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authorDavid Woodhouse <David.Woodhouse@intel.com>2010-02-26 19:04:15 +0000
committerDavid Woodhouse <David.Woodhouse@intel.com>2010-02-26 19:06:24 +0000
commita7790532f5b7358c33a6b1834dc2b318de209f31 (patch)
tree0ceb9e24b3f54cb5c8453fb5a218e2a94a0f1cce /drivers/edac/amd64_edac.c
parent2764fb4244cc1bc08df3667924ca4a972e90ac70 (diff)
parent60b341b778cc2929df16c0a504c91621b3c6a4ad (diff)
downloadop-kernel-dev-a7790532f5b7358c33a6b1834dc2b318de209f31.zip
op-kernel-dev-a7790532f5b7358c33a6b1834dc2b318de209f31.tar.gz
Merge branch 'master' of git://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux-2.6
The SmartMedia FTL code depends on new kfifo bits from 2.6.33
Diffstat (limited to 'drivers/edac/amd64_edac.c')
-rw-r--r--drivers/edac/amd64_edac.c62
1 files changed, 37 insertions, 25 deletions
diff --git a/drivers/edac/amd64_edac.c b/drivers/edac/amd64_edac.c
index df5b684..3391e67 100644
--- a/drivers/edac/amd64_edac.c
+++ b/drivers/edac/amd64_edac.c
@@ -197,7 +197,7 @@ static int amd64_get_scrub_rate(struct mem_ctl_info *mci, u32 *bw)
edac_printk(KERN_DEBUG, EDAC_MC,
"pci-read, sdram scrub control value: %d \n", scrubval);
- for (i = 0; ARRAY_SIZE(scrubrates); i++) {
+ for (i = 0; i < ARRAY_SIZE(scrubrates); i++) {
if (scrubrates[i].scrubval == scrubval) {
*bw = scrubrates[i].bandwidth;
status = 0;
@@ -1700,11 +1700,14 @@ static void f10_map_sysaddr_to_csrow(struct mem_ctl_info *mci,
*/
static void amd64_debug_display_dimm_sizes(int ctrl, struct amd64_pvt *pvt)
{
- int dimm, size0, size1;
+ int dimm, size0, size1, factor = 0;
u32 dbam;
u32 *dcsb;
if (boot_cpu_data.x86 == 0xf) {
+ if (pvt->dclr0 & F10_WIDTH_128)
+ factor = 1;
+
/* K8 families < revF not supported yet */
if (pvt->ext_model < K8_REV_F)
return;
@@ -1732,7 +1735,8 @@ static void amd64_debug_display_dimm_sizes(int ctrl, struct amd64_pvt *pvt)
size1 = pvt->ops->dbam_to_cs(pvt, DBAM_DIMM(dimm, dbam));
edac_printk(KERN_DEBUG, EDAC_MC, " %d: %5dMB %d: %5dMB\n",
- dimm * 2, size0, dimm * 2 + 1, size1);
+ dimm * 2, size0 << factor,
+ dimm * 2 + 1, size1 << factor);
}
}
@@ -2345,7 +2349,7 @@ static void amd64_read_mc_registers(struct amd64_pvt *pvt)
amd64_read_pci_cfg(pvt->dram_f2_ctl, F10_DCLR_0, &pvt->dclr0);
amd64_read_pci_cfg(pvt->dram_f2_ctl, F10_DCHR_0, &pvt->dchr0);
- if (!dct_ganging_enabled(pvt)) {
+ if (!dct_ganging_enabled(pvt) && boot_cpu_data.x86 >= 0x10) {
amd64_read_pci_cfg(pvt->dram_f2_ctl, F10_DCLR_1, &pvt->dclr1);
amd64_read_pci_cfg(pvt->dram_f2_ctl, F10_DCHR_1, &pvt->dchr1);
}
@@ -2654,10 +2658,11 @@ static void amd64_restore_ecc_error_reporting(struct amd64_pvt *pvt)
* the memory system completely. A command line option allows to force-enable
* hardware ECC later in amd64_enable_ecc_error_reporting().
