diff options
Diffstat (limited to 'arch/x86/kernel/cpu')
-rw-r--r-- | arch/x86/kernel/cpu/addon_cpuid_features.c | 17 | ||||
-rw-r--r-- | arch/x86/kernel/cpu/amd.c | 9 | ||||
-rw-r--r-- | arch/x86/kernel/cpu/centaur.c | 11 | ||||
-rw-r--r-- | arch/x86/kernel/cpu/common.c | 18 | ||||
-rw-r--r-- | arch/x86/kernel/cpu/common_64.c | 74 | ||||
-rw-r--r-- | arch/x86/kernel/cpu/cpufreq/powernow-k8.c | 109 | ||||
-rw-r--r-- | arch/x86/kernel/cpu/cpufreq/powernow-k8.h | 3 | ||||
-rw-r--r-- | arch/x86/kernel/cpu/cyrix.c | 50 | ||||
-rw-r--r-- | arch/x86/kernel/cpu/feature_names.c | 3 | ||||
-rw-r--r-- | arch/x86/kernel/cpu/mcheck/mce_64.c | 5 | ||||
-rw-r--r-- | arch/x86/kernel/cpu/mcheck/mce_amd_64.c | 18 | ||||
-rw-r--r-- | arch/x86/kernel/cpu/mtrr/generic.c | 20 | ||||
-rw-r--r-- | arch/x86/kernel/cpu/mtrr/main.c | 5 |
13 files changed, 201 insertions, 141 deletions
diff --git a/arch/x86/kernel/cpu/addon_cpuid_features.c b/arch/x86/kernel/cpu/addon_cpuid_features.c index 84a8220a6072..a6ef672adbba 100644 --- a/arch/x86/kernel/cpu/addon_cpuid_features.c +++ b/arch/x86/kernel/cpu/addon_cpuid_features.c | |||
@@ -56,9 +56,22 @@ void __cpuinit validate_pat_support(struct cpuinfo_x86 *c) | |||
56 | 56 | ||
57 | switch (c->x86_vendor) { | 57 | switch (c->x86_vendor) { |
58 | case X86_VENDOR_INTEL: | 58 | case X86_VENDOR_INTEL: |
59 | if (c->x86 == 0xF || (c->x86 == 6 && c->x86_model >= 15)) | 59 | /* |
60 | * There is a known erratum on Pentium III and Core Solo | ||
61 | * and Core Duo CPUs. | ||
62 | * " Page with PAT set to WC while associated MTRR is UC | ||
63 | * may consolidate to UC " | ||
64 | * Because of this erratum, it is better to stick with | ||
65 | * setting WC in MTRR rather than using PAT on these CPUs. | ||
66 | * | ||
67 | * Enable PAT WC only on P4, Core 2 or later CPUs. | ||
68 | */ | ||
69 | if (c->x86 > 0x6 || (c->x86 == 6 && c->x86_model >= 15)) | ||
60 | return; | 70 | return; |
61 | break; | 71 | |
72 | pat_disable("PAT WC disabled due to known CPU erratum."); | ||
73 | return; | ||
74 | |||
62 | case X86_VENDOR_AMD: | 75 | case X86_VENDOR_AMD: |
63 | case X86_VENDOR_CENTAUR: | 76 | case X86_VENDOR_CENTAUR: |
64 | case X86_VENDOR_TRANSMETA: | 77 | case X86_VENDOR_TRANSMETA: |
diff --git a/arch/x86/kernel/cpu/amd.c b/arch/x86/kernel/cpu/amd.c index cae9cabc3031..18514ed26104 100644 --- a/arch/x86/kernel/cpu/amd.c +++ b/arch/x86/kernel/cpu/amd.c | |||
@@ -31,6 +31,11 @@ static void __cpuinit early_init_amd(struct cpuinfo_x86 *c) | |||
31 | if (c->x86_power & (1<<8)) | 31 | if (c->x86_power & (1<<8)) |
32 | set_cpu_cap(c, X86_FEATURE_CONSTANT_TSC); | 32 | set_cpu_cap(c, X86_FEATURE_CONSTANT_TSC); |
33 | } | 33 | } |
34 | |||
35 | /* Set MTRR capability flag if appropriate */ | ||
36 | if (c->x86_model == 13 || c->x86_model == 9 || | ||
37 | (c->x86_model == 8 && c->x86_mask >= 8)) | ||
38 | set_cpu_cap(c, X86_FEATURE_K6_MTRR); | ||
34 | } | 39 | } |
35 | 40 | ||
36 | static void __cpuinit init_amd(struct cpuinfo_x86 *c) | 41 | static void __cpuinit init_amd(struct cpuinfo_x86 *c) |
@@ -166,10 +171,6 @@ static void __cpuinit init_amd(struct cpuinfo_x86 *c) | |||
166 | mbytes); | 171 | mbytes); |
167 | } | 172 | } |
168 | 173 | ||
169 | /* Set MTRR capability flag if appropriate */ | ||
170 | if (c->x86_model == 13 || c->x86_model == 9 || | ||
171 | (c->x86_model == 8 && c->x86_mask >= 8)) | ||
172 | set_cpu_cap(c, X86_FEATURE_K6_MTRR); | ||
