diff options
author | Len Brown <len.brown@intel.com> | 2012-04-06 21:48:59 -0400 |
---|---|---|
committer | Len Brown <len.brown@intel.com> | 2012-04-06 21:48:59 -0400 |
commit | eeaab2d8af2cf1d36d7086f22e9de42d6dd2995c (patch) | |
tree | 369b9c91a6d808944f07d2290fec6f9fe2731904 /drivers/edac/sb_edac.c | |
parent | ee01e663373343c63e0e3d364d09f6155378dbcc (diff) | |
parent | aaef292acf3a78d9c0bb6fb72226077d286b45d7 (diff) |
Merge branches 'idle-fix' and 'misc' into release
Diffstat (limited to 'drivers/edac/sb_edac.c')
-rw-r--r-- | drivers/edac/sb_edac.c | 54 |
1 files changed, 32 insertions, 22 deletions
diff --git a/drivers/edac/sb_edac.c b/drivers/edac/sb_edac.c index 1dc118d83cc..a203536d90d 100644 --- a/drivers/edac/sb_edac.c +++ b/drivers/edac/sb_edac.c @@ -20,6 +20,7 @@ #include <linux/mmzone.h> #include <linux/smp.h> #include <linux/bitmap.h> +#include <linux/math64.h> #include <asm/processor.h> #include <asm/mce.h> @@ -367,7 +368,7 @@ static const struct pci_id_table pci_dev_descr_sbridge_table[] = { /* * pci_device_id table for which devices we are looking for */ -static const struct pci_device_id sbridge_pci_tbl[] __devinitdata = { +static DEFINE_PCI_DEVICE_TABLE(sbridge_pci_tbl) = { {PCI_DEVICE(PCI_VENDOR_ID_INTEL, PCI_DEVICE_ID_INTEL_SBRIDGE_IMC_TA)}, {0,} /* 0 terminated list. */ }; @@ -670,6 +671,7 @@ static void get_memory_layout(const struct mem_ctl_info *mci) u32 reg; u64 limit, prv = 0; u64 tmp_mb; + u32 mb, kb; u32 rir_way; /* @@ -682,8 +684,9 @@ static void get_memory_layout(const struct mem_ctl_info *mci) pvt->tolm = GET_TOLM(reg); tmp_mb = (1 + pvt->tolm) >> 20; - debugf0("TOLM: %Lu.%03Lu GB (0x%016Lx)\n", - tmp_mb / 1000, tmp_mb % 1000, (u64)pvt->tolm); + mb = div_u64_rem(tmp_mb, 1000, &kb); + debugf0("TOLM: %u.%03u GB (0x%016Lx)\n", + mb, kb, (u64)pvt->tolm); /* Address range is already 45:25 */ pci_read_config_dword(pvt->pci_sad1, TOHM, @@ -691,8 +694,9 @@ static void get_memory_layout(const struct mem_ctl_info *mci) pvt->tohm = GET_TOHM(reg); tmp_mb = (1 + pvt->tohm) >> 20; - debugf0("TOHM: %Lu.%03Lu GB (0x%016Lx)", - tmp_mb / 1000, tmp_mb % 1000, (u64)pvt->tohm); + mb = div_u64_rem(tmp_mb, 1000, &kb); + debugf0("TOHM: %u.%03u GB (0x%016Lx)", + mb, kb, (u64)pvt->tohm); /* * Step 2) Get SAD range and SAD Interleave list @@ -714,10 +718,11 @@ static void get_memory_layout(const struct mem_ctl_info *mci) break; tmp_mb = (limit + 1) >> 20; - debugf0("SAD#%d %s up to %Lu.%03Lu GB (0x%016Lx) %s reg=0x%08x\n", + mb = div_u64_rem(tmp_mb, 1000, &kb); + debugf0("SAD#%d %s up to %u.%03u GB (0x%016Lx) %s reg=0x%08x\n", n_sads, get_dram_attr(reg), - tmp_mb / 1000, tmp_mb % 1000, + mb, kb, ((u64)tmp_mb) << 20L, INTERLEAVE_MODE(reg) ? "Interleave: 8:6" : "Interleave: [8:6]XOR[18:16]", reg); @@ -747,8 +752,9 @@ static void get_memory_layout(const struct mem_ctl_info *mci) break; tmp_mb = (limit + 1) >> 20; - debugf0("TAD#%d: up to %Lu.%03Lu GB (0x%016Lx), socket interleave %d, memory interleave %d, TGT: %d, %d, %d, %d, reg=0x%08x\n", - n_tads, tmp_mb / 1000, tmp_mb % 1000, + mb = div_u64_rem(tmp_mb, 1000, &kb); + debugf0("TAD#%d: up to %u.