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authorArnd Bergmann <arnd@arndb.de>2012-10-04 22:57:00 +0200
committerArnd Bergmann <arnd@arndb.de>2012-10-04 22:57:51 +0200
commitc37d6154c0b9163c27e53cc1d0be3867b4abd760 (patch)
tree7a24522c56d1cb284dff1d3c225bbdaba0901bb5 /arch/arm/mach-tegra
parente7a570ff7dff9af6e54ff5e580a61ec7652137a0 (diff)
parent8a1ab3155c2ac7fbe5f2038d6e26efeb607a1498 (diff)
Merge branch 'disintegrate-asm-generic' of git://git.infradead.org/users/dhowells/linux-headers into asm-generic
Patches from David Howells <dhowells@redhat.com>: This is to complete part of the UAPI disintegration for which the preparatory patches were pulled recently. Note that there are some fixup patches which are at the base of the branch aimed at you, plus all arches get the asm-generic branch merged in too. * 'disintegrate-asm-generic' of git://git.infradead.org/users/dhowells/linux-headers: UAPI: (Scripted) Disintegrate include/asm-generic UAPI: Fix conditional header installation handling (notably kvm_para.h on m68k) c6x: remove c6x signal.h UAPI: Split compound conditionals containing __KERNEL__ in Arm64 UAPI: Fix the guards on various asm/unistd.h files Signed-off-by: Arnd Bergmann <arnd@arndb.de>
Diffstat (limited to 'arch/arm/mach-tegra')
-rw-r--r--arch/arm/mach-tegra/Kconfig27
-rw-r--r--arch/arm/mach-tegra/Makefile21
-rw-r--r--arch/arm/mach-tegra/Makefile.boot8
-rw-r--r--arch/arm/mach-tegra/apbio.c122
-rw-r--r--arch/arm/mach-tegra/board-dt-tegra20.c53
-rw-r--r--arch/arm/mach-tegra/board-dt-tegra30.c2
-rw-r--r--arch/arm/mach-tegra/board-harmony-pcie.c49
-rw-r--r--arch/arm/mach-tegra/board-harmony-pinmux.c156
-rw-r--r--arch/arm/mach-tegra/board-harmony-power.c148
-rw-r--r--arch/arm/mach-tegra/board-harmony.c197
-rw-r--r--arch/arm/mach-tegra/board-harmony.h41
-rw-r--r--arch/arm/mach-tegra/board-paz00-pinmux.c156
-rw-r--r--arch/arm/mach-tegra/board-paz00.c192
-rw-r--r--arch/arm/mach-tegra/board-paz00.h17
-rw-r--r--arch/arm/mach-tegra/board-pinmux.c87
-rw-r--r--arch/arm/mach-tegra/board-pinmux.h54
-rw-r--r--arch/arm/mach-tegra/board-trimslice-pinmux.c155
-rw-r--r--arch/arm/mach-tegra/board-trimslice.c183
-rw-r--r--arch/arm/mach-tegra/board-trimslice.h30
-rw-r--r--arch/arm/mach-tegra/clock.c574
-rw-r--r--arch/arm/mach-tegra/clock.h40
-rw-r--r--arch/arm/mach-tegra/common.c5
-rw-r--r--arch/arm/mach-tegra/common.h4
-rw-r--r--arch/arm/mach-tegra/cpu-tegra.c48
-rw-r--r--arch/arm/mach-tegra/devices.c702
-rw-r--r--arch/arm/mach-tegra/devices.h60
-rw-r--r--arch/arm/mach-tegra/dma.c823
-rw-r--r--arch/arm/mach-tegra/fuse.c4
-rw-r--r--arch/arm/mach-tegra/headsmp.S6
-rw-r--r--arch/arm/mach-tegra/hotplug.c127
-rw-r--r--arch/arm/mach-tegra/include/mach/clk.h3
-rw-r--r--arch/arm/mach-tegra/include/mach/dma.h97
-rw-r--r--arch/arm/mach-tegra/include/mach/gpio-tegra.h28
-rw-r--r--arch/arm/mach-tegra/include/mach/gpio.h1
-rw-r--r--arch/arm/mach-tegra/include/mach/io.h46
-rw-r--r--arch/arm/mach-tegra/include/mach/iomap.h3
-rw-r--r--arch/arm/mach-tegra/include/mach/kbc.h62
-rw-r--r--arch/arm/mach-tegra/include/mach/pinconf-tegra.h63
-rw-r--r--arch/arm/mach-tegra/include/mach/sdhci.h30
-rw-r--r--arch/arm/mach-tegra/include/mach/suspend.h38
-rw-r--r--arch/arm/mach-tegra/include/mach/usb_phy.h86
-rw-r--r--arch/arm/mach-tegra/pcie.c107
-rw-r--r--arch/arm/mach-tegra/platsmp.c52
-rw-r--r--arch/arm/mach-tegra/powergate.c43
-rw-r--r--arch/arm/mach-tegra/sleep-t20.S82
-rw-r--r--arch/arm/mach-tegra/sleep-t30.S107
-rw-r--r--arch/arm/mach-tegra/sleep.S33
-rw-r--r--arch/arm/mach-tegra/sleep.h85
-rw-r--r--arch/arm/mach-tegra/tegra20_clocks.c1624
-rw-r--r--arch/arm/mach-tegra/tegra20_clocks.h42
-rw-r--r--arch/arm/mach-tegra/tegra20_clocks_data.c1139
-rw-r--r--arch/arm/mach-tegra/tegra2_clocks.c2484
-rw-r--r--arch/arm/mach-tegra/tegra30_clocks.c2511
-rw-r--r--arch/arm/mach-tegra/tegra30_clocks.h53
-rw-r--r--arch/arm/mach-tegra/tegra30_clocks_data.c1377
-rw-r--r--arch/arm/mach-tegra/tegra_cpu_car.h87
-rw-r--r--arch/arm/mach-tegra/timer.c1
-rw-r--r--arch/arm/mach-tegra/usb_phy.c817
58 files changed, 5750 insertions, 9442 deletions
diff --git a/arch/arm/mach-tegra/Kconfig b/arch/arm/mach-tegra/Kconfig
index 9077aaa398d..5f3c03b61f8 100644
--- a/arch/arm/mach-tegra/Kconfig
+++ b/arch/arm/mach-tegra/Kconfig
@@ -34,7 +34,6 @@ config ARCH_TEGRA_3x_SOC
select USB_ARCH_HAS_EHCI if USB_SUPPORT
select USB_ULPI if USB
select USB_ULPI_VIEWPORT if USB_SUPPORT
- select USE_OF
select ARM_ERRATA_743622
select ARM_ERRATA_751472
select ARM_ERRATA_754322
@@ -60,25 +59,6 @@ config TEGRA_AHB
comment "Tegra board type"
-config MACH_HARMONY
- bool "Harmony board"
- depends on ARCH_TEGRA_2x_SOC
- help
- Support for nVidia Harmony development platform
-
-config MACH_PAZ00
- bool "Paz00 board"
- depends on ARCH_TEGRA_2x_SOC
- help
- Support for the Toshiba AC100/Dynabook AZ netbook
-
-config MACH_TRIMSLICE
- bool "TrimSlice board"
- depends on ARCH_TEGRA_2x_SOC
- select TEGRA_PCI
- help
- Support for CompuLab TrimSlice platform
-
choice
prompt "Default low-level debug console UART"
default TEGRA_DEBUG_UART_NONE
@@ -130,13 +110,6 @@ config TEGRA_DEBUG_UART_AUTO_SCRATCH
endchoice
-config TEGRA_SYSTEM_DMA
- bool "Enable system DMA driver for NVIDIA Tegra SoCs"
- default y
- help
- Adds system DMA functionality for NVIDIA Tegra SoCs, used by
- several Tegra device drivers
-
config TEGRA_EMC_SCALING_ENABLE
bool "Enable scaling the memory frequency"
diff --git a/arch/arm/mach-tegra/Makefile b/arch/arm/mach-tegra/Makefile
index c3d7303b9ac..9aa653b3eb3 100644
--- a/arch/arm/mach-tegra/Makefile
+++ b/arch/arm/mach-tegra/Makefile
@@ -1,6 +1,4 @@
-obj-y += board-pinmux.o
obj-y += common.o
-obj-y += devices.o
obj-y += io.o
obj-y += irq.o
obj-y += clock.o
@@ -12,27 +10,22 @@ obj-y += powergate.o
obj-y += apbio.o
obj-$(CONFIG_CPU_IDLE) += cpuidle.o
obj-$(CONFIG_CPU_IDLE) += sleep.o
-obj-$(CONFIG_ARCH_TEGRA_2x_SOC) += tegra2_clocks.o
+obj-$(CONFIG_ARCH_TEGRA_2x_SOC) += tegra20_clocks.o
+obj-$(CONFIG_ARCH_TEGRA_2x_SOC) += tegra20_clocks_data.o
obj-$(CONFIG_ARCH_TEGRA_2x_SOC) += tegra2_emc.o
+obj-$(CONFIG_ARCH_TEGRA_2x_SOC) += sleep-t20.o
obj-$(CONFIG_ARCH_TEGRA_3x_SOC) += tegra30_clocks.o
+obj-$(CONFIG_ARCH_TEGRA_3x_SOC) += tegra30_clocks_data.o
+obj-$(CONFIG_ARCH_TEGRA_3x_SOC) += sleep-t30.o
obj-$(CONFIG_SMP) += platsmp.o headsmp.o
obj-$(CONFIG_SMP) += reset.o
obj-$(CONFIG_HOTPLUG_CPU) += hotplug.o
-obj-$(CONFIG_TEGRA_SYSTEM_DMA) += dma.o
obj-$(CONFIG_CPU_FREQ) += cpu-tegra.o
obj-$(CONFIG_TEGRA_PCI) += pcie.o
-obj-$(CONFIG_USB_SUPPORT) += usb_phy.o
obj-$(CONFIG_ARCH_TEGRA_2x_SOC) += board-dt-tegra20.o
obj-$(CONFIG_ARCH_TEGRA_3x_SOC) += board-dt-tegra30.o
-obj-$(CONFIG_MACH_HARMONY) += board-harmony.o
-obj-$(CONFIG_MACH_HARMONY) += board-harmony-pinmux.o
-obj-$(CONFIG_MACH_HARMONY) += board-harmony-pcie.o
-obj-$(CONFIG_MACH_HARMONY) += board-harmony-power.o
+obj-$(CONFIG_ARCH_TEGRA_2x_SOC) += board-harmony-pcie.o
-obj-$(CONFIG_MACH_PAZ00) += board-paz00.o
-obj-$(CONFIG_MACH_PAZ00) += board-paz00-pinmux.o
-
-obj-$(CONFIG_MACH_TRIMSLICE) += board-trimslice.o
-obj-$(CONFIG_MACH_TRIMSLICE) += board-trimslice-pinmux.o
+obj-$(CONFIG_ARCH_TEGRA_2x_SOC) += board-paz00.o
diff --git a/arch/arm/mach-tegra/Makefile.boot b/arch/arm/mach-tegra/Makefile.boot
index 7a1bb62ddcf..29433816233 100644
--- a/arch/arm/mach-tegra/Makefile.boot
+++ b/arch/arm/mach-tegra/Makefile.boot
@@ -1,11 +1,3 @@
zreladdr-$(CONFIG_ARCH_TEGRA_2x_SOC) += 0x00008000
params_phys-$(CONFIG_ARCH_TEGRA_2x_SOC) := 0x00000100
initrd_phys-$(CONFIG_ARCH_TEGRA_2x_SOC) := 0x00800000
-
-dtb-$(CONFIG_ARCH_TEGRA_2x_SOC) += tegra20-harmony.dtb
-dtb-$(CONFIG_ARCH_TEGRA_2x_SOC) += tegra20-paz00.dtb
-dtb-$(CONFIG_ARCH_TEGRA_2x_SOC) += tegra20-seaboard.dtb
-dtb-$(CONFIG_ARCH_TEGRA_2x_SOC) += tegra20-trimslice.dtb
-dtb-$(CONFIG_ARCH_TEGRA_2x_SOC) += tegra20-ventana.dtb
-dtb-$(CONFIG_ARCH_TEGRA_2x_SOC) += tegra20-whistler.dtb
-dtb-$(CONFIG_ARCH_TEGRA_3x_SOC) += tegra30-cardhu.dtb
diff --git a/arch/arm/mach-tegra/apbio.c b/arch/arm/mach-tegra/apbio.c
index dc0fe389be5..b5015d0f191 100644
--- a/arch/arm/mach-tegra/apbio.c
+++ b/arch/arm/mach-tegra/apbio.c
@@ -28,7 +28,7 @@
#include "apbio.h"
-#if defined(CONFIG_TEGRA_SYSTEM_DMA) || defined(CONFIG_TEGRA20_APB_DMA)
+#if defined(CONFIG_TEGRA20_APB_DMA)
static DEFINE_MUTEX(tegra_apb_dma_lock);
static u32 *tegra_apb_bb;
static dma_addr_t tegra_apb_bb_phys;
@@ -37,121 +37,6 @@ static DECLARE_COMPLETION(tegra_apb_wait);
static u32 tegra_apb_readl_direct(unsigned long offset);
static void tegra_apb_writel_direct(u32 value, unsigned long offset);
-#if defined(CONFIG_TEGRA_SYSTEM_DMA)
-static struct tegra_dma_channel *tegra_apb_dma;
-
-bool tegra_apb_init(void)
-{
- struct tegra_dma_channel *ch;
-
- mutex_lock(&tegra_apb_dma_lock);
-
- /* Check to see if we raced to setup */
- if (tegra_apb_dma)
- goto out;
-
- ch = tegra_dma_allocate_channel(TEGRA_DMA_MODE_ONESHOT |
- TEGRA_DMA_SHARED);
-
- if (!ch)
- goto out_fail;
-
- tegra_apb_bb = dma_alloc_coherent(NULL, sizeof(u32),
- &tegra_apb_bb_phys, GFP_KERNEL);
- if (!tegra_apb_bb) {
- pr_err("%s: can not allocate bounce buffer\n", __func__);
- tegra_dma_free_channel(ch);
- goto out_fail;
- }
-
- tegra_apb_dma = ch;
-out:
- mutex_unlock(&tegra_apb_dma_lock);
- return true;
-
-out_fail:
- mutex_unlock(&tegra_apb_dma_lock);
- return false;
-}
-
-static void apb_dma_complete(struct tegra_dma_req *req)
-{
- complete(&tegra_apb_wait);
-}
-
-static u32 tegra_apb_readl_using_dma(unsigned long offset)
-{
- struct tegra_dma_req req;
- int ret;
-
- if (!tegra_apb_dma && !tegra_apb_init())
- return tegra_apb_readl_direct(offset);
-
- mutex_lock(&tegra_apb_dma_lock);
- req.complete = apb_dma_complete;
- req.to_memory = 1;
- req.dest_addr = tegra_apb_bb_phys;
- req.dest_bus_width = 32;
- req.dest_wrap = 1;
- req.source_addr = offset;
- req.source_bus_width = 32;
- req.source_wrap = 4;
- req.req_sel = TEGRA_DMA_REQ_SEL_CNTR;
- req.size = 4;
-
- INIT_COMPLETION(tegra_apb_wait);
-
- tegra_dma_enqueue_req(tegra_apb_dma, &req);
-
- ret = wait_for_completion_timeout(&tegra_apb_wait,
- msecs_to_jiffies(50));
-
- if (WARN(ret == 0, "apb read dma timed out")) {
- tegra_dma_dequeue_req(tegra_apb_dma, &req);
- *(u32 *)tegra_apb_bb = 0;
- }
-
- mutex_unlock(&tegra_apb_dma_lock);
- return *((u32 *)tegra_apb_bb);
-}
-
-static void tegra_apb_writel_using_dma(u32 value, unsigned long offset)
-{
- struct tegra_dma_req req;
- int ret;
-
- if (!tegra_apb_dma && !tegra_apb_init()) {
- tegra_apb_writel_direct(value, offset);
- return;
- }
-
- mutex_lock(&tegra_apb_dma_lock);
- *((u32 *)tegra_apb_bb) = value;
- req.complete = apb_dma_complete;
- req.to_memory = 0;
- req.dest_addr = offset;
- req.dest_wrap = 4;
- req.dest_bus_width = 32;
- req.source_addr = tegra_apb_bb_phys;
- req.source_bus_width = 32;
- req.source_wrap = 1;
- req.req_sel = TEGRA_DMA_REQ_SEL_CNTR;
- req.size = 4;
-
- INIT_COMPLETION(tegra_apb_wait);
-
- tegra_dma_enqueue_req(tegra_apb_dma, &req);
-
- ret = wait_for_completion_timeout(&tegra_apb_wait,
- msecs_to_jiffies(50));
-
- if (WARN(ret == 0, "apb write dma timed out"))
- tegra_dma_dequeue_req(tegra_apb_dma, &req);
-
- mutex_unlock(&tegra_apb_dma_lock);
-}
-
-#else
static struct dma_chan *tegra_apb_dma_chan;
static struct dma_slave_config dma_sconfig;
@@ -279,7 +164,6 @@ static void tegra_apb_writel_using_dma(u32 value, unsigned long offset)
pr_err("error in writing offset 0x%08lx using dma\n", offset);
mutex_unlock(&tegra_apb_dma_lock);
}
-#endif
#else
#define tegra_apb_readl_using_dma tegra_apb_readl_direct
#define tegra_apb_writel_using_dma tegra_apb_writel_direct
@@ -293,12 +177,12 @@ static apbio_write_fptr apbio_write;
static u32 tegra_apb_readl_direct(unsigned long offset)
{
- return readl(IO_TO_VIRT(offset));
+ return readl(IO_ADDRESS(offset));
}
static void tegra_apb_writel_direct(u32 value, unsigned long offset)
{
- writel(value, IO_TO_VIRT(offset));
+ writel(value, IO_ADDRESS(offset));
}
void tegra_apb_io_init(void)
diff --git a/arch/arm/mach-tegra/board-dt-tegra20.c b/arch/arm/mach-tegra/board-dt-tegra20.c
index c0999633a9a..57e235f4ac7 100644
--- a/arch/arm/mach-tegra/board-dt-tegra20.c
+++ b/arch/arm/mach-tegra/board-dt-tegra20.c
@@ -28,9 +28,11 @@
#include <linux/of_irq.h>
#include <linux/of_platform.h>
#include <linux/pda_power.h>
+#include <linux/platform_data/tegra_usb.h>
#include <linux/io.h>
#include <linux/i2c.h>
#include <linux/i2c-tegra.h>
+#include <linux/usb/tegra_usb_phy.h>
#include <asm/hardware/gic.h>
#include <asm/mach-types.h>
@@ -42,9 +44,32 @@
#include <mach/irqs.h>
#include "board.h"
-#include "board-harmony.h"
#include "clock.h"
-#include "devices.h"
+#include "common.h"
+
+struct tegra_ehci_platform_data tegra_ehci1_pdata = {
+ .operating_mode = TEGRA_USB_OTG,
+ .power_down_on_bus_suspend = 1,
+ .vbus_gpio = -1,
+};
+
+struct tegra_ulpi_config tegra_ehci2_ulpi_phy_config = {
+ .reset_gpio = -1,
+ .clk = "cdev2",
+};
+
+struct tegra_ehci_platform_data tegra_ehci2_pdata = {
+ .phy_config = &tegra_ehci2_ulpi_phy_config,
+ .operating_mode = TEGRA_USB_HOST,
+ .power_down_on_bus_suspend = 1,
+ .vbus_gpio = -1,
+};
+
+struct tegra_ehci_platform_data tegra_ehci3_pdata = {
+ .operating_mode = TEGRA_USB_HOST,
+ .power_down_on_bus_suspend = 1,
+ .vbus_gpio = -1,
+};
struct of_dev_auxdata tegra20_auxdata_lookup[] __initdata = {
OF_DEV_AUXDATA("nvidia,tegra20-sdhci", TEGRA_SDMMC1_BASE, "sdhci-tegra.0", NULL),
@@ -71,6 +96,7 @@ struct of_dev_auxdata tegra20_auxdata_lookup[] __initdata = {
static __initdata struct tegra_clk_init_table tegra_dt_clk_init_table[] = {
/* name parent rate enabled */
+ { "uarta", "pll_p", 216000000, true },
{ "uartd", "pll_p", 216000000, true },
{ "usbd", "clk_m", 12000000, false },
{ "usb2", "clk_m", 12000000, false },
@@ -95,54 +121,40 @@ static void __init tegra_dt_init(void)
tegra20_auxdata_lookup, NULL);
}
-#ifdef CONFIG_MACH_TRIMSLICE
static void __init trimslice_init(void)
{
+#ifdef CONFIG_TEGRA_PCI
int ret;
ret = tegra_pcie_init(true, true);
if (ret)
pr_err("tegra_pci_init() failed: %d\n", ret);
-}
#endif
+}
-#ifdef CONFIG_MACH_HARMONY
static void __init harmony_init(void)
{
+#ifdef CONFIG_TEGRA_PCI
int ret;
- ret = harmony_regulator_init();
- if (ret) {
- pr_err("harmony_regulator_init() failed: %d\n", ret);
- return;
- }
-
ret = harmony_pcie_init();
if (ret)
pr_err("harmony_pcie_init() failed: %d\n", ret);
-}
#endif
+}
-#ifdef CONFIG_MACH_PAZ00
static void __init paz00_init(void)
{
tegra_paz00_wifikill_init();
}
-#endif
static struct {
char *machine;
void (*init)(void);
} board_init_funcs[] = {
-#ifdef CONFIG_MACH_TRIMSLICE
{ "compulab,trimslice", trimslice_init },
-#endif
-#ifdef CONFIG_MACH_HARMONY
{ "nvidia,harmony", harmony_init },
-#endif
-#ifdef CONFIG_MACH_PAZ00
{ "compal,paz00", paz00_init },
-#endif
};
static void __init tegra_dt_init_late(void)
@@ -166,6 +178,7 @@ static const char *tegra20_dt_board_compat[] = {
DT_MACHINE_START(TEGRA_DT, "nVidia Tegra20 (Flattened Device Tree)")
.map_io = tegra_map_common_io,
+ .smp = smp_ops(tegra_smp_ops),
.init_early = tegra20_init_early,
.init_irq = tegra_dt_init_irq,
.handle_irq = gic_handle_irq,
diff --git a/arch/arm/mach-tegra/board-dt-tegra30.c b/arch/arm/mach-tegra/board-dt-tegra30.c
index 53bf60f1158..e4a676d4ddf 100644
--- a/arch/arm/mach-tegra/board-dt-tegra30.c
+++ b/arch/arm/mach-tegra/board-dt-tegra30.c
@@ -37,6 +37,7 @@
#include "board.h"
#include "clock.h"
+#include "common.h"
struct of_dev_auxdata tegra30_auxdata_lookup[] __initdata = {
OF_DEV_AUXDATA("nvidia,tegra20-sdhci", 0x78000000, "sdhci-tegra.0", NULL),
@@ -83,6 +84,7 @@ static const char *tegra30_dt_board_compat[] = {
};
DT_MACHINE_START(TEGRA30_DT, "NVIDIA Tegra30 (Flattened Device Tree)")
+ .smp = smp_ops(tegra_smp_ops),
.map_io = tegra_map_common_io,
.init_early = tegra30_init_early,
.init_irq = tegra_dt_init_irq,
diff --git a/arch/arm/mach-tegra/board-harmony-pcie.c b/arch/arm/mach-tegra/board-harmony-pcie.c
index e8c3fda9bec..3cdc1bb8254 100644
--- a/arch/arm/mach-tegra/board-harmony-pcie.c
+++ b/arch/arm/mach-tegra/board-harmony-pcie.c
@@ -18,35 +18,57 @@
#include <linux/kernel.h>
#include <linux/gpio.h>
#include <linux/err.h>
+#include <linux/of_gpio.h>
#include <linux/regulator/consumer.h>
#include <asm/mach-types.h>
#include "board.h"
-#include "board-harmony.h"
#ifdef CONFIG_TEGRA_PCI
int __init harmony_pcie_init(void)
{
+ struct device_node *np;
+ int en_vdd_1v05;
struct regulator *regulator = NULL;
int err;
- err = gpio_request(TEGRA_GPIO_EN_VDD_1V05_GPIO, "EN_VDD_1V05");
- if (err)
+ np = of_find_node_by_path("/regulators/regulator@3");
+ if (!np) {
+ pr_err("%s: of_find_node_by_path failed\n", __func__);
+ return -ENODEV;
+ }
+
+ en_vdd_1v05 = of_get_named_gpio(np, "gpio", 0);
+ if (en_vdd_1v05 < 0) {
+ pr_err("%s: of_get_named_gpio failed: %d\n", __func__,
+ en_vdd_1v05);
+ return en_vdd_1v05;
+ }
+
+ err = gpio_request(en_vdd_1v05, "EN_VDD_1V05");
+ if (err) {
+ pr_err("%s: gpio_request failed: %d\n", __func__, err);
return err;
+ }
- gpio_direction_output(TEGRA_GPIO_EN_VDD_1V05_GPIO, 1);
+ gpio_direction_output(en_vdd_1v05, 1);
- regulator = regulator_get(NULL, "pex_clk");
- if (IS_ERR_OR_NULL(regulator))
+ regulator = regulator_get(NULL, "vdd_ldo0,vddio_pex_clk");
+ if (IS_ERR_OR_NULL(regulator)) {
+ pr_err("%s: regulator_get failed: %d\n", __func__,
+ (int)PTR_ERR(regulator));
goto err_reg;
+ }
regulator_enable(regulator);
err = tegra_pcie_init(true, true);
- if (err)
+ if (err) {
+ pr_err("%s: tegra_pcie_init failed: %d\n", __func__, err);
goto err_pcie;
+ }
return 0;
@@ -54,20 +76,9 @@ err_pcie:
regulator_disable(regulator);
regulator_put(regulator);
err_reg:
- gpio_free(TEGRA_GPIO_EN_VDD_1V05_GPIO);
+ gpio_free(en_vdd_1v05);
return err;
}
-static int __init harmony_pcie_initcall(void)
-{
- if (!machine_is_harmony())
- return 0;
-
- return harmony_pcie_init();
-}
-
-/* PCI should be initialized after I2C, mfd and regulators */
-subsys_initcall_sync(harmony_pcie_initcall);
-
#endif
diff --git a/arch/arm/mach-tegra/board-harmony-pinmux.c b/arch/arm/mach-tegra/board-harmony-pinmux.c
deleted file mode 100644
index 83d420fbc58..00000000000
--- a/arch/arm/mach-tegra/board-harmony-pinmux.c
+++ /dev/null
@@ -1,156 +0,0 @@
-/*
- * arch/arm/mach-tegra/board-harmony-pinmux.c
- *
- * Copyright (C) 2010 Google, Inc.
- * Copyright (c) 2012, NVIDIA CORPORATION. All rights reserved.
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-#include <linux/kernel.h>
-
-#include "board-harmony.h"
-#include "board-pinmux.h"
-
-static struct pinctrl_map harmony_map[] = {
- TEGRA_MAP_MUXCONF("ata", "ide", none, driven),
- TEGRA_MAP_MUXCONF("atb", "sdio4", none, driven),
- TEGRA_MAP_MUXCONF("atc", "nand", none, driven),
- TEGRA_MAP_MUXCONF("atd", "gmi", none, driven),
- TEGRA_MAP_MUXCONF("ate", "gmi", none, driven),
- TEGRA_MAP_MUXCONF("cdev1", "plla_out", none, driven),
- TEGRA_MAP_MUXCONF("cdev2", "pllp_out4", down, tristate),
- TEGRA_MAP_MUXCONF("crtp", "crt", none, tristate),
- TEGRA_MAP_MUXCONF("csus", "vi_sensor_clk", down, tristate),
- TEGRA_MAP_MUXCONF("dap1", "dap1", none, driven),
- TEGRA_MAP_MUXCONF("dap2", "dap2", none, tristate),
- TEGRA_MAP_MUXCONF("dap3", "dap3", none, tristate),
- TEGRA_MAP_MUXCONF("dap4", "dap4", none, tristate),
- TEGRA_MAP_MUXCONF("ddc", "i2c2", up, driven),
- TEGRA_MAP_MUXCONF("dta", "sdio2", up, driven),
- TEGRA_MAP_MUXCONF("dtb", "rsvd1", none, driven),
- TEGRA_MAP_MUXCONF("dtc", "rsvd1", none, tristate),
- TEGRA_MAP_MUXCONF("dtd", "sdio2", up, driven),
- TEGRA_MAP_MUXCONF("dte", "rsvd1", none, tristate),
- TEGRA_MAP_MUXCONF("dtf", "i2c3", none, tristate),
- TEGRA_MAP_MUXCONF("gma", "sdio4", none, driven),
- TEGRA_MAP_MUXCONF("gmb", "gmi", none, driven),
- TEGRA_MAP_MUXCONF("gmc", "uartd", none, driven),
- TEGRA_MAP_MUXCONF("gmd", "gmi", none, driven),
- TEGRA_MAP_MUXCONF("gme", "sdio4", none, driven),
- TEGRA_MAP_MUXCONF("gpu", "gmi", none, tristate),
- TEGRA_MAP_MUXCONF("gpu7", "rtck", none, driven),
- TEGRA_MAP_MUXCONF("gpv", "pcie", none, driven),
- TEGRA_MAP_MUXCONF("hdint", "hdmi", na, tristate),
- TEGRA_MAP_MUXCONF("i2cp", "i2cp", none, driven),
- TEGRA_MAP_MUXCONF("irrx", "uarta", up, tristate),
- TEGRA_MAP_MUXCONF("irtx", "uarta", up, tristate),
- TEGRA_MAP_MUXCONF("kbca", "kbc", up, driven),
- TEGRA_MAP_MUXCONF("kbcb", "kbc", up, driven),
- TEGRA_MAP_MUXCONF("kbcc", "kbc", up, driven),
- TEGRA_MAP_MUXCONF("kbcd", "kbc", up, driven),
- TEGRA_MAP_MUXCONF("kbce", "kbc", up, driven),
- TEGRA_MAP_MUXCONF("kbcf", "kbc", up, driven),
- TEGRA_MAP_MUXCONF("lcsn", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("ld0", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld1", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld10", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld11", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld12", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld13", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld14", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld15", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld16", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld17", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld2", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld3", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld4", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld5", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld6", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld7", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld8", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld9", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ldc", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("ldi", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lhp0", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lhp1", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lhp2", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lhs", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lm0", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lm1", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lpp", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lpw0", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lpw1", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lpw2", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lsc0", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lsc1", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lsck", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lsda", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lsdi", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lspi", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lvp0", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lvp1", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lvs", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("owc", "rsvd2", na, tristate),
- TEGRA_MAP_MUXCONF("pmc", "pwr_on", na, driven),
- TEGRA_MAP_MUXCONF("pta", "hdmi", none, driven),
- TEGRA_MAP_MUXCONF("rm", "i2c1", none, driven),
- TEGRA_MAP_MUXCONF("sdb", "pwm", na, tristate),
- TEGRA_MAP_MUXCONF("sdc", "pwm", up, driven),
- TEGRA_MAP_MUXCONF("sdd", "pwm", up, tristate),
- TEGRA_MAP_MUXCONF("sdio1", "sdio1", none, tristate),
- TEGRA_MAP_MUXCONF("slxa", "pcie", none, driven),
- TEGRA_MAP_MUXCONF("slxc", "spdif", none, tristate),
- TEGRA_MAP_MUXCONF("slxd", "spdif", none, tristate),
- TEGRA_MAP_MUXCONF("slxk", "pcie", none, driven),
- TEGRA_MAP_MUXCONF("spdi", "rsvd2", none, tristate),
- TEGRA_MAP_MUXCONF("spdo", "rsvd2", none, tristate),
- TEGRA_MAP_MUXCONF("spia", "gmi", none, driven),
- TEGRA_MAP_MUXCONF("spib", "gmi", none, driven),
- TEGRA_MAP_MUXCONF("spic", "gmi", up, tristate),
- TEGRA_MAP_MUXCONF("spid", "spi1", down, tristate),
- TEGRA_MAP_MUXCONF("spie", "spi1", up, tristate),
- TEGRA_MAP_MUXCONF("spif", "spi1", down, tristate),
- TEGRA_MAP_MUXCONF("spig", "spi2_alt", none, tristate),
- TEGRA_MAP_MUXCONF("spih", "spi2_alt", up, tristate),
- TEGRA_MAP_MUXCONF("uaa", "ulpi", up, tristate),
- TEGRA_MAP_MUXCONF("uab", "ulpi", up, tristate),
- TEGRA_MAP_MUXCONF("uac", "rsvd2", none, tristate),
- TEGRA_MAP_MUXCONF("uad", "irda", up, tristate),
- TEGRA_MAP_MUXCONF("uca", "uartc", up, tristate),
- TEGRA_MAP_MUXCONF("ucb", "uartc", up, tristate),
- TEGRA_MAP_MUXCONF("uda", "ulpi", none, tristate),
- TEGRA_MAP_CONF("ck32", none, na),
- TEGRA_MAP_CONF("ddrc", none, na),
- TEGRA_MAP_CONF("pmca", none, na),
- TEGRA_MAP_CONF("pmcb", none, na),
- TEGRA_MAP_CONF("pmcc", none, na),
- TEGRA_MAP_CONF("pmcd", none, na),
- TEGRA_MAP_CONF("pmce", none, na),
- TEGRA_MAP_CONF("xm2c", none, na),
- TEGRA_MAP_CONF("xm2d", none, na),
- TEGRA_MAP_CONF("ls", up, na),
- TEGRA_MAP_CONF("lc", up, na),
- TEGRA_MAP_CONF("ld17_0", down, na),
- TEGRA_MAP_CONF("ld19_18", down, na),
- TEGRA_MAP_CONF("ld21_20", down, na),
- TEGRA_MAP_CONF("ld23_22", down, na),
-};
-
-static struct tegra_board_pinmux_conf conf = {
- .maps = harmony_map,
- .map_count = ARRAY_SIZE(harmony_map),
-};
-
-void harmony_pinmux_init(void)
-{
- tegra_board_pinmux_init(&conf, NULL);
-}
diff --git a/arch/arm/mach-tegra/board-harmony-power.c b/arch/arm/mach-tegra/board-harmony-power.c
deleted file mode 100644
index b7344beec10..00000000000
--- a/arch/arm/mach-tegra/board-harmony-power.c
+++ /dev/null
@@ -1,148 +0,0 @@
-/*
- * Copyright (C) 2010 NVIDIA, 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.
- *
- * 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 <linux/i2c.h>
-#include <linux/platform_device.h>
-#include <linux/gpio.h>
-#include <linux/regulator/machine.h>
-#include <linux/regulator/fixed.h>
-#include <linux/mfd/tps6586x.h>
-#include <linux/of.h>
-#include <linux/of_i2c.h>
-
-#include <asm/mach-types.h>
-
-#include <mach/irqs.h>
-
-#include "board-harmony.h"
-
-static struct regulator_consumer_supply tps658621_ldo0_supply[] = {
- REGULATOR_SUPPLY("pex_clk", NULL),
-};
-
-static struct regulator_init_data ldo0_data = {
- .supply_regulator = "vdd_sm2",
- .constraints = {
- .name = "vdd_ldo0",
- .min_uV = 3300 * 1000,
- .max_uV = 3300 * 1000,
- .valid_modes_mask = (REGULATOR_MODE_NORMAL |
- REGULATOR_MODE_STANDBY),
- .valid_ops_mask = (REGULATOR_CHANGE_MODE |
- REGULATOR_CHANGE_STATUS |
- REGULATOR_CHANGE_VOLTAGE),
- .apply_uV = 1,
- },
- .num_consumer_supplies = ARRAY_SIZE(tps658621_ldo0_supply),
- .consumer_supplies = tps658621_ldo0_supply,
-};
-
-#define HARMONY_REGULATOR_INIT(_id, _name, _supply, _minmv, _maxmv, _on)\
- static struct regulator_init_data _id##_data = { \
- .supply_regulator = _supply, \
- .constraints = { \
- .name = _name, \
- .min_uV = (_minmv)*1000, \
- .max_uV = (_maxmv)*1000, \
- .valid_modes_mask = (REGULATOR_MODE_NORMAL | \
- REGULATOR_MODE_STANDBY), \
- .valid_ops_mask = (REGULATOR_CHANGE_MODE | \
- REGULATOR_CHANGE_STATUS | \
- REGULATOR_CHANGE_VOLTAGE), \
- .always_on = _on, \
- }, \
- }
-
-HARMONY_REGULATOR_INIT(sm0, "vdd_sm0", "vdd_sys", 725, 1500, 1);
-HARMONY_REGULATOR_INIT(sm1, "vdd_sm1", "vdd_sys", 725, 1500, 1);
-HARMONY_REGULATOR_INIT(sm2, "vdd_sm2", "vdd_sys", 3000, 4550, 1);
-HARMONY_REGULATOR_INIT(ldo1, "vdd_ldo1", "vdd_sm2", 725, 1500, 1);
-HARMONY_REGULATOR_INIT(ldo2, "vdd_ldo2", "vdd_sm2", 725, 1500, 0);
-HARMONY_REGULATOR_INIT(ldo3, "vdd_ldo3", "vdd_sm2", 1250, 3300, 1);
-HARMONY_REGULATOR_INIT(ldo4, "vdd_ldo4", "vdd_sm2", 1700, 2475, 1);
-HARMONY_REGULATOR_INIT(ldo5, "vdd_ldo5", NULL, 1250, 3300, 1);
-HARMONY_REGULATOR_INIT(ldo6, "vdd_ldo6", "vdd_sm2", 1250, 3300, 0);
-HARMONY_REGULATOR_INIT(ldo7, "vdd_ldo7", "vdd_sm2", 1250, 3300, 0);
-HARMONY_REGULATOR_INIT(ldo8, "vdd_ldo8", "vdd_sm2", 1250, 3300, 0);
-HARMONY_REGULATOR_INIT(ldo9, "vdd_ldo9", "vdd_sm2", 1250, 3300, 1);
-
-#define TPS_REG(_id, _data) \
- { \
- .id = TPS6586X_ID_##_id, \
- .name = "tps6586x-regulator", \
- .platform_data = _data, \
- }
-
-static struct tps6586x_subdev_info tps_devs[] = {
- TPS_REG(SM_0, &sm0_data),
- TPS_REG(SM_1, &sm1_data),
- TPS_REG(SM_2, &sm2_data),
- TPS_REG(LDO_0, &ldo0_data),
- TPS_REG(LDO_1, &ldo1_data),
- TPS_REG(LDO_2, &ldo2_data),
- TPS_REG(LDO_3, &ldo3_data),
- TPS_REG(LDO_4, &ldo4_data),
- TPS_REG(LDO_5, &ldo5_data),
- TPS_REG(LDO_6, &ldo6_data),
- TPS_REG(LDO_7, &ldo7_data),
- TPS_REG(LDO_8, &ldo8_data),
- TPS_REG(LDO_9, &ldo9_data),
-};
-
-static struct tps6586x_platform_data tps_platform = {
- .irq_base = TEGRA_NR_IRQS,
- .num_subdevs = ARRAY_SIZE(tps_devs),
- .subdevs = tps_devs,
- .gpio_base = HARMONY_GPIO_TPS6586X(0),
-};
-
-static struct i2c_board_info __initdata harmony_regulators[] = {
- {
- I2C_BOARD_INFO("tps6586x", 0x34),
- .irq = INT_EXTERNAL_PMU,
- .platform_data = &tps_platform,
- },
-};
-
-int __init harmony_regulator_init(void)
-{
- regulator_register_always_on(0, "vdd_sys",
- NULL, 0, 5000000);
-
- if (machine_is_harmony()) {
- i2c_register_board_info(3, harmony_regulators, 1);
- } else { /* Harmony, booted using device tree */
- struct device_node *np;
- struct i2c_adapter *adapter;
-
- np = of_find_node_by_path("/i2c@7000d000");
- if (np == NULL) {
- pr_err("Could not find device_node for DVC I2C\n");
- return -ENODEV;
- }
-
- adapter = of_find_i2c_adapter_by_node(np);
- if (!adapter) {
- pr_err("Could not find i2c_adapter for DVC I2C\n");
- return -ENODEV;
- }
-
- i2c_new_device(adapter, harmony_regulators);
- }
-
- return 0;
-}
diff --git a/arch/arm/mach-tegra/board-harmony.c b/arch/arm/mach-tegra/board-harmony.c
deleted file mode 100644
index e65e837f401..00000000000
--- a/arch/arm/mach-tegra/board-harmony.c
+++ /dev/null
@@ -1,197 +0,0 @@
-/*
- * arch/arm/mach-tegra/board-harmony.c
- *
- * Copyright (C) 2010 Google, Inc.
- * Copyright (C) 2011 NVIDIA, Inc.
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-#include <linux/kernel.h>
-#include <linux/init.h>
-#include <linux/platform_device.h>
-#include <linux/serial_8250.h>
-#include <linux/of_serial.h>
-#include <linux/clk.h>
-#include <linux/dma-mapping.h>
-#include <linux/pda_power.h>
-#include <linux/io.h>
-#include <linux/gpio.h>
-#include <linux/i2c.h>
-
-#include <sound/wm8903.h>
-
-#include <asm/mach-types.h>
-#include <asm/mach/arch.h>
-#include <asm/mach/time.h>
-#include <asm/hardware/gic.h>
-#include <asm/setup.h>
-
-#include <mach/tegra_wm8903_pdata.h>
-#include <mach/iomap.h>
-#include <mach/irqs.h>
-#include <mach/sdhci.h>
-
-#include "board.h"
-#include "board-harmony.h"
-#include "clock.h"
-#include "devices.h"
-#include "gpio-names.h"
-
-static struct plat_serial8250_port debug_uart_platform_data[] = {
- {
- .membase = IO_ADDRESS(TEGRA_UARTD_BASE),
- .mapbase = TEGRA_UARTD_BASE,
- .irq = INT_UARTD,
- .flags = UPF_BOOT_AUTOCONF | UPF_FIXED_TYPE,
- .type = PORT_TEGRA,
- .handle_break = tegra_serial_handle_break,
- .iotype = UPIO_MEM,
- .regshift = 2,
- .uartclk = 216000000,
- }, {
- .flags = 0
- }
-};
-
-static struct platform_device debug_uart = {
- .name = "serial8250",
- .id = PLAT8250_DEV_PLATFORM,
- .dev = {
- .platform_data = debug_uart_platform_data,
- },
-};
-
-static struct tegra_wm8903_platform_data harmony_audio_pdata = {
- .gpio_spkr_en = TEGRA_GPIO_SPKR_EN,
- .gpio_hp_det = TEGRA_GPIO_HP_DET,
- .gpio_hp_mute = -1,
- .gpio_int_mic_en = TEGRA_GPIO_INT_MIC_EN,
- .gpio_ext_mic_en = TEGRA_GPIO_EXT_MIC_EN,
-};
-
-static struct platform_device harmony_audio_device = {
- .name = "tegra-snd-wm8903",
- .id = 0,
- .dev = {
- .platform_data = &harmony_audio_pdata,
- },
-};
-
-static struct wm8903_platform_data harmony_wm8903_pdata = {
- .irq_active_low = 0,
- .micdet_cfg = 0,
- .micdet_delay = 100,
- .gpio_base = HARMONY_GPIO_WM8903(0),
- .gpio_cfg = {
- 0,
- 0,
- WM8903_GPIO_CONFIG_ZERO,
- 0,
- 0,
- },
-};
-
-static struct i2c_board_info __initdata wm8903_board_info = {
- I2C_BOARD_INFO("wm8903", 0x1a),
- .platform_data = &harmony_wm8903_pdata,
-};
-
-static void __init harmony_i2c_init(void)
-{
- platform_device_register(&tegra_i2c_device1);
- platform_device_register(&tegra_i2c_device2);
- platform_device_register(&tegra_i2c_device3);
- platform_device_register(&tegra_i2c_device4);
-
- wm8903_board_info.irq = gpio_to_irq(TEGRA_GPIO_CDC_IRQ);
- i2c_register_board_info(0, &wm8903_board_info, 1);
-}
-
-static struct platform_device *harmony_devices[] __initdata = {
- &debug_uart,
- &tegra_sdhci_device1,
- &tegra_sdhci_device2,
- &tegra_sdhci_device4,
- &tegra_ehci3_device,
- &tegra_i2s_device1,
- &tegra_das_device,
- &harmony_audio_device,
-};
-
-static void __init tegra_harmony_fixup(struct tag *tags, char **cmdline,
- struct meminfo *mi)
-{
- mi->nr_banks = 2;
- mi->bank[0].start = PHYS_OFFSET;
- mi->bank[0].size = 448 * SZ_1M;
- mi->bank[1].start = SZ_512M;
- mi->bank[1].size = SZ_512M;
-}
-
-static __initdata struct tegra_clk_init_table harmony_clk_init_table[] = {
- /* name parent rate enabled */
- { "uartd", "pll_p", 216000000, true },
- { "pll_a", "pll_p_out1", 56448000, true },
- { "pll_a_out0", "pll_a", 11289600, true },
- { "cdev1", NULL, 0, true },
- { "i2s1", "pll_a_out0", 11289600, false},
- { "usb3", "clk_m", 12000000, true },
- { NULL, NULL, 0, 0},
-};
-
-
-static struct tegra_sdhci_platform_data sdhci_pdata1 = {
- .cd_gpio = -1,
- .wp_gpio = -1,
- .power_gpio = -1,
-};
-
-static struct tegra_sdhci_platform_data sdhci_pdata2 = {
- .cd_gpio = TEGRA_GPIO_SD2_CD,
- .wp_gpio = TEGRA_GPIO_SD2_WP,
- .power_gpio = TEGRA_GPIO_SD2_POWER,
-};
-
-static struct tegra_sdhci_platform_data sdhci_pdata4 = {
- .cd_gpio = TEGRA_GPIO_SD4_CD,
- .wp_gpio = TEGRA_GPIO_SD4_WP,
- .power_gpio = TEGRA_GPIO_SD4_POWER,
- .is_8bit = 1,
-};
-
-static void __init tegra_harmony_init(void)
-{
- tegra_clk_init_from_table(harmony_clk_init_table);
-
- harmony_pinmux_init();
-
- tegra_sdhci_device1.dev.platform_data = &sdhci_pdata1;
- tegra_sdhci_device2.dev.platform_data = &sdhci_pdata2;
- tegra_sdhci_device4.dev.platform_data = &sdhci_pdata4;
-
- platform_add_devices(harmony_devices, ARRAY_SIZE(harmony_devices));
- harmony_i2c_init();
- harmony_regulator_init();
-}
-
-MACHINE_START(HARMONY, "harmony")
- .atag_offset = 0x100,
- .fixup = tegra_harmony_fixup,
- .map_io = tegra_map_common_io,
- .init_early = tegra20_init_early,
- .init_irq = tegra_init_irq,
- .handle_irq = gic_handle_irq,
- .timer = &tegra_timer,
- .init_machine = tegra_harmony_init,
- .init_late = tegra_init_late,
- .restart = tegra_assert_system_reset,
-MACHINE_END
diff --git a/arch/arm/mach-tegra/board-harmony.h b/arch/arm/mach-tegra/board-harmony.h
deleted file mode 100644
index 139d96c9384..00000000000
--- a/arch/arm/mach-tegra/board-harmony.h
+++ /dev/null
@@ -1,41 +0,0 @@
-/*
- * arch/arm/mach-tegra/board-harmony.h
- *
- * Copyright (C) 2010 Google, Inc.
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-#ifndef _MACH_TEGRA_BOARD_HARMONY_H
-#define _MACH_TEGRA_BOARD_HARMONY_H
-
-#include <mach/gpio-tegra.h>
-
-#define HARMONY_GPIO_TPS6586X(_x_) (TEGRA_NR_GPIOS + (_x_))
-#define HARMONY_GPIO_WM8903(_x_) (HARMONY_GPIO_TPS6586X(4) + (_x_))
-
-#define TEGRA_GPIO_SD2_CD TEGRA_GPIO_PI5
-#define TEGRA_GPIO_SD2_WP TEGRA_GPIO_PH1
-#define TEGRA_GPIO_SD2_POWER TEGRA_GPIO_PT3
-#define TEGRA_GPIO_SD4_CD TEGRA_GPIO_PH2
-#define TEGRA_GPIO_SD4_WP TEGRA_GPIO_PH3
-#define TEGRA_GPIO_SD4_POWER TEGRA_GPIO_PI6
-#define TEGRA_GPIO_CDC_IRQ TEGRA_GPIO_PX3
-#define TEGRA_GPIO_SPKR_EN HARMONY_GPIO_WM8903(2)
-#define TEGRA_GPIO_HP_DET TEGRA_GPIO_PW2
-#define TEGRA_GPIO_INT_MIC_EN TEGRA_GPIO_PX0
-#define TEGRA_GPIO_EXT_MIC_EN TEGRA_GPIO_PX1
-#define TEGRA_GPIO_EN_VDD_1V05_GPIO HARMONY_GPIO_TPS6586X(2)
-
-void harmony_pinmux_init(void);
-int harmony_regulator_init(void);
-
-#endif
diff --git a/arch/arm/mach-tegra/board-paz00-pinmux.c b/arch/arm/mach-tegra/board-paz00-pinmux.c
deleted file mode 100644
index 6f1111b48e7..00000000000
--- a/arch/arm/mach-tegra/board-paz00-pinmux.c
+++ /dev/null
@@ -1,156 +0,0 @@
-/*
- * arch/arm/mach-tegra/board-paz00-pinmux.c
- *
- * Copyright (C) 2010 Marc Dietrich <marvin24@gmx.de>
- * Copyright (c) 2012, NVIDIA CORPORATION. All rights reserved.
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-#include <linux/kernel.h>
-
-#include "board-paz00.h"
-#include "board-pinmux.h"
-
-static struct pinctrl_map paz00_map[] = {
- TEGRA_MAP_MUXCONF("ata", "gmi", none, driven),
- TEGRA_MAP_MUXCONF("atb", "sdio4", none, driven),
- TEGRA_MAP_MUXCONF("atc", "gmi", none, driven),
- TEGRA_MAP_MUXCONF("atd", "gmi", none, driven),
- TEGRA_MAP_MUXCONF("ate", "gmi", none, driven),
- TEGRA_MAP_MUXCONF("cdev1", "plla_out", none, driven),
- TEGRA_MAP_MUXCONF("cdev2", "pllp_out4", down, driven),
- TEGRA_MAP_MUXCONF("crtp", "crt", none, tristate),
- TEGRA_MAP_MUXCONF("csus", "pllc_out1", down, tristate),
- TEGRA_MAP_MUXCONF("dap1", "dap1", none, driven),
- TEGRA_MAP_MUXCONF("dap2", "gmi", none, driven),
- TEGRA_MAP_MUXCONF("dap3", "dap3", none, tristate),
- TEGRA_MAP_MUXCONF("dap4", "dap4", none, tristate),
- TEGRA_MAP_MUXCONF("ddc", "i2c2", up, driven),
- TEGRA_MAP_MUXCONF("dta", "rsvd1", up, tristate),
- TEGRA_MAP_MUXCONF("dtb", "rsvd1", none, tristate),
- TEGRA_MAP_MUXCONF("dtc", "rsvd1", none, tristate),
- TEGRA_MAP_MUXCONF("dtd", "rsvd1", up, tristate),
- TEGRA_MAP_MUXCONF("dte", "rsvd1", none, tristate),
- TEGRA_MAP_MUXCONF("dtf", "i2c3", none, driven),
- TEGRA_MAP_MUXCONF("gma", "sdio4", none, driven),
- TEGRA_MAP_MUXCONF("gmb", "gmi", none, driven),
- TEGRA_MAP_MUXCONF("gmc", "gmi", none, driven),
- TEGRA_MAP_MUXCONF("gmd", "gmi", none, driven),
- TEGRA_MAP_MUXCONF("gme", "sdio4", none, driven),
- TEGRA_MAP_MUXCONF("gpu", "pwm", none, driven),
- TEGRA_MAP_MUXCONF("gpu7", "rtck", none, driven),
- TEGRA_MAP_MUXCONF("gpv", "pcie", none, driven),
- TEGRA_MAP_MUXCONF("hdint", "hdmi", na, driven),
- TEGRA_MAP_MUXCONF("i2cp", "i2cp", none, driven),
- TEGRA_MAP_MUXCONF("irrx", "uarta", up, driven),
- TEGRA_MAP_MUXCONF("irtx", "uarta", up, driven),
- TEGRA_MAP_MUXCONF("kbca", "kbc", up, driven),
- TEGRA_MAP_MUXCONF("kbcb", "sdio2", up, driven),
- TEGRA_MAP_MUXCONF("kbcc", "kbc", up, driven),
- TEGRA_MAP_MUXCONF("kbcd", "sdio2", up, driven),
- TEGRA_MAP_MUXCONF("kbce", "kbc", up, driven),
- TEGRA_MAP_MUXCONF("kbcf", "kbc", up, driven),
- TEGRA_MAP_MUXCONF("lcsn", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("ld0", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld1", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld10", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld11", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld12", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld13", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld14", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld15", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld16", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld17", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld2", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld3", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld4", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld5", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld6", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld7", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld8", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld9", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ldc", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ldi", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lhp0", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lhp1", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lhp2", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lhs", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lm0", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lm1", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lpp", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lpw0", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lpw1", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lpw2", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lsc0", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lsc1", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lsck", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lsda", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lsdi", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lspi", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lvp0", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lvp1", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lvs", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("owc", "owr", up, tristate),
- TEGRA_MAP_MUXCONF("pmc", "pwr_on", na, driven),
- TEGRA_MAP_MUXCONF("pta", "hdmi", none, driven),
- TEGRA_MAP_MUXCONF("rm", "i2c1", none, driven),
- TEGRA_MAP_MUXCONF("sdb", "pwm", na, tristate),
- TEGRA_MAP_MUXCONF("sdc", "twc", up, tristate),
- TEGRA_MAP_MUXCONF("sdd", "pwm", up, tristate),
- TEGRA_MAP_MUXCONF("sdio1", "sdio1", none, driven),
- TEGRA_MAP_MUXCONF("slxa", "pcie", none, tristate),
- TEGRA_MAP_MUXCONF("slxc", "spi4", none, tristate),
- TEGRA_MAP_MUXCONF("slxd", "spi4", none, tristate),
- TEGRA_MAP_MUXCONF("slxk", "pcie", none, driven),
- TEGRA_MAP_MUXCONF("spdi", "rsvd2", none, tristate),
- TEGRA_MAP_MUXCONF("spdo", "rsvd2", none, driven),
- TEGRA_MAP_MUXCONF("spia", "gmi", down, tristate),
- TEGRA_MAP_MUXCONF("spib", "gmi", down, tristate),
- TEGRA_MAP_MUXCONF("spic", "gmi", up, driven),
- TEGRA_MAP_MUXCONF("spid", "gmi", down, tristate),
- TEGRA_MAP_MUXCONF("spie", "gmi", up, tristate),
- TEGRA_MAP_MUXCONF("spif", "rsvd4", down, tristate),
- TEGRA_MAP_MUXCONF("spig", "spi2_alt", up, driven),
- TEGRA_MAP_MUXCONF("spih", "spi2_alt", up, tristate),
- TEGRA_MAP_MUXCONF("uaa", "ulpi", up, driven),
- TEGRA_MAP_MUXCONF("uab", "ulpi", up, driven),
- TEGRA_MAP_MUXCONF("uac", "rsvd4", none, driven),
- TEGRA_MAP_MUXCONF("uad", "spdif", up, tristate),
- TEGRA_MAP_MUXCONF("uca", "uartc", up, tristate),
- TEGRA_MAP_MUXCONF("ucb", "uartc", up, tristate),
- TEGRA_MAP_MUXCONF("uda", "ulpi", none, driven),
- TEGRA_MAP_CONF("ck32", none, na),
- TEGRA_MAP_CONF("ddrc", none, na),
- TEGRA_MAP_CONF("pmca", none, na),
- TEGRA_MAP_CONF("pmcb", none, na),
- TEGRA_MAP_CONF("pmcc", none, na),
- TEGRA_MAP_CONF("pmcd", none, na),
- TEGRA_MAP_CONF("pmce", none, na),
- TEGRA_MAP_CONF("xm2c", none, na),
- TEGRA_MAP_CONF("xm2d", none, na),
- TEGRA_MAP_CONF("ls", up, na),
- TEGRA_MAP_CONF("lc", up, na),
- TEGRA_MAP_CONF("ld17_0", down, na),
- TEGRA_MAP_CONF("ld19_18", down, na),
- TEGRA_MAP_CONF("ld21_20", down, na),
- TEGRA_MAP_CONF("ld23_22", down, na),
-};
-
-static struct tegra_board_pinmux_conf conf = {
- .maps = paz00_map,
- .map_count = ARRAY_SIZE(paz00_map),
-};
-
-void paz00_pinmux_init(void)
-{
- tegra_board_pinmux_init(&conf, NULL);
-}
diff --git a/arch/arm/mach-tegra/board-paz00.c b/arch/arm/mach-tegra/board-paz00.c
index 4b64af5cab2..740e16f6472 100644
--- a/arch/arm/mach-tegra/board-paz00.c
+++ b/arch/arm/mach-tegra/board-paz00.c
@@ -17,72 +17,10 @@
*
*/
-#include <linux/kernel.h>
-#include <linux/init.h>
#include <linux/platform_device.h>
-#include <linux/serial_8250.h>
-#include <linux/of_serial.h>
-#include <linux/clk.h>
-#include <linux/dma-mapping.h>
-#include <linux/gpio_keys.h>
-#include <linux/pda_power.h>
-#include <linux/io.h>
-#include <linux/input.h>
-#include <linux/i2c.h>
-#include <linux/gpio.h>
#include <linux/rfkill-gpio.h>
-
-#include <asm/hardware/gic.h>
-#include <asm/mach-types.h>
-#include <asm/mach/arch.h>
-#include <asm/mach/time.h>
-#include <asm/setup.h>
-
-#include <mach/iomap.h>
-#include <mach/irqs.h>
-#include <mach/sdhci.h>
-
#include "board.h"
#include "board-paz00.h"
-#include "clock.h"
-#include "devices.h"
-#include "gpio-names.h"
-
-static struct plat_serial8250_port debug_uart_platform_data[] = {
- {
- /* serial port on JP1 */
- .membase = IO_ADDRESS(TEGRA_UARTA_BASE),
- .mapbase = TEGRA_UARTA_BASE,
- .irq = INT_UARTA,
- .flags = UPF_BOOT_AUTOCONF | UPF_FIXED_TYPE,
- .type = PORT_TEGRA,
- .handle_break = tegra_serial_handle_break,
- .iotype = UPIO_MEM,
- .regshift = 2,
- .uartclk = 216000000,
- }, {
- /* serial port on mini-pcie */
- .membase = IO_ADDRESS(TEGRA_UARTC_BASE),
- .mapbase = TEGRA_UARTC_BASE,
- .irq = INT_UARTC,
- .flags = UPF_BOOT_AUTOCONF | UPF_FIXED_TYPE,
- .type = PORT_TEGRA,
- .handle_break = tegra_serial_handle_break,
- .iotype = UPIO_MEM,
- .regshift = 2,
- .uartclk = 216000000,
- }, {
- .flags = 0
- }
-};
-
-static struct platform_device debug_uart = {
- .name = "serial8250",
- .id = PLAT8250_DEV_PLATFORM,
- .dev = {
- .platform_data = debug_uart_platform_data,
- },
-};
static struct rfkill_gpio_platform_data wifi_rfkill_platform_data = {
.name = "wifi_rfkill",
@@ -99,137 +37,7 @@ static struct platform_device wifi_rfkill_device = {
},
};
-static struct gpio_led gpio_leds[] = {
- {
- .name = "wifi-led",
- .default_trigger = "rfkill0",
- .gpio = TEGRA_WIFI_LED,
- },
-};
-
-static struct gpio_led_platform_data gpio_led_info = {
- .leds = gpio_leds,
- .num_leds = ARRAY_SIZE(gpio_leds),
-};
-
-static struct platform_device leds_gpio = {
- .name = "leds-gpio",
- .id = -1,
- .dev = {
- .platform_data = &gpio_led_info,
- },
-};
-
-static struct gpio_keys_button paz00_gpio_keys_buttons[] = {
- {
- .code = KEY_POWER,
- .gpio = TEGRA_GPIO_POWERKEY,
- .active_low = 1,
- .desc = "Power",
- .type = EV_KEY,
- .wakeup = 1,
- },
-};
-
-static struct gpio_keys_platform_data paz00_gpio_keys = {
- .buttons = paz00_gpio_keys_buttons,
- .nbuttons = ARRAY_SIZE(paz00_gpio_keys_buttons),
-};
-
-static struct platform_device gpio_keys_device = {
- .name = "gpio-keys",
- .id = -1,
- .dev = {
- .platform_data = &paz00_gpio_keys,
- },
-};
-
-static struct platform_device *paz00_devices[] __initdata = {
- &debug_uart,
- &tegra_sdhci_device4,
- &tegra_sdhci_device1,
- &leds_gpio,
- &gpio_keys_device,
-};
-
-static void paz00_i2c_init(void)
-{
- platform_device_register(&tegra_i2c_device1);
- platform_device_register(&tegra_i2c_device2);
- platform_device_register(&tegra_i2c_device4);
-}
-
-static void paz00_usb_init(void)
-{
- tegra_ehci2_ulpi_phy_config.reset_gpio = TEGRA_ULPI_RST;
-
- platform_device_register(&tegra_ehci2_device);
- platform_device_register(&tegra_ehci3_device);
-}
-
-static void __init tegra_paz00_fixup(struct tag *tags, char **cmdline,
- struct meminfo *mi)
-{
- mi->nr_banks = 1;
- mi->bank[0].start = PHYS_OFFSET;
- mi->bank[0].size = 448 * SZ_1M;
-}
-
-static __initdata struct tegra_clk_init_table paz00_clk_init_table[] = {
- /* name parent rate enabled */
- { "uarta", "pll_p", 216000000, true },
- { "uartc", "pll_p", 216000000, true },
-
- { "usbd", "clk_m", 12000000, false },
- { "usb2", "clk_m", 12000000, false },
- { "usb3", "clk_m", 12000000, false },
-
- { NULL, NULL, 0, 0},
-};
-
-static struct tegra_sdhci_platform_data sdhci_pdata1 = {
- .cd_gpio = TEGRA_GPIO_SD1_CD,
- .wp_gpio = TEGRA_GPIO_SD1_WP,
- .power_gpio = TEGRA_GPIO_SD1_POWER,
-};
-
-static struct tegra_sdhci_platform_data sdhci_pdata4 = {
- .cd_gpio = -1,
- .wp_gpio = -1,
- .power_gpio = -1,
- .is_8bit = 1,
-};
-
void __init tegra_paz00_wifikill_init(void)
{
platform_device_register(&wifi_rfkill_device);
}
-
-static void __init tegra_paz00_init(void)
-{
- tegra_clk_init_from_table(paz00_clk_init_table);
-
- paz00_pinmux_init();
-
- tegra_sdhci_device1.dev.platform_data = &sdhci_pdata1;
- tegra_sdhci_device4.dev.platform_data = &sdhci_pdata4;
-
- platform_add_devices(paz00_devices, ARRAY_SIZE(paz00_devices));
- tegra_paz00_wifikill_init();
-
- paz00_i2c_init();
- paz00_usb_init();
-}
-
-MACHINE_START(PAZ00, "Toshiba AC100 / Dynabook AZ")
- .atag_offset = 0x100,
- .fixup = tegra_paz00_fixup,
- .map_io = tegra_map_common_io,
- .init_early = tegra20_init_early,
- .init_irq = tegra_init_irq,
- .handle_irq = gic_handle_irq,
- .timer = &tegra_timer,
- .init_machine = tegra_paz00_init,
- .init_late = tegra_init_late,
- .restart = tegra_assert_system_reset,
-MACHINE_END
diff --git a/arch/arm/mach-tegra/board-paz00.h b/arch/arm/mach-tegra/board-paz00.h
index 3c9f8da37ea..25c08ecef52 100644
--- a/arch/arm/mach-tegra/board-paz00.h
+++ b/arch/arm/mach-tegra/board-paz00.h
@@ -17,24 +17,9 @@
#ifndef _MACH_TEGRA_BOARD_PAZ00_H
#define _MACH_TEGRA_BOARD_PAZ00_H
-#include <mach/gpio-tegra.h>
+#include "gpio-names.h"
-/* SDCARD */
-#define TEGRA_GPIO_SD1_CD TEGRA_GPIO_PV5
-#define TEGRA_GPIO_SD1_WP TEGRA_GPIO_PH1
-#define TEGRA_GPIO_SD1_POWER TEGRA_GPIO_PV1
-
-/* ULPI */
-#define TEGRA_ULPI_RST TEGRA_GPIO_PV0
-
-/* WIFI */
#define TEGRA_WIFI_PWRN TEGRA_GPIO_PK5
#define TEGRA_WIFI_RST TEGRA_GPIO_PD1
-#define TEGRA_WIFI_LED TEGRA_GPIO_PD0
-
-/* WakeUp */
-#define TEGRA_GPIO_POWERKEY TEGRA_GPIO_PJ7
-
-void paz00_pinmux_init(void);
#endif
diff --git a/arch/arm/mach-tegra/board-pinmux.c b/arch/arm/mach-tegra/board-pinmux.c
deleted file mode 100644
index a5574c71b93..00000000000
--- a/arch/arm/mach-tegra/board-pinmux.c
+++ /dev/null
@@ -1,87 +0,0 @@
-/*
- * Copyright (c) 2011,2012, NVIDIA CORPORATION. All rights reserved.
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-#include <linux/device.h>
-#include <linux/kernel.h>
-#include <linux/notifier.h>
-#include <linux/string.h>
-
-#include "board-pinmux.h"
-#include "devices.h"
-
-unsigned long tegra_pincfg_pullnone_driven[2] = {
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_PULL, TEGRA_PINCONFIG_PULL_NONE),
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_TRISTATE, TEGRA_PINCONFIG_DRIVEN),
-};
-
-unsigned long tegra_pincfg_pullnone_tristate[2] = {
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_PULL, TEGRA_PINCONFIG_PULL_NONE),
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_TRISTATE, TEGRA_PINCONFIG_TRISTATE),
-};
-
-unsigned long tegra_pincfg_pullnone_na[1] = {
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_PULL, TEGRA_PINCONFIG_PULL_NONE),
-};
-
-unsigned long tegra_pincfg_pullup_driven[2] = {
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_PULL, TEGRA_PINCONFIG_PULL_UP),
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_TRISTATE, TEGRA_PINCONFIG_DRIVEN),
-};
-
-unsigned long tegra_pincfg_pullup_tristate[2] = {
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_PULL, TEGRA_PINCONFIG_PULL_UP),
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_TRISTATE, TEGRA_PINCONFIG_TRISTATE),
-};
-
-unsigned long tegra_pincfg_pullup_na[1] = {
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_PULL, TEGRA_PINCONFIG_PULL_UP),
-};
-
-unsigned long tegra_pincfg_pulldown_driven[2] = {
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_PULL, TEGRA_PINCONFIG_PULL_DOWN),
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_TRISTATE, TEGRA_PINCONFIG_DRIVEN),
-};
-
-unsigned long tegra_pincfg_pulldown_tristate[2] = {
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_PULL, TEGRA_PINCONFIG_PULL_DOWN),
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_TRISTATE, TEGRA_PINCONFIG_TRISTATE),
-};
-
-unsigned long tegra_pincfg_pulldown_na[1] = {
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_PULL, TEGRA_PINCONFIG_PULL_DOWN),
-};
-
-unsigned long tegra_pincfg_pullna_driven[1] = {
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_TRISTATE, TEGRA_PINCONFIG_DRIVEN),
-};
-
-unsigned long tegra_pincfg_pullna_tristate[1] = {
- TEGRA_PINCONF_PACK(TEGRA_PINCONF_PARAM_TRISTATE, TEGRA_PINCONFIG_TRISTATE),
-};
-
-static struct platform_device *devices[] = {
- &tegra_gpio_device,
- &tegra_pinmux_device,
-};
-
-void tegra_board_pinmux_init(struct tegra_board_pinmux_conf *conf_a,
- struct tegra_board_pinmux_conf *conf_b)
-{
- if (conf_a)
- pinctrl_register_mappings(conf_a->maps, conf_a->map_count);
- if (conf_b)
- pinctrl_register_mappings(conf_b->maps, conf_b->map_count);
-
- platform_add_devices(devices, ARRAY_SIZE(devices));
-}
diff --git a/arch/arm/mach-tegra/board-pinmux.h b/arch/arm/mach-tegra/board-pinmux.h
deleted file mode 100644
index c5f3f3381e8..00000000000
--- a/arch/arm/mach-tegra/board-pinmux.h
+++ /dev/null
@@ -1,54 +0,0 @@
-/*
- * Copyright (c) 2011,2012, NVIDIA CORPORATION. All rights reserved.
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-#ifndef __MACH_TEGRA_BOARD_PINMUX_H
-#define __MACH_TEGRA_BOARD_PINMUX_H
-
-#include <linux/pinctrl/machine.h>
-
-#include <mach/pinconf-tegra.h>
-
-#define PINMUX_DEV "tegra20-pinctrl"
-
-#define TEGRA_MAP_MUX(_group_, _function_) \
- PIN_MAP_MUX_GROUP_HOG_DEFAULT(PINMUX_DEV, _group_, _function_)
-
-#define TEGRA_MAP_CONF(_group_, _pull_, _drive_) \
- PIN_MAP_CONFIGS_GROUP_HOG_DEFAULT(PINMUX_DEV, _group_, tegra_pincfg_pull##_pull_##_##_drive_)
-
-#define TEGRA_MAP_MUXCONF(_group_, _function_, _pull_, _drive_) \
- TEGRA_MAP_MUX(_group_, _function_), \
- TEGRA_MAP_CONF(_group_, _pull_, _drive_)
-
-extern unsigned long tegra_pincfg_pullnone_driven[2];
-extern unsigned long tegra_pincfg_pullnone_tristate[2];
-extern unsigned long tegra_pincfg_pullnone_na[1];
-extern unsigned long tegra_pincfg_pullup_driven[2];
-extern unsigned long tegra_pincfg_pullup_tristate[2];
-extern unsigned long tegra_pincfg_pullup_na[1];
-extern unsigned long tegra_pincfg_pulldown_driven[2];
-extern unsigned long tegra_pincfg_pulldown_tristate[2];
-extern unsigned long tegra_pincfg_pulldown_na[1];
-extern unsigned long tegra_pincfg_pullna_driven[1];
-extern unsigned long tegra_pincfg_pullna_tristate[1];
-
-struct tegra_board_pinmux_conf {
- struct pinctrl_map *maps;
- int map_count;
-};
-
-void tegra_board_pinmux_init(struct tegra_board_pinmux_conf *conf_a,
- struct tegra_board_pinmux_conf *conf_b);
-
-#endif
diff --git a/arch/arm/mach-tegra/board-trimslice-pinmux.c b/arch/arm/mach-tegra/board-trimslice-pinmux.c
deleted file mode 100644
index 7b39511c0d4..00000000000
--- a/arch/arm/mach-tegra/board-trimslice-pinmux.c
+++ /dev/null
@@ -1,155 +0,0 @@
-/*
- * arch/arm/mach-tegra/board-trimslice-pinmux.c
- *
- * Copyright (C) 2011 CompuLab, Ltd.
- * Copyright (c) 2012, NVIDIA CORPORATION. All rights reserved.
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-#include <linux/kernel.h>
-
-#include "board-trimslice.h"
-#include "board-pinmux.h"
-
-static struct pinctrl_map trimslice_map[] = {
- TEGRA_MAP_MUXCONF("ata", "ide", none, tristate),
- TEGRA_MAP_MUXCONF("atb", "sdio4", none, driven),
- TEGRA_MAP_MUXCONF("atc", "nand", none, tristate),
- TEGRA_MAP_MUXCONF("atd", "gmi", none, tristate),
- TEGRA_MAP_MUXCONF("ate", "gmi", none, tristate),
- TEGRA_MAP_MUXCONF("cdev1", "plla_out", none, driven),
- TEGRA_MAP_MUXCONF("cdev2", "pllp_out4", down, tristate),
- TEGRA_MAP_MUXCONF("crtp", "crt", none, tristate),
- TEGRA_MAP_MUXCONF("csus", "vi_sensor_clk", down, tristate),
- TEGRA_MAP_MUXCONF("dap1", "dap1", none, driven),
- TEGRA_MAP_MUXCONF("dap2", "dap2", none, tristate),
- TEGRA_MAP_MUXCONF("dap3", "dap3", none, tristate),
- TEGRA_MAP_MUXCONF("dap4", "dap4", none, tristate),
- TEGRA_MAP_MUXCONF("ddc", "i2c2", up, driven),
- TEGRA_MAP_MUXCONF("dta", "vi", none, tristate),
- TEGRA_MAP_MUXCONF("dtb", "vi", none, tristate),
- TEGRA_MAP_MUXCONF("dtc", "vi", none, tristate),
- TEGRA_MAP_MUXCONF("dtd", "vi", none, tristate),
- TEGRA_MAP_MUXCONF("dte", "vi", none, tristate),
- TEGRA_MAP_MUXCONF("dtf", "i2c3", up, driven),
- TEGRA_MAP_MUXCONF("gma", "sdio4", none, driven),
- TEGRA_MAP_MUXCONF("gmb", "nand", none, tristate),
- TEGRA_MAP_MUXCONF("gmc", "sflash", none, driven),
- TEGRA_MAP_MUXCONF("gmd", "sflash", none, driven),
- TEGRA_MAP_MUXCONF("gme", "gmi", none, tristate),
- TEGRA_MAP_MUXCONF("gpu", "uarta", none, driven),
- TEGRA_MAP_MUXCONF("gpu7", "rtck", none, driven),
- TEGRA_MAP_MUXCONF("gpv", "pcie", none, driven),
- TEGRA_MAP_MUXCONF("hdint", "hdmi", na, tristate),
- TEGRA_MAP_MUXCONF("i2cp", "i2cp", none, tristate),
- TEGRA_MAP_MUXCONF("irrx", "uartb", up, tristate),
- TEGRA_MAP_MUXCONF("irtx", "uartb", up, tristate),
- TEGRA_MAP_MUXCONF("kbca", "kbc", up, tristate),
- TEGRA_MAP_MUXCONF("kbcb", "kbc", up, tristate),
- TEGRA_MAP_MUXCONF("kbcc", "kbc", up, tristate),
- TEGRA_MAP_MUXCONF("kbcd", "kbc", up, tristate),
- TEGRA_MAP_MUXCONF("kbce", "kbc", up, tristate),
- TEGRA_MAP_MUXCONF("kbcf", "kbc", up, tristate),
- TEGRA_MAP_MUXCONF("lcsn", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("ld0", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld1", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld10", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld11", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld12", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld13", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld14", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld15", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld16", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld17", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld2", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld3", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld4", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld5", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld6", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld7", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld8", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ld9", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("ldc", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("ldi", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lhp0", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lhp1", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lhp2", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lhs", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lm0", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lm1", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lpp", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lpw0", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lpw1", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lpw2", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lsc0", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lsc1", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lsck", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lsda", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lsdi", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lspi", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lvp0", "displaya", na, tristate),
- TEGRA_MAP_MUXCONF("lvp1", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("lvs", "displaya", na, driven),
- TEGRA_MAP_MUXCONF("owc", "rsvd2", up, tristate),
- TEGRA_MAP_MUXCONF("pmc", "pwr_on", na, tristate),
- TEGRA_MAP_MUXCONF("pta", "gmi", none, tristate),
- TEGRA_MAP_MUXCONF("rm", "i2c1", up, driven),
- TEGRA_MAP_MUXCONF("sdb", "pwm", na, driven),
- TEGRA_MAP_MUXCONF("sdc", "pwm", up, driven),
- TEGRA_MAP_MUXCONF("sdd", "pwm", up, driven),
- TEGRA_MAP_MUXCONF("sdio1", "sdio1", none, driven),
- TEGRA_MAP_MUXCONF("slxa", "pcie", none, driven),
- TEGRA_MAP_MUXCONF("slxc", "sdio3", none, tristate),
- TEGRA_MAP_MUXCONF("slxd", "sdio3", none, tristate),
- TEGRA_MAP_MUXCONF("slxk", "pcie", none, driven),
- TEGRA_MAP_MUXCONF("spdi", "spdif", none, tristate),
- TEGRA_MAP_MUXCONF("spdo", "spdif", none, tristate),
- TEGRA_MAP_MUXCONF("spia", "spi2", down, tristate),
- TEGRA_MAP_MUXCONF("spib", "spi2", down, tristate),
- TEGRA_MAP_MUXCONF("spic", "spi2", up, tristate),
- TEGRA_MAP_MUXCONF("spid", "spi1", down, tristate),
- TEGRA_MAP_MUXCONF("spie", "spi1", up, tristate),
- TEGRA_MAP_MUXCONF("spif", "spi1", down, tristate),
- TEGRA_MAP_MUXCONF("spig", "spi2_alt", up, tristate),
- TEGRA_MAP_MUXCONF("spih", "spi2_alt", up, tristate),
- TEGRA_MAP_MUXCONF("uaa", "ulpi", up, tristate),
- TEGRA_MAP_MUXCONF("uab", "ulpi", up, tristate),
- TEGRA_MAP_MUXCONF("uac", "rsvd2", none, driven),
- TEGRA_MAP_MUXCONF("uad", "irda", up, tristate),
- TEGRA_MAP_MUXCONF("uca", "uartc", up, tristate),
- TEGRA_MAP_MUXCONF("ucb", "uartc", up, tristate),
- TEGRA_MAP_MUXCONF("uda", "ulpi", none, tristate),
- TEGRA_MAP_CONF("ck32", none, na),
- TEGRA_MAP_CONF("ddrc", none, na),
- TEGRA_MAP_CONF("pmca", none, na),
- TEGRA_MAP_CONF("pmcb", none, na),
- TEGRA_MAP_CONF("pmcc", none, na),
- TEGRA_MAP_CONF("pmcd", none, na),
- TEGRA_MAP_CONF("pmce", none, na),
- TEGRA_MAP_CONF("xm2c", none, na),
- TEGRA_MAP_CONF("xm2d", none, na),
- TEGRA_MAP_CONF("ls", up, na),
- TEGRA_MAP_CONF("lc", up, na),
- TEGRA_MAP_CONF("ld17_0", down, na),
- TEGRA_MAP_CONF("ld19_18", down, na),
- TEGRA_MAP_CONF("ld21_20", down, na),
- TEGRA_MAP_CONF("ld23_22", down, na),
-};
-
-static struct tegra_board_pinmux_conf conf = {
- .maps = trimslice_map,
- .map_count = ARRAY_SIZE(trimslice_map),
-};
-
-void trimslice_pinmux_init(void)
-{
- tegra_board_pinmux_init(&conf, NULL);
-}
diff --git a/arch/arm/mach-tegra/board-trimslice.c b/arch/arm/mach-tegra/board-trimslice.c
deleted file mode 100644
index 776aa9564d5..00000000000
--- a/arch/arm/mach-tegra/board-trimslice.c
+++ /dev/null
@@ -1,183 +0,0 @@
-/*
- * arch/arm/mach-tegra/board-trimslice.c
- *
- * Copyright (C) 2011 CompuLab, Ltd.
- * Author: Mike Rapoport <mike@compulab.co.il>
- *
- * Based on board-harmony.c
- * Copyright (C) 2010 Google, Inc.