173 | break; | 174 | break; |
174 | } | 175 | } |
175 | 176 | ||
diff --git a/arch/x86/kernel/cpu/centaur.c b/arch/x86/kernel/cpu/centaur.c index e0f45edd6a55..a0534c04d38a 100644 --- a/arch/x86/kernel/cpu/centaur.c +++ b/arch/x86/kernel/cpu/centaur.c | |||
@@ -314,6 +314,16 @@ enum { | |||
314 | EAMD3D = 1<<20, | 314 | EAMD3D = 1<<20, |
315 | }; | 315 | }; |
316 | 316 | ||
317 | static void __cpuinit early_init_centaur(struct cpuinfo_x86 *c) | ||
318 | { | ||
319 | switch (c->x86) { | ||
320 | case 5: | ||
321 | /* Emulate MTRRs using Centaur's MCR. */ | ||
322 | set_cpu_cap(c, X86_FEATURE_CENTAUR_MCR); | ||
323 | break; | ||
324 | } | ||
325 | } | ||
326 | |||
317 | static void __cpuinit init_centaur(struct cpuinfo_x86 *c) | 327 | static void __cpuinit init_centaur(struct cpuinfo_x86 *c) |
318 | { | 328 | { |
319 | 329 | ||
@@ -462,6 +472,7 @@ centaur_size_cache(struct cpuinfo_x86 *c, unsigned int size) | |||
462 | static struct cpu_dev centaur_cpu_dev __cpuinitdata = { | 472 | static struct cpu_dev centaur_cpu_dev __cpuinitdata = { |
463 | .c_vendor = "Centaur", | 473 | .c_vendor = "Centaur", |
464 | .c_ident = { "CentaurHauls" }, | 474 | .c_ident = { "CentaurHauls" }, |
475 | .c_early_init = early_init_centaur, | ||
465 | .c_init = init_centaur, | 476 | .c_init = init_centaur, |
466 | .c_size_cache = centaur_size_cache, | 477 | .c_size_cache = centaur_size_cache, |
467 | }; | 478 | }; |
diff --git a/arch/x86/kernel/cpu/common.c b/arch/x86/kernel/cpu/common.c index 80ab20d4fa39..4e456bd955bb 100644 --- a/arch/x86/kernel/cpu/common.c +++ b/arch/x86/kernel/cpu/common.c | |||
@@ -13,6 +13,7 @@ | |||
13 | #include <asm/mtrr.h> | 13 | #include <asm/mtrr.h> |
14 | #include <asm/mce.h> | 14 | #include <asm/mce.h> |
15 | #include <asm/pat.h> | 15 | #include <asm/pat.h> |
16 | #include <asm/asm.h> | ||
16 | #ifdef CONFIG_X86_LOCAL_APIC | 17 | #ifdef CONFIG_X86_LOCAL_APIC |
17 | #include <asm/mpspec.h> | 18 | #include <asm/mpspec.h> |
18 | #include <asm/apic.h> | 19 | #include <asm/apic.h> |
@@ -334,11 +335,24 @@ static void __init early_cpu_detect(void) | |||
334 | 335 | ||
335 | get_cpu_vendor(c, 1); | 336 | get_cpu_vendor(c, 1); |
336 | 337 | ||
338 | early_get_cap(c); | ||
339 | |||
337 | if (c->x86_vendor != X86_VENDOR_UNKNOWN && | 340 | if (c->x86_vendor != X86_VENDOR_UNKNOWN && |
338 | cpu_devs[c->x86_vendor]->c_early_init) | 341 | cpu_devs[c->x86_vendor]->c_early_init) |
339 | cpu_devs[c->x86_vendor]->c_early_init(c); | 342 | cpu_devs[c->x86_vendor]->c_early_init(c); |
343 | } | ||
340 | 344 | ||
341 | early_get_cap(c); | 345 | /* |
346 | * The NOPL instruction is supposed to exist on all CPUs with | ||
347 | * family >= 6; unfortunately, that's not true in practice because | ||
348 | * of early VIA chips and (more importantly) broken virtualizers that | ||
349 | * are not easy to detect. In the latter case it doesn't even *fail* | ||
350 | * reliably, so probing for it doesn't even work. Disable it completely | ||
351 | * unless we can find a reliable way to detect all the broken cases. | ||
352 | */ | ||
353 | static void __cpuinit detect_nopl(struct cpuinfo_x86 *c) | ||
354 | { | ||
355 | clear_cpu_cap(c, X86_FEATURE_NOPL); | ||
342 | } | 356 | } |
343 | 357 | ||
344 | static void __cpuinit generic_identify(struct cpuinfo_x86 *c) | 358 | static void __cpuinit generic_identify(struct cpuinfo_x86 *c) |