%03u GB (0x%016Lx), socket interleave %d, memory interleave %d, TGT: %d, %d, %d, %d, reg=0x%08x\n", + n_tads, mb, kb, ((u64)tmp_mb) << 20L, (u32)TAD_SOCK(reg), (u32)TAD_CH(reg), @@ -757,7 +763,7 @@ static void get_memory_layout(const struct mem_ctl_info *mci) (u32)TAD_TGT2(reg), (u32)TAD_TGT3(reg), reg); - prv = tmp_mb; + prv = limit; } /* @@ -771,9 +777,10 @@ static void get_memory_layout(const struct mem_ctl_info *mci) tad_ch_nilv_offset[j], ®); tmp_mb = TAD_OFFSET(reg) >> 20; - debugf0("TAD CH#%d, offset #%d: %Lu.%03Lu GB (0x%016Lx), reg=0x%08x\n", + mb = div_u64_rem(tmp_mb, 1000, &kb); + debugf0("TAD CH#%d, offset #%d: %u.%03u GB (0x%016Lx), reg=0x%08x\n", i, j, - tmp_mb / 1000, tmp_mb % 1000, + mb, kb, ((u64)tmp_mb) << 20L, reg); } @@ -795,9 +802,10 @@ static void get_memory_layout(const struct mem_ctl_info *mci) tmp_mb = RIR_LIMIT(reg) >> 20; rir_way = 1 << RIR_WAY(reg); - debugf0("CH#%d RIR#%d, limit: %Lu.%03Lu GB (0x%016Lx), way: %d, reg=0x%08x\n", + mb = div_u64_rem(tmp_mb, 1000, &kb); + debugf0("CH#%d RIR#%d, limit: %u.%03u GB (0x%016Lx), way: %d, reg=0x%08x\n", i, j, - tmp_mb / 1000, tmp_mb % 1000, + mb, kb, ((u64)tmp_mb) << 20L, rir_way, reg); @@ -808,9 +816,10 @@ static void get_memory_layout(const struct mem_ctl_info *mci) ®); tmp_mb = RIR_OFFSET(reg) << 6; - debugf0("CH#%d RIR#%d INTL#%d, offset %Lu.%03Lu GB (0x%016Lx), tgt: %d, reg=0x%08x\n", + mb = div_u64_rem(tmp_mb, 1000, &kb); + debugf0("CH#%d RIR#%d INTL#%d, offset %u.%03u GB (0x%016Lx), tgt: %d, reg=0x%08x\n", i, j, k, - tmp_mb / 1000, tmp_mb % 1000, + mb, kb, ((u64)tmp_mb) << 20L, (u32)RIR_RNK_TGT(reg), reg); @@ -848,6 +857,7 @@ static int get_memory_error_data(struct mem_ctl_info *mci, u8 ch_way,sck_way; u32 tad_offset; u32 rir_way; + u32 mb, kb; u64 ch_addr, offset, limit, prv = 0; @@ -858,7 +868,7 @@ static int get_memory_error_data(struct mem_ctl_info *mci, * range (e. g. VGA addresses). It is unlikely, however, that the * memory controller would generate an error on that range. */ - if ((addr > (u64) pvt->tolm) && (addr < (1L << 32))) { + if ((addr > (u64) pvt->tolm) && (addr < (1LL << 32))) { sprintf(msg, "Error at TOLM area, on addr 0x%08Lx", addr); edac_mc_handle_ce_no_info(mci, msg); return -EINVAL; @@ -913,7 +923,7 @@ static int get_memory_error_data(struct mem_ctl_info *mci, addr, limit, sad_way + 7, - INTERLEAVE_MODE(reg) ? "" : "XOR[18:16]"); + interleave_mode ? "" : "XOR[18:16]"); if (interleave_mode) idx = ((addr >> 6) ^ (addr >> 16)) & 7; else @@ -1053,7 +1063,7 @@ static int get_memory_error_data(struct mem_ctl_info *mci, ch_addr = addr & 0x7f; /* Remove socket wayness and remove 6 bits */ addr >>= 6; - addr /= sck_xch; + addr = div_u64(addr, sck_xch); #if 0 /* Divide by channel way */ addr = addr / ch_way; @@ -1073,10 +1083,10 @@ static int get_memory_error_data(struct mem_ctl_info *mci, continue; limit = RIR_LIMIT(reg); - - debugf0("RIR#%d, limit: %Lu.%03Lu GB (0x%016Lx), way: %d\n", + mb = div_u64_rem(limit >> 20, 1000, &kb); + debugf0("RIR#%d, limit: %u.%03u GB (0x%016Lx), way: %d\n", n_rir, - (limit >> 20) / 1000, (limit >> 20) % 1000, + mb, kb, limit, 1 << RIR_WAY(reg)); if (ch_addr <= limit) |