOR 156
+#define BRIQ_PANEL_VFD_IOPORT 0x0390
+#define BRIQ_PANEL_LED_IOPORT 0x0398
+#define BRIQ_PANEL_VER "1.1 (04/20/2002)"
+#define BRIQ_PANEL_MSG0 "Loading Linux"
+
+static int vfd_is_open;
+static unsigned char vfd[40];
+static int vfd_cursor;
+static unsigned char ledpb, led;
+
+static void update_vfd(void)
+{
+ int i;
+
+ /* cursor home */
+ outb(0x02, BRIQ_PANEL_VFD_IOPORT);
+ for (i=0; i<20; i++)
+ outb(vfd[i], BRIQ_PANEL_VFD_IOPORT + 1);
+
+ /* cursor to next line */
+ outb(0xc0, BRIQ_PANEL_VFD_IOPORT);
+ for (i=20; i<40; i++)
+ outb(vfd[i], BRIQ_PANEL_VFD_IOPORT + 1);
+
+}
+
+static void set_led(char state)
+{
+ if (state == 'R')
+ led = 0x01;
+ else if (state == 'G')
+ led = 0x02;
+ else if (state == 'Y')
+ led = 0x03;
+ else if (state == 'X')
+ led = 0x00;
+ outb(led, BRIQ_PANEL_LED_IOPORT);
+}
+
+static int briq_panel_open(struct inode *ino, struct file *filep)
+{
+ /* enforce single access */
+ if (vfd_is_open)
+ return -EBUSY;
+ vfd_is_open = 1;
+
+ return 0;
+}
+
+static int briq_panel_release(struct inode *ino, struct file *filep)
+{
+ if (!vfd_is_open)
+ return -ENODEV;
+
+ vfd_is_open = 0;
+
+ return 0;
+}
+
+static ssize_t briq_panel_read(struct file *file, char *buf, size_t count,
+ loff_t *ppos)
+{
+ unsigned short c;
+ unsigned char cp;
+
+#if 0 /* Can't seek (pread) on this device */
+ if (ppos != &file->f_pos)
+ return -ESPIPE;
+#endif
+
+ if (!vfd_is_open)
+ return -ENODEV;
+
+ c = (inb(BRIQ_PANEL_LED_IOPORT) & 0x000c) | (ledpb & 0x0003);
+ set_led(' ');
+ /* upper button released */
+ if ((!(ledpb & 0x0004)) && (c & 0x0004)) {
+ cp = ' ';
+ ledpb = c;
+ if (copy_to_user(buf, &cp, 1))
+ return -EFAULT;
+ return 1;
+ }
+ /* lower button released */
+ else if ((!(ledpb & 0x0008)) && (c & 0x0008)) {
+ cp = '\r';
+ ledpb = c;
+ if (copy_to_user(buf, &cp, 1))
+ return -EFAULT;
+ return 1;
+ } else {
+ ledpb = c;
+ return 0;
+ }
+}
+
+static void scroll_vfd( void )
+{
+ int i;
+
+ for (i=0; i<20; i++) {
+ vfd[i] = vfd[i+20];
+ vfd[i+20] = ' ';
+ }
+ vfd_cursor = 20;
+}
+
+static ssize_t briq_panel_write(struct file *file, const char *buf, size_t len,
+ loff_t *ppos)
+{
+ size_t indx = len;
+ int i, esc = 0;
+
+#if 0 /* Can't seek (pwrite) on this device */
+ if (ppos != &file->f_pos)
+ return -ESPIPE;
+#endif
+
+ if (!vfd_is_open)
+ return -EBUSY;
+
+ for (;;) {
+ if (!indx)
+ break;
+ if (esc) {
+ set_led(*buf);
+ esc = 0;
+ } else if (*buf == 27) {
+ esc = 1;
+ } else if (*buf == 12) {
+ /* do a form feed */
+ for (i=0; i<40; i++)
+ vfd[i] = ' ';
+ vfd_cursor = 0;
+ } else if (*buf == 10) {
+ if (vfd_cursor < 20)
+ vfd_cursor = 20;
+ else if (vfd_cursor < 40)
+ vfd_cursor = 40;
+ else if (vfd_cursor < 60)
+ vfd_cursor = 60;
+ if (vfd_cursor > 59)
+ scroll_vfd();
+ } else {
+ /* just a character */
+ if (vfd_cursor > 39)
+ scroll_vfd();
+ vfd[vfd_cursor++] = *buf;
+ }
+ indx--;
+ buf++;
+ }
+ update_vfd();
+
+ return len;
+}
+
+static struct file_operations briq_panel_fops = {
+ .owner = THIS_MODULE,
+ .read = briq_panel_read,
+ .write = briq_panel_write,
+ .open = briq_panel_open,
+ .release = briq_panel_release,
+};
+
+static struct miscdevice briq_panel_miscdev = {
+ BRIQ_PANEL_MINOR,
+ "briq_panel",
+ &briq_panel_fops
+};
+
+static int __init briq_panel_init(void)
+{
+ struct device_node *root = find_path_device("/");
+ char *machine;
+ int i;
+
+ machine = get_property(root, "model", NULL);
+ if (!machine || strncmp(machine, "TotalImpact,BRIQ-1", 18) != 0)
+ return -ENODEV;
+
+ printk(KERN_INFO
+ "briq_panel: v%s Dr. Karsten Jeppesen (kj@totalimpact.com)\n",
+ BRIQ_PANEL_VER);
+
+ if (!request_region(BRIQ_PANEL_VFD_IOPORT, 4, "BRIQ Front Panel"))
+ return -EBUSY;
+
+ if (!request_region(BRIQ_PANEL_LED_IOPORT, 2, "BRIQ Front Panel")) {
+ release_region(BRIQ_PANEL_VFD_IOPORT, 4);
+ return -EBUSY;
+ }
+ ledpb = inb(BRIQ_PANEL_LED_IOPORT) & 0x000c;
+
+ if (misc_register(&briq_panel_miscdev) < 0) {
+ release_region(BRIQ_PANEL_VFD_IOPORT, 4);
+ release_region(BRIQ_PANEL_LED_IOPORT, 2);
+ return -EBUSY;
+ }
+
+ outb(0x38, BRIQ_PANEL_VFD_IOPORT); /* Function set */
+ outb(0x01, BRIQ_PANEL_VFD_IOPORT); /* Clear display */
+ outb(0x0c, BRIQ_PANEL_VFD_IOPORT); /* Display on */
+ outb(0x06, BRIQ_PANEL_VFD_IOPORT); /* Entry normal */
+ for (i=0; i<40; i++)
+ vfd[i]=' ';
+#ifndef MODULE
+ vfd[0] = 'L';
+ vfd[1] = 'o';
+ vfd[2] = 'a';
+ vfd[3] = 'd';
+ vfd[4] = 'i';
+ vfd[5] = 'n';
+ vfd[6] = 'g';
+ vfd[7] = ' ';
+ vfd[8] = '.';
+ vfd[9] = '.';
+ vfd[10] = '.';
+#endif /* !MODULE */
+
+ update_vfd();
+
+ return 0;
+}
+
+static void __exit briq_panel_exit(void)
+{
+ misc_deregister(&briq_panel_miscdev);
+ release_region(BRIQ_PANEL_VFD_IOPORT, 4);
+ release_region(BRIQ_PANEL_LED_IOPORT, 2);
+}
+
+module_init(briq_panel_init);
+module_exit(briq_panel_exit);
+
+MODULE_LICENSE("GPL");
+MODULE_AUTHOR("Karsten Jeppesen <karsten@jeppesens.com>");
+MODULE_DESCRIPTION("Driver for the Total Impact briQ front panel");
diff --git a/drivers/char/hvc_console.c b/drivers/char/hvc_console.c
index 613d67f1c7f..a76d2c40dd5 100644
--- a/drivers/char/hvc_console.c
+++ b/drivers/char/hvc_console.c
@@ -80,7 +80,8 @@ struct hvc_struct {
struct tty_struct *tty;
unsigned int count;
int do_wakeup;
- char outbuf[N_OUTBUF] __ALIGNED__;
+ char *outbuf;
+ int outbuf_size;
int n_outbuf;
uint32_t vtermno;
struct hv_ops *ops;
@@ -319,10 +320,8 @@ static int hvc_open(struct tty_struct *tty, struct file * filp)
struct kobject *kobjp;
/* Auto increments kobject reference if found. */
- if (!(hp = hvc_get_by_index(tty->index))) {
- printk(KERN_WARNING "hvc_console: tty open failed, no vty associated with tty.\n");
+ if (!(hp = hvc_get_by_index(tty->index)))
return -ENODEV;
- }
spin_lock_irqsave(&hp->lock, flags);
/* Check and then increment for fast path open. */
@@ -505,7 +504,7 @@ static int hvc_write(struct tty_struct *tty, const unsigned char *buf, int count
if (hp->n_outbuf > 0)
hvc_push(hp);
- while (count > 0 && (rsize = N_OUTBUF - hp->n_outbuf) > 0) {
+ while (count > 0 && (rsize = hp->outbuf_size - hp->n_outbuf) > 0) {
if (rsize > count)
rsize = count;
memcpy(hp->outbuf + hp->n_outbuf, buf, rsize);
@@ -538,7 +537,7 @@ static int hvc_write_room(struct tty_struct *tty)
if (!hp)
return -1;
- return N_OUTBUF - hp->n_outbuf;
+ return hp->outbuf_size - hp->n_outbuf;
}
static int hvc_chars_in_buffer(struct tty_struct *tty)
@@ -729,12 +728,13 @@ static struct kobj_type hvc_kobj_type = {
};
struct hvc_struct __devinit *hvc_alloc(uint32_t vtermno, int irq,
- struct hv_ops *ops)
+ struct hv_ops *ops, int outbuf_size)
{
struct hvc_struct *hp;
int i;
- hp = kmalloc(sizeof(*hp), GFP_KERNEL);
+ hp = kmalloc(ALIGN(sizeof(*hp), sizeof(long)) + outbuf_size,
+ GFP_KERNEL);
if (!hp)
return ERR_PTR(-ENOMEM);
@@ -743,6 +743,8 @@ struct hvc_struct __devinit *hvc_alloc(uint32_t vtermno, int irq,
hp->vtermno = vtermno;
hp->irq = irq;
hp->ops = ops;
+ hp->outbuf_size = outbuf_size;
+ hp->outbuf = &((char *)hp)[ALIGN(sizeof(*hp), sizeof(long))];
kobject_init(&hp->kobj);
hp->kobj.ktype = &hvc_kobj_type;
diff --git a/drivers/char/hvc_console.h b/drivers/char/hvc_console.h
index 96b7401319c..8c59818050e 100644
--- a/drivers/char/hvc_console.h
+++ b/drivers/char/hvc_console.h
@@ -56,7 +56,7 @@ extern int hvc_instantiate(uint32_t vtermno, int index, struct hv_ops *ops);
/* register a vterm for hvc tty operation (module_init or hotplug add) */
extern struct hvc_struct * __devinit hvc_alloc(uint32_t vtermno, int irq,
- struct hv_ops *ops);
+ struct hv_ops *ops, int outbuf_size);
/* remove a vterm from hvc tty operation (modele_exit or hotplug remove) */
extern int __devexit hvc_remove(struct hvc_struct *hp);
diff --git a/drivers/char/hvc_iseries.c b/drivers/char/hvc_iseries.c
new file mode 100644
index 00000000000..4747729459c
--- /dev/null
+++ b/drivers/char/hvc_iseries.c
@@ -0,0 +1,594 @@
+/*
+ * iSeries vio driver interface to hvc_console.c
+ *
+ * This code is based heavily on hvc_vio.c and viocons.c
+ *
+ * Copyright (C) 2006 Stephen Rothwell, IBM Corporation
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
+ */
+#include <stdarg.h>
+#include <linux/types.h>
+#include <linux/init.h>
+#include <linux/kernel.h>
+#include <linux/spinlock.h>
+#include <linux/console.h>
+
+#include <asm/hvconsole.h>
+#include <asm/vio.h>
+#include <asm/prom.h>
+#include <asm/iseries/vio.h>
+#include <asm/iseries/hv_call.h>
+#include <asm/iseries/hv_lp_config.h>
+#include <asm/iseries/hv_lp_event.h>
+
+#include "hvc_console.h"
+
+#define VTTY_PORTS 10
+
+static DEFINE_SPINLOCK(consolelock);
+static DEFINE_SPINLOCK(consoleloglock);
+
+static const char hvc_driver_name[] = "hvc_console";
+
+#define IN_BUF_SIZE 200
+
+/*
+ * Our port information.
+ */
+static struct port_info {
+ HvLpIndex lp;
+ u64 seq; /* sequence number of last HV send */
+ u64 ack; /* last ack from HV */
+ struct hvc_struct *hp;
+ int in_start;
+ int in_end;
+ unsigned char in_buf[IN_BUF_SIZE];
+} port_info[VTTY_PORTS] = {
+ [ 0 ... VTTY_PORTS - 1 ] = {
+ .lp = HvLpIndexInvalid
+ }
+};
+
+#define viochar_is_console(pi) ((pi) == &port_info[0])
+
+static struct vio_device_id hvc_driver_table[] __devinitdata = {
+ {"serial", "IBM,iSeries-vty"},
+ { "", "" }
+};
+MODULE_DEVICE_TABLE(vio, hvc_driver_table);
+
+static void hvlog(char *fmt, ...)
+{
+ int i;
+ unsigned long flags;
+ va_list args;
+ static char buf[256];
+
+ spin_lock_irqsave(&consoleloglock, flags);
+ va_start(args, fmt);
+ i = vscnprintf(buf, sizeof(buf) - 1, fmt, args);
+ va_end(args);
+ buf[i++] = '\r';
+ HvCall_writeLogBuffer(buf, i);
+ spin_unlock_irqrestore(&consoleloglock, flags);
+}
+
+/*
+ * Initialize the common fields in a charLpEvent
+ */
+static void init_data_event(struct viocharlpevent *viochar, HvLpIndex lp)
+{
+ struct HvLpEvent *hev = &viochar->event;
+
+ memset(viochar, 0, sizeof(struct viocharlpevent));
+
+ hev->flags = HV_LP_EVENT_VALID | HV_LP_EVENT_DEFERRED_ACK |
+ HV_LP_EVENT_INT;
+ hev->xType = HvLpEvent_Type_VirtualIo;
+ hev->xSubtype = viomajorsubtype_chario | viochardata;
+ hev->xSourceLp = HvLpConfig_getLpIndex();
+ hev->xTargetLp = lp;
+ hev->xSizeMinus1 = sizeof(struct viocharlpevent);
+ hev->xSourceInstanceId = viopath_sourceinst(lp);
+ hev->xTargetInstanceId = viopath_targetinst(lp);
+}
+
+static int get_chars(uint32_t vtermno, char *buf, int count)
+{
+ struct port_info *pi;
+ int n = 0;
+ unsigned long flags;
+
+ if (vtermno >= VTTY_PORTS)
+ return -EINVAL;
+ if (count == 0)
+ return 0;
+
+ pi = &port_info[vtermno];
+ spin_lock_irqsave(&consolelock, flags);
+
+ if (pi->in_end == 0)
+ goto done;
+
+ n = pi->in_end - pi->in_start;
+ if (n > count)
+ n = count;
+ memcpy(buf, &pi->in_buf[pi->in_start], n);
+ pi->in_start += n;
+ if (pi->in_start == pi->in_end) {
+ pi->in_start = 0;
+ pi->in_end = 0;
+ }
+done:
+ spin_unlock_irqrestore(&consolelock, flags);
+ return n;
+}
+
+static int put_chars(uint32_t vtermno, const char *buf, int count)
+{
+ struct viocharlpevent *viochar;
+ struct port_info *pi;
+ HvLpEvent_Rc hvrc;
+ unsigned long flags;
+ int sent = 0;
+
+ if (vtermno >= VTTY_PORTS)
+ return -EINVAL;
+
+ pi = &port_info[vtermno];
+
+ spin_lock_irqsave(&consolelock, flags);
+
+ if (viochar_is_console(pi) && !viopath_isactive(pi->lp)) {
+ spin_lock_irqsave(&consoleloglock, flags);
+ HvCall_writeLogBuffer(buf, count);
+ spin_unlock_irqrestore(&consoleloglock, flags);
+ sent = count;
+ goto done;
+ }
+
+ viochar = vio_get_event_buffer(viomajorsubtype_chario);
+ if (viochar == NULL) {
+ hvlog("\n\rviocons: Can't get viochar buffer.");
+ goto done;
+ }
+
+ while ((count > 0) && ((pi->seq - pi->ack) < VIOCHAR_WINDOW)) {
+ int len;
+
+ len = (count > VIOCHAR_MAX_DATA) ? VIOCHAR_MAX_DATA : count;
+
+ if (viochar_is_console(pi)) {
+ spin_lock_irqsave(&consoleloglock, flags);
+ HvCall_writeLogBuffer(buf, len);
+ spin_unlock_irqrestore(&consoleloglock, flags);
+ }
+
+ init_data_event(viochar, pi->lp);
+
+ viochar->len = len;
+ viochar->event.xCorrelationToken = pi->seq++;
+ viochar->event.xSizeMinus1 =
+ offsetof(struct viocharlpevent, data) + len;
+
+ memcpy(viochar->data, buf, len);
+
+ hvrc = HvCallEvent_signalLpEvent(&viochar->event);
+ if (hvrc)
+ hvlog("\n\rerror sending event! return code %d\n\r",
+ (int)hvrc);
+ sent += len;
+ count -= len;
+ buf += len;
+ }
+
+ vio_free_event_buffer(viomajorsubtype_chario, viochar);
+done:
+ spin_unlock_irqrestore(&consolelock, flags);
+ return sent;
+}
+
+static struct hv_ops hvc_get_put_ops = {
+ .get_chars = get_chars,
+ .put_chars = put_chars,
+};
+
+static int __devinit hvc_vio_probe(struct vio_dev *vdev,
+ const struct vio_device_id *id)
+{
+ struct hvc_struct *hp;
+ struct port_info *pi;
+
+ /* probed with invalid parameters. */
+ if (!vdev || !id)
+ return -EPERM;
+
+ if (vdev->unit_address >= VTTY_PORTS)
+ return -ENODEV;
+
+ pi = &port_info[vdev->unit_address];
+
+ hp = hvc_alloc(vdev->unit_address, vdev->irq, &hvc_get_put_ops,
+ VIOCHAR_MAX_DATA);
+ if (IS_ERR(hp))
+ return PTR_ERR(hp);
+ pi->hp = hp;
+ dev_set_drvdata(&vdev->dev, pi);
+
+ return 0;
+}
+
+static int __devexit hvc_vio_remove(struct vio_dev *vdev)
+{
+ struct port_info *pi = dev_get_drvdata(&vdev->dev);
+ struct hvc_struct *hp = pi->hp;
+
+ return hvc_remove(hp);
+}
+
+static struct vio_driver hvc_vio_driver = {
+ .id_table = hvc_driver_table,
+ .probe = hvc_vio_probe,
+ .remove = hvc_vio_remove,
+ .driver = {
+ .name = hvc_driver_name,
+ .owner = THIS_MODULE,
+ }
+};
+
+static void hvc_open_event(struct HvLpEvent *event)
+{
+ unsigned long flags;
+ struct viocharlpevent *cevent = (struct viocharlpevent *)event;
+ u8 port = cevent->virtual_device;
+ struct port_info *pi;
+ int reject = 0;
+
+ if (hvlpevent_is_ack(event)) {
+ if (port >= VTTY_PORTS)
+ return;
+
+ spin_lock_irqsave(&consolelock, flags);
+
+ pi = &port_info[port];
+ if (event->xRc == HvLpEvent_Rc_Good) {
+ pi->seq = pi->ack = 0;
+ /*
+ * This line allows connections from the primary
+ * partition but once one is connected from the
+ * primary partition nothing short of a reboot
+ * of linux will allow access from the hosting
+ * partition again without a required iSeries fix.
+ */
+ pi->lp = event->xTargetLp;
+ }
+
+ spin_unlock_irqrestore(&consolelock, flags);
+ if (event->xRc != HvLpEvent_Rc_Good)
+ printk(KERN_WARNING
+ "hvc: handle_open_event: event->xRc == (%d).\n",
+ event->xRc);
+
+ if (event->xCorrelationToken != 0) {
+ atomic_t *aptr= (atomic_t *)event->xCorrelationToken;
+ atomic_set(aptr, 1);
+ } else
+ printk(KERN_WARNING
+ "hvc: weird...got open ack without atomic\n");
+ return;
+ }
+
+ /* This had better require an ack, otherwise complain */
+ if (!hvlpevent_need_ack(event)) {
+ printk(KERN_WARNING "hvc: viocharopen without ack bit!\n");
+ return;
+ }
+
+ spin_lock_irqsave(&consolelock, flags);
+
+ /* Make sure this is a good virtual tty */
+ if (port >= VTTY_PORTS) {
+ event->xRc = HvLpEvent_Rc_SubtypeError;
+ cevent->subtype_result_code = viorc_openRejected;
+ /*
+ * Flag state here since we can't printk while holding
+ * the consolelock spinlock.
+ */
+ reject = 1;
+ } else {
+ pi = &port_info[port];
+ if ((pi->lp != HvLpIndexInvalid) &&
+ (pi->lp != event->xSourceLp)) {
+ /*
+ * If this is tty is already connected to a different
+ * partition, fail.
+ */
+ event->xRc = HvLpEvent_Rc_SubtypeError;
+ cevent->subtype_result_code = viorc_openRejected;
+ reject = 2;
+ } else {
+ pi->lp = event->xSourceLp;
+ event->xRc = HvLpEvent_Rc_Good;
+ cevent->subtype_result_code = viorc_good;
+ pi->seq = pi->ack = 0;
+ }
+ }
+
+ spin_unlock_irqrestore(&consolelock, flags);
+
+ if (reject == 1)
+ printk(KERN_WARNING "hvc: open rejected: bad virtual tty.\n");
+ else if (reject == 2)
+ printk(KERN_WARNING "hvc: open rejected: console in exclusive "
+ "use by another partition.\n");
+
+ /* Return the acknowledgement */
+ HvCallEvent_ackLpEvent(event);
+}
+
+/*
+ * Handle a close charLpEvent. This should ONLY be an Interrupt because the
+ * virtual console should never actually issue a close event to the hypervisor
+ * because the virtual console never goes away. A close event coming from the
+ * hypervisor simply means that there are no client consoles connected to the
+ * virtual console.
+ */
+static void hvc_close_event(struct HvLpEvent *event)
+{
+ unsigned long flags;
+ struct viocharlpevent *cevent = (struct viocharlpevent *)event;
+ u8 port = cevent->virtual_device;
+
+ if (!hvlpevent_is_int(event)) {
+ printk(KERN_WARNING
+ "hvc: got unexpected close acknowlegement\n");
+ return;
+ }
+
+ if (port >= VTTY_PORTS) {
+ printk(KERN_WARNING
+ "hvc: close message from invalid virtual device.\n");
+ return;
+ }
+
+ /* For closes, just mark the console partition invalid */
+ spin_lock_irqsave(&consolelock, flags);
+
+ if (port_info[port].lp == event->xSourceLp)
+ port_info[port].lp = HvLpIndexInvalid;
+
+ spin_unlock_irqrestore(&consolelock, flags);
+}
+
+static void hvc_data_event(struct HvLpEvent *event)
+{
+ unsigned long flags;
+ struct viocharlpevent *cevent = (struct viocharlpevent *)event;
+ struct port_info *pi;
+ int n;
+ u8 port = cevent->virtual_device;
+
+ if (port >= VTTY_PORTS) {
+ printk(KERN_WARNING "hvc: data on invalid virtual device %d\n",
+ port);
+ return;
+ }
+ if (cevent->len == 0)
+ return;
+
+ /*
+ * Change 05/01/2003 - Ryan Arnold: If a partition other than
+ * the current exclusive partition tries to send us data
+ * events then just drop them on the floor because we don't
+ * want his stinking data. He isn't authorized to receive
+ * data because he wasn't the first one to get the console,
+ * therefore he shouldn't be allowed to send data either.
+ * This will work without an iSeries fix.
+ */
+ pi = &port_info[port];
+ if (pi->lp != event->xSourceLp)
+ return;
+
+ spin_lock_irqsave(&consolelock, flags);
+
+ n = IN_BUF_SIZE - pi->in_end;
+ if (n > cevent->len)
+ n = cevent->len;
+ if (n > 0) {
+ memcpy(&pi->in_buf[pi->in_end], cevent->data, n);
+ pi->in_end += n;
+ }
+ spin_unlock_irqrestore(&consolelock, flags);
+ if (n == 0)
+ printk(KERN_WARNING "hvc: input buffer overflow\n");
+}
+
+static void hvc_ack_event(struct HvLpEvent *event)
+{
+ struct viocharlpevent *cevent = (struct viocharlpevent *)event;
+ unsigned long flags;
+ u8 port = cevent->virtual_device;
+
+ if (port >= VTTY_PORTS) {
+ printk(KERN_WARNING "hvc: data on invalid virtual device\n");
+ return;
+ }
+
+ spin_lock_irqsave(&consolelock, flags);
+ port_info[port].ack = event->xCorrelationToken;
+ spin_unlock_irqrestore(&consolelock, flags);
+}
+
+static void hvc_config_event(struct HvLpEvent *event)
+{
+ struct viocharlpevent *cevent = (struct viocharlpevent *)event;
+
+ if (cevent->data[0] == 0x01)
+ printk(KERN_INFO "hvc: window resized to %d: %d: %d: %d\n",
+ cevent->data[1], cevent->data[2],
+ cevent->data[3], cevent->data[4]);
+ else
+ printk(KERN_WARNING "hvc: unknown config event\n");
+}
+
+static void hvc_handle_event(struct HvLpEvent *event)
+{
+ int charminor;
+
+ if (event == NULL)
+ return;
+
+ charminor = event->xSubtype & VIOMINOR_SUBTYPE_MASK;
+ switch (charminor) {
+ case viocharopen:
+ hvc_open_event(event);
+ break;
+ case viocharclose:
+ hvc_close_event(event);
+ break;
+ case viochardata:
+ hvc_data_event(event);
+ break;
+ case viocharack:
+ hvc_ack_event(event);
+ break;
+ case viocharconfig:
+ hvc_config_event(event);
+ break;
+ default:
+ if (hvlpevent_is_int(event) && hvlpevent_need_ack(event)) {
+ event->xRc = HvLpEvent_Rc_InvalidSubtype;
+ HvCallEvent_ackLpEvent(event);
+ }
+ }
+}
+
+static int send_open(HvLpIndex remoteLp, void *sem)
+{
+ return HvCallEvent_signalLpEventFast(remoteLp,
+ HvLpEvent_Type_VirtualIo,
+ viomajorsubtype_chario | viocharopen,
+ HvLpEvent_AckInd_DoAck, HvLpEvent_AckType_ImmediateAck,
+ viopath_sourceinst(remoteLp),
+ viopath_targetinst(remoteLp),
+ (u64)(unsigned long)sem, VIOVERSION << 16,
+ 0, 0, 0, 0);
+}
+
+static int hvc_vio_init(void)
+{
+ atomic_t wait_flag;
+ int rc;
+
+ /* +2 for fudge */
+ rc = viopath_open(HvLpConfig_getPrimaryLpIndex(),
+ viomajorsubtype_chario, VIOCHAR_WINDOW + 2);
+ if (rc)
+ printk(KERN_WARNING "hvc: error opening to primary %d\n", rc);
+
+ if (viopath_hostLp == HvLpIndexInvalid)
+ vio_set_hostlp();
+
+ /*
+ * And if the primary is not the same as the hosting LP, open to the
+ * hosting lp
+ */
+ if ((viopath_hostLp != HvLpIndexInvalid) &&
+ (viopath_hostLp != HvLpConfig_getPrimaryLpIndex())) {
+ printk(KERN_INFO "hvc: open path to hosting (%d)\n",
+ viopath_hostLp);
+ rc = viopath_open(viopath_hostLp, viomajorsubtype_chario,
+ VIOCHAR_WINDOW + 2); /* +2 for fudge */
+ if (rc)
+ printk(KERN_WARNING
+ "error opening to partition %d: %d\n",
+ viopath_hostLp, rc);
+ }
+
+ if (vio_setHandler(viomajorsubtype_chario, hvc_handle_event) < 0)
+ printk(KERN_WARNING
+ "hvc: error seting handler for console events!\n");
+
+ /*
+ * First, try to open the console to the hosting lp.
+ * Wait on a semaphore for the response.
+ */
+ atomic_set(&wait_flag, 0);
+ if ((viopath_isactive(viopath_hostLp)) &&
+ (send_open(viopath_hostLp, &wait_flag) == 0)) {
+ printk(KERN_INFO "hvc: hosting partition %d\n", viopath_hostLp);
+ while (atomic_read(&wait_flag) == 0)
+ mb();
+ atomic_set(&wait_flag, 0);
+ }
+
+ /*
+ * If we don't have an active console, try the primary
+ */
+ if ((!viopath_isactive(port_info[0].lp)) &&
+ (viopath_isactive(HvLpConfig_getPrimaryLpIndex())) &&
+ (send_open(HvLpConfig_getPrimaryLpIndex(), &wait_flag) == 0)) {
+ printk(KERN_INFO "hvc: opening console to primary partition\n");
+ while (atomic_read(&wait_flag) == 0)
+ mb();
+ }
+
+ /* Register as a vio device to receive callbacks */
+ rc = vio_register_driver(&hvc_vio_driver);
+
+ return rc;
+}
+module_init(hvc_vio_init); /* after drivers/char/hvc_console.c */
+
+static void hvc_vio_exit(void)
+{
+ vio_unregister_driver(&hvc_vio_driver);
+}
+module_exit(hvc_vio_exit);
+
+/* the device tree order defines our numbering */
+static int hvc_find_vtys(void)
+{
+ struct device_node *vty;
+ int num_found = 0;
+
+ for (vty = of_find_node_by_name(NULL, "vty"); vty != NULL;
+ vty = of_find_node_by_name(vty, "vty")) {
+ uint32_t *vtermno;
+
+ /* We have statically defined space for only a certain number
+ * of console adapters.
+ */
+ if ((num_found >= MAX_NR_HVC_CONSOLES) ||
+ (num_found >= VTTY_PORTS))
+ break;
+
+ vtermno = (uint32_t *)get_property(vty, "reg", NULL);
+ if (!vtermno)
+ continue;
+
+ if (!device_is_compatible(vty, "IBM,iSeries-vty"))
+ continue;
+
+ if (num_found == 0)
+ add_preferred_console("hvc", 0, NULL);
+ hvc_instantiate(*vtermno, num_found, &hvc_get_put_ops);
+ ++num_found;
+ }
+
+ return num_found;
+}
+console_initcall(hvc_find_vtys);
diff --git a/drivers/char/hvc_rtas.c b/drivers/char/hvc_rtas.c
index 57106e02fd2..4b97eaf1860 100644
--- a/drivers/char/hvc_rtas.c
+++ b/drivers/char/hvc_rtas.c
@@ -94,7 +94,7 @@ static int hvc_rtas_init(void)
/* Allocate an hvc_struct for the console device we instantiated
* earlier. Save off hp so that we can return it on exit */
- hp = hvc_alloc(hvc_rtas_cookie, NO_IRQ, &hvc_rtas_get_put_ops);
+ hp = hvc_alloc(hvc_rtas_cookie, NO_IRQ, &hvc_rtas_get_put_ops, 16);
if (IS_ERR(hp))
return PTR_ERR(hp);
diff --git a/drivers/char/hvc_vio.c b/drivers/char/hvc_vio.c
index 9add81ceb44..cc95941148f 100644
--- a/drivers/char/hvc_vio.c
+++ b/drivers/char/hvc_vio.c
@@ -90,7 +90,8 @@ static int __devinit hvc_vio_probe(struct vio_dev *vdev,
if (!vdev || !id)
return -EPERM;
- hp = hvc_alloc(vdev->unit_address, vdev->irq, &hvc_get_put_ops);
+ hp = hvc_alloc(vdev->unit_address, vdev->irq, &hvc_get_put_ops,
+ MAX_VIO_PUT_CHARS);
if (IS_ERR(hp))
return PTR_ERR(hp);
dev_set_drvdata(&vdev->dev, hp);
@@ -140,7 +141,7 @@ static int hvc_find_vtys(void)
for (vty = of_find_node_by_name(NULL, "vty"); vty != NULL;
vty = of_find_node_by_name(vty, "vty")) {
- uint32_t *vtermno;
+ const uint32_t *vtermno;
/* We have statically defined space for only a certain number
* of console adapters.
@@ -148,7 +149,7 @@ static int hvc_find_vtys(void)
if (num_found >= MAX_NR_HVC_CONSOLES)
break;
- vtermno = (uint32_t *)get_property(vty, "reg", NULL);
+ vtermno = get_property(vty, "reg", NULL);
if (!vtermno)
continue;
diff --git a/drivers/char/hvsi.c b/drivers/char/hvsi.c
index 017f755632a..a89a95fb5e4 100644
--- a/drivers/char/hvsi.c
+++ b/drivers/char/hvsi.c
@@ -1274,11 +1274,10 @@ static int __init hvsi_console_init(void)
vty != NULL;
vty = of_find_compatible_node(vty, "serial", "hvterm-protocol")) {
struct hvsi_struct *hp;
- uint32_t *vtermno;
- uint32_t *irq;
+ const uint32_t *vtermno, *irq;
- vtermno = (uint32_t *)get_property(vty, "reg", NULL);
- irq = (uint32_t *)get_property(vty, "interrupts", NULL);
+ vtermno = get_property(vty, "reg", NULL);
+ irq = get_property(vty, "interrupts", NULL);
if (!vtermno || !irq)
continue;
diff --git a/drivers/char/tpm/tpm_atmel.h b/drivers/char/tpm/tpm_atmel.h
index 2e68eeb8a2c..aefd683c60b 100644
--- a/drivers/char/tpm/tpm_atmel.h
+++ b/drivers/char/tpm/tpm_atmel.h
@@ -37,7 +37,7 @@ static void __iomem * atmel_get_base_addr(unsigned long *base, int *region_size)
{
struct device_node *dn;
unsigned long address, size;
- unsigned int *reg;
+ const unsigned int *reg;
int reglen;
int naddrc;
int nsizec;
@@ -52,7 +52,7 @@ static void __iomem * atmel_get_base_addr(unsigned long *base, int *region_size)
return NULL;
}
- reg = (unsigned int *) get_property(dn, "reg", &reglen);
+ reg = get_property(dn, "reg", &reglen);
naddrc = prom_n_addr_cells(dn);
nsizec = prom_n_size_cells(dn);
diff --git a/drivers/char/viocons.c b/drivers/char/viocons.c
index 766f7864c6c..f3efeaf2826 100644
--- a/drivers/char/viocons.c
+++ b/drivers/char/viocons.c
@@ -43,7 +43,6 @@
#include <linux/sysrq.h>
#include <asm/iseries/vio.h>
-
#include <asm/iseries/hv_lp_event.h>
#include <asm/iseries/hv_call_event.h>
#include <asm/iseries/hv_lp_config.h>
@@ -67,35 +66,6 @@ static int vio_sysrq_pressed;
extern int sysrq_enabled;
#endif
-/*
- * The structure of the events that flow between us and OS/400. You can't
- * mess with this unless the OS/400 side changes too
- */
-struct viocharlpevent {
- struct HvLpEvent event;
- u32 reserved;
- u16 version;
- u16 subtype_result_code;
- u8 virtual_device;
- u8 len;
- u8 data[VIOCHAR_MAX_DATA];
-};
-
-#define VIOCHAR_WINDOW 10
-#define VIOCHAR_HIGHWATERMARK 3
-
-enum viocharsubtype {
- viocharopen = 0x0001,
- viocharclose = 0x0002,
- viochardata = 0x0003,
- viocharack = 0x0004,
- viocharconfig = 0x0005
-};
-
-enum viochar_rc {
- viochar_rc_ebusy = 1
-};
-
#define VIOCHAR_NUM_BUF 16
/*
@@ -1183,6 +1153,7 @@ static int __init viocons_init(void)
port_info[i].magic = VIOTTY_MAGIC;
}
HvCall_setLogBufferFormatAndCodepage(HvCall_LogBuffer_ASCII, 437);
+ add_preferred_console("viocons", 0, NULL);
register_console(&viocons_early);
return 0;
}
diff --git a/drivers/char/viotape.c b/drivers/char/viotape.c
index b72b2049aaa..73c78bf75d7 100644
--- a/drivers/char/viotape.c
+++ b/drivers/char/viotape.c
@@ -940,7 +940,6 @@ static void vioHandleTapeEvent(struct HvLpEvent *event)
static int viotape_probe(struct vio_dev *vdev, const struct vio_device_id *id)
{
- char tapename[32];
int i = vdev->unit_address;
int j;
@@ -956,10 +955,9 @@ static int viotape_probe(struct vio_dev *vdev, const struct vio_device_id *id)
"iseries!vt%d", i);
class_device_create(tape_class, NULL, MKDEV(VIOTAPE_MAJOR, i | 0x80),
NULL, "iseries!nvt%d", i);
- sprintf(tapename, "iseries/vt%d", i);
- printk(VIOTAPE_KERN_INFO "tape %s is iSeries "
+ printk(VIOTAPE_KERN_INFO "tape iseries/vt%d is iSeries "
"resource %10.10s type %4.4s, model %3.3s\n",
- tapename, viotape_unitinfo[i].rsrcname,
+ i, viotape_unitinfo[i].rsrcname,
viotape_unitinfo[i].type, viotape_unitinfo[i].model);
return 0;
}
diff --git a/drivers/crypto/Kconfig b/drivers/crypto/Kconfig
index 4263935443c..adb554153f6 100644
--- a/drivers/crypto/Kconfig
+++ b/drivers/crypto/Kconfig
@@ -2,22 +2,53 @@ menu "Hardware crypto devices"
config CRYPTO_DEV_PADLOCK
tristate "Support for VIA PadLock ACE"
- depends on CRYPTO && X86_32
+ depends on X86_32
+ select CRYPTO_ALGAPI
+ default m
help
Some VIA processors come with an integrated crypto engine
(so called VIA PadLock ACE, Advanced Cryptography Engine)
- that provides instructions for very fast {en,de}cryption
- with some algorithms.
+ that provides instructions for very fast cryptographic
+ operations with supported algorithms.
The instructions are used only when the CPU supports them.
- Otherwise software encryption is used. If you are unsure,
- say Y.
+ Otherwise software encryption is used.
+
+ Selecting M for this option will compile a helper module
+ padlock.ko that should autoload all below configured
+ algorithms. Don't worry if your hardware does not support
+ some or all of them. In such case padlock.ko will
+ simply write a single line into the kernel log informing
+ about its failure but everything will keep working fine.
+
+ If you are unsure, say M. The compiled module will be
+ called padlock.ko
config CRYPTO_DEV_PADLOCK_AES
- bool "Support for AES in VIA PadLock"
+ tristate "PadLock driver for AES algorithm"
depends on CRYPTO_DEV_PADLOCK
- default y
+ select CRYPTO_BLKCIPHER
+ default m
help
Use VIA PadLock for AES algorithm.
+ Available in VIA C3 and newer CPUs.
+
+ If unsure say M. The compiled module will be
+ called padlock-aes.ko
+
+config CRYPTO_DEV_PADLOCK_SHA
+ tristate "PadLock driver for SHA1 and SHA256 algorithms"
+ depends on CRYPTO_DEV_PADLOCK
+ select CRYPTO_SHA1
+ select CRYPTO_SHA256
+ default m
+ help
+ Use VIA PadLock for SHA1/SHA256 algorithms.
+
+ Available in VIA C7 and newer processors.
+
+ If unsure say M. The compiled module will be
+ called padlock-sha.ko
+
endmenu
diff --git a/drivers/crypto/Makefile b/drivers/crypto/Makefile
index 45426ca19a2..4c3d0ec1cf8 100644
--- a/drivers/crypto/Makefile
+++ b/drivers/crypto/Makefile
@@ -1,7 +1,3 @@
-
obj-$(CONFIG_CRYPTO_DEV_PADLOCK) += padlock.o
-
-padlock-objs-$(CONFIG_CRYPTO_DEV_PADLOCK_AES) += padlock-aes.o
-
-padlock-objs := padlock-generic.o $(padlock-objs-y)
-
+obj-$(CONFIG_CRYPTO_DEV_PADLOCK_AES) += padlock-aes.o
+obj-$(CONFIG_CRYPTO_DEV_PADLOCK_SHA) += padlock-sha.o
diff --git a/drivers/crypto/padlock-aes.c b/drivers/crypto/padlock-aes.c
index b643d71298a..d4501dc7e65 100644
--- a/drivers/crypto/padlock-aes.c
+++ b/drivers/crypto/padlock-aes.c
@@ -43,11 +43,11 @@
* ---------------------------------------------------------------------------
*/
+#include <crypto/algapi.h>
#include <linux/module.h>
#include <linux/init.h>
#include <linux/types.h>
#include <linux/errno.h>
-#include <linux/crypto.h>
#include <linux/interrupt.h>
#include <linux/kernel.h>
#include <asm/byteorder.h>
@@ -59,6 +59,17 @@
#define AES_EXTENDED_KEY_SIZE 64 /* in uint32_t units */
#define AES_EXTENDED_KEY_SIZE_B (AES_EXTENDED_KEY_SIZE * sizeof(uint32_t))
+/* Control word. */
+struct cword {
+ unsigned int __attribute__ ((__packed__))
+ rounds:4,
+ algo:3,
+ keygen:1,
+ interm:1,
+ encdec:1,
+ ksize:2;
+} __attribute__ ((__aligned__(PADLOCK_ALIGNMENT)));
+
/* Whenever making any changes to the following
* structure *make sure* you keep E, d_data
* and cword aligned on 16 Bytes boundaries!!! */
@@ -286,9 +297,9 @@ aes_hw_extkey_available(uint8_t key_len)
return 0;
}
-static inline struct aes_ctx *aes_ctx(struct crypto_tfm *tfm)
+static inline struct aes_ctx *aes_ctx_common(void *ctx)
{
- unsigned long addr = (unsigned long)crypto_tfm_ctx(tfm);
+ unsigned long addr = (unsigned long)ctx;
unsigned long align = PADLOCK_ALIGNMENT;
if (align <= crypto_tfm_ctx_alignment())
@@ -296,16 +307,27 @@ static inline struct aes_ctx *aes_ctx(struct crypto_tfm *tfm)
return (struct aes_ctx *)ALIGN(addr, align);
}
+static inline struct aes_ctx *aes_ctx(struct crypto_tfm *tfm)
+{
+ return aes_ctx_common(crypto_tfm_ctx(tfm));
+}
+
+static inline struct aes_ctx *blk_aes_ctx(struct crypto_blkcipher *tfm)
+{
+ return aes_ctx_common(crypto_blkcipher_ctx(tfm));
+}
+
static int aes_set_key(struct crypto_tfm *tfm, const u8 *in_key,
- unsigned int key_len, u32 *flags)
+ unsigned int key_len)
{
struct aes_ctx *ctx = aes_ctx(tfm);
const __le32 *key = (const __le32 *)in_key;
+ u32 *flags = &tfm->crt_flags;
uint32_t i, t, u, v, w;
uint32_t P[AES_EXTENDED_KEY_SIZE];
uint32_t rounds;
- if (key_len != 16 && key_len != 24 && key_len != 32) {
+ if (key_len % 8) {
*flags |= CRYPTO_TFM_RES_BAD_KEY_LEN;
return -EINVAL;
}
@@ -430,80 +452,212 @@ static void aes_decrypt(struct crypto_tfm *tfm, u8 *out, const u8 *in)
padlock_xcrypt_ecb(in, out, ctx->D, &ctx->cword.decrypt, 1);
}
-static unsigned int aes_encrypt_ecb(const struct cipher_desc *desc, u8 *out,
- const u8 *in, unsigned int nbytes)
+static struct crypto_alg aes_alg = {
+ .cra_name = "aes",
+ .cra_driver_name = "aes-padlock",
+ .cra_priority = PADLOCK_CRA_PRIORITY,
+ .cra_flags = CRYPTO_ALG_TYPE_CIPHER,
+ .cra_blocksize = AES_BLOCK_SIZE,
+ .cra_ctxsize = sizeof(struct aes_ctx),
+ .cra_alignmask = PADLOCK_ALIGNMENT - 1,
+ .cra_module = THIS_MODULE,
+ .cra_list = LIST_HEAD_INIT(aes_alg.cra_list),
+ .cra_u = {
+ .cipher = {
+ .cia_min_keysize = AES_MIN_KEY_SIZE,
+ .cia_max_keysize = AES_MAX_KEY_SIZE,
+ .cia_setkey = aes_set_key,
+ .cia_encrypt = aes_encrypt,
+ .cia_decrypt = aes_decrypt,
+ }
+ }
+};
+
+static int ecb_aes_encrypt(struct blkcipher_desc *desc,
+ struct scatterlist *dst, struct scatterlist *src,
+ unsigned int nbytes)
{
- struct aes_ctx *ctx = aes_ctx(desc->tfm);
- padlock_xcrypt_ecb(in, out, ctx->E, &ctx->cword.encrypt,
- nbytes / AES_BLOCK_SIZE);
- return nbytes & ~(AES_BLOCK_SIZE - 1);
+ struct aes_ctx *ctx = blk_aes_ctx(desc->tfm);
+ struct blkcipher_walk walk;
+ int err;
+
+ blkcipher_walk_init(&walk, dst, src, nbytes);
+ err = blkcipher_walk_virt(desc, &walk);
+
+ while ((nbytes = walk.nbytes)) {
+ padlock_xcrypt_ecb(walk.src.virt.addr, walk.dst.virt.addr,
+ ctx->E, &ctx->cword.encrypt,
+ nbytes / AES_BLOCK_SIZE);
+ nbytes &= AES_BLOCK_SIZE - 1;
+ err = blkcipher_walk_done(desc, &walk, nbytes);
+ }
+
+ return err;
}
-static unsigned int aes_decrypt_ecb(const struct cipher_desc *desc, u8 *out,
- const u8 *in, unsigned int nbytes)
+static int ecb_aes_decrypt(struct blkcipher_desc *desc,
+ struct scatterlist *dst, struct scatterlist *src,
+ unsigned int nbytes)
{
- struct aes_ctx *ctx = aes_ctx(desc->tfm);
- padlock_xcrypt_ecb(in, out, ctx->D, &ctx->cword.decrypt,
- nbytes / AES_BLOCK_SIZE);
- return nbytes & ~(AES_BLOCK_SIZE - 1);
+ struct aes_ctx *ctx = blk_aes_ctx(desc->tfm);
+ struct blkcipher_walk walk;
+ int err;
+
+ blkcipher_walk_init(&walk, dst, src, nbytes);
+ err = blkcipher_walk_virt(desc, &walk);
+
+ while ((nbytes = walk.nbytes)) {
+ padlock_xcrypt_ecb(walk.src.virt.addr, walk.dst.virt.addr,
+ ctx->D, &ctx->cword.decrypt,
+ nbytes / AES_BLOCK_SIZE);
+ nbytes &= AES_BLOCK_SIZE - 1;
+ err = blkcipher_walk_done(desc, &walk, nbytes);
+ }
+
+ return err;
}
-static unsigned int aes_encrypt_cbc(const struct cipher_desc *desc, u8 *out,
- const u8 *in, unsigned int nbytes)
-{
- struct aes_ctx *ctx = aes_ctx(desc->tfm);
- u8 *iv;
+static struct crypto_alg ecb_aes_alg = {
+ .cra_name = "ecb(aes)",
+ .cra_driver_name = "ecb-aes-padlock",
+ .cra_priority = PADLOCK_COMPOSITE_PRIORITY,
+ .cra_flags = CRYPTO_ALG_TYPE_BLKCIPHER,
+ .cra_blocksize = AES_BLOCK_SIZE,
+ .cra_ctxsize = sizeof(struct aes_ctx),
+ .cra_alignmask = PADLOCK_ALIGNMENT - 1,
+ .cra_type = &crypto_blkcipher_type,
+ .cra_module = THIS_MODULE,
+ .cra_list = LIST_HEAD_INIT(ecb_aes_alg.cra_list),
+ .cra_u = {
+ .blkcipher = {
+ .min_keysize = AES_MIN_KEY_SIZE,
+ .max_keysize = AES_MAX_KEY_SIZE,
+ .setkey = aes_set_key,
+ .encrypt = ecb_aes_encrypt,
+ .decrypt = ecb_aes_decrypt,
+ }
+ }
+};
- iv = padlock_xcrypt_cbc(in, out, ctx->E, desc->info,
- &ctx->cword.encrypt, nbytes / AES_BLOCK_SIZE);
- memcpy(desc->info, iv, AES_BLOCK_SIZE);
+static int cbc_aes_encrypt(struct blkcipher_desc *desc,
+ struct scatterlist *dst, struct scatterlist *src,
+ unsigned int nbytes)
+{
+ struct aes_ctx *ctx = blk_aes_ctx(desc->tfm);
+ struct blkcipher_walk walk;
+ int err;
+
+ blkcipher_walk_init(&walk, dst, src, nbytes);
+ err = blkcipher_walk_virt(desc, &walk);
+
+ while ((nbytes = walk.nbytes)) {
+ u8 *iv = padlock_xcrypt_cbc(walk.src.virt.addr,
+ walk.dst.virt.addr, ctx->E,
+ walk.iv, &ctx->cword.encrypt,
+ nbytes / AES_BLOCK_SIZE);
+ memcpy(walk.iv, iv, AES_BLOCK_SIZE);
+ nbytes &= AES_BLOCK_SIZE - 1;
+ err = blkcipher_walk_done(desc, &walk, nbytes);
+ }
- return nbytes & ~(AES_BLOCK_SIZE - 1);
+ return err;
}
-static unsigned int aes_decrypt_cbc(const struct cipher_desc *desc, u8 *out,
- const u8 *in, unsigned int nbytes)
+static int cbc_aes_decrypt(struct blkcipher_desc *desc,
+ struct scatterlist *dst, struct scatterlist *src,
+ unsigned int nbytes)
{
- struct aes_ctx *ctx = aes_ctx(desc->tfm);
- padlock_xcrypt_cbc(in, out, ctx->D, desc->info, &ctx->cword.decrypt,
- nbytes / AES_BLOCK_SIZE);
- return nbytes & ~(AES_BLOCK_SIZE - 1);
+ struct aes_ctx *ctx = blk_aes_ctx(desc->tfm);
+ struct blkcipher_walk walk;
+ int err;
+
+ blkcipher_walk_init(&walk, dst, src, nbytes);
+ err = blkcipher_walk_virt(desc, &walk);
+
+ while ((nbytes = walk.nbytes)) {
+ padlock_xcrypt_cbc(walk.src.virt.addr, walk.dst.virt.addr,
+ ctx->D, walk.iv, &ctx->cword.decrypt,
+ nbytes / AES_BLOCK_SIZE);
+ nbytes &= AES_BLOCK_SIZE - 1;
+ err = blkcipher_walk_done(desc, &walk, nbytes);
+ }
+
+ return err;
}
-static struct crypto_alg aes_alg = {
- .cra_name = "aes",
- .cra_driver_name = "aes-padlock",
- .cra_priority = 300,
- .cra_flags = CRYPTO_ALG_TYPE_CIPHER,
+static struct crypto_alg cbc_aes_alg = {
+ .cra_name = "cbc(aes)",
+ .cra_driver_name = "cbc-aes-padlock",
+ .cra_priority = PADLOCK_COMPOSITE_PRIORITY,
+ .cra_flags = CRYPTO_ALG_TYPE_BLKCIPHER,
.cra_blocksize = AES_BLOCK_SIZE,
.cra_ctxsize = sizeof(struct aes_ctx),
.cra_alignmask = PADLOCK_ALIGNMENT - 1,
+ .cra_type = &crypto_blkcipher_type,
.cra_module = THIS_MODULE,
- .cra_list = LIST_HEAD_INIT(aes_alg.cra_list),
+ .cra_list = LIST_HEAD_INIT(cbc_aes_alg.cra_list),
.cra_u = {
- .cipher = {
- .cia_min_keysize = AES_MIN_KEY_SIZE,
- .cia_max_keysize = AES_MAX_KEY_SIZE,
- .cia_setkey = aes_set_key,
- .cia_encrypt = aes_encrypt,
- .cia_decrypt = aes_decrypt,
- .cia_encrypt_ecb = aes_encrypt_ecb,
- .cia_decrypt_ecb = aes_decrypt_ecb,
- .cia_encrypt_cbc = aes_encrypt_cbc,
- .cia_decrypt_cbc = aes_decrypt_cbc,
+ .blkcipher = {
+ .min_keysize = AES_MIN_KEY_SIZE,
+ .max_keysize = AES_MAX_KEY_SIZE,
+ .ivsize = AES_BLOCK_SIZE,
+ .setkey = aes_set_key,
+ .encrypt = cbc_aes_encrypt,
+ .decrypt = cbc_aes_decrypt,
}
}
};
-int __init padlock_init_aes(void)
+static int __init padlock_init(void)
{
- printk(KERN_NOTICE PFX "Using VIA PadLock ACE for AES algorithm.\n");
+ int ret;
+
+ if (!cpu_has_xcrypt) {
+ printk(KERN_ERR PFX "VIA PadLock not detected.\n");
+ return -ENODEV;
+ }
+
+ if (!cpu_has_xcrypt_enabled) {
+ printk(KERN_ERR PFX "VIA PadLock detected, but not enabled. Hmm, strange...\n");
+ return -ENODEV;
+ }
gen_tabs();
- return crypto_register_alg(&aes_alg);
+ if ((ret = crypto_register_alg(&aes_alg)))
+ goto aes_err;
+
+ if ((ret = crypto_register_alg(&ecb_aes_alg)))
+ goto ecb_aes_err;
+
+ if ((ret = crypto_register_alg(&cbc_aes_alg)))
+ goto cbc_aes_err;
+
+ printk(KERN_NOTICE PFX "Using VIA PadLock ACE for AES algorithm.\n");
+
+out:
+ return ret;
+
+cbc_aes_err:
+ crypto_unregister_alg(&ecb_aes_alg);
+ecb_aes_err:
+ crypto_unregister_alg(&aes_alg);
+aes_err:
+ printk(KERN_ERR PFX "VIA PadLock AES initialization failed.\n");
+ goto out;
}
-void __exit padlock_fini_aes(void)
+static void __exit padlock_fini(void)
{
+ crypto_unregister_alg(&cbc_aes_alg);
+ crypto_unregister_alg(&ecb_aes_alg);
crypto_unregister_alg(&aes_alg);
}
+
+module_init(padlock_init);
+module_exit(padlock_fini);
+
+MODULE_DESCRIPTION("VIA PadLock AES algorithm support");
+MODULE_LICENSE("GPL");
+MODULE_AUTHOR("Michal Ludvig");
+
+MODULE_ALIAS("aes-padlock");
diff --git a/drivers/crypto/padlock-generic.c b/drivers/crypto/padlock-generic.c
deleted file mode 100644
index 18cf0e8274a..00000000000
--- a/drivers/crypto/padlock-generic.c
+++ /dev/null
@@ -1,63 +0,0 @@
-/*
- * Cryptographic API.
- *
- * Support for VIA PadLock hardware crypto engine.
- *
- * Copyright (c) 2004 Michal Ludvig <michal@logix.cz>
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License as published by
- * the Free Software Foundation; either version 2 of the License, or
- * (at your option) any later version.
- */
-
-#include <linux/module.h>
-#include <linux/init.h>
-#include <linux/types.h>
-#include <linux/errno.h>
-#include <linux/crypto.h>
-#include <asm/byteorder.h>
-#include "padlock.h"
-
-static int __init
-padlock_init(void)
-{
- int ret = -ENOSYS;
-
- if (!cpu_has_xcrypt) {
- printk(KERN_ERR PFX "VIA PadLock not detected.\n");
- return -ENODEV;
- }
-
- if (!cpu_has_xcrypt_enabled) {
- printk(KERN_ERR PFX "VIA PadLock detected, but not enabled. Hmm, strange...\n");
- return -ENODEV;
- }
-
-#ifdef CONFIG_CRYPTO_DEV_PADLOCK_AES
- if ((ret = padlock_init_aes())) {
- printk(KERN_ERR PFX "VIA PadLock AES initialization failed.\n");
- return ret;
- }
-#endif
-
- if (ret == -ENOSYS)
- printk(KERN_ERR PFX "Hmm, VIA PadLock was compiled without any algorithm.\n");
-
- return ret;
-}
-
-static void __exit
-padlock_fini(void)
-{
-#ifdef CONFIG_CRYPTO_DEV_PADLOCK_AES
- padlock_fini_aes();
-#endif
-}
-
-module_init(padlock_init);
-module_exit(padlock_fini);
-
-MODULE_DESCRIPTION("VIA PadLock crypto engine support.");
-MODULE_LICENSE("Dual BSD/GPL");
-MODULE_AUTHOR("Michal Ludvig");
diff --git a/drivers/crypto/padlock-sha.c b/drivers/crypto/padlock-sha.c
new file mode 100644
index 00000000000..a781fd23b60
--- /dev/null
+++ b/drivers/crypto/padlock-sha.c
@@ -0,0 +1,318 @@
+/*
+ * Cryptographic API.
+ *
+ * Support for VIA PadLock hardware crypto engine.
+ *
+ * Copyright (c) 2006 Michal Ludvig <michal@logix.cz>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ */
+
+#include <crypto/algapi.h>
+#include <linux/err.h>
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/errno.h>
+#include <linux/cryptohash.h>
+#include <linux/interrupt.h>
+#include <linux/kernel.h>
+#include <linux/scatterlist.h>
+#include "padlock.h"
+
+#define SHA1_DEFAULT_FALLBACK "sha1-generic"
+#define SHA1_DIGEST_SIZE 20
+#define SHA1_HMAC_BLOCK_SIZE 64
+
+#define SHA256_DEFAULT_FALLBACK "sha256-generic"
+#define SHA256_DIGEST_SIZE 32
+#define SHA256_HMAC_BLOCK_SIZE 64
+
+struct padlock_sha_ctx {
+ char *data;
+ size_t used;
+ int bypass;
+ void (*f_sha_padlock)(const char *in, char *out, int count);
+ struct hash_desc fallback;
+};
+
+static inline struct padlock_sha_ctx *ctx(struct crypto_tfm *tfm)
+{
+ return crypto_tfm_ctx(tfm);
+}
+
+/* We'll need aligned address on the stack */
+#define NEAREST_ALIGNED(ptr) \
+ ((void *)ALIGN((size_t)(ptr), PADLOCK_ALIGNMENT))
+
+static struct crypto_alg sha1_alg, sha256_alg;
+
+static void padlock_sha_bypass(struct crypto_tfm *tfm)
+{
+ if (ctx(tfm)->bypass)
+ return;
+
+ crypto_hash_init(&ctx(tfm)->fallback);
+ if (ctx(tfm)->data && ctx(tfm)->used) {
+ struct scatterlist sg;
+
+ sg_set_buf(&sg, ctx(tfm)->data, ctx(tfm)->used);
+ crypto_hash_update(&ctx(tfm)->fallback, &sg, sg.length);
+ }
+
+ ctx(tfm)->used = 0;
+ ctx(tfm)->bypass = 1;
+}
+
+static void padlock_sha_init(struct crypto_tfm *tfm)
+{
+ ctx(tfm)->used = 0;
+ ctx(tfm)->bypass = 0;
+}
+
+static void padlock_sha_update(struct crypto_tfm *tfm,
+ const uint8_t *data, unsigned int length)
+{
+ /* Our buffer is always one page. */
+ if (unlikely(!ctx(tfm)->bypass &&
+ (ctx(tfm)->used + length > PAGE_SIZE)))
+ padlock_sha_bypass(tfm);
+
+ if (unlikely(ctx(tfm)->bypass)) {
+ struct scatterlist sg;
+ sg_set_buf(&sg, (uint8_t *)data, length);
+ crypto_hash_update(&ctx(tfm)->fallback, &sg, length);
+ return;
+ }
+
+ memcpy(ctx(tfm)->data + ctx(tfm)->used, data, length);
+ ctx(tfm)->used += length;
+}
+
+static inline void padlock_output_block(uint32_t *src,
+ uint32_t *dst, size_t count)
+{
+ while (count--)
+ *dst++ = swab32(*src++);
+}
+
+static void padlock_do_sha1(const char *in, char *out, int count)
+{
+ /* We can't store directly to *out as it may be unaligned. */
+ /* BTW Don't reduce the buffer size below 128 Bytes!
+ * PadLock microcode needs it that big. */
+ char buf[128+16];
+ char *result = NEAREST_ALIGNED(buf);
+
+ ((uint32_t *)result)[0] = 0x67452301;
+ ((uint32_t *)result)[1] = 0xEFCDAB89;
+ ((uint32_t *)result)[2] = 0x98BADCFE;
+ ((uint32_t *)result)[3] = 0x10325476;
+ ((uint32_t *)result)[4] = 0xC3D2E1F0;
+
+ asm volatile (".byte 0xf3,0x0f,0xa6,0xc8" /* rep xsha1 */
+ : "+S"(in), "+D"(result)
+ : "c"(count), "a"(0));
+
+ padlock_output_block((uint32_t *)result, (uint32_t *)out, 5);
+}
+
+static void padlock_do_sha256(const char *in, char *out, int count)
+{
+ /* We can't store directly to *out as it may be unaligned. */
+ /* BTW Don't reduce the buffer size below 128 Bytes!
+ * PadLock microcode needs it that big. */
+ char buf[128+16];
+ char *result = NEAREST_ALIGNED(buf);
+
+ ((uint32_t *)result)[0] = 0x6A09E667;
+ ((uint32_t *)result)[1] = 0xBB67AE85;
+ ((uint32_t *)result)[2] = 0x3C6EF372;
+ ((uint32_t *)result)[3] = 0xA54FF53A;
+ ((uint32_t *)result)[4] = 0x510E527F;
+ ((uint32_t *)result)[5] = 0x9B05688C;
+ ((uint32_t *)result)[6] = 0x1F83D9AB;
+ ((uint32_t *)result)[7] = 0x5BE0CD19;
+
+ asm volatile (".byte 0xf3,0x0f,0xa6,0xd0" /* rep xsha256 */
+ : "+S"(in), "+D"(result)
+ : "c"(count), "a"(0));
+
+ padlock_output_block((uint32_t *)result, (uint32_t *)out, 8);
+}
+
+static void padlock_sha_final(struct crypto_tfm *tfm, uint8_t *out)
+{
+ if (unlikely(ctx(tfm)->bypass)) {
+ crypto_hash_final(&ctx(tfm)->fallback, out);
+ ctx(tfm)->bypass = 0;
+ return;
+ }
+
+ /* Pass the input buffer to PadLock microcode... */
+ ctx(tfm)->f_sha_padlock(ctx(tfm)->data, out, ctx(tfm)->used);
+
+ ctx(tfm)->used = 0;
+}
+
+static int padlock_cra_init(struct crypto_tfm *tfm)
+{
+ const char *fallback_driver_name = tfm->__crt_alg->cra_name;
+ struct crypto_hash *fallback_tfm;
+
+ /* For now we'll allocate one page. This
+ * could eventually be configurable one day. */
+ ctx(tfm)->data = (char *)__get_free_page(GFP_KERNEL);
+ if (!ctx(tfm)->data)
+ return -ENOMEM;
+
+ /* Allocate a fallback and abort if it failed. */
+ fallback_tfm = crypto_alloc_hash(fallback_driver_name, 0,
+ CRYPTO_ALG_ASYNC |
+ CRYPTO_ALG_NEED_FALLBACK);
+ if (IS_ERR(fallback_tfm)) {
+ printk(KERN_WARNING PFX "Fallback driver '%s' could not be loaded!\n",
+ fallback_driver_name);
+ free_page((unsigned long)(ctx(tfm)->data));
+ return PTR_ERR(fallback_tfm);
+ }
+
+ ctx(tfm)->fallback.tfm = fallback_tfm;
+ return 0;
+}
+
+static int padlock_sha1_cra_init(struct crypto_tfm *tfm)
+{
+ ctx(tfm)->f_sha_padlock = padlock_do_sha1;
+
+ return padlock_cra_init(tfm);
+}
+
+static int padlock_sha256_cra_init(struct crypto_tfm *tfm)
+{
+ ctx(tfm)->f_sha_padlock = padlock_do_sha256;
+
+ return padlock_cra_init(tfm);
+}
+
+static void padlock_cra_exit(struct crypto_tfm *tfm)
+{
+ if (ctx(tfm)->data) {
+ free_page((unsigned long)(ctx(tfm)->data));
+ ctx(tfm)->data = NULL;
+ }
+
+ crypto_free_hash(ctx(tfm)->fallback.tfm);
+ ctx(tfm)->fallback.tfm = NULL;
+}
+
+static struct crypto_alg sha1_alg = {
+ .cra_name = "sha1",
+ .cra_driver_name = "sha1-padlock",
+ .cra_priority = PADLOCK_CRA_PRIORITY,
+ .cra_flags = CRYPTO_ALG_TYPE_DIGEST |
+ CRYPTO_ALG_NEED_FALLBACK,
+ .cra_blocksize = SHA1_HMAC_BLOCK_SIZE,
+ .cra_ctxsize = sizeof(struct padlock_sha_ctx),
+ .cra_module = THIS_MODULE,
+ .cra_list = LIST_HEAD_INIT(sha1_alg.cra_list),
+ .cra_init = padlock_sha1_cra_init,
+ .cra_exit = padlock_cra_exit,
+ .cra_u = {
+ .digest = {
+ .dia_digestsize = SHA1_DIGEST_SIZE,
+ .dia_init = padlock_sha_init,
+ .dia_update = padlock_sha_update,
+ .dia_final = padlock_sha_final,
+ }
+ }
+};
+
+static struct crypto_alg sha256_alg = {
+ .cra_name = "sha256",
+ .cra_driver_name = "sha256-padlock",
+ .cra_priority = PADLOCK_CRA_PRIORITY,
+ .cra_flags = CRYPTO_ALG_TYPE_DIGEST |
+ CRYPTO_ALG_NEED_FALLBACK,
+ .cra_blocksize = SHA256_HMAC_BLOCK_SIZE,
+ .cra_ctxsize = sizeof(struct padlock_sha_ctx),
+ .cra_module = THIS_MODULE,
+ .cra_list = LIST_HEAD_INIT(sha256_alg.cra_list),
+ .cra_init = padlock_sha256_cra_init,
+ .cra_exit = padlock_cra_exit,
+ .cra_u = {
+ .digest = {
+ .dia_digestsize = SHA256_DIGEST_SIZE,
+ .dia_init = padlock_sha_init,
+ .dia_update = padlock_sha_update,
+ .dia_final = padlock_sha_final,
+ }
+ }
+};
+
+static void __init padlock_sha_check_fallbacks(void)
+{
+ if (!crypto_has_hash("sha1", 0, CRYPTO_ALG_ASYNC |
+ CRYPTO_ALG_NEED_FALLBACK))
+ printk(KERN_WARNING PFX
+ "Couldn't load fallback module for sha1.\n");
+
+ if (!crypto_has_hash("sha256", 0, CRYPTO_ALG_ASYNC |
+ CRYPTO_ALG_NEED_FALLBACK))
+ printk(KERN_WARNING PFX
+ "Couldn't load fallback module for sha256.\n");
+}
+
+static int __init padlock_init(void)
+{
+ int rc = -ENODEV;
+
+ if (!cpu_has_phe) {
+ printk(KERN_ERR PFX "VIA PadLock Hash Engine not detected.\n");
+ return -ENODEV;
+ }
+
+ if (!cpu_has_phe_enabled) {
+ printk(KERN_ERR PFX "VIA PadLock detected, but not enabled. Hmm, strange...\n");
+ return -ENODEV;
+ }
+
+ padlock_sha_check_fallbacks();
+
+ rc = crypto_register_alg(&sha1_alg);
+ if (rc)
+ goto out;
+
+ rc = crypto_register_alg(&sha256_alg);
+ if (rc)
+ goto out_unreg1;
+
+ printk(KERN_NOTICE PFX "Using VIA PadLock ACE for SHA1/SHA256 algorithms.\n");
+
+ return 0;
+
+out_unreg1:
+ crypto_unregister_alg(&sha1_alg);
+out:
+ printk(KERN_ERR PFX "VIA PadLock SHA1/SHA256 initialization failed.\n");
+ return rc;
+}
+
+static void __exit padlock_fini(void)
+{
+ crypto_unregister_alg(&sha1_alg);
+ crypto_unregister_alg(&sha256_alg);
+}
+
+module_init(padlock_init);
+module_exit(padlock_fini);
+
+MODULE_DESCRIPTION("VIA PadLock SHA1/SHA256 algorithms support.");
+MODULE_LICENSE("GPL");
+MODULE_AUTHOR("Michal Ludvig");
+
+MODULE_ALIAS("sha1-padlock");
+MODULE_ALIAS("sha256-padlock");
diff --git a/drivers/crypto/padlock.c b/drivers/crypto/padlock.c
new file mode 100644
index 00000000000..d6d7dd5bb98
--- /dev/null
+++ b/drivers/crypto/padlock.c
@@ -0,0 +1,58 @@
+/*
+ * Cryptographic API.
+ *
+ * Support for VIA PadLock hardware crypto engine.
+ *
+ * Copyright (c) 2006 Michal Ludvig <michal@logix.cz>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/errno.h>
+#include <linux/crypto.h>
+#include <linux/cryptohash.h>
+#include <linux/interrupt.h>
+#include <linux/kernel.h>
+#include <linux/scatterlist.h>
+#include "padlock.h"
+
+static int __init padlock_init(void)
+{
+ int success = 0;
+
+ if (crypto_has_cipher("aes-padlock", 0, 0))
+ success++;
+
+ if (crypto_has_hash("sha1-padlock", 0, 0))
+ success++;
+
+ if (crypto_has_hash("sha256-padlock", 0, 0))
+ success++;
+
+ if (!success) {
+ printk(KERN_WARNING PFX "No VIA PadLock drivers have been loaded.\n");
+ return -ENODEV;
+ }
+
+ printk(KERN_NOTICE PFX "%d drivers are available.\n", success);
+
+ return 0;
+}
+
+static void __exit padlock_fini(void)
+{
+}
+
+module_init(padlock_init);
+module_exit(padlock_fini);
+
+MODULE_DESCRIPTION("Load all configured PadLock algorithms.");
+MODULE_LICENSE("GPL");
+MODULE_AUTHOR("Michal Ludvig");
+
diff --git a/drivers/crypto/padlock.h b/drivers/crypto/padlock.h
index b78489bc298..b728e4518bd 100644
--- a/drivers/crypto/padlock.h
+++ b/drivers/crypto/padlock.h
@@ -15,22 +15,9 @@
#define PADLOCK_ALIGNMENT 16
-/* Control word. */
-struct cword {
- unsigned int __attribute__ ((__packed__))
- rounds:4,
- algo:3,
- keygen:1,
- interm:1,
- encdec:1,
- ksize:2;
-} __attribute__ ((__aligned__(PADLOCK_ALIGNMENT)));
-
#define PFX "padlock: "
-#ifdef CONFIG_CRYPTO_DEV_PADLOCK_AES
-int padlock_init_aes(void);
-void padlock_fini_aes(void);
-#endif
+#define PADLOCK_CRA_PRIORITY 300
+#define PADLOCK_COMPOSITE_PRIORITY 400
#endif /* _CRYPTO_PADLOCK_H */
diff --git a/drivers/i2c/busses/i2c-powermac.c b/drivers/i2c/busses/i2c-powermac.c
index 53bb4359386..d658d910795 100644
--- a/drivers/i2c/busses/i2c-powermac.c
+++ b/drivers/i2c/busses/i2c-powermac.c
@@ -207,7 +207,8 @@ static int i2c_powermac_probe(struct device *dev)
struct pmac_i2c_bus *bus = dev->platform_data;
struct device_node *parent = NULL;
struct i2c_adapter *adapter;
- char name[32], *basename;
+ char name[32];
+ const char *basename;
int rc;
if (bus == NULL)
diff --git a/drivers/ide/ppc/pmac.c b/drivers/ide/ppc/pmac.c
index ebf961f1718..996c694341b 100644
--- a/drivers/ide/ppc/pmac.c
+++ b/drivers/ide/ppc/pmac.c
@@ -1154,7 +1154,7 @@ static int
pmac_ide_setup_device(pmac_ide_hwif_t *pmif, ide_hwif_t *hwif)
{
struct device_node *np = pmif->node;
- int *bidp;
+ const int *bidp;
pmif->cable_80 = 0;
pmif->broken_dma = pmif->broken_dma_warn = 0;
@@ -1176,14 +1176,14 @@ pmac_ide_setup_device(pmac_ide_hwif_t *pmif, ide_hwif_t *hwif)
pmif->broken_dma = 1;
}
- bidp = (int *)get_property(np, "AAPL,bus-id", NULL);
+ bidp = get_property(np, "AAPL,bus-id", NULL);
pmif->aapl_bus_id = bidp ? *bidp : 0;
/* Get cable type from device-tree */
if (pmif->kind == controller_kl_ata4 || pmif->kind == controller_un_ata6
|| pmif->kind == controller_k2_ata6
|| pmif->kind == controller_sh_ata6) {
- char* cable = get_property(np, "cable-type", NULL);
+ const char* cable = get_property(np, "cable-type", NULL);
if (cable && !strncmp(cable, "80-", 3))
pmif->cable_80 = 1;
}
@@ -1326,7 +1326,7 @@ pmac_ide_macio_attach(struct macio_dev *mdev, const struct of_device_id *match)
if (macio_irq_count(mdev) == 0) {
printk(KERN_WARNING "ide%d: no intrs for device %s, using 13\n",
i, mdev->ofdev.node->full_name);
- irq = 13;
+ irq = irq_create_mapping(NULL, 13);
} else
irq = macio_irq(mdev, 0);
diff --git a/drivers/macintosh/macio_asic.c b/drivers/macintosh/macio_asic.c
index 82657bc86d1..d5621606754 100644
--- a/drivers/macintosh/macio_asic.c
+++ b/drivers/macintosh/macio_asic.c
@@ -139,7 +139,9 @@ static int macio_uevent(struct device *dev, char **envp, int num_envp,
{
struct macio_dev * macio_dev;
struct of_device * of;
- char *scratch, *compat, *compat2;
+ char *scratch;
+ const char *compat, *compat2;
+
int i = 0;
int length, cplen, cplen2, seen = 0;
@@ -173,7 +175,7 @@ static int macio_uevent(struct device *dev, char **envp, int num_envp,
* it's not really legal to split it out with commas. We split it
* up using a number of environment variables instead. */
- compat = (char *) get_property(of->node, "compatible", &cplen);
+ compat = get_property(of->node, "compatible", &cplen);
compat2 = compat;
cplen2= cplen;
while (compat && cplen > 0) {
@@ -454,7 +456,7 @@ static struct macio_dev * macio_add_one_device(struct macio_chip *chip,
struct resource *parent_res)
{
struct macio_dev *dev;
- u32 *reg;
+ const u32 *reg;
if (np == NULL)
return NULL;
@@ -489,7 +491,7 @@ static struct macio_dev * macio_add_one_device(struct macio_chip *chip,
#endif
MAX_NODE_NAME_SIZE, np->name);
} else {
- reg = (u32 *)get_property(np, "reg", NULL);
+ reg = get_property(np, "reg", NULL);
sprintf(dev->ofdev.dev.bus_id, "%1d.%08x:%.*s",
chip->lbus.index,
reg ? *reg : 0, MAX_NODE_NAME_SIZE, np->name);
diff --git a/drivers/macintosh/macio_sysfs.c b/drivers/macintosh/macio_sysfs.c
index cae24a13526..8566bdfdd4b 100644
--- a/drivers/macintosh/macio_sysfs.c
+++ b/drivers/macintosh/macio_sysfs.c
@@ -16,12 +16,12 @@ static ssize_t
compatible_show (struct device *dev, struct device_attribute *attr, char *buf)
{
struct of_device *of;
- char *compat;
+ const char *compat;
int cplen;
int length = 0;
of = &to_macio_device (dev)->ofdev;
- compat = (char *) get_property(of->node, "compatible", &cplen);
+ compat = get_property(of->node, "compatible", &cplen);
if (!compat) {
*buf = '\0';
return 0;
@@ -42,12 +42,12 @@ static ssize_t modalias_show (struct device *dev, struct device_attribute *attr,
char *buf)
{
struct of_device *of;
- char *compat;
+ const char *compat;
int cplen;
int length;
of = &to_macio_device (dev)->ofdev;
- compat = (char *) get_property (of->node, "compatible", &cplen);
+ compat = get_property(of->node, "compatible", &cplen);
if (!compat) compat = "", cplen = 1;
length = sprintf (buf, "of:N%sT%s", of->node->name, of->node->type);
buf += length;
diff --git a/drivers/macintosh/smu.c b/drivers/macintosh/smu.c
index 00ef4689814..090e40fc501 100644
--- a/drivers/macintosh/smu.c
+++ b/drivers/macintosh/smu.c
@@ -454,7 +454,7 @@ EXPORT_SYMBOL(smu_present);
int __init smu_init (void)
{
struct device_node *np;
- u32 *data;
+ const u32 *data;
np = of_find_node_by_type(NULL, "smu");
if (np == NULL)
@@ -490,7 +490,7 @@ int __init smu_init (void)
printk(KERN_ERR "SMU: Can't find doorbell GPIO !\n");
goto fail;
}
- data = (u32 *)get_property(smu->db_node, "reg", NULL);
+ data = get_property(smu->db_node, "reg", NULL);
if (data == NULL) {
of_node_put(smu->db_node);
smu->db_node = NULL;
@@ -511,7 +511,7 @@ int __init smu_init (void)
smu->msg_node = of_find_node_by_name(NULL, "smu-interrupt");
if (smu->msg_node == NULL)
break;
- data = (u32 *)get_property(smu->msg_node, "reg", NULL);
+ data = get_property(smu->msg_node, "reg", NULL);
if (data == NULL) {
of_node_put(smu->msg_node);
smu->msg_node = NULL;
@@ -982,11 +982,11 @@ static struct smu_sdbp_header *smu_create_sdb_partition(int id)
/* Note: Only allowed to return error code in pointers (using ERR_PTR)
* when interruptible is 1
*/
-struct smu_sdbp_header *__smu_get_sdb_partition(int id, unsigned int *size,
- int interruptible)
+const struct smu_sdbp_header *__smu_get_sdb_partition(int id,
+ unsigned int *size, int interruptible)
{
char pname[32];
- struct smu_sdbp_header *part;
+ const struct smu_sdbp_header *part;
if (!smu)
return NULL;
@@ -1003,8 +1003,7 @@ struct smu_sdbp_header *__smu_get_sdb_partition(int id, unsigned int *size,
} else
mutex_lock(&smu_part_access);
- part = (struct smu_sdbp_header *)get_property(smu->of_node,
- pname, size);
+ part = get_property(smu->of_node, pname, size);
if (part == NULL) {
DPRINTK("trying to extract from SMU ...\n");
part = smu_create_sdb_partition(id);
@@ -1015,7 +1014,7 @@ struct smu_sdbp_header *__smu_get_sdb_partition(int id, unsigned int *size,
return part;
}
-struct smu_sdbp_header *smu_get_sdb_partition(int id, unsigned int *size)
+const struct smu_sdbp_header *smu_get_sdb_partition(int id, unsigned int *size)
{
return __smu_get_sdb_partition(id, size, 0);
}
@@ -1094,7 +1093,7 @@ static ssize_t smu_write(struct file *file, const char __user *buf,
pp->mode = smu_file_events;
return 0;
} else if (hdr.cmdtype == SMU_CMDTYPE_GET_PARTITION) {
- struct smu_sdbp_header *part;
+ const struct smu_sdbp_header *part;
part = __smu_get_sdb_partition(hdr.cmd, NULL, 1);
if (part == NULL)
return -EINVAL;
diff --git a/drivers/macintosh/therm_adt746x.c b/drivers/macintosh/therm_adt746x.c
index 7f86478bdd3..a0f30d0853e 100644
--- a/drivers/macintosh/therm_adt746x.c
+++ b/drivers/macintosh/therm_adt746x.c
@@ -47,7 +47,7 @@ static u8 FAN_SPD_SET[2] = {0x30, 0x31};
static u8 default_limits_local[3] = {70, 50, 70}; /* local, sensor1, sensor2 */
static u8 default_limits_chip[3] = {80, 65, 80}; /* local, sensor1, sensor2 */
-static char *sensor_location[3] = {NULL, NULL, NULL};
+static const char *sensor_location[3] = {NULL, NULL, NULL};
static int limit_adjust = 0;
static int fan_speed = -1;
@@ -553,7 +553,7 @@ static int __init
thermostat_init(void)
{
struct device_node* np;
- u32 *prop;
+ const u32 *prop;
int i = 0, offset = 0;
np = of_find_node_by_name(NULL, "fan");
@@ -566,13 +566,13 @@ thermostat_init(void)
else
return -ENODEV;
- prop = (u32 *)get_property(np, "hwsensor-params-version", NULL);
+ prop = get_property(np, "hwsensor-params-version", NULL);
printk(KERN_INFO "adt746x: version %d (%ssupported)\n", *prop,
(*prop == 1)?"":"un");
if (*prop != 1)
return -ENODEV;
- prop = (u32 *)get_property(np, "reg", NULL);
+ prop = get_property(np, "reg", NULL);
if (!prop)
return -ENODEV;
diff --git a/drivers/macintosh/therm_pm72.c b/drivers/macintosh/therm_pm72.c
index 20bf67244e2..d00c0c37a12 100644
--- a/drivers/macintosh/therm_pm72.c
+++ b/drivers/macintosh/therm_pm72.c
@@ -660,7 +660,7 @@ static int read_eeprom(int cpu, struct mpu_data *out)
{
struct device_node *np;
char nodename[64];
- u8 *data;
+ const u8 *data;
int len;
/* prom.c routine for finding a node by path is a bit brain dead
@@ -673,7 +673,7 @@ static int read_eeprom(int cpu, struct mpu_data *out)
printk(KERN_ERR "therm_pm72: Failed to retrieve cpuid node from device-tree\n");
return -ENODEV;
}
- data = (u8 *)get_property(np, "cpuid", &len);
+ data = get_property(np, "cpuid", &len);
if (data == NULL) {
printk(KERN_ERR "therm_pm72: Failed to retrieve cpuid property from device-tree\n");
of_node_put(np);
@@ -1336,7 +1336,7 @@ static int init_backside_state(struct backside_pid_state *state)
*/
u3 = of_find_node_by_path("/u3@0,f8000000");
if (u3 != NULL) {
- u32 *vers = (u32 *)get_property(u3, "device-rev", NULL);
+ const u32 *vers = get_property(u3, "device-rev", NULL);
if (vers)
if (((*vers) & 0x3f) < 0x34)
u3h = 0;
@@ -2111,8 +2111,8 @@ static void fcu_lookup_fans(struct device_node *fcu_node)
while ((np = of_get_next_child(fcu_node, np)) != NULL) {
int type = -1;
- char *loc;
- u32 *reg;
+ const char *loc;
+ const u32 *reg;
DBG(" control: %s, type: %s\n", np->name, np->type);
@@ -2128,8 +2128,8 @@ static void fcu_lookup_fans(struct device_node *fcu_node)
continue;
/* Lookup for a matching location */
- loc = (char *)get_property(np, "location", NULL);
- reg = (u32 *)get_property(np, "reg", NULL);
+ loc = get_property(np, "location", NULL);
+ reg = get_property(np, "reg", NULL);
if (loc == NULL || reg == NULL)
continue;
DBG(" matching location: %s, reg: 0x%08x\n", loc, *reg);
diff --git a/drivers/macintosh/therm_windtunnel.c b/drivers/macintosh/therm_windtunnel.c
index c7d1c290cb0..738faab1b22 100644
--- a/drivers/macintosh/therm_windtunnel.c
+++ b/drivers/macintosh/therm_windtunnel.c
@@ -484,14 +484,14 @@ struct apple_thermal_info {
static int __init
g4fan_init( void )
{
- struct apple_thermal_info *info;
+ const struct apple_thermal_info *info;
struct device_node *np;
init_MUTEX( &x.lock );
if( !(np=of_find_node_by_name(NULL, "power-mgt")) )
return -ENODEV;
- info = (struct apple_thermal_info*)get_property(np, "thermal-info", NULL);
+ info = get_property(np, "thermal-info", NULL);
of_node_put(np);
if( !info || !machine_is_compatible("PowerMac3,6") )
diff --git a/drivers/macintosh/via-cuda.c b/drivers/macintosh/via-cuda.c
index 69d5452fd22..7512d1c1520 100644
--- a/drivers/macintosh/via-cuda.c
+++ b/drivers/macintosh/via-cuda.c
@@ -123,7 +123,7 @@ int __init find_via_cuda(void)
{
struct adb_request req;
phys_addr_t taddr;
- u32 *reg;
+ const u32 *reg;
int err;
if (vias != 0)
@@ -132,7 +132,7 @@ int __init find_via_cuda(void)
if (vias == 0)
return 0;
- reg = (u32 *)get_property(vias, "reg", NULL);
+ reg = get_property(vias, "reg", NULL);
if (reg == NULL) {
printk(KERN_ERR "via-cuda: No \"reg\" property !\n");
goto fail;
diff --git a/drivers/macintosh/via-pmu-led.c b/drivers/macintosh/via-pmu-led.c
index 5189d5454b1..179af10105d 100644
--- a/drivers/macintosh/via-pmu-led.c
+++ b/drivers/macintosh/via-pmu-led.c
@@ -120,7 +120,7 @@ static int __init via_pmu_led_init(void)
dt = of_find_node_by_path("/");
if (dt == NULL)
return -ENODEV;
- model = (const char *)get_property(dt, "model", NULL);
+ model = get_property(dt, "model", NULL);
if (model == NULL)
return -ENODEV;
if (strncmp(model, "PowerBook", strlen("PowerBook")) != 0 &&
diff --git a/drivers/macintosh/via-pmu.c b/drivers/macintosh/via-pmu.c
index 14610a63f58..dda03985dcf 100644
--- a/drivers/macintosh/via-pmu.c
+++ b/drivers/macintosh/via-pmu.c
@@ -280,7 +280,7 @@ static char *pbook_type[] = {
int __init find_via_pmu(void)
{
u64 taddr;
- u32 *reg;
+ const u32 *reg;
if (via != 0)
return 1;
@@ -288,7 +288,7 @@ int __init find_via_pmu(void)
if (vias == NULL)
return 0;
- reg = (u32 *)get_property(vias, "reg", NULL);
+ reg = get_property(vias, "reg", NULL);
if (reg == NULL) {
printk(KERN_ERR "via-pmu: No \"reg\" property !\n");
goto fail;
@@ -330,7 +330,7 @@ int __init find_via_pmu(void)
gpiop = of_find_node_by_name(NULL, "gpio");
if (gpiop) {
- reg = (u32 *)get_property(gpiop, "reg", NULL);
+ reg = get_property(gpiop, "reg", NULL);
if (reg)
gaddr = of_translate_address(gpiop, reg);
if (gaddr != OF_BAD_ADDR)
@@ -479,9 +479,9 @@ static int __init via_pmu_dev_init(void)
pmu_batteries[1].flags |= PMU_BATT_TYPE_SMART;
} else {
struct device_node* prim = find_devices("power-mgt");
- u32 *prim_info = NULL;
+ const u32 *prim_info = NULL;
if (prim)
- prim_info = (u32 *)get_property(prim, "prim-info", NULL);
+ prim_info = get_property(prim, "prim-info", NULL);
if (prim_info) {
/* Other stuffs here yet unknown */
pmu_battery_count = (prim_info[6] >> 16) & 0xff;
diff --git a/drivers/macintosh/windfarm_pm81.c b/drivers/macintosh/windfarm_pm81.c
index f1df6efcbe6..2ff546e4c92 100644
--- a/drivers/macintosh/windfarm_pm81.c
+++ b/drivers/macintosh/windfarm_pm81.c
@@ -396,7 +396,7 @@ static void wf_smu_sys_fans_tick(struct wf_smu_sys_fans_state *st)
static void wf_smu_create_cpu_fans(void)
{
struct wf_cpu_pid_param pid_param;
- struct smu_sdbp_header *hdr;
+ const struct smu_sdbp_header *hdr;
struct smu_sdbp_cpupiddata *piddata;
struct smu_sdbp_fvt *fvt;
s32 tmax, tdelta, maxpow, powadj;
@@ -702,7 +702,7 @@ static struct notifier_block wf_smu_events = {
static int wf_init_pm(void)
{
- struct smu_sdbp_header *hdr;
+ const struct smu_sdbp_header *hdr;
hdr = smu_get_sdb_partition(SMU_SDB_SENSORTREE_ID, NULL);
if (hdr != 0) {
diff --git a/drivers/macintosh/windfarm_pm91.c b/drivers/macintosh/windfarm_pm91.c
index 0d6372e96d3..59e9ffe37c3 100644
--- a/drivers/macintosh/windfarm_pm91.c
+++ b/drivers/macintosh/windfarm_pm91.c
@@ -144,7 +144,7 @@ static struct wf_smu_slots_fans_state *wf_smu_slots_fans;
static void wf_smu_create_cpu_fans(void)
{
struct wf_cpu_pid_param pid_param;
- struct smu_sdbp_header *hdr;
+ const struct smu_sdbp_header *hdr;
struct smu_sdbp_cpupiddata *piddata;
struct smu_sdbp_fvt *fvt;
s32 tmax, tdelta, maxpow, powadj;
diff --git a/drivers/macintosh/windfarm_smu_controls.c b/drivers/macintosh/windfarm_smu_controls.c
index a9e88edc0c7..bff1f372f18 100644
--- a/drivers/macintosh/windfarm_smu_controls.c
+++ b/drivers/macintosh/windfarm_smu_controls.c
@@ -159,14 +159,15 @@ static struct smu_fan_control *smu_fan_create(struct device_node *node,
int pwm_fan)
{
struct smu_fan_control *fct;
- s32 *v; u32 *reg;
- char *l;
+ const s32 *v;
+ const u32 *reg;
+ const char *l;
fct = kmalloc(sizeof(struct smu_fan_control), GFP_KERNEL);
if (fct == NULL)
return NULL;
fct->ctrl.ops = &smu_fan_ops;
- l = (char *)get_property(node, "location", NULL);
+ l = get_property(node, "location", NULL);
if (l == NULL)
goto fail;
@@ -223,17 +224,17 @@ static struct smu_fan_control *smu_fan_create(struct device_node *node,
goto fail;
/* Get min & max values*/
- v = (s32 *)get_property(node, "min-value", NULL);
+ v = get_property(node, "min-value", NULL);
if (v == NULL)
goto fail;
fct->min = *v;
- v = (s32 *)get_property(node, "max-value", NULL);
+ v = get_property(node, "max-value", NULL);
if (v == NULL)
goto fail;
fct->max = *v;
/* Get "reg" value */
- reg = (u32 *)get_property(node, "reg", NULL);
+ reg = get_property(node, "reg", NULL);
if (reg == NULL)
goto fail;
fct->reg = *reg;
diff --git a/drivers/macintosh/windfarm_smu_sat.c b/drivers/macintosh/windfarm_smu_sat.c
index e295a07a1eb..aceb61d9fbc 100644
--- a/drivers/macintosh/windfarm_smu_sat.c
+++ b/drivers/macintosh/windfarm_smu_sat.c
@@ -233,15 +233,15 @@ static void wf_sat_create(struct i2c_adapter *adapter, struct device_node *dev)
{
struct wf_sat *sat;
struct wf_sat_sensor *sens;
- u32 *reg;
- char *loc, *type;
+ const u32 *reg;
+ const char *loc, *type;
u8 addr, chip, core;
struct device_node *child;
int shift, cpu, index;
char *name;
int vsens[2], isens[2];
- reg = (u32 *) get_property(dev, "reg", NULL);
+ reg = get_property(dev, "reg", NULL);
if (reg == NULL)
return;
addr = *reg;
@@ -268,7 +268,7 @@ static void wf_sat_create(struct i2c_adapter *adapter, struct device_node *dev)
isens[0] = isens[1] = -1;
child = NULL;
while ((child = of_get_next_child(dev, child)) != NULL) {
- reg = (u32 *) get_property(child, "reg", NULL);
+ reg = get_property(child, "reg", NULL);
type = get_property(child, "device_type", NULL);
loc = get_property(child, "location", NULL);
if (reg == NULL || loc == NULL)
diff --git a/drivers/macintosh/windfarm_smu_sensors.c b/drivers/macintosh/windfarm_smu_sensors.c
index bed25dcf8a1..defe9922ebd 100644
--- a/drivers/macintosh/windfarm_smu_sensors.c
+++ b/drivers/macintosh/windfarm_smu_sensors.c
@@ -198,14 +198,14 @@ static struct wf_sensor_ops smu_slotspow_ops = {
static struct smu_ad_sensor *smu_ads_create(struct device_node *node)
{
struct smu_ad_sensor *ads;
- char *c, *l;
- u32 *v;
+ const char *c, *l;
+ const u32 *v;
ads = kmalloc(sizeof(struct smu_ad_sensor), GFP_KERNEL);
if (ads == NULL)
return NULL;
- c = (char *)get_property(node, "device_type", NULL);
- l = (char *)get_property(node, "location", NULL);
+ c = get_property(node, "device_type", NULL);
+ l = get_property(node, "location", NULL);
if (c == NULL || l == NULL)
goto fail;
@@ -255,7 +255,7 @@ static struct smu_ad_sensor *smu_ads_create(struct device_node *node)
} else
goto fail;
- v = (u32 *)get_property(node, "reg", NULL);
+ v = get_property(node, "reg", NULL);
if (v == NULL)
goto fail;
ads->reg = *v;
@@ -382,7 +382,7 @@ smu_cpu_power_create(struct wf_sensor *volts, struct wf_sensor *amps)
static void smu_fetch_param_partitions(void)
{
- struct smu_sdbp_header *hdr;
+ const struct smu_sdbp_header *hdr;
/* Get CPU voltage/current/power calibration data */
hdr = smu_get_sdb_partition(SMU_SDB_CPUVCP_ID, NULL);
diff --git a/drivers/md/dm-crypt.c b/drivers/md/dm-crypt.c
index 6022ed12a79..bdbd34993a8 100644
--- a/drivers/md/dm-crypt.c
+++ b/drivers/md/dm-crypt.c
@@ -5,6 +5,7 @@
* This file is released under the GPL.
*/
+#include <linux/err.h>
#include <linux/module.h>
#include <linux/init.h>
#include <linux/kernel.h>
@@ -78,11 +79,13 @@ struct crypt_config {
*/
struct crypt_iv_operations *iv_gen_ops;
char *iv_mode;
- void *iv_gen_private;
+ struct crypto_cipher *iv_gen_private;
sector_t iv_offset;
unsigned int iv_size;
- struct crypto_tfm *tfm;
+ char cipher[CRYPTO_MAX_ALG_NAME];
+ char chainmode[CRYPTO_MAX_ALG_NAME];
+ struct crypto_blkcipher *tfm;
unsigned int key_size;
u8 key[0];
};
@@ -96,12 +99,12 @@ static kmem_cache_t *_crypt_io_pool;
/*
* Different IV generation algorithms:
*
- * plain: the initial vector is the 32-bit low-endian version of the sector
+ * plain: the initial vector is the 32-bit little-endian version of the sector
* number, padded with zeros if neccessary.
*
- * ess_iv: "encrypted sector|salt initial vector", the sector number is
- * encrypted with the bulk cipher using a salt as key. The salt
- * should be derived from the bulk cipher's key via hashing.
+ * essiv: "encrypted sector|salt initial vector", the sector number is
+ * encrypted with the bulk cipher using a salt as key. The salt
+ * should be derived from the bulk cipher's key via hashing.
*
* plumb: unimplemented, see:
* http://article.gmane.org/gmane.linux.kernel.device-mapper.dm-crypt/454
@@ -118,11 +121,13 @@ static int crypt_iv_plain_gen(struct crypt_config *cc, u8 *iv, sector_t sector)
static int crypt_iv_essiv_ctr(struct crypt_config *cc, struct dm_target *ti,
const char *opts)
{
- struct crypto_tfm *essiv_tfm;
- struct crypto_tfm *hash_tfm;
+ struct crypto_cipher *essiv_tfm;
+ struct crypto_hash *hash_tfm;
+ struct hash_desc desc;
struct scatterlist sg;
unsigned int saltsize;
u8 *salt;
+ int err;
if (opts == NULL) {
ti->error = "Digest algorithm missing for ESSIV mode";
@@ -130,76 +135,70 @@ static int crypt_iv_essiv_ctr(struct crypt_config *cc, struct dm_target *ti,
}
/* Hash the cipher key with the given hash algorithm */
- hash_tfm = crypto_alloc_tfm(opts, CRYPTO_TFM_REQ_MAY_SLEEP);
- if (hash_tfm == NULL) {
+ hash_tfm = crypto_alloc_hash(opts, 0, CRYPTO_ALG_ASYNC);
+ if (IS_ERR(hash_tfm)) {
ti->error = "Error initializing ESSIV hash";
- return -EINVAL;
+ return PTR_ERR(hash_tfm);
}
- if (crypto_tfm_alg_type(hash_tfm) != CRYPTO_ALG_TYPE_DIGEST) {
- ti->error = "Expected digest algorithm for ESSIV hash";
- crypto_free_tfm(hash_tfm);
- return -EINVAL;
- }
-
- saltsize = crypto_tfm_alg_digestsize(hash_tfm);
+ saltsize = crypto_hash_digestsize(hash_tfm);
salt = kmalloc(saltsize, GFP_KERNEL);
if (salt == NULL) {
ti->error = "Error kmallocing salt storage in ESSIV";
- crypto_free_tfm(hash_tfm);
+ crypto_free_hash(hash_tfm);
return -ENOMEM;
}
sg_set_buf(&sg, cc->key, cc->key_size);
- crypto_digest_digest(hash_tfm, &sg, 1, salt);
- crypto_free_tfm(hash_tfm);
+ desc.tfm = hash_tfm;
+ desc.flags = CRYPTO_TFM_REQ_MAY_SLEEP;
+ err = crypto_hash_digest(&desc, &sg, cc->key_size, salt);
+ crypto_free_hash(hash_tfm);
+
+ if (err) {
+ ti->error = "Error calculating hash in ESSIV";
+ return err;
+ }
/* Setup the essiv_tfm with the given salt */
- essiv_tfm = crypto_alloc_tfm(crypto_tfm_alg_name(cc->tfm),
- CRYPTO_TFM_MODE_ECB |
- CRYPTO_TFM_REQ_MAY_SLEEP);
- if (essiv_tfm == NULL) {
+ essiv_tfm = crypto_alloc_cipher(cc->cipher, 0, CRYPTO_ALG_ASYNC);
+ if (IS_ERR(essiv_tfm)) {
ti->error = "Error allocating crypto tfm for ESSIV";
kfree(salt);
- return -EINVAL;
+ return PTR_ERR(essiv_tfm);
}
- if (crypto_tfm_alg_blocksize(essiv_tfm)
- != crypto_tfm_alg_ivsize(cc->tfm)) {
+ if (crypto_cipher_blocksize(essiv_tfm) !=
+ crypto_blkcipher_ivsize(cc->tfm)) {
ti->error = "Block size of ESSIV cipher does "
"not match IV size of block cipher";
- crypto_free_tfm(essiv_tfm);
+ crypto_free_cipher(essiv_tfm);
kfree(salt);
return -EINVAL;
}
- if (crypto_cipher_setkey(essiv_tfm, salt, saltsize) < 0) {
+ err = crypto_cipher_setkey(essiv_tfm, salt, saltsize);
+ if (err) {
ti->error = "Failed to set key for ESSIV cipher";
- crypto_free_tfm(essiv_tfm);
+ crypto_free_cipher(essiv_tfm);
kfree(salt);
- return -EINVAL;
+ return err;
}
kfree(salt);
- cc->iv_gen_private = (void *)essiv_tfm;
+ cc->iv_gen_private = essiv_tfm;
return 0;
}
static void crypt_iv_essiv_dtr(struct crypt_config *cc)
{
- crypto_free_tfm((struct crypto_tfm *)cc->iv_gen_private);
+ crypto_free_cipher(cc->iv_gen_private);
cc->iv_gen_private = NULL;
}
static int crypt_iv_essiv_gen(struct crypt_config *cc, u8 *iv, sector_t sector)
{
- struct scatterlist sg;
-
memset(iv, 0, cc->iv_size);
*(u64 *)iv = cpu_to_le64(sector);
-
- sg_set_buf(&sg, iv, cc->iv_size);
- crypto_cipher_encrypt((struct crypto_tfm *)cc->iv_gen_private,
- &sg, &sg, cc->iv_size);
-
+ crypto_cipher_encrypt_one(cc->iv_gen_private, iv, iv);
return 0;
}
@@ -220,6 +219,11 @@ crypt_convert_scatterlist(struct crypt_config *cc, struct scatterlist *out,
int write, sector_t sector)
{
u8 iv[cc->iv_size];
+ struct blkcipher_desc desc = {
+ .tfm = cc->tfm,
+ .info = iv,
+ .flags = CRYPTO_TFM_REQ_MAY_SLEEP,
+ };
int r;
if (cc->iv_gen_ops) {
@@ -228,14 +232,14 @@ crypt_convert_scatterlist(struct crypt_config *cc, struct scatterlist *out,
return r;
if (write)
- r = crypto_cipher_encrypt_iv(cc->tfm, out, in, length, iv);
+ r = crypto_blkcipher_encrypt_iv(&desc, out, in, length);
else
- r = crypto_cipher_decrypt_iv(cc->tfm, out, in, length, iv);
+ r = crypto_blkcipher_decrypt_iv(&desc, out, in, length);
} else {
if (write)
- r = crypto_cipher_encrypt(cc->tfm, out, in, length);
+ r = crypto_blkcipher_encrypt(&desc, out, in, length);
else
- r = crypto_cipher_decrypt(cc->tfm, out, in, length);
+ r = crypto_blkcipher_decrypt(&desc, out, in, length);
}
return r;
@@ -510,13 +514,12 @@ static void crypt_encode_key(char *hex, u8 *key, unsigned int size)
static int crypt_ctr(struct dm_target *ti, unsigned int argc, char **argv)
{
struct crypt_config *cc;
- struct crypto_tfm *tfm;
+ struct crypto_blkcipher *tfm;
char *tmp;
char *cipher;
char *chainmode;
char *ivmode;
char *ivopts;
- unsigned int crypto_flags;
unsigned int key_size;
unsigned long long tmpll;
@@ -556,31 +559,25 @@ static int crypt_ctr(struct dm_target *ti, unsigned int argc, char **argv)
ivmode = "plain";
}
- /* Choose crypto_flags according to chainmode */
- if (strcmp(chainmode, "cbc") == 0)
- crypto_flags = CRYPTO_TFM_MODE_CBC;
- else if (strcmp(chainmode, "ecb") == 0)
- crypto_flags = CRYPTO_TFM_MODE_ECB;
- else {
- ti->error = "Unknown chaining mode";
+ if (strcmp(chainmode, "ecb") && !ivmode) {
+ ti->error = "This chaining mode requires an IV mechanism";
goto bad1;
}
- if (crypto_flags != CRYPTO_TFM_MODE_ECB && !ivmode) {
- ti->error = "This chaining mode requires an IV mechanism";
+ if (snprintf(cc->cipher, CRYPTO_MAX_ALG_NAME, "%s(%s)", chainmode,
+ cipher) >= CRYPTO_MAX_ALG_NAME) {
+ ti->error = "Chain mode + cipher name is too long";
goto bad1;
}
- tfm = crypto_alloc_tfm(cipher, crypto_flags | CRYPTO_TFM_REQ_MAY_SLEEP);
- if (!tfm) {
+ tfm = crypto_alloc_blkcipher(cc->cipher, 0, CRYPTO_ALG_ASYNC);
+ if (IS_ERR(tfm)) {
ti->error = "Error allocating crypto tfm";
goto bad1;
}
- if (crypto_tfm_alg_type(tfm) != CRYPTO_ALG_TYPE_CIPHER) {
- ti->error = "Expected cipher algorithm";
- goto bad2;
- }
+ strcpy(cc->cipher, cipher);
+ strcpy(cc->chainmode, chainmode);
cc->tfm = tfm;
/*
@@ -603,12 +600,12 @@ static int crypt_ctr(struct dm_target *ti, unsigned int argc, char **argv)
cc->iv_gen_ops->ctr(cc, ti, ivopts) < 0)
goto bad2;
- if (tfm->crt_cipher.cit_decrypt_iv && tfm->crt_cipher.cit_encrypt_iv)
+ cc->iv_size = crypto_blkcipher_ivsize(tfm);
+ if (cc->iv_size)
/* at least a 64 bit sector number should fit in our buffer */
- cc->iv_size = max(crypto_tfm_alg_ivsize(tfm),
+ cc->iv_size = max(cc->iv_size,
(unsigned int)(sizeof(u64) / sizeof(u8)));
else {
- cc->iv_size = 0;
if (cc->iv_gen_ops) {
DMWARN("Selected cipher does not support IVs");
if (cc->iv_gen_ops->dtr)
@@ -629,7 +626,7 @@ static int crypt_ctr(struct dm_target *ti, unsigned int argc, char **argv)
goto bad4;
}
- if (tfm->crt_cipher.cit_setkey(tfm, cc->key, key_size) < 0) {
+ if (crypto_blkcipher_setkey(tfm, cc->key, key_size) < 0) {
ti->error = "Error setting key";
goto bad5;
}
@@ -675,7 +672,7 @@ bad3:
if (cc->iv_gen_ops && cc->iv_gen_ops->dtr)
cc->iv_gen_ops->dtr(cc);
bad2:
- crypto_free_tfm(tfm);
+ crypto_free_blkcipher(tfm);
bad1:
/* Must zero key material before freeing */
memset(cc, 0, sizeof(*cc) + cc->key_size * sizeof(u8));
@@ -693,7 +690,7 @@ static void crypt_dtr(struct dm_target *ti)
kfree(cc->iv_mode);
if (cc->iv_gen_ops && cc->iv_gen_ops->dtr)
cc->iv_gen_ops->dtr(cc);
- crypto_free_tfm(cc->tfm);
+ crypto_free_blkcipher(cc->tfm);
dm_put_device(ti, cc->dev);
/* Must zero key material before freeing */
@@ -858,18 +855,9 @@ static int crypt_status(struct dm_target *ti, status_type_t type,
break;
case STATUSTYPE_TABLE:
- cipher = crypto_tfm_alg_name(cc->tfm);
+ cipher = crypto_blkcipher_name(cc->tfm);
- switch(cc->tfm->crt_cipher.cit_mode) {
- case CRYPTO_TFM_MODE_CBC:
- chainmode = "cbc";
- break;
- case CRYPTO_TFM_MODE_ECB:
- chainmode = "ecb";
- break;
- default:
- BUG();
- }
+ chainmode = cc->chainmode;
if (cc->iv_mode)
DMEMIT("%s-%s-%s ", cipher, chainmode, cc->iv_mode);
diff --git a/drivers/mtd/Kconfig b/drivers/mtd/Kconfig
index 1344ad7a4b1..717e90448fc 100644
--- a/drivers/mtd/Kconfig
+++ b/drivers/mtd/Kconfig
@@ -263,6 +263,14 @@ config RFD_FTL
http://www.gensw.com/pages/prod/bios/rfd.htm
+config SSFDC
+ bool "NAND SSFDC (SmartMedia) read only translation layer"
+ depends on MTD
+ default n
+ help
+ This enables read only access to SmartMedia formatted NAND
+ flash. You can mount it with FAT file system.