@@ -395,8 +409,8 @@ static void __cpuinit generic_identify(struct cpuinfo_x86 *c) | |||
395 | } | 409 | } |
396 | 410 | ||
397 | init_scattered_cpuid_features(c); | 411 | init_scattered_cpuid_features(c); |
412 | detect_nopl(c); | ||
398 | } | 413 | } |
399 | |||
400 | } | 414 | } |
401 | 415 | ||
402 | static void __cpuinit squash_the_stupid_serial_number(struct cpuinfo_x86 *c) | 416 | static void __cpuinit squash_the_stupid_serial_number(struct cpuinfo_x86 *c) |
diff --git a/arch/x86/kernel/cpu/common_64.c b/arch/x86/kernel/cpu/common_64.c index dd6e3f15017e..a11f5d4477cd 100644 --- a/arch/x86/kernel/cpu/common_64.c +++ b/arch/x86/kernel/cpu/common_64.c | |||
@@ -18,6 +18,7 @@ | |||
18 | #include <asm/mtrr.h> | 18 | #include <asm/mtrr.h> |
19 | #include <asm/mce.h> | 19 | #include <asm/mce.h> |
20 | #include <asm/pat.h> | 20 | #include <asm/pat.h> |
21 | #include <asm/asm.h> | ||
21 | #include <asm/numa.h> | 22 | #include <asm/numa.h> |
22 | #ifdef CONFIG_X86_LOCAL_APIC | 23 | #ifdef CONFIG_X86_LOCAL_APIC |
23 | #include <asm/mpspec.h> | 24 | #include <asm/mpspec.h> |
@@ -215,6 +216,39 @@ static void __init early_cpu_support_print(void) | |||
215 | } | 216 | } |
216 | } | 217 | } |
217 | 218 | ||
219 | /* | ||
220 | * The NOPL instruction is supposed to exist on all CPUs with | ||
221 | * family >= 6, unfortunately, that's not true in practice because | ||
222 | * of early VIA chips and (more importantly) broken virtualizers that | ||
223 | * are not easy to detect. Hence, probe for it based on first | ||
224 | * principles. | ||
225 | * | ||
226 | * Note: no 64-bit chip is known to lack these, but put the code here | ||
227 | * for consistency with 32 bits, and to make it utterly trivial to | ||
228 | * diagnose the problem should it ever surface. | ||
229 | */ | ||
230 | static void __cpuinit detect_nopl(struct cpuinfo_x86 *c) | ||
231 | { | ||
232 | const u32 nopl_signature = 0x888c53b1; /* Random number */ | ||
233 | u32 has_nopl = nopl_signature; | ||
234 | |||
235 | clear_cpu_cap(c, X86_FEATURE_NOPL); | ||
236 | if (c->x86 >= 6) { | ||
237 | asm volatile("\n" | ||
238 | "1: .byte 0x0f,0x1f,0xc0\n" /* nopl %eax */ | ||
239 | "2:\n" | ||
240 | " .section .fixup,\"ax\"\n" | ||
241 | "3: xor %0,%0\n" | ||
242 | " jmp 2b\n" | ||
243 | " .previous\n" | ||
244 | _ASM_EXTABLE(1b,3b) | ||
245 | : "+a" (has_nopl)); | ||
246 | |||
247 | if (has_nopl == nopl_signature) | ||
248 | set_cpu_cap(c, X86_FEATURE_NOPL); | ||
249 | } | ||
250 | } | ||
251 | |||
218 | static void __cpuinit early_identify_cpu(struct cpuinfo_x86 *c); | 252 | static void __cpuinit early_identify_cpu(struct cpuinfo_x86 *c); |
219 | 253 | ||
220 | void __init early_cpu_init(void) | 254 | void __init early_cpu_init(void) |
@@ -313,6 +347,8 @@ static void __cpuinit early_identify_cpu(struct cpuinfo_x86 *c) | |||
313 | c->x86_phys_bits = eax & 0xff; | 347 | c->x86_phys_bits = eax & 0xff; |
314 | } | 348 | } |
315 | 349 | ||
350 | detect_nopl(c); | ||
351 | |||
316 | if (c->x86_vendor != X86_VENDOR_UNKNOWN && | 352 | if (c->x86_vendor != X86_VENDOR_UNKNOWN && |
317 | cpu_devs[c->x86_vendor]->c_early_init) | 353 | cpu_devs[c->x86_vendor]->c_early_init) |
318 | cpu_devs[c->x86_vendor]->c_early_init(c); | 354 | cpu_devs[c->x86_vendor]->c_early_init(c); |
@@ -493,17 +529,20 @@ void pda_init(int cpu) | |||
493 | /* others are initialized in smpboot.c */ | 529 | /* others are initialized in smpboot.c */ |