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-#include <linux/kernel.h>
-#include <linux/init.h>
-#include <linux/platform_device.h>
-#include <linux/serial_8250.h>
-#include <linux/of_serial.h>
-#include <linux/io.h>
-#include <linux/i2c.h>
-#include <linux/gpio.h>
-#include <linux/platform_data/tegra_usb.h>
-
-#include <asm/hardware/gic.h>
-#include <asm/mach-types.h>
-#include <asm/mach/arch.h>
-#include <asm/setup.h>
-
-#include <mach/iomap.h>
-#include <mach/sdhci.h>
-
-#include "board.h"
-#include "clock.h"
-#include "devices.h"
-#include "gpio-names.h"
-
-#include "board-trimslice.h"
-
-static struct plat_serial8250_port debug_uart_platform_data[] = {
- {
- .membase = IO_ADDRESS(TEGRA_UARTA_BASE),
- .mapbase = TEGRA_UARTA_BASE,
- .irq = INT_UARTA,
- .flags = UPF_BOOT_AUTOCONF | UPF_FIXED_TYPE,
- .type = PORT_TEGRA,
- .handle_break = tegra_serial_handle_break,
- .iotype = UPIO_MEM,
- .regshift = 2,
- .uartclk = 216000000,
- }, {
- .flags = 0
- }
-};
-
-static struct platform_device debug_uart = {
- .name = "serial8250",
- .id = PLAT8250_DEV_PLATFORM,
- .dev = {
- .platform_data = debug_uart_platform_data,
- },
-};
-static struct tegra_sdhci_platform_data sdhci_pdata1 = {
- .cd_gpio = -1,
- .wp_gpio = -1,
- .power_gpio = -1,
-};
-
-static struct tegra_sdhci_platform_data sdhci_pdata4 = {
- .cd_gpio = TRIMSLICE_GPIO_SD4_CD,
- .wp_gpio = TRIMSLICE_GPIO_SD4_WP,
- .power_gpio = -1,
-};
-
-static struct platform_device trimslice_audio_device = {
- .name = "tegra-snd-trimslice",
- .id = 0,
-};
-
-static struct platform_device *trimslice_devices[] __initdata = {
- &debug_uart,
- &tegra_sdhci_device1,
- &tegra_sdhci_device4,
- &tegra_i2s_device1,
- &tegra_das_device,
- &trimslice_audio_device,
-};
-
-static struct i2c_board_info trimslice_i2c3_board_info[] = {
- {
- I2C_BOARD_INFO("tlv320aic23", 0x1a),
- },
- {
- I2C_BOARD_INFO("em3027", 0x56),
- },
-};
-
-static void trimslice_i2c_init(void)
-{
- platform_device_register(&tegra_i2c_device1);
- platform_device_register(&tegra_i2c_device2);
- platform_device_register(&tegra_i2c_device3);
-
- i2c_register_board_info(2, trimslice_i2c3_board_info,
- ARRAY_SIZE(trimslice_i2c3_board_info));
-}
-
-static void trimslice_usb_init(void)
-{
- struct tegra_ehci_platform_data *pdata;
-
- pdata = tegra_ehci1_device.dev.platform_data;
- pdata->vbus_gpio = TRIMSLICE_GPIO_USB1_MODE;
-
- tegra_ehci2_ulpi_phy_config.reset_gpio = TEGRA_GPIO_PV0;
-
- platform_device_register(&tegra_ehci3_device);
- platform_device_register(&tegra_ehci2_device);
- platform_device_register(&tegra_ehci1_device);
-}
-
-static void __init tegra_trimslice_fixup(struct tag *tags, char **cmdline,
- struct meminfo *mi)
-{
- mi->nr_banks = 2;
- mi->bank[0].start = PHYS_OFFSET;
- mi->bank[0].size = 448 * SZ_1M;
- mi->bank[1].start = SZ_512M;
- mi->bank[1].size = SZ_512M;
-}
-
-static __initdata struct tegra_clk_init_table trimslice_clk_init_table[] = {
- /* name parent rate enabled */
- { "uarta", "pll_p", 216000000, true },
- { "pll_a", "pll_p_out1", 56448000, true },
- { "pll_a_out0", "pll_a", 11289600, true },
- { "cdev1", NULL, 0, true },
- { "i2s1", "pll_a_out0", 11289600, false},
- { NULL, NULL, 0, 0},
-};
-
-static int __init tegra_trimslice_pci_init(void)
-{
- if (!machine_is_trimslice())
- return 0;
-
- return tegra_pcie_init(true, true);
-}
-subsys_initcall(tegra_trimslice_pci_init);
-
-static void __init tegra_trimslice_init(void)
-{
- tegra_clk_init_from_table(trimslice_clk_init_table);
-
- trimslice_pinmux_init();
-
- tegra_sdhci_device1.dev.platform_data = &sdhci_pdata1;
- tegra_sdhci_device4.dev.platform_data = &sdhci_pdata4;
-
- platform_add_devices(trimslice_devices, ARRAY_SIZE(trimslice_devices));
-
- trimslice_i2c_init();
- trimslice_usb_init();
-}
-
-MACHINE_START(TRIMSLICE, "trimslice")
- .atag_offset = 0x100,
- .fixup = tegra_trimslice_fixup,
- .map_io = tegra_map_common_io,
- .init_early = tegra20_init_early,
- .init_irq = tegra_init_irq,
- .handle_irq = gic_handle_irq,
- .timer = &tegra_timer,
- .init_machine = tegra_trimslice_init,
- .init_late = tegra_init_late,
- .restart = tegra_assert_system_reset,
-MACHINE_END
diff --git a/arch/arm/mach-tegra/board-trimslice.h b/arch/arm/mach-tegra/board-trimslice.h
deleted file mode 100644
index 50f128d8777..00000000000
--- a/arch/arm/mach-tegra/board-trimslice.h
+++ /dev/null
@@ -1,30 +0,0 @@
-/*
- * arch/arm/mach-tegra/board-trimslice.h
- *
- * Copyright (C) 2011 CompuLab, Ltd.
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-#ifndef _MACH_TEGRA_BOARD_TRIMSLICE_H
-#define _MACH_TEGRA_BOARD_TRIMSLICE_H
-
-#include <mach/gpio-tegra.h>
-
-#define TRIMSLICE_GPIO_SD4_CD TEGRA_GPIO_PP1 /* mmc4 cd */
-#define TRIMSLICE_GPIO_SD4_WP TEGRA_GPIO_PP2 /* mmc4 wp */
-
-#define TRIMSLICE_GPIO_USB1_MODE TEGRA_GPIO_PV2 /* USB1 mode */
-#define TRIMSLICE_GPIO_USB2_RST TEGRA_GPIO_PV0 /* USB2 PHY reset */
-
-void trimslice_pinmux_init(void);
-
-#endif
diff --git a/arch/arm/mach-tegra/clock.c b/arch/arm/mach-tegra/clock.c
index 58f981c0819..fd82085eca5 100644
--- a/arch/arm/mach-tegra/clock.c
+++ b/arch/arm/mach-tegra/clock.c
@@ -1,6 +1,7 @@
/*
*
* Copyright (C) 2010 Google, Inc.
+ * Copyright (c) 2012 NVIDIA CORPORATION. All rights reserved.
*
* Author:
* Colin Cross <ccross@google.com>
@@ -19,8 +20,6 @@
#include <linux/kernel.h>
#include <linux/clk.h>
#include <linux/clkdev.h>
-#include <linux/debugfs.h>
-#include <linux/delay.h>
#include <linux/init.h>
#include <linux/list.h>
#include <linux/module.h>
@@ -32,325 +31,75 @@
#include "board.h"
#include "clock.h"
+#include "tegra_cpu_car.h"
+
+/* Global data of Tegra CPU CAR ops */
+struct tegra_cpu_car_ops *tegra_cpu_car_ops;
/*
* Locking:
*
- * Each struct clk has a spinlock.
- *
- * To avoid AB-BA locking problems, locks must always be traversed from child
- * clock to parent clock. For example, when enabling a clock, the clock's lock
- * is taken, and then clk_enable is called on the parent, which take's the
- * parent clock's lock. There is one exceptions to this ordering: When dumping
- * the clock tree through debugfs. In this case, clk_lock_all is called,
- * which attemps to iterate through the entire list of clocks and take every
- * clock lock. If any call to spin_trylock fails, all locked clocks are
- * unlocked, and the process is retried. When all the locks are held,
- * the only clock operation that can be called is clk_get_rate_all_locked.
- *
- * Within a single clock, no clock operation can call another clock operation
- * on itself, except for clk_get_rate_locked and clk_set_rate_locked. Any
- * clock operation can call any other clock operation on any of it's possible
- * parents.
- *
* An additional mutex, clock_list_lock, is used to protect the list of all
* clocks.
*
- * The clock operations must lock internally to protect against
- * read-modify-write on registers that are shared by multiple clocks
*/
static DEFINE_MUTEX(clock_list_lock);
static LIST_HEAD(clocks);
-struct clk *tegra_get_clock_by_name(const char *name)
-{
- struct clk *c;
- struct clk *ret = NULL;
- mutex_lock(&clock_list_lock);
- list_for_each_entry(c, &clocks, node) {
- if (strcmp(c->name, name) == 0) {
- ret = c;
- break;
- }
- }
- mutex_unlock(&clock_list_lock);
- return ret;
-}
-
-/* Must be called with c->spinlock held */
-static unsigned long clk_predict_rate_from_parent(struct clk *c, struct clk *p)
-{
- u64 rate;
-
- rate = clk_get_rate(p);
-
- if (c->mul != 0 && c->div != 0) {
- rate *= c->mul;
- rate += c->div - 1; /* round up */
- do_div(rate, c->div);
- }
-
- return rate;
-}
-
-/* Must be called with c->spinlock held */
-unsigned long clk_get_rate_locked(struct clk *c)
-{
- unsigned long rate;
-
- if (c->parent)
- rate = clk_predict_rate_from_parent(c, c->parent);
- else
- rate = c->rate;
-
- return rate;
-}
-
-unsigned long clk_get_rate(struct clk *c)
+void tegra_clk_add(struct clk *clk)
{
- unsigned long flags;
- unsigned long rate;
-
- spin_lock_irqsave(&c->spinlock, flags);
-
- rate = clk_get_rate_locked(c);
-
- spin_unlock_irqrestore(&c->spinlock, flags);
-
- return rate;
-}
-EXPORT_SYMBOL(clk_get_rate);
-
-int clk_reparent(struct clk *c, struct clk *parent)
-{
- c->parent = parent;
- return 0;
-}
-
-void clk_init(struct clk *c)
-{
- spin_lock_init(&c->spinlock);
-
- if (c->ops && c->ops->init)
- c->ops->init(c);
-
- if (!c->ops || !c->ops->enable) {
- c->refcnt++;
- c->set = true;
- if (c->parent)
- c->state = c->parent->state;
- else
- c->state = ON;
- }
+ struct clk_tegra *c = to_clk_tegra(__clk_get_hw(clk));
mutex_lock(&clock_list_lock);
list_add(&c->node, &clocks);
mutex_unlock(&clock_list_lock);
}
-int clk_enable(struct clk *c)
-{
- int ret = 0;
- unsigned long flags;
-
- spin_lock_irqsave(&c->spinlock, flags);
-
- if (c->refcnt == 0) {
- if (c->parent) {
- ret = clk_enable(c->parent);
- if (ret)
- goto out;
- }
-
- if (c->ops && c->ops->enable) {
- ret = c->ops->enable(c);
- if (ret) {
- if (c->parent)
- clk_disable(c->parent);
- goto out;
- }
- c->state = ON;
- c->set = true;
- }
- }
- c->refcnt++;
-out:
- spin_unlock_irqrestore(&c->spinlock, flags);
- return ret;
-}
-EXPORT_SYMBOL(clk_enable);
-
-void clk_disable(struct clk *c)
-{
- unsigned long flags;
-
- spin_lock_irqsave(&c->spinlock, flags);
-
- if (c->refcnt == 0) {
- WARN(1, "Attempting to disable clock %s with refcnt 0", c->name);
- spin_unlock_irqrestore(&c->spinlock, flags);
- return;
- }
- if (c->refcnt == 1) {
- if (c->ops && c->ops->disable)
- c->ops->disable(c);
-
- if (c->parent)
- clk_disable(c->parent);
-
- c->state = OFF;
- }
- c->refcnt--;
-
- spin_unlock_irqrestore(&c->spinlock, flags);
-}
-EXPORT_SYMBOL(clk_disable);
-
-int clk_set_parent(struct clk *c, struct clk *parent)
-{
- int ret;
- unsigned long flags;
- unsigned long new_rate;
- unsigned long old_rate;
-
- spin_lock_irqsave(&c->spinlock, flags);
-
- if (!c->ops || !c->ops->set_parent) {
- ret = -ENOSYS;
- goto out;
- }
-
- new_rate = clk_predict_rate_from_parent(c, parent);
- old_rate = clk_get_rate_locked(c);
-
- ret = c->ops->set_parent(c, parent);
- if (ret)
- goto out;
-
-out:
- spin_unlock_irqrestore(&c->spinlock, flags);
- return ret;
-}
-EXPORT_SYMBOL(clk_set_parent);
-
-struct clk *clk_get_parent(struct clk *c)
-{
- return c->parent;
-}
-EXPORT_SYMBOL(clk_get_parent);
-
-int clk_set_rate_locked(struct clk *c, unsigned long rate)
-{
- long new_rate;
-
- if (!c->ops || !c->ops->set_rate)
- return -ENOSYS;
-
- if (rate > c->max_rate)
- rate = c->max_rate;
-
- if (c->ops && c->ops->round_rate) {
- new_rate = c->ops->round_rate(c, rate);
-
- if (new_rate < 0)
- return new_rate;
-
- rate = new_rate;
- }
-
- return c->ops->set_rate(c, rate);
-}
-
-int clk_set_rate(struct clk *c, unsigned long rate)
-{
- int ret;
- unsigned long flags;
-
- spin_lock_irqsave(&c->spinlock, flags);
-
- ret = clk_set_rate_locked(c, rate);
-
- spin_unlock_irqrestore(&c->spinlock, flags);
-
- return ret;
-}
-EXPORT_SYMBOL(clk_set_rate);
-
-
-/* Must be called with clocks lock and all indvidual clock locks held */
-unsigned long clk_get_rate_all_locked(struct clk *c)
+struct clk *tegra_get_clock_by_name(const char *name)
{
- u64 rate;
- int mul = 1;
- int div = 1;
- struct clk *p = c;
-
- while (p) {
- c = p;
- if (c->mul != 0 && c->div != 0) {
- mul *= c->mul;
- div *= c->div;
+ struct clk_tegra *c;
+ struct clk *ret = NULL;
+ mutex_lock(&clock_list_lock);
+ list_for_each_entry(c, &clocks, node) {
+ if (strcmp(__clk_get_name(c->hw.clk), name) == 0) {
+ ret = c->hw.clk;
+ break;
}
- p = c->parent;
- }
-
- rate = c->rate;
- rate *= mul;
- do_div(rate, div);
-
- return rate;
-}
-
-long clk_round_rate(struct clk *c, unsigned long rate)
-{
- unsigned long flags;
- long ret;
-
- spin_lock_irqsave(&c->spinlock, flags);
-
- if (!c->ops || !c->ops->round_rate) {
- ret = -ENOSYS;
- goto out;
}
-
- if (rate > c->max_rate)
- rate = c->max_rate;
-
- ret = c->ops->round_rate(c, rate);
-
-out:
- spin_unlock_irqrestore(&c->spinlock, flags);
+ mutex_unlock(&clock_list_lock);
return ret;
}
-EXPORT_SYMBOL(clk_round_rate);
static int tegra_clk_init_one_from_table(struct tegra_clk_init_table *table)
{
struct clk *c;
struct clk *p;
+ struct clk *parent;
int ret = 0;
c = tegra_get_clock_by_name(table->name);
if (!c) {
- pr_warning("Unable to initialize clock %s\n",
+ pr_warn("Unable to initialize clock %s\n",
table->name);
return -ENODEV;
}
+ parent = clk_get_parent(c);
+
if (table->parent) {
p = tegra_get_clock_by_name(table->parent);
if (!p) {
- pr_warning("Unable to find parent %s of clock %s\n",
+ pr_warn("Unable to find parent %s of clock %s\n",
table->parent, table->name);
return -ENODEV;
}
- if (c->parent != p) {
+ if (parent != p) {
ret = clk_set_parent(c, p);
if (ret) {
- pr_warning("Unable to set parent %s of clock %s: %d\n",
+ pr_warn("Unable to set parent %s of clock %s: %d\n",
table->parent, table->name, ret);
return -EINVAL;
}
@@ -360,16 +109,16 @@ static int tegra_clk_init_one_from_table(struct tegra_clk_init_table *table)
if (table->rate && table->rate != clk_get_rate(c)) {
ret = clk_set_rate(c, table->rate);
if (ret) {
- pr_warning("Unable to set clock %s to rate %lu: %d\n",
+ pr_warn("Unable to set clock %s to rate %lu: %d\n",
table->name, table->rate, ret);
return -EINVAL;
}
}
if (table->enabled) {
- ret = clk_enable(c);
+ ret = clk_prepare_enable(c);
if (ret) {
- pr_warning("Unable to enable clock %s: %d\n",
+ pr_warn("Unable to enable clock %s: %d\n",
table->name, ret);
return -EINVAL;
}
@@ -383,19 +132,20 @@ void tegra_clk_init_from_table(struct tegra_clk_init_table *table)
for (; table->name; table++)
tegra_clk_init_one_from_table(table);
}
-EXPORT_SYMBOL(tegra_clk_init_from_table);
void tegra_periph_reset_deassert(struct clk *c)
{
- BUG_ON(!c->ops->reset);
- c->ops->reset(c, false);
+ struct clk_tegra *clk = to_clk_tegra(__clk_get_hw(c));
+ BUG_ON(!clk->reset);
+ clk->reset(__clk_get_hw(c), false);
}
EXPORT_SYMBOL(tegra_periph_reset_deassert);
void tegra_periph_reset_assert(struct clk *c)
{
- BUG_ON(!c->ops->reset);
- c->ops->reset(c, true);
+ struct clk_tegra *clk = to_clk_tegra(__clk_get_hw(c));
+ BUG_ON(!clk->reset);
+ clk->reset(__clk_get_hw(c), true);
}
EXPORT_SYMBOL(tegra_periph_reset_assert);
@@ -405,268 +155,14 @@ EXPORT_SYMBOL(tegra_periph_reset_assert);
int tegra_clk_cfg_ex(struct clk *c, enum tegra_clk_ex_param p, u32 setting)
{
int ret = 0;
- unsigned long flags;
+ struct clk_tegra *clk = to_clk_tegra(__clk_get_hw(c));
- spin_lock_irqsave(&c->spinlock, flags);
-
- if (!c->ops || !c->ops->clk_cfg_ex) {
+ if (!clk->clk_cfg_ex) {
ret = -ENOSYS;
goto out;
}
- ret = c->ops->clk_cfg_ex(c, p, setting);
+ ret = clk->clk_cfg_ex(__clk_get_hw(c), p, setting);
out:
- spin_unlock_irqrestore(&c->spinlock, flags);
-
return ret;
}
-
-#ifdef CONFIG_DEBUG_FS
-
-static int __clk_lock_all_spinlocks(void)
-{
- struct clk *c;
-
- list_for_each_entry(c, &clocks, node)
- if (!spin_trylock(&c->spinlock))
- goto unlock_spinlocks;
-
- return 0;
-
-unlock_spinlocks:
- list_for_each_entry_continue_reverse(c, &clocks, node)
- spin_unlock(&c->spinlock);
-
- return -EAGAIN;
-}
-
-static void __clk_unlock_all_spinlocks(void)
-{
- struct clk *c;
-
- list_for_each_entry_reverse(c, &clocks, node)
- spin_unlock(&c->spinlock);
-}
-
-/*
- * This function retries until it can take all locks, and may take
- * an arbitrarily long time to complete.
- * Must be called with irqs enabled, returns with irqs disabled
- * Must be called with clock_list_lock held
- */
-static void clk_lock_all(void)
-{
- int ret;
-retry:
- local_irq_disable();
-
- ret = __clk_lock_all_spinlocks();
- if (ret)
- goto failed_spinlocks;
-
- /* All locks taken successfully, return */
- return;
-
-failed_spinlocks:
- local_irq_enable();
- yield();
- goto retry;
-}
-
-/*
- * Unlocks all clocks after a clk_lock_all
- * Must be called with irqs disabled, returns with irqs enabled
- * Must be called with clock_list_lock held
- */
-static void clk_unlock_all(void)
-{
- __clk_unlock_all_spinlocks();
-
- local_irq_enable();
-}
-
-static struct dentry *clk_debugfs_root;
-
-
-static void clock_tree_show_one(struct seq_file *s, struct clk *c, int level)
-{
- struct clk *child;
- const char *state = "uninit";
- char div[8] = {0};
-
- if (c->state == ON)
- state = "on";
- else if (c->state == OFF)
- state = "off";
-
- if (c->mul != 0 && c->div != 0) {
- if (c->mul > c->div) {
- int mul = c->mul / c->div;
- int mul2 = (c->mul * 10 / c->div) % 10;
- int mul3 = (c->mul * 10) % c->div;
- if (mul2 == 0 && mul3 == 0)
- snprintf(div, sizeof(div), "x%d", mul);
- else if (mul3 == 0)
- snprintf(div, sizeof(div), "x%d.%d", mul, mul2);
- else
- snprintf(div, sizeof(div), "x%d.%d..", mul, mul2);
- } else {
- snprintf(div, sizeof(div), "%d%s", c->div / c->mul,
- (c->div % c->mul) ? ".5" : "");
- }
- }
-
- seq_printf(s, "%*s%c%c%-*s %-6s %-3d %-8s %-10lu\n",
- level * 3 + 1, "",
- c->rate > c->max_rate ? '!' : ' ',
- !c->set ? '*' : ' ',
- 30 - level * 3, c->name,
- state, c->refcnt, div, clk_get_rate_all_locked(c));
-
- list_for_each_entry(child, &clocks, node) {
- if (child->parent != c)
- continue;
-
- clock_tree_show_one(s, child, level + 1);
- }
-}
-
-static int clock_tree_show(struct seq_file *s, void *data)
-{
- struct clk *c;
- seq_printf(s, " clock state ref div rate\n");
- seq_printf(s, "--------------------------------------------------------------\n");
-
- mutex_lock(&clock_list_lock);
-
- clk_lock_all();
-
- list_for_each_entry(c, &clocks, node)
- if (c->parent == NULL)
- clock_tree_show_one(s, c, 0);
-
- clk_unlock_all();
-
- mutex_unlock(&clock_list_lock);
- return 0;
-}
-
-static int clock_tree_open(struct inode *inode, struct file *file)
-{
- return single_open(file, clock_tree_show, inode->i_private);
-}
-
-static const struct file_operations clock_tree_fops = {
- .open = clock_tree_open,
- .read = seq_read,
- .llseek = seq_lseek,
- .release = single_release,
-};
-
-static int possible_parents_show(struct seq_file *s, void *data)
-{
- struct clk *c = s->private;
- int i;
-
- for (i = 0; c->inputs[i].input; i++) {
- char *first = (i == 0) ? "" : " ";
- seq_printf(s, "%s%s", first, c->inputs[i].input->name);
- }
- seq_printf(s, "\n");
- return 0;
-}
-
-static int possible_parents_open(struct inode *inode, struct file *file)
-{
- return single_open(file, possible_parents_show, inode->i_private);
-}
-
-static const struct file_operations possible_parents_fops = {
- .open = possible_parents_open,
- .read = seq_read,
- .llseek = seq_lseek,
- .release = single_release,
-};
-
-static int clk_debugfs_register_one(struct clk *c)
-{
- struct dentry *d;
-
- d = debugfs_create_dir(c->name, clk_debugfs_root);
- if (!d)
- return -ENOMEM;
- c->dent = d;
-
- d = debugfs_create_u8("refcnt", S_IRUGO, c->dent, (u8 *)&c->refcnt);
- if (!d)
- goto err_out;
-
- d = debugfs_create_u32("rate", S_IRUGO, c->dent, (u32 *)&c->rate);
- if (!d)
- goto err_out;
-
- d = debugfs_create_x32("flags", S_IRUGO, c->dent, (u32 *)&c->flags);
- if (!d)
- goto err_out;
-
- if (c->inputs) {
- d = debugfs_create_file("possible_parents", S_IRUGO, c->dent,
- c, &possible_parents_fops);
- if (!d)
- goto err_out;
- }
-
- return 0;
-
-err_out:
- debugfs_remove_recursive(c->dent);
- return -ENOMEM;
-}
-
-static int clk_debugfs_register(struct clk *c)
-{
- int err;
- struct clk *pa = c->parent;
-
- if (pa && !pa->dent) {
- err = clk_debugfs_register(pa);
- if (err)
- return err;
- }
-
- if (!c->dent) {
- err = clk_debugfs_register_one(c);
- if (err)
- return err;
- }
- return 0;
-}
-
-int __init tegra_clk_debugfs_init(void)
-{
- struct clk *c;
- struct dentry *d;
- int err = -ENOMEM;
-
- d = debugfs_create_dir("clock", NULL);
- if (!d)
- return -ENOMEM;
- clk_debugfs_root = d;
-
- d = debugfs_create_file("clock_tree", S_IRUGO, clk_debugfs_root, NULL,
- &clock_tree_fops);
- if (!d)
- goto err_out;
-
- list_for_each_entry(c, &clocks, node) {
- err = clk_debugfs_register(c);
- if (err)
- goto err_out;
- }
- return 0;
-err_out:
- debugfs_remove_recursive(clk_debugfs_root);
- return err;
-}
-
-#endif
diff --git a/arch/arm/mach-tegra/clock.h b/arch/arm/mach-tegra/clock.h
index bc300657deb..2aa37f5c44c 100644
--- a/arch/arm/mach-tegra/clock.h
+++ b/arch/arm/mach-tegra/clock.h
@@ -2,6 +2,7 @@
* arch/arm/mach-tegra/include/mach/clock.h
*
* Copyright (C) 2010 Google, Inc.
+ * Copyright (c) 2012 NVIDIA CORPORATION. All rights reserved.
*
* Author:
* Colin Cross <ccross@google.com>
@@ -20,9 +21,9 @@
#ifndef __MACH_TEGRA_CLOCK_H
#define __MACH_TEGRA_CLOCK_H
+#include <linux/clk-provider.h>
#include <linux/clkdev.h>
#include <linux/list.h>
-#include <linux/spinlock.h>
#include <mach/clk.h>
@@ -52,7 +53,8 @@
#define ENABLE_ON_INIT (1 << 28)
#define PERIPH_ON_APB (1 << 29)
-struct clk;
+struct clk_tegra;
+#define to_clk_tegra(_hw) container_of(_hw, struct clk_tegra, hw)
struct clk_mux_sel {
struct clk *input;
@@ -68,47 +70,29 @@ struct clk_pll_freq_table {
u8 cpcon;
};
-struct clk_ops {
- void (*init)(struct clk *);
- int (*enable)(struct clk *);
- void (*disable)(struct clk *);
- int (*set_parent)(struct clk *, struct clk *);
- int (*set_rate)(struct clk *, unsigned long);
- long (*round_rate)(struct clk *, unsigned long);
- void (*reset)(struct clk *, bool);
- int (*clk_cfg_ex)(struct clk *,
- enum tegra_clk_ex_param, u32);
-};
-
enum clk_state {
UNINITIALIZED = 0,
ON,
OFF,
};
-struct clk {
+struct clk_tegra {
/* node for master clocks list */
- struct list_head node; /* node for list of all clocks */
+ struct list_head node; /* node for list of all clocks */
struct clk_lookup lookup;
+ struct clk_hw hw;
-#ifdef CONFIG_DEBUG_FS
- struct dentry *dent;
-#endif
bool set;
- struct clk_ops *ops;
- unsigned long rate;
+ unsigned long fixed_rate;
unsigned long max_rate;
unsigned long min_rate;
u32 flags;
const char *name;
- u32 refcnt;
enum clk_state state;
- struct clk *parent;
u32 div;
u32 mul;
- const struct clk_mux_sel *inputs;
u32 reg;
u32 reg_shift;
@@ -144,7 +128,8 @@ struct clk {
} shared_bus_user;
} u;
- spinlock_t spinlock;
+ void (*reset)(struct clk_hw *, bool);
+ int (*clk_cfg_ex)(struct clk_hw *, enum tegra_clk_ex_param, u32);
};
struct clk_duplicate {
@@ -159,13 +144,10 @@ struct tegra_clk_init_table {
bool enabled;
};
+void tegra_clk_add(struct clk *c);
void tegra2_init_clocks(void);
void tegra30_init_clocks(void);
-void clk_init(struct clk *clk);
struct clk *tegra_get_clock_by_name(const char *name);
-int clk_reparent(struct clk *c, struct clk *parent);
void tegra_clk_init_from_table(struct tegra_clk_init_table *table);
-unsigned long clk_get_rate_locked(struct clk *c);
-int clk_set_rate_locked(struct clk *c, unsigned long rate);
#endif
diff --git a/arch/arm/mach-tegra/common.c b/arch/arm/mach-tegra/common.c
index 96fef6bcc65..0b0a5f556d3 100644
--- a/arch/arm/mach-tegra/common.c
+++ b/arch/arm/mach-tegra/common.c
@@ -31,9 +31,11 @@
#include "board.h"
#include "clock.h"
+#include "common.h"
#include "fuse.h"
#include "pmc.h"
#include "apbio.h"
+#include "sleep.h"
/*
* Storage for debug-macro.S's state.
@@ -135,6 +137,7 @@ void __init tegra20_init_early(void)
tegra_init_cache(0x331, 0x441);
tegra_pmc_init();
tegra_powergate_init();
+ tegra20_hotplug_init();
}
#endif
#ifdef CONFIG_ARCH_TEGRA_3x_SOC
@@ -147,11 +150,11 @@ void __init tegra30_init_early(void)
tegra_init_cache(0x441, 0x551);
tegra_pmc_init();
tegra_powergate_init();
+ tegra30_hotplug_init();
}
#endif
void __init tegra_init_late(void)
{
- tegra_clk_debugfs_init();
tegra_powergate_debugfs_init();
}
diff --git a/arch/arm/mach-tegra/common.h b/arch/arm/mach-tegra/common.h
new file mode 100644
index 00000000000..02f71b4f1e5
--- /dev/null
+++ b/arch/arm/mach-tegra/common.h
@@ -0,0 +1,4 @@
+extern struct smp_operations tegra_smp_ops;
+
+extern void tegra_cpu_die(unsigned int cpu);
+extern int tegra_cpu_disable(unsigned int cpu);
diff --git a/arch/arm/mach-tegra/cpu-tegra.c b/arch/arm/mach-tegra/cpu-tegra.c
index ceb52db1e2f..627bf0f4262 100644
--- a/arch/arm/mach-tegra/cpu-tegra.c
+++ b/arch/arm/mach-tegra/cpu-tegra.c
@@ -49,6 +49,8 @@ static struct cpufreq_frequency_table freq_table[] = {
#define NUM_CPUS 2
static struct clk *cpu_clk;
+static struct clk *pll_x_clk;
+static struct clk *pll_p_clk;
static struct clk *emc_clk;
static unsigned long target_cpu_speed[NUM_CPUS];
@@ -71,6 +73,42 @@ static unsigned int tegra_getspeed(unsigned int cpu)
return rate;
}
+static int tegra_cpu_clk_set_rate(unsigned long rate)
+{
+ int ret;
+
+ /*
+ * Take an extra reference to the main pll so it doesn't turn
+ * off when we move the cpu off of it
+ */
+ clk_prepare_enable(pll_x_clk);
+
+ ret = clk_set_parent(cpu_clk, pll_p_clk);
+ if (ret) {
+ pr_err("Failed to switch cpu to clock pll_p\n");
+ goto out;
+ }
+
+ if (rate == clk_get_rate(pll_p_clk))
+ goto out;
+
+ ret = clk_set_rate(pll_x_clk, rate);
+ if (ret) {
+ pr_err("Failed to change pll_x to %lu\n", rate);
+ goto out;
+ }
+
+ ret = clk_set_parent(cpu_clk, pll_x_clk);
+ if (ret) {
+ pr_err("Failed to switch cpu to clock pll_x\n");
+ goto out;
+ }
+
+out:
+ clk_disable_unprepare(pll_x_clk);
+ return ret;
+}
+
static int tegra_update_cpu_speed(unsigned long rate)
{
int ret = 0;
@@ -101,7 +139,7 @@ static int tegra_update_cpu_speed(unsigned long rate)
freqs.old, freqs.new);
#endif
- ret = clk_set_rate(cpu_clk, freqs.new * 1000);
+ ret = tegra_cpu_clk_set_rate(freqs.new * 1000);
if (ret) {
pr_err("cpu-tegra: Failed to set cpu frequency to %d kHz\n",
freqs.new);
@@ -183,6 +221,14 @@ static int tegra_cpu_init(struct cpufreq_policy *policy)
if (IS_ERR(cpu_clk))
return PTR_ERR(cpu_clk);
+ pll_x_clk = clk_get_sys(NULL, "pll_x");
+ if (IS_ERR(pll_x_clk))
+ return PTR_ERR(pll_x_clk);
+
+ pll_p_clk = clk_get_sys(NULL, "pll_p");
+ if (IS_ERR(pll_p_clk))
+ return PTR_ERR(pll_p_clk);
+
emc_clk = clk_get_sys("cpu", "emc");
if (IS_ERR(emc_clk)) {
clk_put(cpu_clk);
diff --git a/arch/arm/mach-tegra/devices.c b/arch/arm/mach-tegra/devices.c
deleted file mode 100644
index c70e65ffa36..00000000000
--- a/arch/arm/mach-tegra/devices.c
+++ /dev/null
@@ -1,702 +0,0 @@
-/*
- * Copyright (C) 2010,2011 Google, Inc.
- *
- * Author:
- * Colin Cross <ccross@android.com>
- * Erik Gilling <ccross@android.com>
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-
-#include <linux/resource.h>
-#include <linux/platform_device.h>
-#include <linux/dma-mapping.h>
-#include <linux/fsl_devices.h>
-#include <linux/serial_8250.h>
-#include <linux/i2c-tegra.h>
-#include <asm/pmu.h>
-#include <mach/irqs.h>
-#include <mach/iomap.h>
-#include <mach/dma.h>
-#include <mach/usb_phy.h>
-
-#include "gpio-names.h"
-#include "devices.h"
-
-static struct resource gpio_resource[] = {
- [0] = {
- .start = TEGRA_GPIO_BASE,
- .end = TEGRA_GPIO_BASE + TEGRA_GPIO_SIZE-1,
- .flags = IORESOURCE_MEM,
- },
- [1] = {
- .start = INT_GPIO1,
- .end = INT_GPIO1,
- .flags = IORESOURCE_IRQ,
- },
- [2] = {
- .start = INT_GPIO2,
- .end = INT_GPIO2,
- .flags = IORESOURCE_IRQ,
- },
- [3] = {
- .start = INT_GPIO3,
- .end = INT_GPIO3,
- .flags = IORESOURCE_IRQ,
- },
- [4] = {
- .start = INT_GPIO4,
- .end = INT_GPIO4,
- .flags = IORESOURCE_IRQ,
- },
- [5] = {
- .start = INT_GPIO5,
- .end = INT_GPIO5,
- .flags = IORESOURCE_IRQ,
- },
- [6] = {
- .start = INT_GPIO6,
- .end = INT_GPIO6,
- .flags = IORESOURCE_IRQ,
- },
- [7] = {
- .start = INT_GPIO7,
- .end = INT_GPIO7,
- .flags = IORESOURCE_IRQ,
- },
-};
-
-struct platform_device tegra_gpio_device = {
- .name = "tegra-gpio",
- .id = -1,
- .resource = gpio_resource,
- .num_resources = ARRAY_SIZE(gpio_resource),
-};
-
-static struct resource pinmux_resource[] = {
- [0] = {
- /* Tri-state registers */
- .start = TEGRA_APB_MISC_BASE + 0x14,
- .end = TEGRA_APB_MISC_BASE + 0x20 + 3,
- .flags = IORESOURCE_MEM,
- },
- [1] = {
- /* Mux registers */
- .start = TEGRA_APB_MISC_BASE + 0x80,
- .end = TEGRA_APB_MISC_BASE + 0x9c + 3,
- .flags = IORESOURCE_MEM,
- },
- [2] = {
- /* Pull-up/down registers */
- .start = TEGRA_APB_MISC_BASE + 0xa0,
- .end = TEGRA_APB_MISC_BASE + 0xb0 + 3,
- .flags = IORESOURCE_MEM,
- },
- [3] = {
- /* Pad control registers */
- .start = TEGRA_APB_MISC_BASE + 0x868,
- .end = TEGRA_APB_MISC_BASE + 0x90c + 3,
- .flags = IORESOURCE_MEM,
- },
-};
-
-struct platform_device tegra_pinmux_device = {
- .name = "tegra20-pinctrl",
- .id = -1,
- .resource = pinmux_resource,
- .num_resources = ARRAY_SIZE(pinmux_resource),
-};
-
-static struct resource i2c_resource1[] = {
- [0] = {
- .start = INT_I2C,
- .end = INT_I2C,
- .flags = IORESOURCE_IRQ,
- },
- [1] = {
- .start = TEGRA_I2C_BASE,
- .end = TEGRA_I2C_BASE + TEGRA_I2C_SIZE-1,
- .flags = IORESOURCE_MEM,
- },
-};
-
-static struct resource i2c_resource2[] = {
- [0] = {
- .start = INT_I2C2,
- .end = INT_I2C2,
- .flags = IORESOURCE_IRQ,
- },
- [1] = {
- .start = TEGRA_I2C2_BASE,
- .end = TEGRA_I2C2_BASE + TEGRA_I2C2_SIZE-1,
- .flags = IORESOURCE_MEM,
- },
-};
-
-static struct resource i2c_resource3[] = {
- [0] = {
- .start = INT_I2C3,
- .end = INT_I2C3,
- .flags = IORESOURCE_IRQ,
- },
- [1] = {
- .start = TEGRA_I2C3_BASE,
- .end = TEGRA_I2C3_BASE + TEGRA_I2C3_SIZE-1,
- .flags = IORESOURCE_MEM,
- },
-};
-
-static struct resource i2c_resource4[] = {
- [0] = {
- .start = INT_DVC,
- .end = INT_DVC,
- .flags = IORESOURCE_IRQ,
- },
- [1] = {
- .start = TEGRA_DVC_BASE,
- .end = TEGRA_DVC_BASE + TEGRA_DVC_SIZE-1,
- .flags = IORESOURCE_MEM,
- },
-};
-
-static struct tegra_i2c_platform_data tegra_i2c1_platform_data = {
- .bus_clk_rate = 400000,
-};
-
-static struct tegra_i2c_platform_data tegra_i2c2_platform_data = {
- .bus_clk_rate = 400000,
-};
-
-static struct tegra_i2c_platform_data tegra_i2c3_platform_data = {
- .bus_clk_rate = 400000,
-};
-
-static struct tegra_i2c_platform_data tegra_dvc_platform_data = {
- .bus_clk_rate = 400000,
-};
-
-struct platform_device tegra_i2c_device1 = {
- .name = "tegra-i2c",
- .id = 0,
- .resource = i2c_resource1,
- .num_resources = ARRAY_SIZE(i2c_resource1),
- .dev = {
- .platform_data = &tegra_i2c1_platform_data,
- },
-};
-
-struct platform_device tegra_i2c_device2 = {
- .name = "tegra-i2c",
- .id = 1,
- .resource = i2c_resource2,
- .num_resources = ARRAY_SIZE(i2c_resource2),
- .dev = {
- .platform_data = &tegra_i2c2_platform_data,
- },
-};
-
-struct platform_device tegra_i2c_device3 = {
- .name = "tegra-i2c",
- .id = 2,
- .resource = i2c_resource3,
- .num_resources = ARRAY_SIZE(i2c_resource3),
- .dev = {
- .platform_data = &tegra_i2c3_platform_data,
- },
-};
-
-struct platform_device tegra_i2c_device4 = {
- .name = "tegra-i2c",
- .id = 3,
- .resource = i2c_resource4,
- .num_resources = ARRAY_SIZE(i2c_resource4),
- .dev = {
- .platform_data = &tegra_dvc_platform_data,
- },
-};
-
-static struct resource spi_resource1[] = {
- [0] = {
- .start = INT_S_LINK1,
- .end = INT_S_LINK1,
- .flags = IORESOURCE_IRQ,
- },
- [1] = {
- .start = TEGRA_SPI1_BASE,
- .end = TEGRA_SPI1_BASE + TEGRA_SPI1_SIZE-1,
- .flags = IORESOURCE_MEM,
- },
-};
-
-static struct resource spi_resource2[] = {
- [0] = {
- .start = INT_SPI_2,
- .end = INT_SPI_2,
- .flags = IORESOURCE_IRQ,
- },
- [1] = {
- .start = TEGRA_SPI2_BASE,
- .end = TEGRA_SPI2_BASE + TEGRA_SPI2_SIZE-1,
- .flags = IORESOURCE_MEM,
- },
-};
-
-static struct resource spi_resource3[] = {
- [0] = {
- .start = INT_SPI_3,
- .end = INT_SPI_3,
- .flags = IORESOURCE_IRQ,
- },
- [1] = {
- .start = TEGRA_SPI3_BASE,
- .end = TEGRA_SPI3_BASE + TEGRA_SPI3_SIZE-1,
- .flags = IORESOURCE_MEM,
- },
-};
-
-static struct resource spi_resource4[] = {
- [0] = {
- .start = INT_SPI_4,
- .end = INT_SPI_4,
- .flags = IORESOURCE_IRQ,
- },
- [1] = {
- .start = TEGRA_SPI4_BASE,
- .end = TEGRA_SPI4_BASE + TEGRA_SPI4_SIZE-1,
- .flags = IORESOURCE_MEM,
- },
-};
-
-struct platform_device tegra_spi_device1 = {
- .name = "spi_tegra",
- .id = 0,
- .resource = spi_resource1,
- .num_resources = ARRAY_SIZE(spi_resource1),
- .dev = {
- .coherent_dma_mask = 0xffffffff,
- },
-};
-
-struct platform_device tegra_spi_device2 = {
- .name = "spi_tegra",
- .id = 1,
- .resource = spi_resource2,
- .num_resources = ARRAY_SIZE(spi_resource2),
- .dev = {
- .coherent_dma_mask = 0xffffffff,
- },
-};
-
-struct platform_device tegra_spi_device3 = {
- .name = "spi_tegra",
- .id = 2,
- .resource = spi_resource3,
- .num_resources = ARRAY_SIZE(spi_resource3),
- .dev = {
- .coherent_dma_mask = 0xffffffff,
- },
-};
-
-struct platform_device tegra_spi_device4 = {
- .name = "spi_tegra",
- .id = 3,
- .resource = spi_resource4,
- .num_resources = ARRAY_SIZE(spi_resource4),
- .dev = {
- .coherent_dma_mask = 0xffffffff,
- },
-};
-
-
-static struct resource sdhci_resource1[] = {
- [0] = {
- .start = INT_SDMMC1,
- .end = INT_SDMMC1,
- .flags = IORESOURCE_IRQ,
- },
- [1] = {
- .start = TEGRA_SDMMC1_BASE,
- .end = TEGRA_SDMMC1_BASE + TEGRA_SDMMC1_SIZE-1,
- .flags = IORESOURCE_MEM,
- },
-};
-
-static struct resource sdhci_resource2[] = {
- [0] = {
- .start = INT_SDMMC2,
- .end = INT_SDMMC2,
- .flags = IORESOURCE_IRQ,
- },
- [1] = {
- .start = TEGRA_SDMMC2_BASE,
- .end = TEGRA_SDMMC2_BASE + TEGRA_SDMMC2_SIZE-1,
- .flags = IORESOURCE_MEM,
- },
-};
-
-static struct resource sdhci_resource3[] = {
- [0] = {
- .start = INT_SDMMC3,
- .end = INT_SDMMC3,
- .flags = IORESOURCE_IRQ,
- },
- [1] = {
- .start = TEGRA_SDMMC3_BASE,
- .end = TEGRA_SDMMC3_BASE + TEGRA_SDMMC3_SIZE-1,
- .flags = IORESOURCE_MEM,
- },
-};
-
-static struct resource sdhci_resource4[] = {
- [0] = {
- .start = INT_SDMMC4,
- .end = INT_SDMMC4,
- .flags = IORESOURCE_IRQ,
- },
- [1] = {
- .start = TEGRA_SDMMC4_BASE,
- .end = TEGRA_SDMMC4_BASE + TEGRA_SDMMC4_SIZE-1,
- .flags = IORESOURCE_MEM,
- },
-};
-
-/* board files should fill in platform_data register the devices themselvs.
- * See board-harmony.c for an example
- */
-struct platform_device tegra_sdhci_device1 = {
- .name = "sdhci-tegra",
- .id = 0,
- .resource = sdhci_resource1,
- .num_resources = ARRAY_SIZE(sdhci_resource1),
-};
-
-struct platform_device tegra_sdhci_device2 = {
- .name = "sdhci-tegra",
- .id = 1,
- .resource = sdhci_resource2,
- .num_resources = ARRAY_SIZE(sdhci_resource2),
-};
-
-struct platform_device tegra_sdhci_device3 = {
- .name = "sdhci-tegra",
- .id = 2,
- .resource = sdhci_resource3,
- .num_resources = ARRAY_SIZE(sdhci_resource3),
-};
-
-struct platform_device tegra_sdhci_device4 = {
- .name = "sdhci-tegra",
- .id = 3,
- .resource = sdhci_resource4,
- .num_resources = ARRAY_SIZE(sdhci_resource4),
-};
-
-static struct resource tegra_usb1_resources[] = {
- [0] = {
- .start = TEGRA_USB_BASE,
- .end = TEGRA_USB_BASE + TEGRA_USB_SIZE - 1,
- .flags = IORESOURCE_MEM,
- },
- [1] = {
- .start = INT_USB,
- .end = INT_USB,
- .flags = IORESOURCE_IRQ,
- },
-};
-
-static struct resource tegra_usb2_resources[] = {
- [0] = {
- .start = TEGRA_USB2_BASE,
- .end = TEGRA_USB2_BASE + TEGRA_USB2_SIZE - 1,
- .flags = IORESOURCE_MEM,
- },
- [1] = {
- .start = INT_USB2,
- .end = INT_USB2,
- .flags = IORESOURCE_IRQ,
- },
-};
-
-static struct resource tegra_usb3_resources[] = {
- [0] = {
- .start = TEGRA_USB3_BASE,
- .end = TEGRA_USB3_BASE + TEGRA_USB3_SIZE - 1,
- .flags = IORESOURCE_MEM,
- },
- [1] = {
- .start = INT_USB3,
- .end = INT_USB3,
- .flags = IORESOURCE_IRQ,
- },
-};
-
-struct tegra_ulpi_config tegra_ehci2_ulpi_phy_config = {
- .reset_gpio = -1,
- .clk = "cdev2",
-};
-
-struct tegra_ehci_platform_data tegra_ehci1_pdata = {
- .operating_mode = TEGRA_USB_OTG,
- .power_down_on_bus_suspend = 1,
- .vbus_gpio = -1,
-};
-
-struct tegra_ehci_platform_data tegra_ehci2_pdata = {
- .phy_config = &tegra_ehci2_ulpi_phy_config,
- .operating_mode = TEGRA_USB_HOST,
- .power_down_on_bus_suspend = 1,
- .vbus_gpio = -1,
-};
-
-struct tegra_ehci_platform_data tegra_ehci3_pdata = {
- .operating_mode = TEGRA_USB_HOST,
- .power_down_on_bus_suspend = 1,
- .vbus_gpio = -1,
-};
-
-static u64 tegra_ehci_dmamask = DMA_BIT_MASK(32);
-
-struct platform_device tegra_ehci1_device = {
- .name = "tegra-ehci",
- .id = 0,
- .dev = {
- .dma_mask = &tegra_ehci_dmamask,
- .coherent_dma_mask = DMA_BIT_MASK(32),
- .platform_data = &tegra_ehci1_pdata,
- },
- .resource = tegra_usb1_resources,
- .num_resources = ARRAY_SIZE(tegra_usb1_resources),
-};
-
-struct platform_device tegra_ehci2_device = {
- .name = "tegra-ehci",
- .id = 1,
- .dev = {
- .dma_mask = &tegra_ehci_dmamask,
- .coherent_dma_mask = DMA_BIT_MASK(32),
- .platform_data = &tegra_ehci2_pdata,
- },
- .resource = tegra_usb2_resources,
- .num_resources = ARRAY_SIZE(tegra_usb2_resources),
-};
-
-struct platform_device tegra_ehci3_device = {
- .name = "tegra-ehci",
- .id = 2,
- .dev = {
- .dma_mask = &tegra_ehci_dmamask,
- .coherent_dma_mask = DMA_BIT_MASK(32),
- .platform_data = &tegra_ehci3_pdata,
- },
- .resource = tegra_usb3_resources,
- .num_resources = ARRAY_SIZE(tegra_usb3_resources),
-};
-
-static struct resource tegra_pmu_resources[] = {
- [0] = {
- .start = INT_CPU0_PMU_INTR,
- .end = INT_CPU0_PMU_INTR,
- .flags = IORESOURCE_IRQ,
- },
- [1] = {
- .start = INT_CPU1_PMU_INTR,
- .end = INT_CPU1_PMU_INTR,
- .flags = IORESOURCE_IRQ,
- },
-};
-
-struct platform_device tegra_pmu_device = {
- .name = "arm-pmu",
- .id = ARM_PMU_DEVICE_CPU,
- .num_resources = ARRAY_SIZE(tegra_pmu_resources),
- .resource = tegra_pmu_resources,
-};
-
-static struct resource tegra_uarta_resources[] = {
- [0] = {
- .start = TEGRA_UARTA_BASE,
- .end = TEGRA_UARTA_BASE + TEGRA_UARTA_SIZE - 1,
- .flags = IORESOURCE_MEM,
- },
- [1] = {
- .start = INT_UARTA,
- .end = INT_UARTA,
- .flags = IORESOURCE_IRQ,
- },
-};
-
-static struct resource tegra_uartb_resources[] = {
- [0] = {
- .start = TEGRA_UARTB_BASE,
- .end = TEGRA_UARTB_BASE + TEGRA_UARTB_SIZE - 1,
- .flags = IORESOURCE_MEM,
- },
- [1] = {
- .start = INT_UARTB,
- .end = INT_UARTB,
- .flags = IORESOURCE_IRQ,
- },
-};
-
-static struct resource tegra_uartc_resources[] = {
- [0] = {
- .start = TEGRA_UARTC_BASE,
- .end = TEGRA_UARTC_BASE + TEGRA_UARTC_SIZE - 1,
- .flags = IORESOURCE_MEM,
- },
- [1] = {
- .start = INT_UARTC,
- .end = INT_UARTC,
- .flags = IORESOURCE_IRQ,
- },
-};
-
-static struct resource tegra_uartd_resources[] = {
- [0] = {
- .start = TEGRA_UARTD_BASE,
- .end = TEGRA_UARTD_BASE + TEGRA_UARTD_SIZE - 1,
- .flags = IORESOURCE_MEM,
- },
- [1] = {
- .start = INT_UARTD,
- .end = INT_UARTD,
- .flags = IORESOURCE_IRQ,
- },
-};
-
-static struct resource tegra_uarte_resources[] = {
- [0] = {
- .start = TEGRA_UARTE_BASE,
- .end = TEGRA_UARTE_BASE + TEGRA_UARTE_SIZE - 1,
- .flags = IORESOURCE_MEM,
- },
- [1] = {
- .start = INT_UARTE,
- .end = INT_UARTE,
- .flags = IORESOURCE_IRQ,
- },
-};
-
-struct platform_device tegra_uarta_device = {
- .name = "tegra_uart",
- .id = 0,
- .num_resources = ARRAY_SIZE(tegra_uarta_resources),
- .resource = tegra_uarta_resources,
- .dev = {
- .coherent_dma_mask = DMA_BIT_MASK(32),
- },
-};
-
-struct platform_device tegra_uartb_device = {
- .name = "tegra_uart",
- .id = 1,
- .num_resources = ARRAY_SIZE(tegra_uartb_resources),
- .resource = tegra_uartb_resources,
- .dev = {
- .coherent_dma_mask = DMA_BIT_MASK(32),
- },
-};
-
-struct platform_device tegra_uartc_device = {
- .name = "tegra_uart",
- .id = 2,
- .num_resources = ARRAY_SIZE(tegra_uartc_resources),
- .resource = tegra_uartc_resources,
- .dev = {
- .coherent_dma_mask = DMA_BIT_MASK(32),
- },
-};
-
-struct platform_device tegra_uartd_device = {
- .name = "tegra_uart",
- .id = 3,
- .num_resources = ARRAY_SIZE(tegra_uartd_resources),
- .resource = tegra_uartd_resources,
- .dev = {
- .coherent_dma_mask = DMA_BIT_MASK(32),
- },
-};
-
-struct platform_device tegra_uarte_device = {
- .name = "tegra_uart",
- .id = 4,
- .num_resources = ARRAY_SIZE(tegra_uarte_resources),
- .resource = tegra_uarte_resources,
- .dev = {
- .coherent_dma_mask = DMA_BIT_MASK(32),
- },
-};
-
-static struct resource i2s_resource1[] = {
- [0] = {
- .start = INT_I2S1,
- .end = INT_I2S1,
- .flags = IORESOURCE_IRQ
- },
- [1] = {
- .start = TEGRA_DMA_REQ_SEL_I2S_1,
- .end = TEGRA_DMA_REQ_SEL_I2S_1,
- .flags = IORESOURCE_DMA
- },
- [2] = {
- .start = TEGRA_I2S1_BASE,
- .end = TEGRA_I2S1_BASE + TEGRA_I2S1_SIZE - 1,
- .flags = IORESOURCE_MEM
- }
-};
-
-static struct resource i2s_resource2[] = {
- [0] = {
- .start = INT_I2S2,
- .end = INT_I2S2,
- .flags = IORESOURCE_IRQ
- },
- [1] = {
- .start = TEGRA_DMA_REQ_SEL_I2S2_1,
- .end = TEGRA_DMA_REQ_SEL_I2S2_1,
- .flags = IORESOURCE_DMA
- },
- [2] = {
- .start = TEGRA_I2S2_BASE,
- .end = TEGRA_I2S2_BASE + TEGRA_I2S2_SIZE - 1,
- .flags = IORESOURCE_MEM
- }
-};
-
-struct platform_device tegra_i2s_device1 = {
- .name = "tegra20-i2s",
- .id = 0,
- .resource = i2s_resource1,
- .num_resources = ARRAY_SIZE(i2s_resource1),
-};
-
-struct platform_device tegra_i2s_device2 = {
- .name = "tegra20-i2s",
- .id = 1,
- .resource = i2s_resource2,
- .num_resources = ARRAY_SIZE(i2s_resource2),
-};
-
-static struct resource tegra_das_resources[] = {
- [0] = {
- .start = TEGRA_APB_MISC_DAS_BASE,
- .end = TEGRA_APB_MISC_DAS_BASE + TEGRA_APB_MISC_DAS_SIZE - 1,
- .flags = IORESOURCE_MEM,
- },
-};
-
-struct platform_device tegra_das_device = {
- .name = "tegra20-das",
- .id = -1,
- .num_resources = ARRAY_SIZE(tegra_das_resources),
- .resource = tegra_das_resources,
-};
diff --git a/arch/arm/mach-tegra/devices.h b/arch/arm/mach-tegra/devices.h
deleted file mode 100644
index 4f505272649..00000000000
--- a/arch/arm/mach-tegra/devices.h
+++ /dev/null
@@ -1,60 +0,0 @@
-/*
- * Copyright (C) 2010,2011 Google, Inc.
- *
- * Author:
- * Colin Cross <ccross@android.com>
- * Erik Gilling <ccross@android.com>
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-#ifndef __MACH_TEGRA_DEVICES_H
-#define __MACH_TEGRA_DEVICES_H
-
-#include <linux/platform_device.h>
-#include <linux/platform_data/tegra_usb.h>
-
-#include <mach/usb_phy.h>
-
-extern struct tegra_ulpi_config tegra_ehci2_ulpi_phy_config;
-
-extern struct tegra_ehci_platform_data tegra_ehci1_pdata;
-extern struct tegra_ehci_platform_data tegra_ehci2_pdata;
-extern struct tegra_ehci_platform_data tegra_ehci3_pdata;
-
-extern struct platform_device tegra_gpio_device;
-extern struct platform_device tegra_pinmux_device;
-extern struct platform_device tegra_sdhci_device1;
-extern struct platform_device tegra_sdhci_device2;
-extern struct platform_device tegra_sdhci_device3;
-extern struct platform_device tegra_sdhci_device4;
-extern struct platform_device tegra_i2c_device1;
-extern struct platform_device tegra_i2c_device2;
-extern struct platform_device tegra_i2c_device3;
-extern struct platform_device tegra_i2c_device4;
-extern struct platform_device tegra_spi_device1;
-extern struct platform_device tegra_spi_device2;
-extern struct platform_device tegra_spi_device3;
-extern struct platform_device tegra_spi_device4;
-extern struct platform_device tegra_ehci1_device;
-extern struct platform_device tegra_ehci2_device;
-extern struct platform_device tegra_ehci3_device;
-extern struct platform_device tegra_uarta_device;
-extern struct platform_device tegra_uartb_device;
-extern struct platform_device tegra_uartc_device;
-extern struct platform_device tegra_uartd_device;
-extern struct platform_device tegra_uarte_device;
-extern struct platform_device tegra_pmu_device;
-extern struct platform_device tegra_i2s_device1;
-extern struct platform_device tegra_i2s_device2;
-extern struct platform_device tegra_das_device;
-
-#endif
diff --git a/arch/arm/mach-tegra/dma.c b/arch/arm/mach-tegra/dma.c
deleted file mode 100644
index 29c5114d607..00000000000
--- a/arch/arm/mach-tegra/dma.c
+++ /dev/null
@@ -1,823 +0,0 @@
-/*
- * arch/arm/mach-tegra/dma.c
- *
- * System DMA driver for NVIDIA Tegra SoCs
- *
- * Copyright (c) 2008-2009, NVIDIA 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.,
- * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
- */
-
-#include <linux/io.h>
-#include <linux/interrupt.h>
-#include <linux/module.h>
-#include <linux/spinlock.h>
-#include <linux/err.h>
-#include <linux/irq.h>
-#include <linux/delay.h>
-#include <linux/clk.h>
-#include <mach/dma.h>
-#include <mach/irqs.h>
-#include <mach/iomap.h>
-#include <mach/suspend.h>
-
-#include "apbio.h"
-
-#define APB_DMA_GEN 0x000
-#define GEN_ENABLE (1<<31)
-
-#define APB_DMA_CNTRL 0x010
-
-#define APB_DMA_IRQ_MASK 0x01c
-
-#define APB_DMA_IRQ_MASK_SET 0x020
-
-#define APB_DMA_CHAN_CSR 0x000
-#define CSR_ENB (1<<31)
-#define CSR_IE_EOC (1<<30)
-#define CSR_HOLD (1<<29)
-#define CSR_DIR (1<<28)
-#define CSR_ONCE (1<<27)
-#define CSR_FLOW (1<<21)
-#define CSR_REQ_SEL_SHIFT 16
-#define CSR_WCOUNT_SHIFT 2
-#define CSR_WCOUNT_MASK 0xFFFC
-
-#define APB_DMA_CHAN_STA 0x004
-#define STA_BUSY (1<<31)
-#define STA_ISE_EOC (1<<30)
-#define STA_HALT (1<<29)
-#define STA_PING_PONG (1<<28)
-#define STA_COUNT_SHIFT 2
-#define STA_COUNT_MASK 0xFFFC
-
-#define APB_DMA_CHAN_AHB_PTR 0x010
-
-#define APB_DMA_CHAN_AHB_SEQ 0x014
-#define AHB_SEQ_INTR_ENB (1<<31)
-#define AHB_SEQ_BUS_WIDTH_SHIFT 28
-#define AHB_SEQ_BUS_WIDTH_MASK (0x7<<AHB_SEQ_BUS_WIDTH_SHIFT)
-#define AHB_SEQ_BUS_WIDTH_8 (0<<AHB_SEQ_BUS_WIDTH_SHIFT)
-#define AHB_SEQ_BUS_WIDTH_16 (1<<AHB_SEQ_BUS_WIDTH_SHIFT)
-#define AHB_SEQ_BUS_WIDTH_32 (2<<AHB_SEQ_BUS_WIDTH_SHIFT)
-#define AHB_SEQ_BUS_WIDTH_64 (3<<AHB_SEQ_BUS_WIDTH_SHIFT)
-#define AHB_SEQ_BUS_WIDTH_128 (4<<AHB_SEQ_BUS_WIDTH_SHIFT)
-#define AHB_SEQ_DATA_SWAP (1<<27)
-#define AHB_SEQ_BURST_MASK (0x7<<24)
-#define AHB_SEQ_BURST_1 (4<<24)
-#define AHB_SEQ_BURST_4 (5<<24)
-#define AHB_SEQ_BURST_8 (6<<24)
-#define AHB_SEQ_DBL_BUF (1<<19)
-#define AHB_SEQ_WRAP_SHIFT 16
-#define AHB_SEQ_WRAP_MASK (0x7<<AHB_SEQ_WRAP_SHIFT)
-
-#define APB_DMA_CHAN_APB_PTR 0x018
-
-#define APB_DMA_CHAN_APB_SEQ 0x01c
-#define APB_SEQ_BUS_WIDTH_SHIFT 28
-#define APB_SEQ_BUS_WIDTH_MASK (0x7<<APB_SEQ_BUS_WIDTH_SHIFT)
-#define APB_SEQ_BUS_WIDTH_8 (0<<APB_SEQ_BUS_WIDTH_SHIFT)
-#define APB_SEQ_BUS_WIDTH_16 (1<<APB_SEQ_BUS_WIDTH_SHIFT)
-#define APB_SEQ_BUS_WIDTH_32 (2<<APB_SEQ_BUS_WIDTH_SHIFT)
-#define APB_SEQ_BUS_WIDTH_64 (3<<APB_SEQ_BUS_WIDTH_SHIFT)
-#define APB_SEQ_BUS_WIDTH_128 (4<<APB_SEQ_BUS_WIDTH_SHIFT)
-#define APB_SEQ_DATA_SWAP (1<<27)
-#define APB_SEQ_WRAP_SHIFT 16
-#define APB_SEQ_WRAP_MASK (0x7<<APB_SEQ_WRAP_SHIFT)
-
-#define TEGRA_SYSTEM_DMA_CH_NR 16
-#define TEGRA_SYSTEM_DMA_AVP_CH_NUM 4
-#define TEGRA_SYSTEM_DMA_CH_MIN 0
-#define TEGRA_SYSTEM_DMA_CH_MAX \
- (TEGRA_SYSTEM_DMA_CH_NR - TEGRA_SYSTEM_DMA_AVP_CH_NUM - 1)
-
-#define NV_DMA_MAX_TRASFER_SIZE 0x10000
-
-static const unsigned int ahb_addr_wrap_table[8] = {
- 0, 32, 64, 128, 256, 512, 1024, 2048
-};
-
-static const unsigned int apb_addr_wrap_table[8] = {
- 0, 1, 2, 4, 8, 16, 32, 64
-};
-
-static const unsigned int bus_width_table[5] = {
- 8, 16, 32, 64, 128
-};
-
-#define TEGRA_DMA_NAME_SIZE 16
-struct tegra_dma_channel {
- struct list_head list;
- int id;
- spinlock_t lock;
- char name[TEGRA_DMA_NAME_SIZE];
- void __iomem *addr;
- int mode;
- int irq;
- int req_transfer_count;
-};
-
-#define NV_DMA_MAX_CHANNELS 32
-
-static bool tegra_dma_initialized;
-static DEFINE_MUTEX(tegra_dma_lock);
-static DEFINE_SPINLOCK(enable_lock);
-
-static DECLARE_BITMAP(channel_usage, NV_DMA_MAX_CHANNELS);
-static struct tegra_dma_channel dma_channels[NV_DMA_MAX_CHANNELS];
-
-static void tegra_dma_update_hw(struct tegra_dma_channel *ch,
- struct tegra_dma_req *req);
-static void tegra_dma_update_hw_partial(struct tegra_dma_channel *ch,
- struct tegra_dma_req *req);
-static void tegra_dma_stop(struct tegra_dma_channel *ch);
-
-void tegra_dma_flush(struct tegra_dma_channel *ch)
-{
-}
-EXPORT_SYMBOL(tegra_dma_flush);
-
-void tegra_dma_dequeue(struct tegra_dma_channel *ch)
-{
- struct tegra_dma_req *req;
-
- if (tegra_dma_is_empty(ch))
- return;
-
- req = list_entry(ch->list.next, typeof(*req), node);
-
- tegra_dma_dequeue_req(ch, req);
- return;
-}
-
-static void tegra_dma_stop(struct tegra_dma_channel *ch)
-{
- u32 csr;
- u32 status;
-
- csr = readl(ch->addr + APB_DMA_CHAN_CSR);
- csr &= ~CSR_IE_EOC;
- writel(csr, ch->addr + APB_DMA_CHAN_CSR);
-
- csr &= ~CSR_ENB;
- writel(csr, ch->addr + APB_DMA_CHAN_CSR);
-
- status = readl(ch->addr + APB_DMA_CHAN_STA);
- if (status & STA_ISE_EOC)
- writel(status, ch->addr + APB_DMA_CHAN_STA);
-}
-
-static int tegra_dma_cancel(struct tegra_dma_channel *ch)
-{
- unsigned long irq_flags;
-
- spin_lock_irqsave(&ch->lock, irq_flags);
- while (!list_empty(&ch->list))
- list_del(ch->list.next);
-
- tegra_dma_stop(ch);
-
- spin_unlock_irqrestore(&ch->lock, irq_flags);
- return 0;
-}
-
-static unsigned int get_channel_status(struct tegra_dma_channel *ch,
- struct tegra_dma_req *req, bool is_stop_dma)
-{
- void __iomem *addr = IO_ADDRESS(TEGRA_APB_DMA_BASE);
- unsigned int status;
-
- if (is_stop_dma) {
- /*
- * STOP the DMA and get the transfer count.
- * Getting the transfer count is tricky.
- * - Globally disable DMA on all channels
- * - Read the channel's status register to know the number
- * of pending bytes to be transfered.
- * - Stop the dma channel
- * - Globally re-enable DMA to resume other transfers
- */
- spin_lock(&enable_lock);
- writel(0, addr + APB_DMA_GEN);
- udelay(20);
- status = readl(ch->addr + APB_DMA_CHAN_STA);
- tegra_dma_stop(ch);
- writel(GEN_ENABLE, addr + APB_DMA_GEN);
- spin_unlock(&enable_lock);
- if (status & STA_ISE_EOC) {
- pr_err("Got Dma Int here clearing");
- writel(status, ch->addr + APB_DMA_CHAN_STA);
- }
- req->status = TEGRA_DMA_REQ_ERROR_ABORTED;
- } else {
- status = readl(ch->addr + APB_DMA_CHAN_STA);
- }
- return status;
-}
-
-/* should be called with the channel lock held */
-static unsigned int dma_active_count(struct tegra_dma_channel *ch,
- struct tegra_dma_req *req, unsigned int status)
-{
- unsigned int to_transfer;
- unsigned int req_transfer_count;
- unsigned int bytes_transferred;
-
- to_transfer = ((status & STA_COUNT_MASK) >> STA_COUNT_SHIFT) + 1;
- req_transfer_count = ch->req_transfer_count + 1;
- bytes_transferred = req_transfer_count;
- if (status & STA_BUSY)
- bytes_transferred -= to_transfer;
- /*
- * In continuous transfer mode, DMA only tracks the count of the
- * half DMA buffer. So, if the DMA already finished half the DMA
- * then add the half buffer to the completed count.
- */
- if (ch->mode & TEGRA_DMA_MODE_CONTINOUS) {
- if (req->buffer_status == TEGRA_DMA_REQ_BUF_STATUS_HALF_FULL)
- bytes_transferred += req_transfer_count;
- if (status & STA_ISE_EOC)
- bytes_transferred += req_transfer_count;
- }
- bytes_transferred *= 4;
- return bytes_transferred;
-}
-
-int tegra_dma_dequeue_req(struct tegra_dma_channel *ch,
- struct tegra_dma_req *_req)
-{
- unsigned int status;
- struct tegra_dma_req *req = NULL;
- int found = 0;
- unsigned long irq_flags;
- int stop = 0;
-
- spin_lock_irqsave(&ch->lock, irq_flags);
-
- if (list_entry(ch->list.next, struct tegra_dma_req, node) == _req)
- stop = 1;
-
- list_for_each_entry(req, &ch->list, node) {
- if (req == _req) {
- list_del(&req->node);
- found = 1;
- break;
- }
- }
- if (!found) {
- spin_unlock_irqrestore(&ch->lock, irq_flags);
- return 0;
- }
-
- if (!stop)
- goto skip_stop_dma;
-
- status = get_channel_status(ch, req, true);
- req->bytes_transferred = dma_active_count(ch, req, status);
-
- if (!list_empty(&ch->list)) {
- /* if the list is not empty, queue the next request */
- struct tegra_dma_req *next_req;
- next_req = list_entry(ch->list.next,
- typeof(*next_req), node);
- tegra_dma_update_hw(ch, next_req);
- }
-
-skip_stop_dma:
- req->status = -TEGRA_DMA_REQ_ERROR_ABORTED;
-
- spin_unlock_irqrestore(&ch->lock, irq_flags);
-
- /* Callback should be called without any lock */
- req->complete(req);
- return 0;
-}
-EXPORT_SYMBOL(tegra_dma_dequeue_req);
-
-bool tegra_dma_is_empty(struct tegra_dma_channel *ch)
-{
- unsigned long irq_flags;
- bool is_empty;
-
- spin_lock_irqsave(&ch->lock, irq_flags);
- if (list_empty(&ch->list))
- is_empty = true;
- else
- is_empty = false;
- spin_unlock_irqrestore(&ch->lock, irq_flags);
- return is_empty;
-}
-EXPORT_SYMBOL(tegra_dma_is_empty);
-
-bool tegra_dma_is_req_inflight(struct tegra_dma_channel *ch,
- struct tegra_dma_req *_req)
-{
- unsigned long irq_flags;
- struct tegra_dma_req *req;
-
- spin_lock_irqsave(&ch->lock, irq_flags);
- list_for_each_entry(req, &ch->list, node) {
- if (req == _req) {
- spin_unlock_irqrestore(&ch->lock, irq_flags);
- return true;
- }
- }
- spin_unlock_irqrestore(&ch->lock, irq_flags);
- return false;
-}
-EXPORT_SYMBOL(tegra_dma_is_req_inflight);
-
-int tegra_dma_enqueue_req(struct tegra_dma_channel *ch,
- struct tegra_dma_req *req)
-{
- unsigned long irq_flags;
- struct tegra_dma_req *_req;
- int start_dma = 0;
-
- if (req->size > NV_DMA_MAX_TRASFER_SIZE ||
- req->source_addr & 0x3 || req->dest_addr & 0x3) {
- pr_err("Invalid DMA request for channel %d\n", ch->id);
- return -EINVAL;
- }
-
- spin_lock_irqsave(&ch->lock, irq_flags);
-
- list_for_each_entry(_req, &ch->list, node) {
- if (req == _req) {
- spin_unlock_irqrestore(&ch->lock, irq_flags);
- return -EEXIST;
- }
- }
-
- req->bytes_transferred = 0;
- req->status = 0;
- req->buffer_status = 0;
- if (list_empty(&ch->list))
- start_dma = 1;
-
- list_add_tail(&req->node, &ch->list);
-
- if (start_dma)
- tegra_dma_update_hw(ch, req);
-
- spin_unlock_irqrestore(&ch->lock, irq_flags);
-
- return 0;
-}
-EXPORT_SYMBOL(tegra_dma_enqueue_req);
-
-struct tegra_dma_channel *tegra_dma_allocate_channel(int mode)
-{
- int channel;
- struct tegra_dma_channel *ch = NULL;
-
- if (!tegra_dma_initialized)
- return NULL;
-
- mutex_lock(&tegra_dma_lock);
-
- /* first channel is the shared channel */
- if (mode & TEGRA_DMA_SHARED) {
- channel = TEGRA_SYSTEM_DMA_CH_MIN;
- } else {
- channel = find_first_zero_bit(channel_usage,
- ARRAY_SIZE(dma_channels));
- if (channel >= ARRAY_SIZE(dma_channels))
- goto out;
- }
- __set_bit(channel, channel_usage);
- ch = &dma_channels[channel];
- ch->mode = mode;
-
-out:
- mutex_unlock(&tegra_dma_lock);
- return ch;
-}
-EXPORT_SYMBOL(tegra_dma_allocate_channel);
-
-void tegra_dma_free_channel(struct tegra_dma_channel *ch)
-{
- if (ch->mode & TEGRA_DMA_SHARED)
- return;
- tegra_dma_cancel(ch);
- mutex_lock(&tegra_dma_lock);
- __clear_bit(ch->id, channel_usage);
- mutex_unlock(&tegra_dma_lock);
-}
-EXPORT_SYMBOL(tegra_dma_free_channel);
-
-static void tegra_dma_update_hw_partial(struct tegra_dma_channel *ch,
- struct tegra_dma_req *req)
-{
- u32 apb_ptr;
- u32 ahb_ptr;
-
- if (req->to_memory) {
- apb_ptr = req->source_addr;
- ahb_ptr = req->dest_addr;
- } else {
- apb_ptr = req->dest_addr;
- ahb_ptr = req->source_addr;
- }
- writel(apb_ptr, ch->addr + APB_DMA_CHAN_APB_PTR);
- writel(ahb_ptr, ch->addr + APB_DMA_CHAN_AHB_PTR);
-
- req->status = TEGRA_DMA_REQ_INFLIGHT;
- return;
-}
-
-static void tegra_dma_update_hw(struct tegra_dma_channel *ch,
- struct tegra_dma_req *req)
-{
- int ahb_addr_wrap;
- int apb_addr_wrap;
- int ahb_bus_width;
- int apb_bus_width;
- int index;
-
- u32 ahb_seq;
- u32 apb_seq;
- u32 ahb_ptr;
- u32 apb_ptr;
- u32 csr;
-
- csr = CSR_IE_EOC | CSR_FLOW;
- ahb_seq = AHB_SEQ_INTR_ENB | AHB_SEQ_BURST_1;
- apb_seq = 0;
-
- csr |= req->req_sel << CSR_REQ_SEL_SHIFT;
-
- /* One shot mode is always single buffered,
- * continuous mode is always double buffered
- * */
- if (ch->mode & TEGRA_DMA_MODE_ONESHOT) {
- csr |= CSR_ONCE;
- ch->req_transfer_count = (req->size >> 2) - 1;
- } else {
- ahb_seq |= AHB_SEQ_DBL_BUF;
-
- /* In double buffered mode, we set the size to half the
- * requested size and interrupt when half the buffer
- * is full */
- ch->req_transfer_count = (req->size >> 3) - 1;
- }
-
- csr |= ch->req_transfer_count << CSR_WCOUNT_SHIFT;
-
- if (req->to_memory) {
- apb_ptr = req->source_addr;
- ahb_ptr = req->dest_addr;
-
- apb_addr_wrap = req->source_wrap;
- ahb_addr_wrap = req->dest_wrap;
- apb_bus_width = req->source_bus_width;
- ahb_bus_width = req->dest_bus_width;
-
- } else {
- csr |= CSR_DIR;
- apb_ptr = req->dest_addr;
- ahb_ptr = req->source_addr;
-
- apb_addr_wrap = req->dest_wrap;
- ahb_addr_wrap = req->source_wrap;
- apb_bus_width = req->dest_bus_width;
- ahb_bus_width = req->source_bus_width;
- }
-
- apb_addr_wrap >>= 2;
- ahb_addr_wrap >>= 2;
-
- /* set address wrap for APB size */
- index = 0;
- do {
- if (apb_addr_wrap_table[index] == apb_addr_wrap)
- break;
- index++;
- } while (index < ARRAY_SIZE(apb_addr_wrap_table));
- BUG_ON(index == ARRAY_SIZE(apb_addr_wrap_table));
- apb_seq |= index << APB_SEQ_WRAP_SHIFT;
-
- /* set address wrap for AHB size */
- index = 0;
- do {
- if (ahb_addr_wrap_table[index] == ahb_addr_wrap)
- break;
- index++;
- } while (index < ARRAY_SIZE(ahb_addr_wrap_table));
- BUG_ON(index == ARRAY_SIZE(ahb_addr_wrap_table));
- ahb_seq |= index << AHB_SEQ_WRAP_SHIFT;
-
- for (index = 0; index < ARRAY_SIZE(bus_width_table); index++) {
- if (bus_width_table[index] == ahb_bus_width)
- break;
- }
- BUG_ON(index == ARRAY_SIZE(bus_width_table));
- ahb_seq |= index << AHB_SEQ_BUS_WIDTH_SHIFT;
-
- for (index = 0; index < ARRAY_SIZE(bus_width_table); index++) {
- if (bus_width_table[index] == apb_bus_width)
- break;
- }
- BUG_ON(index == ARRAY_SIZE(bus_width_table));
- apb_seq |= index << APB_SEQ_BUS_WIDTH_SHIFT;
-
- writel(csr, ch->addr + APB_DMA_CHAN_CSR);
- writel(apb_seq, ch->addr + APB_DMA_CHAN_APB_SEQ);
- writel(apb_ptr, ch->addr + APB_DMA_CHAN_APB_PTR);
- writel(ahb_seq, ch->addr + APB_DMA_CHAN_AHB_SEQ);
- writel(ahb_ptr, ch->addr + APB_DMA_CHAN_AHB_PTR);
-
- csr |= CSR_ENB;
- writel(csr, ch->addr + APB_DMA_CHAN_CSR);
-
- req->status = TEGRA_DMA_REQ_INFLIGHT;
-}
-
-static void handle_oneshot_dma(struct tegra_dma_channel *ch)
-{
- struct tegra_dma_req *req;
- unsigned long irq_flags;
-
- spin_lock_irqsave(&ch->lock, irq_flags);
- if (list_empty(&ch->list)) {
- spin_unlock_irqrestore(&ch->lock, irq_flags);
- return;
- }
-
- req = list_entry(ch->list.next, typeof(*req), node);
- if (req) {
- int bytes_transferred;
-
- bytes_transferred = ch->req_transfer_count;
- bytes_transferred += 1;
- bytes_transferred <<= 2;
-
- list_del(&req->node);
- req->bytes_transferred = bytes_transferred;
- req->status = TEGRA_DMA_REQ_SUCCESS;
-
- spin_unlock_irqrestore(&ch->lock, irq_flags);
- /* Callback should be called without any lock */
- pr_debug("%s: transferred %d bytes\n", __func__,
- req->bytes_transferred);
- req->complete(req);
- spin_lock_irqsave(&ch->lock, irq_flags);
- }
-
- if (!list_empty(&ch->list)) {
- req = list_entry(ch->list.next, typeof(*req), node);
- /* the complete function we just called may have enqueued
- another req, in which case dma has already started */
- if (req->status != TEGRA_DMA_REQ_INFLIGHT)
- tegra_dma_update_hw(ch, req);
- }
- spin_unlock_irqrestore(&ch->lock, irq_flags);
-}
-
-static void handle_continuous_dma(struct tegra_dma_channel *ch)
-{
- struct tegra_dma_req *req;
- unsigned long irq_flags;
-
- spin_lock_irqsave(&ch->lock, irq_flags);
- if (list_empty(&ch->list)) {
- spin_unlock_irqrestore(&ch->lock, irq_flags);
- return;
- }
-
- req = list_entry(ch->list.next, typeof(*req), node);
- if (req) {
- if (req->buffer_status == TEGRA_DMA_REQ_BUF_STATUS_EMPTY) {
- bool is_dma_ping_complete;
- is_dma_ping_complete = (readl(ch->addr + APB_DMA_CHAN_STA)
- & STA_PING_PONG) ? true : false;
- if (req->to_memory)
- is_dma_ping_complete = !is_dma_ping_complete;
- /* Out of sync - Release current buffer */
- if (!is_dma_ping_complete) {
- int bytes_transferred;
-
- bytes_transferred = ch->req_transfer_count;
- bytes_transferred += 1;
- bytes_transferred <<= 3;
- req->buffer_status = TEGRA_DMA_REQ_BUF_STATUS_FULL;
- req->bytes_transferred = bytes_transferred;
- req->status = TEGRA_DMA_REQ_SUCCESS;
- tegra_dma_stop(ch);
-
- if (!list_is_last(&req->node, &ch->list)) {
- struct tegra_dma_req *next_req;
-
- next_req = list_entry(req->node.next,
- typeof(*next_req), node);
- tegra_dma_update_hw(ch, next_req);
- }
-
- list_del(&req->node);
-
- /* DMA lock is NOT held when callbak is called */
- spin_unlock_irqrestore(&ch->lock, irq_flags);
- req->complete(req);
- return;
- }
- /* Load the next request into the hardware, if available
- * */
- if (!list_is_last(&req->node, &ch->list)) {
- struct tegra_dma_req *next_req;
-
- next_req = list_entry(req->node.next,
- typeof(*next_req), node);
- tegra_dma_update_hw_partial(ch, next_req);
- }
- req->buffer_status = TEGRA_DMA_REQ_BUF_STATUS_HALF_FULL;
- req->status = TEGRA_DMA_REQ_SUCCESS;
- /* DMA lock is NOT held when callback is called */
- spin_unlock_irqrestore(&ch->lock, irq_flags);
- if (likely(req->threshold))
- req->threshold(req);
- return;
-
- } else if (req->buffer_status ==
- TEGRA_DMA_REQ_BUF_STATUS_HALF_FULL) {
- /* Callback when the buffer is completely full (i.e on
- * the second interrupt */
- int bytes_transferred;
-
- bytes_transferred = ch->req_transfer_count;
- bytes_transferred += 1;
- bytes_transferred <<= 3;
-
- req->buffer_status = TEGRA_DMA_REQ_BUF_STATUS_FULL;
- req->bytes_transferred = bytes_transferred;
- req->status = TEGRA_DMA_REQ_SUCCESS;
- list_del(&req->node);
-
- /* DMA lock is NOT held when callbak is called */
- spin_unlock_irqrestore(&ch->lock, irq_flags);
- req->complete(req);
- return;
-
- } else {
- BUG();
- }
- }
- spin_unlock_irqrestore(&ch->lock, irq_flags);
-}
-
-static irqreturn_t dma_isr(int irq, void *data)
-{
- struct tegra_dma_channel *ch = data;
- unsigned long status;
-
- status = readl(ch->addr + APB_DMA_CHAN_STA);
- if (status & STA_ISE_EOC)
- writel(status, ch->addr + APB_DMA_CHAN_STA);
- else {
- pr_warning("Got a spurious ISR for DMA channel %d\n", ch->id);
- return IRQ_HANDLED;
- }
- return IRQ_WAKE_THREAD;
-}
-
-static irqreturn_t dma_thread_fn(int irq, void *data)
-{
- struct tegra_dma_channel *ch = data;
-
- if (ch->mode & TEGRA_DMA_MODE_ONESHOT)
- handle_oneshot_dma(ch);
- else
- handle_continuous_dma(ch);
-
-
- return IRQ_HANDLED;
-}
-
-int __init tegra_dma_init(void)
-{
- int ret = 0;
- int i;
- unsigned int irq;
- void __iomem *addr;
- struct clk *c;
-
- bitmap_fill(channel_usage, NV_DMA_MAX_CHANNELS);
-
- c = clk_get_sys("tegra-apbdma", NULL);
- if (IS_ERR(c)) {
- pr_err("Unable to get clock for APB DMA\n");
- ret = PTR_ERR(c);
- goto fail;
- }
- ret = clk_prepare_enable(c);
- if (ret != 0) {
- pr_err("Unable to enable clock for APB DMA\n");
- goto fail;
- }
-
- addr = IO_ADDRESS(TEGRA_APB_DMA_BASE);
- writel(GEN_ENABLE, addr + APB_DMA_GEN);
- writel(0, addr + APB_DMA_CNTRL);
- writel(0xFFFFFFFFul >> (31 - TEGRA_SYSTEM_DMA_CH_MAX),
- addr + APB_DMA_IRQ_MASK_SET);
-
- for (i = TEGRA_SYSTEM_DMA_CH_MIN; i <= TEGRA_SYSTEM_DMA_CH_MAX; i++) {
- struct tegra_dma_channel *ch = &dma_channels[i];
-
- ch->id = i;
- snprintf(ch->name, TEGRA_DMA_NAME_SIZE, "dma_channel_%d", i);
-
- ch->addr = IO_ADDRESS(TEGRA_APB_DMA_CH0_BASE +
- TEGRA_APB_DMA_CH0_SIZE * i);
-
- spin_lock_init(&ch->lock);
- INIT_LIST_HEAD(&ch->list);
-
- irq = INT_APB_DMA_CH0 + i;
- ret = request_threaded_irq(irq, dma_isr, dma_thread_fn, 0,
- dma_channels[i].name, ch);
- if (ret) {
- pr_err("Failed to register IRQ %d for DMA %d\n",
- irq, i);
- goto fail;
- }
- ch->irq = irq;
-
- __clear_bit(i, channel_usage);
- }
- /* mark the shared channel allocated */
- __set_bit(TEGRA_SYSTEM_DMA_CH_MIN, channel_usage);
-
- tegra_dma_initialized = true;
-
- return 0;
-fail:
- writel(0, addr + APB_DMA_GEN);
- for (i = TEGRA_SYSTEM_DMA_CH_MIN; i <= TEGRA_SYSTEM_DMA_CH_MAX; i++) {
- struct tegra_dma_channel *ch = &dma_channels[i];
- if (ch->irq)
- free_irq(ch->irq, ch);
- }
- return ret;
-}
-postcore_initcall(tegra_dma_init);
-
-#ifdef CONFIG_PM
-static u32 apb_dma[5*TEGRA_SYSTEM_DMA_CH_NR + 3];
-
-void tegra_dma_suspend(void)
-{
- void __iomem *addr = IO_ADDRESS(TEGRA_APB_DMA_BASE);
- u32 *ctx = apb_dma;
- int i;
-
- *ctx++ = readl(addr + APB_DMA_GEN);
- *ctx++ = readl(addr + APB_DMA_CNTRL);
- *ctx++ = readl(addr + APB_DMA_IRQ_MASK);
-
- for (i = 0; i < TEGRA_SYSTEM_DMA_CH_NR; i++) {
- addr = IO_ADDRESS(TEGRA_APB_DMA_CH0_BASE +
- TEGRA_APB_DMA_CH0_SIZE * i);
-
- *ctx++ = readl(addr + APB_DMA_CHAN_CSR);
- *ctx++ = readl(addr + APB_DMA_CHAN_AHB_PTR);
- *ctx++ = readl(addr + APB_DMA_CHAN_AHB_SEQ);
- *ctx++ = readl(addr + APB_DMA_CHAN_APB_PTR);
- *ctx++ = readl(addr + APB_DMA_CHAN_APB_SEQ);
- }
-}
-
-void tegra_dma_resume(void)
-{
- void __iomem *addr = IO_ADDRESS(TEGRA_APB_DMA_BASE);
- u32 *ctx = apb_dma;
- int i;
-
- writel(*ctx++, addr + APB_DMA_GEN);
- writel(*ctx++, addr + APB_DMA_CNTRL);
- writel(*ctx++, addr + APB_DMA_IRQ_MASK);
-
- for (i = 0; i < TEGRA_SYSTEM_DMA_CH_NR; i++) {
- addr = IO_ADDRESS(TEGRA_APB_DMA_CH0_BASE +
- TEGRA_APB_DMA_CH0_SIZE * i);
-
- writel(*ctx++, addr + APB_DMA_CHAN_CSR);
- writel(*ctx++, addr + APB_DMA_CHAN_AHB_PTR);
- writel(*ctx++, addr + APB_DMA_CHAN_AHB_SEQ);
- writel(*ctx++, addr + APB_DMA_CHAN_APB_PTR);
- writel(*ctx++, addr + APB_DMA_CHAN_APB_SEQ);
- }
-}
-
-#endif
diff --git a/arch/arm/mach-tegra/fuse.c b/arch/arm/mach-tegra/fuse.c
index f946d129423..0b7db174a5d 100644
--- a/arch/arm/mach-tegra/fuse.c
+++ b/arch/arm/mach-tegra/fuse.c
@@ -93,9 +93,9 @@ void tegra_init_fuse(void)
{
u32 id;
- u32 reg = readl(IO_TO_VIRT(TEGRA_CLK_RESET_BASE + 0x48));
+ u32 reg = readl(IO_ADDRESS(TEGRA_CLK_RESET_BASE + 0x48));
reg |= 1 << 28;
- writel(reg, IO_TO_VIRT(TEGRA_CLK_RESET_BASE + 0x48));
+ writel(reg, IO_ADDRESS(TEGRA_CLK_RESET_BASE + 0x48));
reg = tegra_fuse_readl(FUSE_SKU_INFO);
tegra_sku_id = reg & 0xFF;
diff --git a/arch/arm/mach-tegra/headsmp.S b/arch/arm/mach-tegra/headsmp.S
index fef9c2c5137..6addc78cb6b 100644
--- a/arch/arm/mach-tegra/headsmp.S
+++ b/arch/arm/mach-tegra/headsmp.S
@@ -7,17 +7,13 @@
#include "flowctrl.h"
#include "reset.h"
+#include "sleep.h"
#define APB_MISC_GP_HIDREV 0x804
#define PMC_SCRATCH41 0x140
#define RESET_DATA(x) ((TEGRA_RESET_##x)*4)
- .macro mov32, reg, val
- movw \reg, #:lower16:\val
- movt \reg, #:upper16:\val
- .endm
-
.section ".text.head", "ax"
__CPUINIT
diff --git a/arch/arm/mach-tegra/hotplug.c b/arch/arm/mach-tegra/hotplug.c
index d8dc9ddd6d1..dca5141a2c3 100644
--- a/arch/arm/mach-tegra/hotplug.c
+++ b/arch/arm/mach-tegra/hotplug.c
@@ -1,123 +1,48 @@
/*
- * linux/arch/arm/mach-realview/hotplug.c
*
* Copyright (C) 2002 ARM Ltd.