+
source "drivers/mtd/chips/Kconfig"
source "drivers/mtd/maps/Kconfig"
diff --git a/drivers/mtd/Makefile b/drivers/mtd/Makefile
index fc9374407c2..1e36b9aed98 100644
--- a/drivers/mtd/Makefile
+++ b/drivers/mtd/Makefile
@@ -21,6 +21,7 @@ obj-$(CONFIG_FTL) += ftl.o mtd_blkdevs.o
obj-$(CONFIG_NFTL) += nftl.o mtd_blkdevs.o
obj-$(CONFIG_INFTL) += inftl.o mtd_blkdevs.o
obj-$(CONFIG_RFD_FTL) += rfd_ftl.o mtd_blkdevs.o
+obj-$(CONFIG_SSFDC) += ssfdc.o mtd_blkdevs.o
nftl-objs := nftlcore.o nftlmount.o
inftl-objs := inftlcore.o inftlmount.o
diff --git a/drivers/mtd/chips/cfi_cmdset_0002.c b/drivers/mtd/chips/cfi_cmdset_0002.c
index a482e8922de..702ae4cd869 100644
--- a/drivers/mtd/chips/cfi_cmdset_0002.c
+++ b/drivers/mtd/chips/cfi_cmdset_0002.c
@@ -212,6 +212,7 @@ static void fixup_use_atmel_lock(struct mtd_info *mtd, void *param)
{
mtd->lock = cfi_atmel_lock;
mtd->unlock = cfi_atmel_unlock;
+ mtd->flags |= MTD_STUPID_LOCK;
}
static struct cfi_fixup cfi_fixup_table[] = {
diff --git a/drivers/mtd/devices/pmc551.c b/drivers/mtd/devices/pmc551.c
index 2c014970873..354e1657cc2 100644
--- a/drivers/mtd/devices/pmc551.c
+++ b/drivers/mtd/devices/pmc551.c
@@ -4,82 +4,82 @@
* PMC551 PCI Mezzanine Ram Device
*
* Author:
- * Mark Ferrell <mferrell@mvista.com>
- * Copyright 1999,2000 Nortel Networks
+ * Mark Ferrell <mferrell@mvista.com>
+ * Copyright 1999,2000 Nortel Networks
*
* License:
- * As part of this driver was derived from the slram.c driver it
- * falls under the same license, which is GNU General Public
- * License v2
+ * As part of this driver was derived from the slram.c driver it
+ * falls under the same license, which is GNU General Public
+ * License v2
*
* Description:
- * This driver is intended to support the PMC551 PCI Ram device
- * from Ramix Inc. The PMC551 is a PMC Mezzanine module for
- * cPCI embedded systems. The device contains a single SROM
- * that initially programs the V370PDC chipset onboard the
- * device, and various banks of DRAM/SDRAM onboard. This driver
- * implements this PCI Ram device as an MTD (Memory Technology
- * Device) so that it can be used to hold a file system, or for
- * added swap space in embedded systems. Since the memory on
- * this board isn't as fast as main memory we do not try to hook
- * it into main memory as that would simply reduce performance
- * on the system. Using it as a block device allows us to use
- * it as high speed swap or for a high speed disk device of some
- * sort. Which becomes very useful on diskless systems in the
- * embedded market I might add.
+ * This driver is intended to support the PMC551 PCI Ram device
+ * from Ramix Inc. The PMC551 is a PMC Mezzanine module for
+ * cPCI embedded systems. The device contains a single SROM
+ * that initially programs the V370PDC chipset onboard the
+ * device, and various banks of DRAM/SDRAM onboard. This driver
+ * implements this PCI Ram device as an MTD (Memory Technology
+ * Device) so that it can be used to hold a file system, or for
+ * added swap space in embedded systems. Since the memory on
+ * this board isn't as fast as main memory we do not try to hook
+ * it into main memory as that would simply reduce performance
+ * on the system. Using it as a block device allows us to use
+ * it as high speed swap or for a high speed disk device of some
+ * sort. Which becomes very useful on diskless systems in the
+ * embedded market I might add.
*
* Notes:
- * Due to what I assume is more buggy SROM, the 64M PMC551 I
- * have available claims that all 4 of it's DRAM banks have 64M
- * of ram configured (making a grand total of 256M onboard).
- * This is slightly annoying since the BAR0 size reflects the
- * aperture size, not the dram size, and the V370PDC supplies no
- * other method for memory size discovery. This problem is
- * mostly only relevant when compiled as a module, as the
- * unloading of the module with an aperture size smaller then
- * the ram will cause the driver to detect the onboard memory
- * size to be equal to the aperture size when the module is
- * reloaded. Soooo, to help, the module supports an msize
- * option to allow the specification of the onboard memory, and
- * an asize option, to allow the specification of the aperture
- * size. The aperture must be equal to or less then the memory
- * size, the driver will correct this if you screw it up. This
- * problem is not relevant for compiled in drivers as compiled
- * in drivers only init once.
+ * Due to what I assume is more buggy SROM, the 64M PMC551 I
+ * have available claims that all 4 of it's DRAM banks have 64M
+ * of ram configured (making a grand total of 256M onboard).
+ * This is slightly annoying since the BAR0 size reflects the
+ * aperture size, not the dram size, and the V370PDC supplies no
+ * other method for memory size discovery. This problem is
+ * mostly only relevant when compiled as a module, as the
+ * unloading of the module with an aperture size smaller then
+ * the ram will cause the driver to detect the onboard memory
+ * size to be equal to the aperture size when the module is
+ * reloaded. Soooo, to help, the module supports an msize
+ * option to allow the specification of the onboard memory, and
+ * an asize option, to allow the specification of the aperture
+ * size. The aperture must be equal to or less then the memory
+ * size, the driver will correct this if you screw it up. This
+ * problem is not relevant for compiled in drivers as compiled
+ * in drivers only init once.
*
* Credits:
- * Saeed Karamooz <saeed@ramix.com> of Ramix INC. for the
- * initial example code of how to initialize this device and for
- * help with questions I had concerning operation of the device.
+ * Saeed Karamooz <saeed@ramix.com> of Ramix INC. for the
+ * initial example code of how to initialize this device and for
+ * help with questions I had concerning operation of the device.
*
- * Most of the MTD code for this driver was originally written
- * for the slram.o module in the MTD drivers package which
- * allows the mapping of system memory into an MTD device.
- * Since the PMC551 memory module is accessed in the same
- * fashion as system memory, the slram.c code became a very nice
- * fit to the needs of this driver. All we added was PCI
- * detection/initialization to the driver and automatically figure
- * out the size via the PCI detection.o, later changes by Corey
- * Minyard set up the card to utilize a 1M sliding apature.
+ * Most of the MTD code for this driver was originally written
+ * for the slram.o module in the MTD drivers package which
+ * allows the mapping of system memory into an MTD device.
+ * Since the PMC551 memory module is accessed in the same
+ * fashion as system memory, the slram.c code became a very nice
+ * fit to the needs of this driver. All we added was PCI
+ * detection/initialization to the driver and automatically figure
+ * out the size via the PCI detection.o, later changes by Corey
+ * Minyard set up the card to utilize a 1M sliding apature.
*
- * Corey Minyard <minyard@nortelnetworks.com>
- * * Modified driver to utilize a sliding aperture instead of
- * mapping all memory into kernel space which turned out to
- * be very wasteful.
- * * Located a bug in the SROM's initialization sequence that
- * made the memory unusable, added a fix to code to touch up
- * the DRAM some.
+ * Corey Minyard <minyard@nortelnetworks.com>
+ * * Modified driver to utilize a sliding aperture instead of
+ * mapping all memory into kernel space which turned out to
+ * be very wasteful.
+ * * Located a bug in the SROM's initialization sequence that
+ * made the memory unusable, added a fix to code to touch up
+ * the DRAM some.
*
* Bugs/FIXME's:
- * * MUST fix the init function to not spin on a register
- * waiting for it to set .. this does not safely handle busted
- * devices that never reset the register correctly which will
- * cause the system to hang w/ a reboot being the only chance at
- * recover. [sort of fixed, could be better]
- * * Add I2C handling of the SROM so we can read the SROM's information
- * about the aperture size. This should always accurately reflect the
- * onboard memory size.
- * * Comb the init routine. It's still a bit cludgy on a few things.
+ * * MUST fix the init function to not spin on a register
+ * waiting for it to set .. this does not safely handle busted
+ * devices that never reset the register correctly which will
+ * cause the system to hang w/ a reboot being the only chance at
+ * recover. [sort of fixed, could be better]
+ * * Add I2C handling of the SROM so we can read the SROM's information
+ * about the aperture size. This should always accurately reflect the
+ * onboard memory size.
+ * * Comb the init routine. It's still a bit cludgy on a few things.
*/
#include <linux/kernel.h>
@@ -105,74 +105,77 @@
static struct mtd_info *pmc551list;
-static int pmc551_erase (struct mtd_info *mtd, struct erase_info *instr)
+static int pmc551_erase(struct mtd_info *mtd, struct erase_info *instr)
{
- struct mypriv *priv = mtd->priv;
- u32 soff_hi, soff_lo; /* start address offset hi/lo */
- u32 eoff_hi, eoff_lo; /* end address offset hi/lo */
- unsigned long end;
+ struct mypriv *priv = mtd->priv;
+ u32 soff_hi, soff_lo; /* start address offset hi/lo */
+ u32 eoff_hi, eoff_lo; /* end address offset hi/lo */
+ unsigned long end;
u_char *ptr;
size_t retlen;
#ifdef CONFIG_MTD_PMC551_DEBUG
- printk(KERN_DEBUG "pmc551_erase(pos:%ld, len:%ld)\n", (long)instr->addr, (long)instr->len);
+ printk(KERN_DEBUG "pmc551_erase(pos:%ld, len:%ld)\n", (long)instr->addr,
+ (long)instr->len);
#endif
- end = instr->addr + instr->len - 1;
+ end = instr->addr + instr->len - 1;
- /* Is it past the end? */
- if ( end > mtd->size ) {
+ /* Is it past the end? */
+ if (end > mtd->size) {
#ifdef CONFIG_MTD_PMC551_DEBUG
- printk(KERN_DEBUG "pmc551_erase() out of bounds (%ld > %ld)\n", (long)end, (long)mtd->size);
+ printk(KERN_DEBUG "pmc551_erase() out of bounds (%ld > %ld)\n",
+ (long)end, (long)mtd->size);
#endif
- return -EINVAL;
- }
-
- eoff_hi = end & ~(priv->asize - 1);
- soff_hi = instr->addr & ~(priv->asize - 1);
- eoff_lo = end & (priv->asize - 1);
- soff_lo = instr->addr & (priv->asize - 1);
-
- pmc551_point (mtd, instr->addr, instr->len, &retlen, &ptr);
-
- if ( soff_hi == eoff_hi || mtd->size == priv->asize) {
- /* The whole thing fits within one access, so just one shot
- will do it. */
- memset(ptr, 0xff, instr->len);
- } else {
- /* We have to do multiple writes to get all the data
- written. */
- while (soff_hi != eoff_hi) {
+ return -EINVAL;
+ }
+
+ eoff_hi = end & ~(priv->asize - 1);
+ soff_hi = instr->addr & ~(priv->asize - 1);
+ eoff_lo = end & (priv->asize - 1);
+ soff_lo = instr->addr & (priv->asize - 1);
+
+ pmc551_point(mtd, instr->addr, instr->len, &retlen, &ptr);
+
+ if (soff_hi == eoff_hi || mtd->size == priv->asize) {
+ /* The whole thing fits within one access, so just one shot
+ will do it. */
+ memset(ptr, 0xff, instr->len);
+ } else {
+ /* We have to do multiple writes to get all the data
+ written. */
+ while (soff_hi != eoff_hi) {
#ifdef CONFIG_MTD_PMC551_DEBUG
- printk( KERN_DEBUG "pmc551_erase() soff_hi: %ld, eoff_hi: %ld\n", (long)soff_hi, (long)eoff_hi);
+ printk(KERN_DEBUG "pmc551_erase() soff_hi: %ld, "
+ "eoff_hi: %ld\n", (long)soff_hi, (long)eoff_hi);
#endif
- memset(ptr, 0xff, priv->asize);
- if (soff_hi + priv->asize >= mtd->size) {
- goto out;
- }
- soff_hi += priv->asize;
- pmc551_point (mtd,(priv->base_map0|soff_hi),
- priv->asize, &retlen, &ptr);
- }
- memset (ptr, 0xff, eoff_lo);
- }
-
-out:
+ memset(ptr, 0xff, priv->asize);
+ if (soff_hi + priv->asize >= mtd->size) {
+ goto out;
+ }
+ soff_hi += priv->asize;
+ pmc551_point(mtd, (priv->base_map0 | soff_hi),
+ priv->asize, &retlen, &ptr);
+ }
+ memset(ptr, 0xff, eoff_lo);
+ }
+
+ out:
instr->state = MTD_ERASE_DONE;
#ifdef CONFIG_MTD_PMC551_DEBUG
printk(KERN_DEBUG "pmc551_erase() done\n");
#endif
- mtd_erase_callback(instr);
- return 0;
+ mtd_erase_callback(instr);
+ return 0;
}
-
-static int pmc551_point (struct mtd_info *mtd, loff_t from, size_t len, size_t *retlen, u_char **mtdbuf)
+static int pmc551_point(struct mtd_info *mtd, loff_t from, size_t len,
+ size_t * retlen, u_char ** mtdbuf)
{
- struct mypriv *priv = mtd->priv;
- u32 soff_hi;
- u32 soff_lo;
+ struct mypriv *priv = mtd->priv;
+ u32 soff_hi;
+ u32 soff_lo;
#ifdef CONFIG_MTD_PMC551_DEBUG
printk(KERN_DEBUG "pmc551_point(%ld, %ld)\n", (long)from, (long)len);
@@ -180,18 +183,19 @@ static int pmc551_point (struct mtd_info *mtd, loff_t from, size_t len, size_t *
if (from + len > mtd->size) {
#ifdef CONFIG_MTD_PMC551_DEBUG
- printk(KERN_DEBUG "pmc551_point() out of bounds (%ld > %ld)\n", (long)from+len, (long)mtd->size);
+ printk(KERN_DEBUG "pmc551_point() out of bounds (%ld > %ld)\n",
+ (long)from + len, (long)mtd->size);
#endif
return -EINVAL;
}
- soff_hi = from & ~(priv->asize - 1);
- soff_lo = from & (priv->asize - 1);
+ soff_hi = from & ~(priv->asize - 1);
+ soff_lo = from & (priv->asize - 1);
/* Cheap hack optimization */
- if( priv->curr_map0 != from ) {
- pci_write_config_dword ( priv->dev, PMC551_PCI_MEM_MAP0,
- (priv->base_map0 | soff_hi) );
+ if (priv->curr_map0 != from) {
+ pci_write_config_dword(priv->dev, PMC551_PCI_MEM_MAP0,
+ (priv->base_map0 | soff_hi));
priv->curr_map0 = soff_hi;
}
@@ -200,137 +204,144 @@ static int pmc551_point (struct mtd_info *mtd, loff_t from, size_t len, size_t *
return 0;
}
-
-static void pmc551_unpoint (struct mtd_info *mtd, u_char *addr, loff_t from, size_t len)
+static void pmc551_unpoint(struct mtd_info *mtd, u_char * addr, loff_t from,
+ size_t len)
{
#ifdef CONFIG_MTD_PMC551_DEBUG
printk(KERN_DEBUG "pmc551_unpoint()\n");
#endif
}
-
-static int pmc551_read (struct mtd_info *mtd, loff_t from, size_t len, size_t *retlen, u_char *buf)
+static int pmc551_read(struct mtd_info *mtd, loff_t from, size_t len,
+ size_t * retlen, u_char * buf)
{
- struct mypriv *priv = mtd->priv;
- u32 soff_hi, soff_lo; /* start address offset hi/lo */
- u32 eoff_hi, eoff_lo; /* end address offset hi/lo */
- unsigned long end;
+ struct mypriv *priv = mtd->priv;
+ u32 soff_hi, soff_lo; /* start address offset hi/lo */
+ u32 eoff_hi, eoff_lo; /* end address offset hi/lo */
+ unsigned long end;
u_char *ptr;
- u_char *copyto = buf;
+ u_char *copyto = buf;
#ifdef CONFIG_MTD_PMC551_DEBUG
- printk(KERN_DEBUG "pmc551_read(pos:%ld, len:%ld) asize: %ld\n", (long)from, (long)len, (long)priv->asize);
+ printk(KERN_DEBUG "pmc551_read(pos:%ld, len:%ld) asize: %ld\n",
+ (long)from, (long)len, (long)priv->asize);
#endif
- end = from + len - 1;
+ end = from + len - 1;
- /* Is it past the end? */
- if (end > mtd->size) {
+ /* Is it past the end? */
+ if (end > mtd->size) {
#ifdef CONFIG_MTD_PMC551_DEBUG
- printk(KERN_DEBUG "pmc551_read() out of bounds (%ld > %ld)\n", (long) end, (long)mtd->size);
+ printk(KERN_DEBUG "pmc551_read() out of bounds (%ld > %ld)\n",
+ (long)end, (long)mtd->size);
#endif
- return -EINVAL;
- }
-
- soff_hi = from & ~(priv->asize - 1);
- eoff_hi = end & ~(priv->asize - 1);
- soff_lo = from & (priv->asize - 1);
- eoff_lo = end & (priv->asize - 1);
-
- pmc551_point (mtd, from, len, retlen, &ptr);
-
- if (soff_hi == eoff_hi) {
- /* The whole thing fits within one access, so just one shot
- will do it. */
- memcpy(copyto, ptr, len);
- copyto += len;
- } else {
- /* We have to do multiple writes to get all the data
- written. */
- while (soff_hi != eoff_hi) {
+ return -EINVAL;
+ }
+
+ soff_hi = from & ~(priv->asize - 1);
+ eoff_hi = end & ~(priv->asize - 1);
+ soff_lo = from & (priv->asize - 1);
+ eoff_lo = end & (priv->asize - 1);
+
+ pmc551_point(mtd, from, len, retlen, &ptr);
+
+ if (soff_hi == eoff_hi) {
+ /* The whole thing fits within one access, so just one shot
+ will do it. */
+ memcpy(copyto, ptr, len);
+ copyto += len;
+ } else {
+ /* We have to do multiple writes to get all the data
+ written. */
+ while (soff_hi != eoff_hi) {
#ifdef CONFIG_MTD_PMC551_DEBUG
- printk( KERN_DEBUG "pmc551_read() soff_hi: %ld, eoff_hi: %ld\n", (long)soff_hi, (long)eoff_hi);
+ printk(KERN_DEBUG "pmc551_read() soff_hi: %ld, "
+ "eoff_hi: %ld\n", (long)soff_hi, (long)eoff_hi);
#endif
- memcpy(copyto, ptr, priv->asize);
- copyto += priv->asize;
- if (soff_hi + priv->asize >= mtd->size) {
- goto out;
- }
- soff_hi += priv->asize;
- pmc551_point (mtd, soff_hi, priv->asize, retlen, &ptr);
- }
- memcpy(copyto, ptr, eoff_lo);
- copyto += eoff_lo;
- }
-
-out:
+ memcpy(copyto, ptr, priv->asize);
+ copyto += priv->asize;
+ if (soff_hi + priv->asize >= mtd->size) {
+ goto out;
+ }
+ soff_hi += priv->asize;
+ pmc551_point(mtd, soff_hi, priv->asize, retlen, &ptr);
+ }
+ memcpy(copyto, ptr, eoff_lo);
+ copyto += eoff_lo;
+ }
+
+ out:
#ifdef CONFIG_MTD_PMC551_DEBUG
printk(KERN_DEBUG "pmc551_read() done\n");
#endif
- *retlen = copyto - buf;
- return 0;
+ *retlen = copyto - buf;
+ return 0;
}
-static int pmc551_write (struct mtd_info *mtd, loff_t to, size_t len, size_t *retlen, const u_char *buf)
+static int pmc551_write(struct mtd_info *mtd, loff_t to, size_t len,
+ size_t * retlen, const u_char * buf)
{
- struct mypriv *priv = mtd->priv;
- u32 soff_hi, soff_lo; /* start address offset hi/lo */
- u32 eoff_hi, eoff_lo; /* end address offset hi/lo */
- unsigned long end;
+ struct mypriv *priv = mtd->priv;
+ u32 soff_hi, soff_lo; /* start address offset hi/lo */
+ u32 eoff_hi, eoff_lo; /* end address offset hi/lo */
+ unsigned long end;
u_char *ptr;
- const u_char *copyfrom = buf;
-
+ const u_char *copyfrom = buf;
#ifdef CONFIG_MTD_PMC551_DEBUG
- printk(KERN_DEBUG "pmc551_write(pos:%ld, len:%ld) asize:%ld\n", (long)to, (long)len, (long)priv->asize);
+ printk(KERN_DEBUG "pmc551_write(pos:%ld, len:%ld) asize:%ld\n",
+ (long)to, (long)len, (long)priv->asize);
#endif
- end = to + len - 1;
- /* Is it past the end? or did the u32 wrap? */
- if (end > mtd->size ) {
+ end = to + len - 1;
+ /* Is it past the end? or did the u32 wrap? */
+ if (end > mtd->size) {
#ifdef CONFIG_MTD_PMC551_DEBUG
- printk(KERN_DEBUG "pmc551_write() out of bounds (end: %ld, size: %ld, to: %ld)\n", (long) end, (long)mtd->size, (long)to);
+ printk(KERN_DEBUG "pmc551_write() out of bounds (end: %ld, "
+ "size: %ld, to: %ld)\n", (long)end, (long)mtd->size,
+ (long)to);
#endif
- return -EINVAL;
- }
-
- soff_hi = to & ~(priv->asize - 1);
- eoff_hi = end & ~(priv->asize - 1);
- soff_lo = to & (priv->asize - 1);
- eoff_lo = end & (priv->asize - 1);
-
- pmc551_point (mtd, to, len, retlen, &ptr);
-
- if (soff_hi == eoff_hi) {
- /* The whole thing fits within one access, so just one shot
- will do it. */
- memcpy(ptr, copyfrom, len);
- copyfrom += len;
- } else {
- /* We have to do multiple writes to get all the data
- written. */
- while (soff_hi != eoff_hi) {
+ return -EINVAL;
+ }
+
+ soff_hi = to & ~(priv->asize - 1);
+ eoff_hi = end & ~(priv->asize - 1);
+ soff_lo = to & (priv->asize - 1);
+ eoff_lo = end & (priv->asize - 1);
+
+ pmc551_point(mtd, to, len, retlen, &ptr);
+
+ if (soff_hi == eoff_hi) {
+ /* The whole thing fits within one access, so just one shot
+ will do it. */
+ memcpy(ptr, copyfrom, len);
+ copyfrom += len;
+ } else {
+ /* We have to do multiple writes to get all the data
+ written. */
+ while (soff_hi != eoff_hi) {
#ifdef CONFIG_MTD_PMC551_DEBUG
- printk( KERN_DEBUG "pmc551_write() soff_hi: %ld, eoff_hi: %ld\n", (long)soff_hi, (long)eoff_hi);
+ printk(KERN_DEBUG "pmc551_write() soff_hi: %ld, "
+ "eoff_hi: %ld\n", (long)soff_hi, (long)eoff_hi);
#endif
- memcpy(ptr, copyfrom, priv->asize);
- copyfrom += priv->asize;
- if (soff_hi >= mtd->size) {
- goto out;
- }
- soff_hi += priv->asize;
- pmc551_point (mtd, soff_hi, priv->asize, retlen, &ptr);
- }
- memcpy(ptr, copyfrom, eoff_lo);
- copyfrom += eoff_lo;
- }
-
-out:
+ memcpy(ptr, copyfrom, priv->asize);
+ copyfrom += priv->asize;
+ if (soff_hi >= mtd->size) {
+ goto out;
+ }
+ soff_hi += priv->asize;
+ pmc551_point(mtd, soff_hi, priv->asize, retlen, &ptr);
+ }
+ memcpy(ptr, copyfrom, eoff_lo);
+ copyfrom += eoff_lo;
+ }
+
+ out:
#ifdef CONFIG_MTD_PMC551_DEBUG
printk(KERN_DEBUG "pmc551_write() done\n");
#endif
- *retlen = copyfrom - buf;
- return 0;
+ *retlen = copyfrom - buf;
+ return 0;
}
/*
@@ -345,58 +356,58 @@ out:
* mechanism
* returns the size of the memory region found.
*/
-static u32 fixup_pmc551 (struct pci_dev *dev)
+static u32 fixup_pmc551(struct pci_dev *dev)
{
#ifdef CONFIG_MTD_PMC551_BUGFIX
- u32 dram_data;
+ u32 dram_data;
#endif
- u32 size, dcmd, cfg, dtmp;
- u16 cmd, tmp, i;
+ u32 size, dcmd, cfg, dtmp;
+ u16 cmd, tmp, i;
u8 bcmd, counter;
- /* Sanity Check */
- if(!dev) {
- return -ENODEV;
- }
+ /* Sanity Check */
+ if (!dev) {
+ return -ENODEV;
+ }
/*
* Attempt to reset the card
* FIXME: Stop Spinning registers
*/
- counter=0;
+ counter = 0;
/* unlock registers */
- pci_write_config_byte(dev, PMC551_SYS_CTRL_REG, 0xA5 );
+ pci_write_config_byte(dev, PMC551_SYS_CTRL_REG, 0xA5);
/* read in old data */
- pci_read_config_byte(dev, PMC551_SYS_CTRL_REG, &bcmd );
+ pci_read_config_byte(dev, PMC551_SYS_CTRL_REG, &bcmd);
/* bang the reset line up and down for a few */
- for(i=0;i<10;i++) {
- counter=0;
+ for (i = 0; i < 10; i++) {
+ counter = 0;
bcmd &= ~0x80;
- while(counter++ < 100) {
+ while (counter++ < 100) {
pci_write_config_byte(dev, PMC551_SYS_CTRL_REG, bcmd);
}
- counter=0;
+ counter = 0;
bcmd |= 0x80;
- while(counter++ < 100) {
+ while (counter++ < 100) {
pci_write_config_byte(dev, PMC551_SYS_CTRL_REG, bcmd);
}
}
- bcmd |= (0x40|0x20);
+ bcmd |= (0x40 | 0x20);
pci_write_config_byte(dev, PMC551_SYS_CTRL_REG, bcmd);
- /*
+ /*
* Take care and turn off the memory on the device while we
* tweak the configurations
*/
- pci_read_config_word(dev, PCI_COMMAND, &cmd);
- tmp = cmd & ~(PCI_COMMAND_IO|PCI_COMMAND_MEMORY);
- pci_write_config_word(dev, PCI_COMMAND, tmp);
+ pci_read_config_word(dev, PCI_COMMAND, &cmd);
+ tmp = cmd & ~(PCI_COMMAND_IO | PCI_COMMAND_MEMORY);
+ pci_write_config_word(dev, PCI_COMMAND, tmp);
/*
* Disable existing aperture before probing memory size
*/
pci_read_config_dword(dev, PMC551_PCI_MEM_MAP0, &dcmd);
- dtmp=(dcmd|PMC551_PCI_MEM_MAP_ENABLE|PMC551_PCI_MEM_MAP_REG_EN);
+ dtmp = (dcmd | PMC551_PCI_MEM_MAP_ENABLE | PMC551_PCI_MEM_MAP_REG_EN);
pci_write_config_dword(dev, PMC551_PCI_MEM_MAP0, dtmp);
/*
* Grab old BAR0 config so that we can figure out memory size
@@ -407,220 +418,230 @@ static u32 fixup_pmc551 (struct pci_dev *dev)
* then write all 1's to the memory space, read back the result into
* "size", and then write back all the old config.
*/
- pci_read_config_dword( dev, PCI_BASE_ADDRESS_0, &cfg );
+ pci_read_config_dword(dev, PCI_BASE_ADDRESS_0, &cfg);
#ifndef CONFIG_MTD_PMC551_BUGFIX
- pci_write_config_dword( dev, PCI_BASE_ADDRESS_0, ~0 );
- pci_read_config_dword( dev, PCI_BASE_ADDRESS_0, &size );
- size = (size&PCI_BASE_ADDRESS_MEM_MASK);
- size &= ~(size-1);
- pci_write_config_dword( dev, PCI_BASE_ADDRESS_0, cfg );
+ pci_write_config_dword(dev, PCI_BASE_ADDRESS_0, ~0);
+ pci_read_config_dword(dev, PCI_BASE_ADDRESS_0, &size);
+ size = (size & PCI_BASE_ADDRESS_MEM_MASK);
+ size &= ~(size - 1);
+ pci_write_config_dword(dev, PCI_BASE_ADDRESS_0, cfg);
#else
- /*
- * Get the size of the memory by reading all the DRAM size values
- * and adding them up.
- *
- * KLUDGE ALERT: the boards we are using have invalid column and
- * row mux values. We fix them here, but this will break other
- * memory configurations.
- */
- pci_read_config_dword(dev, PMC551_DRAM_BLK0, &dram_data);
- size = PMC551_DRAM_BLK_GET_SIZE(dram_data);
- dram_data = PMC551_DRAM_BLK_SET_COL_MUX(dram_data, 0x5);
- dram_data = PMC551_DRAM_BLK_SET_ROW_MUX(dram_data, 0x9);
- pci_write_config_dword(dev, PMC551_DRAM_BLK0, dram_data);
-
- pci_read_config_dword(dev, PMC551_DRAM_BLK1, &dram_data);
- size += PMC551_DRAM_BLK_GET_SIZE(dram_data);
- dram_data = PMC551_DRAM_BLK_SET_COL_MUX(dram_data, 0x5);
- dram_data = PMC551_DRAM_BLK_SET_ROW_MUX(dram_data, 0x9);
- pci_write_config_dword(dev, PMC551_DRAM_BLK1, dram_data);
-
- pci_read_config_dword(dev, PMC551_DRAM_BLK2, &dram_data);
- size += PMC551_DRAM_BLK_GET_SIZE(dram_data);
- dram_data = PMC551_DRAM_BLK_SET_COL_MUX(dram_data, 0x5);
- dram_data = PMC551_DRAM_BLK_SET_ROW_MUX(dram_data, 0x9);
- pci_write_config_dword(dev, PMC551_DRAM_BLK2, dram_data);
-
- pci_read_config_dword(dev, PMC551_DRAM_BLK3, &dram_data);
- size += PMC551_DRAM_BLK_GET_SIZE(dram_data);
- dram_data = PMC551_DRAM_BLK_SET_COL_MUX(dram_data, 0x5);
- dram_data = PMC551_DRAM_BLK_SET_ROW_MUX(dram_data, 0x9);
- pci_write_config_dword(dev, PMC551_DRAM_BLK3, dram_data);
-
- /*
- * Oops .. something went wrong
- */
- if( (size &= PCI_BASE_ADDRESS_MEM_MASK) == 0) {
- return -ENODEV;
- }
-#endif /* CONFIG_MTD_PMC551_BUGFIX */
-
- if ((cfg&PCI_BASE_ADDRESS_SPACE) != PCI_BASE_ADDRESS_SPACE_MEMORY) {
- return -ENODEV;
+ /*
+ * Get the size of the memory by reading all the DRAM size values
+ * and adding them up.
+ *
+ * KLUDGE ALERT: the boards we are using have invalid column and
+ * row mux values. We fix them here, but this will break other
+ * memory configurations.
+ */
+ pci_read_config_dword(dev, PMC551_DRAM_BLK0, &dram_data);
+ size = PMC551_DRAM_BLK_GET_SIZE(dram_data);
+ dram_data = PMC551_DRAM_BLK_SET_COL_MUX(dram_data, 0x5);
+ dram_data = PMC551_DRAM_BLK_SET_ROW_MUX(dram_data, 0x9);
+ pci_write_config_dword(dev, PMC551_DRAM_BLK0, dram_data);
+
+ pci_read_config_dword(dev, PMC551_DRAM_BLK1, &dram_data);
+ size += PMC551_DRAM_BLK_GET_SIZE(dram_data);
+ dram_data = PMC551_DRAM_BLK_SET_COL_MUX(dram_data, 0x5);
+ dram_data = PMC551_DRAM_BLK_SET_ROW_MUX(dram_data, 0x9);
+ pci_write_config_dword(dev, PMC551_DRAM_BLK1, dram_data);
+
+ pci_read_config_dword(dev, PMC551_DRAM_BLK2, &dram_data);
+ size += PMC551_DRAM_BLK_GET_SIZE(dram_data);
+ dram_data = PMC551_DRAM_BLK_SET_COL_MUX(dram_data, 0x5);
+ dram_data = PMC551_DRAM_BLK_SET_ROW_MUX(dram_data, 0x9);
+ pci_write_config_dword(dev, PMC551_DRAM_BLK2, dram_data);
+
+ pci_read_config_dword(dev, PMC551_DRAM_BLK3, &dram_data);
+ size += PMC551_DRAM_BLK_GET_SIZE(dram_data);
+ dram_data = PMC551_DRAM_BLK_SET_COL_MUX(dram_data, 0x5);
+ dram_data = PMC551_DRAM_BLK_SET_ROW_MUX(dram_data, 0x9);
+ pci_write_config_dword(dev, PMC551_DRAM_BLK3, dram_data);
+
+ /*
+ * Oops .. something went wrong
+ */
+ if ((size &= PCI_BASE_ADDRESS_MEM_MASK) == 0) {
+ return -ENODEV;
+ }
+#endif /* CONFIG_MTD_PMC551_BUGFIX */
+
+ if ((cfg & PCI_BASE_ADDRESS_SPACE) != PCI_BASE_ADDRESS_SPACE_MEMORY) {
+ return -ENODEV;
}
- /*
- * Precharge Dram
- */
- pci_write_config_word( dev, PMC551_SDRAM_MA, 0x0400 );
- pci_write_config_word( dev, PMC551_SDRAM_CMD, 0x00bf );
-
- /*
- * Wait until command has gone through
- * FIXME: register spinning issue
- */
- do { pci_read_config_word( dev, PMC551_SDRAM_CMD, &cmd );
- if(counter++ > 100)break;
- } while ( (PCI_COMMAND_IO) & cmd );
-
- /*
+ /*
+ * Precharge Dram
+ */
+ pci_write_config_word(dev, PMC551_SDRAM_MA, 0x0400);
+ pci_write_config_word(dev, PMC551_SDRAM_CMD, 0x00bf);
+
+ /*
+ * Wait until command has gone through
+ * FIXME: register spinning issue
+ */
+ do {
+ pci_read_config_word(dev, PMC551_SDRAM_CMD, &cmd);
+ if (counter++ > 100)
+ break;
+ } while ((PCI_COMMAND_IO) & cmd);
+
+ /*
* Turn on auto refresh
* The loop is taken directly from Ramix's example code. I assume that
* this must be held high for some duration of time, but I can find no
* documentation refrencing the reasons why.
- */
- for ( i = 1; i<=8 ; i++) {
- pci_write_config_word (dev, PMC551_SDRAM_CMD, 0x0df);
-
- /*
- * Make certain command has gone through
- * FIXME: register spinning issue
- */
- counter=0;
- do { pci_read_config_word(dev, PMC551_SDRAM_CMD, &cmd);
- if(counter++ > 100)break;
- } while ( (PCI_COMMAND_IO) & cmd );
- }
-
- pci_write_config_word ( dev, PMC551_SDRAM_MA, 0x0020);
- pci_write_config_word ( dev, PMC551_SDRAM_CMD, 0x0ff);
-
- /*
- * Wait until command completes
- * FIXME: register spinning issue
- */
- counter=0;
- do { pci_read_config_word ( dev, PMC551_SDRAM_CMD, &cmd);
- if(counter++ > 100)break;
- } while ( (PCI_COMMAND_IO) & cmd );
-
- pci_read_config_dword ( dev, PMC551_DRAM_CFG, &dcmd);
- dcmd |= 0x02000000;
- pci_write_config_dword ( dev, PMC551_DRAM_CFG, dcmd);
-
- /*
- * Check to make certain fast back-to-back, if not
- * then set it so
- */
- pci_read_config_word( dev, PCI_STATUS, &cmd);
- if((cmd&PCI_COMMAND_FAST_BACK) == 0) {
- cmd |= PCI_COMMAND_FAST_BACK;
- pci_write_config_word( dev, PCI_STATUS, cmd);
- }
-
- /*
- * Check to make certain the DEVSEL is set correctly, this device
- * has a tendancy to assert DEVSEL and TRDY when a write is performed
- * to the memory when memory is read-only
- */
- if((cmd&PCI_STATUS_DEVSEL_MASK) != 0x0) {
- cmd &= ~PCI_STATUS_DEVSEL_MASK;
- pci_write_config_word( dev, PCI_STATUS, cmd );
- }
- /*
- * Set to be prefetchable and put everything back based on old cfg.
+ */
+ for (i = 1; i <= 8; i++) {
+ pci_write_config_word(dev, PMC551_SDRAM_CMD, 0x0df);
+
+ /*
+ * Make certain command has gone through
+ * FIXME: register spinning issue
+ */
+ counter = 0;
+ do {
+ pci_read_config_word(dev, PMC551_SDRAM_CMD, &cmd);
+ if (counter++ > 100)
+ break;
+ } while ((PCI_COMMAND_IO) & cmd);
+ }
+
+ pci_write_config_word(dev, PMC551_SDRAM_MA, 0x0020);
+ pci_write_config_word(dev, PMC551_SDRAM_CMD, 0x0ff);
+
+ /*
+ * Wait until command completes
+ * FIXME: register spinning issue
+ */
+ counter = 0;
+ do {
+ pci_read_config_word(dev, PMC551_SDRAM_CMD, &cmd);
+ if (counter++ > 100)
+ break;
+ } while ((PCI_COMMAND_IO) & cmd);
+
+ pci_read_config_dword(dev, PMC551_DRAM_CFG, &dcmd);
+ dcmd |= 0x02000000;
+ pci_write_config_dword(dev, PMC551_DRAM_CFG, dcmd);
+
+ /*
+ * Check to make certain fast back-to-back, if not
+ * then set it so
+ */
+ pci_read_config_word(dev, PCI_STATUS, &cmd);
+ if ((cmd & PCI_COMMAND_FAST_BACK) == 0) {
+ cmd |= PCI_COMMAND_FAST_BACK;
+ pci_write_config_word(dev, PCI_STATUS, cmd);
+ }
+
+ /*
+ * Check to make certain the DEVSEL is set correctly, this device
+ * has a tendancy to assert DEVSEL and TRDY when a write is performed
+ * to the memory when memory is read-only
+ */
+ if ((cmd & PCI_STATUS_DEVSEL_MASK) != 0x0) {
+ cmd &= ~PCI_STATUS_DEVSEL_MASK;
+ pci_write_config_word(dev, PCI_STATUS, cmd);
+ }
+ /*
+ * Set to be prefetchable and put everything back based on old cfg.
* it's possible that the reset of the V370PDC nuked the original
* setup
- */
+ */
+ /*
+ cfg |= PCI_BASE_ADDRESS_MEM_PREFETCH;
+ pci_write_config_dword( dev, PCI_BASE_ADDRESS_0, cfg );
+ */
+
/*
- cfg |= PCI_BASE_ADDRESS_MEM_PREFETCH;
- pci_write_config_dword( dev, PCI_BASE_ADDRESS_0, cfg );
- */
-
- /*
- * Turn PCI memory and I/O bus access back on
- */
- pci_write_config_word( dev, PCI_COMMAND,
- PCI_COMMAND_MEMORY | PCI_COMMAND_IO );
+ * Turn PCI memory and I/O bus access back on
+ */
+ pci_write_config_word(dev, PCI_COMMAND,
+ PCI_COMMAND_MEMORY | PCI_COMMAND_IO);
#ifdef CONFIG_MTD_PMC551_DEBUG
- /*
- * Some screen fun
- */
- printk(KERN_DEBUG "pmc551: %d%c (0x%x) of %sprefetchable memory at 0x%llx\n",
- (size<1024)?size:(size<1048576)?size>>10:size>>20,
- (size<1024)?'B':(size<1048576)?'K':'M',
- size, ((dcmd&(0x1<<3)) == 0)?"non-":"",
- (unsigned long long)((dev->resource[0].start)&PCI_BASE_ADDRESS_MEM_MASK));
-
- /*
- * Check to see the state of the memory
- */
- pci_read_config_dword( dev, PMC551_DRAM_BLK0, &dcmd );
- printk(KERN_DEBUG "pmc551: DRAM_BLK0 Flags: %s,%s\n"
- "pmc551: DRAM_BLK0 Size: %d at %d\n"
- "pmc551: DRAM_BLK0 Row MUX: %d, Col MUX: %d\n",
- (((0x1<<1)&dcmd) == 0)?"RW":"RO",
- (((0x1<<0)&dcmd) == 0)?"Off":"On",
- PMC551_DRAM_BLK_GET_SIZE(dcmd),
- ((dcmd>>20)&0x7FF), ((dcmd>>13)&0x7), ((dcmd>>9)&0xF) );
-
- pci_read_config_dword( dev, PMC551_DRAM_BLK1, &dcmd );
- printk(KERN_DEBUG "pmc551: DRAM_BLK1 Flags: %s,%s\n"
- "pmc551: DRAM_BLK1 Size: %d at %d\n"
- "pmc551: DRAM_BLK1 Row MUX: %d, Col MUX: %d\n",
- (((0x1<<1)&dcmd) == 0)?"RW":"RO",
- (((0x1<<0)&dcmd) == 0)?"Off":"On",
- PMC551_DRAM_BLK_GET_SIZE(dcmd),
- ((dcmd>>20)&0x7FF), ((dcmd>>13)&0x7), ((dcmd>>9)&0xF) );
-
- pci_read_config_dword( dev, PMC551_DRAM_BLK2, &dcmd );
- printk(KERN_DEBUG "pmc551: DRAM_BLK2 Flags: %s,%s\n"
- "pmc551: DRAM_BLK2 Size: %d at %d\n"
- "pmc551: DRAM_BLK2 Row MUX: %d, Col MUX: %d\n",
- (((0x1<<1)&dcmd) == 0)?"RW":"RO",
- (((0x1<<0)&dcmd) == 0)?"Off":"On",
- PMC551_DRAM_BLK_GET_SIZE(dcmd),
- ((dcmd>>20)&0x7FF), ((dcmd>>13)&0x7), ((dcmd>>9)&0xF) );
-
- pci_read_config_dword( dev, PMC551_DRAM_BLK3, &dcmd );
- printk(KERN_DEBUG "pmc551: DRAM_BLK3 Flags: %s,%s\n"
- "pmc551: DRAM_BLK3 Size: %d at %d\n"
- "pmc551: DRAM_BLK3 Row MUX: %d, Col MUX: %d\n",
- (((0x1<<1)&dcmd) == 0)?"RW":"RO",
- (((0x1<<0)&dcmd) == 0)?"Off":"On",
- PMC551_DRAM_BLK_GET_SIZE(dcmd),
- ((dcmd>>20)&0x7FF), ((dcmd>>13)&0x7), ((dcmd>>9)&0xF) );
-
- pci_read_config_word( dev, PCI_COMMAND, &cmd );
- printk( KERN_DEBUG "pmc551: Memory Access %s\n",
- (((0x1<<1)&cmd) == 0)?"off":"on" );
- printk( KERN_DEBUG "pmc551: I/O Access %s\n",
- (((0x1<<0)&cmd) == 0)?"off":"on" );
-
- pci_read_config_word( dev, PCI_STATUS, &cmd );
- printk( KERN_DEBUG "pmc551: Devsel %s\n",
- ((PCI_STATUS_DEVSEL_MASK&cmd)==0x000)?"Fast":
- ((PCI_STATUS_DEVSEL_MASK&cmd)==0x200)?"Medium":
- ((PCI_STATUS_DEVSEL_MASK&cmd)==0x400)?"Slow":"Invalid" );
-
- printk( KERN_DEBUG "pmc551: %sFast Back-to-Back\n",
- ((PCI_COMMAND_FAST_BACK&cmd) == 0)?"Not ":"" );
-
- pci_read_config_byte(dev, PMC551_SYS_CTRL_REG, &bcmd );
- printk( KERN_DEBUG "pmc551: EEPROM is under %s control\n"
- "pmc551: System Control Register is %slocked to PCI access\n"
- "pmc551: System Control Register is %slocked to EEPROM access\n",
- (bcmd&0x1)?"software":"hardware",
- (bcmd&0x20)?"":"un", (bcmd&0x40)?"":"un");
+ /*
+ * Some screen fun
+ */
+ printk(KERN_DEBUG "pmc551: %d%c (0x%x) of %sprefetchable memory at "
+ "0x%llx\n", (size < 1024) ? size : (size < 1048576) ?
+ size >> 10 : size >> 20,
+ (size < 1024) ? 'B' : (size < 1048576) ? 'K' : 'M', size,
+ ((dcmd & (0x1 << 3)) == 0) ? "non-" : "",
+ (unsigned long long)pci_resource_start(dev, 0));
+
+ /*
+ * Check to see the state of the memory
+ */
+ pci_read_config_dword(dev, PMC551_DRAM_BLK0, &dcmd);
+ printk(KERN_DEBUG "pmc551: DRAM_BLK0 Flags: %s,%s\n"
+ "pmc551: DRAM_BLK0 Size: %d at %d\n"
+ "pmc551: DRAM_BLK0 Row MUX: %d, Col MUX: %d\n",
+ (((0x1 << 1) & dcmd) == 0) ? "RW" : "RO",
+ (((0x1 << 0) & dcmd) == 0) ? "Off" : "On",
+ PMC551_DRAM_BLK_GET_SIZE(dcmd),
+ ((dcmd >> 20) & 0x7FF), ((dcmd >> 13) & 0x7),
+ ((dcmd >> 9) & 0xF));
+
+ pci_read_config_dword(dev, PMC551_DRAM_BLK1, &dcmd);
+ printk(KERN_DEBUG "pmc551: DRAM_BLK1 Flags: %s,%s\n"
+ "pmc551: DRAM_BLK1 Size: %d at %d\n"
+ "pmc551: DRAM_BLK1 Row MUX: %d, Col MUX: %d\n",
+ (((0x1 << 1) & dcmd) == 0) ? "RW" : "RO",
+ (((0x1 << 0) & dcmd) == 0) ? "Off" : "On",
+ PMC551_DRAM_BLK_GET_SIZE(dcmd),
+ ((dcmd >> 20) & 0x7FF), ((dcmd >> 13) & 0x7),
+ ((dcmd >> 9) & 0xF));
+
+ pci_read_config_dword(dev, PMC551_DRAM_BLK2, &dcmd);
+ printk(KERN_DEBUG "pmc551: DRAM_BLK2 Flags: %s,%s\n"
+ "pmc551: DRAM_BLK2 Size: %d at %d\n"
+ "pmc551: DRAM_BLK2 Row MUX: %d, Col MUX: %d\n",
+ (((0x1 << 1) & dcmd) == 0) ? "RW" : "RO",
+ (((0x1 << 0) & dcmd) == 0) ? "Off" : "On",
+ PMC551_DRAM_BLK_GET_SIZE(dcmd),
+ ((dcmd >> 20) & 0x7FF), ((dcmd >> 13) & 0x7),
+ ((dcmd >> 9) & 0xF));
+
+ pci_read_config_dword(dev, PMC551_DRAM_BLK3, &dcmd);
+ printk(KERN_DEBUG "pmc551: DRAM_BLK3 Flags: %s,%s\n"
+ "pmc551: DRAM_BLK3 Size: %d at %d\n"
+ "pmc551: DRAM_BLK3 Row MUX: %d, Col MUX: %d\n",
+ (((0x1 << 1) & dcmd) == 0) ? "RW" : "RO",
+ (((0x1 << 0) & dcmd) == 0) ? "Off" : "On",
+ PMC551_DRAM_BLK_GET_SIZE(dcmd),
+ ((dcmd >> 20) & 0x7FF), ((dcmd >> 13) & 0x7),
+ ((dcmd >> 9) & 0xF));
+
+ pci_read_config_word(dev, PCI_COMMAND, &cmd);
+ printk(KERN_DEBUG "pmc551: Memory Access %s\n",
+ (((0x1 << 1) & cmd) == 0) ? "off" : "on");
+ printk(KERN_DEBUG "pmc551: I/O Access %s\n",
+ (((0x1 << 0) & cmd) == 0) ? "off" : "on");
+
+ pci_read_config_word(dev, PCI_STATUS, &cmd);
+ printk(KERN_DEBUG "pmc551: Devsel %s\n",
+ ((PCI_STATUS_DEVSEL_MASK & cmd) == 0x000) ? "Fast" :
+ ((PCI_STATUS_DEVSEL_MASK & cmd) == 0x200) ? "Medium" :
+ ((PCI_STATUS_DEVSEL_MASK & cmd) == 0x400) ? "Slow" : "Invalid");
+
+ printk(KERN_DEBUG "pmc551: %sFast Back-to-Back\n",
+ ((PCI_COMMAND_FAST_BACK & cmd) == 0) ? "Not " : "");
+
+ pci_read_config_byte(dev, PMC551_SYS_CTRL_REG, &bcmd);
+ printk(KERN_DEBUG "pmc551: EEPROM is under %s control\n"
+ "pmc551: System Control Register is %slocked to PCI access\n"
+ "pmc551: System Control Register is %slocked to EEPROM access\n",
+ (bcmd & 0x1) ? "software" : "hardware",
+ (bcmd & 0x20) ? "" : "un", (bcmd & 0x40) ? "" : "un");
#endif
- return size;
+ return size;
}
/*
* Kernel version specific module stuffages
*/
-
MODULE_LICENSE("GPL");
MODULE_AUTHOR("Mark Ferrell <mferrell@mvista.com>");
MODULE_DESCRIPTION(PMC551_VERSION);
@@ -628,11 +649,11 @@ MODULE_DESCRIPTION(PMC551_VERSION);
/*
* Stuff these outside the ifdef so as to not bust compiled in driver support
*/
-static int msize=0;
+static int msize = 0;
#if defined(CONFIG_MTD_PMC551_APERTURE_SIZE)
-static int asize=CONFIG_MTD_PMC551_APERTURE_SIZE
+static int asize = CONFIG_MTD_PMC551_APERTURE_SIZE
#else
-static int asize=0;
+static int asize = 0;
#endif
module_param(msize, int, 0);
@@ -645,164 +666,174 @@ MODULE_PARM_DESC(asize, "aperture size, must be <= memsize [1-1024]");
*/
static int __init init_pmc551(void)
{
- struct pci_dev *PCI_Device = NULL;
- struct mypriv *priv;
- int count, found=0;
- struct mtd_info *mtd;
- u32 length = 0;
-
- if(msize) {
- msize = (1 << (ffs(msize) - 1))<<20;
- if (msize > (1<<30)) {
- printk(KERN_NOTICE "pmc551: Invalid memory size [%d]\n", msize);
+ struct pci_dev *PCI_Device = NULL;
+ struct mypriv *priv;
+ int count, found = 0;
+ struct mtd_info *mtd;
+ u32 length = 0;
+
+ if (msize) {
+ msize = (1 << (ffs(msize) - 1)) << 20;
+ if (msize > (1 << 30)) {
+ printk(KERN_NOTICE "pmc551: Invalid memory size [%d]\n",
+ msize);
return -EINVAL;
}
}
- if(asize) {
- asize = (1 << (ffs(asize) - 1))<<20;
- if (asize > (1<<30) ) {
- printk(KERN_NOTICE "pmc551: Invalid aperture size [%d]\n", asize);
+ if (asize) {
+ asize = (1 << (ffs(asize) - 1)) << 20;
+ if (asize > (1 << 30)) {
+ printk(KERN_NOTICE "pmc551: Invalid aperture size "
+ "[%d]\n", asize);
return -EINVAL;
}
}
- printk(KERN_INFO PMC551_VERSION);
-
- /*
- * PCU-bus chipset probe.
- */
- for( count = 0; count < MAX_MTD_DEVICES; count++ ) {
-
- if ((PCI_Device = pci_find_device(PCI_VENDOR_ID_V3_SEMI,
- PCI_DEVICE_ID_V3_SEMI_V370PDC,
- PCI_Device ) ) == NULL) {
- break;
- }
-
- printk(KERN_NOTICE "pmc551: Found PCI V370PDC at 0x%llx\n",
- (unsigned long long)PCI_Device->resource[0].start);
-
- /*
- * The PMC551 device acts VERY weird if you don't init it
- * first. i.e. it will not correctly report devsel. If for
- * some reason the sdram is in a wrote-protected state the
- * device will DEVSEL when it is written to causing problems
- * with the oldproc.c driver in
- * some kernels (2.2.*)
- */
- if((length = fixup_pmc551(PCI_Device)) <= 0) {
- printk(KERN_NOTICE "pmc551: Cannot init SDRAM\n");
- break;
- }
+ printk(KERN_INFO PMC551_VERSION);
+
+ /*
+ * PCU-bus chipset probe.
+ */
+ for (count = 0; count < MAX_MTD_DEVICES; count++) {
+
+ if ((PCI_Device = pci_get_device(PCI_VENDOR_ID_V3_SEMI,
+ PCI_DEVICE_ID_V3_SEMI_V370PDC,
+ PCI_Device)) == NULL) {
+ break;
+ }
+
+ printk(KERN_NOTICE "pmc551: Found PCI V370PDC at 0x%llx\n",
+ (unsigned long long)pci_resource_start(PCI_Device, 0));
+
+ /*
+ * The PMC551 device acts VERY weird if you don't init it
+ * first. i.e. it will not correctly report devsel. If for
+ * some reason the sdram is in a wrote-protected state the
+ * device will DEVSEL when it is written to causing problems
+ * with the oldproc.c driver in
+ * some kernels (2.2.*)
+ */
+ if ((length = fixup_pmc551(PCI_Device)) <= 0) {
+ printk(KERN_NOTICE "pmc551: Cannot init SDRAM\n");
+ break;
+ }
/*
* This is needed until the driver is capable of reading the
* onboard I2C SROM to discover the "real" memory size.
*/
- if(msize) {
+ if (msize) {
length = msize;
- printk(KERN_NOTICE "pmc551: Using specified memory size 0x%x\n", length);
+ printk(KERN_NOTICE "pmc551: Using specified memory "
+ "size 0x%x\n", length);
} else {
msize = length;
}
- mtd = kmalloc(sizeof(struct mtd_info), GFP_KERNEL);
- if (!mtd) {
- printk(KERN_NOTICE "pmc551: Cannot allocate new MTD device.\n");
- break;
- }
-
- memset(mtd, 0, sizeof(struct mtd_info));
-
- priv = kmalloc (sizeof(struct mypriv), GFP_KERNEL);
- if (!priv) {
- printk(KERN_NOTICE "pmc551: Cannot allocate new MTD device.\n");
- kfree(mtd);
- break;
- }
- memset(priv, 0, sizeof(*priv));
- mtd->priv = priv;
- priv->dev = PCI_Device;
-
- if(asize > length) {
- printk(KERN_NOTICE "pmc551: reducing aperture size to fit %dM\n",length>>20);
+ mtd = kzalloc(sizeof(struct mtd_info), GFP_KERNEL);
+ if (!mtd) {
+ printk(KERN_NOTICE "pmc551: Cannot allocate new MTD "
+ "device.\n");
+ break;
+ }
+
+ priv = kzalloc(sizeof(struct mypriv), GFP_KERNEL);
+ if (!priv) {
+ printk(KERN_NOTICE "pmc551: Cannot allocate new MTD "
+ "device.\n");
+ kfree(mtd);
+ break;
+ }
+ mtd->priv = priv;
+ priv->dev = PCI_Device;
+
+ if (asize > length) {
+ printk(KERN_NOTICE "pmc551: reducing aperture size to "
+ "fit %dM\n", length >> 20);
priv->asize = asize = length;
} else if (asize == 0 || asize == length) {
- printk(KERN_NOTICE "pmc551: Using existing aperture size %dM\n", length>>20);
+ printk(KERN_NOTICE "pmc551: Using existing aperture "
+ "size %dM\n", length >> 20);
priv->asize = asize = length;
} else {
- printk(KERN_NOTICE "pmc551: Using specified aperture size %dM\n", asize>>20);
+ printk(KERN_NOTICE "pmc551: Using specified aperture "
+ "size %dM\n", asize >> 20);
priv->asize = asize;
}
- priv->start = ioremap(((PCI_Device->resource[0].start)
- & PCI_BASE_ADDRESS_MEM_MASK),
- priv->asize);
+ priv->start = pci_iomap(PCI_Device, 0, priv->asize);
if (!priv->start) {
printk(KERN_NOTICE "pmc551: Unable to map IO space\n");
- kfree(mtd->priv);
- kfree(mtd);
+ kfree(mtd->priv);
+ kfree(mtd);
break;
}
-
#ifdef CONFIG_MTD_PMC551_DEBUG
- printk( KERN_DEBUG "pmc551: setting aperture to %d\n",
- ffs(priv->asize>>20)-1);
+ printk(KERN_DEBUG "pmc551: setting aperture to %d\n",
+ ffs(priv->asize >> 20) - 1);
#endif
- priv->base_map0 = ( PMC551_PCI_MEM_MAP_REG_EN
- | PMC551_PCI_MEM_MAP_ENABLE
- | (ffs(priv->asize>>20)-1)<<4 );
- priv->curr_map0 = priv->base_map0;
- pci_write_config_dword ( priv->dev, PMC551_PCI_MEM_MAP0,
- priv->curr_map0 );
+ priv->base_map0 = (PMC551_PCI_MEM_MAP_REG_EN
+ | PMC551_PCI_MEM_MAP_ENABLE
+ | (ffs(priv->asize >> 20) - 1) << 4);
+ priv->curr_map0 = priv->base_map0;
+ pci_write_config_dword(priv->dev, PMC551_PCI_MEM_MAP0,
+ priv->curr_map0);
#ifdef CONFIG_MTD_PMC551_DEBUG
- printk( KERN_DEBUG "pmc551: aperture set to %d\n",
- (priv->base_map0 & 0xF0)>>4 );
+ printk(KERN_DEBUG "pmc551: aperture set to %d\n",
+ (priv->base_map0 & 0xF0) >> 4);
#endif
- mtd->size = msize;
- mtd->flags = MTD_CAP_RAM;
- mtd->erase = pmc551_erase;
- mtd->read = pmc551_read;
- mtd->write = pmc551_write;
- mtd->point = pmc551_point;
- mtd->unpoint = pmc551_unpoint;
- mtd->type = MTD_RAM;
- mtd->name = "PMC551 RAM board";
- mtd->erasesize = 0x10000;
- mtd->writesize = 1;
- mtd->owner = THIS_MODULE;
-
- if (add_mtd_device(mtd)) {
- printk(KERN_NOTICE "pmc551: Failed to register new device\n");
- iounmap(priv->start);
- kfree(mtd->priv);
- kfree(mtd);
- break;
- }
- printk(KERN_NOTICE "Registered pmc551 memory device.\n");
- printk(KERN_NOTICE "Mapped %dM of memory from 0x%p to 0x%p\n",
- priv->asize>>20,
- priv->start,
- priv->start + priv->asize);
- printk(KERN_NOTICE "Total memory is %d%c\n",
- (length<1024)?length:
- (length<1048576)?length>>10:length>>20,
- (length<1024)?'B':(length<1048576)?'K':'M');
+ mtd->size = msize;
+ mtd->flags = MTD_CAP_RAM;
+ mtd->erase = pmc551_erase;
+ mtd->read = pmc551_read;
+ mtd->write = pmc551_write;
+ mtd->point = pmc551_point;
+ mtd->unpoint = pmc551_unpoint;
+ mtd->type = MTD_RAM;
+ mtd->name = "PMC551 RAM board";
+ mtd->erasesize = 0x10000;
+ mtd->writesize = 1;
+ mtd->owner = THIS_MODULE;
+
+ if (add_mtd_device(mtd)) {
+ printk(KERN_NOTICE "pmc551: Failed to register new "
+ "device\n");
+ pci_iounmap(PCI_Device, priv->start);
+ kfree(mtd->priv);
+ kfree(mtd);
+ break;
+ }
+
+ /* Keep a reference as the add_mtd_device worked */
+ pci_dev_get(PCI_Device);
+
+ printk(KERN_NOTICE "Registered pmc551 memory device.\n");
+ printk(KERN_NOTICE "Mapped %dM of memory from 0x%p to 0x%p\n",
+ priv->asize >> 20,
+ priv->start, priv->start + priv->asize);
+ printk(KERN_NOTICE "Total memory is %d%c\n",
+ (length < 1024) ? length :
+ (length < 1048576) ? length >> 10 : length >> 20,
+ (length < 1024) ? 'B' : (length < 1048576) ? 'K' : 'M');
priv->nextpmc551 = pmc551list;
pmc551list = mtd;
found++;
- }
+ }
+
+ /* Exited early, reference left over */
+ if (PCI_Device)
+ pci_dev_put(PCI_Device);
- if( !pmc551list ) {
- printk(KERN_NOTICE "pmc551: not detected\n");
- return -ENODEV;
- } else {
+ if (!pmc551list) {
+ printk(KERN_NOTICE "pmc551: not detected\n");
+ return -ENODEV;
+ } else {
printk(KERN_NOTICE "pmc551: %d pmc551 devices loaded\n", found);
- return 0;
+ return 0;
}
}
@@ -811,23 +842,24 @@ static int __init init_pmc551(void)
*/
static void __exit cleanup_pmc551(void)
{
- int found=0;
- struct mtd_info *mtd;
+ int found = 0;
+ struct mtd_info *mtd;
struct mypriv *priv;
- while((mtd=pmc551list)) {
+ while ((mtd = pmc551list)) {
priv = mtd->priv;
pmc551list = priv->nextpmc551;
- if(priv->start) {
- printk (KERN_DEBUG "pmc551: unmapping %dM starting at 0x%p\n",
- priv->asize>>20, priv->start);
- iounmap (priv->start);
+ if (priv->start) {
+ printk(KERN_DEBUG "pmc551: unmapping %dM starting at "
+ "0x%p\n", priv->asize >> 20, priv->start);
+ pci_iounmap(priv->dev, priv->start);
}
+ pci_dev_put(priv->dev);
- kfree (mtd->priv);
- del_mtd_device (mtd);
- kfree (mtd);
+ kfree(mtd->priv);
+ del_mtd_device(mtd);
+ kfree(mtd);
found++;
}
diff --git a/drivers/mtd/maps/Kconfig b/drivers/mtd/maps/Kconfig
index 64d1b6a6c92..24747bdc3e1 100644
--- a/drivers/mtd/maps/Kconfig
+++ b/drivers/mtd/maps/Kconfig
@@ -447,14 +447,6 @@ config MTD_DC21285
21285 bridge used with Intel's StrongARM processors. More info at
<http://www.intel.com/design/bridge/docs/21285_documentation.htm>.
-config MTD_IQ80310
- tristate "CFI Flash device mapped on the XScale IQ80310 board"
- depends on MTD_CFI && ARCH_IQ80310
- help
- This enables access routines for the flash chips on the Intel XScale
- IQ80310 evaluation board. If you have one of these boards and would
- like to use the flash chips on it, say 'Y'.
-
config MTD_IXP4XX
tristate "CFI Flash device mapped on Intel IXP4xx based systems"
depends on MTD_CFI && MTD_COMPLEX_MAPPINGS && ARCH_IXP4XX
diff --git a/drivers/mtd/maps/Makefile b/drivers/mtd/maps/Makefile
index ab71f172eb7..191c1928bbe 100644
--- a/drivers/mtd/maps/Makefile
+++ b/drivers/mtd/maps/Makefile
@@ -15,7 +15,6 @@ obj-$(CONFIG_MTD_CFI_FLAGADM) += cfi_flagadm.o
obj-$(CONFIG_MTD_CSTM_MIPS_IXX) += cstm_mips_ixx.o
obj-$(CONFIG_MTD_DC21285) += dc21285.o
obj-$(CONFIG_MTD_DILNETPC) += dilnetpc.o
-obj-$(CONFIG_MTD_IQ80310) += iq80310.o
obj-$(CONFIG_MTD_L440GX) += l440gx.o
obj-$(CONFIG_MTD_AMD76XROM) += amd76xrom.o
obj-$(CONFIG_MTD_ICHXROM) += ichxrom.o
diff --git a/drivers/mtd/maps/amd76xrom.c b/drivers/mtd/maps/amd76xrom.c
index 447955be18a..797caffb20b 100644
--- a/drivers/mtd/maps/amd76xrom.c
+++ b/drivers/mtd/maps/amd76xrom.c
@@ -57,6 +57,7 @@ static void amd76xrom_cleanup(struct amd76xrom_window *window)
/* Disable writes through the rom window */
pci_read_config_byte(window->pdev, 0x40, &byte);
pci_write_config_byte(window->pdev, 0x40, byte & ~1);
+ pci_dev_put(window->pdev);
}
/* Free all of the mtd devices */
@@ -91,7 +92,7 @@ static int __devinit amd76xrom_init_one (struct pci_dev *pdev,
struct amd76xrom_map_info *map = NULL;
unsigned long map_top;
- /* Remember the pci dev I find the window in */
+ /* Remember the pci dev I find the window in - already have a ref */
window->pdev = pdev;
/* Assume the rom window is properly setup, and find it's size */
@@ -302,7 +303,7 @@ static int __init init_amd76xrom(void)
struct pci_device_id *id;
pdev = NULL;
for(id = amd76xrom_pci_tbl; id->vendor; id++) {
- pdev = pci_find_device(id->vendor, id->device, NULL);
+ pdev = pci_get_device(id->vendor, id->device, NULL);
if (pdev) {
break;
}
diff --git a/drivers/mtd/maps/arctic-mtd.c b/drivers/mtd/maps/arctic-mtd.c
index d95ae582fbe..642d96bc891 100644
--- a/drivers/mtd/maps/arctic-mtd.c
+++ b/drivers/mtd/maps/arctic-mtd.c
@@ -96,6 +96,8 @@ static struct mtd_partition arctic_partitions[PARTITIONS] = {
static int __init
init_arctic_mtd(void)
{
+ int err = 0;
+
printk("%s: 0x%08x at 0x%08x\n", NAME, SIZE, PADDR);
arctic_mtd_map.virt = ioremap(PADDR, SIZE);
@@ -109,12 +111,20 @@ init_arctic_mtd(void)
printk("%s: probing %d-bit flash bus\n", NAME, BUSWIDTH * 8);
arctic_mtd = do_map_probe("cfi_probe", &arctic_mtd_map);
- if (!arctic_mtd)
+ if (!arctic_mtd) {
+ iounmap((void *) arctic_mtd_map.virt);
return -ENXIO;
+ }
arctic_mtd->owner = THIS_MODULE;
- return add_mtd_partitions(arctic_mtd, arctic_partitions, PARTITIONS);
+ err = add_mtd_partitions(arctic_mtd, arctic_partitions, PARTITIONS);
+ if (err) {
+ printk("%s: add_mtd_partitions failed\n", NAME);
+ iounmap((void *) arctic_mtd_map.virt);
+ }
+
+ return err;
}
static void __exit
diff --git a/drivers/mtd/maps/beech-mtd.c b/drivers/mtd/maps/beech-mtd.c
index 5df7361d140..a64b1a5ab31 100644
--- a/drivers/mtd/maps/beech-mtd.c
+++ b/drivers/mtd/maps/beech-mtd.c
@@ -72,6 +72,8 @@ static struct mtd_partition beech_partitions[2] = {
static int __init
init_beech_mtd(void)
{
+ int err = 0;
+
printk("%s: 0x%08x at 0x%08x\n", NAME, SIZE, PADDR);
beech_mtd_map.virt = ioremap(PADDR, SIZE);
@@ -86,12 +88,20 @@ init_beech_mtd(void)
printk("%s: probing %d-bit flash bus\n", NAME, BUSWIDTH * 8);
beech_mtd = do_map_probe("cfi_probe", &beech_mtd_map);
- if (!beech_mtd)
+ if (!beech_mtd) {
+ iounmap((void *) beech_mtd_map.virt);
return -ENXIO;
+ }
beech_mtd->owner = THIS_MODULE;
- return add_mtd_partitions(beech_mtd, beech_partitions, 2);
+ err = add_mtd_partitions(beech_mtd, beech_partitions, 2);
+ if (err) {
+ printk("%s: add_mtd_partitions failed\n", NAME);
+ iounmap((void *) beech_mtd_map.virt);
+ }
+
+ return err;
}
static void __exit
diff --git a/drivers/mtd/maps/cstm_mips_ixx.c b/drivers/mtd/maps/cstm_mips_ixx.c
index aa56defb94c..d6bef100d69 100644
--- a/drivers/mtd/maps/cstm_mips_ixx.c
+++ b/drivers/mtd/maps/cstm_mips_ixx.c
@@ -171,7 +171,14 @@ int __init init_cstm_mips_ixx(void)
cstm_mips_ixx_map[i].phys = cstm_mips_ixx_board_desc[i].window_addr;
cstm_mips_ixx_map[i].virt = ioremap(cstm_mips_ixx_board_desc[i].window_addr, cstm_mips_ixx_board_desc[i].window_size);
if (!cstm_mips_ixx_map[i].virt) {
+ int j = 0;
printk(KERN_WARNING "Failed to ioremap\n");
+ for (j = 0; j < i; j++) {
+ if (cstm_mips_ixx_map[j].virt) {
+ iounmap((void *)cstm_mips_ixx_map[j].virt);
+ cstm_mips_ixx_map[j].virt = 0;
+ }
+ }
return -EIO;
}
cstm_mips_ixx_map[i].name = cstm_mips_ixx_board_desc[i].name;
@@ -204,8 +211,15 @@ int __init init_cstm_mips_ixx(void)
cstm_mips_ixx_map[i].map_priv_2 = (unsigned long)mymtd;
add_mtd_partitions(mymtd, parts, cstm_mips_ixx_board_desc[i].num_partitions);
}
- else
- return -ENXIO;
+ else {
+ for (i = 0; i < PHYSMAP_NUMBER; i++) {
+ if (cstm_mips_ixx_map[i].virt) {
+ iounmap((void *)cstm_mips_ixx_map[i].virt);
+ cstm_mips_ixx_map[i].virt = 0;
+ }
+ }
+ return -ENXIO;
+ }
}
return 0;
}
diff --git a/drivers/mtd/maps/ebony.c b/drivers/mtd/maps/ebony.c
index 641e1dd8479..1488bb92f26 100644
--- a/drivers/mtd/maps/ebony.c
+++ b/drivers/mtd/maps/ebony.c
@@ -108,6 +108,7 @@ int __init init_ebony(void)
ARRAY_SIZE(ebony_small_partitions));
} else {
printk("map probe failed for flash\n");
+ iounmap(ebony_small_map.virt);
return -ENXIO;
}
@@ -117,6 +118,7 @@ int __init init_ebony(void)
if (!ebony_large_map.virt) {
printk("Failed to ioremap flash\n");
+ iounmap(ebony_small_map.virt);
return -EIO;
}
@@ -129,6 +131,8 @@ int __init init_ebony(void)
ARRAY_SIZE(ebony_large_partitions));
} else {
printk("map probe failed for flash\n");
+ iounmap(ebony_small_map.virt);
+ iounmap(ebony_large_map.virt);
return -ENXIO;
}
diff --git a/drivers/mtd/maps/fortunet.c b/drivers/mtd/maps/fortunet.c
index c6bf4e1219e..7c50c271651 100644
--- a/drivers/mtd/maps/fortunet.c
+++ b/drivers/mtd/maps/fortunet.c
@@ -218,8 +218,11 @@ int __init init_fortunet(void)
map_regions[ix].map_info.size);
if(!map_regions[ix].map_info.virt)
{
+ int j = 0;
printk(MTD_FORTUNET_PK "%s flash failed to ioremap!\n",
map_regions[ix].map_info.name);
+ for (j = 0 ; j < ix; j++)
+ iounmap(map_regions[j].map_info.virt);
return -ENXIO;
}
simple_map_init(&map_regions[ix].map_info);
diff --git a/drivers/mtd/maps/ichxrom.c b/drivers/mtd/maps/ichxrom.c
index db4b570d874..2bb3e63606e 100644
--- a/drivers/mtd/maps/ichxrom.c
+++ b/drivers/mtd/maps/ichxrom.c
@@ -61,6 +61,7 @@ static void ichxrom_cleanup(struct ichxrom_window *window)
/* Disable writes through the rom window */
pci_read_config_word(window->pdev, BIOS_CNTL, &word);
pci_write_config_word(window->pdev, BIOS_CNTL, word & ~1);
+ pci_dev_put(window->pdev);
/* Free all of the mtd devices */
list_for_each_entry_safe(map, scratch, &window->maps, list) {
@@ -355,7 +356,7 @@ static int __init init_ichxrom(void)
pdev = NULL;
for (id = ichxrom_pci_tbl; id->vendor; id++) {
- pdev = pci_find_device(id->vendor, id->device, NULL);
+ pdev = pci_get_device(id->vendor, id->device, NULL);
if (pdev) {
break;
}
diff --git a/drivers/mtd/maps/iq80310.c b/drivers/mtd/maps/iq80310.c
deleted file mode 100644
index 62d9e87d84e..00000000000
--- a/drivers/mtd/maps/iq80310.c
+++ /dev/null
@@ -1,118 +0,0 @@
-/*
- * $Id: iq80310.c,v 1.21 2005/11/07 11:14:27 gleixner Exp $
- *
- * Mapping for the Intel XScale IQ80310 evaluation board
- *
- * Author: Nicolas Pitre
- * Copyright: (C) 2001 MontaVista Software Inc.
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2 as
- * published by the Free Software Foundation.
- */
-
-#include <linux/module.h>
-#include <linux/types.h>
-#include <linux/kernel.h>
-#include <linux/init.h>
-#include <linux/slab.h>
-#include <asm/io.h>
-#include <linux/mtd/mtd.h>
-#include <linux/mtd/map.h>
-#include <linux/mtd/partitions.h>
-
-
-#define WINDOW_ADDR 0
-#define WINDOW_SIZE 8*1024*1024
-#define BUSWIDTH 1
-
-static struct mtd_info *mymtd;
-
-static struct map_info iq80310_map = {
- .name = "IQ80310 flash",
- .size = WINDOW_SIZE,
- .bankwidth = BUSWIDTH,
- .phys = WINDOW_ADDR
-};
-
-static struct mtd_partition iq80310_partitions[4] = {
- {
- .name = "Firmware",
- .size = 0x00080000,
- .offset = 0,
- .mask_flags = MTD_WRITEABLE /* force read-only */
- },{
- .name = "Kernel",
- .size = 0x000a0000,
- .offset = 0x00080000,
- },{
- .name = "Filesystem",
- .size = 0x00600000,
- .offset = 0x00120000
- },{
- .name = "RedBoot",
- .size = 0x000e0000,
- .offset = 0x00720000,
- .mask_flags = MTD_WRITEABLE
- }
-};
-
-static struct mtd_info *mymtd;
-static struct mtd_partition *parsed_parts;
-static const char *probes[] = { "RedBoot", "cmdlinepart", NULL };
-
-static int __init init_iq80310(void)
-{
- struct mtd_partition *parts;
- int nb_parts = 0;
- int parsed_nr_parts = 0;
- int ret;
-
- iq80310_map.virt = ioremap(WINDOW_ADDR, WINDOW_SIZE);
- if (!iq80310_map.virt) {
- printk("Failed to ioremap\n");
- return -EIO;
- }
- simple_map_init(&iq80310_map);
-
- mymtd = do_map_probe("cfi_probe", &iq80310_map);
- if (!mymtd) {
- iounmap((void *)iq80310_map.virt);
- return -ENXIO;
- }
- mymtd->owner = THIS_MODULE;
-
- ret = parse_mtd_partitions(mymtd, probes, &parsed_parts, 0);
-
- if (ret > 0)
- parsed_nr_parts = ret;
-
- if (parsed_nr_parts > 0) {
- parts = parsed_parts;
- nb_parts = parsed_nr_parts;
- } else {
- parts = iq80310_partitions;
- nb_parts = ARRAY_SIZE(iq80310_partitions);
- }
- add_mtd_partitions(mymtd, parts, nb_parts);
- return 0;
-}
-
-static void __exit cleanup_iq80310(void)
-{
- if (mymtd) {
- del_mtd_partitions(mymtd);
- map_destroy(mymtd);
- kfree(parsed_parts);
- }
- if (iq80310_map.virt)
- iounmap((void *)iq80310_map.virt);
-}
-
-module_init(init_iq80310);
-module_exit(cleanup_iq80310);
-
-
-MODULE_LICENSE("GPL");
-MODULE_AUTHOR("Nicolas Pitre <nico@cam.org>");
-MODULE_DESCRIPTION("MTD map driver for Intel XScale IQ80310 evaluation board");
diff --git a/drivers/mtd/maps/ixp4xx.c b/drivers/mtd/maps/ixp4xx.c
index 986c5862839..7a828e3e644 100644
--- a/drivers/mtd/maps/ixp4xx.c
+++ b/drivers/mtd/maps/ixp4xx.c
@@ -253,7 +253,7 @@ static int ixp4xx_flash_probe(struct platform_device *dev)
/* Use the fast version */
info->map.write = ixp4xx_write16,
- err = parse_mtd_partitions(info->mtd, probes, &info->partitions, 0);
+ err = parse_mtd_partitions(info->mtd, probes, &info->partitions, dev->resource->start);
if (err > 0) {
err = add_mtd_partitions(info->mtd, info->partitions, err);
if(err)
diff --git a/drivers/mtd/maps/l440gx.c b/drivers/mtd/maps/l440gx.c
index 6b784ef5ee7..67620adf481 100644
--- a/drivers/mtd/maps/l440gx.c
+++ b/drivers/mtd/maps/l440gx.c
@@ -61,14 +61,17 @@ static int __init init_l440gx(void)
struct resource *pm_iobase;
__u16 word;
- dev = pci_find_device(PCI_VENDOR_ID_INTEL,
+ dev = pci_get_device(PCI_VENDOR_ID_INTEL,
PCI_DEVICE_ID_INTEL_82371AB_0, NULL);
- pm_dev = pci_find_device(PCI_VENDOR_ID_INTEL,
+ pm_dev = pci_get_device(PCI_VENDOR_ID_INTEL,
PCI_DEVICE_ID_INTEL_82371AB_3, NULL);
+ pci_dev_put(dev);
+
if (!dev || !pm_dev) {
printk(KERN_NOTICE "L440GX flash mapping: failed to find PIIX4 ISA bridge, cannot continue\n");
+ pci_dev_put(pm_dev);
return -ENODEV;
}
@@ -76,6 +79,7 @@ static int __init init_l440gx(void)
if (!l440gx_map.virt) {
printk(KERN_WARNING "Failed to ioremap L440GX flash region\n");
+ pci_dev_put(pm_dev);
return -ENOMEM;
}
simple_map_init(&l440gx_map);
@@ -99,8 +103,12 @@ static int __init init_l440gx(void)
pm_iobase->start += iobase & ~1;
pm_iobase->end += iobase & ~1;
+ pci_dev_put(pm_dev);
+
/* Allocate the resource region */
if (pci_assign_resource(pm_dev, PIIXE_IOBASE_RESOURCE) != 0) {
+ pci_dev_put(dev);
+ pci_dev_put(pm_dev);
printk(KERN_WARNING "Could not allocate pm iobase resource\n");
iounmap(l440gx_map.virt);
return -ENXIO;
diff --git a/drivers/mtd/maps/lasat.c b/drivers/mtd/maps/lasat.c
index 1c13d2dc0cd..e3437632105 100644
--- a/drivers/mtd/maps/lasat.c
+++ b/drivers/mtd/maps/lasat.c
@@ -79,6 +79,7 @@ static int __init init_lasat(void)
return 0;
}
+ iounmap(lasat_map.virt);
return -ENXIO;
}
@@ -89,6 +90,7 @@ static void __exit cleanup_lasat(void)
map_destroy(lasat_mtd);
}
if (lasat_map.virt) {
+ iounmap(lasat_map.virt);
lasat_map.virt = 0;
}
}
diff --git a/drivers/mtd/maps/nettel.c b/drivers/mtd/maps/nettel.c
index 0994b5b2e33..198e840ff6d 100644
--- a/drivers/mtd/maps/nettel.c
+++ b/drivers/mtd/maps/nettel.c
@@ -277,6 +277,7 @@ int __init nettel_init(void)
nettel_amd_map.virt = ioremap_nocache(amdaddr, maxsize);
if (!nettel_amd_map.virt) {
printk("SNAPGEAR: failed to ioremap() BOOTCS\n");
+ iounmap(nettel_mmcrp);
return(-EIO);
}
simple_map_init(&nettel_amd_map);
@@ -337,7 +338,8 @@ int __init nettel_init(void)
nettel_amd_map.virt = NULL;
#else
/* Only AMD flash supported */
- return(-ENXIO);
+ rc = -ENXIO;
+ goto out_unmap2;
#endif
}
@@ -361,14 +363,15 @@ int __init nettel_init(void)
nettel_intel_map.virt = ioremap_nocache(intel0addr, maxsize);
if (!nettel_intel_map.virt) {
printk("SNAPGEAR: failed to ioremap() ROMCS1\n");
- return(-EIO);
+ rc = -EIO;
+ goto out_unmap2;
}
simple_map_init(&nettel_intel_map);
intel_mtd = do_map_probe("cfi_probe", &nettel_intel_map);
if (!intel_mtd) {
- iounmap(nettel_intel_map.virt);
- return(-ENXIO);
+ rc = -ENXIO;
+ goto out_unmap1;
}
/* Set PAR to the detected size */
@@ -394,13 +397,14 @@ int __init nettel_init(void)
nettel_intel_map.virt = ioremap_nocache(intel0addr, maxsize);
if (!nettel_intel_map.virt) {
printk("SNAPGEAR: failed to ioremap() ROMCS1/2\n");
- return(-EIO);
+ rc = -EIO;
+ goto out_unmap2;
}
intel_mtd = do_map_probe("cfi_probe", &nettel_intel_map);
if (! intel_mtd) {
- iounmap((void *) nettel_intel_map.virt);
- return(-ENXIO);
+ rc = -ENXIO;
+ goto out_unmap1;
}
intel1size = intel_mtd->size - intel0size;
@@ -456,6 +460,18 @@ int __init nettel_init(void)
#endif
return(rc);
+
+#ifdef CONFIG_MTD_CFI_INTELEXT
+out_unmap1:
+ iounmap((void *) nettel_intel_map.virt);
+#endif
+
+out_unmap2:
+ iounmap(nettel_mmcrp);
+ iounmap(nettel_amd_map.virt);
+
+ return(rc);
+
}
/****************************************************************************/
@@ -469,6 +485,10 @@ void __exit nettel_cleanup(void)
del_mtd_partitions(amd_mtd);
map_destroy(amd_mtd);
}
+ if (nettel_mmcrp) {
+ iounmap(nettel_mmcrp);
+ nettel_mmcrp = NULL;
+ }
if (nettel_amd_map.virt) {
iounmap(nettel_amd_map.virt);
nettel_amd_map.virt = NULL;
diff --git a/drivers/mtd/maps/ocotea.c b/drivers/mtd/maps/ocotea.c
index 2f07602ba94..5522eac8c98 100644
--- a/drivers/mtd/maps/ocotea.c
+++ b/drivers/mtd/maps/ocotea.c
@@ -97,6 +97,7 @@ int __init init_ocotea(void)
ARRAY_SIZE(ocotea_small_partitions));
} else {
printk("map probe failed for flash\n");
+ iounmap(ocotea_small_map.virt);
return -ENXIO;
}
@@ -106,6 +107,7 @@ int __init init_ocotea(void)
if (!ocotea_large_map.virt) {
printk("Failed to ioremap flash\n");
+ iounmap(ocotea_small_map.virt);
return -EIO;
}
@@ -118,6 +120,8 @@ int __init init_ocotea(void)
ARRAY_SIZE(ocotea_large_partitions));
} else {
printk("map probe failed for flash\n");
+ iounmap(ocotea_small_map.virt);
+ iounmap(ocotea_large_map.virt);
return -ENXIO;
}
diff --git a/drivers/mtd/maps/pcmciamtd.c b/drivers/mtd/maps/pcmciamtd.c
index c861134cbc4..995347b1beb 100644
--- a/drivers/mtd/maps/pcmciamtd.c
+++ b/drivers/mtd/maps/pcmciamtd.c
@@ -602,6 +602,10 @@ static int pcmciamtd_config(struct pcmcia_device *link)
ret = pcmcia_request_configuration(link, &link->conf);
if(ret != CS_SUCCESS) {
cs_error(link, RequestConfiguration, ret);
+ if (dev->win_base) {
+ iounmap(dev->win_base);
+ dev->win_base = NULL;
+ }
return -ENODEV;
}
diff --git a/drivers/mtd/maps/physmap.c b/drivers/mtd/maps/physmap.c
index 7799a25a7f2..bc7cc71788b 100644
--- a/drivers/mtd/maps/physmap.c
+++ b/drivers/mtd/maps/physmap.c
@@ -158,9 +158,42 @@ err_out:
return err;
}
+#ifdef CONFIG_PM
+static int physmap_flash_suspend(struct platform_device *dev, pm_message_t state)
+{
+ struct physmap_flash_info *info = platform_get_drvdata(dev);
+ int ret = 0;
+
+ if (info)
+ ret = info->mtd->suspend(info->mtd);
+
+ return ret;
+}
+
+static int physmap_flash_resume(struct platform_device *dev)
+{
+ struct physmap_flash_info *info = platform_get_drvdata(dev);
+ if (info)
+ info->mtd->resume(info->mtd);
+ return 0;
+}
+
+static void physmap_flash_shutdown(struct platform_device *dev)
+{
+ struct physmap_flash_info *info = platform_get_drvdata(dev);
+ if (info && info->mtd->suspend(info->mtd) == 0)
+ info->mtd->resume(info->mtd);
+}
+#endif
+
static struct platform_driver physmap_flash_driver = {
.probe = physmap_flash_probe,
.remove = physmap_flash_remove,
+#ifdef CONFIG_PM
+ .suspend = physmap_flash_suspend,
+ .resume = physmap_flash_resume,
+ .shutdown = physmap_flash_shutdown,
+#endif
.driver = {
.name = "physmap-flash",
},
diff --git a/drivers/mtd/maps/redwood.c b/drivers/mtd/maps/redwood.c
index ec8fdae1dd9..2257d2b500c 100644
--- a/drivers/mtd/maps/redwood.c
+++ b/drivers/mtd/maps/redwood.c
@@ -126,6 +126,8 @@ static struct mtd_info *redwood_mtd;
int __init init_redwood_flash(void)
{
+ int err = 0;
+
printk(KERN_NOTICE "redwood: flash mapping: %x at %x\n",
WINDOW_SIZE, WINDOW_ADDR);
@@ -141,11 +143,18 @@ int __init init_redwood_flash(void)
if (redwood_mtd) {
redwood_mtd->owner = THIS_MODULE;
- return add_mtd_partitions(redwood_mtd,
+ err = add_mtd_partitions(redwood_mtd,
redwood_flash_partitions,
NUM_REDWOOD_FLASH_PARTITIONS);
+ if (err) {
+ printk("init_redwood_flash: add_mtd_partitions failed\n");
+ iounmap(redwood_flash_map.virt);
+ }
+ return err;
+
}
+ iounmap(redwood_flash_map.virt);
return -ENXIO;
}
diff --git a/drivers/mtd/maps/sbc8240.c b/drivers/mtd/maps/sbc8240.c
index 7d0fcf8f4f3..b8c1331b7a0 100644
--- a/drivers/mtd/maps/sbc8240.c
+++ b/drivers/mtd/maps/sbc8240.c
@@ -156,7 +156,7 @@ int __init init_sbc8240_mtd (void)
};
int devicesfound = 0;
- int i;
+ int i,j;
for (i = 0; i < NUM_FLASH_BANKS; i++) {
printk (KERN_NOTICE MSG_PREFIX
@@ -166,6 +166,10 @@ int __init init_sbc8240_mtd (void)
(unsigned long) ioremap (pt[i].addr, pt[i].size);
if (!sbc8240_map[i].map_priv_1) {
printk (MSG_PREFIX "failed to ioremap\n");
+ for (j = 0; j < i; j++) {
+ iounmap((void *) sbc8240_map[j].map_priv_1);
+ sbc8240_map[j].map_priv_1 = 0;
+ }
return -EIO;
}
simple_map_init(&sbc8240_mtd[i]);
@@ -175,6 +179,11 @@ int __init init_sbc8240_mtd (void)
if (sbc8240_mtd[i]) {
sbc8240_mtd[i]->module = THIS_MODULE;
devicesfound++;
+ } else {
+ if (sbc8240_map[i].map_priv_1) {
+ iounmap((void *) sbc8240_map[i].map_priv_1);
+ sbc8240_map[i].map_priv_1 = 0;
+ }
}
}
diff --git a/drivers/mtd/maps/scx200_docflash.c b/drivers/mtd/maps/scx200_docflash.c
index 7391fd544e8..5e2bce22f37 100644
--- a/drivers/mtd/maps/scx200_docflash.c
+++ b/drivers/mtd/maps/scx200_docflash.c
@@ -87,19 +87,23 @@ static int __init init_scx200_docflash(void)
printk(KERN_DEBUG NAME ": NatSemi SCx200 DOCCS Flash Driver\n");
- if ((bridge = pci_find_device(PCI_VENDOR_ID_NS,
+ if ((bridge = pci_get_device(PCI_VENDOR_ID_NS,
PCI_DEVICE_ID_NS_SCx200_BRIDGE,
NULL)) == NULL)
return -ENODEV;
/* check that we have found the configuration block */
- if (!scx200_cb_present())
+ if (!scx200_cb_present()) {
+ pci_dev_put(bridge);
return -ENODEV;
+ }
if (probe) {
/* Try to use the present flash mapping if any */
pci_read_config_dword(bridge, SCx200_DOCCS_BASE, &base);
pci_read_config_dword(bridge, SCx200_DOCCS_CTRL, &ctrl);
+ pci_dev_put(bridge);
+
pmr = inl(scx200_cb_base + SCx200_PMR);
if (base == 0
@@ -127,6 +131,7 @@ static int __init init_scx200_docflash(void)
return -ENOMEM;
}
} else {
+ pci_dev_put(bridge);
for (u = size; u > 1; u >>= 1)
;
if (u != 1) {
diff --git a/drivers/mtd/maps/walnut.c b/drivers/mtd/maps/walnut.c
index ec80eec376b..ca932122fb6 100644
--- a/drivers/mtd/maps/walnut.c
+++ b/drivers/mtd/maps/walnut.c
@@ -68,6 +68,7 @@ int __init init_walnut(void)
if (WALNUT_FLASH_ONBD_N(fpga_brds1)) {
printk("The on-board flash is disabled (U79 sw 5)!");
+ iounmap(fpga_status_adr);
return -EIO;
}
if (WALNUT_FLASH_SRAM_SEL(fpga_brds1))
@@ -81,6 +82,7 @@ int __init init_walnut(void)
if (!walnut_map.virt) {
printk("Failed to ioremap flash.\n");
+ iounmap(fpga_status_adr);
return -EIO;
}
@@ -93,9 +95,11 @@ int __init init_walnut(void)
ARRAY_SIZE(walnut_partitions));
} else {
printk("map probe failed for flash\n");
+ iounmap(fpga_status_adr);
return -ENXIO;
}
+ iounmap(fpga_status_adr);
return 0;
}
diff --git a/drivers/mtd/mtdcore.c b/drivers/mtd/mtdcore.c
index 168d3ba063c..c4d26de7434 100644
--- a/drivers/mtd/mtdcore.c
+++ b/drivers/mtd/mtdcore.c
@@ -57,6 +57,16 @@ int add_mtd_device(struct mtd_info *mtd)
mtd->index = i;
mtd->usecount = 0;
+ /* Some chips always power up locked. Unlock them now */
+ if ((mtd->flags & MTD_WRITEABLE)
+ && (mtd->flags & MTD_STUPID_LOCK) && mtd->unlock) {
+ if (mtd->unlock(mtd, 0, mtd->size))
+ printk(KERN_WARNING
+ "%s: unlock failed, "
+ "writes may not work\n",
+ mtd->name);
+ }
+
DEBUG(0, "mtd: Giving out device %d to %s\n",i, mtd->name);
/* No need to get a refcount on the module containing
the notifier, since we hold the mtd_table_mutex */
diff --git a/drivers/mtd/nand/au1550nd.c b/drivers/mtd/nand/au1550nd.c
index 31228334da1..09e421a9689 100644
--- a/drivers/mtd/nand/au1550nd.c
+++ b/drivers/mtd/nand/au1550nd.c
@@ -21,18 +21,7 @@
#include <linux/version.h>
#include <asm/io.h>
-/* fixme: this is ugly */
-#if LINUX_VERSION_CODE > KERNEL_VERSION(2, 6, 0)
#include <asm/mach-au1x00/au1xxx.h>
-#else
-#include <asm/au1000.h>
-#ifdef CONFIG_MIPS_PB1550
-#include <asm/pb1550.h>
-#endif
-#ifdef CONFIG_MIPS_DB1550
-#include <asm/db1x00.h>
-#endif
-#endif
/*
* MTD structure for NAND controller
diff --git a/drivers/mtd/nand/edb7312.c b/drivers/mtd/nand/edb7312.c
index 516c0e5e564..12017f3c6bd 100644
--- a/drivers/mtd/nand/edb7312.c
+++ b/drivers/mtd/nand/edb7312.c
@@ -198,6 +198,9 @@ static void __exit ep7312_cleanup(void)
/* Release resources, unregister device */
nand_release(ap7312_mtd);
+ /* Release io resource */
+ iounmap((void *)this->IO_ADDR_R);
+
/* Free the MTD device structure */
kfree(ep7312_mtd);
}
diff --git a/drivers/mtd/nand/ndfc.c b/drivers/mtd/nand/ndfc.c
index e5bd88f2d56..039c759cfbf 100644
--- a/drivers/mtd/nand/ndfc.c
+++ b/drivers/mtd/nand/ndfc.c
@@ -168,7 +168,7 @@ static void ndfc_chip_init(struct ndfc_nand_mtd *mtd)
chip->ecc.mode = NAND_ECC_HW;
chip->ecc.size = 256;
chip->ecc.bytes = 3;
- chip->ecclayout = mtd->pl_chip->ecclayout;
+ chip->ecclayout = chip->ecc.layout = mtd->pl_chip->ecclayout;
mtd->mtd.priv = chip;
mtd->mtd.owner = THIS_MODULE;
}
diff --git a/drivers/mtd/nand/ppchameleonevb.c b/drivers/mtd/nand/ppchameleonevb.c
index 22fa65c12ab..eb7d4d443de 100644
--- a/drivers/mtd/nand/ppchameleonevb.c
+++ b/drivers/mtd/nand/ppchameleonevb.c
@@ -276,6 +276,7 @@ static int __init ppchameleonevb_init(void)
/* Scan to find existence of the device (it could not be mounted) */
if (nand_scan(ppchameleon_mtd, 1)) {
iounmap((void *)ppchameleon_fio_base);
+ ppchameleon_fio_base = NULL;
kfree(ppchameleon_mtd);
goto nand_evb_init;
}
@@ -314,6 +315,8 @@ static int __init ppchameleonevb_init(void)
ppchameleonevb_mtd = kmalloc(sizeof(struct mtd_info) + sizeof(struct nand_chip), GFP_KERNEL);
if (!ppchameleonevb_mtd) {
printk("Unable to allocate PPChameleonEVB NAND MTD device structure.\n");
+ if (ppchameleon_fio_base)
+ iounmap(ppchameleon_fio_base);
return -ENOMEM;
}
@@ -322,6 +325,8 @@ static int __init ppchameleonevb_init(void)
if (!ppchameleonevb_fio_base) {
printk("ioremap PPChameleonEVB NAND flash failed\n");
kfree(ppchameleonevb_mtd);
+ if (ppchameleon_fio_base)
+ iounmap(ppchameleon_fio_base);
return -EIO;
}
@@ -378,6 +383,8 @@ static int __init ppchameleonevb_init(void)
if (nand_scan(ppchameleonevb_mtd, 1)) {
iounmap((void *)ppchameleonevb_fio_base);
kfree(ppchameleonevb_mtd);
+ if (ppchameleon_fio_base)
+ iounmap(ppchameleon_fio_base);
return -ENXIO;
}
#ifdef CONFIG_MTD_PARTITIONS
diff --git a/drivers/mtd/ssfdc.c b/drivers/mtd/ssfdc.c
new file mode 100644
index 00000000000..ddbf015f411
--- /dev/null
+++ b/drivers/mtd/ssfdc.c
@@ -0,0 +1,468 @@
+/*
+ * Linux driver for SSFDC Flash Translation Layer (Read only)
+ * (c) 2005 Eptar srl
+ * Author: Claudio Lanconelli <lanconelli.claudio@eptar.com>
+ *
+ * Based on NTFL and MTDBLOCK_RO drivers
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License version 2 as
+ * published by the Free Software Foundation.