*/
-static const char *ecc_warning =
- "WARNING: ECC is disabled by BIOS. Module will NOT be loaded.\n"
- " Either Enable ECC in the BIOS, or set 'ecc_enable_override'.\n"
- " Also, use of the override can cause unknown side effects.\n";
+static const char *ecc_msg =
+ "ECC disabled in the BIOS or no ECC capability, module will not load.\n"
+ " Either enable ECC checking or force module loading by setting "
+ "'ecc_enable_override'.\n"
+ " (Note that use of the override may cause unknown side effects.)\n";
static int amd64_check_ecc_enabled(struct amd64_pvt *pvt)
{
@@ -2669,7 +2674,7 @@ static int amd64_check_ecc_enabled(struct amd64_pvt *pvt)
ecc_enabled = !!(value & K8_NBCFG_ECC_ENABLE);
if (!ecc_enabled)
- amd64_printk(KERN_WARNING, "This node reports that Memory ECC "
+ amd64_printk(KERN_NOTICE, "This node reports that Memory ECC "
"is currently disabled, set F3x%x[22] (%s).\n",
K8_NBCFG, pci_name(pvt->misc_f3_ctl));
else
@@ -2677,18 +2682,17 @@ static int amd64_check_ecc_enabled(struct amd64_pvt *pvt)
nb_mce_en = amd64_nb_mce_bank_enabled_on_node(pvt->mc_node_id);
if (!nb_mce_en)
- amd64_printk(KERN_WARNING, "NB MCE bank disabled, set MSR "
+ amd64_printk(KERN_NOTICE, "NB MCE bank disabled, set MSR "
"0x%08x[4] on node %d to enable.\n",
MSR_IA32_MCG_CTL, pvt->mc_node_id);
if (!ecc_enabled || !nb_mce_en) {
if (!ecc_enable_override) {
- amd64_printk(KERN_WARNING, "%s", ecc_warning);
+ amd64_printk(KERN_NOTICE, "%s", ecc_msg);
return -ENODEV;
}
- } else
- /* CLEAR the override, since BIOS controlled it */
ecc_enable_override = 0;
+ }
return 0;
}
@@ -2925,16 +2929,15 @@ static void __devexit amd64_remove_one_instance(struct pci_dev *pdev)
amd64_free_mc_sibling_devices(pvt);
- kfree(pvt);
- mci->pvt_info = NULL;
-
- mci_lookup[pvt->mc_node_id] = NULL;
-
/* unregister from EDAC MCE */
amd_report_gart_errors(false);
amd_unregister_ecc_decoder(amd64_decode_bus_error);
/* Free the EDAC CORE resources */
+ mci->pvt_info = NULL;
+ mci_lookup[pvt->mc_node_id] = NULL;
+
+ kfree(pvt);
edac_mc_free(mci);
}
@@ -3011,25 +3014,29 @@ static void amd64_setup_pci_device(void)
static int __init amd64_edac_init(void)
{
int nb, err = -ENODEV;
+ bool load_ok = false;
edac_printk(KERN_INFO, EDAC_MOD_STR, EDAC_AMD64_VERSION "\n");
opstate_init();
if (cache_k8_northbridges() < 0)
- return err;
+ goto err_ret;
msrs = msrs_alloc();
+ if (!msrs)
+ goto err_ret;
err = pci_register_driver(&amd64_pci_driver);
if (err)
- return err;
+ goto err_pci;
/*
* At this point, the array 'pvt_lookup[]' contains pointers to alloc'd
* amd64_pvt structs. These will be used in the 2nd stage init function
* to finish initialization of the MC instances.
*/
+ err = -ENODEV;
for (nb = 0; nb < num_k8_northbridges; nb++) {
if (!pvt_lookup[nb])
continue;
@@ -3037,16 +3044,21 @@ static int __init amd64_edac_init(void)
err = amd64_init_2nd_stage(pvt_lookup[nb]);
if (err)
goto err_2nd_stage;
- }
- amd64_setup_pci_device();
+ load_ok = true;
+ }
- return 0;
+ if (load_ok) {
+ amd64_setup_pci_device();
+ return 0;
+ }
err_2nd_stage:
- debugf0("2nd stage failed\n");
pci_unregister_driver(&amd64_pci_driver);
-
+err_pci:
+ msrs_free(msrs);
+ msrs = NULL;
+err_ret:
return err;
}
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