* All Rights Reserved
+ * Copyright (c) 2010, 2012 NVIDIA Corporation. All rights reserved.
*
* 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/kernel.h>
-#include <linux/errno.h>
#include <linux/smp.h>
#include <asm/cacheflush.h>
-#include <asm/cp15.h>
+#include <asm/smp_plat.h>
-static inline void cpu_enter_lowpower(void)
-{
- unsigned int v;
-
- flush_cache_all();
- asm volatile(
- " mcr p15, 0, %1, c7, c5, 0\n"
- " mcr p15, 0, %1, c7, c10, 4\n"
- /*
- * Turn off coherency
- */
- " mrc p15, 0, %0, c1, c0, 1\n"
- " bic %0, %0, #0x20\n"
- " mcr p15, 0, %0, c1, c0, 1\n"
- " mrc p15, 0, %0, c1, c0, 0\n"
- " bic %0, %0, %2\n"
- " mcr p15, 0, %0, c1, c0, 0\n"
- : "=&r" (v)
- : "r" (0), "Ir" (CR_C)
- : "cc");
-}
-
-static inline void cpu_leave_lowpower(void)
-{
- unsigned int v;
+#include "sleep.h"
+#include "tegra_cpu_car.h"
- asm volatile(
- "mrc p15, 0, %0, c1, c0, 0\n"
- " orr %0, %0, %1\n"
- " mcr p15, 0, %0, c1, c0, 0\n"
- " mrc p15, 0, %0, c1, c0, 1\n"
- " orr %0, %0, #0x20\n"
- " mcr p15, 0, %0, c1, c0, 1\n"
- : "=&r" (v)
- : "Ir" (CR_C)
- : "cc");
-}
-
-static inline void platform_do_lowpower(unsigned int cpu, int *spurious)
-{
- /*
- * there is no power-control hardware on this platform, so all
- * we can do is put the core into WFI; this is safe as the calling
- * code will have already disabled interrupts
- */
- for (;;) {
- /*
- * here's the WFI
- */
- asm(".word 0xe320f003\n"
- :
- :
- : "memory", "cc");
-
- /*if (pen_release == cpu) {*/
- /*
- * OK, proper wakeup, we're done
- */
- break;
- /*}*/
-
- /*
- * Getting here, means that we have come out of WFI without
- * having been woken up - this shouldn't happen
- *
- * Just note it happening - when we're woken, we can report
- * its occurrence.
- */
- (*spurious)++;
- }
-}
-
-int platform_cpu_kill(unsigned int cpu)
-{
- return 1;
-}
+static void (*tegra_hotplug_shutdown)(void);
/*
* platform-specific code to shutdown a CPU
*
* Called with IRQs disabled
*/
-void platform_cpu_die(unsigned int cpu)
+void __ref tegra_cpu_die(unsigned int cpu)
{
- int spurious = 0;
+ cpu = cpu_logical_map(cpu);
- /*
- * we're ready for shutdown now, so do it
- */
- cpu_enter_lowpower();
- platform_do_lowpower(cpu, &spurious);
+ /* Flush the L1 data cache. */
+ flush_cache_all();
- /*
- * bring this CPU back into the world of cache
- * coherency, and then restore interrupts
- */
- cpu_leave_lowpower();
+ /* Shut down the current CPU. */
+ tegra_hotplug_shutdown();
- if (spurious)
- pr_warn("CPU%u: %u spurious wakeup calls\n", cpu, spurious);
+ /* Clock gate the CPU */
+ tegra_wait_cpu_in_reset(cpu);
+ tegra_disable_cpu_clock(cpu);
+
+ /* Should never return here. */
+ BUG();
}
-int platform_cpu_disable(unsigned int cpu)
+int tegra_cpu_disable(unsigned int cpu)
{
/*
* we don't allow CPU 0 to be shutdown (it is still too special
@@ -125,3 +50,19 @@ int platform_cpu_disable(unsigned int cpu)
*/
return cpu == 0 ? -EPERM : 0;
}
+
+#ifdef CONFIG_ARCH_TEGRA_2x_SOC
+extern void tegra20_hotplug_shutdown(void);
+void __init tegra20_hotplug_init(void)
+{
+ tegra_hotplug_shutdown = tegra20_hotplug_shutdown;
+}
+#endif
+
+#ifdef CONFIG_ARCH_TEGRA_3x_SOC
+extern void tegra30_hotplug_shutdown(void);
+void __init tegra30_hotplug_init(void)
+{
+ tegra_hotplug_shutdown = tegra30_hotplug_shutdown;
+}
+#endif
diff --git a/arch/arm/mach-tegra/include/mach/clk.h b/arch/arm/mach-tegra/include/mach/clk.h
index d97e403303a..95f3a547c77 100644
--- a/arch/arm/mach-tegra/include/mach/clk.h
+++ b/arch/arm/mach-tegra/include/mach/clk.h
@@ -34,7 +34,10 @@ enum tegra_clk_ex_param {
void tegra_periph_reset_deassert(struct clk *c);
void tegra_periph_reset_assert(struct clk *c);
+#ifndef CONFIG_COMMON_CLK
unsigned long clk_get_rate_all_locked(struct clk *c);
+#endif
+
void tegra2_sdmmc_tap_delay(struct clk *c, int delay);
int tegra_clk_cfg_ex(struct clk *c, enum tegra_clk_ex_param p, u32 setting);
diff --git a/arch/arm/mach-tegra/include/mach/dma.h b/arch/arm/mach-tegra/include/mach/dma.h
index 9077092812c..3081cc6dda3 100644
--- a/arch/arm/mach-tegra/include/mach/dma.h
+++ b/arch/arm/mach-tegra/include/mach/dma.h
@@ -51,101 +51,4 @@
#define TEGRA_DMA_REQ_SEL_OWR 25
#define TEGRA_DMA_REQ_SEL_INVALID 31
-struct tegra_dma_req;
-struct tegra_dma_channel;
-
-enum tegra_dma_mode {
- TEGRA_DMA_SHARED = 1,
- TEGRA_DMA_MODE_CONTINOUS = 2,
- TEGRA_DMA_MODE_ONESHOT = 4,
-};
-
-enum tegra_dma_req_error {
- TEGRA_DMA_REQ_SUCCESS = 0,
- TEGRA_DMA_REQ_ERROR_ABORTED,
- TEGRA_DMA_REQ_INFLIGHT,
-};
-
-enum tegra_dma_req_buff_status {
- TEGRA_DMA_REQ_BUF_STATUS_EMPTY = 0,
- TEGRA_DMA_REQ_BUF_STATUS_HALF_FULL,
- TEGRA_DMA_REQ_BUF_STATUS_FULL,
-};
-
-struct tegra_dma_req {
- struct list_head node;
- unsigned int modid;
- int instance;
-
- /* Called when the req is complete and from the DMA ISR context.
- * When this is called the req structure is no longer queued by
- * the DMA channel.
- *
- * State of the DMA depends on the number of req it has. If there are
- * no DMA requests queued up, then it will STOP the DMA. It there are
- * more requests in the DMA, then it will queue the next request.
- */
- void (*complete)(struct tegra_dma_req *req);
-
- /* This is a called from the DMA ISR context when the DMA is still in
- * progress and is actively filling same buffer.
- *
- * In case of continuous mode receive, this threshold is 1/2 the buffer
- * size. In other cases, this will not even be called as there is no
- * hardware support for it.
- *
- * In the case of continuous mode receive, if there is next req already
- * queued, DMA programs the HW to use that req when this req is
- * completed. If there is no "next req" queued, then DMA ISR doesn't do
- * anything before calling this callback.
- *
- * This is mainly used by the cases, where the clients has queued
- * only one req and want to get some sort of DMA threshold
- * callback to program the next buffer.
- *
- */
- void (*threshold)(struct tegra_dma_req *req);
-
- /* 1 to copy to memory.
- * 0 to copy from the memory to device FIFO */
- int to_memory;
-
- void *virt_addr;
-
- unsigned long source_addr;
- unsigned long dest_addr;
- unsigned long dest_wrap;
- unsigned long source_wrap;
- unsigned long source_bus_width;
- unsigned long dest_bus_width;
- unsigned long req_sel;
- unsigned int size;
-
- /* Updated by the DMA driver on the conpletion of the request. */
- int bytes_transferred;
- int status;
-
- /* DMA completion tracking information */
- int buffer_status;
-
- /* Client specific data */
- void *dev;
-};
-
-int tegra_dma_enqueue_req(struct tegra_dma_channel *ch,
- struct tegra_dma_req *req);
-int tegra_dma_dequeue_req(struct tegra_dma_channel *ch,
- struct tegra_dma_req *req);
-void tegra_dma_dequeue(struct tegra_dma_channel *ch);
-void tegra_dma_flush(struct tegra_dma_channel *ch);
-
-bool tegra_dma_is_req_inflight(struct tegra_dma_channel *ch,
- struct tegra_dma_req *req);
-bool tegra_dma_is_empty(struct tegra_dma_channel *ch);
-
-struct tegra_dma_channel *tegra_dma_allocate_channel(int mode);
-void tegra_dma_free_channel(struct tegra_dma_channel *ch);
-
-int __init tegra_dma_init(void);
-
#endif
diff --git a/arch/arm/mach-tegra/include/mach/gpio-tegra.h b/arch/arm/mach-tegra/include/mach/gpio-tegra.h
deleted file mode 100644
index a978b3cc3a8..00000000000
--- a/arch/arm/mach-tegra/include/mach/gpio-tegra.h
+++ /dev/null
@@ -1,28 +0,0 @@
-/*
- * arch/arm/mach-tegra/include/mach/gpio.h
- *
- * Copyright (C) 2010 Google, Inc.
- *
- * Author:
- * Erik Gilling <konkers@google.com>
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-#ifndef __MACH_TEGRA_GPIO_TEGRA_H
-#define __MACH_TEGRA_GPIO_TEGRA_H
-
-#include <linux/types.h>
-#include <mach/irqs.h>
-
-#define TEGRA_NR_GPIOS INT_GPIO_NR
-
-#endif
diff --git a/arch/arm/mach-tegra/include/mach/gpio.h b/arch/arm/mach-tegra/include/mach/gpio.h
deleted file mode 100644
index 40a8c178f10..00000000000
--- a/arch/arm/mach-tegra/include/mach/gpio.h
+++ /dev/null
@@ -1 +0,0 @@
-/* empty */
diff --git a/arch/arm/mach-tegra/include/mach/io.h b/arch/arm/mach-tegra/include/mach/io.h
deleted file mode 100644
index fe700f9ce7d..00000000000
--- a/arch/arm/mach-tegra/include/mach/io.h
+++ /dev/null
@@ -1,46 +0,0 @@
-/*
- * arch/arm/mach-tegra/include/mach/io.h
- *
- * Copyright (C) 2010 Google, Inc.
- *
- * Author:
- * Colin Cross <ccross@google.com>
- * Erik Gilling <konkers@google.com>
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-#ifndef __MACH_TEGRA_IO_H
-#define __MACH_TEGRA_IO_H
-
-#define IO_SPACE_LIMIT 0xffff
-
-#ifndef __ASSEMBLER__
-
-#ifdef CONFIG_TEGRA_PCI
-extern void __iomem *tegra_pcie_io_base;
-
-static inline void __iomem *__io(unsigned long addr)
-{
- return tegra_pcie_io_base + (addr & IO_SPACE_LIMIT);
-}
-#else
-static inline void __iomem *__io(unsigned long addr)
-{
- return (void __iomem *)addr;
-}
-#endif
-
-#define __io(a) __io(a)
-
-#endif
-
-#endif
diff --git a/arch/arm/mach-tegra/include/mach/iomap.h b/arch/arm/mach-tegra/include/mach/iomap.h
index 7e76da73121..fee3a94c454 100644
--- a/arch/arm/mach-tegra/include/mach/iomap.h
+++ b/arch/arm/mach-tegra/include/mach/iomap.h
@@ -303,6 +303,9 @@
#define IO_APB_VIRT IOMEM(0xFE300000)
#define IO_APB_SIZE SZ_1M
+#define TEGRA_PCIE_BASE 0x80000000
+#define TEGRA_PCIE_IO_BASE (TEGRA_PCIE_BASE + SZ_4M)
+
#define IO_TO_VIRT_BETWEEN(p, st, sz) ((p) >= (st) && (p) < ((st) + (sz)))
#define IO_TO_VIRT_XLATE(p, pst, vst) (((p) - (pst) + (vst)))
diff --git a/arch/arm/mach-tegra/include/mach/kbc.h b/arch/arm/mach-tegra/include/mach/kbc.h
deleted file mode 100644
index a1302561293..00000000000
--- a/arch/arm/mach-tegra/include/mach/kbc.h
+++ /dev/null
@@ -1,62 +0,0 @@
-/*
- * Platform definitions for tegra-kbc keyboard input driver
- *
- * Copyright (c) 2010-2011, NVIDIA 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.,
- * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
- */
-
-#ifndef ASMARM_ARCH_TEGRA_KBC_H
-#define ASMARM_ARCH_TEGRA_KBC_H
-
-#include <linux/types.h>
-#include <linux/input/matrix_keypad.h>
-
-#define KBC_MAX_GPIO 24
-#define KBC_MAX_KPENT 8
-
-#define KBC_MAX_ROW 16
-#define KBC_MAX_COL 8
-#define KBC_MAX_KEY (KBC_MAX_ROW * KBC_MAX_COL)
-
-enum tegra_pin_type {
- PIN_CFG_IGNORE,
- PIN_CFG_COL,
- PIN_CFG_ROW,
-};
-
-struct tegra_kbc_pin_cfg {
- enum tegra_pin_type type;
- unsigned char num;
-};
-
-struct tegra_kbc_wake_key {
- u8 row:4;
- u8 col:4;
-};
-
-struct tegra_kbc_platform_data {
- unsigned int debounce_cnt;
- unsigned int repeat_cnt;
-
- struct tegra_kbc_pin_cfg pin_cfg[KBC_MAX_GPIO];
- const struct matrix_keymap_data *keymap_data;
-
- u32 wakeup_key;
- bool wakeup;
- bool use_fn_map;
- bool use_ghost_filter;
-};
-#endif
diff --git a/arch/arm/mach-tegra/include/mach/pinconf-tegra.h b/arch/arm/mach-tegra/include/mach/pinconf-tegra.h
deleted file mode 100644
index 1f24d304921..00000000000
--- a/arch/arm/mach-tegra/include/mach/pinconf-tegra.h
+++ /dev/null
@@ -1,63 +0,0 @@
-/*
- * pinctrl configuration definitions for the NVIDIA Tegra pinmux
- *
- * Copyright (c) 2011, NVIDIA CORPORATION. All rights reserved.
- *
- * This program is free software; you can redistribute it and/or modify it
- * under the terms and conditions of the GNU General Public License,
- * version 2, as published by the Free Software Foundation.
- *
- * This program is distributed in the hope 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.
- */
-
-#ifndef __PINCONF_TEGRA_H__
-#define __PINCONF_TEGRA_H__
-
-enum tegra_pinconf_param {
- /* argument: tegra_pinconf_pull */
- TEGRA_PINCONF_PARAM_PULL,
- /* argument: tegra_pinconf_tristate */
- TEGRA_PINCONF_PARAM_TRISTATE,
- /* argument: Boolean */
- TEGRA_PINCONF_PARAM_ENABLE_INPUT,
- /* argument: Boolean */
- TEGRA_PINCONF_PARAM_OPEN_DRAIN,
- /* argument: Boolean */
- TEGRA_PINCONF_PARAM_LOCK,
- /* argument: Boolean */
- TEGRA_PINCONF_PARAM_IORESET,
- /* argument: Boolean */
- TEGRA_PINCONF_PARAM_HIGH_SPEED_MODE,
- /* argument: Boolean */
- TEGRA_PINCONF_PARAM_SCHMITT,
- /* argument: Boolean */
- TEGRA_PINCONF_PARAM_LOW_POWER_MODE,
- /* argument: Integer, range is HW-dependant */
- TEGRA_PINCONF_PARAM_DRIVE_DOWN_STRENGTH,
- /* argument: Integer, range is HW-dependant */
- TEGRA_PINCONF_PARAM_DRIVE_UP_STRENGTH,
- /* argument: Integer, range is HW-dependant */
- TEGRA_PINCONF_PARAM_SLEW_RATE_FALLING,
- /* argument: Integer, range is HW-dependant */
- TEGRA_PINCONF_PARAM_SLEW_RATE_RISING,
-};
-
-enum tegra_pinconf_pull {
- TEGRA_PINCONFIG_PULL_NONE,
- TEGRA_PINCONFIG_PULL_DOWN,
- TEGRA_PINCONFIG_PULL_UP,
-};
-
-enum tegra_pinconf_tristate {
- TEGRA_PINCONFIG_DRIVEN,
- TEGRA_PINCONFIG_TRISTATE,
-};
-
-#define TEGRA_PINCONF_PACK(_param_, _arg_) ((_param_) << 16 | (_arg_))
-#define TEGRA_PINCONF_UNPACK_PARAM(_conf_) ((_conf_) >> 16)
-#define TEGRA_PINCONF_UNPACK_ARG(_conf_) ((_conf_) & 0xffff)
-
-#endif
diff --git a/arch/arm/mach-tegra/include/mach/sdhci.h b/arch/arm/mach-tegra/include/mach/sdhci.h
deleted file mode 100644
index 4231bc7b865..00000000000
--- a/arch/arm/mach-tegra/include/mach/sdhci.h
+++ /dev/null
@@ -1,30 +0,0 @@
-/*
- * include/asm-arm/arch-tegra/include/mach/sdhci.h
- *
- * Copyright (C) 2009 Palm, Inc.
- * Author: Yvonne Yip <y@palm.com>
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-#ifndef __ASM_ARM_ARCH_TEGRA_SDHCI_H
-#define __ASM_ARM_ARCH_TEGRA_SDHCI_H
-
-#include <linux/mmc/host.h>
-
-struct tegra_sdhci_platform_data {
- int cd_gpio;
- int wp_gpio;
- int power_gpio;
- int is_8bit;
- int pm_flags;
-};
-
-#endif
diff --git a/arch/arm/mach-tegra/include/mach/suspend.h b/arch/arm/mach-tegra/include/mach/suspend.h
deleted file mode 100644
index 5af8715d2e1..00000000000
--- a/arch/arm/mach-tegra/include/mach/suspend.h
+++ /dev/null
@@ -1,38 +0,0 @@
-/*
- * arch/arm/mach-tegra/include/mach/suspend.h
- *
- * Copyright (C) 2010 Google, Inc.
- *
- * Author:
- * Colin Cross <ccross@google.com>
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-
-#ifndef _MACH_TEGRA_SUSPEND_H_
-#define _MACH_TEGRA_SUSPEND_H_
-
-void tegra_pinmux_suspend(void);
-void tegra_irq_suspend(void);
-void tegra_gpio_suspend(void);
-void tegra_clk_suspend(void);
-void tegra_dma_suspend(void);
-void tegra_timer_suspend(void);
-
-void tegra_pinmux_resume(void);
-void tegra_irq_resume(void);
-void tegra_gpio_resume(void);
-void tegra_clk_resume(void);
-void tegra_dma_resume(void);
-void tegra_timer_resume(void);
-
-#endif /* _MACH_TEGRA_SUSPEND_H_ */
diff --git a/arch/arm/mach-tegra/include/mach/usb_phy.h b/arch/arm/mach-tegra/include/mach/usb_phy.h
deleted file mode 100644
index 935ce9f6559..00000000000
--- a/arch/arm/mach-tegra/include/mach/usb_phy.h
+++ /dev/null
@@ -1,86 +0,0 @@
-/*
- * arch/arm/mach-tegra/include/mach/usb_phy.h
- *
- * Copyright (C) 2010 Google, Inc.
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-#ifndef __MACH_USB_PHY_H
-#define __MACH_USB_PHY_H
-
-#include <linux/clk.h>
-#include <linux/usb/otg.h>
-
-struct tegra_utmip_config {
- u8 hssync_start_delay;
- u8 elastic_limit;
- u8 idle_wait_delay;
- u8 term_range_adj;
- u8 xcvr_setup;
- u8 xcvr_lsfslew;
- u8 xcvr_lsrslew;
-};
-
-struct tegra_ulpi_config {
- int reset_gpio;
- const char *clk;
-};
-
-enum tegra_usb_phy_port_speed {
- TEGRA_USB_PHY_PORT_SPEED_FULL = 0,
- TEGRA_USB_PHY_PORT_SPEED_LOW,
- TEGRA_USB_PHY_PORT_SPEED_HIGH,
-};
-
-enum tegra_usb_phy_mode {
- TEGRA_USB_PHY_MODE_DEVICE,
- TEGRA_USB_PHY_MODE_HOST,
-};
-
-struct tegra_xtal_freq;
-
-struct tegra_usb_phy {
- int instance;
- const struct tegra_xtal_freq *freq;
- void __iomem *regs;
- void __iomem *pad_regs;
- struct clk *clk;
- struct clk *pll_u;
- struct clk *pad_clk;
- enum tegra_usb_phy_mode mode;
- void *config;
- struct usb_phy *ulpi;
-};
-
-struct tegra_usb_phy *tegra_usb_phy_open(struct device *dev, int instance,
- void __iomem *regs, void *config, enum tegra_usb_phy_mode phy_mode);
-
-int tegra_usb_phy_power_on(struct tegra_usb_phy *phy);
-
-void tegra_usb_phy_clk_disable(struct tegra_usb_phy *phy);
-
-void tegra_usb_phy_clk_enable(struct tegra_usb_phy *phy);
-
-void tegra_usb_phy_power_off(struct tegra_usb_phy *phy);
-
-void tegra_usb_phy_preresume(struct tegra_usb_phy *phy);
-
-void tegra_usb_phy_postresume(struct tegra_usb_phy *phy);
-
-void tegra_ehci_phy_restore_start(struct tegra_usb_phy *phy,
- enum tegra_usb_phy_port_speed port_speed);
-
-void tegra_ehci_phy_restore_end(struct tegra_usb_phy *phy);
-
-void tegra_usb_phy_close(struct tegra_usb_phy *phy);
-
-#endif /* __MACH_USB_PHY_H */
diff --git a/arch/arm/mach-tegra/pcie.c b/arch/arm/mach-tegra/pcie.c
index d3ad5150d66..a8dba6489c9 100644
--- a/arch/arm/mach-tegra/pcie.c
+++ b/arch/arm/mach-tegra/pcie.c
@@ -171,8 +171,6 @@ static void __iomem *reg_pmc_base = IO_ADDRESS(TEGRA_PMC_BASE);
* 0x90000000 - 0x9fffffff - non-prefetchable memory
* 0xa0000000 - 0xbfffffff - prefetchable memory
*/
-#define TEGRA_PCIE_BASE 0x80000000
-
#define PCIE_REGS_SZ SZ_16K
#define PCIE_CFG_OFF PCIE_REGS_SZ
#define PCIE_CFG_SZ SZ_1M
@@ -180,8 +178,6 @@ static void __iomem *reg_pmc_base = IO_ADDRESS(TEGRA_PMC_BASE);
#define PCIE_EXT_CFG_SZ SZ_1M
#define PCIE_IOMAP_SZ (PCIE_REGS_SZ + PCIE_CFG_SZ + PCIE_EXT_CFG_SZ)
-#define MMIO_BASE (TEGRA_PCIE_BASE + SZ_4M)
-#define MMIO_SIZE SZ_64K
#define MEM_BASE_0 (TEGRA_PCIE_BASE + SZ_256M)
#define MEM_SIZE_0 SZ_128M
#define MEM_BASE_1 (MEM_BASE_0 + MEM_SIZE_0)
@@ -204,10 +200,9 @@ struct tegra_pcie_port {
bool link_up;
- char io_space_name[16];
char mem_space_name[16];
char prefetch_space_name[20];
- struct resource res[3];
+ struct resource res[2];
};
struct tegra_pcie_info {
@@ -223,17 +218,7 @@ struct tegra_pcie_info {
struct clk *pll_e;
};
-static struct tegra_pcie_info tegra_pcie = {
- .res_mmio = {
- .name = "PCI IO",
- .start = MMIO_BASE,
- .end = MMIO_BASE + MMIO_SIZE - 1,
- .flags = IORESOURCE_MEM,
- },
-};
-
-void __iomem *tegra_pcie_io_base;
-EXPORT_SYMBOL(tegra_pcie_io_base);
+static struct tegra_pcie_info tegra_pcie;
static inline void afi_writel(u32 value, unsigned long offset)
{
@@ -367,17 +352,7 @@ DECLARE_PCI_FIXUP_EARLY(PCI_VENDOR_ID_NVIDIA, 0x0bf1, tegra_pcie_fixup_class);
/* Tegra PCIE requires relaxed ordering */
static void __devinit tegra_pcie_relax_enable(struct pci_dev *dev)
{
- u16 val16;
- int pos = pci_find_capability(dev, PCI_CAP_ID_EXP);
-
- if (pos <= 0) {
- dev_err(&dev->dev, "skipping relaxed ordering fixup\n");
- return;
- }
-
- pci_read_config_word(dev, pos + PCI_EXP_DEVCTL, &val16);
- val16 |= PCI_EXP_DEVCTL_RELAX_EN;
- pci_write_config_word(dev, pos + PCI_EXP_DEVCTL, val16);
+ pcie_capability_set_word(dev, PCI_EXP_DEVCTL, PCI_EXP_DEVCTL_RELAX_EN);
}
DECLARE_PCI_FIXUP_FINAL(PCI_ANY_ID, PCI_ANY_ID, tegra_pcie_relax_enable);
@@ -391,24 +366,7 @@ static int tegra_pcie_setup(int nr, struct pci_sys_data *sys)
pp = tegra_pcie.port + nr;
pp->root_bus_nr = sys->busnr;
- /*
- * IORESOURCE_IO
- */
- snprintf(pp->io_space_name, sizeof(pp->io_space_name),
- "PCIe %d I/O", pp->index);
- pp->io_space_name[sizeof(pp->io_space_name) - 1] = 0;
- pp->res[0].name = pp->io_space_name;
- if (pp->index == 0) {
- pp->res[0].start = PCIBIOS_MIN_IO;
- pp->res[0].end = pp->res[0].start + SZ_32K - 1;
- } else {
- pp->res[0].start = PCIBIOS_MIN_IO + SZ_32K;
- pp->res[0].end = IO_SPACE_LIMIT;
- }
- pp->res[0].flags = IORESOURCE_IO;
- if (request_resource(&ioport_resource, &pp->res[0]))
- panic("Request PCIe IO resource failed\n");
- pci_add_resource_offset(&sys->resources, &pp->res[0], sys->io_offset);
+ pci_ioremap_io(nr * SZ_64K, TEGRA_PCIE_IO_BASE);
/*
* IORESOURCE_MEM
@@ -416,18 +374,18 @@ static int tegra_pcie_setup(int nr, struct pci_sys_data *sys)
snprintf(pp->mem_space_name, sizeof(pp->mem_space_name),
"PCIe %d MEM", pp->index);
pp->mem_space_name[sizeof(pp->mem_space_name) - 1] = 0;
- pp->res[1].name = pp->mem_space_name;
+ pp->res[0].name = pp->mem_space_name;
if (pp->index == 0) {
- pp->res[1].start = MEM_BASE_0;
- pp->res[1].end = pp->res[1].start + MEM_SIZE_0 - 1;
+ pp->res[0].start = MEM_BASE_0;
+ pp->res[0].end = pp->res[0].start + MEM_SIZE_0 - 1;
} else {
- pp->res[1].start = MEM_BASE_1;
- pp->res[1].end = pp->res[1].start + MEM_SIZE_1 - 1;
+ pp->res[0].start = MEM_BASE_1;
+ pp->res[0].end = pp->res[0].start + MEM_SIZE_1 - 1;
}
- pp->res[1].flags = IORESOURCE_MEM;
- if (request_resource(&iomem_resource, &pp->res[1]))
+ pp->res[0].flags = IORESOURCE_MEM;
+ if (request_resource(&iomem_resource, &pp->res[0]))
panic("Request PCIe Memory resource failed\n");
- pci_add_resource_offset(&sys->resources, &pp->res[1], sys->mem_offset);
+ pci_add_resource_offset(&sys->resources, &pp->res[0], sys->mem_offset);
/*
* IORESOURCE_MEM | IORESOURCE_PREFETCH
@@ -435,18 +393,18 @@ static int tegra_pcie_setup(int nr, struct pci_sys_data *sys)
snprintf(pp->prefetch_space_name, sizeof(pp->prefetch_space_name),
"PCIe %d PREFETCH MEM", pp->index);
pp->prefetch_space_name[sizeof(pp->prefetch_space_name) - 1] = 0;
- pp->res[2].name = pp->prefetch_space_name;
+ pp->res[1].name = pp->prefetch_space_name;
if (pp->index == 0) {
- pp->res[2].start = PREFETCH_MEM_BASE_0;
- pp->res[2].end = pp->res[2].start + PREFETCH_MEM_SIZE_0 - 1;
+ pp->res[1].start = PREFETCH_MEM_BASE_0;
+ pp->res[1].end = pp->res[1].start + PREFETCH_MEM_SIZE_0 - 1;
} else {
- pp->res[2].start = PREFETCH_MEM_BASE_1;
- pp->res[2].end = pp->res[2].start + PREFETCH_MEM_SIZE_1 - 1;
+ pp->res[1].start = PREFETCH_MEM_BASE_1;
+ pp->res[1].end = pp->res[1].start + PREFETCH_MEM_SIZE_1 - 1;
}
- pp->res[2].flags = IORESOURCE_MEM | IORESOURCE_PREFETCH;
- if (request_resource(&iomem_resource, &pp->res[2]))
+ pp->res[1].flags = IORESOURCE_MEM | IORESOURCE_PREFETCH;
+ if (request_resource(&iomem_resource, &pp->res[1]))
panic("Request PCIe Prefetch Memory resource failed\n");
- pci_add_resource_offset(&sys->resources, &pp->res[2], sys->mem_offset);
+ pci_add_resource_offset(&sys->resources, &pp->res[1], sys->mem_offset);
return 1;
}
@@ -541,8 +499,8 @@ static void tegra_pcie_setup_translations(void)
/* Bar 2: downstream IO bar */
fpci_bar = ((__u32)0xfdfc << 16);
- size = MMIO_SIZE;
- axi_address = MMIO_BASE;
+ size = SZ_128K;
+ axi_address = TEGRA_PCIE_IO_BASE;
afi_writel(axi_address, AFI_AXI_BAR2_START);
afi_writel(size >> 12, AFI_AXI_BAR2_SZ);
afi_writel(fpci_bar, AFI_FPCI_BAR2);
@@ -776,7 +734,6 @@ static void tegra_pcie_clocks_put(void)
static int __init tegra_pcie_get_resources(void)
{
- struct resource *res_mmio = &tegra_pcie.res_mmio;
int err;
err = tegra_pcie_clocks_get();
@@ -798,34 +755,16 @@ static int __init tegra_pcie_get_resources(void)
goto err_map_reg;
}
- err = request_resource(&iomem_resource, res_mmio);
- if (err) {
- pr_err("PCIE: Failed to request resources: %d\n", err);
- goto err_req_io;
- }
-
- tegra_pcie_io_base = ioremap_nocache(res_mmio->start,
- resource_size(res_mmio));
- if (tegra_pcie_io_base == NULL) {
- pr_err("PCIE: Failed to map IO\n");
- err = -ENOMEM;
- goto err_map_io;
- }
-
err = request_irq(INT_PCIE_INTR, tegra_pcie_isr,
IRQF_SHARED, "PCIE", &tegra_pcie);
if (err) {
pr_err("PCIE: Failed to register IRQ: %d\n", err);
- goto err_irq;
+ goto err_req_io;
}
set_irq_flags(INT_PCIE_INTR, IRQF_VALID);
return 0;
-err_irq:
- iounmap(tegra_pcie_io_base);
-err_map_io:
- release_resource(&tegra_pcie.res_mmio);
err_req_io:
iounmap(tegra_pcie.regs);
err_map_reg:
diff --git a/arch/arm/mach-tegra/platsmp.c b/arch/arm/mach-tegra/platsmp.c
index 1a208dbf682..81cb26591ac 100644
--- a/arch/arm/mach-tegra/platsmp.c
+++ b/arch/arm/mach-tegra/platsmp.c
@@ -31,6 +31,9 @@
#include "fuse.h"
#include "flowctrl.h"
#include "reset.h"
+#include "tegra_cpu_car.h"
+
+#include "common.h"
extern void tegra_secondary_startup(void);
@@ -38,19 +41,8 @@ static void __iomem *scu_base = IO_ADDRESS(TEGRA_ARM_PERIF_BASE);
#define EVP_CPU_RESET_VECTOR \
(IO_ADDRESS(TEGRA_EXCEPTION_VECTORS_BASE) + 0x100)
-#define CLK_RST_CONTROLLER_CLK_CPU_CMPLX \
- (IO_ADDRESS(TEGRA_CLK_RESET_BASE) + 0x4c)
-#define CLK_RST_CONTROLLER_RST_CPU_CMPLX_SET \
- (IO_ADDRESS(TEGRA_CLK_RESET_BASE) + 0x340)
-#define CLK_RST_CONTROLLER_RST_CPU_CMPLX_CLR \
- (IO_ADDRESS(TEGRA_CLK_RESET_BASE) + 0x344)
-#define CLK_RST_CONTROLLER_CLK_CPU_CMPLX_CLR \
- (IO_ADDRESS(TEGRA_CLK_RESET_BASE) + 0x34c)
-
-#define CPU_CLOCK(cpu) (0x1<<(8+cpu))
-#define CPU_RESET(cpu) (0x1111ul<<(cpu))
-
-void __cpuinit platform_secondary_init(unsigned int cpu)
+
+static void __cpuinit tegra_secondary_init(unsigned int cpu)
{
/*
* if any interrupts are already enabled for the primary
@@ -63,13 +55,8 @@ void __cpuinit platform_secondary_init(unsigned int cpu)
static int tegra20_power_up_cpu(unsigned int cpu)
{
- u32 reg;
-
/* Enable the CPU clock. */
- reg = readl(CLK_RST_CONTROLLER_CLK_CPU_CMPLX);
- writel(reg & ~CPU_CLOCK(cpu), CLK_RST_CONTROLLER_CLK_CPU_CMPLX);
- barrier();
- reg = readl(CLK_RST_CONTROLLER_CLK_CPU_CMPLX);
+ tegra_enable_cpu_clock(cpu);
/* Clear flow controller CSR. */
flowctrl_write_cpu_csr(cpu, 0);
@@ -79,7 +66,6 @@ static int tegra20_power_up_cpu(unsigned int cpu)
static int tegra30_power_up_cpu(unsigned int cpu)
{
- u32 reg;
int ret, pwrgateid;
unsigned long timeout;
@@ -103,8 +89,7 @@ static int tegra30_power_up_cpu(unsigned int cpu)
}
/* CPU partition is powered. Enable the CPU clock. */
- writel(CPU_CLOCK(cpu), CLK_RST_CONTROLLER_CLK_CPU_CMPLX_CLR);
- reg = readl(CLK_RST_CONTROLLER_CLK_CPU_CMPLX_CLR);
+ tegra_enable_cpu_clock(cpu);
udelay(10);
/* Remove I/O clamps. */
@@ -117,7 +102,7 @@ static int tegra30_power_up_cpu(unsigned int cpu)
return 0;
}
-int __cpuinit boot_secondary(unsigned int cpu, struct task_struct *idle)
+static int __cpuinit tegra_boot_secondary(unsigned int cpu, struct task_struct *idle)
{
int status;
@@ -128,8 +113,7 @@ int __cpuinit boot_secondary(unsigned int cpu, struct task_struct *idle)
* via the flow controller). This will have no effect on first boot
* of the CPU since it should already be in reset.
*/
- writel(CPU_RESET(cpu), CLK_RST_CONTROLLER_RST_CPU_CMPLX_SET);
- dmb();
+ tegra_put_cpu_in_reset(cpu);
/*
* Unhalt the CPU. If the flow controller was used to power-gate the
@@ -155,8 +139,7 @@ int __cpuinit boot_secondary(unsigned int cpu, struct task_struct *idle)
goto done;
/* Take the CPU out of reset. */
- writel(CPU_RESET(cpu), CLK_RST_CONTROLLER_RST_CPU_CMPLX_CLR);
- wmb();
+ tegra_cpu_out_of_reset(cpu);
done:
return status;
}
@@ -165,7 +148,7 @@ done:
* Initialise the CPU possible map early - this describes the CPUs
* which may be present or become present in the system.
*/
-void __init smp_init_cpus(void)
+static void __init tegra_smp_init_cpus(void)
{
unsigned int i, ncores = scu_get_core_count(scu_base);
@@ -181,8 +164,19 @@ void __init smp_init_cpus(void)
set_smp_cross_call(gic_raise_softirq);
}
-void __init platform_smp_prepare_cpus(unsigned int max_cpus)
+static void __init tegra_smp_prepare_cpus(unsigned int max_cpus)
{
tegra_cpu_reset_handler_init();
scu_enable(scu_base);
}
+
+struct smp_operations tegra_smp_ops __initdata = {
+ .smp_init_cpus = tegra_smp_init_cpus,
+ .smp_prepare_cpus = tegra_smp_prepare_cpus,
+ .smp_secondary_init = tegra_secondary_init,
+ .smp_boot_secondary = tegra_boot_secondary,
+#ifdef CONFIG_HOTPLUG_CPU
+ .cpu_die = tegra_cpu_die,
+ .cpu_disable = tegra_cpu_disable,
+#endif
+};
diff --git a/arch/arm/mach-tegra/powergate.c b/arch/arm/mach-tegra/powergate.c
index 15d506501cc..de0662de28a 100644
--- a/arch/arm/mach-tegra/powergate.c
+++ b/arch/arm/mach-tegra/powergate.c
@@ -199,7 +199,9 @@ int __init tegra_powergate_init(void)
#ifdef CONFIG_DEBUG_FS
-static const char * const powergate_name[] = {
+static const char * const *powergate_name;
+
+static const char * const powergate_name_t20[] = {
[TEGRA_POWERGATE_CPU] = "cpu",
[TEGRA_POWERGATE_3D] = "3d",
[TEGRA_POWERGATE_VENC] = "venc",
@@ -209,6 +211,23 @@ static const char * const powergate_name[] = {
[TEGRA_POWERGATE_MPE] = "mpe",
};
+static const char * const powergate_name_t30[] = {
+ [TEGRA_POWERGATE_CPU] = "cpu0",
+ [TEGRA_POWERGATE_3D] = "3d0",
+ [TEGRA_POWERGATE_VENC] = "venc",
+ [TEGRA_POWERGATE_VDEC] = "vdec",
+ [TEGRA_POWERGATE_PCIE] = "pcie",
+ [TEGRA_POWERGATE_L2] = "l2",
+ [TEGRA_POWERGATE_MPE] = "mpe",
+ [TEGRA_POWERGATE_HEG] = "heg",
+ [TEGRA_POWERGATE_SATA] = "sata",
+ [TEGRA_POWERGATE_CPU1] = "cpu1",
+ [TEGRA_POWERGATE_CPU2] = "cpu2",
+ [TEGRA_POWERGATE_CPU3] = "cpu3",
+ [TEGRA_POWERGATE_CELP] = "celp",
+ [TEGRA_POWERGATE_3D1] = "3d1",
+};
+
static int powergate_show(struct seq_file *s, void *data)
{
int i;
@@ -237,14 +256,24 @@ static const struct file_operations powergate_fops = {
int __init tegra_powergate_debugfs_init(void)
{
struct dentry *d;
- int err = -ENOMEM;
- d = debugfs_create_file("powergate", S_IRUGO, NULL, NULL,
- &powergate_fops);
- if (!d)
- return -ENOMEM;
+ switch (tegra_chip_id) {
+ case TEGRA20:
+ powergate_name = powergate_name_t20;
+ break;
+ case TEGRA30:
+ powergate_name = powergate_name_t30;
+ break;
+ }
+
+ if (powergate_name) {
+ d = debugfs_create_file("powergate", S_IRUGO, NULL, NULL,
+ &powergate_fops);
+ if (!d)
+ return -ENOMEM;
+ }
- return err;
+ return 0;
}
#endif
diff --git a/arch/arm/mach-tegra/sleep-t20.S b/arch/arm/mach-tegra/sleep-t20.S
new file mode 100644
index 00000000000..a36ae413e2b
--- /dev/null
+++ b/arch/arm/mach-tegra/sleep-t20.S
@@ -0,0 +1,82 @@
+/*
+ * Copyright (c) 2010-2012, NVIDIA Corporation. All rights reserved.
+ * Copyright (c) 2011, Google, Inc.
+ *
+ * Author: Colin Cross <ccross@android.com>
+ * Gary King <gking@nvidia.com>
+ *
+ * This program is free software; you can redistribute it and/or modify it
+ * under the terms and conditions of the GNU General Public License,
+ * version 2, as published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope 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, see <http://www.gnu.org/licenses/>.
+ */
+
+#include <linux/linkage.h>
+
+#include <asm/assembler.h>
+
+#include <mach/iomap.h>
+
+#include "sleep.h"
+#include "flowctrl.h"
+
+#if defined(CONFIG_HOTPLUG_CPU) || defined(CONFIG_PM_SLEEP)
+/*
+ * tegra20_hotplug_shutdown(void)
+ *
+ * puts the current cpu in reset
+ * should never return
+ */
+ENTRY(tegra20_hotplug_shutdown)
+ /* Turn off SMP coherency */
+ exit_smp r4, r5
+
+ /* Put this CPU down */
+ cpu_id r0
+ bl tegra20_cpu_shutdown
+ mov pc, lr @ should never get here
+ENDPROC(tegra20_hotplug_shutdown)
+
+/*
+ * tegra20_cpu_shutdown(int cpu)
+ *
+ * r0 is cpu to reset
+ *
+ * puts the specified CPU in wait-for-event mode on the flow controller
+ * and puts the CPU in reset
+ * can be called on the current cpu or another cpu
+ * if called on the current cpu, does not return
+ * MUST NOT BE CALLED FOR CPU 0.
+ *
+ * corrupts r0-r3, r12
+ */
+ENTRY(tegra20_cpu_shutdown)
+ cmp r0, #0
+ moveq pc, lr @ must not be called for CPU 0
+
+ cpu_to_halt_reg r1, r0
+ ldr r3, =TEGRA_FLOW_CTRL_VIRT
+ mov r2, #FLOW_CTRL_WAITEVENT | FLOW_CTRL_JTAG_RESUME
+ str r2, [r3, r1] @ put flow controller in wait event mode
+ ldr r2, [r3, r1]
+ isb
+ dsb
+ movw r1, 0x1011
+ mov r1, r1, lsl r0
+ ldr r3, =TEGRA_CLK_RESET_VIRT
+ str r1, [r3, #0x340] @ put slave CPU in reset
+ isb
+ dsb
+ cpu_id r3
+ cmp r3, r0
+ beq .
+ mov pc, lr
+ENDPROC(tegra20_cpu_shutdown)
+#endif
diff --git a/arch/arm/mach-tegra/sleep-t30.S b/arch/arm/mach-tegra/sleep-t30.S
new file mode 100644
index 00000000000..777d9cee8b9
--- /dev/null
+++ b/arch/arm/mach-tegra/sleep-t30.S
@@ -0,0 +1,107 @@
+/*
+ * Copyright (c) 2012, NVIDIA Corporation. All rights reserved.
+ *
+ * This program is free software; you can redistribute it and/or modify it
+ * under the terms and conditions of the GNU General Public License,
+ * version 2, as published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope 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, see <http://www.gnu.org/licenses/>.
+ */
+
+#include <linux/linkage.h>
+
+#include <asm/assembler.h>
+
+#include <mach/iomap.h>
+
+#include "sleep.h"
+#include "flowctrl.h"
+
+#define TEGRA30_POWER_HOTPLUG_SHUTDOWN (1 << 27) /* Hotplug shutdown */
+
+#if defined(CONFIG_HOTPLUG_CPU) || defined(CONFIG_PM_SLEEP)
+/*
+ * tegra30_hotplug_shutdown(void)
+ *
+ * Powergates the current CPU.
+ * Should never return.
+ */
+ENTRY(tegra30_hotplug_shutdown)
+ /* Turn off SMP coherency */
+ exit_smp r4, r5
+
+ /* Powergate this CPU */
+ mov r0, #TEGRA30_POWER_HOTPLUG_SHUTDOWN
+ bl tegra30_cpu_shutdown
+ mov pc, lr @ should never get here
+ENDPROC(tegra30_hotplug_shutdown)
+
+/*
+ * tegra30_cpu_shutdown(unsigned long flags)
+ *
+ * Puts the current CPU in wait-for-event mode on the flow controller
+ * and powergates it -- flags (in R0) indicate the request type.
+ * Must never be called for CPU 0.
+ *
+ * corrupts r0-r4, r12
+ */
+ENTRY(tegra30_cpu_shutdown)
+ cpu_id r3
+ cmp r3, #0
+ moveq pc, lr @ Must never be called for CPU 0
+
+ ldr r12, =TEGRA_FLOW_CTRL_VIRT
+ cpu_to_csr_reg r1, r3
+ add r1, r1, r12 @ virtual CSR address for this CPU
+ cpu_to_halt_reg r2, r3
+ add r2, r2, r12 @ virtual HALT_EVENTS address for this CPU
+
+ /*
+ * Clear this CPU's "event" and "interrupt" flags and power gate
+ * it when halting but not before it is in the "WFE" state.
+ */
+ movw r12, \
+ FLOW_CTRL_CSR_INTR_FLAG | FLOW_CTRL_CSR_EVENT_FLAG | \
+ FLOW_CTRL_CSR_ENABLE
+ mov r4, #(1 << 4)
+ orr r12, r12, r4, lsl r3
+ str r12, [r1]
+
+ /* Halt this CPU. */
+ mov r3, #0x400
+delay_1:
+ subs r3, r3, #1 @ delay as a part of wfe war.
+ bge delay_1;
+ cpsid a @ disable imprecise aborts.
+ ldr r3, [r1] @ read CSR
+ str r3, [r1] @ clear CSR
+ tst r0, #TEGRA30_POWER_HOTPLUG_SHUTDOWN
+ movne r3, #FLOW_CTRL_WAITEVENT @ For hotplug
+ str r3, [r2]
+ ldr r0, [r2]
+ b wfe_war
+
+__cpu_reset_again:
+ dsb
+ .align 5
+ wfe @ CPU should be power gated here
+wfe_war:
+ b __cpu_reset_again
+
+ /*
+ * 38 nop's, which fills reset of wfe cache line and
+ * 4 more cachelines with nop
+ */
+ .rept 38
+ nop
+ .endr
+ b . @ should never get here
+
+ENDPROC(tegra30_cpu_shutdown)
+#endif
diff --git a/arch/arm/mach-tegra/sleep.S b/arch/arm/mach-tegra/sleep.S
index d29b156a801..ea81554c483 100644
--- a/arch/arm/mach-tegra/sleep.S
+++ b/arch/arm/mach-tegra/sleep.S
@@ -29,36 +29,5 @@
#include <mach/iomap.h>
#include "flowctrl.h"
+#include "sleep.h"
-#define TEGRA_FLOW_CTRL_VIRT (TEGRA_FLOW_CTRL_BASE - IO_PPSB_PHYS \
- + IO_PPSB_VIRT)
-
-/* returns the offset of the flow controller halt register for a cpu */
-.macro cpu_to_halt_reg rd, rcpu
- cmp \rcpu, #0
- subne \rd, \rcpu, #1
- movne \rd, \rd, lsl #3
- addne \rd, \rd, #0x14
- moveq \rd, #0
-.endm
-
-/* returns the offset of the flow controller csr register for a cpu */
-.macro cpu_to_csr_reg rd, rcpu
- cmp \rcpu, #0
- subne \rd, \rcpu, #1
- movne \rd, \rd, lsl #3
- addne \rd, \rd, #0x18
- moveq \rd, #8
-.endm
-
-/* returns the ID of the current processor */
-.macro cpu_id, rd
- mrc p15, 0, \rd, c0, c0, 5
- and \rd, \rd, #0xF
-.endm
-
-/* loads a 32-bit value into a register without a data access */
-.macro mov32, reg, val
- movw \reg, #:lower16:\val
- movt \reg, #:upper16:\val
-.endm
diff --git a/arch/arm/mach-tegra/sleep.h b/arch/arm/mach-tegra/sleep.h
new file mode 100644
index 00000000000..e25a7cd703d
--- /dev/null
+++ b/arch/arm/mach-tegra/sleep.h
@@ -0,0 +1,85 @@
+/*
+ * Copyright (c) 2010-2012, NVIDIA Corporation. All rights reserved.
+ *
+ * This program is free software; you can redistribute it and/or modify it
+ * under the terms and conditions of the GNU General Public License,
+ * version 2, as published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope 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, see <http://www.gnu.org/licenses/>.
+ */
+
+#ifndef __MACH_TEGRA_SLEEP_H
+#define __MACH_TEGRA_SLEEP_H
+
+#include <mach/iomap.h>
+
+#define TEGRA_ARM_PERIF_VIRT (TEGRA_ARM_PERIF_BASE - IO_CPU_PHYS \
+ + IO_CPU_VIRT)
+#define TEGRA_FLOW_CTRL_VIRT (TEGRA_FLOW_CTRL_BASE - IO_PPSB_PHYS \
+ + IO_PPSB_VIRT)
+#define TEGRA_CLK_RESET_VIRT (TEGRA_CLK_RESET_BASE - IO_PPSB_PHYS \
+ + IO_PPSB_VIRT)
+
+#ifdef __ASSEMBLY__
+/* returns the offset of the flow controller halt register for a cpu */
+.macro cpu_to_halt_reg rd, rcpu
+ cmp \rcpu, #0
+ subne \rd, \rcpu, #1
+ movne \rd, \rd, lsl #3
+ addne \rd, \rd, #0x14
+ moveq \rd, #0
+.endm
+
+/* returns the offset of the flow controller csr register for a cpu */
+.macro cpu_to_csr_reg rd, rcpu
+ cmp \rcpu, #0
+ subne \rd, \rcpu, #1
+ movne \rd, \rd, lsl #3
+ addne \rd, \rd, #0x18
+ moveq \rd, #8
+.endm
+
+/* returns the ID of the current processor */
+.macro cpu_id, rd
+ mrc p15, 0, \rd, c0, c0, 5
+ and \rd, \rd, #0xF
+.endm
+
+/* loads a 32-bit value into a register without a data access */
+.macro mov32, reg, val
+ movw \reg, #:lower16:\val
+ movt \reg, #:upper16:\val
+.endm
+
+/* Macro to exit SMP coherency. */
+.macro exit_smp, tmp1, tmp2
+ mrc p15, 0, \tmp1, c1, c0, 1 @ ACTLR
+ bic \tmp1, \tmp1, #(1<<6) | (1<<0) @ clear ACTLR.SMP | ACTLR.FW
+ mcr p15, 0, \tmp1, c1, c0, 1 @ ACTLR
+ isb
+ cpu_id \tmp1
+ mov \tmp1, \tmp1, lsl #2
+ mov \tmp2, #0xf
+ mov \tmp2, \tmp2, lsl \tmp1
+ mov32 \tmp1, TEGRA_ARM_PERIF_VIRT + 0xC
+ str \tmp2, [\tmp1] @ invalidate SCU tags for CPU
+ dsb
+.endm
+#else
+
+#ifdef CONFIG_HOTPLUG_CPU
+void tegra20_hotplug_init(void);
+void tegra30_hotplug_init(void);
+#else
+static inline void tegra20_hotplug_init(void) {}
+static inline void tegra30_hotplug_init(void) {}
+#endif
+
+#endif
+#endif
diff --git a/arch/arm/mach-tegra/tegra20_clocks.c b/arch/arm/mach-tegra/tegra20_clocks.c
new file mode 100644
index 00000000000..deb873fb12b
--- /dev/null
+++ b/arch/arm/mach-tegra/tegra20_clocks.c
@@ -0,0 +1,1624 @@
+/*
+ * arch/arm/mach-tegra/tegra20_clocks.c
+ *
+ * Copyright (C) 2010 Google, Inc.
+ * Copyright (c) 2010-2012 NVIDIA CORPORATION. All rights reserved.
+ *
+ * Author:
+ * Colin Cross <ccross@google.com>
+ *
+ * This software is licensed under the terms of the GNU General Public
+ * License version 2, as published by the Free Software Foundation, and
+ * may be copied, distributed, and modified under those terms.
+ *
+ * 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.
+ *
+ */
+
+#include <linux/kernel.h>
+#include <linux/module.h>
+#include <linux/list.h>
+#include <linux/spinlock.h>
+#include <linux/delay.h>
+#include <linux/io.h>
+#include <linux/clkdev.h>
+#include <linux/clk.h>
+
+#include <mach/iomap.h>
+
+#include "clock.h"
+#include "fuse.h"
+#include "tegra2_emc.h"
+#include "tegra_cpu_car.h"
+
+#define RST_DEVICES 0x004
+#define RST_DEVICES_SET 0x300
+#define RST_DEVICES_CLR 0x304
+#define RST_DEVICES_NUM 3
+
+#define CLK_OUT_ENB 0x010
+#define CLK_OUT_ENB_SET 0x320
+#define CLK_OUT_ENB_CLR 0x324
+#define CLK_OUT_ENB_NUM 3
+
+#define CLK_MASK_ARM 0x44
+#define MISC_CLK_ENB 0x48
+
+#define OSC_CTRL 0x50
+#define OSC_CTRL_OSC_FREQ_MASK (3<<30)
+#define OSC_CTRL_OSC_FREQ_13MHZ (0<<30)
+#define OSC_CTRL_OSC_FREQ_19_2MHZ (1<<30)
+#define OSC_CTRL_OSC_FREQ_12MHZ (2<<30)
+#define OSC_CTRL_OSC_FREQ_26MHZ (3<<30)
+#define OSC_CTRL_MASK (0x3f2 | OSC_CTRL_OSC_FREQ_MASK)
+
+#define OSC_FREQ_DET 0x58
+#define OSC_FREQ_DET_TRIG (1<<31)
+
+#define OSC_FREQ_DET_STATUS 0x5C
+#define OSC_FREQ_DET_BUSY (1<<31)
+#define OSC_FREQ_DET_CNT_MASK 0xFFFF
+
+#define PERIPH_CLK_SOURCE_I2S1 0x100
+#define PERIPH_CLK_SOURCE_EMC 0x19c
+#define PERIPH_CLK_SOURCE_OSC 0x1fc
+#define PERIPH_CLK_SOURCE_NUM \
+ ((PERIPH_CLK_SOURCE_OSC - PERIPH_CLK_SOURCE_I2S1) / 4)
+
+#define PERIPH_CLK_SOURCE_MASK (3<<30)
+#define PERIPH_CLK_SOURCE_SHIFT 30
+#define PERIPH_CLK_SOURCE_PWM_MASK (7<<28)
+#define PERIPH_CLK_SOURCE_PWM_SHIFT 28
+#define PERIPH_CLK_SOURCE_ENABLE (1<<28)
+#define PERIPH_CLK_SOURCE_DIVU71_MASK 0xFF
+#define PERIPH_CLK_SOURCE_DIVU16_MASK 0xFFFF
+#define PERIPH_CLK_SOURCE_DIV_SHIFT 0
+
+#define SDMMC_CLK_INT_FB_SEL (1 << 23)
+#define SDMMC_CLK_INT_FB_DLY_SHIFT 16
+#define SDMMC_CLK_INT_FB_DLY_MASK (0xF << SDMMC_CLK_INT_FB_DLY_SHIFT)
+
+#define PLL_BASE 0x0
+#define PLL_BASE_BYPASS (1<<31)
+#define PLL_BASE_ENABLE (1<<30)
+#define PLL_BASE_REF_ENABLE (1<<29)
+#define PLL_BASE_OVERRIDE (1<<28)
+#define PLL_BASE_DIVP_MASK (0x7<<20)
+#define PLL_BASE_DIVP_SHIFT 20
+#define PLL_BASE_DIVN_MASK (0x3FF<<8)
+#define PLL_BASE_DIVN_SHIFT 8
+#define PLL_BASE_DIVM_MASK (0x1F)
+#define PLL_BASE_DIVM_SHIFT 0
+
+#define PLL_OUT_RATIO_MASK (0xFF<<8)
+#define PLL_OUT_RATIO_SHIFT 8
+#define PLL_OUT_OVERRIDE (1<<2)
+#define PLL_OUT_CLKEN (1<<1)
+#define PLL_OUT_RESET_DISABLE (1<<0)
+
+#define PLL_MISC(c) (((c)->flags & PLL_ALT_MISC_REG) ? 0x4 : 0xc)
+
+#define PLL_MISC_DCCON_SHIFT 20
+#define PLL_MISC_CPCON_SHIFT 8
+#define PLL_MISC_CPCON_MASK (0xF<<PLL_MISC_CPCON_SHIFT)
+#define PLL_MISC_LFCON_SHIFT 4
+#define PLL_MISC_LFCON_MASK (0xF<<PLL_MISC_LFCON_SHIFT)
+#define PLL_MISC_VCOCON_SHIFT 0
+#define PLL_MISC_VCOCON_MASK (0xF<<PLL_MISC_VCOCON_SHIFT)
+
+#define PLLU_BASE_POST_DIV (1<<20)
+
+#define PLLD_MISC_CLKENABLE (1<<30)
+#define PLLD_MISC_DIV_RST (1<<23)
+#define PLLD_MISC_DCCON_SHIFT 12
+
+#define PLLE_MISC_READY (1 << 15)
+
+#define PERIPH_CLK_TO_ENB_REG(c) ((c->u.periph.clk_num / 32) * 4)
+#define PERIPH_CLK_TO_ENB_SET_REG(c) ((c->u.periph.clk_num / 32) * 8)
+#define PERIPH_CLK_TO_ENB_BIT(c) (1 << (c->u.periph.clk_num % 32))
+
+#define SUPER_CLK_MUX 0x00
+#define SUPER_STATE_SHIFT 28
+#define SUPER_STATE_MASK (0xF << SUPER_STATE_SHIFT)
+#define SUPER_STATE_STANDBY (0x0 << SUPER_STATE_SHIFT)
+#define SUPER_STATE_IDLE (0x1 << SUPER_STATE_SHIFT)
+#define SUPER_STATE_RUN (0x2 << SUPER_STATE_SHIFT)
+#define SUPER_STATE_IRQ (0x3 << SUPER_STATE_SHIFT)
+#define SUPER_STATE_FIQ (0x4 << SUPER_STATE_SHIFT)
+#define SUPER_SOURCE_MASK 0xF
+#define SUPER_FIQ_SOURCE_SHIFT 12
+#define SUPER_IRQ_SOURCE_SHIFT 8
+#define SUPER_RUN_SOURCE_SHIFT 4
+#define SUPER_IDLE_SOURCE_SHIFT 0
+
+#define SUPER_CLK_DIVIDER 0x04
+
+#define BUS_CLK_DISABLE (1<<3)
+#define BUS_CLK_DIV_MASK 0x3
+
+#define PMC_CTRL 0x0
+ #define PMC_CTRL_BLINK_ENB (1 << 7)
+
+#define PMC_DPD_PADS_ORIDE 0x1c
+ #define PMC_DPD_PADS_ORIDE_BLINK_ENB (1 << 20)
+
+#define PMC_BLINK_TIMER_DATA_ON_SHIFT 0
+#define PMC_BLINK_TIMER_DATA_ON_MASK 0x7fff
+#define PMC_BLINK_TIMER_ENB (1 << 15)
+#define PMC_BLINK_TIMER_DATA_OFF_SHIFT 16
+#define PMC_BLINK_TIMER_DATA_OFF_MASK 0xffff
+
+/* Tegra CPU clock and reset control regs */
+#define TEGRA_CLK_RST_CONTROLLER_CLK_CPU_CMPLX 0x4c
+#define TEGRA_CLK_RST_CONTROLLER_RST_CPU_CMPLX_SET 0x340
+#define TEGRA_CLK_RST_CONTROLLER_RST_CPU_CMPLX_CLR 0x344
+
+#define CPU_CLOCK(cpu) (0x1 << (8 + cpu))
+#define CPU_RESET(cpu) (0x1111ul << (cpu))
+
+static void __iomem *reg_clk_base = IO_ADDRESS(TEGRA_CLK_RESET_BASE);
+static void __iomem *reg_pmc_base = IO_ADDRESS(TEGRA_PMC_BASE);
+
+/*
+ * Some clocks share a register with other clocks. Any clock op that
+ * non-atomically modifies a register used by another clock must lock
+ * clock_register_lock first.
+ */
+static DEFINE_SPINLOCK(clock_register_lock);
+
+/*
+ * Some peripheral clocks share an enable bit, so refcount the enable bits
+ * in registers CLK_ENABLE_L, CLK_ENABLE_H, and CLK_ENABLE_U
+ */
+static int tegra_periph_clk_enable_refcount[3 * 32];
+
+#define clk_writel(value, reg) \
+ __raw_writel(value, reg_clk_base + (reg))
+#define clk_readl(reg) \
+ __raw_readl(reg_clk_base + (reg))
+#define pmc_writel(value, reg) \
+ __raw_writel(value, reg_pmc_base + (reg))
+#define pmc_readl(reg) \
+ __raw_readl(reg_pmc_base + (reg))
+
+static unsigned long clk_measure_input_freq(void)
+{
+ u32 clock_autodetect;
+ clk_writel(OSC_FREQ_DET_TRIG | 1, OSC_FREQ_DET);
+ do {} while (clk_readl(OSC_FREQ_DET_STATUS) & OSC_FREQ_DET_BUSY);
+ clock_autodetect = clk_readl(OSC_FREQ_DET_STATUS);
+ if (clock_autodetect >= 732 - 3 && clock_autodetect <= 732 + 3) {
+ return 12000000;
+ } else if (clock_autodetect >= 794 - 3 && clock_autodetect <= 794 + 3) {
+ return 13000000;
+ } else if (clock_autodetect >= 1172 - 3 && clock_autodetect <= 1172 + 3) {
+ return 19200000;
+ } else if (clock_autodetect >= 1587 - 3 && clock_autodetect <= 1587 + 3) {
+ return 26000000;
+ } else {
+ pr_err("%s: Unexpected clock autodetect value %d",
+ __func__, clock_autodetect);
+ BUG();
+ return 0;
+ }
+}
+
+static int clk_div71_get_divider(unsigned long parent_rate, unsigned long rate)
+{
+ s64 divider_u71 = parent_rate * 2;
+ divider_u71 += rate - 1;
+ do_div(divider_u71, rate);
+
+ if (divider_u71 - 2 < 0)
+ return 0;
+
+ if (divider_u71 - 2 > 255)
+ return -EINVAL;
+
+ return divider_u71 - 2;
+}
+
+static int clk_div16_get_divider(unsigned long parent_rate, unsigned long rate)
+{
+ s64 divider_u16;
+
+ divider_u16 = parent_rate;
+ divider_u16 += rate - 1;
+ do_div(divider_u16, rate);
+
+ if (divider_u16 - 1 < 0)
+ return 0;
+
+ if (divider_u16 - 1 > 0xFFFF)
+ return -EINVAL;
+
+ return divider_u16 - 1;
+}
+
+static unsigned long tegra_clk_fixed_recalc_rate(struct clk_hw *hw,
+ unsigned long parent_rate)
+{
+ return to_clk_tegra(hw)->fixed_rate;
+}
+
+struct clk_ops tegra_clk_32k_ops = {
+ .recalc_rate = tegra_clk_fixed_recalc_rate,
+};
+
+/* clk_m functions */
+static unsigned long tegra20_clk_m_recalc_rate(struct clk_hw *hw,
+ unsigned long prate)
+{
+ if (!to_clk_tegra(hw)->fixed_rate)
+ to_clk_tegra(hw)->fixed_rate = clk_measure_input_freq();
+ return to_clk_tegra(hw)->fixed_rate;
+}
+
+static void tegra20_clk_m_init(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 osc_ctrl = clk_readl(OSC_CTRL);
+ u32 auto_clock_control = osc_ctrl & ~OSC_CTRL_OSC_FREQ_MASK;
+
+ switch (c->fixed_rate) {
+ case 12000000:
+ auto_clock_control |= OSC_CTRL_OSC_FREQ_12MHZ;
+ break;
+ case 13000000:
+ auto_clock_control |= OSC_CTRL_OSC_FREQ_13MHZ;
+ break;
+ case 19200000:
+ auto_clock_control |= OSC_CTRL_OSC_FREQ_19_2MHZ;
+ break;
+ case 26000000:
+ auto_clock_control |= OSC_CTRL_OSC_FREQ_26MHZ;
+ break;
+ default:
+ BUG();
+ }
+ clk_writel(auto_clock_control, OSC_CTRL);
+}
+
+struct clk_ops tegra_clk_m_ops = {
+ .init = tegra20_clk_m_init,
+ .recalc_rate = tegra20_clk_m_recalc_rate,
+};
+
+/* super clock functions */
+/* "super clocks" on tegra have two-stage muxes and a clock skipping
+ * super divider. We will ignore the clock skipping divider, since we
+ * can't lower the voltage when using the clock skip, but we can if we
+ * lower the PLL frequency.
+ */
+static int tegra20_super_clk_is_enabled(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val;
+
+ val = clk_readl(c->reg + SUPER_CLK_MUX);
+ BUG_ON(((val & SUPER_STATE_MASK) != SUPER_STATE_RUN) &&
+ ((val & SUPER_STATE_MASK) != SUPER_STATE_IDLE));
+ c->state = ON;
+ return c->state;
+}
+
+static int tegra20_super_clk_enable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ clk_writel(0, c->reg + SUPER_CLK_DIVIDER);
+ return 0;
+}
+
+static void tegra20_super_clk_disable(struct clk_hw *hw)
+{
+ pr_debug("%s on clock %s\n", __func__, __clk_get_name(hw->clk));
+
+ /* oops - don't disable the CPU clock! */
+ BUG();
+}
+
+static u8 tegra20_super_clk_get_parent(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ int val = clk_readl(c->reg + SUPER_CLK_MUX);
+ int source;
+ int shift;
+
+ BUG_ON(((val & SUPER_STATE_MASK) != SUPER_STATE_RUN) &&
+ ((val & SUPER_STATE_MASK) != SUPER_STATE_IDLE));
+ shift = ((val & SUPER_STATE_MASK) == SUPER_STATE_IDLE) ?
+ SUPER_IDLE_SOURCE_SHIFT : SUPER_RUN_SOURCE_SHIFT;
+ source = (val >> shift) & SUPER_SOURCE_MASK;
+ return source;
+}
+
+static int tegra20_super_clk_set_parent(struct clk_hw *hw, u8 index)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val = clk_readl(c->reg + SUPER_CLK_MUX);
+ int shift;
+
+ BUG_ON(((val & SUPER_STATE_MASK) != SUPER_STATE_RUN) &&
+ ((val & SUPER_STATE_MASK) != SUPER_STATE_IDLE));
+ shift = ((val & SUPER_STATE_MASK) == SUPER_STATE_IDLE) ?