+ */
+
+#include <linux/config.h>
+#include <linux/kernel.h>
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/slab.h>
+#include <linux/hdreg.h>
+#include <linux/mtd/mtd.h>
+#include <linux/mtd/nand.h>
+#include <linux/mtd/blktrans.h>
+
+struct ssfdcr_record {
+ struct mtd_blktrans_dev mbd;
+ int usecount;
+ unsigned char heads;
+ unsigned char sectors;
+ unsigned short cylinders;
+ int cis_block; /* block n. containing CIS/IDI */
+ int erase_size; /* phys_block_size */
+ unsigned short *logic_block_map; /* all zones (max 8192 phys blocks on
+ the 128MB) */
+ int map_len; /* n. phys_blocks on the card */
+};
+
+#define SSFDCR_MAJOR 257
+#define SSFDCR_PARTN_BITS 3
+
+#define SECTOR_SIZE 512
+#define SECTOR_SHIFT 9
+#define OOB_SIZE 16
+
+#define MAX_LOGIC_BLK_PER_ZONE 1000
+#define MAX_PHYS_BLK_PER_ZONE 1024
+
+#define KB(x) ( (x) * 1024L )
+#define MB(x) ( KB(x) * 1024L )
+
+/** CHS Table
+ 1MB 2MB 4MB 8MB 16MB 32MB 64MB 128MB
+NCylinder 125 125 250 250 500 500 500 500
+NHead 4 4 4 4 4 8 8 16
+NSector 4 8 8 16 16 16 32 32
+SumSector 2,000 4,000 8,000 16,000 32,000 64,000 128,000 256,000
+SectorSize 512 512 512 512 512 512 512 512
+**/
+
+typedef struct {
+ unsigned long size;
+ unsigned short cyl;
+ unsigned char head;
+ unsigned char sec;
+} chs_entry_t;
+
+/* Must be ordered by size */
+static const chs_entry_t chs_table[] = {
+ { MB( 1), 125, 4, 4 },
+ { MB( 2), 125, 4, 8 },
+ { MB( 4), 250, 4, 8 },
+ { MB( 8), 250, 4, 16 },
+ { MB( 16), 500, 4, 16 },
+ { MB( 32), 500, 8, 16 },
+ { MB( 64), 500, 8, 32 },
+ { MB(128), 500, 16, 32 },
+ { 0 },
+};
+
+static int get_chs(unsigned long size, unsigned short *cyl, unsigned char *head,
+ unsigned char *sec)
+{
+ int k;
+ int found = 0;
+
+ k = 0;
+ while (chs_table[k].size > 0 && size > chs_table[k].size)
+ k++;
+
+ if (chs_table[k].size > 0) {
+ if (cyl)
+ *cyl = chs_table[k].cyl;
+ if (head)
+ *head = chs_table[k].head;
+ if (sec)
+ *sec = chs_table[k].sec;
+ found = 1;
+ }
+
+ return found;
+}
+
+/* These bytes are the signature for the CIS/IDI sector */
+static const uint8_t cis_numbers[] = {
+ 0x01, 0x03, 0xD9, 0x01, 0xFF, 0x18, 0x02, 0xDF, 0x01, 0x20
+};
+
+/* Read and check for a valid CIS sector */
+static int get_valid_cis_sector(struct mtd_info *mtd)
+{
+ int ret, k, cis_sector;
+ size_t retlen;
+ loff_t offset;
+ uint8_t sect_buf[SECTOR_SIZE];
+
+ /*
+ * Look for CIS/IDI sector on the first GOOD block (give up after 4 bad
+ * blocks). If the first good block doesn't contain CIS number the flash
+ * is not SSFDC formatted
+ */
+ cis_sector = -1;
+ for (k = 0, offset = 0; k < 4; k++, offset += mtd->erasesize) {
+ if (!mtd->block_isbad(mtd, offset)) {
+ ret = mtd->read(mtd, offset, SECTOR_SIZE, &retlen,
+ sect_buf);
+
+ /* CIS pattern match on the sector buffer */
+ if ( ret < 0 || retlen != SECTOR_SIZE ) {
+ printk(KERN_WARNING
+ "SSFDC_RO:can't read CIS/IDI sector\n");
+ } else if ( !memcmp(sect_buf, cis_numbers,
+ sizeof(cis_numbers)) ) {
+ /* Found */
+ cis_sector = (int)(offset >> SECTOR_SHIFT);
+ } else {
+ DEBUG(MTD_DEBUG_LEVEL1,
+ "SSFDC_RO: CIS/IDI sector not found"
+ " on %s (mtd%d)\n", mtd->name,
+ mtd->index);
+ }
+ break;
+ }
+ }
+
+ return cis_sector;
+}
+
+/* Read physical sector (wrapper to MTD_READ) */
+static int read_physical_sector(struct mtd_info *mtd, uint8_t *sect_buf,
+ int sect_no)
+{
+ int ret;
+ size_t retlen;
+ loff_t offset = (loff_t)sect_no << SECTOR_SHIFT;
+
+ ret = mtd->read(mtd, offset, SECTOR_SIZE, &retlen, sect_buf);
+ if (ret < 0 || retlen != SECTOR_SIZE)
+ return -1;
+
+ return 0;
+}
+
+/* Read redundancy area (wrapper to MTD_READ_OOB */
+static int read_raw_oob(struct mtd_info *mtd, loff_t offs, uint8_t *buf)
+{
+ struct mtd_oob_ops ops;
+ int ret;
+
+ ops.mode = MTD_OOB_RAW;
+ ops.ooboffs = 0;
+ ops.ooblen = mtd->oobsize;
+ ops.len = OOB_SIZE;
+ ops.oobbuf = buf;
+ ops.datbuf = NULL;
+
+ ret = mtd->read_oob(mtd, offs, &ops);
+ if (ret < 0 || ops.retlen != OOB_SIZE)
+ return -1;
+
+ return 0;
+}
+
+/* Parity calculator on a word of n bit size */
+static int get_parity(int number, int size)
+{
+ int k;
+ int parity;
+
+ parity = 1;
+ for (k = 0; k < size; k++) {
+ parity += (number >> k);
+ parity &= 1;
+ }
+ return parity;
+}
+
+/* Read and validate the logical block address field stored in the OOB */
+static int get_logical_address(uint8_t *oob_buf)
+{
+ int block_address, parity;
+ int offset[2] = {6, 11}; /* offset of the 2 address fields within OOB */
+ int j;
+ int ok = 0;
+
+ /*
+ * Look for the first valid logical address
+ * Valid address has fixed pattern on most significant bits and
+ * parity check
+ */
+ for (j = 0; j < ARRAY_SIZE(offset); j++) {
+ block_address = ((int)oob_buf[offset[j]] << 8) |
+ oob_buf[offset[j]+1];
+
+ /* Check for the signature bits in the address field (MSBits) */
+ if ((block_address & ~0x7FF) == 0x1000) {
+ parity = block_address & 0x01;
+ block_address &= 0x7FF;
+ block_address >>= 1;
+
+ if (get_parity(block_address, 10) != parity) {
+ DEBUG(MTD_DEBUG_LEVEL0,
+ "SSFDC_RO: logical address field%d"
+ "parity error(0x%04X)\n", j+1,
+ block_address);
+ } else {
+ ok = 1;
+ break;
+ }
+ }
+ }
+
+ if ( !ok )
+ block_address = -2;
+
+ DEBUG(MTD_DEBUG_LEVEL3, "SSFDC_RO: get_logical_address() %d\n",
+ block_address);
+
+ return block_address;
+}
+
+/* Build the logic block map */
+static int build_logical_block_map(struct ssfdcr_record *ssfdc)
+{
+ unsigned long offset;
+ uint8_t oob_buf[OOB_SIZE];
+ int ret, block_address, phys_block;
+ struct mtd_info *mtd = ssfdc->mbd.mtd;
+
+ DEBUG(MTD_DEBUG_LEVEL1, "SSFDC_RO: build_block_map() nblks=%d (%luK)\n",
+ ssfdc->map_len, (unsigned long)ssfdc->map_len *
+ ssfdc->erase_size / 1024 );
+
+ /* Scan every physical block, skip CIS block */
+ for (phys_block = ssfdc->cis_block + 1; phys_block < ssfdc->map_len;
+ phys_block++) {
+ offset = (unsigned long)phys_block * ssfdc->erase_size;
+ if (mtd->block_isbad(mtd, offset))
+ continue; /* skip bad blocks */
+
+ ret = read_raw_oob(mtd, offset, oob_buf);
+ if (ret < 0) {
+ DEBUG(MTD_DEBUG_LEVEL0,
+ "SSFDC_RO: mtd read_oob() failed at %lu\n",
+ offset);
+ return -1;
+ }
+ block_address = get_logical_address(oob_buf);
+
+ /* Skip invalid addresses */
+ if (block_address >= 0 &&
+ block_address < MAX_LOGIC_BLK_PER_ZONE) {
+ int zone_index;
+
+ zone_index = phys_block / MAX_PHYS_BLK_PER_ZONE;
+ block_address += zone_index * MAX_LOGIC_BLK_PER_ZONE;
+ ssfdc->logic_block_map[block_address] =
+ (unsigned short)phys_block;
+
+ DEBUG(MTD_DEBUG_LEVEL2,
+ "SSFDC_RO: build_block_map() phys_block=%d,"
+ "logic_block_addr=%d, zone=%d\n",
+ phys_block, block_address, zone_index);
+ }
+ }
+ return 0;
+}
+
+static void ssfdcr_add_mtd(struct mtd_blktrans_ops *tr, struct mtd_info *mtd)
+{
+ struct ssfdcr_record *ssfdc;
+ int cis_sector;
+
+ /* Check for small page NAND flash */
+ if (mtd->type != MTD_NANDFLASH || mtd->oobsize != OOB_SIZE)
+ return;
+
+ /* Check for SSDFC format by reading CIS/IDI sector */
+ cis_sector = get_valid_cis_sector(mtd);
+ if (cis_sector == -1)
+ return;
+
+ ssfdc = kzalloc(sizeof(struct ssfdcr_record), GFP_KERNEL);
+ if (!ssfdc) {
+ printk(KERN_WARNING
+ "SSFDC_RO: out of memory for data structures\n");
+ return;
+ }
+
+ ssfdc->mbd.mtd = mtd;
+ ssfdc->mbd.devnum = -1;
+ ssfdc->mbd.blksize = SECTOR_SIZE;
+ ssfdc->mbd.tr = tr;
+ ssfdc->mbd.readonly = 1;
+
+ ssfdc->cis_block = cis_sector / (mtd->erasesize >> SECTOR_SHIFT);
+ ssfdc->erase_size = mtd->erasesize;
+ ssfdc->map_len = mtd->size / mtd->erasesize;
+
+ DEBUG(MTD_DEBUG_LEVEL1,
+ "SSFDC_RO: cis_block=%d,erase_size=%d,map_len=%d,n_zones=%d\n",
+ ssfdc->cis_block, ssfdc->erase_size, ssfdc->map_len,
+ (ssfdc->map_len + MAX_PHYS_BLK_PER_ZONE - 1) /
+ MAX_PHYS_BLK_PER_ZONE);
+
+ /* Set geometry */
+ ssfdc->heads = 16;
+ ssfdc->sectors = 32;
+ get_chs( mtd->size, NULL, &ssfdc->heads, &ssfdc->sectors);
+ ssfdc->cylinders = (unsigned short)((mtd->size >> SECTOR_SHIFT) /
+ ((long)ssfdc->sectors * (long)ssfdc->heads));
+
+ DEBUG(MTD_DEBUG_LEVEL1, "SSFDC_RO: using C:%d H:%d S:%d == %ld sects\n",
+ ssfdc->cylinders, ssfdc->heads , ssfdc->sectors,
+ (long)ssfdc->cylinders * (long)ssfdc->heads *
+ (long)ssfdc->sectors );
+
+ ssfdc->mbd.size = (long)ssfdc->heads * (long)ssfdc->cylinders *
+ (long)ssfdc->sectors;
+
+ /* Allocate logical block map */
+ ssfdc->logic_block_map = kmalloc( sizeof(ssfdc->logic_block_map[0]) *
+ ssfdc->map_len, GFP_KERNEL);
+ if (!ssfdc->logic_block_map) {
+ printk(KERN_WARNING
+ "SSFDC_RO: out of memory for data structures\n");
+ goto out_err;
+ }
+ memset(ssfdc->logic_block_map, 0xff, sizeof(ssfdc->logic_block_map[0]) *
+ ssfdc->map_len);
+
+ /* Build logical block map */
+ if (build_logical_block_map(ssfdc) < 0)
+ goto out_err;
+
+ /* Register device + partitions */
+ if (add_mtd_blktrans_dev(&ssfdc->mbd))
+ goto out_err;
+
+ printk(KERN_INFO "SSFDC_RO: Found ssfdc%c on mtd%d (%s)\n",
+ ssfdc->mbd.devnum + 'a', mtd->index, mtd->name);
+ return;
+
+out_err:
+ kfree(ssfdc->logic_block_map);
+ kfree(ssfdc);
+}
+
+static void ssfdcr_remove_dev(struct mtd_blktrans_dev *dev)
+{
+ struct ssfdcr_record *ssfdc = (struct ssfdcr_record *)dev;
+
+ DEBUG(MTD_DEBUG_LEVEL1, "SSFDC_RO: remove_dev (i=%d)\n", dev->devnum);
+
+ del_mtd_blktrans_dev(dev);
+ kfree(ssfdc->logic_block_map);
+ kfree(ssfdc);
+}
+
+static int ssfdcr_readsect(struct mtd_blktrans_dev *dev,
+ unsigned long logic_sect_no, char *buf)
+{
+ struct ssfdcr_record *ssfdc = (struct ssfdcr_record *)dev;
+ int sectors_per_block, offset, block_address;
+
+ sectors_per_block = ssfdc->erase_size >> SECTOR_SHIFT;
+ offset = (int)(logic_sect_no % sectors_per_block);
+ block_address = (int)(logic_sect_no / sectors_per_block);
+
+ DEBUG(MTD_DEBUG_LEVEL3,
+ "SSFDC_RO: ssfdcr_readsect(%lu) sec_per_blk=%d, ofst=%d,"
+ " block_addr=%d\n", logic_sect_no, sectors_per_block, offset,
+ block_address);
+
+ if (block_address >= ssfdc->map_len)
+ BUG();
+
+ block_address = ssfdc->logic_block_map[block_address];
+
+ DEBUG(MTD_DEBUG_LEVEL3,
+ "SSFDC_RO: ssfdcr_readsect() phys_block_addr=%d\n",
+ block_address);
+
+ if (block_address < 0xffff) {
+ unsigned long sect_no;
+
+ sect_no = (unsigned long)block_address * sectors_per_block +
+ offset;
+
+ DEBUG(MTD_DEBUG_LEVEL3,
+ "SSFDC_RO: ssfdcr_readsect() phys_sect_no=%lu\n",
+ sect_no);
+
+ if (read_physical_sector( ssfdc->mbd.mtd, buf, sect_no ) < 0)
+ return -EIO;
+ } else {
+ memset(buf, 0xff, SECTOR_SIZE);
+ }
+
+ return 0;
+}
+
+static int ssfdcr_getgeo(struct mtd_blktrans_dev *dev, struct hd_geometry *geo)
+{
+ struct ssfdcr_record *ssfdc = (struct ssfdcr_record *)dev;
+
+ DEBUG(MTD_DEBUG_LEVEL1, "SSFDC_RO: ssfdcr_getgeo() C=%d, H=%d, S=%d\n",
+ ssfdc->cylinders, ssfdc->heads, ssfdc->sectors);
+
+ geo->heads = ssfdc->heads;
+ geo->sectors = ssfdc->sectors;
+ geo->cylinders = ssfdc->cylinders;
+
+ return 0;
+}
+
+/****************************************************************************
+ *
+ * Module stuff
+ *
+ ****************************************************************************/
+
+static struct mtd_blktrans_ops ssfdcr_tr = {
+ .name = "ssfdc",
+ .major = SSFDCR_MAJOR,
+ .part_bits = SSFDCR_PARTN_BITS,
+ .getgeo = ssfdcr_getgeo,
+ .readsect = ssfdcr_readsect,
+ .add_mtd = ssfdcr_add_mtd,
+ .remove_dev = ssfdcr_remove_dev,
+ .owner = THIS_MODULE,
+};
+
+static int __init init_ssfdcr(void)
+{
+ printk(KERN_INFO "SSFDC read-only Flash Translation layer\n");
+
+ return register_mtd_blktrans(&ssfdcr_tr);
+}
+
+static void __exit cleanup_ssfdcr(void)
+{
+ deregister_mtd_blktrans(&ssfdcr_tr);
+}
+
+module_init(init_ssfdcr);
+module_exit(cleanup_ssfdcr);
+
+MODULE_LICENSE("GPL");
+MODULE_AUTHOR("Claudio Lanconelli <lanconelli.claudio@eptar.com>");
+MODULE_DESCRIPTION("Flash Translation Layer for read-only SSFDC SmartMedia card");
diff --git a/drivers/net/bmac.c b/drivers/net/bmac.c
index 6fad83f24c4..71160966563 100644
--- a/drivers/net/bmac.c
+++ b/drivers/net/bmac.c
@@ -1264,7 +1264,8 @@ static int __devinit bmac_probe(struct macio_dev *mdev, const struct of_device_i
{
int j, rev, ret;
struct bmac_data *bp;
- unsigned char *addr;
+ const unsigned char *prop_addr;
+ unsigned char addr[6];
struct net_device *dev;
int is_bmac_plus = ((int)match->data) != 0;
@@ -1272,14 +1273,16 @@ static int __devinit bmac_probe(struct macio_dev *mdev, const struct of_device_i
printk(KERN_ERR "BMAC: can't use, need 3 addrs and 3 intrs\n");
return -ENODEV;
}
- addr = get_property(macio_get_of_node(mdev), "mac-address", NULL);
- if (addr == NULL) {
- addr = get_property(macio_get_of_node(mdev), "local-mac-address", NULL);
- if (addr == NULL) {
+ prop_addr = get_property(macio_get_of_node(mdev), "mac-address", NULL);
+ if (prop_addr == NULL) {
+ prop_addr = get_property(macio_get_of_node(mdev),
+ "local-mac-address", NULL);
+ if (prop_addr == NULL) {
printk(KERN_ERR "BMAC: Can't get mac-address\n");
return -ENODEV;
}
}
+ memcpy(addr, prop_addr, sizeof(addr));
dev = alloc_etherdev(PRIV_BYTES);
if (!dev) {
diff --git a/drivers/net/ibmveth.c b/drivers/net/ibmveth.c
index 0464e78f733..e56eac88b80 100644
--- a/drivers/net/ibmveth.c
+++ b/drivers/net/ibmveth.c
@@ -702,7 +702,8 @@ static int ibmveth_start_xmit(struct sk_buff *skb, struct net_device *netdev)
desc[3].desc,
desc[4].desc,
desc[5].desc,
- correlator);
+ correlator,
+ &correlator);
} while ((lpar_rc == H_BUSY) && (retry_count--));
if(lpar_rc != H_SUCCESS && lpar_rc != H_DROPPED) {
diff --git a/drivers/net/ibmveth.h b/drivers/net/ibmveth.h
index 8385bf83650..f5b25bff154 100644
--- a/drivers/net/ibmveth.h
+++ b/drivers/net/ibmveth.h
@@ -41,16 +41,6 @@
#define IbmVethMcastRemoveFilter 0x2UL
#define IbmVethMcastClearFilterTable 0x3UL
-/* hcall numbers */
-#define H_VIO_SIGNAL 0x104
-#define H_REGISTER_LOGICAL_LAN 0x114
-#define H_FREE_LOGICAL_LAN 0x118
-#define H_ADD_LOGICAL_LAN_BUFFER 0x11C
-#define H_SEND_LOGICAL_LAN 0x120
-#define H_MULTICAST_CTRL 0x130
-#define H_CHANGE_LOGICAL_LAN_MAC 0x14C
-#define H_FREE_LOGICAL_LAN_BUFFER 0x1D4
-
/* hcall macros */
#define h_register_logical_lan(ua, buflst, rxq, fltlst, mac) \
plpar_hcall_norets(H_REGISTER_LOGICAL_LAN, ua, buflst, rxq, fltlst, mac)
@@ -61,8 +51,21 @@
#define h_add_logical_lan_buffer(ua, buf) \
plpar_hcall_norets(H_ADD_LOGICAL_LAN_BUFFER, ua, buf)
-#define h_send_logical_lan(ua, buf1, buf2, buf3, buf4, buf5, buf6, correlator) \
- plpar_hcall_8arg_2ret(H_SEND_LOGICAL_LAN, ua, buf1, buf2, buf3, buf4, buf5, buf6, correlator, &correlator)
+static inline long h_send_logical_lan(unsigned long unit_address,
+ unsigned long desc1, unsigned long desc2, unsigned long desc3,
+ unsigned long desc4, unsigned long desc5, unsigned long desc6,
+ unsigned long corellator_in, unsigned long *corellator_out)
+{
+ long rc;
+ unsigned long retbuf[PLPAR_HCALL9_BUFSIZE];
+
+ rc = plpar_hcall9(H_SEND_LOGICAL_LAN, retbuf, unit_address, desc1,
+ desc2, desc3, desc4, desc5, desc6, corellator_in);
+
+ *corellator_out = retbuf[0];
+
+ return rc;
+}
#define h_multicast_ctrl(ua, cmd, mac) \
plpar_hcall_norets(H_MULTICAST_CTRL, ua, cmd, mac)
diff --git a/drivers/net/mace.c b/drivers/net/mace.c
index 29e4b5aa6ea..5d80e0e6a8e 100644
--- a/drivers/net/mace.c
+++ b/drivers/net/mace.c
@@ -113,7 +113,7 @@ static int __devinit mace_probe(struct macio_dev *mdev, const struct of_device_i
struct device_node *mace = macio_get_of_node(mdev);
struct net_device *dev;
struct mace_data *mp;
- unsigned char *addr;
+ const unsigned char *addr;
int j, rev, rc = -EBUSY;
if (macio_resource_count(mdev) != 3 || macio_irq_count(mdev) != 3) {
diff --git a/drivers/net/ppp_mppe.c b/drivers/net/ppp_mppe.c
index 51ff9a9d1bb..f3655fd772f 100644
--- a/drivers/net/ppp_mppe.c
+++ b/drivers/net/ppp_mppe.c
@@ -43,6 +43,7 @@
* deprecated in 2.6
*/
+#include <linux/err.h>
#include <linux/module.h>
#include <linux/kernel.h>
#include <linux/version.h>
@@ -64,12 +65,13 @@ MODULE_LICENSE("Dual BSD/GPL");
MODULE_ALIAS("ppp-compress-" __stringify(CI_MPPE));
MODULE_VERSION("1.0.2");
-static void
+static unsigned int
setup_sg(struct scatterlist *sg, const void *address, unsigned int length)
{
sg[0].page = virt_to_page(address);
sg[0].offset = offset_in_page(address);
sg[0].length = length;
+ return length;
}
#define SHA1_PAD_SIZE 40
@@ -95,8 +97,8 @@ static inline void sha_pad_init(struct sha_pad *shapad)
* State for an MPPE (de)compressor.
*/
struct ppp_mppe_state {
- struct crypto_tfm *arc4;
- struct crypto_tfm *sha1;
+ struct crypto_blkcipher *arc4;
+ struct crypto_hash *sha1;
unsigned char *sha1_digest;
unsigned char master_key[MPPE_MAX_KEY_LEN];
unsigned char session_key[MPPE_MAX_KEY_LEN];
@@ -136,14 +138,21 @@ struct ppp_mppe_state {
*/
static void get_new_key_from_sha(struct ppp_mppe_state * state, unsigned char *InterimKey)
{
+ struct hash_desc desc;
struct scatterlist sg[4];
+ unsigned int nbytes;
- setup_sg(&sg[0], state->master_key, state->keylen);
- setup_sg(&sg[1], sha_pad->sha_pad1, sizeof(sha_pad->sha_pad1));
- setup_sg(&sg[2], state->session_key, state->keylen);
- setup_sg(&sg[3], sha_pad->sha_pad2, sizeof(sha_pad->sha_pad2));
+ nbytes = setup_sg(&sg[0], state->master_key, state->keylen);
+ nbytes += setup_sg(&sg[1], sha_pad->sha_pad1,
+ sizeof(sha_pad->sha_pad1));
+ nbytes += setup_sg(&sg[2], state->session_key, state->keylen);
+ nbytes += setup_sg(&sg[3], sha_pad->sha_pad2,
+ sizeof(sha_pad->sha_pad2));
- crypto_digest_digest (state->sha1, sg, 4, state->sha1_digest);
+ desc.tfm = state->sha1;
+ desc.flags = 0;
+
+ crypto_hash_digest(&desc, sg, nbytes, state->sha1_digest);
memcpy(InterimKey, state->sha1_digest, state->keylen);
}
@@ -156,14 +165,15 @@ static void mppe_rekey(struct ppp_mppe_state * state, int initial_key)
{
unsigned char InterimKey[MPPE_MAX_KEY_LEN];
struct scatterlist sg_in[1], sg_out[1];
+ struct blkcipher_desc desc = { .tfm = state->arc4 };
get_new_key_from_sha(state, InterimKey);
if (!initial_key) {
- crypto_cipher_setkey(state->arc4, InterimKey, state->keylen);
+ crypto_blkcipher_setkey(state->arc4, InterimKey, state->keylen);
setup_sg(sg_in, InterimKey, state->keylen);
setup_sg(sg_out, state->session_key, state->keylen);
- if (crypto_cipher_encrypt(state->arc4, sg_out, sg_in,
- state->keylen) != 0) {
+ if (crypto_blkcipher_encrypt(&desc, sg_out, sg_in,
+ state->keylen) != 0) {
printk(KERN_WARNING "mppe_rekey: cipher_encrypt failed\n");
}
} else {
@@ -175,7 +185,7 @@ static void mppe_rekey(struct ppp_mppe_state * state, int initial_key)
state->session_key[1] = 0x26;
state->session_key[2] = 0x9e;
}
- crypto_cipher_setkey(state->arc4, state->session_key, state->keylen);
+ crypto_blkcipher_setkey(state->arc4, state->session_key, state->keylen);
}
/*
@@ -196,15 +206,19 @@ static void *mppe_alloc(unsigned char *options, int optlen)
memset(state, 0, sizeof(*state));
- state->arc4 = crypto_alloc_tfm("arc4", 0);
- if (!state->arc4)
+ state->arc4 = crypto_alloc_blkcipher("ecb(arc4)", 0, CRYPTO_ALG_ASYNC);
+ if (IS_ERR(state->arc4)) {
+ state->arc4 = NULL;
goto out_free;
+ }
- state->sha1 = crypto_alloc_tfm("sha1", 0);
- if (!state->sha1)
+ state->sha1 = crypto_alloc_hash("sha1", 0, CRYPTO_ALG_ASYNC);
+ if (IS_ERR(state->sha1)) {
+ state->sha1 = NULL;
goto out_free;
+ }
- digestsize = crypto_tfm_alg_digestsize(state->sha1);
+ digestsize = crypto_hash_digestsize(state->sha1);
if (digestsize < MPPE_MAX_KEY_LEN)
goto out_free;
@@ -229,9 +243,9 @@ static void *mppe_alloc(unsigned char *options, int optlen)
if (state->sha1_digest)
kfree(state->sha1_digest);
if (state->sha1)
- crypto_free_tfm(state->sha1);
+ crypto_free_hash(state->sha1);
if (state->arc4)
- crypto_free_tfm(state->arc4);
+ crypto_free_blkcipher(state->arc4);
kfree(state);
out:
return NULL;
@@ -247,9 +261,9 @@ static void mppe_free(void *arg)
if (state->sha1_digest)
kfree(state->sha1_digest);
if (state->sha1)
- crypto_free_tfm(state->sha1);
+ crypto_free_hash(state->sha1);
if (state->arc4)
- crypto_free_tfm(state->arc4);
+ crypto_free_blkcipher(state->arc4);
kfree(state);
}
}
@@ -356,6 +370,7 @@ mppe_compress(void *arg, unsigned char *ibuf, unsigned char *obuf,
int isize, int osize)
{
struct ppp_mppe_state *state = (struct ppp_mppe_state *) arg;
+ struct blkcipher_desc desc = { .tfm = state->arc4 };
int proto;
struct scatterlist sg_in[1], sg_out[1];
@@ -413,7 +428,7 @@ mppe_compress(void *arg, unsigned char *ibuf, unsigned char *obuf,
/* Encrypt packet */
setup_sg(sg_in, ibuf, isize);
setup_sg(sg_out, obuf, osize);
- if (crypto_cipher_encrypt(state->arc4, sg_out, sg_in, isize) != 0) {
+ if (crypto_blkcipher_encrypt(&desc, sg_out, sg_in, isize) != 0) {
printk(KERN_DEBUG "crypto_cypher_encrypt failed\n");
return -1;
}
@@ -462,6 +477,7 @@ mppe_decompress(void *arg, unsigned char *ibuf, int isize, unsigned char *obuf,
int osize)
{
struct ppp_mppe_state *state = (struct ppp_mppe_state *) arg;
+ struct blkcipher_desc desc = { .tfm = state->arc4 };
unsigned ccount;
int flushed = MPPE_BITS(ibuf) & MPPE_BIT_FLUSHED;
int sanity = 0;
@@ -599,7 +615,7 @@ mppe_decompress(void *arg, unsigned char *ibuf, int isize, unsigned char *obuf,
*/
setup_sg(sg_in, ibuf, 1);
setup_sg(sg_out, obuf, 1);
- if (crypto_cipher_decrypt(state->arc4, sg_out, sg_in, 1) != 0) {
+ if (crypto_blkcipher_decrypt(&desc, sg_out, sg_in, 1) != 0) {
printk(KERN_DEBUG "crypto_cypher_decrypt failed\n");
return DECOMP_ERROR;
}
@@ -619,7 +635,7 @@ mppe_decompress(void *arg, unsigned char *ibuf, int isize, unsigned char *obuf,
/* And finally, decrypt the rest of the packet. */
setup_sg(sg_in, ibuf + 1, isize - 1);
setup_sg(sg_out, obuf + 1, osize - 1);
- if (crypto_cipher_decrypt(state->arc4, sg_out, sg_in, isize - 1) != 0) {
+ if (crypto_blkcipher_decrypt(&desc, sg_out, sg_in, isize - 1)) {
printk(KERN_DEBUG "crypto_cypher_decrypt failed\n");
return DECOMP_ERROR;
}
@@ -694,8 +710,8 @@ static struct compressor ppp_mppe = {
static int __init ppp_mppe_init(void)
{
int answer;
- if (!(crypto_alg_available("arc4", 0) &&
- crypto_alg_available("sha1", 0)))
+ if (!(crypto_has_blkcipher("ecb(arc4)", 0, CRYPTO_ALG_ASYNC) &&
+ crypto_has_hash("sha1", 0, CRYPTO_ALG_ASYNC)))
return -ENODEV;
sha_pad = kmalloc(sizeof(struct sha_pad), GFP_KERNEL);
diff --git a/drivers/net/spider_net.c b/drivers/net/spider_net.c
index 88907218457..d64e718afbd 100644
--- a/drivers/net/spider_net.c
+++ b/drivers/net/spider_net.c
@@ -1697,10 +1697,10 @@ spider_net_setup_phy(struct spider_net_card *card)
*/
static int
spider_net_download_firmware(struct spider_net_card *card,
- u8 *firmware_ptr)
+ const void *firmware_ptr)
{
int sequencer, i;
- u32 *fw_ptr = (u32 *)firmware_ptr;
+ const u32 *fw_ptr = firmware_ptr;
/* stop sequencers */
spider_net_write_reg(card, SPIDER_NET_GSINIT,
@@ -1757,7 +1757,7 @@ spider_net_init_firmware(struct spider_net_card *card)
{
struct firmware *firmware = NULL;
struct device_node *dn;
- u8 *fw_prop = NULL;
+ const u8 *fw_prop = NULL;
int err = -ENOENT;
int fw_size;
@@ -1783,7 +1783,7 @@ try_host_fw:
if (!dn)
goto out_err;
- fw_prop = (u8 *)get_property(dn, "firmware", &fw_size);
+ fw_prop = get_property(dn, "firmware", &fw_size);
if (!fw_prop)
goto out_err;
@@ -1986,7 +1986,7 @@ spider_net_setup_netdev(struct spider_net_card *card)
struct net_device *netdev = card->netdev;
struct device_node *dn;
struct sockaddr addr;
- u8 *mac;
+ const u8 *mac;
SET_MODULE_OWNER(netdev);
SET_NETDEV_DEV(netdev, &card->pdev->dev);
@@ -2019,7 +2019,7 @@ spider_net_setup_netdev(struct spider_net_card *card)
if (!dn)
return -EIO;
- mac = (u8 *)get_property(dn, "local-mac-address", NULL);
+ mac = get_property(dn, "local-mac-address", NULL);
if (!mac)
return -EIO;
memcpy(addr.sa_data, mac, ETH_ALEN);
diff --git a/drivers/net/sungem.c b/drivers/net/sungem.c
index b70bbd74897..d7b1d1882ca 100644
--- a/drivers/net/sungem.c
+++ b/drivers/net/sungem.c
@@ -2896,7 +2896,7 @@ static int __devinit gem_get_device_address(struct gem *gp)
if (use_idprom)
memcpy(dev->dev_addr, idprom->id_ethaddr, 6);
#elif defined(CONFIG_PPC_PMAC)
- unsigned char *addr;
+ const unsigned char *addr;
addr = get_property(gp->of_node, "local-mac-address", NULL);
if (addr == NULL) {
diff --git a/drivers/net/wireless/airo.c b/drivers/net/wireless/airo.c
index a4dd1394271..170c500169d 100644
--- a/drivers/net/wireless/airo.c
+++ b/drivers/net/wireless/airo.c
@@ -19,6 +19,7 @@
======================================================================*/
+#include <linux/err.h>
#include <linux/init.h>
#include <linux/kernel.h>
@@ -1203,7 +1204,7 @@ struct airo_info {
struct iw_spy_data spy_data;
struct iw_public_data wireless_data;
/* MIC stuff */
- struct crypto_tfm *tfm;
+ struct crypto_cipher *tfm;
mic_module mod[2];
mic_statistics micstats;
HostRxDesc rxfids[MPI_MAX_FIDS]; // rx/tx/config MPI350 descriptors
@@ -1271,7 +1272,8 @@ static int flashrestart(struct airo_info *ai,struct net_device *dev);
static int RxSeqValid (struct airo_info *ai,miccntx *context,int mcast,u32 micSeq);
static void MoveWindow(miccntx *context, u32 micSeq);
-static void emmh32_setseed(emmh32_context *context, u8 *pkey, int keylen, struct crypto_tfm *);
+static void emmh32_setseed(emmh32_context *context, u8 *pkey, int keylen,
+ struct crypto_cipher *tfm);
static void emmh32_init(emmh32_context *context);
static void emmh32_update(emmh32_context *context, u8 *pOctets, int len);
static void emmh32_final(emmh32_context *context, u8 digest[4]);
@@ -1339,10 +1341,11 @@ static int micsetup(struct airo_info *ai) {
int i;
if (ai->tfm == NULL)
- ai->tfm = crypto_alloc_tfm("aes", CRYPTO_TFM_REQ_MAY_SLEEP);
+ ai->tfm = crypto_alloc_cipher("aes", 0, CRYPTO_ALG_ASYNC);
- if (ai->tfm == NULL) {
+ if (IS_ERR(ai->tfm)) {
airo_print_err(ai->dev->name, "failed to load transform for AES");
+ ai->tfm = NULL;
return ERROR;
}
@@ -1608,7 +1611,8 @@ static void MoveWindow(miccntx *context, u32 micSeq)
static unsigned char aes_counter[16];
/* expand the key to fill the MMH coefficient array */
-static void emmh32_setseed(emmh32_context *context, u8 *pkey, int keylen, struct crypto_tfm *tfm)
+static void emmh32_setseed(emmh32_context *context, u8 *pkey, int keylen,
+ struct crypto_cipher *tfm)
{
/* take the keying material, expand if necessary, truncate at 16-bytes */
/* run through AES counter mode to generate context->coeff[] */
@@ -1616,7 +1620,6 @@ static void emmh32_setseed(emmh32_context *context, u8 *pkey, int keylen, struct
int i,j;
u32 counter;
u8 *cipher, plain[16];
- struct scatterlist sg[1];
crypto_cipher_setkey(tfm, pkey, 16);
counter = 0;
@@ -1627,9 +1630,8 @@ static void emmh32_setseed(emmh32_context *context, u8 *pkey, int keylen, struct
aes_counter[12] = (u8)(counter >> 24);
counter++;
memcpy (plain, aes_counter, 16);
- sg_set_buf(sg, plain, 16);
- crypto_cipher_encrypt(tfm, sg, sg, 16);
- cipher = kmap(sg->page) + sg->offset;
+ crypto_cipher_encrypt_one(tfm, plain, plain);
+ cipher = plain;
for (j=0; (j<16) && (i< (sizeof(context->coeff)/sizeof(context->coeff[0]))); ) {
context->coeff[i++] = ntohl(*(u32 *)&cipher[j]);
j += 4;
@@ -2432,7 +2434,7 @@ void stop_airo_card( struct net_device *dev, int freeres )
ai->shared, ai->shared_dma);
}
}
- crypto_free_tfm(ai->tfm);
+ crypto_free_cipher(ai->tfm);
del_airo_dev( dev );
free_netdev( dev );
}
diff --git a/drivers/pci/hotplug/rpaphp_core.c b/drivers/pci/hotplug/rpaphp_core.c
index 076bd6dcafa..7288a3eccfb 100644
--- a/drivers/pci/hotplug/rpaphp_core.c
+++ b/drivers/pci/hotplug/rpaphp_core.c
@@ -176,16 +176,16 @@ static int get_max_bus_speed(struct hotplug_slot *hotplug_slot, enum pci_bus_spe
return 0;
}
-static int get_children_props(struct device_node *dn, int **drc_indexes,
- int **drc_names, int **drc_types, int **drc_power_domains)
+static int get_children_props(struct device_node *dn, const int **drc_indexes,
+ const int **drc_names, const int **drc_types,
+ const int **drc_power_domains)
{
- int *indexes, *names;
- int *types, *domains;
+ const int *indexes, *names, *types, *domains;
- indexes = (int *) get_property(dn, "ibm,drc-indexes", NULL);
- names = (int *) get_property(dn, "ibm,drc-names", NULL);
- types = (int *) get_property(dn, "ibm,drc-types", NULL);
- domains = (int *) get_property(dn, "ibm,drc-power-domains", NULL);
+ indexes = get_property(dn, "ibm,drc-indexes", NULL);
+ names = get_property(dn, "ibm,drc-names", NULL);
+ types = get_property(dn, "ibm,drc-types", NULL);
+ domains = get_property(dn, "ibm,drc-power-domains", NULL);
if (!indexes || !names || !types || !domains) {
/* Slot does not have dynamically-removable children */
@@ -212,13 +212,13 @@ static int get_children_props(struct device_node *dn, int **drc_indexes,
int rpaphp_get_drc_props(struct device_node *dn, int *drc_index,
char **drc_name, char **drc_type, int *drc_power_domain)
{
- int *indexes, *names;
- int *types, *domains;
- unsigned int *my_index;
+ const int *indexes, *names;
+ const int *types, *domains;
+ const unsigned int *my_index;
char *name_tmp, *type_tmp;
int i, rc;
- my_index = (int *) get_property(dn, "ibm,my-drc-index", NULL);
+ my_index = get_property(dn, "ibm,my-drc-index", NULL);
if (!my_index) {
/* Node isn't DLPAR/hotplug capable */
return -EINVAL;
@@ -265,10 +265,10 @@ static int is_php_type(char *drc_type)
return 1;
}
-static int is_php_dn(struct device_node *dn, int **indexes, int **names,
- int **types, int **power_domains)
+static int is_php_dn(struct device_node *dn, const int **indexes,
+ const int **names, const int **types, const int **power_domains)
{
- int *drc_types;
+ const int *drc_types;
int rc;
rc = get_children_props(dn, indexes, names, &drc_types, power_domains);
@@ -296,7 +296,7 @@ int rpaphp_add_slot(struct device_node *dn)
struct slot *slot;
int retval = 0;
int i;
- int *indexes, *names, *types, *power_domains;
+ const int *indexes, *names, *types, *power_domains;
char *name, *type;
dbg("Entry %s: dn->full_name=%s\n", __FUNCTION__, dn->full_name);
diff --git a/drivers/s390/Kconfig b/drivers/s390/Kconfig
index 4d36208ff8d..ae89b9b8874 100644
--- a/drivers/s390/Kconfig
+++ b/drivers/s390/Kconfig
@@ -213,17 +213,35 @@ config MONREADER
help
Character device driver for reading z/VM monitor service records
+config MONWRITER
+ tristate "API for writing z/VM monitor service records"
+ default "m"
+ help
+ Character device driver for writing z/VM monitor service records
+
endmenu
menu "Cryptographic devices"
-config Z90CRYPT
+config ZCRYPT
tristate "Support for PCI-attached cryptographic adapters"
- default "m"
- help
+ select ZCRYPT_MONOLITHIC if ZCRYPT="y"
+ default "m"
+ help
Select this option if you want to use a PCI-attached cryptographic
- adapter like the PCI Cryptographic Accelerator (PCICA) or the PCI
- Cryptographic Coprocessor (PCICC). This option is also available
- as a module called z90crypt.ko.
+ adapter like:
+ + PCI Cryptographic Accelerator (PCICA)
+ + PCI Cryptographic Coprocessor (PCICC)
+ + PCI-X Cryptographic Coprocessor (PCIXCC)
+ + Crypto Express2 Coprocessor (CEX2C)
+ + Crypto Express2 Accelerator (CEX2A)
+
+config ZCRYPT_MONOLITHIC
+ bool "Monolithic zcrypt module"
+ depends on ZCRYPT="m"
+ help
+ Select this option if you want to have a single module z90crypt.ko
+ that contains all parts of the crypto device driver (ap bus,
+ request router and all the card drivers).
endmenu
diff --git a/drivers/s390/block/dasd.c b/drivers/s390/block/dasd.c
index 25c1ef6dfd4..d0647d116ea 100644
--- a/drivers/s390/block/dasd.c
+++ b/drivers/s390/block/dasd.c
@@ -184,7 +184,7 @@ dasd_state_known_to_basic(struct dasd_device * device)
device->debug_area = debug_register(device->cdev->dev.bus_id, 1, 2,
8 * sizeof (long));
debug_register_view(device->debug_area, &debug_sprintf_view);
- debug_set_level(device->debug_area, DBF_EMERG);
+ debug_set_level(device->debug_area, DBF_WARNING);
DBF_DEV_EVENT(DBF_EMERG, device, "%s", "debug area created");
device->state = DASD_STATE_BASIC;
@@ -893,7 +893,7 @@ dasd_handle_killed_request(struct ccw_device *cdev, unsigned long intparm)
device = (struct dasd_device *) cqr->device;
if (device == NULL ||
- device != dasd_device_from_cdev(cdev) ||
+ device != dasd_device_from_cdev_locked(cdev) ||
strncmp(device->discipline->ebcname, (char *) &cqr->magic, 4)) {
MESSAGE(KERN_DEBUG, "invalid device in request: bus_id %s",
cdev->dev.bus_id);
@@ -970,7 +970,7 @@ dasd_int_handler(struct ccw_device *cdev, unsigned long intparm,
/* first of all check for state change pending interrupt */
mask = DEV_STAT_ATTENTION | DEV_STAT_DEV_END | DEV_STAT_UNIT_EXCEP;
if ((irb->scsw.dstat & mask) == mask) {
- device = dasd_device_from_cdev(cdev);
+ device = dasd_device_from_cdev_locked(cdev);
if (!IS_ERR(device)) {
dasd_handle_state_change_pending(device);
dasd_put_device(device);
@@ -2169,7 +2169,7 @@ dasd_init(void)
goto failed;
}
debug_register_view(dasd_debug_area, &debug_sprintf_view);
- debug_set_level(dasd_debug_area, DBF_EMERG);
+ debug_set_level(dasd_debug_area, DBF_WARNING);
DBF_EVENT(DBF_EMERG, "%s", "debug area created");
diff --git a/drivers/s390/block/dasd_devmap.c b/drivers/s390/block/dasd_devmap.c
index 9af02c79ce8..91cf971f065 100644
--- a/drivers/s390/block/dasd_devmap.c
+++ b/drivers/s390/block/dasd_devmap.c
@@ -258,8 +258,12 @@ dasd_parse_keyword( char *parsestring ) {
return residual_str;
}
if (strncmp("nopav", parsestring, length) == 0) {
- dasd_nopav = 1;
- MESSAGE(KERN_INFO, "%s", "disable PAV mode");
+ if (MACHINE_IS_VM)
+ MESSAGE(KERN_INFO, "%s", "'nopav' not supported on VM");
+ else {
+ dasd_nopav = 1;
+ MESSAGE(KERN_INFO, "%s", "disable PAV mode");
+ }
return residual_str;
}
if (strncmp("fixedbuffers", parsestring, length) == 0) {
@@ -523,17 +527,17 @@ dasd_create_device(struct ccw_device *cdev)
{
struct dasd_devmap *devmap;
struct dasd_device *device;
+ unsigned long flags;
int rc;
devmap = dasd_devmap_from_cdev(cdev);
if (IS_ERR(devmap))
return (void *) devmap;
- cdev->dev.driver_data = devmap;
device = dasd_alloc_device();
if (IS_ERR(device))
return device;
- atomic_set(&device->ref_count, 2);
+ atomic_set(&device->ref_count, 3);
spin_lock(&dasd_devmap_lock);
if (!devmap->device) {
@@ -552,6 +556,11 @@ dasd_create_device(struct ccw_device *cdev)
dasd_free_device(device);
return ERR_PTR(rc);
}
+
+ spin_lock_irqsave(get_ccwdev_lock(cdev), flags);
+ cdev->dev.driver_data = device;
+ spin_unlock_irqrestore(get_ccwdev_lock(cdev), flags);
+
return device;
}
@@ -569,6 +578,7 @@ dasd_delete_device(struct dasd_device *device)
{
struct ccw_device *cdev;
struct dasd_devmap *devmap;
+ unsigned long flags;
/* First remove device pointer from devmap. */
devmap = dasd_find_busid(device->cdev->dev.bus_id);
@@ -582,9 +592,16 @@ dasd_delete_device(struct dasd_device *device)
devmap->device = NULL;
spin_unlock(&dasd_devmap_lock);
- /* Drop ref_count by 2, one for the devmap reference and
- * one for the passed reference. */
- atomic_sub(2, &device->ref_count);
+ /* Disconnect dasd_device structure from ccw_device structure. */
+ spin_lock_irqsave(get_ccwdev_lock(device->cdev), flags);
+ device->cdev->dev.driver_data = NULL;
+ spin_unlock_irqrestore(get_ccwdev_lock(device->cdev), flags);
+
+ /*
+ * Drop ref_count by 3, one for the devmap reference, one for
+ * the cdev reference and one for the passed reference.
+ */
+ atomic_sub(3, &device->ref_count);
/* Wait for reference counter to drop to zero. */
wait_event(dasd_delete_wq, atomic_read(&device->ref_count) == 0);
@@ -593,9 +610,6 @@ dasd_delete_device(struct dasd_device *device)
cdev = device->cdev;
device->cdev = NULL;
- /* Disconnect dasd_devmap structure from ccw_device structure. */
- cdev->dev.driver_data = NULL;
-
/* Put ccw_device structure. */
put_device(&cdev->dev);
@@ -615,21 +629,32 @@ dasd_put_device_wake(struct dasd_device *device)
/*
* Return dasd_device structure associated with cdev.
+ * This function needs to be called with the ccw device
+ * lock held. It can be used from interrupt context.
+ */
+struct dasd_device *
+dasd_device_from_cdev_locked(struct ccw_device *cdev)
+{
+ struct dasd_device *device = cdev->dev.driver_data;
+
+ if (!device)
+ return ERR_PTR(-ENODEV);
+ dasd_get_device(device);
+ return device;
+}
+
+/*
+ * Return dasd_device structure associated with cdev.
*/
struct dasd_device *
dasd_device_from_cdev(struct ccw_device *cdev)
{
- struct dasd_devmap *devmap;
struct dasd_device *device;
+ unsigned long flags;
- device = ERR_PTR(-ENODEV);
- spin_lock(&dasd_devmap_lock);
- devmap = cdev->dev.driver_data;
- if (devmap && devmap->device) {
- device = devmap->device;
- dasd_get_device(device);
- }
- spin_unlock(&dasd_devmap_lock);
+ spin_lock_irqsave(get_ccwdev_lock(cdev), flags);
+ device = dasd_device_from_cdev_locked(cdev);
+ spin_unlock_irqrestore(get_ccwdev_lock(cdev), flags);
return device;
}
@@ -730,16 +755,17 @@ static ssize_t
dasd_discipline_show(struct device *dev, struct device_attribute *attr,
char *buf)
{
- struct dasd_devmap *devmap;
- char *dname;
+ struct dasd_device *device;
+ ssize_t len;
- spin_lock(&dasd_devmap_lock);
- dname = "none";
- devmap = dev->driver_data;
- if (devmap && devmap->device && devmap->device->discipline)
- dname = devmap->device->discipline->name;
- spin_unlock(&dasd_devmap_lock);
- return snprintf(buf, PAGE_SIZE, "%s\n", dname);
+ device = dasd_device_from_cdev(to_ccwdev(dev));
+ if (!IS_ERR(device) && device->discipline) {
+ len = snprintf(buf, PAGE_SIZE, "%s\n",
+ device->discipline->name);
+ dasd_put_device(device);
+ } else
+ len = snprintf(buf, PAGE_SIZE, "none\n");
+ return len;
}
static DEVICE_ATTR(discipline, 0444, dasd_discipline_show, NULL);
diff --git a/drivers/s390/block/dasd_eer.c b/drivers/s390/block/dasd_eer.c
index da65f1b032f..e0bf30ebb21 100644
--- a/drivers/s390/block/dasd_eer.c
+++ b/drivers/s390/block/dasd_eer.c
@@ -678,7 +678,7 @@ int __init dasd_eer_init(void)
return 0;
}
-void __exit dasd_eer_exit(void)
+void dasd_eer_exit(void)
{
WARN_ON(misc_deregister(&dasd_eer_dev) != 0);
}
diff --git a/drivers/s390/block/dasd_int.h b/drivers/s390/block/dasd_int.h
index 3ccf06d28ba..9f52004f6fc 100644
--- a/drivers/s390/block/dasd_int.h
+++ b/drivers/s390/block/dasd_int.h
@@ -534,6 +534,7 @@ int dasd_add_sysfs_files(struct ccw_device *);
void dasd_remove_sysfs_files(struct ccw_device *);
struct dasd_device *dasd_device_from_cdev(struct ccw_device *);
+struct dasd_device *dasd_device_from_cdev_locked(struct ccw_device *);
struct dasd_device *dasd_device_from_devindex(int);
int dasd_parse(void);
diff --git a/drivers/s390/block/xpram.c b/drivers/s390/block/xpram.c
index ca7d51f7ecc..cab2c736683 100644
--- a/drivers/s390/block/xpram.c
+++ b/drivers/s390/block/xpram.c
@@ -453,7 +453,7 @@ static int __init xpram_init(void)
PRINT_WARN("No expanded memory available\n");
return -ENODEV;
}
- xpram_pages = xpram_highest_page_index();
+ xpram_pages = xpram_highest_page_index() + 1;
PRINT_INFO(" %u pages expanded memory found (%lu KB).\n",
xpram_pages, (unsigned long) xpram_pages*4);
rc = xpram_setup_sizes(xpram_pages);
diff --git a/drivers/s390/char/Makefile b/drivers/s390/char/Makefile
index 0c0162ff6c0..c3e97b4fc18 100644
--- a/drivers/s390/char/Makefile
+++ b/drivers/s390/char/Makefile
@@ -28,3 +28,4 @@ obj-$(CONFIG_S390_TAPE) += tape.o tape_class.o
obj-$(CONFIG_S390_TAPE_34XX) += tape_34xx.o
obj-$(CONFIG_S390_TAPE_3590) += tape_3590.o
obj-$(CONFIG_MONREADER) += monreader.o
+obj-$(CONFIG_MONWRITER) += monwriter.o
diff --git a/drivers/s390/char/monwriter.c b/drivers/s390/char/monwriter.c
new file mode 100644
index 00000000000..1e3939aeb8a
--- /dev/null
+++ b/drivers/s390/char/monwriter.c
@@ -0,0 +1,292 @@
+/*
+ * drivers/s390/char/monwriter.c
+ *
+ * Character device driver for writing z/VM *MONITOR service records.
+ *
+ * Copyright (C) IBM Corp. 2006
+ *
+ * Author(s): Melissa Howland <Melissa.Howland@us.ibm.com>
+ */
+
+#include <linux/module.h>
+#include <linux/moduleparam.h>
+#include <linux/init.h>
+#include <linux/errno.h>
+#include <linux/types.h>
+#include <linux/kernel.h>
+#include <linux/miscdevice.h>
+#include <linux/ctype.h>
+#include <linux/poll.h>
+#include <asm/uaccess.h>
+#include <asm/ebcdic.h>
+#include <asm/io.h>
+#include <asm/appldata.h>
+#include <asm/monwriter.h>
+
+#define MONWRITE_MAX_DATALEN 4024
+
+static int mon_max_bufs = 255;
+
+struct mon_buf {
+ struct list_head list;
+ struct monwrite_hdr hdr;
+ int diag_done;
+ char *data;
+};
+
+struct mon_private {
+ struct list_head list;
+ struct monwrite_hdr hdr;
+ size_t hdr_to_read;
+ size_t data_to_read;
+ struct mon_buf *current_buf;
+ int mon_buf_count;
+};
+
+/*
+ * helper functions
+ */
+
+static int monwrite_diag(struct monwrite_hdr *myhdr, char *buffer, int fcn)
+{
+ struct appldata_product_id id;
+ int rc;
+
+ strcpy(id.prod_nr, "LNXAPPL");
+ id.prod_fn = myhdr->applid;
+ id.record_nr = myhdr->record_num;
+ id.version_nr = myhdr->version;
+ id.release_nr = myhdr->release;
+ id.mod_lvl = myhdr->mod_level;
+ rc = appldata_asm(&id, fcn, (void *) buffer, myhdr->datalen);
+ if (rc <= 0)
+ return rc;
+ if (rc == 5)
+ return -EPERM;
+ printk("DIAG X'DC' error with return code: %i\n", rc);
+ return -EINVAL;
+}
+
+static inline struct mon_buf *monwrite_find_hdr(struct mon_private *monpriv,
+ struct monwrite_hdr *monhdr)
+{
+ struct mon_buf *entry, *next;
+
+ list_for_each_entry_safe(entry, next, &monpriv->list, list)
+ if (entry->hdr.applid == monhdr->applid &&
+ entry->hdr.record_num == monhdr->record_num &&
+ entry->hdr.version == monhdr->version &&
+ entry->hdr.release == monhdr->release &&
+ entry->hdr.mod_level == monhdr->mod_level)
+ return entry;
+ return NULL;
+}
+
+static int monwrite_new_hdr(struct mon_private *monpriv)
+{
+ struct monwrite_hdr *monhdr = &monpriv->hdr;
+ struct mon_buf *monbuf;
+ int rc;
+
+ if (monhdr->datalen > MONWRITE_MAX_DATALEN ||
+ monhdr->mon_function > MONWRITE_START_CONFIG ||
+ monhdr->hdrlen != sizeof(struct monwrite_hdr))
+ return -EINVAL;
+ monbuf = monwrite_find_hdr(monpriv, monhdr);
+ if (monbuf) {
+ if (monhdr->mon_function == MONWRITE_STOP_INTERVAL) {
+ monhdr->datalen = monbuf->hdr.datalen;
+ rc = monwrite_diag(monhdr, monbuf->data,
+ APPLDATA_STOP_REC);
+ list_del(&monbuf->list);
+ monpriv->mon_buf_count--;
+ kfree(monbuf->data);
+ kfree(monbuf);
+ monbuf = NULL;
+ }
+ } else {
+ if (monpriv->mon_buf_count >= mon_max_bufs)
+ return -ENOSPC;
+ monbuf = kzalloc(sizeof(struct mon_buf), GFP_KERNEL);
+ if (!monbuf)
+ return -ENOMEM;
+ monbuf->data = kzalloc(monbuf->hdr.datalen,
+ GFP_KERNEL | GFP_DMA);
+ if (!monbuf->data) {
+ kfree(monbuf);
+ return -ENOMEM;
+ }
+ monbuf->hdr = *monhdr;
+ list_add_tail(&monbuf->list, &monpriv->list);
+ monpriv->mon_buf_count++;
+ }
+ monpriv->current_buf = monbuf;
+ return 0;
+}
+
+static int monwrite_new_data(struct mon_private *monpriv)
+{
+ struct monwrite_hdr *monhdr = &monpriv->hdr;
+ struct mon_buf *monbuf = monpriv->current_buf;
+ int rc = 0;
+
+ switch (monhdr->mon_function) {
+ case MONWRITE_START_INTERVAL:
+ if (!monbuf->diag_done) {
+ rc = monwrite_diag(monhdr, monbuf->data,
+ APPLDATA_START_INTERVAL_REC);
+ monbuf->diag_done = 1;
+ }
+ break;
+ case MONWRITE_START_CONFIG:
+ if (!monbuf->diag_done) {
+ rc = monwrite_diag(monhdr, monbuf->data,
+ APPLDATA_START_CONFIG_REC);
+ monbuf->diag_done = 1;
+ }
+ break;
+ case MONWRITE_GEN_EVENT:
+ rc = monwrite_diag(monhdr, monbuf->data,
+ APPLDATA_GEN_EVENT_REC);
+ list_del(&monpriv->current_buf->list);
+ kfree(monpriv->current_buf->data);
+ kfree(monpriv->current_buf);
+ monpriv->current_buf = NULL;
+ break;
+ default:
+ /* monhdr->mon_function is checked in monwrite_new_hdr */
+ BUG();
+ }
+ return rc;
+}
+
+/*
+ * file operations
+ */
+
+static int monwrite_open(struct inode *inode, struct file *filp)
+{
+ struct mon_private *monpriv;
+
+ monpriv = kzalloc(sizeof(struct mon_private), GFP_KERNEL);
+ if (!monpriv)
+ return -ENOMEM;
+ INIT_LIST_HEAD(&monpriv->list);
+ monpriv->hdr_to_read = sizeof(monpriv->hdr);
+ filp->private_data = monpriv;
+ return nonseekable_open(inode, filp);
+}
+
+static int monwrite_close(struct inode *inode, struct file *filp)
+{
+ struct mon_private *monpriv = filp->private_data;
+ struct mon_buf *entry, *next;
+
+ list_for_each_entry_safe(entry, next, &monpriv->list, list) {
+ if (entry->hdr.mon_function != MONWRITE_GEN_EVENT)
+ monwrite_diag(&entry->hdr, entry->data,
+ APPLDATA_STOP_REC);
+ monpriv->mon_buf_count--;
+ list_del(&entry->list);
+ kfree(entry->data);
+ kfree(entry);
+ }
+ kfree(monpriv);
+ return 0;
+}
+
+static ssize_t monwrite_write(struct file *filp, const char __user *data,
+ size_t count, loff_t *ppos)
+{
+ struct mon_private *monpriv = filp->private_data;
+ size_t len, written;
+ void *to;
+ int rc;
+
+ for (written = 0; written < count; ) {
+ if (monpriv->hdr_to_read) {
+ len = min(count - written, monpriv->hdr_to_read);
+ to = (char *) &monpriv->hdr +
+ sizeof(monpriv->hdr) - monpriv->hdr_to_read;
+ if (copy_from_user(to, data + written, len)) {
+ rc = -EFAULT;
+ goto out_error;
+ }
+ monpriv->hdr_to_read -= len;
+ written += len;
+ if (monpriv->hdr_to_read > 0)
+ continue;
+ rc = monwrite_new_hdr(monpriv);
+ if (rc)
+ goto out_error;
+ monpriv->data_to_read = monpriv->current_buf ?
+ monpriv->current_buf->hdr.datalen : 0;
+ }
+
+ if (monpriv->data_to_read) {
+ len = min(count - written, monpriv->data_to_read);
+ to = monpriv->current_buf->data +
+ monpriv->hdr.datalen - monpriv->data_to_read;
+ if (copy_from_user(to, data + written, len)) {
+ rc = -EFAULT;
+ goto out_error;
+ }
+ monpriv->data_to_read -= len;
+ written += len;
+ if (monpriv->data_to_read > 0)
+ continue;
+ rc = monwrite_new_data(monpriv);
+ if (rc)
+ goto out_error;
+ }
+ monpriv->hdr_to_read = sizeof(monpriv->hdr);
+ }
+ return written;
+
+out_error:
+ monpriv->data_to_read = 0;
+ monpriv->hdr_to_read = sizeof(struct monwrite_hdr);
+ return rc;
+}
+
+static struct file_operations monwrite_fops = {
+ .owner = THIS_MODULE,
+ .open = &monwrite_open,
+ .release = &monwrite_close,
+ .write = &monwrite_write,
+};
+
+static struct miscdevice mon_dev = {
+ .name = "monwriter",
+ .fops = &monwrite_fops,
+ .minor = MISC_DYNAMIC_MINOR,
+};
+
+/*
+ * module init/exit
+ */
+
+static int __init mon_init(void)
+{
+ if (MACHINE_IS_VM)
+ return misc_register(&mon_dev);
+ else
+ return -ENODEV;
+}
+
+static void __exit mon_exit(void)
+{
+ WARN_ON(misc_deregister(&mon_dev) != 0);
+}
+
+module_init(mon_init);
+module_exit(mon_exit);
+
+module_param_named(max_bufs, mon_max_bufs, int, 0644);
+MODULE_PARM_DESC(max_bufs, "Maximum number of sample monitor data buffers"
+ "that can be active at one time");
+
+MODULE_AUTHOR("Melissa Howland <Melissa.Howland@us.ibm.com>");
+MODULE_DESCRIPTION("Character device driver for writing z/VM "
+ "APPLDATA monitor records.");
+MODULE_LICENSE("GPL");
diff --git a/drivers/s390/char/vmcp.c b/drivers/s390/char/vmcp.c
index 19762f3476a..1678b6c757e 100644
--- a/drivers/s390/char/vmcp.c
+++ b/drivers/s390/char/vmcp.c
@@ -1,6 +1,6 @@
/*
* Copyright (C) 2004,2005 IBM Corporation
- * Interface implementation for communication with the v/VM control program
+ * Interface implementation for communication with the z/VM control program
* Author(s): Christian Borntraeger <cborntra@de.ibm.com>
*
*
diff --git a/drivers/s390/char/vmcp.h b/drivers/s390/char/vmcp.h
index 87389e73046..8a5975f3dad 100644
--- a/drivers/s390/char/vmcp.h
+++ b/drivers/s390/char/vmcp.h
@@ -1,6 +1,6 @@
/*
* Copyright (C) 2004, 2005 IBM Corporation
- * Interface implementation for communication with the v/VM control program
+ * Interface implementation for communication with the z/VM control program
* Version 1.0
* Author(s): Christian Borntraeger <cborntra@de.ibm.com>
*
diff --git a/drivers/s390/cio/chsc.c b/drivers/s390/cio/chsc.c
index c28444af091..3bb4e472d73 100644
--- a/drivers/s390/cio/chsc.c
+++ b/drivers/s390/cio/chsc.c
@@ -256,7 +256,7 @@ s390_subchannel_remove_chpid(struct device *dev, void *data)
/* trigger path verification. */
if (sch->driver && sch->driver->verify)
sch->driver->verify(&sch->dev);
- else if (sch->vpm == mask)
+ else if (sch->lpm == mask)
goto out_unreg;
out_unlock:
spin_unlock_irq(&sch->lock);
@@ -378,6 +378,7 @@ __s390_process_res_acc(struct subchannel_id schid, void *data)
if (chp_mask == 0) {
spin_unlock_irq(&sch->lock);
+ put_device(&sch->dev);
return 0;
}
old_lpm = sch->lpm;
@@ -392,7 +393,7 @@ __s390_process_res_acc(struct subchannel_id schid, void *data)
spin_unlock_irq(&sch->lock);
put_device(&sch->dev);
- return (res_data->fla_mask == 0xffff) ? -ENODEV : 0;
+ return 0;
}
diff --git a/drivers/s390/cio/cio.c b/drivers/s390/cio/cio.c
index 89320c1ad82..2e2882daefb 100644
--- a/drivers/s390/cio/cio.c
+++ b/drivers/s390/cio/cio.c
@@ -16,11 +16,10 @@
#include <linux/device.h>
#include <linux/kernel_stat.h>
#include <linux/interrupt.h>
-
#include <asm/cio.h>
#include <asm/delay.h>
#include <asm/irq.h>
-
+#include <asm/setup.h>
#include "airq.h"
#include "cio.h"
#include "css.h"
@@ -192,7 +191,7 @@ cio_start_key (struct subchannel *sch, /* subchannel structure */
sch->orb.pfch = sch->options.prefetch == 0;
sch->orb.spnd = sch->options.suspend;
sch->orb.ssic = sch->options.suspend && sch->options.inter;
- sch->orb.lpm = (lpm != 0) ? (lpm & sch->opm) : sch->lpm;
+ sch->orb.lpm = (lpm != 0) ? lpm : sch->lpm;
#ifdef CONFIG_64BIT
/*
* for 64 bit we always support 64 bit IDAWs with 4k page size only
@@ -570,10 +569,7 @@ cio_validate_subchannel (struct subchannel *sch, struct subchannel_id schid)
sch->opm = 0xff;
if (!cio_is_console(sch->schid))
chsc_validate_chpids(sch);
- sch->lpm = sch->schib.pmcw.pim &
- sch->schib.pmcw.pam &
- sch->schib.pmcw.pom &
- sch->opm;
+ sch->lpm = sch->schib.pmcw.pam & sch->opm;
CIO_DEBUG(KERN_INFO, 0,
"Detected device %04x on subchannel 0.%x.%04X"
@@ -841,14 +837,26 @@ __clear_subchannel_easy(struct subchannel_id schid)
return -EBUSY;
}
-extern void do_reipl(unsigned long devno);
-static int
-__shutdown_subchannel_easy(struct subchannel_id schid, void *data)
+struct sch_match_id {
+ struct subchannel_id schid;
+ struct ccw_dev_id devid;
+ int rc;
+};
+
+static int __shutdown_subchannel_easy_and_match(struct subchannel_id schid,
+ void *data)
{
struct schib schib;
+ struct sch_match_id *match_id = data;
if (stsch_err(schid, &schib))
return -ENXIO;
+ if (match_id && schib.pmcw.dnv &&
+ (schib.pmcw.dev == match_id->devid.devno) &&
+ (schid.ssid == match_id->devid.ssid)) {
+ match_id->schid = schid;
+ match_id->rc = 0;
+ }
if (!schib.pmcw.ena)
return 0;
switch(__disable_subchannel_easy(schid, &schib)) {
@@ -864,18 +872,71 @@ __shutdown_subchannel_easy(struct subchannel_id schid, void *data)
return 0;
}
-void
-clear_all_subchannels(void)
+static int clear_all_subchannels_and_match(struct ccw_dev_id *devid,
+ struct subchannel_id *schid)
{
+ struct sch_match_id match_id;
+
+ match_id.devid = *devid;
+ match_id.rc = -ENODEV;
local_irq_disable();
- for_each_subchannel(__shutdown_subchannel_easy, NULL);
+ for_each_subchannel(__shutdown_subchannel_easy_and_match, &match_id);
+ if (match_id.rc == 0)
+ *schid = match_id.schid;
+ return match_id.rc;
}
+
+void clear_all_subchannels(void)
+{
+ local_irq_disable();
+ for_each_subchannel(__shutdown_subchannel_easy_and_match, NULL);
+}
+
+extern void do_reipl_asm(__u32 schid);
+
/* Make sure all subchannels are quiet before we re-ipl an lpar. */
-void
-reipl(unsigned long devno)
+void reipl_ccw_dev(struct ccw_dev_id *devid)
{
- clear_all_subchannels();
+ struct subchannel_id schid;
+
+ if (clear_all_subchannels_and_match(devid, &schid))
+ panic("IPL Device not found\n");
cio_reset_channel_paths();
- do_reipl(devno);
+ do_reipl_asm(*((__u32*)&schid));
+}
+
+extern struct schib ipl_schib;
+
+/*
+ * ipl_save_parameters gets called very early. It is not allowed to access
+ * anything in the bss section at all. The bss section is not cleared yet,
+ * but may contain some ipl parameters written by the firmware.
+ * These parameters (if present) are copied to 0x2000.
+ * To avoid corruption of the ipl parameters, all variables used by this
+ * function must reside on the stack or in the data section.
+ */
+void ipl_save_parameters(void)
+{
+ struct subchannel_id schid;
+ unsigned int *ipl_ptr;
+ void *src, *dst;
+
+ schid = *(struct subchannel_id *)__LC_SUBCHANNEL_ID;
+ if (!schid.one)
+ return;
+ if (stsch(schid, &ipl_schib))
+ return;
+ if (!ipl_schib.pmcw.dnv)
+ return;
+ ipl_devno = ipl_schib.pmcw.dev;
+ ipl_flags |= IPL_DEVNO_VALID;
+ if (!ipl_schib.pmcw.qf)
+ return;
+ ipl_flags |= IPL_PARMBLOCK_VALID;
+ ipl_ptr = (unsigned int *)__LC_IPL_PARMBLOCK_PTR;
+ src = (void *)(unsigned long)*ipl_ptr;
+ dst = (void *)IPL_PARMBLOCK_ORIGIN;
+ memmove(dst, src, PAGE_SIZE);
+ *ipl_ptr = IPL_PARMBLOCK_ORIGIN;
}
diff --git a/drivers/s390/cio/css.c b/drivers/s390/cio/css.c
index 13eeea3d547..7086a74e987 100644
--- a/drivers/s390/cio/css.c
+++ b/drivers/s390/cio/css.c
@@ -182,136 +182,141 @@ get_subchannel_by_schid(struct subchannel_id schid)
return dev ? to_subchannel(dev) : NULL;
}
-
-static inline int
-css_get_subchannel_status(struct subchannel *sch, struct subchannel_id schid)
+static inline int css_get_subchannel_status(struct subchannel *sch)
{
struct schib schib;
- int cc;
- cc = stsch(schid, &schib);
- if (cc)
- return CIO_GONE;
- if (!schib.pmcw.dnv)
+ if (stsch(sch->schid, &schib) || !schib.pmcw.dnv)
return CIO_GONE;
- if (sch && sch->schib.pmcw.dnv &&
- (schib.pmcw.dev != sch->schib.pmcw.dev))
+ if (sch->schib.pmcw.dnv && (schib.pmcw.dev != sch->schib.pmcw.dev))
return CIO_REVALIDATE;
- if (sch && !sch->lpm)
+ if (!sch->lpm)
return CIO_NO_PATH;
return CIO_OPER;
}
-
-static int
-css_evaluate_subchannel(struct subchannel_id schid, int slow)
+
+static int css_evaluate_known_subchannel(struct subchannel *sch, int slow)
{
int event, ret, disc;
- struct subchannel *sch;
unsigned long flags;
+ enum { NONE, UNREGISTER, UNREGISTER_PROBE, REPROBE } action;
- sch = get_subchannel_by_schid(schid);
- disc = sch ? device_is_disconnected(sch) : 0;
+ spin_lock_irqsave(&sch->lock, flags);
+ disc = device_is_disconnected(sch);
if (disc && slow) {
- if (sch)
- put_device(&sch->dev);
- return 0; /* Already processed. */
+ /* Disconnected devices are evaluated directly only.*/
+ spin_unlock_irqrestore(&sch->lock, flags);
+ return 0;
}
- /*
- * We've got a machine check, so running I/O won't get an interrupt.
- * Kill any pending timers.
- */
- if (sch)
- device_kill_pending_timer(sch);
+ /* No interrupt after machine check - kill pending timers. */
+ device_kill_pending_timer(sch);
if (!disc && !slow) {
- if (sch)
- put_device(&sch->dev);
- return -EAGAIN; /* Will be done on the slow path. */
+ /* Non-disconnected devices are evaluated on the slow path. */
+ spin_unlock_irqrestore(&sch->lock, flags);
+ return -EAGAIN;
}
- event = css_get_subchannel_status(sch, schid);
+ event = css_get_subchannel_status(sch);
CIO_MSG_EVENT(4, "Evaluating schid 0.%x.%04x, event %d, %s, %s path.\n",
- schid.ssid, schid.sch_no, event,
- sch?(disc?"disconnected":"normal"):"unknown",
- slow?"slow":"fast");
+ sch->schid.ssid, sch->schid.sch_no, event,
+ disc ? "disconnected" : "normal",
+ slow ? "slow" : "fast");
+ /* Analyze subchannel status. */
+ action = NONE;
switch (event) {
case CIO_NO_PATH:
- case CIO_GONE:
- if (!sch) {
- /* Never used this subchannel. Ignore. */
- ret = 0;
+ if (disc) {
+ /* Check if paths have become available. */
+ action = REPROBE;
break;
}
- if (disc && (event == CIO_NO_PATH)) {
- /*
- * Uargh, hack again. Because we don't get a machine
- * check on configure on, our path bookkeeping can
- * be out of date here (it's fine while we only do
- * logical varying or get chsc machine checks). We
- * need to force reprobing or we might miss devices
- * coming operational again. It won't do harm in real
- * no path situations.
- */
- spin_lock_irqsave(&sch->lock, flags);
- device_trigger_reprobe(sch);
+ /* fall through */
+ case CIO_GONE:
+ /* Prevent unwanted effects when opening lock. */
+ cio_disable_subchannel(sch);
+ device_set_disconnected(sch);
+ /* Ask driver what to do with device. */
+ action = UNREGISTER;
+ if (sch->driver && sch->driver->notify) {
spin_unlock_irqrestore(&sch->lock, flags);
- ret = 0;
- break;
- }
- if (sch->driver && sch->driver->notify &&
- sch->driver->notify(&sch->dev, event)) {
- cio_disable_subchannel(sch);
- device_set_disconnected(sch);
- ret = 0;
- break;
+ ret = sch->driver->notify(&sch->dev, event);
+ spin_lock_irqsave(&sch->lock, flags);
+ if (ret)
+ action = NONE;
}
- /*
- * Unregister subchannel.
- * The device will be killed automatically.
- */
- cio_disable_subchannel(sch);
- css_sch_device_unregister(sch);
- /* Reset intparm to zeroes. */
- sch->schib.pmcw.intparm = 0;
- cio_modify(sch);
- put_device(&sch->dev);
- ret = 0;
break;
case CIO_REVALIDATE:
- /*
- * Revalidation machine check. Sick.
- * We don't notify the driver since we have to throw the device
- * away in any case.
- */
- if (!disc) {
- css_sch_device_unregister(sch);
- /* Reset intparm to zeroes. */
- sch->schib.pmcw.intparm = 0;
- cio_modify(sch);
- put_device(&sch->dev);
- ret = css_probe_device(schid);
- } else {
- /*
- * We can't immediately deregister the disconnected
- * device since it might block.
- */
- spin_lock_irqsave(&sch->lock, flags);
- device_trigger_reprobe(sch);
- spin_unlock_irqrestore(&sch->lock, flags);
- ret = 0;
- }
+ /* Device will be removed, so no notify necessary. */
+ if (disc)
+ /* Reprobe because immediate unregister might block. */
+ action = REPROBE;
+ else
+ action = UNREGISTER_PROBE;
break;
case CIO_OPER:
- if (disc) {
- spin_lock_irqsave(&sch->lock, flags);
+ if (disc)
/* Get device operational again. */
- device_trigger_reprobe(sch);
- spin_unlock_irqrestore(&sch->lock, flags);
- }
- ret = sch ? 0 : css_probe_device(schid);
+ action = REPROBE;
+ break;
+ }
+ /* Perform action. */
+ ret = 0;
+ switch (action) {
+ case UNREGISTER:
+ case UNREGISTER_PROBE:
+ /* Unregister device (will use subchannel lock). */
+ spin_unlock_irqrestore(&sch->lock, flags);
+ css_sch_device_unregister(sch);
+ spin_lock_irqsave(&sch->lock, flags);
+
+ /* Reset intparm to zeroes. */
+ sch->schib.pmcw.intparm = 0;
+ cio_modify(sch);
+
+ /* Probe if necessary. */
+ if (action == UNREGISTER_PROBE)
+ ret = css_probe_device(sch->schid);
+ break;
+ case REPROBE:
+ device_trigger_reprobe(sch);
break;
default:
- BUG();
- ret = 0;
+ break;
+ }
+ spin_unlock_irqrestore(&sch->lock, flags);
+
+ return ret;
+}
+
+static int css_evaluate_new_subchannel(struct subchannel_id schid, int slow)
+{
+ struct schib schib;
+
+ if (!slow) {
+ /* Will be done on the slow path. */
+ return -EAGAIN;
}
+ if (stsch(schid, &schib) || !schib.pmcw.dnv) {
+ /* Unusable - ignore. */
+ return 0;
+ }
+ CIO_MSG_EVENT(4, "Evaluating schid 0.%x.%04x, event %d, unknown, "
+ "slow path.\n", schid.ssid, schid.sch_no, CIO_OPER);
+
+ return css_probe_device(schid);
+}
+
+static int css_evaluate_subchannel(struct subchannel_id schid, int slow)
+{
+ struct subchannel *sch;
+ int ret;
+
+ sch = get_subchannel_by_schid(schid);
+ if (sch) {
+ ret = css_evaluate_known_subchannel(sch, slow);
+ put_device(&sch->dev);
+ } else
+ ret = css_evaluate_new_subchannel(schid, slow);
+
return ret;
}
diff --git a/drivers/s390/cio/device.c b/drivers/s390/cio/device.c
index 646da564040..688945662c1 100644
--- a/drivers/s390/cio/device.c
+++ b/drivers/s390/cio/device.c
@@ -52,53 +52,81 @@ ccw_bus_match (struct device * dev, struct device_driver * drv)
return 1;
}
-/*
- * Hotplugging interface for ccw devices.
- * Heavily modeled on pci and usb hotplug.
- */
-static int
-ccw_uevent (struct device *dev, char **envp, int num_envp,
- char *buffer, int buffer_size)
+/* Store modalias string delimited by prefix/suffix string into buffer with
+ * specified size. Return length of resulting string (excluding trailing '\0')
+ * even if string doesn't fit buffer (snprintf semantics). */
+static int snprint_alias(char *buf, size_t size, const char *prefix,
+ struct ccw_device_id *id, const char *suffix)
{
- struct ccw_device *cdev = to_ccwdev(dev);
- int i = 0;
- int length = 0;
+ int len;
- if (!cdev)
- return -ENODEV;
+ len = snprintf(buf, size, "%sccw:t%04Xm%02X", prefix, id->cu_type,
+ id->cu_model);
+ if (len > size)
+ return len;
+ buf += len;
+ size -= len;
- /* what we want to pass to /sbin/hotplug */
+ if (id->dev_type != 0)
+ len += snprintf(buf, size, "dt%04Xdm%02X%s", id->dev_type,
+ id->dev_model, suffix);
+ else
+ len += snprintf(buf, size, "dtdm%s", suffix);
- envp[i++] = buffer;
- length += scnprintf(buffer, buffer_size - length, "CU_TYPE=%04X",
- cdev->id.cu_type);
- if ((buffer_size - length <= 0) || (i >= num_envp))
- return -ENOMEM;
- ++length;
- buffer += length;
+ return len;
+}
+/* Set up environment variables for ccw device uevent. Return 0 on success,
+ * non-zero otherwise. */
+static int ccw_uevent(struct device *dev, char **envp, int num_envp,
+ char *buffer, int buffer_size)
+{
+ struct ccw_device *cdev = to_ccwdev(dev);
+ struct ccw_device_id *id = &(cdev->id);
+ int i = 0;
+ int len;
+
+ /* CU_TYPE= */
+ len = snprintf(buffer, buffer_size, "CU_TYPE=%04X", id->cu_type) + 1;
+ if (len > buffer_size || i >= num_envp)
+ return -ENOMEM;
envp[i++] = buffer;
- length += scnprintf(buffer, buffer_size - length, "CU_MODEL=%02X",
- cdev->id.cu_model);
- if ((buffer_size - length <= 0) || (i >= num_envp))
+ buffer += len;
+ buffer_size -= len;
+
+ /* CU_MODEL= */
+ len = snprintf(buffer, buffer_size, "CU_MODEL=%02X", id->cu_model) + 1;
+ if (len > buffer_size || i >= num_envp)
return -ENOMEM;
- ++length;
- buffer += length;
+ envp[i++] = buffer;
+ buffer += len;
+ buffer_size -= len;
/* The next two can be zero, that's ok for us */
- envp[i++] = buffer;
- length += scnprintf(buffer, buffer_size - length, "DEV_TYPE=%04X",
- cdev->id.dev_type);
- if ((buffer_size - length <= 0) || (i >= num_envp))
+ /* DEV_TYPE= */
+ len = snprintf(buffer, buffer_size, "DEV_TYPE=%04X", id->dev_type) + 1;
+ if (len > buffer_size || i >= num_envp)
return -ENOMEM;
- ++length;
- buffer += length;
+ envp[i++] = buffer;
+ buffer += len;
+ buffer_size -= len;
+ /* DEV_MODEL= */
+ len = snprintf(buffer, buffer_size, "DEV_MODEL=%02X",
+ (unsigned char) id->dev_model) + 1;
+ if (len > buffer_size || i >= num_envp)
+ return -ENOMEM;
envp[i++] = buffer;
- length += scnprintf(buffer, buffer_size - length, "DEV_MODEL=%02X",
- cdev->id.dev_model);
- if ((buffer_size - length <= 0) || (i >= num_envp))
+ buffer += len;
+ buffer_size -= len;
+
+ /* MODALIAS= */
+ len = snprint_alias(buffer, buffer_size, "MODALIAS=", id, "") + 1;
+ if (len > buffer_size || i >= num_envp)
return -ENOMEM;
+ envp[i++] = buffer;
+ buffer += len;
+ buffer_size -= len;
envp[i] = NULL;
@@ -251,16 +279,11 @@ modalias_show (struct device *dev, struct device_attribute *attr, char *buf)
{
struct ccw_device *cdev = to_ccwdev(dev);
struct ccw_device_id *id = &(cdev->id);
- int ret;
+ int len;
- ret = sprintf(buf, "ccw:t%04Xm%02X",
- id->cu_type, id->cu_model);
- if (id->dev_type != 0)
- ret += sprintf(buf + ret, "dt%04Xdm%02X\n",
- id->dev_type, id->dev_model);
- else
- ret += sprintf(buf + ret, "dtdm\n");
- return ret;
+ len = snprint_alias(buf, PAGE_SIZE, "", id, "\n") + 1;
+
+ return len > PAGE_SIZE ? PAGE_SIZE : len;
}
static ssize_t
diff --git a/drivers/s390/cio/device_fsm.c b/drivers/s390/cio/device_fsm.c
index 35e162ba6d5..dace46fc32e 100644
--- a/drivers/s390/cio/device_fsm.c
+++ b/drivers/s390/cio/device_fsm.c
@@ -232,10 +232,7 @@ ccw_device_recog_done(struct ccw_device *cdev, int state)
*/
old_lpm = sch->lpm;
stsch(sch->schid, &sch->schib);
- sch->lpm = sch->schib.pmcw.pim &
- sch->schib.pmcw.pam &
- sch->schib.pmcw.pom &
- sch->opm;
+ sch->lpm = sch->schib.pmcw.pam & sch->opm;
/* Check since device may again have become not operational. */
if (!sch->schib.pmcw.dnv)
state = DEV_STATE_NOT_OPER;
@@ -267,6 +264,7 @@ ccw_device_recog_done(struct ccw_device *cdev, int state)
notify = 1;
}
/* fill out sense information */
+ memset(&cdev->id, 0, sizeof(cdev->id));
cdev->id.cu_type = cdev->private->senseid.cu_type;
cdev->id.cu_model = cdev->private->senseid.cu_model;
cdev->id.dev_type = cdev->private->senseid.dev_type;
@@ -454,8 +452,8 @@ ccw_device_sense_pgid_done(struct ccw_device *cdev, int err)
return;
}
/* Start Path Group verification. */
- sch->vpm = 0; /* Start with no path groups set. */
cdev->private->state = DEV_STATE_VERIFY;
+ cdev->private->flags.doverify = 0;
ccw_device_verify_start(cdev);
}
@@ -555,7 +553,19 @@ ccw_device_nopath_notify(void *data)
void
ccw_device_verify_done(struct ccw_device *cdev, int err)
{
- cdev->private->flags.doverify = 0;
+ struct subchannel *sch;
+
+ sch = to_subchannel(cdev->dev.parent);
+ /* Update schib - pom may have changed. */
+ stsch(sch->schid, &sch->schib);
+ /* Update lpm with verified path mask. */
+ sch->lpm = sch->vpm;
+ /* Repeat path verification? */
+ if (cdev->private->flags.doverify) {
+ cdev->private->flags.doverify = 0;
+ ccw_device_verify_start(cdev);
+ return;
+ }
switch (err) {
case -EOPNOTSUPP: /* path grouping not supported, just set online. */
cdev->private->options.pgroup = 0;
@@ -613,6 +623,7 @@ ccw_device_online(struct ccw_device *cdev)
if (!cdev->private->options.pgroup) {
/* Start initial path verification. */
cdev->private->state = DEV_STATE_VERIFY;
+ cdev->private->flags.doverify = 0;
ccw_device_verify_start(cdev);
return 0;
}
@@ -659,7 +670,6 @@ ccw_device_offline(struct ccw_device *cdev)
/* Are we doing path grouping? */
if (!cdev->private->options.pgroup) {
/* No, set state offline immediately. */
- sch->vpm = 0;
ccw_device_done(cdev, DEV_STATE_OFFLINE);
return 0;
}
@@ -780,6 +790,7 @@ ccw_device_online_verify(struct ccw_device *cdev, enum dev_event dev_event)
}
/* Device is idle, we can do the path verification. */
cdev->private->state = DEV_STATE_VERIFY;
+ cdev->private->flags.doverify = 0;
ccw_device_verify_start(cdev);
}
@@ -1042,9 +1053,9 @@ ccw_device_wait4io_timeout(struct ccw_device *cdev, enum dev_event dev_event)
}
static void
-ccw_device_wait4io_verify(struct ccw_device *cdev, enum dev_event dev_event)
+ccw_device_delay_verify(struct ccw_device *cdev, enum dev_event dev_event)
{
- /* When the I/O has terminated, we have to start verification. */
+ /* Start verification after current task finished. */
cdev->private->flags.doverify = 1;
}
@@ -1110,10 +1121,7 @@ device_trigger_reprobe(struct subchannel *sch)
* The pim, pam, pom values may not be accurate, but they are the best
* we have before performing device selection :/
*/
- sch->lpm = sch->schib.pmcw.pim &
- sch->schib.pmcw.pam &
- sch->schib.pmcw.pom &
- sch->opm;
+ sch->lpm = sch->schib.pmcw.pam & sch->opm;
/* Re-set some bits in the pmcw that were lost. */
sch->schib.pmcw.isc = 3;
sch->schib.pmcw.csense = 1;
@@ -1237,7 +1245,7 @@ fsm_func_t *dev_jumptable[NR_DEV_STATES][NR_DEV_EVENTS] = {
[DEV_EVENT_NOTOPER] = ccw_device_online_notoper,
[DEV_EVENT_INTERRUPT] = ccw_device_verify_irq,
[DEV_EVENT_TIMEOUT] = ccw_device_onoff_timeout,
- [DEV_EVENT_VERIFY] = ccw_device_nop,
+ [DEV_EVENT_VERIFY] = ccw_device_delay_verify,
},
[DEV_STATE_ONLINE] = {
[DEV_EVENT_NOTOPER] = ccw_device_online_notoper,
@@ -1280,7 +1288,7 @@ fsm_func_t *dev_jumptable[NR_DEV_STATES][NR_DEV_EVENTS] = {
[DEV_EVENT_NOTOPER] = ccw_device_online_notoper,
[DEV_EVENT_INTERRUPT] = ccw_device_wait4io_irq,
[DEV_EVENT_TIMEOUT] = ccw_device_wait4io_timeout,
- [DEV_EVENT_VERIFY] = ccw_device_wait4io_verify,
+ [DEV_EVENT_VERIFY] = ccw_device_delay_verify,
},
[DEV_STATE_QUIESCE] = {
[DEV_EVENT_NOTOPER] = ccw_device_quiesce_done,
@@ -1293,7 +1301,7 @@ fsm_func_t *dev_jumptable[NR_DEV_STATES][NR_DEV_EVENTS] = {
[DEV_EVENT_NOTOPER] = ccw_device_nop,
[DEV_EVENT_INTERRUPT] = ccw_device_start_id,
[DEV_EVENT_TIMEOUT] = ccw_device_bug,
- [DEV_EVENT_VERIFY] = ccw_device_nop,
+ [DEV_EVENT_VERIFY] = ccw_device_start_id,
},
[DEV_STATE_DISCONNECTED_SENSE_ID] = {
[DEV_EVENT_NOTOPER] = ccw_device_recog_notoper,
diff --git a/drivers/s390/cio/device_ops.c b/drivers/s390/cio/device_ops.c
index 9e3de0bd59b..93a897eebff 100644
--- a/drivers/s390/cio/device_ops.c
+++ b/drivers/s390/cio/device_ops.c
@@ -96,6 +96,12 @@ ccw_device_start_key(struct ccw_device *cdev, struct ccw1 *cpa,
ret = cio_set_options (sch, flags);
if (ret)
return ret;
+ /* Adjust requested path mask to excluded varied off paths. */
+ if (lpm) {
+ lpm &= sch->opm;
+ if (lpm == 0)
+ return -EACCES;
+ }
ret = cio_start_key (sch, cpa, lpm, key);
if (ret == 0)
cdev->private->intparm = intparm;
@@ -250,7 +256,7 @@ ccw_device_get_path_mask(struct ccw_device *cdev)
if (!sch)
return 0;
else
- return sch->vpm;
+ return sch->lpm;
}
static void
@@ -304,7 +310,7 @@ __ccw_device_retry_loop(struct ccw_device *cdev, struct ccw1 *ccw, long magic, _
sch = to_subchannel(cdev->dev.parent);
do {
ret = cio_start (sch, ccw, lpm);
- if ((ret == -EBUSY) || (ret == -EACCES)) {
+ if (ret == -EBUSY) {
/* Try again later. */
spin_unlock_irq(&sch->lock);
msleep(10);
@@ -433,6 +439,13 @@ read_conf_data_lpm (struct ccw_device *cdev, void **buffer, int *length, __u8 lp
if (!ciw || ciw->cmd == 0)
return -EOPNOTSUPP;
+ /* Adjust requested path mask to excluded varied off paths. */
+ if (lpm) {
+ lpm &= sch->opm;
+ if (lpm == 0)
+ return -EACCES;
+ }
+
rcd_ccw = kzalloc(sizeof(struct ccw1), GFP_KERNEL | GFP_DMA);
if (!rcd_ccw)
return -ENOMEM;
diff --git a/drivers/s390/cio/device_pgid.c b/drivers/s390/cio/device_pgid.c
index 1693a102dcf..8ca2d078848 100644
--- a/drivers/s390/cio/device_pgid.c
+++ b/drivers/s390/cio/device_pgid.c
@@ -245,18 +245,17 @@ __ccw_device_do_pgid(struct ccw_device *cdev, __u8 func)
memset(&cdev->private->irb, 0, sizeof(struct irb));
/* Try multiple times. */
- ret = -ENODEV;
+ ret = -EACCES;
if (cdev->private->iretry > 0) {
cdev->private->iretry--;
ret = cio_start (sch, cdev->private->iccws,
cdev->private->imask);
- /* ret is 0, -EBUSY, -EACCES or -ENODEV */
- if ((ret != -EACCES) && (ret != -ENODEV))
+ /* We expect an interrupt in case of success or busy
+ * indication. */
+ if ((ret == 0) || (ret == -EBUSY))
return ret;
}
- /* PGID command failed on this path. Switch it off. */
- sch->lpm &= ~cdev->private->imask;
- sch->vpm &= ~cdev->private->imask;
+ /* PGID command failed on this path. */
CIO_MSG_EVENT(2, "SPID - Device %04x on Subchannel "
"0.%x.%04x, lpm %02X, became 'not operational'\n",
cdev->private->devno, sch->schid.ssid,
@@ -286,18 +285,17 @@ static int __ccw_device_do_nop(struct ccw_device *cdev)
memset(&cdev->private->irb, 0, sizeof(struct irb));
/* Try multiple times. */
- ret = -ENODEV;
+ ret = -EACCES;
if (cdev->private->iretry > 0) {
cdev->private->iretry--;
ret = cio_start (sch, cdev->private->iccws,
cdev->private->imask);
- /* ret is 0, -EBUSY, -EACCES or -ENODEV */
- if ((ret != -EACCES) && (ret != -ENODEV))
+ /* We expect an interrupt in case of success or busy
+ * indication. */
+ if ((ret == 0) || (ret == -EBUSY))
return ret;
}
- /* nop command failed on this path. Switch it off. */
- sch->lpm &= ~cdev->private->imask;
- sch->vpm &= ~cdev->private->imask;
+ /* nop command failed on this path. */
CIO_MSG_EVENT(2, "NOP - Device %04x on Subchannel "
"0.%x.%04x, lpm %02X, became 'not operational'\n",
cdev->private->devno, sch->schid.ssid,
@@ -372,27 +370,32 @@ static void
__ccw_device_verify_start(struct ccw_device *cdev)
{
struct subchannel *sch;
- __u8 imask, func;
+ __u8 func;
int ret;
sch = to_subchannel(cdev->dev.parent);
- while (sch->vpm != sch->lpm) {
- /* Find first unequal bit in vpm vs. lpm */
- for (imask = 0x80; imask != 0; imask >>= 1)
- if ((sch->vpm & imask) != (sch->lpm & imask))
- break;
- cdev->private->imask = imask;
+ /* Repeat for all paths. */
+ for (; cdev->private->imask; cdev->private->imask >>= 1,
+ cdev->private->iretry = 5) {
+ if ((cdev->private->imask & sch->schib.pmcw.pam) == 0)
+ /* Path not available, try next. */
+ continue;
if (cdev->private->options.pgroup) {
- func = (sch->vpm & imask) ?
- SPID_FUNC_RESIGN : SPID_FUNC_ESTABLISH;
+ if (sch->opm & cdev->private->imask)
+ func = SPID_FUNC_ESTABLISH;
+ else
+ func = SPID_FUNC_RESIGN;
ret = __ccw_device_do_pgid(cdev, func);
} else
ret = __ccw_device_do_nop(cdev);
+ /* We expect an interrupt in case of success or busy
+ * indication. */
if (ret == 0 || ret == -EBUSY)
return;
- cdev->private->iretry = 5;
+ /* Permanent path failure, try next. */
}
- ccw_device_verify_done(cdev, (sch->lpm != 0) ? 0 : -ENODEV);
+ /* Done with all paths. */
+ ccw_device_verify_done(cdev, (sch->vpm != 0) ? 0 : -ENODEV);
}
/*
@@ -421,14 +424,14 @@ ccw_device_verify_irq(struct ccw_device *cdev, enum dev_event dev_event)
else
ret = __ccw_device_check_nop(cdev);
memset(&cdev->private->irb, 0, sizeof(struct irb));
+
switch (ret) {
/* 0, -ETIME, -EAGAIN, -EOPNOTSUPP or -EACCES */
case 0:
- /* Establish or Resign Path Group done. Update vpm. */
- if ((sch->lpm & cdev->private->imask) != 0)
- sch->vpm |= cdev->private->imask;
- else
- sch->vpm &= ~cdev->private->imask;
+ /* Path verification ccw finished successfully, update lpm. */
+ sch->vpm |= sch->opm & cdev->private->imask;
+ /* Go on with next path. */
+ cdev->private->imask >>= 1;
cdev->private->iretry = 5;
__ccw_device_verify_start(cdev);
break;
@@ -441,6 +444,10 @@ ccw_device_verify_irq(struct ccw_device *cdev, enum dev_event dev_event)
cdev->private->options.pgroup = 0;
else
cdev->private->flags.pgid_single = 1;
+ /* Retry */
+ sch->vpm = 0;
+ cdev->private->imask = 0x80;
+ cdev->private->iretry = 5;
/* fall through. */
case -EAGAIN: /* Try again. */
__ccw_device_verify_start(cdev);
@@ -449,8 +456,7 @@ ccw_device_verify_irq(struct ccw_device *cdev, enum dev_event dev_event)
ccw_device_verify_done(cdev, -ETIME);
break;
case -EACCES: /* channel is not operational. */
- sch->lpm &= ~cdev->private->imask;
- sch->vpm &= ~cdev->private->imask;
+ cdev->private->imask >>= 1;
cdev->private->iretry = 5;
__ccw_device_verify_start(cdev);
break;
@@ -463,19 +469,17 @@ ccw_device_verify_start(struct ccw_device *cdev)
struct subchannel *sch = to_subchannel(cdev->dev.parent);
cdev->private->flags.pgid_single = 0;
+ cdev->private->imask = 0x80;
cdev->private->iretry = 5;
- /*
- * Update sch->lpm with current values to catch paths becoming
- * available again.
- */
+
+ /* Start with empty vpm. */
+ sch->vpm = 0;
+
+ /* Get current pam. */
if (stsch(sch->schid, &sch->schib)) {
ccw_device_verify_done(cdev, -ENODEV);
return;
}
- sch->lpm = sch->schib.pmcw.pim &
- sch->schib.pmcw.pam &
- sch->schib.pmcw.pom &
- sch->opm;
__ccw_device_verify_start(cdev);
}
@@ -524,7 +528,6 @@ ccw_device_disband_irq(struct ccw_device *cdev, enum dev_event dev_event)
switch (ret) {
/* 0, -ETIME, -EAGAIN, -EOPNOTSUPP or -EACCES */
case 0: /* disband successful. */
- sch->vpm = 0;
ccw_device_disband_done(cdev, ret);
break;
case -EOPNOTSUPP:
diff --git a/drivers/s390/cio/qdio.c b/drivers/s390/cio/qdio.c
index 7c93a8798d2..cde822d8b5c 100644
--- a/drivers/s390/cio/qdio.c
+++ b/drivers/s390/cio/qdio.c
@@ -115,7 +115,7 @@ qdio_min(int a,int b)
static inline __u64
qdio_get_micros(void)
{
- return (get_clock() >> 10); /* time>>12 is microseconds */
+ return (get_clock() >> 12); /* time>>12 is microseconds */
}
/*
@@ -1129,7 +1129,7 @@ out:
#ifdef QDIO_USE_PROCESSING_STATE
if (last_position>=0)
- set_slsb(q, &last_position, SLSB_P_INPUT_NOT_INIT, &count);
+ set_slsb(q, &last_position, SLSB_P_INPUT_PROCESSING, &count);
#endif /* QDIO_USE_PROCESSING_STATE */
QDIO_DBF_HEX4(0,trace,&q->first_to_check,sizeof(int));
diff --git a/drivers/s390/cio/qdio.h b/drivers/s390/cio/qdio.h
index ceb3ab31ee0..124569362f0 100644
--- a/drivers/s390/cio/qdio.h
+++ b/drivers/s390/cio/qdio.h
@@ -191,49 +191,49 @@ enum qdio_irq_states {
#if QDIO_VERBOSE_LEVEL>8
#define QDIO_PRINT_STUPID(x...) printk( KERN_DEBUG QDIO_PRINTK_HEADER x)
#else
-#define QDIO_PRINT_STUPID(x...)
+#define QDIO_PRINT_STUPID(x...) do { } while (0)
#endif
#if QDIO_VERBOSE_LEVEL>7
#define QDIO_PRINT_ALL(x...) printk( QDIO_PRINTK_HEADER x)
#else
-#define QDIO_PRINT_ALL(x...)
+#define QDIO_PRINT_ALL(x...) do { } while (0)
#endif
#if QDIO_VERBOSE_LEVEL>6
#define QDIO_PRINT_INFO(x...) printk( QDIO_PRINTK_HEADER x)
#else
-#define QDIO_PRINT_INFO(x...)
+#define QDIO_PRINT_INFO(x...) do { } while (0)
#endif
#if QDIO_VERBOSE_LEVEL>5
#define QDIO_PRINT_WARN(x...) printk( QDIO_PRINTK_HEADER x)
#else
-#define QDIO_PRINT_WARN(x...)
+#define QDIO_PRINT_WARN(x...) do { } while (0)
#endif
#if QDIO_VERBOSE_LEVEL>4
#define QDIO_PRINT_ERR(x...) printk( QDIO_PRINTK_HEADER x)
#else
-#define QDIO_PRINT_ERR(x...)
+#define QDIO_PRINT_ERR(x...) do { } while (0)
#endif
#if QDIO_VERBOSE_LEVEL>3
#define QDIO_PRINT_CRIT(x...) printk( QDIO_PRINTK_HEADER x)
#else
-#define QDIO_PRINT_CRIT(x...)
+#define QDIO_PRINT_CRIT(x...) do { } while (0)
#endif
#if QDIO_VERBOSE_LEVEL>2
#define QDIO_PRINT_ALERT(x...) printk( QDIO_PRINTK_HEADER x)
#else
-#define QDIO_PRINT_ALERT(x...)
+#define QDIO_PRINT_ALERT(x...) do { } while (0)
#endif
#if QDIO_VERBOSE_LEVEL>1
#define QDIO_PRINT_EMERG(x...) printk( QDIO_PRINTK_HEADER x)
#else
-#define QDIO_PRINT_EMERG(x...)
+#define QDIO_PRINT_EMERG(x...) do { } while (0)
#endif
#define HEXDUMP16(importance,header,ptr) \
diff --git a/drivers/s390/crypto/Makefile b/drivers/s390/crypto/Makefile
index 15edebbead7..f0a12d2eb78 100644
--- a/drivers/s390/crypto/Makefile
+++ b/drivers/s390/crypto/Makefile
@@ -2,5 +2,16 @@
# S/390 crypto devices
#
-z90crypt-objs := z90main.o z90hardware.o
-obj-$(CONFIG_Z90CRYPT) += z90crypt.o
+ifdef CONFIG_ZCRYPT_MONOLITHIC
+
+z90crypt-objs := zcrypt_mono.o ap_bus.o zcrypt_api.o \
+ zcrypt_pcica.o zcrypt_pcicc.o zcrypt_pcixcc.o zcrypt_cex2a.o
+obj-$(CONFIG_ZCRYPT) += z90crypt.o
+
+else
+
+ap-objs := ap_bus.o
+obj-$(CONFIG_ZCRYPT) += ap.o zcrypt_api.o zcrypt_pcicc.o zcrypt_pcixcc.o
+obj-$(CONFIG_ZCRYPT) += zcrypt_pcica.o zcrypt_cex2a.o
+
+endif
diff --git a/drivers/s390/crypto/ap_bus.c b/drivers/s390/crypto/ap_bus.c
new file mode 100644
index 00000000000..6ed0985c0c9
--- /dev/null
+++ b/drivers/s390/crypto/ap_bus.c
@@ -0,0 +1,1221 @@
+/*
+ * linux/drivers/s390/crypto/ap_bus.c
+ *
+ * Copyright (C) 2006 IBM Corporation
+ * Author(s): Cornelia Huck <cornelia.huck@de.ibm.com>
+ * Martin Schwidefsky <schwidefsky@de.ibm.com>
+ * Ralph Wuerthner <rwuerthn@de.ibm.com>
+ *
+ * Adjunct processor bus.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/delay.h>
+#include <linux/err.h>
+#include <linux/interrupt.h>
+#include <linux/workqueue.h>
+#include <linux/notifier.h>
+#include <linux/kthread.h>
+#include <linux/mutex.h>
+#include <asm/s390_rdev.h>
+
+#include "ap_bus.h"
+
+/* Some prototypes. */
+static void ap_scan_bus(void *);
+static void ap_poll_all(unsigned long);
+static void ap_poll_timeout(unsigned long);
+static int ap_poll_thread_start(void);
+static void ap_poll_thread_stop(void);
+
+/**
+ * Module description.