494 | pda->pcurrent = &init_task; | 530 | pda->pcurrent = &init_task; |
495 | pda->irqstackptr = boot_cpu_stack; | 531 | pda->irqstackptr = boot_cpu_stack; |
532 | pda->irqstackptr += IRQSTACKSIZE - 64; | ||
496 | } else { | 533 | } else { |
497 | pda->irqstackptr = (char *) | 534 | if (!pda->irqstackptr) { |
498 | __get_free_pages(GFP_ATOMIC, IRQSTACK_ORDER); | 535 | pda->irqstackptr = (char *) |
499 | if (!pda->irqstackptr) | 536 | __get_free_pages(GFP_ATOMIC, IRQSTACK_ORDER); |
500 | panic("cannot allocate irqstack for cpu %d", cpu); | 537 | if (!pda->irqstackptr) |
538 | panic("cannot allocate irqstack for cpu %d", | ||
539 | cpu); | ||
540 | pda->irqstackptr += IRQSTACKSIZE - 64; | ||
541 | } | ||
501 | 542 | ||
502 | if (pda->nodenumber == 0 && cpu_to_node(cpu) != NUMA_NO_NODE) | 543 | if (pda->nodenumber == 0 && cpu_to_node(cpu) != NUMA_NO_NODE) |
503 | pda->nodenumber = cpu_to_node(cpu); | 544 | pda->nodenumber = cpu_to_node(cpu); |
504 | } | 545 | } |
505 | |||
506 | pda->irqstackptr += IRQSTACKSIZE-64; | ||
507 | } | 546 | } |
508 | 547 | ||
509 | char boot_exception_stacks[(N_EXCEPTION_STACKS - 1) * EXCEPTION_STKSZ + | 548 | char boot_exception_stacks[(N_EXCEPTION_STACKS - 1) * EXCEPTION_STKSZ + |
@@ -601,19 +640,22 @@ void __cpuinit cpu_init(void) | |||
601 | /* | 640 | /* |
602 | * set up and load the per-CPU TSS | 641 | * set up and load the per-CPU TSS |
603 | */ | 642 | */ |
604 | for (v = 0; v < N_EXCEPTION_STACKS; v++) { | 643 | if (!orig_ist->ist[0]) { |
605 | static const unsigned int order[N_EXCEPTION_STACKS] = { | 644 | static const unsigned int order[N_EXCEPTION_STACKS] = { |
606 | [0 ... N_EXCEPTION_STACKS - 1] = EXCEPTION_STACK_ORDER, | 645 | [0 ... N_EXCEPTION_STACKS - 1] = EXCEPTION_STACK_ORDER, |
607 | [DEBUG_STACK - 1] = DEBUG_STACK_ORDER | 646 | [DEBUG_STACK - 1] = DEBUG_STACK_ORDER |
608 | }; | 647 | }; |
609 | if (cpu) { | 648 | for (v = 0; v < N_EXCEPTION_STACKS; v++) { |
610 | estacks = (char *)__get_free_pages(GFP_ATOMIC, order[v]); | 649 | if (cpu) { |
611 | if (!estacks) | 650 | estacks = (char *)__get_free_pages(GFP_ATOMIC, order[v]); |
612 | panic("Cannot allocate exception stack %ld %d\n", | 651 | if (!estacks) |
613 | v, cpu); | 652 | panic("Cannot allocate exception " |
653 | "stack %ld %d\n", v, cpu); | ||
654 | } | ||
655 | estacks += PAGE_SIZE << order[v]; | ||
656 | orig_ist->ist[v] = t->x86_tss.ist[v] = | ||
657 | (unsigned long)estacks; | ||
614 | } | 658 | } |
615 | estacks += PAGE_SIZE << order[v]; | ||
616 | orig_ist->ist[v] = t->x86_tss.ist[v] = (unsigned long)estacks; | ||
617 | } | 659 | } |
618 | 660 | ||
619 | t->x86_tss.io_bitmap_base = offsetof(struct tss_struct, io_bitmap); | 661 | t->x86_tss.io_bitmap_base = offsetof(struct tss_struct, io_bitmap); |
diff --git a/arch/x86/kernel/cpu/cpufreq/powernow-k8.c b/arch/x86/kernel/cpu/cpufreq/powernow-k8.c index 4e7271999a74..84bb395038d8 100644 --- a/arch/x86/kernel/cpu/cpufreq/powernow-k8.c +++ b/arch/x86/kernel/cpu/cpufreq/powernow-k8.c | |||
@@ -737,63 +737,44 @@ static int find_psb_table(struct powernow_k8_data *data) | |||
737 | #ifdef CONFIG_X86_POWERNOW_K8_ACPI | 737 | #ifdef CONFIG_X86_POWERNOW_K8_ACPI |
738 | static void powernow_k8_acpi_pst_values(struct powernow_k8_data *data, unsigned int index) | 738 | static void powernow_k8_acpi_pst_values(struct powernow_k8_data *data, unsigned int index) |
739 | { | 739 | { |