+ SUPER_IDLE_SOURCE_SHIFT : SUPER_RUN_SOURCE_SHIFT;
+ val &= ~(SUPER_SOURCE_MASK << shift);
+ val |= index << shift;
+
+ clk_writel(val, c->reg);
+
+ return 0;
+}
+
+/* FIX ME: Need to switch parents to change the source PLL rate */
+static unsigned long tegra20_super_clk_recalc_rate(struct clk_hw *hw,
+ unsigned long prate)
+{
+ return prate;
+}
+
+static long tegra20_super_clk_round_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long *prate)
+{
+ return *prate;
+}
+
+static int tegra20_super_clk_set_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long parent_rate)
+{
+ return 0;
+}
+
+struct clk_ops tegra_super_ops = {
+ .is_enabled = tegra20_super_clk_is_enabled,
+ .enable = tegra20_super_clk_enable,
+ .disable = tegra20_super_clk_disable,
+ .set_parent = tegra20_super_clk_set_parent,
+ .get_parent = tegra20_super_clk_get_parent,
+ .set_rate = tegra20_super_clk_set_rate,
+ .round_rate = tegra20_super_clk_round_rate,
+ .recalc_rate = tegra20_super_clk_recalc_rate,
+};
+
+static unsigned long tegra20_twd_clk_recalc_rate(struct clk_hw *hw,
+ unsigned long parent_rate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u64 rate = parent_rate;
+
+ if (c->mul != 0 && c->div != 0) {
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+ }
+
+ return rate;
+}
+
+struct clk_ops tegra_twd_ops = {
+ .recalc_rate = tegra20_twd_clk_recalc_rate,
+};
+
+static u8 tegra20_cop_clk_get_parent(struct clk_hw *hw)
+{
+ return 0;
+}
+
+struct clk_ops tegra_cop_ops = {
+ .get_parent = tegra20_cop_clk_get_parent,
+};
+
+/* virtual cop clock functions. Used to acquire the fake 'cop' clock to
+ * reset the COP block (i.e. AVP) */
+void tegra2_cop_clk_reset(struct clk_hw *hw, bool assert)
+{
+ unsigned long reg = assert ? RST_DEVICES_SET : RST_DEVICES_CLR;
+
+ pr_debug("%s %s\n", __func__, assert ? "assert" : "deassert");
+ clk_writel(1 << 1, reg);
+}
+
+/* bus clock functions */
+static int tegra20_bus_clk_is_enabled(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val = clk_readl(c->reg);
+
+ c->state = ((val >> c->reg_shift) & BUS_CLK_DISABLE) ? OFF : ON;
+ return c->state;
+}
+
+static int tegra20_bus_clk_enable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long flags;
+ u32 val;
+
+ spin_lock_irqsave(&clock_register_lock, flags);
+
+ val = clk_readl(c->reg);
+ val &= ~(BUS_CLK_DISABLE << c->reg_shift);
+ clk_writel(val, c->reg);
+
+ spin_unlock_irqrestore(&clock_register_lock, flags);
+
+ return 0;
+}
+
+static void tegra20_bus_clk_disable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long flags;
+ u32 val;
+
+ spin_lock_irqsave(&clock_register_lock, flags);
+
+ val = clk_readl(c->reg);
+ val |= BUS_CLK_DISABLE << c->reg_shift;
+ clk_writel(val, c->reg);
+
+ spin_unlock_irqrestore(&clock_register_lock, flags);
+}
+
+static unsigned long tegra20_bus_clk_recalc_rate(struct clk_hw *hw,
+ unsigned long prate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val = clk_readl(c->reg);
+ u64 rate = prate;
+
+ c->div = ((val >> c->reg_shift) & BUS_CLK_DIV_MASK) + 1;
+ c->mul = 1;
+
+ if (c->mul != 0 && c->div != 0) {
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+ }
+ return rate;
+}
+
+static int tegra20_bus_clk_set_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long parent_rate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ int ret = -EINVAL;
+ unsigned long flags;
+ u32 val;
+ int i;
+
+ spin_lock_irqsave(&clock_register_lock, flags);
+
+ val = clk_readl(c->reg);
+ for (i = 1; i <= 4; i++) {
+ if (rate == parent_rate / i) {
+ val &= ~(BUS_CLK_DIV_MASK << c->reg_shift);
+ val |= (i - 1) << c->reg_shift;
+ clk_writel(val, c->reg);
+ c->div = i;
+ c->mul = 1;
+ ret = 0;
+ break;
+ }
+ }
+
+ spin_unlock_irqrestore(&clock_register_lock, flags);
+
+ return ret;
+}
+
+static long tegra20_bus_clk_round_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long *prate)
+{
+ unsigned long parent_rate = *prate;
+ s64 divider;
+
+ if (rate >= parent_rate)
+ return rate;
+
+ divider = parent_rate;
+ divider += rate - 1;
+ do_div(divider, rate);
+
+ if (divider < 0)
+ return divider;
+
+ if (divider > 4)
+ divider = 4;
+ do_div(parent_rate, divider);
+
+ return parent_rate;
+}
+
+struct clk_ops tegra_bus_ops = {
+ .is_enabled = tegra20_bus_clk_is_enabled,
+ .enable = tegra20_bus_clk_enable,
+ .disable = tegra20_bus_clk_disable,
+ .set_rate = tegra20_bus_clk_set_rate,
+ .round_rate = tegra20_bus_clk_round_rate,
+ .recalc_rate = tegra20_bus_clk_recalc_rate,
+};
+
+/* Blink output functions */
+static int tegra20_blink_clk_is_enabled(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val;
+
+ val = pmc_readl(PMC_CTRL);
+ c->state = (val & PMC_CTRL_BLINK_ENB) ? ON : OFF;
+ return c->state;
+}
+
+static unsigned long tegra20_blink_clk_recalc_rate(struct clk_hw *hw,
+ unsigned long prate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u64 rate = prate;
+ u32 val;
+
+ c->mul = 1;
+ val = pmc_readl(c->reg);
+
+ if (val & PMC_BLINK_TIMER_ENB) {
+ unsigned int on_off;
+
+ on_off = (val >> PMC_BLINK_TIMER_DATA_ON_SHIFT) &
+ PMC_BLINK_TIMER_DATA_ON_MASK;
+ val >>= PMC_BLINK_TIMER_DATA_OFF_SHIFT;
+ val &= PMC_BLINK_TIMER_DATA_OFF_MASK;
+ on_off += val;
+ /* each tick in the blink timer is 4 32KHz clocks */
+ c->div = on_off * 4;
+ } else {
+ c->div = 1;
+ }
+
+ if (c->mul != 0 && c->div != 0) {
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+ }
+ return rate;
+}
+
+static int tegra20_blink_clk_enable(struct clk_hw *hw)
+{
+ u32 val;
+
+ val = pmc_readl(PMC_DPD_PADS_ORIDE);
+ pmc_writel(val | PMC_DPD_PADS_ORIDE_BLINK_ENB, PMC_DPD_PADS_ORIDE);
+
+ val = pmc_readl(PMC_CTRL);
+ pmc_writel(val | PMC_CTRL_BLINK_ENB, PMC_CTRL);
+
+ return 0;
+}
+
+static void tegra20_blink_clk_disable(struct clk_hw *hw)
+{
+ u32 val;
+
+ val = pmc_readl(PMC_CTRL);
+ pmc_writel(val & ~PMC_CTRL_BLINK_ENB, PMC_CTRL);
+
+ val = pmc_readl(PMC_DPD_PADS_ORIDE);
+ pmc_writel(val & ~PMC_DPD_PADS_ORIDE_BLINK_ENB, PMC_DPD_PADS_ORIDE);
+}
+
+static int tegra20_blink_clk_set_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long parent_rate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+
+ if (rate >= parent_rate) {
+ c->div = 1;
+ pmc_writel(0, c->reg);
+ } else {
+ unsigned int on_off;
+ u32 val;
+
+ on_off = DIV_ROUND_UP(parent_rate / 8, rate);
+ c->div = on_off * 8;
+
+ val = (on_off & PMC_BLINK_TIMER_DATA_ON_MASK) <<
+ PMC_BLINK_TIMER_DATA_ON_SHIFT;
+ on_off &= PMC_BLINK_TIMER_DATA_OFF_MASK;
+ on_off <<= PMC_BLINK_TIMER_DATA_OFF_SHIFT;
+ val |= on_off;
+ val |= PMC_BLINK_TIMER_ENB;
+ pmc_writel(val, c->reg);
+ }
+
+ return 0;
+}
+
+static long tegra20_blink_clk_round_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long *prate)
+{
+ int div;
+ int mul;
+ long round_rate = *prate;
+
+ mul = 1;
+
+ if (rate >= *prate) {
+ div = 1;
+ } else {
+ div = DIV_ROUND_UP(*prate / 8, rate);
+ div *= 8;
+ }
+
+ round_rate *= mul;
+ round_rate += div - 1;
+ do_div(round_rate, div);
+
+ return round_rate;
+}
+
+struct clk_ops tegra_blink_clk_ops = {
+ .is_enabled = tegra20_blink_clk_is_enabled,
+ .enable = tegra20_blink_clk_enable,
+ .disable = tegra20_blink_clk_disable,
+ .set_rate = tegra20_blink_clk_set_rate,
+ .round_rate = tegra20_blink_clk_round_rate,
+ .recalc_rate = tegra20_blink_clk_recalc_rate,
+};
+
+/* PLL Functions */
+static int tegra20_pll_clk_wait_for_lock(struct clk_tegra *c)
+{
+ udelay(c->u.pll.lock_delay);
+ return 0;
+}
+
+static int tegra20_pll_clk_is_enabled(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val = clk_readl(c->reg + PLL_BASE);
+
+ c->state = (val & PLL_BASE_ENABLE) ? ON : OFF;
+ return c->state;
+}
+
+static unsigned long tegra20_pll_clk_recalc_rate(struct clk_hw *hw,
+ unsigned long prate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val = clk_readl(c->reg + PLL_BASE);
+ u64 rate = prate;
+
+ if (c->flags & PLL_FIXED && !(val & PLL_BASE_OVERRIDE)) {
+ const struct clk_pll_freq_table *sel;
+ for (sel = c->u.pll.freq_table; sel->input_rate != 0; sel++) {
+ if (sel->input_rate == prate &&
+ sel->output_rate == c->u.pll.fixed_rate) {
+ c->mul = sel->n;
+ c->div = sel->m * sel->p;
+ break;
+ }
+ }
+ pr_err("Clock %s has unknown fixed frequency\n",
+ __clk_get_name(hw->clk));
+ BUG();
+ } else if (val & PLL_BASE_BYPASS) {
+ c->mul = 1;
+ c->div = 1;
+ } else {
+ c->mul = (val & PLL_BASE_DIVN_MASK) >> PLL_BASE_DIVN_SHIFT;
+ c->div = (val & PLL_BASE_DIVM_MASK) >> PLL_BASE_DIVM_SHIFT;
+ if (c->flags & PLLU)
+ c->div *= (val & PLLU_BASE_POST_DIV) ? 1 : 2;
+ else
+ c->div *= (val & PLL_BASE_DIVP_MASK) ? 2 : 1;
+ }
+
+ if (c->mul != 0 && c->div != 0) {
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+ }
+ return rate;
+}
+
+static int tegra20_pll_clk_enable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val;
+ pr_debug("%s on clock %s\n", __func__, __clk_get_name(hw->clk));
+
+ val = clk_readl(c->reg + PLL_BASE);
+ val &= ~PLL_BASE_BYPASS;
+ val |= PLL_BASE_ENABLE;
+ clk_writel(val, c->reg + PLL_BASE);
+
+ tegra20_pll_clk_wait_for_lock(c);
+
+ return 0;
+}
+
+static void tegra20_pll_clk_disable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val;
+ pr_debug("%s on clock %s\n", __func__, __clk_get_name(hw->clk));
+
+ val = clk_readl(c->reg);
+ val &= ~(PLL_BASE_BYPASS | PLL_BASE_ENABLE);
+ clk_writel(val, c->reg);
+}
+
+static int tegra20_pll_clk_set_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long parent_rate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long input_rate = parent_rate;
+ const struct clk_pll_freq_table *sel;
+ u32 val;
+
+ pr_debug("%s: %s %lu\n", __func__, __clk_get_name(hw->clk), rate);
+
+ if (c->flags & PLL_FIXED) {
+ int ret = 0;
+ if (rate != c->u.pll.fixed_rate) {
+ pr_err("%s: Can not change %s fixed rate %lu to %lu\n",
+ __func__, __clk_get_name(hw->clk),
+ c->u.pll.fixed_rate, rate);
+ ret = -EINVAL;
+ }
+ return ret;
+ }
+
+ for (sel = c->u.pll.freq_table; sel->input_rate != 0; sel++) {
+ if (sel->input_rate == input_rate && sel->output_rate == rate) {
+ c->mul = sel->n;
+ c->div = sel->m * sel->p;
+
+ val = clk_readl(c->reg + PLL_BASE);
+ if (c->flags & PLL_FIXED)
+ val |= PLL_BASE_OVERRIDE;
+ val &= ~(PLL_BASE_DIVP_MASK | PLL_BASE_DIVN_MASK |
+ PLL_BASE_DIVM_MASK);
+ val |= (sel->m << PLL_BASE_DIVM_SHIFT) |
+ (sel->n << PLL_BASE_DIVN_SHIFT);
+ BUG_ON(sel->p < 1 || sel->p > 2);
+ if (c->flags & PLLU) {
+ if (sel->p == 1)
+ val |= PLLU_BASE_POST_DIV;
+ } else {
+ if (sel->p == 2)
+ val |= 1 << PLL_BASE_DIVP_SHIFT;
+ }
+ clk_writel(val, c->reg + PLL_BASE);
+
+ if (c->flags & PLL_HAS_CPCON) {
+ val = clk_readl(c->reg + PLL_MISC(c));
+ val &= ~PLL_MISC_CPCON_MASK;
+ val |= sel->cpcon << PLL_MISC_CPCON_SHIFT;
+ clk_writel(val, c->reg + PLL_MISC(c));
+ }
+
+ if (c->state == ON)
+ tegra20_pll_clk_enable(hw);
+ return 0;
+ }
+ }
+ return -EINVAL;
+}
+
+static long tegra20_pll_clk_round_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long *prate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ const struct clk_pll_freq_table *sel;
+ unsigned long input_rate = *prate;
+ u64 output_rate = *prate;
+ int mul;
+ int div;
+
+ if (c->flags & PLL_FIXED)
+ return c->u.pll.fixed_rate;
+
+ for (sel = c->u.pll.freq_table; sel->input_rate != 0; sel++)
+ if (sel->input_rate == input_rate && sel->output_rate == rate) {
+ mul = sel->n;
+ div = sel->m * sel->p;
+ break;
+ }
+
+ if (sel->input_rate == 0)
+ return -EINVAL;
+
+ output_rate *= mul;
+ output_rate += div - 1; /* round up */
+ do_div(output_rate, div);
+
+ return output_rate;
+}
+
+struct clk_ops tegra_pll_ops = {
+ .is_enabled = tegra20_pll_clk_is_enabled,
+ .enable = tegra20_pll_clk_enable,
+ .disable = tegra20_pll_clk_disable,
+ .set_rate = tegra20_pll_clk_set_rate,
+ .recalc_rate = tegra20_pll_clk_recalc_rate,
+ .round_rate = tegra20_pll_clk_round_rate,
+};
+
+static void tegra20_pllx_clk_init(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+
+ if (tegra_sku_id == 7)
+ c->max_rate = 750000000;
+}
+
+struct clk_ops tegra_pllx_ops = {
+ .init = tegra20_pllx_clk_init,
+ .is_enabled = tegra20_pll_clk_is_enabled,
+ .enable = tegra20_pll_clk_enable,
+ .disable = tegra20_pll_clk_disable,
+ .set_rate = tegra20_pll_clk_set_rate,
+ .recalc_rate = tegra20_pll_clk_recalc_rate,
+ .round_rate = tegra20_pll_clk_round_rate,
+};
+
+static int tegra20_plle_clk_enable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val;
+
+ pr_debug("%s on clock %s\n", __func__, __clk_get_name(hw->clk));
+
+ mdelay(1);
+
+ val = clk_readl(c->reg + PLL_BASE);
+ if (!(val & PLLE_MISC_READY))
+ return -EBUSY;
+
+ val = clk_readl(c->reg + PLL_BASE);
+ val |= PLL_BASE_ENABLE | PLL_BASE_BYPASS;
+ clk_writel(val, c->reg + PLL_BASE);
+
+ return 0;
+}
+
+struct clk_ops tegra_plle_ops = {
+ .is_enabled = tegra20_pll_clk_is_enabled,
+ .enable = tegra20_plle_clk_enable,
+ .set_rate = tegra20_pll_clk_set_rate,
+ .recalc_rate = tegra20_pll_clk_recalc_rate,
+ .round_rate = tegra20_pll_clk_round_rate,
+};
+
+/* Clock divider ops */
+static int tegra20_pll_div_clk_is_enabled(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val = clk_readl(c->reg);
+
+ val >>= c->reg_shift;
+ c->state = (val & PLL_OUT_CLKEN) ? ON : OFF;
+ if (!(val & PLL_OUT_RESET_DISABLE))
+ c->state = OFF;
+ return c->state;
+}
+
+static unsigned long tegra20_pll_div_clk_recalc_rate(struct clk_hw *hw,
+ unsigned long prate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u64 rate = prate;
+ u32 val = clk_readl(c->reg);
+ u32 divu71;
+
+ val >>= c->reg_shift;
+
+ if (c->flags & DIV_U71) {
+ divu71 = (val & PLL_OUT_RATIO_MASK) >> PLL_OUT_RATIO_SHIFT;
+ c->div = (divu71 + 2);
+ c->mul = 2;
+ } else if (c->flags & DIV_2) {
+ c->div = 2;
+ c->mul = 1;
+ } else {
+ c->div = 1;
+ c->mul = 1;
+ }
+
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+
+ return rate;
+}
+
+static int tegra20_pll_div_clk_enable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long flags;
+ u32 new_val;
+ u32 val;
+
+ pr_debug("%s: %s\n", __func__, __clk_get_name(hw->clk));
+
+ if (c->flags & DIV_U71) {
+ spin_lock_irqsave(&clock_register_lock, flags);
+ val = clk_readl(c->reg);
+ new_val = val >> c->reg_shift;
+ new_val &= 0xFFFF;
+
+ new_val |= PLL_OUT_CLKEN | PLL_OUT_RESET_DISABLE;
+
+ val &= ~(0xFFFF << c->reg_shift);
+ val |= new_val << c->reg_shift;
+ clk_writel(val, c->reg);
+ spin_unlock_irqrestore(&clock_register_lock, flags);
+ return 0;
+ } else if (c->flags & DIV_2) {
+ BUG_ON(!(c->flags & PLLD));
+ spin_lock_irqsave(&clock_register_lock, flags);
+ val = clk_readl(c->reg);
+ val &= ~PLLD_MISC_DIV_RST;
+ clk_writel(val, c->reg);
+ spin_unlock_irqrestore(&clock_register_lock, flags);
+ return 0;
+ }
+ return -EINVAL;
+}
+
+static void tegra20_pll_div_clk_disable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long flags;
+ u32 new_val;
+ u32 val;
+
+ pr_debug("%s: %s\n", __func__, __clk_get_name(hw->clk));
+
+ if (c->flags & DIV_U71) {
+ spin_lock_irqsave(&clock_register_lock, flags);
+ val = clk_readl(c->reg);
+ new_val = val >> c->reg_shift;
+ new_val &= 0xFFFF;
+
+ new_val &= ~(PLL_OUT_CLKEN | PLL_OUT_RESET_DISABLE);
+
+ val &= ~(0xFFFF << c->reg_shift);
+ val |= new_val << c->reg_shift;
+ clk_writel(val, c->reg);
+ spin_unlock_irqrestore(&clock_register_lock, flags);
+ } else if (c->flags & DIV_2) {
+ BUG_ON(!(c->flags & PLLD));
+ spin_lock_irqsave(&clock_register_lock, flags);
+ val = clk_readl(c->reg);
+ val |= PLLD_MISC_DIV_RST;
+ clk_writel(val, c->reg);
+ spin_unlock_irqrestore(&clock_register_lock, flags);
+ }
+}
+
+static int tegra20_pll_div_clk_set_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long parent_rate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long flags;
+ int divider_u71;
+ u32 new_val;
+ u32 val;
+
+ pr_debug("%s: %s %lu\n", __func__, __clk_get_name(hw->clk), rate);
+
+ if (c->flags & DIV_U71) {
+ divider_u71 = clk_div71_get_divider(parent_rate, rate);
+ if (divider_u71 >= 0) {
+ spin_lock_irqsave(&clock_register_lock, flags);
+ val = clk_readl(c->reg);
+ new_val = val >> c->reg_shift;
+ new_val &= 0xFFFF;
+ if (c->flags & DIV_U71_FIXED)
+ new_val |= PLL_OUT_OVERRIDE;
+ new_val &= ~PLL_OUT_RATIO_MASK;
+ new_val |= divider_u71 << PLL_OUT_RATIO_SHIFT;
+
+ val &= ~(0xFFFF << c->reg_shift);
+ val |= new_val << c->reg_shift;
+ clk_writel(val, c->reg);
+ c->div = divider_u71 + 2;
+ c->mul = 2;
+ spin_unlock_irqrestore(&clock_register_lock, flags);
+ return 0;
+ }
+ } else if (c->flags & DIV_2) {
+ if (parent_rate == rate * 2)
+ return 0;
+ }
+ return -EINVAL;
+}
+
+static long tegra20_pll_div_clk_round_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long *prate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long parent_rate = *prate;
+ int divider;
+
+ pr_debug("%s: %s %lu\n", __func__, __clk_get_name(hw->clk), rate);
+
+ if (c->flags & DIV_U71) {
+ divider = clk_div71_get_divider(parent_rate, rate);
+ if (divider < 0)
+ return divider;
+ return DIV_ROUND_UP(parent_rate * 2, divider + 2);
+ } else if (c->flags & DIV_2) {
+ return DIV_ROUND_UP(parent_rate, 2);
+ }
+ return -EINVAL;
+}
+
+struct clk_ops tegra_pll_div_ops = {
+ .is_enabled = tegra20_pll_div_clk_is_enabled,
+ .enable = tegra20_pll_div_clk_enable,
+ .disable = tegra20_pll_div_clk_disable,
+ .set_rate = tegra20_pll_div_clk_set_rate,
+ .round_rate = tegra20_pll_div_clk_round_rate,
+ .recalc_rate = tegra20_pll_div_clk_recalc_rate,
+};
+
+/* Periph clk ops */
+
+static int tegra20_periph_clk_is_enabled(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+
+ c->state = ON;
+
+ if (!c->u.periph.clk_num)
+ goto out;
+
+ if (!(clk_readl(CLK_OUT_ENB + PERIPH_CLK_TO_ENB_REG(c)) &
+ PERIPH_CLK_TO_ENB_BIT(c)))
+ c->state = OFF;
+
+ if (!(c->flags & PERIPH_NO_RESET))
+ if (clk_readl(RST_DEVICES + PERIPH_CLK_TO_ENB_REG(c)) &
+ PERIPH_CLK_TO_ENB_BIT(c))
+ c->state = OFF;
+
+out:
+ return c->state;
+}
+
+static int tegra20_periph_clk_enable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long flags;
+ u32 val;
+
+ pr_debug("%s on clock %s\n", __func__, __clk_get_name(hw->clk));
+
+ if (!c->u.periph.clk_num)
+ return 0;
+
+ tegra_periph_clk_enable_refcount[c->u.periph.clk_num]++;
+ if (tegra_periph_clk_enable_refcount[c->u.periph.clk_num] > 1)
+ return 0;
+
+ spin_lock_irqsave(&clock_register_lock, flags);
+
+ clk_writel(PERIPH_CLK_TO_ENB_BIT(c),
+ CLK_OUT_ENB_SET + PERIPH_CLK_TO_ENB_SET_REG(c));
+ if (!(c->flags & PERIPH_NO_RESET) && !(c->flags & PERIPH_MANUAL_RESET))
+ clk_writel(PERIPH_CLK_TO_ENB_BIT(c),
+ RST_DEVICES_CLR + PERIPH_CLK_TO_ENB_SET_REG(c));
+ if (c->flags & PERIPH_EMC_ENB) {
+ /* The EMC peripheral clock has 2 extra enable bits */
+ /* FIXME: Do they need to be disabled? */
+ val = clk_readl(c->reg);
+ val |= 0x3 << 24;
+ clk_writel(val, c->reg);
+ }
+
+ spin_unlock_irqrestore(&clock_register_lock, flags);
+
+ return 0;
+}
+
+static void tegra20_periph_clk_disable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long flags;
+
+ pr_debug("%s on clock %s\n", __func__, __clk_get_name(hw->clk));
+
+ if (!c->u.periph.clk_num)
+ return;
+
+ tegra_periph_clk_enable_refcount[c->u.periph.clk_num]--;
+
+ if (tegra_periph_clk_enable_refcount[c->u.periph.clk_num] > 0)
+ return;
+
+ spin_lock_irqsave(&clock_register_lock, flags);
+
+ clk_writel(PERIPH_CLK_TO_ENB_BIT(c),
+ CLK_OUT_ENB_CLR + PERIPH_CLK_TO_ENB_SET_REG(c));
+
+ spin_unlock_irqrestore(&clock_register_lock, flags);
+}
+
+void tegra2_periph_clk_reset(struct clk_hw *hw, bool assert)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long base = assert ? RST_DEVICES_SET : RST_DEVICES_CLR;
+
+ pr_debug("%s %s on clock %s\n", __func__,
+ assert ? "assert" : "deassert", __clk_get_name(hw->clk));
+
+ BUG_ON(!c->u.periph.clk_num);
+
+ if (!(c->flags & PERIPH_NO_RESET))
+ clk_writel(PERIPH_CLK_TO_ENB_BIT(c),
+ base + PERIPH_CLK_TO_ENB_SET_REG(c));
+}
+
+static int tegra20_periph_clk_set_parent(struct clk_hw *hw, u8 index)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val;
+ u32 mask;
+ u32 shift;
+
+ pr_debug("%s: %s %d\n", __func__, __clk_get_name(hw->clk), index);
+
+ if (c->flags & MUX_PWM) {
+ shift = PERIPH_CLK_SOURCE_PWM_SHIFT;
+ mask = PERIPH_CLK_SOURCE_PWM_MASK;
+ } else {
+ shift = PERIPH_CLK_SOURCE_SHIFT;
+ mask = PERIPH_CLK_SOURCE_MASK;
+ }
+
+ val = clk_readl(c->reg);
+ val &= ~mask;
+ val |= (index) << shift;
+
+ clk_writel(val, c->reg);
+
+ return 0;
+}
+
+static u8 tegra20_periph_clk_get_parent(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val = clk_readl(c->reg);
+ u32 mask;
+ u32 shift;
+
+ if (c->flags & MUX_PWM) {
+ shift = PERIPH_CLK_SOURCE_PWM_SHIFT;
+ mask = PERIPH_CLK_SOURCE_PWM_MASK;
+ } else {
+ shift = PERIPH_CLK_SOURCE_SHIFT;
+ mask = PERIPH_CLK_SOURCE_MASK;
+ }
+
+ if (c->flags & MUX)
+ return (val & mask) >> shift;
+ else
+ return 0;
+}
+
+static unsigned long tegra20_periph_clk_recalc_rate(struct clk_hw *hw,
+ unsigned long prate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long rate = prate;
+ u32 val = clk_readl(c->reg);
+
+ if (c->flags & DIV_U71) {
+ u32 divu71 = val & PERIPH_CLK_SOURCE_DIVU71_MASK;
+ c->div = divu71 + 2;
+ c->mul = 2;
+ } else if (c->flags & DIV_U16) {
+ u32 divu16 = val & PERIPH_CLK_SOURCE_DIVU16_MASK;
+ c->div = divu16 + 1;
+ c->mul = 1;
+ } else {
+ c->div = 1;
+ c->mul = 1;
+ return rate;
+ }
+
+ if (c->mul != 0 && c->div != 0) {
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+ }
+
+ return rate;
+}
+
+static int tegra20_periph_clk_set_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long parent_rate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val;
+ int divider;
+
+ val = clk_readl(c->reg);
+
+ if (c->flags & DIV_U71) {
+ divider = clk_div71_get_divider(parent_rate, rate);
+
+ if (divider >= 0) {
+ val = clk_readl(c->reg);
+ val &= ~PERIPH_CLK_SOURCE_DIVU71_MASK;
+ val |= divider;
+ clk_writel(val, c->reg);
+ c->div = divider + 2;
+ c->mul = 2;
+ return 0;
+ }
+ } else if (c->flags & DIV_U16) {
+ divider = clk_div16_get_divider(parent_rate, rate);
+ if (divider >= 0) {
+ val = clk_readl(c->reg);
+ val &= ~PERIPH_CLK_SOURCE_DIVU16_MASK;
+ val |= divider;
+ clk_writel(val, c->reg);
+ c->div = divider + 1;
+ c->mul = 1;
+ return 0;
+ }
+ } else if (parent_rate <= rate) {
+ c->div = 1;
+ c->mul = 1;
+ return 0;
+ }
+
+ return -EINVAL;
+}
+
+static long tegra20_periph_clk_round_rate(struct clk_hw *hw,
+ unsigned long rate, unsigned long *prate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long parent_rate = __clk_get_rate(__clk_get_parent(hw->clk));
+ int divider;
+
+ pr_debug("%s: %s %lu\n", __func__, __clk_get_name(hw->clk), rate);
+
+ if (prate)
+ parent_rate = *prate;
+
+ if (c->flags & DIV_U71) {
+ divider = clk_div71_get_divider(parent_rate, rate);
+ if (divider < 0)
+ return divider;
+
+ return DIV_ROUND_UP(parent_rate * 2, divider + 2);
+ } else if (c->flags & DIV_U16) {
+ divider = clk_div16_get_divider(parent_rate, rate);
+ if (divider < 0)
+ return divider;
+ return DIV_ROUND_UP(parent_rate, divider + 1);
+ }
+ return -EINVAL;
+}
+
+struct clk_ops tegra_periph_clk_ops = {
+ .is_enabled = tegra20_periph_clk_is_enabled,
+ .enable = tegra20_periph_clk_enable,
+ .disable = tegra20_periph_clk_disable,
+ .set_parent = tegra20_periph_clk_set_parent,
+ .get_parent = tegra20_periph_clk_get_parent,
+ .set_rate = tegra20_periph_clk_set_rate,
+ .round_rate = tegra20_periph_clk_round_rate,
+ .recalc_rate = tegra20_periph_clk_recalc_rate,
+};
+
+/* External memory controller clock ops */
+static void tegra20_emc_clk_init(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ c->max_rate = __clk_get_rate(hw->clk);
+}
+
+static long tegra20_emc_clk_round_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long *prate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ long emc_rate;
+ long clk_rate;
+
+ /*
+ * The slowest entry in the EMC clock table that is at least as
+ * fast as rate.
+ */
+ emc_rate = tegra_emc_round_rate(rate);
+ if (emc_rate < 0)
+ return c->max_rate;
+
+ /*
+ * The fastest rate the PLL will generate that is at most the
+ * requested rate.
+ */
+ clk_rate = tegra20_periph_clk_round_rate(hw, emc_rate, NULL);
+
+ /*
+ * If this fails, and emc_rate > clk_rate, it's because the maximum
+ * rate in the EMC tables is larger than the maximum rate of the EMC
+ * clock. The EMC clock's max rate is the rate it was running when the
+ * kernel booted. Such a mismatch is probably due to using the wrong
+ * BCT, i.e. using a Tegra20 BCT with an EMC table written for Tegra25.
+ */
+ WARN_ONCE(emc_rate != clk_rate,
+ "emc_rate %ld != clk_rate %ld",
+ emc_rate, clk_rate);
+
+ return emc_rate;
+}
+
+static int tegra20_emc_clk_set_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long parent_rate)
+{
+ int ret;
+
+ /*
+ * The Tegra2 memory controller has an interlock with the clock
+ * block that allows memory shadowed registers to be updated,
+ * and then transfer them to the main registers at the same
+ * time as the clock update without glitches.
+ */
+ ret = tegra_emc_set_rate(rate);
+ if (ret < 0)
+ return ret;
+
+ ret = tegra20_periph_clk_set_rate(hw, rate, parent_rate);
+ udelay(1);
+
+ return ret;
+}
+
+struct clk_ops tegra_emc_clk_ops = {
+ .init = tegra20_emc_clk_init,
+ .is_enabled = tegra20_periph_clk_is_enabled,
+ .enable = tegra20_periph_clk_enable,
+ .disable = tegra20_periph_clk_disable,
+ .set_parent = tegra20_periph_clk_set_parent,
+ .get_parent = tegra20_periph_clk_get_parent,
+ .set_rate = tegra20_emc_clk_set_rate,
+ .round_rate = tegra20_emc_clk_round_rate,
+ .recalc_rate = tegra20_periph_clk_recalc_rate,
+};
+
+/* Clock doubler ops */
+static int tegra20_clk_double_is_enabled(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+
+ c->state = ON;
+
+ if (!c->u.periph.clk_num)
+ goto out;
+
+ if (!(clk_readl(CLK_OUT_ENB + PERIPH_CLK_TO_ENB_REG(c)) &
+ PERIPH_CLK_TO_ENB_BIT(c)))
+ c->state = OFF;
+
+out:
+ return c->state;
+};
+
+static unsigned long tegra20_clk_double_recalc_rate(struct clk_hw *hw,
+ unsigned long prate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u64 rate = prate;
+
+ c->mul = 2;
+ c->div = 1;
+
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+
+ return rate;
+}
+
+static long tegra20_clk_double_round_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long *prate)
+{
+ unsigned long output_rate = *prate;
+
+ do_div(output_rate, 2);
+ return output_rate;
+}
+
+static int tegra20_clk_double_set_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long parent_rate)
+{
+ if (rate != 2 * parent_rate)
+ return -EINVAL;
+ return 0;
+}
+
+struct clk_ops tegra_clk_double_ops = {
+ .is_enabled = tegra20_clk_double_is_enabled,
+ .enable = tegra20_periph_clk_enable,
+ .disable = tegra20_periph_clk_disable,
+ .set_rate = tegra20_clk_double_set_rate,
+ .recalc_rate = tegra20_clk_double_recalc_rate,
+ .round_rate = tegra20_clk_double_round_rate,
+};
+
+/* Audio sync clock ops */
+static int tegra20_audio_sync_clk_is_enabled(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val = clk_readl(c->reg);
+
+ c->state = (val & (1<<4)) ? OFF : ON;
+ return c->state;
+}
+
+static int tegra20_audio_sync_clk_enable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+
+ clk_writel(0, c->reg);
+ return 0;
+}
+
+static void tegra20_audio_sync_clk_disable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ clk_writel(1, c->reg);
+}
+
+static u8 tegra20_audio_sync_clk_get_parent(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val = clk_readl(c->reg);
+ int source;
+
+ source = val & 0xf;
+ return source;
+}
+
+static int tegra20_audio_sync_clk_set_parent(struct clk_hw *hw, u8 index)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val;
+
+ val = clk_readl(c->reg);
+ val &= ~0xf;
+ val |= index;
+
+ clk_writel(val, c->reg);
+
+ return 0;
+}
+
+struct clk_ops tegra_audio_sync_clk_ops = {
+ .is_enabled = tegra20_audio_sync_clk_is_enabled,
+ .enable = tegra20_audio_sync_clk_enable,
+ .disable = tegra20_audio_sync_clk_disable,
+ .set_parent = tegra20_audio_sync_clk_set_parent,
+ .get_parent = tegra20_audio_sync_clk_get_parent,
+};
+
+/* cdev1 and cdev2 (dap_mclk1 and dap_mclk2) ops */
+
+static int tegra20_cdev_clk_is_enabled(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ /* We could un-tristate the cdev1 or cdev2 pingroup here; this is
+ * currently done in the pinmux code. */
+ c->state = ON;
+
+ BUG_ON(!c->u.periph.clk_num);
+
+ if (!(clk_readl(CLK_OUT_ENB + PERIPH_CLK_TO_ENB_REG(c)) &
+ PERIPH_CLK_TO_ENB_BIT(c)))
+ c->state = OFF;
+ return c->state;
+}
+
+static int tegra20_cdev_clk_enable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ BUG_ON(!c->u.periph.clk_num);
+
+ clk_writel(PERIPH_CLK_TO_ENB_BIT(c),
+ CLK_OUT_ENB_SET + PERIPH_CLK_TO_ENB_SET_REG(c));
+ return 0;
+}
+
+static void tegra20_cdev_clk_disable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ BUG_ON(!c->u.periph.clk_num);
+
+ clk_writel(PERIPH_CLK_TO_ENB_BIT(c),
+ CLK_OUT_ENB_CLR + PERIPH_CLK_TO_ENB_SET_REG(c));
+}
+
+static unsigned long tegra20_cdev_recalc_rate(struct clk_hw *hw,
+ unsigned long prate)
+{
+ return to_clk_tegra(hw)->fixed_rate;
+}
+
+struct clk_ops tegra_cdev_clk_ops = {
+ .is_enabled = tegra20_cdev_clk_is_enabled,
+ .enable = tegra20_cdev_clk_enable,
+ .disable = tegra20_cdev_clk_disable,
+ .recalc_rate = tegra20_cdev_recalc_rate,
+};
+
+/* Tegra20 CPU clock and reset control functions */
+static void tegra20_wait_cpu_in_reset(u32 cpu)
+{
+ unsigned int reg;
+
+ do {
+ reg = readl(reg_clk_base +
+ TEGRA_CLK_RST_CONTROLLER_RST_CPU_CMPLX_SET);
+ cpu_relax();
+ } while (!(reg & (1 << cpu))); /* check CPU been reset or not */
+
+ return;
+}
+
+static void tegra20_put_cpu_in_reset(u32 cpu)
+{
+ writel(CPU_RESET(cpu),
+ reg_clk_base + TEGRA_CLK_RST_CONTROLLER_RST_CPU_CMPLX_SET);
+ dmb();
+}
+
+static void tegra20_cpu_out_of_reset(u32 cpu)
+{
+ writel(CPU_RESET(cpu),
+ reg_clk_base + TEGRA_CLK_RST_CONTROLLER_RST_CPU_CMPLX_CLR);
+ wmb();
+}
+
+static void tegra20_enable_cpu_clock(u32 cpu)
+{
+ unsigned int reg;
+
+ reg = readl(reg_clk_base + TEGRA_CLK_RST_CONTROLLER_CLK_CPU_CMPLX);
+ writel(reg & ~CPU_CLOCK(cpu),
+ reg_clk_base + TEGRA_CLK_RST_CONTROLLER_CLK_CPU_CMPLX);
+ barrier();
+ reg = readl(reg_clk_base + TEGRA_CLK_RST_CONTROLLER_CLK_CPU_CMPLX);
+}
+
+static void tegra20_disable_cpu_clock(u32 cpu)
+{
+ unsigned int reg;
+
+ reg = readl(reg_clk_base + TEGRA_CLK_RST_CONTROLLER_CLK_CPU_CMPLX);
+ writel(reg | CPU_CLOCK(cpu),
+ reg_clk_base + TEGRA_CLK_RST_CONTROLLER_CLK_CPU_CMPLX);
+}
+
+static struct tegra_cpu_car_ops tegra20_cpu_car_ops = {
+ .wait_for_reset = tegra20_wait_cpu_in_reset,
+ .put_in_reset = tegra20_put_cpu_in_reset,
+ .out_of_reset = tegra20_cpu_out_of_reset,
+ .enable_clock = tegra20_enable_cpu_clock,
+ .disable_clock = tegra20_disable_cpu_clock,
+};
+
+void __init tegra20_cpu_car_ops_init(void)
+{
+ tegra_cpu_car_ops = &tegra20_cpu_car_ops;
+}
diff --git a/arch/arm/mach-tegra/tegra20_clocks.h b/arch/arm/mach-tegra/tegra20_clocks.h
new file mode 100644
index 00000000000..8bfd31bcc49
--- /dev/null
+++ b/arch/arm/mach-tegra/tegra20_clocks.h
@@ -0,0 +1,42 @@
+/*
+ * Copyright (c) 2012, NVIDIA CORPORATION. All rights reserved.
+ *
+ * This program is free software; you can redistribute it and/or modify it
+ * under the terms and conditions of the GNU General Public License,
+ * version 2, as published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope 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, see <http://www.gnu.org/licenses/>.
+ */
+
+#ifndef __MACH_TEGRA20_CLOCK_H
+#define __MACH_TEGRA20_CLOCK_H
+
+extern struct clk_ops tegra_clk_32k_ops;
+extern struct clk_ops tegra_pll_ops;
+extern struct clk_ops tegra_clk_m_ops;
+extern struct clk_ops tegra_pll_div_ops;
+extern struct clk_ops tegra_pllx_ops;
+extern struct clk_ops tegra_plle_ops;
+extern struct clk_ops tegra_clk_double_ops;
+extern struct clk_ops tegra_cdev_clk_ops;
+extern struct clk_ops tegra_audio_sync_clk_ops;
+extern struct clk_ops tegra_super_ops;
+extern struct clk_ops tegra_cpu_ops;
+extern struct clk_ops tegra_twd_ops;
+extern struct clk_ops tegra_cop_ops;
+extern struct clk_ops tegra_bus_ops;
+extern struct clk_ops tegra_blink_clk_ops;
+extern struct clk_ops tegra_emc_clk_ops;
+extern struct clk_ops tegra_periph_clk_ops;
+extern struct clk_ops tegra_clk_shared_bus_ops;
+
+void tegra2_periph_clk_reset(struct clk_hw *hw, bool assert);
+void tegra2_cop_clk_reset(struct clk_hw *hw, bool assert);
+
+#endif
diff --git a/arch/arm/mach-tegra/tegra20_clocks_data.c b/arch/arm/mach-tegra/tegra20_clocks_data.c
new file mode 100644
index 00000000000..cc9b5fd8c3d
--- /dev/null
+++ b/arch/arm/mach-tegra/tegra20_clocks_data.c
@@ -0,0 +1,1139 @@
+/*
+ * arch/arm/mach-tegra/tegra2_clocks.c
+ *
+ * Copyright (C) 2010 Google, Inc.
+ * Copyright (c) 2012 NVIDIA CORPORATION. All rights reserved.
+ *
+ * Author:
+ * Colin Cross <ccross@google.com>
+ *
+ * This software is licensed under the terms of the GNU General Public
+ * License version 2, as published by the Free Software Foundation, and
+ * may be copied, distributed, and modified under those terms.
+ *
+ * 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.
+ *
+ */
+
+#include <linux/clk-private.h>
+#include <linux/kernel.h>
+#include <linux/module.h>
+#include <linux/list.h>
+#include <linux/spinlock.h>
+#include <linux/delay.h>
+#include <linux/io.h>
+#include <linux/clk.h>
+
+#include <mach/iomap.h>
+
+#include "clock.h"
+#include "fuse.h"
+#include "tegra2_emc.h"
+#include "tegra20_clocks.h"
+#include "tegra_cpu_car.h"
+
+/* Clock definitions */
+
+#define DEFINE_CLK_TEGRA(_name, _rate, _ops, _flags, \
+ _parent_names, _parents, _parent) \
+ static struct clk tegra_##_name = { \
+ .hw = &tegra_##_name##_hw.hw, \
+ .name = #_name, \
+ .rate = _rate, \
+ .ops = _ops, \
+ .flags = _flags, \
+ .parent_names = _parent_names, \
+ .parents = _parents, \
+ .num_parents = ARRAY_SIZE(_parent_names), \
+ .parent = _parent, \
+ };
+
+static struct clk tegra_clk_32k;
+static struct clk_tegra tegra_clk_32k_hw = {
+ .hw = {
+ .clk = &tegra_clk_32k,
+ },
+ .fixed_rate = 32768,
+};
+
+static struct clk tegra_clk_32k = {
+ .name = "clk_32k",
+ .rate = 32768,
+ .ops = &tegra_clk_32k_ops,
+ .hw = &tegra_clk_32k_hw.hw,
+ .flags = CLK_IS_ROOT,
+};
+
+static struct clk tegra_clk_m;
+static struct clk_tegra tegra_clk_m_hw = {
+ .hw = {
+ .clk = &tegra_clk_m,
+ },
+ .flags = ENABLE_ON_INIT,
+ .reg = 0x1fc,
+ .reg_shift = 28,
+ .max_rate = 26000000,
+ .fixed_rate = 0,
+};
+
+static struct clk tegra_clk_m = {
+ .name = "clk_m",
+ .ops = &tegra_clk_m_ops,
+ .hw = &tegra_clk_m_hw.hw,
+ .flags = CLK_IS_ROOT,
+};
+
+#define DEFINE_PLL(_name, _flags, _reg, _max_rate, _input_min, \
+ _input_max, _cf_min, _cf_max, _vco_min, \
+ _vco_max, _freq_table, _lock_delay, _ops, \
+ _fixed_rate, _parent) \
+ static const char *tegra_##_name##_parent_names[] = { \
+ #_parent, \
+ }; \
+ static struct clk *tegra_##_name##_parents[] = { \
+ &tegra_##_parent, \
+ }; \
+ static struct clk tegra_##_name; \
+ static struct clk_tegra tegra_##_name##_hw = { \
+ .hw = { \
+ .clk = &tegra_##_name, \
+ }, \
+ .flags = _flags, \
+ .reg = _reg, \
+ .max_rate = _max_rate, \
+ .u.pll = { \
+ .input_min = _input_min, \
+ .input_max = _input_max, \
+ .cf_min = _cf_min, \
+ .cf_max = _cf_max, \
+ .vco_min = _vco_min, \
+ .vco_max = _vco_max, \
+ .freq_table = _freq_table, \
+ .lock_delay = _lock_delay, \
+ .fixed_rate = _fixed_rate, \
+ }, \
+ }; \
+ static struct clk tegra_##_name = { \
+ .name = #_name, \
+ .ops = &_ops, \
+ .hw = &tegra_##_name##_hw.hw, \
+ .parent = &tegra_##_parent, \
+ .parent_names = tegra_##_name##_parent_names, \
+ .parents = tegra_##_name##_parents, \
+ .num_parents = 1, \
+ };
+
+#define DEFINE_PLL_OUT(_name, _flags, _reg, _reg_shift, \
+ _max_rate, _ops, _parent, _clk_flags) \
+ static const char *tegra_##_name##_parent_names[] = { \
+ #_parent, \
+ }; \
+ static struct clk *tegra_##_name##_parents[] = { \
+ &tegra_##_parent, \
+ }; \
+ static struct clk tegra_##_name; \
+ static struct clk_tegra tegra_##_name##_hw = { \
+ .hw = { \
+ .clk = &tegra_##_name, \
+ }, \
+ .flags = _flags, \
+ .reg = _reg, \
+ .max_rate = _max_rate, \
+ .reg_shift = _reg_shift, \
+ }; \
+ static struct clk tegra_##_name = { \
+ .name = #_name, \
+ .ops = &tegra_pll_div_ops, \
+ .hw = &tegra_##_name##_hw.hw, \
+ .parent = &tegra_##_parent, \
+ .parent_names = tegra_##_name##_parent_names, \
+ .parents = tegra_##_name##_parents, \
+ .num_parents = 1, \
+ .flags = _clk_flags, \
+ };
+
+
+static struct clk_pll_freq_table tegra_pll_s_freq_table[] = {
+ {32768, 12000000, 366, 1, 1, 0},
+ {32768, 13000000, 397, 1, 1, 0},
+ {32768, 19200000, 586, 1, 1, 0},
+ {32768, 26000000, 793, 1, 1, 0},
+ {0, 0, 0, 0, 0, 0},
+};
+
+DEFINE_PLL(pll_s, PLL_ALT_MISC_REG, 0xf0, 26000000, 32768, 32768, 0,
+ 0, 12000000, 26000000, tegra_pll_s_freq_table, 300,
+ tegra_pll_ops, 0, clk_32k);
+
+static struct clk_pll_freq_table tegra_pll_c_freq_table[] = {
+ { 12000000, 600000000, 600, 12, 1, 8 },
+ { 13000000, 600000000, 600, 13, 1, 8 },
+ { 19200000, 600000000, 500, 16, 1, 6 },
+ { 26000000, 600000000, 600, 26, 1, 8 },
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_c, PLL_HAS_CPCON, 0x80, 600000000, 2000000, 31000000, 1000000,
+ 6000000, 20000000, 1400000000, tegra_pll_c_freq_table, 300,
+ tegra_pll_ops, 0, clk_m);
+
+DEFINE_PLL_OUT(pll_c_out1, DIV_U71, 0x84, 0, 600000000,
+ tegra_pll_div_ops, pll_c, 0);
+
+static struct clk_pll_freq_table tegra_pll_m_freq_table[] = {
+ { 12000000, 666000000, 666, 12, 1, 8},
+ { 13000000, 666000000, 666, 13, 1, 8},
+ { 19200000, 666000000, 555, 16, 1, 8},
+ { 26000000, 666000000, 666, 26, 1, 8},
+ { 12000000, 600000000, 600, 12, 1, 8},
+ { 13000000, 600000000, 600, 13, 1, 8},
+ { 19200000, 600000000, 375, 12, 1, 6},
+ { 26000000, 600000000, 600, 26, 1, 8},
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_m, PLL_HAS_CPCON, 0x90, 800000000, 2000000, 31000000, 1000000,
+ 6000000, 20000000, 1200000000, tegra_pll_m_freq_table, 300,
+ tegra_pll_ops, 0, clk_m);
+
+DEFINE_PLL_OUT(pll_m_out1, DIV_U71, 0x94, 0, 600000000,
+ tegra_pll_div_ops, pll_m, 0);
+
+static struct clk_pll_freq_table tegra_pll_p_freq_table[] = {
+ { 12000000, 216000000, 432, 12, 2, 8},
+ { 13000000, 216000000, 432, 13, 2, 8},
+ { 19200000, 216000000, 90, 4, 2, 1},
+ { 26000000, 216000000, 432, 26, 2, 8},
+ { 12000000, 432000000, 432, 12, 1, 8},
+ { 13000000, 432000000, 432, 13, 1, 8},
+ { 19200000, 432000000, 90, 4, 1, 1},
+ { 26000000, 432000000, 432, 26, 1, 8},
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+
+DEFINE_PLL(pll_p, ENABLE_ON_INIT | PLL_FIXED | PLL_HAS_CPCON, 0xa0, 432000000,
+ 2000000, 31000000, 1000000, 6000000, 20000000, 1400000000,
+ tegra_pll_p_freq_table, 300, tegra_pll_ops, 216000000, clk_m);
+
+DEFINE_PLL_OUT(pll_p_out1, ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED, 0xa4, 0,
+ 432000000, tegra_pll_div_ops, pll_p, 0);
+DEFINE_PLL_OUT(pll_p_out2, ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED, 0xa4, 16,
+ 432000000, tegra_pll_div_ops, pll_p, 0);
+DEFINE_PLL_OUT(pll_p_out3, ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED, 0xa8, 0,
+ 432000000, tegra_pll_div_ops, pll_p, 0);
+DEFINE_PLL_OUT(pll_p_out4, ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED, 0xa8, 16,
+ 432000000, tegra_pll_div_ops, pll_p, 0);
+
+static struct clk_pll_freq_table tegra_pll_a_freq_table[] = {
+ { 28800000, 56448000, 49, 25, 1, 1},
+ { 28800000, 73728000, 64, 25, 1, 1},
+ { 28800000, 24000000, 5, 6, 1, 1},
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_a, PLL_HAS_CPCON, 0xb0, 73728000, 2000000, 31000000, 1000000,
+ 6000000, 20000000, 1400000000, tegra_pll_a_freq_table, 300,
+ tegra_pll_ops, 0, pll_p_out1);
+
+DEFINE_PLL_OUT(pll_a_out0, DIV_U71, 0xb4, 0, 73728000,
+ tegra_pll_div_ops, pll_a, 0);
+
+static struct clk_pll_freq_table tegra_pll_d_freq_table[] = {
+ { 12000000, 216000000, 216, 12, 1, 4},
+ { 13000000, 216000000, 216, 13, 1, 4},
+ { 19200000, 216000000, 135, 12, 1, 3},
+ { 26000000, 216000000, 216, 26, 1, 4},
+
+ { 12000000, 594000000, 594, 12, 1, 8},
+ { 13000000, 594000000, 594, 13, 1, 8},
+ { 19200000, 594000000, 495, 16, 1, 8},
+ { 26000000, 594000000, 594, 26, 1, 8},
+
+ { 12000000, 1000000000, 1000, 12, 1, 12},
+ { 13000000, 1000000000, 1000, 13, 1, 12},
+ { 19200000, 1000000000, 625, 12, 1, 8},
+ { 26000000, 1000000000, 1000, 26, 1, 12},
+
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_d, PLL_HAS_CPCON | PLLD, 0xd0, 1000000000, 2000000, 40000000,
+ 1000000, 6000000, 40000000, 1000000000, tegra_pll_d_freq_table,
+ 1000, tegra_pll_ops, 0, clk_m);
+
+DEFINE_PLL_OUT(pll_d_out0, DIV_2 | PLLD, 0, 0, 500000000,
+ tegra_pll_div_ops, pll_d, CLK_SET_RATE_PARENT);
+
+static struct clk_pll_freq_table tegra_pll_u_freq_table[] = {
+ { 12000000, 480000000, 960, 12, 2, 0},
+ { 13000000, 480000000, 960, 13, 2, 0},
+ { 19200000, 480000000, 200, 4, 2, 0},
+ { 26000000, 480000000, 960, 26, 2, 0},
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_u, PLLU, 0xc0, 480000000, 2000000, 40000000, 1000000, 6000000,
+ 48000000, 960000000, tegra_pll_u_freq_table, 1000,
+ tegra_pll_ops, 0, clk_m);
+
+static struct clk_pll_freq_table tegra_pll_x_freq_table[] = {
+ /* 1 GHz */
+ { 12000000, 1000000000, 1000, 12, 1, 12},
+ { 13000000, 1000000000, 1000, 13, 1, 12},
+ { 19200000, 1000000000, 625, 12, 1, 8},
+ { 26000000, 1000000000, 1000, 26, 1, 12},
+
+ /* 912 MHz */
+ { 12000000, 912000000, 912, 12, 1, 12},
+ { 13000000, 912000000, 912, 13, 1, 12},
+ { 19200000, 912000000, 760, 16, 1, 8},
+ { 26000000, 912000000, 912, 26, 1, 12},
+
+ /* 816 MHz */
+ { 12000000, 816000000, 816, 12, 1, 12},
+ { 13000000, 816000000, 816, 13, 1, 12},
+ { 19200000, 816000000, 680, 16, 1, 8},
+ { 26000000, 816000000, 816, 26, 1, 12},
+
+ /* 760 MHz */
+ { 12000000, 760000000, 760, 12, 1, 12},
+ { 13000000, 760000000, 760, 13, 1, 12},
+ { 19200000, 760000000, 950, 24, 1, 8},
+ { 26000000, 760000000, 760, 26, 1, 12},
+
+ /* 750 MHz */
+ { 12000000, 750000000, 750, 12, 1, 12},
+ { 13000000, 750000000, 750, 13, 1, 12},
+ { 19200000, 750000000, 625, 16, 1, 8},
+ { 26000000, 750000000, 750, 26, 1, 12},
+
+ /* 608 MHz */
+ { 12000000, 608000000, 608, 12, 1, 12},
+ { 13000000, 608000000, 608, 13, 1, 12},
+ { 19200000, 608000000, 380, 12, 1, 8},
+ { 26000000, 608000000, 608, 26, 1, 12},
+
+ /* 456 MHz */
+ { 12000000, 456000000, 456, 12, 1, 12},
+ { 13000000, 456000000, 456, 13, 1, 12},
+ { 19200000, 456000000, 380, 16, 1, 8},
+ { 26000000, 456000000, 456, 26, 1, 12},
+
+ /* 312 MHz */
+ { 12000000, 312000000, 312, 12, 1, 12},
+ { 13000000, 312000000, 312, 13, 1, 12},
+ { 19200000, 312000000, 260, 16, 1, 8},
+ { 26000000, 312000000, 312, 26, 1, 12},
+
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_x, PLL_HAS_CPCON | PLL_ALT_MISC_REG, 0xe0, 1000000000, 2000000,
+ 31000000, 1000000, 6000000, 20000000, 1200000000,
+ tegra_pll_x_freq_table, 300, tegra_pllx_ops, 0, clk_m);
+
+static struct clk_pll_freq_table tegra_pll_e_freq_table[] = {
+ { 12000000, 100000000, 200, 24, 1, 0 },
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_e, PLL_ALT_MISC_REG, 0xe8, 100000000, 12000000, 12000000, 0, 0,
+ 0, 0, tegra_pll_e_freq_table, 0, tegra_plle_ops, 0, clk_m);
+
+static const char *tegra_common_parent_names[] = {
+ "clk_m",
+};
+
+static struct clk *tegra_common_parents[] = {
+ &tegra_clk_m,
+};
+
+static struct clk tegra_clk_d;
+static struct clk_tegra tegra_clk_d_hw = {
+ .hw = {
+ .clk = &tegra_clk_d,
+ },
+ .flags = PERIPH_NO_RESET,
+ .reg = 0x34,
+ .reg_shift = 12,
+ .max_rate = 52000000,
+ .u.periph = {
+ .clk_num = 90,
+ },
+};
+
+static struct clk tegra_clk_d = {
+ .name = "clk_d",
+ .hw = &tegra_clk_d_hw.hw,
+ .ops = &tegra_clk_double_ops,
+ .parent = &tegra_clk_m,
+ .parent_names = tegra_common_parent_names,
+ .parents = tegra_common_parents,
+ .num_parents = ARRAY_SIZE(tegra_common_parent_names),
+};
+
+static struct clk tegra_cdev1;
+static struct clk_tegra tegra_cdev1_hw = {
+ .hw = {
+ .clk = &tegra_cdev1,
+ },
+ .fixed_rate = 26000000,
+ .u.periph = {
+ .clk_num = 94,
+ },
+};
+static struct clk tegra_cdev1 = {
+ .name = "cdev1",
+ .hw = &tegra_cdev1_hw.hw,
+ .ops = &tegra_cdev_clk_ops,
+ .flags = CLK_IS_ROOT,
+};
+
+/* dap_mclk2, belongs to the cdev2 pingroup. */
+static struct clk tegra_cdev2;
+static struct clk_tegra tegra_cdev2_hw = {
+ .hw = {
+ .clk = &tegra_cdev2,
+ },
+ .fixed_rate = 26000000,
+ .u.periph = {
+ .clk_num = 93,
+ },
+};
+static struct clk tegra_cdev2 = {
+ .name = "cdev2",
+ .hw = &tegra_cdev2_hw.hw,
+ .ops = &tegra_cdev_clk_ops,
+ .flags = CLK_IS_ROOT,
+};
+
+/* initialized before peripheral clocks */
+static struct clk_mux_sel mux_audio_sync_clk[8+1];
+static const struct audio_sources {
+ const char *name;
+ int value;
+} mux_audio_sync_clk_sources[] = {
+ { .name = "spdif_in", .value = 0 },
+ { .name = "i2s1", .value = 1 },
+ { .name = "i2s2", .value = 2 },
+ { .name = "pll_a_out0", .value = 4 },
+#if 0 /* FIXME: not implemented */
+ { .name = "ac97", .value = 3 },
+ { .name = "ext_audio_clk2", .value = 5 },
+ { .name = "ext_audio_clk1", .value = 6 },
+ { .name = "ext_vimclk", .value = 7 },
+#endif
+ { NULL, 0 }
+};
+
+static const char *audio_parent_names[] = {
+ "spdif_in",
+ "i2s1",
+ "i2s2",
+ "dummy",
+ "pll_a_out0",
+ "dummy",
+ "dummy",
+ "dummy",
+};
+
+static struct clk *audio_parents[] = {
+ NULL,
+ NULL,
+ NULL,
+ NULL,
+ NULL,
+ NULL,
+ NULL,
+ NULL,
+};
+
+static struct clk tegra_audio;
+static struct clk_tegra tegra_audio_hw = {
+ .hw = {
+ .clk = &tegra_audio,
+ },
+ .reg = 0x38,
+ .max_rate = 73728000,
+};
+DEFINE_CLK_TEGRA(audio, 0, &tegra_audio_sync_clk_ops, 0, audio_parent_names,
+ audio_parents, NULL);
+
+static const char *audio_2x_parent_names[] = {
+ "audio",
+};
+
+static struct clk *audio_2x_parents[] = {
+ &tegra_audio,
+};
+
+static struct clk tegra_audio_2x;
+static struct clk_tegra tegra_audio_2x_hw = {
+ .hw = {
+ .clk = &tegra_audio_2x,
+ },
+ .flags = PERIPH_NO_RESET,
+ .max_rate = 48000000,
+ .reg = 0x34,
+ .reg_shift = 8,
+ .u.periph = {
+ .clk_num = 89,
+ },
+};
+DEFINE_CLK_TEGRA(audio_2x, 0, &tegra_clk_double_ops, 0, audio_2x_parent_names,
+ audio_2x_parents, &tegra_audio);
+
+static struct clk_lookup tegra_audio_clk_lookups[] = {
+ { .con_id = "audio", .clk = &tegra_audio },
+ { .con_id = "audio_2x", .clk = &tegra_audio_2x }
+};
+
+/* This is called after peripheral clocks are initialized, as the
+ * audio_sync clock depends on some of the peripheral clocks.
+ */
+
+static void init_audio_sync_clock_mux(void)
+{
+ int i;
+ struct clk_mux_sel *sel = mux_audio_sync_clk;
+ const struct audio_sources *src = mux_audio_sync_clk_sources;
+ struct clk_lookup *lookup;
+
+ for (i = 0; src->name; i++, sel++, src++) {
+ sel->input = tegra_get_clock_by_name(src->name);
+ if (!sel->input)
+ pr_err("%s: could not find clk %s\n", __func__,
+ src->name);
+ audio_parents[src->value] = sel->input;
+ sel->value = src->value;
+ }
+
+ lookup = tegra_audio_clk_lookups;
+ for (i = 0; i < ARRAY_SIZE(tegra_audio_clk_lookups); i++, lookup++) {
+ struct clk *c = lookup->clk;
+ struct clk_tegra *clk = to_clk_tegra(c->hw);
+ __clk_init(NULL, c);
+ INIT_LIST_HEAD(&clk->shared_bus_list);
+ clk->lookup.con_id = lookup->con_id;
+ clk->lookup.clk = c;
+ clkdev_add(&clk->lookup);
+ tegra_clk_add(c);
+ }
+}
+
+static const char *mux_cclk[] = {
+ "clk_m",
+ "pll_c",
+ "clk_32k",
+ "pll_m",
+ "pll_p",
+ "pll_p_out4",
+ "pll_p_out3",
+ "clk_d",
+ "pll_x",
+};
+
+
+static struct clk *mux_cclk_p[] = {
+ &tegra_clk_m,
+ &tegra_pll_c,
+ &tegra_clk_32k,
+ &tegra_pll_m,
+ &tegra_pll_p,
+ &tegra_pll_p_out4,
+ &tegra_pll_p_out3,
+ &tegra_clk_d,
+ &tegra_pll_x,
+};
+
+static const char *mux_sclk[] = {
+ "clk_m",
+ "pll_c_out1",
+ "pll_p_out4",
+ "pllp_p_out3",
+ "pll_p_out2",
+ "clk_d",
+ "clk_32k",
+ "pll_m_out1",
+};
+
+static struct clk *mux_sclk_p[] = {
+ &tegra_clk_m,
+ &tegra_pll_c_out1,
+ &tegra_pll_p_out4,
+ &tegra_pll_p_out3,
+ &tegra_pll_p_out2,
+ &tegra_clk_d,
+ &tegra_clk_32k,
+ &tegra_pll_m_out1,
+};
+
+static struct clk tegra_cclk;
+static struct clk_tegra tegra_cclk_hw = {
+ .hw = {
+ .clk = &tegra_cclk,
+ },
+ .reg = 0x20,
+ .max_rate = 1000000000,
+};
+DEFINE_CLK_TEGRA(cclk, 0, &tegra_super_ops, 0, mux_cclk,
+ mux_cclk_p, NULL);
+
+static const char *mux_twd[] = {
+ "cclk",
+};
+
+static struct clk *mux_twd_p[] = {
+ &tegra_cclk,
+};
+
+static struct clk tegra_clk_twd;
+static struct clk_tegra tegra_clk_twd_hw = {
+ .hw = {
+ .clk = &tegra_clk_twd,
+ },
+ .max_rate = 1000000000,
+ .mul = 1,
+ .div = 4,
+};
+
+static struct clk tegra_clk_twd = {
+ .name = "twd",
+ .ops = &tegra_twd_ops,
+ .hw = &tegra_clk_twd_hw.hw,
+ .parent = &tegra_cclk,
+ .parent_names = mux_twd,
+ .parents = mux_twd_p,
+ .num_parents = ARRAY_SIZE(mux_twd),
+};
+
+static struct clk tegra_sclk;
+static struct clk_tegra tegra_sclk_hw = {
+ .hw = {
+ .clk = &tegra_sclk,
+ },
+ .reg = 0x28,
+ .max_rate = 240000000,
+ .min_rate = 120000000,
+};
+DEFINE_CLK_TEGRA(sclk, 0, &tegra_super_ops, 0, mux_sclk,
+ mux_sclk_p, NULL);
+
+static const char *tegra_cop_parent_names[] = {
+ "tegra_sclk",
+};
+
+static struct clk *tegra_cop_parents[] = {
+ &tegra_sclk,
+};
+
+static struct clk tegra_cop;
+static struct clk_tegra tegra_cop_hw = {
+ .hw = {
+ .clk = &tegra_cop,
+ },
+ .max_rate = 240000000,
+ .reset = &tegra2_cop_clk_reset,
+};
+DEFINE_CLK_TEGRA(cop, 0, &tegra_cop_ops, CLK_SET_RATE_PARENT,
+ tegra_cop_parent_names, tegra_cop_parents, &tegra_sclk);
+
+static const char *tegra_hclk_parent_names[] = {
+ "tegra_sclk",
+};
+
+static struct clk *tegra_hclk_parents[] = {
+ &tegra_sclk,
+};
+
+static struct clk tegra_hclk;
+static struct clk_tegra tegra_hclk_hw = {
+ .hw = {
+ .clk = &tegra_hclk,
+ },
+ .flags = DIV_BUS,
+ .reg = 0x30,
+ .reg_shift = 4,
+ .max_rate = 240000000,
+};
+DEFINE_CLK_TEGRA(hclk, 0, &tegra_bus_ops, 0, tegra_hclk_parent_names,
+ tegra_hclk_parents, &tegra_sclk);
+
+static const char *tegra_pclk_parent_names[] = {
+ "tegra_hclk",
+};
+
+static struct clk *tegra_pclk_parents[] = {
+ &tegra_hclk,
+};
+
+static struct clk tegra_pclk;
+static struct clk_tegra tegra_pclk_hw = {
+ .hw = {
+ .clk = &tegra_pclk,
+ },
+ .flags = DIV_BUS,
+ .reg = 0x30,
+ .reg_shift = 0,
+ .max_rate = 120000000,
+};
+DEFINE_CLK_TEGRA(pclk, 0, &tegra_bus_ops, 0, tegra_pclk_parent_names,
+ tegra_pclk_parents, &tegra_hclk);
+
+static const char *tegra_blink_parent_names[] = {
+ "clk_32k",
+};
+
+static struct clk *tegra_blink_parents[] = {
+ &tegra_clk_32k,
+};
+
+static struct clk tegra_blink;
+static struct clk_tegra tegra_blink_hw = {
+ .hw = {
+ .clk = &tegra_blink,
+ },
+ .reg = 0x40,
+ .max_rate = 32768,
+};
+DEFINE_CLK_TEGRA(blink, 0, &tegra_blink_clk_ops, 0, tegra_blink_parent_names,
+ tegra_blink_parents, &tegra_clk_32k);
+
+static const char *mux_pllm_pllc_pllp_plla[] = {
+ "pll_m",
+ "pll_c",
+ "pll_p",
+ "pll_a_out0",
+};
+
+static struct clk *mux_pllm_pllc_pllp_plla_p[] = {
+ &tegra_pll_m,
+ &tegra_pll_c,
+ &tegra_pll_p,
+ &tegra_pll_a_out0,
+};
+
+static const char *mux_pllm_pllc_pllp_clkm[] = {
+ "pll_m",
+ "pll_c",
+ "pll_p",
+ "clk_m",
+};
+
+static struct clk *mux_pllm_pllc_pllp_clkm_p[] = {
+ &tegra_pll_m,
+ &tegra_pll_c,
+ &tegra_pll_p,
+ &tegra_clk_m,
+};
+
+static const char *mux_pllp_pllc_pllm_clkm[] = {
+ "pll_p",
+ "pll_c",
+ "pll_m",
+ "clk_m",
+};
+
+static struct clk *mux_pllp_pllc_pllm_clkm_p[] = {
+ &tegra_pll_p,
+ &tegra_pll_c,
+ &tegra_pll_m,
+ &tegra_clk_m,
+};
+
+static const char *mux_pllaout0_audio2x_pllp_clkm[] = {
+ "pll_a_out0",
+ "audio_2x",
+ "pll_p",
+ "clk_m",
+};
+
+static struct clk *mux_pllaout0_audio2x_pllp_clkm_p[] = {
+ &tegra_pll_a_out0,
+ &tegra_audio_2x,
+ &tegra_pll_p,
+ &tegra_clk_m,
+};
+
+static const char *mux_pllp_plld_pllc_clkm[] = {
+ "pllp",
+ "pll_d_out0",
+ "pll_c",
+ "clk_m",
+};
+
+static struct clk *mux_pllp_plld_pllc_clkm_p[] = {
+ &tegra_pll_p,
+ &tegra_pll_d_out0,
+ &tegra_pll_c,
+ &tegra_clk_m,
+};
+
+static const char *mux_pllp_pllc_audio_clkm_clk32[] = {
+ "pll_p",
+ "pll_c",
+ "audio",
+ "clk_m",
+ "clk_32k",
+};
+
+static struct clk *mux_pllp_pllc_audio_clkm_clk32_p[] = {
+ &tegra_pll_p,
+ &tegra_pll_c,
+ &tegra_audio,
+ &tegra_clk_m,
+ &tegra_clk_32k,
+};
+
+static const char *mux_pllp_pllc_pllm[] = {
+ "pll_p",
+ "pll_c",
+ "pll_m"
+};
+
+static struct clk *mux_pllp_pllc_pllm_p[] = {
+ &tegra_pll_p,
+ &tegra_pll_c,
+ &tegra_pll_m,
+};
+
+static const char *mux_clk_m[] = {
+ "clk_m",
+};
+
+static struct clk *mux_clk_m_p[] = {
+ &tegra_clk_m,
+};
+
+static const char *mux_pllp_out3[] = {
+ "pll_p_out3",
+};
+
+static struct clk *mux_pllp_out3_p[] = {
+ &tegra_pll_p_out3,
+};
+
+static const char *mux_plld[] = {
+ "pll_d",
+};
+
+static struct clk *mux_plld_p[] = {
+ &tegra_pll_d,
+};
+
+static const char *mux_clk_32k[] = {
+ "clk_32k",
+};
+
+static struct clk *mux_clk_32k_p[] = {
+ &tegra_clk_32k,
+};
+
+static const char *mux_pclk[] = {
+ "pclk",
+};
+
+static struct clk *mux_pclk_p[] = {
+ &tegra_pclk,
+};
+
+static struct clk tegra_emc;
+static struct clk_tegra tegra_emc_hw = {
+ .hw = {
+ .clk = &tegra_emc,
+ },
+ .reg = 0x19c,
+ .max_rate = 800000000,
+ .flags = MUX | DIV_U71 | PERIPH_EMC_ENB,
+ .reset = &tegra2_periph_clk_reset,
+ .u.periph = {
+ .clk_num = 57,
+ },
+};
+DEFINE_CLK_TEGRA(emc, 0, &tegra_emc_clk_ops, 0, mux_pllm_pllc_pllp_clkm,
+ mux_pllm_pllc_pllp_clkm_p, NULL);
+
+#define PERIPH_CLK(_name, _dev, _con, _clk_num, _reg, \
+ _max, _inputs, _flags) \
+ static struct clk tegra_##_name; \
+ static struct clk_tegra tegra_##_name##_hw = { \
+ .hw = { \
+ .clk = &tegra_##_name, \
+ }, \
+ .lookup = { \
+ .dev_id = _dev, \
+ .con_id = _con, \
+ }, \
+ .reg = _reg, \
+ .flags = _flags, \
+ .max_rate = _max, \
+ .u.periph = { \
+ .clk_num = _clk_num, \
+ }, \
+ .reset = tegra2_periph_clk_reset, \
+ }; \
+ static struct clk tegra_##_name = { \
+ .name = #_name, \
+ .ops = &tegra_periph_clk_ops, \
+ .hw = &tegra_##_name##_hw.hw, \
+ .parent_names = _inputs, \
+ .parents = _inputs##_p, \
+ .num_parents = ARRAY_SIZE(_inputs), \
+ };
+
+PERIPH_CLK(apbdma, "tegra-apbdma", NULL, 34, 0, 108000000, mux_pclk, 0);
+PERIPH_CLK(rtc, "rtc-tegra", NULL, 4, 0, 32768, mux_clk_32k, PERIPH_NO_RESET);
+PERIPH_CLK(timer, "timer", NULL, 5, 0, 26000000, mux_clk_m, 0);
+PERIPH_CLK(i2s1, "tegra20-i2s.0", NULL, 11, 0x100, 26000000, mux_pllaout0_audio2x_pllp_clkm, MUX | DIV_U71);
+PERIPH_CLK(i2s2, "tegra20-i2s.1", NULL, 18, 0x104, 26000000, mux_pllaout0_audio2x_pllp_clkm, MUX | DIV_U71);
+PERIPH_CLK(spdif_out, "spdif_out", NULL, 10, 0x108, 100000000, mux_pllaout0_audio2x_pllp_clkm, MUX | DIV_U71);
+PERIPH_CLK(spdif_in, "spdif_in", NULL, 10, 0x10c, 100000000, mux_pllp_pllc_pllm, MUX | DIV_U71);
+PERIPH_CLK(pwm, "tegra-pwm", NULL, 17, 0x110, 432000000, mux_pllp_pllc_audio_clkm_clk32, MUX | DIV_U71 | MUX_PWM);
+PERIPH_CLK(spi, "spi", NULL, 43, 0x114, 40000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(xio, "xio", NULL, 45, 0x120, 150000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(twc, "twc", NULL, 16, 0x12c, 150000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(sbc1, "spi_tegra.0", NULL, 41, 0x134, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(sbc2, "spi_tegra.1", NULL, 44, 0x118, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(sbc3, "spi_tegra.2", NULL, 46, 0x11c, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(sbc4, "spi_tegra.3", NULL, 68, 0x1b4, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(ide, "ide", NULL, 25, 0x144, 100000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* requires min voltage */
+PERIPH_CLK(ndflash, "tegra_nand", NULL, 13, 0x160, 164000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* scales with voltage */
+PERIPH_CLK(vfir, "vfir", NULL, 7, 0x168, 72000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(sdmmc1, "sdhci-tegra.0", NULL, 14, 0x150, 52000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* scales with voltage */
+PERIPH_CLK(sdmmc2, "sdhci-tegra.1", NULL, 9, 0x154, 52000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* scales with voltage */
+PERIPH_CLK(sdmmc3, "sdhci-tegra.2", NULL, 69, 0x1bc, 52000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* scales with voltage */
+PERIPH_CLK(sdmmc4, "sdhci-tegra.3", NULL, 15, 0x164, 52000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* scales with voltage */
+PERIPH_CLK(vcp, "tegra-avp", "vcp", 29, 0, 250000000, mux_clk_m, 0);
+PERIPH_CLK(bsea, "tegra-avp", "bsea", 62, 0, 250000000, mux_clk_m, 0);
+PERIPH_CLK(bsev, "tegra-aes", "bsev", 63, 0, 250000000, mux_clk_m, 0);
+PERIPH_CLK(vde, "tegra-avp", "vde", 61, 0x1c8, 250000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* scales with voltage and process_id */
+PERIPH_CLK(csite, "csite", NULL, 73, 0x1d4, 144000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* max rate ??? */
+/* FIXME: what is la? */
+PERIPH_CLK(la, "la", NULL, 76, 0x1f8, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(owr, "tegra_w1", NULL, 71, 0x1cc, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(nor, "nor", NULL, 42, 0x1d0, 92000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* requires min voltage */
+PERIPH_CLK(mipi, "mipi", NULL, 50, 0x174, 60000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* scales with voltage */
+PERIPH_CLK(i2c1, "tegra-i2c.0", "div-clk", 12, 0x124, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U16);
+PERIPH_CLK(i2c2, "tegra-i2c.1", "div-clk", 54, 0x198, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U16);
+PERIPH_CLK(i2c3, "tegra-i2c.2", "div-clk", 67, 0x1b8, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U16);
+PERIPH_CLK(dvc, "tegra-i2c.3", "div-clk", 47, 0x128, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U16);
+PERIPH_CLK(uarta, "tegra-uart.0", NULL, 6, 0x178, 600000000, mux_pllp_pllc_pllm_clkm, MUX);
+PERIPH_CLK(uartb, "tegra-uart.1", NULL, 7, 0x17c, 600000000, mux_pllp_pllc_pllm_clkm, MUX);
+PERIPH_CLK(uartc, "tegra-uart.2", NULL, 55, 0x1a0, 600000000, mux_pllp_pllc_pllm_clkm, MUX);
+PERIPH_CLK(uartd, "tegra-uart.3", NULL, 65, 0x1c0, 600000000, mux_pllp_pllc_pllm_clkm, MUX);
+PERIPH_CLK(uarte, "tegra-uart.4", NULL, 66, 0x1c4, 600000000, mux_pllp_pllc_pllm_clkm, MUX);
+PERIPH_CLK(3d, "3d", NULL, 24, 0x158, 300000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | PERIPH_MANUAL_RESET); /* scales with voltage and process_id */
+PERIPH_CLK(2d, "2d", NULL, 21, 0x15c, 300000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71); /* scales with voltage and process_id */
+PERIPH_CLK(vi, "tegra_camera", "vi", 20, 0x148, 150000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71); /* scales with voltage and process_id */
+PERIPH_CLK(vi_sensor, "tegra_camera", "vi_sensor", 20, 0x1a8, 150000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | PERIPH_NO_RESET); /* scales with voltage and process_id */
+PERIPH_CLK(epp, "epp", NULL, 19, 0x16c, 300000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71); /* scales with voltage and process_id */
+PERIPH_CLK(mpe, "mpe", NULL, 60, 0x170, 250000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71); /* scales with voltage and process_id */
+PERIPH_CLK(host1x, "host1x", NULL, 28, 0x180, 166000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71); /* scales with voltage and process_id */
+PERIPH_CLK(cve, "cve", NULL, 49, 0x140, 250000000, mux_pllp_plld_pllc_clkm, MUX | DIV_U71); /* requires min voltage */
+PERIPH_CLK(tvo, "tvo", NULL, 49, 0x188, 250000000, mux_pllp_plld_pllc_clkm, MUX | DIV_U71); /* requires min voltage */
+PERIPH_CLK(hdmi, "hdmi", NULL, 51, 0x18c, 600000000, mux_pllp_plld_pllc_clkm, MUX | DIV_U71); /* requires min voltage */
+PERIPH_CLK(tvdac, "tvdac", NULL, 53, 0x194, 250000000, mux_pllp_plld_pllc_clkm, MUX | DIV_U71); /* requires min voltage */
+PERIPH_CLK(disp1, "tegradc.0", NULL, 27, 0x138, 600000000, mux_pllp_plld_pllc_clkm, MUX); /* scales with voltage and process_id */
+PERIPH_CLK(disp2, "tegradc.1", NULL, 26, 0x13c, 600000000, mux_pllp_plld_pllc_clkm, MUX); /* scales with voltage and process_id */
+PERIPH_CLK(usbd, "fsl-tegra-udc", NULL, 22, 0, 480000000, mux_clk_m, 0); /* requires min voltage */
+PERIPH_CLK(usb2, "tegra-ehci.1", NULL, 58, 0, 480000000, mux_clk_m, 0); /* requires min voltage */
+PERIPH_CLK(usb3, "tegra-ehci.2", NULL, 59, 0, 480000000, mux_clk_m, 0); /* requires min voltage */
+PERIPH_CLK(dsi, "dsi", NULL, 48, 0, 500000000, mux_plld, 0); /* scales with voltage */
+PERIPH_CLK(csi, "tegra_camera", "csi", 52, 0, 72000000, mux_pllp_out3, 0);
+PERIPH_CLK(isp, "tegra_camera", "isp", 23, 0, 150000000, mux_clk_m, 0); /* same frequency as VI */
+PERIPH_CLK(csus, "tegra_camera", "csus", 92, 0, 150000000, mux_clk_m, PERIPH_NO_RESET);
+PERIPH_CLK(pex, NULL, "pex", 70, 0, 26000000, mux_clk_m, PERIPH_MANUAL_RESET);
+PERIPH_CLK(afi, NULL, "afi", 72, 0, 26000000, mux_clk_m, PERIPH_MANUAL_RESET);
+PERIPH_CLK(pcie_xclk, NULL, "pcie_xclk", 74, 0, 26000000, mux_clk_m, PERIPH_MANUAL_RESET);
+
+static struct clk *tegra_list_clks[] = {
+ &tegra_apbdma,
+ &tegra_rtc,
+ &tegra_i2s1,
+ &tegra_i2s2,
+ &tegra_spdif_out,
+ &tegra_spdif_in,
+ &tegra_pwm,
+ &tegra_spi,
+ &tegra_xio,
+ &tegra_twc,
+ &tegra_sbc1,
+ &tegra_sbc2,
+ &tegra_sbc3,
+ &tegra_sbc4,
+ &tegra_ide,
+ &tegra_ndflash,
+ &tegra_vfir,
+ &tegra_sdmmc1,
+ &tegra_sdmmc2,
+ &tegra_sdmmc3,
+ &tegra_sdmmc4,
+ &tegra_vcp,
+ &tegra_bsea,
+ &tegra_bsev,
+ &tegra_vde,
+ &tegra_csite,
+ &tegra_la,
+ &tegra_owr,
+ &tegra_nor,
+ &tegra_mipi,
+ &tegra_i2c1,
+ &tegra_i2c2,
+ &tegra_i2c3,
+ &tegra_dvc,
+ &tegra_uarta,
+ &tegra_uartb,
+ &tegra_uartc,
+ &tegra_uartd,
+ &tegra_uarte,
+ &tegra_3d,
+ &tegra_2d,
+ &tegra_vi,
+ &tegra_vi_sensor,
+ &tegra_epp,
+ &tegra_mpe,
+ &tegra_host1x,
+ &tegra_cve,
+ &tegra_tvo,
+ &tegra_hdmi,
+ &tegra_tvdac,
+ &tegra_disp1,
+ &tegra_disp2,
+ &tegra_usbd,
+ &tegra_usb2,
+ &tegra_usb3,
+ &tegra_dsi,
+ &tegra_csi,
+ &tegra_isp,
+ &tegra_csus,
+ &tegra_pex,
+ &tegra_afi,
+ &tegra_pcie_xclk,
+};
+
+#define CLK_DUPLICATE(_name, _dev, _con) \
+ { \
+ .name = _name, \
+ .lookup = { \
+ .dev_id = _dev, \
+ .con_id = _con, \
+ }, \
+ }
+
+/* Some clocks may be used by different drivers depending on the board
+ * configuration. List those here to register them twice in the clock lookup
+ * table under two names.
+ */
+static struct clk_duplicate tegra_clk_duplicates[] = {
+ CLK_DUPLICATE("uarta", "serial8250.0", NULL),
+ CLK_DUPLICATE("uartb", "serial8250.1", NULL),
+ CLK_DUPLICATE("uartc", "serial8250.2", NULL),
+ CLK_DUPLICATE("uartd", "serial8250.3", NULL),
+ CLK_DUPLICATE("uarte", "serial8250.4", NULL),
+ CLK_DUPLICATE("usbd", "utmip-pad", NULL),
+ CLK_DUPLICATE("usbd", "tegra-ehci.0", NULL),
+ CLK_DUPLICATE("usbd", "tegra-otg", NULL),
+ CLK_DUPLICATE("hdmi", "tegradc.0", "hdmi"),
+ CLK_DUPLICATE("hdmi", "tegradc.1", "hdmi"),
+ CLK_DUPLICATE("host1x", "tegra_grhost", "host1x"),
+ CLK_DUPLICATE("2d", "tegra_grhost", "gr2d"),
+ CLK_DUPLICATE("3d", "tegra_grhost", "gr3d"),
+ CLK_DUPLICATE("epp", "tegra_grhost", "epp"),
+ CLK_DUPLICATE("mpe", "tegra_grhost", "mpe"),
+ CLK_DUPLICATE("cop", "tegra-avp", "cop"),
+ CLK_DUPLICATE("vde", "tegra-aes", "vde"),
+ CLK_DUPLICATE("cclk", NULL, "cpu"),
+ CLK_DUPLICATE("twd", "smp_twd", NULL),
+ CLK_DUPLICATE("pll_p_out3", "tegra-i2c.0", "fast-clk"),
+ CLK_DUPLICATE("pll_p_out3", "tegra-i2c.1", "fast-clk"),
+ CLK_DUPLICATE("pll_p_out3", "tegra-i2c.2", "fast-clk"),
+ CLK_DUPLICATE("pll_p_out3", "tegra-i2c.3", "fast-clk"),
+};
+
+#define CLK(dev, con, ck) \
+ { \
+ .dev_id = dev, \
+ .con_id = con, \
+ .clk = ck, \
+ }
+
+static struct clk *tegra_ptr_clks[] = {
+ &tegra_clk_32k,
+ &tegra_pll_s,
+ &tegra_clk_m,
+ &tegra_pll_m,
+ &tegra_pll_m_out1,
+ &tegra_pll_c,
+ &tegra_pll_c_out1,
+ &tegra_pll_p,
+ &tegra_pll_p_out1,
+ &tegra_pll_p_out2,
+ &tegra_pll_p_out3,
+ &tegra_pll_p_out4,
+ &tegra_pll_a,
+ &tegra_pll_a_out0,
+ &tegra_pll_d,
+ &tegra_pll_d_out0,
+ &tegra_pll_u,
+ &tegra_pll_x,
+ &tegra_pll_e,
+ &tegra_cclk,
+ &tegra_clk_twd,
+ &tegra_sclk,
+ &tegra_hclk,
+ &tegra_pclk,
+ &tegra_clk_d,
+ &tegra_cdev1,
+ &tegra_cdev2,
+ &tegra_blink,
+ &tegra_cop,
+ &tegra_emc,
+};
+
+static void tegra2_init_one_clock(struct clk *c)
+{
+ struct clk_tegra *clk = to_clk_tegra(c->hw);
+ int ret;
+
+ ret = __clk_init(NULL, c);
+ if (ret)
+ pr_err("clk init failed %s\n", __clk_get_name(c));
+
+ INIT_LIST_HEAD(&clk->shared_bus_list);
+ if (!clk->lookup.dev_id && !clk->lookup.con_id)
+ clk->lookup.con_id = c->name;
+ clk->lookup.clk = c;
+ clkdev_add(&clk->lookup);
+ tegra_clk_add(c);
+}
+
+void __init tegra2_init_clocks(void)
+{
+ int i;
+ struct clk *c;
+
+ for (i = 0; i < ARRAY_SIZE(tegra_ptr_clks); i++)
+ tegra2_init_one_clock(tegra_ptr_clks[i]);
+
+ for (i = 0; i < ARRAY_SIZE(tegra_list_clks); i++)
+ tegra2_init_one_clock(tegra_list_clks[i]);
+
+ for (i = 0; i < ARRAY_SIZE(tegra_clk_duplicates); i++) {
+ c = tegra_get_clock_by_name(tegra_clk_duplicates[i].name);
+ if (!c) {
+ pr_err("%s: Unknown duplicate clock %s\n", __func__,
+ tegra_clk_duplicates[i].name);
+ continue;
+ }
+
+ tegra_clk_duplicates[i].lookup.clk = c;
+ clkdev_add(&tegra_clk_duplicates[i].lookup);
+ }
+
+ init_audio_sync_clock_mux();
+ tegra20_cpu_car_ops_init();
+}
diff --git a/arch/arm/mach-tegra/tegra2_clocks.c b/arch/arm/mach-tegra/tegra2_clocks.c
deleted file mode 100644
index a703844b206..00000000000
--- a/arch/arm/mach-tegra/tegra2_clocks.c
+++ /dev/null
@@ -1,2484 +0,0 @@
-/*
- * arch/arm/mach-tegra/tegra2_clocks.c
- *
- * Copyright (C) 2010 Google, Inc.