+ */
+MODULE_AUTHOR("IBM Corporation");
+MODULE_DESCRIPTION("Adjunct Processor Bus driver, "
+ "Copyright 2006 IBM Corporation");
+MODULE_LICENSE("GPL");
+
+/**
+ * Module parameter
+ */
+int ap_domain_index = -1; /* Adjunct Processor Domain Index */
+module_param_named(domain, ap_domain_index, int, 0000);
+MODULE_PARM_DESC(domain, "domain index for ap devices");
+EXPORT_SYMBOL(ap_domain_index);
+
+static int ap_thread_flag = 1;
+module_param_named(poll_thread, ap_thread_flag, int, 0000);
+MODULE_PARM_DESC(poll_thread, "Turn on/off poll thread, default is 1 (on).");
+
+static struct device *ap_root_device = NULL;
+
+/**
+ * Workqueue & timer for bus rescan.
+ */
+static struct workqueue_struct *ap_work_queue;
+static struct timer_list ap_config_timer;
+static int ap_config_time = AP_CONFIG_TIME;
+static DECLARE_WORK(ap_config_work, ap_scan_bus, NULL);
+
+/**
+ * Tasklet & timer for AP request polling.
+ */
+static struct timer_list ap_poll_timer = TIMER_INITIALIZER(ap_poll_timeout,0,0);
+static DECLARE_TASKLET(ap_tasklet, ap_poll_all, 0);
+static atomic_t ap_poll_requests = ATOMIC_INIT(0);
+static DECLARE_WAIT_QUEUE_HEAD(ap_poll_wait);
+static struct task_struct *ap_poll_kthread = NULL;
+static DEFINE_MUTEX(ap_poll_thread_mutex);
+
+/**
+ * Test if ap instructions are available.
+ *
+ * Returns 0 if the ap instructions are installed.
+ */
+static inline int ap_instructions_available(void)
+{
+ register unsigned long reg0 asm ("0") = AP_MKQID(0,0);
+ register unsigned long reg1 asm ("1") = -ENODEV;
+ register unsigned long reg2 asm ("2") = 0UL;
+
+ asm volatile(
+ " .long 0xb2af0000\n" /* PQAP(TAPQ) */
+ "0: la %1,0\n"
+ "1:\n"
+ EX_TABLE(0b, 1b)
+ : "+d" (reg0), "+d" (reg1), "+d" (reg2) : : "cc" );
+ return reg1;
+}
+
+/**
+ * Test adjunct processor queue.
+ * @qid: the ap queue number
+ * @queue_depth: pointer to queue depth value
+ * @device_type: pointer to device type value
+ *
+ * Returns ap queue status structure.
+ */
+static inline struct ap_queue_status
+ap_test_queue(ap_qid_t qid, int *queue_depth, int *device_type)
+{
+ register unsigned long reg0 asm ("0") = qid;
+ register struct ap_queue_status reg1 asm ("1");
+ register unsigned long reg2 asm ("2") = 0UL;
+
+ asm volatile(".long 0xb2af0000" /* PQAP(TAPQ) */
+ : "+d" (reg0), "=d" (reg1), "+d" (reg2) : : "cc");
+ *device_type = (int) (reg2 >> 24);
+ *queue_depth = (int) (reg2 & 0xff);
+ return reg1;
+}
+
+/**
+ * Reset adjunct processor queue.
+ * @qid: the ap queue number
+ *
+ * Returns ap queue status structure.
+ */
+static inline struct ap_queue_status ap_reset_queue(ap_qid_t qid)
+{
+ register unsigned long reg0 asm ("0") = qid | 0x01000000UL;
+ register struct ap_queue_status reg1 asm ("1");
+ register unsigned long reg2 asm ("2") = 0UL;
+
+ asm volatile(
+ ".long 0xb2af0000" /* PQAP(RAPQ) */
+ : "+d" (reg0), "=d" (reg1), "+d" (reg2) : : "cc");
+ return reg1;
+}
+
+/**
+ * Send message to adjunct processor queue.
+ * @qid: the ap queue number
+ * @psmid: the program supplied message identifier
+ * @msg: the message text
+ * @length: the message length
+ *
+ * Returns ap queue status structure.
+ *
+ * Condition code 1 on NQAP can't happen because the L bit is 1.
+ *
+ * Condition code 2 on NQAP also means the send is incomplete,
+ * because a segment boundary was reached. The NQAP is repeated.
+ */
+static inline struct ap_queue_status
+__ap_send(ap_qid_t qid, unsigned long long psmid, void *msg, size_t length)
+{
+ typedef struct { char _[length]; } msgblock;
+ register unsigned long reg0 asm ("0") = qid | 0x40000000UL;
+ register struct ap_queue_status reg1 asm ("1");
+ register unsigned long reg2 asm ("2") = (unsigned long) msg;
+ register unsigned long reg3 asm ("3") = (unsigned long) length;
+ register unsigned long reg4 asm ("4") = (unsigned int) (psmid >> 32);
+ register unsigned long reg5 asm ("5") = (unsigned int) psmid;
+
+ asm volatile (
+ "0: .long 0xb2ad0042\n" /* DQAP */
+ " brc 2,0b"
+ : "+d" (reg0), "=d" (reg1), "+d" (reg2), "+d" (reg3)
+ : "d" (reg4), "d" (reg5), "m" (*(msgblock *) msg)
+ : "cc" );
+ return reg1;
+}
+
+int ap_send(ap_qid_t qid, unsigned long long psmid, void *msg, size_t length)
+{
+ struct ap_queue_status status;
+
+ status = __ap_send(qid, psmid, msg, length);
+ switch (status.response_code) {
+ case AP_RESPONSE_NORMAL:
+ return 0;
+ case AP_RESPONSE_Q_FULL:
+ return -EBUSY;
+ default: /* Device is gone. */
+ return -ENODEV;
+ }
+}
+EXPORT_SYMBOL(ap_send);
+
+/*
+ * Receive message from adjunct processor queue.
+ * @qid: the ap queue number
+ * @psmid: pointer to program supplied message identifier
+ * @msg: the message text
+ * @length: the message length
+ *
+ * Returns ap queue status structure.
+ *
+ * Condition code 1 on DQAP means the receive has taken place
+ * but only partially. The response is incomplete, hence the
+ * DQAP is repeated.
+ *
+ * Condition code 2 on DQAP also means the receive is incomplete,
+ * this time because a segment boundary was reached. Again, the
+ * DQAP is repeated.
+ *
+ * Note that gpr2 is used by the DQAP instruction to keep track of
+ * any 'residual' length, in case the instruction gets interrupted.
+ * Hence it gets zeroed before the instruction.
+ */
+static inline struct ap_queue_status
+__ap_recv(ap_qid_t qid, unsigned long long *psmid, void *msg, size_t length)
+{
+ typedef struct { char _[length]; } msgblock;
+ register unsigned long reg0 asm("0") = qid | 0x80000000UL;
+ register struct ap_queue_status reg1 asm ("1");
+ register unsigned long reg2 asm("2") = 0UL;
+ register unsigned long reg4 asm("4") = (unsigned long) msg;
+ register unsigned long reg5 asm("5") = (unsigned long) length;
+ register unsigned long reg6 asm("6") = 0UL;
+ register unsigned long reg7 asm("7") = 0UL;
+
+
+ asm volatile(
+ "0: .long 0xb2ae0064\n"
+ " brc 6,0b\n"
+ : "+d" (reg0), "=d" (reg1), "+d" (reg2),
+ "+d" (reg4), "+d" (reg5), "+d" (reg6), "+d" (reg7),
+ "=m" (*(msgblock *) msg) : : "cc" );
+ *psmid = (((unsigned long long) reg6) << 32) + reg7;
+ return reg1;
+}
+
+int ap_recv(ap_qid_t qid, unsigned long long *psmid, void *msg, size_t length)
+{
+ struct ap_queue_status status;
+
+ status = __ap_recv(qid, psmid, msg, length);
+ switch (status.response_code) {
+ case AP_RESPONSE_NORMAL:
+ return 0;
+ case AP_RESPONSE_NO_PENDING_REPLY:
+ if (status.queue_empty)
+ return -ENOENT;
+ return -EBUSY;
+ default:
+ return -ENODEV;
+ }
+}
+EXPORT_SYMBOL(ap_recv);
+
+/**
+ * Check if an AP queue is available. The test is repeated for
+ * AP_MAX_RESET times.
+ * @qid: the ap queue number
+ * @queue_depth: pointer to queue depth value
+ * @device_type: pointer to device type value
+ */
+static int ap_query_queue(ap_qid_t qid, int *queue_depth, int *device_type)
+{
+ struct ap_queue_status status;
+ int t_depth, t_device_type, rc, i;
+
+ rc = -EBUSY;
+ for (i = 0; i < AP_MAX_RESET; i++) {
+ status = ap_test_queue(qid, &t_depth, &t_device_type);
+ switch (status.response_code) {
+ case AP_RESPONSE_NORMAL:
+ *queue_depth = t_depth + 1;
+ *device_type = t_device_type;
+ rc = 0;
+ break;
+ case AP_RESPONSE_Q_NOT_AVAIL:
+ rc = -ENODEV;
+ break;
+ case AP_RESPONSE_RESET_IN_PROGRESS:
+ break;
+ case AP_RESPONSE_DECONFIGURED:
+ rc = -ENODEV;
+ break;
+ case AP_RESPONSE_CHECKSTOPPED:
+ rc = -ENODEV;
+ break;
+ case AP_RESPONSE_BUSY:
+ break;
+ default:
+ BUG();
+ }
+ if (rc != -EBUSY)
+ break;
+ if (i < AP_MAX_RESET - 1)
+ udelay(5);
+ }
+ return rc;
+}
+
+/**
+ * Reset an AP queue and wait for it to become available again.
+ * @qid: the ap queue number
+ */
+static int ap_init_queue(ap_qid_t qid)
+{
+ struct ap_queue_status status;
+ int rc, dummy, i;
+
+ rc = -ENODEV;
+ status = ap_reset_queue(qid);
+ for (i = 0; i < AP_MAX_RESET; i++) {
+ switch (status.response_code) {
+ case AP_RESPONSE_NORMAL:
+ if (status.queue_empty)
+ rc = 0;
+ break;
+ case AP_RESPONSE_Q_NOT_AVAIL:
+ case AP_RESPONSE_DECONFIGURED:
+ case AP_RESPONSE_CHECKSTOPPED:
+ i = AP_MAX_RESET; /* return with -ENODEV */
+ break;
+ case AP_RESPONSE_RESET_IN_PROGRESS:
+ case AP_RESPONSE_BUSY:
+ default:
+ break;
+ }
+ if (rc != -ENODEV)
+ break;
+ if (i < AP_MAX_RESET - 1) {
+ udelay(5);
+ status = ap_test_queue(qid, &dummy, &dummy);
+ }
+ }
+ return rc;
+}
+
+/**
+ * AP device related attributes.
+ */
+static ssize_t ap_hwtype_show(struct device *dev,
+ struct device_attribute *attr, char *buf)
+{
+ struct ap_device *ap_dev = to_ap_dev(dev);
+ return snprintf(buf, PAGE_SIZE, "%d\n", ap_dev->device_type);
+}
+static DEVICE_ATTR(hwtype, 0444, ap_hwtype_show, NULL);
+
+static ssize_t ap_depth_show(struct device *dev, struct device_attribute *attr,
+ char *buf)
+{
+ struct ap_device *ap_dev = to_ap_dev(dev);
+ return snprintf(buf, PAGE_SIZE, "%d\n", ap_dev->queue_depth);
+}
+static DEVICE_ATTR(depth, 0444, ap_depth_show, NULL);
+
+static ssize_t ap_request_count_show(struct device *dev,
+ struct device_attribute *attr,
+ char *buf)
+{
+ struct ap_device *ap_dev = to_ap_dev(dev);
+ int rc;
+
+ spin_lock_bh(&ap_dev->lock);
+ rc = snprintf(buf, PAGE_SIZE, "%d\n", ap_dev->total_request_count);
+ spin_unlock_bh(&ap_dev->lock);
+ return rc;
+}
+
+static DEVICE_ATTR(request_count, 0444, ap_request_count_show, NULL);
+
+static ssize_t ap_modalias_show(struct device *dev,
+ struct device_attribute *attr, char *buf)
+{
+ return sprintf(buf, "ap:t%02X", to_ap_dev(dev)->device_type);
+}
+
+static DEVICE_ATTR(modalias, 0444, ap_modalias_show, NULL);
+
+static struct attribute *ap_dev_attrs[] = {
+ &dev_attr_hwtype.attr,
+ &dev_attr_depth.attr,
+ &dev_attr_request_count.attr,
+ &dev_attr_modalias.attr,
+ NULL
+};
+static struct attribute_group ap_dev_attr_group = {
+ .attrs = ap_dev_attrs
+};
+
+/**
+ * AP bus driver registration/unregistration.
+ */
+static int ap_bus_match(struct device *dev, struct device_driver *drv)
+{
+ struct ap_device *ap_dev = to_ap_dev(dev);
+ struct ap_driver *ap_drv = to_ap_drv(drv);
+ struct ap_device_id *id;
+
+ /**
+ * Compare device type of the device with the list of
+ * supported types of the device_driver.
+ */
+ for (id = ap_drv->ids; id->match_flags; id++) {
+ if ((id->match_flags & AP_DEVICE_ID_MATCH_DEVICE_TYPE) &&
+ (id->dev_type != ap_dev->device_type))
+ continue;
+ return 1;
+ }
+ return 0;
+}
+
+/**
+ * uevent function for AP devices. It sets up a single environment
+ * variable DEV_TYPE which contains the hardware device type.
+ */
+static int ap_uevent (struct device *dev, char **envp, int num_envp,
+ char *buffer, int buffer_size)
+{
+ struct ap_device *ap_dev = to_ap_dev(dev);
+ int length;
+
+ if (!ap_dev)
+ return -ENODEV;
+
+ /* Set up DEV_TYPE environment variable. */
+ envp[0] = buffer;
+ length = scnprintf(buffer, buffer_size, "DEV_TYPE=%04X",
+ ap_dev->device_type);
+ if (buffer_size - length <= 0)
+ return -ENOMEM;
+ envp[1] = 0;
+ return 0;
+}
+
+static struct bus_type ap_bus_type = {
+ .name = "ap",
+ .match = &ap_bus_match,
+ .uevent = &ap_uevent,
+};
+
+static int ap_device_probe(struct device *dev)
+{
+ struct ap_device *ap_dev = to_ap_dev(dev);
+ struct ap_driver *ap_drv = to_ap_drv(dev->driver);
+ int rc;
+
+ ap_dev->drv = ap_drv;
+ rc = ap_drv->probe ? ap_drv->probe(ap_dev) : -ENODEV;
+ if (rc)
+ ap_dev->unregistered = 1;
+ return rc;
+}
+
+/**
+ * Flush all requests from the request/pending queue of an AP device.
+ * @ap_dev: pointer to the AP device.
+ */
+static inline void __ap_flush_queue(struct ap_device *ap_dev)
+{
+ struct ap_message *ap_msg, *next;
+
+ list_for_each_entry_safe(ap_msg, next, &ap_dev->pendingq, list) {
+ list_del_init(&ap_msg->list);
+ ap_dev->pendingq_count--;
+ ap_dev->drv->receive(ap_dev, ap_msg, ERR_PTR(-ENODEV));
+ }
+ list_for_each_entry_safe(ap_msg, next, &ap_dev->requestq, list) {
+ list_del_init(&ap_msg->list);
+ ap_dev->requestq_count--;
+ ap_dev->drv->receive(ap_dev, ap_msg, ERR_PTR(-ENODEV));
+ }
+}
+
+void ap_flush_queue(struct ap_device *ap_dev)
+{
+ spin_lock_bh(&ap_dev->lock);
+ __ap_flush_queue(ap_dev);
+ spin_unlock_bh(&ap_dev->lock);
+}
+EXPORT_SYMBOL(ap_flush_queue);
+
+static int ap_device_remove(struct device *dev)
+{
+ struct ap_device *ap_dev = to_ap_dev(dev);
+ struct ap_driver *ap_drv = ap_dev->drv;
+
+ spin_lock_bh(&ap_dev->lock);
+ __ap_flush_queue(ap_dev);
+ /**
+ * set ->unregistered to 1 while holding the lock. This prevents
+ * new messages to be put on the queue from now on.
+ */
+ ap_dev->unregistered = 1;
+ spin_unlock_bh(&ap_dev->lock);
+ if (ap_drv->remove)
+ ap_drv->remove(ap_dev);
+ return 0;
+}
+
+int ap_driver_register(struct ap_driver *ap_drv, struct module *owner,
+ char *name)
+{
+ struct device_driver *drv = &ap_drv->driver;
+
+ drv->bus = &ap_bus_type;
+ drv->probe = ap_device_probe;
+ drv->remove = ap_device_remove;
+ drv->owner = owner;
+ drv->name = name;
+ return driver_register(drv);
+}
+EXPORT_SYMBOL(ap_driver_register);
+
+void ap_driver_unregister(struct ap_driver *ap_drv)
+{
+ driver_unregister(&ap_drv->driver);
+}
+EXPORT_SYMBOL(ap_driver_unregister);
+
+/**
+ * AP bus attributes.
+ */
+static ssize_t ap_domain_show(struct bus_type *bus, char *buf)
+{
+ return snprintf(buf, PAGE_SIZE, "%d\n", ap_domain_index);
+}
+
+static BUS_ATTR(ap_domain, 0444, ap_domain_show, NULL);
+
+static ssize_t ap_config_time_show(struct bus_type *bus, char *buf)
+{
+ return snprintf(buf, PAGE_SIZE, "%d\n", ap_config_time);
+}
+
+static ssize_t ap_config_time_store(struct bus_type *bus,
+ const char *buf, size_t count)
+{
+ int time;
+
+ if (sscanf(buf, "%d\n", &time) != 1 || time < 5 || time > 120)
+ return -EINVAL;
+ ap_config_time = time;
+ if (!timer_pending(&ap_config_timer) ||
+ !mod_timer(&ap_config_timer, jiffies + ap_config_time * HZ)) {
+ ap_config_timer.expires = jiffies + ap_config_time * HZ;
+ add_timer(&ap_config_timer);
+ }
+ return count;
+}
+
+static BUS_ATTR(config_time, 0644, ap_config_time_show, ap_config_time_store);
+
+static ssize_t ap_poll_thread_show(struct bus_type *bus, char *buf)
+{
+ return snprintf(buf, PAGE_SIZE, "%d\n", ap_poll_kthread ? 1 : 0);
+}
+
+static ssize_t ap_poll_thread_store(struct bus_type *bus,
+ const char *buf, size_t count)
+{
+ int flag, rc;
+
+ if (sscanf(buf, "%d\n", &flag) != 1)
+ return -EINVAL;
+ if (flag) {
+ rc = ap_poll_thread_start();
+ if (rc)
+ return rc;
+ }
+ else
+ ap_poll_thread_stop();
+ return count;
+}
+
+static BUS_ATTR(poll_thread, 0644, ap_poll_thread_show, ap_poll_thread_store);
+
+static struct bus_attribute *const ap_bus_attrs[] = {
+ &bus_attr_ap_domain,
+ &bus_attr_config_time,
+ &bus_attr_poll_thread,
+ NULL
+};
+
+/**
+ * Pick one of the 16 ap domains.
+ */
+static inline int ap_select_domain(void)
+{
+ int queue_depth, device_type, count, max_count, best_domain;
+ int rc, i, j;
+
+ /**
+ * We want to use a single domain. Either the one specified with
+ * the "domain=" parameter or the domain with the maximum number
+ * of devices.
+ */
+ if (ap_domain_index >= 0 && ap_domain_index < AP_DOMAINS)
+ /* Domain has already been selected. */
+ return 0;
+ best_domain = -1;
+ max_count = 0;
+ for (i = 0; i < AP_DOMAINS; i++) {
+ count = 0;
+ for (j = 0; j < AP_DEVICES; j++) {
+ ap_qid_t qid = AP_MKQID(j, i);
+ rc = ap_query_queue(qid, &queue_depth, &device_type);
+ if (rc)
+ continue;
+ count++;
+ }
+ if (count > max_count) {
+ max_count = count;
+ best_domain = i;
+ }
+ }
+ if (best_domain >= 0){
+ ap_domain_index = best_domain;
+ return 0;
+ }
+ return -ENODEV;
+}
+
+/**
+ * Find the device type if query queue returned a device type of 0.
+ * @ap_dev: pointer to the AP device.
+ */
+static int ap_probe_device_type(struct ap_device *ap_dev)
+{
+ static unsigned char msg[] = {
+ 0x00,0x06,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x58,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x01,0x00,0x43,0x43,0x41,0x2d,0x41,0x50,
+ 0x50,0x4c,0x20,0x20,0x20,0x01,0x01,0x01,
+ 0x00,0x00,0x00,0x00,0x50,0x4b,0x00,0x00,
+ 0x00,0x00,0x01,0x1c,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x05,0xb8,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x70,0x00,0x41,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x54,0x32,0x01,0x00,0xa0,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0xb8,0x05,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x0a,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x08,0x00,
+ 0x49,0x43,0x53,0x46,0x20,0x20,0x20,0x20,
+ 0x50,0x4b,0x0a,0x00,0x50,0x4b,0x43,0x53,
+ 0x2d,0x31,0x2e,0x32,0x37,0x00,0x11,0x22,
+ 0x33,0x44,0x55,0x66,0x77,0x88,0x99,0x00,
+ 0x11,0x22,0x33,0x44,0x55,0x66,0x77,0x88,
+ 0x99,0x00,0x11,0x22,0x33,0x44,0x55,0x66,
+ 0x77,0x88,0x99,0x00,0x11,0x22,0x33,0x44,
+ 0x55,0x66,0x77,0x88,0x99,0x00,0x11,0x22,
+ 0x33,0x44,0x55,0x66,0x77,0x88,0x99,0x00,
+ 0x11,0x22,0x33,0x5d,0x00,0x5b,0x00,0x77,
+ 0x88,0x1e,0x00,0x00,0x57,0x00,0x00,0x00,
+ 0x00,0x04,0x00,0x00,0x4f,0x00,0x00,0x00,
+ 0x03,0x02,0x00,0x00,0x40,0x01,0x00,0x01,
+ 0xce,0x02,0x68,0x2d,0x5f,0xa9,0xde,0x0c,
+ 0xf6,0xd2,0x7b,0x58,0x4b,0xf9,0x28,0x68,
+ 0x3d,0xb4,0xf4,0xef,0x78,0xd5,0xbe,0x66,
+ 0x63,0x42,0xef,0xf8,0xfd,0xa4,0xf8,0xb0,
+ 0x8e,0x29,0xc2,0xc9,0x2e,0xd8,0x45,0xb8,
+ 0x53,0x8c,0x6f,0x4e,0x72,0x8f,0x6c,0x04,
+ 0x9c,0x88,0xfc,0x1e,0xc5,0x83,0x55,0x57,
+ 0xf7,0xdd,0xfd,0x4f,0x11,0x36,0x95,0x5d,
+ };
+ struct ap_queue_status status;
+ unsigned long long psmid;
+ char *reply;
+ int rc, i;
+
+ reply = (void *) get_zeroed_page(GFP_KERNEL);
+ if (!reply) {
+ rc = -ENOMEM;
+ goto out;
+ }
+
+ status = __ap_send(ap_dev->qid, 0x0102030405060708ULL,
+ msg, sizeof(msg));
+ if (status.response_code != AP_RESPONSE_NORMAL) {
+ rc = -ENODEV;
+ goto out_free;
+ }
+
+ /* Wait for the test message to complete. */
+ for (i = 0; i < 6; i++) {
+ mdelay(300);
+ status = __ap_recv(ap_dev->qid, &psmid, reply, 4096);
+ if (status.response_code == AP_RESPONSE_NORMAL &&
+ psmid == 0x0102030405060708ULL)
+ break;
+ }
+ if (i < 6) {
+ /* Got an answer. */
+ if (reply[0] == 0x00 && reply[1] == 0x86)
+ ap_dev->device_type = AP_DEVICE_TYPE_PCICC;
+ else
+ ap_dev->device_type = AP_DEVICE_TYPE_PCICA;
+ rc = 0;
+ } else
+ rc = -ENODEV;
+
+out_free:
+ free_page((unsigned long) reply);
+out:
+ return rc;
+}
+
+/**
+ * Scan the ap bus for new devices.
+ */
+static int __ap_scan_bus(struct device *dev, void *data)
+{
+ return to_ap_dev(dev)->qid == (ap_qid_t)(unsigned long) data;
+}
+
+static void ap_device_release(struct device *dev)
+{
+ struct ap_device *ap_dev = to_ap_dev(dev);
+
+ kfree(ap_dev);
+}
+
+static void ap_scan_bus(void *data)
+{
+ struct ap_device *ap_dev;
+ struct device *dev;
+ ap_qid_t qid;
+ int queue_depth, device_type;
+ int rc, i;
+
+ if (ap_select_domain() != 0)
+ return;
+ for (i = 0; i < AP_DEVICES; i++) {
+ qid = AP_MKQID(i, ap_domain_index);
+ dev = bus_find_device(&ap_bus_type, NULL,
+ (void *)(unsigned long)qid,
+ __ap_scan_bus);
+ if (dev) {
+ put_device(dev);
+ continue;
+ }
+ rc = ap_query_queue(qid, &queue_depth, &device_type);
+ if (rc)
+ continue;
+ rc = ap_init_queue(qid);
+ if (rc)
+ continue;
+ ap_dev = kzalloc(sizeof(*ap_dev), GFP_KERNEL);
+ if (!ap_dev)
+ break;
+ ap_dev->qid = qid;
+ ap_dev->queue_depth = queue_depth;
+ spin_lock_init(&ap_dev->lock);
+ INIT_LIST_HEAD(&ap_dev->pendingq);
+ INIT_LIST_HEAD(&ap_dev->requestq);
+ if (device_type == 0)
+ ap_probe_device_type(ap_dev);
+ else
+ ap_dev->device_type = device_type;
+
+ ap_dev->device.bus = &ap_bus_type;
+ ap_dev->device.parent = ap_root_device;
+ snprintf(ap_dev->device.bus_id, BUS_ID_SIZE, "card%02x",
+ AP_QID_DEVICE(ap_dev->qid));
+ ap_dev->device.release = ap_device_release;
+ rc = device_register(&ap_dev->device);
+ if (rc) {
+ kfree(ap_dev);
+ continue;
+ }
+ /* Add device attributes. */
+ rc = sysfs_create_group(&ap_dev->device.kobj,
+ &ap_dev_attr_group);
+ if (rc)
+ device_unregister(&ap_dev->device);
+ }
+}
+
+static void
+ap_config_timeout(unsigned long ptr)
+{
+ queue_work(ap_work_queue, &ap_config_work);
+ ap_config_timer.expires = jiffies + ap_config_time * HZ;
+ add_timer(&ap_config_timer);
+}
+
+/**
+ * Set up the timer to run the poll tasklet
+ */
+static inline void ap_schedule_poll_timer(void)
+{
+ if (timer_pending(&ap_poll_timer))
+ return;
+ mod_timer(&ap_poll_timer, jiffies + AP_POLL_TIME);
+}
+
+/**
+ * Receive pending reply messages from an AP device.
+ * @ap_dev: pointer to the AP device
+ * @flags: pointer to control flags, bit 2^0 is set if another poll is
+ * required, bit 2^1 is set if the poll timer needs to get armed
+ * Returns 0 if the device is still present, -ENODEV if not.
+ */
+static inline int ap_poll_read(struct ap_device *ap_dev, unsigned long *flags)
+{
+ struct ap_queue_status status;
+ struct ap_message *ap_msg;
+
+ if (ap_dev->queue_count <= 0)
+ return 0;
+ status = __ap_recv(ap_dev->qid, &ap_dev->reply->psmid,
+ ap_dev->reply->message, ap_dev->reply->length);
+ switch (status.response_code) {
+ case AP_RESPONSE_NORMAL:
+ atomic_dec(&ap_poll_requests);
+ ap_dev->queue_count--;
+ list_for_each_entry(ap_msg, &ap_dev->pendingq, list) {
+ if (ap_msg->psmid != ap_dev->reply->psmid)
+ continue;
+ list_del_init(&ap_msg->list);
+ ap_dev->pendingq_count--;
+ ap_dev->drv->receive(ap_dev, ap_msg, ap_dev->reply);
+ break;
+ }
+ if (ap_dev->queue_count > 0)
+ *flags |= 1;
+ break;
+ case AP_RESPONSE_NO_PENDING_REPLY:
+ if (status.queue_empty) {
+ /* The card shouldn't forget requests but who knows. */
+ ap_dev->queue_count = 0;
+ list_splice_init(&ap_dev->pendingq, &ap_dev->requestq);
+ ap_dev->requestq_count += ap_dev->pendingq_count;
+ ap_dev->pendingq_count = 0;
+ } else
+ *flags |= 2;
+ break;
+ default:
+ return -ENODEV;
+ }
+ return 0;
+}
+
+/**
+ * Send messages from the request queue to an AP device.
+ * @ap_dev: pointer to the AP device
+ * @flags: pointer to control flags, bit 2^0 is set if another poll is
+ * required, bit 2^1 is set if the poll timer needs to get armed
+ * Returns 0 if the device is still present, -ENODEV if not.
+ */
+static inline int ap_poll_write(struct ap_device *ap_dev, unsigned long *flags)
+{
+ struct ap_queue_status status;
+ struct ap_message *ap_msg;
+
+ if (ap_dev->requestq_count <= 0 ||
+ ap_dev->queue_count >= ap_dev->queue_depth)
+ return 0;
+ /* Start the next request on the queue. */
+ ap_msg = list_entry(ap_dev->requestq.next, struct ap_message, list);
+ status = __ap_send(ap_dev->qid, ap_msg->psmid,
+ ap_msg->message, ap_msg->length);
+ switch (status.response_code) {
+ case AP_RESPONSE_NORMAL:
+ atomic_inc(&ap_poll_requests);
+ ap_dev->queue_count++;
+ list_move_tail(&ap_msg->list, &ap_dev->pendingq);
+ ap_dev->requestq_count--;
+ ap_dev->pendingq_count++;
+ if (ap_dev->queue_count < ap_dev->queue_depth &&
+ ap_dev->requestq_count > 0)
+ *flags |= 1;
+ *flags |= 2;
+ break;
+ case AP_RESPONSE_Q_FULL:
+ *flags |= 2;
+ break;
+ case AP_RESPONSE_MESSAGE_TOO_BIG:
+ return -EINVAL;
+ default:
+ return -ENODEV;
+ }
+ return 0;
+}
+
+/**
+ * Poll AP device for pending replies and send new messages. If either
+ * ap_poll_read or ap_poll_write returns -ENODEV unregister the device.
+ * @ap_dev: pointer to the bus device
+ * @flags: pointer to control flags, bit 2^0 is set if another poll is
+ * required, bit 2^1 is set if the poll timer needs to get armed
+ * Returns 0.
+ */
+static inline int ap_poll_queue(struct ap_device *ap_dev, unsigned long *flags)
+{
+ int rc;
+
+ rc = ap_poll_read(ap_dev, flags);
+ if (rc)
+ return rc;
+ return ap_poll_write(ap_dev, flags);
+}
+
+/**
+ * Queue a message to a device.
+ * @ap_dev: pointer to the AP device
+ * @ap_msg: the message to be queued
+ */
+static int __ap_queue_message(struct ap_device *ap_dev, struct ap_message *ap_msg)
+{
+ struct ap_queue_status status;
+
+ if (list_empty(&ap_dev->requestq) &&
+ ap_dev->queue_count < ap_dev->queue_depth) {
+ status = __ap_send(ap_dev->qid, ap_msg->psmid,
+ ap_msg->message, ap_msg->length);
+ switch (status.response_code) {
+ case AP_RESPONSE_NORMAL:
+ list_add_tail(&ap_msg->list, &ap_dev->pendingq);
+ atomic_inc(&ap_poll_requests);
+ ap_dev->pendingq_count++;
+ ap_dev->queue_count++;
+ ap_dev->total_request_count++;
+ break;
+ case AP_RESPONSE_Q_FULL:
+ list_add_tail(&ap_msg->list, &ap_dev->requestq);
+ ap_dev->requestq_count++;
+ ap_dev->total_request_count++;
+ return -EBUSY;
+ case AP_RESPONSE_MESSAGE_TOO_BIG:
+ ap_dev->drv->receive(ap_dev, ap_msg, ERR_PTR(-EINVAL));
+ return -EINVAL;
+ default: /* Device is gone. */
+ ap_dev->drv->receive(ap_dev, ap_msg, ERR_PTR(-ENODEV));
+ return -ENODEV;
+ }
+ } else {
+ list_add_tail(&ap_msg->list, &ap_dev->requestq);
+ ap_dev->requestq_count++;
+ ap_dev->total_request_count++;
+ return -EBUSY;
+ }
+ ap_schedule_poll_timer();
+ return 0;
+}
+
+void ap_queue_message(struct ap_device *ap_dev, struct ap_message *ap_msg)
+{
+ unsigned long flags;
+ int rc;
+
+ spin_lock_bh(&ap_dev->lock);
+ if (!ap_dev->unregistered) {
+ /* Make room on the queue by polling for finished requests. */
+ rc = ap_poll_queue(ap_dev, &flags);
+ if (!rc)
+ rc = __ap_queue_message(ap_dev, ap_msg);
+ if (!rc)
+ wake_up(&ap_poll_wait);
+ } else {
+ ap_dev->drv->receive(ap_dev, ap_msg, ERR_PTR(-ENODEV));
+ rc = 0;
+ }
+ spin_unlock_bh(&ap_dev->lock);
+ if (rc == -ENODEV)
+ device_unregister(&ap_dev->device);
+}
+EXPORT_SYMBOL(ap_queue_message);
+
+/**
+ * Cancel a crypto request. This is done by removing the request
+ * from the devive pendingq or requestq queue. Note that the
+ * request stays on the AP queue. When it finishes the message
+ * reply will be discarded because the psmid can't be found.
+ * @ap_dev: AP device that has the message queued
+ * @ap_msg: the message that is to be removed
+ */
+void ap_cancel_message(struct ap_device *ap_dev, struct ap_message *ap_msg)
+{
+ struct ap_message *tmp;
+
+ spin_lock_bh(&ap_dev->lock);
+ if (!list_empty(&ap_msg->list)) {
+ list_for_each_entry(tmp, &ap_dev->pendingq, list)
+ if (tmp->psmid == ap_msg->psmid) {
+ ap_dev->pendingq_count--;
+ goto found;
+ }
+ ap_dev->requestq_count--;
+ found:
+ list_del_init(&ap_msg->list);
+ }
+ spin_unlock_bh(&ap_dev->lock);
+}
+EXPORT_SYMBOL(ap_cancel_message);
+
+/**
+ * AP receive polling for finished AP requests
+ */
+static void ap_poll_timeout(unsigned long unused)
+{
+ tasklet_schedule(&ap_tasklet);
+}
+
+/**
+ * Poll all AP devices on the bus in a round robin fashion. Continue
+ * polling until bit 2^0 of the control flags is not set. If bit 2^1
+ * of the control flags has been set arm the poll timer.
+ */
+static int __ap_poll_all(struct device *dev, void *data)
+{
+ struct ap_device *ap_dev = to_ap_dev(dev);
+ int rc;
+
+ spin_lock(&ap_dev->lock);
+ if (!ap_dev->unregistered) {
+ rc = ap_poll_queue(to_ap_dev(dev), (unsigned long *) data);
+ } else
+ rc = 0;
+ spin_unlock(&ap_dev->lock);
+ if (rc)
+ device_unregister(&ap_dev->device);
+ return 0;
+}
+
+static void ap_poll_all(unsigned long dummy)
+{
+ unsigned long flags;
+
+ do {
+ flags = 0;
+ bus_for_each_dev(&ap_bus_type, NULL, &flags, __ap_poll_all);
+ } while (flags & 1);
+ if (flags & 2)
+ ap_schedule_poll_timer();
+}
+
+/**
+ * AP bus poll thread. The purpose of this thread is to poll for
+ * finished requests in a loop if there is a "free" cpu - that is
+ * a cpu that doesn't have anything better to do. The polling stops
+ * as soon as there is another task or if all messages have been
+ * delivered.
+ */
+static int ap_poll_thread(void *data)
+{
+ DECLARE_WAITQUEUE(wait, current);
+ unsigned long flags;
+ int requests;
+
+ set_user_nice(current, -20);
+ while (1) {
+ if (need_resched()) {
+ schedule();
+ continue;
+ }
+ add_wait_queue(&ap_poll_wait, &wait);
+ set_current_state(TASK_INTERRUPTIBLE);
+ if (kthread_should_stop())
+ break;
+ requests = atomic_read(&ap_poll_requests);
+ if (requests <= 0)
+ schedule();
+ set_current_state(TASK_RUNNING);
+ remove_wait_queue(&ap_poll_wait, &wait);
+
+ local_bh_disable();
+ flags = 0;
+ bus_for_each_dev(&ap_bus_type, NULL, &flags, __ap_poll_all);
+ local_bh_enable();
+ }
+ set_current_state(TASK_RUNNING);
+ remove_wait_queue(&ap_poll_wait, &wait);
+ return 0;
+}
+
+static int ap_poll_thread_start(void)
+{
+ int rc;
+
+ mutex_lock(&ap_poll_thread_mutex);
+ if (!ap_poll_kthread) {
+ ap_poll_kthread = kthread_run(ap_poll_thread, NULL, "appoll");
+ rc = IS_ERR(ap_poll_kthread) ? PTR_ERR(ap_poll_kthread) : 0;
+ if (rc)
+ ap_poll_kthread = NULL;
+ }
+ else
+ rc = 0;
+ mutex_unlock(&ap_poll_thread_mutex);
+ return rc;
+}
+
+static void ap_poll_thread_stop(void)
+{
+ mutex_lock(&ap_poll_thread_mutex);
+ if (ap_poll_kthread) {
+ kthread_stop(ap_poll_kthread);
+ ap_poll_kthread = NULL;
+ }
+ mutex_unlock(&ap_poll_thread_mutex);
+}
+
+/**
+ * The module initialization code.
+ */
+int __init ap_module_init(void)
+{
+ int rc, i;
+
+ if (ap_domain_index < -1 || ap_domain_index >= AP_DOMAINS) {
+ printk(KERN_WARNING "Invalid param: domain = %d. "
+ " Not loading.\n", ap_domain_index);
+ return -EINVAL;
+ }
+ if (ap_instructions_available() != 0) {
+ printk(KERN_WARNING "AP instructions not installed.\n");
+ return -ENODEV;
+ }
+
+ /* Create /sys/bus/ap. */
+ rc = bus_register(&ap_bus_type);
+ if (rc)
+ goto out;
+ for (i = 0; ap_bus_attrs[i]; i++) {
+ rc = bus_create_file(&ap_bus_type, ap_bus_attrs[i]);
+ if (rc)
+ goto out_bus;
+ }
+
+ /* Create /sys/devices/ap. */
+ ap_root_device = s390_root_dev_register("ap");
+ rc = IS_ERR(ap_root_device) ? PTR_ERR(ap_root_device) : 0;
+ if (rc)
+ goto out_bus;
+
+ ap_work_queue = create_singlethread_workqueue("kapwork");
+ if (!ap_work_queue) {
+ rc = -ENOMEM;
+ goto out_root;
+ }
+
+ if (ap_select_domain() == 0)
+ ap_scan_bus(NULL);
+
+ /* Setup the ap bus rescan timer. */
+ init_timer(&ap_config_timer);
+ ap_config_timer.function = ap_config_timeout;
+ ap_config_timer.data = 0;
+ ap_config_timer.expires = jiffies + ap_config_time * HZ;
+ add_timer(&ap_config_timer);
+
+ /* Start the low priority AP bus poll thread. */
+ if (ap_thread_flag) {
+ rc = ap_poll_thread_start();
+ if (rc)
+ goto out_work;
+ }
+
+ return 0;
+
+out_work:
+ del_timer_sync(&ap_config_timer);
+ del_timer_sync(&ap_poll_timer);
+ destroy_workqueue(ap_work_queue);
+out_root:
+ s390_root_dev_unregister(ap_root_device);
+out_bus:
+ while (i--)
+ bus_remove_file(&ap_bus_type, ap_bus_attrs[i]);
+ bus_unregister(&ap_bus_type);
+out:
+ return rc;
+}
+
+static int __ap_match_all(struct device *dev, void *data)
+{
+ return 1;
+}
+
+/**
+ * The module termination code
+ */
+void ap_module_exit(void)
+{
+ int i;
+ struct device *dev;
+
+ ap_poll_thread_stop();
+ del_timer_sync(&ap_config_timer);
+ del_timer_sync(&ap_poll_timer);
+ destroy_workqueue(ap_work_queue);
+ s390_root_dev_unregister(ap_root_device);
+ while ((dev = bus_find_device(&ap_bus_type, NULL, NULL,
+ __ap_match_all)))
+ {
+ device_unregister(dev);
+ put_device(dev);
+ }
+ for (i = 0; ap_bus_attrs[i]; i++)
+ bus_remove_file(&ap_bus_type, ap_bus_attrs[i]);
+ bus_unregister(&ap_bus_type);
+}
+
+#ifndef CONFIG_ZCRYPT_MONOLITHIC
+module_init(ap_module_init);
+module_exit(ap_module_exit);
+#endif
diff --git a/drivers/s390/crypto/ap_bus.h b/drivers/s390/crypto/ap_bus.h
new file mode 100644
index 00000000000..83b69c01cd6
--- /dev/null
+++ b/drivers/s390/crypto/ap_bus.h
@@ -0,0 +1,158 @@
+/*
+ * linux/drivers/s390/crypto/ap_bus.h
+ *
+ * Copyright (C) 2006 IBM Corporation
+ * Author(s): Cornelia Huck <cornelia.huck@de.ibm.com>
+ * Martin Schwidefsky <schwidefsky@de.ibm.com>
+ * Ralph Wuerthner <rwuerthn@de.ibm.com>
+ *
+ * Adjunct processor bus header file.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#ifndef _AP_BUS_H_
+#define _AP_BUS_H_
+
+#include <linux/device.h>
+#include <linux/mod_devicetable.h>
+#include <linux/types.h>
+
+#define AP_DEVICES 64 /* Number of AP devices. */
+#define AP_DOMAINS 16 /* Number of AP domains. */
+#define AP_MAX_RESET 90 /* Maximum number of resets. */
+#define AP_CONFIG_TIME 30 /* Time in seconds between AP bus rescans. */
+#define AP_POLL_TIME 1 /* Time in ticks between receive polls. */
+
+extern int ap_domain_index;
+
+/**
+ * The ap_qid_t identifier of an ap queue. It contains a
+ * 6 bit device index and a 4 bit queue index (domain).
+ */
+typedef unsigned int ap_qid_t;
+
+#define AP_MKQID(_device,_queue) (((_device) & 63) << 8 | ((_queue) & 15))
+#define AP_QID_DEVICE(_qid) (((_qid) >> 8) & 63)
+#define AP_QID_QUEUE(_qid) ((_qid) & 15)
+
+/**
+ * The ap queue status word is returned by all three AP functions
+ * (PQAP, NQAP and DQAP). There's a set of flags in the first
+ * byte, followed by a 1 byte response code.
+ */
+struct ap_queue_status {
+ unsigned int queue_empty : 1;
+ unsigned int replies_waiting : 1;
+ unsigned int queue_full : 1;
+ unsigned int pad1 : 5;
+ unsigned int response_code : 8;
+ unsigned int pad2 : 16;
+};
+
+#define AP_RESPONSE_NORMAL 0x00
+#define AP_RESPONSE_Q_NOT_AVAIL 0x01
+#define AP_RESPONSE_RESET_IN_PROGRESS 0x02
+#define AP_RESPONSE_DECONFIGURED 0x03
+#define AP_RESPONSE_CHECKSTOPPED 0x04
+#define AP_RESPONSE_BUSY 0x05
+#define AP_RESPONSE_Q_FULL 0x10
+#define AP_RESPONSE_NO_PENDING_REPLY 0x10
+#define AP_RESPONSE_INDEX_TOO_BIG 0x11
+#define AP_RESPONSE_NO_FIRST_PART 0x13
+#define AP_RESPONSE_MESSAGE_TOO_BIG 0x15
+
+/**
+ * Known device types
+ */
+#define AP_DEVICE_TYPE_PCICC 3
+#define AP_DEVICE_TYPE_PCICA 4
+#define AP_DEVICE_TYPE_PCIXCC 5
+#define AP_DEVICE_TYPE_CEX2A 6
+#define AP_DEVICE_TYPE_CEX2C 7
+
+struct ap_device;
+struct ap_message;
+
+struct ap_driver {
+ struct device_driver driver;
+ struct ap_device_id *ids;
+
+ int (*probe)(struct ap_device *);
+ void (*remove)(struct ap_device *);
+ /* receive is called from tasklet context */
+ void (*receive)(struct ap_device *, struct ap_message *,
+ struct ap_message *);
+};
+
+#define to_ap_drv(x) container_of((x), struct ap_driver, driver)
+
+int ap_driver_register(struct ap_driver *, struct module *, char *);
+void ap_driver_unregister(struct ap_driver *);
+
+struct ap_device {
+ struct device device;
+ struct ap_driver *drv; /* Pointer to AP device driver. */
+ spinlock_t lock; /* Per device lock. */
+
+ ap_qid_t qid; /* AP queue id. */
+ int queue_depth; /* AP queue depth.*/
+ int device_type; /* AP device type. */
+ int unregistered; /* marks AP device as unregistered */
+
+ int queue_count; /* # messages currently on AP queue. */
+
+ struct list_head pendingq; /* List of message sent to AP queue. */
+ int pendingq_count; /* # requests on pendingq list. */
+ struct list_head requestq; /* List of message yet to be sent. */
+ int requestq_count; /* # requests on requestq list. */
+ int total_request_count; /* # requests ever for this AP device. */
+
+ struct ap_message *reply; /* Per device reply message. */
+
+ void *private; /* ap driver private pointer. */
+};
+
+#define to_ap_dev(x) container_of((x), struct ap_device, device)
+
+struct ap_message {
+ struct list_head list; /* Request queueing. */
+ unsigned long long psmid; /* Message id. */
+ void *message; /* Pointer to message buffer. */
+ size_t length; /* Message length. */
+
+ void *private; /* ap driver private pointer. */
+};
+
+#define AP_DEVICE(dt) \
+ .dev_type=(dt), \
+ .match_flags=AP_DEVICE_ID_MATCH_DEVICE_TYPE,
+
+/**
+ * Note: don't use ap_send/ap_recv after using ap_queue_message
+ * for the first time. Otherwise the ap message queue will get
+ * confused.
+ */
+int ap_send(ap_qid_t, unsigned long long, void *, size_t);
+int ap_recv(ap_qid_t, unsigned long long *, void *, size_t);
+
+void ap_queue_message(struct ap_device *ap_dev, struct ap_message *ap_msg);
+void ap_cancel_message(struct ap_device *ap_dev, struct ap_message *ap_msg);
+void ap_flush_queue(struct ap_device *ap_dev);
+
+int ap_module_init(void);
+void ap_module_exit(void);
+
+#endif /* _AP_BUS_H_ */
diff --git a/drivers/s390/crypto/z90common.h b/drivers/s390/crypto/z90common.h
deleted file mode 100644
index dbbcda3c846..00000000000
--- a/drivers/s390/crypto/z90common.h
+++ /dev/null
@@ -1,166 +0,0 @@
-/*
- * linux/drivers/s390/crypto/z90common.h
- *
- * z90crypt 1.3.3
- *
- * Copyright (C) 2001, 2005 IBM Corporation
- * Author(s): Robert Burroughs (burrough@us.ibm.com)
- * Eric Rossman (edrossma@us.ibm.com)
- *
- * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License as published by
- * the Free Software Foundation; either version 2, or (at your option)
- * any later version.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program; if not, write to the Free Software
- * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
- */
-
-#ifndef _Z90COMMON_H_
-#define _Z90COMMON_H_
-
-
-#define RESPBUFFSIZE 256
-#define PCI_FUNC_KEY_DECRYPT 0x5044
-#define PCI_FUNC_KEY_ENCRYPT 0x504B
-extern int ext_bitlens;
-
-enum devstat {
- DEV_GONE,
- DEV_ONLINE,
- DEV_QUEUE_FULL,
- DEV_EMPTY,
- DEV_NO_WORK,
- DEV_BAD_MESSAGE,
- DEV_TSQ_EXCEPTION,
- DEV_RSQ_EXCEPTION,
- DEV_SEN_EXCEPTION,
- DEV_REC_EXCEPTION
-};
-
-enum hdstat {
- HD_NOT_THERE,
- HD_BUSY,
- HD_DECONFIGURED,
- HD_CHECKSTOPPED,
- HD_ONLINE,
- HD_TSQ_EXCEPTION
-};
-
-#define Z90C_NO_DEVICES 1
-#define Z90C_AMBIGUOUS_DOMAIN 2
-#define Z90C_INCORRECT_DOMAIN 3
-#define ENOTINIT 4
-
-#define SEN_BUSY 7
-#define SEN_USER_ERROR 8
-#define SEN_QUEUE_FULL 11
-#define SEN_NOT_AVAIL 16
-#define SEN_PAD_ERROR 17
-#define SEN_RETRY 18
-#define SEN_RELEASED 24
-
-#define REC_EMPTY 4
-#define REC_BUSY 6
-#define REC_OPERAND_INV 8
-#define REC_OPERAND_SIZE 9
-#define REC_EVEN_MOD 10
-#define REC_NO_WORK 11
-#define REC_HARDWAR_ERR 12
-#define REC_NO_RESPONSE 13
-#define REC_RETRY_DEV 14
-#define REC_USER_GONE 15
-#define REC_BAD_MESSAGE 16
-#define REC_INVALID_PAD 17
-#define REC_USE_PCICA 18
-
-#define WRONG_DEVICE_TYPE 20
-
-#define REC_FATAL_ERROR 32
-#define SEN_FATAL_ERROR 33
-#define TSQ_FATAL_ERROR 34
-#define RSQ_FATAL_ERROR 35
-
-#define Z90CRYPT_NUM_TYPES 6
-#define PCICA 0
-#define PCICC 1
-#define PCIXCC_MCL2 2
-#define PCIXCC_MCL3 3
-#define CEX2C 4
-#define CEX2A 5
-#define NILDEV -1
-#define ANYDEV -1
-#define PCIXCC_UNK -2
-
-enum hdevice_type {
- PCICC_HW = 3,
- PCICA_HW = 4,
- PCIXCC_HW = 5,
- CEX2A_HW = 6,
- CEX2C_HW = 7
-};
-
-struct CPRBX {
- unsigned short cprb_len;
- unsigned char cprb_ver_id;
- unsigned char pad_000[3];
- unsigned char func_id[2];
- unsigned char cprb_flags[4];
- unsigned int req_parml;
- unsigned int req_datal;
- unsigned int rpl_msgbl;
- unsigned int rpld_parml;
- unsigned int rpl_datal;
- unsigned int rpld_datal;
- unsigned int req_extbl;
- unsigned char pad_001[4];
- unsigned int rpld_extbl;
- unsigned char req_parmb[16];
- unsigned char req_datab[16];
- unsigned char rpl_parmb[16];
- unsigned char rpl_datab[16];
- unsigned char req_extb[16];
- unsigned char rpl_extb[16];
- unsigned short ccp_rtcode;
- unsigned short ccp_rscode;
- unsigned int mac_data_len;
- unsigned char logon_id[8];
- unsigned char mac_value[8];
- unsigned char mac_content_flgs;
- unsigned char pad_002;
- unsigned short domain;
- unsigned char pad_003[12];
- unsigned char pad_004[36];
-};
-
-#ifndef DEV_NAME
-#define DEV_NAME "z90crypt"
-#endif
-#define PRINTK(fmt, args...) \
- printk(KERN_DEBUG DEV_NAME ": %s -> " fmt, __FUNCTION__ , ## args)
-#define PRINTKN(fmt, args...) \
- printk(KERN_DEBUG DEV_NAME ": " fmt, ## args)
-#define PRINTKW(fmt, args...) \
- printk(KERN_WARNING DEV_NAME ": %s -> " fmt, __FUNCTION__ , ## args)
-#define PRINTKC(fmt, args...) \
- printk(KERN_CRIT DEV_NAME ": %s -> " fmt, __FUNCTION__ , ## args)
-
-#ifdef Z90CRYPT_DEBUG
-#define PDEBUG(fmt, args...) \
- printk(KERN_DEBUG DEV_NAME ": %s -> " fmt, __FUNCTION__ , ## args)
-#else
-#define PDEBUG(fmt, args...) do {} while (0)
-#endif
-
-#define UMIN(a,b) ((a) < (b) ? (a) : (b))
-#define IS_EVEN(x) ((x) == (2 * ((x) / 2)))
-
-#endif
diff --git a/drivers/s390/crypto/z90crypt.h b/drivers/s390/crypto/z90crypt.h
deleted file mode 100644
index 0ca1d126ccb..00000000000
--- a/drivers/s390/crypto/z90crypt.h
+++ /dev/null
@@ -1,71 +0,0 @@
-/*
- * linux/drivers/s390/crypto/z90crypt.h
- *
- * z90crypt 1.3.3 (kernel-private header)
- *
- * Copyright (C) 2001, 2005 IBM Corporation
- * Author(s): Robert Burroughs (burrough@us.ibm.com)
- * Eric Rossman (edrossma@us.ibm.com)
- *
- * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License as published by
- * the Free Software Foundation; either version 2, or (at your option)
- * any later version.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program; if not, write to the Free Software
- * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
- */
-
-#ifndef _Z90CRYPT_H_
-#define _Z90CRYPT_H_
-
-#include <asm/z90crypt.h>
-
-/**
- * local errno definitions
- */
-#define ENOBUFF 129 // filp->private_data->...>work_elem_p->buffer is NULL
-#define EWORKPEND 130 // user issues ioctl while another pending
-#define ERELEASED 131 // user released while ioctl pending
-#define EQUIESCE 132 // z90crypt quiescing (no more work allowed)
-#define ETIMEOUT 133 // request timed out
-#define EUNKNOWN 134 // some unrecognized error occured (retry may succeed)
-#define EGETBUFF 135 // Error getting buffer or hardware lacks capability
- // (retry in software)
-
-/**
- * DEPRECATED STRUCTURES
- */
-
-/**
- * This structure is DEPRECATED and the corresponding ioctl() has been
- * replaced with individual ioctl()s for each piece of data!
- * This structure will NOT survive past version 1.3.1, so switch to the
- * new ioctl()s.
- */
-#define MASK_LENGTH 64 // mask length
-struct ica_z90_status {
- int totalcount;
- int leedslitecount; // PCICA
- int leeds2count; // PCICC
- // int PCIXCCCount; is not in struct for backward compatibility
- int requestqWaitCount;
- int pendingqWaitCount;
- int totalOpenCount;
- int cryptoDomain;
- // status: 0=not there, 1=PCICA, 2=PCICC, 3=PCIXCC_MCL2, 4=PCIXCC_MCL3,
- // 5=CEX2C
- unsigned char status[MASK_LENGTH];
- // qdepth: # work elements waiting for each device
- unsigned char qdepth[MASK_LENGTH];
-};
-
-#endif /* _Z90CRYPT_H_ */
diff --git a/drivers/s390/crypto/z90hardware.c b/drivers/s390/crypto/z90hardware.c
deleted file mode 100644
index be60795f4a7..00000000000
--- a/drivers/s390/crypto/z90hardware.c
+++ /dev/null
@@ -1,2531 +0,0 @@
-/*
- * linux/drivers/s390/crypto/z90hardware.c
- *
- * z90crypt 1.3.3
- *
- * Copyright (C) 2001, 2005 IBM Corporation
- * Author(s): Robert Burroughs (burrough@us.ibm.com)
- * Eric Rossman (edrossma@us.ibm.com)
- *
- * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License as published by
- * the Free Software Foundation; either version 2, or (at your option)
- * any later version.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program; if not, write to the Free Software
- * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
- */
-
-#include <asm/uaccess.h>
-#include <linux/compiler.h>
-#include <linux/delay.h>
-#include <linux/init.h>
-#include <linux/module.h>
-#include "z90crypt.h"
-#include "z90common.h"
-
-struct cca_token_hdr {
- unsigned char token_identifier;
- unsigned char version;
- unsigned short token_length;
- unsigned char reserved[4];
-};
-
-#define CCA_TKN_HDR_ID_EXT 0x1E
-
-struct cca_private_ext_ME_sec {
- unsigned char section_identifier;
- unsigned char version;
- unsigned short section_length;
- unsigned char private_key_hash[20];
- unsigned char reserved1[4];
- unsigned char key_format;
- unsigned char reserved2;
- unsigned char key_name_hash[20];
- unsigned char key_use_flags[4];
- unsigned char reserved3[6];
- unsigned char reserved4[24];
- unsigned char confounder[24];
- unsigned char exponent[128];
- unsigned char modulus[128];
-};
-
-#define CCA_PVT_USAGE_ALL 0x80
-
-struct cca_public_sec {
- unsigned char section_identifier;
- unsigned char version;
- unsigned short section_length;
- unsigned char reserved[2];
- unsigned short exponent_len;
- unsigned short modulus_bit_len;
- unsigned short modulus_byte_len;
- unsigned char exponent[3];
-};
-
-struct cca_private_ext_ME {
- struct cca_token_hdr pvtMEHdr;
- struct cca_private_ext_ME_sec pvtMESec;
- struct cca_public_sec pubMESec;
-};
-
-struct cca_public_key {
- struct cca_token_hdr pubHdr;
- struct cca_public_sec pubSec;
-};
-
-struct cca_pvt_ext_CRT_sec {
- unsigned char section_identifier;
- unsigned char version;
- unsigned short section_length;
- unsigned char private_key_hash[20];
- unsigned char reserved1[4];
- unsigned char key_format;
- unsigned char reserved2;
- unsigned char key_name_hash[20];
- unsigned char key_use_flags[4];
- unsigned short p_len;
- unsigned short q_len;
- unsigned short dp_len;
- unsigned short dq_len;
- unsigned short u_len;
- unsigned short mod_len;
- unsigned char reserved3[4];
- unsigned short pad_len;
- unsigned char reserved4[52];
- unsigned char confounder[8];
-};
-
-#define CCA_PVT_EXT_CRT_SEC_ID_PVT 0x08
-#define CCA_PVT_EXT_CRT_SEC_FMT_CL 0x40
-
-struct cca_private_ext_CRT {
- struct cca_token_hdr pvtCrtHdr;
- struct cca_pvt_ext_CRT_sec pvtCrtSec;
- struct cca_public_sec pubCrtSec;
-};
-
-struct ap_status_word {
- unsigned char q_stat_flags;
- unsigned char response_code;
- unsigned char reserved[2];
-};
-
-#define AP_Q_STATUS_EMPTY 0x80
-#define AP_Q_STATUS_REPLIES_WAITING 0x40
-#define AP_Q_STATUS_ARRAY_FULL 0x20
-
-#define AP_RESPONSE_NORMAL 0x00
-#define AP_RESPONSE_Q_NOT_AVAIL 0x01
-#define AP_RESPONSE_RESET_IN_PROGRESS 0x02
-#define AP_RESPONSE_DECONFIGURED 0x03
-#define AP_RESPONSE_CHECKSTOPPED 0x04
-#define AP_RESPONSE_BUSY 0x05
-#define AP_RESPONSE_Q_FULL 0x10
-#define AP_RESPONSE_NO_PENDING_REPLY 0x10
-#define AP_RESPONSE_INDEX_TOO_BIG 0x11
-#define AP_RESPONSE_NO_FIRST_PART 0x13
-#define AP_RESPONSE_MESSAGE_TOO_BIG 0x15
-
-#define AP_MAX_CDX_BITL 4
-#define AP_RQID_RESERVED_BITL 4
-#define SKIP_BITL (AP_MAX_CDX_BITL + AP_RQID_RESERVED_BITL)
-
-struct type4_hdr {
- unsigned char reserved1;
- unsigned char msg_type_code;
- unsigned short msg_len;
- unsigned char request_code;
- unsigned char msg_fmt;
- unsigned short reserved2;
-};
-
-#define TYPE4_TYPE_CODE 0x04
-#define TYPE4_REQU_CODE 0x40
-
-#define TYPE4_SME_LEN 0x0188
-#define TYPE4_LME_LEN 0x0308
-#define TYPE4_SCR_LEN 0x01E0
-#define TYPE4_LCR_LEN 0x03A0
-
-#define TYPE4_SME_FMT 0x00
-#define TYPE4_LME_FMT 0x10
-#define TYPE4_SCR_FMT 0x40
-#define TYPE4_LCR_FMT 0x50
-
-struct type4_sme {
- struct type4_hdr header;
- unsigned char message[128];
- unsigned char exponent[128];
- unsigned char modulus[128];
-};
-
-struct type4_lme {
- struct type4_hdr header;
- unsigned char message[256];
- unsigned char exponent[256];
- unsigned char modulus[256];
-};
-
-struct type4_scr {
- struct type4_hdr header;
- unsigned char message[128];
- unsigned char dp[72];
- unsigned char dq[64];
- unsigned char p[72];
- unsigned char q[64];
- unsigned char u[72];
-};
-
-struct type4_lcr {
- struct type4_hdr header;
- unsigned char message[256];
- unsigned char dp[136];
- unsigned char dq[128];
- unsigned char p[136];
- unsigned char q[128];
- unsigned char u[136];
-};
-
-union type4_msg {
- struct type4_sme sme;
- struct type4_lme lme;
- struct type4_scr scr;
- struct type4_lcr lcr;
-};
-
-struct type84_hdr {
- unsigned char reserved1;
- unsigned char code;
- unsigned short len;
- unsigned char reserved2[4];
-};
-
-#define TYPE84_RSP_CODE 0x84
-
-struct type6_hdr {
- unsigned char reserved1;
- unsigned char type;
- unsigned char reserved2[2];
- unsigned char right[4];
- unsigned char reserved3[2];
- unsigned char reserved4[2];
- unsigned char apfs[4];
- unsigned int offset1;
- unsigned int offset2;
- unsigned int offset3;
- unsigned int offset4;
- unsigned char agent_id[16];
- unsigned char rqid[2];
- unsigned char reserved5[2];
- unsigned char function_code[2];
- unsigned char reserved6[2];
- unsigned int ToCardLen1;
- unsigned int ToCardLen2;
- unsigned int ToCardLen3;
- unsigned int ToCardLen4;
- unsigned int FromCardLen1;
- unsigned int FromCardLen2;
- unsigned int FromCardLen3;
- unsigned int FromCardLen4;
-};
-
-struct CPRB {
- unsigned char cprb_len[2];
- unsigned char cprb_ver_id;
- unsigned char pad_000;
- unsigned char srpi_rtcode[4];
- unsigned char srpi_verb;
- unsigned char flags;
- unsigned char func_id[2];
- unsigned char checkpoint_flag;
- unsigned char resv2;
- unsigned char req_parml[2];
- unsigned char req_parmp[4];
- unsigned char req_datal[4];
- unsigned char req_datap[4];
- unsigned char rpl_parml[2];
- unsigned char pad_001[2];
- unsigned char rpl_parmp[4];
- unsigned char rpl_datal[4];
- unsigned char rpl_datap[4];
- unsigned char ccp_rscode[2];
- unsigned char ccp_rtcode[2];
- unsigned char repd_parml[2];
- unsigned char mac_data_len[2];
- unsigned char repd_datal[4];
- unsigned char req_pc[2];
- unsigned char res_origin[8];
- unsigned char mac_value[8];
- unsigned char logon_id[8];
- unsigned char usage_domain[2];
- unsigned char resv3[18];
- unsigned char svr_namel[2];
- unsigned char svr_name[8];
-};
-
-struct type6_msg {
- struct type6_hdr header;
- struct CPRB CPRB;
-};
-
-struct type86_hdr {
- unsigned char reserved1;
- unsigned char type;
- unsigned char format;
- unsigned char reserved2;
- unsigned char reply_code;
- unsigned char reserved3[3];
-};
-
-#define TYPE86_RSP_CODE 0x86
-#define TYPE86_FMT2 0x02
-
-struct type86_fmt2_msg {
- struct type86_hdr header;
- unsigned char reserved[4];
- unsigned char apfs[4];
- unsigned int count1;
- unsigned int offset1;
- unsigned int count2;
- unsigned int offset2;
- unsigned int count3;
- unsigned int offset3;
- unsigned int count4;
- unsigned int offset4;
-};
-
-static struct type6_hdr static_type6_hdr = {
- 0x00,
- 0x06,
- {0x00,0x00},
- {0x00,0x00,0x00,0x00},
- {0x00,0x00},
- {0x00,0x00},
- {0x00,0x00,0x00,0x00},
- 0x00000058,
- 0x00000000,
- 0x00000000,
- 0x00000000,
- {0x01,0x00,0x43,0x43,0x41,0x2D,0x41,0x50,
- 0x50,0x4C,0x20,0x20,0x20,0x01,0x01,0x01},
- {0x00,0x00},
- {0x00,0x00},
- {0x50,0x44},
- {0x00,0x00},
- 0x00000000,
- 0x00000000,
- 0x00000000,
- 0x00000000,
- 0x00000000,
- 0x00000000,
- 0x00000000,
- 0x00000000
-};
-
-static struct type6_hdr static_type6_hdrX = {
- 0x00,
- 0x06,
- {0x00,0x00},
- {0x00,0x00,0x00,0x00},
- {0x00,0x00},
- {0x00,0x00},
- {0x00,0x00,0x00,0x00},
- 0x00000058,
- 0x00000000,
- 0x00000000,
- 0x00000000,
- {0x43,0x41,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00},
- {0x00,0x00},
- {0x50,0x44},
- {0x00,0x00},
- 0x00000000,
- 0x00000000,
- 0x00000000,
- 0x00000000,
- 0x00000000,
- 0x00000000,
- 0x00000000,
- 0x00000000
-};
-
-static struct CPRB static_cprb = {
- {0x70,0x00},
- 0x41,
- 0x00,
- {0x00,0x00,0x00,0x00},
- 0x00,
- 0x00,
- {0x54,0x32},
- 0x01,
- 0x00,
- {0x00,0x00},
- {0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00},
- {0x00,0x00},
- {0x00,0x00},
- {0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00},
- {0x00,0x00},
- {0x00,0x00},
- {0x00,0x00},
- {0x00,0x00},
- {0x00,0x00,0x00,0x00},
- {0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00},
- {0x08,0x00},
- {0x49,0x43,0x53,0x46,0x20,0x20,0x20,0x20}
-};
-
-struct function_and_rules_block {
- unsigned char function_code[2];
- unsigned char ulen[2];
- unsigned char only_rule[8];
-};
-
-static struct function_and_rules_block static_pkd_function_and_rules = {
- {0x50,0x44},
- {0x0A,0x00},
- {'P','K','C','S','-','1','.','2'}
-};
-
-static struct function_and_rules_block static_pke_function_and_rules = {
- {0x50,0x4B},
- {0x0A,0x00},
- {'P','K','C','S','-','1','.','2'}
-};
-
-struct T6_keyBlock_hdr {
- unsigned char blen[2];
- unsigned char ulen[2];
- unsigned char flags[2];
-};
-
-static struct T6_keyBlock_hdr static_T6_keyBlock_hdr = {
- {0x89,0x01},
- {0x87,0x01},
- {0x00}
-};
-
-static struct CPRBX static_cprbx = {
- 0x00DC,
- 0x02,
- {0x00,0x00,0x00},
- {0x54,0x32},
- {0x00,0x00,0x00,0x00},
- 0x00000000,
- 0x00000000,
- 0x00000000,
- 0x00000000,
- 0x00000000,
- 0x00000000,
- 0x00000000,
- {0x00,0x00,0x00,0x00},
- 0x00000000,
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- 0x0000,
- 0x0000,
- 0x00000000,
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- 0x00,
- 0x00,
- 0x0000,
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00}
-};
-
-static struct function_and_rules_block static_pkd_function_and_rulesX_MCL2 = {
- {0x50,0x44},
- {0x00,0x0A},
- {'P','K','C','S','-','1','.','2'}
-};
-
-static struct function_and_rules_block static_pke_function_and_rulesX_MCL2 = {
- {0x50,0x4B},
- {0x00,0x0A},
- {'Z','E','R','O','-','P','A','D'}
-};
-
-static struct function_and_rules_block static_pkd_function_and_rulesX = {
- {0x50,0x44},
- {0x00,0x0A},
- {'Z','E','R','O','-','P','A','D'}
-};
-
-static struct function_and_rules_block static_pke_function_and_rulesX = {
- {0x50,0x4B},
- {0x00,0x0A},
- {'M','R','P',' ',' ',' ',' ',' '}
-};
-
-static unsigned char static_PKE_function_code[2] = {0x50, 0x4B};
-
-struct T6_keyBlock_hdrX {
- unsigned short blen;
- unsigned short ulen;
- unsigned char flags[2];
-};
-
-static unsigned char static_pad[256] = {
-0x1B,0x7B,0x5D,0xB5,0x75,0x01,0x3D,0xFD,0x8D,0xD1,0xC7,0x03,0x2D,0x09,0x23,0x57,
-0x89,0x49,0xB9,0x3F,0xBB,0x99,0x41,0x5B,0x75,0x21,0x7B,0x9D,0x3B,0x6B,0x51,0x39,
-0xBB,0x0D,0x35,0xB9,0x89,0x0F,0x93,0xA5,0x0B,0x47,0xF1,0xD3,0xBB,0xCB,0xF1,0x9D,
-0x23,0x73,0x71,0xFF,0xF3,0xF5,0x45,0xFB,0x61,0x29,0x23,0xFD,0xF1,0x29,0x3F,0x7F,
-0x17,0xB7,0x1B,0xA9,0x19,0xBD,0x57,0xA9,0xD7,0x95,0xA3,0xCB,0xED,0x1D,0xDB,0x45,
-0x7D,0x11,0xD1,0x51,0x1B,0xED,0x71,0xE9,0xB1,0xD1,0xAB,0xAB,0x21,0x2B,0x1B,0x9F,
-0x3B,0x9F,0xF7,0xF7,0xBD,0x63,0xEB,0xAD,0xDF,0xB3,0x6F,0x5B,0xDB,0x8D,0xA9,0x5D,
-0xE3,0x7D,0x77,0x49,0x47,0xF5,0xA7,0xFD,0xAB,0x2F,0x27,0x35,0x77,0xD3,0x49,0xC9,
-0x09,0xEB,0xB1,0xF9,0xBF,0x4B,0xCB,0x2B,0xEB,0xEB,0x05,0xFF,0x7D,0xC7,0x91,0x8B,
-0x09,0x83,0xB9,0xB9,0x69,0x33,0x39,0x6B,0x79,0x75,0x19,0xBF,0xBB,0x07,0x1D,0xBD,
-0x29,0xBF,0x39,0x95,0x93,0x1D,0x35,0xC7,0xC9,0x4D,0xE5,0x97,0x0B,0x43,0x9B,0xF1,
-0x16,0x93,0x03,0x1F,0xA5,0xFB,0xDB,0xF3,0x27,0x4F,0x27,0x61,0x05,0x1F,0xB9,0x23,
-0x2F,0xC3,0x81,0xA9,0x23,0x71,0x55,0x55,0xEB,0xED,0x41,0xE5,0xF3,0x11,0xF1,0x43,
-0x69,0x03,0xBD,0x0B,0x37,0x0F,0x51,0x8F,0x0B,0xB5,0x89,0x5B,0x67,0xA9,0xD9,0x4F,
-0x01,0xF9,0x21,0x77,0x37,0x73,0x79,0xC5,0x7F,0x51,0xC1,0xCF,0x97,0xA1,0x75,0xAD,
-0x35,0x9D,0xD3,0xD3,0xA7,0x9D,0x5D,0x41,0x6F,0x65,0x1B,0xCF,0xA9,0x87,0x91,0x09
-};
-
-static struct cca_private_ext_ME static_pvt_me_key = {
- {
- 0x1E,
- 0x00,
- 0x0183,
- {0x00,0x00,0x00,0x00}
- },
-
- {
- 0x02,
- 0x00,
- 0x016C,
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00},
- 0x00,
- 0x00,
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00},
- {0x80,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
- {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
- 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00}
- },
-
- {
- 0x04,
- 0x00,
- 0x000F,
- {0x00,0x00},
- 0x0003,
- 0x0000,
- 0x0000,
- {0x01,0x00,0x01}
- }
-};
-
-static struct cca_public_key static_public_key = {
- {
- 0x1E,
- 0x00,
- 0x0000,
- {0x00,0x00,0x00,0x00}
- },
-
- {
- 0x04,
- 0x00,
- 0x0000,
- {0x00,0x00},
- 0x0000,
- 0x0000,
- 0x0000,
- {0x01,0x00,0x01}
- }
-};
-
-#define FIXED_TYPE6_ME_LEN 0x0000025F
-
-#define FIXED_TYPE6_ME_EN_LEN 0x000000F0
-
-#define FIXED_TYPE6_ME_LENX 0x000002CB
-
-#define FIXED_TYPE6_ME_EN_LENX 0x0000015C
-
-static struct cca_public_sec static_cca_pub_sec = {
- 0x04,
- 0x00,
- 0x000f,
- {0x00,0x00},
- 0x0003,
- 0x0000,
- 0x0000,
- {0x01,0x00,0x01}
-};
-
-#define FIXED_TYPE6_CR_LEN 0x00000177
-
-#define FIXED_TYPE6_CR_LENX 0x000001E3
-
-#define MAX_RESPONSE_SIZE 0x00000710
-
-#define MAX_RESPONSEX_SIZE 0x0000077C
-
-#define RESPONSE_CPRB_SIZE 0x000006B8
-#define RESPONSE_CPRBX_SIZE 0x00000724
-
-struct type50_hdr {
- u8 reserved1;
- u8 msg_type_code;
- u16 msg_len;
- u8 reserved2;
- u8 ignored;
- u16 reserved3;
-};
-
-#define TYPE50_TYPE_CODE 0x50
-
-#define TYPE50_MEB1_LEN (sizeof(struct type50_meb1_msg))
-#define TYPE50_MEB2_LEN (sizeof(struct type50_meb2_msg))
-#define TYPE50_CRB1_LEN (sizeof(struct type50_crb1_msg))
-#define TYPE50_CRB2_LEN (sizeof(struct type50_crb2_msg))
-
-#define TYPE50_MEB1_FMT 0x0001
-#define TYPE50_MEB2_FMT 0x0002
-#define TYPE50_CRB1_FMT 0x0011
-#define TYPE50_CRB2_FMT 0x0012
-
-struct type50_meb1_msg {
- struct type50_hdr header;
- u16 keyblock_type;
- u8 reserved[6];
- u8 exponent[128];
- u8 modulus[128];
- u8 message[128];
-};
-
-struct type50_meb2_msg {
- struct type50_hdr header;
- u16 keyblock_type;
- u8 reserved[6];
- u8 exponent[256];
- u8 modulus[256];
- u8 message[256];
-};
-
-struct type50_crb1_msg {
- struct type50_hdr header;
- u16 keyblock_type;
- u8 reserved[6];
- u8 p[64];
- u8 q[64];
- u8 dp[64];
- u8 dq[64];
- u8 u[64];
- u8 message[128];
-};
-
-struct type50_crb2_msg {
- struct type50_hdr header;
- u16 keyblock_type;
- u8 reserved[6];
- u8 p[128];
- u8 q[128];
- u8 dp[128];
- u8 dq[128];
- u8 u[128];
- u8 message[256];
-};
-
-union type50_msg {
- struct type50_meb1_msg meb1;
- struct type50_meb2_msg meb2;
- struct type50_crb1_msg crb1;
- struct type50_crb2_msg crb2;
-};
-
-struct type80_hdr {
- u8 reserved1;
- u8 type;
- u16 len;
- u8 code;
- u8 reserved2[3];
- u8 reserved3[8];
-};
-
-#define TYPE80_RSP_CODE 0x80
-
-struct error_hdr {
- unsigned char reserved1;
- unsigned char type;
- unsigned char reserved2[2];
- unsigned char reply_code;
- unsigned char reserved3[3];
-};
-
-#define TYPE82_RSP_CODE 0x82
-#define TYPE88_RSP_CODE 0x88
-
-#define REP82_ERROR_MACHINE_FAILURE 0x10
-#define REP82_ERROR_PREEMPT_FAILURE 0x12
-#define REP82_ERROR_CHECKPT_FAILURE 0x14
-#define REP82_ERROR_MESSAGE_TYPE 0x20
-#define REP82_ERROR_INVALID_COMM_CD 0x21
-#define REP82_ERROR_INVALID_MSG_LEN 0x23
-#define REP82_ERROR_RESERVD_FIELD 0x24
-#define REP82_ERROR_FORMAT_FIELD 0x29
-#define REP82_ERROR_INVALID_COMMAND 0x30
-#define REP82_ERROR_MALFORMED_MSG 0x40
-#define REP82_ERROR_RESERVED_FIELDO 0x50
-#define REP82_ERROR_WORD_ALIGNMENT 0x60
-#define REP82_ERROR_MESSAGE_LENGTH 0x80
-#define REP82_ERROR_OPERAND_INVALID 0x82
-#define REP82_ERROR_OPERAND_SIZE 0x84
-#define REP82_ERROR_EVEN_MOD_IN_OPND 0x85
-#define REP82_ERROR_RESERVED_FIELD 0x88
-#define REP82_ERROR_TRANSPORT_FAIL 0x90
-#define REP82_ERROR_PACKET_TRUNCATED 0xA0
-#define REP82_ERROR_ZERO_BUFFER_LEN 0xB0
-
-#define REP88_ERROR_MODULE_FAILURE 0x10
-#define REP88_ERROR_MODULE_TIMEOUT 0x11
-#define REP88_ERROR_MODULE_NOTINIT 0x13
-#define REP88_ERROR_MODULE_NOTAVAIL 0x14
-#define REP88_ERROR_MODULE_DISABLED 0x15
-#define REP88_ERROR_MODULE_IN_DIAGN 0x17
-#define REP88_ERROR_FASTPATH_DISABLD 0x19
-#define REP88_ERROR_MESSAGE_TYPE 0x20
-#define REP88_ERROR_MESSAGE_MALFORMD 0x22
-#define REP88_ERROR_MESSAGE_LENGTH 0x23
-#define REP88_ERROR_RESERVED_FIELD 0x24
-#define REP88_ERROR_KEY_TYPE 0x34
-#define REP88_ERROR_INVALID_KEY 0x82
-#define REP88_ERROR_OPERAND 0x84
-#define REP88_ERROR_OPERAND_EVEN_MOD 0x85
-
-#define CALLER_HEADER 12
-
-static inline int
-testq(int q_nr, int *q_depth, int *dev_type, struct ap_status_word *stat)
-{
- int ccode;
-
- asm volatile
-#ifdef CONFIG_64BIT
- (" llgfr 0,%4 \n"
- " slgr 1,1 \n"
- " lgr 2,1 \n"
- "0: .long 0xb2af0000 \n"
- "1: ipm %0 \n"
- " srl %0,28 \n"
- " iihh %0,0 \n"
- " iihl %0,0 \n"
- " lgr %1,1 \n"
- " lgr %3,2 \n"
- " srl %3,24 \n"
- " sll 2,24 \n"
- " srl 2,24 \n"
- " lgr %2,2 \n"
- "2: \n"
- ".section .fixup,\"ax\" \n"
- "3: \n"
- " lhi %0,%h5 \n"
- " jg 2b \n"
- ".previous \n"
- ".section __ex_table,\"a\" \n"
- " .align 8 \n"
- " .quad 0b,3b \n"
- " .quad 1b,3b \n"
- ".previous"
- :"=d" (ccode),"=d" (*stat),"=d" (*q_depth), "=d" (*dev_type)
- :"d" (q_nr), "K" (DEV_TSQ_EXCEPTION)
- :"cc","0","1","2","memory");
-#else
- (" lr 0,%4 \n"
- " slr 1,1 \n"
- " lr 2,1 \n"
- "0: .long 0xb2af0000 \n"
- "1: ipm %0 \n"
- " srl %0,28 \n"
- " lr %1,1 \n"
- " lr %3,2 \n"
- " srl %3,24 \n"
- " sll 2,24 \n"
- " srl 2,24 \n"
- " lr %2,2 \n"
- "2: \n"
- ".section .fixup,\"ax\" \n"
- "3: \n"
- " lhi %0,%h5 \n"
- " bras 1,4f \n"
- " .long 2b \n"
- "4: \n"
- " l 1,0(1) \n"
- " br 1 \n"
- ".previous \n"
- ".section __ex_table,\"a\" \n"
- " .align 4 \n"
- " .long 0b,3b \n"
- " .long 1b,3b \n"
- ".previous"
- :"=d" (ccode),"=d" (*stat),"=d" (*q_depth), "=d" (*dev_type)
- :"d" (q_nr), "K" (DEV_TSQ_EXCEPTION)
- :"cc","0","1","2","memory");
-#endif
- return ccode;
-}
-
-static inline int
-resetq(int q_nr, struct ap_status_word *stat_p)
-{
- int ccode;
-
- asm volatile
-#ifdef CONFIG_64BIT
- (" llgfr 0,%2 \n"
- " lghi 1,1 \n"
- " sll 1,24 \n"
- " or 0,1 \n"
- " slgr 1,1 \n"
- " lgr 2,1 \n"
- "0: .long 0xb2af0000 \n"
- "1: ipm %0 \n"
- " srl %0,28 \n"
- " iihh %0,0 \n"
- " iihl %0,0 \n"
- " lgr %1,1 \n"
- "2: \n"
- ".section .fixup,\"ax\" \n"
- "3: \n"
- " lhi %0,%h3 \n"
- " jg 2b \n"
- ".previous \n"
- ".section __ex_table,\"a\" \n"
- " .align 8 \n"
- " .quad 0b,3b \n"
- " .quad 1b,3b \n"
- ".previous"
- :"=d" (ccode),"=d" (*stat_p)
- :"d" (q_nr), "K" (DEV_RSQ_EXCEPTION)
- :"cc","0","1","2","memory");
-#else
- (" lr 0,%2 \n"
- " lhi 1,1 \n"
- " sll 1,24 \n"
- " or 0,1 \n"
- " slr 1,1 \n"
- " lr 2,1 \n"
- "0: .long 0xb2af0000 \n"
- "1: ipm %0 \n"
- " srl %0,28 \n"
- " lr %1,1 \n"
- "2: \n"
- ".section .fixup,\"ax\" \n"
- "3: \n"
- " lhi %0,%h3 \n"
- " bras 1,4f \n"
- " .long 2b \n"
- "4: \n"
- " l 1,0(1) \n"
- " br 1 \n"
- ".previous \n"
- ".section __ex_table,\"a\" \n"
- " .align 4 \n"
- " .long 0b,3b \n"
- " .long 1b,3b \n"
- ".previous"
- :"=d" (ccode),"=d" (*stat_p)
- :"d" (q_nr), "K" (DEV_RSQ_EXCEPTION)
- :"cc","0","1","2","memory");
-#endif
- return ccode;
-}
-
-static inline int
-sen(int msg_len, unsigned char *msg_ext, struct ap_status_word *stat)
-{
- int ccode;
-
- asm volatile
-#ifdef CONFIG_64BIT
- (" lgr 6,%3 \n"
- " llgfr 7,%2 \n"
- " llgt 0,0(6) \n"
- " lghi 1,64 \n"
- " sll 1,24 \n"
- " or 0,1 \n"
- " la 6,4(6) \n"
- " llgt 2,0(6) \n"
- " llgt 3,4(6) \n"
- " la 6,8(6) \n"
- " slr 1,1 \n"
- "0: .long 0xb2ad0026 \n"
- "1: brc 2,0b \n"
- " ipm %0 \n"
- " srl %0,28 \n"
- " iihh %0,0 \n"
- " iihl %0,0 \n"
- " lgr %1,1 \n"
- "2: \n"
- ".section .fixup,\"ax\" \n"
- "3: \n"
- " lhi %0,%h4 \n"
- " jg 2b \n"
- ".previous \n"
- ".section __ex_table,\"a\" \n"
- " .align 8 \n"
- " .quad 0b,3b \n"
- " .quad 1b,3b \n"
- ".previous"
- :"=d" (ccode),"=d" (*stat)
- :"d" (msg_len),"a" (msg_ext), "K" (DEV_SEN_EXCEPTION)
- :"cc","0","1","2","3","6","7","memory");
-#else
- (" lr 6,%3 \n"
- " lr 7,%2 \n"
- " l 0,0(6) \n"
- " lhi 1,64 \n"
- " sll 1,24 \n"
- " or 0,1 \n"
- " la 6,4(6) \n"
- " l 2,0(6) \n"
- " l 3,4(6) \n"
- " la 6,8(6) \n"
- " slr 1,1 \n"
- "0: .long 0xb2ad0026 \n"
- "1: brc 2,0b \n"
- " ipm %0 \n"
- " srl %0,28 \n"
- " lr %1,1 \n"
- "2: \n"
- ".section .fixup,\"ax\" \n"
- "3: \n"
- " lhi %0,%h4 \n"
- " bras 1,4f \n"
- " .long 2b \n"
- "4: \n"
- " l 1,0(1) \n"
- " br 1 \n"
- ".previous \n"
- ".section __ex_table,\"a\" \n"
- " .align 4 \n"
- " .long 0b,3b \n"
- " .long 1b,3b \n"
- ".previous"
- :"=d" (ccode),"=d" (*stat)
- :"d" (msg_len),"a" (msg_ext), "K" (DEV_SEN_EXCEPTION)
- :"cc","0","1","2","3","6","7","memory");
-#endif
- return ccode;
-}
-
-static inline int
-rec(int q_nr, int buff_l, unsigned char *rsp, unsigned char *id,
- struct ap_status_word *st)
-{
- int ccode;
-
- asm volatile
-#ifdef CONFIG_64BIT
- (" llgfr 0,%2 \n"
- " lgr 3,%4 \n"
- " lgr 6,%3 \n"
- " llgfr 7,%5 \n"
- " lghi 1,128 \n"
- " sll 1,24 \n"
- " or 0,1 \n"
- " slgr 1,1 \n"
- " lgr 2,1 \n"
- " lgr 4,1 \n"
- " lgr 5,1 \n"
- "0: .long 0xb2ae0046 \n"
- "1: brc 2,0b \n"
- " brc 4,0b \n"
- " ipm %0 \n"
- " srl %0,28 \n"
- " iihh %0,0 \n"
- " iihl %0,0 \n"
- " lgr %1,1 \n"
- " st 4,0(3) \n"
- " st 5,4(3) \n"
- "2: \n"
- ".section .fixup,\"ax\" \n"
- "3: \n"
- " lhi %0,%h6 \n"
- " jg 2b \n"
- ".previous \n"
- ".section __ex_table,\"a\" \n"
- " .align 8 \n"
- " .quad 0b,3b \n"
- " .quad 1b,3b \n"
- ".previous"
- :"=d"(ccode),"=d"(*st)
- :"d" (q_nr), "d" (rsp), "d" (id), "d" (buff_l), "K" (DEV_REC_EXCEPTION)
- :"cc","0","1","2","3","4","5","6","7","memory");
-#else
- (" lr 0,%2 \n"
- " lr 3,%4 \n"
- " lr 6,%3 \n"
- " lr 7,%5 \n"
- " lhi 1,128 \n"
- " sll 1,24 \n"
- " or 0,1 \n"
- " slr 1,1 \n"
- " lr 2,1 \n"
- " lr 4,1 \n"
- " lr 5,1 \n"
- "0: .long 0xb2ae0046 \n"
- "1: brc 2,0b \n"
- " brc 4,0b \n"
- " ipm %0 \n"
- " srl %0,28 \n"
- " lr %1,1 \n"
- " st 4,0(3) \n"
- " st 5,4(3) \n"
- "2: \n"
- ".section .fixup,\"ax\" \n"
- "3: \n"
- " lhi %0,%h6 \n"
- " bras 1,4f \n"
- " .long 2b \n"
- "4: \n"
- " l 1,0(1) \n"
- " br 1 \n"
- ".previous \n"
- ".section __ex_table,\"a\" \n"
- " .align 4 \n"
- " .long 0b,3b \n"
- " .long 1b,3b \n"
- ".previous"
- :"=d"(ccode),"=d"(*st)
- :"d" (q_nr), "d" (rsp), "d" (id), "d" (buff_l), "K" (DEV_REC_EXCEPTION)
- :"cc","0","1","2","3","4","5","6","7","memory");
-#endif
- return ccode;
-}
-
-static inline void
-itoLe2(int *i_p, unsigned char *lechars)
-{
- *lechars = *((unsigned char *) i_p + sizeof(int) - 1);
- *(lechars + 1) = *((unsigned char *) i_p + sizeof(int) - 2);
-}
-
-static inline void
-le2toI(unsigned char *lechars, int *i_p)
-{
- unsigned char *ic_p;
- *i_p = 0;
- ic_p = (unsigned char *) i_p;
- *(ic_p + 2) = *(lechars + 1);
- *(ic_p + 3) = *(lechars);
-}
-
-static inline int
-is_empty(unsigned char *ptr, int len)
-{
- return !memcmp(ptr, (unsigned char *) &static_pvt_me_key+60, len);
-}
-
-enum hdstat
-query_online(int deviceNr, int cdx, int resetNr, int *q_depth, int *dev_type)
-{
- int q_nr, i, t_depth, t_dev_type;
- enum devstat ccode;
- struct ap_status_word stat_word;
- enum hdstat stat;
- int break_out;
-
- q_nr = (deviceNr << SKIP_BITL) + cdx;
- stat = HD_BUSY;
- ccode = testq(q_nr, &t_depth, &t_dev_type, &stat_word);
- PDEBUG("ccode %d response_code %02X\n", ccode, stat_word.response_code);
- break_out = 0;
- for (i = 0; i < resetNr; i++) {
- if (ccode > 3) {
- PRINTKC("Exception testing device %d\n", i);
- return HD_TSQ_EXCEPTION;
- }
- switch (ccode) {
- case 0:
- PDEBUG("t_dev_type %d\n", t_dev_type);
- break_out = 1;
- stat = HD_ONLINE;
- *q_depth = t_depth + 1;
- switch (t_dev_type) {
- case PCICA_HW:
- *dev_type = PCICA;
- break;
- case PCICC_HW:
- *dev_type = PCICC;
- break;
- case PCIXCC_HW:
- *dev_type = PCIXCC_UNK;
- break;
- case CEX2C_HW:
- *dev_type = CEX2C;
- break;
- case CEX2A_HW:
- *dev_type = CEX2A;
- break;
- default:
- *dev_type = NILDEV;
- break;
- }
- PDEBUG("available device %d: Q depth = %d, dev "
- "type = %d, stat = %02X%02X%02X%02X\n",
- deviceNr, *q_depth, *dev_type,
- stat_word.q_stat_flags,
- stat_word.response_code,
- stat_word.reserved[0],
- stat_word.reserved[1]);
- break;
- case 3:
- switch (stat_word.response_code) {
- case AP_RESPONSE_NORMAL:
- stat = HD_ONLINE;
- break_out = 1;
- *q_depth = t_depth + 1;
- *dev_type = t_dev_type;
- PDEBUG("cc3, available device "
- "%d: Q depth = %d, dev "
- "type = %d, stat = "
- "%02X%02X%02X%02X\n",
- deviceNr, *q_depth,
- *dev_type,
- stat_word.q_stat_flags,
- stat_word.response_code,
- stat_word.reserved[0],
- stat_word.reserved[1]);
- break;
- case AP_RESPONSE_Q_NOT_AVAIL:
- stat = HD_NOT_THERE;
- break_out = 1;
- break;
- case AP_RESPONSE_RESET_IN_PROGRESS:
- PDEBUG("device %d in reset\n",
- deviceNr);
- break;
- case AP_RESPONSE_DECONFIGURED:
- stat = HD_DECONFIGURED;
- break_out = 1;
- break;
- case AP_RESPONSE_CHECKSTOPPED:
- stat = HD_CHECKSTOPPED;
- break_out = 1;
- break;
- case AP_RESPONSE_BUSY:
- PDEBUG("device %d busy\n",
- deviceNr);
- break;
- default:
- break;
- }
- break;
- default:
- stat = HD_NOT_THERE;
- break_out = 1;
- break;
- }
- if (break_out)
- break;
-
- udelay(5);
-
- ccode = testq(q_nr, &t_depth, &t_dev_type, &stat_word);
- }
- return stat;
-}
-
-enum devstat
-reset_device(int deviceNr, int cdx, int resetNr)
-{
- int q_nr, ccode = 0, dummy_qdepth, dummy_devType, i;
- struct ap_status_word stat_word;
- enum devstat stat;
- int break_out;
-
- q_nr = (deviceNr << SKIP_BITL) + cdx;
- stat = DEV_GONE;
- ccode = resetq(q_nr, &stat_word);
- if (ccode > 3)
- return DEV_RSQ_EXCEPTION;
-
- break_out = 0;
- for (i = 0; i < resetNr; i++) {
- switch (ccode) {
- case 0:
- stat = DEV_ONLINE;
- if (stat_word.q_stat_flags & AP_Q_STATUS_EMPTY)
- break_out = 1;
- break;
- case 3:
- switch (stat_word.response_code) {
- case AP_RESPONSE_NORMAL:
- stat = DEV_ONLINE;
- if (stat_word.q_stat_flags & AP_Q_STATUS_EMPTY)
- break_out = 1;
- break;
- case AP_RESPONSE_Q_NOT_AVAIL:
- case AP_RESPONSE_DECONFIGURED:
- case AP_RESPONSE_CHECKSTOPPED:
- stat = DEV_GONE;
- break_out = 1;
- break;
- case AP_RESPONSE_RESET_IN_PROGRESS:
- case AP_RESPONSE_BUSY:
- default:
- break;
- }
- break;
- default:
- stat = DEV_GONE;
- break_out = 1;
- break;
- }
- if (break_out == 1)
- break;
- udelay(5);
-
- ccode = testq(q_nr, &dummy_qdepth, &dummy_devType, &stat_word);
- if (ccode > 3) {
- stat = DEV_TSQ_EXCEPTION;
- break;
- }
- }
- PDEBUG("Number of testq's needed for reset: %d\n", i);
-
- if (i >= resetNr) {
- stat = DEV_GONE;
- }
-
- return stat;
-}
-
-#ifdef DEBUG_HYDRA_MSGS
-static inline void
-print_buffer(unsigned char *buffer, int bufflen)
-{
- int i;
- for (i = 0; i < bufflen; i += 16) {
- PRINTK("%04X: %02X%02X%02X%02X %02X%02X%02X%02X "
- "%02X%02X%02X%02X %02X%02X%02X%02X\n", i,
- buffer[i+0], buffer[i+1], buffer[i+2], buffer[i+3],
- buffer[i+4], buffer[i+5], buffer[i+6], buffer[i+7],
- buffer[i+8], buffer[i+9], buffer[i+10], buffer[i+11],
- buffer[i+12], buffer[i+13], buffer[i+14], buffer[i+15]);
- }
-}
-#endif
-
-enum devstat
-send_to_AP(int dev_nr, int cdx, int msg_len, unsigned char *msg_ext)
-{
- struct ap_status_word stat_word;
- enum devstat stat;
- int ccode;
- u32 *q_nr_p = (u32 *)msg_ext;
-
- *q_nr_p = (dev_nr << SKIP_BITL) + cdx;
- PDEBUG("msg_len passed to sen: %d\n", msg_len);
- PDEBUG("q number passed to sen: %02x%02x%02x%02x\n",
- msg_ext[0], msg_ext[1], msg_ext[2], msg_ext[3]);
- stat = DEV_GONE;
-
-#ifdef DEBUG_HYDRA_MSGS
- PRINTK("Request header: %02X%02X%02X%02X %02X%02X%02X%02X "
- "%02X%02X%02X%02X\n",
- msg_ext[0], msg_ext[1], msg_ext[2], msg_ext[3],
- msg_ext[4], msg_ext[5], msg_ext[6], msg_ext[7],
- msg_ext[8], msg_ext[9], msg_ext[10], msg_ext[11]);
- print_buffer(msg_ext+CALLER_HEADER, msg_len);
-#endif
-
- ccode = sen(msg_len, msg_ext, &stat_word);
- if (ccode > 3)
- return DEV_SEN_EXCEPTION;
-
- PDEBUG("nq cc: %u, st: %02x%02x%02x%02x\n",
- ccode, stat_word.q_stat_flags, stat_word.response_code,
- stat_word.reserved[0], stat_word.reserved[1]);
- switch (ccode) {
- case 0:
- stat = DEV_ONLINE;
- break;
- case 1:
- stat = DEV_GONE;
- break;
- case 3:
- switch (stat_word.response_code) {
- case AP_RESPONSE_NORMAL:
- stat = DEV_ONLINE;
- break;
- case AP_RESPONSE_Q_FULL:
- stat = DEV_QUEUE_FULL;
- break;
- default:
- stat = DEV_GONE;
- break;
- }
- break;
- default:
- stat = DEV_GONE;
- break;
- }
-
- return stat;
-}
-
-enum devstat
-receive_from_AP(int dev_nr, int cdx, int resplen, unsigned char *resp,
- unsigned char *psmid)
-{
- int ccode;
- struct ap_status_word stat_word;
- enum devstat stat;
-
- memset(resp, 0x00, 8);
-
- ccode = rec((dev_nr << SKIP_BITL) + cdx, resplen, resp, psmid,
- &stat_word);
- if (ccode > 3)
- return DEV_REC_EXCEPTION;
-
- PDEBUG("dq cc: %u, st: %02x%02x%02x%02x\n",
- ccode, stat_word.q_stat_flags, stat_word.response_code,
- stat_word.reserved[0], stat_word.reserved[1]);
-
- stat = DEV_GONE;
- switch (ccode) {
- case 0:
- stat = DEV_ONLINE;
-#ifdef DEBUG_HYDRA_MSGS
- print_buffer(resp, resplen);
-#endif
- break;
- case 3:
- switch (stat_word.response_code) {
- case AP_RESPONSE_NORMAL:
- stat = DEV_ONLINE;
- break;
- case AP_RESPONSE_NO_PENDING_REPLY:
- if (stat_word.q_stat_flags & AP_Q_STATUS_EMPTY)
- stat = DEV_EMPTY;
- else
- stat = DEV_NO_WORK;
- break;
- case AP_RESPONSE_INDEX_TOO_BIG:
- case AP_RESPONSE_NO_FIRST_PART:
- case AP_RESPONSE_MESSAGE_TOO_BIG:
- stat = DEV_BAD_MESSAGE;
- break;
- default:
- break;
- }
- break;
- default:
- break;
- }
-
- return stat;
-}
-
-static inline int
-pad_msg(unsigned char *buffer, int totalLength, int msgLength)
-{
- int pad_len;
-
- for (pad_len = 0; pad_len < (totalLength - msgLength); pad_len++)
- if (buffer[pad_len] != 0x00)
- break;
- pad_len -= 3;
- if (pad_len < 8)
- return SEN_PAD_ERROR;
-
- buffer[0] = 0x00;
- buffer[1] = 0x02;
-
- memcpy(buffer+2, static_pad, pad_len);
-
- buffer[pad_len + 2] = 0x00;
-
- return 0;
-}
-
-static inline int
-is_common_public_key(unsigned char *key, int len)
-{
- int i;
-
- for (i = 0; i < len; i++)
- if (key[i])
- break;
- key += i;
- len -= i;
- if (((len == 1) && (key[0] == 3)) ||
- ((len == 3) && (key[0] == 1) && (key[1] == 0) && (key[2] == 1)))
- return 1;
-
- return 0;
-}
-
-static int
-ICAMEX_msg_to_type4MEX_msg(struct ica_rsa_modexpo *icaMex_p, int *z90cMsg_l_p,
- union type4_msg *z90cMsg_p)
-{
- int mod_len, msg_size, mod_tgt_len, exp_tgt_len, inp_tgt_len;
- unsigned char *mod_tgt, *exp_tgt, *inp_tgt;
- union type4_msg *tmp_type4_msg;
-
- mod_len = icaMex_p->inputdatalength;
-
- msg_size = ((mod_len <= 128) ? TYPE4_SME_LEN : TYPE4_LME_LEN) +
- CALLER_HEADER;
-
- memset(z90cMsg_p, 0, msg_size);
-
- tmp_type4_msg = (union type4_msg *)
- ((unsigned char *) z90cMsg_p + CALLER_HEADER);
-
- tmp_type4_msg->sme.header.msg_type_code = TYPE4_TYPE_CODE;
- tmp_type4_msg->sme.header.request_code = TYPE4_REQU_CODE;
-
- if (mod_len <= 128) {
- tmp_type4_msg->sme.header.msg_fmt = TYPE4_SME_FMT;
- tmp_type4_msg->sme.header.msg_len = TYPE4_SME_LEN;
- mod_tgt = tmp_type4_msg->sme.modulus;
- mod_tgt_len = sizeof(tmp_type4_msg->sme.modulus);
- exp_tgt = tmp_type4_msg->sme.exponent;
- exp_tgt_len = sizeof(tmp_type4_msg->sme.exponent);
- inp_tgt = tmp_type4_msg->sme.message;
- inp_tgt_len = sizeof(tmp_type4_msg->sme.message);
- } else {
- tmp_type4_msg->lme.header.msg_fmt = TYPE4_LME_FMT;
- tmp_type4_msg->lme.header.msg_len = TYPE4_LME_LEN;
- mod_tgt = tmp_type4_msg->lme.modulus;
- mod_tgt_len = sizeof(tmp_type4_msg->lme.modulus);
- exp_tgt = tmp_type4_msg->lme.exponent;
- exp_tgt_len = sizeof(tmp_type4_msg->lme.exponent);
- inp_tgt = tmp_type4_msg->lme.message;
- inp_tgt_len = sizeof(tmp_type4_msg->lme.message);
- }
-
- mod_tgt += (mod_tgt_len - mod_len);
- if (copy_from_user(mod_tgt, icaMex_p->n_modulus, mod_len))
- return SEN_RELEASED;
- if (is_empty(mod_tgt, mod_len))
- return SEN_USER_ERROR;
- exp_tgt += (exp_tgt_len - mod_len);
- if (copy_from_user(exp_tgt, icaMex_p->b_key, mod_len))
- return SEN_RELEASED;
- if (is_empty(exp_tgt, mod_len))
- return SEN_USER_ERROR;
- inp_tgt += (inp_tgt_len - mod_len);
- if (copy_from_user(inp_tgt, icaMex_p->inputdata, mod_len))
- return SEN_RELEASED;
- if (is_empty(inp_tgt, mod_len))
- return SEN_USER_ERROR;
-
- *z90cMsg_l_p = msg_size - CALLER_HEADER;
-
- return 0;
-}
-
-static int
-ICACRT_msg_to_type4CRT_msg(struct ica_rsa_modexpo_crt *icaMsg_p,
- int *z90cMsg_l_p, union type4_msg *z90cMsg_p)
-{
- int mod_len, short_len, long_len, tmp_size, p_tgt_len, q_tgt_len,
- dp_tgt_len, dq_tgt_len, u_tgt_len, inp_tgt_len;
- unsigned char *p_tgt, *q_tgt, *dp_tgt, *dq_tgt, *u_tgt, *inp_tgt;
- union type4_msg *tmp_type4_msg;
-
- mod_len = icaMsg_p->inputdatalength;
- short_len = mod_len / 2;
- long_len = mod_len / 2 + 8;
-
- tmp_size = ((mod_len <= 128) ? TYPE4_SCR_LEN : TYPE4_LCR_LEN) +
- CALLER_HEADER;
-
- memset(z90cMsg_p, 0, tmp_size);
-
- tmp_type4_msg = (union type4_msg *)
- ((unsigned char *) z90cMsg_p + CALLER_HEADER);
-
- tmp_type4_msg->scr.header.msg_type_code = TYPE4_TYPE_CODE;
- tmp_type4_msg->scr.header.request_code = TYPE4_REQU_CODE;
- if (mod_len <= 128) {
- tmp_type4_msg->scr.header.msg_fmt = TYPE4_SCR_FMT;
- tmp_type4_msg->scr.header.msg_len = TYPE4_SCR_LEN;
- p_tgt = tmp_type4_msg->scr.p;
- p_tgt_len = sizeof(tmp_type4_msg->scr.p);
- q_tgt = tmp_type4_msg->scr.q;
- q_tgt_len = sizeof(tmp_type4_msg->scr.q);
- dp_tgt = tmp_type4_msg->scr.dp;
- dp_tgt_len = sizeof(tmp_type4_msg->scr.dp);
- dq_tgt = tmp_type4_msg->scr.dq;