740 | if (!data->acpi_data->state_count || (cpu_family == CPU_HW_PSTATE)) | 740 | if (!data->acpi_data.state_count || (cpu_family == CPU_HW_PSTATE)) |
741 | return; | 741 | return; |
742 | 742 | ||
743 | data->irt = (data->acpi_data->states[index].control >> IRT_SHIFT) & IRT_MASK; | 743 | data->irt = (data->acpi_data.states[index].control >> IRT_SHIFT) & IRT_MASK; |
744 | data->rvo = (data->acpi_data->states[index].control >> RVO_SHIFT) & RVO_MASK; | 744 | data->rvo = (data->acpi_data.states[index].control >> RVO_SHIFT) & RVO_MASK; |
745 | data->exttype = (data->acpi_data->states[index].control >> EXT_TYPE_SHIFT) & EXT_TYPE_MASK; | 745 | data->exttype = (data->acpi_data.states[index].control >> EXT_TYPE_SHIFT) & EXT_TYPE_MASK; |
746 | data->plllock = (data->acpi_data->states[index].control >> PLL_L_SHIFT) & PLL_L_MASK; | 746 | data->plllock = (data->acpi_data.states[index].control >> PLL_L_SHIFT) & PLL_L_MASK; |
747 | data->vidmvs = 1 << ((data->acpi_data->states[index].control >> MVS_SHIFT) & MVS_MASK); | 747 | data->vidmvs = 1 << ((data->acpi_data.states[index].control >> MVS_SHIFT) & MVS_MASK); |
748 | data->vstable = (data->acpi_data->states[index].control >> VST_SHIFT) & VST_MASK; | 748 | data->vstable = (data->acpi_data.states[index].control >> VST_SHIFT) & VST_MASK; |
749 | } | ||
750 | |||
751 | |||
752 | static struct acpi_processor_performance *acpi_perf_data; | ||
753 | static int preregister_valid; | ||
754 | |||
755 | static int powernow_k8_cpu_preinit_acpi(void) | ||
756 | { | ||
757 | acpi_perf_data = alloc_percpu(struct acpi_processor_performance); | ||
758 | if (!acpi_perf_data) | ||
759 | return -ENODEV; | ||
760 | |||
761 | if (acpi_processor_preregister_performance(acpi_perf_data)) | ||
762 | return -ENODEV; | ||
763 | else | ||
764 | preregister_valid = 1; | ||
765 | return 0; | ||
766 | } | 749 | } |
767 | 750 | ||
768 | static int powernow_k8_cpu_init_acpi(struct powernow_k8_data *data) | 751 | static int powernow_k8_cpu_init_acpi(struct powernow_k8_data *data) |
769 | { | 752 | { |
770 | struct cpufreq_frequency_table *powernow_table; | 753 | struct cpufreq_frequency_table *powernow_table; |
771 | int ret_val; | 754 | int ret_val; |
772 | int cpu = 0; | ||
773 | 755 | ||
774 | data->acpi_data = percpu_ptr(acpi_perf_data, cpu); | 756 | if (acpi_processor_register_performance(&data->acpi_data, data->cpu)) { |
775 | if (acpi_processor_register_performance(data->acpi_data, data->cpu)) { | ||
776 | dprintk("register performance failed: bad ACPI data\n"); | 757 | dprintk("register performance failed: bad ACPI data\n"); |
777 | return -EIO; | 758 | return -EIO; |
778 | } | 759 | } |
779 | 760 | ||
780 | /* verify the data contained in the ACPI structures */ | 761 | /* verify the data contained in the ACPI structures */ |
781 | if (data->acpi_data->state_count <= 1) { | 762 | if (data->acpi_data.state_count <= 1) { |
782 | dprintk("No ACPI P-States\n"); | 763 | dprintk("No ACPI P-States\n"); |
783 | goto err_out; | 764 | goto err_out; |
784 | } | 765 | } |
785 | 766 | ||
786 | if ((data->acpi_data->control_register.space_id != ACPI_ADR_SPACE_FIXED_HARDWARE) || | 767 | if ((data->acpi_data.control_register.space_id != ACPI_ADR_SPACE_FIXED_HARDWARE) || |
787 | (data->acpi_data->status_register.space_id != ACPI_ADR_SPACE_FIXED_HARDWARE)) { | 768 | (data->acpi_data.status_register.space_id != ACPI_ADR_SPACE_FIXED_HARDWARE)) { |