- *
- * Author:
- * Colin Cross <ccross@google.com>
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-#include <linux/kernel.h>
-#include <linux/module.h>
-#include <linux/list.h>
-#include <linux/spinlock.h>
-#include <linux/delay.h>
-#include <linux/io.h>
-#include <linux/clkdev.h>
-#include <linux/clk.h>
-
-#include <mach/iomap.h>
-#include <mach/suspend.h>
-
-#include "clock.h"
-#include "fuse.h"
-#include "tegra2_emc.h"
-
-#define RST_DEVICES 0x004
-#define RST_DEVICES_SET 0x300
-#define RST_DEVICES_CLR 0x304
-#define RST_DEVICES_NUM 3
-
-#define CLK_OUT_ENB 0x010
-#define CLK_OUT_ENB_SET 0x320
-#define CLK_OUT_ENB_CLR 0x324
-#define CLK_OUT_ENB_NUM 3
-
-#define CLK_MASK_ARM 0x44
-#define MISC_CLK_ENB 0x48
-
-#define OSC_CTRL 0x50
-#define OSC_CTRL_OSC_FREQ_MASK (3<<30)
-#define OSC_CTRL_OSC_FREQ_13MHZ (0<<30)
-#define OSC_CTRL_OSC_FREQ_19_2MHZ (1<<30)
-#define OSC_CTRL_OSC_FREQ_12MHZ (2<<30)
-#define OSC_CTRL_OSC_FREQ_26MHZ (3<<30)
-#define OSC_CTRL_MASK (0x3f2 | OSC_CTRL_OSC_FREQ_MASK)
-
-#define OSC_FREQ_DET 0x58
-#define OSC_FREQ_DET_TRIG (1<<31)
-
-#define OSC_FREQ_DET_STATUS 0x5C
-#define OSC_FREQ_DET_BUSY (1<<31)
-#define OSC_FREQ_DET_CNT_MASK 0xFFFF
-
-#define PERIPH_CLK_SOURCE_I2S1 0x100
-#define PERIPH_CLK_SOURCE_EMC 0x19c
-#define PERIPH_CLK_SOURCE_OSC 0x1fc
-#define PERIPH_CLK_SOURCE_NUM \
- ((PERIPH_CLK_SOURCE_OSC - PERIPH_CLK_SOURCE_I2S1) / 4)
-
-#define PERIPH_CLK_SOURCE_MASK (3<<30)
-#define PERIPH_CLK_SOURCE_SHIFT 30
-#define PERIPH_CLK_SOURCE_PWM_MASK (7<<28)
-#define PERIPH_CLK_SOURCE_PWM_SHIFT 28
-#define PERIPH_CLK_SOURCE_ENABLE (1<<28)
-#define PERIPH_CLK_SOURCE_DIVU71_MASK 0xFF
-#define PERIPH_CLK_SOURCE_DIVU16_MASK 0xFFFF
-#define PERIPH_CLK_SOURCE_DIV_SHIFT 0
-
-#define SDMMC_CLK_INT_FB_SEL (1 << 23)
-#define SDMMC_CLK_INT_FB_DLY_SHIFT 16
-#define SDMMC_CLK_INT_FB_DLY_MASK (0xF << SDMMC_CLK_INT_FB_DLY_SHIFT)
-
-#define PLL_BASE 0x0
-#define PLL_BASE_BYPASS (1<<31)
-#define PLL_BASE_ENABLE (1<<30)
-#define PLL_BASE_REF_ENABLE (1<<29)
-#define PLL_BASE_OVERRIDE (1<<28)
-#define PLL_BASE_DIVP_MASK (0x7<<20)
-#define PLL_BASE_DIVP_SHIFT 20
-#define PLL_BASE_DIVN_MASK (0x3FF<<8)
-#define PLL_BASE_DIVN_SHIFT 8
-#define PLL_BASE_DIVM_MASK (0x1F)
-#define PLL_BASE_DIVM_SHIFT 0
-
-#define PLL_OUT_RATIO_MASK (0xFF<<8)
-#define PLL_OUT_RATIO_SHIFT 8
-#define PLL_OUT_OVERRIDE (1<<2)
-#define PLL_OUT_CLKEN (1<<1)
-#define PLL_OUT_RESET_DISABLE (1<<0)
-
-#define PLL_MISC(c) (((c)->flags & PLL_ALT_MISC_REG) ? 0x4 : 0xc)
-
-#define PLL_MISC_DCCON_SHIFT 20
-#define PLL_MISC_CPCON_SHIFT 8
-#define PLL_MISC_CPCON_MASK (0xF<<PLL_MISC_CPCON_SHIFT)
-#define PLL_MISC_LFCON_SHIFT 4
-#define PLL_MISC_LFCON_MASK (0xF<<PLL_MISC_LFCON_SHIFT)
-#define PLL_MISC_VCOCON_SHIFT 0
-#define PLL_MISC_VCOCON_MASK (0xF<<PLL_MISC_VCOCON_SHIFT)
-
-#define PLLU_BASE_POST_DIV (1<<20)
-
-#define PLLD_MISC_CLKENABLE (1<<30)
-#define PLLD_MISC_DIV_RST (1<<23)
-#define PLLD_MISC_DCCON_SHIFT 12
-
-#define PLLE_MISC_READY (1 << 15)
-
-#define PERIPH_CLK_TO_ENB_REG(c) ((c->u.periph.clk_num / 32) * 4)
-#define PERIPH_CLK_TO_ENB_SET_REG(c) ((c->u.periph.clk_num / 32) * 8)
-#define PERIPH_CLK_TO_ENB_BIT(c) (1 << (c->u.periph.clk_num % 32))
-
-#define SUPER_CLK_MUX 0x00
-#define SUPER_STATE_SHIFT 28
-#define SUPER_STATE_MASK (0xF << SUPER_STATE_SHIFT)
-#define SUPER_STATE_STANDBY (0x0 << SUPER_STATE_SHIFT)
-#define SUPER_STATE_IDLE (0x1 << SUPER_STATE_SHIFT)
-#define SUPER_STATE_RUN (0x2 << SUPER_STATE_SHIFT)
-#define SUPER_STATE_IRQ (0x3 << SUPER_STATE_SHIFT)
-#define SUPER_STATE_FIQ (0x4 << SUPER_STATE_SHIFT)
-#define SUPER_SOURCE_MASK 0xF
-#define SUPER_FIQ_SOURCE_SHIFT 12
-#define SUPER_IRQ_SOURCE_SHIFT 8
-#define SUPER_RUN_SOURCE_SHIFT 4
-#define SUPER_IDLE_SOURCE_SHIFT 0
-
-#define SUPER_CLK_DIVIDER 0x04
-
-#define BUS_CLK_DISABLE (1<<3)
-#define BUS_CLK_DIV_MASK 0x3
-
-#define PMC_CTRL 0x0
- #define PMC_CTRL_BLINK_ENB (1 << 7)
-
-#define PMC_DPD_PADS_ORIDE 0x1c
- #define PMC_DPD_PADS_ORIDE_BLINK_ENB (1 << 20)
-
-#define PMC_BLINK_TIMER_DATA_ON_SHIFT 0
-#define PMC_BLINK_TIMER_DATA_ON_MASK 0x7fff
-#define PMC_BLINK_TIMER_ENB (1 << 15)
-#define PMC_BLINK_TIMER_DATA_OFF_SHIFT 16
-#define PMC_BLINK_TIMER_DATA_OFF_MASK 0xffff
-
-static void __iomem *reg_clk_base = IO_ADDRESS(TEGRA_CLK_RESET_BASE);
-static void __iomem *reg_pmc_base = IO_ADDRESS(TEGRA_PMC_BASE);
-
-/*
- * Some clocks share a register with other clocks. Any clock op that
- * non-atomically modifies a register used by another clock must lock
- * clock_register_lock first.
- */
-static DEFINE_SPINLOCK(clock_register_lock);
-
-/*
- * Some peripheral clocks share an enable bit, so refcount the enable bits
- * in registers CLK_ENABLE_L, CLK_ENABLE_H, and CLK_ENABLE_U
- */
-static int tegra_periph_clk_enable_refcount[3 * 32];
-
-#define clk_writel(value, reg) \
- __raw_writel(value, reg_clk_base + (reg))
-#define clk_readl(reg) \
- __raw_readl(reg_clk_base + (reg))
-#define pmc_writel(value, reg) \
- __raw_writel(value, reg_pmc_base + (reg))
-#define pmc_readl(reg) \
- __raw_readl(reg_pmc_base + (reg))
-
-static unsigned long clk_measure_input_freq(void)
-{
- u32 clock_autodetect;
- clk_writel(OSC_FREQ_DET_TRIG | 1, OSC_FREQ_DET);
- do {} while (clk_readl(OSC_FREQ_DET_STATUS) & OSC_FREQ_DET_BUSY);
- clock_autodetect = clk_readl(OSC_FREQ_DET_STATUS);
- if (clock_autodetect >= 732 - 3 && clock_autodetect <= 732 + 3) {
- return 12000000;
- } else if (clock_autodetect >= 794 - 3 && clock_autodetect <= 794 + 3) {
- return 13000000;
- } else if (clock_autodetect >= 1172 - 3 && clock_autodetect <= 1172 + 3) {
- return 19200000;
- } else if (clock_autodetect >= 1587 - 3 && clock_autodetect <= 1587 + 3) {
- return 26000000;
- } else {
- pr_err("%s: Unexpected clock autodetect value %d", __func__, clock_autodetect);
- BUG();
- return 0;
- }
-}
-
-static int clk_div71_get_divider(unsigned long parent_rate, unsigned long rate)
-{
- s64 divider_u71 = parent_rate * 2;
- divider_u71 += rate - 1;
- do_div(divider_u71, rate);
-
- if (divider_u71 - 2 < 0)
- return 0;
-
- if (divider_u71 - 2 > 255)
- return -EINVAL;
-
- return divider_u71 - 2;
-}
-
-static int clk_div16_get_divider(unsigned long parent_rate, unsigned long rate)
-{
- s64 divider_u16;
-
- divider_u16 = parent_rate;
- divider_u16 += rate - 1;
- do_div(divider_u16, rate);
-
- if (divider_u16 - 1 < 0)
- return 0;
-
- if (divider_u16 - 1 > 255)
- return -EINVAL;
-
- return divider_u16 - 1;
-}
-
-/* clk_m functions */
-static unsigned long tegra2_clk_m_autodetect_rate(struct clk *c)
-{
- u32 auto_clock_control = clk_readl(OSC_CTRL) & ~OSC_CTRL_OSC_FREQ_MASK;
-
- c->rate = clk_measure_input_freq();
- switch (c->rate) {
- case 12000000:
- auto_clock_control |= OSC_CTRL_OSC_FREQ_12MHZ;
- break;
- case 13000000:
- auto_clock_control |= OSC_CTRL_OSC_FREQ_13MHZ;
- break;
- case 19200000:
- auto_clock_control |= OSC_CTRL_OSC_FREQ_19_2MHZ;
- break;
- case 26000000:
- auto_clock_control |= OSC_CTRL_OSC_FREQ_26MHZ;
- break;
- default:
- pr_err("%s: Unexpected clock rate %ld", __func__, c->rate);
- BUG();
- }
- clk_writel(auto_clock_control, OSC_CTRL);
- return c->rate;
-}
-
-static void tegra2_clk_m_init(struct clk *c)
-{
- pr_debug("%s on clock %s\n", __func__, c->name);
- tegra2_clk_m_autodetect_rate(c);
-}
-
-static int tegra2_clk_m_enable(struct clk *c)
-{
- pr_debug("%s on clock %s\n", __func__, c->name);
- return 0;
-}
-
-static void tegra2_clk_m_disable(struct clk *c)
-{
- pr_debug("%s on clock %s\n", __func__, c->name);
- BUG();
-}
-
-static struct clk_ops tegra_clk_m_ops = {
- .init = tegra2_clk_m_init,
- .enable = tegra2_clk_m_enable,
- .disable = tegra2_clk_m_disable,
-};
-
-/* super clock functions */
-/* "super clocks" on tegra have two-stage muxes and a clock skipping
- * super divider. We will ignore the clock skipping divider, since we
- * can't lower the voltage when using the clock skip, but we can if we
- * lower the PLL frequency.
- */
-static void tegra2_super_clk_init(struct clk *c)
-{
- u32 val;
- int source;
- int shift;
- const struct clk_mux_sel *sel;
- val = clk_readl(c->reg + SUPER_CLK_MUX);
- c->state = ON;
- BUG_ON(((val & SUPER_STATE_MASK) != SUPER_STATE_RUN) &&
- ((val & SUPER_STATE_MASK) != SUPER_STATE_IDLE));
- shift = ((val & SUPER_STATE_MASK) == SUPER_STATE_IDLE) ?
- SUPER_IDLE_SOURCE_SHIFT : SUPER_RUN_SOURCE_SHIFT;
- source = (val >> shift) & SUPER_SOURCE_MASK;
- for (sel = c->inputs; sel->input != NULL; sel++) {
- if (sel->value == source)
- break;
- }
- BUG_ON(sel->input == NULL);
- c->parent = sel->input;
-}
-
-static int tegra2_super_clk_enable(struct clk *c)
-{
- clk_writel(0, c->reg + SUPER_CLK_DIVIDER);
- return 0;
-}
-
-static void tegra2_super_clk_disable(struct clk *c)
-{
- pr_debug("%s on clock %s\n", __func__, c->name);
-
- /* oops - don't disable the CPU clock! */
- BUG();
-}
-
-static int tegra2_super_clk_set_parent(struct clk *c, struct clk *p)
-{
- u32 val;
- const struct clk_mux_sel *sel;
- int shift;
-
- val = clk_readl(c->reg + SUPER_CLK_MUX);
- BUG_ON(((val & SUPER_STATE_MASK) != SUPER_STATE_RUN) &&
- ((val & SUPER_STATE_MASK) != SUPER_STATE_IDLE));
- shift = ((val & SUPER_STATE_MASK) == SUPER_STATE_IDLE) ?
- SUPER_IDLE_SOURCE_SHIFT : SUPER_RUN_SOURCE_SHIFT;
- for (sel = c->inputs; sel->input != NULL; sel++) {
- if (sel->input == p) {
- val &= ~(SUPER_SOURCE_MASK << shift);
- val |= sel->value << shift;
-
- if (c->refcnt)
- clk_enable(p);
-
- clk_writel(val, c->reg);
-
- if (c->refcnt && c->parent)
- clk_disable(c->parent);
-
- clk_reparent(c, p);
- return 0;
- }
- }
- return -EINVAL;
-}
-
-/*
- * Super clocks have "clock skippers" instead of dividers. Dividing using
- * a clock skipper does not allow the voltage to be scaled down, so instead
- * adjust the rate of the parent clock. This requires that the parent of a
- * super clock have no other children, otherwise the rate will change
- * underneath the other children.
- */
-static int tegra2_super_clk_set_rate(struct clk *c, unsigned long rate)
-{
- return clk_set_rate(c->parent, rate);
-}
-
-static struct clk_ops tegra_super_ops = {
- .init = tegra2_super_clk_init,
- .enable = tegra2_super_clk_enable,
- .disable = tegra2_super_clk_disable,
- .set_parent = tegra2_super_clk_set_parent,
- .set_rate = tegra2_super_clk_set_rate,
-};
-
-/* virtual cpu clock functions */
-/* some clocks can not be stopped (cpu, memory bus) while the SoC is running.
- To change the frequency of these clocks, the parent pll may need to be
- reprogrammed, so the clock must be moved off the pll, the pll reprogrammed,
- and then the clock moved back to the pll. To hide this sequence, a virtual
- clock handles it.
- */
-static void tegra2_cpu_clk_init(struct clk *c)
-{
-}
-
-static int tegra2_cpu_clk_enable(struct clk *c)
-{
- return 0;
-}
-
-static void tegra2_cpu_clk_disable(struct clk *c)
-{
- pr_debug("%s on clock %s\n", __func__, c->name);
-
- /* oops - don't disable the CPU clock! */
- BUG();
-}
-
-static int tegra2_cpu_clk_set_rate(struct clk *c, unsigned long rate)
-{
- int ret;
- /*
- * Take an extra reference to the main pll so it doesn't turn
- * off when we move the cpu off of it
- */
- clk_enable(c->u.cpu.main);
-
- ret = clk_set_parent(c->parent, c->u.cpu.backup);
- if (ret) {
- pr_err("Failed to switch cpu to clock %s\n", c->u.cpu.backup->name);
- goto out;
- }
-
- if (rate == clk_get_rate(c->u.cpu.backup))
- goto out;
-
- ret = clk_set_rate(c->u.cpu.main, rate);
- if (ret) {
- pr_err("Failed to change cpu pll to %lu\n", rate);
- goto out;
- }
-
- ret = clk_set_parent(c->parent, c->u.cpu.main);
- if (ret) {
- pr_err("Failed to switch cpu to clock %s\n", c->u.cpu.main->name);
- goto out;
- }
-
-out:
- clk_disable(c->u.cpu.main);
- return ret;
-}
-
-static struct clk_ops tegra_cpu_ops = {
- .init = tegra2_cpu_clk_init,
- .enable = tegra2_cpu_clk_enable,
- .disable = tegra2_cpu_clk_disable,
- .set_rate = tegra2_cpu_clk_set_rate,
-};
-
-/* virtual cop clock functions. Used to acquire the fake 'cop' clock to
- * reset the COP block (i.e. AVP) */
-static void tegra2_cop_clk_reset(struct clk *c, bool assert)
-{
- unsigned long reg = assert ? RST_DEVICES_SET : RST_DEVICES_CLR;
-
- pr_debug("%s %s\n", __func__, assert ? "assert" : "deassert");
- clk_writel(1 << 1, reg);
-}
-
-static struct clk_ops tegra_cop_ops = {
- .reset = tegra2_cop_clk_reset,
-};
-
-/* bus clock functions */
-static void tegra2_bus_clk_init(struct clk *c)
-{
- u32 val = clk_readl(c->reg);
- c->state = ((val >> c->reg_shift) & BUS_CLK_DISABLE) ? OFF : ON;
- c->div = ((val >> c->reg_shift) & BUS_CLK_DIV_MASK) + 1;
- c->mul = 1;
-}
-
-static int tegra2_bus_clk_enable(struct clk *c)
-{
- u32 val;
- unsigned long flags;
-
- spin_lock_irqsave(&clock_register_lock, flags);
-
- val = clk_readl(c->reg);
- val &= ~(BUS_CLK_DISABLE << c->reg_shift);
- clk_writel(val, c->reg);
-
- spin_unlock_irqrestore(&clock_register_lock, flags);
-
- return 0;
-}
-
-static void tegra2_bus_clk_disable(struct clk *c)
-{
- u32 val;
- unsigned long flags;
-
- spin_lock_irqsave(&clock_register_lock, flags);
-
- val = clk_readl(c->reg);
- val |= BUS_CLK_DISABLE << c->reg_shift;
- clk_writel(val, c->reg);
-
- spin_unlock_irqrestore(&clock_register_lock, flags);
-}
-
-static int tegra2_bus_clk_set_rate(struct clk *c, unsigned long rate)
-{
- u32 val;
- unsigned long parent_rate = clk_get_rate(c->parent);
- unsigned long flags;
- int ret = -EINVAL;
- int i;
-
- spin_lock_irqsave(&clock_register_lock, flags);
-
- val = clk_readl(c->reg);
- for (i = 1; i <= 4; i++) {
- if (rate == parent_rate / i) {
- val &= ~(BUS_CLK_DIV_MASK << c->reg_shift);
- val |= (i - 1) << c->reg_shift;
- clk_writel(val, c->reg);
- c->div = i;
- c->mul = 1;
- ret = 0;
- break;
- }
- }
-
- spin_unlock_irqrestore(&clock_register_lock, flags);
-
- return ret;
-}
-
-static struct clk_ops tegra_bus_ops = {
- .init = tegra2_bus_clk_init,
- .enable = tegra2_bus_clk_enable,
- .disable = tegra2_bus_clk_disable,
- .set_rate = tegra2_bus_clk_set_rate,
-};
-
-/* Blink output functions */
-
-static void tegra2_blink_clk_init(struct clk *c)
-{
- u32 val;
-
- val = pmc_readl(PMC_CTRL);
- c->state = (val & PMC_CTRL_BLINK_ENB) ? ON : OFF;
- c->mul = 1;
- val = pmc_readl(c->reg);
-
- if (val & PMC_BLINK_TIMER_ENB) {
- unsigned int on_off;
-
- on_off = (val >> PMC_BLINK_TIMER_DATA_ON_SHIFT) &
- PMC_BLINK_TIMER_DATA_ON_MASK;
- val >>= PMC_BLINK_TIMER_DATA_OFF_SHIFT;
- val &= PMC_BLINK_TIMER_DATA_OFF_MASK;
- on_off += val;
- /* each tick in the blink timer is 4 32KHz clocks */
- c->div = on_off * 4;
- } else {
- c->div = 1;
- }
-}
-
-static int tegra2_blink_clk_enable(struct clk *c)
-{
- u32 val;
-
- val = pmc_readl(PMC_DPD_PADS_ORIDE);
- pmc_writel(val | PMC_DPD_PADS_ORIDE_BLINK_ENB, PMC_DPD_PADS_ORIDE);
-
- val = pmc_readl(PMC_CTRL);
- pmc_writel(val | PMC_CTRL_BLINK_ENB, PMC_CTRL);
-
- return 0;
-}
-
-static void tegra2_blink_clk_disable(struct clk *c)
-{
- u32 val;
-
- val = pmc_readl(PMC_CTRL);
- pmc_writel(val & ~PMC_CTRL_BLINK_ENB, PMC_CTRL);
-
- val = pmc_readl(PMC_DPD_PADS_ORIDE);
- pmc_writel(val & ~PMC_DPD_PADS_ORIDE_BLINK_ENB, PMC_DPD_PADS_ORIDE);
-}
-
-static int tegra2_blink_clk_set_rate(struct clk *c, unsigned long rate)
-{
- unsigned long parent_rate = clk_get_rate(c->parent);
- if (rate >= parent_rate) {
- c->div = 1;
- pmc_writel(0, c->reg);
- } else {
- unsigned int on_off;
- u32 val;
-
- on_off = DIV_ROUND_UP(parent_rate / 8, rate);
- c->div = on_off * 8;
-
- val = (on_off & PMC_BLINK_TIMER_DATA_ON_MASK) <<
- PMC_BLINK_TIMER_DATA_ON_SHIFT;
- on_off &= PMC_BLINK_TIMER_DATA_OFF_MASK;
- on_off <<= PMC_BLINK_TIMER_DATA_OFF_SHIFT;
- val |= on_off;
- val |= PMC_BLINK_TIMER_ENB;
- pmc_writel(val, c->reg);
- }
-
- return 0;
-}
-
-static struct clk_ops tegra_blink_clk_ops = {
- .init = &tegra2_blink_clk_init,
- .enable = &tegra2_blink_clk_enable,
- .disable = &tegra2_blink_clk_disable,
- .set_rate = &tegra2_blink_clk_set_rate,
-};
-
-/* PLL Functions */
-static int tegra2_pll_clk_wait_for_lock(struct clk *c)
-{
- udelay(c->u.pll.lock_delay);
-
- return 0;
-}
-
-static void tegra2_pll_clk_init(struct clk *c)
-{
- u32 val = clk_readl(c->reg + PLL_BASE);
-
- c->state = (val & PLL_BASE_ENABLE) ? ON : OFF;
-
- if (c->flags & PLL_FIXED && !(val & PLL_BASE_OVERRIDE)) {
- pr_warning("Clock %s has unknown fixed frequency\n", c->name);
- c->mul = 1;
- c->div = 1;
- } else if (val & PLL_BASE_BYPASS) {
- c->mul = 1;
- c->div = 1;
- } else {
- c->mul = (val & PLL_BASE_DIVN_MASK) >> PLL_BASE_DIVN_SHIFT;
- c->div = (val & PLL_BASE_DIVM_MASK) >> PLL_BASE_DIVM_SHIFT;
- if (c->flags & PLLU)
- c->div *= (val & PLLU_BASE_POST_DIV) ? 1 : 2;
- else
- c->div *= (val & PLL_BASE_DIVP_MASK) ? 2 : 1;
- }
-}
-
-static int tegra2_pll_clk_enable(struct clk *c)
-{
- u32 val;
- pr_debug("%s on clock %s\n", __func__, c->name);
-
- val = clk_readl(c->reg + PLL_BASE);
- val &= ~PLL_BASE_BYPASS;
- val |= PLL_BASE_ENABLE;
- clk_writel(val, c->reg + PLL_BASE);
-
- tegra2_pll_clk_wait_for_lock(c);
-
- return 0;
-}
-
-static void tegra2_pll_clk_disable(struct clk *c)
-{
- u32 val;
- pr_debug("%s on clock %s\n", __func__, c->name);
-
- val = clk_readl(c->reg);
- val &= ~(PLL_BASE_BYPASS | PLL_BASE_ENABLE);
- clk_writel(val, c->reg);
-}
-
-static int tegra2_pll_clk_set_rate(struct clk *c, unsigned long rate)
-{
- u32 val;
- unsigned long input_rate;
- const struct clk_pll_freq_table *sel;
-
- pr_debug("%s: %s %lu\n", __func__, c->name, rate);
-
- input_rate = clk_get_rate(c->parent);
- for (sel = c->u.pll.freq_table; sel->input_rate != 0; sel++) {
- if (sel->input_rate == input_rate && sel->output_rate == rate) {
- c->mul = sel->n;
- c->div = sel->m * sel->p;
-
- val = clk_readl(c->reg + PLL_BASE);
- if (c->flags & PLL_FIXED)
- val |= PLL_BASE_OVERRIDE;
- val &= ~(PLL_BASE_DIVP_MASK | PLL_BASE_DIVN_MASK |
- PLL_BASE_DIVM_MASK);
- val |= (sel->m << PLL_BASE_DIVM_SHIFT) |
- (sel->n << PLL_BASE_DIVN_SHIFT);
- BUG_ON(sel->p < 1 || sel->p > 2);
- if (c->flags & PLLU) {
- if (sel->p == 1)
- val |= PLLU_BASE_POST_DIV;
- } else {
- if (sel->p == 2)
- val |= 1 << PLL_BASE_DIVP_SHIFT;
- }
- clk_writel(val, c->reg + PLL_BASE);
-
- if (c->flags & PLL_HAS_CPCON) {
- val = clk_readl(c->reg + PLL_MISC(c));
- val &= ~PLL_MISC_CPCON_MASK;
- val |= sel->cpcon << PLL_MISC_CPCON_SHIFT;
- clk_writel(val, c->reg + PLL_MISC(c));
- }
-
- if (c->state == ON)
- tegra2_pll_clk_enable(c);
-
- return 0;
- }
- }
- return -EINVAL;
-}
-
-static struct clk_ops tegra_pll_ops = {
- .init = tegra2_pll_clk_init,
- .enable = tegra2_pll_clk_enable,
- .disable = tegra2_pll_clk_disable,
- .set_rate = tegra2_pll_clk_set_rate,
-};
-
-static void tegra2_pllx_clk_init(struct clk *c)
-{
- tegra2_pll_clk_init(c);
-
- if (tegra_sku_id == 7)
- c->max_rate = 750000000;
-}
-
-static struct clk_ops tegra_pllx_ops = {
- .init = tegra2_pllx_clk_init,
- .enable = tegra2_pll_clk_enable,
- .disable = tegra2_pll_clk_disable,
- .set_rate = tegra2_pll_clk_set_rate,
-};
-
-static int tegra2_plle_clk_enable(struct clk *c)
-{
- u32 val;
-
- pr_debug("%s on clock %s\n", __func__, c->name);
-
- mdelay(1);
-
- val = clk_readl(c->reg + PLL_BASE);
- if (!(val & PLLE_MISC_READY))
- return -EBUSY;
-
- val = clk_readl(c->reg + PLL_BASE);
- val |= PLL_BASE_ENABLE | PLL_BASE_BYPASS;
- clk_writel(val, c->reg + PLL_BASE);
-
- return 0;
-}
-
-static struct clk_ops tegra_plle_ops = {
- .init = tegra2_pll_clk_init,
- .enable = tegra2_plle_clk_enable,
- .set_rate = tegra2_pll_clk_set_rate,
-};
-
-/* Clock divider ops */
-static void tegra2_pll_div_clk_init(struct clk *c)
-{
- u32 val = clk_readl(c->reg);
- u32 divu71;
- val >>= c->reg_shift;
- c->state = (val & PLL_OUT_CLKEN) ? ON : OFF;
- if (!(val & PLL_OUT_RESET_DISABLE))
- c->state = OFF;
-
- if (c->flags & DIV_U71) {
- divu71 = (val & PLL_OUT_RATIO_MASK) >> PLL_OUT_RATIO_SHIFT;
- c->div = (divu71 + 2);
- c->mul = 2;
- } else if (c->flags & DIV_2) {
- c->div = 2;
- c->mul = 1;
- } else {
- c->div = 1;
- c->mul = 1;
- }
-}
-
-static int tegra2_pll_div_clk_enable(struct clk *c)
-{
- u32 val;
- u32 new_val;
- unsigned long flags;
-
- pr_debug("%s: %s\n", __func__, c->name);
- if (c->flags & DIV_U71) {
- spin_lock_irqsave(&clock_register_lock, flags);
- val = clk_readl(c->reg);
- new_val = val >> c->reg_shift;
- new_val &= 0xFFFF;
-
- new_val |= PLL_OUT_CLKEN | PLL_OUT_RESET_DISABLE;
-
- val &= ~(0xFFFF << c->reg_shift);
- val |= new_val << c->reg_shift;
- clk_writel(val, c->reg);
- spin_unlock_irqrestore(&clock_register_lock, flags);
- return 0;
- } else if (c->flags & DIV_2) {
- BUG_ON(!(c->flags & PLLD));
- spin_lock_irqsave(&clock_register_lock, flags);
- val = clk_readl(c->reg);
- val &= ~PLLD_MISC_DIV_RST;
- clk_writel(val, c->reg);
- spin_unlock_irqrestore(&clock_register_lock, flags);
- return 0;
- }
- return -EINVAL;
-}
-
-static void tegra2_pll_div_clk_disable(struct clk *c)
-{
- u32 val;
- u32 new_val;
- unsigned long flags;
-
- pr_debug("%s: %s\n", __func__, c->name);
- if (c->flags & DIV_U71) {
- spin_lock_irqsave(&clock_register_lock, flags);
- val = clk_readl(c->reg);
- new_val = val >> c->reg_shift;
- new_val &= 0xFFFF;
-
- new_val &= ~(PLL_OUT_CLKEN | PLL_OUT_RESET_DISABLE);
-
- val &= ~(0xFFFF << c->reg_shift);
- val |= new_val << c->reg_shift;
- clk_writel(val, c->reg);
- spin_unlock_irqrestore(&clock_register_lock, flags);
- } else if (c->flags & DIV_2) {
- BUG_ON(!(c->flags & PLLD));
- spin_lock_irqsave(&clock_register_lock, flags);
- val = clk_readl(c->reg);
- val |= PLLD_MISC_DIV_RST;
- clk_writel(val, c->reg);
- spin_unlock_irqrestore(&clock_register_lock, flags);
- }
-}
-
-static int tegra2_pll_div_clk_set_rate(struct clk *c, unsigned long rate)
-{
- u32 val;
- u32 new_val;
- int divider_u71;
- unsigned long parent_rate = clk_get_rate(c->parent);
- unsigned long flags;
-
- pr_debug("%s: %s %lu\n", __func__, c->name, rate);
- if (c->flags & DIV_U71) {
- divider_u71 = clk_div71_get_divider(parent_rate, rate);
- if (divider_u71 >= 0) {
- spin_lock_irqsave(&clock_register_lock, flags);
- val = clk_readl(c->reg);
- new_val = val >> c->reg_shift;
- new_val &= 0xFFFF;
- if (c->flags & DIV_U71_FIXED)
- new_val |= PLL_OUT_OVERRIDE;
- new_val &= ~PLL_OUT_RATIO_MASK;
- new_val |= divider_u71 << PLL_OUT_RATIO_SHIFT;
-
- val &= ~(0xFFFF << c->reg_shift);
- val |= new_val << c->reg_shift;
- clk_writel(val, c->reg);
- c->div = divider_u71 + 2;
- c->mul = 2;
- spin_unlock_irqrestore(&clock_register_lock, flags);
- return 0;
- }
- } else if (c->flags & DIV_2) {
- if (parent_rate == rate * 2)
- return 0;
- }
- return -EINVAL;
-}
-
-static long tegra2_pll_div_clk_round_rate(struct clk *c, unsigned long rate)
-{
- int divider;
- unsigned long parent_rate = clk_get_rate(c->parent);
- pr_debug("%s: %s %lu\n", __func__, c->name, rate);
-
- if (c->flags & DIV_U71) {
- divider = clk_div71_get_divider(parent_rate, rate);
- if (divider < 0)
- return divider;
- return DIV_ROUND_UP(parent_rate * 2, divider + 2);
- } else if (c->flags & DIV_2) {
- return DIV_ROUND_UP(parent_rate, 2);
- }
- return -EINVAL;
-}
-
-static struct clk_ops tegra_pll_div_ops = {
- .init = tegra2_pll_div_clk_init,
- .enable = tegra2_pll_div_clk_enable,
- .disable = tegra2_pll_div_clk_disable,
- .set_rate = tegra2_pll_div_clk_set_rate,
- .round_rate = tegra2_pll_div_clk_round_rate,
-};
-
-/* Periph clk ops */
-
-static void tegra2_periph_clk_init(struct clk *c)
-{
- u32 val = clk_readl(c->reg);
- const struct clk_mux_sel *mux = NULL;
- const struct clk_mux_sel *sel;
- u32 shift;
- u32 mask;
-
- if (c->flags & MUX_PWM) {
- shift = PERIPH_CLK_SOURCE_PWM_SHIFT;
- mask = PERIPH_CLK_SOURCE_PWM_MASK;
- } else {
- shift = PERIPH_CLK_SOURCE_SHIFT;
- mask = PERIPH_CLK_SOURCE_MASK;
- }
-
- if (c->flags & MUX) {
- for (sel = c->inputs; sel->input != NULL; sel++) {
- if ((val & mask) >> shift == sel->value)
- mux = sel;
- }
- BUG_ON(!mux);
-
- c->parent = mux->input;
- } else {
- c->parent = c->inputs[0].input;
- }
-
- if (c->flags & DIV_U71) {
- u32 divu71 = val & PERIPH_CLK_SOURCE_DIVU71_MASK;
- c->div = divu71 + 2;
- c->mul = 2;
- } else if (c->flags & DIV_U16) {
- u32 divu16 = val & PERIPH_CLK_SOURCE_DIVU16_MASK;
- c->div = divu16 + 1;
- c->mul = 1;
- } else {
- c->div = 1;
- c->mul = 1;
- }
-
- c->state = ON;
-
- if (!c->u.periph.clk_num)
- return;
-
- if (!(clk_readl(CLK_OUT_ENB + PERIPH_CLK_TO_ENB_REG(c)) &
- PERIPH_CLK_TO_ENB_BIT(c)))
- c->state = OFF;
-
- if (!(c->flags & PERIPH_NO_RESET))
- if (clk_readl(RST_DEVICES + PERIPH_CLK_TO_ENB_REG(c)) &
- PERIPH_CLK_TO_ENB_BIT(c))
- c->state = OFF;
-}
-
-static int tegra2_periph_clk_enable(struct clk *c)
-{
- u32 val;
- unsigned long flags;
- int refcount;
- pr_debug("%s on clock %s\n", __func__, c->name);
-
- if (!c->u.periph.clk_num)
- return 0;
-
- spin_lock_irqsave(&clock_register_lock, flags);
-
- refcount = tegra_periph_clk_enable_refcount[c->u.periph.clk_num]++;
-
- if (refcount > 1)
- goto out;
-
- clk_writel(PERIPH_CLK_TO_ENB_BIT(c),
- CLK_OUT_ENB_SET + PERIPH_CLK_TO_ENB_SET_REG(c));
- if (!(c->flags & PERIPH_NO_RESET) && !(c->flags & PERIPH_MANUAL_RESET))
- clk_writel(PERIPH_CLK_TO_ENB_BIT(c),
- RST_DEVICES_CLR + PERIPH_CLK_TO_ENB_SET_REG(c));
- if (c->flags & PERIPH_EMC_ENB) {
- /* The EMC peripheral clock has 2 extra enable bits */
- /* FIXME: Do they need to be disabled? */
- val = clk_readl(c->reg);
- val |= 0x3 << 24;
- clk_writel(val, c->reg);
- }
-
-out:
- spin_unlock_irqrestore(&clock_register_lock, flags);
-
- return 0;
-}
-
-static void tegra2_periph_clk_disable(struct clk *c)
-{
- unsigned long flags;
-
- pr_debug("%s on clock %s\n", __func__, c->name);
-
- if (!c->u.periph.clk_num)
- return;
-
- spin_lock_irqsave(&clock_register_lock, flags);
-
- if (c->refcnt)
- tegra_periph_clk_enable_refcount[c->u.periph.clk_num]--;
-
- if (tegra_periph_clk_enable_refcount[c->u.periph.clk_num] == 0)
- clk_writel(PERIPH_CLK_TO_ENB_BIT(c),
- CLK_OUT_ENB_CLR + PERIPH_CLK_TO_ENB_SET_REG(c));
-
- spin_unlock_irqrestore(&clock_register_lock, flags);
-}
-
-static void tegra2_periph_clk_reset(struct clk *c, bool assert)
-{
- unsigned long base = assert ? RST_DEVICES_SET : RST_DEVICES_CLR;
-
- pr_debug("%s %s on clock %s\n", __func__,
- assert ? "assert" : "deassert", c->name);
-
- BUG_ON(!c->u.periph.clk_num);
-
- if (!(c->flags & PERIPH_NO_RESET))
- clk_writel(PERIPH_CLK_TO_ENB_BIT(c),
- base + PERIPH_CLK_TO_ENB_SET_REG(c));
-}
-
-static int tegra2_periph_clk_set_parent(struct clk *c, struct clk *p)
-{
- u32 val;
- const struct clk_mux_sel *sel;
- u32 mask, shift;
-
- pr_debug("%s: %s %s\n", __func__, c->name, p->name);
-
- if (c->flags & MUX_PWM) {
- shift = PERIPH_CLK_SOURCE_PWM_SHIFT;
- mask = PERIPH_CLK_SOURCE_PWM_MASK;
- } else {
- shift = PERIPH_CLK_SOURCE_SHIFT;
- mask = PERIPH_CLK_SOURCE_MASK;
- }
-
- for (sel = c->inputs; sel->input != NULL; sel++) {
- if (sel->input == p) {
- val = clk_readl(c->reg);
- val &= ~mask;
- val |= (sel->value) << shift;
-
- if (c->refcnt)
- clk_enable(p);
-
- clk_writel(val, c->reg);
-
- if (c->refcnt && c->parent)
- clk_disable(c->parent);
-
- clk_reparent(c, p);
- return 0;
- }
- }
-
- return -EINVAL;
-}
-
-static int tegra2_periph_clk_set_rate(struct clk *c, unsigned long rate)
-{
- u32 val;
- int divider;
- unsigned long parent_rate = clk_get_rate(c->parent);
-
- if (c->flags & DIV_U71) {
- divider = clk_div71_get_divider(parent_rate, rate);
- if (divider >= 0) {
- val = clk_readl(c->reg);
- val &= ~PERIPH_CLK_SOURCE_DIVU71_MASK;
- val |= divider;
- clk_writel(val, c->reg);
- c->div = divider + 2;
- c->mul = 2;
- return 0;
- }
- } else if (c->flags & DIV_U16) {
- divider = clk_div16_get_divider(parent_rate, rate);
- if (divider >= 0) {
- val = clk_readl(c->reg);
- val &= ~PERIPH_CLK_SOURCE_DIVU16_MASK;
- val |= divider;
- clk_writel(val, c->reg);
- c->div = divider + 1;
- c->mul = 1;
- return 0;
- }
- } else if (parent_rate <= rate) {
- c->div = 1;
- c->mul = 1;
- return 0;
- }
- return -EINVAL;
-}
-
-static long tegra2_periph_clk_round_rate(struct clk *c,
- unsigned long rate)
-{
- int divider;
- unsigned long parent_rate = clk_get_rate(c->parent);
- pr_debug("%s: %s %lu\n", __func__, c->name, rate);
-
- if (c->flags & DIV_U71) {
- divider = clk_div71_get_divider(parent_rate, rate);
- if (divider < 0)
- return divider;
-
- return DIV_ROUND_UP(parent_rate * 2, divider + 2);
- } else if (c->flags & DIV_U16) {
- divider = clk_div16_get_divider(parent_rate, rate);
- if (divider < 0)
- return divider;
- return DIV_ROUND_UP(parent_rate, divider + 1);
- }
- return -EINVAL;
-}
-
-static struct clk_ops tegra_periph_clk_ops = {
- .init = &tegra2_periph_clk_init,
- .enable = &tegra2_periph_clk_enable,
- .disable = &tegra2_periph_clk_disable,
- .set_parent = &tegra2_periph_clk_set_parent,
- .set_rate = &tegra2_periph_clk_set_rate,
- .round_rate = &tegra2_periph_clk_round_rate,
- .reset = &tegra2_periph_clk_reset,
-};
-
-/* The SDMMC controllers have extra bits in the clock source register that
- * adjust the delay between the clock and data to compenstate for delays
- * on the PCB. */
-void tegra2_sdmmc_tap_delay(struct clk *c, int delay)
-{
- u32 reg;
- unsigned long flags;
-
- spin_lock_irqsave(&c->spinlock, flags);
-
- delay = clamp(delay, 0, 15);
- reg = clk_readl(c->reg);
- reg &= ~SDMMC_CLK_INT_FB_DLY_MASK;
- reg |= SDMMC_CLK_INT_FB_SEL;
- reg |= delay << SDMMC_CLK_INT_FB_DLY_SHIFT;
- clk_writel(reg, c->reg);
-
- spin_unlock_irqrestore(&c->spinlock, flags);
-}
-
-/* External memory controller clock ops */
-static void tegra2_emc_clk_init(struct clk *c)
-{
- tegra2_periph_clk_init(c);
- c->max_rate = clk_get_rate_locked(c);
-}
-
-static long tegra2_emc_clk_round_rate(struct clk *c, unsigned long rate)
-{
- long emc_rate;
- long clk_rate;
-
- /*
- * The slowest entry in the EMC clock table that is at least as
- * fast as rate.
- */
- emc_rate = tegra_emc_round_rate(rate);
- if (emc_rate < 0)
- return c->max_rate;
-
- /*
- * The fastest rate the PLL will generate that is at most the
- * requested rate.
- */
- clk_rate = tegra2_periph_clk_round_rate(c, emc_rate);
-
- /*
- * If this fails, and emc_rate > clk_rate, it's because the maximum
- * rate in the EMC tables is larger than the maximum rate of the EMC
- * clock. The EMC clock's max rate is the rate it was running when the
- * kernel booted. Such a mismatch is probably due to using the wrong
- * BCT, i.e. using a Tegra20 BCT with an EMC table written for Tegra25.
- */
- WARN_ONCE(emc_rate != clk_rate,
- "emc_rate %ld != clk_rate %ld",
- emc_rate, clk_rate);
-
- return emc_rate;
-}
-
-static int tegra2_emc_clk_set_rate(struct clk *c, unsigned long rate)
-{
- int ret;
- /*
- * The Tegra2 memory controller has an interlock with the clock
- * block that allows memory shadowed registers to be updated,
- * and then transfer them to the main registers at the same
- * time as the clock update without glitches.
- */
- ret = tegra_emc_set_rate(rate);
- if (ret < 0)
- return ret;
-
- ret = tegra2_periph_clk_set_rate(c, rate);
- udelay(1);
-
- return ret;
-}
-
-static struct clk_ops tegra_emc_clk_ops = {
- .init = &tegra2_emc_clk_init,
- .enable = &tegra2_periph_clk_enable,
- .disable = &tegra2_periph_clk_disable,
- .set_parent = &tegra2_periph_clk_set_parent,
- .set_rate = &tegra2_emc_clk_set_rate,
- .round_rate = &tegra2_emc_clk_round_rate,
- .reset = &tegra2_periph_clk_reset,
-};
-
-/* Clock doubler ops */
-static void tegra2_clk_double_init(struct clk *c)
-{
- c->mul = 2;
- c->div = 1;
- c->state = ON;
-
- if (!c->u.periph.clk_num)
- return;
-
- if (!(clk_readl(CLK_OUT_ENB + PERIPH_CLK_TO_ENB_REG(c)) &
- PERIPH_CLK_TO_ENB_BIT(c)))
- c->state = OFF;
-};
-
-static int tegra2_clk_double_set_rate(struct clk *c, unsigned long rate)
-{
- if (rate != 2 * clk_get_rate(c->parent))
- return -EINVAL;
- c->mul = 2;
- c->div = 1;
- return 0;
-}
-
-static struct clk_ops tegra_clk_double_ops = {
- .init = &tegra2_clk_double_init,
- .enable = &tegra2_periph_clk_enable,
- .disable = &tegra2_periph_clk_disable,
- .set_rate = &tegra2_clk_double_set_rate,
-};
-
-/* Audio sync clock ops */
-static void tegra2_audio_sync_clk_init(struct clk *c)
-{
- int source;
- const struct clk_mux_sel *sel;
- u32 val = clk_readl(c->reg);
- c->state = (val & (1<<4)) ? OFF : ON;
- source = val & 0xf;
- for (sel = c->inputs; sel->input != NULL; sel++)
- if (sel->value == source)
- break;
- BUG_ON(sel->input == NULL);
- c->parent = sel->input;
-}
-
-static int tegra2_audio_sync_clk_enable(struct clk *c)
-{
- clk_writel(0, c->reg);
- return 0;
-}
-
-static void tegra2_audio_sync_clk_disable(struct clk *c)
-{
- clk_writel(1, c->reg);
-}
-
-static int tegra2_audio_sync_clk_set_parent(struct clk *c, struct clk *p)
-{
- u32 val;
- const struct clk_mux_sel *sel;
- for (sel = c->inputs; sel->input != NULL; sel++) {
- if (sel->input == p) {
- val = clk_readl(c->reg);
- val &= ~0xf;
- val |= sel->value;
-
- if (c->refcnt)
- clk_enable(p);
-
- clk_writel(val, c->reg);
-
- if (c->refcnt && c->parent)
- clk_disable(c->parent);
-
- clk_reparent(c, p);
- return 0;
- }
- }
-
- return -EINVAL;
-}
-
-static struct clk_ops tegra_audio_sync_clk_ops = {
- .init = tegra2_audio_sync_clk_init,
- .enable = tegra2_audio_sync_clk_enable,
- .disable = tegra2_audio_sync_clk_disable,
- .set_parent = tegra2_audio_sync_clk_set_parent,
-};
-
-/* cdev1 and cdev2 (dap_mclk1 and dap_mclk2) ops */
-
-static void tegra2_cdev_clk_init(struct clk *c)
-{
- /* We could un-tristate the cdev1 or cdev2 pingroup here; this is
- * currently done in the pinmux code. */
- c->state = ON;
-
- BUG_ON(!c->u.periph.clk_num);
-
- if (!(clk_readl(CLK_OUT_ENB + PERIPH_CLK_TO_ENB_REG(c)) &
- PERIPH_CLK_TO_ENB_BIT(c)))
- c->state = OFF;
-}
-
-static int tegra2_cdev_clk_enable(struct clk *c)
-{
- BUG_ON(!c->u.periph.clk_num);
-
- clk_writel(PERIPH_CLK_TO_ENB_BIT(c),
- CLK_OUT_ENB_SET + PERIPH_CLK_TO_ENB_SET_REG(c));
- return 0;
-}
-
-static void tegra2_cdev_clk_disable(struct clk *c)
-{
- BUG_ON(!c->u.periph.clk_num);
-
- clk_writel(PERIPH_CLK_TO_ENB_BIT(c),
- CLK_OUT_ENB_CLR + PERIPH_CLK_TO_ENB_SET_REG(c));
-}
-
-static struct clk_ops tegra_cdev_clk_ops = {
- .init = &tegra2_cdev_clk_init,
- .enable = &tegra2_cdev_clk_enable,
- .disable = &tegra2_cdev_clk_disable,
-};
-
-/* shared bus ops */
-/*
- * Some clocks may have multiple downstream users that need to request a
- * higher clock rate. Shared bus clocks provide a unique shared_bus_user
- * clock to each user. The frequency of the bus is set to the highest
- * enabled shared_bus_user clock, with a minimum value set by the
- * shared bus.
- */
-static int tegra_clk_shared_bus_update(struct clk *bus)
-{
- struct clk *c;
- unsigned long rate = bus->min_rate;
-
- list_for_each_entry(c, &bus->shared_bus_list, u.shared_bus_user.node)
- if (c->u.shared_bus_user.enabled)
- rate = max(c->u.shared_bus_user.rate, rate);
-
- if (rate == clk_get_rate_locked(bus))
- return 0;
-
- return clk_set_rate_locked(bus, rate);
-};
-
-static void tegra_clk_shared_bus_init(struct clk *c)
-{
- unsigned long flags;
-
- c->max_rate = c->parent->max_rate;
- c->u.shared_bus_user.rate = c->parent->max_rate;
- c->state = OFF;
- c->set = true;
-
- spin_lock_irqsave(&c->parent->spinlock, flags);
-
- list_add_tail(&c->u.shared_bus_user.node,
- &c->parent->shared_bus_list);
-
- spin_unlock_irqrestore(&c->parent->spinlock, flags);
-}
-
-static int tegra_clk_shared_bus_set_rate(struct clk *c, unsigned long rate)
-{
- unsigned long flags;
- int ret;
- long new_rate = rate;
-
- new_rate = clk_round_rate(c->parent, new_rate);
- if (new_rate < 0)
- return new_rate;
-
- spin_lock_irqsave(&c->parent->spinlock, flags);
-
- c->u.shared_bus_user.rate = new_rate;
- ret = tegra_clk_shared_bus_update(c->parent);
-
- spin_unlock_irqrestore(&c->parent->spinlock, flags);
-
- return ret;
-}
-
-static long tegra_clk_shared_bus_round_rate(struct clk *c, unsigned long rate)
-{
- return clk_round_rate(c->parent, rate);
-}
-
-static int tegra_clk_shared_bus_enable(struct clk *c)
-{
- unsigned long flags;
- int ret;
-
- spin_lock_irqsave(&c->parent->spinlock, flags);
-
- c->u.shared_bus_user.enabled = true;
- ret = tegra_clk_shared_bus_update(c->parent);
-
- spin_unlock_irqrestore(&c->parent->spinlock, flags);
-
- return ret;
-}
-
-static void tegra_clk_shared_bus_disable(struct clk *c)
-{
- unsigned long flags;
- int ret;
-
- spin_lock_irqsave(&c->parent->spinlock, flags);
-
- c->u.shared_bus_user.enabled = false;
- ret = tegra_clk_shared_bus_update(c->parent);
- WARN_ON_ONCE(ret);
-
- spin_unlock_irqrestore(&c->parent->spinlock, flags);
-}
-
-static struct clk_ops tegra_clk_shared_bus_ops = {
- .init = tegra_clk_shared_bus_init,
- .enable = tegra_clk_shared_bus_enable,
- .disable = tegra_clk_shared_bus_disable,
- .set_rate = tegra_clk_shared_bus_set_rate,
- .round_rate = tegra_clk_shared_bus_round_rate,
-};
-
-
-/* Clock definitions */
-static struct clk tegra_clk_32k = {
- .name = "clk_32k",
- .rate = 32768,
- .ops = NULL,
- .max_rate = 32768,
-};
-
-static struct clk_pll_freq_table tegra_pll_s_freq_table[] = {
- {32768, 12000000, 366, 1, 1, 0},
- {32768, 13000000, 397, 1, 1, 0},
- {32768, 19200000, 586, 1, 1, 0},
- {32768, 26000000, 793, 1, 1, 0},
- {0, 0, 0, 0, 0, 0},
-};
-
-static struct clk tegra_pll_s = {
- .name = "pll_s",
- .flags = PLL_ALT_MISC_REG,
- .ops = &tegra_pll_ops,
- .parent = &tegra_clk_32k,
- .max_rate = 26000000,
- .reg = 0xf0,
- .u.pll = {
- .input_min = 32768,
- .input_max = 32768,
- .cf_min = 0, /* FIXME */
- .cf_max = 0, /* FIXME */
- .vco_min = 12000000,
- .vco_max = 26000000,
- .freq_table = tegra_pll_s_freq_table,
- .lock_delay = 300,
- },
-};
-
-static struct clk_mux_sel tegra_clk_m_sel[] = {
- { .input = &tegra_clk_32k, .value = 0},
- { .input = &tegra_pll_s, .value = 1},
- { NULL , 0},
-};
-
-static struct clk tegra_clk_m = {
- .name = "clk_m",
- .flags = ENABLE_ON_INIT,
- .ops = &tegra_clk_m_ops,
- .inputs = tegra_clk_m_sel,
- .reg = 0x1fc,
- .reg_shift = 28,
- .max_rate = 26000000,
-};
-
-static struct clk_pll_freq_table tegra_pll_c_freq_table[] = {
- { 12000000, 600000000, 600, 12, 1, 8 },
- { 13000000, 600000000, 600, 13, 1, 8 },
- { 19200000, 600000000, 500, 16, 1, 6 },
- { 26000000, 600000000, 600, 26, 1, 8 },
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_c = {
- .name = "pll_c",
- .flags = PLL_HAS_CPCON,
- .ops = &tegra_pll_ops,
- .reg = 0x80,
- .parent = &tegra_clk_m,
- .max_rate = 600000000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 31000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 20000000,
- .vco_max = 1400000000,
- .freq_table = tegra_pll_c_freq_table,
- .lock_delay = 300,
- },
-};
-
-static struct clk tegra_pll_c_out1 = {
- .name = "pll_c_out1",
- .ops = &tegra_pll_div_ops,
- .flags = DIV_U71,
- .parent = &tegra_pll_c,
- .reg = 0x84,
- .reg_shift = 0,
- .max_rate = 600000000,
-};
-
-static struct clk_pll_freq_table tegra_pll_m_freq_table[] = {
- { 12000000, 666000000, 666, 12, 1, 8},
- { 13000000, 666000000, 666, 13, 1, 8},
- { 19200000, 666000000, 555, 16, 1, 8},
- { 26000000, 666000000, 666, 26, 1, 8},
- { 12000000, 600000000, 600, 12, 1, 8},
- { 13000000, 600000000, 600, 13, 1, 8},
- { 19200000, 600000000, 375, 12, 1, 6},
- { 26000000, 600000000, 600, 26, 1, 8},
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_m = {
- .name = "pll_m",
- .flags = PLL_HAS_CPCON,
- .ops = &tegra_pll_ops,
- .reg = 0x90,
- .parent = &tegra_clk_m,
- .max_rate = 800000000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 31000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 20000000,
- .vco_max = 1200000000,
- .freq_table = tegra_pll_m_freq_table,
- .lock_delay = 300,
- },
-};
-
-static struct clk tegra_pll_m_out1 = {
- .name = "pll_m_out1",
- .ops = &tegra_pll_div_ops,
- .flags = DIV_U71,
- .parent = &tegra_pll_m,
- .reg = 0x94,
- .reg_shift = 0,
- .max_rate = 600000000,
-};
-
-static struct clk_pll_freq_table tegra_pll_p_freq_table[] = {
- { 12000000, 216000000, 432, 12, 2, 8},
- { 13000000, 216000000, 432, 13, 2, 8},
- { 19200000, 216000000, 90, 4, 2, 1},
- { 26000000, 216000000, 432, 26, 2, 8},
- { 12000000, 432000000, 432, 12, 1, 8},
- { 13000000, 432000000, 432, 13, 1, 8},
- { 19200000, 432000000, 90, 4, 1, 1},
- { 26000000, 432000000, 432, 26, 1, 8},
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_p = {
- .name = "pll_p",
- .flags = ENABLE_ON_INIT | PLL_FIXED | PLL_HAS_CPCON,
- .ops = &tegra_pll_ops,
- .reg = 0xa0,
- .parent = &tegra_clk_m,
- .max_rate = 432000000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 31000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 20000000,
- .vco_max = 1400000000,
- .freq_table = tegra_pll_p_freq_table,
- .lock_delay = 300,
- },
-};
-
-static struct clk tegra_pll_p_out1 = {
- .name = "pll_p_out1",
- .ops = &tegra_pll_div_ops,
- .flags = ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED,
- .parent = &tegra_pll_p,
- .reg = 0xa4,
- .reg_shift = 0,
- .max_rate = 432000000,
-};
-
-static struct clk tegra_pll_p_out2 = {
- .name = "pll_p_out2",
- .ops = &tegra_pll_div_ops,
- .flags = ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED,
- .parent = &tegra_pll_p,
- .reg = 0xa4,
- .reg_shift = 16,
- .max_rate = 432000000,
-};
-
-static struct clk tegra_pll_p_out3 = {
- .name = "pll_p_out3",
- .ops = &tegra_pll_div_ops,
- .flags = ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED,
- .parent = &tegra_pll_p,
- .reg = 0xa8,
- .reg_shift = 0,
- .max_rate = 432000000,
-};
-
-static struct clk tegra_pll_p_out4 = {
- .name = "pll_p_out4",
- .ops = &tegra_pll_div_ops,
- .flags = ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED,
- .parent = &tegra_pll_p,
- .reg = 0xa8,
- .reg_shift = 16,
- .max_rate = 432000000,
-};
-
-static struct clk_pll_freq_table tegra_pll_a_freq_table[] = {
- { 28800000, 56448000, 49, 25, 1, 1},
- { 28800000, 73728000, 64, 25, 1, 1},
- { 28800000, 24000000, 5, 6, 1, 1},
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_a = {
- .name = "pll_a",
- .flags = PLL_HAS_CPCON,
- .ops = &tegra_pll_ops,
- .reg = 0xb0,
- .parent = &tegra_pll_p_out1,
- .max_rate = 73728000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 31000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 20000000,
- .vco_max = 1400000000,
- .freq_table = tegra_pll_a_freq_table,
- .lock_delay = 300,
- },
-};
-
-static struct clk tegra_pll_a_out0 = {
- .name = "pll_a_out0",
- .ops = &tegra_pll_div_ops,
- .flags = DIV_U71,
- .parent = &tegra_pll_a,
- .reg = 0xb4,
- .reg_shift = 0,
- .max_rate = 73728000,
-};
-
-static struct clk_pll_freq_table tegra_pll_d_freq_table[] = {
- { 12000000, 216000000, 216, 12, 1, 4},
- { 13000000, 216000000, 216, 13, 1, 4},
- { 19200000, 216000000, 135, 12, 1, 3},
- { 26000000, 216000000, 216, 26, 1, 4},
-
- { 12000000, 594000000, 594, 12, 1, 8},
- { 13000000, 594000000, 594, 13, 1, 8},
- { 19200000, 594000000, 495, 16, 1, 8},
- { 26000000, 594000000, 594, 26, 1, 8},
-
- { 12000000, 1000000000, 1000, 12, 1, 12},
- { 13000000, 1000000000, 1000, 13, 1, 12},
- { 19200000, 1000000000, 625, 12, 1, 8},
- { 26000000, 1000000000, 1000, 26, 1, 12},
-
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_d = {
- .name = "pll_d",
- .flags = PLL_HAS_CPCON | PLLD,
- .ops = &tegra_pll_ops,
- .reg = 0xd0,
- .parent = &tegra_clk_m,
- .max_rate = 1000000000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 40000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 40000000,
- .vco_max = 1000000000,
- .freq_table = tegra_pll_d_freq_table,
- .lock_delay = 1000,
- },
-};
-
-static struct clk tegra_pll_d_out0 = {
- .name = "pll_d_out0",
- .ops = &tegra_pll_div_ops,
- .flags = DIV_2 | PLLD,
- .parent = &tegra_pll_d,
- .max_rate = 500000000,
-};
-
-static struct clk_pll_freq_table tegra_pll_u_freq_table[] = {
- { 12000000, 480000000, 960, 12, 2, 0},
- { 13000000, 480000000, 960, 13, 2, 0},
- { 19200000, 480000000, 200, 4, 2, 0},
- { 26000000, 480000000, 960, 26, 2, 0},
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_u = {
- .name = "pll_u",
- .flags = PLLU,
- .ops = &tegra_pll_ops,
- .reg = 0xc0,
- .parent = &tegra_clk_m,
- .max_rate = 480000000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 40000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 480000000,
- .vco_max = 960000000,
- .freq_table = tegra_pll_u_freq_table,
- .lock_delay = 1000,
- },
-};
-
-static struct clk_pll_freq_table tegra_pll_x_freq_table[] = {
- /* 1 GHz */
- { 12000000, 1000000000, 1000, 12, 1, 12},
- { 13000000, 1000000000, 1000, 13, 1, 12},
- { 19200000, 1000000000, 625, 12, 1, 8},
- { 26000000, 1000000000, 1000, 26, 1, 12},
-
- /* 912 MHz */
- { 12000000, 912000000, 912, 12, 1, 12},
- { 13000000, 912000000, 912, 13, 1, 12},
- { 19200000, 912000000, 760, 16, 1, 8},
- { 26000000, 912000000, 912, 26, 1, 12},
-
- /* 816 MHz */
- { 12000000, 816000000, 816, 12, 1, 12},
- { 13000000, 816000000, 816, 13, 1, 12},
- { 19200000, 816000000, 680, 16, 1, 8},
- { 26000000, 816000000, 816, 26, 1, 12},
-
- /* 760 MHz */
- { 12000000, 760000000, 760, 12, 1, 12},
- { 13000000, 760000000, 760, 13, 1, 12},
- { 19200000, 760000000, 950, 24, 1, 8},
- { 26000000, 760000000, 760, 26, 1, 12},
-
- /* 750 MHz */
- { 12000000, 750000000, 750, 12, 1, 12},
- { 13000000, 750000000, 750, 13, 1, 12},
- { 19200000, 750000000, 625, 16, 1, 8},
- { 26000000, 750000000, 750, 26, 1, 12},
-
- /* 608 MHz */
- { 12000000, 608000000, 608, 12, 1, 12},
- { 13000000, 608000000, 608, 13, 1, 12},
- { 19200000, 608000000, 380, 12, 1, 8},
- { 26000000, 608000000, 608, 26, 1, 12},
-
- /* 456 MHz */
- { 12000000, 456000000, 456, 12, 1, 12},
- { 13000000, 456000000, 456, 13, 1, 12},
- { 19200000, 456000000, 380, 16, 1, 8},
- { 26000000, 456000000, 456, 26, 1, 12},
-
- /* 312 MHz */
- { 12000000, 312000000, 312, 12, 1, 12},
- { 13000000, 312000000, 312, 13, 1, 12},
- { 19200000, 312000000, 260, 16, 1, 8},
- { 26000000, 312000000, 312, 26, 1, 12},
-
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_x = {
- .name = "pll_x",
- .flags = PLL_HAS_CPCON | PLL_ALT_MISC_REG,
- .ops = &tegra_pllx_ops,
- .reg = 0xe0,
- .parent = &tegra_clk_m,
- .max_rate = 1000000000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 31000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 20000000,
- .vco_max = 1200000000,
- .freq_table = tegra_pll_x_freq_table,
- .lock_delay = 300,
- },
-};
-
-static struct clk_pll_freq_table tegra_pll_e_freq_table[] = {
- { 12000000, 100000000, 200, 24, 1, 0 },
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_e = {
- .name = "pll_e",
- .flags = PLL_ALT_MISC_REG,
- .ops = &tegra_plle_ops,
- .parent = &tegra_clk_m,
- .reg = 0xe8,
- .max_rate = 100000000,
- .u.pll = {
- .input_min = 12000000,
- .input_max = 12000000,
- .freq_table = tegra_pll_e_freq_table,
- },
-};
-
-static struct clk tegra_clk_d = {
- .name = "clk_d",
- .flags = PERIPH_NO_RESET,
- .ops = &tegra_clk_double_ops,
- .reg = 0x34,
- .reg_shift = 12,
- .parent = &tegra_clk_m,
- .max_rate = 52000000,
- .u.periph = {
- .clk_num = 90,
- },
-};
-
-/* dap_mclk1, belongs to the cdev1 pingroup. */
-static struct clk tegra_clk_cdev1 = {
- .name = "cdev1",
- .ops = &tegra_cdev_clk_ops,
- .rate = 26000000,
- .max_rate = 26000000,
- .u.periph = {
- .clk_num = 94,
- },
-};
-
-/* dap_mclk2, belongs to the cdev2 pingroup. */
-static struct clk tegra_clk_cdev2 = {
- .name = "cdev2",
- .ops = &tegra_cdev_clk_ops,
- .rate = 26000000,
- .max_rate = 26000000,
- .u.periph = {
- .clk_num = 93,
- },
-};
-
-/* initialized before peripheral clocks */
-static struct clk_mux_sel mux_audio_sync_clk[8+1];
-static const struct audio_sources {
- const char *name;
- int value;
-} mux_audio_sync_clk_sources[] = {
- { .name = "spdif_in", .value = 0 },
- { .name = "i2s1", .value = 1 },
- { .name = "i2s2", .value = 2 },
- { .name = "pll_a_out0", .value = 4 },
-#if 0 /* FIXME: not implemented */
- { .name = "ac97", .value = 3 },
- { .name = "ext_audio_clk2", .value = 5 },
- { .name = "ext_audio_clk1", .value = 6 },
- { .name = "ext_vimclk", .value = 7 },
-#endif
- { NULL, 0 }
-};
-
-static struct clk tegra_clk_audio = {
- .name = "audio",
- .inputs = mux_audio_sync_clk,
- .reg = 0x38,
- .max_rate = 73728000,
- .ops = &tegra_audio_sync_clk_ops
-};
-
-static struct clk tegra_clk_audio_2x = {
- .name = "audio_2x",
- .flags = PERIPH_NO_RESET,
- .max_rate = 48000000,
- .ops = &tegra_clk_double_ops,
- .reg = 0x34,
- .reg_shift = 8,
- .parent = &tegra_clk_audio,
- .u.periph = {
- .clk_num = 89,
- },
-};
-
-static struct clk_lookup tegra_audio_clk_lookups[] = {
- { .con_id = "audio", .clk = &tegra_clk_audio },
- { .con_id = "audio_2x", .clk = &tegra_clk_audio_2x }
-};
-
-/* This is called after peripheral clocks are initialized, as the
- * audio_sync clock depends on some of the peripheral clocks.
- */
-
-static void init_audio_sync_clock_mux(void)
-{
- int i;
- struct clk_mux_sel *sel = mux_audio_sync_clk;
- const struct audio_sources *src = mux_audio_sync_clk_sources;
- struct clk_lookup *lookup;
-
- for (i = 0; src->name; i++, sel++, src++) {
- sel->input = tegra_get_clock_by_name(src->name);
- if (!sel->input)
- pr_err("%s: could not find clk %s\n", __func__,
- src->name);
- sel->value = src->value;
- }
-
- lookup = tegra_audio_clk_lookups;
- for (i = 0; i < ARRAY_SIZE(tegra_audio_clk_lookups); i++, lookup++) {
- clk_init(lookup->clk);
- clkdev_add(lookup);
- }
-}
-
-static struct clk_mux_sel mux_cclk[] = {
- { .input = &tegra_clk_m, .value = 0},
- { .input = &tegra_pll_c, .value = 1},
- { .input = &tegra_clk_32k, .value = 2},
- { .input = &tegra_pll_m, .value = 3},
- { .input = &tegra_pll_p, .value = 4},
- { .input = &tegra_pll_p_out4, .value = 5},
- { .input = &tegra_pll_p_out3, .value = 6},
- { .input = &tegra_clk_d, .value = 7},
- { .input = &tegra_pll_x, .value = 8},
- { NULL, 0},
-};
-
-static struct clk_mux_sel mux_sclk[] = {
- { .input = &tegra_clk_m, .value = 0},
- { .input = &tegra_pll_c_out1, .value = 1},
- { .input = &tegra_pll_p_out4, .value = 2},
- { .input = &tegra_pll_p_out3, .value = 3},
- { .input = &tegra_pll_p_out2, .value = 4},
- { .input = &tegra_clk_d, .value = 5},
- { .input = &tegra_clk_32k, .value = 6},
- { .input = &tegra_pll_m_out1, .value = 7},
- { NULL, 0},
-};
-
-static struct clk tegra_clk_cclk = {
- .name = "cclk",
- .inputs = mux_cclk,
- .reg = 0x20,
- .ops = &tegra_super_ops,
- .max_rate = 1000000000,
-};
-
-static struct clk tegra_clk_sclk = {
- .name = "sclk",
- .inputs = mux_sclk,
- .reg = 0x28,
- .ops = &tegra_super_ops,
- .max_rate = 240000000,
- .min_rate = 120000000,
-};
-
-static struct clk tegra_clk_virtual_cpu = {
- .name = "cpu",
- .parent = &tegra_clk_cclk,
- .ops = &tegra_cpu_ops,
- .max_rate = 1000000000,
- .u.cpu = {
- .main = &tegra_pll_x,
- .backup = &tegra_pll_p,
- },
-};
-
-static struct clk tegra_clk_cop = {
- .name = "cop",
- .parent = &tegra_clk_sclk,
- .ops = &tegra_cop_ops,
- .max_rate = 240000000,
-};
-
-static struct clk tegra_clk_hclk = {
- .name = "hclk",
- .flags = DIV_BUS,
- .parent = &tegra_clk_sclk,
- .reg = 0x30,
- .reg_shift = 4,
- .ops = &tegra_bus_ops,
- .max_rate = 240000000,
-};
-
-static struct clk tegra_clk_pclk = {
- .name = "pclk",
- .flags = DIV_BUS,
- .parent = &tegra_clk_hclk,
- .reg = 0x30,
- .reg_shift = 0,
- .ops = &tegra_bus_ops,
- .max_rate = 120000000,
-};
-
-static struct clk tegra_clk_blink = {
- .name = "blink",
- .parent = &tegra_clk_32k,
- .reg = 0x40,
- .ops = &tegra_blink_clk_ops,
- .max_rate = 32768,
-};
-
-static struct clk_mux_sel mux_pllm_pllc_pllp_plla[] = {
- { .input = &tegra_pll_m, .value = 0},
- { .input = &tegra_pll_c, .value = 1},
- { .input = &tegra_pll_p, .value = 2},
- { .input = &tegra_pll_a_out0, .value = 3},
- { NULL, 0},
-};
-
-static struct clk_mux_sel mux_pllm_pllc_pllp_clkm[] = {
- { .input = &tegra_pll_m, .value = 0},
- { .input = &tegra_pll_c, .value = 1},
- { .input = &tegra_pll_p, .value = 2},
- { .input = &tegra_clk_m, .value = 3},
- { NULL, 0},
-};
-
-static struct clk_mux_sel mux_pllp_pllc_pllm_clkm[] = {
- { .input = &tegra_pll_p, .value = 0},
- { .input = &tegra_pll_c, .value = 1},
- { .input = &tegra_pll_m, .value = 2},
- { .input = &tegra_clk_m, .value = 3},
- { NULL, 0},
-};
-
-static struct clk_mux_sel mux_pllaout0_audio2x_pllp_clkm[] = {
- {.input = &tegra_pll_a_out0, .value = 0},
- {.input = &tegra_clk_audio_2x, .value = 1},
- {.input = &tegra_pll_p, .value = 2},
- {.input = &tegra_clk_m, .value = 3},
- { NULL, 0},
-};
-
-static struct clk_mux_sel mux_pllp_plld_pllc_clkm[] = {
- {.input = &tegra_pll_p, .value = 0},
- {.input = &tegra_pll_d_out0, .value = 1},
- {.input = &tegra_pll_c, .value = 2},
- {.input = &tegra_clk_m, .value = 3},
- { NULL, 0},
-};
-
-static struct clk_mux_sel mux_pllp_pllc_audio_clkm_clk32[] = {
- {.input = &tegra_pll_p, .value = 0},
- {.input = &tegra_pll_c, .value = 1},
- {.input = &tegra_clk_audio, .value = 2},
- {.input = &tegra_clk_m, .value = 3},
- {.input = &tegra_clk_32k, .value = 4},
- { NULL, 0},
-};
-
-static struct clk_mux_sel mux_pllp_pllc_pllm[] = {
- {.input = &tegra_pll_p, .value = 0},
- {.input = &tegra_pll_c, .value = 1},
- {.input = &tegra_pll_m, .value = 2},
- { NULL, 0},
-};
-
-static struct clk_mux_sel mux_clk_m[] = {
- { .input = &tegra_clk_m, .value = 0},
- { NULL, 0},
-};
-
-static struct clk_mux_sel mux_pllp_out3[] = {
- { .input = &tegra_pll_p_out3, .value = 0},
- { NULL, 0},
-};
-
-static struct clk_mux_sel mux_plld[] = {
- { .input = &tegra_pll_d, .value = 0},
- { NULL, 0},
-};
-
-static struct clk_mux_sel mux_clk_32k[] = {
- { .input = &tegra_clk_32k, .value = 0},
- { NULL, 0},
-};
-
-static struct clk_mux_sel mux_pclk[] = {
- { .input = &tegra_clk_pclk, .value = 0},
- { NULL, 0},
-};
-
-static struct clk tegra_clk_emc = {
- .name = "emc",
- .ops = &tegra_emc_clk_ops,
- .reg = 0x19c,
- .max_rate = 800000000,
- .inputs = mux_pllm_pllc_pllp_clkm,
- .flags = MUX | DIV_U71 | PERIPH_EMC_ENB,
- .u.periph = {
- .clk_num = 57,
- },
-};
-
-#define PERIPH_CLK(_name, _dev, _con, _clk_num, _reg, _max, _inputs, _flags) \
- { \
- .name = _name, \
- .lookup = { \
- .dev_id = _dev, \
- .con_id = _con, \
- }, \
- .ops = &tegra_periph_clk_ops, \
- .reg = _reg, \
- .inputs = _inputs, \
- .flags = _flags, \
- .max_rate = _max, \
- .u.periph = { \
- .clk_num = _clk_num, \
- }, \
- }
-
-#define SHARED_CLK(_name, _dev, _con, _parent) \
- { \
- .name = _name, \
- .lookup = { \
- .dev_id = _dev, \
- .con_id = _con, \
- }, \
- .ops = &tegra_clk_shared_bus_ops, \
- .parent = _parent, \
- }
-
-static struct clk tegra_list_clks[] = {
- PERIPH_CLK("apbdma", "tegra-apbdma", NULL, 34, 0, 108000000, mux_pclk, 0),
- PERIPH_CLK("rtc", "rtc-tegra", NULL, 4, 0, 32768, mux_clk_32k, PERIPH_NO_RESET),
- PERIPH_CLK("timer", "timer", NULL, 5, 0, 26000000, mux_clk_m, 0),
- PERIPH_CLK("i2s1", "tegra20-i2s.0", NULL, 11, 0x100, 26000000, mux_pllaout0_audio2x_pllp_clkm, MUX | DIV_U71),
- PERIPH_CLK("i2s2", "tegra20-i2s.1", NULL, 18, 0x104, 26000000, mux_pllaout0_audio2x_pllp_clkm, MUX | DIV_U71),
- PERIPH_CLK("spdif_out", "spdif_out", NULL, 10, 0x108, 100000000, mux_pllaout0_audio2x_pllp_clkm, MUX | DIV_U71),
- PERIPH_CLK("spdif_in", "spdif_in", NULL, 10, 0x10c, 100000000, mux_pllp_pllc_pllm, MUX | DIV_U71),
- PERIPH_CLK("pwm", "tegra-pwm", NULL, 17, 0x110, 432000000, mux_pllp_pllc_audio_clkm_clk32, MUX | DIV_U71 | MUX_PWM),
- PERIPH_CLK("spi", "spi", NULL, 43, 0x114, 40000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("xio", "xio", NULL, 45, 0x120, 150000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("twc", "twc", NULL, 16, 0x12c, 150000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("sbc1", "spi_tegra.0", NULL, 41, 0x134, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("sbc2", "spi_tegra.1", NULL, 44, 0x118, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("sbc3", "spi_tegra.2", NULL, 46, 0x11c, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("sbc4", "spi_tegra.3", NULL, 68, 0x1b4, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("ide", "ide", NULL, 25, 0x144, 100000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* requires min voltage */
- PERIPH_CLK("ndflash", "tegra_nand", NULL, 13, 0x160, 164000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* scales with voltage */
- PERIPH_CLK("vfir", "vfir", NULL, 7, 0x168, 72000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("sdmmc1", "sdhci-tegra.0", NULL, 14, 0x150, 52000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* scales with voltage */
- PERIPH_CLK("sdmmc2", "sdhci-tegra.1", NULL, 9, 0x154, 52000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* scales with voltage */
- PERIPH_CLK("sdmmc3", "sdhci-tegra.2", NULL, 69, 0x1bc, 52000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* scales with voltage */
- PERIPH_CLK("sdmmc4", "sdhci-tegra.3", NULL, 15, 0x164, 52000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* scales with voltage */
- PERIPH_CLK("vcp", "tegra-avp", "vcp", 29, 0, 250000000, mux_clk_m, 0),
- PERIPH_CLK("bsea", "tegra-avp", "bsea", 62, 0, 250000000, mux_clk_m, 0),
- PERIPH_CLK("bsev", "tegra-aes", "bsev", 63, 0, 250000000, mux_clk_m, 0),
- PERIPH_CLK("vde", "tegra-avp", "vde", 61, 0x1c8, 250000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* scales with voltage and process_id */
- PERIPH_CLK("csite", "csite", NULL, 73, 0x1d4, 144000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* max rate ??? */
- /* FIXME: what is la? */
- PERIPH_CLK("la", "la", NULL, 76, 0x1f8, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("owr", "tegra_w1", NULL, 71, 0x1cc, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("nor", "nor", NULL, 42, 0x1d0, 92000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* requires min voltage */
- PERIPH_CLK("mipi", "mipi", NULL, 50, 0x174, 60000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* scales with voltage */
- PERIPH_CLK("i2c1", "tegra-i2c.0", NULL, 12, 0x124, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U16),
- PERIPH_CLK("i2c2", "tegra-i2c.1", NULL, 54, 0x198, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U16),
- PERIPH_CLK("i2c3", "tegra-i2c.2", NULL, 67, 0x1b8, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U16),
- PERIPH_CLK("dvc", "tegra-i2c.3", NULL, 47, 0x128, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U16),
- PERIPH_CLK("i2c1_i2c", "tegra-i2c.0", "i2c", 0, 0, 72000000, mux_pllp_out3, 0),
- PERIPH_CLK("i2c2_i2c", "tegra-i2c.1", "i2c", 0, 0, 72000000, mux_pllp_out3, 0),
- PERIPH_CLK("i2c3_i2c", "tegra-i2c.2", "i2c", 0, 0, 72000000, mux_pllp_out3, 0),
- PERIPH_CLK("dvc_i2c", "tegra-i2c.3", "i2c", 0, 0, 72000000, mux_pllp_out3, 0),
- PERIPH_CLK("uarta", "tegra-uart.0", NULL, 6, 0x178, 600000000, mux_pllp_pllc_pllm_clkm, MUX),
- PERIPH_CLK("uartb", "tegra-uart.1", NULL, 7, 0x17c, 600000000, mux_pllp_pllc_pllm_clkm, MUX),
- PERIPH_CLK("uartc", "tegra-uart.2", NULL, 55, 0x1a0, 600000000, mux_pllp_pllc_pllm_clkm, MUX),
- PERIPH_CLK("uartd", "tegra-uart.3", NULL, 65, 0x1c0, 600000000, mux_pllp_pllc_pllm_clkm, MUX),
- PERIPH_CLK("uarte", "tegra-uart.4", NULL, 66, 0x1c4, 600000000, mux_pllp_pllc_pllm_clkm, MUX),
- PERIPH_CLK("3d", "3d", NULL, 24, 0x158, 300000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | PERIPH_MANUAL_RESET), /* scales with voltage and process_id */
- PERIPH_CLK("2d", "2d", NULL, 21, 0x15c, 300000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71), /* scales with voltage and process_id */
- PERIPH_CLK("vi", "tegra_camera", "vi", 20, 0x148, 150000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71), /* scales with voltage and process_id */
- PERIPH_CLK("vi_sensor", "tegra_camera", "vi_sensor", 20, 0x1a8, 150000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | PERIPH_NO_RESET), /* scales with voltage and process_id */
- PERIPH_CLK("epp", "epp", NULL, 19, 0x16c, 300000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71), /* scales with voltage and process_id */
- PERIPH_CLK("mpe", "mpe", NULL, 60, 0x170, 250000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71), /* scales with voltage and process_id */
- PERIPH_CLK("host1x", "host1x", NULL, 28, 0x180, 166000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71), /* scales with voltage and process_id */
- PERIPH_CLK("cve", "cve", NULL, 49, 0x140, 250000000, mux_pllp_plld_pllc_clkm, MUX | DIV_U71), /* requires min voltage */
- PERIPH_CLK("tvo", "tvo", NULL, 49, 0x188, 250000000, mux_pllp_plld_pllc_clkm, MUX | DIV_U71), /* requires min voltage */
- PERIPH_CLK("hdmi", "hdmi", NULL, 51, 0x18c, 600000000, mux_pllp_plld_pllc_clkm, MUX | DIV_U71), /* requires min voltage */
- PERIPH_CLK("tvdac", "tvdac", NULL, 53, 0x194, 250000000, mux_pllp_plld_pllc_clkm, MUX | DIV_U71), /* requires min voltage */
- PERIPH_CLK("disp1", "tegradc.0", NULL, 27, 0x138, 600000000, mux_pllp_plld_pllc_clkm, MUX), /* scales with voltage and process_id */
- PERIPH_CLK("disp2", "tegradc.1", NULL, 26, 0x13c, 600000000, mux_pllp_plld_pllc_clkm, MUX), /* scales with voltage and process_id */
- PERIPH_CLK("usbd", "fsl-tegra-udc", NULL, 22, 0, 480000000, mux_clk_m, 0), /* requires min voltage */
- PERIPH_CLK("usb2", "tegra-ehci.1", NULL, 58, 0, 480000000, mux_clk_m, 0), /* requires min voltage */
- PERIPH_CLK("usb3", "tegra-ehci.2", NULL, 59, 0, 480000000, mux_clk_m, 0), /* requires min voltage */
- PERIPH_CLK("dsi", "dsi", NULL, 48, 0, 500000000, mux_plld, 0), /* scales with voltage */
- PERIPH_CLK("csi", "tegra_camera", "csi", 52, 0, 72000000, mux_pllp_out3, 0),
- PERIPH_CLK("isp", "tegra_camera", "isp", 23, 0, 150000000, mux_clk_m, 0), /* same frequency as VI */
- PERIPH_CLK("csus", "tegra_camera", "csus", 92, 0, 150000000, mux_clk_m, PERIPH_NO_RESET),
- PERIPH_CLK("pex", NULL, "pex", 70, 0, 26000000, mux_clk_m, PERIPH_MANUAL_RESET),
- PERIPH_CLK("afi", NULL, "afi", 72, 0, 26000000, mux_clk_m, PERIPH_MANUAL_RESET),
- PERIPH_CLK("pcie_xclk", NULL, "pcie_xclk", 74, 0, 26000000, mux_clk_m, PERIPH_MANUAL_RESET),
-
- SHARED_CLK("avp.sclk", "tegra-avp", "sclk", &tegra_clk_sclk),
- SHARED_CLK("avp.emc", "tegra-avp", "emc", &tegra_clk_emc),
- SHARED_CLK("cpu.emc", "cpu", "emc", &tegra_clk_emc),
- SHARED_CLK("disp1.emc", "tegradc.0", "emc", &tegra_clk_emc),
- SHARED_CLK("disp2.emc", "tegradc.1", "emc", &tegra_clk_emc),
- SHARED_CLK("hdmi.emc", "hdmi", "emc", &tegra_clk_emc),
- SHARED_CLK("host.emc", "tegra_grhost", "emc", &tegra_clk_emc),
- SHARED_CLK("usbd.emc", "fsl-tegra-udc", "emc", &tegra_clk_emc),
- SHARED_CLK("usb1.emc", "tegra-ehci.0", "emc", &tegra_clk_emc),
- SHARED_CLK("usb2.emc", "tegra-ehci.1", "emc", &tegra_clk_emc),
- SHARED_CLK("usb3.emc", "tegra-ehci.2", "emc", &tegra_clk_emc),
-};
-
-#define CLK_DUPLICATE(_name, _dev, _con) \
- { \
- .name = _name, \
- .lookup = { \
- .dev_id = _dev, \
- .con_id = _con, \
- }, \
- }
-
-/* Some clocks may be used by different drivers depending on the board
- * configuration. List those here to register them twice in the clock lookup
- * table under two names.