- dq_tgt_len = sizeof(tmp_type4_msg->scr.dq);
- u_tgt = tmp_type4_msg->scr.u;
- u_tgt_len = sizeof(tmp_type4_msg->scr.u);
- inp_tgt = tmp_type4_msg->scr.message;
- inp_tgt_len = sizeof(tmp_type4_msg->scr.message);
- } else {
- tmp_type4_msg->lcr.header.msg_fmt = TYPE4_LCR_FMT;
- tmp_type4_msg->lcr.header.msg_len = TYPE4_LCR_LEN;
- p_tgt = tmp_type4_msg->lcr.p;
- p_tgt_len = sizeof(tmp_type4_msg->lcr.p);
- q_tgt = tmp_type4_msg->lcr.q;
- q_tgt_len = sizeof(tmp_type4_msg->lcr.q);
- dp_tgt = tmp_type4_msg->lcr.dp;
- dp_tgt_len = sizeof(tmp_type4_msg->lcr.dp);
- dq_tgt = tmp_type4_msg->lcr.dq;
- dq_tgt_len = sizeof(tmp_type4_msg->lcr.dq);
- u_tgt = tmp_type4_msg->lcr.u;
- u_tgt_len = sizeof(tmp_type4_msg->lcr.u);
- inp_tgt = tmp_type4_msg->lcr.message;
- inp_tgt_len = sizeof(tmp_type4_msg->lcr.message);
- }
-
- p_tgt += (p_tgt_len - long_len);
- if (copy_from_user(p_tgt, icaMsg_p->np_prime, long_len))
- return SEN_RELEASED;
- if (is_empty(p_tgt, long_len))
- return SEN_USER_ERROR;
- q_tgt += (q_tgt_len - short_len);
- if (copy_from_user(q_tgt, icaMsg_p->nq_prime, short_len))
- return SEN_RELEASED;
- if (is_empty(q_tgt, short_len))
- return SEN_USER_ERROR;
- dp_tgt += (dp_tgt_len - long_len);
- if (copy_from_user(dp_tgt, icaMsg_p->bp_key, long_len))
- return SEN_RELEASED;
- if (is_empty(dp_tgt, long_len))
- return SEN_USER_ERROR;
- dq_tgt += (dq_tgt_len - short_len);
- if (copy_from_user(dq_tgt, icaMsg_p->bq_key, short_len))
- return SEN_RELEASED;
- if (is_empty(dq_tgt, short_len))
- return SEN_USER_ERROR;
- u_tgt += (u_tgt_len - long_len);
- if (copy_from_user(u_tgt, icaMsg_p->u_mult_inv, long_len))
- return SEN_RELEASED;
- if (is_empty(u_tgt, long_len))
- return SEN_USER_ERROR;
- inp_tgt += (inp_tgt_len - mod_len);
- if (copy_from_user(inp_tgt, icaMsg_p->inputdata, mod_len))
- return SEN_RELEASED;
- if (is_empty(inp_tgt, mod_len))
- return SEN_USER_ERROR;
-
- *z90cMsg_l_p = tmp_size - CALLER_HEADER;
-
- return 0;
-}
-
-static int
-ICAMEX_msg_to_type6MEX_de_msg(struct ica_rsa_modexpo *icaMsg_p, int cdx,
- int *z90cMsg_l_p, struct type6_msg *z90cMsg_p)
-{
- int mod_len, vud_len, tmp_size, total_CPRB_len, parmBlock_l;
- unsigned char *temp;
- struct type6_hdr *tp6Hdr_p;
- struct CPRB *cprb_p;
- struct cca_private_ext_ME *key_p;
- static int deprecated_msg_count = 0;
-
- mod_len = icaMsg_p->inputdatalength;
- tmp_size = FIXED_TYPE6_ME_LEN + mod_len;
- total_CPRB_len = tmp_size - sizeof(struct type6_hdr);
- parmBlock_l = total_CPRB_len - sizeof(struct CPRB);
- tmp_size = 4*((tmp_size + 3)/4) + CALLER_HEADER;
-
- memset(z90cMsg_p, 0, tmp_size);
-
- temp = (unsigned char *)z90cMsg_p + CALLER_HEADER;
- memcpy(temp, &static_type6_hdr, sizeof(struct type6_hdr));
- tp6Hdr_p = (struct type6_hdr *)temp;
- tp6Hdr_p->ToCardLen1 = 4*((total_CPRB_len+3)/4);
- tp6Hdr_p->FromCardLen1 = RESPONSE_CPRB_SIZE;
-
- temp += sizeof(struct type6_hdr);
- memcpy(temp, &static_cprb, sizeof(struct CPRB));
- cprb_p = (struct CPRB *) temp;
- cprb_p->usage_domain[0]= (unsigned char)cdx;
- itoLe2(&parmBlock_l, cprb_p->req_parml);
- itoLe2((int *)&(tp6Hdr_p->FromCardLen1), cprb_p->rpl_parml);
-
- temp += sizeof(struct CPRB);
- memcpy(temp, &static_pkd_function_and_rules,
- sizeof(struct function_and_rules_block));
-
- temp += sizeof(struct function_and_rules_block);
- vud_len = 2 + icaMsg_p->inputdatalength;
- itoLe2(&vud_len, temp);
-
- temp += 2;
- if (copy_from_user(temp, icaMsg_p->inputdata, mod_len))
- return SEN_RELEASED;
- if (is_empty(temp, mod_len))
- return SEN_USER_ERROR;
-
- temp += mod_len;
- memcpy(temp, &static_T6_keyBlock_hdr, sizeof(struct T6_keyBlock_hdr));
-
- temp += sizeof(struct T6_keyBlock_hdr);
- memcpy(temp, &static_pvt_me_key, sizeof(struct cca_private_ext_ME));
- key_p = (struct cca_private_ext_ME *)temp;
- temp = key_p->pvtMESec.exponent + sizeof(key_p->pvtMESec.exponent)
- - mod_len;
- if (copy_from_user(temp, icaMsg_p->b_key, mod_len))
- return SEN_RELEASED;
- if (is_empty(temp, mod_len))
- return SEN_USER_ERROR;
-
- if (is_common_public_key(temp, mod_len)) {
- if (deprecated_msg_count < 20) {
- PRINTK("Common public key used for modex decrypt\n");
- deprecated_msg_count++;
- if (deprecated_msg_count == 20)
- PRINTK("No longer issuing messages about common"
- " public key for modex decrypt.\n");
- }
- return SEN_NOT_AVAIL;
- }
-
- temp = key_p->pvtMESec.modulus + sizeof(key_p->pvtMESec.modulus)
- - mod_len;
- if (copy_from_user(temp, icaMsg_p->n_modulus, mod_len))
- return SEN_RELEASED;
- if (is_empty(temp, mod_len))
- return SEN_USER_ERROR;
-
- key_p->pubMESec.modulus_bit_len = 8 * mod_len;
-
- *z90cMsg_l_p = tmp_size - CALLER_HEADER;
-
- return 0;
-}
-
-static int
-ICAMEX_msg_to_type6MEX_en_msg(struct ica_rsa_modexpo *icaMsg_p, int cdx,
- int *z90cMsg_l_p, struct type6_msg *z90cMsg_p)
-{
- int mod_len, vud_len, exp_len, key_len;
- int pad_len, tmp_size, total_CPRB_len, parmBlock_l, i;
- unsigned char *temp_exp, *exp_p, *temp;
- struct type6_hdr *tp6Hdr_p;
- struct CPRB *cprb_p;
- struct cca_public_key *key_p;
- struct T6_keyBlock_hdr *keyb_p;
-
- temp_exp = kmalloc(256, GFP_KERNEL);
- if (!temp_exp)
- return EGETBUFF;
- mod_len = icaMsg_p->inputdatalength;
- if (copy_from_user(temp_exp, icaMsg_p->b_key, mod_len)) {
- kfree(temp_exp);
- return SEN_RELEASED;
- }
- if (is_empty(temp_exp, mod_len)) {
- kfree(temp_exp);
- return SEN_USER_ERROR;
- }
-
- exp_p = temp_exp;
- for (i = 0; i < mod_len; i++)
- if (exp_p[i])
- break;
- if (i >= mod_len) {
- kfree(temp_exp);
- return SEN_USER_ERROR;
- }
-
- exp_len = mod_len - i;
- exp_p += i;
-
- PDEBUG("exp_len after computation: %08x\n", exp_len);
- tmp_size = FIXED_TYPE6_ME_EN_LEN + 2 * mod_len + exp_len;
- total_CPRB_len = tmp_size - sizeof(struct type6_hdr);
- parmBlock_l = total_CPRB_len - sizeof(struct CPRB);
- tmp_size = 4*((tmp_size + 3)/4) + CALLER_HEADER;
-
- vud_len = 2 + mod_len;
- memset(z90cMsg_p, 0, tmp_size);
-
- temp = (unsigned char *)z90cMsg_p + CALLER_HEADER;
- memcpy(temp, &static_type6_hdr, sizeof(struct type6_hdr));
- tp6Hdr_p = (struct type6_hdr *)temp;
- tp6Hdr_p->ToCardLen1 = 4*((total_CPRB_len+3)/4);
- tp6Hdr_p->FromCardLen1 = RESPONSE_CPRB_SIZE;
- memcpy(tp6Hdr_p->function_code, static_PKE_function_code,
- sizeof(static_PKE_function_code));
- temp += sizeof(struct type6_hdr);
- memcpy(temp, &static_cprb, sizeof(struct CPRB));
- cprb_p = (struct CPRB *) temp;
- cprb_p->usage_domain[0]= (unsigned char)cdx;
- itoLe2((int *)&(tp6Hdr_p->FromCardLen1), cprb_p->rpl_parml);
- temp += sizeof(struct CPRB);
- memcpy(temp, &static_pke_function_and_rules,
- sizeof(struct function_and_rules_block));
- temp += sizeof(struct function_and_rules_block);
- temp += 2;
- if (copy_from_user(temp, icaMsg_p->inputdata, mod_len)) {
- kfree(temp_exp);
- return SEN_RELEASED;
- }
- if (is_empty(temp, mod_len)) {
- kfree(temp_exp);
- return SEN_USER_ERROR;
- }
- if ((temp[0] != 0x00) || (temp[1] != 0x02)) {
- kfree(temp_exp);
- return SEN_NOT_AVAIL;
- }
- for (i = 2; i < mod_len; i++)
- if (temp[i] == 0x00)
- break;
- if ((i < 9) || (i > (mod_len - 2))) {
- kfree(temp_exp);
- return SEN_NOT_AVAIL;
- }
- pad_len = i + 1;
- vud_len = mod_len - pad_len;
- memmove(temp, temp+pad_len, vud_len);
- temp -= 2;
- vud_len += 2;
- itoLe2(&vud_len, temp);
- temp += (vud_len);
- keyb_p = (struct T6_keyBlock_hdr *)temp;
- temp += sizeof(struct T6_keyBlock_hdr);
- memcpy(temp, &static_public_key, sizeof(static_public_key));
- key_p = (struct cca_public_key *)temp;
- temp = key_p->pubSec.exponent;
- memcpy(temp, exp_p, exp_len);
- kfree(temp_exp);
- temp += exp_len;
- if (copy_from_user(temp, icaMsg_p->n_modulus, mod_len))
- return SEN_RELEASED;
- if (is_empty(temp, mod_len))
- return SEN_USER_ERROR;
- key_p->pubSec.modulus_bit_len = 8 * mod_len;
- key_p->pubSec.modulus_byte_len = mod_len;
- key_p->pubSec.exponent_len = exp_len;
- key_p->pubSec.section_length = CALLER_HEADER + mod_len + exp_len;
- key_len = key_p->pubSec.section_length + sizeof(struct cca_token_hdr);
- key_p->pubHdr.token_length = key_len;
- key_len += 4;
- itoLe2(&key_len, keyb_p->ulen);
- key_len += 2;
- itoLe2(&key_len, keyb_p->blen);
- parmBlock_l -= pad_len;
- itoLe2(&parmBlock_l, cprb_p->req_parml);
- *z90cMsg_l_p = tmp_size - CALLER_HEADER;
-
- return 0;
-}
-
-static int
-ICACRT_msg_to_type6CRT_msg(struct ica_rsa_modexpo_crt *icaMsg_p, int cdx,
- int *z90cMsg_l_p, struct type6_msg *z90cMsg_p)
-{
- int mod_len, vud_len, tmp_size, total_CPRB_len, parmBlock_l, short_len;
- int long_len, pad_len, keyPartsLen, tmp_l;
- unsigned char *tgt_p, *temp;
- struct type6_hdr *tp6Hdr_p;
- struct CPRB *cprb_p;
- struct cca_token_hdr *keyHdr_p;
- struct cca_pvt_ext_CRT_sec *pvtSec_p;
- struct cca_public_sec *pubSec_p;
-
- mod_len = icaMsg_p->inputdatalength;
- short_len = mod_len / 2;
- long_len = 8 + short_len;
- keyPartsLen = 3 * long_len + 2 * short_len;
- pad_len = (8 - (keyPartsLen % 8)) % 8;
- keyPartsLen += pad_len + mod_len;
- tmp_size = FIXED_TYPE6_CR_LEN + keyPartsLen + mod_len;
- total_CPRB_len = tmp_size - sizeof(struct type6_hdr);
- parmBlock_l = total_CPRB_len - sizeof(struct CPRB);
- vud_len = 2 + mod_len;
- tmp_size = 4*((tmp_size + 3)/4) + CALLER_HEADER;
-
- memset(z90cMsg_p, 0, tmp_size);
- tgt_p = (unsigned char *)z90cMsg_p + CALLER_HEADER;
- memcpy(tgt_p, &static_type6_hdr, sizeof(struct type6_hdr));
- tp6Hdr_p = (struct type6_hdr *)tgt_p;
- tp6Hdr_p->ToCardLen1 = 4*((total_CPRB_len+3)/4);
- tp6Hdr_p->FromCardLen1 = RESPONSE_CPRB_SIZE;
- tgt_p += sizeof(struct type6_hdr);
- cprb_p = (struct CPRB *) tgt_p;
- memcpy(tgt_p, &static_cprb, sizeof(struct CPRB));
- cprb_p->usage_domain[0]= *((unsigned char *)(&(cdx))+3);
- itoLe2(&parmBlock_l, cprb_p->req_parml);
- memcpy(cprb_p->rpl_parml, cprb_p->req_parml,
- sizeof(cprb_p->req_parml));
- tgt_p += sizeof(struct CPRB);
- memcpy(tgt_p, &static_pkd_function_and_rules,
- sizeof(struct function_and_rules_block));
- tgt_p += sizeof(struct function_and_rules_block);
- itoLe2(&vud_len, tgt_p);
- tgt_p += 2;
- if (copy_from_user(tgt_p, icaMsg_p->inputdata, mod_len))
- return SEN_RELEASED;
- if (is_empty(tgt_p, mod_len))
- return SEN_USER_ERROR;
- tgt_p += mod_len;
- tmp_l = sizeof(struct T6_keyBlock_hdr) + sizeof(struct cca_token_hdr) +
- sizeof(struct cca_pvt_ext_CRT_sec) + 0x0F + keyPartsLen;
- itoLe2(&tmp_l, tgt_p);
- temp = tgt_p + 2;
- tmp_l -= 2;
- itoLe2(&tmp_l, temp);
- tgt_p += sizeof(struct T6_keyBlock_hdr);
- keyHdr_p = (struct cca_token_hdr *)tgt_p;
- keyHdr_p->token_identifier = CCA_TKN_HDR_ID_EXT;
- tmp_l -= 4;
- keyHdr_p->token_length = tmp_l;
- tgt_p += sizeof(struct cca_token_hdr);
- pvtSec_p = (struct cca_pvt_ext_CRT_sec *)tgt_p;
- pvtSec_p->section_identifier = CCA_PVT_EXT_CRT_SEC_ID_PVT;
- pvtSec_p->section_length =
- sizeof(struct cca_pvt_ext_CRT_sec) + keyPartsLen;
- pvtSec_p->key_format = CCA_PVT_EXT_CRT_SEC_FMT_CL;
- pvtSec_p->key_use_flags[0] = CCA_PVT_USAGE_ALL;
- pvtSec_p->p_len = long_len;
- pvtSec_p->q_len = short_len;
- pvtSec_p->dp_len = long_len;
- pvtSec_p->dq_len = short_len;
- pvtSec_p->u_len = long_len;
- pvtSec_p->mod_len = mod_len;
- pvtSec_p->pad_len = pad_len;
- tgt_p += sizeof(struct cca_pvt_ext_CRT_sec);
- if (copy_from_user(tgt_p, icaMsg_p->np_prime, long_len))
- return SEN_RELEASED;
- if (is_empty(tgt_p, long_len))
- return SEN_USER_ERROR;
- tgt_p += long_len;
- if (copy_from_user(tgt_p, icaMsg_p->nq_prime, short_len))
- return SEN_RELEASED;
- if (is_empty(tgt_p, short_len))
- return SEN_USER_ERROR;
- tgt_p += short_len;
- if (copy_from_user(tgt_p, icaMsg_p->bp_key, long_len))
- return SEN_RELEASED;
- if (is_empty(tgt_p, long_len))
- return SEN_USER_ERROR;
- tgt_p += long_len;
- if (copy_from_user(tgt_p, icaMsg_p->bq_key, short_len))
- return SEN_RELEASED;
- if (is_empty(tgt_p, short_len))
- return SEN_USER_ERROR;
- tgt_p += short_len;
- if (copy_from_user(tgt_p, icaMsg_p->u_mult_inv, long_len))
- return SEN_RELEASED;
- if (is_empty(tgt_p, long_len))
- return SEN_USER_ERROR;
- tgt_p += long_len;
- tgt_p += pad_len;
- memset(tgt_p, 0xFF, mod_len);
- tgt_p += mod_len;
- memcpy(tgt_p, &static_cca_pub_sec, sizeof(struct cca_public_sec));
- pubSec_p = (struct cca_public_sec *) tgt_p;
- pubSec_p->modulus_bit_len = 8 * mod_len;
- *z90cMsg_l_p = tmp_size - CALLER_HEADER;
-
- return 0;
-}
-
-static int
-ICAMEX_msg_to_type6MEX_msgX(struct ica_rsa_modexpo *icaMsg_p, int cdx,
- int *z90cMsg_l_p, struct type6_msg *z90cMsg_p,
- int dev_type)
-{
- int mod_len, exp_len, vud_len, tmp_size, total_CPRB_len, parmBlock_l;
- int key_len, i;
- unsigned char *temp_exp, *tgt_p, *temp, *exp_p;
- struct type6_hdr *tp6Hdr_p;
- struct CPRBX *cprbx_p;
- struct cca_public_key *key_p;
- struct T6_keyBlock_hdrX *keyb_p;
-
- temp_exp = kmalloc(256, GFP_KERNEL);
- if (!temp_exp)
- return EGETBUFF;
- mod_len = icaMsg_p->inputdatalength;
- if (copy_from_user(temp_exp, icaMsg_p->b_key, mod_len)) {
- kfree(temp_exp);
- return SEN_RELEASED;
- }
- if (is_empty(temp_exp, mod_len)) {
- kfree(temp_exp);
- return SEN_USER_ERROR;
- }
- exp_p = temp_exp;
- for (i = 0; i < mod_len; i++)
- if (exp_p[i])
- break;
- if (i >= mod_len) {
- kfree(temp_exp);
- return SEN_USER_ERROR;
- }
- exp_len = mod_len - i;
- exp_p += i;
- PDEBUG("exp_len after computation: %08x\n", exp_len);
- tmp_size = FIXED_TYPE6_ME_EN_LENX + 2 * mod_len + exp_len;
- total_CPRB_len = tmp_size - sizeof(struct type6_hdr);
- parmBlock_l = total_CPRB_len - sizeof(struct CPRBX);
- tmp_size = tmp_size + CALLER_HEADER;
- vud_len = 2 + mod_len;
- memset(z90cMsg_p, 0, tmp_size);
- tgt_p = (unsigned char *)z90cMsg_p + CALLER_HEADER;
- memcpy(tgt_p, &static_type6_hdrX, sizeof(struct type6_hdr));
- tp6Hdr_p = (struct type6_hdr *)tgt_p;
- tp6Hdr_p->ToCardLen1 = total_CPRB_len;
- tp6Hdr_p->FromCardLen1 = RESPONSE_CPRBX_SIZE;
- memcpy(tp6Hdr_p->function_code, static_PKE_function_code,
- sizeof(static_PKE_function_code));
- tgt_p += sizeof(struct type6_hdr);
- memcpy(tgt_p, &static_cprbx, sizeof(struct CPRBX));
- cprbx_p = (struct CPRBX *) tgt_p;
- cprbx_p->domain = (unsigned short)cdx;
- cprbx_p->rpl_msgbl = RESPONSE_CPRBX_SIZE;
- tgt_p += sizeof(struct CPRBX);
- if (dev_type == PCIXCC_MCL2)
- memcpy(tgt_p, &static_pke_function_and_rulesX_MCL2,
- sizeof(struct function_and_rules_block));
- else
- memcpy(tgt_p, &static_pke_function_and_rulesX,
- sizeof(struct function_and_rules_block));
- tgt_p += sizeof(struct function_and_rules_block);
-
- tgt_p += 2;
- if (copy_from_user(tgt_p, icaMsg_p->inputdata, mod_len)) {
- kfree(temp_exp);
- return SEN_RELEASED;
- }
- if (is_empty(tgt_p, mod_len)) {
- kfree(temp_exp);
- return SEN_USER_ERROR;
- }
- tgt_p -= 2;
- *((short *)tgt_p) = (short) vud_len;
- tgt_p += vud_len;
- keyb_p = (struct T6_keyBlock_hdrX *)tgt_p;
- tgt_p += sizeof(struct T6_keyBlock_hdrX);
- memcpy(tgt_p, &static_public_key, sizeof(static_public_key));
- key_p = (struct cca_public_key *)tgt_p;
- temp = key_p->pubSec.exponent;
- memcpy(temp, exp_p, exp_len);
- kfree(temp_exp);
- temp += exp_len;
- if (copy_from_user(temp, icaMsg_p->n_modulus, mod_len))
- return SEN_RELEASED;
- if (is_empty(temp, mod_len))
- return SEN_USER_ERROR;
- key_p->pubSec.modulus_bit_len = 8 * mod_len;
- key_p->pubSec.modulus_byte_len = mod_len;
- key_p->pubSec.exponent_len = exp_len;
- key_p->pubSec.section_length = CALLER_HEADER + mod_len + exp_len;
- key_len = key_p->pubSec.section_length + sizeof(struct cca_token_hdr);
- key_p->pubHdr.token_length = key_len;
- key_len += 4;
- keyb_p->ulen = (unsigned short)key_len;
- key_len += 2;
- keyb_p->blen = (unsigned short)key_len;
- cprbx_p->req_parml = parmBlock_l;
- *z90cMsg_l_p = tmp_size - CALLER_HEADER;
-
- return 0;
-}
-
-static int
-ICACRT_msg_to_type6CRT_msgX(struct ica_rsa_modexpo_crt *icaMsg_p, int cdx,
- int *z90cMsg_l_p, struct type6_msg *z90cMsg_p,
- int dev_type)
-{
- int mod_len, vud_len, tmp_size, total_CPRB_len, parmBlock_l, short_len;
- int long_len, pad_len, keyPartsLen, tmp_l;
- unsigned char *tgt_p, *temp;
- struct type6_hdr *tp6Hdr_p;
- struct CPRBX *cprbx_p;
- struct cca_token_hdr *keyHdr_p;
- struct cca_pvt_ext_CRT_sec *pvtSec_p;
- struct cca_public_sec *pubSec_p;
-
- mod_len = icaMsg_p->inputdatalength;
- short_len = mod_len / 2;
- long_len = 8 + short_len;
- keyPartsLen = 3 * long_len + 2 * short_len;
- pad_len = (8 - (keyPartsLen % 8)) % 8;
- keyPartsLen += pad_len + mod_len;
- tmp_size = FIXED_TYPE6_CR_LENX + keyPartsLen + mod_len;
- total_CPRB_len = tmp_size - sizeof(struct type6_hdr);
- parmBlock_l = total_CPRB_len - sizeof(struct CPRBX);
- vud_len = 2 + mod_len;
- tmp_size = tmp_size + CALLER_HEADER;
- memset(z90cMsg_p, 0, tmp_size);
- tgt_p = (unsigned char *)z90cMsg_p + CALLER_HEADER;
- memcpy(tgt_p, &static_type6_hdrX, sizeof(struct type6_hdr));
- tp6Hdr_p = (struct type6_hdr *)tgt_p;
- tp6Hdr_p->ToCardLen1 = total_CPRB_len;
- tp6Hdr_p->FromCardLen1 = RESPONSE_CPRBX_SIZE;
- tgt_p += sizeof(struct type6_hdr);
- cprbx_p = (struct CPRBX *) tgt_p;
- memcpy(tgt_p, &static_cprbx, sizeof(struct CPRBX));
- cprbx_p->domain = (unsigned short)cdx;
- cprbx_p->req_parml = parmBlock_l;
- cprbx_p->rpl_msgbl = parmBlock_l;
- tgt_p += sizeof(struct CPRBX);
- if (dev_type == PCIXCC_MCL2)
- memcpy(tgt_p, &static_pkd_function_and_rulesX_MCL2,
- sizeof(struct function_and_rules_block));
- else
- memcpy(tgt_p, &static_pkd_function_and_rulesX,
- sizeof(struct function_and_rules_block));
- tgt_p += sizeof(struct function_and_rules_block);
- *((short *)tgt_p) = (short) vud_len;
- tgt_p += 2;
- if (copy_from_user(tgt_p, icaMsg_p->inputdata, mod_len))
- return SEN_RELEASED;
- if (is_empty(tgt_p, mod_len))
- return SEN_USER_ERROR;
- tgt_p += mod_len;
- tmp_l = sizeof(struct T6_keyBlock_hdr) + sizeof(struct cca_token_hdr) +
- sizeof(struct cca_pvt_ext_CRT_sec) + 0x0F + keyPartsLen;
- *((short *)tgt_p) = (short) tmp_l;
- temp = tgt_p + 2;
- tmp_l -= 2;
- *((short *)temp) = (short) tmp_l;
- tgt_p += sizeof(struct T6_keyBlock_hdr);
- keyHdr_p = (struct cca_token_hdr *)tgt_p;
- keyHdr_p->token_identifier = CCA_TKN_HDR_ID_EXT;
- tmp_l -= 4;
- keyHdr_p->token_length = tmp_l;
- tgt_p += sizeof(struct cca_token_hdr);
- pvtSec_p = (struct cca_pvt_ext_CRT_sec *)tgt_p;
- pvtSec_p->section_identifier = CCA_PVT_EXT_CRT_SEC_ID_PVT;
- pvtSec_p->section_length =
- sizeof(struct cca_pvt_ext_CRT_sec) + keyPartsLen;
- pvtSec_p->key_format = CCA_PVT_EXT_CRT_SEC_FMT_CL;
- pvtSec_p->key_use_flags[0] = CCA_PVT_USAGE_ALL;
- pvtSec_p->p_len = long_len;
- pvtSec_p->q_len = short_len;
- pvtSec_p->dp_len = long_len;
- pvtSec_p->dq_len = short_len;
- pvtSec_p->u_len = long_len;
- pvtSec_p->mod_len = mod_len;
- pvtSec_p->pad_len = pad_len;
- tgt_p += sizeof(struct cca_pvt_ext_CRT_sec);
- if (copy_from_user(tgt_p, icaMsg_p->np_prime, long_len))
- return SEN_RELEASED;
- if (is_empty(tgt_p, long_len))
- return SEN_USER_ERROR;
- tgt_p += long_len;
- if (copy_from_user(tgt_p, icaMsg_p->nq_prime, short_len))
- return SEN_RELEASED;
- if (is_empty(tgt_p, short_len))
- return SEN_USER_ERROR;
- tgt_p += short_len;
- if (copy_from_user(tgt_p, icaMsg_p->bp_key, long_len))
- return SEN_RELEASED;
- if (is_empty(tgt_p, long_len))
- return SEN_USER_ERROR;
- tgt_p += long_len;
- if (copy_from_user(tgt_p, icaMsg_p->bq_key, short_len))
- return SEN_RELEASED;
- if (is_empty(tgt_p, short_len))
- return SEN_USER_ERROR;
- tgt_p += short_len;
- if (copy_from_user(tgt_p, icaMsg_p->u_mult_inv, long_len))
- return SEN_RELEASED;
- if (is_empty(tgt_p, long_len))
- return SEN_USER_ERROR;
- tgt_p += long_len;
- tgt_p += pad_len;
- memset(tgt_p, 0xFF, mod_len);
- tgt_p += mod_len;
- memcpy(tgt_p, &static_cca_pub_sec, sizeof(struct cca_public_sec));
- pubSec_p = (struct cca_public_sec *) tgt_p;
- pubSec_p->modulus_bit_len = 8 * mod_len;
- *z90cMsg_l_p = tmp_size - CALLER_HEADER;
-
- return 0;
-}
-
-static int
-ICAMEX_msg_to_type50MEX_msg(struct ica_rsa_modexpo *icaMex_p, int *z90cMsg_l_p,
- union type50_msg *z90cMsg_p)
-{
- int mod_len, msg_size, mod_tgt_len, exp_tgt_len, inp_tgt_len;
- unsigned char *mod_tgt, *exp_tgt, *inp_tgt;
- union type50_msg *tmp_type50_msg;
-
- mod_len = icaMex_p->inputdatalength;
-
- msg_size = ((mod_len <= 128) ? TYPE50_MEB1_LEN : TYPE50_MEB2_LEN) +
- CALLER_HEADER;
-
- memset(z90cMsg_p, 0, msg_size);
-
- tmp_type50_msg = (union type50_msg *)
- ((unsigned char *) z90cMsg_p + CALLER_HEADER);
-
- tmp_type50_msg->meb1.header.msg_type_code = TYPE50_TYPE_CODE;
-
- if (mod_len <= 128) {
- tmp_type50_msg->meb1.header.msg_len = TYPE50_MEB1_LEN;
- tmp_type50_msg->meb1.keyblock_type = TYPE50_MEB1_FMT;
- mod_tgt = tmp_type50_msg->meb1.modulus;
- mod_tgt_len = sizeof(tmp_type50_msg->meb1.modulus);
- exp_tgt = tmp_type50_msg->meb1.exponent;
- exp_tgt_len = sizeof(tmp_type50_msg->meb1.exponent);
- inp_tgt = tmp_type50_msg->meb1.message;
- inp_tgt_len = sizeof(tmp_type50_msg->meb1.message);
- } else {
- tmp_type50_msg->meb2.header.msg_len = TYPE50_MEB2_LEN;
- tmp_type50_msg->meb2.keyblock_type = TYPE50_MEB2_FMT;
- mod_tgt = tmp_type50_msg->meb2.modulus;
- mod_tgt_len = sizeof(tmp_type50_msg->meb2.modulus);
- exp_tgt = tmp_type50_msg->meb2.exponent;
- exp_tgt_len = sizeof(tmp_type50_msg->meb2.exponent);
- inp_tgt = tmp_type50_msg->meb2.message;
- inp_tgt_len = sizeof(tmp_type50_msg->meb2.message);
- }
-
- mod_tgt += (mod_tgt_len - mod_len);
- if (copy_from_user(mod_tgt, icaMex_p->n_modulus, mod_len))
- return SEN_RELEASED;
- if (is_empty(mod_tgt, mod_len))
- return SEN_USER_ERROR;
- exp_tgt += (exp_tgt_len - mod_len);
- if (copy_from_user(exp_tgt, icaMex_p->b_key, mod_len))
- return SEN_RELEASED;
- if (is_empty(exp_tgt, mod_len))
- return SEN_USER_ERROR;
- inp_tgt += (inp_tgt_len - mod_len);
- if (copy_from_user(inp_tgt, icaMex_p->inputdata, mod_len))
- return SEN_RELEASED;
- if (is_empty(inp_tgt, mod_len))
- return SEN_USER_ERROR;
-
- *z90cMsg_l_p = msg_size - CALLER_HEADER;
-
- return 0;
-}
-
-static int
-ICACRT_msg_to_type50CRT_msg(struct ica_rsa_modexpo_crt *icaMsg_p,
- int *z90cMsg_l_p, union type50_msg *z90cMsg_p)
-{
- int mod_len, short_len, long_len, tmp_size, p_tgt_len, q_tgt_len,
- dp_tgt_len, dq_tgt_len, u_tgt_len, inp_tgt_len, long_offset;
- unsigned char *p_tgt, *q_tgt, *dp_tgt, *dq_tgt, *u_tgt, *inp_tgt,
- temp[8];
- union type50_msg *tmp_type50_msg;
-
- mod_len = icaMsg_p->inputdatalength;
- short_len = mod_len / 2;
- long_len = mod_len / 2 + 8;
- long_offset = 0;
-
- if (long_len > 128) {
- memset(temp, 0x00, sizeof(temp));
- if (copy_from_user(temp, icaMsg_p->np_prime, long_len-128))
- return SEN_RELEASED;
- if (!is_empty(temp, 8))
- return SEN_NOT_AVAIL;
- if (copy_from_user(temp, icaMsg_p->bp_key, long_len-128))
- return SEN_RELEASED;
- if (!is_empty(temp, 8))
- return SEN_NOT_AVAIL;
- if (copy_from_user(temp, icaMsg_p->u_mult_inv, long_len-128))
- return SEN_RELEASED;
- if (!is_empty(temp, 8))
- return SEN_NOT_AVAIL;
- long_offset = long_len - 128;
- long_len = 128;
- }
-
- tmp_size = ((long_len <= 64) ? TYPE50_CRB1_LEN : TYPE50_CRB2_LEN) +
- CALLER_HEADER;
-
- memset(z90cMsg_p, 0, tmp_size);
-
- tmp_type50_msg = (union type50_msg *)
- ((unsigned char *) z90cMsg_p + CALLER_HEADER);
-
- tmp_type50_msg->crb1.header.msg_type_code = TYPE50_TYPE_CODE;
- if (long_len <= 64) {
- tmp_type50_msg->crb1.header.msg_len = TYPE50_CRB1_LEN;
- tmp_type50_msg->crb1.keyblock_type = TYPE50_CRB1_FMT;
- p_tgt = tmp_type50_msg->crb1.p;
- p_tgt_len = sizeof(tmp_type50_msg->crb1.p);
- q_tgt = tmp_type50_msg->crb1.q;
- q_tgt_len = sizeof(tmp_type50_msg->crb1.q);
- dp_tgt = tmp_type50_msg->crb1.dp;
- dp_tgt_len = sizeof(tmp_type50_msg->crb1.dp);
- dq_tgt = tmp_type50_msg->crb1.dq;
- dq_tgt_len = sizeof(tmp_type50_msg->crb1.dq);
- u_tgt = tmp_type50_msg->crb1.u;
- u_tgt_len = sizeof(tmp_type50_msg->crb1.u);
- inp_tgt = tmp_type50_msg->crb1.message;
- inp_tgt_len = sizeof(tmp_type50_msg->crb1.message);
- } else {
- tmp_type50_msg->crb2.header.msg_len = TYPE50_CRB2_LEN;
- tmp_type50_msg->crb2.keyblock_type = TYPE50_CRB2_FMT;
- p_tgt = tmp_type50_msg->crb2.p;
- p_tgt_len = sizeof(tmp_type50_msg->crb2.p);
- q_tgt = tmp_type50_msg->crb2.q;
- q_tgt_len = sizeof(tmp_type50_msg->crb2.q);
- dp_tgt = tmp_type50_msg->crb2.dp;
- dp_tgt_len = sizeof(tmp_type50_msg->crb2.dp);
- dq_tgt = tmp_type50_msg->crb2.dq;
- dq_tgt_len = sizeof(tmp_type50_msg->crb2.dq);
- u_tgt = tmp_type50_msg->crb2.u;
- u_tgt_len = sizeof(tmp_type50_msg->crb2.u);
- inp_tgt = tmp_type50_msg->crb2.message;
- inp_tgt_len = sizeof(tmp_type50_msg->crb2.message);
- }
-
- p_tgt += (p_tgt_len - long_len);
- if (copy_from_user(p_tgt, icaMsg_p->np_prime + long_offset, long_len))
- return SEN_RELEASED;
- if (is_empty(p_tgt, long_len))
- return SEN_USER_ERROR;
- q_tgt += (q_tgt_len - short_len);
- if (copy_from_user(q_tgt, icaMsg_p->nq_prime, short_len))
- return SEN_RELEASED;
- if (is_empty(q_tgt, short_len))
- return SEN_USER_ERROR;
- dp_tgt += (dp_tgt_len - long_len);
- if (copy_from_user(dp_tgt, icaMsg_p->bp_key + long_offset, long_len))
- return SEN_RELEASED;
- if (is_empty(dp_tgt, long_len))
- return SEN_USER_ERROR;
- dq_tgt += (dq_tgt_len - short_len);
- if (copy_from_user(dq_tgt, icaMsg_p->bq_key, short_len))
- return SEN_RELEASED;
- if (is_empty(dq_tgt, short_len))
- return SEN_USER_ERROR;
- u_tgt += (u_tgt_len - long_len);
- if (copy_from_user(u_tgt, icaMsg_p->u_mult_inv + long_offset, long_len))
- return SEN_RELEASED;
- if (is_empty(u_tgt, long_len))
- return SEN_USER_ERROR;
- inp_tgt += (inp_tgt_len - mod_len);
- if (copy_from_user(inp_tgt, icaMsg_p->inputdata, mod_len))
- return SEN_RELEASED;
- if (is_empty(inp_tgt, mod_len))
- return SEN_USER_ERROR;
-
- *z90cMsg_l_p = tmp_size - CALLER_HEADER;
-
- return 0;
-}
-
-int
-convert_request(unsigned char *buffer, int func, unsigned short function,
- int cdx, int dev_type, int *msg_l_p, unsigned char *msg_p)
-{
- if (dev_type == PCICA) {
- if (func == ICARSACRT)
- return ICACRT_msg_to_type4CRT_msg(
- (struct ica_rsa_modexpo_crt *) buffer,
- msg_l_p, (union type4_msg *) msg_p);
- else
- return ICAMEX_msg_to_type4MEX_msg(
- (struct ica_rsa_modexpo *) buffer,
- msg_l_p, (union type4_msg *) msg_p);
- }
- if (dev_type == PCICC) {
- if (func == ICARSACRT)
- return ICACRT_msg_to_type6CRT_msg(
- (struct ica_rsa_modexpo_crt *) buffer,
- cdx, msg_l_p, (struct type6_msg *)msg_p);
- if (function == PCI_FUNC_KEY_ENCRYPT)
- return ICAMEX_msg_to_type6MEX_en_msg(
- (struct ica_rsa_modexpo *) buffer,
- cdx, msg_l_p, (struct type6_msg *) msg_p);
- else
- return ICAMEX_msg_to_type6MEX_de_msg(
- (struct ica_rsa_modexpo *) buffer,
- cdx, msg_l_p, (struct type6_msg *) msg_p);
- }
- if ((dev_type == PCIXCC_MCL2) ||
- (dev_type == PCIXCC_MCL3) ||
- (dev_type == CEX2C)) {
- if (func == ICARSACRT)
- return ICACRT_msg_to_type6CRT_msgX(
- (struct ica_rsa_modexpo_crt *) buffer,
- cdx, msg_l_p, (struct type6_msg *) msg_p,
- dev_type);
- else
- return ICAMEX_msg_to_type6MEX_msgX(
- (struct ica_rsa_modexpo *) buffer,
- cdx, msg_l_p, (struct type6_msg *) msg_p,
- dev_type);
- }
- if (dev_type == CEX2A) {
- if (func == ICARSACRT)
- return ICACRT_msg_to_type50CRT_msg(
- (struct ica_rsa_modexpo_crt *) buffer,
- msg_l_p, (union type50_msg *) msg_p);
- else
- return ICAMEX_msg_to_type50MEX_msg(
- (struct ica_rsa_modexpo *) buffer,
- msg_l_p, (union type50_msg *) msg_p);
- }
-
- return 0;
-}
-
-int ext_bitlens_msg_count = 0;
-static inline void
-unset_ext_bitlens(void)
-{
- if (!ext_bitlens_msg_count) {
- PRINTK("Unable to use coprocessors for extended bitlengths. "
- "Using PCICAs/CEX2As (if present) for extended "
- "bitlengths. This is not an error.\n");
- ext_bitlens_msg_count++;
- }
- ext_bitlens = 0;
-}
-
-int
-convert_response(unsigned char *response, unsigned char *buffer,
- int *respbufflen_p, unsigned char *resp_buff)
-{
- struct ica_rsa_modexpo *icaMsg_p = (struct ica_rsa_modexpo *) buffer;
- struct error_hdr *errh_p = (struct error_hdr *) response;
- struct type80_hdr *t80h_p = (struct type80_hdr *) response;
- struct type84_hdr *t84h_p = (struct type84_hdr *) response;
- struct type86_fmt2_msg *t86m_p = (struct type86_fmt2_msg *) response;
- int reply_code, service_rc, service_rs, src_l;
- unsigned char *src_p, *tgt_p;
- struct CPRB *cprb_p;
- struct CPRBX *cprbx_p;
-
- src_p = 0;
- reply_code = 0;
- service_rc = 0;
- service_rs = 0;
- src_l = 0;
- switch (errh_p->type) {
- case TYPE82_RSP_CODE:
- case TYPE88_RSP_CODE:
- reply_code = errh_p->reply_code;
- src_p = (unsigned char *)errh_p;
- PRINTK("Hardware error: Type %02X Message Header: "
- "%02x%02x%02x%02x%02x%02x%02x%02x\n",
- errh_p->type,
- src_p[0], src_p[1], src_p[2], src_p[3],
- src_p[4], src_p[5], src_p[6], src_p[7]);
- break;
- case TYPE80_RSP_CODE:
- src_l = icaMsg_p->outputdatalength;
- src_p = response + (int)t80h_p->len - src_l;
- break;
- case TYPE84_RSP_CODE:
- src_l = icaMsg_p->outputdatalength;
- src_p = response + (int)t84h_p->len - src_l;
- break;
- case TYPE86_RSP_CODE:
- reply_code = t86m_p->header.reply_code;
- if (reply_code != 0)
- break;
- cprb_p = (struct CPRB *)
- (response + sizeof(struct type86_fmt2_msg));
- cprbx_p = (struct CPRBX *) cprb_p;
- if (cprb_p->cprb_ver_id != 0x02) {
- le2toI(cprb_p->ccp_rtcode, &service_rc);
- if (service_rc != 0) {
- le2toI(cprb_p->ccp_rscode, &service_rs);
- if ((service_rc == 8) && (service_rs == 66))
- PDEBUG("Bad block format on PCICC\n");
- else if ((service_rc == 8) && (service_rs == 65))
- PDEBUG("Probably an even modulus on "
- "PCICC\n");
- else if ((service_rc == 8) && (service_rs == 770)) {
- PDEBUG("Invalid key length on PCICC\n");
- unset_ext_bitlens();
- return REC_USE_PCICA;
- }
- else if ((service_rc == 8) && (service_rs == 783)) {
- PDEBUG("Extended bitlengths not enabled"
- "on PCICC\n");
- unset_ext_bitlens();
- return REC_USE_PCICA;
- }
- else
- PRINTK("service rc/rs (PCICC): %d/%d\n",
- service_rc, service_rs);
- return REC_OPERAND_INV;
- }
- src_p = (unsigned char *)cprb_p + sizeof(struct CPRB);
- src_p += 4;
- le2toI(src_p, &src_l);
- src_l -= 2;
- src_p += 2;
- } else {
- service_rc = (int)cprbx_p->ccp_rtcode;
- if (service_rc != 0) {
- service_rs = (int) cprbx_p->ccp_rscode;
- if ((service_rc == 8) && (service_rs == 66))
- PDEBUG("Bad block format on PCIXCC\n");
- else if ((service_rc == 8) && (service_rs == 65))
- PDEBUG("Probably an even modulus on "
- "PCIXCC\n");
- else if ((service_rc == 8) && (service_rs == 770)) {
- PDEBUG("Invalid key length on PCIXCC\n");
- unset_ext_bitlens();
- return REC_USE_PCICA;
- }
- else if ((service_rc == 8) && (service_rs == 783)) {
- PDEBUG("Extended bitlengths not enabled"
- "on PCIXCC\n");
- unset_ext_bitlens();
- return REC_USE_PCICA;
- }
- else
- PRINTK("service rc/rs (PCIXCC): %d/%d\n",
- service_rc, service_rs);
- return REC_OPERAND_INV;
- }
- src_p = (unsigned char *)
- cprbx_p + sizeof(struct CPRBX);
- src_p += 4;
- src_l = (int)(*((short *) src_p));
- src_l -= 2;
- src_p += 2;
- }
- break;
- default:
- src_p = (unsigned char *)errh_p;
- PRINTK("Unrecognized Message Header: "
- "%02x%02x%02x%02x%02x%02x%02x%02x\n",
- src_p[0], src_p[1], src_p[2], src_p[3],
- src_p[4], src_p[5], src_p[6], src_p[7]);
- return REC_BAD_MESSAGE;
- }
-
- if (reply_code)
- switch (reply_code) {
- case REP82_ERROR_MACHINE_FAILURE:
- if (errh_p->type == TYPE82_RSP_CODE)
- PRINTKW("Machine check failure\n");
- else
- PRINTKW("Module failure\n");
- return REC_HARDWAR_ERR;
- case REP82_ERROR_OPERAND_INVALID:
- return REC_OPERAND_INV;
- case REP88_ERROR_MESSAGE_MALFORMD:
- PRINTKW("Message malformed\n");
- return REC_OPERAND_INV;
- case REP82_ERROR_OPERAND_SIZE:
- return REC_OPERAND_SIZE;
- case REP82_ERROR_EVEN_MOD_IN_OPND:
- return REC_EVEN_MOD;
- case REP82_ERROR_MESSAGE_TYPE:
- return WRONG_DEVICE_TYPE;
- case REP82_ERROR_TRANSPORT_FAIL:
- PRINTKW("Transport failed (APFS = %02X%02X%02X%02X)\n",
- t86m_p->apfs[0], t86m_p->apfs[1],
- t86m_p->apfs[2], t86m_p->apfs[3]);
- return REC_HARDWAR_ERR;
- default:
- PRINTKW("reply code = %d\n", reply_code);
- return REC_HARDWAR_ERR;
- }
-
- if (service_rc != 0)
- return REC_OPERAND_INV;
-
- if ((src_l > icaMsg_p->outputdatalength) ||
- (src_l > RESPBUFFSIZE) ||
- (src_l <= 0))
- return REC_OPERAND_SIZE;
-
- PDEBUG("Length returned = %d\n", src_l);
- tgt_p = resp_buff + icaMsg_p->outputdatalength - src_l;
- memcpy(tgt_p, src_p, src_l);
- if ((errh_p->type == TYPE86_RSP_CODE) && (resp_buff < tgt_p)) {
- memset(resp_buff, 0, icaMsg_p->outputdatalength - src_l);
- if (pad_msg(resp_buff, icaMsg_p->outputdatalength, src_l))
- return REC_INVALID_PAD;
- }
- *respbufflen_p = icaMsg_p->outputdatalength;
- if (*respbufflen_p == 0)
- PRINTK("Zero *respbufflen_p\n");
-
- return 0;
-}
-
diff --git a/drivers/s390/crypto/z90main.c b/drivers/s390/crypto/z90main.c
deleted file mode 100644
index b2f20ab8431..00000000000
--- a/drivers/s390/crypto/z90main.c
+++ /dev/null
@@ -1,3379 +0,0 @@
-/*
- * linux/drivers/s390/crypto/z90main.c
- *
- * z90crypt 1.3.3
- *
- * Copyright (C) 2001, 2005 IBM Corporation
- * Author(s): Robert Burroughs (burrough@us.ibm.com)
- * Eric Rossman (edrossma@us.ibm.com)
- *
- * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License as published by
- * the Free Software Foundation; either version 2, or (at your option)
- * any later version.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program; if not, write to the Free Software
- * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
- */
-
-#include <asm/uaccess.h> // copy_(from|to)_user
-#include <linux/compat.h>
-#include <linux/compiler.h>
-#include <linux/delay.h> // mdelay
-#include <linux/init.h>
-#include <linux/interrupt.h> // for tasklets
-#include <linux/miscdevice.h>
-#include <linux/module.h>
-#include <linux/moduleparam.h>
-#include <linux/proc_fs.h>
-#include <linux/syscalls.h>
-#include "z90crypt.h"
-#include "z90common.h"
-
-/**
- * Defaults that may be modified.
- */
-
-/**
- * You can specify a different minor at compile time.
- */
-#ifndef Z90CRYPT_MINOR
-#define Z90CRYPT_MINOR MISC_DYNAMIC_MINOR
-#endif
-
-/**
- * You can specify a different domain at compile time or on the insmod
- * command line.
- */
-#ifndef DOMAIN_INDEX
-#define DOMAIN_INDEX -1
-#endif
-
-/**
- * This is the name under which the device is registered in /proc/modules.
- */
-#define REG_NAME "z90crypt"
-
-/**
- * Cleanup should run every CLEANUPTIME seconds and should clean up requests
- * older than CLEANUPTIME seconds in the past.
- */
-#ifndef CLEANUPTIME
-#define CLEANUPTIME 15
-#endif
-
-/**
- * Config should run every CONFIGTIME seconds
- */
-#ifndef CONFIGTIME
-#define CONFIGTIME 30
-#endif
-
-/**
- * The first execution of the config task should take place
- * immediately after initialization
- */
-#ifndef INITIAL_CONFIGTIME
-#define INITIAL_CONFIGTIME 1
-#endif
-
-/**
- * Reader should run every READERTIME milliseconds
- * With the 100Hz patch for s390, z90crypt can lock the system solid while
- * under heavy load. We'll try to avoid that.
- */
-#ifndef READERTIME
-#if HZ > 1000
-#define READERTIME 2
-#else
-#define READERTIME 10
-#endif
-#endif
-
-/**
- * turn long device array index into device pointer
- */
-#define LONG2DEVPTR(ndx) (z90crypt.device_p[(ndx)])
-
-/**
- * turn short device array index into long device array index
- */
-#define SHRT2LONG(ndx) (z90crypt.overall_device_x.device_index[(ndx)])
-
-/**
- * turn short device array index into device pointer
- */
-#define SHRT2DEVPTR(ndx) LONG2DEVPTR(SHRT2LONG(ndx))
-
-/**
- * Status for a work-element
- */
-#define STAT_DEFAULT 0x00 // request has not been processed
-
-#define STAT_ROUTED 0x80 // bit 7: requests get routed to specific device
- // else, device is determined each write
-#define STAT_FAILED 0x40 // bit 6: this bit is set if the request failed
- // before being sent to the hardware.
-#define STAT_WRITTEN 0x30 // bits 5-4: work to be done, not sent to device
-// 0x20 // UNUSED state
-#define STAT_READPEND 0x10 // bits 5-4: work done, we're returning data now
-#define STAT_NOWORK 0x00 // bits off: no work on any queue
-#define STAT_RDWRMASK 0x30 // mask for bits 5-4
-
-/**
- * Macros to check the status RDWRMASK
- */
-#define CHK_RDWRMASK(statbyte) ((statbyte) & STAT_RDWRMASK)
-#define SET_RDWRMASK(statbyte, newval) \
- {(statbyte) &= ~STAT_RDWRMASK; (statbyte) |= newval;}
-
-/**
- * Audit Trail. Progress of a Work element
- * audit[0]: Unless noted otherwise, these bits are all set by the process
- */
-#define FP_COPYFROM 0x80 // Caller's buffer has been copied to work element
-#define FP_BUFFREQ 0x40 // Low Level buffer requested
-#define FP_BUFFGOT 0x20 // Low Level buffer obtained
-#define FP_SENT 0x10 // Work element sent to a crypto device
- // (may be set by process or by reader task)
-#define FP_PENDING 0x08 // Work element placed on pending queue
- // (may be set by process or by reader task)
-#define FP_REQUEST 0x04 // Work element placed on request queue
-#define FP_ASLEEP 0x02 // Work element about to sleep
-#define FP_AWAKE 0x01 // Work element has been awakened
-
-/**
- * audit[1]: These bits are set by the reader task and/or the cleanup task
- */
-#define FP_NOTPENDING 0x80 // Work element removed from pending queue
-#define FP_AWAKENING 0x40 // Caller about to be awakened
-#define FP_TIMEDOUT 0x20 // Caller timed out
-#define FP_RESPSIZESET 0x10 // Response size copied to work element
-#define FP_RESPADDRCOPIED 0x08 // Response address copied to work element
-#define FP_RESPBUFFCOPIED 0x04 // Response buffer copied to work element
-#define FP_REMREQUEST 0x02 // Work element removed from request queue
-#define FP_SIGNALED 0x01 // Work element was awakened by a signal
-
-/**
- * audit[2]: unused
- */
-
-/**
- * state of the file handle in private_data.status
- */
-#define STAT_OPEN 0
-#define STAT_CLOSED 1
-
-/**
- * PID() expands to the process ID of the current process
- */
-#define PID() (current->pid)
-
-/**
- * Selected Constants. The number of APs and the number of devices
- */
-#ifndef Z90CRYPT_NUM_APS
-#define Z90CRYPT_NUM_APS 64
-#endif
-#ifndef Z90CRYPT_NUM_DEVS
-#define Z90CRYPT_NUM_DEVS Z90CRYPT_NUM_APS
-#endif
-
-/**
- * Buffer size for receiving responses. The maximum Response Size
- * is actually the maximum request size, since in an error condition
- * the request itself may be returned unchanged.
- */
-#define MAX_RESPONSE_SIZE 0x0000077C
-
-/**
- * A count and status-byte mask
- */
-struct status {
- int st_count; // # of enabled devices
- int disabled_count; // # of disabled devices
- int user_disabled_count; // # of devices disabled via proc fs
- unsigned char st_mask[Z90CRYPT_NUM_APS]; // current status mask
-};
-
-/**
- * The array of device indexes is a mechanism for fast indexing into
- * a long (and sparse) array. For instance, if APs 3, 9 and 47 are
- * installed, z90CDeviceIndex[0] is 3, z90CDeviceIndex[1] is 9, and
- * z90CDeviceIndex[2] is 47.
- */
-struct device_x {
- int device_index[Z90CRYPT_NUM_DEVS];
-};
-
-/**
- * All devices are arranged in a single array: 64 APs
- */
-struct device {
- int dev_type; // PCICA, PCICC, PCIXCC_MCL2,
- // PCIXCC_MCL3, CEX2C, CEX2A
- enum devstat dev_stat; // current device status
- int dev_self_x; // Index in array
- int disabled; // Set when device is in error
- int user_disabled; // Set when device is disabled by user
- int dev_q_depth; // q depth
- unsigned char * dev_resp_p; // Response buffer address
- int dev_resp_l; // Response Buffer length
- int dev_caller_count; // Number of callers
- int dev_total_req_cnt; // # requests for device since load
- struct list_head dev_caller_list; // List of callers
-};
-
-/**
- * There's a struct status and a struct device_x for each device type.
- */
-struct hdware_block {
- struct status hdware_mask;
- struct status type_mask[Z90CRYPT_NUM_TYPES];
- struct device_x type_x_addr[Z90CRYPT_NUM_TYPES];
- unsigned char device_type_array[Z90CRYPT_NUM_APS];
-};
-
-/**
- * z90crypt is the topmost data structure in the hierarchy.
- */
-struct z90crypt {
- int max_count; // Nr of possible crypto devices
- struct status mask;
- int q_depth_array[Z90CRYPT_NUM_DEVS];
- int dev_type_array[Z90CRYPT_NUM_DEVS];
- struct device_x overall_device_x; // array device indexes
- struct device * device_p[Z90CRYPT_NUM_DEVS];
- int terminating;
- int domain_established;// TRUE: domain has been found
- int cdx; // Crypto Domain Index
- int len; // Length of this data structure
- struct hdware_block *hdware_info;
-};
-
-/**
- * An array of these structures is pointed to from dev_caller
- * The length of the array depends on the device type. For APs,
- * there are 8.
- *
- * The caller buffer is allocated to the user at OPEN. At WRITE,
- * it contains the request; at READ, the response. The function
- * send_to_crypto_device converts the request to device-dependent
- * form and use the caller's OPEN-allocated buffer for the response.
- *
- * For the contents of caller_dev_dep_req and caller_dev_dep_req_p
- * because that points to it, see the discussion in z90hardware.c.
- * Search for "extended request message block".
- */
-struct caller {
- int caller_buf_l; // length of original request
- unsigned char * caller_buf_p; // Original request on WRITE
- int caller_dev_dep_req_l; // len device dependent request
- unsigned char * caller_dev_dep_req_p; // Device dependent form
- unsigned char caller_id[8]; // caller-supplied message id
- struct list_head caller_liste;
- unsigned char caller_dev_dep_req[MAX_RESPONSE_SIZE];
-};
-
-/**
- * Function prototypes from z90hardware.c
- */
-enum hdstat query_online(int deviceNr, int cdx, int resetNr, int *q_depth,
- int *dev_type);
-enum devstat reset_device(int deviceNr, int cdx, int resetNr);
-enum devstat send_to_AP(int dev_nr, int cdx, int msg_len, unsigned char *msg_ext);
-enum devstat receive_from_AP(int dev_nr, int cdx, int resplen,
- unsigned char *resp, unsigned char *psmid);
-int convert_request(unsigned char *buffer, int func, unsigned short function,
- int cdx, int dev_type, int *msg_l_p, unsigned char *msg_p);
-int convert_response(unsigned char *response, unsigned char *buffer,
- int *respbufflen_p, unsigned char *resp_buff);
-
-/**
- * Low level function prototypes
- */
-static int create_z90crypt(int *cdx_p);
-static int refresh_z90crypt(int *cdx_p);
-static int find_crypto_devices(struct status *deviceMask);
-static int create_crypto_device(int index);
-static int destroy_crypto_device(int index);
-static void destroy_z90crypt(void);
-static int refresh_index_array(struct status *status_str,
- struct device_x *index_array);
-static int probe_device_type(struct device *devPtr);
-static int probe_PCIXCC_type(struct device *devPtr);
-
-/**
- * proc fs definitions
- */
-static struct proc_dir_entry *z90crypt_entry;
-
-/**
- * data structures
- */
-
-/**
- * work_element.opener points back to this structure
- */
-struct priv_data {
- pid_t opener_pid;
- unsigned char status; // 0: open 1: closed
-};
-
-/**
- * A work element is allocated for each request
- */
-struct work_element {
- struct priv_data *priv_data;
- pid_t pid;
- int devindex; // index of device processing this w_e
- // (If request did not specify device,
- // -1 until placed onto a queue)
- int devtype;
- struct list_head liste; // used for requestq and pendingq
- char buffer[128]; // local copy of user request
- int buff_size; // size of the buffer for the request
- char resp_buff[RESPBUFFSIZE];
- int resp_buff_size;
- char __user * resp_addr; // address of response in user space
- unsigned int funccode; // function code of request
- wait_queue_head_t waitq;
- unsigned long requestsent; // time at which the request was sent
- atomic_t alarmrung; // wake-up signal
- unsigned char caller_id[8]; // pid + counter, for this w_e
- unsigned char status[1]; // bits to mark status of the request
- unsigned char audit[3]; // record of work element's progress
- unsigned char * requestptr; // address of request buffer
- int retcode; // return code of request
-};
-
-/**
- * High level function prototypes
- */
-static int z90crypt_open(struct inode *, struct file *);
-static int z90crypt_release(struct inode *, struct file *);
-static ssize_t z90crypt_read(struct file *, char __user *, size_t, loff_t *);
-static ssize_t z90crypt_write(struct file *, const char __user *,
- size_t, loff_t *);
-static long z90crypt_unlocked_ioctl(struct file *, unsigned int, unsigned long);
-static long z90crypt_compat_ioctl(struct file *, unsigned int, unsigned long);
-
-static void z90crypt_reader_task(unsigned long);
-static void z90crypt_schedule_reader_task(unsigned long);
-static void z90crypt_config_task(unsigned long);
-static void z90crypt_cleanup_task(unsigned long);
-
-static int z90crypt_status(char *, char **, off_t, int, int *, void *);
-static int z90crypt_status_write(struct file *, const char __user *,
- unsigned long, void *);
-
-/**
- * Storage allocated at initialization and used throughout the life of
- * this insmod
- */
-static int domain = DOMAIN_INDEX;
-static struct z90crypt z90crypt;
-static int quiesce_z90crypt;
-static spinlock_t queuespinlock;
-static struct list_head request_list;
-static int requestq_count;
-static struct list_head pending_list;
-static int pendingq_count;
-
-static struct tasklet_struct reader_tasklet;
-static struct timer_list reader_timer;
-static struct timer_list config_timer;
-static struct timer_list cleanup_timer;
-static atomic_t total_open;
-static atomic_t z90crypt_step;
-
-static struct file_operations z90crypt_fops = {
- .owner = THIS_MODULE,
- .read = z90crypt_read,
- .write = z90crypt_write,
- .unlocked_ioctl = z90crypt_unlocked_ioctl,
-#ifdef CONFIG_COMPAT
- .compat_ioctl = z90crypt_compat_ioctl,
-#endif
- .open = z90crypt_open,
- .release = z90crypt_release
-};
-
-static struct miscdevice z90crypt_misc_device = {
- .minor = Z90CRYPT_MINOR,
- .name = DEV_NAME,
- .fops = &z90crypt_fops,
-};
-
-/**
- * Documentation values.
- */
-MODULE_AUTHOR("zSeries Linux Crypto Team: Robert H. Burroughs, Eric D. Rossman"
- "and Jochen Roehrig");
-MODULE_DESCRIPTION("zSeries Linux Cryptographic Coprocessor device driver, "
- "Copyright 2001, 2005 IBM Corporation");
-MODULE_LICENSE("GPL");
-module_param(domain, int, 0);
-MODULE_PARM_DESC(domain, "domain index for device");
-
-#ifdef CONFIG_COMPAT
-/**
- * ioctl32 conversion routines
- */
-struct ica_rsa_modexpo_32 { // For 32-bit callers
- compat_uptr_t inputdata;
- unsigned int inputdatalength;
- compat_uptr_t outputdata;
- unsigned int outputdatalength;
- compat_uptr_t b_key;
- compat_uptr_t n_modulus;
-};
-
-static long
-trans_modexpo32(struct file *filp, unsigned int cmd, unsigned long arg)
-{
- struct ica_rsa_modexpo_32 __user *mex32u = compat_ptr(arg);
- struct ica_rsa_modexpo_32 mex32k;
- struct ica_rsa_modexpo __user *mex64;
- long ret = 0;
- unsigned int i;
-
- if (!access_ok(VERIFY_WRITE, mex32u, sizeof(struct ica_rsa_modexpo_32)))
- return -EFAULT;
- mex64 = compat_alloc_user_space(sizeof(struct ica_rsa_modexpo));
- if (!access_ok(VERIFY_WRITE, mex64, sizeof(struct ica_rsa_modexpo)))
- return -EFAULT;
- if (copy_from_user(&mex32k, mex32u, sizeof(struct ica_rsa_modexpo_32)))
- return -EFAULT;
- if (__put_user(compat_ptr(mex32k.inputdata), &mex64->inputdata) ||
- __put_user(mex32k.inputdatalength, &mex64->inputdatalength) ||
- __put_user(compat_ptr(mex32k.outputdata), &mex64->outputdata) ||
- __put_user(mex32k.outputdatalength, &mex64->outputdatalength) ||
- __put_user(compat_ptr(mex32k.b_key), &mex64->b_key) ||
- __put_user(compat_ptr(mex32k.n_modulus), &mex64->n_modulus))
- return -EFAULT;
- ret = z90crypt_unlocked_ioctl(filp, cmd, (unsigned long)mex64);
- if (!ret)
- if (__get_user(i, &mex64->outputdatalength) ||
- __put_user(i, &mex32u->outputdatalength))
- ret = -EFAULT;
- return ret;
-}
-
-struct ica_rsa_modexpo_crt_32 { // For 32-bit callers
- compat_uptr_t inputdata;
- unsigned int inputdatalength;
- compat_uptr_t outputdata;
- unsigned int outputdatalength;
- compat_uptr_t bp_key;
- compat_uptr_t bq_key;
- compat_uptr_t np_prime;
- compat_uptr_t nq_prime;
- compat_uptr_t u_mult_inv;
-};
-
-static long
-trans_modexpo_crt32(struct file *filp, unsigned int cmd, unsigned long arg)
-{
- struct ica_rsa_modexpo_crt_32 __user *crt32u = compat_ptr(arg);
- struct ica_rsa_modexpo_crt_32 crt32k;
- struct ica_rsa_modexpo_crt __user *crt64;
- long ret = 0;
- unsigned int i;
-
- if (!access_ok(VERIFY_WRITE, crt32u,
- sizeof(struct ica_rsa_modexpo_crt_32)))
- return -EFAULT;
- crt64 = compat_alloc_user_space(sizeof(struct ica_rsa_modexpo_crt));
- if (!access_ok(VERIFY_WRITE, crt64, sizeof(struct ica_rsa_modexpo_crt)))
- return -EFAULT;
- if (copy_from_user(&crt32k, crt32u,
- sizeof(struct ica_rsa_modexpo_crt_32)))
- return -EFAULT;
- if (__put_user(compat_ptr(crt32k.inputdata), &crt64->inputdata) ||
- __put_user(crt32k.inputdatalength, &crt64->inputdatalength) ||
- __put_user(compat_ptr(crt32k.outputdata), &crt64->outputdata) ||
- __put_user(crt32k.outputdatalength, &crt64->outputdatalength) ||
- __put_user(compat_ptr(crt32k.bp_key), &crt64->bp_key) ||
- __put_user(compat_ptr(crt32k.bq_key), &crt64->bq_key) ||
- __put_user(compat_ptr(crt32k.np_prime), &crt64->np_prime) ||
- __put_user(compat_ptr(crt32k.nq_prime), &crt64->nq_prime) ||
- __put_user(compat_ptr(crt32k.u_mult_inv), &crt64->u_mult_inv))
- return -EFAULT;
- ret = z90crypt_unlocked_ioctl(filp, cmd, (unsigned long)crt64);
- if (!ret)
- if (__get_user(i, &crt64->outputdatalength) ||
- __put_user(i, &crt32u->outputdatalength))
- ret = -EFAULT;
- return ret;
-}
-
-static long
-z90crypt_compat_ioctl(struct file *filp, unsigned int cmd, unsigned long arg)
-{
- switch (cmd) {
- case ICAZ90STATUS:
- case Z90QUIESCE:
- case Z90STAT_TOTALCOUNT:
- case Z90STAT_PCICACOUNT:
- case Z90STAT_PCICCCOUNT:
- case Z90STAT_PCIXCCCOUNT:
- case Z90STAT_PCIXCCMCL2COUNT:
- case Z90STAT_PCIXCCMCL3COUNT:
- case Z90STAT_CEX2CCOUNT:
- case Z90STAT_REQUESTQ_COUNT:
- case Z90STAT_PENDINGQ_COUNT:
- case Z90STAT_TOTALOPEN_COUNT:
- case Z90STAT_DOMAIN_INDEX:
- case Z90STAT_STATUS_MASK:
- case Z90STAT_QDEPTH_MASK:
- case Z90STAT_PERDEV_REQCNT:
- return z90crypt_unlocked_ioctl(filp, cmd, arg);
- case ICARSAMODEXPO:
- return trans_modexpo32(filp, cmd, arg);
- case ICARSACRT:
- return trans_modexpo_crt32(filp, cmd, arg);
- default:
- return -ENOIOCTLCMD;
- }
-}
-#endif
-
-/**
- * The module initialization code.
- */
-static int __init
-z90crypt_init_module(void)
-{
- int result, nresult;
- struct proc_dir_entry *entry;
-
- PDEBUG("PID %d\n", PID());
-
- if ((domain < -1) || (domain > 15)) {
- PRINTKW("Invalid param: domain = %d. Not loading.\n", domain);
- return -EINVAL;
- }
-
- /* Register as misc device with given minor (or get a dynamic one). */
- result = misc_register(&z90crypt_misc_device);
- if (result < 0) {
- PRINTKW(KERN_ERR "misc_register (minor %d) failed with %d\n",
- z90crypt_misc_device.minor, result);
- return result;
- }
-
- PDEBUG("Registered " DEV_NAME " with result %d\n", result);
-
- result = create_z90crypt(&domain);
- if (result != 0) {
- PRINTKW("create_z90crypt (domain index %d) failed with %d.\n",
- domain, result);
- result = -ENOMEM;
- goto init_module_cleanup;
- }
-
- if (result == 0) {
- PRINTKN("Version %d.%d.%d loaded, built on %s %s\n",
- z90crypt_VERSION, z90crypt_RELEASE, z90crypt_VARIANT,
- __DATE__, __TIME__);
- PDEBUG("create_z90crypt (domain index %d) successful.\n",
- domain);
- } else
- PRINTK("No devices at startup\n");
-
- /* Initialize globals. */
- spin_lock_init(&queuespinlock);
-
- INIT_LIST_HEAD(&pending_list);
- pendingq_count = 0;
-
- INIT_LIST_HEAD(&request_list);
- requestq_count = 0;
-
- quiesce_z90crypt = 0;
-
- atomic_set(&total_open, 0);
- atomic_set(&z90crypt_step, 0);
-
- /* Set up the cleanup task. */
- init_timer(&cleanup_timer);
- cleanup_timer.function = z90crypt_cleanup_task;
- cleanup_timer.data = 0;
- cleanup_timer.expires = jiffies + (CLEANUPTIME * HZ);
- add_timer(&cleanup_timer);
-
- /* Set up the proc file system */
- entry = create_proc_entry("driver/z90crypt", 0644, 0);
- if (entry) {
- entry->nlink = 1;
- entry->data = 0;
- entry->read_proc = z90crypt_status;
- entry->write_proc = z90crypt_status_write;
- }
- else
- PRINTK("Couldn't create z90crypt proc entry\n");
- z90crypt_entry = entry;
-
- /* Set up the configuration task. */
- init_timer(&config_timer);
- config_timer.function = z90crypt_config_task;
- config_timer.data = 0;
- config_timer.expires = jiffies + (INITIAL_CONFIGTIME * HZ);
- add_timer(&config_timer);
-
- /* Set up the reader task */
- tasklet_init(&reader_tasklet, z90crypt_reader_task, 0);
- init_timer(&reader_timer);
- reader_timer.function = z90crypt_schedule_reader_task;
- reader_timer.data = 0;
- reader_timer.expires = jiffies + (READERTIME * HZ / 1000);
- add_timer(&reader_timer);
-
- return 0; // success
-
-init_module_cleanup:
- if ((nresult = misc_deregister(&z90crypt_misc_device)))
- PRINTK("misc_deregister failed with %d.\n", nresult);
- else
- PDEBUG("misc_deregister successful.\n");
-
- return result; // failure
-}
-
-/**
- * The module termination code
- */
-static void __exit
-z90crypt_cleanup_module(void)
-{
- int nresult;
-
- PDEBUG("PID %d\n", PID());
-
- remove_proc_entry("driver/z90crypt", 0);
-
- if ((nresult = misc_deregister(&z90crypt_misc_device)))
- PRINTK("misc_deregister failed with %d.\n", nresult);
- else
- PDEBUG("misc_deregister successful.\n");
-
- /* Remove the tasks */
- tasklet_kill(&reader_tasklet);
- del_timer(&reader_timer);
- del_timer(&config_timer);
- del_timer(&cleanup_timer);
-
- destroy_z90crypt();
-
- PRINTKN("Unloaded.\n");
-}
-
-/**
- * Functions running under a process id
- *
- * The I/O functions:
- * z90crypt_open
- * z90crypt_release
- * z90crypt_read
- * z90crypt_write
- * z90crypt_unlocked_ioctl
- * z90crypt_status
- * z90crypt_status_write
- * disable_card
- * enable_card
- *
- * Helper functions:
- * z90crypt_rsa
- * z90crypt_prepare
- * z90crypt_send
- * z90crypt_process_results
- *
- */
-static int
-z90crypt_open(struct inode *inode, struct file *filp)
-{
- struct priv_data *private_data_p;
-
- if (quiesce_z90crypt)
- return -EQUIESCE;
-
- private_data_p = kzalloc(sizeof(struct priv_data), GFP_KERNEL);
- if (!private_data_p) {
- PRINTK("Memory allocate failed\n");
- return -ENOMEM;
- }
-
- private_data_p->status = STAT_OPEN;
- private_data_p->opener_pid = PID();
- filp->private_data = private_data_p;
- atomic_inc(&total_open);
-
- return 0;
-}
-
-static int
-z90crypt_release(struct inode *inode, struct file *filp)
-{
- struct priv_data *private_data_p = filp->private_data;
-
- PDEBUG("PID %d (filp %p)\n", PID(), filp);
-
- private_data_p->status = STAT_CLOSED;
- memset(private_data_p, 0, sizeof(struct priv_data));
- kfree(private_data_p);
- atomic_dec(&total_open);
-
- return 0;
-}
-
-/*
- * there are two read functions, of which compile options will choose one
- * without USE_GET_RANDOM_BYTES
- * => read() always returns -EPERM;
- * otherwise
- * => read() uses get_random_bytes() kernel function
- */
-#ifndef USE_GET_RANDOM_BYTES
-/**
- * z90crypt_read will not be supported beyond z90crypt 1.3.1
- */
-static ssize_t
-z90crypt_read(struct file *filp, char __user *buf, size_t count, loff_t *f_pos)
-{
- PDEBUG("filp %p (PID %d)\n", filp, PID());
- return -EPERM;
-}
-#else // we want to use get_random_bytes
-/**
- * read() just returns a string of random bytes. Since we have no way
- * to generate these cryptographically, we just execute get_random_bytes
- * for the length specified.
- */
-#include <linux/random.h>
-static ssize_t
-z90crypt_read(struct file *filp, char __user *buf, size_t count, loff_t *f_pos)
-{
- unsigned char *temp_buff;
-
- PDEBUG("filp %p (PID %d)\n", filp, PID());
-
- if (quiesce_z90crypt)
- return -EQUIESCE;
- if (count < 0) {
- PRINTK("Requested random byte count negative: %ld\n", count);
- return -EINVAL;
- }
- if (count > RESPBUFFSIZE) {
- PDEBUG("count[%d] > RESPBUFFSIZE", count);
- return -EINVAL;
- }
- if (count == 0)
- return 0;
- temp_buff = kmalloc(RESPBUFFSIZE, GFP_KERNEL);
- if (!temp_buff) {
- PRINTK("Memory allocate failed\n");
- return -ENOMEM;
- }
- get_random_bytes(temp_buff, count);
-
- if (copy_to_user(buf, temp_buff, count) != 0) {
- kfree(temp_buff);
- return -EFAULT;
- }
- kfree(temp_buff);
- return count;
-}
-#endif
-
-/**
- * Write is is not allowed
- */
-static ssize_t
-z90crypt_write(struct file *filp, const char __user *buf, size_t count, loff_t *f_pos)
-{
- PDEBUG("filp %p (PID %d)\n", filp, PID());
- return -EPERM;
-}
-
-/**
- * New status functions
- */
-static inline int
-get_status_totalcount(void)
-{
- return z90crypt.hdware_info->hdware_mask.st_count;
-}
-
-static inline int
-get_status_PCICAcount(void)
-{
- return z90crypt.hdware_info->type_mask[PCICA].st_count;
-}
-
-static inline int
-get_status_PCICCcount(void)
-{
- return z90crypt.hdware_info->type_mask[PCICC].st_count;
-}
-
-static inline int
-get_status_PCIXCCcount(void)
-{
- return z90crypt.hdware_info->type_mask[PCIXCC_MCL2].st_count +
- z90crypt.hdware_info->type_mask[PCIXCC_MCL3].st_count;
-}
-
-static inline int
-get_status_PCIXCCMCL2count(void)
-{
- return z90crypt.hdware_info->type_mask[PCIXCC_MCL2].st_count;
-}
-
-static inline int
-get_status_PCIXCCMCL3count(void)
-{
- return z90crypt.hdware_info->type_mask[PCIXCC_MCL3].st_count;
-}
-
-static inline int
-get_status_CEX2Ccount(void)
-{
- return z90crypt.hdware_info->type_mask[CEX2C].st_count;
-}
-
-static inline int
-get_status_CEX2Acount(void)
-{
- return z90crypt.hdware_info->type_mask[CEX2A].st_count;
-}
-
-static inline int
-get_status_requestq_count(void)
-{
- return requestq_count;
-}
-
-static inline int
-get_status_pendingq_count(void)
-{
- return pendingq_count;
-}
-
-static inline int
-get_status_totalopen_count(void)
-{
- return atomic_read(&total_open);
-}
-
-static inline int
-get_status_domain_index(void)
-{
- return z90crypt.cdx;
-}
-
-static inline unsigned char *
-get_status_status_mask(unsigned char status[Z90CRYPT_NUM_APS])
-{
- int i, ix;
-
- memcpy(status, z90crypt.hdware_info->device_type_array,
- Z90CRYPT_NUM_APS);
-
- for (i = 0; i < get_status_totalcount(); i++) {
- ix = SHRT2LONG(i);
- if (LONG2DEVPTR(ix)->user_disabled)
- status[ix] = 0x0d;
- }
-
- return status;
-}
-
-static inline unsigned char *
-get_status_qdepth_mask(unsigned char qdepth[Z90CRYPT_NUM_APS])
-{
- int i, ix;
-
- memset(qdepth, 0, Z90CRYPT_NUM_APS);
-
- for (i = 0; i < get_status_totalcount(); i++) {
- ix = SHRT2LONG(i);
- qdepth[ix] = LONG2DEVPTR(ix)->dev_caller_count;
- }
-
- return qdepth;
-}
-
-static inline unsigned int *
-get_status_perdevice_reqcnt(unsigned int reqcnt[Z90CRYPT_NUM_APS])
-{
- int i, ix;
-
- memset(reqcnt, 0, Z90CRYPT_NUM_APS * sizeof(int));
-
- for (i = 0; i < get_status_totalcount(); i++) {
- ix = SHRT2LONG(i);
- reqcnt[ix] = LONG2DEVPTR(ix)->dev_total_req_cnt;
- }
-
- return reqcnt;
-}
-
-static inline void
-init_work_element(struct work_element *we_p,
- struct priv_data *priv_data, pid_t pid)
-{
- int step;
-
- we_p->requestptr = (unsigned char *)we_p + sizeof(struct work_element);
- /* Come up with a unique id for this caller. */
- step = atomic_inc_return(&z90crypt_step);
- memcpy(we_p->caller_id+0, (void *) &pid, sizeof(pid));
- memcpy(we_p->caller_id+4, (void *) &step, sizeof(step));
- we_p->pid = pid;
- we_p->priv_data = priv_data;
- we_p->status[0] = STAT_DEFAULT;
- we_p->audit[0] = 0x00;
- we_p->audit[1] = 0x00;
- we_p->audit[2] = 0x00;
- we_p->resp_buff_size = 0;
- we_p->retcode = 0;
- we_p->devindex = -1;
- we_p->devtype = -1;
- atomic_set(&we_p->alarmrung, 0);
- init_waitqueue_head(&we_p->waitq);
- INIT_LIST_HEAD(&(we_p->liste));
-}
-
-static inline int
-allocate_work_element(struct work_element **we_pp,
- struct priv_data *priv_data_p, pid_t pid)
-{
- struct work_element *we_p;
-
- we_p = (struct work_element *) get_zeroed_page(GFP_KERNEL);
- if (!we_p)
- return -ENOMEM;
- init_work_element(we_p, priv_data_p, pid);
- *we_pp = we_p;
- return 0;
-}
-
-static inline void
-remove_device(struct device *device_p)
-{
- if (!device_p || (device_p->disabled != 0))
- return;
- device_p->disabled = 1;
- z90crypt.hdware_info->type_mask[device_p->dev_type].disabled_count++;
- z90crypt.hdware_info->hdware_mask.disabled_count++;
-}
-
-/**
- * Bitlength limits for each card
- *
- * There are new MCLs which allow more bitlengths. See the table for details.
- * The MCL must be applied and the newer bitlengths enabled for these to work.
- *
- * Card Type Old limit New limit
- * PCICA ??-2048 same (the lower limit is less than 128 bit...)
- * PCICC 512-1024 512-2048
- * PCIXCC_MCL2 512-2048 ----- (applying any GA LIC will make an MCL3 card)
- * PCIXCC_MCL3 ----- 128-2048
- * CEX2C 512-2048 128-2048
- * CEX2A ??-2048 same (the lower limit is less than 128 bit...)
- *
- * ext_bitlens (extended bitlengths) is a global, since you should not apply an
- * MCL to just one card in a machine. We assume, at first, that all cards have
- * these capabilities.
- */
-int ext_bitlens = 1; // This is global
-#define PCIXCC_MIN_MOD_SIZE 16 // 128 bits
-#define OLD_PCIXCC_MIN_MOD_SIZE 64 // 512 bits
-#define PCICC_MIN_MOD_SIZE 64 // 512 bits
-#define OLD_PCICC_MAX_MOD_SIZE 128 // 1024 bits
-#define MAX_MOD_SIZE 256 // 2048 bits
-
-static inline int
-select_device_type(int *dev_type_p, int bytelength)
-{
- static int count = 0;
- int PCICA_avail, PCIXCC_MCL3_avail, CEX2C_avail, CEX2A_avail,
- index_to_use;
- struct status *stat;
- if ((*dev_type_p != PCICC) && (*dev_type_p != PCICA) &&
- (*dev_type_p != PCIXCC_MCL2) && (*dev_type_p != PCIXCC_MCL3) &&
- (*dev_type_p != CEX2C) && (*dev_type_p != CEX2A) &&
- (*dev_type_p != ANYDEV))
- return -1;
- if (*dev_type_p != ANYDEV) {
- stat = &z90crypt.hdware_info->type_mask[*dev_type_p];
- if (stat->st_count >
- (stat->disabled_count + stat->user_disabled_count))
- return 0;
- return -1;
- }
-
- /**
- * Assumption: PCICA, PCIXCC_MCL3, CEX2C, and CEX2A are all similar in
- * speed.
- *
- * PCICA and CEX2A do NOT co-exist, so it would be either one or the
- * other present.
- */
- stat = &z90crypt.hdware_info->type_mask[PCICA];
- PCICA_avail = stat->st_count -
- (stat->disabled_count + stat->user_disabled_count);
- stat = &z90crypt.hdware_info->type_mask[PCIXCC_MCL3];
- PCIXCC_MCL3_avail = stat->st_count -
- (stat->disabled_count + stat->user_disabled_count);
- stat = &z90crypt.hdware_info->type_mask[CEX2C];
- CEX2C_avail = stat->st_count -
- (stat->disabled_count + stat->user_disabled_count);
- stat = &z90crypt.hdware_info->type_mask[CEX2A];
- CEX2A_avail = stat->st_count -
- (stat->disabled_count + stat->user_disabled_count);
- if (PCICA_avail || PCIXCC_MCL3_avail || CEX2C_avail || CEX2A_avail) {
- /**
- * bitlength is a factor, PCICA or CEX2A are the most capable,
- * even with the new MCL for PCIXCC.
- */
- if ((bytelength < PCIXCC_MIN_MOD_SIZE) ||
- (!ext_bitlens && (bytelength < OLD_PCIXCC_MIN_MOD_SIZE))) {
- if (PCICA_avail) {
- *dev_type_p = PCICA;
- return 0;
- }
- if (CEX2A_avail) {
- *dev_type_p = CEX2A;
- return 0;
- }
- return -1;
- }
-
- index_to_use = count % (PCICA_avail + PCIXCC_MCL3_avail +
- CEX2C_avail + CEX2A_avail);
- if (index_to_use < PCICA_avail)
- *dev_type_p = PCICA;
- else if (index_to_use < (PCICA_avail + PCIXCC_MCL3_avail))
- *dev_type_p = PCIXCC_MCL3;
- else if (index_to_use < (PCICA_avail + PCIXCC_MCL3_avail +
- CEX2C_avail))
- *dev_type_p = CEX2C;
- else
- *dev_type_p = CEX2A;
- count++;
- return 0;
- }
-
- /* Less than OLD_PCIXCC_MIN_MOD_SIZE cannot go to a PCIXCC_MCL2 */
- if (bytelength < OLD_PCIXCC_MIN_MOD_SIZE)
- return -1;
- stat = &z90crypt.hdware_info->type_mask[PCIXCC_MCL2];
- if (stat->st_count >
- (stat->disabled_count + stat->user_disabled_count)) {
- *dev_type_p = PCIXCC_MCL2;
- return 0;
- }
-
- /**
- * Less than PCICC_MIN_MOD_SIZE or more than OLD_PCICC_MAX_MOD_SIZE
- * (if we don't have the MCL applied and the newer bitlengths enabled)
- * cannot go to a PCICC
- */
- if ((bytelength < PCICC_MIN_MOD_SIZE) ||
- (!ext_bitlens && (bytelength > OLD_PCICC_MAX_MOD_SIZE))) {
- return -1;
- }
- stat = &z90crypt.hdware_info->type_mask[PCICC];
- if (stat->st_count >
- (stat->disabled_count + stat->user_disabled_count)) {
- *dev_type_p = PCICC;
- return 0;
- }
-
- return -1;
-}
-
-/**
- * Try the selected number, then the selected type (can be ANYDEV)
- */
-static inline int
-select_device(int *dev_type_p, int *device_nr_p, int bytelength)
-{
- int i, indx, devTp, low_count, low_indx;
- struct device_x *index_p;
- struct device *dev_ptr;
-
- PDEBUG("device type = %d, index = %d\n", *dev_type_p, *device_nr_p);
- if ((*device_nr_p >= 0) && (*device_nr_p < Z90CRYPT_NUM_DEVS)) {
- PDEBUG("trying index = %d\n", *device_nr_p);
- dev_ptr = z90crypt.device_p[*device_nr_p];
-
- if (dev_ptr &&
- (dev_ptr->dev_stat != DEV_GONE) &&
- (dev_ptr->disabled == 0) &&
- (dev_ptr->user_disabled == 0)) {
- PDEBUG("selected by number, index = %d\n",
- *device_nr_p);
- *dev_type_p = dev_ptr->dev_type;
- return *device_nr_p;
- }
- }
- *device_nr_p = -1;
- PDEBUG("trying type = %d\n", *dev_type_p);
- devTp = *dev_type_p;
- if (select_device_type(&devTp, bytelength) == -1) {
- PDEBUG("failed to select by type\n");
- return -1;
- }
- PDEBUG("selected type = %d\n", devTp);
- index_p = &z90crypt.hdware_info->type_x_addr[devTp];
- low_count = 0x0000FFFF;
- low_indx = -1;
- for (i = 0; i < z90crypt.hdware_info->type_mask[devTp].st_count; i++) {
- indx = index_p->device_index[i];
- dev_ptr = z90crypt.device_p[indx];
- if (dev_ptr &&
- (dev_ptr->dev_stat != DEV_GONE) &&
- (dev_ptr->disabled == 0) &&
- (dev_ptr->user_disabled == 0) &&
- (devTp == dev_ptr->dev_type) &&
- (low_count > dev_ptr->dev_caller_count)) {
- low_count = dev_ptr->dev_caller_count;
- low_indx = indx;
- }
- }
- *device_nr_p = low_indx;
- return low_indx;
-}
-
-static inline int
-send_to_crypto_device(struct work_element *we_p)
-{
- struct caller *caller_p;
- struct device *device_p;
- int dev_nr;
- int bytelen = ((struct ica_rsa_modexpo *)we_p->buffer)->inputdatalength;
-
- if (!we_p->requestptr)
- return SEN_FATAL_ERROR;
- caller_p = (struct caller *)we_p->requestptr;
- dev_nr = we_p->devindex;
- if (select_device(&we_p->devtype, &dev_nr, bytelen) == -1) {
- if (z90crypt.hdware_info->hdware_mask.st_count != 0)
- return SEN_RETRY;
- else
- return SEN_NOT_AVAIL;
- }
- we_p->devindex = dev_nr;
- device_p = z90crypt.device_p[dev_nr];
- if (!device_p)
- return SEN_NOT_AVAIL;
- if (device_p->dev_type != we_p->devtype)
- return SEN_RETRY;
- if (device_p->dev_caller_count >= device_p->dev_q_depth)
- return SEN_QUEUE_FULL;
- PDEBUG("device number prior to send: %d\n", dev_nr);
- switch (send_to_AP(dev_nr, z90crypt.cdx,
- caller_p->caller_dev_dep_req_l,
- caller_p->caller_dev_dep_req_p)) {
- case DEV_SEN_EXCEPTION:
- PRINTKC("Exception during send to device %d\n", dev_nr);
- z90crypt.terminating = 1;
- return SEN_FATAL_ERROR;
- case DEV_GONE:
- PRINTK("Device %d not available\n", dev_nr);
- remove_device(device_p);
- return SEN_NOT_AVAIL;
- case DEV_EMPTY:
- return SEN_NOT_AVAIL;
- case DEV_NO_WORK:
- return SEN_FATAL_ERROR;
- case DEV_BAD_MESSAGE:
- return SEN_USER_ERROR;
- case DEV_QUEUE_FULL:
- return SEN_QUEUE_FULL;
- default:
- case DEV_ONLINE:
- break;
- }
- list_add_tail(&(caller_p->caller_liste), &(device_p->dev_caller_list));
- device_p->dev_caller_count++;
- return 0;
-}
-
-/**
- * Send puts the user's work on one of two queues:
- * the pending queue if the send was successful
- * the request queue if the send failed because device full or busy
- */
-static inline int
-z90crypt_send(struct work_element *we_p, const char *buf)
-{
- int rv;
-
- PDEBUG("PID %d\n", PID());
-
- if (CHK_RDWRMASK(we_p->status[0]) != STAT_NOWORK) {
- PDEBUG("PID %d tried to send more work but has outstanding "
- "work.\n", PID());
- return -EWORKPEND;
- }
- we_p->devindex = -1; // Reset device number
- spin_lock_irq(&queuespinlock);
- rv = send_to_crypto_device(we_p);
- switch (rv) {
- case 0:
- we_p->requestsent = jiffies;
- we_p->audit[0] |= FP_SENT;
- list_add_tail(&we_p->liste, &pending_list);
- ++pendingq_count;
- we_p->audit[0] |= FP_PENDING;
- break;
- case SEN_BUSY:
- case SEN_QUEUE_FULL:
- rv = 0;
- we_p->devindex = -1; // any device will do
- we_p->requestsent = jiffies;
- list_add_tail(&we_p->liste, &request_list);
- ++requestq_count;
- we_p->audit[0] |= FP_REQUEST;
- break;
- case SEN_RETRY:
- rv = -ERESTARTSYS;
- break;
- case SEN_NOT_AVAIL:
- PRINTK("*** No devices available.\n");
- rv = we_p->retcode = -ENODEV;
- we_p->status[0] |= STAT_FAILED;
- break;
- case REC_OPERAND_INV:
- case REC_OPERAND_SIZE:
- case REC_EVEN_MOD:
- case REC_INVALID_PAD:
- rv = we_p->retcode = -EINVAL;
- we_p->status[0] |= STAT_FAILED;
- break;
- default:
- we_p->retcode = rv;
- we_p->status[0] |= STAT_FAILED;
- break;
- }
- if (rv != -ERESTARTSYS)
- SET_RDWRMASK(we_p->status[0], STAT_WRITTEN);
- spin_unlock_irq(&queuespinlock);
- if (rv == 0)
- tasklet_schedule(&reader_tasklet);
- return rv;
-}
-
-/**
- * process_results copies the user's work from kernel space.
- */
-static inline int
-z90crypt_process_results(struct work_element *we_p, char __user *buf)
-{
- int rv;
-
- PDEBUG("we_p %p (PID %d)\n", we_p, PID());
-
- LONG2DEVPTR(we_p->devindex)->dev_total_req_cnt++;
- SET_RDWRMASK(we_p->status[0], STAT_READPEND);
-
- rv = 0;
- if (!we_p->buffer) {
- PRINTK("we_p %p PID %d in STAT_READPEND: buffer NULL.\n",
- we_p, PID());
- rv = -ENOBUFF;
- }
-
- if (!rv)
- if ((rv = copy_to_user(buf, we_p->buffer, we_p->buff_size))) {
- PDEBUG("copy_to_user failed: rv = %d\n", rv);
- rv = -EFAULT;
- }
-
- if (!rv)
- rv = we_p->retcode;
- if (!rv)
- if (we_p->resp_buff_size
- && copy_to_user(we_p->resp_addr, we_p->resp_buff,
- we_p->resp_buff_size))
- rv = -EFAULT;
-
- SET_RDWRMASK(we_p->status[0], STAT_NOWORK);
- return rv;
-}
-
-static unsigned char NULL_psmid[8] =
-{0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
-
-/**
- * Used in device configuration functions
- */
-#define MAX_RESET 90
-
-/**
- * This is used only for PCICC support
- */
-static inline int
-is_PKCS11_padded(unsigned char *buffer, int length)
-{
- int i;
- if ((buffer[0] != 0x00) || (buffer[1] != 0x01))
- return 0;
- for (i = 2; i < length; i++)
- if (buffer[i] != 0xFF)
- break;
- if ((i < 10) || (i == length))
- return 0;
- if (buffer[i] != 0x00)
- return 0;
- return 1;
-}
-
-/**
- * This is used only for PCICC support
- */
-static inline int
-is_PKCS12_padded(unsigned char *buffer, int length)
-{
- int i;
- if ((buffer[0] != 0x00) || (buffer[1] != 0x02))
- return 0;
- for (i = 2; i < length; i++)
- if (buffer[i] == 0x00)
- break;
- if ((i < 10) || (i == length))
- return 0;
- if (buffer[i] != 0x00)
- return 0;
- return 1;
-}
-
-/**
- * builds struct caller and converts message from generic format to
- * device-dependent format
- * func is ICARSAMODEXPO or ICARSACRT
- * function is PCI_FUNC_KEY_ENCRYPT or PCI_FUNC_KEY_DECRYPT
- */
-static inline int
-build_caller(struct work_element *we_p, short function)
-{
- int rv;
- struct caller *caller_p = (struct caller *)we_p->requestptr;
-
- if ((we_p->devtype != PCICC) && (we_p->devtype != PCICA) &&
- (we_p->devtype != PCIXCC_MCL2) && (we_p->devtype != PCIXCC_MCL3) &&
- (we_p->devtype != CEX2C) && (we_p->devtype != CEX2A))
- return SEN_NOT_AVAIL;
-
- memcpy(caller_p->caller_id, we_p->caller_id,
- sizeof(caller_p->caller_id));
- caller_p->caller_dev_dep_req_p = caller_p->caller_dev_dep_req;
- caller_p->caller_dev_dep_req_l = MAX_RESPONSE_SIZE;
- caller_p->caller_buf_p = we_p->buffer;
- INIT_LIST_HEAD(&(caller_p->caller_liste));
-
- rv = convert_request(we_p->buffer, we_p->funccode, function,
- z90crypt.cdx, we_p->devtype,
- &caller_p->caller_dev_dep_req_l,
- caller_p->caller_dev_dep_req_p);
- if (rv) {
- if (rv == SEN_NOT_AVAIL)
- PDEBUG("request can't be processed on hdwr avail\n");
- else
- PRINTK("Error from convert_request: %d\n", rv);
- }
- else
- memcpy(&(caller_p->caller_dev_dep_req_p[4]), we_p->caller_id,8);
- return rv;
-}
-
-static inline void
-unbuild_caller(struct device *device_p, struct caller *caller_p)
-{
- if (!caller_p)
- return;
- if (caller_p->caller_liste.next && caller_p->caller_liste.prev)
- if (!list_empty(&caller_p->caller_liste)) {
- list_del_init(&caller_p->caller_liste);
- device_p->dev_caller_count--;
- }
- memset(caller_p->caller_id, 0, sizeof(caller_p->caller_id));
-}
-
-static inline int
-get_crypto_request_buffer(struct work_element *we_p)
-{
- struct ica_rsa_modexpo *mex_p;
- struct ica_rsa_modexpo_crt *crt_p;
- unsigned char *temp_buffer;
- short function;
- int rv;
-
- mex_p = (struct ica_rsa_modexpo *) we_p->buffer;
- crt_p = (struct ica_rsa_modexpo_crt *) we_p->buffer;
-
- PDEBUG("device type input = %d\n", we_p->devtype);
-
- if (z90crypt.terminating)
- return REC_NO_RESPONSE;
- if (memcmp(we_p->caller_id, NULL_psmid, 8) == 0) {
- PRINTK("psmid zeroes\n");
- return SEN_FATAL_ERROR;
- }
- if (!we_p->buffer) {
- PRINTK("buffer pointer NULL\n");
- return SEN_USER_ERROR;
- }
- if (!we_p->requestptr) {
- PRINTK("caller pointer NULL\n");
- return SEN_USER_ERROR;
- }
-
- if ((we_p->devtype != PCICA) && (we_p->devtype != PCICC) &&
- (we_p->devtype != PCIXCC_MCL2) && (we_p->devtype != PCIXCC_MCL3) &&
- (we_p->devtype != CEX2C) && (we_p->devtype != CEX2A) &&
- (we_p->devtype != ANYDEV)) {
- PRINTK("invalid device type\n");
- return SEN_USER_ERROR;
- }
-
- if ((mex_p->inputdatalength < 1) ||
- (mex_p->inputdatalength > MAX_MOD_SIZE)) {
- PRINTK("inputdatalength[%d] is not valid\n",
- mex_p->inputdatalength);
- return SEN_USER_ERROR;
- }
-
- if (mex_p->outputdatalength < mex_p->inputdatalength) {
- PRINTK("outputdatalength[%d] < inputdatalength[%d]\n",
- mex_p->outputdatalength, mex_p->inputdatalength);
- return SEN_USER_ERROR;
- }
-
- if (!mex_p->inputdata || !mex_p->outputdata) {
- PRINTK("inputdata[%p] or outputdata[%p] is NULL\n",
- mex_p->outputdata, mex_p->inputdata);
- return SEN_USER_ERROR;
- }
-
- /**
- * As long as outputdatalength is big enough, we can set the
- * outputdatalength equal to the inputdatalength, since that is the
- * number of bytes we will copy in any case
- */
- mex_p->outputdatalength = mex_p->inputdatalength;
-
- rv = 0;
- switch (we_p->funccode) {
- case ICARSAMODEXPO:
- if (!mex_p->b_key || !mex_p->n_modulus)
- rv = SEN_USER_ERROR;
- break;
- case ICARSACRT:
- if (!IS_EVEN(crt_p->inputdatalength)) {
- PRINTK("inputdatalength[%d] is odd, CRT form\n",
- crt_p->inputdatalength);
- rv = SEN_USER_ERROR;
- break;
- }
- if (!crt_p->bp_key ||
- !crt_p->bq_key ||
- !crt_p->np_prime ||
- !crt_p->nq_prime ||
- !crt_p->u_mult_inv) {
- PRINTK("CRT form, bad data: %p/%p/%p/%p/%p\n",
- crt_p->bp_key, crt_p->bq_key,
- crt_p->np_prime, crt_p->nq_prime,
- crt_p->u_mult_inv);
- rv = SEN_USER_ERROR;
- }
- break;
- default:
- PRINTK("bad func = %d\n", we_p->funccode);
- rv = SEN_USER_ERROR;
- break;
- }
- if (rv != 0)
- return rv;
-
- if (select_device_type(&we_p->devtype, mex_p->inputdatalength) < 0)
- return SEN_NOT_AVAIL;
-
- temp_buffer = (unsigned char *)we_p + sizeof(struct work_element) +
- sizeof(struct caller);
- if (copy_from_user(temp_buffer, mex_p->inputdata,
- mex_p->inputdatalength) != 0)
- return SEN_RELEASED;
-
- function = PCI_FUNC_KEY_ENCRYPT;
- switch (we_p->devtype) {
- /* PCICA and CEX2A do everything with a simple RSA mod-expo operation */
- case PCICA:
- case CEX2A:
- function = PCI_FUNC_KEY_ENCRYPT;
- break;
- /**
- * PCIXCC_MCL2 does all Mod-Expo form with a simple RSA mod-expo
- * operation, and all CRT forms with a PKCS-1.2 format decrypt.