788 | dprintk("Invalid control/status registers (%x - %x)\n", | 769 | dprintk("Invalid control/status registers (%x - %x)\n", |
789 | data->acpi_data->control_register.space_id, | 770 | data->acpi_data.control_register.space_id, |
790 | data->acpi_data->status_register.space_id); | 771 | data->acpi_data.status_register.space_id); |
791 | goto err_out; | 772 | goto err_out; |
792 | } | 773 | } |
793 | 774 | ||
794 | /* fill in data->powernow_table */ | 775 | /* fill in data->powernow_table */ |
795 | powernow_table = kmalloc((sizeof(struct cpufreq_frequency_table) | 776 | powernow_table = kmalloc((sizeof(struct cpufreq_frequency_table) |
796 | * (data->acpi_data->state_count + 1)), GFP_KERNEL); | 777 | * (data->acpi_data.state_count + 1)), GFP_KERNEL); |
797 | if (!powernow_table) { | 778 | if (!powernow_table) { |
798 | dprintk("powernow_table memory alloc failure\n"); | 779 | dprintk("powernow_table memory alloc failure\n"); |
799 | goto err_out; | 780 | goto err_out; |
@@ -806,12 +787,12 @@ static int powernow_k8_cpu_init_acpi(struct powernow_k8_data *data) | |||
806 | if (ret_val) | 787 | if (ret_val) |
807 | goto err_out_mem; | 788 | goto err_out_mem; |
808 | 789 | ||
809 | powernow_table[data->acpi_data->state_count].frequency = CPUFREQ_TABLE_END; | 790 | powernow_table[data->acpi_data.state_count].frequency = CPUFREQ_TABLE_END; |
810 | powernow_table[data->acpi_data->state_count].index = 0; | 791 | powernow_table[data->acpi_data.state_count].index = 0; |
811 | data->powernow_table = powernow_table; | 792 | data->powernow_table = powernow_table; |
812 | 793 | ||
813 | /* fill in data */ | 794 | /* fill in data */ |
814 | data->numps = data->acpi_data->state_count; | 795 | data->numps = data->acpi_data.state_count; |
815 | if (first_cpu(per_cpu(cpu_core_map, data->cpu)) == data->cpu) | 796 | if (first_cpu(per_cpu(cpu_core_map, data->cpu)) == data->cpu) |
816 | print_basics(data); | 797 | print_basics(data); |
817 | powernow_k8_acpi_pst_values(data, 0); | 798 | powernow_k8_acpi_pst_values(data, 0); |
@@ -819,31 +800,16 @@ static int powernow_k8_cpu_init_acpi(struct powernow_k8_data *data) | |||
819 | /* notify BIOS that we exist */ | 800 | /* notify BIOS that we exist */ |
820 | acpi_processor_notify_smm(THIS_MODULE); | 801 | acpi_processor_notify_smm(THIS_MODULE); |
821 | 802 | ||
822 | /* determine affinity, from ACPI if available */ | ||
823 | if (preregister_valid) { | ||
824 | if ((data->acpi_data->shared_type == CPUFREQ_SHARED_TYPE_ALL) || | ||
825 | (data->acpi_data->shared_type == CPUFREQ_SHARED_TYPE_ANY)) | ||
826 | data->starting_core_affinity = data->acpi_data->shared_cpu_map; | ||
827 | else | ||
828 | data->starting_core_affinity = cpumask_of_cpu(data->cpu); | ||
829 | } else { | ||
830 | /* best guess from family if not */ | ||
831 | if (cpu_family == CPU_HW_PSTATE) | ||
832 | data->starting_core_affinity = cpumask_of_cpu(data->cpu); | ||
833 | else | ||
834 | data->starting_core_affinity = per_cpu(cpu_core_map, data->cpu); | ||
835 | } | ||
836 | |||
837 | return 0; | 803 | return 0; |
838 | 804 | ||
839 | err_out_mem: | 805 | err_out_mem: |
840 | kfree(powernow_table); | 806 | kfree(powernow_table); |
841 | 807 | ||
842 | err_out: | 808 | err_out: |
843 | acpi_processor_unregister_performance(data->acpi_data, data->cpu); | 809 | acpi_processor_unregister_performance(&data->acpi_data, data->cpu); |
844 | 810 | ||