- */
-static struct clk_duplicate tegra_clk_duplicates[] = {
- CLK_DUPLICATE("uarta", "serial8250.0", NULL),
- CLK_DUPLICATE("uartb", "serial8250.1", NULL),
- CLK_DUPLICATE("uartc", "serial8250.2", NULL),
- CLK_DUPLICATE("uartd", "serial8250.3", NULL),
- CLK_DUPLICATE("uarte", "serial8250.4", NULL),
- CLK_DUPLICATE("usbd", "utmip-pad", NULL),
- CLK_DUPLICATE("usbd", "tegra-ehci.0", NULL),
- CLK_DUPLICATE("usbd", "tegra-otg", NULL),
- CLK_DUPLICATE("hdmi", "tegradc.0", "hdmi"),
- CLK_DUPLICATE("hdmi", "tegradc.1", "hdmi"),
- CLK_DUPLICATE("host1x", "tegra_grhost", "host1x"),
- CLK_DUPLICATE("2d", "tegra_grhost", "gr2d"),
- CLK_DUPLICATE("3d", "tegra_grhost", "gr3d"),
- CLK_DUPLICATE("epp", "tegra_grhost", "epp"),
- CLK_DUPLICATE("mpe", "tegra_grhost", "mpe"),
- CLK_DUPLICATE("cop", "tegra-avp", "cop"),
- CLK_DUPLICATE("vde", "tegra-aes", "vde"),
-};
-
-#define CLK(dev, con, ck) \
- { \
- .dev_id = dev, \
- .con_id = con, \
- .clk = ck, \
- }
-
-static struct clk *tegra_ptr_clks[] = {
- &tegra_clk_32k,
- &tegra_pll_s,
- &tegra_clk_m,
- &tegra_pll_m,
- &tegra_pll_m_out1,
- &tegra_pll_c,
- &tegra_pll_c_out1,
- &tegra_pll_p,
- &tegra_pll_p_out1,
- &tegra_pll_p_out2,
- &tegra_pll_p_out3,
- &tegra_pll_p_out4,
- &tegra_pll_a,
- &tegra_pll_a_out0,
- &tegra_pll_d,
- &tegra_pll_d_out0,
- &tegra_pll_u,
- &tegra_pll_x,
- &tegra_pll_e,
- &tegra_clk_cclk,
- &tegra_clk_sclk,
- &tegra_clk_hclk,
- &tegra_clk_pclk,
- &tegra_clk_d,
- &tegra_clk_cdev1,
- &tegra_clk_cdev2,
- &tegra_clk_virtual_cpu,
- &tegra_clk_blink,
- &tegra_clk_cop,
- &tegra_clk_emc,
-};
-
-static void tegra2_init_one_clock(struct clk *c)
-{
- clk_init(c);
- INIT_LIST_HEAD(&c->shared_bus_list);
- if (!c->lookup.dev_id && !c->lookup.con_id)
- c->lookup.con_id = c->name;
- c->lookup.clk = c;
- clkdev_add(&c->lookup);
-}
-
-void __init tegra2_init_clocks(void)
-{
- int i;
- struct clk *c;
-
- for (i = 0; i < ARRAY_SIZE(tegra_ptr_clks); i++)
- tegra2_init_one_clock(tegra_ptr_clks[i]);
-
- for (i = 0; i < ARRAY_SIZE(tegra_list_clks); i++)
- tegra2_init_one_clock(&tegra_list_clks[i]);
-
- for (i = 0; i < ARRAY_SIZE(tegra_clk_duplicates); i++) {
- c = tegra_get_clock_by_name(tegra_clk_duplicates[i].name);
- if (!c) {
- pr_err("%s: Unknown duplicate clock %s\n", __func__,
- tegra_clk_duplicates[i].name);
- continue;
- }
-
- tegra_clk_duplicates[i].lookup.clk = c;
- clkdev_add(&tegra_clk_duplicates[i].lookup);
- }
-
- init_audio_sync_clock_mux();
-}
-
-#ifdef CONFIG_PM
-static u32 clk_rst_suspend[RST_DEVICES_NUM + CLK_OUT_ENB_NUM +
- PERIPH_CLK_SOURCE_NUM + 22];
-
-void tegra_clk_suspend(void)
-{
- unsigned long off, i;
- u32 *ctx = clk_rst_suspend;
-
- *ctx++ = clk_readl(OSC_CTRL) & OSC_CTRL_MASK;
- *ctx++ = clk_readl(tegra_pll_c.reg + PLL_BASE);
- *ctx++ = clk_readl(tegra_pll_c.reg + PLL_MISC(&tegra_pll_c));
- *ctx++ = clk_readl(tegra_pll_a.reg + PLL_BASE);
- *ctx++ = clk_readl(tegra_pll_a.reg + PLL_MISC(&tegra_pll_a));
- *ctx++ = clk_readl(tegra_pll_s.reg + PLL_BASE);
- *ctx++ = clk_readl(tegra_pll_s.reg + PLL_MISC(&tegra_pll_s));
- *ctx++ = clk_readl(tegra_pll_d.reg + PLL_BASE);
- *ctx++ = clk_readl(tegra_pll_d.reg + PLL_MISC(&tegra_pll_d));
- *ctx++ = clk_readl(tegra_pll_u.reg + PLL_BASE);
- *ctx++ = clk_readl(tegra_pll_u.reg + PLL_MISC(&tegra_pll_u));
-
- *ctx++ = clk_readl(tegra_pll_m_out1.reg);
- *ctx++ = clk_readl(tegra_pll_a_out0.reg);
- *ctx++ = clk_readl(tegra_pll_c_out1.reg);
-
- *ctx++ = clk_readl(tegra_clk_cclk.reg);
- *ctx++ = clk_readl(tegra_clk_cclk.reg + SUPER_CLK_DIVIDER);
-
- *ctx++ = clk_readl(tegra_clk_sclk.reg);
- *ctx++ = clk_readl(tegra_clk_sclk.reg + SUPER_CLK_DIVIDER);
- *ctx++ = clk_readl(tegra_clk_pclk.reg);
-
- *ctx++ = clk_readl(tegra_clk_audio.reg);
-
- for (off = PERIPH_CLK_SOURCE_I2S1; off <= PERIPH_CLK_SOURCE_OSC;
- off += 4) {
- if (off == PERIPH_CLK_SOURCE_EMC)
- continue;
- *ctx++ = clk_readl(off);
- }
-
- off = RST_DEVICES;
- for (i = 0; i < RST_DEVICES_NUM; i++, off += 4)
- *ctx++ = clk_readl(off);
-
- off = CLK_OUT_ENB;
- for (i = 0; i < CLK_OUT_ENB_NUM; i++, off += 4)
- *ctx++ = clk_readl(off);
-
- *ctx++ = clk_readl(MISC_CLK_ENB);
- *ctx++ = clk_readl(CLK_MASK_ARM);
-
- BUG_ON(ctx - clk_rst_suspend != ARRAY_SIZE(clk_rst_suspend));
-}
-
-void tegra_clk_resume(void)
-{
- unsigned long off, i;
- const u32 *ctx = clk_rst_suspend;
- u32 val;
-
- val = clk_readl(OSC_CTRL) & ~OSC_CTRL_MASK;
- val |= *ctx++;
- clk_writel(val, OSC_CTRL);
-
- clk_writel(*ctx++, tegra_pll_c.reg + PLL_BASE);
- clk_writel(*ctx++, tegra_pll_c.reg + PLL_MISC(&tegra_pll_c));
- clk_writel(*ctx++, tegra_pll_a.reg + PLL_BASE);
- clk_writel(*ctx++, tegra_pll_a.reg + PLL_MISC(&tegra_pll_a));
- clk_writel(*ctx++, tegra_pll_s.reg + PLL_BASE);
- clk_writel(*ctx++, tegra_pll_s.reg + PLL_MISC(&tegra_pll_s));
- clk_writel(*ctx++, tegra_pll_d.reg + PLL_BASE);
- clk_writel(*ctx++, tegra_pll_d.reg + PLL_MISC(&tegra_pll_d));
- clk_writel(*ctx++, tegra_pll_u.reg + PLL_BASE);
- clk_writel(*ctx++, tegra_pll_u.reg + PLL_MISC(&tegra_pll_u));
- udelay(1000);
-
- clk_writel(*ctx++, tegra_pll_m_out1.reg);
- clk_writel(*ctx++, tegra_pll_a_out0.reg);
- clk_writel(*ctx++, tegra_pll_c_out1.reg);
-
- clk_writel(*ctx++, tegra_clk_cclk.reg);
- clk_writel(*ctx++, tegra_clk_cclk.reg + SUPER_CLK_DIVIDER);
-
- clk_writel(*ctx++, tegra_clk_sclk.reg);
- clk_writel(*ctx++, tegra_clk_sclk.reg + SUPER_CLK_DIVIDER);
- clk_writel(*ctx++, tegra_clk_pclk.reg);
-
- clk_writel(*ctx++, tegra_clk_audio.reg);
-
- /* enable all clocks before configuring clock sources */
- clk_writel(0xbffffff9ul, CLK_OUT_ENB);
- clk_writel(0xfefffff7ul, CLK_OUT_ENB + 4);
- clk_writel(0x77f01bfful, CLK_OUT_ENB + 8);
- wmb();
-
- for (off = PERIPH_CLK_SOURCE_I2S1; off <= PERIPH_CLK_SOURCE_OSC;
- off += 4) {
- if (off == PERIPH_CLK_SOURCE_EMC)
- continue;
- clk_writel(*ctx++, off);
- }
- wmb();
-
- off = RST_DEVICES;
- for (i = 0; i < RST_DEVICES_NUM; i++, off += 4)
- clk_writel(*ctx++, off);
- wmb();
-
- off = CLK_OUT_ENB;
- for (i = 0; i < CLK_OUT_ENB_NUM; i++, off += 4)
- clk_writel(*ctx++, off);
- wmb();
-
- clk_writel(*ctx++, MISC_CLK_ENB);
- clk_writel(*ctx++, CLK_MASK_ARM);
-}
-#endif
diff --git a/arch/arm/mach-tegra/tegra30_clocks.c b/arch/arm/mach-tegra/tegra30_clocks.c
index 6674f100e16..5cd502c2716 100644
--- a/arch/arm/mach-tegra/tegra30_clocks.c
+++ b/arch/arm/mach-tegra/tegra30_clocks.c
@@ -1,7 +1,7 @@
/*
* arch/arm/mach-tegra/tegra30_clocks.c
*
- * Copyright (c) 2010-2011 NVIDIA CORPORATION. All rights reserved.
+ * Copyright (c) 2010-2012 NVIDIA CORPORATION. All rights reserved.
*
* 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
@@ -35,6 +35,7 @@
#include "clock.h"
#include "fuse.h"
+#include "tegra_cpu_car.h"
#define USE_PLL_LOCK_BITS 0
@@ -299,6 +300,16 @@
/* FIXME: recommended safety delay after lock is detected */
#define PLL_POST_LOCK_DELAY 100
+/* Tegra CPU clock and reset control regs */
+#define TEGRA_CLK_RST_CONTROLLER_CLK_CPU_CMPLX 0x4c
+#define TEGRA_CLK_RST_CONTROLLER_RST_CPU_CMPLX_SET 0x340
+#define TEGRA_CLK_RST_CONTROLLER_RST_CPU_CMPLX_CLR 0x344
+#define TEGRA30_CLK_RST_CONTROLLER_CLK_CPU_CMPLX_CLR 0x34c
+#define TEGRA30_CLK_RST_CONTROLLER_CPU_CMPLX_STATUS 0x470
+
+#define CPU_CLOCK(cpu) (0x1 << (8 + cpu))
+#define CPU_RESET(cpu) (0x1111ul << (cpu))
+
/**
* Structure defining the fields for USB UTMI clocks Parameters.
*/
@@ -365,30 +376,32 @@ static void __iomem *misc_gp_hidrev_base = IO_ADDRESS(TEGRA_APB_MISC_BASE);
static int tegra_periph_clk_enable_refcount[CLK_OUT_ENB_NUM * 32];
#define clk_writel(value, reg) \
- __raw_writel(value, (u32)reg_clk_base + (reg))
+ __raw_writel(value, reg_clk_base + (reg))
#define clk_readl(reg) \
- __raw_readl((u32)reg_clk_base + (reg))
+ __raw_readl(reg_clk_base + (reg))
#define pmc_writel(value, reg) \
- __raw_writel(value, (u32)reg_pmc_base + (reg))
+ __raw_writel(value, reg_pmc_base + (reg))
#define pmc_readl(reg) \
- __raw_readl((u32)reg_pmc_base + (reg))
+ __raw_readl(reg_pmc_base + (reg))
#define chipid_readl() \
- __raw_readl((u32)misc_gp_hidrev_base + MISC_GP_HIDREV)
+ __raw_readl(misc_gp_hidrev_base + MISC_GP_HIDREV)
#define clk_writel_delay(value, reg) \
do { \
- __raw_writel((value), (u32)reg_clk_base + (reg)); \
+ __raw_writel((value), reg_clk_base + (reg)); \
udelay(2); \
} while (0)
-
-static inline int clk_set_div(struct clk *c, u32 n)
+static inline int clk_set_div(struct clk_tegra *c, u32 n)
{
- return clk_set_rate(c, (clk_get_rate(c->parent) + n-1) / n);
+ struct clk *clk = c->hw.clk;
+
+ return clk_set_rate(clk,
+ (__clk_get_rate(__clk_get_parent(clk)) + n - 1) / n);
}
static inline u32 periph_clk_to_reg(
- struct clk *c, u32 reg_L, u32 reg_V, int offs)
+ struct clk_tegra *c, u32 reg_L, u32 reg_V, int offs)
{
u32 reg = c->u.periph.clk_num / 32;
BUG_ON(reg >= RST_DEVICES_NUM);
@@ -470,15 +483,32 @@ static int clk_div16_get_divider(unsigned long parent_rate, unsigned long rate)
return divider_u16 - 1;
}
+static unsigned long tegra30_clk_fixed_recalc_rate(struct clk_hw *hw,
+ unsigned long parent_rate)
+{
+ return to_clk_tegra(hw)->fixed_rate;
+}
+
+struct clk_ops tegra30_clk_32k_ops = {
+ .recalc_rate = tegra30_clk_fixed_recalc_rate,
+};
+
/* clk_m functions */
-static unsigned long tegra30_clk_m_autodetect_rate(struct clk *c)
+static unsigned long tegra30_clk_m_recalc_rate(struct clk_hw *hw,
+ unsigned long parent_rate)
+{
+ if (!to_clk_tegra(hw)->fixed_rate)
+ to_clk_tegra(hw)->fixed_rate = clk_measure_input_freq();
+ return to_clk_tegra(hw)->fixed_rate;
+}
+
+static void tegra30_clk_m_init(struct clk_hw *hw)
{
u32 osc_ctrl = clk_readl(OSC_CTRL);
u32 auto_clock_control = osc_ctrl & ~OSC_CTRL_OSC_FREQ_MASK;
u32 pll_ref_div = osc_ctrl & OSC_CTRL_PLL_REF_DIV_MASK;
- c->rate = clk_measure_input_freq();
- switch (c->rate) {
+ switch (to_clk_tegra(hw)->fixed_rate) {
case 12000000:
auto_clock_control |= OSC_CTRL_OSC_FREQ_12MHZ;
BUG_ON(pll_ref_div != OSC_CTRL_PLL_REF_DIV_1);
@@ -508,46 +538,44 @@ static unsigned long tegra30_clk_m_autodetect_rate(struct clk *c)
BUG_ON(pll_ref_div != OSC_CTRL_PLL_REF_DIV_4);
break;
default:
- pr_err("%s: Unexpected clock rate %ld", __func__, c->rate);
+ pr_err("%s: Unexpected clock rate %ld", __func__,
+ to_clk_tegra(hw)->fixed_rate);
BUG();
}
clk_writel(auto_clock_control, OSC_CTRL);
- return c->rate;
}
-static void tegra30_clk_m_init(struct clk *c)
-{
- pr_debug("%s on clock %s\n", __func__, c->name);
- tegra30_clk_m_autodetect_rate(c);
-}
+struct clk_ops tegra30_clk_m_ops = {
+ .init = tegra30_clk_m_init,
+ .recalc_rate = tegra30_clk_m_recalc_rate,
+};
-static int tegra30_clk_m_enable(struct clk *c)
+static unsigned long tegra30_clk_m_div_recalc_rate(struct clk_hw *hw,
+ unsigned long parent_rate)
{
- pr_debug("%s on clock %s\n", __func__, c->name);
- return 0;
-}
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u64 rate = parent_rate;
-static void tegra30_clk_m_disable(struct clk *c)
-{
- pr_debug("%s on clock %s\n", __func__, c->name);
- WARN(1, "Attempting to disable main SoC clock\n");
-}
+ if (c->mul != 0 && c->div != 0) {
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+ }
-static struct clk_ops tegra_clk_m_ops = {
- .init = tegra30_clk_m_init,
- .enable = tegra30_clk_m_enable,
- .disable = tegra30_clk_m_disable,
-};
+ return rate;
+}
-static struct clk_ops tegra_clk_m_div_ops = {
- .enable = tegra30_clk_m_enable,
+struct clk_ops tegra_clk_m_div_ops = {
+ .recalc_rate = tegra30_clk_m_div_recalc_rate,
};
/* PLL reference divider functions */
-static void tegra30_pll_ref_init(struct clk *c)
+static unsigned long tegra30_pll_ref_recalc_rate(struct clk_hw *hw,
+ unsigned long parent_rate)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long rate = parent_rate;
u32 pll_ref_div = clk_readl(OSC_CTRL) & OSC_CTRL_PLL_REF_DIV_MASK;
- pr_debug("%s on clock %s\n", __func__, c->name);
switch (pll_ref_div) {
case OSC_CTRL_PLL_REF_DIV_1:
@@ -564,13 +592,18 @@ static void tegra30_pll_ref_init(struct clk *c)
BUG();
}
c->mul = 1;
- c->state = ON;
+
+ if (c->mul != 0 && c->div != 0) {
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+ }
+
+ return rate;
}
-static struct clk_ops tegra_pll_ref_ops = {
- .init = tegra30_pll_ref_init,
- .enable = tegra30_clk_m_enable,
- .disable = tegra30_clk_m_disable,
+struct clk_ops tegra_pll_ref_ops = {
+ .recalc_rate = tegra30_pll_ref_recalc_rate,
};
/* super clock functions */
@@ -581,56 +614,50 @@ static struct clk_ops tegra_pll_ref_ops = {
* only when its parent is a fixed rate PLL, since we can't change PLL rate
* in this case.
*/
-static void tegra30_super_clk_init(struct clk *c)
+static void tegra30_super_clk_init(struct clk_hw *hw)
{
- u32 val;
- int source;
- int shift;
- const struct clk_mux_sel *sel;
- val = clk_readl(c->reg + SUPER_CLK_MUX);
- c->state = ON;
- BUG_ON(((val & SUPER_STATE_MASK) != SUPER_STATE_RUN) &&
- ((val & SUPER_STATE_MASK) != SUPER_STATE_IDLE));
- shift = ((val & SUPER_STATE_MASK) == SUPER_STATE_IDLE) ?
- SUPER_IDLE_SOURCE_SHIFT : SUPER_RUN_SOURCE_SHIFT;
- source = (val >> shift) & SUPER_SOURCE_MASK;
- if (c->flags & DIV_2)
- source |= val & SUPER_LP_DIV2_BYPASS;
- for (sel = c->inputs; sel->input != NULL; sel++) {
- if (sel->value == source)
- break;
- }
- BUG_ON(sel->input == NULL);
- c->parent = sel->input;
+ struct clk_tegra *c = to_clk_tegra(hw);
+ struct clk_tegra *p =
+ to_clk_tegra(__clk_get_hw(__clk_get_parent(hw->clk)));
+ c->state = ON;
if (c->flags & DIV_U71) {
/* Init safe 7.1 divider value (does not affect PLLX path) */
clk_writel(SUPER_CLOCK_DIV_U71_MIN << SUPER_CLOCK_DIV_U71_SHIFT,
c->reg + SUPER_CLK_DIVIDER);
c->mul = 2;
c->div = 2;
- if (!(c->parent->flags & PLLX))
+ if (!(p->flags & PLLX))
c->div += SUPER_CLOCK_DIV_U71_MIN;
} else
clk_writel(0, c->reg + SUPER_CLK_DIVIDER);
}
-static int tegra30_super_clk_enable(struct clk *c)
+static u8 tegra30_super_clk_get_parent(struct clk_hw *hw)
{
- return 0;
-}
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val;
+ int source;
+ int shift;
-static void tegra30_super_clk_disable(struct clk *c)
-{
- /* since tegra 3 has 2 CPU super clocks - low power lp-mode clock and
- geared up g-mode super clock - mode switch may request to disable
- either of them; accept request with no affect on h/w */
+ val = clk_readl(c->reg + SUPER_CLK_MUX);
+ BUG_ON(((val & SUPER_STATE_MASK) != SUPER_STATE_RUN) &&
+ ((val & SUPER_STATE_MASK) != SUPER_STATE_IDLE));
+ shift = ((val & SUPER_STATE_MASK) == SUPER_STATE_IDLE) ?
+ SUPER_IDLE_SOURCE_SHIFT : SUPER_RUN_SOURCE_SHIFT;
+ source = (val >> shift) & SUPER_SOURCE_MASK;
+ if (c->flags & DIV_2)
+ source |= val & SUPER_LP_DIV2_BYPASS;
+
+ return source;
}
-static int tegra30_super_clk_set_parent(struct clk *c, struct clk *p)
+static int tegra30_super_clk_set_parent(struct clk_hw *hw, u8 index)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ struct clk_tegra *p =
+ to_clk_tegra(__clk_get_hw(clk_get_parent(hw->clk)));
u32 val;
- const struct clk_mux_sel *sel;
int shift;
val = clk_readl(c->reg + SUPER_CLK_MUX);
@@ -638,48 +665,36 @@ static int tegra30_super_clk_set_parent(struct clk *c, struct clk *p)
((val & SUPER_STATE_MASK) != SUPER_STATE_IDLE));
shift = ((val & SUPER_STATE_MASK) == SUPER_STATE_IDLE) ?
SUPER_IDLE_SOURCE_SHIFT : SUPER_RUN_SOURCE_SHIFT;
- for (sel = c->inputs; sel->input != NULL; sel++) {
- if (sel->input == p) {
- /* For LP mode super-clock switch between PLLX direct
- and divided-by-2 outputs is allowed only when other
- than PLLX clock source is current parent */
- if ((c->flags & DIV_2) && (p->flags & PLLX) &&
- ((sel->value ^ val) & SUPER_LP_DIV2_BYPASS)) {
- if (c->parent->flags & PLLX)
- return -EINVAL;
- val ^= SUPER_LP_DIV2_BYPASS;
- clk_writel_delay(val, c->reg);
- }
- val &= ~(SUPER_SOURCE_MASK << shift);
- val |= (sel->value & SUPER_SOURCE_MASK) << shift;
-
- /* 7.1 divider for CPU super-clock does not affect
- PLLX path */
- if (c->flags & DIV_U71) {
- u32 div = 0;
- if (!(p->flags & PLLX)) {
- div = clk_readl(c->reg +
- SUPER_CLK_DIVIDER);
- div &= SUPER_CLOCK_DIV_U71_MASK;
- div >>= SUPER_CLOCK_DIV_U71_SHIFT;
- }
- c->div = div + 2;
- c->mul = 2;
- }
-
- if (c->refcnt)
- clk_enable(p);
-
- clk_writel_delay(val, c->reg);
- if (c->refcnt && c->parent)
- clk_disable(c->parent);
+ /* For LP mode super-clock switch between PLLX direct
+ and divided-by-2 outputs is allowed only when other
+ than PLLX clock source is current parent */
+ if ((c->flags & DIV_2) && (p->flags & PLLX) &&
+ ((index ^ val) & SUPER_LP_DIV2_BYPASS)) {
+ if (p->flags & PLLX)
+ return -EINVAL;
+ val ^= SUPER_LP_DIV2_BYPASS;
+ clk_writel_delay(val, c->reg);
+ }
+ val &= ~(SUPER_SOURCE_MASK << shift);
+ val |= (index & SUPER_SOURCE_MASK) << shift;
- clk_reparent(c, p);
- return 0;
+ /* 7.1 divider for CPU super-clock does not affect
+ PLLX path */
+ if (c->flags & DIV_U71) {
+ u32 div = 0;
+ if (!(p->flags & PLLX)) {
+ div = clk_readl(c->reg +
+ SUPER_CLK_DIVIDER);
+ div &= SUPER_CLOCK_DIV_U71_MASK;
+ div >>= SUPER_CLOCK_DIV_U71_SHIFT;
}
+ c->div = div + 2;
+ c->mul = 2;
}
- return -EINVAL;
+ clk_writel_delay(val, c->reg);
+
+ return 0;
}
/*
@@ -691,10 +706,15 @@ static int tegra30_super_clk_set_parent(struct clk *c, struct clk *p)
* rate of this PLL can't be changed, and it has many other children. In
* this case use 7.1 fractional divider to adjust the super clock rate.
*/
-static int tegra30_super_clk_set_rate(struct clk *c, unsigned long rate)
+static int tegra30_super_clk_set_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long parent_rate)
{
- if ((c->flags & DIV_U71) && (c->parent->flags & PLL_FIXED)) {
- int div = clk_div71_get_divider(c->parent->u.pll.fixed_rate,
+ struct clk_tegra *c = to_clk_tegra(hw);
+ struct clk *parent = __clk_get_parent(hw->clk);
+ struct clk_tegra *cparent = to_clk_tegra(__clk_get_hw(parent));
+
+ if ((c->flags & DIV_U71) && (cparent->flags & PLL_FIXED)) {
+ int div = clk_div71_get_divider(parent_rate,
rate, c->flags, ROUND_DIVIDER_DOWN);
div = max(div, SUPER_CLOCK_DIV_U71_MIN);
@@ -704,55 +724,86 @@ static int tegra30_super_clk_set_rate(struct clk *c, unsigned long rate)
c->mul = 2;
return 0;
}
- return clk_set_rate(c->parent, rate);
+ return 0;
+}
+
+static unsigned long tegra30_super_clk_recalc_rate(struct clk_hw *hw,
+ unsigned long parent_rate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u64 rate = parent_rate;
+
+ if (c->mul != 0 && c->div != 0) {
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+ }
+
+ return rate;
}
-static struct clk_ops tegra_super_ops = {
- .init = tegra30_super_clk_init,
- .enable = tegra30_super_clk_enable,
- .disable = tegra30_super_clk_disable,
- .set_parent = tegra30_super_clk_set_parent,
- .set_rate = tegra30_super_clk_set_rate,
+static long tegra30_super_clk_round_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long *prate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ struct clk *parent = __clk_get_parent(hw->clk);
+ struct clk_tegra *cparent = to_clk_tegra(__clk_get_hw(parent));
+ int mul = 2;
+ int div;
+
+ if ((c->flags & DIV_U71) && (cparent->flags & PLL_FIXED)) {
+ div = clk_div71_get_divider(*prate,
+ rate, c->flags, ROUND_DIVIDER_DOWN);
+ div = max(div, SUPER_CLOCK_DIV_U71_MIN) + 2;
+ rate = *prate * mul;
+ rate += div - 1; /* round up */
+ do_div(rate, c->div);
+
+ return rate;
+ }
+ return *prate;
+}
+
+struct clk_ops tegra30_super_ops = {
+ .init = tegra30_super_clk_init,
+ .set_parent = tegra30_super_clk_set_parent,
+ .get_parent = tegra30_super_clk_get_parent,
+ .recalc_rate = tegra30_super_clk_recalc_rate,
+ .round_rate = tegra30_super_clk_round_rate,
+ .set_rate = tegra30_super_clk_set_rate,
};
-static int tegra30_twd_clk_set_rate(struct clk *c, unsigned long rate)
+static unsigned long tegra30_twd_clk_recalc_rate(struct clk_hw *hw,
+ unsigned long parent_rate)
{
- /* The input value 'rate' is the clock rate of the CPU complex. */
- c->rate = (rate * c->mul) / c->div;
- return 0;
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u64 rate = parent_rate;
+
+ if (c->mul != 0 && c->div != 0) {
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+ }
+
+ return rate;
}
-static struct clk_ops tegra30_twd_ops = {
- .set_rate = tegra30_twd_clk_set_rate,
+struct clk_ops tegra30_twd_ops = {
+ .recalc_rate = tegra30_twd_clk_recalc_rate,
};
/* Blink output functions */
-
-static void tegra30_blink_clk_init(struct clk *c)
+static int tegra30_blink_clk_is_enabled(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
val = pmc_readl(PMC_CTRL);
c->state = (val & PMC_CTRL_BLINK_ENB) ? ON : OFF;
- c->mul = 1;
- val = pmc_readl(c->reg);
-
- if (val & PMC_BLINK_TIMER_ENB) {
- unsigned int on_off;
-
- on_off = (val >> PMC_BLINK_TIMER_DATA_ON_SHIFT) &
- PMC_BLINK_TIMER_DATA_ON_MASK;
- val >>= PMC_BLINK_TIMER_DATA_OFF_SHIFT;
- val &= PMC_BLINK_TIMER_DATA_OFF_MASK;
- on_off += val;
- /* each tick in the blink timer is 4 32KHz clocks */
- c->div = on_off * 4;
- } else {
- c->div = 1;
- }
+ return c->state;
}
-static int tegra30_blink_clk_enable(struct clk *c)
+static int tegra30_blink_clk_enable(struct clk_hw *hw)
{
u32 val;
@@ -765,7 +816,7 @@ static int tegra30_blink_clk_enable(struct clk *c)
return 0;
}
-static void tegra30_blink_clk_disable(struct clk *c)
+static void tegra30_blink_clk_disable(struct clk_hw *hw)
{
u32 val;
@@ -776,9 +827,11 @@ static void tegra30_blink_clk_disable(struct clk *c)
pmc_writel(val & ~PMC_DPD_PADS_ORIDE_BLINK_ENB, PMC_DPD_PADS_ORIDE);
}
-static int tegra30_blink_clk_set_rate(struct clk *c, unsigned long rate)
+static int tegra30_blink_clk_set_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long parent_rate)
{
- unsigned long parent_rate = clk_get_rate(c->parent);
+ struct clk_tegra *c = to_clk_tegra(hw);
+
if (rate >= parent_rate) {
c->div = 1;
pmc_writel(0, c->reg);
@@ -801,41 +854,77 @@ static int tegra30_blink_clk_set_rate(struct clk *c, unsigned long rate)
return 0;
}
-static struct clk_ops tegra_blink_clk_ops = {
- .init = &tegra30_blink_clk_init,
- .enable = &tegra30_blink_clk_enable,
- .disable = &tegra30_blink_clk_disable,
- .set_rate = &tegra30_blink_clk_set_rate,
-};
+static unsigned long tegra30_blink_clk_recalc_rate(struct clk_hw *hw,
+ unsigned long parent_rate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u64 rate = parent_rate;
+ u32 val;
+ u32 mul;
+ u32 div;
+ u32 on_off;
-/* PLL Functions */
-static int tegra30_pll_clk_wait_for_lock(struct clk *c, u32 lock_reg,
- u32 lock_bit)
+ mul = 1;
+ val = pmc_readl(c->reg);
+
+ if (val & PMC_BLINK_TIMER_ENB) {
+ on_off = (val >> PMC_BLINK_TIMER_DATA_ON_SHIFT) &
+ PMC_BLINK_TIMER_DATA_ON_MASK;
+ val >>= PMC_BLINK_TIMER_DATA_OFF_SHIFT;
+ val &= PMC_BLINK_TIMER_DATA_OFF_MASK;
+ on_off += val;
+ /* each tick in the blink timer is 4 32KHz clocks */
+ div = on_off * 4;
+ } else {
+ div = 1;
+ }
+
+ if (mul != 0 && div != 0) {
+ rate *= mul;
+ rate += div - 1; /* round up */
+ do_div(rate, div);
+ }
+ return rate;
+}
+
+static long tegra30_blink_clk_round_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long *prate)
{
-#if USE_PLL_LOCK_BITS
- int i;
- for (i = 0; i < c->u.pll.lock_delay; i++) {
- if (clk_readl(lock_reg) & lock_bit) {
- udelay(PLL_POST_LOCK_DELAY);
- return 0;
- }
- udelay(2); /* timeout = 2 * lock time */
+ int div;
+ int mul;
+ long round_rate = *prate;
+
+ mul = 1;
+
+ if (rate >= *prate) {
+ div = 1;
+ } else {
+ div = DIV_ROUND_UP(*prate / 8, rate);
+ div *= 8;
}
- pr_err("Timed out waiting for lock bit on pll %s", c->name);
- return -1;
-#endif
- udelay(c->u.pll.lock_delay);
- return 0;
+ round_rate *= mul;
+ round_rate += div - 1;
+ do_div(round_rate, div);
+
+ return round_rate;
}
+struct clk_ops tegra30_blink_clk_ops = {
+ .is_enabled = tegra30_blink_clk_is_enabled,
+ .enable = tegra30_blink_clk_enable,
+ .disable = tegra30_blink_clk_disable,
+ .recalc_rate = tegra30_blink_clk_recalc_rate,
+ .round_rate = tegra30_blink_clk_round_rate,
+ .set_rate = tegra30_blink_clk_set_rate,
+};
-static void tegra30_utmi_param_configure(struct clk *c)
+static void tegra30_utmi_param_configure(struct clk_hw *hw)
{
+ unsigned long main_rate =
+ __clk_get_rate(__clk_get_parent(__clk_get_parent(hw->clk)));
u32 reg;
int i;
- unsigned long main_rate =
- clk_get_rate(c->parent->parent);
for (i = 0; i < ARRAY_SIZE(utmi_parameters); i++) {
if (main_rate == utmi_parameters[i].osc_frequency)
@@ -886,50 +975,52 @@ static void tegra30_utmi_param_configure(struct clk *c)
clk_writel(reg, UTMIP_PLL_CFG1);
}
-static void tegra30_pll_clk_init(struct clk *c)
+/* PLL Functions */
+static int tegra30_pll_clk_wait_for_lock(struct clk_tegra *c, u32 lock_reg,
+ u32 lock_bit)
+{
+ int ret = 0;
+
+#if USE_PLL_LOCK_BITS
+ int i;
+ for (i = 0; i < c->u.pll.lock_delay; i++) {
+ if (clk_readl(lock_reg) & lock_bit) {
+ udelay(PLL_POST_LOCK_DELAY);
+ return 0;
+ }
+ udelay(2); /* timeout = 2 * lock time */
+ }
+ pr_err("Timed out waiting for lock bit on pll %s",
+ __clk_get_name(hw->clk));
+ ret = -1;
+#else
+ udelay(c->u.pll.lock_delay);
+#endif
+ return ret;
+}
+
+static int tegra30_pll_clk_is_enabled(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val = clk_readl(c->reg + PLL_BASE);
c->state = (val & PLL_BASE_ENABLE) ? ON : OFF;
+ return c->state;
+}
- if (c->flags & PLL_FIXED && !(val & PLL_BASE_OVERRIDE)) {
- const struct clk_pll_freq_table *sel;
- unsigned long input_rate = clk_get_rate(c->parent);
- for (sel = c->u.pll.freq_table; sel->input_rate != 0; sel++) {
- if (sel->input_rate == input_rate &&
- sel->output_rate == c->u.pll.fixed_rate) {
- c->mul = sel->n;
- c->div = sel->m * sel->p;
- return;
- }
- }
- pr_err("Clock %s has unknown fixed frequency\n", c->name);
- BUG();
- } else if (val & PLL_BASE_BYPASS) {
- c->mul = 1;
- c->div = 1;
- } else {
- c->mul = (val & PLL_BASE_DIVN_MASK) >> PLL_BASE_DIVN_SHIFT;
- c->div = (val & PLL_BASE_DIVM_MASK) >> PLL_BASE_DIVM_SHIFT;
- if (c->flags & PLLU)
- c->div *= (val & PLLU_BASE_POST_DIV) ? 1 : 2;
- else
- c->div *= (0x1 << ((val & PLL_BASE_DIVP_MASK) >>
- PLL_BASE_DIVP_SHIFT));
- if (c->flags & PLL_FIXED) {
- unsigned long rate = clk_get_rate_locked(c);
- BUG_ON(rate != c->u.pll.fixed_rate);
- }
- }
+static void tegra30_pll_clk_init(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
if (c->flags & PLLU)
- tegra30_utmi_param_configure(c);
+ tegra30_utmi_param_configure(hw);
}
-static int tegra30_pll_clk_enable(struct clk *c)
+static int tegra30_pll_clk_enable(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
- pr_debug("%s on clock %s\n", __func__, c->name);
+ pr_debug("%s on clock %s\n", __func__, __clk_get_name(hw->clk));
#if USE_PLL_LOCK_BITS
val = clk_readl(c->reg + PLL_MISC(c));
@@ -952,10 +1043,11 @@ static int tegra30_pll_clk_enable(struct clk *c)
return 0;
}
-static void tegra30_pll_clk_disable(struct clk *c)
+static void tegra30_pll_clk_disable(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
- pr_debug("%s on clock %s\n", __func__, c->name);
+ pr_debug("%s on clock %s\n", __func__, __clk_get_name(hw->clk));
val = clk_readl(c->reg);
val &= ~(PLL_BASE_BYPASS | PLL_BASE_ENABLE);
@@ -968,36 +1060,36 @@ static void tegra30_pll_clk_disable(struct clk *c)
}
}
-static int tegra30_pll_clk_set_rate(struct clk *c, unsigned long rate)
+static int tegra30_pll_clk_set_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long parent_rate)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val, p_div, old_base;
unsigned long input_rate;
const struct clk_pll_freq_table *sel;
struct clk_pll_freq_table cfg;
- pr_debug("%s: %s %lu\n", __func__, c->name, rate);
-
if (c->flags & PLL_FIXED) {
int ret = 0;
if (rate != c->u.pll.fixed_rate) {
pr_err("%s: Can not change %s fixed rate %lu to %lu\n",
- __func__, c->name, c->u.pll.fixed_rate, rate);
+ __func__, __clk_get_name(hw->clk),
+ c->u.pll.fixed_rate, rate);
ret = -EINVAL;
}
return ret;
}
if (c->flags & PLLM) {
- if (rate != clk_get_rate_locked(c)) {
+ if (rate != __clk_get_rate(hw->clk)) {
pr_err("%s: Can not change memory %s rate in flight\n",
- __func__, c->name);
+ __func__, __clk_get_name(hw->clk));
return -EINVAL;
}
- return 0;
}
p_div = 0;
- input_rate = clk_get_rate(c->parent);
+ input_rate = parent_rate;
/* Check if the target rate is tabulated */
for (sel = c->u.pll.freq_table; sel->input_rate != 0; sel++) {
@@ -1055,7 +1147,7 @@ static int tegra30_pll_clk_set_rate(struct clk *c, unsigned long rate)
(p_div > (PLL_BASE_DIVP_MASK >> PLL_BASE_DIVP_SHIFT)) ||
(cfg.output_rate > c->u.pll.vco_max)) {
pr_err("%s: Failed to set %s out-of-table rate %lu\n",
- __func__, c->name, rate);
+ __func__, __clk_get_name(hw->clk), rate);
return -EINVAL;
}
p_div <<= PLL_BASE_DIVP_SHIFT;
@@ -1073,7 +1165,7 @@ static int tegra30_pll_clk_set_rate(struct clk *c, unsigned long rate)
return 0;
if (c->state == ON) {
- tegra30_pll_clk_disable(c);
+ tegra30_pll_clk_disable(hw);
val &= ~(PLL_BASE_BYPASS | PLL_BASE_ENABLE);
}
clk_writel(val, c->reg + PLL_BASE);
@@ -1095,21 +1187,149 @@ static int tegra30_pll_clk_set_rate(struct clk *c, unsigned long rate)
}
if (c->state == ON)
- tegra30_pll_clk_enable(c);
+ tegra30_pll_clk_enable(hw);
+
+ c->u.pll.fixed_rate = rate;
return 0;
}
-static struct clk_ops tegra_pll_ops = {
- .init = tegra30_pll_clk_init,
- .enable = tegra30_pll_clk_enable,
- .disable = tegra30_pll_clk_disable,
- .set_rate = tegra30_pll_clk_set_rate,
+static long tegra30_pll_round_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long *prate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long input_rate = *prate;
+ unsigned long output_rate = *prate;
+ const struct clk_pll_freq_table *sel;
+ struct clk_pll_freq_table cfg;
+ int mul;
+ int div;
+ u32 p_div;
+ u32 val;
+
+ if (c->flags & PLL_FIXED)
+ return c->u.pll.fixed_rate;
+
+ if (c->flags & PLLM)
+ return __clk_get_rate(hw->clk);
+
+ p_div = 0;
+ /* Check if the target rate is tabulated */
+ for (sel = c->u.pll.freq_table; sel->input_rate != 0; sel++) {
+ if (sel->input_rate == input_rate && sel->output_rate == rate) {
+ if (c->flags & PLLU) {
+ BUG_ON(sel->p < 1 || sel->p > 2);
+ if (sel->p == 1)
+ p_div = PLLU_BASE_POST_DIV;
+ } else {
+ BUG_ON(sel->p < 1);
+ for (val = sel->p; val > 1; val >>= 1)
+ p_div++;
+ p_div <<= PLL_BASE_DIVP_SHIFT;
+ }
+ break;
+ }
+ }
+
+ if (sel->input_rate == 0) {
+ unsigned long cfreq;
+ BUG_ON(c->flags & PLLU);
+ sel = &cfg;
+
+ switch (input_rate) {
+ case 12000000:
+ case 26000000:
+ cfreq = (rate <= 1000000 * 1000) ? 1000000 : 2000000;
+ break;
+ case 13000000:
+ cfreq = (rate <= 1000000 * 1000) ? 1000000 : 2600000;
+ break;
+ case 16800000:
+ case 19200000:
+ cfreq = (rate <= 1200000 * 1000) ? 1200000 : 2400000;
+ break;
+ default:
+ pr_err("%s: Unexpected reference rate %lu\n",
+ __func__, input_rate);
+ BUG();
+ }
+
+ /* Raise VCO to guarantee 0.5% accuracy */
+ for (cfg.output_rate = rate; cfg.output_rate < 200 * cfreq;
+ cfg.output_rate <<= 1)
+ p_div++;
+
+ cfg.p = 0x1 << p_div;
+ cfg.m = input_rate / cfreq;
+ cfg.n = cfg.output_rate / cfreq;
+ }
+
+ mul = sel->n;
+ div = sel->m * sel->p;
+
+ output_rate *= mul;
+ output_rate += div - 1; /* round up */
+ do_div(output_rate, div);
+
+ return output_rate;
+}
+
+static unsigned long tegra30_pll_recalc_rate(struct clk_hw *hw,
+ unsigned long parent_rate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u64 rate = parent_rate;
+ u32 val = clk_readl(c->reg + PLL_BASE);
+
+ if (c->flags & PLL_FIXED && !(val & PLL_BASE_OVERRIDE)) {
+ const struct clk_pll_freq_table *sel;
+ for (sel = c->u.pll.freq_table; sel->input_rate != 0; sel++) {
+ if (sel->input_rate == parent_rate &&
+ sel->output_rate == c->u.pll.fixed_rate) {
+ c->mul = sel->n;
+ c->div = sel->m * sel->p;
+ break;
+ }
+ }
+ pr_err("Clock %s has unknown fixed frequency\n",
+ __clk_get_name(hw->clk));
+ BUG();
+ } else if (val & PLL_BASE_BYPASS) {
+ c->mul = 1;
+ c->div = 1;
+ } else {
+ c->mul = (val & PLL_BASE_DIVN_MASK) >> PLL_BASE_DIVN_SHIFT;
+ c->div = (val & PLL_BASE_DIVM_MASK) >> PLL_BASE_DIVM_SHIFT;
+ if (c->flags & PLLU)
+ c->div *= (val & PLLU_BASE_POST_DIV) ? 1 : 2;
+ else
+ c->div *= (0x1 << ((val & PLL_BASE_DIVP_MASK) >>
+ PLL_BASE_DIVP_SHIFT));
+ }
+
+ if (c->mul != 0 && c->div != 0) {
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+ }
+
+ return rate;
+}
+
+struct clk_ops tegra30_pll_ops = {
+ .is_enabled = tegra30_pll_clk_is_enabled,
+ .init = tegra30_pll_clk_init,
+ .enable = tegra30_pll_clk_enable,
+ .disable = tegra30_pll_clk_disable,
+ .recalc_rate = tegra30_pll_recalc_rate,
+ .round_rate = tegra30_pll_round_rate,
+ .set_rate = tegra30_pll_clk_set_rate,
};
-static int
-tegra30_plld_clk_cfg_ex(struct clk *c, enum tegra_clk_ex_param p, u32 setting)
+int tegra30_plld_clk_cfg_ex(struct clk_hw *hw,
+ enum tegra_clk_ex_param p, u32 setting)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val, mask, reg;
switch (p) {
@@ -1141,41 +1361,27 @@ tegra30_plld_clk_cfg_ex(struct clk *c, enum tegra_clk_ex_param p, u32 setting)
return 0;
}
-static struct clk_ops tegra_plld_ops = {
- .init = tegra30_pll_clk_init,
- .enable = tegra30_pll_clk_enable,
- .disable = tegra30_pll_clk_disable,
- .set_rate = tegra30_pll_clk_set_rate,
- .clk_cfg_ex = tegra30_plld_clk_cfg_ex,
-};
-
-static void tegra30_plle_clk_init(struct clk *c)
+static int tegra30_plle_clk_is_enabled(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
- val = clk_readl(PLLE_AUX);
- c->parent = (val & PLLE_AUX_PLLP_SEL) ?
- tegra_get_clock_by_name("pll_p") :
- tegra_get_clock_by_name("pll_ref");
-
val = clk_readl(c->reg + PLL_BASE);
c->state = (val & PLLE_BASE_ENABLE) ? ON : OFF;
- c->mul = (val & PLLE_BASE_DIVN_MASK) >> PLLE_BASE_DIVN_SHIFT;
- c->div = (val & PLLE_BASE_DIVM_MASK) >> PLLE_BASE_DIVM_SHIFT;
- c->div *= (val & PLLE_BASE_DIVP_MASK) >> PLLE_BASE_DIVP_SHIFT;
+ return c->state;
}
-static void tegra30_plle_clk_disable(struct clk *c)
+static void tegra30_plle_clk_disable(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
- pr_debug("%s on clock %s\n", __func__, c->name);
val = clk_readl(c->reg + PLL_BASE);
val &= ~(PLLE_BASE_CML_ENABLE | PLLE_BASE_ENABLE);
clk_writel(val, c->reg + PLL_BASE);
}
-static void tegra30_plle_training(struct clk *c)
+static void tegra30_plle_training(struct clk_tegra *c)
{
u32 val;
@@ -1198,12 +1404,15 @@ static void tegra30_plle_training(struct clk *c)
} while (!(val & PLLE_MISC_READY));
}
-static int tegra30_plle_configure(struct clk *c, bool force_training)
+static int tegra30_plle_configure(struct clk_hw *hw, bool force_training)
{
- u32 val;
+ struct clk_tegra *c = to_clk_tegra(hw);
+ struct clk *parent = __clk_get_parent(hw->clk);
const struct clk_pll_freq_table *sel;
+ u32 val;
+
unsigned long rate = c->u.pll.fixed_rate;
- unsigned long input_rate = clk_get_rate(c->parent);
+ unsigned long input_rate = __clk_get_rate(parent);
for (sel = c->u.pll.freq_table; sel->input_rate != 0; sel++) {
if (sel->input_rate == input_rate && sel->output_rate == rate)
@@ -1214,7 +1423,7 @@ static int tegra30_plle_configure(struct clk *c, bool force_training)
return -ENOSYS;
/* disable PLLE, clear setup fiels */
- tegra30_plle_clk_disable(c);
+ tegra30_plle_clk_disable(hw);
val = clk_readl(c->reg + PLL_MISC(c));
val &= ~(PLLE_MISC_LOCK_ENABLE | PLLE_MISC_SETUP_MASK);
@@ -1252,52 +1461,64 @@ static int tegra30_plle_configure(struct clk *c, bool force_training)
return 0;
}
-static int tegra30_plle_clk_enable(struct clk *c)
+static int tegra30_plle_clk_enable(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+
+ return tegra30_plle_configure(hw, !c->set);
+}
+
+static unsigned long tegra30_plle_clk_recalc_rate(struct clk_hw *hw,
+ unsigned long parent_rate)
{
- pr_debug("%s on clock %s\n", __func__, c->name);
- return tegra30_plle_configure(c, !c->set);
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long rate = parent_rate;
+ u32 val;
+
+ val = clk_readl(c->reg + PLL_BASE);
+ c->mul = (val & PLLE_BASE_DIVN_MASK) >> PLLE_BASE_DIVN_SHIFT;
+ c->div = (val & PLLE_BASE_DIVM_MASK) >> PLLE_BASE_DIVM_SHIFT;
+ c->div *= (val & PLLE_BASE_DIVP_MASK) >> PLLE_BASE_DIVP_SHIFT;
+
+ if (c->mul != 0 && c->div != 0) {
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+ }
+ return rate;
}
-static struct clk_ops tegra_plle_ops = {
- .init = tegra30_plle_clk_init,
- .enable = tegra30_plle_clk_enable,
- .disable = tegra30_plle_clk_disable,
+struct clk_ops tegra30_plle_ops = {
+ .is_enabled = tegra30_plle_clk_is_enabled,
+ .enable = tegra30_plle_clk_enable,
+ .disable = tegra30_plle_clk_disable,
+ .recalc_rate = tegra30_plle_clk_recalc_rate,
};
/* Clock divider ops */
-static void tegra30_pll_div_clk_init(struct clk *c)
+static int tegra30_pll_div_clk_is_enabled(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
+
if (c->flags & DIV_U71) {
- u32 divu71;
u32 val = clk_readl(c->reg);
val >>= c->reg_shift;
c->state = (val & PLL_OUT_CLKEN) ? ON : OFF;
if (!(val & PLL_OUT_RESET_DISABLE))
c->state = OFF;
-
- divu71 = (val & PLL_OUT_RATIO_MASK) >> PLL_OUT_RATIO_SHIFT;
- c->div = (divu71 + 2);
- c->mul = 2;
- } else if (c->flags & DIV_2) {
- c->state = ON;
- if (c->flags & (PLLD | PLLX)) {
- c->div = 2;
- c->mul = 1;
- } else
- BUG();
} else {
c->state = ON;
- c->div = 1;
- c->mul = 1;
}
+ return c->state;
}
-static int tegra30_pll_div_clk_enable(struct clk *c)
+static int tegra30_pll_div_clk_enable(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
u32 new_val;
- pr_debug("%s: %s\n", __func__, c->name);
+ pr_debug("%s: %s\n", __func__, __clk_get_name(hw->clk));
if (c->flags & DIV_U71) {
val = clk_readl(c->reg);
new_val = val >> c->reg_shift;
@@ -1315,12 +1536,13 @@ static int tegra30_pll_div_clk_enable(struct clk *c)
return -EINVAL;
}
-static void tegra30_pll_div_clk_disable(struct clk *c)
+static void tegra30_pll_div_clk_disable(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
u32 new_val;
- pr_debug("%s: %s\n", __func__, c->name);
+ pr_debug("%s: %s\n", __func__, __clk_get_name(hw->clk));
if (c->flags & DIV_U71) {
val = clk_readl(c->reg);
new_val = val >> c->reg_shift;
@@ -1334,14 +1556,14 @@ static void tegra30_pll_div_clk_disable(struct clk *c)
}
}
-static int tegra30_pll_div_clk_set_rate(struct clk *c, unsigned long rate)
+static int tegra30_pll_div_clk_set_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long parent_rate)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
u32 new_val;
int divider_u71;
- unsigned long parent_rate = clk_get_rate(c->parent);
- pr_debug("%s: %s %lu\n", __func__, c->name, rate);
if (c->flags & DIV_U71) {
divider_u71 = clk_div71_get_divider(
parent_rate, rate, c->flags, ROUND_DIVIDER_UP);
@@ -1359,19 +1581,59 @@ static int tegra30_pll_div_clk_set_rate(struct clk *c, unsigned long rate)
clk_writel_delay(val, c->reg);
c->div = divider_u71 + 2;
c->mul = 2;
+ c->fixed_rate = rate;
return 0;
}
- } else if (c->flags & DIV_2)
- return clk_set_rate(c->parent, rate * 2);
+ } else if (c->flags & DIV_2) {
+ c->fixed_rate = rate;
+ return 0;
+ }
return -EINVAL;
}
-static long tegra30_pll_div_clk_round_rate(struct clk *c, unsigned long rate)
+static unsigned long tegra30_pll_div_clk_recalc_rate(struct clk_hw *hw,
+ unsigned long parent_rate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u64 rate = parent_rate;
+
+ if (c->flags & DIV_U71) {
+ u32 divu71;
+ u32 val = clk_readl(c->reg);
+ val >>= c->reg_shift;
+
+ divu71 = (val & PLL_OUT_RATIO_MASK) >> PLL_OUT_RATIO_SHIFT;
+ c->div = (divu71 + 2);
+ c->mul = 2;
+ } else if (c->flags & DIV_2) {
+ if (c->flags & (PLLD | PLLX)) {
+ c->div = 2;
+ c->mul = 1;
+ } else
+ BUG();
+ } else {
+ c->div = 1;
+ c->mul = 1;
+ }
+ if (c->mul != 0 && c->div != 0) {
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+ }
+
+ return rate;
+}
+
+static long tegra30_pll_div_clk_round_rate(struct clk_hw *hw,
+ unsigned long rate, unsigned long *prate)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long parent_rate = __clk_get_rate(__clk_get_parent(hw->clk));
int divider;
- unsigned long parent_rate = clk_get_rate(c->parent);
- pr_debug("%s: %s %lu\n", __func__, c->name, rate);
+
+ if (prate)
+ parent_rate = *prate;
if (c->flags & DIV_U71) {
divider = clk_div71_get_divider(
@@ -1379,23 +1641,25 @@ static long tegra30_pll_div_clk_round_rate(struct clk *c, unsigned long rate)
if (divider < 0)
return divider;
return DIV_ROUND_UP(parent_rate * 2, divider + 2);
- } else if (c->flags & DIV_2)
- /* no rounding - fixed DIV_2 dividers pass rate to parent PLL */
+ } else if (c->flags & DIV_2) {
+ *prate = rate * 2;
return rate;
+ }
return -EINVAL;
}
-static struct clk_ops tegra_pll_div_ops = {
- .init = tegra30_pll_div_clk_init,
- .enable = tegra30_pll_div_clk_enable,
- .disable = tegra30_pll_div_clk_disable,
- .set_rate = tegra30_pll_div_clk_set_rate,
- .round_rate = tegra30_pll_div_clk_round_rate,
+struct clk_ops tegra30_pll_div_ops = {
+ .is_enabled = tegra30_pll_div_clk_is_enabled,
+ .enable = tegra30_pll_div_clk_enable,
+ .disable = tegra30_pll_div_clk_disable,
+ .set_rate = tegra30_pll_div_clk_set_rate,
+ .recalc_rate = tegra30_pll_div_clk_recalc_rate,
+ .round_rate = tegra30_pll_div_clk_round_rate,
};
/* Periph clk ops */
-static inline u32 periph_clk_source_mask(struct clk *c)
+static inline u32 periph_clk_source_mask(struct clk_tegra *c)
{
if (c->flags & MUX8)
return 7 << 29;
@@ -1409,7 +1673,7 @@ static inline u32 periph_clk_source_mask(struct clk *c)
return 3 << 30;
}
-static inline u32 periph_clk_source_shift(struct clk *c)
+static inline u32 periph_clk_source_shift(struct clk_tegra *c)
{
if (c->flags & MUX8)
return 29;
@@ -1423,47 +1687,9 @@ static inline u32 periph_clk_source_shift(struct clk *c)
return 30;
}
-static void tegra30_periph_clk_init(struct clk *c)
+static int tegra30_periph_clk_is_enabled(struct clk_hw *hw)
{
- u32 val = clk_readl(c->reg);
- const struct clk_mux_sel *mux = 0;
- const struct clk_mux_sel *sel;
- if (c->flags & MUX) {
- for (sel = c->inputs; sel->input != NULL; sel++) {
- if (((val & periph_clk_source_mask(c)) >>
- periph_clk_source_shift(c)) == sel->value)
- mux = sel;
- }
- BUG_ON(!mux);
-
- c->parent = mux->input;
- } else {
- c->parent = c->inputs[0].input;
- }
-
- if (c->flags & DIV_U71) {
- u32 divu71 = val & PERIPH_CLK_SOURCE_DIVU71_MASK;
- if ((c->flags & DIV_U71_UART) &&
- (!(val & PERIPH_CLK_UART_DIV_ENB))) {
- divu71 = 0;
- }
- if (c->flags & DIV_U71_IDLE) {
- val &= ~(PERIPH_CLK_SOURCE_DIVU71_MASK <<
- PERIPH_CLK_SOURCE_DIVIDLE_SHIFT);
- val |= (PERIPH_CLK_SOURCE_DIVIDLE_VAL <<
- PERIPH_CLK_SOURCE_DIVIDLE_SHIFT);
- clk_writel(val, c->reg);
- }
- c->div = divu71 + 2;
- c->mul = 2;
- } else if (c->flags & DIV_U16) {
- u32 divu16 = val & PERIPH_CLK_SOURCE_DIVU16_MASK;
- c->div = divu16 + 1;
- c->mul = 1;
- } else {
- c->div = 1;
- c->mul = 1;
- }
+ struct clk_tegra *c = to_clk_tegra(hw);
c->state = ON;
if (!(clk_readl(PERIPH_CLK_TO_ENB_REG(c)) & PERIPH_CLK_TO_BIT(c)))
@@ -1471,11 +1697,12 @@ static void tegra30_periph_clk_init(struct clk *c)
if (!(c->flags & PERIPH_NO_RESET))
if (clk_readl(PERIPH_CLK_TO_RST_REG(c)) & PERIPH_CLK_TO_BIT(c))
c->state = OFF;
+ return c->state;
}
-static int tegra30_periph_clk_enable(struct clk *c)
+static int tegra30_periph_clk_enable(struct clk_hw *hw)
{
- pr_debug("%s on clock %s\n", __func__, c->name);
+ struct clk_tegra *c = to_clk_tegra(hw);
tegra_periph_clk_enable_refcount[c->u.periph.clk_num]++;
if (tegra_periph_clk_enable_refcount[c->u.periph.clk_num] > 1)
@@ -1494,31 +1721,29 @@ static int tegra30_periph_clk_enable(struct clk *c)
return 0;
}
-static void tegra30_periph_clk_disable(struct clk *c)
+static void tegra30_periph_clk_disable(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
unsigned long val;
- pr_debug("%s on clock %s\n", __func__, c->name);
- if (c->refcnt)
- tegra_periph_clk_enable_refcount[c->u.periph.clk_num]--;
+ tegra_periph_clk_enable_refcount[c->u.periph.clk_num]--;
+
+ if (tegra_periph_clk_enable_refcount[c->u.periph.clk_num] > 0)
+ return;
- if (tegra_periph_clk_enable_refcount[c->u.periph.clk_num] == 0) {
- /* If peripheral is in the APB bus then read the APB bus to
- * flush the write operation in apb bus. This will avoid the
- * peripheral access after disabling clock*/
- if (c->flags & PERIPH_ON_APB)
- val = chipid_readl();
+ /* If peripheral is in the APB bus then read the APB bus to
+ * flush the write operation in apb bus. This will avoid the
+ * peripheral access after disabling clock*/
+ if (c->flags & PERIPH_ON_APB)
+ val = chipid_readl();
- clk_writel_delay(
- PERIPH_CLK_TO_BIT(c), PERIPH_CLK_TO_ENB_CLR_REG(c));
- }
+ clk_writel_delay(PERIPH_CLK_TO_BIT(c), PERIPH_CLK_TO_ENB_CLR_REG(c));
}
-static void tegra30_periph_clk_reset(struct clk *c, bool assert)
+void tegra30_periph_clk_reset(struct clk_hw *hw, bool assert)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
unsigned long val;
- pr_debug("%s %s on clock %s\n", __func__,
- assert ? "assert" : "deassert", c->name);
if (!(c->flags & PERIPH_NO_RESET)) {
if (assert) {
@@ -1537,42 +1762,40 @@ static void tegra30_periph_clk_reset(struct clk *c, bool assert)
}
}
-static int tegra30_periph_clk_set_parent(struct clk *c, struct clk *p)
+static int tegra30_periph_clk_set_parent(struct clk_hw *hw, u8 index)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
- const struct clk_mux_sel *sel;
- pr_debug("%s: %s %s\n", __func__, c->name, p->name);
if (!(c->flags & MUX))
- return (p == c->parent) ? 0 : (-EINVAL);
-
- for (sel = c->inputs; sel->input != NULL; sel++) {
- if (sel->input == p) {
- val = clk_readl(c->reg);
- val &= ~periph_clk_source_mask(c);
- val |= (sel->value << periph_clk_source_shift(c));
-
- if (c->refcnt)
- clk_enable(p);
+ return (index == 0) ? 0 : (-EINVAL);
- clk_writel_delay(val, c->reg);
+ val = clk_readl(c->reg);
+ val &= ~periph_clk_source_mask(c);
+ val |= (index << periph_clk_source_shift(c));
+ clk_writel_delay(val, c->reg);
+ return 0;
+}
- if (c->refcnt && c->parent)
- clk_disable(c->parent);
+static u8 tegra30_periph_clk_get_parent(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val = clk_readl(c->reg);
+ int source = (val & periph_clk_source_mask(c)) >>
+ periph_clk_source_shift(c);
- clk_reparent(c, p);
- return 0;
- }
- }
+ if (!(c->flags & MUX))
+ return 0;
- return -EINVAL;
+ return source;
}
-static int tegra30_periph_clk_set_rate(struct clk *c, unsigned long rate)
+static int tegra30_periph_clk_set_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long parent_rate)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
int divider;
- unsigned long parent_rate = clk_get_rate(c->parent);
if (c->flags & DIV_U71) {
divider = clk_div71_get_divider(
@@ -1611,12 +1834,15 @@ static int tegra30_periph_clk_set_rate(struct clk *c, unsigned long rate)
return -EINVAL;
}
-static long tegra30_periph_clk_round_rate(struct clk *c,
- unsigned long rate)
+static long tegra30_periph_clk_round_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long *prate)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ unsigned long parent_rate = __clk_get_rate(__clk_get_parent(hw->clk));
int divider;
- unsigned long parent_rate = clk_get_rate(c->parent);
- pr_debug("%s: %s %lu\n", __func__, c->name, rate);
+
+ if (prate)
+ parent_rate = *prate;
if (c->flags & DIV_U71) {
divider = clk_div71_get_divider(
@@ -1634,21 +1860,85 @@ static long tegra30_periph_clk_round_rate(struct clk *c,
return -EINVAL;
}
-static struct clk_ops tegra_periph_clk_ops = {
- .init = &tegra30_periph_clk_init,
+static unsigned long tegra30_periph_clk_recalc_rate(struct clk_hw *hw,
+ unsigned long parent_rate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u64 rate = parent_rate;
+ u32 val = clk_readl(c->reg);
+
+ if (c->flags & DIV_U71) {
+ u32 divu71 = val & PERIPH_CLK_SOURCE_DIVU71_MASK;
+ if ((c->flags & DIV_U71_UART) &&
+ (!(val & PERIPH_CLK_UART_DIV_ENB))) {
+ divu71 = 0;
+ }
+ if (c->flags & DIV_U71_IDLE) {
+ val &= ~(PERIPH_CLK_SOURCE_DIVU71_MASK <<
+ PERIPH_CLK_SOURCE_DIVIDLE_SHIFT);
+ val |= (PERIPH_CLK_SOURCE_DIVIDLE_VAL <<
+ PERIPH_CLK_SOURCE_DIVIDLE_SHIFT);
+ clk_writel(val, c->reg);
+ }
+ c->div = divu71 + 2;
+ c->mul = 2;
+ } else if (c->flags & DIV_U16) {
+ u32 divu16 = val & PERIPH_CLK_SOURCE_DIVU16_MASK;
+ c->div = divu16 + 1;
+ c->mul = 1;
+ } else {
+ c->div = 1;
+ c->mul = 1;
+ }
+
+ if (c->mul != 0 && c->div != 0) {
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+ }
+ return rate;
+}
+
+struct clk_ops tegra30_periph_clk_ops = {
+ .is_enabled = tegra30_periph_clk_is_enabled,
+ .enable = tegra30_periph_clk_enable,
+ .disable = tegra30_periph_clk_disable,
+ .set_parent = tegra30_periph_clk_set_parent,
+ .get_parent = tegra30_periph_clk_get_parent,
+ .set_rate = tegra30_periph_clk_set_rate,
+ .round_rate = tegra30_periph_clk_round_rate,
+ .recalc_rate = tegra30_periph_clk_recalc_rate,
+};
+
+static int tegra30_dsib_clk_set_parent(struct clk_hw *hw, u8 index)
+{
+ struct clk *d = clk_get_sys(NULL, "pll_d");
+ /* The DSIB parent selection bit is in PLLD base
+ register - can not do direct r-m-w, must be
+ protected by PLLD lock */
+ tegra_clk_cfg_ex(
+ d, TEGRA_CLK_PLLD_MIPI_MUX_SEL, index);
+
+ return 0;
+}
+
+struct clk_ops tegra30_dsib_clk_ops = {
+ .is_enabled = tegra30_periph_clk_is_enabled,
.enable = &tegra30_periph_clk_enable,
.disable = &tegra30_periph_clk_disable,
- .set_parent = &tegra30_periph_clk_set_parent,
+ .set_parent = &tegra30_dsib_clk_set_parent,
+ .get_parent = &tegra30_periph_clk_get_parent,
.set_rate = &tegra30_periph_clk_set_rate,
.round_rate = &tegra30_periph_clk_round_rate,
- .reset = &tegra30_periph_clk_reset,
+ .recalc_rate = &tegra30_periph_clk_recalc_rate,
};
-
/* Periph extended clock configuration ops */
-static int
-tegra30_vi_clk_cfg_ex(struct clk *c, enum tegra_clk_ex_param p, u32 setting)
+int tegra30_vi_clk_cfg_ex(struct clk_hw *hw,
+ enum tegra_clk_ex_param p, u32 setting)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
+
if (p == TEGRA_CLK_VI_INP_SEL) {
u32 val = clk_readl(c->reg);
val &= ~PERIPH_CLK_VI_SEL_EX_MASK;
@@ -1660,20 +1950,11 @@ tegra30_vi_clk_cfg_ex(struct clk *c, enum tegra_clk_ex_param p, u32 setting)
return -EINVAL;
}
-static struct clk_ops tegra_vi_clk_ops = {
- .init = &tegra30_periph_clk_init,
- .enable = &tegra30_periph_clk_enable,
- .disable = &tegra30_periph_clk_disable,
- .set_parent = &tegra30_periph_clk_set_parent,
- .set_rate = &tegra30_periph_clk_set_rate,
- .round_rate = &tegra30_periph_clk_round_rate,
- .clk_cfg_ex = &tegra30_vi_clk_cfg_ex,
- .reset = &tegra30_periph_clk_reset,
-};
-
-static int
-tegra30_nand_clk_cfg_ex(struct clk *c, enum tegra_clk_ex_param p, u32 setting)
+int tegra30_nand_clk_cfg_ex(struct clk_hw *hw,
+ enum tegra_clk_ex_param p, u32 setting)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
+
if (p == TEGRA_CLK_NAND_PAD_DIV2_ENB) {
u32 val = clk_readl(c->reg);
if (setting)
@@ -1686,21 +1967,11 @@ tegra30_nand_clk_cfg_ex(struct clk *c, enum tegra_clk_ex_param p, u32 setting)
return -EINVAL;
}
-static struct clk_ops tegra_nand_clk_ops = {
- .init = &tegra30_periph_clk_init,
- .enable = &tegra30_periph_clk_enable,
- .disable = &tegra30_periph_clk_disable,
- .set_parent = &tegra30_periph_clk_set_parent,
- .set_rate = &tegra30_periph_clk_set_rate,
- .round_rate = &tegra30_periph_clk_round_rate,
- .clk_cfg_ex = &tegra30_nand_clk_cfg_ex,
- .reset = &tegra30_periph_clk_reset,
-};
-
-
-static int
-tegra30_dtv_clk_cfg_ex(struct clk *c, enum tegra_clk_ex_param p, u32 setting)
+int tegra30_dtv_clk_cfg_ex(struct clk_hw *hw,
+ enum tegra_clk_ex_param p, u32 setting)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
+
if (p == TEGRA_CLK_DTV_INVERT) {
u32 val = clk_readl(c->reg);
if (setting)
@@ -1713,91 +1984,27 @@ tegra30_dtv_clk_cfg_ex(struct clk *c, enum tegra_clk_ex_param p, u32 setting)
return -EINVAL;
}
-static struct clk_ops tegra_dtv_clk_ops = {
- .init = &tegra30_periph_clk_init,
- .enable = &tegra30_periph_clk_enable,
- .disable = &tegra30_periph_clk_disable,
- .set_parent = &tegra30_periph_clk_set_parent,
- .set_rate = &tegra30_periph_clk_set_rate,
- .round_rate = &tegra30_periph_clk_round_rate,
- .clk_cfg_ex = &tegra30_dtv_clk_cfg_ex,
- .reset = &tegra30_periph_clk_reset,
-};
-