- * PCIXCC_MCL3 and CEX2C do all Mod-Expo and CRT forms with a simple RSA
- * mod-expo operation
- */
- case PCIXCC_MCL2:
- if (we_p->funccode == ICARSAMODEXPO)
- function = PCI_FUNC_KEY_ENCRYPT;
- else
- function = PCI_FUNC_KEY_DECRYPT;
- break;
- case PCIXCC_MCL3:
- case CEX2C:
- if (we_p->funccode == ICARSAMODEXPO)
- function = PCI_FUNC_KEY_ENCRYPT;
- else
- function = PCI_FUNC_KEY_DECRYPT;
- break;
- /**
- * PCICC does everything as a PKCS-1.2 format request
- */
- case PCICC:
- /* PCICC cannot handle input that is is PKCS#1.1 padded */
- if (is_PKCS11_padded(temp_buffer, mex_p->inputdatalength)) {
- return SEN_NOT_AVAIL;
- }
- if (we_p->funccode == ICARSAMODEXPO) {
- if (is_PKCS12_padded(temp_buffer,
- mex_p->inputdatalength))
- function = PCI_FUNC_KEY_ENCRYPT;
- else
- function = PCI_FUNC_KEY_DECRYPT;
- } else
- /* all CRT forms are decrypts */
- function = PCI_FUNC_KEY_DECRYPT;
- break;
- }
- PDEBUG("function: %04x\n", function);
- rv = build_caller(we_p, function);
- PDEBUG("rv from build_caller = %d\n", rv);
- return rv;
-}
-
-static inline int
-z90crypt_prepare(struct work_element *we_p, unsigned int funccode,
- const char __user *buffer)
-{
- int rv;
-
- we_p->devindex = -1;
- if (funccode == ICARSAMODEXPO)
- we_p->buff_size = sizeof(struct ica_rsa_modexpo);
- else
- we_p->buff_size = sizeof(struct ica_rsa_modexpo_crt);
-
- if (copy_from_user(we_p->buffer, buffer, we_p->buff_size))
- return -EFAULT;
-
- we_p->audit[0] |= FP_COPYFROM;
- SET_RDWRMASK(we_p->status[0], STAT_WRITTEN);
- we_p->funccode = funccode;
- we_p->devtype = -1;
- we_p->audit[0] |= FP_BUFFREQ;
- rv = get_crypto_request_buffer(we_p);
- switch (rv) {
- case 0:
- we_p->audit[0] |= FP_BUFFGOT;
- break;
- case SEN_USER_ERROR:
- rv = -EINVAL;
- break;
- case SEN_QUEUE_FULL:
- rv = 0;
- break;
- case SEN_RELEASED:
- rv = -EFAULT;
- break;
- case REC_NO_RESPONSE:
- rv = -ENODEV;
- break;
- case SEN_NOT_AVAIL:
- case EGETBUFF:
- rv = -EGETBUFF;
- break;
- default:
- PRINTK("rv = %d\n", rv);
- rv = -EGETBUFF;
- break;
- }
- if (CHK_RDWRMASK(we_p->status[0]) == STAT_WRITTEN)
- SET_RDWRMASK(we_p->status[0], STAT_DEFAULT);
- return rv;
-}
-
-static inline void
-purge_work_element(struct work_element *we_p)
-{
- struct list_head *lptr;
-
- spin_lock_irq(&queuespinlock);
- list_for_each(lptr, &request_list) {
- if (lptr == &we_p->liste) {
- list_del_init(lptr);
- requestq_count--;
- break;
- }
- }
- list_for_each(lptr, &pending_list) {
- if (lptr == &we_p->liste) {
- list_del_init(lptr);
- pendingq_count--;
- break;
- }
- }
- spin_unlock_irq(&queuespinlock);
-}
-
-/**
- * Build the request and send it.
- */
-static inline int
-z90crypt_rsa(struct priv_data *private_data_p, pid_t pid,
- unsigned int cmd, unsigned long arg)
-{
- struct work_element *we_p;
- int rv;
-
- if ((rv = allocate_work_element(&we_p, private_data_p, pid))) {
- PDEBUG("PID %d: allocate_work_element returned ENOMEM\n", pid);
- return rv;
- }
- if ((rv = z90crypt_prepare(we_p, cmd, (const char __user *)arg)))
- PDEBUG("PID %d: rv = %d from z90crypt_prepare\n", pid, rv);
- if (!rv)
- if ((rv = z90crypt_send(we_p, (const char *)arg)))
- PDEBUG("PID %d: rv %d from z90crypt_send.\n", pid, rv);
- if (!rv) {
- we_p->audit[0] |= FP_ASLEEP;
- wait_event(we_p->waitq, atomic_read(&we_p->alarmrung));
- we_p->audit[0] |= FP_AWAKE;
- rv = we_p->retcode;
- }
- if (!rv)
- rv = z90crypt_process_results(we_p, (char __user *)arg);
-
- if ((we_p->status[0] & STAT_FAILED)) {
- switch (rv) {
- /**
- * EINVAL *after* receive is almost always a padding error or
- * length error issued by a coprocessor (not an accelerator).
- * We convert this return value to -EGETBUFF which should
- * trigger a fallback to software.
- */
- case -EINVAL:
- if ((we_p->devtype != PCICA) &&
- (we_p->devtype != CEX2A))
- rv = -EGETBUFF;
- break;
- case -ETIMEOUT:
- if (z90crypt.mask.st_count > 0)
- rv = -ERESTARTSYS; // retry with another
- else
- rv = -ENODEV; // no cards left
- /* fall through to clean up request queue */
- case -ERESTARTSYS:
- case -ERELEASED:
- switch (CHK_RDWRMASK(we_p->status[0])) {
- case STAT_WRITTEN:
- purge_work_element(we_p);
- break;
- case STAT_READPEND:
- case STAT_NOWORK:
- default:
- break;
- }
- break;
- default:
- we_p->status[0] ^= STAT_FAILED;
- break;
- }
- }
- free_page((long)we_p);
- return rv;
-}
-
-/**
- * This function is a little long, but it's really just one large switch
- * statement.
- */
-static long
-z90crypt_unlocked_ioctl(struct file *filp, unsigned int cmd, unsigned long arg)
-{
- struct priv_data *private_data_p = filp->private_data;
- unsigned char *status;
- unsigned char *qdepth;
- unsigned int *reqcnt;
- struct ica_z90_status *pstat;
- int ret, i, loopLim, tempstat;
- static int deprecated_msg_count1 = 0;
- static int deprecated_msg_count2 = 0;
-
- PDEBUG("filp %p (PID %d), cmd 0x%08X\n", filp, PID(), cmd);
- PDEBUG("cmd 0x%08X: dir %s, size 0x%04X, type 0x%02X, nr 0x%02X\n",
- cmd,
- !_IOC_DIR(cmd) ? "NO"
- : ((_IOC_DIR(cmd) == (_IOC_READ|_IOC_WRITE)) ? "RW"
- : ((_IOC_DIR(cmd) == _IOC_READ) ? "RD"
- : "WR")),
- _IOC_SIZE(cmd), _IOC_TYPE(cmd), _IOC_NR(cmd));
-
- if (_IOC_TYPE(cmd) != Z90_IOCTL_MAGIC) {
- PRINTK("cmd 0x%08X contains bad magic\n", cmd);
- return -ENOTTY;
- }
-
- ret = 0;
- switch (cmd) {
- case ICARSAMODEXPO:
- case ICARSACRT:
- if (quiesce_z90crypt) {
- ret = -EQUIESCE;
- break;
- }
- ret = -ENODEV; // Default if no devices
- loopLim = z90crypt.hdware_info->hdware_mask.st_count -
- (z90crypt.hdware_info->hdware_mask.disabled_count +
- z90crypt.hdware_info->hdware_mask.user_disabled_count);
- for (i = 0; i < loopLim; i++) {
- ret = z90crypt_rsa(private_data_p, PID(), cmd, arg);
- if (ret != -ERESTARTSYS)
- break;
- }
- if (ret == -ERESTARTSYS)
- ret = -ENODEV;
- break;
-
- case Z90STAT_TOTALCOUNT:
- tempstat = get_status_totalcount();
- if (copy_to_user((int __user *)arg, &tempstat,sizeof(int)) != 0)
- ret = -EFAULT;
- break;
-
- case Z90STAT_PCICACOUNT:
- tempstat = get_status_PCICAcount();
- if (copy_to_user((int __user *)arg, &tempstat, sizeof(int)) != 0)
- ret = -EFAULT;
- break;
-
- case Z90STAT_PCICCCOUNT:
- tempstat = get_status_PCICCcount();
- if (copy_to_user((int __user *)arg, &tempstat, sizeof(int)) != 0)
- ret = -EFAULT;
- break;
-
- case Z90STAT_PCIXCCMCL2COUNT:
- tempstat = get_status_PCIXCCMCL2count();
- if (copy_to_user((int __user *)arg, &tempstat, sizeof(int)) != 0)
- ret = -EFAULT;
- break;
-
- case Z90STAT_PCIXCCMCL3COUNT:
- tempstat = get_status_PCIXCCMCL3count();
- if (copy_to_user((int __user *)arg, &tempstat, sizeof(int)) != 0)
- ret = -EFAULT;
- break;
-
- case Z90STAT_CEX2CCOUNT:
- tempstat = get_status_CEX2Ccount();
- if (copy_to_user((int __user *)arg, &tempstat, sizeof(int)) != 0)
- ret = -EFAULT;
- break;
-
- case Z90STAT_CEX2ACOUNT:
- tempstat = get_status_CEX2Acount();
- if (copy_to_user((int __user *)arg, &tempstat, sizeof(int)) != 0)
- ret = -EFAULT;
- break;
-
- case Z90STAT_REQUESTQ_COUNT:
- tempstat = get_status_requestq_count();
- if (copy_to_user((int __user *)arg, &tempstat, sizeof(int)) != 0)
- ret = -EFAULT;
- break;
-
- case Z90STAT_PENDINGQ_COUNT:
- tempstat = get_status_pendingq_count();
- if (copy_to_user((int __user *)arg, &tempstat, sizeof(int)) != 0)
- ret = -EFAULT;
- break;
-
- case Z90STAT_TOTALOPEN_COUNT:
- tempstat = get_status_totalopen_count();
- if (copy_to_user((int __user *)arg, &tempstat, sizeof(int)) != 0)
- ret = -EFAULT;
- break;
-
- case Z90STAT_DOMAIN_INDEX:
- tempstat = get_status_domain_index();
- if (copy_to_user((int __user *)arg, &tempstat, sizeof(int)) != 0)
- ret = -EFAULT;
- break;
-
- case Z90STAT_STATUS_MASK:
- status = kmalloc(Z90CRYPT_NUM_APS, GFP_KERNEL);
- if (!status) {
- PRINTK("kmalloc for status failed!\n");
- ret = -ENOMEM;
- break;
- }
- get_status_status_mask(status);
- if (copy_to_user((char __user *) arg, status, Z90CRYPT_NUM_APS)
- != 0)
- ret = -EFAULT;
- kfree(status);
- break;
-
- case Z90STAT_QDEPTH_MASK:
- qdepth = kmalloc(Z90CRYPT_NUM_APS, GFP_KERNEL);
- if (!qdepth) {
- PRINTK("kmalloc for qdepth failed!\n");
- ret = -ENOMEM;
- break;
- }
- get_status_qdepth_mask(qdepth);
- if (copy_to_user((char __user *) arg, qdepth, Z90CRYPT_NUM_APS) != 0)
- ret = -EFAULT;
- kfree(qdepth);
- break;
-
- case Z90STAT_PERDEV_REQCNT:
- reqcnt = kmalloc(sizeof(int) * Z90CRYPT_NUM_APS, GFP_KERNEL);
- if (!reqcnt) {
- PRINTK("kmalloc for reqcnt failed!\n");
- ret = -ENOMEM;
- break;
- }
- get_status_perdevice_reqcnt(reqcnt);
- if (copy_to_user((char __user *) arg, reqcnt,
- Z90CRYPT_NUM_APS * sizeof(int)) != 0)
- ret = -EFAULT;
- kfree(reqcnt);
- break;
-
- /* THIS IS DEPRECATED. USE THE NEW STATUS CALLS */
- case ICAZ90STATUS:
- if (deprecated_msg_count1 < 20) {
- PRINTK("deprecated call to ioctl (ICAZ90STATUS)!\n");
- deprecated_msg_count1++;
- if (deprecated_msg_count1 == 20)
- PRINTK("No longer issuing messages related to "
- "deprecated call to ICAZ90STATUS.\n");
- }
-
- pstat = kmalloc(sizeof(struct ica_z90_status), GFP_KERNEL);
- if (!pstat) {
- PRINTK("kmalloc for pstat failed!\n");
- ret = -ENOMEM;
- break;
- }
-
- pstat->totalcount = get_status_totalcount();
- pstat->leedslitecount = get_status_PCICAcount();
- pstat->leeds2count = get_status_PCICCcount();
- pstat->requestqWaitCount = get_status_requestq_count();
- pstat->pendingqWaitCount = get_status_pendingq_count();
- pstat->totalOpenCount = get_status_totalopen_count();
- pstat->cryptoDomain = get_status_domain_index();
- get_status_status_mask(pstat->status);
- get_status_qdepth_mask(pstat->qdepth);
-
- if (copy_to_user((struct ica_z90_status __user *) arg, pstat,
- sizeof(struct ica_z90_status)) != 0)
- ret = -EFAULT;
- kfree(pstat);
- break;
-
- /* THIS IS DEPRECATED. USE THE NEW STATUS CALLS */
- case Z90STAT_PCIXCCCOUNT:
- if (deprecated_msg_count2 < 20) {
- PRINTK("deprecated ioctl (Z90STAT_PCIXCCCOUNT)!\n");
- deprecated_msg_count2++;
- if (deprecated_msg_count2 == 20)
- PRINTK("No longer issuing messages about depre"
- "cated ioctl Z90STAT_PCIXCCCOUNT.\n");
- }
-
- tempstat = get_status_PCIXCCcount();
- if (copy_to_user((int *)arg, &tempstat, sizeof(int)) != 0)
- ret = -EFAULT;
- break;
-
- case Z90QUIESCE:
- if (current->euid != 0) {
- PRINTK("QUIESCE fails: euid %d\n",
- current->euid);
- ret = -EACCES;
- } else {
- PRINTK("QUIESCE device from PID %d\n", PID());
- quiesce_z90crypt = 1;
- }
- break;
-
- default:
- /* user passed an invalid IOCTL number */
- PDEBUG("cmd 0x%08X contains invalid ioctl code\n", cmd);
- ret = -ENOTTY;
- break;
- }
-
- return ret;
-}
-
-static inline int
-sprintcl(unsigned char *outaddr, unsigned char *addr, unsigned int len)
-{
- int hl, i;
-
- hl = 0;
- for (i = 0; i < len; i++)
- hl += sprintf(outaddr+hl, "%01x", (unsigned int) addr[i]);
- hl += sprintf(outaddr+hl, " ");
-
- return hl;
-}
-
-static inline int
-sprintrw(unsigned char *outaddr, unsigned char *addr, unsigned int len)
-{
- int hl, inl, c, cx;
-
- hl = sprintf(outaddr, " ");
- inl = 0;
- for (c = 0; c < (len / 16); c++) {
- hl += sprintcl(outaddr+hl, addr+inl, 16);
- inl += 16;
- }
-
- cx = len%16;
- if (cx) {
- hl += sprintcl(outaddr+hl, addr+inl, cx);
- inl += cx;
- }
-
- hl += sprintf(outaddr+hl, "\n");
-
- return hl;
-}
-
-static inline int
-sprinthx(unsigned char *title, unsigned char *outaddr,
- unsigned char *addr, unsigned int len)
-{
- int hl, inl, r, rx;
-
- hl = sprintf(outaddr, "\n%s\n", title);
- inl = 0;
- for (r = 0; r < (len / 64); r++) {
- hl += sprintrw(outaddr+hl, addr+inl, 64);
- inl += 64;
- }
- rx = len % 64;
- if (rx) {
- hl += sprintrw(outaddr+hl, addr+inl, rx);
- inl += rx;
- }
-
- hl += sprintf(outaddr+hl, "\n");
-
- return hl;
-}
-
-static inline int
-sprinthx4(unsigned char *title, unsigned char *outaddr,
- unsigned int *array, unsigned int len)
-{
- int hl, r;
-
- hl = sprintf(outaddr, "\n%s\n", title);
-
- for (r = 0; r < len; r++) {
- if ((r % 8) == 0)
- hl += sprintf(outaddr+hl, " ");
- hl += sprintf(outaddr+hl, "%08X ", array[r]);
- if ((r % 8) == 7)
- hl += sprintf(outaddr+hl, "\n");
- }
-
- hl += sprintf(outaddr+hl, "\n");
-
- return hl;
-}
-
-static int
-z90crypt_status(char *resp_buff, char **start, off_t offset,
- int count, int *eof, void *data)
-{
- unsigned char *workarea;
- int len;
-
- /* resp_buff is a page. Use the right half for a work area */
- workarea = resp_buff+2000;
- len = 0;
- len += sprintf(resp_buff+len, "\nz90crypt version: %d.%d.%d\n",
- z90crypt_VERSION, z90crypt_RELEASE, z90crypt_VARIANT);
- len += sprintf(resp_buff+len, "Cryptographic domain: %d\n",
- get_status_domain_index());
- len += sprintf(resp_buff+len, "Total device count: %d\n",
- get_status_totalcount());
- len += sprintf(resp_buff+len, "PCICA count: %d\n",
- get_status_PCICAcount());
- len += sprintf(resp_buff+len, "PCICC count: %d\n",
- get_status_PCICCcount());
- len += sprintf(resp_buff+len, "PCIXCC MCL2 count: %d\n",
- get_status_PCIXCCMCL2count());
- len += sprintf(resp_buff+len, "PCIXCC MCL3 count: %d\n",
- get_status_PCIXCCMCL3count());
- len += sprintf(resp_buff+len, "CEX2C count: %d\n",
- get_status_CEX2Ccount());
- len += sprintf(resp_buff+len, "CEX2A count: %d\n",
- get_status_CEX2Acount());
- len += sprintf(resp_buff+len, "requestq count: %d\n",
- get_status_requestq_count());
- len += sprintf(resp_buff+len, "pendingq count: %d\n",
- get_status_pendingq_count());
- len += sprintf(resp_buff+len, "Total open handles: %d\n\n",
- get_status_totalopen_count());
- len += sprinthx(
- "Online devices: 1=PCICA 2=PCICC 3=PCIXCC(MCL2) "
- "4=PCIXCC(MCL3) 5=CEX2C 6=CEX2A",
- resp_buff+len,
- get_status_status_mask(workarea),
- Z90CRYPT_NUM_APS);
- len += sprinthx("Waiting work element counts",
- resp_buff+len,
- get_status_qdepth_mask(workarea),
- Z90CRYPT_NUM_APS);
- len += sprinthx4(
- "Per-device successfully completed request counts",
- resp_buff+len,
- get_status_perdevice_reqcnt((unsigned int *)workarea),
- Z90CRYPT_NUM_APS);
- *eof = 1;
- memset(workarea, 0, Z90CRYPT_NUM_APS * sizeof(unsigned int));
- return len;
-}
-
-static inline void
-disable_card(int card_index)
-{
- struct device *devp;
-
- devp = LONG2DEVPTR(card_index);
- if (!devp || devp->user_disabled)
- return;
- devp->user_disabled = 1;
- z90crypt.hdware_info->hdware_mask.user_disabled_count++;
- if (devp->dev_type == -1)
- return;
- z90crypt.hdware_info->type_mask[devp->dev_type].user_disabled_count++;
-}
-
-static inline void
-enable_card(int card_index)
-{
- struct device *devp;
-
- devp = LONG2DEVPTR(card_index);
- if (!devp || !devp->user_disabled)
- return;
- devp->user_disabled = 0;
- z90crypt.hdware_info->hdware_mask.user_disabled_count--;
- if (devp->dev_type == -1)
- return;
- z90crypt.hdware_info->type_mask[devp->dev_type].user_disabled_count--;
-}
-
-static int
-z90crypt_status_write(struct file *file, const char __user *buffer,
- unsigned long count, void *data)
-{
- int j, eol;
- unsigned char *lbuf, *ptr;
- unsigned int local_count;
-
-#define LBUFSIZE 1200
- lbuf = kmalloc(LBUFSIZE, GFP_KERNEL);
- if (!lbuf) {
- PRINTK("kmalloc failed!\n");
- return 0;
- }
-
- if (count <= 0)
- return 0;
-
- local_count = UMIN((unsigned int)count, LBUFSIZE-1);
-
- if (copy_from_user(lbuf, buffer, local_count) != 0) {
- kfree(lbuf);
- return -EFAULT;
- }
-
- lbuf[local_count] = '\0';
-
- ptr = strstr(lbuf, "Online devices");
- if (ptr == 0) {
- PRINTK("Unable to parse data (missing \"Online devices\")\n");
- kfree(lbuf);
- return count;
- }
-
- ptr = strstr(ptr, "\n");
- if (ptr == 0) {
- PRINTK("Unable to parse data (missing newline after \"Online devices\")\n");
- kfree(lbuf);
- return count;
- }
- ptr++;
-
- if (strstr(ptr, "Waiting work element counts") == NULL) {
- PRINTK("Unable to parse data (missing \"Waiting work element counts\")\n");
- kfree(lbuf);
- return count;
- }
-
- j = 0;
- eol = 0;
- while ((j < 64) && (*ptr != '\0')) {
- switch (*ptr) {
- case '\t':
- case ' ':
- break;
- case '\n':
- default:
- eol = 1;
- break;
- case '0': // no device
- case '1': // PCICA
- case '2': // PCICC
- case '3': // PCIXCC_MCL2
- case '4': // PCIXCC_MCL3
- case '5': // CEX2C
- case '6': // CEX2A
- j++;
- break;
- case 'd':
- case 'D':
- disable_card(j);
- j++;
- break;
- case 'e':
- case 'E':
- enable_card(j);
- j++;
- break;
- }
- if (eol)
- break;
- ptr++;
- }
-
- kfree(lbuf);
- return count;
-}
-
-/**
- * Functions that run under a timer, with no process id
- *
- * The task functions:
- * z90crypt_reader_task
- * helper_send_work
- * helper_handle_work_element
- * helper_receive_rc
- * z90crypt_config_task
- * z90crypt_cleanup_task
- *
- * Helper functions:
- * z90crypt_schedule_reader_timer
- * z90crypt_schedule_reader_task
- * z90crypt_schedule_config_task
- * z90crypt_schedule_cleanup_task
- */
-static inline int
-receive_from_crypto_device(int index, unsigned char *psmid, int *buff_len_p,
- unsigned char *buff, unsigned char __user **dest_p_p)
-{
- int dv, rv;
- struct device *dev_ptr;
- struct caller *caller_p;
- struct ica_rsa_modexpo *icaMsg_p;
- struct list_head *ptr, *tptr;
-
- memcpy(psmid, NULL_psmid, sizeof(NULL_psmid));
-
- if (z90crypt.terminating)
- return REC_FATAL_ERROR;
-
- caller_p = 0;
- dev_ptr = z90crypt.device_p[index];
- rv = 0;
- do {
- if (!dev_ptr || dev_ptr->disabled) {
- rv = REC_NO_WORK; // a disabled device can't return work
- break;
- }
- if (dev_ptr->dev_self_x != index) {
- PRINTKC("Corrupt dev ptr\n");
- z90crypt.terminating = 1;
- rv = REC_FATAL_ERROR;
- break;
- }
- if (!dev_ptr->dev_resp_l || !dev_ptr->dev_resp_p) {
- dv = DEV_REC_EXCEPTION;
- PRINTK("dev_resp_l = %d, dev_resp_p = %p\n",
- dev_ptr->dev_resp_l, dev_ptr->dev_resp_p);
- } else {
- PDEBUG("Dequeue called for device %d\n", index);
- dv = receive_from_AP(index, z90crypt.cdx,
- dev_ptr->dev_resp_l,
- dev_ptr->dev_resp_p, psmid);
- }
- switch (dv) {
- case DEV_REC_EXCEPTION:
- rv = REC_FATAL_ERROR;
- z90crypt.terminating = 1;
- PRINTKC("Exception in receive from device %d\n",
- index);
- break;
- case DEV_ONLINE:
- rv = 0;
- break;
- case DEV_EMPTY:
- rv = REC_EMPTY;
- break;
- case DEV_NO_WORK:
- rv = REC_NO_WORK;
- break;
- case DEV_BAD_MESSAGE:
- case DEV_GONE:
- case REC_HARDWAR_ERR:
- default:
- rv = REC_NO_RESPONSE;
- break;
- }
- if (rv)
- break;
- if (dev_ptr->dev_caller_count <= 0) {
- rv = REC_USER_GONE;
- break;
- }
-
- list_for_each_safe(ptr, tptr, &dev_ptr->dev_caller_list) {
- caller_p = list_entry(ptr, struct caller, caller_liste);
- if (!memcmp(caller_p->caller_id, psmid,
- sizeof(caller_p->caller_id))) {
- if (!list_empty(&caller_p->caller_liste)) {
- list_del_init(ptr);
- dev_ptr->dev_caller_count--;
- break;
- }
- }
- caller_p = 0;
- }
- if (!caller_p) {
- PRINTKW("Unable to locate PSMID %02X%02X%02X%02X%02X"
- "%02X%02X%02X in device list\n",
- psmid[0], psmid[1], psmid[2], psmid[3],
- psmid[4], psmid[5], psmid[6], psmid[7]);
- rv = REC_USER_GONE;
- break;
- }
-
- PDEBUG("caller_p after successful receive: %p\n", caller_p);
- rv = convert_response(dev_ptr->dev_resp_p,
- caller_p->caller_buf_p, buff_len_p, buff);
- switch (rv) {
- case REC_USE_PCICA:
- break;
- case REC_OPERAND_INV:
- case REC_OPERAND_SIZE:
- case REC_EVEN_MOD:
- case REC_INVALID_PAD:
- PDEBUG("device %d: 'user error' %d\n", index, rv);
- break;
- case WRONG_DEVICE_TYPE:
- case REC_HARDWAR_ERR:
- case REC_BAD_MESSAGE:
- PRINTKW("device %d: hardware error %d\n", index, rv);
- rv = REC_NO_RESPONSE;
- break;
- default:
- PDEBUG("device %d: rv = %d\n", index, rv);
- break;
- }
- } while (0);
-
- switch (rv) {
- case 0:
- PDEBUG("Successful receive from device %d\n", index);
- icaMsg_p = (struct ica_rsa_modexpo *)caller_p->caller_buf_p;
- *dest_p_p = icaMsg_p->outputdata;
- if (*buff_len_p == 0)
- PRINTK("Zero *buff_len_p\n");
- break;
- case REC_NO_RESPONSE:
- PRINTKW("Removing device %d from availability\n", index);
- remove_device(dev_ptr);
- break;
- }
-
- if (caller_p)
- unbuild_caller(dev_ptr, caller_p);
-
- return rv;
-}
-
-static inline void
-helper_send_work(int index)
-{
- struct work_element *rq_p;
- int rv;
-
- if (list_empty(&request_list))
- return;
- requestq_count--;
- rq_p = list_entry(request_list.next, struct work_element, liste);
- list_del_init(&rq_p->liste);
- rq_p->audit[1] |= FP_REMREQUEST;
- if (rq_p->devtype == SHRT2DEVPTR(index)->dev_type) {
- rq_p->devindex = SHRT2LONG(index);
- rv = send_to_crypto_device(rq_p);
- if (rv == 0) {
- rq_p->requestsent = jiffies;
- rq_p->audit[0] |= FP_SENT;
- list_add_tail(&rq_p->liste, &pending_list);
- ++pendingq_count;
- rq_p->audit[0] |= FP_PENDING;
- } else {
- switch (rv) {
- case REC_OPERAND_INV:
- case REC_OPERAND_SIZE:
- case REC_EVEN_MOD:
- case REC_INVALID_PAD:
- rq_p->retcode = -EINVAL;
- break;
- case SEN_NOT_AVAIL:
- case SEN_RETRY:
- case REC_NO_RESPONSE:
- default:
- if (z90crypt.mask.st_count > 1)
- rq_p->retcode =
- -ERESTARTSYS;
- else
- rq_p->retcode = -ENODEV;
- break;
- }
- rq_p->status[0] |= STAT_FAILED;
- rq_p->audit[1] |= FP_AWAKENING;
- atomic_set(&rq_p->alarmrung, 1);
- wake_up(&rq_p->waitq);
- }
- } else {
- if (z90crypt.mask.st_count > 1)
- rq_p->retcode = -ERESTARTSYS;
- else
- rq_p->retcode = -ENODEV;
- rq_p->status[0] |= STAT_FAILED;
- rq_p->audit[1] |= FP_AWAKENING;
- atomic_set(&rq_p->alarmrung, 1);
- wake_up(&rq_p->waitq);
- }
-}
-
-static inline void
-helper_handle_work_element(int index, unsigned char psmid[8], int rc,
- int buff_len, unsigned char *buff,
- unsigned char __user *resp_addr)
-{
- struct work_element *pq_p;
- struct list_head *lptr, *tptr;
-
- pq_p = 0;
- list_for_each_safe(lptr, tptr, &pending_list) {
- pq_p = list_entry(lptr, struct work_element, liste);
- if (!memcmp(pq_p->caller_id, psmid, sizeof(pq_p->caller_id))) {
- list_del_init(lptr);
- pendingq_count--;
- pq_p->audit[1] |= FP_NOTPENDING;
- break;
- }
- pq_p = 0;
- }
-
- if (!pq_p) {
- PRINTK("device %d has work but no caller exists on pending Q\n",
- SHRT2LONG(index));
- return;
- }
-
- switch (rc) {
- case 0:
- pq_p->resp_buff_size = buff_len;
- pq_p->audit[1] |= FP_RESPSIZESET;
- if (buff_len) {
- pq_p->resp_addr = resp_addr;
- pq_p->audit[1] |= FP_RESPADDRCOPIED;
- memcpy(pq_p->resp_buff, buff, buff_len);
- pq_p->audit[1] |= FP_RESPBUFFCOPIED;
- }
- break;
- case REC_OPERAND_INV:
- case REC_OPERAND_SIZE:
- case REC_EVEN_MOD:
- case REC_INVALID_PAD:
- PDEBUG("-EINVAL after application error %d\n", rc);
- pq_p->retcode = -EINVAL;
- pq_p->status[0] |= STAT_FAILED;
- break;
- case REC_USE_PCICA:
- pq_p->retcode = -ERESTARTSYS;
- pq_p->status[0] |= STAT_FAILED;
- break;
- case REC_NO_RESPONSE:
- default:
- if (z90crypt.mask.st_count > 1)
- pq_p->retcode = -ERESTARTSYS;
- else
- pq_p->retcode = -ENODEV;
- pq_p->status[0] |= STAT_FAILED;
- break;
- }
- if ((pq_p->status[0] != STAT_FAILED) || (pq_p->retcode != -ERELEASED)) {
- pq_p->audit[1] |= FP_AWAKENING;
- atomic_set(&pq_p->alarmrung, 1);
- wake_up(&pq_p->waitq);
- }
-}
-
-/**
- * return TRUE if the work element should be removed from the queue
- */
-static inline int
-helper_receive_rc(int index, int *rc_p)
-{
- switch (*rc_p) {
- case 0:
- case REC_OPERAND_INV:
- case REC_OPERAND_SIZE:
- case REC_EVEN_MOD:
- case REC_INVALID_PAD:
- case REC_USE_PCICA:
- break;
-
- case REC_BUSY:
- case REC_NO_WORK:
- case REC_EMPTY:
- case REC_RETRY_DEV:
- case REC_FATAL_ERROR:
- return 0;
-
- case REC_NO_RESPONSE:
- break;
-
- default:
- PRINTK("rc %d, device %d converted to REC_NO_RESPONSE\n",
- *rc_p, SHRT2LONG(index));
- *rc_p = REC_NO_RESPONSE;
- break;
- }
- return 1;
-}
-
-static inline void
-z90crypt_schedule_reader_timer(void)
-{
- if (timer_pending(&reader_timer))
- return;
- if (mod_timer(&reader_timer, jiffies+(READERTIME*HZ/1000)) != 0)
- PRINTK("Timer pending while modifying reader timer\n");
-}
-
-static void
-z90crypt_reader_task(unsigned long ptr)
-{
- int workavail, index, rc, buff_len;
- unsigned char psmid[8];
- unsigned char __user *resp_addr;
- static unsigned char buff[1024];
-
- /**
- * we use workavail = 2 to ensure 2 passes with nothing dequeued before
- * exiting the loop. If (pendingq_count+requestq_count) == 0 after the
- * loop, there is no work remaining on the queues.
- */
- resp_addr = 0;
- workavail = 2;
- buff_len = 0;
- while (workavail) {
- workavail--;
- rc = 0;
- spin_lock_irq(&queuespinlock);
- memset(buff, 0x00, sizeof(buff));
-
- /* Dequeue once from each device in round robin. */
- for (index = 0; index < z90crypt.mask.st_count; index++) {
- PDEBUG("About to receive.\n");
- rc = receive_from_crypto_device(SHRT2LONG(index),
- psmid,
- &buff_len,
- buff,
- &resp_addr);
- PDEBUG("Dequeued: rc = %d.\n", rc);
-
- if (helper_receive_rc(index, &rc)) {
- if (rc != REC_NO_RESPONSE) {
- helper_send_work(index);
- workavail = 2;
- }
-
- helper_handle_work_element(index, psmid, rc,
- buff_len, buff,
- resp_addr);
- }
-
- if (rc == REC_FATAL_ERROR)
- PRINTKW("REC_FATAL_ERROR from device %d!\n",
- SHRT2LONG(index));
- }
- spin_unlock_irq(&queuespinlock);
- }
-
- if (pendingq_count + requestq_count)
- z90crypt_schedule_reader_timer();
-}
-
-static inline void
-z90crypt_schedule_config_task(unsigned int expiration)
-{
- if (timer_pending(&config_timer))
- return;
- if (mod_timer(&config_timer, jiffies+(expiration*HZ)) != 0)
- PRINTK("Timer pending while modifying config timer\n");
-}
-
-static void
-z90crypt_config_task(unsigned long ptr)
-{
- int rc;
-
- PDEBUG("jiffies %ld\n", jiffies);
-
- if ((rc = refresh_z90crypt(&z90crypt.cdx)))
- PRINTK("Error %d detected in refresh_z90crypt.\n", rc);
- /* If return was fatal, don't bother reconfiguring */
- if ((rc != TSQ_FATAL_ERROR) && (rc != RSQ_FATAL_ERROR))
- z90crypt_schedule_config_task(CONFIGTIME);
-}
-
-static inline void
-z90crypt_schedule_cleanup_task(void)
-{
- if (timer_pending(&cleanup_timer))
- return;
- if (mod_timer(&cleanup_timer, jiffies+(CLEANUPTIME*HZ)) != 0)
- PRINTK("Timer pending while modifying cleanup timer\n");
-}
-
-static inline void
-helper_drain_queues(void)
-{
- struct work_element *pq_p;
- struct list_head *lptr, *tptr;
-
- list_for_each_safe(lptr, tptr, &pending_list) {
- pq_p = list_entry(lptr, struct work_element, liste);
- pq_p->retcode = -ENODEV;
- pq_p->status[0] |= STAT_FAILED;
- unbuild_caller(LONG2DEVPTR(pq_p->devindex),
- (struct caller *)pq_p->requestptr);
- list_del_init(lptr);
- pendingq_count--;
- pq_p->audit[1] |= FP_NOTPENDING;
- pq_p->audit[1] |= FP_AWAKENING;
- atomic_set(&pq_p->alarmrung, 1);
- wake_up(&pq_p->waitq);
- }
-
- list_for_each_safe(lptr, tptr, &request_list) {
- pq_p = list_entry(lptr, struct work_element, liste);
- pq_p->retcode = -ENODEV;
- pq_p->status[0] |= STAT_FAILED;
- list_del_init(lptr);
- requestq_count--;
- pq_p->audit[1] |= FP_REMREQUEST;
- pq_p->audit[1] |= FP_AWAKENING;
- atomic_set(&pq_p->alarmrung, 1);
- wake_up(&pq_p->waitq);
- }
-}
-
-static inline void
-helper_timeout_requests(void)
-{
- struct work_element *pq_p;
- struct list_head *lptr, *tptr;
- long timelimit;
-
- timelimit = jiffies - (CLEANUPTIME * HZ);
- /* The list is in strict chronological order */
- list_for_each_safe(lptr, tptr, &pending_list) {
- pq_p = list_entry(lptr, struct work_element, liste);
- if (pq_p->requestsent >= timelimit)
- break;
- PRINTKW("Purging(PQ) PSMID %02X%02X%02X%02X%02X%02X%02X%02X\n",
- ((struct caller *)pq_p->requestptr)->caller_id[0],
- ((struct caller *)pq_p->requestptr)->caller_id[1],
- ((struct caller *)pq_p->requestptr)->caller_id[2],
- ((struct caller *)pq_p->requestptr)->caller_id[3],
- ((struct caller *)pq_p->requestptr)->caller_id[4],
- ((struct caller *)pq_p->requestptr)->caller_id[5],
- ((struct caller *)pq_p->requestptr)->caller_id[6],
- ((struct caller *)pq_p->requestptr)->caller_id[7]);
- pq_p->retcode = -ETIMEOUT;
- pq_p->status[0] |= STAT_FAILED;
- /* get this off any caller queue it may be on */
- unbuild_caller(LONG2DEVPTR(pq_p->devindex),
- (struct caller *) pq_p->requestptr);
- list_del_init(lptr);
- pendingq_count--;
- pq_p->audit[1] |= FP_TIMEDOUT;
- pq_p->audit[1] |= FP_NOTPENDING;
- pq_p->audit[1] |= FP_AWAKENING;
- atomic_set(&pq_p->alarmrung, 1);
- wake_up(&pq_p->waitq);
- }
-
- /**
- * If pending count is zero, items left on the request queue may
- * never be processed.
- */
- if (pendingq_count <= 0) {
- list_for_each_safe(lptr, tptr, &request_list) {
- pq_p = list_entry(lptr, struct work_element, liste);
- if (pq_p->requestsent >= timelimit)
- break;
- PRINTKW("Purging(RQ) PSMID %02X%02X%02X%02X%02X%02X%02X%02X\n",
- ((struct caller *)pq_p->requestptr)->caller_id[0],
- ((struct caller *)pq_p->requestptr)->caller_id[1],
- ((struct caller *)pq_p->requestptr)->caller_id[2],
- ((struct caller *)pq_p->requestptr)->caller_id[3],
- ((struct caller *)pq_p->requestptr)->caller_id[4],
- ((struct caller *)pq_p->requestptr)->caller_id[5],
- ((struct caller *)pq_p->requestptr)->caller_id[6],
- ((struct caller *)pq_p->requestptr)->caller_id[7]);
- pq_p->retcode = -ETIMEOUT;
- pq_p->status[0] |= STAT_FAILED;
- list_del_init(lptr);
- requestq_count--;
- pq_p->audit[1] |= FP_TIMEDOUT;
- pq_p->audit[1] |= FP_REMREQUEST;
- pq_p->audit[1] |= FP_AWAKENING;
- atomic_set(&pq_p->alarmrung, 1);
- wake_up(&pq_p->waitq);
- }
- }
-}
-
-static void
-z90crypt_cleanup_task(unsigned long ptr)
-{
- PDEBUG("jiffies %ld\n", jiffies);
- spin_lock_irq(&queuespinlock);
- if (z90crypt.mask.st_count <= 0) // no devices!
- helper_drain_queues();
- else
- helper_timeout_requests();
- spin_unlock_irq(&queuespinlock);
- z90crypt_schedule_cleanup_task();
-}
-
-static void
-z90crypt_schedule_reader_task(unsigned long ptr)
-{
- tasklet_schedule(&reader_tasklet);
-}
-
-/**
- * Lowlevel Functions:
- *
- * create_z90crypt: creates and initializes basic data structures
- * refresh_z90crypt: re-initializes basic data structures
- * find_crypto_devices: returns a count and mask of hardware status
- * create_crypto_device: builds the descriptor for a device
- * destroy_crypto_device: unallocates the descriptor for a device
- * destroy_z90crypt: drains all work, unallocates structs
- */
-
-/**
- * build the z90crypt root structure using the given domain index
- */
-static int
-create_z90crypt(int *cdx_p)
-{
- struct hdware_block *hdware_blk_p;
-
- memset(&z90crypt, 0x00, sizeof(struct z90crypt));
- z90crypt.domain_established = 0;
- z90crypt.len = sizeof(struct z90crypt);
- z90crypt.max_count = Z90CRYPT_NUM_DEVS;
- z90crypt.cdx = *cdx_p;
-
- hdware_blk_p = kzalloc(sizeof(struct hdware_block), GFP_ATOMIC);
- if (!hdware_blk_p) {
- PDEBUG("kmalloc for hardware block failed\n");
- return ENOMEM;
- }
- z90crypt.hdware_info = hdware_blk_p;
-
- return 0;
-}
-
-static inline int
-helper_scan_devices(int cdx_array[16], int *cdx_p, int *correct_cdx_found)
-{
- enum hdstat hd_stat;
- int q_depth, dev_type;
- int indx, chkdom, numdomains;
-
- q_depth = dev_type = numdomains = 0;
- for (chkdom = 0; chkdom <= 15; cdx_array[chkdom++] = -1);
- for (indx = 0; indx < z90crypt.max_count; indx++) {
- hd_stat = HD_NOT_THERE;
- numdomains = 0;
- for (chkdom = 0; chkdom <= 15; chkdom++) {
- hd_stat = query_online(indx, chkdom, MAX_RESET,
- &q_depth, &dev_type);
- if (hd_stat == HD_TSQ_EXCEPTION) {
- z90crypt.terminating = 1;
- PRINTKC("exception taken!\n");
- break;
- }
- if (hd_stat == HD_ONLINE) {
- cdx_array[numdomains++] = chkdom;
- if (*cdx_p == chkdom) {
- *correct_cdx_found = 1;
- break;
- }
- }
- }
- if ((*correct_cdx_found == 1) || (numdomains != 0))
- break;
- if (z90crypt.terminating)
- break;
- }
- return numdomains;
-}
-
-static inline int
-probe_crypto_domain(int *cdx_p)
-{
- int cdx_array[16];
- char cdx_array_text[53], temp[5];
- int correct_cdx_found, numdomains;
-
- correct_cdx_found = 0;
- numdomains = helper_scan_devices(cdx_array, cdx_p, &correct_cdx_found);
-
- if (z90crypt.terminating)
- return TSQ_FATAL_ERROR;
-
- if (correct_cdx_found)
- return 0;
-
- if (numdomains == 0) {
- PRINTKW("Unable to find crypto domain: No devices found\n");
- return Z90C_NO_DEVICES;
- }
-
- if (numdomains == 1) {
- if (*cdx_p == -1) {
- *cdx_p = cdx_array[0];
- return 0;
- }
- PRINTKW("incorrect domain: specified = %d, found = %d\n",
- *cdx_p, cdx_array[0]);
- return Z90C_INCORRECT_DOMAIN;
- }
-
- numdomains--;
- sprintf(cdx_array_text, "%d", cdx_array[numdomains]);
- while (numdomains) {
- numdomains--;
- sprintf(temp, ", %d", cdx_array[numdomains]);
- strcat(cdx_array_text, temp);
- }
-
- PRINTKW("ambiguous domain detected: specified = %d, found array = %s\n",
- *cdx_p, cdx_array_text);
- return Z90C_AMBIGUOUS_DOMAIN;
-}
-
-static int
-refresh_z90crypt(int *cdx_p)
-{
- int i, j, indx, rv;
- static struct status local_mask;
- struct device *devPtr;
- unsigned char oldStat, newStat;
- int return_unchanged;
-
- if (z90crypt.len != sizeof(z90crypt))
- return ENOTINIT;
- if (z90crypt.terminating)
- return TSQ_FATAL_ERROR;
- rv = 0;
- if (!z90crypt.hdware_info->hdware_mask.st_count &&
- !z90crypt.domain_established) {
- rv = probe_crypto_domain(cdx_p);
- if (z90crypt.terminating)
- return TSQ_FATAL_ERROR;
- if (rv == Z90C_NO_DEVICES)
- return 0; // try later
- if (rv)
- return rv;
- z90crypt.cdx = *cdx_p;
- z90crypt.domain_established = 1;
- }
- rv = find_crypto_devices(&local_mask);
- if (rv) {
- PRINTK("find crypto devices returned %d\n", rv);
- return rv;
- }
- if (!memcmp(&local_mask, &z90crypt.hdware_info->hdware_mask,
- sizeof(struct status))) {
- return_unchanged = 1;
- for (i = 0; i < Z90CRYPT_NUM_TYPES; i++) {
- /**
- * Check for disabled cards. If any device is marked
- * disabled, destroy it.
- */
- for (j = 0;
- j < z90crypt.hdware_info->type_mask[i].st_count;
- j++) {
- indx = z90crypt.hdware_info->type_x_addr[i].
- device_index[j];
- devPtr = z90crypt.device_p[indx];
- if (devPtr && devPtr->disabled) {
- local_mask.st_mask[indx] = HD_NOT_THERE;
- return_unchanged = 0;
- }
- }
- }
- if (return_unchanged == 1)
- return 0;
- }
-
- spin_lock_irq(&queuespinlock);
- for (i = 0; i < z90crypt.max_count; i++) {
- oldStat = z90crypt.hdware_info->hdware_mask.st_mask[i];
- newStat = local_mask.st_mask[i];
- if ((oldStat == HD_ONLINE) && (newStat != HD_ONLINE))
- destroy_crypto_device(i);
- else if ((oldStat != HD_ONLINE) && (newStat == HD_ONLINE)) {
- rv = create_crypto_device(i);
- if (rv >= REC_FATAL_ERROR)
- return rv;
- if (rv != 0) {
- local_mask.st_mask[i] = HD_NOT_THERE;
- local_mask.st_count--;
- }
- }
- }
- memcpy(z90crypt.hdware_info->hdware_mask.st_mask, local_mask.st_mask,
- sizeof(local_mask.st_mask));
- z90crypt.hdware_info->hdware_mask.st_count = local_mask.st_count;
- z90crypt.hdware_info->hdware_mask.disabled_count =
- local_mask.disabled_count;
- refresh_index_array(&z90crypt.mask, &z90crypt.overall_device_x);
- for (i = 0; i < Z90CRYPT_NUM_TYPES; i++)
- refresh_index_array(&(z90crypt.hdware_info->type_mask[i]),
- &(z90crypt.hdware_info->type_x_addr[i]));
- spin_unlock_irq(&queuespinlock);
-
- return rv;
-}
-
-static int
-find_crypto_devices(struct status *deviceMask)
-{
- int i, q_depth, dev_type;
- enum hdstat hd_stat;
-
- deviceMask->st_count = 0;
- deviceMask->disabled_count = 0;
- deviceMask->user_disabled_count = 0;
-
- for (i = 0; i < z90crypt.max_count; i++) {
- hd_stat = query_online(i, z90crypt.cdx, MAX_RESET, &q_depth,
- &dev_type);
- if (hd_stat == HD_TSQ_EXCEPTION) {
- z90crypt.terminating = 1;
- PRINTKC("Exception during probe for crypto devices\n");
- return TSQ_FATAL_ERROR;
- }
- deviceMask->st_mask[i] = hd_stat;
- if (hd_stat == HD_ONLINE) {
- PDEBUG("Got an online crypto!: %d\n", i);
- PDEBUG("Got a queue depth of %d\n", q_depth);
- PDEBUG("Got a device type of %d\n", dev_type);
- if (q_depth <= 0)
- return TSQ_FATAL_ERROR;
- deviceMask->st_count++;
- z90crypt.q_depth_array[i] = q_depth;
- z90crypt.dev_type_array[i] = dev_type;
- }
- }
-
- return 0;
-}
-
-static int
-refresh_index_array(struct status *status_str, struct device_x *index_array)
-{
- int i, count;
- enum devstat stat;
-
- i = -1;
- count = 0;
- do {
- stat = status_str->st_mask[++i];
- if (stat == DEV_ONLINE)
- index_array->device_index[count++] = i;
- } while ((i < Z90CRYPT_NUM_DEVS) && (count < status_str->st_count));
-
- return count;
-}
-
-static int
-create_crypto_device(int index)
-{
- int rv, devstat, total_size;
- struct device *dev_ptr;
- struct status *type_str_p;
- int deviceType;
-
- dev_ptr = z90crypt.device_p[index];
- if (!dev_ptr) {
- total_size = sizeof(struct device) +
- z90crypt.q_depth_array[index] * sizeof(int);
-
- dev_ptr = kzalloc(total_size, GFP_ATOMIC);
- if (!dev_ptr) {
- PRINTK("kmalloc device %d failed\n", index);
- return ENOMEM;
- }
- dev_ptr->dev_resp_p = kmalloc(MAX_RESPONSE_SIZE, GFP_ATOMIC);
- if (!dev_ptr->dev_resp_p) {
- kfree(dev_ptr);
- PRINTK("kmalloc device %d rec buffer failed\n", index);
- return ENOMEM;
- }
- dev_ptr->dev_resp_l = MAX_RESPONSE_SIZE;
- INIT_LIST_HEAD(&(dev_ptr->dev_caller_list));
- }
-
- devstat = reset_device(index, z90crypt.cdx, MAX_RESET);
- if (devstat == DEV_RSQ_EXCEPTION) {
- PRINTK("exception during reset device %d\n", index);
- kfree(dev_ptr->dev_resp_p);
- kfree(dev_ptr);
- return RSQ_FATAL_ERROR;
- }
- if (devstat == DEV_ONLINE) {
- dev_ptr->dev_self_x = index;
- dev_ptr->dev_type = z90crypt.dev_type_array[index];
- if (dev_ptr->dev_type == NILDEV) {
- rv = probe_device_type(dev_ptr);
- if (rv) {
- PRINTK("rv = %d from probe_device_type %d\n",
- rv, index);
- kfree(dev_ptr->dev_resp_p);
- kfree(dev_ptr);
- return rv;
- }
- }
- if (dev_ptr->dev_type == PCIXCC_UNK) {
- rv = probe_PCIXCC_type(dev_ptr);
- if (rv) {
- PRINTK("rv = %d from probe_PCIXCC_type %d\n",
- rv, index);
- kfree(dev_ptr->dev_resp_p);
- kfree(dev_ptr);
- return rv;
- }
- }
- deviceType = dev_ptr->dev_type;
- z90crypt.dev_type_array[index] = deviceType;
- if (deviceType == PCICA)
- z90crypt.hdware_info->device_type_array[index] = 1;
- else if (deviceType == PCICC)
- z90crypt.hdware_info->device_type_array[index] = 2;
- else if (deviceType == PCIXCC_MCL2)
- z90crypt.hdware_info->device_type_array[index] = 3;
- else if (deviceType == PCIXCC_MCL3)
- z90crypt.hdware_info->device_type_array[index] = 4;
- else if (deviceType == CEX2C)
- z90crypt.hdware_info->device_type_array[index] = 5;
- else if (deviceType == CEX2A)
- z90crypt.hdware_info->device_type_array[index] = 6;
- else // No idea how this would happen.
- z90crypt.hdware_info->device_type_array[index] = -1;
- }
-
- /**
- * 'q_depth' returned by the hardware is one less than
- * the actual depth
- */
- dev_ptr->dev_q_depth = z90crypt.q_depth_array[index];
- dev_ptr->dev_type = z90crypt.dev_type_array[index];
- dev_ptr->dev_stat = devstat;
- dev_ptr->disabled = 0;
- z90crypt.device_p[index] = dev_ptr;
-
- if (devstat == DEV_ONLINE) {
- if (z90crypt.mask.st_mask[index] != DEV_ONLINE) {
- z90crypt.mask.st_mask[index] = DEV_ONLINE;
- z90crypt.mask.st_count++;
- }
- deviceType = dev_ptr->dev_type;
- type_str_p = &z90crypt.hdware_info->type_mask[deviceType];
- if (type_str_p->st_mask[index] != DEV_ONLINE) {
- type_str_p->st_mask[index] = DEV_ONLINE;
- type_str_p->st_count++;
- }
- }
-
- return 0;
-}
-
-static int
-destroy_crypto_device(int index)
-{
- struct device *dev_ptr;
- int t, disabledFlag;
-
- dev_ptr = z90crypt.device_p[index];
-
- /* remember device type; get rid of device struct */
- if (dev_ptr) {
- disabledFlag = dev_ptr->disabled;
- t = dev_ptr->dev_type;
- kfree(dev_ptr->dev_resp_p);
- kfree(dev_ptr);
- } else {
- disabledFlag = 0;
- t = -1;
- }
- z90crypt.device_p[index] = 0;
-
- /* if the type is valid, remove the device from the type_mask */
- if ((t != -1) && z90crypt.hdware_info->type_mask[t].st_mask[index]) {
- z90crypt.hdware_info->type_mask[t].st_mask[index] = 0x00;
- z90crypt.hdware_info->type_mask[t].st_count--;
- if (disabledFlag == 1)
- z90crypt.hdware_info->type_mask[t].disabled_count--;
- }
- if (z90crypt.mask.st_mask[index] != DEV_GONE) {
- z90crypt.mask.st_mask[index] = DEV_GONE;
- z90crypt.mask.st_count--;
- }
- z90crypt.hdware_info->device_type_array[index] = 0;
-
- return 0;
-}
-
-static void
-destroy_z90crypt(void)
-{
- int i;
-
- for (i = 0; i < z90crypt.max_count; i++)
- if (z90crypt.device_p[i])
- destroy_crypto_device(i);
- kfree(z90crypt.hdware_info);
- memset((void *)&z90crypt, 0, sizeof(z90crypt));
-}
-
-static unsigned char static_testmsg[384] = {
-0x00,0x00,0x00,0x00,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08,0x00,0x06,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x58,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x00,0x43,0x43,
-0x41,0x2d,0x41,0x50,0x50,0x4c,0x20,0x20,0x20,0x01,0x01,0x01,0x00,0x00,0x00,0x00,
-0x50,0x4b,0x00,0x00,0x00,0x00,0x01,0x1c,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x05,0xb8,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x70,0x00,0x41,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x54,0x32,
-0x01,0x00,0xa0,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0xb8,0x05,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x0a,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x08,0x00,0x49,0x43,0x53,0x46,
-0x20,0x20,0x20,0x20,0x50,0x4b,0x0a,0x00,0x50,0x4b,0x43,0x53,0x2d,0x31,0x2e,0x32,
-0x37,0x00,0x11,0x22,0x33,0x44,0x55,0x66,0x77,0x88,0x99,0x00,0x11,0x22,0x33,0x44,
-0x55,0x66,0x77,0x88,0x99,0x00,0x11,0x22,0x33,0x44,0x55,0x66,0x77,0x88,0x99,0x00,
-0x11,0x22,0x33,0x44,0x55,0x66,0x77,0x88,0x99,0x00,0x11,0x22,0x33,0x44,0x55,0x66,
-0x77,0x88,0x99,0x00,0x11,0x22,0x33,0x5d,0x00,0x5b,0x00,0x77,0x88,0x1e,0x00,0x00,
-0x57,0x00,0x00,0x00,0x00,0x04,0x00,0x00,0x4f,0x00,0x00,0x00,0x03,0x02,0x00,0x00,
-0x40,0x01,0x00,0x01,0xce,0x02,0x68,0x2d,0x5f,0xa9,0xde,0x0c,0xf6,0xd2,0x7b,0x58,
-0x4b,0xf9,0x28,0x68,0x3d,0xb4,0xf4,0xef,0x78,0xd5,0xbe,0x66,0x63,0x42,0xef,0xf8,
-0xfd,0xa4,0xf8,0xb0,0x8e,0x29,0xc2,0xc9,0x2e,0xd8,0x45,0xb8,0x53,0x8c,0x6f,0x4e,
-0x72,0x8f,0x6c,0x04,0x9c,0x88,0xfc,0x1e,0xc5,0x83,0x55,0x57,0xf7,0xdd,0xfd,0x4f,
-0x11,0x36,0x95,0x5d,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00
-};
-
-static int
-probe_device_type(struct device *devPtr)
-{
- int rv, dv, i, index, length;
- unsigned char psmid[8];
- static unsigned char loc_testmsg[sizeof(static_testmsg)];
-
- index = devPtr->dev_self_x;
- rv = 0;
- do {
- memcpy(loc_testmsg, static_testmsg, sizeof(static_testmsg));
- length = sizeof(static_testmsg) - 24;
- /* the -24 allows for the header */
- dv = send_to_AP(index, z90crypt.cdx, length, loc_testmsg);
- if (dv) {
- PDEBUG("dv returned by send during probe: %d\n", dv);
- if (dv == DEV_SEN_EXCEPTION) {
- rv = SEN_FATAL_ERROR;
- PRINTKC("exception in send to AP %d\n", index);
- break;
- }
- PDEBUG("return value from send_to_AP: %d\n", rv);
- switch (dv) {
- case DEV_GONE:
- PDEBUG("dev %d not available\n", index);
- rv = SEN_NOT_AVAIL;
- break;
- case DEV_ONLINE:
- rv = 0;
- break;
- case DEV_EMPTY:
- rv = SEN_NOT_AVAIL;
- break;
- case DEV_NO_WORK:
- rv = SEN_FATAL_ERROR;
- break;
- case DEV_BAD_MESSAGE:
- rv = SEN_USER_ERROR;
- break;
- case DEV_QUEUE_FULL:
- rv = SEN_QUEUE_FULL;
- break;
- default:
- PRINTK("unknown dv=%d for dev %d\n", dv, index);
- rv = SEN_NOT_AVAIL;
- break;
- }
- }
-
- if (rv)
- break;
-
- for (i = 0; i < 6; i++) {
- mdelay(300);
- dv = receive_from_AP(index, z90crypt.cdx,
- devPtr->dev_resp_l,
- devPtr->dev_resp_p, psmid);
- PDEBUG("dv returned by DQ = %d\n", dv);
- if (dv == DEV_REC_EXCEPTION) {
- rv = REC_FATAL_ERROR;
- PRINTKC("exception in dequeue %d\n",
- index);
- break;
- }
- switch (dv) {
- case DEV_ONLINE:
- rv = 0;
- break;
- case DEV_EMPTY:
- rv = REC_EMPTY;
- break;
- case DEV_NO_WORK:
- rv = REC_NO_WORK;
- break;
- case DEV_BAD_MESSAGE:
- case DEV_GONE:
- default:
- rv = REC_NO_RESPONSE;
- break;
- }
- if ((rv != 0) && (rv != REC_NO_WORK))
- break;
- if (rv == 0)
- break;
- }
- if (rv)
- break;
- rv = (devPtr->dev_resp_p[0] == 0x00) &&
- (devPtr->dev_resp_p[1] == 0x86);
- if (rv)
- devPtr->dev_type = PCICC;
- else
- devPtr->dev_type = PCICA;
- rv = 0;
- } while (0);
- /* In a general error case, the card is not marked online */
- return rv;
-}
-
-static unsigned char MCL3_testmsg[] = {
-0x00,0x00,0x00,0x00,0xEE,0xEE,0xEE,0xEE,0xEE,0xEE,0xEE,0xEE,
-0x00,0x06,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x58,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x43,0x41,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x50,0x4B,0x00,0x00,0x00,0x00,0x01,0xC4,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x07,0x24,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0xDC,0x02,0x00,0x00,0x00,0x54,0x32,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0xE8,0x00,0x00,0x00,0x00,0x00,0x00,0x07,0x24,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x04,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
-0x00,0x00,0x00,0x00,0x50,0x4B,0x00,0x0A,0x4D,0x52,0x50,0x20,0x20,0x20,0x20,0x20,
-0x00,0x42,0x00,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08,0x09,0x0A,0x0B,0x0C,0x0D,
-0x0E,0x0F,0x00,0x11,0x22,0x33,0x44,0x55,0x66,0x77,0x88,0x99,0xAA,0xBB,0xCC,0xDD,
-0xEE,0xFF,0xFF,0xEE,0xDD,0xCC,0xBB,0xAA,0x99,0x88,0x77,0x66,0x55,0x44,0x33,0x22,
-0x11,0x00,0x01,0x23,0x45,0x67,0x89,0xAB,0xCD,0xEF,0xFE,0xDC,0xBA,0x98,0x76,0x54,
-0x32,0x10,0x00,0x9A,0x00,0x98,0x00,0x00,0x1E,0x00,0x00,0x94,0x00,0x00,0x00,0x00,
-0x04,0x00,0x00,0x8C,0x00,0x00,0x00,0x40,0x02,0x00,0x00,0x40,0xBA,0xE8,0x23,0x3C,
-0x75,0xF3,0x91,0x61,0xD6,0x73,0x39,0xCF,0x7B,0x6D,0x8E,0x61,0x97,0x63,0x9E,0xD9,
-0x60,0x55,0xD6,0xC7,0xEF,0xF8,0x1E,0x63,0x95,0x17,0xCC,0x28,0x45,0x60,0x11,0xC5,
-0xC4,0x4E,0x66,0xC6,0xE6,0xC3,0xDE,0x8A,0x19,0x30,0xCF,0x0E,0xD7,0xAA,0xDB,0x01,
-0xD8,0x00,0xBB,0x8F,0x39,0x9F,0x64,0x28,0xF5,0x7A,0x77,0x49,0xCC,0x6B,0xA3,0x91,
-0x97,0x70,0xE7,0x60,0x1E,0x39,0xE1,0xE5,0x33,0xE1,0x15,0x63,0x69,0x08,0x80,0x4C,
-0x67,0xC4,0x41,0x8F,0x48,0xDF,0x26,0x98,0xF1,0xD5,0x8D,0x88,0xD9,0x6A,0xA4,0x96,
-0xC5,0x84,0xD9,0x30,0x49,0x67,0x7D,0x19,0xB1,0xB3,0x45,0x4D,0xB2,0x53,0x9A,0x47,
-0x3C,0x7C,0x55,0xBF,0xCC,0x85,0x00,0x36,0xF1,0x3D,0x93,0x53
-};
-
-static int
-probe_PCIXCC_type(struct device *devPtr)
-{
- int rv, dv, i, index, length;
- unsigned char psmid[8];
- static unsigned char loc_testmsg[548];
- struct CPRBX *cprbx_p;
-
- index = devPtr->dev_self_x;
- rv = 0;
- do {
- memcpy(loc_testmsg, MCL3_testmsg, sizeof(MCL3_testmsg));
- length = sizeof(MCL3_testmsg) - 0x0C;
- dv = send_to_AP(index, z90crypt.cdx, length, loc_testmsg);
- if (dv) {
- PDEBUG("dv returned = %d\n", dv);
- if (dv == DEV_SEN_EXCEPTION) {
- rv = SEN_FATAL_ERROR;
- PRINTKC("exception in send to AP %d\n", index);
- break;
- }
- PDEBUG("return value from send_to_AP: %d\n", rv);
- switch (dv) {
- case DEV_GONE:
- PDEBUG("dev %d not available\n", index);
- rv = SEN_NOT_AVAIL;
- break;
- case DEV_ONLINE:
- rv = 0;
- break;
- case DEV_EMPTY:
- rv = SEN_NOT_AVAIL;
- break;
- case DEV_NO_WORK:
- rv = SEN_FATAL_ERROR;
- break;
- case DEV_BAD_MESSAGE:
- rv = SEN_USER_ERROR;
- break;
- case DEV_QUEUE_FULL:
- rv = SEN_QUEUE_FULL;
- break;
- default:
- PRINTK("unknown dv=%d for dev %d\n", dv, index);
- rv = SEN_NOT_AVAIL;
- break;
- }
- }
-
- if (rv)
- break;
-
- for (i = 0; i < 6; i++) {
- mdelay(300);
- dv = receive_from_AP(index, z90crypt.cdx,
- devPtr->dev_resp_l,
- devPtr->dev_resp_p, psmid);
- PDEBUG("dv returned by DQ = %d\n", dv);
- if (dv == DEV_REC_EXCEPTION) {
- rv = REC_FATAL_ERROR;
- PRINTKC("exception in dequeue %d\n",
- index);
- break;
- }
- switch (dv) {
- case DEV_ONLINE:
- rv = 0;
- break;
- case DEV_EMPTY:
- rv = REC_EMPTY;
- break;
- case DEV_NO_WORK:
- rv = REC_NO_WORK;
- break;
- case DEV_BAD_MESSAGE:
- case DEV_GONE:
- default:
- rv = REC_NO_RESPONSE;
- break;
- }
- if ((rv != 0) && (rv != REC_NO_WORK))
- break;
- if (rv == 0)
- break;
- }
- if (rv)
- break;
- cprbx_p = (struct CPRBX *) (devPtr->dev_resp_p + 48);
- if ((cprbx_p->ccp_rtcode == 8) && (cprbx_p->ccp_rscode == 33)) {
- devPtr->dev_type = PCIXCC_MCL2;
- PDEBUG("device %d is MCL2\n", index);
- } else {
- devPtr->dev_type = PCIXCC_MCL3;
- PDEBUG("device %d is MCL3\n", index);
- }
- } while (0);
- /* In a general error case, the card is not marked online */
- return rv;
-}
-
-module_init(z90crypt_init_module);
-module_exit(z90crypt_cleanup_module);
diff --git a/drivers/s390/crypto/zcrypt_api.c b/drivers/s390/crypto/zcrypt_api.c
new file mode 100644
index 00000000000..1edc10a7a6f
--- /dev/null
+++ b/drivers/s390/crypto/zcrypt_api.c
@@ -0,0 +1,1091 @@
+/*
+ * linux/drivers/s390/crypto/zcrypt_api.c
+ *
+ * zcrypt 2.1.0
+ *
+ * Copyright (C) 2001, 2006 IBM Corporation
+ * Author(s): Robert Burroughs
+ * Eric Rossman (edrossma@us.ibm.com)
+ * Cornelia Huck <cornelia.huck@de.ibm.com>
+ *
+ * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
+ * Major cleanup & driver split: Martin Schwidefsky <schwidefsky@de.ibm.com>
+ * Ralph Wuerthner <rwuerthn@de.ibm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/interrupt.h>
+#include <linux/miscdevice.h>
+#include <linux/fs.h>
+#include <linux/proc_fs.h>
+#include <linux/compat.h>
+#include <asm/atomic.h>
+#include <asm/uaccess.h>
+
+#include "zcrypt_api.h"
+
+/**
+ * Module description.
+ */
+MODULE_AUTHOR("IBM Corporation");
+MODULE_DESCRIPTION("Cryptographic Coprocessor interface, "
+ "Copyright 2001, 2006 IBM Corporation");
+MODULE_LICENSE("GPL");
+
+static DEFINE_SPINLOCK(zcrypt_device_lock);
+static LIST_HEAD(zcrypt_device_list);
+static int zcrypt_device_count = 0;
+static atomic_t zcrypt_open_count = ATOMIC_INIT(0);
+
+/**
+ * Device attributes common for all crypto devices.
+ */
+static ssize_t zcrypt_type_show(struct device *dev,
+ struct device_attribute *attr, char *buf)
+{
+ struct zcrypt_device *zdev = to_ap_dev(dev)->private;
+ return snprintf(buf, PAGE_SIZE, "%s\n", zdev->type_string);
+}
+
+static DEVICE_ATTR(type, 0444, zcrypt_type_show, NULL);
+
+static ssize_t zcrypt_online_show(struct device *dev,
+ struct device_attribute *attr, char *buf)
+{
+ struct zcrypt_device *zdev = to_ap_dev(dev)->private;
+ return snprintf(buf, PAGE_SIZE, "%d\n", zdev->online);
+}
+
+static ssize_t zcrypt_online_store(struct device *dev,
+ struct device_attribute *attr,
+ const char *buf, size_t count)
+{
+ struct zcrypt_device *zdev = to_ap_dev(dev)->private;
+ int online;
+
+ if (sscanf(buf, "%d\n", &online) != 1 || online < 0 || online > 1)
+ return -EINVAL;
+ zdev->online = online;
+ if (!online)
+ ap_flush_queue(zdev->ap_dev);
+ return count;
+}
+
+static DEVICE_ATTR(online, 0644, zcrypt_online_show, zcrypt_online_store);
+
+static struct attribute * zcrypt_device_attrs[] = {
+ &dev_attr_type.attr,
+ &dev_attr_online.attr,
+ NULL,
+};
+
+static struct attribute_group zcrypt_device_attr_group = {
+ .attrs = zcrypt_device_attrs,
+};
+
+/**
+ * Move the device towards the head of the device list.
+ * Need to be called while holding the zcrypt device list lock.
+ * Note: cards with speed_rating of 0 are kept at the end of the list.
+ */
+static void __zcrypt_increase_preference(struct zcrypt_device *zdev)
+{
+ struct zcrypt_device *tmp;
+ struct list_head *l;
+
+ if (zdev->speed_rating == 0)
+ return;
+ for (l = zdev->list.prev; l != &zcrypt_device_list; l = l->prev) {
+ tmp = list_entry(l, struct zcrypt_device, list);
+ if ((tmp->request_count + 1) * tmp->speed_rating <=
+ (zdev->request_count + 1) * zdev->speed_rating &&
+ tmp->speed_rating != 0)
+ break;
+ }
+ if (l == zdev->list.prev)
+ return;
+ /* Move zdev behind l */
+ list_del(&zdev->list);
+ list_add(&zdev->list, l);
+}
+
+/**
+ * Move the device towards the tail of the device list.
+ * Need to be called while holding the zcrypt device list lock.
+ * Note: cards with speed_rating of 0 are kept at the end of the list.
+ */
+static void __zcrypt_decrease_preference(struct zcrypt_device *zdev)
+{
+ struct zcrypt_device *tmp;
+ struct list_head *l;
+
+ if (zdev->speed_rating == 0)
+ return;
+ for (l = zdev->list.next; l != &zcrypt_device_list; l = l->next) {
+ tmp = list_entry(l, struct zcrypt_device, list);
+ if ((tmp->request_count + 1) * tmp->speed_rating >
+ (zdev->request_count + 1) * zdev->speed_rating ||
+ tmp->speed_rating == 0)
+ break;
+ }
+ if (l == zdev->list.next)
+ return;
+ /* Move zdev before l */
+ list_del(&zdev->list);
+ list_add_tail(&zdev->list, l);
+}
+
+static void zcrypt_device_release(struct kref *kref)
+{
+ struct zcrypt_device *zdev =
+ container_of(kref, struct zcrypt_device, refcount);
+ zcrypt_device_free(zdev);
+}
+
+void zcrypt_device_get(struct zcrypt_device *zdev)
+{
+ kref_get(&zdev->refcount);
+}
+EXPORT_SYMBOL(zcrypt_device_get);
+
+int zcrypt_device_put(struct zcrypt_device *zdev)
+{
+ return kref_put(&zdev->refcount, zcrypt_device_release);
+}
+EXPORT_SYMBOL(zcrypt_device_put);
+
+struct zcrypt_device *zcrypt_device_alloc(size_t max_response_size)
+{
+ struct zcrypt_device *zdev;
+
+ zdev = kzalloc(sizeof(struct zcrypt_device), GFP_KERNEL);
+ if (!zdev)
+ return NULL;
+ zdev->reply.message = kmalloc(max_response_size, GFP_KERNEL);
+ if (!zdev->reply.message)
+ goto out_free;
+ zdev->reply.length = max_response_size;
+ spin_lock_init(&zdev->lock);
+ INIT_LIST_HEAD(&zdev->list);
+ return zdev;
+
+out_free:
+ kfree(zdev);
+ return NULL;
+}
+EXPORT_SYMBOL(zcrypt_device_alloc);
+
+void zcrypt_device_free(struct zcrypt_device *zdev)
+{
+ kfree(zdev->reply.message);
+ kfree(zdev);
+}
+EXPORT_SYMBOL(zcrypt_device_free);
+
+/**
+ * Register a crypto device.
+ */
+int zcrypt_device_register(struct zcrypt_device *zdev)
+{
+ int rc;
+
+ rc = sysfs_create_group(&zdev->ap_dev->device.kobj,
+ &zcrypt_device_attr_group);
+ if (rc)
+ goto out;
+ get_device(&zdev->ap_dev->device);
+ kref_init(&zdev->refcount);
+ spin_lock_bh(&zcrypt_device_lock);
+ zdev->online = 1; /* New devices are online by default. */
+ list_add_tail(&zdev->list, &zcrypt_device_list);
+ __zcrypt_increase_preference(zdev);
+ zcrypt_device_count++;
+ spin_unlock_bh(&zcrypt_device_lock);
+out:
+ return rc;
+}
+EXPORT_SYMBOL(zcrypt_device_register);
+
+/**
+ * Unregister a crypto device.
+ */
+void zcrypt_device_unregister(struct zcrypt_device *zdev)
+{
+ spin_lock_bh(&zcrypt_device_lock);
+ zcrypt_device_count--;
+ list_del_init(&zdev->list);
+ spin_unlock_bh(&zcrypt_device_lock);
+ sysfs_remove_group(&zdev->ap_dev->device.kobj,
+ &zcrypt_device_attr_group);
+ put_device(&zdev->ap_dev->device);
+ zcrypt_device_put(zdev);
+}
+EXPORT_SYMBOL(zcrypt_device_unregister);
+
+/**
+ * zcrypt_read is not be supported beyond zcrypt 1.3.1
+ */
+static ssize_t zcrypt_read(struct file *filp, char __user *buf,
+ size_t count, loff_t *f_pos)
+{
+ return -EPERM;
+}
+
+/**
+ * Write is is not allowed
+ */
+static ssize_t zcrypt_write(struct file *filp, const char __user *buf,
+ size_t count, loff_t *f_pos)
+{
+ return -EPERM;
+}
+
+/**
+ * Device open/close functions to count number of users.
+ */
+static int zcrypt_open(struct inode *inode, struct file *filp)
+{
+ atomic_inc(&zcrypt_open_count);
+ return 0;
+}
+
+static int zcrypt_release(struct inode *inode, struct file *filp)
+{
+ atomic_dec(&zcrypt_open_count);
+ return 0;
+}
+
+/**
+ * zcrypt ioctls.
+ */
+static long zcrypt_rsa_modexpo(struct ica_rsa_modexpo *mex)
+{
+ struct zcrypt_device *zdev;
+ int rc;
+
+ if (mex->outputdatalength < mex->inputdatalength)
+ return -EINVAL;
+ /**
+ * As long as outputdatalength is big enough, we can set the
+ * outputdatalength equal to the inputdatalength, since that is the
+ * number of bytes we will copy in any case
+ */
+ mex->outputdatalength = mex->inputdatalength;
+
+ spin_lock_bh(&zcrypt_device_lock);
+ list_for_each_entry(zdev, &zcrypt_device_list, list) {
+ if (!zdev->online ||
+ !zdev->ops->rsa_modexpo ||
+ zdev->min_mod_size > mex->inputdatalength ||
+ zdev->max_mod_size < mex->inputdatalength)
+ continue;
+ zcrypt_device_get(zdev);
+ get_device(&zdev->ap_dev->device);
+ zdev->request_count++;
+ __zcrypt_decrease_preference(zdev);
+ spin_unlock_bh(&zcrypt_device_lock);
+ if (try_module_get(zdev->ap_dev->drv->driver.owner)) {
+ rc = zdev->ops->rsa_modexpo(zdev, mex);
+ module_put(zdev->ap_dev->drv->driver.owner);
+ }
+ else
+ rc = -EAGAIN;
+ spin_lock_bh(&zcrypt_device_lock);
+ zdev->request_count--;
+ __zcrypt_increase_preference(zdev);
+ put_device(&zdev->ap_dev->device);
+ zcrypt_device_put(zdev);
+ spin_unlock_bh(&zcrypt_device_lock);
+ return rc;
+ }
+ spin_unlock_bh(&zcrypt_device_lock);
+ return -ENODEV;
+}
+
+static long zcrypt_rsa_crt(struct ica_rsa_modexpo_crt *crt)
+{
+ struct zcrypt_device *zdev;
+ unsigned long long z1, z2, z3;
+ int rc, copied;
+
+ if (crt->outputdatalength < crt->inputdatalength ||
+ (crt->inputdatalength & 1))
+ return -EINVAL;
+ /**
+ * As long as outputdatalength is big enough, we can set the
+ * outputdatalength equal to the inputdatalength, since that is the
+ * number of bytes we will copy in any case
+ */
+ crt->outputdatalength = crt->inputdatalength;
+
+ copied = 0;
+ restart:
+ spin_lock_bh(&zcrypt_device_lock);
+ list_for_each_entry(zdev, &zcrypt_device_list, list) {
+ if (!zdev->online ||
+ !zdev->ops->rsa_modexpo_crt ||
+ zdev->min_mod_size > crt->inputdatalength ||
+ zdev->max_mod_size < crt->inputdatalength)
+ continue;
+ if (zdev->short_crt && crt->inputdatalength > 240) {
+ /**
+ * Check inputdata for leading zeros for cards
+ * that can't handle np_prime, bp_key, or
+ * u_mult_inv > 128 bytes.
+ */
+ if (copied == 0) {
+ int len;
+ spin_unlock_bh(&zcrypt_device_lock);
+ /* len is max 256 / 2 - 120 = 8 */
+ len = crt->inputdatalength / 2 - 120;
+ z1 = z2 = z3 = 0;
+ if (copy_from_user(&z1, crt->np_prime, len) ||
+ copy_from_user(&z2, crt->bp_key, len) ||
+ copy_from_user(&z3, crt->u_mult_inv, len))
+ return -EFAULT;
+ copied = 1;
+ /**
+ * We have to restart device lookup -
+ * the device list may have changed by now.
+ */
+ goto restart;
+ }
+ if (z1 != 0ULL || z2 != 0ULL || z3 != 0ULL)
+ /* The device can't handle this request. */
+ continue;
+ }
+ zcrypt_device_get(zdev);
+ get_device(&zdev->ap_dev->device);
+ zdev->request_count++;
+ __zcrypt_decrease_preference(zdev);
+ spin_unlock_bh(&zcrypt_device_lock);
+ if (try_module_get(zdev->ap_dev->drv->driver.owner)) {
+ rc = zdev->ops->rsa_modexpo_crt(zdev, crt);
+ module_put(zdev->ap_dev->drv->driver.owner);
+ }
+ else
+ rc = -EAGAIN;
+ spin_lock_bh(&zcrypt_device_lock);
+ zdev->request_count--;
+ __zcrypt_increase_preference(zdev);
+ put_device(&zdev->ap_dev->device);
+ zcrypt_device_put(zdev);
+ spin_unlock_bh(&zcrypt_device_lock);
+ return rc;
+ }
+ spin_unlock_bh(&zcrypt_device_lock);
+ return -ENODEV;
+}
+
+static long zcrypt_send_cprb(struct ica_xcRB *xcRB)
+{
+ struct zcrypt_device *zdev;
+ int rc;
+
+ spin_lock_bh(&zcrypt_device_lock);
+ list_for_each_entry(zdev, &zcrypt_device_list, list) {
+ if (!zdev->online || !zdev->ops->send_cprb ||
+ (xcRB->user_defined != AUTOSELECT &&
+ AP_QID_DEVICE(zdev->ap_dev->qid) != xcRB->user_defined)
+ )
+ continue;
+ zcrypt_device_get(zdev);
+ get_device(&zdev->ap_dev->device);
+ zdev->request_count++;
+ __zcrypt_decrease_preference(zdev);
+ spin_unlock_bh(&zcrypt_device_lock);
+ if (try_module_get(zdev->ap_dev->drv->driver.owner)) {
+ rc = zdev->ops->send_cprb(zdev, xcRB);
+ module_put(zdev->ap_dev->drv->driver.owner);
+ }
+ else
+ rc = -EAGAIN;
+ spin_lock_bh(&zcrypt_device_lock);
+ zdev->request_count--;
+ __zcrypt_increase_preference(zdev);
+ put_device(&zdev->ap_dev->device);
+ zcrypt_device_put(zdev);
+ spin_unlock_bh(&zcrypt_device_lock);
+ return rc;
+ }
+ spin_unlock_bh(&zcrypt_device_lock);
+ return -ENODEV;
+}
+
+static void zcrypt_status_mask(char status[AP_DEVICES])
+{
+ struct zcrypt_device *zdev;
+
+ memset(status, 0, sizeof(char) * AP_DEVICES);
+ spin_lock_bh(&zcrypt_device_lock);
+ list_for_each_entry(zdev, &zcrypt_device_list, list)
+ status[AP_QID_DEVICE(zdev->ap_dev->qid)] =
+ zdev->online ? zdev->user_space_type : 0x0d;
+ spin_unlock_bh(&zcrypt_device_lock);
+}
+
+static void zcrypt_qdepth_mask(char qdepth[AP_DEVICES])
+{
+ struct zcrypt_device *zdev;
+
+ memset(qdepth, 0, sizeof(char) * AP_DEVICES);
+ spin_lock_bh(&zcrypt_device_lock);
+ list_for_each_entry(zdev, &zcrypt_device_list, list) {
+ spin_lock(&zdev->ap_dev->lock);
+ qdepth[AP_QID_DEVICE(zdev->ap_dev->qid)] =
+ zdev->ap_dev->pendingq_count +
+ zdev->ap_dev->requestq_count;
+ spin_unlock(&zdev->ap_dev->lock);
+ }
+ spin_unlock_bh(&zcrypt_device_lock);
+}
+
+static void zcrypt_perdev_reqcnt(int reqcnt[AP_DEVICES])
+{
+ struct zcrypt_device *zdev;
+
+ memset(reqcnt, 0, sizeof(int) * AP_DEVICES);
+ spin_lock_bh(&zcrypt_device_lock);
+ list_for_each_entry(zdev, &zcrypt_device_list, list) {
+ spin_lock(&zdev->ap_dev->lock);
+ reqcnt[AP_QID_DEVICE(zdev->ap_dev->qid)] =
+ zdev->ap_dev->total_request_count;
+ spin_unlock(&zdev->ap_dev->lock);
+ }
+ spin_unlock_bh(&zcrypt_device_lock);
+}
+
+static int zcrypt_pendingq_count(void)
+{
+ struct zcrypt_device *zdev;
+ int pendingq_count = 0;
+
+ spin_lock_bh(&zcrypt_device_lock);
+ list_for_each_entry(zdev, &zcrypt_device_list, list) {
+ spin_lock(&zdev->ap_dev->lock);
+ pendingq_count += zdev->ap_dev->pendingq_count;
+ spin_unlock(&zdev->ap_dev->lock);
+ }
+ spin_unlock_bh(&zcrypt_device_lock);
+ return pendingq_count;
+}
+
+static int zcrypt_requestq_count(void)
+{
+ struct zcrypt_device *zdev;
+ int requestq_count = 0;
+
+ spin_lock_bh(&zcrypt_device_lock);
+ list_for_each_entry(zdev, &zcrypt_device_list, list) {
+ spin_lock(&zdev->ap_dev->lock);
+ requestq_count += zdev->ap_dev->requestq_count;
+ spin_unlock(&zdev->ap_dev->lock);
+ }
+ spin_unlock_bh(&zcrypt_device_lock);
+ return requestq_count;
+}
+
+static int zcrypt_count_type(int type)
+{
+ struct zcrypt_device *zdev;
+ int device_count = 0;
+
+ spin_lock_bh(&zcrypt_device_lock);
+ list_for_each_entry(zdev, &zcrypt_device_list, list)
+ if (zdev->user_space_type == type)
+ device_count++;
+ spin_unlock_bh(&zcrypt_device_lock);
+ return device_count;
+}
+
+/**
+ * Old, deprecated combi status call.
+ */
+static long zcrypt_ica_status(struct file *filp, unsigned long arg)
+{
+ struct ica_z90_status *pstat;
+ int ret;
+
+ pstat = kzalloc(sizeof(*pstat), GFP_KERNEL);
+ if (!pstat)
+ return -ENOMEM;
+ pstat->totalcount = zcrypt_device_count;
+ pstat->leedslitecount = zcrypt_count_type(ZCRYPT_PCICA);
+ pstat->leeds2count = zcrypt_count_type(ZCRYPT_PCICC);
+ pstat->requestqWaitCount = zcrypt_requestq_count();
+ pstat->pendingqWaitCount = zcrypt_pendingq_count();
+ pstat->totalOpenCount = atomic_read(&zcrypt_open_count);
+ pstat->cryptoDomain = ap_domain_index;
+ zcrypt_status_mask(pstat->status);
+ zcrypt_qdepth_mask(pstat->qdepth);
+ ret = 0;
+ if (copy_to_user((void __user *) arg, pstat, sizeof(*pstat)))
+ ret = -EFAULT;
+ kfree(pstat);
+ return ret;
+}
+
+static long zcrypt_unlocked_ioctl(struct file *filp, unsigned int cmd,
+ unsigned long arg)
+{
+ int rc;
+
+ switch (cmd) {
+ case ICARSAMODEXPO: {
+ struct ica_rsa_modexpo __user *umex = (void __user *) arg;
+ struct ica_rsa_modexpo mex;
+ if (copy_from_user(&mex, umex, sizeof(mex)))
+ return -EFAULT;
+ do {
+ rc = zcrypt_rsa_modexpo(&mex);
+ } while (rc == -EAGAIN);
+ if (rc)
+ return rc;
+ return put_user(mex.outputdatalength, &umex->outputdatalength);
+ }
+ case ICARSACRT: {
+ struct ica_rsa_modexpo_crt __user *ucrt = (void __user *) arg;
+ struct ica_rsa_modexpo_crt crt;
+ if (copy_from_user(&crt, ucrt, sizeof(crt)))
+ return -EFAULT;
+ do {
+ rc = zcrypt_rsa_crt(&crt);
+ } while (rc == -EAGAIN);
+ if (rc)
+ return rc;
+ return put_user(crt.outputdatalength, &ucrt->outputdatalength);
+ }
+ case ZSECSENDCPRB: {
+ struct ica_xcRB __user *uxcRB = (void __user *) arg;
+ struct ica_xcRB xcRB;
+ if (copy_from_user(&xcRB, uxcRB, sizeof(xcRB)))
+ return -EFAULT;
+ do {
+ rc = zcrypt_send_cprb(&xcRB);
+ } while (rc == -EAGAIN);
+ if (copy_to_user(uxcRB, &xcRB, sizeof(xcRB)))
+ return -EFAULT;
+ return rc;
+ }
+ case Z90STAT_STATUS_MASK: {
+ char status[AP_DEVICES];
+ zcrypt_status_mask(status);
+ if (copy_to_user((char __user *) arg, status,
+ sizeof(char) * AP_DEVICES))
+ return -EFAULT;
+ return 0;
+ }
+ case Z90STAT_QDEPTH_MASK: {
+ char qdepth[AP_DEVICES];
+ zcrypt_qdepth_mask(qdepth);
+ if (copy_to_user((char __user *) arg, qdepth,
+ sizeof(char) * AP_DEVICES))
+ return -EFAULT;
+ return 0;
+ }
+ case Z90STAT_PERDEV_REQCNT: {
+ int reqcnt[AP_DEVICES];
+ zcrypt_perdev_reqcnt(reqcnt);
+ if (copy_to_user((int __user *) arg, reqcnt,
+ sizeof(int) * AP_DEVICES))
+ return -EFAULT;
+ return 0;
+ }
+ case Z90STAT_REQUESTQ_COUNT:
+ return put_user(zcrypt_requestq_count(), (int __user *) arg);
+ case Z90STAT_PENDINGQ_COUNT:
+ return put_user(zcrypt_pendingq_count(), (int __user *) arg);
+ case Z90STAT_TOTALOPEN_COUNT:
+ return put_user(atomic_read(&zcrypt_open_count),
+ (int __user *) arg);
+ case Z90STAT_DOMAIN_INDEX:
+ return put_user(ap_domain_index, (int __user *) arg);
+ /**
+ * Deprecated ioctls. Don't add another device count ioctl,
+ * you can count them yourself in the user space with the
+ * output of the Z90STAT_STATUS_MASK ioctl.
+ */
+ case ICAZ90STATUS:
+ return zcrypt_ica_status(filp, arg);
+ case Z90STAT_TOTALCOUNT:
+ return put_user(zcrypt_device_count, (int __user *) arg);
+ case Z90STAT_PCICACOUNT:
+ return put_user(zcrypt_count_type(ZCRYPT_PCICA),
+ (int __user *) arg);
+ case Z90STAT_PCICCCOUNT:
+ return put_user(zcrypt_count_type(ZCRYPT_PCICC),
+ (int __user *) arg);
+ case Z90STAT_PCIXCCMCL2COUNT:
+ return put_user(zcrypt_count_type(ZCRYPT_PCIXCC_MCL2),
+ (int __user *) arg);
+ case Z90STAT_PCIXCCMCL3COUNT:
+ return put_user(zcrypt_count_type(ZCRYPT_PCIXCC_MCL3),
+ (int __user *) arg);
+ case Z90STAT_PCIXCCCOUNT:
+ return put_user(zcrypt_count_type(ZCRYPT_PCIXCC_MCL2) +
+ zcrypt_count_type(ZCRYPT_PCIXCC_MCL3),
+ (int __user *) arg);
+ case Z90STAT_CEX2CCOUNT:
+ return put_user(zcrypt_count_type(ZCRYPT_CEX2C),
+ (int __user *) arg);
+ case Z90STAT_CEX2ACOUNT:
+ return put_user(zcrypt_count_type(ZCRYPT_CEX2A),
+ (int __user *) arg);
+ default:
+ /* unknown ioctl number */
+ return -ENOIOCTLCMD;
+ }
+}
+
+#ifdef CONFIG_COMPAT
+/**
+ * ioctl32 conversion routines
+ */
+struct compat_ica_rsa_modexpo {
+ compat_uptr_t inputdata;
+ unsigned int inputdatalength;
+ compat_uptr_t outputdata;
+ unsigned int outputdatalength;
+ compat_uptr_t b_key;
+ compat_uptr_t n_modulus;
+};
+
+static long trans_modexpo32(struct file *filp, unsigned int cmd,
+ unsigned long arg)
+{
+ struct compat_ica_rsa_modexpo __user *umex32 = compat_ptr(arg);
+ struct compat_ica_rsa_modexpo mex32;
+ struct ica_rsa_modexpo mex64;
+ long rc;
+
+ if (copy_from_user(&mex32, umex32, sizeof(mex32)))
+ return -EFAULT;
+ mex64.inputdata = compat_ptr(mex32.inputdata);
+ mex64.inputdatalength = mex32.inputdatalength;
+ mex64.outputdata = compat_ptr(mex32.outputdata);
+ mex64.outputdatalength = mex32.outputdatalength;
+ mex64.b_key = compat_ptr(mex32.b_key);
+ mex64.n_modulus = compat_ptr(mex32.n_modulus);
+ do {
+ rc = zcrypt_rsa_modexpo(&mex64);
+ } while (rc == -EAGAIN);
+ if (!rc)
+ rc = put_user(mex64.outputdatalength,
+ &umex32->outputdatalength);
+ return rc;
+}
+
+struct compat_ica_rsa_modexpo_crt {
+ compat_uptr_t inputdata;
+ unsigned int inputdatalength;
+ compat_uptr_t outputdata;
+ unsigned int outputdatalength;
+ compat_uptr_t bp_key;
+ compat_uptr_t bq_key;
+ compat_uptr_t np_prime;
+ compat_uptr_t nq_prime;
+ compat_uptr_t u_mult_inv;
+};
+
+static long trans_modexpo_crt32(struct file *filp, unsigned int cmd,
+ unsigned long arg)
+{
+ struct compat_ica_rsa_modexpo_crt __user *ucrt32 = compat_ptr(arg);
+ struct compat_ica_rsa_modexpo_crt crt32;
+ struct ica_rsa_modexpo_crt crt64;
+ long rc;
+
+ if (copy_from_user(&crt32, ucrt32, sizeof(crt32)))
+ return -EFAULT;
+ crt64.inputdata = compat_ptr(crt32.inputdata);
+ crt64.inputdatalength = crt32.inputdatalength;
+ crt64.outputdata= compat_ptr(crt32.outputdata);
+ crt64.outputdatalength = crt32.outputdatalength;
+ crt64.bp_key = compat_ptr(crt32.bp_key);
+ crt64.bq_key = compat_ptr(crt32.bq_key);
+ crt64.np_prime = compat_ptr(crt32.np_prime);
+ crt64.nq_prime = compat_ptr(crt32.nq_prime);
+ crt64.u_mult_inv = compat_ptr(crt32.u_mult_inv);
+ do {
+ rc = zcrypt_rsa_crt(&crt64);
+ } while (rc == -EAGAIN);
+ if (!rc)
+ rc = put_user(crt64.outputdatalength,
+ &ucrt32->outputdatalength);
+ return rc;
+}
+
+struct compat_ica_xcRB {
+ unsigned short agent_ID;
+ unsigned int user_defined;
+ unsigned short request_ID;
+ unsigned int request_control_blk_length;
+ unsigned char padding1[16 - sizeof (compat_uptr_t)];
+ compat_uptr_t request_control_blk_addr;
+ unsigned int request_data_length;
+ char padding2[16 - sizeof (compat_uptr_t)];
+ compat_uptr_t request_data_address;
+ unsigned int reply_control_blk_length;
+ char padding3[16 - sizeof (compat_uptr_t)];
+ compat_uptr_t reply_control_blk_addr;
+ unsigned int reply_data_length;
+ char padding4[16 - sizeof (compat_uptr_t)];
+ compat_uptr_t reply_data_addr;
+ unsigned short priority_window;
+ unsigned int status;
+} __attribute__((packed));
+
+static long trans_xcRB32(struct file *filp, unsigned int cmd,
+ unsigned long arg)
+{
+ struct compat_ica_xcRB __user *uxcRB32 = compat_ptr(arg);
+ struct compat_ica_xcRB xcRB32;
+ struct ica_xcRB xcRB64;
+ long rc;
+
+ if (copy_from_user(&xcRB32, uxcRB32, sizeof(xcRB32)))
+ return -EFAULT;
+ xcRB64.agent_ID = xcRB32.agent_ID;
+ xcRB64.user_defined = xcRB32.user_defined;
+ xcRB64.request_ID = xcRB32.request_ID;
+ xcRB64.request_control_blk_length =
+ xcRB32.request_control_blk_length;
+ xcRB64.request_control_blk_addr =
+ compat_ptr(xcRB32.request_control_blk_addr);
+ xcRB64.request_data_length =
+ xcRB32.request_data_length;
+ xcRB64.request_data_address =
+ compat_ptr(xcRB32.request_data_address);
+ xcRB64.reply_control_blk_length =
+ xcRB32.reply_control_blk_length;
+ xcRB64.reply_control_blk_addr =
+ compat_ptr(xcRB32.reply_control_blk_addr);
+ xcRB64.reply_data_length = xcRB32.reply_data_length;
+ xcRB64.reply_data_addr =
+ compat_ptr(xcRB32.reply_data_addr);
+ xcRB64.priority_window = xcRB32.priority_window;
+ xcRB64.status = xcRB32.status;
+ do {
+ rc = zcrypt_send_cprb(&xcRB64);
+ } while (rc == -EAGAIN);
+ xcRB32.reply_control_blk_length = xcRB64.reply_control_blk_length;
+ xcRB32.reply_data_length = xcRB64.reply_data_length;
+ xcRB32.status = xcRB64.status;
+ if (copy_to_user(uxcRB32, &xcRB32, sizeof(xcRB32)))
+ return -EFAULT;
+ return rc;
+}
+
+long zcrypt_compat_ioctl(struct file *filp, unsigned int cmd,
+ unsigned long arg)
+{
+ if (cmd == ICARSAMODEXPO)
+ return trans_modexpo32(filp, cmd, arg);
+ if (cmd == ICARSACRT)
+ return trans_modexpo_crt32(filp, cmd, arg);
+ if (cmd == ZSECSENDCPRB)
+ return trans_xcRB32(filp, cmd, arg);
+ return zcrypt_unlocked_ioctl(filp, cmd, arg);
+}
+#endif
+
+/**
+ * Misc device file operations.
+ */
+static struct file_operations zcrypt_fops = {
+ .owner = THIS_MODULE,
+ .read = zcrypt_read,
+ .write = zcrypt_write,
+ .unlocked_ioctl = zcrypt_unlocked_ioctl,
+#ifdef CONFIG_COMPAT
+ .compat_ioctl = zcrypt_compat_ioctl,
+#endif
+ .open = zcrypt_open,
+ .release = zcrypt_release
+};
+
+/**
+ * Misc device.
+ */
+static struct miscdevice zcrypt_misc_device = {
+ .minor = MISC_DYNAMIC_MINOR,
+ .name = "z90crypt",
+ .fops = &zcrypt_fops,
+};
+
+/**
+ * Deprecated /proc entry support.
+ */
+static struct proc_dir_entry *zcrypt_entry;
+
+static inline int sprintcl(unsigned char *outaddr, unsigned char *addr,
+ unsigned int len)
+{
+ int hl, i;
+
+ hl = 0;
+ for (i = 0; i < len; i++)
+ hl += sprintf(outaddr+hl, "%01x", (unsigned int) addr[i]);
+ hl += sprintf(outaddr+hl, " ");
+ return hl;
+}
+
+static inline int sprintrw(unsigned char *outaddr, unsigned char *addr,
+ unsigned int len)
+{
+ int hl, inl, c, cx;
+
+ hl = sprintf(outaddr, " ");
+ inl = 0;
+ for (c = 0; c < (len / 16); c++) {
+ hl += sprintcl(outaddr+hl, addr+inl, 16);
+ inl += 16;
+ }
+ cx = len%16;
+ if (cx) {
+ hl += sprintcl(outaddr+hl, addr+inl, cx);
+ inl += cx;
+ }
+ hl += sprintf(outaddr+hl, "\n");
+ return hl;
+}
+
+static inline int sprinthx(unsigned char *title, unsigned char *outaddr,
+ unsigned char *addr, unsigned int len)
+{
+ int hl, inl, r, rx;
+
+ hl = sprintf(outaddr, "\n%s\n", title);
+ inl = 0;
+ for (r = 0; r < (len / 64); r++) {
+ hl += sprintrw(outaddr+hl, addr+inl, 64);
+ inl += 64;
+ }
+ rx = len % 64;
+ if (rx) {
+ hl += sprintrw(outaddr+hl, addr+inl, rx);
+ inl += rx;
+ }
+ hl += sprintf(outaddr+hl, "\n");
+ return hl;
+}
+
+static inline int sprinthx4(unsigned char *title, unsigned char *outaddr,
+ unsigned int *array, unsigned int len)
+{
+ int hl, r;
+
+ hl = sprintf(outaddr, "\n%s\n", title);
+ for (r = 0; r < len; r++) {
+ if ((r % 8) == 0)
+ hl += sprintf(outaddr+hl, " ");
+ hl += sprintf(outaddr+hl, "%08X ", array[r]);
+ if ((r % 8) == 7)
+ hl += sprintf(outaddr+hl, "\n");
+ }
+ hl += sprintf(outaddr+hl, "\n");
+ return hl;
+}
+
+static int zcrypt_status_read(char *resp_buff, char **start, off_t offset,
+ int count, int *eof, void *data)
+{
+ unsigned char *workarea;
+ int len;
+
+ len = 0;
+
+ /* resp_buff is a page. Use the right half for a work area */
+ workarea = resp_buff + 2000;
+ len += sprintf(resp_buff + len, "\nzcrypt version: %d.%d.%d\n",
+ ZCRYPT_VERSION, ZCRYPT_RELEASE, ZCRYPT_VARIANT);
+ len += sprintf(resp_buff + len, "Cryptographic domain: %d\n",
+ ap_domain_index);
+ len += sprintf(resp_buff + len, "Total device count: %d\n",
+ zcrypt_device_count);
+ len += sprintf(resp_buff + len, "PCICA count: %d\n",
+ zcrypt_count_type(ZCRYPT_PCICA));
+ len += sprintf(resp_buff + len, "PCICC count: %d\n",
+ zcrypt_count_type(ZCRYPT_PCICC));
+ len += sprintf(resp_buff + len, "PCIXCC MCL2 count: %d\n",
+ zcrypt_count_type(ZCRYPT_PCIXCC_MCL2));
+ len += sprintf(resp_buff + len, "PCIXCC MCL3 count: %d\n",
+ zcrypt_count_type(ZCRYPT_PCIXCC_MCL3));
+ len += sprintf(resp_buff + len, "CEX2C count: %d\n",
+ zcrypt_count_type(ZCRYPT_CEX2C));
+ len += sprintf(resp_buff + len, "CEX2A count: %d\n",
+ zcrypt_count_type(ZCRYPT_CEX2A));
+ len += sprintf(resp_buff + len, "requestq count: %d\n",
+ zcrypt_requestq_count());
+ len += sprintf(resp_buff + len, "pendingq count: %d\n",
+ zcrypt_pendingq_count());
+ len += sprintf(resp_buff + len, "Total open handles: %d\n\n",
+ atomic_read(&zcrypt_open_count));
+ zcrypt_status_mask(workarea);
+ len += sprinthx("Online devices: 1=PCICA 2=PCICC 3=PCIXCC(MCL2) "
+ "4=PCIXCC(MCL3) 5=CEX2C 6=CEX2A",
+ resp_buff+len, workarea, AP_DEVICES);
+ zcrypt_qdepth_mask(workarea);
+ len += sprinthx("Waiting work element counts",
+ resp_buff+len, workarea, AP_DEVICES);
+ zcrypt_perdev_reqcnt((unsigned int *) workarea);
+ len += sprinthx4("Per-device successfully completed request counts",
+ resp_buff+len,(unsigned int *) workarea, AP_DEVICES);
+ *eof = 1;
+ memset((void *) workarea, 0x00, AP_DEVICES * sizeof(unsigned int));
+ return len;
+}
+
+static void zcrypt_disable_card(int index)
+{
+ struct zcrypt_device *zdev;
+
+ spin_lock_bh(&zcrypt_device_lock);
+ list_for_each_entry(zdev, &zcrypt_device_list, list)
+ if (AP_QID_DEVICE(zdev->ap_dev->qid) == index) {
+ zdev->online = 0;
+ ap_flush_queue(zdev->ap_dev);
+ break;
+ }
+ spin_unlock_bh(&zcrypt_device_lock);
+}
+
+static void zcrypt_enable_card(int index)
+{
+ struct zcrypt_device *zdev;
+
+ spin_lock_bh(&zcrypt_device_lock);
+ list_for_each_entry(zdev, &zcrypt_device_list, list)
+ if (AP_QID_DEVICE(zdev->ap_dev->qid) == index) {
+ zdev->online = 1;
+ break;
+ }
+ spin_unlock_bh(&zcrypt_device_lock);
+}
+
+static int zcrypt_status_write(struct file *file, const char __user *buffer,
+ unsigned long count, void *data)
+{
+ unsigned char *lbuf, *ptr;
+ unsigned long local_count;
+ int j;
+
+ if (count <= 0)
+ return 0;
+
+#define LBUFSIZE 1200UL
+ lbuf = kmalloc(LBUFSIZE, GFP_KERNEL);
+ if (!lbuf) {
+ PRINTK("kmalloc failed!\n");
+ return 0;
+ }
+
+ local_count = min(LBUFSIZE - 1, count);
+ if (copy_from_user(lbuf, buffer, local_count) != 0) {
+ kfree(lbuf);
+ return -EFAULT;
+ }
+ lbuf[local_count] = '\0';
+
+ ptr = strstr(lbuf, "Online devices");
+ if (!ptr) {
+ PRINTK("Unable to parse data (missing \"Online devices\")\n");
+ goto out;
+ }
+ ptr = strstr(ptr, "\n");
+ if (!ptr) {
+ PRINTK("Unable to parse data (missing newline "
+ "after \"Online devices\")\n");
+ goto out;
+ }
+ ptr++;
+
+ if (strstr(ptr, "Waiting work element counts") == NULL) {
+ PRINTK("Unable to parse data (missing "
+ "\"Waiting work element counts\")\n");
+ goto out;
+ }
+
+ for (j = 0; j < 64 && *ptr; ptr++) {
+ /**
+ * '0' for no device, '1' for PCICA, '2' for PCICC,
+ * '3' for PCIXCC_MCL2, '4' for PCIXCC_MCL3,
+ * '5' for CEX2C and '6' for CEX2A'
+ */
+ if (*ptr >= '0' && *ptr <= '6')
+ j++;
+ else if (*ptr == 'd' || *ptr == 'D')
+ zcrypt_disable_card(j++);
+ else if (*ptr == 'e' || *ptr == 'E')
+ zcrypt_enable_card(j++);
+ else if (*ptr != ' ' && *ptr != '\t')
+ break;
+ }
+out:
+ kfree(lbuf);
+ return count;
+}
+
+/**
+ * The module initialization code.