845 | /* data->acpi_data.state_count informs us at ->exit() whether ACPI was used */ | 811 | /* data->acpi_data.state_count informs us at ->exit() whether ACPI was used */ |
846 | data->acpi_data->state_count = 0; | 812 | data->acpi_data.state_count = 0; |
847 | 813 | ||
848 | return -ENODEV; | 814 | return -ENODEV; |
849 | } | 815 | } |
@@ -855,10 +821,10 @@ static int fill_powernow_table_pstate(struct powernow_k8_data *data, struct cpuf | |||
855 | rdmsr(MSR_PSTATE_CUR_LIMIT, hi, lo); | 821 | rdmsr(MSR_PSTATE_CUR_LIMIT, hi, lo); |
856 | data->max_hw_pstate = (hi & HW_PSTATE_MAX_MASK) >> HW_PSTATE_MAX_SHIFT; | 822 | data->max_hw_pstate = (hi & HW_PSTATE_MAX_MASK) >> HW_PSTATE_MAX_SHIFT; |
857 | 823 | ||
858 | for (i = 0; i < data->acpi_data->state_count; i++) { | 824 | for (i = 0; i < data->acpi_data.state_count; i++) { |
859 | u32 index; | 825 | u32 index; |
860 | 826 | ||
861 | index = data->acpi_data->states[i].control & HW_PSTATE_MASK; | 827 | index = data->acpi_data.states[i].control & HW_PSTATE_MASK; |
862 | if (index > data->max_hw_pstate) { | 828 | if (index > data->max_hw_pstate) { |
863 | printk(KERN_ERR PFX "invalid pstate %d - bad value %d.\n", i, index); | 829 | printk(KERN_ERR PFX "invalid pstate %d - bad value %d.\n", i, index); |
864 | printk(KERN_ERR PFX "Please report to BIOS manufacturer\n"); | 830 | printk(KERN_ERR PFX "Please report to BIOS manufacturer\n"); |
@@ -874,7 +840,7 @@ static int fill_powernow_table_pstate(struct powernow_k8_data *data, struct cpuf | |||
874 | 840 | ||
875 | powernow_table[i].index = index; | 841 | powernow_table[i].index = index; |
876 | 842 | ||
877 | powernow_table[i].frequency = data->acpi_data->states[i].core_frequency * 1000; | 843 | powernow_table[i].frequency = data->acpi_data.states[i].core_frequency * 1000; |
878 | } | 844 | } |
879 | return 0; | 845 | return 0; |
880 | } | 846 | } |
@@ -883,16 +849,16 @@ static int fill_powernow_table_fidvid(struct powernow_k8_data *data, struct cpuf | |||
883 | { | 849 | { |
884 | int i; | 850 | int i; |
885 | int cntlofreq = 0; | 851 | int cntlofreq = 0; |
886 | for (i = 0; i < data->acpi_data->state_count; i++) { | 852 | for (i = 0; i < data->acpi_data.state_count; i++) { |
887 | u32 fid; | 853 | u32 fid; |
888 | u32 vid; | 854 | u32 vid; |
889 | 855 | ||
890 | if (data->exttype) { | 856 | if (data->exttype) { |
891 | fid = data->acpi_data->states[i].status & EXT_FID_MASK; | 857 | fid = data->acpi_data.states[i].status & EXT_FID_MASK; |
892 | vid = (data->acpi_data->states[i].status >> VID_SHIFT) & EXT_VID_MASK; | 858 | vid = (data->acpi_data.states[i].status >> VID_SHIFT) & EXT_VID_MASK; |
893 | } else { | 859 | } else { |
894 | fid = data->acpi_data->states[i].control & FID_MASK; | 860 | fid = data->acpi_data.states[i].control & FID_MASK; |
895 | vid = (data->acpi_data->states[i].control >> VID_SHIFT) & VID_MASK; | 861 | vid = (data->acpi_data.states[i].control >> VID_SHIFT) & VID_MASK; |
896 | } | 862 | } |
897 | 863 | ||
898 | dprintk(" %d : fid 0x%x, vid 0x%x\n", i, fid, vid); | 864 | dprintk(" %d : fid 0x%x, vid 0x%x\n", i, fid, vid); |
@@ -933,10 +899,10 @@ static int fill_powernow_table_fidvid(struct powernow_k8_data *data, struct cpuf | |||
933 | cntlofreq = i; | 899 | cntlofreq = i; |
934 | } | 900 | } |
935 | 901 | ||
936 | if (powernow_table[i].frequency != (data->acpi_data->states[i].core_frequency * 1000)) { | 902 | if (powernow_table[i].frequency != (data->acpi_data.states[i].core_frequency * 1000)) { |