-static int tegra30_dsib_clk_set_parent(struct clk *c, struct clk *p)
-{
- const struct clk_mux_sel *sel;
- struct clk *d = tegra_get_clock_by_name("pll_d");
-
- pr_debug("%s: %s %s\n", __func__, c->name, p->name);
-
- for (sel = c->inputs; sel->input != NULL; sel++) {
- if (sel->input == p) {
- if (c->refcnt)
- clk_enable(p);
-
- /* The DSIB parent selection bit is in PLLD base
- register - can not do direct r-m-w, must be
- protected by PLLD lock */
- tegra_clk_cfg_ex(
- d, TEGRA_CLK_PLLD_MIPI_MUX_SEL, sel->value);
-
- if (c->refcnt && c->parent)
- clk_disable(c->parent);
-
- clk_reparent(c, p);
- return 0;
- }
- }
-
- return -EINVAL;
-}
-
-static struct clk_ops tegra_dsib_clk_ops = {
- .init = &tegra30_periph_clk_init,
- .enable = &tegra30_periph_clk_enable,
- .disable = &tegra30_periph_clk_disable,
- .set_parent = &tegra30_dsib_clk_set_parent,
- .set_rate = &tegra30_periph_clk_set_rate,
- .round_rate = &tegra30_periph_clk_round_rate,
- .reset = &tegra30_periph_clk_reset,
-};
-
-/* pciex clock support only reset function */
-static struct clk_ops tegra_pciex_clk_ops = {
- .reset = tegra30_periph_clk_reset,
-};
-
/* Output clock ops */
static DEFINE_SPINLOCK(clk_out_lock);
-static void tegra30_clk_out_init(struct clk *c)
+static int tegra30_clk_out_is_enabled(struct clk_hw *hw)
{
- const struct clk_mux_sel *mux = 0;
- const struct clk_mux_sel *sel;
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val = pmc_readl(c->reg);
c->state = (val & (0x1 << c->u.periph.clk_num)) ? ON : OFF;
c->mul = 1;
c->div = 1;
-
- for (sel = c->inputs; sel->input != NULL; sel++) {
- if (((val & periph_clk_source_mask(c)) >>
- periph_clk_source_shift(c)) == sel->value)
- mux = sel;
- }
- BUG_ON(!mux);
- c->parent = mux->input;
+ return c->state;
}
-static int tegra30_clk_out_enable(struct clk *c)
+static int tegra30_clk_out_enable(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
unsigned long flags;
- pr_debug("%s on clock %s\n", __func__, c->name);
-
spin_lock_irqsave(&clk_out_lock, flags);
val = pmc_readl(c->reg);
val |= (0x1 << c->u.periph.clk_num);
@@ -1807,13 +2014,12 @@ static int tegra30_clk_out_enable(struct clk *c)
return 0;
}
-static void tegra30_clk_out_disable(struct clk *c)
+static void tegra30_clk_out_disable(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
unsigned long flags;
- pr_debug("%s on clock %s\n", __func__, c->name);
-
spin_lock_irqsave(&clk_out_lock, flags);
val = pmc_readl(c->reg);
val &= ~(0x1 << c->u.periph.clk_num);
@@ -1821,59 +2027,59 @@ static void tegra30_clk_out_disable(struct clk *c)
spin_unlock_irqrestore(&clk_out_lock, flags);
}
-static int tegra30_clk_out_set_parent(struct clk *c, struct clk *p)
+static int tegra30_clk_out_set_parent(struct clk_hw *hw, u8 index)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
unsigned long flags;
- const struct clk_mux_sel *sel;
- pr_debug("%s: %s %s\n", __func__, c->name, p->name);
-
- for (sel = c->inputs; sel->input != NULL; sel++) {
- if (sel->input == p) {
- if (c->refcnt)
- clk_enable(p);
+ spin_lock_irqsave(&clk_out_lock, flags);
+ val = pmc_readl(c->reg);
+ val &= ~periph_clk_source_mask(c);
+ val |= (index << periph_clk_source_shift(c));
+ pmc_writel(val, c->reg);
+ spin_unlock_irqrestore(&clk_out_lock, flags);
- spin_lock_irqsave(&clk_out_lock, flags);
- val = pmc_readl(c->reg);
- val &= ~periph_clk_source_mask(c);
- val |= (sel->value << periph_clk_source_shift(c));
- pmc_writel(val, c->reg);
- spin_unlock_irqrestore(&clk_out_lock, flags);
+ return 0;
+}
- if (c->refcnt && c->parent)
- clk_disable(c->parent);
+static u8 tegra30_clk_out_get_parent(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val = pmc_readl(c->reg);
+ int source;
- clk_reparent(c, p);
- return 0;
- }
- }
- return -EINVAL;
+ source = (val & periph_clk_source_mask(c)) >>
+ periph_clk_source_shift(c);
+ return source;
}
-static struct clk_ops tegra_clk_out_ops = {
- .init = &tegra30_clk_out_init,
- .enable = &tegra30_clk_out_enable,
- .disable = &tegra30_clk_out_disable,
- .set_parent = &tegra30_clk_out_set_parent,
+struct clk_ops tegra_clk_out_ops = {
+ .is_enabled = tegra30_clk_out_is_enabled,
+ .enable = tegra30_clk_out_enable,
+ .disable = tegra30_clk_out_disable,
+ .set_parent = tegra30_clk_out_set_parent,
+ .get_parent = tegra30_clk_out_get_parent,
+ .recalc_rate = tegra30_clk_fixed_recalc_rate,
};
-
/* Clock doubler ops */
-static void tegra30_clk_double_init(struct clk *c)
+static int tegra30_clk_double_is_enabled(struct clk_hw *hw)
{
- u32 val = clk_readl(c->reg);
- c->mul = val & (0x1 << c->reg_shift) ? 1 : 2;
- c->div = 1;
+ struct clk_tegra *c = to_clk_tegra(hw);
+
c->state = ON;
if (!(clk_readl(PERIPH_CLK_TO_ENB_REG(c)) & PERIPH_CLK_TO_BIT(c)))
c->state = OFF;
+ return c->state;
};
-static int tegra30_clk_double_set_rate(struct clk *c, unsigned long rate)
+static int tegra30_clk_double_set_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long parent_rate)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
- unsigned long parent_rate = clk_get_rate(c->parent);
+
if (rate == parent_rate) {
val = clk_readl(c->reg) | (0x1 << c->reg_shift);
clk_writel(val, c->reg);
@@ -1890,1215 +2096,200 @@ static int tegra30_clk_double_set_rate(struct clk *c, unsigned long rate)
return -EINVAL;
}
-static struct clk_ops tegra_clk_double_ops = {
- .init = &tegra30_clk_double_init,
- .enable = &tegra30_periph_clk_enable,
- .disable = &tegra30_periph_clk_disable,
- .set_rate = &tegra30_clk_double_set_rate,
-};
+static unsigned long tegra30_clk_double_recalc_rate(struct clk_hw *hw,
+ unsigned long parent_rate)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u64 rate = parent_rate;
-/* Audio sync clock ops */
-static int tegra30_sync_source_set_rate(struct clk *c, unsigned long rate)
+ u32 val = clk_readl(c->reg);
+ c->mul = val & (0x1 << c->reg_shift) ? 1 : 2;
+ c->div = 1;
+
+ if (c->mul != 0 && c->div != 0) {
+ rate *= c->mul;
+ rate += c->div - 1; /* round up */
+ do_div(rate, c->div);
+ }
+
+ return rate;
+}
+
+static long tegra30_clk_double_round_rate(struct clk_hw *hw, unsigned long rate,
+ unsigned long *prate)
{
- c->rate = rate;
- return 0;
+ unsigned long output_rate = *prate;
+
+ do_div(output_rate, 2);
+ return output_rate;
}
-static struct clk_ops tegra_sync_source_ops = {
- .set_rate = &tegra30_sync_source_set_rate,
+struct clk_ops tegra30_clk_double_ops = {
+ .is_enabled = tegra30_clk_double_is_enabled,
+ .enable = tegra30_periph_clk_enable,
+ .disable = tegra30_periph_clk_disable,
+ .recalc_rate = tegra30_clk_double_recalc_rate,
+ .round_rate = tegra30_clk_double_round_rate,
+ .set_rate = tegra30_clk_double_set_rate,
+};
+
+/* Audio sync clock ops */
+struct clk_ops tegra_sync_source_ops = {
+ .recalc_rate = tegra30_clk_fixed_recalc_rate,
};
-static void tegra30_audio_sync_clk_init(struct clk *c)
+static int tegra30_audio_sync_clk_is_enabled(struct clk_hw *hw)
{
- int source;
- const struct clk_mux_sel *sel;
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val = clk_readl(c->reg);
c->state = (val & AUDIO_SYNC_DISABLE_BIT) ? OFF : ON;
- source = val & AUDIO_SYNC_SOURCE_MASK;
- for (sel = c->inputs; sel->input != NULL; sel++)
- if (sel->value == source)
- break;
- BUG_ON(sel->input == NULL);
- c->parent = sel->input;
+ return c->state;
}
-static int tegra30_audio_sync_clk_enable(struct clk *c)
+static int tegra30_audio_sync_clk_enable(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val = clk_readl(c->reg);
clk_writel((val & (~AUDIO_SYNC_DISABLE_BIT)), c->reg);
return 0;
}
-static void tegra30_audio_sync_clk_disable(struct clk *c)
+static void tegra30_audio_sync_clk_disable(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val = clk_readl(c->reg);
clk_writel((val | AUDIO_SYNC_DISABLE_BIT), c->reg);
}
-static int tegra30_audio_sync_clk_set_parent(struct clk *c, struct clk *p)
+static int tegra30_audio_sync_clk_set_parent(struct clk_hw *hw, u8 index)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val;
- const struct clk_mux_sel *sel;
- for (sel = c->inputs; sel->input != NULL; sel++) {
- if (sel->input == p) {
- val = clk_readl(c->reg);
- val &= ~AUDIO_SYNC_SOURCE_MASK;
- val |= sel->value;
-
- if (c->refcnt)
- clk_enable(p);
- clk_writel(val, c->reg);
+ val = clk_readl(c->reg);
+ val &= ~AUDIO_SYNC_SOURCE_MASK;
+ val |= index;
- if (c->refcnt && c->parent)
- clk_disable(c->parent);
+ clk_writel(val, c->reg);
+ return 0;
+}
- clk_reparent(c, p);
- return 0;
- }
- }
+static u8 tegra30_audio_sync_clk_get_parent(struct clk_hw *hw)
+{
+ struct clk_tegra *c = to_clk_tegra(hw);
+ u32 val = clk_readl(c->reg);
+ int source;
- return -EINVAL;
+ source = val & AUDIO_SYNC_SOURCE_MASK;
+ return source;
}
-static struct clk_ops tegra_audio_sync_clk_ops = {
- .init = tegra30_audio_sync_clk_init,
- .enable = tegra30_audio_sync_clk_enable,
- .disable = tegra30_audio_sync_clk_disable,
+struct clk_ops tegra30_audio_sync_clk_ops = {
+ .is_enabled = tegra30_audio_sync_clk_is_enabled,
+ .enable = tegra30_audio_sync_clk_enable,
+ .disable = tegra30_audio_sync_clk_disable,
.set_parent = tegra30_audio_sync_clk_set_parent,
+ .get_parent = tegra30_audio_sync_clk_get_parent,
+ .recalc_rate = tegra30_clk_fixed_recalc_rate,
};
/* cml0 (pcie), and cml1 (sata) clock ops */
-static void tegra30_cml_clk_init(struct clk *c)
+static int tegra30_cml_clk_is_enabled(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
u32 val = clk_readl(c->reg);
c->state = val & (0x1 << c->u.periph.clk_num) ? ON : OFF;
+ return c->state;
}
-static int tegra30_cml_clk_enable(struct clk *c)
+static int tegra30_cml_clk_enable(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
+
u32 val = clk_readl(c->reg);
val |= (0x1 << c->u.periph.clk_num);
clk_writel(val, c->reg);
+
return 0;
}
-static void tegra30_cml_clk_disable(struct clk *c)
+static void tegra30_cml_clk_disable(struct clk_hw *hw)
{
+ struct clk_tegra *c = to_clk_tegra(hw);
+
u32 val = clk_readl(c->reg);
val &= ~(0x1 << c->u.periph.clk_num);
clk_writel(val, c->reg);
}
-static struct clk_ops tegra_cml_clk_ops = {
- .init = &tegra30_cml_clk_init,
- .enable = &tegra30_cml_clk_enable,
- .disable = &tegra30_cml_clk_disable,
-};
-
-/* Clock definitions */
-static struct clk tegra_clk_32k = {
- .name = "clk_32k",
- .rate = 32768,
- .ops = NULL,
- .max_rate = 32768,
-};
-
-static struct clk tegra_clk_m = {
- .name = "clk_m",
- .flags = ENABLE_ON_INIT,
- .ops = &tegra_clk_m_ops,
- .reg = 0x1fc,
- .reg_shift = 28,
- .max_rate = 48000000,
-};
-
-static struct clk tegra_clk_m_div2 = {
- .name = "clk_m_div2",
- .ops = &tegra_clk_m_div_ops,
- .parent = &tegra_clk_m,
- .mul = 1,
- .div = 2,
- .state = ON,
- .max_rate = 24000000,
-};
-
-static struct clk tegra_clk_m_div4 = {
- .name = "clk_m_div4",
- .ops = &tegra_clk_m_div_ops,
- .parent = &tegra_clk_m,
- .mul = 1,
- .div = 4,
- .state = ON,
- .max_rate = 12000000,
-};
-
-static struct clk tegra_pll_ref = {
- .name = "pll_ref",
- .flags = ENABLE_ON_INIT,
- .ops = &tegra_pll_ref_ops,
- .parent = &tegra_clk_m,
- .max_rate = 26000000,
-};
-
-static struct clk_pll_freq_table tegra_pll_c_freq_table[] = {
- { 12000000, 1040000000, 520, 6, 1, 8},
- { 13000000, 1040000000, 480, 6, 1, 8},
- { 16800000, 1040000000, 495, 8, 1, 8}, /* actual: 1039.5 MHz */
- { 19200000, 1040000000, 325, 6, 1, 6},
- { 26000000, 1040000000, 520, 13, 1, 8},
-
- { 12000000, 832000000, 416, 6, 1, 8},
- { 13000000, 832000000, 832, 13, 1, 8},
- { 16800000, 832000000, 396, 8, 1, 8}, /* actual: 831.6 MHz */
- { 19200000, 832000000, 260, 6, 1, 8},
- { 26000000, 832000000, 416, 13, 1, 8},
-
- { 12000000, 624000000, 624, 12, 1, 8},
- { 13000000, 624000000, 624, 13, 1, 8},
- { 16800000, 600000000, 520, 14, 1, 8},
- { 19200000, 624000000, 520, 16, 1, 8},
- { 26000000, 624000000, 624, 26, 1, 8},
-
- { 12000000, 600000000, 600, 12, 1, 8},
- { 13000000, 600000000, 600, 13, 1, 8},
- { 16800000, 600000000, 500, 14, 1, 8},
- { 19200000, 600000000, 375, 12, 1, 6},
- { 26000000, 600000000, 600, 26, 1, 8},
-
- { 12000000, 520000000, 520, 12, 1, 8},
- { 13000000, 520000000, 520, 13, 1, 8},
- { 16800000, 520000000, 495, 16, 1, 8}, /* actual: 519.75 MHz */
- { 19200000, 520000000, 325, 12, 1, 6},
- { 26000000, 520000000, 520, 26, 1, 8},
-
- { 12000000, 416000000, 416, 12, 1, 8},
- { 13000000, 416000000, 416, 13, 1, 8},
- { 16800000, 416000000, 396, 16, 1, 8}, /* actual: 415.8 MHz */
- { 19200000, 416000000, 260, 12, 1, 6},
- { 26000000, 416000000, 416, 26, 1, 8},
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_c = {
- .name = "pll_c",
- .flags = PLL_HAS_CPCON,
- .ops = &tegra_pll_ops,
- .reg = 0x80,
- .parent = &tegra_pll_ref,
- .max_rate = 1400000000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 31000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 20000000,
- .vco_max = 1400000000,
- .freq_table = tegra_pll_c_freq_table,
- .lock_delay = 300,
- },
-};
-
-static struct clk tegra_pll_c_out1 = {
- .name = "pll_c_out1",
- .ops = &tegra_pll_div_ops,
- .flags = DIV_U71,
- .parent = &tegra_pll_c,
- .reg = 0x84,
- .reg_shift = 0,
- .max_rate = 700000000,
-};
-
-static struct clk_pll_freq_table tegra_pll_m_freq_table[] = {
- { 12000000, 666000000, 666, 12, 1, 8},
- { 13000000, 666000000, 666, 13, 1, 8},
- { 16800000, 666000000, 555, 14, 1, 8},
- { 19200000, 666000000, 555, 16, 1, 8},
- { 26000000, 666000000, 666, 26, 1, 8},
- { 12000000, 600000000, 600, 12, 1, 8},
- { 13000000, 600000000, 600, 13, 1, 8},
- { 16800000, 600000000, 500, 14, 1, 8},
- { 19200000, 600000000, 375, 12, 1, 6},
- { 26000000, 600000000, 600, 26, 1, 8},
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_m = {
- .name = "pll_m",
- .flags = PLL_HAS_CPCON | PLLM,
- .ops = &tegra_pll_ops,
- .reg = 0x90,
- .parent = &tegra_pll_ref,
- .max_rate = 800000000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 31000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 20000000,
- .vco_max = 1200000000,
- .freq_table = tegra_pll_m_freq_table,
- .lock_delay = 300,
- },
-};
-
-static struct clk tegra_pll_m_out1 = {
- .name = "pll_m_out1",
- .ops = &tegra_pll_div_ops,
- .flags = DIV_U71,
- .parent = &tegra_pll_m,
- .reg = 0x94,
- .reg_shift = 0,
- .max_rate = 600000000,
-};
-
-static struct clk_pll_freq_table tegra_pll_p_freq_table[] = {
- { 12000000, 216000000, 432, 12, 2, 8},
- { 13000000, 216000000, 432, 13, 2, 8},
- { 16800000, 216000000, 360, 14, 2, 8},
- { 19200000, 216000000, 360, 16, 2, 8},
- { 26000000, 216000000, 432, 26, 2, 8},
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_p = {
- .name = "pll_p",
- .flags = ENABLE_ON_INIT | PLL_FIXED | PLL_HAS_CPCON,
- .ops = &tegra_pll_ops,
- .reg = 0xa0,
- .parent = &tegra_pll_ref,
- .max_rate = 432000000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 31000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 20000000,
- .vco_max = 1400000000,
- .freq_table = tegra_pll_p_freq_table,
- .lock_delay = 300,
- .fixed_rate = 408000000,
- },
-};
-
-static struct clk tegra_pll_p_out1 = {
- .name = "pll_p_out1",
- .ops = &tegra_pll_div_ops,
- .flags = ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED,
- .parent = &tegra_pll_p,
- .reg = 0xa4,
- .reg_shift = 0,
- .max_rate = 432000000,
-};
-
-static struct clk tegra_pll_p_out2 = {
- .name = "pll_p_out2",
- .ops = &tegra_pll_div_ops,
- .flags = ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED,
- .parent = &tegra_pll_p,
- .reg = 0xa4,
- .reg_shift = 16,
- .max_rate = 432000000,
-};
-
-static struct clk tegra_pll_p_out3 = {
- .name = "pll_p_out3",
- .ops = &tegra_pll_div_ops,
- .flags = ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED,
- .parent = &tegra_pll_p,
- .reg = 0xa8,
- .reg_shift = 0,
- .max_rate = 432000000,
-};
-
-static struct clk tegra_pll_p_out4 = {
- .name = "pll_p_out4",
- .ops = &tegra_pll_div_ops,
- .flags = ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED,
- .parent = &tegra_pll_p,
- .reg = 0xa8,
- .reg_shift = 16,
- .max_rate = 432000000,
-};
-
-static struct clk_pll_freq_table tegra_pll_a_freq_table[] = {
- { 9600000, 564480000, 294, 5, 1, 4},
- { 9600000, 552960000, 288, 5, 1, 4},
- { 9600000, 24000000, 5, 2, 1, 1},
-
- { 28800000, 56448000, 49, 25, 1, 1},
- { 28800000, 73728000, 64, 25, 1, 1},
- { 28800000, 24000000, 5, 6, 1, 1},
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_a = {
- .name = "pll_a",
- .flags = PLL_HAS_CPCON,
- .ops = &tegra_pll_ops,
- .reg = 0xb0,
- .parent = &tegra_pll_p_out1,
- .max_rate = 700000000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 31000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 20000000,
- .vco_max = 1400000000,
- .freq_table = tegra_pll_a_freq_table,
- .lock_delay = 300,
- },
-};
-
-static struct clk tegra_pll_a_out0 = {
- .name = "pll_a_out0",
- .ops = &tegra_pll_div_ops,
- .flags = DIV_U71,
- .parent = &tegra_pll_a,
- .reg = 0xb4,
- .reg_shift = 0,
- .max_rate = 100000000,
-};
-
-static struct clk_pll_freq_table tegra_pll_d_freq_table[] = {
- { 12000000, 216000000, 216, 12, 1, 4},
- { 13000000, 216000000, 216, 13, 1, 4},
- { 16800000, 216000000, 180, 14, 1, 4},
- { 19200000, 216000000, 180, 16, 1, 4},
- { 26000000, 216000000, 216, 26, 1, 4},
-
- { 12000000, 594000000, 594, 12, 1, 8},
- { 13000000, 594000000, 594, 13, 1, 8},
- { 16800000, 594000000, 495, 14, 1, 8},
- { 19200000, 594000000, 495, 16, 1, 8},
- { 26000000, 594000000, 594, 26, 1, 8},
-
- { 12000000, 1000000000, 1000, 12, 1, 12},
- { 13000000, 1000000000, 1000, 13, 1, 12},
- { 19200000, 1000000000, 625, 12, 1, 8},
- { 26000000, 1000000000, 1000, 26, 1, 12},
-
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_d = {
- .name = "pll_d",
- .flags = PLL_HAS_CPCON | PLLD,
- .ops = &tegra_plld_ops,
- .reg = 0xd0,
- .parent = &tegra_pll_ref,
- .max_rate = 1000000000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 40000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 40000000,
- .vco_max = 1000000000,
- .freq_table = tegra_pll_d_freq_table,
- .lock_delay = 1000,
- },
-};
-
-static struct clk tegra_pll_d_out0 = {
- .name = "pll_d_out0",
- .ops = &tegra_pll_div_ops,
- .flags = DIV_2 | PLLD,
- .parent = &tegra_pll_d,
- .max_rate = 500000000,
-};
-
-static struct clk tegra_pll_d2 = {
- .name = "pll_d2",
- .flags = PLL_HAS_CPCON | PLL_ALT_MISC_REG | PLLD,
- .ops = &tegra_plld_ops,
- .reg = 0x4b8,
- .parent = &tegra_pll_ref,
- .max_rate = 1000000000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 40000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 40000000,
- .vco_max = 1000000000,
- .freq_table = tegra_pll_d_freq_table,
- .lock_delay = 1000,
- },
-};
-
-static struct clk tegra_pll_d2_out0 = {
- .name = "pll_d2_out0",
- .ops = &tegra_pll_div_ops,
- .flags = DIV_2 | PLLD,
- .parent = &tegra_pll_d2,
- .max_rate = 500000000,
-};
-
-static struct clk_pll_freq_table tegra_pll_u_freq_table[] = {
- { 12000000, 480000000, 960, 12, 2, 12},
- { 13000000, 480000000, 960, 13, 2, 12},
- { 16800000, 480000000, 400, 7, 2, 5},
- { 19200000, 480000000, 200, 4, 2, 3},
- { 26000000, 480000000, 960, 26, 2, 12},
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_u = {
- .name = "pll_u",
- .flags = PLL_HAS_CPCON | PLLU,
- .ops = &tegra_pll_ops,
- .reg = 0xc0,
- .parent = &tegra_pll_ref,
- .max_rate = 480000000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 40000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 480000000,
- .vco_max = 960000000,
- .freq_table = tegra_pll_u_freq_table,
- .lock_delay = 1000,
- },
-};
-
-static struct clk_pll_freq_table tegra_pll_x_freq_table[] = {
- /* 1.7 GHz */
- { 12000000, 1700000000, 850, 6, 1, 8},
- { 13000000, 1700000000, 915, 7, 1, 8}, /* actual: 1699.2 MHz */
- { 16800000, 1700000000, 708, 7, 1, 8}, /* actual: 1699.2 MHz */
- { 19200000, 1700000000, 885, 10, 1, 8}, /* actual: 1699.2 MHz */
- { 26000000, 1700000000, 850, 13, 1, 8},
-
- /* 1.6 GHz */
- { 12000000, 1600000000, 800, 6, 1, 8},
- { 13000000, 1600000000, 738, 6, 1, 8}, /* actual: 1599.0 MHz */
- { 16800000, 1600000000, 857, 9, 1, 8}, /* actual: 1599.7 MHz */
- { 19200000, 1600000000, 500, 6, 1, 8},
- { 26000000, 1600000000, 800, 13, 1, 8},
-
- /* 1.5 GHz */
- { 12000000, 1500000000, 750, 6, 1, 8},
- { 13000000, 1500000000, 923, 8, 1, 8}, /* actual: 1499.8 MHz */
- { 16800000, 1500000000, 625, 7, 1, 8},
- { 19200000, 1500000000, 625, 8, 1, 8},
- { 26000000, 1500000000, 750, 13, 1, 8},
-
- /* 1.4 GHz */
- { 12000000, 1400000000, 700, 6, 1, 8},
- { 13000000, 1400000000, 969, 9, 1, 8}, /* actual: 1399.7 MHz */
- { 16800000, 1400000000, 1000, 12, 1, 8},
- { 19200000, 1400000000, 875, 12, 1, 8},
- { 26000000, 1400000000, 700, 13, 1, 8},
-
- /* 1.3 GHz */
- { 12000000, 1300000000, 975, 9, 1, 8},
- { 13000000, 1300000000, 1000, 10, 1, 8},
- { 16800000, 1300000000, 928, 12, 1, 8}, /* actual: 1299.2 MHz */
- { 19200000, 1300000000, 812, 12, 1, 8}, /* actual: 1299.2 MHz */
- { 26000000, 1300000000, 650, 13, 1, 8},
-
- /* 1.2 GHz */
- { 12000000, 1200000000, 1000, 10, 1, 8},
- { 13000000, 1200000000, 923, 10, 1, 8}, /* actual: 1199.9 MHz */
- { 16800000, 1200000000, 1000, 14, 1, 8},
- { 19200000, 1200000000, 1000, 16, 1, 8},
- { 26000000, 1200000000, 600, 13, 1, 8},
-
- /* 1.1 GHz */
- { 12000000, 1100000000, 825, 9, 1, 8},
- { 13000000, 1100000000, 846, 10, 1, 8}, /* actual: 1099.8 MHz */
- { 16800000, 1100000000, 982, 15, 1, 8}, /* actual: 1099.8 MHz */
- { 19200000, 1100000000, 859, 15, 1, 8}, /* actual: 1099.5 MHz */
- { 26000000, 1100000000, 550, 13, 1, 8},
-
- /* 1 GHz */
- { 12000000, 1000000000, 1000, 12, 1, 8},
- { 13000000, 1000000000, 1000, 13, 1, 8},
- { 16800000, 1000000000, 833, 14, 1, 8}, /* actual: 999.6 MHz */
- { 19200000, 1000000000, 625, 12, 1, 8},
- { 26000000, 1000000000, 1000, 26, 1, 8},
-
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_x = {
- .name = "pll_x",
- .flags = PLL_HAS_CPCON | PLL_ALT_MISC_REG | PLLX,
- .ops = &tegra_pll_ops,
- .reg = 0xe0,
- .parent = &tegra_pll_ref,
- .max_rate = 1700000000,
- .u.pll = {
- .input_min = 2000000,
- .input_max = 31000000,
- .cf_min = 1000000,
- .cf_max = 6000000,
- .vco_min = 20000000,
- .vco_max = 1700000000,
- .freq_table = tegra_pll_x_freq_table,
- .lock_delay = 300,
- },
-};
-
-static struct clk tegra_pll_x_out0 = {
- .name = "pll_x_out0",
- .ops = &tegra_pll_div_ops,
- .flags = DIV_2 | PLLX,
- .parent = &tegra_pll_x,
- .max_rate = 850000000,
-};
-
-
-static struct clk_pll_freq_table tegra_pll_e_freq_table[] = {
- /* PLLE special case: use cpcon field to store cml divider value */
- { 12000000, 100000000, 150, 1, 18, 11},
- { 216000000, 100000000, 200, 18, 24, 13},
- { 0, 0, 0, 0, 0, 0 },
-};
-
-static struct clk tegra_pll_e = {
- .name = "pll_e",
- .flags = PLL_ALT_MISC_REG,
- .ops = &tegra_plle_ops,
- .reg = 0xe8,
- .max_rate = 100000000,
- .u.pll = {
- .input_min = 12000000,
- .input_max = 216000000,
- .cf_min = 12000000,
- .cf_max = 12000000,
- .vco_min = 1200000000,
- .vco_max = 2400000000U,
- .freq_table = tegra_pll_e_freq_table,
- .lock_delay = 300,
- .fixed_rate = 100000000,
- },
-};
-
-static struct clk tegra_cml0_clk = {
- .name = "cml0",
- .parent = &tegra_pll_e,
- .ops = &tegra_cml_clk_ops,
- .reg = PLLE_AUX,
- .max_rate = 100000000,
- .u.periph = {
- .clk_num = 0,
- },
-};
-
-static struct clk tegra_cml1_clk = {
- .name = "cml1",
- .parent = &tegra_pll_e,
- .ops = &tegra_cml_clk_ops,
- .reg = PLLE_AUX,
- .max_rate = 100000000,
- .u.periph = {
- .clk_num = 1,
- },
-};
-
-static struct clk tegra_pciex_clk = {
- .name = "pciex",
- .parent = &tegra_pll_e,
- .ops = &tegra_pciex_clk_ops,
- .max_rate = 100000000,
- .u.periph = {
- .clk_num = 74,
- },
-};
-
-/* Audio sync clocks */
-#define SYNC_SOURCE(_id) \
- { \
- .name = #_id "_sync", \
- .rate = 24000000, \
- .max_rate = 24000000, \
- .ops = &tegra_sync_source_ops \
- }
-static struct clk tegra_sync_source_list[] = {
- SYNC_SOURCE(spdif_in),
- SYNC_SOURCE(i2s0),
- SYNC_SOURCE(i2s1),
- SYNC_SOURCE(i2s2),
- SYNC_SOURCE(i2s3),
- SYNC_SOURCE(i2s4),
- SYNC_SOURCE(vimclk),
-};
-
-static struct clk_mux_sel mux_audio_sync_clk[] = {
- { .input = &tegra_sync_source_list[0], .value = 0},
- { .input = &tegra_sync_source_list[1], .value = 1},
- { .input = &tegra_sync_source_list[2], .value = 2},
- { .input = &tegra_sync_source_list[3], .value = 3},
- { .input = &tegra_sync_source_list[4], .value = 4},
- { .input = &tegra_sync_source_list[5], .value = 5},
- { .input = &tegra_pll_a_out0, .value = 6},
- { .input = &tegra_sync_source_list[6], .value = 7},
- { 0, 0 }
+struct clk_ops tegra_cml_clk_ops = {
+ .is_enabled = tegra30_cml_clk_is_enabled,
+ .enable = tegra30_cml_clk_enable,
+ .disable = tegra30_cml_clk_disable,
+ .recalc_rate = tegra30_clk_fixed_recalc_rate,
};
-#define AUDIO_SYNC_CLK(_id, _index) \
- { \
- .name = #_id, \
- .inputs = mux_audio_sync_clk, \
- .reg = 0x4A0 + (_index) * 4, \
- .max_rate = 24000000, \
- .ops = &tegra_audio_sync_clk_ops \
- }
-static struct clk tegra_clk_audio_list[] = {
- AUDIO_SYNC_CLK(audio0, 0),
- AUDIO_SYNC_CLK(audio1, 1),
- AUDIO_SYNC_CLK(audio2, 2),
- AUDIO_SYNC_CLK(audio3, 3),
- AUDIO_SYNC_CLK(audio4, 4),
- AUDIO_SYNC_CLK(audio, 5), /* SPDIF */
+struct clk_ops tegra_pciex_clk_ops = {
+ .recalc_rate = tegra30_clk_fixed_recalc_rate,
};
-#define AUDIO_SYNC_2X_CLK(_id, _index) \
- { \
- .name = #_id "_2x", \
- .flags = PERIPH_NO_RESET, \
- .max_rate = 48000000, \
- .ops = &tegra_clk_double_ops, \
- .reg = 0x49C, \
- .reg_shift = 24 + (_index), \
- .parent = &tegra_clk_audio_list[(_index)], \
- .u.periph = { \
- .clk_num = 113 + (_index), \
- }, \
- }
-static struct clk tegra_clk_audio_2x_list[] = {
- AUDIO_SYNC_2X_CLK(audio0, 0),
- AUDIO_SYNC_2X_CLK(audio1, 1),
- AUDIO_SYNC_2X_CLK(audio2, 2),
- AUDIO_SYNC_2X_CLK(audio3, 3),
- AUDIO_SYNC_2X_CLK(audio4, 4),
- AUDIO_SYNC_2X_CLK(audio, 5), /* SPDIF */
-};
+/* Tegra30 CPU clock and reset control functions */
+static void tegra30_wait_cpu_in_reset(u32 cpu)
+{
+ unsigned int reg;
-#define MUX_I2S_SPDIF(_id, _index) \
-static struct clk_mux_sel mux_pllaout0_##_id##_2x_pllp_clkm[] = { \
- {.input = &tegra_pll_a_out0, .value = 0}, \
- {.input = &tegra_clk_audio_2x_list[(_index)], .value = 1}, \
- {.input = &tegra_pll_p, .value = 2}, \
- {.input = &tegra_clk_m, .value = 3}, \
- { 0, 0}, \
-}
-MUX_I2S_SPDIF(audio0, 0);
-MUX_I2S_SPDIF(audio1, 1);
-MUX_I2S_SPDIF(audio2, 2);
-MUX_I2S_SPDIF(audio3, 3);
-MUX_I2S_SPDIF(audio4, 4);
-MUX_I2S_SPDIF(audio, 5); /* SPDIF */
-
-/* External clock outputs (through PMC) */
-#define MUX_EXTERN_OUT(_id) \
-static struct clk_mux_sel mux_clkm_clkm2_clkm4_extern##_id[] = { \
- {.input = &tegra_clk_m, .value = 0}, \
- {.input = &tegra_clk_m_div2, .value = 1}, \
- {.input = &tegra_clk_m_div4, .value = 2}, \
- {.input = NULL, .value = 3}, /* placeholder */ \
- { 0, 0}, \
-}
-MUX_EXTERN_OUT(1);
-MUX_EXTERN_OUT(2);
-MUX_EXTERN_OUT(3);
-
-static struct clk_mux_sel *mux_extern_out_list[] = {
- mux_clkm_clkm2_clkm4_extern1,
- mux_clkm_clkm2_clkm4_extern2,
- mux_clkm_clkm2_clkm4_extern3,
-};
+ do {
+ reg = readl(reg_clk_base +
+ TEGRA30_CLK_RST_CONTROLLER_CPU_CMPLX_STATUS);
+ cpu_relax();
+ } while (!(reg & (1 << cpu))); /* check CPU been reset or not */
-#define CLK_OUT_CLK(_id) \
- { \
- .name = "clk_out_" #_id, \
- .lookup = { \
- .dev_id = "clk_out_" #_id, \
- .con_id = "extern" #_id, \
- }, \
- .ops = &tegra_clk_out_ops, \
- .reg = 0x1a8, \
- .inputs = mux_clkm_clkm2_clkm4_extern##_id, \
- .flags = MUX_CLK_OUT, \
- .max_rate = 216000000, \
- .u.periph = { \
- .clk_num = (_id - 1) * 8 + 2, \
- }, \
- }
-static struct clk tegra_clk_out_list[] = {
- CLK_OUT_CLK(1),
- CLK_OUT_CLK(2),
- CLK_OUT_CLK(3),
-};
+ return;
+}
-/* called after peripheral external clocks are initialized */
-static void init_clk_out_mux(void)
+static void tegra30_put_cpu_in_reset(u32 cpu)
{
- int i;
- struct clk *c;
-
- /* output clock con_id is the name of peripheral
- external clock connected to input 3 of the output mux */
- for (i = 0; i < ARRAY_SIZE(tegra_clk_out_list); i++) {
- c = tegra_get_clock_by_name(
- tegra_clk_out_list[i].lookup.con_id);
- if (!c)
- pr_err("%s: could not find clk %s\n", __func__,
- tegra_clk_out_list[i].lookup.con_id);
- mux_extern_out_list[i][3].input = c;
- }
+ writel(CPU_RESET(cpu),
+ reg_clk_base + TEGRA_CLK_RST_CONTROLLER_RST_CPU_CMPLX_SET);
+ dmb();
}
-/* Peripheral muxes */
-static struct clk_mux_sel mux_sclk[] = {
- { .input = &tegra_clk_m, .value = 0},
- { .input = &tegra_pll_c_out1, .value = 1},
- { .input = &tegra_pll_p_out4, .value = 2},
- { .input = &tegra_pll_p_out3, .value = 3},
- { .input = &tegra_pll_p_out2, .value = 4},
- /* { .input = &tegra_clk_d, .value = 5}, - no use on tegra30 */
- { .input = &tegra_clk_32k, .value = 6},
- { .input = &tegra_pll_m_out1, .value = 7},
- { 0, 0},
-};
-
-static struct clk tegra_clk_sclk = {
- .name = "sclk",
- .inputs = mux_sclk,
- .reg = 0x28,
- .ops = &tegra_super_ops,
- .max_rate = 334000000,
- .min_rate = 40000000,
-};
-
-static struct clk tegra_clk_blink = {
- .name = "blink",
- .parent = &tegra_clk_32k,
- .reg = 0x40,
- .ops = &tegra_blink_clk_ops,
- .max_rate = 32768,
-};
-
-static struct clk_mux_sel mux_pllm_pllc_pllp_plla[] = {
- { .input = &tegra_pll_m, .value = 0},
- { .input = &tegra_pll_c, .value = 1},
- { .input = &tegra_pll_p, .value = 2},
- { .input = &tegra_pll_a_out0, .value = 3},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_pllp_pllc_pllm_clkm[] = {
- { .input = &tegra_pll_p, .value = 0},
- { .input = &tegra_pll_c, .value = 1},
- { .input = &tegra_pll_m, .value = 2},
- { .input = &tegra_clk_m, .value = 3},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_pllp_clkm[] = {
- { .input = &tegra_pll_p, .value = 0},
- { .input = &tegra_clk_m, .value = 3},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_pllp_plld_pllc_clkm[] = {
- {.input = &tegra_pll_p, .value = 0},
- {.input = &tegra_pll_d_out0, .value = 1},
- {.input = &tegra_pll_c, .value = 2},
- {.input = &tegra_clk_m, .value = 3},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_pllp_pllm_plld_plla_pllc_plld2_clkm[] = {
- {.input = &tegra_pll_p, .value = 0},
- {.input = &tegra_pll_m, .value = 1},
- {.input = &tegra_pll_d_out0, .value = 2},
- {.input = &tegra_pll_a_out0, .value = 3},
- {.input = &tegra_pll_c, .value = 4},
- {.input = &tegra_pll_d2_out0, .value = 5},
- {.input = &tegra_clk_m, .value = 6},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_plla_pllc_pllp_clkm[] = {
- { .input = &tegra_pll_a_out0, .value = 0},
- /* { .input = &tegra_pll_c, .value = 1}, no use on tegra30 */
- { .input = &tegra_pll_p, .value = 2},
- { .input = &tegra_clk_m, .value = 3},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_pllp_pllc_clk32_clkm[] = {
- {.input = &tegra_pll_p, .value = 0},
- {.input = &tegra_pll_c, .value = 1},
- {.input = &tegra_clk_32k, .value = 2},
- {.input = &tegra_clk_m, .value = 3},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_pllp_pllc_clkm_clk32[] = {
- {.input = &tegra_pll_p, .value = 0},
- {.input = &tegra_pll_c, .value = 1},
- {.input = &tegra_clk_m, .value = 2},
- {.input = &tegra_clk_32k, .value = 3},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_pllp_pllc_pllm[] = {
- {.input = &tegra_pll_p, .value = 0},
- {.input = &tegra_pll_c, .value = 1},
- {.input = &tegra_pll_m, .value = 2},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_clk_m[] = {
- { .input = &tegra_clk_m, .value = 0},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_pllp_out3[] = {
- { .input = &tegra_pll_p_out3, .value = 0},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_plld_out0[] = {
- { .input = &tegra_pll_d_out0, .value = 0},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_plld_out0_plld2_out0[] = {
- { .input = &tegra_pll_d_out0, .value = 0},
- { .input = &tegra_pll_d2_out0, .value = 1},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_clk_32k[] = {
- { .input = &tegra_clk_32k, .value = 0},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_plla_clk32_pllp_clkm_plle[] = {
- { .input = &tegra_pll_a_out0, .value = 0},
- { .input = &tegra_clk_32k, .value = 1},
- { .input = &tegra_pll_p, .value = 2},
- { .input = &tegra_clk_m, .value = 3},
- { .input = &tegra_pll_e, .value = 4},
- { 0, 0},
-};
-
-static struct clk_mux_sel mux_cclk_g[] = {
- { .input = &tegra_clk_m, .value = 0},
- { .input = &tegra_pll_c, .value = 1},
- { .input = &tegra_clk_32k, .value = 2},
- { .input = &tegra_pll_m, .value = 3},
- { .input = &tegra_pll_p, .value = 4},
- { .input = &tegra_pll_p_out4, .value = 5},
- { .input = &tegra_pll_p_out3, .value = 6},
- { .input = &tegra_pll_x, .value = 8},
- { 0, 0},
-};
-
-static struct clk tegra_clk_cclk_g = {
- .name = "cclk_g",
- .flags = DIV_U71 | DIV_U71_INT,
- .inputs = mux_cclk_g,
- .reg = 0x368,
- .ops = &tegra_super_ops,
- .max_rate = 1700000000,
-};
-
-static struct clk tegra30_clk_twd = {
- .parent = &tegra_clk_cclk_g,
- .name = "twd",
- .ops = &tegra30_twd_ops,
- .max_rate = 1400000000, /* Same as tegra_clk_cpu_cmplx.max_rate */
- .mul = 1,
- .div = 2,
-};
-
-#define PERIPH_CLK(_name, _dev, _con, _clk_num, _reg, _max, _inputs, _flags) \
- { \
- .name = _name, \
- .lookup = { \
- .dev_id = _dev, \
- .con_id = _con, \
- }, \
- .ops = &tegra_periph_clk_ops, \
- .reg = _reg, \
- .inputs = _inputs, \
- .flags = _flags, \
- .max_rate = _max, \
- .u.periph = { \
- .clk_num = _clk_num, \
- }, \
- }
-
-#define PERIPH_CLK_EX(_name, _dev, _con, _clk_num, _reg, _max, _inputs, \
- _flags, _ops) \
- { \
- .name = _name, \
- .lookup = { \
- .dev_id = _dev, \
- .con_id = _con, \
- }, \
- .ops = _ops, \
- .reg = _reg, \
- .inputs = _inputs, \
- .flags = _flags, \
- .max_rate = _max, \
- .u.periph = { \
- .clk_num = _clk_num, \
- }, \
- }
-
-#define SHARED_CLK(_name, _dev, _con, _parent, _id, _div, _mode)\
- { \
- .name = _name, \
- .lookup = { \
- .dev_id = _dev, \
- .con_id = _con, \
- }, \
- .ops = &tegra_clk_shared_bus_ops, \
- .parent = _parent, \
- .u.shared_bus_user = { \
- .client_id = _id, \
- .client_div = _div, \
- .mode = _mode, \
- }, \
- }
-struct clk tegra_list_clks[] = {
- PERIPH_CLK("apbdma", "tegra-apbdma", NULL, 34, 0, 26000000, mux_clk_m, 0),
- PERIPH_CLK("rtc", "rtc-tegra", NULL, 4, 0, 32768, mux_clk_32k, PERIPH_NO_RESET | PERIPH_ON_APB),
- PERIPH_CLK("kbc", "tegra-kbc", NULL, 36, 0, 32768, mux_clk_32k, PERIPH_NO_RESET | PERIPH_ON_APB),
- PERIPH_CLK("timer", "timer", NULL, 5, 0, 26000000, mux_clk_m, 0),
- PERIPH_CLK("kfuse", "kfuse-tegra", NULL, 40, 0, 26000000, mux_clk_m, 0),
- PERIPH_CLK("fuse", "fuse-tegra", "fuse", 39, 0, 26000000, mux_clk_m, PERIPH_ON_APB),
- PERIPH_CLK("fuse_burn", "fuse-tegra", "fuse_burn", 39, 0, 26000000, mux_clk_m, PERIPH_ON_APB),
- PERIPH_CLK("apbif", "tegra30-ahub", "apbif", 107, 0, 26000000, mux_clk_m, 0),
- PERIPH_CLK("i2s0", "tegra30-i2s.0", NULL, 30, 0x1d8, 26000000, mux_pllaout0_audio0_2x_pllp_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("i2s1", "tegra30-i2s.1", NULL, 11, 0x100, 26000000, mux_pllaout0_audio1_2x_pllp_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("i2s2", "tegra30-i2s.2", NULL, 18, 0x104, 26000000, mux_pllaout0_audio2_2x_pllp_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("i2s3", "tegra30-i2s.3", NULL, 101, 0x3bc, 26000000, mux_pllaout0_audio3_2x_pllp_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("i2s4", "tegra30-i2s.4", NULL, 102, 0x3c0, 26000000, mux_pllaout0_audio4_2x_pllp_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("spdif_out", "tegra30-spdif", "spdif_out", 10, 0x108, 100000000, mux_pllaout0_audio_2x_pllp_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("spdif_in", "tegra30-spdif", "spdif_in", 10, 0x10c, 100000000, mux_pllp_pllc_pllm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("pwm", "tegra-pwm", NULL, 17, 0x110, 432000000, mux_pllp_pllc_clk32_clkm, MUX | MUX_PWM | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("d_audio", "tegra30-ahub", "d_audio", 106, 0x3d0, 48000000, mux_plla_pllc_pllp_clkm, MUX | DIV_U71),
- PERIPH_CLK("dam0", "tegra30-dam.0", NULL, 108, 0x3d8, 48000000, mux_plla_pllc_pllp_clkm, MUX | DIV_U71),
- PERIPH_CLK("dam1", "tegra30-dam.1", NULL, 109, 0x3dc, 48000000, mux_plla_pllc_pllp_clkm, MUX | DIV_U71),
- PERIPH_CLK("dam2", "tegra30-dam.2", NULL, 110, 0x3e0, 48000000, mux_plla_pllc_pllp_clkm, MUX | DIV_U71),
- PERIPH_CLK("hda", "tegra30-hda", "hda", 125, 0x428, 108000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("hda2codec_2x", "tegra30-hda", "hda2codec", 111, 0x3e4, 48000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("hda2hdmi", "tegra30-hda", "hda2hdmi", 128, 0, 48000000, mux_clk_m, 0),
- PERIPH_CLK("sbc1", "spi_tegra.0", NULL, 41, 0x134, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("sbc2", "spi_tegra.1", NULL, 44, 0x118, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("sbc3", "spi_tegra.2", NULL, 46, 0x11c, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("sbc4", "spi_tegra.3", NULL, 68, 0x1b4, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("sbc5", "spi_tegra.4", NULL, 104, 0x3c8, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("sbc6", "spi_tegra.5", NULL, 105, 0x3cc, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("sata_oob", "tegra_sata_oob", NULL, 123, 0x420, 216000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("sata", "tegra_sata", NULL, 124, 0x424, 216000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("sata_cold", "tegra_sata_cold", NULL, 129, 0, 48000000, mux_clk_m, 0),
- PERIPH_CLK_EX("ndflash", "tegra_nand", NULL, 13, 0x160, 240000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71, &tegra_nand_clk_ops),
- PERIPH_CLK("ndspeed", "tegra_nand_speed", NULL, 80, 0x3f8, 240000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("vfir", "vfir", NULL, 7, 0x168, 72000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("sdmmc1", "sdhci-tegra.0", NULL, 14, 0x150, 208000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* scales with voltage */
- PERIPH_CLK("sdmmc2", "sdhci-tegra.1", NULL, 9, 0x154, 104000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* scales with voltage */
- PERIPH_CLK("sdmmc3", "sdhci-tegra.2", NULL, 69, 0x1bc, 208000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* scales with voltage */
- PERIPH_CLK("sdmmc4", "sdhci-tegra.3", NULL, 15, 0x164, 104000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* scales with voltage */
- PERIPH_CLK("vcp", "tegra-avp", "vcp", 29, 0, 250000000, mux_clk_m, 0),
- PERIPH_CLK("bsea", "tegra-avp", "bsea", 62, 0, 250000000, mux_clk_m, 0),
- PERIPH_CLK("bsev", "tegra-aes", "bsev", 63, 0, 250000000, mux_clk_m, 0),
- PERIPH_CLK("vde", "vde", NULL, 61, 0x1c8, 520000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | DIV_U71_INT),
- PERIPH_CLK("csite", "csite", NULL, 73, 0x1d4, 144000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* max rate ??? */
- PERIPH_CLK("la", "la", NULL, 76, 0x1f8, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71),
- PERIPH_CLK("owr", "tegra_w1", NULL, 71, 0x1cc, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("nor", "nor", NULL, 42, 0x1d0, 127000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71), /* requires min voltage */
- PERIPH_CLK("mipi", "mipi", NULL, 50, 0x174, 60000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB), /* scales with voltage */
- PERIPH_CLK("i2c1", "tegra-i2c.0", NULL, 12, 0x124, 26000000, mux_pllp_clkm, MUX | DIV_U16 | PERIPH_ON_APB),
- PERIPH_CLK("i2c2", "tegra-i2c.1", NULL, 54, 0x198, 26000000, mux_pllp_clkm, MUX | DIV_U16 | PERIPH_ON_APB),
- PERIPH_CLK("i2c3", "tegra-i2c.2", NULL, 67, 0x1b8, 26000000, mux_pllp_clkm, MUX | DIV_U16 | PERIPH_ON_APB),
- PERIPH_CLK("i2c4", "tegra-i2c.3", NULL, 103, 0x3c4, 26000000, mux_pllp_clkm, MUX | DIV_U16 | PERIPH_ON_APB),
- PERIPH_CLK("i2c5", "tegra-i2c.4", NULL, 47, 0x128, 26000000, mux_pllp_clkm, MUX | DIV_U16 | PERIPH_ON_APB),
- PERIPH_CLK("uarta", "tegra-uart.0", NULL, 6, 0x178, 800000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | DIV_U71_UART | PERIPH_ON_APB),
- PERIPH_CLK("uartb", "tegra-uart.1", NULL, 7, 0x17c, 800000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | DIV_U71_UART | PERIPH_ON_APB),
- PERIPH_CLK("uartc", "tegra-uart.2", NULL, 55, 0x1a0, 800000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | DIV_U71_UART | PERIPH_ON_APB),
- PERIPH_CLK("uartd", "tegra-uart.3", NULL, 65, 0x1c0, 800000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | DIV_U71_UART | PERIPH_ON_APB),
- PERIPH_CLK("uarte", "tegra-uart.4", NULL, 66, 0x1c4, 800000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | DIV_U71_UART | PERIPH_ON_APB),
- PERIPH_CLK_EX("vi", "tegra_camera", "vi", 20, 0x148, 425000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | DIV_U71_INT, &tegra_vi_clk_ops),
- PERIPH_CLK("3d", "3d", NULL, 24, 0x158, 520000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | DIV_U71_INT | DIV_U71_IDLE | PERIPH_MANUAL_RESET),
- PERIPH_CLK("3d2", "3d2", NULL, 98, 0x3b0, 520000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | DIV_U71_INT | DIV_U71_IDLE | PERIPH_MANUAL_RESET),
- PERIPH_CLK("2d", "2d", NULL, 21, 0x15c, 520000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | DIV_U71_INT | DIV_U71_IDLE),
- PERIPH_CLK("vi_sensor", "tegra_camera", "vi_sensor", 20, 0x1a8, 150000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | PERIPH_NO_RESET),
- PERIPH_CLK("epp", "epp", NULL, 19, 0x16c, 520000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | DIV_U71_INT),
- PERIPH_CLK("mpe", "mpe", NULL, 60, 0x170, 520000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | DIV_U71_INT),
- PERIPH_CLK("host1x", "host1x", NULL, 28, 0x180, 260000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | DIV_U71_INT),
- PERIPH_CLK("cve", "cve", NULL, 49, 0x140, 250000000, mux_pllp_plld_pllc_clkm, MUX | DIV_U71), /* requires min voltage */
- PERIPH_CLK("tvo", "tvo", NULL, 49, 0x188, 250000000, mux_pllp_plld_pllc_clkm, MUX | DIV_U71), /* requires min voltage */
- PERIPH_CLK_EX("dtv", "dtv", NULL, 79, 0x1dc, 250000000, mux_clk_m, 0, &tegra_dtv_clk_ops),
- PERIPH_CLK("hdmi", "hdmi", NULL, 51, 0x18c, 148500000, mux_pllp_pllm_plld_plla_pllc_plld2_clkm, MUX | MUX8 | DIV_U71),
- PERIPH_CLK("tvdac", "tvdac", NULL, 53, 0x194, 220000000, mux_pllp_plld_pllc_clkm, MUX | DIV_U71), /* requires min voltage */
- PERIPH_CLK("disp1", "tegradc.0", NULL, 27, 0x138, 600000000, mux_pllp_pllm_plld_plla_pllc_plld2_clkm, MUX | MUX8),
- PERIPH_CLK("disp2", "tegradc.1", NULL, 26, 0x13c, 600000000, mux_pllp_pllm_plld_plla_pllc_plld2_clkm, MUX | MUX8),
- PERIPH_CLK("usbd", "fsl-tegra-udc", NULL, 22, 0, 480000000, mux_clk_m, 0), /* requires min voltage */
- PERIPH_CLK("usb2", "tegra-ehci.1", NULL, 58, 0, 480000000, mux_clk_m, 0), /* requires min voltage */
- PERIPH_CLK("usb3", "tegra-ehci.2", NULL, 59, 0, 480000000, mux_clk_m, 0), /* requires min voltage */
- PERIPH_CLK("dsia", "tegradc.0", "dsia", 48, 0, 500000000, mux_plld_out0, 0),
- PERIPH_CLK_EX("dsib", "tegradc.1", "dsib", 82, 0xd0, 500000000, mux_plld_out0_plld2_out0, MUX | PLLD, &tegra_dsib_clk_ops),
- PERIPH_CLK("csi", "tegra_camera", "csi", 52, 0, 102000000, mux_pllp_out3, 0),
- PERIPH_CLK("isp", "tegra_camera", "isp", 23, 0, 150000000, mux_clk_m, 0), /* same frequency as VI */
- PERIPH_CLK("csus", "tegra_camera", "csus", 92, 0, 150000000, mux_clk_m, PERIPH_NO_RESET),
-
- PERIPH_CLK("tsensor", "tegra-tsensor", NULL, 100, 0x3b8, 216000000, mux_pllp_pllc_clkm_clk32, MUX | DIV_U71),
- PERIPH_CLK("actmon", "actmon", NULL, 119, 0x3e8, 216000000, mux_pllp_pllc_clk32_clkm, MUX | DIV_U71),
- PERIPH_CLK("extern1", "extern1", NULL, 120, 0x3ec, 216000000, mux_plla_clk32_pllp_clkm_plle, MUX | MUX8 | DIV_U71),
- PERIPH_CLK("extern2", "extern2", NULL, 121, 0x3f0, 216000000, mux_plla_clk32_pllp_clkm_plle, MUX | MUX8 | DIV_U71),
- PERIPH_CLK("extern3", "extern3", NULL, 122, 0x3f4, 216000000, mux_plla_clk32_pllp_clkm_plle, MUX | MUX8 | DIV_U71),
- PERIPH_CLK("i2cslow", "i2cslow", NULL, 81, 0x3fc, 26000000, mux_pllp_pllc_clk32_clkm, MUX | DIV_U71 | PERIPH_ON_APB),
- PERIPH_CLK("pcie", "tegra-pcie", "pcie", 70, 0, 250000000, mux_clk_m, 0),
- PERIPH_CLK("afi", "tegra-pcie", "afi", 72, 0, 250000000, mux_clk_m, 0),
- PERIPH_CLK("se", "se", NULL, 127, 0x42c, 520000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | DIV_U71_INT),
-};
-
-#define CLK_DUPLICATE(_name, _dev, _con) \
- { \
- .name = _name, \
- .lookup = { \
- .dev_id = _dev, \
- .con_id = _con, \
- }, \
- }
-
-/* Some clocks may be used by different drivers depending on the board
- * configuration. List those here to register them twice in the clock lookup
- * table under two names.
- */
-struct clk_duplicate tegra_clk_duplicates[] = {
- CLK_DUPLICATE("uarta", "serial8250.0", NULL),
- CLK_DUPLICATE("uartb", "serial8250.1", NULL),
- CLK_DUPLICATE("uartc", "serial8250.2", NULL),
- CLK_DUPLICATE("uartd", "serial8250.3", NULL),
- CLK_DUPLICATE("uarte", "serial8250.4", NULL),
- CLK_DUPLICATE("usbd", "utmip-pad", NULL),
- CLK_DUPLICATE("usbd", "tegra-ehci.0", NULL),
- CLK_DUPLICATE("usbd", "tegra-otg", NULL),
- CLK_DUPLICATE("hdmi", "tegradc.0", "hdmi"),
- CLK_DUPLICATE("hdmi", "tegradc.1", "hdmi"),
- CLK_DUPLICATE("dsib", "tegradc.0", "dsib"),
- CLK_DUPLICATE("dsia", "tegradc.1", "dsia"),
- CLK_DUPLICATE("bsev", "tegra-avp", "bsev"),
- CLK_DUPLICATE("bsev", "nvavp", "bsev"),
- CLK_DUPLICATE("vde", "tegra-aes", "vde"),
- CLK_DUPLICATE("bsea", "tegra-aes", "bsea"),
- CLK_DUPLICATE("bsea", "nvavp", "bsea"),
- CLK_DUPLICATE("cml1", "tegra_sata_cml", NULL),
- CLK_DUPLICATE("cml0", "tegra_pcie", "cml"),
- CLK_DUPLICATE("pciex", "tegra_pcie", "pciex"),
- CLK_DUPLICATE("i2c1", "tegra-i2c-slave.0", NULL),
- CLK_DUPLICATE("i2c2", "tegra-i2c-slave.1", NULL),
- CLK_DUPLICATE("i2c3", "tegra-i2c-slave.2", NULL),
- CLK_DUPLICATE("i2c4", "tegra-i2c-slave.3", NULL),
- CLK_DUPLICATE("i2c5", "tegra-i2c-slave.4", NULL),
- CLK_DUPLICATE("sbc1", "spi_slave_tegra.0", NULL),
- CLK_DUPLICATE("sbc2", "spi_slave_tegra.1", NULL),
- CLK_DUPLICATE("sbc3", "spi_slave_tegra.2", NULL),
- CLK_DUPLICATE("sbc4", "spi_slave_tegra.3", NULL),
- CLK_DUPLICATE("sbc5", "spi_slave_tegra.4", NULL),
- CLK_DUPLICATE("sbc6", "spi_slave_tegra.5", NULL),
- CLK_DUPLICATE("twd", "smp_twd", NULL),
- CLK_DUPLICATE("vcp", "nvavp", "vcp"),
- CLK_DUPLICATE("i2s0", NULL, "i2s0"),
- CLK_DUPLICATE("i2s1", NULL, "i2s1"),
- CLK_DUPLICATE("i2s2", NULL, "i2s2"),
- CLK_DUPLICATE("i2s3", NULL, "i2s3"),
- CLK_DUPLICATE("i2s4", NULL, "i2s4"),
- CLK_DUPLICATE("dam0", NULL, "dam0"),
- CLK_DUPLICATE("dam1", NULL, "dam1"),
- CLK_DUPLICATE("dam2", NULL, "dam2"),
- CLK_DUPLICATE("spdif_in", NULL, "spdif_in"),
-};
-
-struct clk *tegra_ptr_clks[] = {
- &tegra_clk_32k,
- &tegra_clk_m,
- &tegra_clk_m_div2,
- &tegra_clk_m_div4,
- &tegra_pll_ref,
- &tegra_pll_m,
- &tegra_pll_m_out1,
- &tegra_pll_c,
- &tegra_pll_c_out1,
- &tegra_pll_p,
- &tegra_pll_p_out1,
- &tegra_pll_p_out2,
- &tegra_pll_p_out3,
- &tegra_pll_p_out4,
- &tegra_pll_a,
- &tegra_pll_a_out0,
- &tegra_pll_d,
- &tegra_pll_d_out0,
- &tegra_pll_d2,
- &tegra_pll_d2_out0,
- &tegra_pll_u,
- &tegra_pll_x,
- &tegra_pll_x_out0,
- &tegra_pll_e,
- &tegra_clk_cclk_g,
- &tegra_cml0_clk,
- &tegra_cml1_clk,
- &tegra_pciex_clk,
- &tegra_clk_sclk,
- &tegra_clk_blink,
- &tegra30_clk_twd,
-};
-
-
-static void tegra30_init_one_clock(struct clk *c)
+static void tegra30_cpu_out_of_reset(u32 cpu)
{
- clk_init(c);
- INIT_LIST_HEAD(&c->shared_bus_list);
- if (!c->lookup.dev_id && !c->lookup.con_id)
- c->lookup.con_id = c->name;
- c->lookup.clk = c;
- clkdev_add(&c->lookup);
+ writel(CPU_RESET(cpu),
+ reg_clk_base + TEGRA_CLK_RST_CONTROLLER_RST_CPU_CMPLX_CLR);
+ wmb();
}
-void __init tegra30_init_clocks(void)
+static void tegra30_enable_cpu_clock(u32 cpu)
{
- int i;
- struct clk *c;
+ unsigned int reg;
- for (i = 0; i < ARRAY_SIZE(tegra_ptr_clks); i++)
- tegra30_init_one_clock(tegra_ptr_clks[i]);
-
- for (i = 0; i < ARRAY_SIZE(tegra_list_clks); i++)
- tegra30_init_one_clock(&tegra_list_clks[i]);
+ writel(CPU_CLOCK(cpu),
+ reg_clk_base + TEGRA30_CLK_RST_CONTROLLER_CLK_CPU_CMPLX_CLR);
+ reg = readl(reg_clk_base +
+ TEGRA30_CLK_RST_CONTROLLER_CLK_CPU_CMPLX_CLR);
+}
- for (i = 0; i < ARRAY_SIZE(tegra_clk_duplicates); i++) {
- c = tegra_get_clock_by_name(tegra_clk_duplicates[i].name);
- if (!c) {
- pr_err("%s: Unknown duplicate clock %s\n", __func__,
- tegra_clk_duplicates[i].name);
- continue;
- }
+static void tegra30_disable_cpu_clock(u32 cpu)
+{
- tegra_clk_duplicates[i].lookup.clk = c;
- clkdev_add(&tegra_clk_duplicates[i].lookup);
- }
+ unsigned int reg;
- for (i = 0; i < ARRAY_SIZE(tegra_sync_source_list); i++)
- tegra30_init_one_clock(&tegra_sync_source_list[i]);
- for (i = 0; i < ARRAY_SIZE(tegra_clk_audio_list); i++)
- tegra30_init_one_clock(&tegra_clk_audio_list[i]);
- for (i = 0; i < ARRAY_SIZE(tegra_clk_audio_2x_list); i++)
- tegra30_init_one_clock(&tegra_clk_audio_2x_list[i]);
+ reg = readl(reg_clk_base + TEGRA_CLK_RST_CONTROLLER_CLK_CPU_CMPLX);
+ writel(reg | CPU_CLOCK(cpu),
+ reg_clk_base + TEGRA_CLK_RST_CONTROLLER_CLK_CPU_CMPLX);
+}
- init_clk_out_mux();
- for (i = 0; i < ARRAY_SIZE(tegra_clk_out_list); i++)
- tegra30_init_one_clock(&tegra_clk_out_list[i]);
+static struct tegra_cpu_car_ops tegra30_cpu_car_ops = {
+ .wait_for_reset = tegra30_wait_cpu_in_reset,
+ .put_in_reset = tegra30_put_cpu_in_reset,
+ .out_of_reset = tegra30_cpu_out_of_reset,
+ .enable_clock = tegra30_enable_cpu_clock,
+ .disable_clock = tegra30_disable_cpu_clock,
+};
+void __init tegra30_cpu_car_ops_init(void)
+{
+ tegra_cpu_car_ops = &tegra30_cpu_car_ops;
}
diff --git a/arch/arm/mach-tegra/tegra30_clocks.h b/arch/arm/mach-tegra/tegra30_clocks.h
new file mode 100644
index 00000000000..f2f88fef6b8
--- /dev/null
+++ b/arch/arm/mach-tegra/tegra30_clocks.h
@@ -0,0 +1,53 @@
+/*
+ * Copyright (c) 2012, NVIDIA CORPORATION. All rights reserved.
+ *
+ * This program is free software; you can redistribute it and/or modify it
+ * under the terms and conditions of the GNU General Public License,
+ * version 2, as published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope 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, see <http://www.gnu.org/licenses/>.
+ */
+
+#ifndef __MACH_TEGRA30_CLOCK_H
+#define __MACH_TEGRA30_CLOCK_H
+
+extern struct clk_ops tegra30_clk_32k_ops;
+extern struct clk_ops tegra30_clk_m_ops;
+extern struct clk_ops tegra_clk_m_div_ops;
+extern struct clk_ops tegra_pll_ref_ops;
+extern struct clk_ops tegra30_pll_ops;
+extern struct clk_ops tegra30_pll_div_ops;
+extern struct clk_ops tegra_plld_ops;
+extern struct clk_ops tegra30_plle_ops;
+extern struct clk_ops tegra_cml_clk_ops;
+extern struct clk_ops tegra_pciex_clk_ops;
+extern struct clk_ops tegra_sync_source_ops;
+extern struct clk_ops tegra30_audio_sync_clk_ops;
+extern struct clk_ops tegra30_clk_double_ops;
+extern struct clk_ops tegra_clk_out_ops;
+extern struct clk_ops tegra30_super_ops;
+extern struct clk_ops tegra30_blink_clk_ops;
+extern struct clk_ops tegra30_twd_ops;
+extern struct clk_ops tegra30_periph_clk_ops;
+extern struct clk_ops tegra30_dsib_clk_ops;
+extern struct clk_ops tegra_nand_clk_ops;
+extern struct clk_ops tegra_vi_clk_ops;
+extern struct clk_ops tegra_dtv_clk_ops;
+extern struct clk_ops tegra_clk_shared_bus_ops;
+
+int tegra30_plld_clk_cfg_ex(struct clk_hw *hw,
+ enum tegra_clk_ex_param p, u32 setting);
+void tegra30_periph_clk_reset(struct clk_hw *hw, bool assert);
+int tegra30_vi_clk_cfg_ex(struct clk_hw *hw,
+ enum tegra_clk_ex_param p, u32 setting);
+int tegra30_nand_clk_cfg_ex(struct clk_hw *hw,
+ enum tegra_clk_ex_param p, u32 setting);
+int tegra30_dtv_clk_cfg_ex(struct clk_hw *hw,
+ enum tegra_clk_ex_param p, u32 setting);
+#endif
diff --git a/arch/arm/mach-tegra/tegra30_clocks_data.c b/arch/arm/mach-tegra/tegra30_clocks_data.c
new file mode 100644
index 00000000000..d92cb556ae3
--- /dev/null
+++ b/arch/arm/mach-tegra/tegra30_clocks_data.c
@@ -0,0 +1,1377 @@
+/*
+ * arch/arm/mach-tegra/tegra30_clocks.c
+ *
+ * Copyright (c) 2010-2012 NVIDIA CORPORATION. All rights reserved.
+ *
+ * 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; version 2 of the License.