+ */
+int __init zcrypt_api_init(void)
+{
+ int rc;
+
+ /* Register the request sprayer. */
+ rc = misc_register(&zcrypt_misc_device);
+ if (rc < 0) {
+ PRINTKW(KERN_ERR "misc_register (minor %d) failed with %d\n",
+ zcrypt_misc_device.minor, rc);
+ goto out;
+ }
+
+ /* Set up the proc file system */
+ zcrypt_entry = create_proc_entry("driver/z90crypt", 0644, NULL);
+ if (!zcrypt_entry) {
+ PRINTK("Couldn't create z90crypt proc entry\n");
+ rc = -ENOMEM;
+ goto out_misc;
+ }
+ zcrypt_entry->nlink = 1;
+ zcrypt_entry->data = NULL;
+ zcrypt_entry->read_proc = zcrypt_status_read;
+ zcrypt_entry->write_proc = zcrypt_status_write;
+
+ return 0;
+
+out_misc:
+ misc_deregister(&zcrypt_misc_device);
+out:
+ return rc;
+}
+
+/**
+ * The module termination code.
+ */
+void zcrypt_api_exit(void)
+{
+ remove_proc_entry("driver/z90crypt", NULL);
+ misc_deregister(&zcrypt_misc_device);
+}
+
+#ifndef CONFIG_ZCRYPT_MONOLITHIC
+module_init(zcrypt_api_init);
+module_exit(zcrypt_api_exit);
+#endif
diff --git a/drivers/s390/crypto/zcrypt_api.h b/drivers/s390/crypto/zcrypt_api.h
new file mode 100644
index 00000000000..de4877ee618
--- /dev/null
+++ b/drivers/s390/crypto/zcrypt_api.h
@@ -0,0 +1,141 @@
+/*
+ * linux/drivers/s390/crypto/zcrypt_api.h
+ *
+ * zcrypt 2.1.0
+ *
+ * Copyright (C) 2001, 2006 IBM Corporation
+ * Author(s): Robert Burroughs
+ * Eric Rossman (edrossma@us.ibm.com)
+ * Cornelia Huck <cornelia.huck@de.ibm.com>
+ *
+ * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
+ * Major cleanup & driver split: Martin Schwidefsky <schwidefsky@de.ibm.com>
+ * Ralph Wuerthner <rwuerthn@de.ibm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#ifndef _ZCRYPT_API_H_
+#define _ZCRYPT_API_H_
+
+/**
+ * Macro definitions
+ *
+ * PDEBUG debugs in the form "zcrypt: function_name -> message"
+ *
+ * PRINTK is like PDEBUG, except that it is always enabled
+ * PRINTKN is like PRINTK, except that it does not include the function name
+ * PRINTKW is like PRINTK, except that it uses KERN_WARNING
+ * PRINTKC is like PRINTK, except that it uses KERN_CRIT
+ */
+#define DEV_NAME "zcrypt"
+
+#define PRINTK(fmt, args...) \
+ printk(KERN_DEBUG DEV_NAME ": %s -> " fmt, __FUNCTION__ , ## args)
+#define PRINTKN(fmt, args...) \
+ printk(KERN_DEBUG DEV_NAME ": " fmt, ## args)
+#define PRINTKW(fmt, args...) \
+ printk(KERN_WARNING DEV_NAME ": %s -> " fmt, __FUNCTION__ , ## args)
+#define PRINTKC(fmt, args...) \
+ printk(KERN_CRIT DEV_NAME ": %s -> " fmt, __FUNCTION__ , ## args)
+
+#ifdef ZCRYPT_DEBUG
+#define PDEBUG(fmt, args...) \
+ printk(KERN_DEBUG DEV_NAME ": %s -> " fmt, __FUNCTION__ , ## args)
+#else
+#define PDEBUG(fmt, args...) do {} while (0)
+#endif
+
+#include "ap_bus.h"
+#include <asm/zcrypt.h>
+
+/* deprecated status calls */
+#define ICAZ90STATUS _IOR(ZCRYPT_IOCTL_MAGIC, 0x10, struct ica_z90_status)
+#define Z90STAT_PCIXCCCOUNT _IOR(ZCRYPT_IOCTL_MAGIC, 0x43, int)
+
+/**
+ * This structure is deprecated and the corresponding ioctl() has been
+ * replaced with individual ioctl()s for each piece of data!
+ */
+struct ica_z90_status {
+ int totalcount;
+ int leedslitecount; // PCICA
+ int leeds2count; // PCICC
+ // int PCIXCCCount; is not in struct for backward compatibility
+ int requestqWaitCount;
+ int pendingqWaitCount;
+ int totalOpenCount;
+ int cryptoDomain;
+ // status: 0=not there, 1=PCICA, 2=PCICC, 3=PCIXCC_MCL2, 4=PCIXCC_MCL3,
+ // 5=CEX2C
+ unsigned char status[64];
+ // qdepth: # work elements waiting for each device
+ unsigned char qdepth[64];
+};
+
+/**
+ * device type for an actual device is either PCICA, PCICC, PCIXCC_MCL2,
+ * PCIXCC_MCL3, CEX2C, or CEX2A
+ *
+ * NOTE: PCIXCC_MCL3 refers to a PCIXCC with May 2004 version of Licensed
+ * Internal Code (LIC) (EC J12220 level 29).
+ * PCIXCC_MCL2 refers to any LIC before this level.
+ */
+#define ZCRYPT_PCICA 1
+#define ZCRYPT_PCICC 2
+#define ZCRYPT_PCIXCC_MCL2 3
+#define ZCRYPT_PCIXCC_MCL3 4
+#define ZCRYPT_CEX2C 5
+#define ZCRYPT_CEX2A 6
+
+struct zcrypt_device;
+
+struct zcrypt_ops {
+ long (*rsa_modexpo)(struct zcrypt_device *, struct ica_rsa_modexpo *);
+ long (*rsa_modexpo_crt)(struct zcrypt_device *,
+ struct ica_rsa_modexpo_crt *);
+ long (*send_cprb)(struct zcrypt_device *, struct ica_xcRB *);
+};
+
+struct zcrypt_device {
+ struct list_head list; /* Device list. */
+ spinlock_t lock; /* Per device lock. */
+ struct kref refcount; /* device refcounting */
+ struct ap_device *ap_dev; /* The "real" ap device. */
+ struct zcrypt_ops *ops; /* Crypto operations. */
+ int online; /* User online/offline */
+
+ int user_space_type; /* User space device id. */
+ char *type_string; /* User space device name. */
+ int min_mod_size; /* Min number of bits. */
+ int max_mod_size; /* Max number of bits. */
+ int short_crt; /* Card has crt length restriction. */
+ int speed_rating; /* Speed of the crypto device. */
+
+ int request_count; /* # current requests. */
+
+ struct ap_message reply; /* Per-device reply structure. */
+};
+
+struct zcrypt_device *zcrypt_device_alloc(size_t);
+void zcrypt_device_free(struct zcrypt_device *);
+void zcrypt_device_get(struct zcrypt_device *);
+int zcrypt_device_put(struct zcrypt_device *);
+int zcrypt_device_register(struct zcrypt_device *);
+void zcrypt_device_unregister(struct zcrypt_device *);
+int zcrypt_api_init(void);
+void zcrypt_api_exit(void);
+
+#endif /* _ZCRYPT_API_H_ */
diff --git a/drivers/s390/crypto/zcrypt_cca_key.h b/drivers/s390/crypto/zcrypt_cca_key.h
new file mode 100644
index 00000000000..8dbcf0eef3e
--- /dev/null
+++ b/drivers/s390/crypto/zcrypt_cca_key.h
@@ -0,0 +1,350 @@
+/*
+ * linux/drivers/s390/crypto/zcrypt_cca_key.h
+ *
+ * zcrypt 2.1.0
+ *
+ * Copyright (C) 2001, 2006 IBM Corporation
+ * Author(s): Robert Burroughs
+ * Eric Rossman (edrossma@us.ibm.com)
+ *
+ * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
+ * Major cleanup & driver split: Martin Schwidefsky <schwidefsky@de.ibm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#ifndef _ZCRYPT_CCA_KEY_H_
+#define _ZCRYPT_CCA_KEY_H_
+
+struct T6_keyBlock_hdr {
+ unsigned short blen;
+ unsigned short ulen;
+ unsigned short flags;
+};
+
+/**
+ * mapping for the cca private ME key token.
+ * Three parts of interest here: the header, the private section and
+ * the public section.
+ *
+ * mapping for the cca key token header
+ */
+struct cca_token_hdr {
+ unsigned char token_identifier;
+ unsigned char version;
+ unsigned short token_length;
+ unsigned char reserved[4];
+} __attribute__((packed));
+
+#define CCA_TKN_HDR_ID_EXT 0x1E
+
+/**
+ * mapping for the cca private ME section
+ */
+struct cca_private_ext_ME_sec {
+ unsigned char section_identifier;
+ unsigned char version;
+ unsigned short section_length;
+ unsigned char private_key_hash[20];
+ unsigned char reserved1[4];
+ unsigned char key_format;
+ unsigned char reserved2;
+ unsigned char key_name_hash[20];
+ unsigned char key_use_flags[4];
+ unsigned char reserved3[6];
+ unsigned char reserved4[24];
+ unsigned char confounder[24];
+ unsigned char exponent[128];
+ unsigned char modulus[128];
+} __attribute__((packed));
+
+#define CCA_PVT_USAGE_ALL 0x80
+
+/**
+ * mapping for the cca public section
+ * In a private key, the modulus doesn't appear in the public
+ * section. So, an arbitrary public exponent of 0x010001 will be
+ * used, for a section length of 0x0F always.
+ */
+struct cca_public_sec {
+ unsigned char section_identifier;
+ unsigned char version;
+ unsigned short section_length;
+ unsigned char reserved[2];
+ unsigned short exponent_len;
+ unsigned short modulus_bit_len;
+ unsigned short modulus_byte_len; /* In a private key, this is 0 */
+} __attribute__((packed));
+
+/**
+ * mapping for the cca private CRT key 'token'
+ * The first three parts (the only parts considered in this release)
+ * are: the header, the private section and the public section.
+ * The header and public section are the same as for the
+ * struct cca_private_ext_ME
+ *
+ * Following the structure are the quantities p, q, dp, dq, u, pad,
+ * and modulus, in that order, where pad_len is the modulo 8
+ * complement of the residue modulo 8 of the sum of
+ * (p_len + q_len + dp_len + dq_len + u_len).
+ */
+struct cca_pvt_ext_CRT_sec {
+ unsigned char section_identifier;
+ unsigned char version;
+ unsigned short section_length;
+ unsigned char private_key_hash[20];
+ unsigned char reserved1[4];
+ unsigned char key_format;
+ unsigned char reserved2;
+ unsigned char key_name_hash[20];
+ unsigned char key_use_flags[4];
+ unsigned short p_len;
+ unsigned short q_len;
+ unsigned short dp_len;
+ unsigned short dq_len;
+ unsigned short u_len;
+ unsigned short mod_len;
+ unsigned char reserved3[4];
+ unsigned short pad_len;
+ unsigned char reserved4[52];
+ unsigned char confounder[8];
+} __attribute__((packed));
+
+#define CCA_PVT_EXT_CRT_SEC_ID_PVT 0x08
+#define CCA_PVT_EXT_CRT_SEC_FMT_CL 0x40
+
+/**
+ * Set up private key fields of a type6 MEX message.
+ * Note that all numerics in the key token are big-endian,
+ * while the entries in the key block header are little-endian.
+ *
+ * @mex: pointer to user input data
+ * @p: pointer to memory area for the key
+ *
+ * Returns the size of the key area or -EFAULT
+ */
+static inline int zcrypt_type6_mex_key_de(struct ica_rsa_modexpo *mex,
+ void *p, int big_endian)
+{
+ static struct cca_token_hdr static_pvt_me_hdr = {
+ .token_identifier = 0x1E,
+ .token_length = 0x0183,
+ };
+ static struct cca_private_ext_ME_sec static_pvt_me_sec = {
+ .section_identifier = 0x02,
+ .section_length = 0x016C,
+ .key_use_flags = {0x80,0x00,0x00,0x00},
+ };
+ static struct cca_public_sec static_pub_me_sec = {
+ .section_identifier = 0x04,
+ .section_length = 0x000F,
+ .exponent_len = 0x0003,
+ };
+ static char pk_exponent[3] = { 0x01, 0x00, 0x01 };
+ struct {
+ struct T6_keyBlock_hdr t6_hdr;
+ struct cca_token_hdr pvtMeHdr;
+ struct cca_private_ext_ME_sec pvtMeSec;
+ struct cca_public_sec pubMeSec;
+ char exponent[3];
+ } __attribute__((packed)) *key = p;
+ unsigned char *temp;
+
+ memset(key, 0, sizeof(*key));
+
+ if (big_endian) {
+ key->t6_hdr.blen = cpu_to_be16(0x189);
+ key->t6_hdr.ulen = cpu_to_be16(0x189 - 2);
+ } else {
+ key->t6_hdr.blen = cpu_to_le16(0x189);
+ key->t6_hdr.ulen = cpu_to_le16(0x189 - 2);
+ }
+ key->pvtMeHdr = static_pvt_me_hdr;
+ key->pvtMeSec = static_pvt_me_sec;
+ key->pubMeSec = static_pub_me_sec;
+ /**
+ * In a private key, the modulus doesn't appear in the public
+ * section. So, an arbitrary public exponent of 0x010001 will be
+ * used.
+ */
+ memcpy(key->exponent, pk_exponent, 3);
+
+ /* key parameter block */
+ temp = key->pvtMeSec.exponent +
+ sizeof(key->pvtMeSec.exponent) - mex->inputdatalength;
+ if (copy_from_user(temp, mex->b_key, mex->inputdatalength))
+ return -EFAULT;
+
+ /* modulus */
+ temp = key->pvtMeSec.modulus +
+ sizeof(key->pvtMeSec.modulus) - mex->inputdatalength;
+ if (copy_from_user(temp, mex->n_modulus, mex->inputdatalength))
+ return -EFAULT;
+ key->pubMeSec.modulus_bit_len = 8 * mex->inputdatalength;
+ return sizeof(*key);
+}
+
+/**
+ * Set up private key fields of a type6 MEX message. The _pad variant
+ * strips leading zeroes from the b_key.
+ * Note that all numerics in the key token are big-endian,
+ * while the entries in the key block header are little-endian.
+ *
+ * @mex: pointer to user input data
+ * @p: pointer to memory area for the key
+ *
+ * Returns the size of the key area or -EFAULT
+ */
+static inline int zcrypt_type6_mex_key_en(struct ica_rsa_modexpo *mex,
+ void *p, int big_endian)
+{
+ static struct cca_token_hdr static_pub_hdr = {
+ .token_identifier = 0x1E,
+ };
+ static struct cca_public_sec static_pub_sec = {
+ .section_identifier = 0x04,
+ };
+ struct {
+ struct T6_keyBlock_hdr t6_hdr;
+ struct cca_token_hdr pubHdr;
+ struct cca_public_sec pubSec;
+ char exponent[0];
+ } __attribute__((packed)) *key = p;
+ unsigned char *temp;
+ int i;
+
+ memset(key, 0, sizeof(*key));
+
+ key->pubHdr = static_pub_hdr;
+ key->pubSec = static_pub_sec;
+
+ /* key parameter block */
+ temp = key->exponent;
+ if (copy_from_user(temp, mex->b_key, mex->inputdatalength))
+ return -EFAULT;
+ /* Strip leading zeroes from b_key. */
+ for (i = 0; i < mex->inputdatalength; i++)
+ if (temp[i])
+ break;
+ if (i >= mex->inputdatalength)
+ return -EINVAL;
+ memmove(temp, temp + i, mex->inputdatalength - i);
+ temp += mex->inputdatalength - i;
+ /* modulus */
+ if (copy_from_user(temp, mex->n_modulus, mex->inputdatalength))
+ return -EFAULT;
+
+ key->pubSec.modulus_bit_len = 8 * mex->inputdatalength;
+ key->pubSec.modulus_byte_len = mex->inputdatalength;
+ key->pubSec.exponent_len = mex->inputdatalength - i;
+ key->pubSec.section_length = sizeof(key->pubSec) +
+ 2*mex->inputdatalength - i;
+ key->pubHdr.token_length =
+ key->pubSec.section_length + sizeof(key->pubHdr);
+ if (big_endian) {
+ key->t6_hdr.ulen = cpu_to_be16(key->pubHdr.token_length + 4);
+ key->t6_hdr.blen = cpu_to_be16(key->pubHdr.token_length + 6);
+ } else {
+ key->t6_hdr.ulen = cpu_to_le16(key->pubHdr.token_length + 4);
+ key->t6_hdr.blen = cpu_to_le16(key->pubHdr.token_length + 6);
+ }
+ return sizeof(*key) + 2*mex->inputdatalength - i;
+}
+
+/**
+ * Set up private key fields of a type6 CRT message.
+ * Note that all numerics in the key token are big-endian,
+ * while the entries in the key block header are little-endian.
+ *
+ * @mex: pointer to user input data
+ * @p: pointer to memory area for the key
+ *
+ * Returns the size of the key area or -EFAULT
+ */
+static inline int zcrypt_type6_crt_key(struct ica_rsa_modexpo_crt *crt,
+ void *p, int big_endian)
+{
+ static struct cca_public_sec static_cca_pub_sec = {
+ .section_identifier = 4,
+ .section_length = 0x000f,
+ .exponent_len = 0x0003,
+ };
+ static char pk_exponent[3] = { 0x01, 0x00, 0x01 };
+ struct {
+ struct T6_keyBlock_hdr t6_hdr;
+ struct cca_token_hdr token;
+ struct cca_pvt_ext_CRT_sec pvt;
+ char key_parts[0];
+ } __attribute__((packed)) *key = p;
+ struct cca_public_sec *pub;
+ int short_len, long_len, pad_len, key_len, size;
+
+ memset(key, 0, sizeof(*key));
+
+ short_len = crt->inputdatalength / 2;
+ long_len = short_len + 8;
+ pad_len = -(3*long_len + 2*short_len) & 7;
+ key_len = 3*long_len + 2*short_len + pad_len + crt->inputdatalength;
+ size = sizeof(*key) + key_len + sizeof(*pub) + 3;
+
+ /* parameter block.key block */
+ if (big_endian) {
+ key->t6_hdr.blen = cpu_to_be16(size);
+ key->t6_hdr.ulen = cpu_to_be16(size - 2);
+ } else {
+ key->t6_hdr.blen = cpu_to_le16(size);
+ key->t6_hdr.ulen = cpu_to_le16(size - 2);
+ }
+
+ /* key token header */
+ key->token.token_identifier = CCA_TKN_HDR_ID_EXT;
+ key->token.token_length = size - 6;
+
+ /* private section */
+ key->pvt.section_identifier = CCA_PVT_EXT_CRT_SEC_ID_PVT;
+ key->pvt.section_length = sizeof(key->pvt) + key_len;
+ key->pvt.key_format = CCA_PVT_EXT_CRT_SEC_FMT_CL;
+ key->pvt.key_use_flags[0] = CCA_PVT_USAGE_ALL;
+ key->pvt.p_len = key->pvt.dp_len = key->pvt.u_len = long_len;
+ key->pvt.q_len = key->pvt.dq_len = short_len;
+ key->pvt.mod_len = crt->inputdatalength;
+ key->pvt.pad_len = pad_len;
+
+ /* key parts */
+ if (copy_from_user(key->key_parts, crt->np_prime, long_len) ||
+ copy_from_user(key->key_parts + long_len,
+ crt->nq_prime, short_len) ||
+ copy_from_user(key->key_parts + long_len + short_len,
+ crt->bp_key, long_len) ||
+ copy_from_user(key->key_parts + 2*long_len + short_len,
+ crt->bq_key, short_len) ||
+ copy_from_user(key->key_parts + 2*long_len + 2*short_len,
+ crt->u_mult_inv, long_len))
+ return -EFAULT;
+ memset(key->key_parts + 3*long_len + 2*short_len + pad_len,
+ 0xff, crt->inputdatalength);
+ pub = (struct cca_public_sec *)(key->key_parts + key_len);
+ *pub = static_cca_pub_sec;
+ pub->modulus_bit_len = 8 * crt->inputdatalength;
+ /**
+ * In a private key, the modulus doesn't appear in the public
+ * section. So, an arbitrary public exponent of 0x010001 will be
+ * used.
+ */
+ memcpy((char *) (pub + 1), pk_exponent, 3);
+ return size;
+}
+
+#endif /* _ZCRYPT_CCA_KEY_H_ */
diff --git a/drivers/s390/crypto/zcrypt_cex2a.c b/drivers/s390/crypto/zcrypt_cex2a.c
new file mode 100644
index 00000000000..a62b00083d0
--- /dev/null
+++ b/drivers/s390/crypto/zcrypt_cex2a.c
@@ -0,0 +1,435 @@
+/*
+ * linux/drivers/s390/crypto/zcrypt_cex2a.c
+ *
+ * zcrypt 2.1.0
+ *
+ * Copyright (C) 2001, 2006 IBM Corporation
+ * Author(s): Robert Burroughs
+ * Eric Rossman (edrossma@us.ibm.com)
+ *
+ * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
+ * Major cleanup & driver split: Martin Schwidefsky <schwidefsky@de.ibm.com>
+ * Ralph Wuerthner <rwuerthn@de.ibm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/err.h>
+#include <asm/atomic.h>
+#include <asm/uaccess.h>
+
+#include "ap_bus.h"
+#include "zcrypt_api.h"
+#include "zcrypt_error.h"
+#include "zcrypt_cex2a.h"
+
+#define CEX2A_MIN_MOD_SIZE 1 /* 8 bits */
+#define CEX2A_MAX_MOD_SIZE 256 /* 2048 bits */
+
+#define CEX2A_SPEED_RATING 970
+
+#define CEX2A_MAX_MESSAGE_SIZE 0x390 /* sizeof(struct type50_crb2_msg) */
+#define CEX2A_MAX_RESPONSE_SIZE 0x110 /* max outputdatalength + type80_hdr */
+
+#define CEX2A_CLEANUP_TIME (15*HZ)
+
+static struct ap_device_id zcrypt_cex2a_ids[] = {
+ { AP_DEVICE(AP_DEVICE_TYPE_CEX2A) },
+ { /* end of list */ },
+};
+
+#ifndef CONFIG_ZCRYPT_MONOLITHIC
+MODULE_DEVICE_TABLE(ap, zcrypt_cex2a_ids);
+MODULE_AUTHOR("IBM Corporation");
+MODULE_DESCRIPTION("CEX2A Cryptographic Coprocessor device driver, "
+ "Copyright 2001, 2006 IBM Corporation");
+MODULE_LICENSE("GPL");
+#endif
+
+static int zcrypt_cex2a_probe(struct ap_device *ap_dev);
+static void zcrypt_cex2a_remove(struct ap_device *ap_dev);
+static void zcrypt_cex2a_receive(struct ap_device *, struct ap_message *,
+ struct ap_message *);
+
+static struct ap_driver zcrypt_cex2a_driver = {
+ .probe = zcrypt_cex2a_probe,
+ .remove = zcrypt_cex2a_remove,
+ .receive = zcrypt_cex2a_receive,
+ .ids = zcrypt_cex2a_ids,
+};
+
+/**
+ * Convert a ICAMEX message to a type50 MEX message.
+ *
+ * @zdev: crypto device pointer
+ * @zreq: crypto request pointer
+ * @mex: pointer to user input data
+ *
+ * Returns 0 on success or -EFAULT.
+ */
+static int ICAMEX_msg_to_type50MEX_msg(struct zcrypt_device *zdev,
+ struct ap_message *ap_msg,
+ struct ica_rsa_modexpo *mex)
+{
+ unsigned char *mod, *exp, *inp;
+ int mod_len;
+
+ mod_len = mex->inputdatalength;
+
+ if (mod_len <= 128) {
+ struct type50_meb1_msg *meb1 = ap_msg->message;
+ memset(meb1, 0, sizeof(*meb1));
+ ap_msg->length = sizeof(*meb1);
+ meb1->header.msg_type_code = TYPE50_TYPE_CODE;
+ meb1->header.msg_len = sizeof(*meb1);
+ meb1->keyblock_type = TYPE50_MEB1_FMT;
+ mod = meb1->modulus + sizeof(meb1->modulus) - mod_len;
+ exp = meb1->exponent + sizeof(meb1->exponent) - mod_len;
+ inp = meb1->message + sizeof(meb1->message) - mod_len;
+ } else {
+ struct type50_meb2_msg *meb2 = ap_msg->message;
+ memset(meb2, 0, sizeof(*meb2));
+ ap_msg->length = sizeof(*meb2);
+ meb2->header.msg_type_code = TYPE50_TYPE_CODE;
+ meb2->header.msg_len = sizeof(*meb2);
+ meb2->keyblock_type = TYPE50_MEB2_FMT;
+ mod = meb2->modulus + sizeof(meb2->modulus) - mod_len;
+ exp = meb2->exponent + sizeof(meb2->exponent) - mod_len;
+ inp = meb2->message + sizeof(meb2->message) - mod_len;
+ }
+
+ if (copy_from_user(mod, mex->n_modulus, mod_len) ||
+ copy_from_user(exp, mex->b_key, mod_len) ||
+ copy_from_user(inp, mex->inputdata, mod_len))
+ return -EFAULT;
+ return 0;
+}
+
+/**
+ * Convert a ICACRT message to a type50 CRT message.
+ *
+ * @zdev: crypto device pointer
+ * @zreq: crypto request pointer
+ * @crt: pointer to user input data
+ *
+ * Returns 0 on success or -EFAULT.
+ */
+static int ICACRT_msg_to_type50CRT_msg(struct zcrypt_device *zdev,
+ struct ap_message *ap_msg,
+ struct ica_rsa_modexpo_crt *crt)
+{
+ int mod_len, short_len, long_len, long_offset;
+ unsigned char *p, *q, *dp, *dq, *u, *inp;
+
+ mod_len = crt->inputdatalength;
+ short_len = mod_len / 2;
+ long_len = mod_len / 2 + 8;
+
+ /*
+ * CEX2A cannot handle p, dp, or U > 128 bytes.
+ * If we have one of these, we need to do extra checking.
+ */
+ if (long_len > 128) {
+ /*
+ * zcrypt_rsa_crt already checked for the leading
+ * zeroes of np_prime, bp_key and u_mult_inc.
+ */
+ long_offset = long_len - 128;
+ long_len = 128;
+ } else
+ long_offset = 0;
+
+ /*
+ * Instead of doing extra work for p, dp, U > 64 bytes, we'll just use
+ * the larger message structure.
+ */
+ if (long_len <= 64) {
+ struct type50_crb1_msg *crb1 = ap_msg->message;
+ memset(crb1, 0, sizeof(*crb1));
+ ap_msg->length = sizeof(*crb1);
+ crb1->header.msg_type_code = TYPE50_TYPE_CODE;
+ crb1->header.msg_len = sizeof(*crb1);
+ crb1->keyblock_type = TYPE50_CRB1_FMT;
+ p = crb1->p + sizeof(crb1->p) - long_len;
+ q = crb1->q + sizeof(crb1->q) - short_len;
+ dp = crb1->dp + sizeof(crb1->dp) - long_len;
+ dq = crb1->dq + sizeof(crb1->dq) - short_len;
+ u = crb1->u + sizeof(crb1->u) - long_len;
+ inp = crb1->message + sizeof(crb1->message) - mod_len;
+ } else {
+ struct type50_crb2_msg *crb2 = ap_msg->message;
+ memset(crb2, 0, sizeof(*crb2));
+ ap_msg->length = sizeof(*crb2);
+ crb2->header.msg_type_code = TYPE50_TYPE_CODE;
+ crb2->header.msg_len = sizeof(*crb2);
+ crb2->keyblock_type = TYPE50_CRB2_FMT;
+ p = crb2->p + sizeof(crb2->p) - long_len;
+ q = crb2->q + sizeof(crb2->q) - short_len;
+ dp = crb2->dp + sizeof(crb2->dp) - long_len;
+ dq = crb2->dq + sizeof(crb2->dq) - short_len;
+ u = crb2->u + sizeof(crb2->u) - long_len;
+ inp = crb2->message + sizeof(crb2->message) - mod_len;
+ }
+
+ if (copy_from_user(p, crt->np_prime + long_offset, long_len) ||
+ copy_from_user(q, crt->nq_prime, short_len) ||
+ copy_from_user(dp, crt->bp_key + long_offset, long_len) ||
+ copy_from_user(dq, crt->bq_key, short_len) ||
+ copy_from_user(u, crt->u_mult_inv + long_offset, long_len) ||
+ copy_from_user(inp, crt->inputdata, mod_len))
+ return -EFAULT;
+
+
+ return 0;
+}
+
+/**
+ * Copy results from a type 80 reply message back to user space.
+ *
+ * @zdev: crypto device pointer
+ * @reply: reply AP message.
+ * @data: pointer to user output data
+ * @length: size of user output data
+ *
+ * Returns 0 on success or -EFAULT.
+ */
+static int convert_type80(struct zcrypt_device *zdev,
+ struct ap_message *reply,
+ char __user *outputdata,
+ unsigned int outputdatalength)
+{
+ struct type80_hdr *t80h = reply->message;
+ unsigned char *data;
+
+ if (t80h->len < sizeof(*t80h) + outputdatalength) {
+ /* The result is too short, the CEX2A card may not do that.. */
+ zdev->online = 0;
+ return -EAGAIN; /* repeat the request on a different device. */
+ }
+ BUG_ON(t80h->len > CEX2A_MAX_RESPONSE_SIZE);
+ data = reply->message + t80h->len - outputdatalength;
+ if (copy_to_user(outputdata, data, outputdatalength))
+ return -EFAULT;
+ return 0;
+}
+
+static int convert_response(struct zcrypt_device *zdev,
+ struct ap_message *reply,
+ char __user *outputdata,
+ unsigned int outputdatalength)
+{
+ /* Response type byte is the second byte in the response. */
+ switch (((unsigned char *) reply->message)[1]) {
+ case TYPE82_RSP_CODE:
+ case TYPE88_RSP_CODE:
+ return convert_error(zdev, reply);
+ case TYPE80_RSP_CODE:
+ return convert_type80(zdev, reply,
+ outputdata, outputdatalength);
+ default: /* Unknown response type, this should NEVER EVER happen */
+ PRINTK("Unrecognized Message Header: %08x%08x\n",
+ *(unsigned int *) reply->message,
+ *(unsigned int *) (reply->message+4));
+ zdev->online = 0;
+ return -EAGAIN; /* repeat the request on a different device. */
+ }
+}
+
+/**
+ * This function is called from the AP bus code after a crypto request
+ * "msg" has finished with the reply message "reply".
+ * It is called from tasklet context.
+ * @ap_dev: pointer to the AP device
+ * @msg: pointer to the AP message
+ * @reply: pointer to the AP reply message
+ */
+static void zcrypt_cex2a_receive(struct ap_device *ap_dev,
+ struct ap_message *msg,
+ struct ap_message *reply)
+{
+ static struct error_hdr error_reply = {
+ .type = TYPE82_RSP_CODE,
+ .reply_code = REP82_ERROR_MACHINE_FAILURE,
+ };
+ struct type80_hdr *t80h = reply->message;
+ int length;
+
+ /* Copy the reply message to the request message buffer. */
+ if (IS_ERR(reply))
+ memcpy(msg->message, &error_reply, sizeof(error_reply));
+ else if (t80h->type == TYPE80_RSP_CODE) {
+ length = min(CEX2A_MAX_RESPONSE_SIZE, (int) t80h->len);
+ memcpy(msg->message, reply->message, length);
+ } else
+ memcpy(msg->message, reply->message, sizeof error_reply);
+ complete((struct completion *) msg->private);
+}
+
+static atomic_t zcrypt_step = ATOMIC_INIT(0);
+
+/**
+ * The request distributor calls this function if it picked the CEX2A
+ * device to handle a modexpo request.
+ * @zdev: pointer to zcrypt_device structure that identifies the
+ * CEX2A device to the request distributor
+ * @mex: pointer to the modexpo request buffer
+ */
+static long zcrypt_cex2a_modexpo(struct zcrypt_device *zdev,
+ struct ica_rsa_modexpo *mex)
+{
+ struct ap_message ap_msg;
+ struct completion work;
+ int rc;
+
+ ap_msg.message = (void *) kmalloc(CEX2A_MAX_MESSAGE_SIZE, GFP_KERNEL);
+ if (!ap_msg.message)
+ return -ENOMEM;
+ ap_msg.psmid = (((unsigned long long) current->pid) << 32) +
+ atomic_inc_return(&zcrypt_step);
+ ap_msg.private = &work;
+ rc = ICAMEX_msg_to_type50MEX_msg(zdev, &ap_msg, mex);
+ if (rc)
+ goto out_free;
+ init_completion(&work);
+ ap_queue_message(zdev->ap_dev, &ap_msg);
+ rc = wait_for_completion_interruptible_timeout(
+ &work, CEX2A_CLEANUP_TIME);
+ if (rc > 0)
+ rc = convert_response(zdev, &ap_msg, mex->outputdata,
+ mex->outputdatalength);
+ else {
+ /* Signal pending or message timed out. */
+ ap_cancel_message(zdev->ap_dev, &ap_msg);
+ if (rc == 0)
+ /* Message timed out. */
+ rc = -ETIME;
+ }
+out_free:
+ kfree(ap_msg.message);
+ return rc;
+}
+
+/**
+ * The request distributor calls this function if it picked the CEX2A
+ * device to handle a modexpo_crt request.
+ * @zdev: pointer to zcrypt_device structure that identifies the
+ * CEX2A device to the request distributor
+ * @crt: pointer to the modexpoc_crt request buffer
+ */
+static long zcrypt_cex2a_modexpo_crt(struct zcrypt_device *zdev,
+ struct ica_rsa_modexpo_crt *crt)
+{
+ struct ap_message ap_msg;
+ struct completion work;
+ int rc;
+
+ ap_msg.message = (void *) kmalloc(CEX2A_MAX_MESSAGE_SIZE, GFP_KERNEL);
+ if (!ap_msg.message)
+ return -ENOMEM;
+ ap_msg.psmid = (((unsigned long long) current->pid) << 32) +
+ atomic_inc_return(&zcrypt_step);
+ ap_msg.private = &work;
+ rc = ICACRT_msg_to_type50CRT_msg(zdev, &ap_msg, crt);
+ if (rc)
+ goto out_free;
+ init_completion(&work);
+ ap_queue_message(zdev->ap_dev, &ap_msg);
+ rc = wait_for_completion_interruptible_timeout(
+ &work, CEX2A_CLEANUP_TIME);
+ if (rc > 0)
+ rc = convert_response(zdev, &ap_msg, crt->outputdata,
+ crt->outputdatalength);
+ else {
+ /* Signal pending or message timed out. */
+ ap_cancel_message(zdev->ap_dev, &ap_msg);
+ if (rc == 0)
+ /* Message timed out. */
+ rc = -ETIME;
+ }
+out_free:
+ kfree(ap_msg.message);
+ return rc;
+}
+
+/**
+ * The crypto operations for a CEX2A card.
+ */
+static struct zcrypt_ops zcrypt_cex2a_ops = {
+ .rsa_modexpo = zcrypt_cex2a_modexpo,
+ .rsa_modexpo_crt = zcrypt_cex2a_modexpo_crt,
+};
+
+/**
+ * Probe function for CEX2A cards. It always accepts the AP device
+ * since the bus_match already checked the hardware type.
+ * @ap_dev: pointer to the AP device.
+ */
+static int zcrypt_cex2a_probe(struct ap_device *ap_dev)
+{
+ struct zcrypt_device *zdev;
+ int rc;
+
+ zdev = zcrypt_device_alloc(CEX2A_MAX_RESPONSE_SIZE);
+ if (!zdev)
+ return -ENOMEM;
+ zdev->ap_dev = ap_dev;
+ zdev->ops = &zcrypt_cex2a_ops;
+ zdev->online = 1;
+ zdev->user_space_type = ZCRYPT_CEX2A;
+ zdev->type_string = "CEX2A";
+ zdev->min_mod_size = CEX2A_MIN_MOD_SIZE;
+ zdev->max_mod_size = CEX2A_MAX_MOD_SIZE;
+ zdev->short_crt = 1;
+ zdev->speed_rating = CEX2A_SPEED_RATING;
+ ap_dev->reply = &zdev->reply;
+ ap_dev->private = zdev;
+ rc = zcrypt_device_register(zdev);
+ if (rc)
+ goto out_free;
+ return 0;
+
+out_free:
+ ap_dev->private = NULL;
+ zcrypt_device_free(zdev);
+ return rc;
+}
+
+/**
+ * This is called to remove the extended CEX2A driver information
+ * if an AP device is removed.
+ */
+static void zcrypt_cex2a_remove(struct ap_device *ap_dev)
+{
+ struct zcrypt_device *zdev = ap_dev->private;
+
+ zcrypt_device_unregister(zdev);
+}
+
+int __init zcrypt_cex2a_init(void)
+{
+ return ap_driver_register(&zcrypt_cex2a_driver, THIS_MODULE, "cex2a");
+}
+
+void __exit zcrypt_cex2a_exit(void)
+{
+ ap_driver_unregister(&zcrypt_cex2a_driver);
+}
+
+#ifndef CONFIG_ZCRYPT_MONOLITHIC
+module_init(zcrypt_cex2a_init);
+module_exit(zcrypt_cex2a_exit);
+#endif
diff --git a/drivers/s390/crypto/zcrypt_cex2a.h b/drivers/s390/crypto/zcrypt_cex2a.h
new file mode 100644
index 00000000000..8f69d1dacab
--- /dev/null
+++ b/drivers/s390/crypto/zcrypt_cex2a.h
@@ -0,0 +1,126 @@
+/*
+ * linux/drivers/s390/crypto/zcrypt_cex2a.h
+ *
+ * zcrypt 2.1.0
+ *
+ * Copyright (C) 2001, 2006 IBM Corporation
+ * Author(s): Robert Burroughs
+ * Eric Rossman (edrossma@us.ibm.com)
+ *
+ * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
+ * Major cleanup & driver split: Martin Schwidefsky <schwidefsky@de.ibm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#ifndef _ZCRYPT_CEX2A_H_
+#define _ZCRYPT_CEX2A_H_
+
+/**
+ * The type 50 message family is associated with a CEX2A card.
+ *
+ * The four members of the family are described below.
+ *
+ * Note that all unsigned char arrays are right-justified and left-padded
+ * with zeroes.
+ *
+ * Note that all reserved fields must be zeroes.
+ */
+struct type50_hdr {
+ unsigned char reserved1;
+ unsigned char msg_type_code; /* 0x50 */
+ unsigned short msg_len;
+ unsigned char reserved2;
+ unsigned char ignored;
+ unsigned short reserved3;
+} __attribute__((packed));
+
+#define TYPE50_TYPE_CODE 0x50
+
+#define TYPE50_MEB1_FMT 0x0001
+#define TYPE50_MEB2_FMT 0x0002
+#define TYPE50_CRB1_FMT 0x0011
+#define TYPE50_CRB2_FMT 0x0012
+
+/* Mod-Exp, with a small modulus */
+struct type50_meb1_msg {
+ struct type50_hdr header;
+ unsigned short keyblock_type; /* 0x0001 */
+ unsigned char reserved[6];
+ unsigned char exponent[128];
+ unsigned char modulus[128];
+ unsigned char message[128];
+} __attribute__((packed));
+
+/* Mod-Exp, with a large modulus */
+struct type50_meb2_msg {
+ struct type50_hdr header;
+ unsigned short keyblock_type; /* 0x0002 */
+ unsigned char reserved[6];
+ unsigned char exponent[256];
+ unsigned char modulus[256];
+ unsigned char message[256];
+} __attribute__((packed));
+
+/* CRT, with a small modulus */
+struct type50_crb1_msg {
+ struct type50_hdr header;
+ unsigned short keyblock_type; /* 0x0011 */
+ unsigned char reserved[6];
+ unsigned char p[64];
+ unsigned char q[64];
+ unsigned char dp[64];
+ unsigned char dq[64];
+ unsigned char u[64];
+ unsigned char message[128];
+} __attribute__((packed));
+
+/* CRT, with a large modulus */
+struct type50_crb2_msg {
+ struct type50_hdr header;
+ unsigned short keyblock_type; /* 0x0012 */
+ unsigned char reserved[6];
+ unsigned char p[128];
+ unsigned char q[128];
+ unsigned char dp[128];
+ unsigned char dq[128];
+ unsigned char u[128];
+ unsigned char message[256];
+} __attribute__((packed));
+
+/**
+ * The type 80 response family is associated with a CEX2A card.
+ *
+ * Note that all unsigned char arrays are right-justified and left-padded
+ * with zeroes.
+ *
+ * Note that all reserved fields must be zeroes.
+ */
+
+#define TYPE80_RSP_CODE 0x80
+
+struct type80_hdr {
+ unsigned char reserved1;
+ unsigned char type; /* 0x80 */
+ unsigned short len;
+ unsigned char code; /* 0x00 */
+ unsigned char reserved2[3];
+ unsigned char reserved3[8];
+} __attribute__((packed));
+
+int zcrypt_cex2a_init(void);
+void zcrypt_cex2a_exit(void);
+
+#endif /* _ZCRYPT_CEX2A_H_ */
diff --git a/drivers/s390/crypto/zcrypt_error.h b/drivers/s390/crypto/zcrypt_error.h
new file mode 100644
index 00000000000..2cb616ba8be
--- /dev/null
+++ b/drivers/s390/crypto/zcrypt_error.h
@@ -0,0 +1,133 @@
+/*
+ * linux/drivers/s390/crypto/zcrypt_error.h
+ *
+ * zcrypt 2.1.0
+ *
+ * Copyright (C) 2001, 2006 IBM Corporation
+ * Author(s): Robert Burroughs
+ * Eric Rossman (edrossma@us.ibm.com)
+ *
+ * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
+ * Major cleanup & driver split: Martin Schwidefsky <schwidefsky@de.ibm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#ifndef _ZCRYPT_ERROR_H_
+#define _ZCRYPT_ERROR_H_
+
+#include "zcrypt_api.h"
+
+/**
+ * Reply Messages
+ *
+ * Error reply messages are of two types:
+ * 82: Error (see below)
+ * 88: Error (see below)
+ * Both type 82 and type 88 have the same structure in the header.
+ *
+ * Request reply messages are of three known types:
+ * 80: Reply from a Type 50 Request (see CEX2A-RELATED STRUCTS)
+ * 84: Reply from a Type 4 Request (see PCICA-RELATED STRUCTS)
+ * 86: Reply from a Type 6 Request (see PCICC/PCIXCC/CEX2C-RELATED STRUCTS)
+ *
+ */
+struct error_hdr {
+ unsigned char reserved1; /* 0x00 */
+ unsigned char type; /* 0x82 or 0x88 */
+ unsigned char reserved2[2]; /* 0x0000 */
+ unsigned char reply_code; /* reply code */
+ unsigned char reserved3[3]; /* 0x000000 */
+};
+
+#define TYPE82_RSP_CODE 0x82
+#define TYPE88_RSP_CODE 0x88
+
+#define REP82_ERROR_MACHINE_FAILURE 0x10
+#define REP82_ERROR_PREEMPT_FAILURE 0x12
+#define REP82_ERROR_CHECKPT_FAILURE 0x14
+#define REP82_ERROR_MESSAGE_TYPE 0x20
+#define REP82_ERROR_INVALID_COMM_CD 0x21 /* Type 84 */
+#define REP82_ERROR_INVALID_MSG_LEN 0x23
+#define REP82_ERROR_RESERVD_FIELD 0x24 /* was 0x50 */
+#define REP82_ERROR_FORMAT_FIELD 0x29
+#define REP82_ERROR_INVALID_COMMAND 0x30
+#define REP82_ERROR_MALFORMED_MSG 0x40
+#define REP82_ERROR_RESERVED_FIELDO 0x50 /* old value */
+#define REP82_ERROR_WORD_ALIGNMENT 0x60
+#define REP82_ERROR_MESSAGE_LENGTH 0x80
+#define REP82_ERROR_OPERAND_INVALID 0x82
+#define REP82_ERROR_OPERAND_SIZE 0x84
+#define REP82_ERROR_EVEN_MOD_IN_OPND 0x85
+#define REP82_ERROR_RESERVED_FIELD 0x88
+#define REP82_ERROR_TRANSPORT_FAIL 0x90
+#define REP82_ERROR_PACKET_TRUNCATED 0xA0
+#define REP82_ERROR_ZERO_BUFFER_LEN 0xB0
+
+#define REP88_ERROR_MODULE_FAILURE 0x10
+
+#define REP88_ERROR_MESSAGE_TYPE 0x20
+#define REP88_ERROR_MESSAGE_MALFORMD 0x22
+#define REP88_ERROR_MESSAGE_LENGTH 0x23
+#define REP88_ERROR_RESERVED_FIELD 0x24
+#define REP88_ERROR_KEY_TYPE 0x34
+#define REP88_ERROR_INVALID_KEY 0x82 /* CEX2A */
+#define REP88_ERROR_OPERAND 0x84 /* CEX2A */
+#define REP88_ERROR_OPERAND_EVEN_MOD 0x85 /* CEX2A */
+
+static inline int convert_error(struct zcrypt_device *zdev,
+ struct ap_message *reply)
+{
+ struct error_hdr *ehdr = reply->message;
+
+ PRINTK("Hardware error : Type %02x Message Header: %08x%08x\n",
+ ehdr->type, *(unsigned int *) reply->message,
+ *(unsigned int *) (reply->message + 4));
+
+ switch (ehdr->reply_code) {
+ case REP82_ERROR_OPERAND_INVALID:
+ case REP82_ERROR_OPERAND_SIZE:
+ case REP82_ERROR_EVEN_MOD_IN_OPND:
+ case REP88_ERROR_MESSAGE_MALFORMD:
+ // REP88_ERROR_INVALID_KEY // '82' CEX2A
+ // REP88_ERROR_OPERAND // '84' CEX2A
+ // REP88_ERROR_OPERAND_EVEN_MOD // '85' CEX2A
+ /* Invalid input data. */
+ return -EINVAL;
+ case REP82_ERROR_MESSAGE_TYPE:
+ // REP88_ERROR_MESSAGE_TYPE // '20' CEX2A
+ /**
+ * To sent a message of the wrong type is a bug in the
+ * device driver. Warn about it, disable the device
+ * and then repeat the request.
+ */
+ WARN_ON(1);
+ zdev->online = 0;
+ return -EAGAIN;
+ case REP82_ERROR_TRANSPORT_FAIL:
+ case REP82_ERROR_MACHINE_FAILURE:
+ // REP88_ERROR_MODULE_FAILURE // '10' CEX2A
+ /* If a card fails disable it and repeat the request. */
+ zdev->online = 0;
+ return -EAGAIN;
+ default:
+ PRINTKW("unknown type %02x reply code = %d\n",
+ ehdr->type, ehdr->reply_code);
+ zdev->online = 0;
+ return -EAGAIN; /* repeat the request on a different device. */
+ }
+}
+
+#endif /* _ZCRYPT_ERROR_H_ */
diff --git a/drivers/s390/crypto/zcrypt_mono.c b/drivers/s390/crypto/zcrypt_mono.c
new file mode 100644
index 00000000000..2a9349ad68b
--- /dev/null
+++ b/drivers/s390/crypto/zcrypt_mono.c
@@ -0,0 +1,100 @@
+/*
+ * linux/drivers/s390/crypto/zcrypt_mono.c
+ *
+ * zcrypt 2.1.0
+ *
+ * Copyright (C) 2001, 2006 IBM Corporation
+ * Author(s): Robert Burroughs
+ * Eric Rossman (edrossma@us.ibm.com)
+ *
+ * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
+ * Major cleanup & driver split: Martin Schwidefsky <schwidefsky@de.ibm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/interrupt.h>
+#include <linux/miscdevice.h>
+#include <linux/fs.h>
+#include <linux/proc_fs.h>
+#include <linux/compat.h>
+#include <asm/atomic.h>
+#include <asm/uaccess.h>
+
+#include "ap_bus.h"
+#include "zcrypt_api.h"
+#include "zcrypt_pcica.h"
+#include "zcrypt_pcicc.h"
+#include "zcrypt_pcixcc.h"
+#include "zcrypt_cex2a.h"
+
+/**
+ * The module initialization code.
+ */
+int __init zcrypt_init(void)
+{
+ int rc;
+
+ rc = ap_module_init();
+ if (rc)
+ goto out;
+ rc = zcrypt_api_init();
+ if (rc)
+ goto out_ap;
+ rc = zcrypt_pcica_init();
+ if (rc)
+ goto out_api;
+ rc = zcrypt_pcicc_init();
+ if (rc)
+ goto out_pcica;
+ rc = zcrypt_pcixcc_init();
+ if (rc)
+ goto out_pcicc;
+ rc = zcrypt_cex2a_init();
+ if (rc)
+ goto out_pcixcc;
+ return 0;
+
+out_pcixcc:
+ zcrypt_pcixcc_exit();
+out_pcicc:
+ zcrypt_pcicc_exit();
+out_pcica:
+ zcrypt_pcica_exit();
+out_api:
+ zcrypt_api_exit();
+out_ap:
+ ap_module_exit();
+out:
+ return rc;
+}
+
+/**
+ * The module termination code.
+ */
+void __exit zcrypt_exit(void)
+{
+ zcrypt_cex2a_exit();
+ zcrypt_pcixcc_exit();
+ zcrypt_pcicc_exit();
+ zcrypt_pcica_exit();
+ zcrypt_api_exit();
+ ap_module_exit();
+}
+
+module_init(zcrypt_init);
+module_exit(zcrypt_exit);
diff --git a/drivers/s390/crypto/zcrypt_pcica.c b/drivers/s390/crypto/zcrypt_pcica.c
new file mode 100644
index 00000000000..b6a4ecdc802
--- /dev/null
+++ b/drivers/s390/crypto/zcrypt_pcica.c
@@ -0,0 +1,418 @@
+/*
+ * linux/drivers/s390/crypto/zcrypt_pcica.c
+ *
+ * zcrypt 2.1.0
+ *
+ * Copyright (C) 2001, 2006 IBM Corporation
+ * Author(s): Robert Burroughs
+ * Eric Rossman (edrossma@us.ibm.com)
+ *
+ * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
+ * Major cleanup & driver split: Martin Schwidefsky <schwidefsky@de.ibm.com>
+ * Ralph Wuerthner <rwuerthn@de.ibm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/err.h>
+#include <asm/atomic.h>
+#include <asm/uaccess.h>
+
+#include "ap_bus.h"
+#include "zcrypt_api.h"
+#include "zcrypt_error.h"
+#include "zcrypt_pcica.h"
+
+#define PCICA_MIN_MOD_SIZE 1 /* 8 bits */
+#define PCICA_MAX_MOD_SIZE 256 /* 2048 bits */
+
+#define PCICA_SPEED_RATING 2800
+
+#define PCICA_MAX_MESSAGE_SIZE 0x3a0 /* sizeof(struct type4_lcr) */
+#define PCICA_MAX_RESPONSE_SIZE 0x110 /* max outputdatalength + type80_hdr */
+
+#define PCICA_CLEANUP_TIME (15*HZ)
+
+static struct ap_device_id zcrypt_pcica_ids[] = {
+ { AP_DEVICE(AP_DEVICE_TYPE_PCICA) },
+ { /* end of list */ },
+};
+
+#ifndef CONFIG_ZCRYPT_MONOLITHIC
+MODULE_DEVICE_TABLE(ap, zcrypt_pcica_ids);
+MODULE_AUTHOR("IBM Corporation");
+MODULE_DESCRIPTION("PCICA Cryptographic Coprocessor device driver, "
+ "Copyright 2001, 2006 IBM Corporation");
+MODULE_LICENSE("GPL");
+#endif
+
+static int zcrypt_pcica_probe(struct ap_device *ap_dev);
+static void zcrypt_pcica_remove(struct ap_device *ap_dev);
+static void zcrypt_pcica_receive(struct ap_device *, struct ap_message *,
+ struct ap_message *);
+
+static struct ap_driver zcrypt_pcica_driver = {
+ .probe = zcrypt_pcica_probe,
+ .remove = zcrypt_pcica_remove,
+ .receive = zcrypt_pcica_receive,
+ .ids = zcrypt_pcica_ids,
+};
+
+/**
+ * Convert a ICAMEX message to a type4 MEX message.
+ *
+ * @zdev: crypto device pointer
+ * @zreq: crypto request pointer
+ * @mex: pointer to user input data
+ *
+ * Returns 0 on success or -EFAULT.
+ */
+static int ICAMEX_msg_to_type4MEX_msg(struct zcrypt_device *zdev,
+ struct ap_message *ap_msg,
+ struct ica_rsa_modexpo *mex)
+{
+ unsigned char *modulus, *exponent, *message;
+ int mod_len;
+
+ mod_len = mex->inputdatalength;
+
+ if (mod_len <= 128) {
+ struct type4_sme *sme = ap_msg->message;
+ memset(sme, 0, sizeof(*sme));
+ ap_msg->length = sizeof(*sme);
+ sme->header.msg_fmt = TYPE4_SME_FMT;
+ sme->header.msg_len = sizeof(*sme);
+ sme->header.msg_type_code = TYPE4_TYPE_CODE;
+ sme->header.request_code = TYPE4_REQU_CODE;
+ modulus = sme->modulus + sizeof(sme->modulus) - mod_len;
+ exponent = sme->exponent + sizeof(sme->exponent) - mod_len;
+ message = sme->message + sizeof(sme->message) - mod_len;
+ } else {
+ struct type4_lme *lme = ap_msg->message;
+ memset(lme, 0, sizeof(*lme));
+ ap_msg->length = sizeof(*lme);
+ lme->header.msg_fmt = TYPE4_LME_FMT;
+ lme->header.msg_len = sizeof(*lme);
+ lme->header.msg_type_code = TYPE4_TYPE_CODE;
+ lme->header.request_code = TYPE4_REQU_CODE;
+ modulus = lme->modulus + sizeof(lme->modulus) - mod_len;
+ exponent = lme->exponent + sizeof(lme->exponent) - mod_len;
+ message = lme->message + sizeof(lme->message) - mod_len;
+ }
+
+ if (copy_from_user(modulus, mex->n_modulus, mod_len) ||
+ copy_from_user(exponent, mex->b_key, mod_len) ||
+ copy_from_user(message, mex->inputdata, mod_len))
+ return -EFAULT;
+ return 0;
+}
+
+/**
+ * Convert a ICACRT message to a type4 CRT message.
+ *
+ * @zdev: crypto device pointer
+ * @zreq: crypto request pointer
+ * @crt: pointer to user input data
+ *
+ * Returns 0 on success or -EFAULT.
+ */
+static int ICACRT_msg_to_type4CRT_msg(struct zcrypt_device *zdev,
+ struct ap_message *ap_msg,
+ struct ica_rsa_modexpo_crt *crt)
+{
+ unsigned char *p, *q, *dp, *dq, *u, *inp;
+ int mod_len, short_len, long_len;
+
+ mod_len = crt->inputdatalength;
+ short_len = mod_len / 2;
+ long_len = mod_len / 2 + 8;
+
+ if (mod_len <= 128) {
+ struct type4_scr *scr = ap_msg->message;
+ memset(scr, 0, sizeof(*scr));
+ ap_msg->length = sizeof(*scr);
+ scr->header.msg_type_code = TYPE4_TYPE_CODE;
+ scr->header.request_code = TYPE4_REQU_CODE;
+ scr->header.msg_fmt = TYPE4_SCR_FMT;
+ scr->header.msg_len = sizeof(*scr);
+ p = scr->p + sizeof(scr->p) - long_len;
+ q = scr->q + sizeof(scr->q) - short_len;
+ dp = scr->dp + sizeof(scr->dp) - long_len;
+ dq = scr->dq + sizeof(scr->dq) - short_len;
+ u = scr->u + sizeof(scr->u) - long_len;
+ inp = scr->message + sizeof(scr->message) - mod_len;
+ } else {
+ struct type4_lcr *lcr = ap_msg->message;
+ memset(lcr, 0, sizeof(*lcr));
+ ap_msg->length = sizeof(*lcr);
+ lcr->header.msg_type_code = TYPE4_TYPE_CODE;
+ lcr->header.request_code = TYPE4_REQU_CODE;
+ lcr->header.msg_fmt = TYPE4_LCR_FMT;
+ lcr->header.msg_len = sizeof(*lcr);
+ p = lcr->p + sizeof(lcr->p) - long_len;
+ q = lcr->q + sizeof(lcr->q) - short_len;
+ dp = lcr->dp + sizeof(lcr->dp) - long_len;
+ dq = lcr->dq + sizeof(lcr->dq) - short_len;
+ u = lcr->u + sizeof(lcr->u) - long_len;
+ inp = lcr->message + sizeof(lcr->message) - mod_len;
+ }
+
+ if (copy_from_user(p, crt->np_prime, long_len) ||
+ copy_from_user(q, crt->nq_prime, short_len) ||
+ copy_from_user(dp, crt->bp_key, long_len) ||
+ copy_from_user(dq, crt->bq_key, short_len) ||
+ copy_from_user(u, crt->u_mult_inv, long_len) ||
+ copy_from_user(inp, crt->inputdata, mod_len))
+ return -EFAULT;
+ return 0;
+}
+
+/**
+ * Copy results from a type 84 reply message back to user space.
+ *
+ * @zdev: crypto device pointer
+ * @reply: reply AP message.
+ * @data: pointer to user output data
+ * @length: size of user output data
+ *
+ * Returns 0 on success or -EFAULT.
+ */
+static inline int convert_type84(struct zcrypt_device *zdev,
+ struct ap_message *reply,
+ char __user *outputdata,
+ unsigned int outputdatalength)
+{
+ struct type84_hdr *t84h = reply->message;
+ char *data;
+
+ if (t84h->len < sizeof(*t84h) + outputdatalength) {
+ /* The result is too short, the PCICA card may not do that.. */
+ zdev->online = 0;
+ return -EAGAIN; /* repeat the request on a different device. */
+ }
+ BUG_ON(t84h->len > PCICA_MAX_RESPONSE_SIZE);
+ data = reply->message + t84h->len - outputdatalength;
+ if (copy_to_user(outputdata, data, outputdatalength))
+ return -EFAULT;
+ return 0;
+}
+
+static int convert_response(struct zcrypt_device *zdev,
+ struct ap_message *reply,
+ char __user *outputdata,
+ unsigned int outputdatalength)
+{
+ /* Response type byte is the second byte in the response. */
+ switch (((unsigned char *) reply->message)[1]) {
+ case TYPE82_RSP_CODE:
+ case TYPE88_RSP_CODE:
+ return convert_error(zdev, reply);
+ case TYPE84_RSP_CODE:
+ return convert_type84(zdev, reply,
+ outputdata, outputdatalength);
+ default: /* Unknown response type, this should NEVER EVER happen */
+ PRINTK("Unrecognized Message Header: %08x%08x\n",
+ *(unsigned int *) reply->message,
+ *(unsigned int *) (reply->message+4));
+ zdev->online = 0;
+ return -EAGAIN; /* repeat the request on a different device. */
+ }
+}
+
+/**
+ * This function is called from the AP bus code after a crypto request
+ * "msg" has finished with the reply message "reply".
+ * It is called from tasklet context.
+ * @ap_dev: pointer to the AP device
+ * @msg: pointer to the AP message
+ * @reply: pointer to the AP reply message
+ */
+static void zcrypt_pcica_receive(struct ap_device *ap_dev,
+ struct ap_message *msg,
+ struct ap_message *reply)
+{
+ static struct error_hdr error_reply = {
+ .type = TYPE82_RSP_CODE,
+ .reply_code = REP82_ERROR_MACHINE_FAILURE,
+ };
+ struct type84_hdr *t84h = reply->message;
+ int length;
+
+ /* Copy the reply message to the request message buffer. */
+ if (IS_ERR(reply))
+ memcpy(msg->message, &error_reply, sizeof(error_reply));
+ else if (t84h->code == TYPE84_RSP_CODE) {
+ length = min(PCICA_MAX_RESPONSE_SIZE, (int) t84h->len);
+ memcpy(msg->message, reply->message, length);
+ } else
+ memcpy(msg->message, reply->message, sizeof error_reply);
+ complete((struct completion *) msg->private);
+}
+
+static atomic_t zcrypt_step = ATOMIC_INIT(0);
+
+/**
+ * The request distributor calls this function if it picked the PCICA
+ * device to handle a modexpo request.
+ * @zdev: pointer to zcrypt_device structure that identifies the
+ * PCICA device to the request distributor
+ * @mex: pointer to the modexpo request buffer
+ */
+static long zcrypt_pcica_modexpo(struct zcrypt_device *zdev,
+ struct ica_rsa_modexpo *mex)
+{
+ struct ap_message ap_msg;
+ struct completion work;
+ int rc;
+
+ ap_msg.message = (void *) kmalloc(PCICA_MAX_MESSAGE_SIZE, GFP_KERNEL);
+ if (!ap_msg.message)
+ return -ENOMEM;
+ ap_msg.psmid = (((unsigned long long) current->pid) << 32) +
+ atomic_inc_return(&zcrypt_step);
+ ap_msg.private = &work;
+ rc = ICAMEX_msg_to_type4MEX_msg(zdev, &ap_msg, mex);
+ if (rc)
+ goto out_free;
+ init_completion(&work);
+ ap_queue_message(zdev->ap_dev, &ap_msg);
+ rc = wait_for_completion_interruptible_timeout(
+ &work, PCICA_CLEANUP_TIME);
+ if (rc > 0)
+ rc = convert_response(zdev, &ap_msg, mex->outputdata,
+ mex->outputdatalength);
+ else {
+ /* Signal pending or message timed out. */
+ ap_cancel_message(zdev->ap_dev, &ap_msg);
+ if (rc == 0)
+ /* Message timed out. */
+ rc = -ETIME;
+ }
+out_free:
+ kfree(ap_msg.message);
+ return rc;
+}
+
+/**
+ * The request distributor calls this function if it picked the PCICA
+ * device to handle a modexpo_crt request.
+ * @zdev: pointer to zcrypt_device structure that identifies the
+ * PCICA device to the request distributor
+ * @crt: pointer to the modexpoc_crt request buffer
+ */
+static long zcrypt_pcica_modexpo_crt(struct zcrypt_device *zdev,
+ struct ica_rsa_modexpo_crt *crt)
+{
+ struct ap_message ap_msg;
+ struct completion work;
+ int rc;
+
+ ap_msg.message = (void *) kmalloc(PCICA_MAX_MESSAGE_SIZE, GFP_KERNEL);
+ if (!ap_msg.message)
+ return -ENOMEM;
+ ap_msg.psmid = (((unsigned long long) current->pid) << 32) +
+ atomic_inc_return(&zcrypt_step);
+ ap_msg.private = &work;
+ rc = ICACRT_msg_to_type4CRT_msg(zdev, &ap_msg, crt);
+ if (rc)
+ goto out_free;
+ init_completion(&work);
+ ap_queue_message(zdev->ap_dev, &ap_msg);
+ rc = wait_for_completion_interruptible_timeout(
+ &work, PCICA_CLEANUP_TIME);
+ if (rc > 0)
+ rc = convert_response(zdev, &ap_msg, crt->outputdata,
+ crt->outputdatalength);
+ else {
+ /* Signal pending or message timed out. */
+ ap_cancel_message(zdev->ap_dev, &ap_msg);
+ if (rc == 0)
+ /* Message timed out. */
+ rc = -ETIME;
+ }
+out_free:
+ kfree(ap_msg.message);
+ return rc;
+}
+
+/**
+ * The crypto operations for a PCICA card.
+ */
+static struct zcrypt_ops zcrypt_pcica_ops = {
+ .rsa_modexpo = zcrypt_pcica_modexpo,
+ .rsa_modexpo_crt = zcrypt_pcica_modexpo_crt,
+};
+
+/**
+ * Probe function for PCICA cards. It always accepts the AP device
+ * since the bus_match already checked the hardware type.
+ * @ap_dev: pointer to the AP device.
+ */
+static int zcrypt_pcica_probe(struct ap_device *ap_dev)
+{
+ struct zcrypt_device *zdev;
+ int rc;
+
+ zdev = zcrypt_device_alloc(PCICA_MAX_RESPONSE_SIZE);
+ if (!zdev)
+ return -ENOMEM;
+ zdev->ap_dev = ap_dev;
+ zdev->ops = &zcrypt_pcica_ops;
+ zdev->online = 1;
+ zdev->user_space_type = ZCRYPT_PCICA;
+ zdev->type_string = "PCICA";
+ zdev->min_mod_size = PCICA_MIN_MOD_SIZE;
+ zdev->max_mod_size = PCICA_MAX_MOD_SIZE;
+ zdev->speed_rating = PCICA_SPEED_RATING;
+ ap_dev->reply = &zdev->reply;
+ ap_dev->private = zdev;
+ rc = zcrypt_device_register(zdev);
+ if (rc)
+ goto out_free;
+ return 0;
+
+out_free:
+ ap_dev->private = NULL;
+ zcrypt_device_free(zdev);
+ return rc;
+}
+
+/**
+ * This is called to remove the extended PCICA driver information
+ * if an AP device is removed.
+ */
+static void zcrypt_pcica_remove(struct ap_device *ap_dev)
+{
+ struct zcrypt_device *zdev = ap_dev->private;
+
+ zcrypt_device_unregister(zdev);
+}
+
+int __init zcrypt_pcica_init(void)
+{
+ return ap_driver_register(&zcrypt_pcica_driver, THIS_MODULE, "pcica");
+}
+
+void zcrypt_pcica_exit(void)
+{
+ ap_driver_unregister(&zcrypt_pcica_driver);
+}
+
+#ifndef CONFIG_ZCRYPT_MONOLITHIC
+module_init(zcrypt_pcica_init);
+module_exit(zcrypt_pcica_exit);
+#endif
diff --git a/drivers/s390/crypto/zcrypt_pcica.h b/drivers/s390/crypto/zcrypt_pcica.h
new file mode 100644
index 00000000000..3be11187f6d
--- /dev/null
+++ b/drivers/s390/crypto/zcrypt_pcica.h
@@ -0,0 +1,117 @@
+/*
+ * linux/drivers/s390/crypto/zcrypt_pcica.h
+ *
+ * zcrypt 2.1.0
+ *
+ * Copyright (C) 2001, 2006 IBM Corporation
+ * Author(s): Robert Burroughs
+ * Eric Rossman (edrossma@us.ibm.com)
+ *
+ * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
+ * Major cleanup & driver split: Martin Schwidefsky <schwidefsky@de.ibm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#ifndef _ZCRYPT_PCICA_H_
+#define _ZCRYPT_PCICA_H_
+
+/**
+ * The type 4 message family is associated with a PCICA card.
+ *
+ * The four members of the family are described below.
+ *
+ * Note that all unsigned char arrays are right-justified and left-padded
+ * with zeroes.
+ *
+ * Note that all reserved fields must be zeroes.
+ */
+struct type4_hdr {
+ unsigned char reserved1;
+ unsigned char msg_type_code; /* 0x04 */
+ unsigned short msg_len;
+ unsigned char request_code; /* 0x40 */
+ unsigned char msg_fmt;
+ unsigned short reserved2;
+} __attribute__((packed));
+
+#define TYPE4_TYPE_CODE 0x04
+#define TYPE4_REQU_CODE 0x40
+
+#define TYPE4_SME_FMT 0x00
+#define TYPE4_LME_FMT 0x10
+#define TYPE4_SCR_FMT 0x40
+#define TYPE4_LCR_FMT 0x50
+
+/* Mod-Exp, with a small modulus */
+struct type4_sme {
+ struct type4_hdr header;
+ unsigned char message[128];
+ unsigned char exponent[128];
+ unsigned char modulus[128];
+} __attribute__((packed));
+
+/* Mod-Exp, with a large modulus */
+struct type4_lme {
+ struct type4_hdr header;
+ unsigned char message[256];
+ unsigned char exponent[256];
+ unsigned char modulus[256];
+} __attribute__((packed));
+
+/* CRT, with a small modulus */
+struct type4_scr {
+ struct type4_hdr header;
+ unsigned char message[128];
+ unsigned char dp[72];
+ unsigned char dq[64];
+ unsigned char p[72];
+ unsigned char q[64];
+ unsigned char u[72];
+} __attribute__((packed));
+
+/* CRT, with a large modulus */
+struct type4_lcr {
+ struct type4_hdr header;
+ unsigned char message[256];
+ unsigned char dp[136];
+ unsigned char dq[128];
+ unsigned char p[136];
+ unsigned char q[128];
+ unsigned char u[136];
+} __attribute__((packed));
+
+/**
+ * The type 84 response family is associated with a PCICA card.
+ *
+ * Note that all unsigned char arrays are right-justified and left-padded
+ * with zeroes.
+ *
+ * Note that all reserved fields must be zeroes.
+ */
+
+struct type84_hdr {
+ unsigned char reserved1;
+ unsigned char code;
+ unsigned short len;
+ unsigned char reserved2[4];
+} __attribute__((packed));
+
+#define TYPE84_RSP_CODE 0x84
+
+int zcrypt_pcica_init(void);
+void zcrypt_pcica_exit(void);
+
+#endif /* _ZCRYPT_PCICA_H_ */
diff --git a/drivers/s390/crypto/zcrypt_pcicc.c b/drivers/s390/crypto/zcrypt_pcicc.c
new file mode 100644
index 00000000000..f295a403b29
--- /dev/null
+++ b/drivers/s390/crypto/zcrypt_pcicc.c
@@ -0,0 +1,630 @@
+/*
+ * linux/drivers/s390/crypto/zcrypt_pcicc.c
+ *
+ * zcrypt 2.1.0
+ *
+ * Copyright (C) 2001, 2006 IBM Corporation
+ * Author(s): Robert Burroughs
+ * Eric Rossman (edrossma@us.ibm.com)
+ *
+ * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
+ * Major cleanup & driver split: Martin Schwidefsky <schwidefsky@de.ibm.com>
+ * Ralph Wuerthner <rwuerthn@de.ibm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/err.h>
+#include <asm/atomic.h>
+#include <asm/uaccess.h>
+
+#include "ap_bus.h"
+#include "zcrypt_api.h"
+#include "zcrypt_error.h"
+#include "zcrypt_pcicc.h"
+#include "zcrypt_cca_key.h"
+
+#define PCICC_MIN_MOD_SIZE 64 /* 512 bits */
+#define PCICC_MAX_MOD_SIZE_OLD 128 /* 1024 bits */
+#define PCICC_MAX_MOD_SIZE 256 /* 2048 bits */
+
+/**
+ * PCICC cards need a speed rating of 0. This keeps them at the end of
+ * the zcrypt device list (see zcrypt_api.c). PCICC cards are only
+ * used if no other cards are present because they are slow and can only
+ * cope with PKCS12 padded requests. The logic is queer. PKCS11 padded
+ * requests are rejected. The modexpo function encrypts PKCS12 padded data
+ * and decrypts any non-PKCS12 padded data (except PKCS11) in the assumption
+ * that it's encrypted PKCS12 data. The modexpo_crt function always decrypts
+ * the data in the assumption that its PKCS12 encrypted data.
+ */
+#define PCICC_SPEED_RATING 0
+
+#define PCICC_MAX_MESSAGE_SIZE 0x710 /* max size type6 v1 crt message */
+#define PCICC_MAX_RESPONSE_SIZE 0x710 /* max size type86 v1 reply */
+
+#define PCICC_CLEANUP_TIME (15*HZ)
+
+static struct ap_device_id zcrypt_pcicc_ids[] = {
+ { AP_DEVICE(AP_DEVICE_TYPE_PCICC) },
+ { /* end of list */ },
+};
+
+#ifndef CONFIG_ZCRYPT_MONOLITHIC
+MODULE_DEVICE_TABLE(ap, zcrypt_pcicc_ids);
+MODULE_AUTHOR("IBM Corporation");
+MODULE_DESCRIPTION("PCICC Cryptographic Coprocessor device driver, "
+ "Copyright 2001, 2006 IBM Corporation");
+MODULE_LICENSE("GPL");
+#endif
+
+static int zcrypt_pcicc_probe(struct ap_device *ap_dev);
+static void zcrypt_pcicc_remove(struct ap_device *ap_dev);
+static void zcrypt_pcicc_receive(struct ap_device *, struct ap_message *,
+ struct ap_message *);
+
+static struct ap_driver zcrypt_pcicc_driver = {
+ .probe = zcrypt_pcicc_probe,
+ .remove = zcrypt_pcicc_remove,
+ .receive = zcrypt_pcicc_receive,
+ .ids = zcrypt_pcicc_ids,
+};
+
+/**
+ * The following is used to initialize the CPRB passed to the PCICC card
+ * in a type6 message. The 3 fields that must be filled in at execution
+ * time are req_parml, rpl_parml and usage_domain. Note that all three
+ * fields are *little*-endian. Actually, everything about this interface
+ * is ascii/little-endian, since the device has 'Intel inside'.
+ *
+ * The CPRB is followed immediately by the parm block.
+ * The parm block contains:
+ * - function code ('PD' 0x5044 or 'PK' 0x504B)
+ * - rule block (0x0A00 'PKCS-1.2' or 0x0A00 'ZERO-PAD')
+ * - VUD block
+ */
+static struct CPRB static_cprb = {
+ .cprb_len = __constant_cpu_to_le16(0x0070),
+ .cprb_ver_id = 0x41,
+ .func_id = {0x54,0x32},
+ .checkpoint_flag= 0x01,
+ .svr_namel = __constant_cpu_to_le16(0x0008),
+ .svr_name = {'I','C','S','F',' ',' ',' ',' '}
+};
+
+/**
+ * Check the message for PKCS11 padding.
+ */
+static inline int is_PKCS11_padded(unsigned char *buffer, int length)
+{
+ int i;
+ if ((buffer[0] != 0x00) || (buffer[1] != 0x01))
+ return 0;
+ for (i = 2; i < length; i++)
+ if (buffer[i] != 0xFF)
+ break;
+ if (i < 10 || i == length)
+ return 0;
+ if (buffer[i] != 0x00)
+ return 0;
+ return 1;
+}
+
+/**
+ * Check the message for PKCS12 padding.
+ */
+static inline int is_PKCS12_padded(unsigned char *buffer, int length)
+{
+ int i;
+ if ((buffer[0] != 0x00) || (buffer[1] != 0x02))
+ return 0;
+ for (i = 2; i < length; i++)
+ if (buffer[i] == 0x00)
+ break;
+ if ((i < 10) || (i == length))
+ return 0;
+ if (buffer[i] != 0x00)
+ return 0;
+ return 1;
+}
+
+/**
+ * Convert a ICAMEX message to a type6 MEX message.
+ *
+ * @zdev: crypto device pointer
+ * @zreq: crypto request pointer
+ * @mex: pointer to user input data
+ *
+ * Returns 0 on success or -EFAULT.
+ */
+static int ICAMEX_msg_to_type6MEX_msg(struct zcrypt_device *zdev,
+ struct ap_message *ap_msg,
+ struct ica_rsa_modexpo *mex)
+{
+ static struct type6_hdr static_type6_hdr = {
+ .type = 0x06,
+ .offset1 = 0x00000058,
+ .agent_id = {0x01,0x00,0x43,0x43,0x41,0x2D,0x41,0x50,
+ 0x50,0x4C,0x20,0x20,0x20,0x01,0x01,0x01},
+ .function_code = {'P','K'},
+ };
+ static struct function_and_rules_block static_pke_function_and_rules ={
+ .function_code = {'P','K'},
+ .ulen = __constant_cpu_to_le16(10),
+ .only_rule = {'P','K','C','S','-','1','.','2'}
+ };
+ struct {
+ struct type6_hdr hdr;
+ struct CPRB cprb;
+ struct function_and_rules_block fr;
+ unsigned short length;
+ char text[0];
+ } __attribute__((packed)) *msg = ap_msg->message;
+ int vud_len, pad_len, size;
+
+ /* VUD.ciphertext */
+ if (copy_from_user(msg->text, mex->inputdata, mex->inputdatalength))
+ return -EFAULT;
+
+ if (is_PKCS11_padded(msg->text, mex->inputdatalength))
+ return -EINVAL;
+
+ /* static message header and f&r */
+ msg->hdr = static_type6_hdr;
+ msg->fr = static_pke_function_and_rules;
+
+ if (is_PKCS12_padded(msg->text, mex->inputdatalength)) {
+ /* strip the padding and adjust the data length */
+ pad_len = strnlen(msg->text + 2, mex->inputdatalength - 2) + 3;
+ if (pad_len <= 9 || pad_len >= mex->inputdatalength)
+ return -ENODEV;
+ vud_len = mex->inputdatalength - pad_len;
+ memmove(msg->text, msg->text + pad_len, vud_len);
+ msg->length = cpu_to_le16(vud_len + 2);
+
+ /* Set up key after the variable length text. */
+ size = zcrypt_type6_mex_key_en(mex, msg->text + vud_len, 0);
+ if (size < 0)
+ return size;
+ size += sizeof(*msg) + vud_len; /* total size of msg */
+ } else {
+ vud_len = mex->inputdatalength;
+ msg->length = cpu_to_le16(2 + vud_len);
+
+ msg->hdr.function_code[1] = 'D';
+ msg->fr.function_code[1] = 'D';
+
+ /* Set up key after the variable length text. */
+ size = zcrypt_type6_mex_key_de(mex, msg->text + vud_len, 0);
+ if (size < 0)
+ return size;
+ size += sizeof(*msg) + vud_len; /* total size of msg */
+ }
+
+ /* message header, cprb and f&r */
+ msg->hdr.ToCardLen1 = (size - sizeof(msg->hdr) + 3) & -4;
+ msg->hdr.FromCardLen1 = PCICC_MAX_RESPONSE_SIZE - sizeof(msg->hdr);
+
+ msg->cprb = static_cprb;
+ msg->cprb.usage_domain[0]= AP_QID_QUEUE(zdev->ap_dev->qid);
+ msg->cprb.req_parml = cpu_to_le16(size - sizeof(msg->hdr) -
+ sizeof(msg->cprb));
+ msg->cprb.rpl_parml = cpu_to_le16(msg->hdr.FromCardLen1);
+
+ ap_msg->length = (size + 3) & -4;
+ return 0;
+}
+
+/**
+ * Convert a ICACRT message to a type6 CRT message.
+ *
+ * @zdev: crypto device pointer
+ * @zreq: crypto request pointer
+ * @crt: pointer to user input data
+ *
+ * Returns 0 on success or -EFAULT.
+ */
+static int ICACRT_msg_to_type6CRT_msg(struct zcrypt_device *zdev,
+ struct ap_message *ap_msg,
+ struct ica_rsa_modexpo_crt *crt)
+{
+ static struct type6_hdr static_type6_hdr = {
+ .type = 0x06,
+ .offset1 = 0x00000058,
+ .agent_id = {0x01,0x00,0x43,0x43,0x41,0x2D,0x41,0x50,
+ 0x50,0x4C,0x20,0x20,0x20,0x01,0x01,0x01},
+ .function_code = {'P','D'},
+ };
+ static struct function_and_rules_block static_pkd_function_and_rules ={
+ .function_code = {'P','D'},
+ .ulen = __constant_cpu_to_le16(10),
+ .only_rule = {'P','K','C','S','-','1','.','2'}
+ };
+ struct {
+ struct type6_hdr hdr;
+ struct CPRB cprb;
+ struct function_and_rules_block fr;
+ unsigned short length;
+ char text[0];
+ } __attribute__((packed)) *msg = ap_msg->message;
+ int size;
+
+ /* VUD.ciphertext */
+ msg->length = cpu_to_le16(2 + crt->inputdatalength);
+ if (copy_from_user(msg->text, crt->inputdata, crt->inputdatalength))
+ return -EFAULT;
+
+ if (is_PKCS11_padded(msg->text, crt->inputdatalength))
+ return -EINVAL;
+
+ /* Set up key after the variable length text. */
+ size = zcrypt_type6_crt_key(crt, msg->text + crt->inputdatalength, 0);
+ if (size < 0)
+ return size;
+ size += sizeof(*msg) + crt->inputdatalength; /* total size of msg */
+
+ /* message header, cprb and f&r */
+ msg->hdr = static_type6_hdr;
+ msg->hdr.ToCardLen1 = (size - sizeof(msg->hdr) + 3) & -4;
+ msg->hdr.FromCardLen1 = PCICC_MAX_RESPONSE_SIZE - sizeof(msg->hdr);
+
+ msg->cprb = static_cprb;
+ msg->cprb.usage_domain[0] = AP_QID_QUEUE(zdev->ap_dev->qid);
+ msg->cprb.req_parml = msg->cprb.rpl_parml =
+ cpu_to_le16(size - sizeof(msg->hdr) - sizeof(msg->cprb));
+
+ msg->fr = static_pkd_function_and_rules;
+
+ ap_msg->length = (size + 3) & -4;
+ return 0;
+}
+
+/**
+ * Copy results from a type 86 reply message back to user space.
+ *
+ * @zdev: crypto device pointer
+ * @reply: reply AP message.
+ * @data: pointer to user output data
+ * @length: size of user output data
+ *
+ * Returns 0 on success or -EINVAL, -EFAULT, -EAGAIN in case of an error.
+ */
+struct type86_reply {
+ struct type86_hdr hdr;
+ struct type86_fmt2_ext fmt2;
+ struct CPRB cprb;
+ unsigned char pad[4]; /* 4 byte function code/rules block ? */
+ unsigned short length;
+ char text[0];
+} __attribute__((packed));
+
+static int convert_type86(struct zcrypt_device *zdev,
+ struct ap_message *reply,
+ char __user *outputdata,
+ unsigned int outputdatalength)
+{
+ static unsigned char static_pad[] = {
+ 0x00,0x02,
+ 0x1B,0x7B,0x5D,0xB5,0x75,0x01,0x3D,0xFD,
+ 0x8D,0xD1,0xC7,0x03,0x2D,0x09,0x23,0x57,
+ 0x89,0x49,0xB9,0x3F,0xBB,0x99,0x41,0x5B,
+ 0x75,0x21,0x7B,0x9D,0x3B,0x6B,0x51,0x39,
+ 0xBB,0x0D,0x35,0xB9,0x89,0x0F,0x93,0xA5,
+ 0x0B,0x47,0xF1,0xD3,0xBB,0xCB,0xF1,0x9D,
+ 0x23,0x73,0x71,0xFF,0xF3,0xF5,0x45,0xFB,
+ 0x61,0x29,0x23,0xFD,0xF1,0x29,0x3F,0x7F,
+ 0x17,0xB7,0x1B,0xA9,0x19,0xBD,0x57,0xA9,
+ 0xD7,0x95,0xA3,0xCB,0xED,0x1D,0xDB,0x45,
+ 0x7D,0x11,0xD1,0x51,0x1B,0xED,0x71,0xE9,
+ 0xB1,0xD1,0xAB,0xAB,0x21,0x2B,0x1B,0x9F,
+ 0x3B,0x9F,0xF7,0xF7,0xBD,0x63,0xEB,0xAD,
+ 0xDF,0xB3,0x6F,0x5B,0xDB,0x8D,0xA9,0x5D,
+ 0xE3,0x7D,0x77,0x49,0x47,0xF5,0xA7,0xFD,
+ 0xAB,0x2F,0x27,0x35,0x77,0xD3,0x49,0xC9,
+ 0x09,0xEB,0xB1,0xF9,0xBF,0x4B,0xCB,0x2B,
+ 0xEB,0xEB,0x05,0xFF,0x7D,0xC7,0x91,0x8B,
+ 0x09,0x83,0xB9,0xB9,0x69,0x33,0x39,0x6B,
+ 0x79,0x75,0x19,0xBF,0xBB,0x07,0x1D,0xBD,
+ 0x29,0xBF,0x39,0x95,0x93,0x1D,0x35,0xC7,
+ 0xC9,0x4D,0xE5,0x97,0x0B,0x43,0x9B,0xF1,
+ 0x16,0x93,0x03,0x1F,0xA5,0xFB,0xDB,0xF3,
+ 0x27,0x4F,0x27,0x61,0x05,0x1F,0xB9,0x23,
+ 0x2F,0xC3,0x81,0xA9,0x23,0x71,0x55,0x55,
+ 0xEB,0xED,0x41,0xE5,0xF3,0x11,0xF1,0x43,
+ 0x69,0x03,0xBD,0x0B,0x37,0x0F,0x51,0x8F,
+ 0x0B,0xB5,0x89,0x5B,0x67,0xA9,0xD9,0x4F,
+ 0x01,0xF9,0x21,0x77,0x37,0x73,0x79,0xC5,
+ 0x7F,0x51,0xC1,0xCF,0x97,0xA1,0x75,0xAD,
+ 0x35,0x9D,0xD3,0xD3,0xA7,0x9D,0x5D,0x41,
+ 0x6F,0x65,0x1B,0xCF,0xA9,0x87,0x91,0x09
+ };
+ struct type86_reply *msg = reply->message;
+ unsigned short service_rc, service_rs;
+ unsigned int reply_len, pad_len;
+ char *data;
+
+ service_rc = le16_to_cpu(msg->cprb.ccp_rtcode);
+ if (unlikely(service_rc != 0)) {
+ service_rs = le16_to_cpu(msg->cprb.ccp_rscode);
+ if (service_rc == 8 && service_rs == 66) {
+ PDEBUG("Bad block format on PCICC\n");
+ return -EINVAL;
+ }
+ if (service_rc == 8 && service_rs == 65) {
+ PDEBUG("Probably an even modulus on PCICC\n");
+ return -EINVAL;
+ }
+ if (service_rc == 8 && service_rs == 770) {
+ PDEBUG("Invalid key length on PCICC\n");
+ zdev->max_mod_size = PCICC_MAX_MOD_SIZE_OLD;
+ return -EAGAIN;
+ }
+ if (service_rc == 8 && service_rs == 783) {
+ PDEBUG("Extended bitlengths not enabled on PCICC\n");
+ zdev->max_mod_size = PCICC_MAX_MOD_SIZE_OLD;
+ return -EAGAIN;
+ }
+ PRINTK("Unknown service rc/rs (PCICC): %d/%d\n",
+ service_rc, service_rs);
+ zdev->online = 0;
+ return -EAGAIN; /* repeat the request on a different device. */
+ }
+ data = msg->text;
+ reply_len = le16_to_cpu(msg->length) - 2;
+ if (reply_len > outputdatalength)
+ return -EINVAL;
+ /**
+ * For all encipher requests, the length of the ciphertext (reply_len)
+ * will always equal the modulus length. For MEX decipher requests
+ * the output needs to get padded. Minimum pad size is 10.
+ *
+ * Currently, the cases where padding will be added is for:
+ * - PCIXCC_MCL2 using a CRT form token (since PKD didn't support
+ * ZERO-PAD and CRT is only supported for PKD requests)
+ * - PCICC, always
+ */
+ pad_len = outputdatalength - reply_len;
+ if (pad_len > 0) {
+ if (pad_len < 10)
+ return -EINVAL;
+ /* 'restore' padding left in the PCICC/PCIXCC card. */
+ if (copy_to_user(outputdata, static_pad, pad_len - 1))
+ return -EFAULT;
+ if (put_user(0, outputdata + pad_len - 1))
+ return -EFAULT;
+ }
+ /* Copy the crypto response to user space. */
+ if (copy_to_user(outputdata + pad_len, data, reply_len))
+ return -EFAULT;
+ return 0;
+}
+
+static int convert_response(struct zcrypt_device *zdev,
+ struct ap_message *reply,
+ char __user *outputdata,
+ unsigned int outputdatalength)
+{
+ struct type86_reply *msg = reply->message;
+
+ /* Response type byte is the second byte in the response. */
+ switch (msg->hdr.type) {
+ case TYPE82_RSP_CODE:
+ case TYPE88_RSP_CODE:
+ return convert_error(zdev, reply);
+ case TYPE86_RSP_CODE:
+ if (msg->hdr.reply_code)
+ return convert_error(zdev, reply);
+ if (msg->cprb.cprb_ver_id == 0x01)
+ return convert_type86(zdev, reply,
+ outputdata, outputdatalength);
+ /* no break, incorrect cprb version is an unknown response */
+ default: /* Unknown response type, this should NEVER EVER happen */
+ PRINTK("Unrecognized Message Header: %08x%08x\n",
+ *(unsigned int *) reply->message,
+ *(unsigned int *) (reply->message+4));
+ zdev->online = 0;
+ return -EAGAIN; /* repeat the request on a different device. */
+ }
+}
+
+/**
+ * This function is called from the AP bus code after a crypto request
+ * "msg" has finished with the reply message "reply".
+ * It is called from tasklet context.
+ * @ap_dev: pointer to the AP device
+ * @msg: pointer to the AP message
+ * @reply: pointer to the AP reply message
+ */
+static void zcrypt_pcicc_receive(struct ap_device *ap_dev,
+ struct ap_message *msg,
+ struct ap_message *reply)
+{
+ static struct error_hdr error_reply = {
+ .type = TYPE82_RSP_CODE,
+ .reply_code = REP82_ERROR_MACHINE_FAILURE,
+ };
+ struct type86_reply *t86r = reply->message;
+ int length;
+
+ /* Copy the reply message to the request message buffer. */
+ if (IS_ERR(reply))
+ memcpy(msg->message, &error_reply, sizeof(error_reply));
+ else if (t86r->hdr.type == TYPE86_RSP_CODE &&
+ t86r->cprb.cprb_ver_id == 0x01) {
+ length = sizeof(struct type86_reply) + t86r->length - 2;
+ length = min(PCICC_MAX_RESPONSE_SIZE, length);
+ memcpy(msg->message, reply->message, length);
+ } else
+ memcpy(msg->message, reply->message, sizeof error_reply);
+ complete((struct completion *) msg->private);
+}
+
+static atomic_t zcrypt_step = ATOMIC_INIT(0);
+
+/**
+ * The request distributor calls this function if it picked the PCICC
+ * device to handle a modexpo request.
+ * @zdev: pointer to zcrypt_device structure that identifies the
+ * PCICC device to the request distributor
+ * @mex: pointer to the modexpo request buffer
+ */
+static long zcrypt_pcicc_modexpo(struct zcrypt_device *zdev,
+ struct ica_rsa_modexpo *mex)
+{
+ struct ap_message ap_msg;
+ struct completion work;
+ int rc;
+
+ ap_msg.message = (void *) get_zeroed_page(GFP_KERNEL);
+ if (!ap_msg.message)
+ return -ENOMEM;
+ ap_msg.length = PAGE_SIZE;
+ ap_msg.psmid = (((unsigned long long) current->pid) << 32) +
+ atomic_inc_return(&zcrypt_step);
+ ap_msg.private = &work;
+ rc = ICAMEX_msg_to_type6MEX_msg(zdev, &ap_msg, mex);
+ if (rc)
+ goto out_free;
+ init_completion(&work);
+ ap_queue_message(zdev->ap_dev, &ap_msg);
+ rc = wait_for_completion_interruptible_timeout(
+ &work, PCICC_CLEANUP_TIME);
+ if (rc > 0)
+ rc = convert_response(zdev, &ap_msg, mex->outputdata,
+ mex->outputdatalength);
+ else {
+ /* Signal pending or message timed out. */
+ ap_cancel_message(zdev->ap_dev, &ap_msg);
+ if (rc == 0)
+ /* Message timed out. */
+ rc = -ETIME;
+ }
+out_free:
+ free_page((unsigned long) ap_msg.message);
+ return rc;
+}
+
+/**
+ * The request distributor calls this function if it picked the PCICC
+ * device to handle a modexpo_crt request.
+ * @zdev: pointer to zcrypt_device structure that identifies the
+ * PCICC device to the request distributor
+ * @crt: pointer to the modexpoc_crt request buffer
+ */
+static long zcrypt_pcicc_modexpo_crt(struct zcrypt_device *zdev,
+ struct ica_rsa_modexpo_crt *crt)
+{
+ struct ap_message ap_msg;
+ struct completion work;
+ int rc;
+
+ ap_msg.message = (void *) get_zeroed_page(GFP_KERNEL);
+ if (!ap_msg.message)
+ return -ENOMEM;
+ ap_msg.length = PAGE_SIZE;
+ ap_msg.psmid = (((unsigned long long) current->pid) << 32) +
+ atomic_inc_return(&zcrypt_step);
+ ap_msg.private = &work;
+ rc = ICACRT_msg_to_type6CRT_msg(zdev, &ap_msg, crt);
+ if (rc)
+ goto out_free;
+ init_completion(&work);
+ ap_queue_message(zdev->ap_dev, &ap_msg);
+ rc = wait_for_completion_interruptible_timeout(
+ &work, PCICC_CLEANUP_TIME);
+ if (rc > 0)
+ rc = convert_response(zdev, &ap_msg, crt->outputdata,
+ crt->outputdatalength);
+ else {
+ /* Signal pending or message timed out. */
+ ap_cancel_message(zdev->ap_dev, &ap_msg);
+ if (rc == 0)
+ /* Message timed out. */
+ rc = -ETIME;
+ }
+out_free:
+ free_page((unsigned long) ap_msg.message);
+ return rc;
+}
+
+/**
+ * The crypto operations for a PCICC card.
+ */
+static struct zcrypt_ops zcrypt_pcicc_ops = {
+ .rsa_modexpo = zcrypt_pcicc_modexpo,
+ .rsa_modexpo_crt = zcrypt_pcicc_modexpo_crt,
+};
+
+/**
+ * Probe function for PCICC cards. It always accepts the AP device
+ * since the bus_match already checked the hardware type.
+ * @ap_dev: pointer to the AP device.
+ */
+static int zcrypt_pcicc_probe(struct ap_device *ap_dev)
+{
+ struct zcrypt_device *zdev;
+ int rc;
+
+ zdev = zcrypt_device_alloc(PCICC_MAX_RESPONSE_SIZE);
+ if (!zdev)
+ return -ENOMEM;
+ zdev->ap_dev = ap_dev;
+ zdev->ops = &zcrypt_pcicc_ops;
+ zdev->online = 1;
+ zdev->user_space_type = ZCRYPT_PCICC;
+ zdev->type_string = "PCICC";
+ zdev->min_mod_size = PCICC_MIN_MOD_SIZE;
+ zdev->max_mod_size = PCICC_MAX_MOD_SIZE;
+ zdev->speed_rating = PCICC_SPEED_RATING;
+ ap_dev->reply = &zdev->reply;
+ ap_dev->private = zdev;
+ rc = zcrypt_device_register(zdev);
+ if (rc)
+ goto out_free;
+ return 0;
+
+ out_free:
+ ap_dev->private = NULL;
+ zcrypt_device_free(zdev);
+ return rc;
+}
+
+/**
+ * This is called to remove the extended PCICC driver information
+ * if an AP device is removed.
+ */
+static void zcrypt_pcicc_remove(struct ap_device *ap_dev)
+{
+ struct zcrypt_device *zdev = ap_dev->private;
+
+ zcrypt_device_unregister(zdev);
+}
+
+int __init zcrypt_pcicc_init(void)
+{
+ return ap_driver_register(&zcrypt_pcicc_driver, THIS_MODULE, "pcicc");
+}
+
+void zcrypt_pcicc_exit(void)
+{
+ ap_driver_unregister(&zcrypt_pcicc_driver);
+}
+
+#ifndef CONFIG_ZCRYPT_MONOLITHIC
+module_init(zcrypt_pcicc_init);
+module_exit(zcrypt_pcicc_exit);
+#endif
diff --git a/drivers/s390/crypto/zcrypt_pcicc.h b/drivers/s390/crypto/zcrypt_pcicc.h
new file mode 100644
index 00000000000..6d4454846c8
--- /dev/null
+++ b/drivers/s390/crypto/zcrypt_pcicc.h
@@ -0,0 +1,176 @@
+/*
+ * linux/drivers/s390/crypto/zcrypt_pcicc.h
+ *
+ * zcrypt 2.1.0
+ *
+ * Copyright (C) 2001, 2006 IBM Corporation
+ * Author(s): Robert Burroughs
+ * Eric Rossman (edrossma@us.ibm.com)
+ *
+ * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
+ * Major cleanup & driver split: Martin Schwidefsky <schwidefsky@de.ibm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#ifndef _ZCRYPT_PCICC_H_
+#define _ZCRYPT_PCICC_H_
+
+/**
+ * The type 6 message family is associated with PCICC or PCIXCC cards.
+ *
+ * It contains a message header followed by a CPRB, both of which
+ * are described below.
+ *
+ * Note that all reserved fields must be zeroes.
+ */
+struct type6_hdr {
+ unsigned char reserved1; /* 0x00 */
+ unsigned char type; /* 0x06 */
+ unsigned char reserved2[2]; /* 0x0000 */
+ unsigned char right[4]; /* 0x00000000 */
+ unsigned char reserved3[2]; /* 0x0000 */
+ unsigned char reserved4[2]; /* 0x0000 */
+ unsigned char apfs[4]; /* 0x00000000 */
+ unsigned int offset1; /* 0x00000058 (offset to CPRB) */
+ unsigned int offset2; /* 0x00000000 */
+ unsigned int offset3; /* 0x00000000 */
+ unsigned int offset4; /* 0x00000000 */
+ unsigned char agent_id[16]; /* PCICC: */
+ /* 0x0100 */
+ /* 0x4343412d4150504c202020 */
+ /* 0x010101 */
+ /* PCIXCC: */
+ /* 0x4341000000000000 */
+ /* 0x0000000000000000 */
+ unsigned char rqid[2]; /* rqid. internal to 603 */
+ unsigned char reserved5[2]; /* 0x0000 */
+ unsigned char function_code[2]; /* for PKD, 0x5044 (ascii 'PD') */
+ unsigned char reserved6[2]; /* 0x0000 */
+ unsigned int ToCardLen1; /* (request CPRB len + 3) & -4 */
+ unsigned int ToCardLen2; /* db len 0x00000000 for PKD */
+ unsigned int ToCardLen3; /* 0x00000000 */
+ unsigned int ToCardLen4; /* 0x00000000 */
+ unsigned int FromCardLen1; /* response buffer length */
+ unsigned int FromCardLen2; /* db len 0x00000000 for PKD */
+ unsigned int FromCardLen3; /* 0x00000000 */
+ unsigned int FromCardLen4; /* 0x00000000 */
+} __attribute__((packed));
+
+/**
+ * CPRB
+ * Note that all shorts, ints and longs are little-endian.
+ * All pointer fields are 32-bits long, and mean nothing
+ *
+ * A request CPRB is followed by a request_parameter_block.
+ *
+ * The request (or reply) parameter block is organized thus:
+ * function code
+ * VUD block
+ * key block
+ */
+struct CPRB {
+ unsigned short cprb_len; /* CPRB length */
+ unsigned char cprb_ver_id; /* CPRB version id. */
+ unsigned char pad_000; /* Alignment pad byte. */
+ unsigned char srpi_rtcode[4]; /* SRPI return code LELONG */
+ unsigned char srpi_verb; /* SRPI verb type */
+ unsigned char flags; /* flags */
+ unsigned char func_id[2]; /* function id */
+ unsigned char checkpoint_flag; /* */
+ unsigned char resv2; /* reserved */
+ unsigned short req_parml; /* request parameter buffer */
+ /* length 16-bit little endian */
+ unsigned char req_parmp[4]; /* request parameter buffer *
+ * pointer (means nothing: the *
+ * parameter buffer follows *
+ * the CPRB). */
+ unsigned char req_datal[4]; /* request data buffer */
+ /* length ULELONG */
+ unsigned char req_datap[4]; /* request data buffer */
+ /* pointer */
+ unsigned short rpl_parml; /* reply parameter buffer */
+ /* length 16-bit little endian */
+ unsigned char pad_001[2]; /* Alignment pad bytes. ULESHORT */
+ unsigned char rpl_parmp[4]; /* reply parameter buffer *
+ * pointer (means nothing: the *
+ * parameter buffer follows *
+ * the CPRB). */
+ unsigned char rpl_datal[4]; /* reply data buffer len ULELONG */
+ unsigned char rpl_datap[4]; /* reply data buffer */
+ /* pointer */
+ unsigned short ccp_rscode; /* server reason code ULESHORT */
+ unsigned short ccp_rtcode; /* server return code ULESHORT */
+ unsigned char repd_parml[2]; /* replied parameter len ULESHORT*/
+ unsigned char mac_data_len[2]; /* Mac Data Length ULESHORT */
+ unsigned char repd_datal[4]; /* replied data length ULELONG */
+ unsigned char req_pc[2]; /* PC identifier */
+ unsigned char res_origin[8]; /* resource origin */
+ unsigned char mac_value[8]; /* Mac Value */
+ unsigned char logon_id[8]; /* Logon Identifier */
+ unsigned char usage_domain[2]; /* cdx */
+ unsigned char resv3[18]; /* reserved for requestor */
+ unsigned short svr_namel; /* server name length ULESHORT */
+ unsigned char svr_name[8]; /* server name */
+} __attribute__((packed));
+
+/**
+ * The type 86 message family is associated with PCICC and PCIXCC cards.
+ *
+ * It contains a message header followed by a CPRB. The CPRB is
+ * the same as the request CPRB, which is described above.
+ *
+ * If format is 1, an error condition exists and no data beyond
+ * the 8-byte message header is of interest.
+ *
+ * The non-error message is shown below.
+ *
+ * Note that all reserved fields must be zeroes.
+ */
+struct type86_hdr {
+ unsigned char reserved1; /* 0x00 */
+ unsigned char type; /* 0x86 */
+ unsigned char format; /* 0x01 (error) or 0x02 (ok) */
+ unsigned char reserved2; /* 0x00 */
+ unsigned char reply_code; /* reply code (see above) */
+ unsigned char reserved3[3]; /* 0x000000 */
+} __attribute__((packed));
+
+#define TYPE86_RSP_CODE 0x86
+#define TYPE86_FMT2 0x02
+
+struct type86_fmt2_ext {
+ unsigned char reserved[4]; /* 0x00000000 */
+ unsigned char apfs[4]; /* final status */
+ unsigned int count1; /* length of CPRB + parameters */
+ unsigned int offset1; /* offset to CPRB */
+ unsigned int count2; /* 0x00000000 */
+ unsigned int offset2; /* db offset 0x00000000 for PKD */
+ unsigned int count3; /* 0x00000000 */
+ unsigned int offset3; /* 0x00000000 */
+ unsigned int count4; /* 0x00000000 */
+ unsigned int offset4; /* 0x00000000 */
+} __attribute__((packed));
+
+struct function_and_rules_block {
+ unsigned char function_code[2];
+ unsigned short ulen;
+ unsigned char only_rule[8];
+} __attribute__((packed));
+
+int zcrypt_pcicc_init(void);
+void zcrypt_pcicc_exit(void);
+
+#endif /* _ZCRYPT_PCICC_H_ */
diff --git a/drivers/s390/crypto/zcrypt_pcixcc.c b/drivers/s390/crypto/zcrypt_pcixcc.c
new file mode 100644
index 00000000000..2da8b938140
--- /dev/null
+++ b/drivers/s390/crypto/zcrypt_pcixcc.c
@@ -0,0 +1,951 @@
+/*
+ * linux/drivers/s390/crypto/zcrypt_pcixcc.c
+ *
+ * zcrypt 2.1.0
+ *
+ * Copyright (C) 2001, 2006 IBM Corporation
+ * Author(s): Robert Burroughs
+ * Eric Rossman (edrossma@us.ibm.com)
+ *
+ * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
+ * Major cleanup & driver split: Martin Schwidefsky <schwidefsky@de.ibm.com>
+ * Ralph Wuerthner <rwuerthn@de.ibm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/err.h>
+#include <linux/delay.h>
+#include <asm/atomic.h>
+#include <asm/uaccess.h>
+
+#include "ap_bus.h"
+#include "zcrypt_api.h"
+#include "zcrypt_error.h"
+#include "zcrypt_pcicc.h"
+#include "zcrypt_pcixcc.h"
+#include "zcrypt_cca_key.h"
+
+#define PCIXCC_MIN_MOD_SIZE 16 /* 128 bits */
+#define PCIXCC_MIN_MOD_SIZE_OLD 64 /* 512 bits */
+#define PCIXCC_MAX_MOD_SIZE 256 /* 2048 bits */
+
+#define PCIXCC_MCL2_SPEED_RATING 7870 /* FIXME: needs finetuning */
+#define PCIXCC_MCL3_SPEED_RATING 7870
+#define CEX2C_SPEED_RATING 8540
+
+#define PCIXCC_MAX_ICA_MESSAGE_SIZE 0x77c /* max size type6 v2 crt message */
+#define PCIXCC_MAX_ICA_RESPONSE_SIZE 0x77c /* max size type86 v2 reply */
+
+#define PCIXCC_MAX_XCRB_MESSAGE_SIZE (12*1024)
+#define PCIXCC_MAX_XCRB_RESPONSE_SIZE PCIXCC_MAX_XCRB_MESSAGE_SIZE
+#define PCIXCC_MAX_XCRB_DATA_SIZE (11*1024)
+#define PCIXCC_MAX_XCRB_REPLY_SIZE (5*1024)
+
+#define PCIXCC_MAX_RESPONSE_SIZE PCIXCC_MAX_XCRB_RESPONSE_SIZE
+
+#define PCIXCC_CLEANUP_TIME (15*HZ)
+
+#define CEIL4(x) ((((x)+3)/4)*4)
+
+struct response_type {
+ struct completion work;
+ int type;
+};
+#define PCIXCC_RESPONSE_TYPE_ICA 0
+#define PCIXCC_RESPONSE_TYPE_XCRB 1
+
+static struct ap_device_id zcrypt_pcixcc_ids[] = {
+ { AP_DEVICE(AP_DEVICE_TYPE_PCIXCC) },
+ { AP_DEVICE(AP_DEVICE_TYPE_CEX2C) },
+ { /* end of list */ },
+};
+
+#ifndef CONFIG_ZCRYPT_MONOLITHIC
+MODULE_DEVICE_TABLE(ap, zcrypt_pcixcc_ids);
+MODULE_AUTHOR("IBM Corporation");
+MODULE_DESCRIPTION("PCIXCC Cryptographic Coprocessor device driver, "
+ "Copyright 2001, 2006 IBM Corporation");
+MODULE_LICENSE("GPL");
+#endif
+
+static int zcrypt_pcixcc_probe(struct ap_device *ap_dev);
+static void zcrypt_pcixcc_remove(struct ap_device *ap_dev);
+static void zcrypt_pcixcc_receive(struct ap_device *, struct ap_message *,
+ struct ap_message *);
+
+static struct ap_driver zcrypt_pcixcc_driver = {
+ .probe = zcrypt_pcixcc_probe,
+ .remove = zcrypt_pcixcc_remove,
+ .receive = zcrypt_pcixcc_receive,
+ .ids = zcrypt_pcixcc_ids,
+};
+
+/**
+ * The following is used to initialize the CPRBX passed to the PCIXCC/CEX2C
+ * card in a type6 message. The 3 fields that must be filled in at execution
+ * time are req_parml, rpl_parml and usage_domain.
+ * Everything about this interface is ascii/big-endian, since the
+ * device does *not* have 'Intel inside'.
+ *
+ * The CPRBX is followed immediately by the parm block.
+ * The parm block contains:
+ * - function code ('PD' 0x5044 or 'PK' 0x504B)
+ * - rule block (one of:)
+ * + 0x000A 'PKCS-1.2' (MCL2 'PD')
+ * + 0x000A 'ZERO-PAD' (MCL2 'PK')
+ * + 0x000A 'ZERO-PAD' (MCL3 'PD' or CEX2C 'PD')
+ * + 0x000A 'MRP ' (MCL3 'PK' or CEX2C 'PK')
+ * - VUD block
+ */
+static struct CPRBX static_cprbx = {
+ .cprb_len = 0x00DC,
+ .cprb_ver_id = 0x02,
+ .func_id = {0x54,0x32},
+};
+
+/**
+ * Convert a ICAMEX message to a type6 MEX message.
+ *
+ * @zdev: crypto device pointer
+ * @ap_msg: pointer to AP message
+ * @mex: pointer to user input data
+ *
+ * Returns 0 on success or -EFAULT.
+ */
+static int ICAMEX_msg_to_type6MEX_msgX(struct zcrypt_device *zdev,
+ struct ap_message *ap_msg,
+ struct ica_rsa_modexpo *mex)
+{
+ static struct type6_hdr static_type6_hdrX = {
+ .type = 0x06,
+ .offset1 = 0x00000058,
+ .agent_id = {'C','A',},
+ .function_code = {'P','K'},
+ };
+ static struct function_and_rules_block static_pke_fnr = {
+ .function_code = {'P','K'},
+ .ulen = 10,
+ .only_rule = {'M','R','P',' ',' ',' ',' ',' '}
+ };
+ static struct function_and_rules_block static_pke_fnr_MCL2 = {
+ .function_code = {'P','K'},
+ .ulen = 10,
+ .only_rule = {'Z','E','R','O','-','P','A','D'}
+ };
+ struct {
+ struct type6_hdr hdr;
+ struct CPRBX cprbx;
+ struct function_and_rules_block fr;
+ unsigned short length;
+ char text[0];
+ } __attribute__((packed)) *msg = ap_msg->message;
+ int size;
+
+ /* VUD.ciphertext */
+ msg->length = mex->inputdatalength + 2;
+ if (copy_from_user(msg->text, mex->inputdata, mex->inputdatalength))
+ return -EFAULT;
+
+ /* Set up key which is located after the variable length text. */
+ size = zcrypt_type6_mex_key_en(mex, msg->text+mex->inputdatalength, 1);
+ if (size < 0)
+ return size;
+ size += sizeof(*msg) + mex->inputdatalength;
+
+ /* message header, cprbx and f&r */
+ msg->hdr = static_type6_hdrX;
+ msg->hdr.ToCardLen1 = size - sizeof(msg->hdr);
+ msg->hdr.FromCardLen1 = PCIXCC_MAX_ICA_RESPONSE_SIZE - sizeof(msg->hdr);
+
+ msg->cprbx = static_cprbx;
+ msg->cprbx.domain = AP_QID_QUEUE(zdev->ap_dev->qid);
+ msg->cprbx.rpl_msgbl = msg->hdr.FromCardLen1;
+
+ msg->fr = (zdev->user_space_type == ZCRYPT_PCIXCC_MCL2) ?
+ static_pke_fnr_MCL2 : static_pke_fnr;
+
+ msg->cprbx.req_parml = size - sizeof(msg->hdr) - sizeof(msg->cprbx);
+
+ ap_msg->length = size;
+ return 0;
+}
+
+/**
+ * Convert a ICACRT message to a type6 CRT message.
+ *
+ * @zdev: crypto device pointer
+ * @ap_msg: pointer to AP message
+ * @crt: pointer to user input data
+ *
+ * Returns 0 on success or -EFAULT.
+ */
+static int ICACRT_msg_to_type6CRT_msgX(struct zcrypt_device *zdev,
+ struct ap_message *ap_msg,
+ struct ica_rsa_modexpo_crt *crt)
+{
+ static struct type6_hdr static_type6_hdrX = {
+ .type = 0x06,
+ .offset1 = 0x00000058,
+ .agent_id = {'C','A',},
+ .function_code = {'P','D'},
+ };
+ static struct function_and_rules_block static_pkd_fnr = {
+ .function_code = {'P','D'},
+ .ulen = 10,
+ .only_rule = {'Z','E','R','O','-','P','A','D'}
+ };
+
+ static struct function_and_rules_block static_pkd_fnr_MCL2 = {
+ .function_code = {'P','D'},
+ .ulen = 10,
+ .only_rule = {'P','K','C','S','-','1','.','2'}
+ };
+ struct {
+ struct type6_hdr hdr;
+ struct CPRBX cprbx;
+ struct function_and_rules_block fr;
+ unsigned short length;
+ char text[0];
+ } __attribute__((packed)) *msg = ap_msg->message;
+ int size;
+
+ /* VUD.ciphertext */
+ msg->length = crt->inputdatalength + 2;
+ if (copy_from_user(msg->text, crt->inputdata, crt->inputdatalength))
+ return -EFAULT;
+
+ /* Set up key which is located after the variable length text. */
+ size = zcrypt_type6_crt_key(crt, msg->text + crt->inputdatalength, 1);
+ if (size < 0)
+ return size;
+ size += sizeof(*msg) + crt->inputdatalength; /* total size of msg */
+
+ /* message header, cprbx and f&r */
+ msg->hdr = static_type6_hdrX;
+ msg->hdr.ToCardLen1 = size - sizeof(msg->hdr);
+ msg->hdr.FromCardLen1 = PCIXCC_MAX_ICA_RESPONSE_SIZE - sizeof(msg->hdr);
+
+ msg->cprbx = static_cprbx;
+ msg->cprbx.domain = AP_QID_QUEUE(zdev->ap_dev->qid);
+ msg->cprbx.req_parml = msg->cprbx.rpl_msgbl =
+ size - sizeof(msg->hdr) - sizeof(msg->cprbx);
+
+ msg->fr = (zdev->user_space_type == ZCRYPT_PCIXCC_MCL2) ?
+ static_pkd_fnr_MCL2 : static_pkd_fnr;
+
+ ap_msg->length = size;
+ return 0;
+}
+
+/**
+ * Convert a XCRB message to a type6 CPRB message.
+ *
+ * @zdev: crypto device pointer
+ * @ap_msg: pointer to AP message
+ * @xcRB: pointer to user input data
+ *
+ * Returns 0 on success or -EFAULT.
+ */
+struct type86_fmt2_msg {
+ struct type86_hdr hdr;
+ struct type86_fmt2_ext fmt2;
+} __attribute__((packed));
+
+static int XCRB_msg_to_type6CPRB_msgX(struct zcrypt_device *zdev,
+ struct ap_message *ap_msg,
+ struct ica_xcRB *xcRB)
+{
+ static struct type6_hdr static_type6_hdrX = {
+ .type = 0x06,
+ .offset1 = 0x00000058,
+ };
+ struct {
+ struct type6_hdr hdr;
+ struct ica_CPRBX cprbx;
+ } __attribute__((packed)) *msg = ap_msg->message;
+
+ int rcblen = CEIL4(xcRB->request_control_blk_length);
+ int replylen;
+ char *req_data = ap_msg->message + sizeof(struct type6_hdr) + rcblen;
+ char *function_code;
+
+ /* length checks */
+ ap_msg->length = sizeof(struct type6_hdr) +
+ CEIL4(xcRB->request_control_blk_length) +
+ xcRB->request_data_length;
+ if (ap_msg->length > PCIXCC_MAX_XCRB_MESSAGE_SIZE) {
+ PRINTK("Combined message is too large (%ld/%d/%d).\n",
+ sizeof(struct type6_hdr),
+ xcRB->request_control_blk_length,
+ xcRB->request_data_length);
+ return -EFAULT;
+ }
+ if (CEIL4(xcRB->reply_control_blk_length) >
+ PCIXCC_MAX_XCRB_REPLY_SIZE) {
+ PDEBUG("Reply CPRB length is too large (%d).\n",
+ xcRB->request_control_blk_length);
+ return -EFAULT;
+ }
+ if (CEIL4(xcRB->reply_data_length) > PCIXCC_MAX_XCRB_DATA_SIZE) {
+ PDEBUG("Reply data block length is too large (%d).\n",
+ xcRB->reply_data_length);
+ return -EFAULT;
+ }
+ replylen = CEIL4(xcRB->reply_control_blk_length) +
+ CEIL4(xcRB->reply_data_length) +
+ sizeof(struct type86_fmt2_msg);
+ if (replylen > PCIXCC_MAX_XCRB_RESPONSE_SIZE) {
+ PDEBUG("Reply CPRB + data block > PCIXCC_MAX_XCRB_RESPONSE_SIZE"
+ " (%d/%d/%d).\n",
+ sizeof(struct type86_fmt2_msg),
+ xcRB->reply_control_blk_length,
+ xcRB->reply_data_length);
+ xcRB->reply_control_blk_length = PCIXCC_MAX_XCRB_RESPONSE_SIZE -
+ (sizeof(struct type86_fmt2_msg) +
+ CEIL4(xcRB->reply_data_length));
+ PDEBUG("Capping Reply CPRB length at %d\n",
+ xcRB->reply_control_blk_length);
+ }
+
+ /* prepare type6 header */
+ msg->hdr = static_type6_hdrX;
+ memcpy(msg->hdr.agent_id , &(xcRB->agent_ID), sizeof(xcRB->agent_ID));
+ msg->hdr.ToCardLen1 = xcRB->request_control_blk_length;
+ if (xcRB->request_data_length) {
+ msg->hdr.offset2 = msg->hdr.offset1 + rcblen;
+ msg->hdr.ToCardLen2 = xcRB->request_data_length;
+ }
+ msg->hdr.FromCardLen1 = xcRB->reply_control_blk_length;
+ msg->hdr.FromCardLen2 = xcRB->reply_data_length;
+
+ /* prepare CPRB */
+ if (copy_from_user(&(msg->cprbx), xcRB->request_control_blk_addr,
+ xcRB->request_control_blk_length))
+ return -EFAULT;
+ if (msg->cprbx.cprb_len + sizeof(msg->hdr.function_code) >
+ xcRB->request_control_blk_length) {
+ PDEBUG("cprb_len too large (%d/%d)\n", msg->cprbx.cprb_len,
+ xcRB->request_control_blk_length);
+ return -EFAULT;
+ }
+ function_code = ((unsigned char *)&msg->cprbx) + msg->cprbx.cprb_len;
+ memcpy(msg->hdr.function_code, function_code, sizeof(msg->hdr.function_code));
+
+ /* copy data block */
+ if (xcRB->request_data_length &&
+ copy_from_user(req_data, xcRB->request_data_address,
+ xcRB->request_data_length))
+ return -EFAULT;
+ return 0;
+}
+
+/**
+ * Copy results from a type 86 ICA reply message back to user space.
+ *
+ * @zdev: crypto device pointer
+ * @reply: reply AP message.
+ * @data: pointer to user output data
+ * @length: size of user output data
+ *
+ * Returns 0 on success or -EINVAL, -EFAULT, -EAGAIN in case of an error.
+ */
+struct type86x_reply {
+ struct type86_hdr hdr;
+ struct type86_fmt2_ext fmt2;
+ struct CPRBX cprbx;
+ unsigned char pad[4]; /* 4 byte function code/rules block ? */
+ unsigned short length;
+ char text[0];
+} __attribute__((packed));
+
+static int convert_type86_ica(struct zcrypt_device *zdev,
+ struct ap_message *reply,
+ char __user *outputdata,
+ unsigned int outputdatalength)
+{
+ static unsigned char static_pad[] = {
+ 0x00,0x02,
+ 0x1B,0x7B,0x5D,0xB5,0x75,0x01,0x3D,0xFD,
+ 0x8D,0xD1,0xC7,0x03,0x2D,0x09,0x23,0x57,
+ 0x89,0x49,0xB9,0x3F,0xBB,0x99,0x41,0x5B,
+ 0x75,0x21,0x7B,0x9D,0x3B,0x6B,0x51,0x39,
+ 0xBB,0x0D,0x35,0xB9,0x89,0x0F,0x93,0xA5,
+ 0x0B,0x47,0xF1,0xD3,0xBB,0xCB,0xF1,0x9D,
+ 0x23,0x73,0x71,0xFF,0xF3,0xF5,0x45,0xFB,
+ 0x61,0x29,0x23,0xFD,0xF1,0x29,0x3F,0x7F,
+ 0x17,0xB7,0x1B,0xA9,0x19,0xBD,0x57,0xA9,
+ 0xD7,0x95,0xA3,0xCB,0xED,0x1D,0xDB,0x45,
+ 0x7D,0x11,0xD1,0x51,0x1B,0xED,0x71,0xE9,
+ 0xB1,0xD1,0xAB,0xAB,0x21,0x2B,0x1B,0x9F,
+ 0x3B,0x9F,0xF7,0xF7,0xBD,0x63,0xEB,0xAD,
+ 0xDF,0xB3,0x6F,0x5B,0xDB,0x8D,0xA9,0x5D,
+ 0xE3,0x7D,0x77,0x49,0x47,0xF5,0xA7,0xFD,
+ 0xAB,0x2F,0x27,0x35,0x77,0xD3,0x49,0xC9,
+ 0x09,0xEB,0xB1,0xF9,0xBF,0x4B,0xCB,0x2B,
+ 0xEB,0xEB,0x05,0xFF,0x7D,0xC7,0x91,0x8B,
+ 0x09,0x83,0xB9,0xB9,0x69,0x33,0x39,0x6B,
+ 0x79,0x75,0x19,0xBF,0xBB,0x07,0x1D,0xBD,
+ 0x29,0xBF,0x39,0x95,0x93,0x1D,0x35,0xC7,
+ 0xC9,0x4D,0xE5,0x97,0x0B,0x43,0x9B,0xF1,
+ 0x16,0x93,0x03,0x1F,0xA5,0xFB,0xDB,0xF3,
+ 0x27,0x4F,0x27,0x61,0x05,0x1F,0xB9,0x23,
+ 0x2F,0xC3,0x81,0xA9,0x23,0x71,0x55,0x55,
+ 0xEB,0xED,0x41,0xE5,0xF3,0x11,0xF1,0x43,
+ 0x69,0x03,0xBD,0x0B,0x37,0x0F,0x51,0x8F,
+ 0x0B,0xB5,0x89,0x5B,0x67,0xA9,0xD9,0x4F,
+ 0x01,0xF9,0x21,0x77,0x37,0x73,0x79,0xC5,
+ 0x7F,0x51,0xC1,0xCF,0x97,0xA1,0x75,0xAD,
+ 0x35,0x9D,0xD3,0xD3,0xA7,0x9D,0x5D,0x41,
+ 0x6F,0x65,0x1B,0xCF,0xA9,0x87,0x91,0x09
+ };
+ struct type86x_reply *msg = reply->message;
+ unsigned short service_rc, service_rs;
+ unsigned int reply_len, pad_len;
+ char *data;
+
+ service_rc = msg->cprbx.ccp_rtcode;
+ if (unlikely(service_rc != 0)) {
+ service_rs = msg->cprbx.ccp_rscode;
+ if (service_rc == 8 && service_rs == 66) {
+ PDEBUG("Bad block format on PCIXCC/CEX2C\n");
+ return -EINVAL;
+ }
+ if (service_rc == 8 && service_rs == 65) {
+ PDEBUG("Probably an even modulus on PCIXCC/CEX2C\n");
+ return -EINVAL;
+ }
+ if (service_rc == 8 && service_rs == 770) {
+ PDEBUG("Invalid key length on PCIXCC/CEX2C\n");
+ zdev->min_mod_size = PCIXCC_MIN_MOD_SIZE_OLD;
+ return -EAGAIN;
+ }
+ if (service_rc == 8 && service_rs == 783) {
+ PDEBUG("Extended bitlengths not enabled on PCIXCC/CEX2C\n");
+ zdev->min_mod_size = PCIXCC_MIN_MOD_SIZE_OLD;
+ return -EAGAIN;
+ }
+ PRINTK("Unknown service rc/rs (PCIXCC/CEX2C): %d/%d\n",
+ service_rc, service_rs);
+ zdev->online = 0;
+ return -EAGAIN; /* repeat the request on a different device. */
+ }
+ data = msg->text;
+ reply_len = msg->length - 2;
+ if (reply_len > outputdatalength)
+ return -EINVAL;
+ /**
+ * For all encipher requests, the length of the ciphertext (reply_len)
+ * will always equal the modulus length. For MEX decipher requests
+ * the output needs to get padded. Minimum pad size is 10.
+ *
+ * Currently, the cases where padding will be added is for:
+ * - PCIXCC_MCL2 using a CRT form token (since PKD didn't support
+ * ZERO-PAD and CRT is only supported for PKD requests)
+ * - PCICC, always
+ */
+ pad_len = outputdatalength - reply_len;
+ if (pad_len > 0) {
+ if (pad_len < 10)
+ return -EINVAL;
+ /* 'restore' padding left in the PCICC/PCIXCC card. */
+ if (copy_to_user(outputdata, static_pad, pad_len - 1))
+ return -EFAULT;
+ if (put_user(0, outputdata + pad_len - 1))
+ return -EFAULT;
+ }
+ /* Copy the crypto response to user space. */
+ if (copy_to_user(outputdata + pad_len, data, reply_len))
+ return -EFAULT;
+ return 0;
+}
+
+/**
+ * Copy results from a type 86 XCRB reply message back to user space.
+ *
+ * @zdev: crypto device pointer
+ * @reply: reply AP message.
+ * @xcRB: pointer to XCRB
+ *
+ * Returns 0 on success or -EINVAL, -EFAULT, -EAGAIN in case of an error.
+ */
+static int convert_type86_xcrb(struct zcrypt_device *zdev,
+ struct ap_message *reply,
+ struct ica_xcRB *xcRB)
+{
+ struct type86_fmt2_msg *msg = reply->message;
+ char *data = reply->message;
+
+ /* Copy CPRB to user */
+ if (copy_to_user(xcRB->reply_control_blk_addr,
+ data + msg->fmt2.offset1, msg->fmt2.count1))
+ return -EFAULT;
+ xcRB->reply_control_blk_length = msg->fmt2.count1;
+
+ /* Copy data buffer to user */
+ if (msg->fmt2.count2)
+ if (copy_to_user(xcRB->reply_data_addr,
+ data + msg->fmt2.offset2, msg->fmt2.count2))
+ return -EFAULT;
+ xcRB->reply_data_length = msg->fmt2.count2;
+ return 0;
+}
+
+static int convert_response_ica(struct zcrypt_device *zdev,
+ struct ap_message *reply,
+ char __user *outputdata,
+ unsigned int outputdatalength)
+{
+ struct type86x_reply *msg = reply->message;
+
+ /* Response type byte is the second byte in the response. */
+ switch (((unsigned char *) reply->message)[1]) {
+ case TYPE82_RSP_CODE:
+ case TYPE88_RSP_CODE:
+ return convert_error(zdev, reply);
+ case TYPE86_RSP_CODE:
+ if (msg->hdr.reply_code)
+ return convert_error(zdev, reply);
+ if (msg->cprbx.cprb_ver_id == 0x02)
+ return convert_type86_ica(zdev, reply,
+ outputdata, outputdatalength);
+ /* no break, incorrect cprb version is an unknown response */
+ default: /* Unknown response type, this should NEVER EVER happen */
+ PRINTK("Unrecognized Message Header: %08x%08x\n",
+ *(unsigned int *) reply->message,
+ *(unsigned int *) (reply->message+4));
+ zdev->online = 0;
+ return -EAGAIN; /* repeat the request on a different device. */
+ }
+}
+
+static int convert_response_xcrb(struct zcrypt_device *zdev,
+ struct ap_message *reply,
+ struct ica_xcRB *xcRB)
+{
+ struct type86x_reply *msg = reply->message;
+
+ /* Response type byte is the second byte in the response. */
+ switch (((unsigned char *) reply->message)[1]) {
+ case TYPE82_RSP_CODE:
+ case TYPE88_RSP_CODE:
+ xcRB->status = 0x0008044DL; /* HDD_InvalidParm */
+ return convert_error(zdev, reply);
+ case TYPE86_RSP_CODE:
+ if (msg->hdr.reply_code) {
+ memcpy(&(xcRB->status), msg->fmt2.apfs, sizeof(u32));
+ return convert_error(zdev, reply);
+ }
+ if (msg->cprbx.cprb_ver_id == 0x02)
+ return convert_type86_xcrb(zdev, reply, xcRB);
+ /* no break, incorrect cprb version is an unknown response */
+ default: /* Unknown response type, this should NEVER EVER happen */
+ PRINTK("Unrecognized Message Header: %08x%08x\n",
+ *(unsigned int *) reply->message,
+ *(unsigned int *) (reply->message+4));
+ xcRB->status = 0x0008044DL; /* HDD_InvalidParm */
+ zdev->online = 0;
+ return -EAGAIN; /* repeat the request on a different device. */
+ }
+}
+
+/**
+ * This function is called from the AP bus code after a crypto request
+ * "msg" has finished with the reply message "reply".
+ * It is called from tasklet context.
+ * @ap_dev: pointer to the AP device
+ * @msg: pointer to the AP message
+ * @reply: pointer to the AP reply message
+ */
+static void zcrypt_pcixcc_receive(struct ap_device *ap_dev,
+ struct ap_message *msg,
+ struct ap_message *reply)
+{
+ static struct error_hdr error_reply = {
+ .type = TYPE82_RSP_CODE,
+ .reply_code = REP82_ERROR_MACHINE_FAILURE,
+ };
+ struct response_type *resp_type =
+ (struct response_type *) msg->private;
+ struct type86x_reply *t86r = reply->message;
+ int length;
+
+ /* Copy the reply message to the request message buffer. */
+ if (IS_ERR(reply))
+ memcpy(msg->message, &error_reply, sizeof(error_reply));
+ else if (t86r->hdr.type == TYPE86_RSP_CODE &&
+ t86r->cprbx.cprb_ver_id == 0x02) {
+ switch (resp_type->type) {
+ case PCIXCC_RESPONSE_TYPE_ICA:
+ length = sizeof(struct type86x_reply)
+ + t86r->length - 2;
+ length = min(PCIXCC_MAX_ICA_RESPONSE_SIZE, length);
+ memcpy(msg->message, reply->message, length);
+ break;
+ case PCIXCC_RESPONSE_TYPE_XCRB:
+ length = t86r->fmt2.offset2 + t86r->fmt2.count2;
+ length = min(PCIXCC_MAX_XCRB_RESPONSE_SIZE, length);
+ memcpy(msg->message, reply->message, length);
+ break;
+ default:
+ PRINTK("Invalid internal response type: %i\n",
+ resp_type->type);
+ memcpy(msg->message, &error_reply,
+ sizeof error_reply);
+ }
+ } else
+ memcpy(msg->message, reply->message, sizeof error_reply);
+ complete(&(resp_type->work));
+}
+
+static atomic_t zcrypt_step = ATOMIC_INIT(0);
+
+/**
+ * The request distributor calls this function if it picked the PCIXCC/CEX2C
+ * device to handle a modexpo request.
+ * @zdev: pointer to zcrypt_device structure that identifies the
+ * PCIXCC/CEX2C device to the request distributor
+ * @mex: pointer to the modexpo request buffer
+ */
+static long zcrypt_pcixcc_modexpo(struct zcrypt_device *zdev,
+ struct ica_rsa_modexpo *mex)
+{
+ struct ap_message ap_msg;
+ struct response_type resp_type = {
+ .type = PCIXCC_RESPONSE_TYPE_ICA,
+ };
+ int rc;
+
+ ap_msg.message = (void *) get_zeroed_page(GFP_KERNEL);
+ if (!ap_msg.message)
+ return -ENOMEM;
+ ap_msg.psmid = (((unsigned long long) current->pid) << 32) +
+ atomic_inc_return(&zcrypt_step);
+ ap_msg.private = &resp_type;
+ rc = ICAMEX_msg_to_type6MEX_msgX(zdev, &ap_msg, mex);
+ if (rc)
+ goto out_free;
+ init_completion(&resp_type.work);
+ ap_queue_message(zdev->ap_dev, &ap_msg);
+ rc = wait_for_completion_interruptible_timeout(
+ &resp_type.work, PCIXCC_CLEANUP_TIME);
+ if (rc > 0)
+ rc = convert_response_ica(zdev, &ap_msg, mex->outputdata,
+ mex->outputdatalength);
+ else {
+ /* Signal pending or message timed out. */
+ ap_cancel_message(zdev->ap_dev, &ap_msg);
+ if (rc == 0)
+ /* Message timed out. */
+ rc = -ETIME;
+ }
+out_free:
+ free_page((unsigned long) ap_msg.message);
+ return rc;
+}
+
+/**
+ * The request distributor calls this function if it picked the PCIXCC/CEX2C
+ * device to handle a modexpo_crt request.
+ * @zdev: pointer to zcrypt_device structure that identifies the
+ * PCIXCC/CEX2C device to the request distributor
+ * @crt: pointer to the modexpoc_crt request buffer
+ */
+static long zcrypt_pcixcc_modexpo_crt(struct zcrypt_device *zdev,
+ struct ica_rsa_modexpo_crt *crt)
+{
+ struct ap_message ap_msg;
+ struct response_type resp_type = {
+ .type = PCIXCC_RESPONSE_TYPE_ICA,
+ };
+ int rc;
+
+ ap_msg.message = (void *) get_zeroed_page(GFP_KERNEL);
+ if (!ap_msg.message)
+ return -ENOMEM;
+ ap_msg.psmid = (((unsigned long long) current->pid) << 32) +
+ atomic_inc_return(&zcrypt_step);
+ ap_msg.private = &resp_type;
+ rc = ICACRT_msg_to_type6CRT_msgX(zdev, &ap_msg, crt);
+ if (rc)
+ goto out_free;
+ init_completion(&resp_type.work);
+ ap_queue_message(zdev->ap_dev, &ap_msg);
+ rc = wait_for_completion_interruptible_timeout(
+ &resp_type.work, PCIXCC_CLEANUP_TIME);
+ if (rc > 0)
+ rc = convert_response_ica(zdev, &ap_msg, crt->outputdata,
+ crt->outputdatalength);
+ else {
+ /* Signal pending or message timed out. */
+ ap_cancel_message(zdev->ap_dev, &ap_msg);
+ if (rc == 0)
+ /* Message timed out. */
+ rc = -ETIME;
+ }
+out_free:
+ free_page((unsigned long) ap_msg.message);
+ return rc;
+}
+
+/**
+ * The request distributor calls this function if it picked the PCIXCC/CEX2C
+ * device to handle a send_cprb request.
+ * @zdev: pointer to zcrypt_device structure that identifies the
+ * PCIXCC/CEX2C device to the request distributor
+ * @xcRB: pointer to the send_cprb request buffer
+ */
+long zcrypt_pcixcc_send_cprb(struct zcrypt_device *zdev, struct ica_xcRB *xcRB)
+{
+ struct ap_message ap_msg;
+ struct response_type resp_type = {
+ .type = PCIXCC_RESPONSE_TYPE_XCRB,
+ };
+ int rc;
+
+ ap_msg.message = (void *) kmalloc(PCIXCC_MAX_XCRB_MESSAGE_SIZE, GFP_KERNEL);
+ if (!ap_msg.message)
+ return -ENOMEM;
+ ap_msg.psmid = (((unsigned long long) current->pid) << 32) +
+ atomic_inc_return(&zcrypt_step);
+ ap_msg.private = &resp_type;
+ rc = XCRB_msg_to_type6CPRB_msgX(zdev, &ap_msg, xcRB);
+ if (rc)
+ goto out_free;
+ init_completion(&resp_type.work);
+ ap_queue_message(zdev->ap_dev, &ap_msg);
+ rc = wait_for_completion_interruptible_timeout(
+ &resp_type.work, PCIXCC_CLEANUP_TIME);
+ if (rc > 0)
+ rc = convert_response_xcrb(zdev, &ap_msg, xcRB);
+ else {
+ /* Signal pending or message timed out. */
+ ap_cancel_message(zdev->ap_dev, &ap_msg);
+ if (rc == 0)
+ /* Message timed out. */
+ rc = -ETIME;
+ }
+out_free:
+ memset(ap_msg.message, 0x0, ap_msg.length);
+ kfree(ap_msg.message);
+ return rc;
+}
+
+/**
+ * The crypto operations for a PCIXCC/CEX2C card.
+ */
+static struct zcrypt_ops zcrypt_pcixcc_ops = {
+ .rsa_modexpo = zcrypt_pcixcc_modexpo,
+ .rsa_modexpo_crt = zcrypt_pcixcc_modexpo_crt,
+ .send_cprb = zcrypt_pcixcc_send_cprb,
+};
+
+/**
+ * Micro-code detection function. Its sends a message to a pcixcc card
+ * to find out the microcode level.
+ * @ap_dev: pointer to the AP device.
+ */
+static int zcrypt_pcixcc_mcl(struct ap_device *ap_dev)
+{
+ static unsigned char msg[] = {
+ 0x00,0x06,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x58,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x43,0x41,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x50,0x4B,0x00,0x00,
+ 0x00,0x00,0x01,0xC4,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x07,0x24,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0xDC,0x02,0x00,0x00,0x00,0x54,0x32,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0xE8,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x07,0x24,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x04,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
+ 0x00,0x00,0x00,0x00,0x50,0x4B,0x00,0x0A,
+ 0x4D,0x52,0x50,0x20,0x20,0x20,0x20,0x20,
+ 0x00,0x42,0x00,0x01,0x02,0x03,0x04,0x05,
+ 0x06,0x07,0x08,0x09,0x0A,0x0B,0x0C,0x0D,
+ 0x0E,0x0F,0x00,0x11,0x22,0x33,0x44,0x55,
+ 0x66,0x77,0x88,0x99,0xAA,0xBB,0xCC,0xDD,
+ 0xEE,0xFF,0xFF,0xEE,0xDD,0xCC,0xBB,0xAA,
+ 0x99,0x88,0x77,0x66,0x55,0x44,0x33,0x22,
+ 0x11,0x00,0x01,0x23,0x45,0x67,0x89,0xAB,
+ 0xCD,0xEF,0xFE,0xDC,0xBA,0x98,0x76,0x54,
+ 0x32,0x10,0x00,0x9A,0x00,0x98,0x00,0x00,
+ 0x1E,0x00,0x00,0x94,0x00,0x00,0x00,0x00,
+ 0x04,0x00,0x00,0x8C,0x00,0x00,0x00,0x40,
+ 0x02,0x00,0x00,0x40,0xBA,0xE8,0x23,0x3C,
+ 0x75,0xF3,0x91,0x61,0xD6,0x73,0x39,0xCF,
+ 0x7B,0x6D,0x8E,0x61,0x97,0x63,0x9E,0xD9,
+ 0x60,0x55,0xD6,0xC7,0xEF,0xF8,0x1E,0x63,
+ 0x95,0x17,0xCC,0x28,0x45,0x60,0x11,0xC5,
+ 0xC4,0x4E,0x66,0xC6,0xE6,0xC3,0xDE,0x8A,
+ 0x19,0x30,0xCF,0x0E,0xD7,0xAA,0xDB,0x01,
+ 0xD8,0x00,0xBB,0x8F,0x39,0x9F,0x64,0x28,
+ 0xF5,0x7A,0x77,0x49,0xCC,0x6B,0xA3,0x91,
+ 0x97,0x70,0xE7,0x60,0x1E,0x39,0xE1,0xE5,
+ 0x33,0xE1,0x15,0x63,0x69,0x08,0x80,0x4C,
+ 0x67,0xC4,0x41,0x8F,0x48,0xDF,0x26,0x98,
+ 0xF1,0xD5,0x8D,0x88,0xD9,0x6A,0xA4,0x96,
+ 0xC5,0x84,0xD9,0x30,0x49,0x67,0x7D,0x19,
+ 0xB1,0xB3,0x45,0x4D,0xB2,0x53,0x9A,0x47,
+ 0x3C,0x7C,0x55,0xBF,0xCC,0x85,0x00,0x36,
+ 0xF1,0x3D,0x93,0x53
+ };
+ unsigned long long psmid;
+ struct CPRBX *cprbx;
+ char *reply;
+ int rc, i;
+
+ reply = (void *) get_zeroed_page(GFP_KERNEL);
+ if (!reply)
+ return -ENOMEM;
+
+ rc = ap_send(ap_dev->qid, 0x0102030405060708ULL, msg, sizeof(msg));
+ if (rc)
+ goto out_free;
+
+ /* Wait for the test message to complete. */
+ for (i = 0; i < 6; i++) {
+ mdelay(300);
+ rc = ap_recv(ap_dev->qid, &psmid, reply, 4096);
+ if (rc == 0 && psmid == 0x0102030405060708ULL)
+ break;
+ }
+
+ if (i >= 6) {
+ /* Got no answer. */
+ rc = -ENODEV;
+ goto out_free;
+ }
+
+ cprbx = (struct CPRBX *) (reply + 48);
+ if (cprbx->ccp_rtcode == 8 && cprbx->ccp_rscode == 33)
+ rc = ZCRYPT_PCIXCC_MCL2;
+ else
+ rc = ZCRYPT_PCIXCC_MCL3;
+out_free:
+ free_page((unsigned long) reply);
+ return rc;
+}
+
+/**
+ * Probe function for PCIXCC/CEX2C cards. It always accepts the AP device
+ * since the bus_match already checked the hardware type. The PCIXCC
+ * cards come in two flavours: micro code level 2 and micro code level 3.
+ * This is checked by sending a test message to the device.
+ * @ap_dev: pointer to the AP device.
+ */
+static int zcrypt_pcixcc_probe(struct ap_device *ap_dev)
+{
+ struct zcrypt_device *zdev;
+ int rc;
+
+ zdev = zcrypt_device_alloc(PCIXCC_MAX_RESPONSE_SIZE);
+ if (!zdev)
+ return -ENOMEM;
+ zdev->ap_dev = ap_dev;
+ zdev->ops = &zcrypt_pcixcc_ops;
+ zdev->online = 1;
+ if (ap_dev->device_type == AP_DEVICE_TYPE_PCIXCC) {
+ rc = zcrypt_pcixcc_mcl(ap_dev);
+ if (rc < 0) {
+ zcrypt_device_free(zdev);
+ return rc;
+ }
+ zdev->user_space_type = rc;
+ if (rc == ZCRYPT_PCIXCC_MCL2) {
+ zdev->type_string = "PCIXCC_MCL2";
+ zdev->speed_rating = PCIXCC_MCL2_SPEED_RATING;
+ zdev->min_mod_size = PCIXCC_MIN_MOD_SIZE_OLD;
+ zdev->max_mod_size = PCIXCC_MAX_MOD_SIZE;
+ } else {
+ zdev->type_string = "PCIXCC_MCL3";
+ zdev->speed_rating = PCIXCC_MCL3_SPEED_RATING;
+ zdev->min_mod_size = PCIXCC_MIN_MOD_SIZE;
+ zdev->max_mod_size = PCIXCC_MAX_MOD_SIZE;
+ }
+ } else {
+ zdev->user_space_type = ZCRYPT_CEX2C;
+ zdev->type_string = "CEX2C";
+ zdev->speed_rating = CEX2C_SPEED_RATING;
+ zdev->min_mod_size = PCIXCC_MIN_MOD_SIZE;
+ zdev->max_mod_size = PCIXCC_MAX_MOD_SIZE;
+ }
+ ap_dev->reply = &zdev->reply;
+ ap_dev->private = zdev;
+ rc = zcrypt_device_register(zdev);
+ if (rc)
+ goto out_free;
+ return 0;
+
+ out_free:
+ ap_dev->private = NULL;
+ zcrypt_device_free(zdev);
+ return rc;
+}
+
+/**
+ * This is called to remove the extended PCIXCC/CEX2C driver information
+ * if an AP device is removed.
+ */
+static void zcrypt_pcixcc_remove(struct ap_device *ap_dev)
+{
+ struct zcrypt_device *zdev = ap_dev->private;
+
+ zcrypt_device_unregister(zdev);
+}
+
+int __init zcrypt_pcixcc_init(void)
+{
+ return ap_driver_register(&zcrypt_pcixcc_driver, THIS_MODULE, "pcixcc");
+}
+
+void zcrypt_pcixcc_exit(void)
+{
+ ap_driver_unregister(&zcrypt_pcixcc_driver);
+}
+
+#ifndef CONFIG_ZCRYPT_MONOLITHIC
+module_init(zcrypt_pcixcc_init);
+module_exit(zcrypt_pcixcc_exit);
+#endif
diff --git a/drivers/s390/crypto/zcrypt_pcixcc.h b/drivers/s390/crypto/zcrypt_pcixcc.h
new file mode 100644
index 00000000000..a78ff307fd1
--- /dev/null
+++ b/drivers/s390/crypto/zcrypt_pcixcc.h
@@ -0,0 +1,79 @@
+/*
+ * linux/drivers/s390/crypto/zcrypt_pcixcc.h
+ *
+ * zcrypt 2.1.0
+ *
+ * Copyright (C) 2001, 2006 IBM Corporation
+ * Author(s): Robert Burroughs
+ * Eric Rossman (edrossma@us.ibm.com)
+ *
+ * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
+ * Major cleanup & driver split: Martin Schwidefsky <schwidefsky@de.ibm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2, or (at your option)
+ * any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ */
+
+#ifndef _ZCRYPT_PCIXCC_H_
+#define _ZCRYPT_PCIXCC_H_
+
+/**
+ * CPRBX
+ * Note that all shorts and ints are big-endian.
+ * All pointer fields are 16 bytes long, and mean nothing.
+ *
+ * A request CPRB is followed by a request_parameter_block.
+ *
+ * The request (or reply) parameter block is organized thus:
+ * function code
+ * VUD block
+ * key block
+ */
+struct CPRBX {
+ unsigned short cprb_len; /* CPRB length 220 */
+ unsigned char cprb_ver_id; /* CPRB version id. 0x02 */
+ unsigned char pad_000[3]; /* Alignment pad bytes */
+ unsigned char func_id[2]; /* function id 0x5432 */
+ unsigned char cprb_flags[4]; /* Flags */
+ unsigned int req_parml; /* request parameter buffer len */
+ unsigned int req_datal; /* request data buffer */
+ unsigned int rpl_msgbl; /* reply message block length */
+ unsigned int rpld_parml; /* replied parameter block len */
+ unsigned int rpl_datal; /* reply data block len */
+ unsigned int rpld_datal; /* replied data block len */
+ unsigned int req_extbl; /* request extension block len */
+ unsigned char pad_001[4]; /* reserved */
+ unsigned int rpld_extbl; /* replied extension block len */
+ unsigned char req_parmb[16]; /* request parm block 'address' */
+ unsigned char req_datab[16]; /* request data block 'address' */
+ unsigned char rpl_parmb[16]; /* reply parm block 'address' */
+ unsigned char rpl_datab[16]; /* reply data block 'address' */
+ unsigned char req_extb[16]; /* request extension block 'addr'*/
+ unsigned char rpl_extb[16]; /* reply extension block 'addres'*/
+ unsigned short ccp_rtcode; /* server return code */
+ unsigned short ccp_rscode; /* server reason code */
+ unsigned int mac_data_len; /* Mac Data Length */
+ unsigned char logon_id[8]; /* Logon Identifier */
+ unsigned char mac_value[8]; /* Mac Value */
+ unsigned char mac_content_flgs;/* Mac content flag byte */
+ unsigned char pad_002; /* Alignment */
+ unsigned short domain; /* Domain */
+ unsigned char pad_003[12]; /* Domain masks */
+ unsigned char pad_004[36]; /* reserved */
+} __attribute__((packed));
+
+int zcrypt_pcixcc_init(void);
+void zcrypt_pcixcc_exit(void);
+
+#endif /* _ZCRYPT_PCIXCC_H_ */
diff --git a/drivers/s390/s390mach.c b/drivers/s390/s390mach.c
index 5399c5d99b8..a914129a4da 100644
--- a/drivers/s390/s390mach.c
+++ b/drivers/s390/s390mach.c
@@ -19,9 +19,6 @@
#include "s390mach.h"
-#define DBG printk
-// #define DBG(args,...) do {} while (0);
-
static struct semaphore m_sem;
extern int css_process_crw(int, int);
@@ -83,11 +80,11 @@ repeat:
ccode = stcrw(&crw[chain]);
if (ccode != 0)
break;
- DBG(KERN_DEBUG "crw_info : CRW reports slct=%d, oflw=%d, "
- "chn=%d, rsc=%X, anc=%d, erc=%X, rsid=%X\n",
- crw[chain].slct, crw[chain].oflw, crw[chain].chn,
- crw[chain].rsc, crw[chain].anc, crw[chain].erc,
- crw[chain].rsid);
+ printk(KERN_DEBUG "crw_info : CRW reports slct=%d, oflw=%d, "
+ "chn=%d, rsc=%X, anc=%d, erc=%X, rsid=%X\n",
+ crw[chain].slct, crw[chain].oflw, crw[chain].chn,
+ crw[chain].rsc, crw[chain].anc, crw[chain].erc,
+ crw[chain].rsid);
/* Check for overflows. */
if (crw[chain].oflw) {
pr_debug("%s: crw overflow detected!\n", __FUNCTION__);
@@ -117,8 +114,8 @@ repeat:
* reported to the common I/O layer.
*/
if (crw[chain].slct) {
- DBG(KERN_INFO"solicited machine check for "
- "channel path %02X\n", crw[0].rsid);
+ pr_debug("solicited machine check for "
+ "channel path %02X\n", crw[0].rsid);
break;
}
switch (crw[0].erc) {
diff --git a/drivers/s390/scsi/zfcp_def.h b/drivers/s390/scsi/zfcp_def.h
index 94d1b74db35..7c84b3d4bd9 100644
--- a/drivers/s390/scsi/zfcp_def.h
+++ b/drivers/s390/scsi/zfcp_def.h
@@ -543,7 +543,7 @@ do { \
} while (0)
#if ZFCP_LOG_LEVEL_LIMIT < ZFCP_LOG_LEVEL_NORMAL
-# define ZFCP_LOG_NORMAL(fmt, args...)
+# define ZFCP_LOG_NORMAL(fmt, args...) do { } while (0)
#else
# define ZFCP_LOG_NORMAL(fmt, args...) \
do { \
@@ -553,7 +553,7 @@ do { \
#endif
#if ZFCP_LOG_LEVEL_LIMIT < ZFCP_LOG_LEVEL_INFO
-# define ZFCP_LOG_INFO(fmt, args...)
+# define ZFCP_LOG_INFO(fmt, args...) do { } while (0)
#else
# define ZFCP_LOG_INFO(fmt, args...) \
do { \
@@ -563,14 +563,14 @@ do { \
#endif
#if ZFCP_LOG_LEVEL_LIMIT < ZFCP_LOG_LEVEL_DEBUG
-# define ZFCP_LOG_DEBUG(fmt, args...)
+# define ZFCP_LOG_DEBUG(fmt, args...) do { } while (0)
#else
# define ZFCP_LOG_DEBUG(fmt, args...) \
ZFCP_LOG(ZFCP_LOG_LEVEL_DEBUG, fmt , ##args)
#endif
#if ZFCP_LOG_LEVEL_LIMIT < ZFCP_LOG_LEVEL_TRACE
-# define ZFCP_LOG_TRACE(fmt, args...)
+# define ZFCP_LOG_TRACE(fmt, args...) do { } while (0)
#else
# define ZFCP_LOG_TRACE(fmt, args...) \
ZFCP_LOG(ZFCP_LOG_LEVEL_TRACE, fmt , ##args)
diff --git a/drivers/s390/sysinfo.c b/drivers/s390/sysinfo.c
index d1c1e75bfd6..1e788e815ce 100644
--- a/drivers/s390/sysinfo.c
+++ b/drivers/s390/sysinfo.c
@@ -11,19 +11,18 @@
#include <linux/init.h>
#include <asm/ebcdic.h>
-struct sysinfo_1_1_1
-{
+struct sysinfo_1_1_1 {
char reserved_0[32];
char manufacturer[16];
char type[4];
char reserved_1[12];
- char model[16];
+ char model_capacity[16];
char sequence[16];
char plant[4];
+ char model[16];
};
-struct sysinfo_1_2_1
-{
+struct sysinfo_1_2_1 {
char reserved_0[80];
char sequence[16];
char plant[4];
@@ -31,9 +30,12 @@ struct sysinfo_1_2_1
unsigned short cpu_address;
};
-struct sysinfo_1_2_2
-{
- char reserved_0[32];
+struct sysinfo_1_2_2 {
+ char format;
+ char reserved_0[1];
+ unsigned short acc_offset;
+ char reserved_1[24];
+ unsigned int secondary_capability;
unsigned int capability;
unsigned short cpus_total;
unsigned short cpus_configured;
@@ -42,8 +44,12 @@ struct sysinfo_1_2_2
unsigned short adjustment[0];
};
-struct sysinfo_2_2_1
-{
+struct sysinfo_1_2_2_extension {
+ unsigned int alt_capability;
+ unsigned short alt_adjustment[0];
+};
+
+struct sysinfo_2_2_1 {
char reserved_0[80];
char sequence[16];
char plant[4];
@@ -51,15 +57,11 @@ struct sysinfo_2_2_1
unsigned short cpu_address;
};
-struct sysinfo_2_2_2
-{
+struct sysinfo_2_2_2 {
char reserved_0[32];
unsigned short lpar_number;
char reserved_1;
unsigned char characteristics;
- #define LPAR_CHAR_DEDICATED (1 << 7)
- #define LPAR_CHAR_SHARED (1 << 6)
- #define LPAR_CHAR_LIMITED (1 << 5)
unsigned short cpus_total;
unsigned short cpus_configured;
unsigned short cpus_standby;
@@ -71,12 +73,14 @@ struct sysinfo_2_2_2
unsigned short cpus_shared;
};
-struct sysinfo_3_2_2
-{
+#define LPAR_CHAR_DEDICATED (1 << 7)
+#define LPAR_CHAR_SHARED (1 << 6)
+#define LPAR_CHAR_LIMITED (1 << 5)
+
+struct sysinfo_3_2_2 {
char reserved_0[31];
unsigned char count;
- struct
- {
+ struct {
char reserved_0[4];
unsigned short cpus_total;
unsigned short cpus_configured;
@@ -90,136 +94,223 @@ struct sysinfo_3_2_2
} vm[8];
};
-union s390_sysinfo
+static inline int stsi(void *sysinfo, int fc, int sel1, int sel2)
{
- struct sysinfo_1_1_1 sysinfo_1_1_1;
- struct sysinfo_1_2_1 sysinfo_1_2_1;
- struct sysinfo_1_2_2 sysinfo_1_2_2;
- struct sysinfo_2_2_1 sysinfo_2_2_1;
- struct sysinfo_2_2_2 sysinfo_2_2_2;
- struct sysinfo_3_2_2 sysinfo_3_2_2;
-};
-
-static inline int stsi (void *sysinfo,
- int fc, int sel1, int sel2)
-{
- int cc, retv;
-
-#ifndef CONFIG_64BIT
- __asm__ __volatile__ ( "lr\t0,%2\n"
- "\tlr\t1,%3\n"
- "\tstsi\t0(%4)\n"
- "0:\tipm\t%0\n"
- "\tsrl\t%0,28\n"
- "1:lr\t%1,0\n"
- ".section .fixup,\"ax\"\n"
- "2:\tlhi\t%0,3\n"
- "\tbras\t1,3f\n"
- "\t.long 1b\n"
- "3:\tl\t1,0(1)\n"
- "\tbr\t1\n"
- ".previous\n"
- ".section __ex_table,\"a\"\n"
- "\t.align 4\n"
- "\t.long 0b,2b\n"
- ".previous\n"
- : "=d" (cc), "=d" (retv)
- : "d" ((fc << 28) | sel1), "d" (sel2), "a" (sysinfo)
- : "cc", "memory", "0", "1" );
-#else
- __asm__ __volatile__ ( "lr\t0,%2\n"
- "lr\t1,%3\n"
- "\tstsi\t0(%4)\n"
- "0:\tipm\t%0\n"
- "\tsrl\t%0,28\n"
- "1:lr\t%1,0\n"
- ".section .fixup,\"ax\"\n"
- "2:\tlhi\t%0,3\n"
- "\tjg\t1b\n"
- ".previous\n"
- ".section __ex_table,\"a\"\n"
- "\t.align 8\n"
- "\t.quad 0b,2b\n"
- ".previous\n"
- : "=d" (cc), "=d" (retv)
- : "d" ((fc << 28) | sel1), "d" (sel2), "a" (sysinfo)
- : "cc", "memory", "0", "1" );
-#endif
-
- return cc? -1 : retv;
+ register int r0 asm("0") = (fc << 28) | sel1;
+ register int r1 asm("1") = sel2;
+
+ asm volatile(
+ " stsi 0(%2)\n"
+ "0: jz 2f\n"
+ "1: lhi %0,%3\n"
+ "2:\n"
+ EX_TABLE(0b,1b)
+ : "+d" (r0) : "d" (r1), "a" (sysinfo), "K" (-ENOSYS)
+ : "cc", "memory" );
+ return r0;
}
-static inline int stsi_0 (void)
+static inline int stsi_0(void)
{
int rc = stsi (NULL, 0, 0, 0);
- return rc == -1 ? rc : (((unsigned int)rc) >> 28);
+ return rc == -ENOSYS ? rc : (((unsigned int) rc) >> 28);
}
-static inline int stsi_1_1_1 (struct sysinfo_1_1_1 *info)
+static int stsi_1_1_1(struct sysinfo_1_1_1 *info, char *page, int len)
{
- int rc = stsi (info, 1, 1, 1);
- if (rc != -1)
- {
- EBCASC (info->manufacturer, sizeof(info->manufacturer));
- EBCASC (info->type, sizeof(info->type));
- EBCASC (info->model, sizeof(info->model));
- EBCASC (info->sequence, sizeof(info->sequence));
- EBCASC (info->plant, sizeof(info->plant));
- }
- return rc == -1 ? rc : 0;
+ if (stsi(info, 1, 1, 1) == -ENOSYS)
+ return len;
+
+ EBCASC(info->manufacturer, sizeof(info->manufacturer));
+ EBCASC(info->type, sizeof(info->type));
+ EBCASC(info->model, sizeof(info->model));
+ EBCASC(info->sequence, sizeof(info->sequence));
+ EBCASC(info->plant, sizeof(info->plant));
+ EBCASC(info->model_capacity, sizeof(info->model_capacity));
+ len += sprintf(page + len, "Manufacturer: %-16.16s\n",
+ info->manufacturer);
+ len += sprintf(page + len, "Type: %-4.4s\n",
+ info->type);
+ if (info->model[0] != '\0')
+ /*
+ * Sigh: the model field has been renamed with System z9
+ * to model_capacity and a new model field has been added
+ * after the plant field. To avoid confusing older programs
+ * the "Model:" prints "model_capacity model" or just
+ * "model_capacity" if the model string is empty .
+ */
+ len += sprintf(page + len,
+ "Model: %-16.16s %-16.16s\n",
+ info->model_capacity, info->model);
+ else
+ len += sprintf(page + len, "Model: %-16.16s\n",
+ info->model_capacity);
+ len += sprintf(page + len, "Sequence Code: %-16.16s\n",
+ info->sequence);
+ len += sprintf(page + len, "Plant: %-4.4s\n",
+ info->plant);
+ len += sprintf(page + len, "Model Capacity: %-16.16s\n",
+ info->model_capacity);
+ return len;
}
-static inline int stsi_1_2_1 (struct sysinfo_1_2_1 *info)
+#if 0 /* Currently unused */
+static int stsi_1_2_1(struct sysinfo_1_2_1 *info, char *page, int len)
{
- int rc = stsi (info, 1, 2, 1);
- if (rc != -1)
- {
- EBCASC (info->sequence, sizeof(info->sequence));
- EBCASC (info->plant, sizeof(info->plant));
- }
- return rc == -1 ? rc : 0;
+ if (stsi(info, 1, 2, 1) == -ENOSYS)
+ return len;
+
+ len += sprintf(page + len, "\n");
+ EBCASC(info->sequence, sizeof(info->sequence));
+ EBCASC(info->plant, sizeof(info->plant));
+ len += sprintf(page + len, "Sequence Code of CPU: %-16.16s\n",
+ info->sequence);
+ len += sprintf(page + len, "Plant of CPU: %-16.16s\n",
+ info->plant);
+ return len;
}
+#endif
-static inline int stsi_1_2_2 (struct sysinfo_1_2_2 *info)
+static int stsi_1_2_2(struct sysinfo_1_2_2 *info, char *page, int len)
{
- int rc = stsi (info, 1, 2, 2);
- return rc == -1 ? rc : 0;
+ struct sysinfo_1_2_2_extension *ext;
+ int i;
+
+ if (stsi(info, 1, 2, 2) == -ENOSYS)
+ return len;
+ ext = (struct sysinfo_1_2_2_extension *)
+ ((unsigned long) info + info->acc_offset);
+
+ len += sprintf(page + len, "\n");
+ len += sprintf(page + len, "CPUs Total: %d\n",
+ info->cpus_total);
+ len += sprintf(page + len, "CPUs Configured: %d\n",
+ info->cpus_configured);
+ len += sprintf(page + len, "CPUs Standby: %d\n",
+ info->cpus_standby);
+ len += sprintf(page + len, "CPUs Reserved: %d\n",
+ info->cpus_reserved);
+
+ if (info->format == 1) {
+ /*
+ * Sigh 2. According to the specification the alternate
+ * capability field is a 32 bit floating point number
+ * if the higher order 8 bits are not zero. Printing
+ * a floating point number in the kernel is a no-no,
+ * always print the number as 32 bit unsigned integer.
+ * The user-space needs to know about the stange
+ * encoding of the alternate cpu capability.
+ */
+ len += sprintf(page + len, "Capability: %u %u\n",
+ info->capability, ext->alt_capability);
+ for (i = 2; i <= info->cpus_total; i++)
+ len += sprintf(page + len,
+ "Adjustment %02d-way: %u %u\n",
+ i, info->adjustment[i-2],
+ ext->alt_adjustment[i-2]);
+
+ } else {
+ len += sprintf(page + len, "Capability: %u\n",
+ info->capability);
+ for (i = 2; i <= info->cpus_total; i++)
+ len += sprintf(page + len,
+ "Adjustment %02d-way: %u\n",
+ i, info->adjustment[i-2]);
+ }
+
+ if (info->secondary_capability != 0)
+ len += sprintf(page + len, "Secondary Capability: %d\n",
+ info->secondary_capability);
+
+ return len;
}
-static inline int stsi_2_2_1 (struct sysinfo_2_2_1 *info)
+#if 0 /* Currently unused */
+static int stsi_2_2_1(struct sysinfo_2_2_1 *info, char *page, int len)
{
- int rc = stsi (info, 2, 2, 1);
- if (rc != -1)
- {
- EBCASC (info->sequence, sizeof(info->sequence));
- EBCASC (info->plant, sizeof(info->plant));
- }
- return rc == -1 ? rc : 0;
+ if (stsi(info, 2, 2, 1) == -ENOSYS)
+ return len;
+
+ len += sprintf(page + len, "\n");
+ EBCASC (info->sequence, sizeof(info->sequence));
+ EBCASC (info->plant, sizeof(info->plant));
+ len += sprintf(page + len, "Sequence Code of logical CPU: %-16.16s\n",
+ info->sequence);
+ len += sprintf(page + len, "Plant of logical CPU: %-16.16s\n",
+ info->plant);
+ return len;
}
+#endif
-static inline int stsi_2_2_2 (struct sysinfo_2_2_2 *info)
+static int stsi_2_2_2(struct sysinfo_2_2_2 *info, char *page, int len)
{
- int rc = stsi (info, 2, 2, 2);
- if (rc != -1)
- {
- EBCASC (info->name, sizeof(info->name));
- }
- return rc == -1 ? rc : 0;
+ if (stsi(info, 2, 2, 2) == -ENOSYS)
+ return len;
+
+ EBCASC (info->name, sizeof(info->name));
+
+ len += sprintf(page + len, "\n");
+ len += sprintf(page + len, "LPAR Number: %d\n",
+ info->lpar_number);
+
+ len += sprintf(page + len, "LPAR Characteristics: ");
+ if (info->characteristics & LPAR_CHAR_DEDICATED)
+ len += sprintf(page + len, "Dedicated ");
+ if (info->characteristics & LPAR_CHAR_SHARED)
+ len += sprintf(page + len, "Shared ");
+ if (info->characteristics & LPAR_CHAR_LIMITED)
+ len += sprintf(page + len, "Limited ");
+ len += sprintf(page + len, "\n");
+
+ len += sprintf(page + len, "LPAR Name: %-8.8s\n",
+ info->name);
+
+ len += sprintf(page + len, "LPAR Adjustment: %d\n",
+ info->caf);
+
+ len += sprintf(page + len, "LPAR CPUs Total: %d\n",
+ info->cpus_total);
+ len += sprintf(page + len, "LPAR CPUs Configured: %d\n",
+ info->cpus_configured);
+ len += sprintf(page + len, "LPAR CPUs Standby: %d\n",
+ info->cpus_standby);
+ len += sprintf(page + len, "LPAR CPUs Reserved: %d\n",
+ info->cpus_reserved);
+ len += sprintf(page + len, "LPAR CPUs Dedicated: %d\n",
+ info->cpus_dedicated);
+ len += sprintf(page + len, "LPAR CPUs Shared: %d\n",
+ info->cpus_shared);
+ return len;
}
-static inline int stsi_3_2_2 (struct sysinfo_3_2_2 *info)
+static int stsi_3_2_2(struct sysinfo_3_2_2 *info, char *page, int len)
{
- int rc = stsi (info, 3, 2, 2);
- if (rc != -1)
- {
- int i;
- for (i = 0; i < info->count; i++)
- {
- EBCASC (info->vm[i].name, sizeof(info->vm[i].name));
- EBCASC (info->vm[i].cpi, sizeof(info->vm[i].cpi));
- }
+ int i;
+
+ if (stsi(info, 3, 2, 2) == -ENOSYS)
+ return len;
+ for (i = 0; i < info->count; i++) {
+ EBCASC (info->vm[i].name, sizeof(info->vm[i].name));
+ EBCASC (info->vm[i].cpi, sizeof(info->vm[i].cpi));
+ len += sprintf(page + len, "\n");
+ len += sprintf(page + len, "VM%02d Name: %-8.8s\n",
+ i, info->vm[i].name);
+ len += sprintf(page + len, "VM%02d Control Program: %-16.16s\n",
+ i, info->vm[i].cpi);
+
+ len += sprintf(page + len, "VM%02d Adjustment: %d\n",
+ i, info->vm[i].caf);
+
+ len += sprintf(page + len, "VM%02d CPUs Total: %d\n",
+ i, info->vm[i].cpus_total);
+ len += sprintf(page + len, "VM%02d CPUs Configured: %d\n",
+ i, info->vm[i].cpus_configured);
+ len += sprintf(page + len, "VM%02d CPUs Standby: %d\n",
+ i, info->vm[i].cpus_standby);
+ len += sprintf(page + len, "VM%02d CPUs Reserved: %d\n",
+ i, info->vm[i].cpus_reserved);
}
- return rc == -1 ? rc : 0;
+ return len;
}
@@ -227,118 +318,34 @@ static int proc_read_sysinfo(char *page, char **start,
off_t off, int count,
int *eof, void *data)
{
- unsigned long info_page = get_zeroed_page (GFP_KERNEL);
- union s390_sysinfo *info = (union s390_sysinfo *) info_page;
- int len = 0;
- int level;
- int i;
+ unsigned long info = get_zeroed_page (GFP_KERNEL);
+ int level, len;
if (!info)
return 0;
- level = stsi_0 ();
-
- if (level >= 1 && stsi_1_1_1 (&info->sysinfo_1_1_1) == 0)
- {
- len += sprintf (page+len, "Manufacturer: %-16.16s\n",
- info->sysinfo_1_1_1.manufacturer);
- len += sprintf (page+len, "Type: %-4.4s\n",
- info->sysinfo_1_1_1.type);
- len += sprintf (page+len, "Model: %-16.16s\n",
- info->sysinfo_1_1_1.model);
- len += sprintf (page+len, "Sequence Code: %-16.16s\n",
- info->sysinfo_1_1_1.sequence);
- len += sprintf (page+len, "Plant: %-4.4s\n",
- info->sysinfo_1_1_1.plant);
- }
-
- if (level >= 1 && stsi_1_2_2 (&info->sysinfo_1_2_2) == 0)
- {
- len += sprintf (page+len, "\n");
- len += sprintf (page+len, "CPUs Total: %d\n",
- info->sysinfo_1_2_2.cpus_total);
- len += sprintf (page+len, "CPUs Configured: %d\n",
- info->sysinfo_1_2_2.cpus_configured);
- len += sprintf (page+len, "CPUs Standby: %d\n",
- info->sysinfo_1_2_2.cpus_standby);
- len += sprintf (page+len, "CPUs Reserved: %d\n",
- info->sysinfo_1_2_2.cpus_reserved);
-
- len += sprintf (page+len, "Capability: %d\n",
- info->sysinfo_1_2_2.capability);
+ len = 0;
+ level = stsi_0();
+ if (level >= 1)
+ len = stsi_1_1_1((struct sysinfo_1_1_1 *) info, page, len);
- for (i = 2; i <= info->sysinfo_1_2_2.cpus_total; i++)
- len += sprintf (page+len, "Adjustment %02d-way: %d\n",
- i, info->sysinfo_1_2_2.adjustment[i-2]);
- }
+ if (level >= 1)
+ len = stsi_1_2_2((struct sysinfo_1_2_2 *) info, page, len);
- if (level >= 2 && stsi_2_2_2 (&info->sysinfo_2_2_2) == 0)
- {
- len += sprintf (page+len, "\n");
- len += sprintf (page+len, "LPAR Number: %d\n",
- info->sysinfo_2_2_2.lpar_number);
-
- len += sprintf (page+len, "LPAR Characteristics: ");
- if (info->sysinfo_2_2_2.characteristics & LPAR_CHAR_DEDICATED)
- len += sprintf (page+len, "Dedicated ");
- if (info->sysinfo_2_2_2.characteristics & LPAR_CHAR_SHARED)
- len += sprintf (page+len, "Shared ");
- if (info->sysinfo_2_2_2.characteristics & LPAR_CHAR_LIMITED)
- len += sprintf (page+len, "Limited ");
- len += sprintf (page+len, "\n");
-
- len += sprintf (page+len, "LPAR Name: %-8.8s\n",
- info->sysinfo_2_2_2.name);
-
- len += sprintf (page+len, "LPAR Adjustment: %d\n",
- info->sysinfo_2_2_2.caf);
-
- len += sprintf (page+len, "LPAR CPUs Total: %d\n",
- info->sysinfo_2_2_2.cpus_total);
- len += sprintf (page+len, "LPAR CPUs Configured: %d\n",
- info->sysinfo_2_2_2.cpus_configured);
- len += sprintf (page+len, "LPAR CPUs Standby: %d\n",
- info->sysinfo_2_2_2.cpus_standby);
- len += sprintf (page+len, "LPAR CPUs Reserved: %d\n",
- info->sysinfo_2_2_2.cpus_reserved);
- len += sprintf (page+len, "LPAR CPUs Dedicated: %d\n",
- info->sysinfo_2_2_2.cpus_dedicated);
- len += sprintf (page+len, "LPAR CPUs Shared: %d\n",
- info->sysinfo_2_2_2.cpus_shared);
- }
+ if (level >= 2)
+ len = stsi_2_2_2((struct sysinfo_2_2_2 *) info, page, len);
- if (level >= 3 && stsi_3_2_2 (&info->sysinfo_3_2_2) == 0)
- {
- for (i = 0; i < info->sysinfo_3_2_2.count; i++)
- {
- len += sprintf (page+len, "\n");
- len += sprintf (page+len, "VM%02d Name: %-8.8s\n",
- i, info->sysinfo_3_2_2.vm[i].name);
- len += sprintf (page+len, "VM%02d Control Program: %-16.16s\n",
- i, info->sysinfo_3_2_2.vm[i].cpi);
-
- len += sprintf (page+len, "VM%02d Adjustment: %d\n",
- i, info->sysinfo_3_2_2.vm[i].caf);
-
- len += sprintf (page+len, "VM%02d CPUs Total: %d\n",
- i, info->sysinfo_3_2_2.vm[i].cpus_total);
- len += sprintf (page+len, "VM%02d CPUs Configured: %d\n",
- i, info->sysinfo_3_2_2.vm[i].cpus_configured);
- len += sprintf (page+len, "VM%02d CPUs Standby: %d\n",
- i, info->sysinfo_3_2_2.vm[i].cpus_standby);
- len += sprintf (page+len, "VM%02d CPUs Reserved: %d\n",
- i, info->sysinfo_3_2_2.vm[i].cpus_reserved);
- }
- }
+ if (level >= 3)
+ len = stsi_3_2_2((struct sysinfo_3_2_2 *) info, page, len);
- free_page (info_page);
+ free_page (info);
return len;
}
static __init int create_proc_sysinfo(void)
{
- create_proc_read_entry ("sysinfo", 0444, NULL,
- proc_read_sysinfo, NULL);
+ create_proc_read_entry("sysinfo", 0444, NULL,
+ proc_read_sysinfo, NULL);
return 0;
}
diff --git a/drivers/scsi/ibmvscsi/rpa_vscsi.c b/drivers/scsi/ibmvscsi/rpa_vscsi.c
index ed22b96580c..01b8ac641eb 100644
--- a/drivers/scsi/ibmvscsi/rpa_vscsi.c
+++ b/drivers/scsi/ibmvscsi/rpa_vscsi.c
@@ -156,8 +156,8 @@ static void gather_partition_info(void)
{
struct device_node *rootdn;
- char *ppartition_name;
- unsigned int *p_number_ptr;
+ const char *ppartition_name;
+ const unsigned int *p_number_ptr;
/* Retrieve information about this partition */
rootdn = find_path_device("/");
@@ -165,14 +165,11 @@ static void gather_partition_info(void)
return;
}
- ppartition_name =
- get_property(rootdn, "ibm,partition-name", NULL);
+ ppartition_name = get_property(rootdn, "ibm,partition-name", NULL);
if (ppartition_name)
strncpy(partition_name, ppartition_name,
sizeof(partition_name));
- p_number_ptr =
- (unsigned int *)get_property(rootdn, "ibm,partition-no",
- NULL);
+ p_number_ptr = get_property(rootdn, "ibm,partition-no", NULL);
if (p_number_ptr)
partition_number = *p_number_ptr;
}
diff --git a/drivers/scsi/iscsi_tcp.c b/drivers/scsi/iscsi_tcp.c
index 058f094f945..66a1ae1d698 100644
--- a/drivers/scsi/iscsi_tcp.c
+++ b/drivers/scsi/iscsi_tcp.c
@@ -26,6 +26,7 @@
* Zhenyu Wang
*/
+#include <linux/err.h>
#include <linux/types.h>
#include <linux/list.h>
#include <linux/inet.h>
@@ -107,8 +108,11 @@ iscsi_hdr_digest(struct iscsi_conn *conn, struct iscsi_buf *buf,
u8* crc)
{
struct iscsi_tcp_conn *tcp_conn = conn->dd_data;
+ struct hash_desc desc;
- crypto_digest_digest(tcp_conn->tx_tfm, &buf->sg, 1, crc);
+ desc.tfm = tcp_conn->tx_tfm;
+ desc.flags = 0;
+ crypto_hash_digest(&desc, &buf->sg, buf->sg.length, crc);
buf->sg.length += sizeof(uint32_t);
}
@@ -452,11 +456,14 @@ iscsi_tcp_hdr_recv(struct iscsi_conn *conn)
}
if (conn->hdrdgst_en) {
+ struct hash_desc desc;
struct scatterlist sg;
sg_init_one(&sg, (u8 *)hdr,
sizeof(struct iscsi_hdr) + ahslen);
- crypto_digest_digest(tcp_conn->rx_tfm, &sg, 1, (u8 *)&cdgst);
+ desc.tfm = tcp_conn->rx_tfm;
+ desc.flags = 0;
+ crypto_hash_digest(&desc, &sg, sg.length, (u8 *)&cdgst);
rdgst = *(uint32_t*)((char*)hdr + sizeof(struct iscsi_hdr) +
ahslen);
if (cdgst != rdgst) {
@@ -673,7 +680,7 @@ partial_sg_digest_update(struct iscsi_tcp_conn *tcp_conn,
memcpy(&temp, sg, sizeof(struct scatterlist));
temp.offset = offset;
temp.length = length;
- crypto_digest_update(tcp_conn->data_rx_tfm, &temp, 1);
+ crypto_hash_update(&tcp_conn->data_rx_hash, &temp, length);
}
static void
@@ -682,7 +689,7 @@ iscsi_recv_digest_update(struct iscsi_tcp_conn *tcp_conn, char* buf, int len)
struct scatterlist tmp;
sg_init_one(&tmp, buf, len);
- crypto_digest_update(tcp_conn->data_rx_tfm, &tmp, 1);
+ crypto_hash_update(&tcp_conn->data_rx_hash, &tmp, len);
}
static int iscsi_scsi_data_in(struct iscsi_conn *conn)
@@ -736,9 +743,9 @@ static int iscsi_scsi_data_in(struct iscsi_conn *conn)
if (!rc) {
if (conn->datadgst_en) {
if (!offset)
- crypto_digest_update(
- tcp_conn->data_rx_tfm,
- &sg[i], 1);
+ crypto_hash_update(
+ &tcp_conn->data_rx_hash,
+ &sg[i], sg[i].length);
else
partial_sg_digest_update(tcp_conn,
&sg[i],
@@ -877,8 +884,7 @@ more:
rc = iscsi_tcp_hdr_recv(conn);
if (!rc && tcp_conn->in.datalen) {
if (conn->datadgst_en) {
- BUG_ON(!tcp_conn->data_rx_tfm);
- crypto_digest_init(tcp_conn->data_rx_tfm);
+ crypto_hash_init(&tcp_conn->data_rx_hash);
}
tcp_conn->in_progress = IN_PROGRESS_DATA_RECV;
} else if (rc) {
@@ -931,11 +937,11 @@ more:
tcp_conn->in.padding);
memset(pad, 0, tcp_conn->in.padding);
sg_init_one(&sg, pad, tcp_conn->in.padding);
- crypto_digest_update(tcp_conn->data_rx_tfm,
- &sg, 1);
+ crypto_hash_update(&tcp_conn->data_rx_hash,
+ &sg, sg.length);
}
- crypto_digest_final(tcp_conn->data_rx_tfm,
- (u8 *) & tcp_conn->in.datadgst);
+ crypto_hash_final(&tcp_conn->data_rx_hash,
+ (u8 *)&tcp_conn->in.datadgst);
debug_tcp("rx digest 0x%x\n", tcp_conn->in.datadgst);
tcp_conn->in_progress = IN_PROGRESS_DDIGEST_RECV;
} else
@@ -1181,8 +1187,7 @@ iscsi_data_digest_init(struct iscsi_tcp_conn *tcp_conn,
{
struct iscsi_tcp_cmd_task *tcp_ctask = ctask->dd_data;
- BUG_ON(!tcp_conn->data_tx_tfm);
- crypto_digest_init(tcp_conn->data_tx_tfm);
+ crypto_hash_init(&tcp_conn->data_tx_hash);
tcp_ctask->digest_count = 4;
}
@@ -1196,7 +1201,7 @@ iscsi_digest_final_send(struct iscsi_conn *conn, struct iscsi_cmd_task *ctask,
int sent = 0;
if (final)
- crypto_digest_final(tcp_conn->data_tx_tfm, (u8*)digest);
+ crypto_hash_final(&tcp_conn->data_tx_hash, (u8 *)digest);
iscsi_buf_init_iov(buf, (char*)digest, 4);
rc = iscsi_sendpage(conn, buf, &tcp_ctask->digest_count, &sent);
@@ -1491,16 +1496,17 @@ handle_xmstate_imm_data(struct iscsi_conn *conn, struct iscsi_cmd_task *ctask)
if (rc) {
tcp_ctask->xmstate |= XMSTATE_IMM_DATA;
if (conn->datadgst_en) {
- crypto_digest_final(tcp_conn->data_tx_tfm,
- (u8*)&tcp_ctask->immdigest);
+ crypto_hash_final(&tcp_conn->data_tx_hash,
+ (u8 *)&tcp_ctask->immdigest);
debug_tcp("tx imm sendpage fail 0x%x\n",
tcp_ctask->datadigest);
}
return rc;
}
if (conn->datadgst_en)
- crypto_digest_update(tcp_conn->data_tx_tfm,
- &tcp_ctask->sendbuf.sg, 1);
+ crypto_hash_update(&tcp_conn->data_tx_hash,
+ &tcp_ctask->sendbuf.sg,
+ tcp_ctask->sendbuf.sg.length);
if (!ctask->imm_count)
break;
@@ -1577,8 +1583,8 @@ handle_xmstate_uns_data(struct iscsi_conn *conn, struct iscsi_cmd_task *ctask)
tcp_ctask->xmstate |= XMSTATE_UNS_DATA;
/* will continue with this ctask later.. */
if (conn->datadgst_en) {
- crypto_digest_final(tcp_conn->data_tx_tfm,
- (u8 *)&dtask->digest);
+ crypto_hash_final(&tcp_conn->data_tx_hash,
+ (u8 *)&dtask->digest);
debug_tcp("tx uns data fail 0x%x\n",
dtask->digest);
}
@@ -1593,8 +1599,9 @@ handle_xmstate_uns_data(struct iscsi_conn *conn, struct iscsi_cmd_task *ctask)
* so pass it
*/
if (conn->datadgst_en && tcp_ctask->sent - start > 0)
- crypto_digest_update(tcp_conn->data_tx_tfm,
- &tcp_ctask->sendbuf.sg, 1);
+ crypto_hash_update(&tcp_conn->data_tx_hash,
+ &tcp_ctask->sendbuf.sg,
+ tcp_ctask->sendbuf.sg.length);
if (!ctask->data_count)
break;
@@ -1668,7 +1675,7 @@ solicit_again:
tcp_ctask->xmstate |= XMSTATE_SOL_DATA;
/* will continue with this ctask later.. */
if (conn->datadgst_en) {
- crypto_digest_final(tcp_conn->data_tx_tfm,
+ crypto_hash_final(&tcp_conn->data_tx_hash,
(u8 *)&dtask->digest);
debug_tcp("r2t data send fail 0x%x\n", dtask->digest);
}
@@ -1677,8 +1684,8 @@ solicit_again:
BUG_ON(r2t->data_count < 0);
if (conn->datadgst_en)
- crypto_digest_update(tcp_conn->data_tx_tfm, &r2t->sendbuf.sg,
- 1);
+ crypto_hash_update(&tcp_conn->data_tx_hash, &r2t->sendbuf.sg,
+ r2t->sendbuf.sg.length);
if (r2t->data_count) {
BUG_ON(ctask->sc->use_sg == 0);
@@ -1766,8 +1773,9 @@ handle_xmstate_w_pad(struct iscsi_conn *conn, struct iscsi_cmd_task *ctask)
}
if (conn->datadgst_en) {
- crypto_digest_update(tcp_conn->data_tx_tfm,
- &tcp_ctask->sendbuf.sg, 1);
+ crypto_hash_update(&tcp_conn->data_tx_hash,
+ &tcp_ctask->sendbuf.sg,
+ tcp_ctask->sendbuf.sg.length);
/* imm data? */
if (!dtask) {
rc = iscsi_digest_final_send(conn, ctask,
@@ -1963,13 +1971,13 @@ iscsi_tcp_conn_destroy(struct iscsi_cls_conn *cls_conn)
/* now free tcp_conn */
if (digest) {
if (tcp_conn->tx_tfm)
- crypto_free_tfm(tcp_conn->tx_tfm);
+ crypto_free_hash(tcp_conn->tx_tfm);
if (tcp_conn->rx_tfm)
- crypto_free_tfm(tcp_conn->rx_tfm);
- if (tcp_conn->data_tx_tfm)
- crypto_free_tfm(tcp_conn->data_tx_tfm);
- if (tcp_conn->data_rx_tfm)
- crypto_free_tfm(tcp_conn->data_rx_tfm);
+ crypto_free_hash(tcp_conn->rx_tfm);
+ if (tcp_conn->data_tx_hash.tfm)
+ crypto_free_hash(tcp_conn->data_tx_hash.tfm);
+ if (tcp_conn->data_rx_hash.tfm)
+ crypto_free_hash(tcp_conn->data_rx_hash.tfm);
}
kfree(tcp_conn);
@@ -2130,44 +2138,48 @@ iscsi_conn_set_param(struct iscsi_cls_conn *cls_conn, enum iscsi_param param,
if (conn->hdrdgst_en) {
tcp_conn->hdr_size += sizeof(__u32);
if (!tcp_conn->tx_tfm)
- tcp_conn->tx_tfm = crypto_alloc_tfm("crc32c",
- 0);
- if (!tcp_conn->tx_tfm)
- return -ENOMEM;
+ tcp_conn->tx_tfm =
+ crypto_alloc_hash("crc32c", 0,
+ CRYPTO_ALG_ASYNC);
+ if (IS_ERR(tcp_conn->tx_tfm))
+ return PTR_ERR(tcp_conn->tx_tfm);
if (!tcp_conn->rx_tfm)
- tcp_conn->rx_tfm = crypto_alloc_tfm("crc32c",
- 0);
- if (!tcp_conn->rx_tfm) {
- crypto_free_tfm(tcp_conn->tx_tfm);
- return -ENOMEM;
+ tcp_conn->rx_tfm =
+ crypto_alloc_hash("crc32c", 0,
+ CRYPTO_ALG_ASYNC);
+ if (IS_ERR(tcp_conn->rx_tfm)) {
+ crypto_free_hash(tcp_conn->tx_tfm);
+ return PTR_ERR(tcp_conn->rx_tfm);
}
} else {
if (tcp_conn->tx_tfm)
- crypto_free_tfm(tcp_conn->tx_tfm);
+ crypto_free_hash(tcp_conn->tx_tfm);
if (tcp_conn->rx_tfm)
- crypto_free_tfm(tcp_conn->rx_tfm);
+ crypto_free_hash(tcp_conn->rx_tfm);
}
break;
case ISCSI_PARAM_DATADGST_EN:
iscsi_set_param(cls_conn, param, buf, buflen);
if (conn->datadgst_en) {
- if (!tcp_conn->data_tx_tfm)
- tcp_conn->data_tx_tfm =
- crypto_alloc_tfm("crc32c", 0);
- if (!tcp_conn->data_tx_tfm)
- return -ENOMEM;
- if (!tcp_conn->data_rx_tfm)
- tcp_conn->data_rx_tfm =
- crypto_alloc_tfm("crc32c", 0);
- if (!tcp_conn->data_rx_tfm) {
- crypto_free_tfm(tcp_conn->data_tx_tfm);
- return -ENOMEM;
+ if (!tcp_conn->data_tx_hash.tfm)
+ tcp_conn->data_tx_hash.tfm =
+ crypto_alloc_hash("crc32c", 0,
+ CRYPTO_ALG_ASYNC);
+ if (IS_ERR(tcp_conn->data_tx_hash.tfm))
+ return PTR_ERR(tcp_conn->data_tx_hash.tfm);
+ if (!tcp_conn->data_rx_hash.tfm)
+ tcp_conn->data_rx_hash.tfm =
+ crypto_alloc_hash("crc32c", 0,
+ CRYPTO_ALG_ASYNC);
+ if (IS_ERR(tcp_conn->data_rx_hash.tfm)) {
+ crypto_free_hash(tcp_conn->data_tx_hash.tfm);
+ return PTR_ERR(tcp_conn->data_rx_hash.tfm);
}
} else {
- if (tcp_conn->data_tx_tfm)
- crypto_free_tfm(tcp_conn->data_tx_tfm);
- if (tcp_conn->data_rx_tfm)
- crypto_free_tfm(tcp_conn->data_rx_tfm);
+ if (tcp_conn->data_tx_hash.tfm)
+ crypto_free_hash(tcp_conn->data_tx_hash.tfm);
+ if (tcp_conn->data_rx_hash.tfm)
+ crypto_free_hash(tcp_conn->data_rx_hash.tfm);
}
tcp_conn->sendpage = conn->datadgst_en ?
sock_no_sendpage : tcp_conn->sock->ops->sendpage;
diff --git a/drivers/scsi/iscsi_tcp.h b/drivers/scsi/iscsi_tcp.h
index 6a4ee704e46..e35701305fc 100644
--- a/drivers/scsi/iscsi_tcp.h
+++ b/drivers/scsi/iscsi_tcp.h
@@ -51,6 +51,7 @@
#define ISCSI_SG_TABLESIZE SG_ALL
#define ISCSI_TCP_MAX_CMD_LEN 16
+struct crypto_hash;
struct socket;
/* Socket connection recieve helper */
@@ -84,8 +85,8 @@ struct iscsi_tcp_conn {
/* iSCSI connection-wide sequencing */
int hdr_size; /* PDU header size */
- struct crypto_tfm *rx_tfm; /* CRC32C (Rx) */
- struct crypto_tfm *data_rx_tfm; /* CRC32C (Rx) for data */
+ struct crypto_hash *rx_tfm; /* CRC32C (Rx) */
+ struct hash_desc data_rx_hash; /* CRC32C (Rx) for data */
/* control data */
struct iscsi_tcp_recv in; /* TCP receive context */
@@ -97,8 +98,8 @@ struct iscsi_tcp_conn {
void (*old_write_space)(struct sock *);
/* xmit */
- struct crypto_tfm *tx_tfm; /* CRC32C (Tx) */
- struct crypto_tfm *data_tx_tfm; /* CRC32C (Tx) for data */
+ struct crypto_hash *tx_tfm; /* CRC32C (Tx) */
+ struct hash_desc data_tx_hash; /* CRC32C (Tx) for data */
/* MIB custom statistics */
uint32_t sendpage_failures_cnt;
diff --git a/drivers/scsi/mac53c94.c b/drivers/scsi/mac53c94.c
index 89ef34df5a1..6422de72bf4 100644
--- a/drivers/scsi/mac53c94.c
+++ b/drivers/scsi/mac53c94.c
@@ -431,7 +431,7 @@ static int mac53c94_probe(struct macio_dev *mdev, const struct of_device_id *mat
struct fsc_state *state;
struct Scsi_Host *host;
void *dma_cmd_space;
- unsigned char *clkprop;
+ const unsigned char *clkprop;
int proplen, rc = -ENODEV;
if (macio_resource_count(mdev) != 2 || macio_irq_count(mdev) != 2) {
diff --git a/drivers/scsi/mesh.c b/drivers/scsi/mesh.c
index 5572981a9f9..592b52afe65 100644
--- a/drivers/scsi/mesh.c
+++ b/drivers/scsi/mesh.c
@@ -1850,7 +1850,8 @@ static int mesh_probe(struct macio_dev *mdev, const struct of_device_id *match)
{
struct device_node *mesh = macio_get_of_node(mdev);
struct pci_dev* pdev = macio_get_pci_dev(mdev);
- int tgt, *cfp, minper;
+ int tgt, minper;
+ const int *cfp;
struct mesh_state *ms;
struct Scsi_Host *mesh_host;
void *dma_cmd_space;
@@ -1939,7 +1940,7 @@ static int mesh_probe(struct macio_dev *mdev, const struct of_device_id *match)
ms->tgts[tgt].current_req = NULL;
}
- if ((cfp = (int *) get_property(mesh, "clock-frequency", NULL)))
+ if ((cfp = get_property(mesh, "clock-frequency", NULL)))
ms->clk_freq = *cfp;
else {
printk(KERN_INFO "mesh: assuming 50MHz clock frequency\n");
diff --git a/drivers/scsi/sata_svw.c b/drivers/scsi/sata_svw.c
index 7d0858095e1..6b70c3c76df 100644
--- a/drivers/scsi/sata_svw.c
+++ b/drivers/scsi/sata_svw.c
@@ -268,7 +268,7 @@ static int k2_sata_proc_info(struct Scsi_Host *shost, char *page, char **start,
/* Match it to a port node */
index = (ap == ap->host_set->ports[0]) ? 0 : 1;
for (np = np->child; np != NULL; np = np->sibling) {
- u32 *reg = (u32 *)get_property(np, "reg", NULL);
+ const u32 *reg = get_property(np, "reg", NULL);
if (!reg)
continue;
if (index == *reg)
diff --git a/drivers/serial/pmac_zilog.c b/drivers/serial/pmac_zilog.c
index bfd2a22759e..a3b99caf80e 100644
--- a/drivers/serial/pmac_zilog.c
+++ b/drivers/serial/pmac_zilog.c
@@ -1400,8 +1400,8 @@ static struct uart_ops pmz_pops = {
static int __init pmz_init_port(struct uart_pmac_port *uap)
{
struct device_node *np = uap->node;
- char *conn;
- struct slot_names_prop {
+ const char *conn;
+ const struct slot_names_prop {
int count;
char name[1];
} *slots;
@@ -1458,7 +1458,7 @@ no_dma:
uap->flags |= PMACZILOG_FLAG_IS_IRDA;
uap->port_type = PMAC_SCC_ASYNC;
/* 1999 Powerbook G3 has slot-names property instead */
- slots = (struct slot_names_prop *)get_property(np, "slot-names", &len);
+ slots = get_property(np, "slot-names", &len);
if (slots && slots->count > 0) {
if (strcmp(slots->name, "IrDA") == 0)
uap->flags |= PMACZILOG_FLAG_IS_IRDA;
@@ -1470,7 +1470,8 @@ no_dma:
if (ZS_IS_INTMODEM(uap)) {
struct device_node* i2c_modem = find_devices("i2c-modem");
if (i2c_modem) {
- char* mid = get_property(i2c_modem, "modem-id", NULL);
+ const char* mid =
+ get_property(i2c_modem, "modem-id", NULL);
if (mid) switch(*mid) {
case 0x04 :
case 0x05 :
diff --git a/drivers/video/S3triofb.c b/drivers/video/S3triofb.c
index afd146f5f68..397005eb392 100644
--- a/drivers/video/S3triofb.c
+++ b/drivers/video/S3triofb.c
@@ -349,30 +349,30 @@ static void __init s3triofb_of_init(struct device_node *dp)
s3trio_name[sizeof(s3trio_name)-1] = '\0';
strcpy(fb_fix.id, s3trio_name);
- if((pp = (int *)get_property(dp, "vendor-id", &len)) != NULL
+ if((pp = get_property(dp, "vendor-id", &len)) != NULL
&& *pp!=PCI_VENDOR_ID_S3) {
printk("%s: can't find S3 Trio board\n", dp->full_name);
return;
}
- if((pp = (int *)get_property(dp, "device-id", &len)) != NULL
+ if((pp = get_property(dp, "device-id", &len)) != NULL
&& *pp!=PCI_DEVICE_ID_S3_TRIO) {
printk("%s: can't find S3 Trio board\n", dp->full_name);
return;
}
- if ((pp = (int *)get_property(dp, "depth", &len)) != NULL
+ if ((pp = get_property(dp, "depth", &len)) != NULL
&& len == sizeof(int) && *pp != 8) {
printk("%s: can't use depth = %d\n", dp->full_name, *pp);
return;
}
- if ((pp = (int *)get_property(dp, "width", &len)) != NULL
+ if ((pp = get_property(dp, "width", &len)) != NULL
&& len == sizeof(int))
fb_var.xres = fb_var.xres_virtual = *pp;
- if ((pp = (int *)get_property(dp, "height", &len)) != NULL
+ if ((pp = get_property(dp, "height", &len)) != NULL
&& len == sizeof(int))
fb_var.yres = fb_var.yres_virtual = *pp;
- if ((pp = (int *)get_property(dp, "linebytes", &len)) != NULL
+ if ((pp = get_property(dp, "linebytes", &len)) != NULL
&& len == sizeof(int))
fb_fix.line_length = *pp;
else
diff --git a/drivers/video/aty/radeon_base.c b/drivers/video/aty/radeon_base.c
index 8e3400d5dd2..0ed577e7cc2 100644
--- a/drivers/video/aty/radeon_base.c
+++ b/drivers/video/aty/radeon_base.c
@@ -413,11 +413,11 @@ static int __devinit radeon_find_mem_vbios(struct radeonfb_info *rinfo)
static int __devinit radeon_read_xtal_OF (struct radeonfb_info *rinfo)
{
struct device_node *dp = rinfo->of_node;
- u32 *val;
+ const u32 *val;
if (dp == NULL)
return -ENODEV;
- val = (u32 *) get_property(dp, "ATY,RefCLK", NULL);
+ val = get_property(dp, "ATY,RefCLK", NULL);
if (!val || !*val) {
printk(KERN_WARNING "radeonfb: No ATY,RefCLK property !\n");
return -EINVAL;
@@ -425,11 +425,11 @@ static int __devinit radeon_read_xtal_OF (struct radeonfb_info *rinfo)
rinfo->pll.ref_clk = (*val) / 10;
- val = (u32 *) get_property(dp, "ATY,SCLK", NULL);
+ val = get_property(dp, "ATY,SCLK", NULL);
if (val && *val)
rinfo->pll.sclk = (*val) / 10;
- val = (u32 *) get_property(dp, "ATY,MCLK", NULL);
+ val = get_property(dp, "ATY,MCLK", NULL);
if (val && *val)
rinfo->pll.mclk = (*val) / 10;
diff --git a/drivers/video/aty/radeon_monitor.c b/drivers/video/aty/radeon_monitor.c
index 98c05bc0de4..ea531a6f45d 100644
--- a/drivers/video/aty/radeon_monitor.c
+++ b/drivers/video/aty/radeon_monitor.c
@@ -64,13 +64,13 @@ static int __devinit radeon_parse_montype_prop(struct device_node *dp, u8 **out_
{
static char *propnames[] = { "DFP,EDID", "LCD,EDID", "EDID",
"EDID1", "EDID2", NULL };
- u8 *pedid = NULL;
- u8 *pmt = NULL;
+ const u8 *pedid = NULL;
+ const u8 *pmt = NULL;
u8 *tmp;
int i, mt = MT_NONE;
RTRACE("analyzing OF properties...\n");
- pmt = (u8 *)get_property(dp, "display-type", NULL);
+ pmt = get_property(dp, "display-type", NULL);
if (!pmt)
return MT_NONE;
RTRACE("display-type: %s\n", pmt);
@@ -89,7 +89,7 @@ static int __devinit radeon_parse_montype_prop(struct device_node *dp, u8 **out_
}
for (i = 0; propnames[i] != NULL; ++i) {
- pedid = (u8 *)get_property(dp, propnames[i], NULL);
+ pedid = get_property(dp, propnames[i], NULL);
if (pedid != NULL)
break;
}
@@ -124,14 +124,14 @@ static int __devinit radeon_probe_OF_head(struct radeonfb_info *rinfo, int head_
return MT_NONE;
if (rinfo->has_CRTC2) {
- char *pname;
+ const char *pname;
int len, second = 0;
dp = dp->child;
do {
if (!dp)
return MT_NONE;
- pname = (char *)get_property(dp, "name", NULL);
+ pname = get_property(dp, "name", NULL);
if (!pname)
return MT_NONE;
len = strlen(pname);
diff --git a/drivers/video/aty/radeon_pm.c b/drivers/video/aty/radeon_pm.c
index f31e606a2de..e308ed2d249 100644
--- a/drivers/video/aty/radeon_pm.c
+++ b/drivers/video/aty/radeon_pm.c
@@ -1268,7 +1268,7 @@ static void radeon_pm_full_reset_sdram(struct radeonfb_info *rinfo)
0x21320032, 0xa1320032, 0x21320032, 0xffffffff,
0x31320032 };
- u32 *mrtable = default_mrtable;
+ const u32 *mrtable = default_mrtable;
int i, mrtable_size = ARRAY_SIZE(default_mrtable);
mdelay(30);
@@ -1287,7 +1287,7 @@ static void radeon_pm_full_reset_sdram(struct radeonfb_info *rinfo)
if (rinfo->of_node != NULL) {
int size;
- mrtable = (u32 *)get_property(rinfo->of_node, "ATY,MRT", &size);
+ mrtable = get_property(rinfo->of_node, "ATY,MRT", &size);
if (mrtable)
mrtable_size = size >> 2;
else
diff --git a/drivers/video/nvidia/nv_of.c b/drivers/video/nvidia/nv_of.c
index 8209106e26e..d9af88c2b58 100644
--- a/drivers/video/nvidia/nv_of.c
+++ b/drivers/video/nvidia/nv_of.c
@@ -32,7 +32,7 @@ int nvidia_probe_of_connector(struct fb_info *info, int conn, u8 **out_edid)
{
struct nvidia_par *par = info->par;
struct device_node *parent, *dp;
- unsigned char *pedid = NULL;
+ const unsigned char *pedid = NULL;
static char *propnames[] = {
"DFP,EDID", "LCD,EDID", "EDID", "EDID1",
"EDID,B", "EDID,A", NULL };
@@ -42,20 +42,19 @@ int nvidia_probe_of_connector(struct fb_info *info, int conn, u8 **out_edid)
if (parent == NULL)
return -1;
if (par->twoHeads) {
- char *pname;
+ const char *pname;
int len;
for (dp = NULL;
(dp = of_get_next_child(parent, dp)) != NULL;) {
- pname = (char *)get_property(dp, "name", NULL);
+ pname = get_property(dp, "name", NULL);
if (!pname)
continue;
len = strlen(pname);
if ((pname[len-1] == 'A' && conn == 1) ||
(pname[len-1] == 'B' && conn == 2)) {
for (i = 0; propnames[i] != NULL; ++i) {
- pedid = (unsigned char *)
- get_property(dp, propnames[i],
+ pedid = get_property(dp, propnames[i],
NULL);
if (pedid != NULL)
break;
@@ -67,8 +66,7 @@ int nvidia_probe_of_connector(struct fb_info *info, int conn, u8 **out_edid)
}
if (pedid == NULL) {
for (i = 0; propnames[i] != NULL; ++i) {
- pedid = (unsigned char *)
- get_property(parent, propnames[i], NULL);
+ pedid = get_property(parent, propnames[i], NULL);
if (pedid != NULL)
break;
}
diff --git a/drivers/video/offb.c b/drivers/video/offb.c
index 0013311e056..bad0e98fb3b 100644
--- a/drivers/video/offb.c
+++ b/drivers/video/offb.c
@@ -409,30 +409,30 @@ static void __init offb_init_nodriver(struct device_node *dp, int no_real_node)
unsigned int flags, rsize, addr_prop = 0;
unsigned long max_size = 0;
u64 rstart, address = OF_BAD_ADDR;
- u32 *pp, *addrp, *up;
+ const u32 *pp, *addrp, *up;
u64 asize;
- pp = (u32 *)get_property(dp, "linux,bootx-depth", &len);
+ pp = get_property(dp, "linux,bootx-depth", &len);
if (pp == NULL)
- pp = (u32 *)get_property(dp, "depth", &len);
+ pp = get_property(dp, "depth", &len);
if (pp && len == sizeof(u32))
depth = *pp;
- pp = (u32 *)get_property(dp, "linux,bootx-width", &len);
+ pp = get_property(dp, "linux,bootx-width", &len);
if (pp == NULL)
- pp = (u32 *)get_property(dp, "width", &len);
+ pp = get_property(dp, "width", &len);
if (pp && len == sizeof(u32))
width = *pp;
- pp = (u32 *)get_property(dp, "linux,bootx-height", &len);
+ pp = get_property(dp, "linux,bootx-height", &len);
if (pp == NULL)
- pp = (u32 *)get_property(dp, "height", &len);
+ pp = get_property(dp, "height", &len);
if (pp && len == sizeof(u32))
height = *pp;
- pp = (u32 *)get_property(dp, "linux,bootx-linebytes", &len);
+ pp = get_property(dp, "linux,bootx-linebytes", &len);
if (pp == NULL)
- pp = (u32 *)get_property(dp, "linebytes", &len);
+ pp = get_property(dp, "linebytes", &len);
if (pp && len == sizeof(u32))
pitch = *pp;
else
@@ -450,9 +450,9 @@ static void __init offb_init_nodriver(struct device_node *dp, int no_real_node)
* ranges and pick one that is both big enough and if possible encloses
* the "address" property. If none match, we pick the biggest
*/
- up = (u32 *)get_property(dp, "linux,bootx-addr", &len);
+ up = get_property(dp, "linux,bootx-addr", &len);
if (up == NULL)
- up = (u32 *)get_property(dp, "address", &len);
+ up = get_property(dp, "address", &len);
if (up && len == sizeof(u32))
addr_prop = *up;
diff --git a/drivers/video/riva/fbdev.c b/drivers/video/riva/fbdev.c
index 8ddb47a56b0..67d1e1c8813 100644
--- a/drivers/video/riva/fbdev.c
+++ b/drivers/video/riva/fbdev.c
@@ -1835,14 +1835,13 @@ static int __devinit riva_get_EDID_OF(struct fb_info *info, struct pci_dev *pd)
NVTRACE_ENTER();
dp = pci_device_to_OF_node(pd);
for (; dp != NULL; dp = dp->child) {
- disptype = (unsigned char *)get_property(dp, "display-type", NULL);
+ disptype = get_property(dp, "display-type", NULL);
if (disptype == NULL)
continue;
if (strncmp(disptype, "LCD", 3) != 0)
continue;
for (i = 0; propnames[i] != NULL; ++i) {
- pedid = (unsigned char *)
- get_property(dp, propnames[i], NULL);
+ pedid = get_property(dp, propnames[i], NULL);
if (pedid != NULL) {
par->EDID = pedid;
NVTRACE("LCD found.\n");