+ *
+ * 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.,
+ * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
+ *
+ */
+
+#include <linux/clk-private.h>
+#include <linux/kernel.h>
+#include <linux/module.h>
+#include <linux/list.h>
+#include <linux/spinlock.h>
+#include <linux/delay.h>
+#include <linux/err.h>
+#include <linux/io.h>
+#include <linux/clk.h>
+#include <linux/cpufreq.h>
+
+#include "clock.h"
+#include "fuse.h"
+#include "tegra30_clocks.h"
+#include "tegra_cpu_car.h"
+
+#define DEFINE_CLK_TEGRA(_name, _rate, _ops, _flags, \
+ _parent_names, _parents, _parent) \
+ static struct clk tegra_##_name = { \
+ .hw = &tegra_##_name##_hw.hw, \
+ .name = #_name, \
+ .rate = _rate, \
+ .ops = _ops, \
+ .flags = _flags, \
+ .parent_names = _parent_names, \
+ .parents = _parents, \
+ .num_parents = ARRAY_SIZE(_parent_names), \
+ .parent = _parent, \
+ };
+
+static struct clk tegra_clk_32k;
+static struct clk_tegra tegra_clk_32k_hw = {
+ .hw = {
+ .clk = &tegra_clk_32k,
+ },
+ .fixed_rate = 32768,
+};
+static struct clk tegra_clk_32k = {
+ .name = "clk_32k",
+ .hw = &tegra_clk_32k_hw.hw,
+ .ops = &tegra30_clk_32k_ops,
+ .flags = CLK_IS_ROOT,
+};
+
+static struct clk tegra_clk_m;
+static struct clk_tegra tegra_clk_m_hw = {
+ .hw = {
+ .clk = &tegra_clk_m,
+ },
+ .flags = ENABLE_ON_INIT,
+ .reg = 0x1fc,
+ .reg_shift = 28,
+ .max_rate = 48000000,
+};
+static struct clk tegra_clk_m = {
+ .name = "clk_m",
+ .hw = &tegra_clk_m_hw.hw,
+ .ops = &tegra30_clk_m_ops,
+ .flags = CLK_IS_ROOT | CLK_IGNORE_UNUSED,
+};
+
+static const char *clk_m_div_parent_names[] = {
+ "clk_m",
+};
+
+static struct clk *clk_m_div_parents[] = {
+ &tegra_clk_m,
+};
+
+static struct clk tegra_clk_m_div2;
+static struct clk_tegra tegra_clk_m_div2_hw = {
+ .hw = {
+ .clk = &tegra_clk_m_div2,
+ },
+ .mul = 1,
+ .div = 2,
+ .max_rate = 24000000,
+};
+DEFINE_CLK_TEGRA(clk_m_div2, 0, &tegra_clk_m_div_ops, 0,
+ clk_m_div_parent_names, clk_m_div_parents, &tegra_clk_m);
+
+static struct clk tegra_clk_m_div4;
+static struct clk_tegra tegra_clk_m_div4_hw = {
+ .hw = {
+ .clk = &tegra_clk_m_div4,
+ },
+ .mul = 1,
+ .div = 4,
+ .max_rate = 12000000,
+};
+DEFINE_CLK_TEGRA(clk_m_div4, 0, &tegra_clk_m_div_ops, 0,
+ clk_m_div_parent_names, clk_m_div_parents, &tegra_clk_m);
+
+static struct clk tegra_pll_ref;
+static struct clk_tegra tegra_pll_ref_hw = {
+ .hw = {
+ .clk = &tegra_pll_ref,
+ },
+ .flags = ENABLE_ON_INIT,
+ .max_rate = 26000000,
+};
+DEFINE_CLK_TEGRA(pll_ref, 0, &tegra_pll_ref_ops, 0, clk_m_div_parent_names,
+ clk_m_div_parents, &tegra_clk_m);
+
+#define DEFINE_PLL(_name, _flags, _reg, _max_rate, _input_min, \
+ _input_max, _cf_min, _cf_max, _vco_min, \
+ _vco_max, _freq_table, _lock_delay, _ops, \
+ _fixed_rate, _clk_cfg_ex, _parent) \
+ static struct clk tegra_##_name; \
+ static const char *_name##_parent_names[] = { \
+ #_parent, \
+ }; \
+ static struct clk *_name##_parents[] = { \
+ &tegra_##_parent, \
+ }; \
+ static struct clk_tegra tegra_##_name##_hw = { \
+ .hw = { \
+ .clk = &tegra_##_name, \
+ }, \
+ .flags = _flags, \
+ .reg = _reg, \
+ .max_rate = _max_rate, \
+ .u.pll = { \
+ .input_min = _input_min, \
+ .input_max = _input_max, \
+ .cf_min = _cf_min, \
+ .cf_max = _cf_max, \
+ .vco_min = _vco_min, \
+ .vco_max = _vco_max, \
+ .freq_table = _freq_table, \
+ .lock_delay = _lock_delay, \
+ .fixed_rate = _fixed_rate, \
+ }, \
+ .clk_cfg_ex = _clk_cfg_ex, \
+ }; \
+ DEFINE_CLK_TEGRA(_name, 0, &_ops, CLK_IGNORE_UNUSED, \
+ _name##_parent_names, _name##_parents, \
+ &tegra_##_parent);
+
+#define DEFINE_PLL_OUT(_name, _flags, _reg, _reg_shift, \
+ _max_rate, _ops, _parent, _clk_flags) \
+ static const char *_name##_parent_names[] = { \
+ #_parent, \
+ }; \
+ static struct clk *_name##_parents[] = { \
+ &tegra_##_parent, \
+ }; \
+ static struct clk tegra_##_name; \
+ static struct clk_tegra tegra_##_name##_hw = { \
+ .hw = { \
+ .clk = &tegra_##_name, \
+ }, \
+ .flags = _flags, \
+ .reg = _reg, \
+ .max_rate = _max_rate, \
+ .reg_shift = _reg_shift, \
+ }; \
+ DEFINE_CLK_TEGRA(_name, 0, &tegra30_pll_div_ops, \
+ _clk_flags, _name##_parent_names, \
+ _name##_parents, &tegra_##_parent);
+
+static struct clk_pll_freq_table tegra_pll_c_freq_table[] = {
+ { 12000000, 1040000000, 520, 6, 1, 8},
+ { 13000000, 1040000000, 480, 6, 1, 8},
+ { 16800000, 1040000000, 495, 8, 1, 8}, /* actual: 1039.5 MHz */
+ { 19200000, 1040000000, 325, 6, 1, 6},
+ { 26000000, 1040000000, 520, 13, 1, 8},
+
+ { 12000000, 832000000, 416, 6, 1, 8},
+ { 13000000, 832000000, 832, 13, 1, 8},
+ { 16800000, 832000000, 396, 8, 1, 8}, /* actual: 831.6 MHz */
+ { 19200000, 832000000, 260, 6, 1, 8},
+ { 26000000, 832000000, 416, 13, 1, 8},
+
+ { 12000000, 624000000, 624, 12, 1, 8},
+ { 13000000, 624000000, 624, 13, 1, 8},
+ { 16800000, 600000000, 520, 14, 1, 8},
+ { 19200000, 624000000, 520, 16, 1, 8},
+ { 26000000, 624000000, 624, 26, 1, 8},
+
+ { 12000000, 600000000, 600, 12, 1, 8},
+ { 13000000, 600000000, 600, 13, 1, 8},
+ { 16800000, 600000000, 500, 14, 1, 8},
+ { 19200000, 600000000, 375, 12, 1, 6},
+ { 26000000, 600000000, 600, 26, 1, 8},
+
+ { 12000000, 520000000, 520, 12, 1, 8},
+ { 13000000, 520000000, 520, 13, 1, 8},
+ { 16800000, 520000000, 495, 16, 1, 8}, /* actual: 519.75 MHz */
+ { 19200000, 520000000, 325, 12, 1, 6},
+ { 26000000, 520000000, 520, 26, 1, 8},
+
+ { 12000000, 416000000, 416, 12, 1, 8},
+ { 13000000, 416000000, 416, 13, 1, 8},
+ { 16800000, 416000000, 396, 16, 1, 8}, /* actual: 415.8 MHz */
+ { 19200000, 416000000, 260, 12, 1, 6},
+ { 26000000, 416000000, 416, 26, 1, 8},
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_c, PLL_HAS_CPCON, 0x80, 1400000000, 2000000, 31000000, 1000000,
+ 6000000, 20000000, 1400000000, tegra_pll_c_freq_table, 300,
+ tegra30_pll_ops, 0, NULL, pll_ref);
+
+DEFINE_PLL_OUT(pll_c_out1, DIV_U71, 0x84, 0, 700000000,
+ tegra30_pll_div_ops, pll_c, CLK_IGNORE_UNUSED);
+
+static struct clk_pll_freq_table tegra_pll_m_freq_table[] = {
+ { 12000000, 666000000, 666, 12, 1, 8},
+ { 13000000, 666000000, 666, 13, 1, 8},
+ { 16800000, 666000000, 555, 14, 1, 8},
+ { 19200000, 666000000, 555, 16, 1, 8},
+ { 26000000, 666000000, 666, 26, 1, 8},
+ { 12000000, 600000000, 600, 12, 1, 8},
+ { 13000000, 600000000, 600, 13, 1, 8},
+ { 16800000, 600000000, 500, 14, 1, 8},
+ { 19200000, 600000000, 375, 12, 1, 6},
+ { 26000000, 600000000, 600, 26, 1, 8},
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_m, PLL_HAS_CPCON | PLLM, 0x90, 800000000, 2000000, 31000000,
+ 1000000, 6000000, 20000000, 1200000000, tegra_pll_m_freq_table,
+ 300, tegra30_pll_ops, 0, NULL, pll_ref);
+
+DEFINE_PLL_OUT(pll_m_out1, DIV_U71, 0x94, 0, 600000000,
+ tegra30_pll_div_ops, pll_m, CLK_IGNORE_UNUSED);
+
+static struct clk_pll_freq_table tegra_pll_p_freq_table[] = {
+ { 12000000, 216000000, 432, 12, 2, 8},
+ { 13000000, 216000000, 432, 13, 2, 8},
+ { 16800000, 216000000, 360, 14, 2, 8},
+ { 19200000, 216000000, 360, 16, 2, 8},
+ { 26000000, 216000000, 432, 26, 2, 8},
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_p, ENABLE_ON_INIT | PLL_FIXED | PLL_HAS_CPCON, 0xa0, 432000000,
+ 2000000, 31000000, 1000000, 6000000, 20000000, 1400000000,
+ tegra_pll_p_freq_table, 300, tegra30_pll_ops, 408000000, NULL,
+ pll_ref);
+
+DEFINE_PLL_OUT(pll_p_out1, ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED, 0xa4,
+ 0, 432000000, tegra30_pll_div_ops, pll_p, CLK_IGNORE_UNUSED);
+DEFINE_PLL_OUT(pll_p_out2, ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED, 0xa4,
+ 16, 432000000, tegra30_pll_div_ops, pll_p, CLK_IGNORE_UNUSED);
+DEFINE_PLL_OUT(pll_p_out3, ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED, 0xa8,
+ 0, 432000000, tegra30_pll_div_ops, pll_p, CLK_IGNORE_UNUSED);
+DEFINE_PLL_OUT(pll_p_out4, ENABLE_ON_INIT | DIV_U71 | DIV_U71_FIXED, 0xa8,
+ 16, 432000000, tegra30_pll_div_ops, pll_p, CLK_IGNORE_UNUSED);
+
+static struct clk_pll_freq_table tegra_pll_a_freq_table[] = {
+ { 9600000, 564480000, 294, 5, 1, 4},
+ { 9600000, 552960000, 288, 5, 1, 4},
+ { 9600000, 24000000, 5, 2, 1, 1},
+
+ { 28800000, 56448000, 49, 25, 1, 1},
+ { 28800000, 73728000, 64, 25, 1, 1},
+ { 28800000, 24000000, 5, 6, 1, 1},
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_a, PLL_HAS_CPCON, 0xb0, 700000000, 2000000, 31000000, 1000000,
+ 6000000, 20000000, 1400000000, tegra_pll_a_freq_table,
+ 300, tegra30_pll_ops, 0, NULL, pll_p_out1);
+
+DEFINE_PLL_OUT(pll_a_out0, DIV_U71, 0xb4, 0, 100000000, tegra30_pll_div_ops,
+ pll_a, CLK_IGNORE_UNUSED);
+
+static struct clk_pll_freq_table tegra_pll_d_freq_table[] = {
+ { 12000000, 216000000, 216, 12, 1, 4},
+ { 13000000, 216000000, 216, 13, 1, 4},
+ { 16800000, 216000000, 180, 14, 1, 4},
+ { 19200000, 216000000, 180, 16, 1, 4},
+ { 26000000, 216000000, 216, 26, 1, 4},
+
+ { 12000000, 594000000, 594, 12, 1, 8},
+ { 13000000, 594000000, 594, 13, 1, 8},
+ { 16800000, 594000000, 495, 14, 1, 8},
+ { 19200000, 594000000, 495, 16, 1, 8},
+ { 26000000, 594000000, 594, 26, 1, 8},
+
+ { 12000000, 1000000000, 1000, 12, 1, 12},
+ { 13000000, 1000000000, 1000, 13, 1, 12},
+ { 19200000, 1000000000, 625, 12, 1, 8},
+ { 26000000, 1000000000, 1000, 26, 1, 12},
+
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_d, PLL_HAS_CPCON | PLLD, 0xd0, 1000000000, 2000000, 40000000,
+ 1000000, 6000000, 40000000, 1000000000, tegra_pll_d_freq_table,
+ 1000, tegra30_pll_ops, 0, tegra30_plld_clk_cfg_ex, pll_ref);
+
+DEFINE_PLL_OUT(pll_d_out0, DIV_2 | PLLD, 0, 0, 500000000, tegra30_pll_div_ops,
+ pll_d, CLK_SET_RATE_PARENT | CLK_IGNORE_UNUSED);
+
+DEFINE_PLL(pll_d2, PLL_HAS_CPCON | PLL_ALT_MISC_REG | PLLD, 0x4b8, 1000000000,
+ 2000000, 40000000, 1000000, 6000000, 40000000, 1000000000,
+ tegra_pll_d_freq_table, 1000, tegra30_pll_ops, 0, NULL,
+ pll_ref);
+
+DEFINE_PLL_OUT(pll_d2_out0, DIV_2 | PLLD, 0, 0, 500000000, tegra30_pll_div_ops,
+ pll_d2, CLK_SET_RATE_PARENT | CLK_IGNORE_UNUSED);
+
+static struct clk_pll_freq_table tegra_pll_u_freq_table[] = {
+ { 12000000, 480000000, 960, 12, 2, 12},
+ { 13000000, 480000000, 960, 13, 2, 12},
+ { 16800000, 480000000, 400, 7, 2, 5},
+ { 19200000, 480000000, 200, 4, 2, 3},
+ { 26000000, 480000000, 960, 26, 2, 12},
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_u, PLL_HAS_CPCON | PLLU, 0xc0, 480000000, 2000000, 40000000,
+ 1000000, 6000000, 48000000, 960000000, tegra_pll_u_freq_table,
+ 1000, tegra30_pll_ops, 0, NULL, pll_ref);
+
+static struct clk_pll_freq_table tegra_pll_x_freq_table[] = {
+ /* 1.7 GHz */
+ { 12000000, 1700000000, 850, 6, 1, 8},
+ { 13000000, 1700000000, 915, 7, 1, 8}, /* actual: 1699.2 MHz */
+ { 16800000, 1700000000, 708, 7, 1, 8}, /* actual: 1699.2 MHz */
+ { 19200000, 1700000000, 885, 10, 1, 8}, /* actual: 1699.2 MHz */
+ { 26000000, 1700000000, 850, 13, 1, 8},
+
+ /* 1.6 GHz */
+ { 12000000, 1600000000, 800, 6, 1, 8},
+ { 13000000, 1600000000, 738, 6, 1, 8}, /* actual: 1599.0 MHz */
+ { 16800000, 1600000000, 857, 9, 1, 8}, /* actual: 1599.7 MHz */
+ { 19200000, 1600000000, 500, 6, 1, 8},
+ { 26000000, 1600000000, 800, 13, 1, 8},
+
+ /* 1.5 GHz */
+ { 12000000, 1500000000, 750, 6, 1, 8},
+ { 13000000, 1500000000, 923, 8, 1, 8}, /* actual: 1499.8 MHz */
+ { 16800000, 1500000000, 625, 7, 1, 8},
+ { 19200000, 1500000000, 625, 8, 1, 8},
+ { 26000000, 1500000000, 750, 13, 1, 8},
+
+ /* 1.4 GHz */
+ { 12000000, 1400000000, 700, 6, 1, 8},
+ { 13000000, 1400000000, 969, 9, 1, 8}, /* actual: 1399.7 MHz */
+ { 16800000, 1400000000, 1000, 12, 1, 8},
+ { 19200000, 1400000000, 875, 12, 1, 8},
+ { 26000000, 1400000000, 700, 13, 1, 8},
+
+ /* 1.3 GHz */
+ { 12000000, 1300000000, 975, 9, 1, 8},
+ { 13000000, 1300000000, 1000, 10, 1, 8},
+ { 16800000, 1300000000, 928, 12, 1, 8}, /* actual: 1299.2 MHz */
+ { 19200000, 1300000000, 812, 12, 1, 8}, /* actual: 1299.2 MHz */
+ { 26000000, 1300000000, 650, 13, 1, 8},
+
+ /* 1.2 GHz */
+ { 12000000, 1200000000, 1000, 10, 1, 8},
+ { 13000000, 1200000000, 923, 10, 1, 8}, /* actual: 1199.9 MHz */
+ { 16800000, 1200000000, 1000, 14, 1, 8},
+ { 19200000, 1200000000, 1000, 16, 1, 8},
+ { 26000000, 1200000000, 600, 13, 1, 8},
+
+ /* 1.1 GHz */
+ { 12000000, 1100000000, 825, 9, 1, 8},
+ { 13000000, 1100000000, 846, 10, 1, 8}, /* actual: 1099.8 MHz */
+ { 16800000, 1100000000, 982, 15, 1, 8}, /* actual: 1099.8 MHz */
+ { 19200000, 1100000000, 859, 15, 1, 8}, /* actual: 1099.5 MHz */
+ { 26000000, 1100000000, 550, 13, 1, 8},
+
+ /* 1 GHz */
+ { 12000000, 1000000000, 1000, 12, 1, 8},
+ { 13000000, 1000000000, 1000, 13, 1, 8},
+ { 16800000, 1000000000, 833, 14, 1, 8}, /* actual: 999.6 MHz */
+ { 19200000, 1000000000, 625, 12, 1, 8},
+ { 26000000, 1000000000, 1000, 26, 1, 8},
+
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_x, PLL_HAS_CPCON | PLL_ALT_MISC_REG | PLLX, 0xe0, 1700000000,
+ 2000000, 31000000, 1000000, 6000000, 20000000, 1700000000,
+ tegra_pll_x_freq_table, 300, tegra30_pll_ops, 0, NULL, pll_ref);
+
+DEFINE_PLL_OUT(pll_x_out0, DIV_2 | PLLX, 0, 0, 850000000, tegra30_pll_div_ops,
+ pll_x, CLK_SET_RATE_PARENT | CLK_IGNORE_UNUSED);
+
+static struct clk_pll_freq_table tegra_pll_e_freq_table[] = {
+ /* PLLE special case: use cpcon field to store cml divider value */
+ { 12000000, 100000000, 150, 1, 18, 11},
+ { 216000000, 100000000, 200, 18, 24, 13},
+ { 0, 0, 0, 0, 0, 0 },
+};
+
+DEFINE_PLL(pll_e, PLL_ALT_MISC_REG, 0xe8, 100000000, 2000000, 216000000,
+ 12000000, 12000000, 1200000000, 2400000000U,
+ tegra_pll_e_freq_table, 300, tegra30_plle_ops, 100000000, NULL,
+ pll_ref);
+
+static const char *mux_plle[] = {
+ "pll_e",
+};
+
+static struct clk *mux_plle_p[] = {
+ &tegra_pll_e,
+};
+
+static struct clk tegra_cml0;
+static struct clk_tegra tegra_cml0_hw = {
+ .hw = {
+ .clk = &tegra_cml0,
+ },
+ .reg = 0x48c,
+ .fixed_rate = 100000000,
+ .u.periph = {
+ .clk_num = 0,
+ },
+};
+DEFINE_CLK_TEGRA(cml0, 0, &tegra_cml_clk_ops, 0, mux_plle,
+ mux_plle_p, &tegra_pll_e);
+
+static struct clk tegra_cml1;
+static struct clk_tegra tegra_cml1_hw = {
+ .hw = {
+ .clk = &tegra_cml1,
+ },
+ .reg = 0x48c,
+ .fixed_rate = 100000000,
+ .u.periph = {
+ .clk_num = 1,
+ },
+};
+DEFINE_CLK_TEGRA(cml1, 0, &tegra_cml_clk_ops, 0, mux_plle,
+ mux_plle_p, &tegra_pll_e);
+
+static struct clk tegra_pciex;
+static struct clk_tegra tegra_pciex_hw = {
+ .hw = {
+ .clk = &tegra_pciex,
+ },
+ .reg = 0x48c,
+ .fixed_rate = 100000000,
+ .reset = tegra30_periph_clk_reset,
+ .u.periph = {
+ .clk_num = 74,
+ },
+};
+DEFINE_CLK_TEGRA(pciex, 0, &tegra_pciex_clk_ops, 0, mux_plle,
+ mux_plle_p, &tegra_pll_e);
+
+#define SYNC_SOURCE(_name) \
+ static struct clk tegra_##_name##_sync; \
+ static struct clk_tegra tegra_##_name##_sync_hw = { \
+ .hw = { \
+ .clk = &tegra_##_name##_sync, \
+ }, \
+ .max_rate = 24000000, \
+ .fixed_rate = 24000000, \
+ }; \
+ static struct clk tegra_##_name##_sync = { \
+ .name = #_name "_sync", \
+ .hw = &tegra_##_name##_sync_hw.hw, \
+ .ops = &tegra_sync_source_ops, \
+ .flags = CLK_IS_ROOT, \
+ };
+
+SYNC_SOURCE(spdif_in);
+SYNC_SOURCE(i2s0);
+SYNC_SOURCE(i2s1);
+SYNC_SOURCE(i2s2);
+SYNC_SOURCE(i2s3);
+SYNC_SOURCE(i2s4);
+SYNC_SOURCE(vimclk);
+
+static struct clk *tegra_sync_source_list[] = {
+ &tegra_spdif_in_sync,
+ &tegra_i2s0_sync,
+ &tegra_i2s1_sync,
+ &tegra_i2s2_sync,
+ &tegra_i2s3_sync,
+ &tegra_i2s4_sync,
+ &tegra_vimclk_sync,
+};
+
+static const char *mux_audio_sync_clk[] = {
+ "spdif_in_sync",
+ "i2s0_sync",
+ "i2s1_sync",
+ "i2s2_sync",
+ "i2s3_sync",
+ "i2s4_sync",
+ "vimclk_sync",
+};
+
+#define AUDIO_SYNC_CLK(_name, _index) \
+ static struct clk tegra_##_name; \
+ static struct clk_tegra tegra_##_name##_hw = { \
+ .hw = { \
+ .clk = &tegra_##_name, \
+ }, \
+ .max_rate = 24000000, \
+ .reg = 0x4A0 + (_index) * 4, \
+ }; \
+ static struct clk tegra_##_name = { \
+ .name = #_name, \
+ .ops = &tegra30_audio_sync_clk_ops, \
+ .hw = &tegra_##_name##_hw.hw, \
+ .parent_names = mux_audio_sync_clk, \
+ .parents = tegra_sync_source_list, \
+ .num_parents = ARRAY_SIZE(mux_audio_sync_clk), \
+ };
+
+AUDIO_SYNC_CLK(audio0, 0);
+AUDIO_SYNC_CLK(audio1, 1);
+AUDIO_SYNC_CLK(audio2, 2);
+AUDIO_SYNC_CLK(audio3, 3);
+AUDIO_SYNC_CLK(audio4, 4);
+AUDIO_SYNC_CLK(audio5, 5);
+
+static struct clk *tegra_clk_audio_list[] = {
+ &tegra_audio0,
+ &tegra_audio1,
+ &tegra_audio2,
+ &tegra_audio3,
+ &tegra_audio4,
+ &tegra_audio5, /* SPDIF */
+};
+
+#define AUDIO_SYNC_2X_CLK(_name, _index) \
+ static const char *_name##_parent_names[] = { \
+ "tegra_" #_name, \
+ }; \
+ static struct clk *_name##_parents[] = { \
+ &tegra_##_name, \
+ }; \
+ static struct clk tegra_##_name##_2x; \
+ static struct clk_tegra tegra_##_name##_2x_hw = { \
+ .hw = { \
+ .clk = &tegra_##_name##_2x, \
+ }, \
+ .flags = PERIPH_NO_RESET, \
+ .max_rate = 48000000, \
+ .reg = 0x49C, \
+ .reg_shift = 24 + (_index), \
+ .u.periph = { \
+ .clk_num = 113 + (_index), \
+ }, \
+ }; \
+ static struct clk tegra_##_name##_2x = { \
+ .name = #_name "_2x", \
+ .ops = &tegra30_clk_double_ops, \
+ .hw = &tegra_##_name##_2x_hw.hw, \
+ .parent_names = _name##_parent_names, \
+ .parents = _name##_parents, \
+ .parent = &tegra_##_name, \
+ .num_parents = 1, \
+ };
+
+AUDIO_SYNC_2X_CLK(audio0, 0);
+AUDIO_SYNC_2X_CLK(audio1, 1);
+AUDIO_SYNC_2X_CLK(audio2, 2);
+AUDIO_SYNC_2X_CLK(audio3, 3);
+AUDIO_SYNC_2X_CLK(audio4, 4);
+AUDIO_SYNC_2X_CLK(audio5, 5); /* SPDIF */
+
+static struct clk *tegra_clk_audio_2x_list[] = {
+ &tegra_audio0_2x,
+ &tegra_audio1_2x,
+ &tegra_audio2_2x,
+ &tegra_audio3_2x,
+ &tegra_audio4_2x,
+ &tegra_audio5_2x, /* SPDIF */
+};
+
+#define MUX_I2S_SPDIF(_id) \
+static const char *mux_pllaout0_##_id##_2x_pllp_clkm[] = { \
+ "pll_a_out0", \
+ #_id "_2x", \
+ "pll_p", \
+ "clk_m", \
+}; \
+static struct clk *mux_pllaout0_##_id##_2x_pllp_clkm_p[] = { \
+ &tegra_pll_a_out0, \
+ &tegra_##_id##_2x, \
+ &tegra_pll_p, \
+ &tegra_clk_m, \
+};
+
+MUX_I2S_SPDIF(audio0);
+MUX_I2S_SPDIF(audio1);
+MUX_I2S_SPDIF(audio2);
+MUX_I2S_SPDIF(audio3);
+MUX_I2S_SPDIF(audio4);
+MUX_I2S_SPDIF(audio5); /* SPDIF */
+
+static struct clk tegra_extern1;
+static struct clk tegra_extern2;
+static struct clk tegra_extern3;
+
+/* External clock outputs (through PMC) */
+#define MUX_EXTERN_OUT(_id) \
+static const char *mux_clkm_clkm2_clkm4_extern##_id[] = { \
+ "clk_m", \
+ "clk_m_div2", \
+ "clk_m_div4", \
+ "extern" #_id, \
+}; \
+static struct clk *mux_clkm_clkm2_clkm4_extern##_id##_p[] = { \
+ &tegra_clk_m, \
+ &tegra_clk_m_div2, \
+ &tegra_clk_m_div4, \
+ &tegra_extern##_id, \
+};
+
+MUX_EXTERN_OUT(1);
+MUX_EXTERN_OUT(2);
+MUX_EXTERN_OUT(3);
+
+#define CLK_OUT_CLK(_name, _index) \
+ static struct clk tegra_##_name; \
+ static struct clk_tegra tegra_##_name##_hw = { \
+ .hw = { \
+ .clk = &tegra_##_name, \
+ }, \
+ .lookup = { \
+ .dev_id = #_name, \
+ .con_id = "extern" #_index, \
+ }, \
+ .flags = MUX_CLK_OUT, \
+ .fixed_rate = 216000000, \
+ .reg = 0x1a8, \
+ .u.periph = { \
+ .clk_num = (_index - 1) * 8 + 2, \
+ }, \
+ }; \
+ static struct clk tegra_##_name = { \
+ .name = #_name, \
+ .ops = &tegra_clk_out_ops, \
+ .hw = &tegra_##_name##_hw.hw, \
+ .parent_names = mux_clkm_clkm2_clkm4_extern##_index, \
+ .parents = mux_clkm_clkm2_clkm4_extern##_index##_p, \
+ .num_parents = ARRAY_SIZE(mux_clkm_clkm2_clkm4_extern##_index),\
+ };
+
+CLK_OUT_CLK(clk_out_1, 1);
+CLK_OUT_CLK(clk_out_2, 2);
+CLK_OUT_CLK(clk_out_3, 3);
+
+static struct clk *tegra_clk_out_list[] = {
+ &tegra_clk_out_1,
+ &tegra_clk_out_2,
+ &tegra_clk_out_3,
+};
+
+static const char *mux_sclk[] = {
+ "clk_m",
+ "pll_c_out1",
+ "pll_p_out4",
+ "pll_p_out3",
+ "pll_p_out2",
+ "dummy",
+ "clk_32k",
+ "pll_m_out1",
+};
+
+static struct clk *mux_sclk_p[] = {
+ &tegra_clk_m,
+ &tegra_pll_c_out1,
+ &tegra_pll_p_out4,
+ &tegra_pll_p_out3,
+ &tegra_pll_p_out2,
+ NULL,
+ &tegra_clk_32k,
+ &tegra_pll_m_out1,
+};
+
+static struct clk tegra_clk_sclk;
+static struct clk_tegra tegra_clk_sclk_hw = {
+ .hw = {
+ .clk = &tegra_clk_sclk,
+ },
+ .reg = 0x28,
+ .max_rate = 334000000,
+ .min_rate = 40000000,
+};
+
+static struct clk tegra_clk_sclk = {
+ .name = "sclk",
+ .ops = &tegra30_super_ops,
+ .hw = &tegra_clk_sclk_hw.hw,
+ .parent_names = mux_sclk,
+ .parents = mux_sclk_p,
+ .num_parents = ARRAY_SIZE(mux_sclk),
+};
+
+static const char *mux_blink[] = {
+ "clk_32k",
+};
+
+static struct clk *mux_blink_p[] = {
+ &tegra_clk_32k,
+};
+
+static struct clk tegra_clk_blink;
+static struct clk_tegra tegra_clk_blink_hw = {
+ .hw = {
+ .clk = &tegra_clk_blink,
+ },
+ .reg = 0x40,
+ .max_rate = 32768,
+};
+static struct clk tegra_clk_blink = {
+ .name = "blink",
+ .ops = &tegra30_blink_clk_ops,
+ .hw = &tegra_clk_blink_hw.hw,
+ .parent = &tegra_clk_32k,
+ .parent_names = mux_blink,
+ .parents = mux_blink_p,
+ .num_parents = ARRAY_SIZE(mux_blink),
+};
+
+static const char *mux_pllm_pllc_pllp_plla[] = {
+ "pll_m",
+ "pll_c",
+ "pll_p",
+ "pll_a_out0",
+};
+
+static const char *mux_pllp_pllc_pllm_clkm[] = {
+ "pll_p",
+ "pll_c",
+ "pll_m",
+ "clk_m",
+};
+
+static const char *mux_pllp_clkm[] = {
+ "pll_p",
+ "dummy",
+ "dummy",
+ "clk_m",
+};
+
+static const char *mux_pllp_plld_pllc_clkm[] = {
+ "pll_p",
+ "pll_d_out0",
+ "pll_c",
+ "clk_m",
+};
+
+static const char *mux_pllp_pllm_plld_plla_pllc_plld2_clkm[] = {
+ "pll_p",
+ "pll_m",
+ "pll_d_out0",
+ "pll_a_out0",
+ "pll_c",
+ "pll_d2_out0",
+ "clk_m",
+};
+
+static const char *mux_plla_pllc_pllp_clkm[] = {
+ "pll_a_out0",
+ "dummy",
+ "pll_p",
+ "clk_m"
+};
+
+static const char *mux_pllp_pllc_clk32_clkm[] = {
+ "pll_p",
+ "pll_c",
+ "clk_32k",
+ "clk_m",
+};
+
+static const char *mux_pllp_pllc_clkm_clk32[] = {
+ "pll_p",
+ "pll_c",
+ "clk_m",
+ "clk_32k",
+};
+
+static const char *mux_pllp_pllc_pllm[] = {
+ "pll_p",
+ "pll_c",
+ "pll_m",
+};
+
+static const char *mux_clk_m[] = {
+ "clk_m",
+};
+
+static const char *mux_pllp_out3[] = {
+ "pll_p_out3",
+};
+
+static const char *mux_plld_out0[] = {
+ "pll_d_out0",
+};
+
+static const char *mux_plld_out0_plld2_out0[] = {
+ "pll_d_out0",
+ "pll_d2_out0",
+};
+
+static const char *mux_clk_32k[] = {
+ "clk_32k",
+};
+
+static const char *mux_plla_clk32_pllp_clkm_plle[] = {
+ "pll_a_out0",
+ "clk_32k",
+ "pll_p",
+ "clk_m",
+ "pll_e",
+};
+
+static const char *mux_cclk_g[] = {
+ "clk_m",
+ "pll_c",
+ "clk_32k",
+ "pll_m",
+ "pll_p",
+ "pll_p_out4",
+ "pll_p_out3",
+ "dummy",
+ "pll_x",
+};
+
+static struct clk *mux_pllm_pllc_pllp_plla_p[] = {
+ &tegra_pll_m,
+ &tegra_pll_c,
+ &tegra_pll_p,
+ &tegra_pll_a_out0,
+};
+
+static struct clk *mux_pllp_pllc_pllm_clkm_p[] = {
+ &tegra_pll_p,
+ &tegra_pll_c,
+ &tegra_pll_m,
+ &tegra_clk_m,
+};
+
+static struct clk *mux_pllp_clkm_p[] = {
+ &tegra_pll_p,
+ NULL,
+ NULL,
+ &tegra_clk_m,
+};
+
+static struct clk *mux_pllp_plld_pllc_clkm_p[] = {
+ &tegra_pll_p,
+ &tegra_pll_d_out0,
+ &tegra_pll_c,
+ &tegra_clk_m,
+};
+
+static struct clk *mux_pllp_pllm_plld_plla_pllc_plld2_clkm_p[] = {
+ &tegra_pll_p,
+ &tegra_pll_m,
+ &tegra_pll_d_out0,
+ &tegra_pll_a_out0,
+ &tegra_pll_c,
+ &tegra_pll_d2_out0,
+ &tegra_clk_m,
+};
+
+static struct clk *mux_plla_pllc_pllp_clkm_p[] = {
+ &tegra_pll_a_out0,
+ NULL,
+ &tegra_pll_p,
+ &tegra_clk_m,
+};
+
+static struct clk *mux_pllp_pllc_clk32_clkm_p[] = {
+ &tegra_pll_p,
+ &tegra_pll_c,
+ &tegra_clk_32k,
+ &tegra_clk_m,
+};
+
+static struct clk *mux_pllp_pllc_clkm_clk32_p[] = {
+ &tegra_pll_p,
+ &tegra_pll_c,
+ &tegra_clk_m,
+ &tegra_clk_32k,
+};
+
+static struct clk *mux_pllp_pllc_pllm_p[] = {
+ &tegra_pll_p,
+ &tegra_pll_c,
+ &tegra_pll_m,
+};
+
+static struct clk *mux_clk_m_p[] = {
+ &tegra_clk_m,
+};
+
+static struct clk *mux_pllp_out3_p[] = {
+ &tegra_pll_p_out3,
+};
+
+static struct clk *mux_plld_out0_p[] = {
+ &tegra_pll_d_out0,
+};
+
+static struct clk *mux_plld_out0_plld2_out0_p[] = {
+ &tegra_pll_d_out0,
+ &tegra_pll_d2_out0,
+};
+
+static struct clk *mux_clk_32k_p[] = {
+ &tegra_clk_32k,
+};
+
+static struct clk *mux_plla_clk32_pllp_clkm_plle_p[] = {
+ &tegra_pll_a_out0,
+ &tegra_clk_32k,
+ &tegra_pll_p,
+ &tegra_clk_m,
+ &tegra_pll_e,
+};
+
+static struct clk *mux_cclk_g_p[] = {
+ &tegra_clk_m,
+ &tegra_pll_c,
+ &tegra_clk_32k,
+ &tegra_pll_m,
+ &tegra_pll_p,
+ &tegra_pll_p_out4,
+ &tegra_pll_p_out3,
+ NULL,
+ &tegra_pll_x,
+};
+
+static struct clk tegra_clk_cclk_g;
+static struct clk_tegra tegra_clk_cclk_g_hw = {
+ .hw = {
+ .clk = &tegra_clk_cclk_g,
+ },
+ .flags = DIV_U71 | DIV_U71_INT,
+ .reg = 0x368,
+ .max_rate = 1700000000,
+};
+static struct clk tegra_clk_cclk_g = {
+ .name = "cclk_g",
+ .ops = &tegra30_super_ops,
+ .hw = &tegra_clk_cclk_g_hw.hw,
+ .parent_names = mux_cclk_g,
+ .parents = mux_cclk_g_p,
+ .num_parents = ARRAY_SIZE(mux_cclk_g),
+};
+
+static const char *mux_twd[] = {
+ "cclk_g",
+};
+
+static struct clk *mux_twd_p[] = {
+ &tegra_clk_cclk_g,
+};
+
+static struct clk tegra30_clk_twd;
+static struct clk_tegra tegra30_clk_twd_hw = {
+ .hw = {
+ .clk = &tegra30_clk_twd,
+ },
+ .max_rate = 1400000000,
+ .mul = 1,
+ .div = 2,
+};
+
+static struct clk tegra30_clk_twd = {
+ .name = "twd",
+ .ops = &tegra30_twd_ops,
+ .hw = &tegra30_clk_twd_hw.hw,
+ .parent = &tegra_clk_cclk_g,
+ .parent_names = mux_twd,
+ .parents = mux_twd_p,
+ .num_parents = ARRAY_SIZE(mux_twd),
+};
+
+#define PERIPH_CLK(_name, _dev, _con, _clk_num, _reg, \
+ _max, _inputs, _flags) \
+ static struct clk tegra_##_name; \
+ static struct clk_tegra tegra_##_name##_hw = { \
+ .hw = { \
+ .clk = &tegra_##_name, \
+ }, \
+ .lookup = { \
+ .dev_id = _dev, \
+ .con_id = _con, \
+ }, \
+ .reg = _reg, \
+ .flags = _flags, \
+ .max_rate = _max, \
+ .u.periph = { \
+ .clk_num = _clk_num, \
+ }, \
+ .reset = &tegra30_periph_clk_reset, \
+ }; \
+ static struct clk tegra_##_name = { \
+ .name = #_name, \
+ .ops = &tegra30_periph_clk_ops, \
+ .hw = &tegra_##_name##_hw.hw, \
+ .parent_names = _inputs, \
+ .parents = _inputs##_p, \
+ .num_parents = ARRAY_SIZE(_inputs), \
+ };
+
+PERIPH_CLK(apbdma, "tegra-apbdma", NULL, 34, 0, 26000000, mux_clk_m, 0);
+PERIPH_CLK(rtc, "rtc-tegra", NULL, 4, 0, 32768, mux_clk_32k, PERIPH_NO_RESET | PERIPH_ON_APB);
+PERIPH_CLK(kbc, "tegra-kbc", NULL, 36, 0, 32768, mux_clk_32k, PERIPH_NO_RESET | PERIPH_ON_APB);
+PERIPH_CLK(timer, "timer", NULL, 5, 0, 26000000, mux_clk_m, 0);
+PERIPH_CLK(kfuse, "kfuse-tegra", NULL, 40, 0, 26000000, mux_clk_m, 0);
+PERIPH_CLK(fuse, "fuse-tegra", "fuse", 39, 0, 26000000, mux_clk_m, PERIPH_ON_APB);
+PERIPH_CLK(fuse_burn, "fuse-tegra", "fuse_burn", 39, 0, 26000000, mux_clk_m, PERIPH_ON_APB);
+PERIPH_CLK(apbif, "tegra30-ahub", "apbif", 107, 0, 26000000, mux_clk_m, 0);
+PERIPH_CLK(i2s0, "tegra30-i2s.0", NULL, 30, 0x1d8, 26000000, mux_pllaout0_audio0_2x_pllp_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(i2s1, "tegra30-i2s.1", NULL, 11, 0x100, 26000000, mux_pllaout0_audio1_2x_pllp_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(i2s2, "tegra30-i2s.2", NULL, 18, 0x104, 26000000, mux_pllaout0_audio2_2x_pllp_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(i2s3, "tegra30-i2s.3", NULL, 101, 0x3bc, 26000000, mux_pllaout0_audio3_2x_pllp_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(i2s4, "tegra30-i2s.4", NULL, 102, 0x3c0, 26000000, mux_pllaout0_audio4_2x_pllp_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(spdif_out, "tegra30-spdif", "spdif_out", 10, 0x108, 100000000, mux_pllaout0_audio5_2x_pllp_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(spdif_in, "tegra30-spdif", "spdif_in", 10, 0x10c, 100000000, mux_pllp_pllc_pllm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(pwm, "tegra-pwm", NULL, 17, 0x110, 432000000, mux_pllp_pllc_clk32_clkm, MUX | MUX_PWM | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(d_audio, "tegra30-ahub", "d_audio", 106, 0x3d0, 48000000, mux_plla_pllc_pllp_clkm, MUX | DIV_U71);
+PERIPH_CLK(dam0, "tegra30-dam.0", NULL, 108, 0x3d8, 48000000, mux_plla_pllc_pllp_clkm, MUX | DIV_U71);
+PERIPH_CLK(dam1, "tegra30-dam.1", NULL, 109, 0x3dc, 48000000, mux_plla_pllc_pllp_clkm, MUX | DIV_U71);
+PERIPH_CLK(dam2, "tegra30-dam.2", NULL, 110, 0x3e0, 48000000, mux_plla_pllc_pllp_clkm, MUX | DIV_U71);
+PERIPH_CLK(hda, "tegra30-hda", "hda", 125, 0x428, 108000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(hda2codec_2x, "tegra30-hda", "hda2codec", 111, 0x3e4, 48000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(hda2hdmi, "tegra30-hda", "hda2hdmi", 128, 0, 48000000, mux_clk_m, 0);
+PERIPH_CLK(sbc1, "spi_tegra.0", NULL, 41, 0x134, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(sbc2, "spi_tegra.1", NULL, 44, 0x118, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(sbc3, "spi_tegra.2", NULL, 46, 0x11c, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(sbc4, "spi_tegra.3", NULL, 68, 0x1b4, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(sbc5, "spi_tegra.4", NULL, 104, 0x3c8, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(sbc6, "spi_tegra.5", NULL, 105, 0x3cc, 160000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(sata_oob, "tegra_sata_oob", NULL, 123, 0x420, 216000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(sata, "tegra_sata", NULL, 124, 0x424, 216000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(sata_cold, "tegra_sata_cold", NULL, 129, 0, 48000000, mux_clk_m, 0);
+PERIPH_CLK(ndflash, "tegra_nand", NULL, 13, 0x160, 240000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(ndspeed, "tegra_nand_speed", NULL, 80, 0x3f8, 240000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(vfir, "vfir", NULL, 7, 0x168, 72000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(sdmmc1, "sdhci-tegra.0", NULL, 14, 0x150, 208000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* scales with voltage */
+PERIPH_CLK(sdmmc2, "sdhci-tegra.1", NULL, 9, 0x154, 104000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* scales with voltage */
+PERIPH_CLK(sdmmc3, "sdhci-tegra.2", NULL, 69, 0x1bc, 208000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* scales with voltage */
+PERIPH_CLK(sdmmc4, "sdhci-tegra.3", NULL, 15, 0x164, 104000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* scales with voltage */
+PERIPH_CLK(vcp, "tegra-avp", "vcp", 29, 0, 250000000, mux_clk_m, 0);
+PERIPH_CLK(bsea, "tegra-avp", "bsea", 62, 0, 250000000, mux_clk_m, 0);
+PERIPH_CLK(bsev, "tegra-aes", "bsev", 63, 0, 250000000, mux_clk_m, 0);
+PERIPH_CLK(vde, "vde", NULL, 61, 0x1c8, 520000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | DIV_U71_INT);
+PERIPH_CLK(csite, "csite", NULL, 73, 0x1d4, 144000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* max rate ??? */
+PERIPH_CLK(la, "la", NULL, 76, 0x1f8, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71);
+PERIPH_CLK(owr, "tegra_w1", NULL, 71, 0x1cc, 26000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(nor, "nor", NULL, 42, 0x1d0, 127000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71); /* requires min voltage */
+PERIPH_CLK(mipi, "mipi", NULL, 50, 0x174, 60000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | PERIPH_ON_APB); /* scales with voltage */
+PERIPH_CLK(i2c1, "tegra-i2c.0", "div-clk", 12, 0x124, 26000000, mux_pllp_clkm, MUX | DIV_U16 | PERIPH_ON_APB);
+PERIPH_CLK(i2c2, "tegra-i2c.1", "div-clk", 54, 0x198, 26000000, mux_pllp_clkm, MUX | DIV_U16 | PERIPH_ON_APB);
+PERIPH_CLK(i2c3, "tegra-i2c.2", "div-clk", 67, 0x1b8, 26000000, mux_pllp_clkm, MUX | DIV_U16 | PERIPH_ON_APB);
+PERIPH_CLK(i2c4, "tegra-i2c.3", "div-clk", 103, 0x3c4, 26000000, mux_pllp_clkm, MUX | DIV_U16 | PERIPH_ON_APB);
+PERIPH_CLK(i2c5, "tegra-i2c.4", "div-clk", 47, 0x128, 26000000, mux_pllp_clkm, MUX | DIV_U16 | PERIPH_ON_APB);
+PERIPH_CLK(uarta, "tegra-uart.0", NULL, 6, 0x178, 800000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | DIV_U71_UART | PERIPH_ON_APB);
+PERIPH_CLK(uartb, "tegra-uart.1", NULL, 7, 0x17c, 800000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | DIV_U71_UART | PERIPH_ON_APB);
+PERIPH_CLK(uartc, "tegra-uart.2", NULL, 55, 0x1a0, 800000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | DIV_U71_UART | PERIPH_ON_APB);
+PERIPH_CLK(uartd, "tegra-uart.3", NULL, 65, 0x1c0, 800000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | DIV_U71_UART | PERIPH_ON_APB);
+PERIPH_CLK(uarte, "tegra-uart.4", NULL, 66, 0x1c4, 800000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | DIV_U71_UART | PERIPH_ON_APB);
+PERIPH_CLK(vi, "tegra_camera", "vi", 20, 0x148, 425000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | DIV_U71_INT);
+PERIPH_CLK(3d, "3d", NULL, 24, 0x158, 520000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | DIV_U71_INT | DIV_U71_IDLE | PERIPH_MANUAL_RESET);
+PERIPH_CLK(3d2, "3d2", NULL, 98, 0x3b0, 520000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | DIV_U71_INT | DIV_U71_IDLE | PERIPH_MANUAL_RESET);
+PERIPH_CLK(2d, "2d", NULL, 21, 0x15c, 520000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | DIV_U71_INT | DIV_U71_IDLE);
+PERIPH_CLK(vi_sensor, "tegra_camera", "vi_sensor", 20, 0x1a8, 150000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | PERIPH_NO_RESET);
+PERIPH_CLK(epp, "epp", NULL, 19, 0x16c, 520000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | DIV_U71_INT);
+PERIPH_CLK(mpe, "mpe", NULL, 60, 0x170, 520000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | DIV_U71_INT);
+PERIPH_CLK(host1x, "host1x", NULL, 28, 0x180, 260000000, mux_pllm_pllc_pllp_plla, MUX | DIV_U71 | DIV_U71_INT);
+PERIPH_CLK(cve, "cve", NULL, 49, 0x140, 250000000, mux_pllp_plld_pllc_clkm, MUX | DIV_U71); /* requires min voltage */
+PERIPH_CLK(tvo, "tvo", NULL, 49, 0x188, 250000000, mux_pllp_plld_pllc_clkm, MUX | DIV_U71); /* requires min voltage */
+PERIPH_CLK(dtv, "dtv", NULL, 79, 0x1dc, 250000000, mux_clk_m, 0);
+PERIPH_CLK(hdmi, "hdmi", NULL, 51, 0x18c, 148500000, mux_pllp_pllm_plld_plla_pllc_plld2_clkm, MUX | MUX8 | DIV_U71);
+PERIPH_CLK(tvdac, "tvdac", NULL, 53, 0x194, 220000000, mux_pllp_plld_pllc_clkm, MUX | DIV_U71); /* requires min voltage */
+PERIPH_CLK(disp1, "tegradc.0", NULL, 27, 0x138, 600000000, mux_pllp_pllm_plld_plla_pllc_plld2_clkm, MUX | MUX8);
+PERIPH_CLK(disp2, "tegradc.1", NULL, 26, 0x13c, 600000000, mux_pllp_pllm_plld_plla_pllc_plld2_clkm, MUX | MUX8);
+PERIPH_CLK(usbd, "fsl-tegra-udc", NULL, 22, 0, 480000000, mux_clk_m, 0); /* requires min voltage */
+PERIPH_CLK(usb2, "tegra-ehci.1", NULL, 58, 0, 480000000, mux_clk_m, 0); /* requires min voltage */
+PERIPH_CLK(usb3, "tegra-ehci.2", NULL, 59, 0, 480000000, mux_clk_m, 0); /* requires min voltage */
+PERIPH_CLK(dsia, "tegradc.0", "dsia", 48, 0, 500000000, mux_plld_out0, 0);
+PERIPH_CLK(csi, "tegra_camera", "csi", 52, 0, 102000000, mux_pllp_out3, 0);
+PERIPH_CLK(isp, "tegra_camera", "isp", 23, 0, 150000000, mux_clk_m, 0); /* same frequency as VI */
+PERIPH_CLK(csus, "tegra_camera", "csus", 92, 0, 150000000, mux_clk_m, PERIPH_NO_RESET);
+PERIPH_CLK(tsensor, "tegra-tsensor", NULL, 100, 0x3b8, 216000000, mux_pllp_pllc_clkm_clk32, MUX | DIV_U71);
+PERIPH_CLK(actmon, "actmon", NULL, 119, 0x3e8, 216000000, mux_pllp_pllc_clk32_clkm, MUX | DIV_U71);
+PERIPH_CLK(extern1, "extern1", NULL, 120, 0x3ec, 216000000, mux_plla_clk32_pllp_clkm_plle, MUX | MUX8 | DIV_U71);
+PERIPH_CLK(extern2, "extern2", NULL, 121, 0x3f0, 216000000, mux_plla_clk32_pllp_clkm_plle, MUX | MUX8 | DIV_U71);
+PERIPH_CLK(extern3, "extern3", NULL, 122, 0x3f4, 216000000, mux_plla_clk32_pllp_clkm_plle, MUX | MUX8 | DIV_U71);
+PERIPH_CLK(i2cslow, "i2cslow", NULL, 81, 0x3fc, 26000000, mux_pllp_pllc_clk32_clkm, MUX | DIV_U71 | PERIPH_ON_APB);
+PERIPH_CLK(pcie, "tegra-pcie", "pcie", 70, 0, 250000000, mux_clk_m, 0);
+PERIPH_CLK(afi, "tegra-pcie", "afi", 72, 0, 250000000, mux_clk_m, 0);
+PERIPH_CLK(se, "se", NULL, 127, 0x42c, 520000000, mux_pllp_pllc_pllm_clkm, MUX | DIV_U71 | DIV_U71_INT);
+
+static struct clk tegra_dsib;
+static struct clk_tegra tegra_dsib_hw = {
+ .hw = {
+ .clk = &tegra_dsib,
+ },
+ .lookup = {
+ .dev_id = "tegradc.1",
+ .con_id = "dsib",
+ },
+ .reg = 0xd0,
+ .flags = MUX | PLLD,
+ .max_rate = 500000000,
+ .u.periph = {
+ .clk_num = 82,
+ },
+ .reset = &tegra30_periph_clk_reset,
+};
+static struct clk tegra_dsib = {
+ .name = "dsib",
+ .ops = &tegra30_dsib_clk_ops,
+ .hw = &tegra_dsib_hw.hw,
+ .parent_names = mux_plld_out0_plld2_out0,
+ .parents = mux_plld_out0_plld2_out0_p,
+ .num_parents = ARRAY_SIZE(mux_plld_out0_plld2_out0),
+};
+
+struct clk *tegra_list_clks[] = {
+ &tegra_apbdma,
+ &tegra_rtc,
+ &tegra_kbc,
+ &tegra_kfuse,
+ &tegra_fuse,
+ &tegra_fuse_burn,
+ &tegra_apbif,
+ &tegra_i2s0,
+ &tegra_i2s1,
+ &tegra_i2s2,
+ &tegra_i2s3,
+ &tegra_i2s4,
+ &tegra_spdif_out,
+ &tegra_spdif_in,
+ &tegra_pwm,
+ &tegra_d_audio,
+ &tegra_dam0,
+ &tegra_dam1,
+ &tegra_dam2,
+ &tegra_hda,
+ &tegra_hda2codec_2x,
+ &tegra_hda2hdmi,
+ &tegra_sbc1,
+ &tegra_sbc2,
+ &tegra_sbc3,
+ &tegra_sbc4,
+ &tegra_sbc5,
+ &tegra_sbc6,
+ &tegra_sata_oob,
+ &tegra_sata,
+ &tegra_sata_cold,
+ &tegra_ndflash,
+ &tegra_ndspeed,
+ &tegra_vfir,
+ &tegra_sdmmc1,
+ &tegra_sdmmc2,
+ &tegra_sdmmc3,
+ &tegra_sdmmc4,
+ &tegra_vcp,
+ &tegra_bsea,
+ &tegra_bsev,
+ &tegra_vde,
+ &tegra_csite,
+ &tegra_la,
+ &tegra_owr,
+ &tegra_nor,
+ &tegra_mipi,
+ &tegra_i2c1,
+ &tegra_i2c2,
+ &tegra_i2c3,
+ &tegra_i2c4,
+ &tegra_i2c5,
+ &tegra_uarta,
+ &tegra_uartb,
+ &tegra_uartc,
+ &tegra_uartd,
+ &tegra_uarte,
+ &tegra_vi,
+ &tegra_3d,
+ &tegra_3d2,
+ &tegra_2d,
+ &tegra_vi_sensor,
+ &tegra_epp,
+ &tegra_mpe,
+ &tegra_host1x,
+ &tegra_cve,
+ &tegra_tvo,
+ &tegra_dtv,
+ &tegra_hdmi,
+ &tegra_tvdac,
+ &tegra_disp1,
+ &tegra_disp2,
+ &tegra_usbd,
+ &tegra_usb2,
+ &tegra_usb3,
+ &tegra_dsia,
+ &tegra_dsib,
+ &tegra_csi,
+ &tegra_isp,
+ &tegra_csus,
+ &tegra_tsensor,
+ &tegra_actmon,
+ &tegra_extern1,
+ &tegra_extern2,
+ &tegra_extern3,
+ &tegra_i2cslow,
+ &tegra_pcie,
+ &tegra_afi,
+ &tegra_se,
+};
+
+#define CLK_DUPLICATE(_name, _dev, _con) \
+ { \
+ .name = _name, \
+ .lookup = { \
+ .dev_id = _dev, \
+ .con_id = _con, \
+ }, \
+ }
+
+/* Some clocks may be used by different drivers depending on the board
+ * configuration. List those here to register them twice in the clock lookup
+ * table under two names.
+ */
+struct clk_duplicate tegra_clk_duplicates[] = {
+ CLK_DUPLICATE("uarta", "serial8250.0", NULL),
+ CLK_DUPLICATE("uartb", "serial8250.1", NULL),
+ CLK_DUPLICATE("uartc", "serial8250.2", NULL),
+ CLK_DUPLICATE("uartd", "serial8250.3", NULL),
+ CLK_DUPLICATE("uarte", "serial8250.4", NULL),
+ CLK_DUPLICATE("usbd", "utmip-pad", NULL),
+ CLK_DUPLICATE("usbd", "tegra-ehci.0", NULL),
+ CLK_DUPLICATE("usbd", "tegra-otg", NULL),
+ CLK_DUPLICATE("hdmi", "tegradc.0", "hdmi"),
+ CLK_DUPLICATE("hdmi", "tegradc.1", "hdmi"),
+ CLK_DUPLICATE("dsib", "tegradc.0", "dsib"),
+ CLK_DUPLICATE("dsia", "tegradc.1", "dsia"),
+ CLK_DUPLICATE("bsev", "tegra-avp", "bsev"),
+ CLK_DUPLICATE("bsev", "nvavp", "bsev"),
+ CLK_DUPLICATE("vde", "tegra-aes", "vde"),
+ CLK_DUPLICATE("bsea", "tegra-aes", "bsea"),
+ CLK_DUPLICATE("bsea", "nvavp", "bsea"),
+ CLK_DUPLICATE("cml1", "tegra_sata_cml", NULL),
+ CLK_DUPLICATE("cml0", "tegra_pcie", "cml"),
+ CLK_DUPLICATE("pciex", "tegra_pcie", "pciex"),
+ CLK_DUPLICATE("i2c1", "tegra-i2c-slave.0", NULL),
+ CLK_DUPLICATE("i2c2", "tegra-i2c-slave.1", NULL),
+ CLK_DUPLICATE("i2c3", "tegra-i2c-slave.2", NULL),
+ CLK_DUPLICATE("i2c4", "tegra-i2c-slave.3", NULL),
+ CLK_DUPLICATE("i2c5", "tegra-i2c-slave.4", NULL),
+ CLK_DUPLICATE("sbc1", "spi_slave_tegra.0", NULL),
+ CLK_DUPLICATE("sbc2", "spi_slave_tegra.1", NULL),
+ CLK_DUPLICATE("sbc3", "spi_slave_tegra.2", NULL),
+ CLK_DUPLICATE("sbc4", "spi_slave_tegra.3", NULL),
+ CLK_DUPLICATE("sbc5", "spi_slave_tegra.4", NULL),
+ CLK_DUPLICATE("sbc6", "spi_slave_tegra.5", NULL),
+ CLK_DUPLICATE("twd", "smp_twd", NULL),
+ CLK_DUPLICATE("vcp", "nvavp", "vcp"),
+ CLK_DUPLICATE("i2s0", NULL, "i2s0"),
+ CLK_DUPLICATE("i2s1", NULL, "i2s1"),
+ CLK_DUPLICATE("i2s2", NULL, "i2s2"),
+ CLK_DUPLICATE("i2s3", NULL, "i2s3"),
+ CLK_DUPLICATE("i2s4", NULL, "i2s4"),
+ CLK_DUPLICATE("dam0", NULL, "dam0"),
+ CLK_DUPLICATE("dam1", NULL, "dam1"),
+ CLK_DUPLICATE("dam2", NULL, "dam2"),
+ CLK_DUPLICATE("spdif_in", NULL, "spdif_in"),
+ CLK_DUPLICATE("pll_p_out3", "tegra-i2c.0", "fast-clk"),
+ CLK_DUPLICATE("pll_p_out3", "tegra-i2c.1", "fast-clk"),
+ CLK_DUPLICATE("pll_p_out3", "tegra-i2c.2", "fast-clk"),
+ CLK_DUPLICATE("pll_p_out3", "tegra-i2c.3", "fast-clk"),
+ CLK_DUPLICATE("pll_p_out3", "tegra-i2c.4", "fast-clk"),
+};
+
+struct clk *tegra_ptr_clks[] = {
+ &tegra_clk_32k,
+ &tegra_clk_m,
+ &tegra_clk_m_div2,
+ &tegra_clk_m_div4,
+ &tegra_pll_ref,
+ &tegra_pll_m,
+ &tegra_pll_m_out1,
+ &tegra_pll_c,
+ &tegra_pll_c_out1,
+ &tegra_pll_p,
+ &tegra_pll_p_out1,
+ &tegra_pll_p_out2,
+ &tegra_pll_p_out3,
+ &tegra_pll_p_out4,
+ &tegra_pll_a,
+ &tegra_pll_a_out0,
+ &tegra_pll_d,
+ &tegra_pll_d_out0,
+ &tegra_pll_d2,
+ &tegra_pll_d2_out0,
+ &tegra_pll_u,
+ &tegra_pll_x,
+ &tegra_pll_x_out0,
+ &tegra_pll_e,
+ &tegra_clk_cclk_g,
+ &tegra_cml0,
+ &tegra_cml1,
+ &tegra_pciex,
+ &tegra_clk_sclk,
+ &tegra_clk_blink,
+ &tegra30_clk_twd,
+};
+
+static void tegra30_init_one_clock(struct clk *c)
+{
+ struct clk_tegra *clk = to_clk_tegra(c->hw);
+ __clk_init(NULL, c);
+ INIT_LIST_HEAD(&clk->shared_bus_list);
+ if (!clk->lookup.dev_id && !clk->lookup.con_id)
+ clk->lookup.con_id = c->name;
+ clk->lookup.clk = c;
+ clkdev_add(&clk->lookup);
+ tegra_clk_add(c);
+}
+
+void __init tegra30_init_clocks(void)
+{
+ int i;
+ struct clk *c;
+
+ for (i = 0; i < ARRAY_SIZE(tegra_ptr_clks); i++)
+ tegra30_init_one_clock(tegra_ptr_clks[i]);
+
+ for (i = 0; i < ARRAY_SIZE(tegra_list_clks); i++)
+ tegra30_init_one_clock(tegra_list_clks[i]);
+
+ for (i = 0; i < ARRAY_SIZE(tegra_clk_duplicates); i++) {
+ c = tegra_get_clock_by_name(tegra_clk_duplicates[i].name);
+ if (!c) {
+ pr_err("%s: Unknown duplicate clock %s\n", __func__,
+ tegra_clk_duplicates[i].name);
+ continue;
+ }
+
+ tegra_clk_duplicates[i].lookup.clk = c;
+ clkdev_add(&tegra_clk_duplicates[i].lookup);
+ }
+
+ for (i = 0; i < ARRAY_SIZE(tegra_sync_source_list); i++)
+ tegra30_init_one_clock(tegra_sync_source_list[i]);
+ for (i = 0; i < ARRAY_SIZE(tegra_clk_audio_list); i++)
+ tegra30_init_one_clock(tegra_clk_audio_list[i]);
+ for (i = 0; i < ARRAY_SIZE(tegra_clk_audio_2x_list); i++)
+ tegra30_init_one_clock(tegra_clk_audio_2x_list[i]);
+
+ for (i = 0; i < ARRAY_SIZE(tegra_clk_out_list); i++)
+ tegra30_init_one_clock(tegra_clk_out_list[i]);
+
+ tegra30_cpu_car_ops_init();
+}
diff --git a/arch/arm/mach-tegra/tegra_cpu_car.h b/arch/arm/mach-tegra/tegra_cpu_car.h
new file mode 100644
index 00000000000..30d063ad2be
--- /dev/null
+++ b/arch/arm/mach-tegra/tegra_cpu_car.h
@@ -0,0 +1,87 @@
+/*
+ * Copyright (c) 2012, NVIDIA CORPORATION. All rights reserved.
+ *
+ * This program is free software; you can redistribute it and/or modify it
+ * under the terms and conditions of the GNU General Public License,
+ * version 2, as published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope 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, see <http://www.gnu.org/licenses/>.
+ */
+
+#ifndef __MACH_TEGRA_CPU_CAR_H
+#define __MACH_TEGRA_CPU_CAR_H
+
+/*
+ * Tegra CPU clock and reset control ops
+ *
+ * wait_for_reset:
+ * keep waiting until the CPU in reset state
+ * put_in_reset:
+ * put the CPU in reset state
+ * out_of_reset:
+ * release the CPU from reset state
+ * enable_clock:
+ * CPU clock un-gate
+ * disable_clock:
+ * CPU clock gate
+ */
+struct tegra_cpu_car_ops {
+ void (*wait_for_reset)(u32 cpu);
+ void (*put_in_reset)(u32 cpu);
+ void (*out_of_reset)(u32 cpu);
+ void (*enable_clock)(u32 cpu);
+ void (*disable_clock)(u32 cpu);
+};
+
+extern struct tegra_cpu_car_ops *tegra_cpu_car_ops;
+
+static inline void tegra_wait_cpu_in_reset(u32 cpu)
+{
+ if (WARN_ON(!tegra_cpu_car_ops->wait_for_reset))
+ return;
+
+ tegra_cpu_car_ops->wait_for_reset(cpu);
+}
+
+static inline void tegra_put_cpu_in_reset(u32 cpu)
+{
+ if (WARN_ON(!tegra_cpu_car_ops->put_in_reset))
+ return;
+
+ tegra_cpu_car_ops->put_in_reset(cpu);
+}
+
+static inline void tegra_cpu_out_of_reset(u32 cpu)
+{
+ if (WARN_ON(!tegra_cpu_car_ops->out_of_reset))
+ return;
+
+ tegra_cpu_car_ops->out_of_reset(cpu);
+}
+
+static inline void tegra_enable_cpu_clock(u32 cpu)
+{
+ if (WARN_ON(!tegra_cpu_car_ops->enable_clock))
+ return;
+
+ tegra_cpu_car_ops->enable_clock(cpu);
+}
+
+static inline void tegra_disable_cpu_clock(u32 cpu)
+{
+ if (WARN_ON(!tegra_cpu_car_ops->disable_clock))
+ return;
+
+ tegra_cpu_car_ops->disable_clock(cpu);
+}
+
+void tegra20_cpu_car_ops_init(void);
+void tegra30_cpu_car_ops_init(void);
+
+#endif /* __MACH_TEGRA_CPU_CAR_H */
diff --git a/arch/arm/mach-tegra/timer.c b/arch/arm/mach-tegra/timer.c
index 57b5bdc13b9..eccdce98304 100644
--- a/arch/arm/mach-tegra/timer.c
+++ b/arch/arm/mach-tegra/timer.c
@@ -33,7 +33,6 @@
#include <mach/iomap.h>
#include <mach/irqs.h>
-#include <mach/suspend.h>
#include "board.h"
#include "clock.h"
diff --git a/arch/arm/mach-tegra/usb_phy.c b/arch/arm/mach-tegra/usb_phy.c
deleted file mode 100644
index 022b33a05c3..00000000000
--- a/arch/arm/mach-tegra/usb_phy.c
+++ /dev/null
@@ -1,817 +0,0 @@
-/*
- * arch/arm/mach-tegra/usb_phy.c
- *
- * Copyright (C) 2010 Google, Inc.
- *
- * Author:
- * Erik Gilling <konkers@google.com>
- * Benoit Goby <benoit@android.com>
- *
- * This software is licensed under the terms of the GNU General Public
- * License version 2, as published by the Free Software Foundation, and
- * may be copied, distributed, and modified under those terms.
- *
- * 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.
- *
- */
-
-#include <linux/resource.h>
-#include <linux/delay.h>
-#include <linux/slab.h>
-#include <linux/err.h>
-#include <linux/export.h>
-#include <linux/platform_device.h>
-#include <linux/io.h>
-#include <linux/gpio.h>
-#include <linux/of_gpio.h>
-#include <linux/usb/otg.h>
-#include <linux/usb/ulpi.h>
-#include <asm/mach-types.h>
-#include <mach/gpio-tegra.h>
-#include <mach/usb_phy.h>
-#include <mach/iomap.h>
-
-#define ULPI_VIEWPORT 0x170
-
-#define USB_PORTSC1 0x184
-#define USB_PORTSC1_PTS(x) (((x) & 0x3) << 30)
-#define USB_PORTSC1_PSPD(x) (((x) & 0x3) << 26)
-#define USB_PORTSC1_PHCD (1 << 23)
-#define USB_PORTSC1_WKOC (1 << 22)
-#define USB_PORTSC1_WKDS (1 << 21)
-#define USB_PORTSC1_WKCN (1 << 20)
-#define USB_PORTSC1_PTC(x) (((x) & 0xf) << 16)
-#define USB_PORTSC1_PP (1 << 12)
-#define USB_PORTSC1_SUSP (1 << 7)
-#define USB_PORTSC1_PE (1 << 2)
-#define USB_PORTSC1_CCS (1 << 0)
-
-#define USB_SUSP_CTRL 0x400
-#define USB_WAKE_ON_CNNT_EN_DEV (1 << 3)
-#define USB_WAKE_ON_DISCON_EN_DEV (1 << 4)
-#define USB_SUSP_CLR (1 << 5)
-#define USB_PHY_CLK_VALID (1 << 7)
-#define UTMIP_RESET (1 << 11)
-#define UHSIC_RESET (1 << 11)
-#define UTMIP_PHY_ENABLE (1 << 12)
-#define ULPI_PHY_ENABLE (1 << 13)
-#define USB_SUSP_SET (1 << 14)
-#define USB_WAKEUP_DEBOUNCE_COUNT(x) (((x) & 0x7) << 16)
-
-#define USB1_LEGACY_CTRL 0x410
-#define USB1_NO_LEGACY_MODE (1 << 0)
-#define USB1_VBUS_SENSE_CTL_MASK (3 << 1)
-#define USB1_VBUS_SENSE_CTL_VBUS_WAKEUP (0 << 1)
-#define USB1_VBUS_SENSE_CTL_AB_SESS_VLD_OR_VBUS_WAKEUP \
- (1 << 1)
-#define USB1_VBUS_SENSE_CTL_AB_SESS_VLD (2 << 1)
-#define USB1_VBUS_SENSE_CTL_A_SESS_VLD (3 << 1)
-
-#define ULPI_TIMING_CTRL_0 0x424
-#define ULPI_OUTPUT_PINMUX_BYP (1 << 10)
-#define ULPI_CLKOUT_PINMUX_BYP (1 << 11)
-
-#define ULPI_TIMING_CTRL_1 0x428
-#define ULPI_DATA_TRIMMER_LOAD (1 << 0)
-#define ULPI_DATA_TRIMMER_SEL(x) (((x) & 0x7) << 1)
-#define ULPI_STPDIRNXT_TRIMMER_LOAD (1 << 16)
-#define ULPI_STPDIRNXT_TRIMMER_SEL(x) (((x) & 0x7) << 17)
-#define ULPI_DIR_TRIMMER_LOAD (1 << 24)
-#define ULPI_DIR_TRIMMER_SEL(x) (((x) & 0x7) << 25)
-
-#define UTMIP_PLL_CFG1 0x804
-#define UTMIP_XTAL_FREQ_COUNT(x) (((x) & 0xfff) << 0)
-#define UTMIP_PLLU_ENABLE_DLY_COUNT(x) (((x) & 0x1f) << 27)
-
-#define UTMIP_XCVR_CFG0 0x808
-#define UTMIP_XCVR_SETUP(x) (((x) & 0xf) << 0)
-#define UTMIP_XCVR_LSRSLEW(x) (((x) & 0x3) << 8)
-#define UTMIP_XCVR_LSFSLEW(x) (((x) & 0x3) << 10)
-#define UTMIP_FORCE_PD_POWERDOWN (1 << 14)
-#define UTMIP_FORCE_PD2_POWERDOWN (1 << 16)
-#define UTMIP_FORCE_PDZI_POWERDOWN (1 << 18)
-#define UTMIP_XCVR_HSSLEW_MSB(x) (((x) & 0x7f) << 25)
-
-#define UTMIP_BIAS_CFG0 0x80c
-#define UTMIP_OTGPD (1 << 11)
-#define UTMIP_BIASPD (1 << 10)
-
-#define UTMIP_HSRX_CFG0 0x810
-#define UTMIP_ELASTIC_LIMIT(x) (((x) & 0x1f) << 10)
-#define UTMIP_IDLE_WAIT(x) (((x) & 0x1f) << 15)
-
-#define UTMIP_HSRX_CFG1 0x814
-#define UTMIP_HS_SYNC_START_DLY(x) (((x) & 0x1f) << 1)
-
-#define UTMIP_TX_CFG0 0x820
-#define UTMIP_FS_PREABMLE_J (1 << 19)
-#define UTMIP_HS_DISCON_DISABLE (1 << 8)
-
-#define UTMIP_MISC_CFG0 0x824
-#define UTMIP_DPDM_OBSERVE (1 << 26)
-#define UTMIP_DPDM_OBSERVE_SEL(x) (((x) & 0xf) << 27)
-#define UTMIP_DPDM_OBSERVE_SEL_FS_J UTMIP_DPDM_OBSERVE_SEL(0xf)
-#define UTMIP_DPDM_OBSERVE_SEL_FS_K UTMIP_DPDM_OBSERVE_SEL(0xe)
-#define UTMIP_DPDM_OBSERVE_SEL_FS_SE1 UTMIP_DPDM_OBSERVE_SEL(0xd)
-#define UTMIP_DPDM_OBSERVE_SEL_FS_SE0 UTMIP_DPDM_OBSERVE_SEL(0xc)
-#define UTMIP_SUSPEND_EXIT_ON_EDGE (1 << 22)
-
-#define UTMIP_MISC_CFG1 0x828
-#define UTMIP_PLL_ACTIVE_DLY_COUNT(x) (((x) & 0x1f) << 18)
-#define UTMIP_PLLU_STABLE_COUNT(x) (((x) & 0xfff) << 6)
-
-#define UTMIP_DEBOUNCE_CFG0 0x82c
-#define UTMIP_BIAS_DEBOUNCE_A(x) (((x) & 0xffff) << 0)
-
-#define UTMIP_BAT_CHRG_CFG0 0x830
-#define UTMIP_PD_CHRG (1 << 0)
-
-#define UTMIP_SPARE_CFG0 0x834
-#define FUSE_SETUP_SEL (1 << 3)
-
-#define UTMIP_XCVR_CFG1 0x838
-#define UTMIP_FORCE_PDDISC_POWERDOWN (1 << 0)
-#define UTMIP_FORCE_PDCHRP_POWERDOWN (1 << 2)
-#define UTMIP_FORCE_PDDR_POWERDOWN (1 << 4)
-#define UTMIP_XCVR_TERM_RANGE_ADJ(x) (((x) & 0xf) << 18)
-
-#define UTMIP_BIAS_CFG1 0x83c
-#define UTMIP_BIAS_PDTRK_COUNT(x) (((x) & 0x1f) << 3)
-
-static DEFINE_SPINLOCK(utmip_pad_lock);
-static int utmip_pad_count;
-
-struct tegra_xtal_freq {
- int freq;
- u8 enable_delay;
- u8 stable_count;
- u8 active_delay;
- u8 xtal_freq_count;
- u16 debounce;
-};
-
-static const struct tegra_xtal_freq tegra_freq_table[] = {
- {
- .freq = 12000000,
- .enable_delay = 0x02,
- .stable_count = 0x2F,
- .active_delay = 0x04,
- .xtal_freq_count = 0x76,
- .debounce = 0x7530,
- },
- {
- .freq = 13000000,
- .enable_delay = 0x02,
- .stable_count = 0x33,
- .active_delay = 0x05,
- .xtal_freq_count = 0x7F,
- .debounce = 0x7EF4,
- },
- {
- .freq = 19200000,
- .enable_delay = 0x03,
- .stable_count = 0x4B,
- .active_delay = 0x06,
- .xtal_freq_count = 0xBB,
- .debounce = 0xBB80,
- },
- {
- .freq = 26000000,
- .enable_delay = 0x04,
- .stable_count = 0x66,
- .active_delay = 0x09,
- .xtal_freq_count = 0xFE,
- .debounce = 0xFDE8,
- },
-};
-
-static struct tegra_utmip_config utmip_default[] = {
- [0] = {
- .hssync_start_delay = 9,
- .idle_wait_delay = 17,
- .elastic_limit = 16,
- .term_range_adj = 6,
- .xcvr_setup = 9,
- .xcvr_lsfslew = 1,
- .xcvr_lsrslew = 1,
- },
- [2] = {
- .hssync_start_delay = 9,
- .idle_wait_delay = 17,
- .elastic_limit = 16,
- .term_range_adj = 6,
- .xcvr_setup = 9,
- .xcvr_lsfslew = 2,
- .xcvr_lsrslew = 2,
- },
-};
-
-static inline bool phy_is_ulpi(struct tegra_usb_phy *phy)
-{
- return (phy->instance == 1);
-}
-
-static int utmip_pad_open(struct tegra_usb_phy *phy)
-{
- phy->pad_clk = clk_get_sys("utmip-pad", NULL);
- if (IS_ERR(phy->pad_clk)) {
- pr_err("%s: can't get utmip pad clock\n", __func__);
- return PTR_ERR(phy->pad_clk);
- }
-
- if (phy->instance == 0) {
- phy->pad_regs = phy->regs;
- } else {
- phy->pad_regs = ioremap(TEGRA_USB_BASE, TEGRA_USB_SIZE);
- if (!phy->pad_regs) {
- pr_err("%s: can't remap usb registers\n", __func__);
- clk_put(phy->pad_clk);
- return -ENOMEM;
- }
- }
- return 0;
-}
-
-static void utmip_pad_close(struct tegra_usb_phy *phy)
-{
- if (phy->instance != 0)
- iounmap(phy->pad_regs);
- clk_put(phy->pad_clk);
-}
-
-static void utmip_pad_power_on(struct tegra_usb_phy *phy)
-{
- unsigned long val, flags;
- void __iomem *base = phy->pad_regs;
-
- clk_prepare_enable(phy->pad_clk);
-
- spin_lock_irqsave(&utmip_pad_lock, flags);
-
- if (utmip_pad_count++ == 0) {
- val = readl(base + UTMIP_BIAS_CFG0);
- val &= ~(UTMIP_OTGPD | UTMIP_BIASPD);
- writel(val, base + UTMIP_BIAS_CFG0);
- }
-
- spin_unlock_irqrestore(&utmip_pad_lock, flags);
-
- clk_disable_unprepare(phy->pad_clk);
-}
-
-static int utmip_pad_power_off(struct tegra_usb_phy *phy)
-{
- unsigned long val, flags;
- void __iomem *base = phy->pad_regs;
-
- if (!utmip_pad_count) {
- pr_err("%s: utmip pad already powered off\n", __func__);
- return -EINVAL;
- }
-
- clk_prepare_enable(phy->pad_clk);
-
- spin_lock_irqsave(&utmip_pad_lock, flags);
-
- if (--utmip_pad_count == 0) {
- val = readl(base + UTMIP_BIAS_CFG0);
- val |= UTMIP_OTGPD | UTMIP_BIASPD;
- writel(val, base + UTMIP_BIAS_CFG0);
- }
-
- spin_unlock_irqrestore(&utmip_pad_lock, flags);
-
- clk_disable_unprepare(phy->pad_clk);
-
- return 0;
-}
-
-static int utmi_wait_register(void __iomem *reg, u32 mask, u32 result)
-{
- unsigned long timeout = 2000;
- do {
- if ((readl(reg) & mask) == result)
- return 0;
- udelay(1);
- timeout--;
- } while (timeout);
- return -1;
-}
-
-static void utmi_phy_clk_disable(struct tegra_usb_phy *phy)
-{
- unsigned long val;
- void __iomem *base = phy->regs;
-
- if (phy->instance == 0) {
- val = readl(base + USB_SUSP_CTRL);
- val |= USB_SUSP_SET;
- writel(val, base + USB_SUSP_CTRL);
-
- udelay(10);
-
- val = readl(base + USB_SUSP_CTRL);
- val &= ~USB_SUSP_SET;
- writel(val, base + USB_SUSP_CTRL);
- }
-
- if (phy->instance == 2) {
- val = readl(base + USB_PORTSC1);
- val |= USB_PORTSC1_PHCD;
- writel(val, base + USB_PORTSC1);
- }
-
- if (utmi_wait_register(base + USB_SUSP_CTRL, USB_PHY_CLK_VALID, 0) < 0)
- pr_err("%s: timeout waiting for phy to stabilize\n", __func__);
-}
-
-static void utmi_phy_clk_enable(struct tegra_usb_phy *phy)
-{
- unsigned long val;
- void __iomem *base = phy->regs;
-
- if (phy->instance == 0) {
- val = readl(base + USB_SUSP_CTRL);
- val |= USB_SUSP_CLR;
- writel(val, base + USB_SUSP_CTRL);
-
- udelay(10);
-
- val = readl(base + USB_SUSP_CTRL);
- val &= ~USB_SUSP_CLR;
- writel(val, base + USB_SUSP_CTRL);
- }
-
- if (phy->instance == 2) {
- val = readl(base + USB_PORTSC1);
- val &= ~USB_PORTSC1_PHCD;
- writel(val, base + USB_PORTSC1);
- }
-
- if (utmi_wait_register(base + USB_SUSP_CTRL, USB_PHY_CLK_VALID,
- USB_PHY_CLK_VALID))
- pr_err("%s: timeout waiting for phy to stabilize\n", __func__);
-}
-
-static int utmi_phy_power_on(struct tegra_usb_phy *phy)
-{
- unsigned long val;
- void __iomem *base = phy->regs;
- struct tegra_utmip_config *config = phy->config;
-
- val = readl(base + USB_SUSP_CTRL);
- val |= UTMIP_RESET;
- writel(val, base + USB_SUSP_CTRL);
-
- if (phy->instance == 0) {
- val = readl(base + USB1_LEGACY_CTRL);
- val |= USB1_NO_LEGACY_MODE;
- writel(val, base + USB1_LEGACY_CTRL);
- }
-
- val = readl(base + UTMIP_TX_CFG0);
- val &= ~UTMIP_FS_PREABMLE_J;
- writel(val, base + UTMIP_TX_CFG0);
-
- val = readl(base + UTMIP_HSRX_CFG0);
- val &= ~(UTMIP_IDLE_WAIT(~0) | UTMIP_ELASTIC_LIMIT(~0));
- val |= UTMIP_IDLE_WAIT(config->idle_wait_delay);
- val |= UTMIP_ELASTIC_LIMIT(config->elastic_limit);
- writel(val, base + UTMIP_HSRX_CFG0);
-
- val = readl(base + UTMIP_HSRX_CFG1);
- val &= ~UTMIP_HS_SYNC_START_DLY(~0);
- val |= UTMIP_HS_SYNC_START_DLY(config->hssync_start_delay);
- writel(val, base + UTMIP_HSRX_CFG1);
-
- val = readl(base + UTMIP_DEBOUNCE_CFG0);
- val &= ~UTMIP_BIAS_DEBOUNCE_A(~0);
- val |= UTMIP_BIAS_DEBOUNCE_A(phy->freq->debounce);
- writel(val, base + UTMIP_DEBOUNCE_CFG0);
-
- val = readl(base + UTMIP_MISC_CFG0);
- val &= ~UTMIP_SUSPEND_EXIT_ON_EDGE;
- writel(val, base + UTMIP_MISC_CFG0);
-
- val = readl(base + UTMIP_MISC_CFG1);
- val &= ~(UTMIP_PLL_ACTIVE_DLY_COUNT(~0) | UTMIP_PLLU_STABLE_COUNT(~0));
- val |= UTMIP_PLL_ACTIVE_DLY_COUNT(phy->freq->active_delay) |
- UTMIP_PLLU_STABLE_COUNT(phy->freq->stable_count);
- writel(val, base + UTMIP_MISC_CFG1);
-
- val = readl(base + UTMIP_PLL_CFG1);
- val &= ~(UTMIP_XTAL_FREQ_COUNT(~0) | UTMIP_PLLU_ENABLE_DLY_COUNT(~0));
- val |= UTMIP_XTAL_FREQ_COUNT(phy->freq->xtal_freq_count) |
- UTMIP_PLLU_ENABLE_DLY_COUNT(phy->freq->enable_delay);
- writel(val, base + UTMIP_PLL_CFG1);
-
- if (phy->mode == TEGRA_USB_PHY_MODE_DEVICE) {
- val = readl(base + USB_SUSP_CTRL);
- val &= ~(USB_WAKE_ON_CNNT_EN_DEV | USB_WAKE_ON_DISCON_EN_DEV);
- writel(val, base + USB_SUSP_CTRL);
- }
-
- utmip_pad_power_on(phy);
-
- val = readl(base + UTMIP_XCVR_CFG0);
- val &= ~(UTMIP_FORCE_PD_POWERDOWN | UTMIP_FORCE_PD2_POWERDOWN |
- UTMIP_FORCE_PDZI_POWERDOWN | UTMIP_XCVR_SETUP(~0) |
- UTMIP_XCVR_LSFSLEW(~0) | UTMIP_XCVR_LSRSLEW(~0) |
- UTMIP_XCVR_HSSLEW_MSB(~0));
- val |= UTMIP_XCVR_SETUP(config->xcvr_setup);
- val |= UTMIP_XCVR_LSFSLEW(config->xcvr_lsfslew);
- val |= UTMIP_XCVR_LSRSLEW(config->xcvr_lsrslew);
- writel(val, base + UTMIP_XCVR_CFG0);
-
- val = readl(base + UTMIP_XCVR_CFG1);
- val &= ~(UTMIP_FORCE_PDDISC_POWERDOWN | UTMIP_FORCE_PDCHRP_POWERDOWN |
- UTMIP_FORCE_PDDR_POWERDOWN | UTMIP_XCVR_TERM_RANGE_ADJ(~0));
- val |= UTMIP_XCVR_TERM_RANGE_ADJ(config->term_range_adj);
- writel(val, base + UTMIP_XCVR_CFG1);
-
- val = readl(base + UTMIP_BAT_CHRG_CFG0);
- val &= ~UTMIP_PD_CHRG;
- writel(val, base + UTMIP_BAT_CHRG_CFG0);
-
- val = readl(base + UTMIP_BIAS_CFG1);
- val &= ~UTMIP_BIAS_PDTRK_COUNT(~0);
- val |= UTMIP_BIAS_PDTRK_COUNT(0x5);
- writel(val, base + UTMIP_BIAS_CFG1);
-
- if (phy->instance == 0) {
- val = readl(base + UTMIP_SPARE_CFG0);
- if (phy->mode == TEGRA_USB_PHY_MODE_DEVICE)
- val &= ~FUSE_SETUP_SEL;
- else
- val |= FUSE_SETUP_SEL;
- writel(val, base + UTMIP_SPARE_CFG0);
- }
-
- if (phy->instance == 2) {
- val = readl(base + USB_SUSP_CTRL);
- val |= UTMIP_PHY_ENABLE;
- writel(val, base + USB_SUSP_CTRL);
- }
-
- val = readl(base + USB_SUSP_CTRL);
- val &= ~UTMIP_RESET;
- writel(val, base + USB_SUSP_CTRL);
-
- if (phy->instance == 0) {
- val = readl(base + USB1_LEGACY_CTRL);
- val &= ~USB1_VBUS_SENSE_CTL_MASK;
- val |= USB1_VBUS_SENSE_CTL_A_SESS_VLD;
- writel(val, base + USB1_LEGACY_CTRL);
-
- val = readl(base + USB_SUSP_CTRL);
- val &= ~USB_SUSP_SET;
- writel(val, base + USB_SUSP_CTRL);
- }
-
- utmi_phy_clk_enable(phy);
-
- if (phy->instance == 2) {
- val = readl(base + USB_PORTSC1);
- val &= ~USB_PORTSC1_PTS(~0);
- writel(val, base + USB_PORTSC1);
- }
-
- return 0;
-}
-
-static void utmi_phy_power_off(struct tegra_usb_phy *phy)
-{
- unsigned long val;
- void __iomem *base = phy->regs;
-
- utmi_phy_clk_disable(phy);
-
- if (phy->mode == TEGRA_USB_PHY_MODE_DEVICE) {
- val = readl(base + USB_SUSP_CTRL);
- val &= ~USB_WAKEUP_DEBOUNCE_COUNT(~0);
- val |= USB_WAKE_ON_CNNT_EN_DEV | USB_WAKEUP_DEBOUNCE_COUNT(5);
- writel(val, base + USB_SUSP_CTRL);
- }
-
- val = readl(base + USB_SUSP_CTRL);
- val |= UTMIP_RESET;
- writel(val, base + USB_SUSP_CTRL);
-
- val = readl(base + UTMIP_BAT_CHRG_CFG0);
- val |= UTMIP_PD_CHRG;
- writel(val, base + UTMIP_BAT_CHRG_CFG0);
-
- val = readl(base + UTMIP_XCVR_CFG0);
- val |= UTMIP_FORCE_PD_POWERDOWN | UTMIP_FORCE_PD2_POWERDOWN |
- UTMIP_FORCE_PDZI_POWERDOWN;
- writel(val, base + UTMIP_XCVR_CFG0);
-
- val = readl(base + UTMIP_XCVR_CFG1);
- val |= UTMIP_FORCE_PDDISC_POWERDOWN | UTMIP_FORCE_PDCHRP_POWERDOWN |
- UTMIP_FORCE_PDDR_POWERDOWN;
- writel(val, base + UTMIP_XCVR_CFG1);
-
- utmip_pad_power_off(phy);
-}
-
-static void utmi_phy_preresume(struct tegra_usb_phy *phy)
-{
- unsigned long val;
- void __iomem *base = phy->regs;
-
- val = readl(base + UTMIP_TX_CFG0);
- val |= UTMIP_HS_DISCON_DISABLE;
- writel(val, base + UTMIP_TX_CFG0);
-}
-
-static void utmi_phy_postresume(struct tegra_usb_phy *phy)
-{
- unsigned long val;
- void __iomem *base = phy->regs;
-
- val = readl(base + UTMIP_TX_CFG0);
- val &= ~UTMIP_HS_DISCON_DISABLE;
- writel(val, base + UTMIP_TX_CFG0);
-}
-
-static void utmi_phy_restore_start(struct tegra_usb_phy *phy,
- enum tegra_usb_phy_port_speed port_speed)
-{
- unsigned long val;
- void __iomem *base = phy->regs;
-
- val = readl(base + UTMIP_MISC_CFG0);
- val &= ~UTMIP_DPDM_OBSERVE_SEL(~0);
- if (port_speed == TEGRA_USB_PHY_PORT_SPEED_LOW)
- val |= UTMIP_DPDM_OBSERVE_SEL_FS_K;
- else
- val |= UTMIP_DPDM_OBSERVE_SEL_FS_J;
- writel(val, base + UTMIP_MISC_CFG0);
- udelay(1);
-
- val = readl(base + UTMIP_MISC_CFG0);
- val |= UTMIP_DPDM_OBSERVE;
- writel(val, base + UTMIP_MISC_CFG0);
- udelay(10);
-}
-
-static void utmi_phy_restore_end(struct tegra_usb_phy *phy)
-{
- unsigned long val;
- void __iomem *base = phy->regs;
-
- val = readl(base + UTMIP_MISC_CFG0);
- val &= ~UTMIP_DPDM_OBSERVE;
- writel(val, base + UTMIP_MISC_CFG0);
- udelay(10);
-}
-
-static int ulpi_phy_power_on(struct tegra_usb_phy *phy)
-{
- int ret;
- unsigned long val;
- void __iomem *base = phy->regs;
- struct tegra_ulpi_config *config = phy->config;
-
- gpio_direction_output(config->reset_gpio, 0);
- msleep(5);
- gpio_direction_output(config->reset_gpio, 1);
-
- clk_prepare_enable(phy->clk);
- msleep(1);
-
- val = readl(base + USB_SUSP_CTRL);
- val |= UHSIC_RESET;
- writel(val, base + USB_SUSP_CTRL);
-
- val = readl(base + ULPI_TIMING_CTRL_0);
- val |= ULPI_OUTPUT_PINMUX_BYP | ULPI_CLKOUT_PINMUX_BYP;
- writel(val, base + ULPI_TIMING_CTRL_0);
-
- val = readl(base + USB_SUSP_CTRL);
- val |= ULPI_PHY_ENABLE;
- writel(val, base + USB_SUSP_CTRL);
-
- val = 0;
- writel(val, base + ULPI_TIMING_CTRL_1);
-
- val |= ULPI_DATA_TRIMMER_SEL(4);
- val |= ULPI_STPDIRNXT_TRIMMER_SEL(4);
- val |= ULPI_DIR_TRIMMER_SEL(4);
- writel(val, base + ULPI_TIMING_CTRL_1);
- udelay(10);
-
- val |= ULPI_DATA_TRIMMER_LOAD;
- val |= ULPI_STPDIRNXT_TRIMMER_LOAD;
- val |= ULPI_DIR_TRIMMER_LOAD;
- writel(val, base + ULPI_TIMING_CTRL_1);
-
- /* Fix VbusInvalid due to floating VBUS */
- ret = usb_phy_io_write(phy->ulpi, 0x40, 0x08);
- if (ret) {
- pr_err("%s: ulpi write failed\n", __func__);
- return ret;
- }
-
- ret = usb_phy_io_write(phy->ulpi, 0x80, 0x0B);
- if (ret) {
- pr_err("%s: ulpi write failed\n", __func__);
- return ret;
- }
-
- val = readl(base + USB_PORTSC1);
- val |= USB_PORTSC1_WKOC | USB_PORTSC1_WKDS | USB_PORTSC1_WKCN;
- writel(val, base + USB_PORTSC1);
-
- val = readl(base + USB_SUSP_CTRL);
- val |= USB_SUSP_CLR;
- writel(val, base + USB_SUSP_CTRL);
- udelay(100);
-
- val = readl(base + USB_SUSP_CTRL);
- val &= ~USB_SUSP_CLR;
- writel(val, base + USB_SUSP_CTRL);
-
- return 0;
-}
-
-static void ulpi_phy_power_off(struct tegra_usb_phy *phy)
-{
- unsigned long val;
- void __iomem *base = phy->regs;
- struct tegra_ulpi_config *config = phy->config;
-
- /* Clear WKCN/WKDS/WKOC wake-on events that can cause the USB
- * Controller to immediately bring the ULPI PHY out of low power
- */
- val = readl(base + USB_PORTSC1);
- val &= ~(USB_PORTSC1_WKOC | USB_PORTSC1_WKDS | USB_PORTSC1_WKCN);
- writel(val, base + USB_PORTSC1);
-
- gpio_direction_output(config->reset_gpio, 0);
- clk_disable(phy->clk);
-}
-
-struct tegra_usb_phy *tegra_usb_phy_open(struct device *dev, int instance,
- void __iomem *regs, void *config, enum tegra_usb_phy_mode phy_mode)
-{
- struct tegra_usb_phy *phy;
- struct tegra_ulpi_config *ulpi_config;
- unsigned long parent_rate;
- int i;
- int err;
-
- phy = kmalloc(sizeof(struct tegra_usb_phy), GFP_KERNEL);
- if (!phy)
- return ERR_PTR(-ENOMEM);
-
- phy->instance = instance;
- phy->regs = regs;
- phy->config = config;
- phy->mode = phy_mode;
-
- if (!phy->config) {
- if (phy_is_ulpi(phy)) {
- pr_err("%s: ulpi phy configuration missing", __func__);
- err = -EINVAL;
- goto err0;
- } else {
- phy->config = &utmip_default[instance];
- }
- }
-
- phy->pll_u = clk_get_sys(NULL, "pll_u");
- if (IS_ERR(phy->pll_u)) {
- pr_err("Can't get pll_u clock\n");
- err = PTR_ERR(phy->pll_u);
- goto err0;
- }
- clk_prepare_enable(phy->pll_u);
-
- parent_rate = clk_get_rate(clk_get_parent(phy->pll_u));
- for (i = 0; i < ARRAY_SIZE(tegra_freq_table); i++) {
- if (tegra_freq_table[i].freq == parent_rate) {
- phy->freq = &tegra_freq_table[i];
- break;
- }
- }
- if (!phy->freq) {
- pr_err("invalid pll_u parent rate %ld\n", parent_rate);
- err = -EINVAL;
- goto err1;
- }
-
- if (phy_is_ulpi(phy)) {
- ulpi_config = config;
- phy->clk = clk_get_sys(NULL, ulpi_config->clk);
- if (IS_ERR(phy->clk)) {
- pr_err("%s: can't get ulpi clock\n", __func__);
- err = -ENXIO;
- goto err1;
- }
- if (!gpio_is_valid(ulpi_config->reset_gpio))
- ulpi_config->reset_gpio =
- of_get_named_gpio(dev->of_node,
- "nvidia,phy-reset-gpio", 0);
- if (!gpio_is_valid(ulpi_config->reset_gpio)) {
- pr_err("%s: invalid reset gpio: %d\n", __func__,
- ulpi_config->reset_gpio);
- err = -EINVAL;
- goto err1;
- }
- gpio_request(ulpi_config->reset_gpio, "ulpi_phy_reset_b");
- gpio_direction_output(ulpi_config->reset_gpio, 0);
- phy->ulpi = otg_ulpi_create(&ulpi_viewport_access_ops, 0);
- phy->ulpi->io_priv = regs + ULPI_VIEWPORT;
- } else {
- err = utmip_pad_open(phy);
- if (err < 0)
- goto err1;
- }
-
- return phy;
-
-err1:
- clk_disable_unprepare(phy->pll_u);
- clk_put(phy->pll_u);
-err0:
- kfree(phy);
- return ERR_PTR(err);
-}
-EXPORT_SYMBOL_GPL(tegra_usb_phy_open);
-
-int tegra_usb_phy_power_on(struct tegra_usb_phy *phy)
-{
- if (phy_is_ulpi(phy))
- return ulpi_phy_power_on(phy);
- else
- return utmi_phy_power_on(phy);
-}
-EXPORT_SYMBOL_GPL(tegra_usb_phy_power_on);
-
-void tegra_usb_phy_power_off(struct tegra_usb_phy *phy)
-{
- if (phy_is_ulpi(phy))
- ulpi_phy_power_off(phy);
- else
- utmi_phy_power_off(phy);
-}
-EXPORT_SYMBOL_GPL(tegra_usb_phy_power_off);
-
-void tegra_usb_phy_preresume(struct tegra_usb_phy *phy)
-{
- if (!phy_is_ulpi(phy))
- utmi_phy_preresume(phy);
-}
-EXPORT_SYMBOL_GPL(tegra_usb_phy_preresume);
-
-void tegra_usb_phy_postresume(struct tegra_usb_phy *phy)
-{
- if (!phy_is_ulpi(phy))
- utmi_phy_postresume(phy);
-}
-EXPORT_SYMBOL_GPL(tegra_usb_phy_postresume);
-
-void tegra_ehci_phy_restore_start(struct tegra_usb_phy *phy,
- enum tegra_usb_phy_port_speed port_speed)
-{
- if (!phy_is_ulpi(phy))
- utmi_phy_restore_start(phy, port_speed);
-}
-EXPORT_SYMBOL_GPL(tegra_ehci_phy_restore_start);
-
-void tegra_ehci_phy_restore_end(struct tegra_usb_phy *phy)
-{
- if (!phy_is_ulpi(phy))
- utmi_phy_restore_end(phy);
-}
-EXPORT_SYMBOL_GPL(tegra_ehci_phy_restore_end);
-
-void tegra_usb_phy_clk_disable(struct tegra_usb_phy *phy)
-{
- if (!phy_is_ulpi(phy))
- utmi_phy_clk_disable(phy);
-}
-EXPORT_SYMBOL_GPL(tegra_usb_phy_clk_disable);
-
-void tegra_usb_phy_clk_enable(struct tegra_usb_phy *phy)
-{
- if (!phy_is_ulpi(phy))
- utmi_phy_clk_enable(phy);
-}
-EXPORT_SYMBOL_GPL(tegra_usb_phy_clk_enable);
-
-void tegra_usb_phy_close(struct tegra_usb_phy *phy)
-{
- if (phy_is_ulpi(phy))
- clk_put(phy->clk);
- else
- utmip_pad_close(phy);
- clk_disable_unprepare(phy->pll_u);
- clk_put(phy->pll_u);
- kfree(phy);
-}
-EXPORT_SYMBOL_GPL(tegra_usb_phy_close);