937 | printk(KERN_INFO PFX "invalid freq entries %u kHz vs. %u kHz\n", | 903 | printk(KERN_INFO PFX "invalid freq entries %u kHz vs. %u kHz\n", |
938 | powernow_table[i].frequency, | 904 | powernow_table[i].frequency, |
939 | (unsigned int) (data->acpi_data->states[i].core_frequency * 1000)); | 905 | (unsigned int) (data->acpi_data.states[i].core_frequency * 1000)); |
940 | powernow_table[i].frequency = CPUFREQ_ENTRY_INVALID; | 906 | powernow_table[i].frequency = CPUFREQ_ENTRY_INVALID; |
941 | continue; | 907 | continue; |
942 | } | 908 | } |
@@ -946,12 +912,11 @@ static int fill_powernow_table_fidvid(struct powernow_k8_data *data, struct cpuf | |||
946 | 912 | ||
947 | static void powernow_k8_cpu_exit_acpi(struct powernow_k8_data *data) | 913 | static void powernow_k8_cpu_exit_acpi(struct powernow_k8_data *data) |
948 | { | 914 | { |
949 | if (data->acpi_data->state_count) | 915 | if (data->acpi_data.state_count) |
950 | acpi_processor_unregister_performance(data->acpi_data, data->cpu); | 916 | acpi_processor_unregister_performance(&data->acpi_data, data->cpu); |
951 | } | 917 | } |
952 | 918 | ||
953 | #else | 919 | #else |
954 | static int powernow_k8_cpu_preinit_acpi(void) { return -ENODEV; } | ||
955 | static int powernow_k8_cpu_init_acpi(struct powernow_k8_data *data) { return -ENODEV; } | 920 | static int powernow_k8_cpu_init_acpi(struct powernow_k8_data *data) { return -ENODEV; } |
956 | static void powernow_k8_cpu_exit_acpi(struct powernow_k8_data *data) { return; } | 921 | static void powernow_k8_cpu_exit_acpi(struct powernow_k8_data *data) { return; } |
957 | static void powernow_k8_acpi_pst_values(struct powernow_k8_data *data, unsigned int index) { return; } | 922 | static void powernow_k8_acpi_pst_values(struct powernow_k8_data *data, unsigned int index) { return; } |
@@ -1136,7 +1101,7 @@ static int powernowk8_verify(struct cpufreq_policy *pol) | |||
1136 | static int __cpuinit powernowk8_cpu_init(struct cpufreq_policy *pol) | 1101 | static int __cpuinit powernowk8_cpu_init(struct cpufreq_policy *pol) |
1137 | { | 1102 | { |
1138 | struct powernow_k8_data *data; | 1103 | struct powernow_k8_data *data; |
1139 | cpumask_t oldmask = CPU_MASK_ALL; | 1104 | cpumask_t oldmask; |
1140 | int rc; | 1105 | int rc; |
1141 | 1106 | ||
1142 | if (!cpu_online(pol->cpu)) | 1107 | if (!cpu_online(pol->cpu)) |
@@ -1209,7 +1174,10 @@ static int __cpuinit powernowk8_cpu_init(struct cpufreq_policy *pol) | |||
1209 | /* run on any CPU again */ | 1174 | /* run on any CPU again */ |
1210 | set_cpus_allowed_ptr(current, &oldmask); | 1175 | set_cpus_allowed_ptr(current, &oldmask); |
1211 | 1176 | ||
1212 | pol->cpus = data->starting_core_affinity; | 1177 | if (cpu_family == CPU_HW_PSTATE) |
1178 | pol->cpus = cpumask_of_cpu(pol->cpu); | ||
1179 | else | ||
1180 | pol->cpus = per_cpu(cpu_core_map, pol->cpu); | ||
1213 | data->available_cores = &(pol->cpus); | 1181 | data->available_cores = &(pol->cpus); |
1214 | 1182 | ||
1215 | /* Take a crude guess here. | 1183 | /* Take a crude guess here. |
@@ -1332,7 +1300,6 @@ static int __cpuinit powernowk8_init(void) | |||
1332 | } | 1300 | } |
1333 | 1301 | ||
1334 | if (supported_cpus == num_online_cpus()) { | 1302 | if (supported_cpus == num_online_cpus()) { |
1335 | powernow_k8_cpu_preinit_acpi(); | ||
1336 | printk(KERN_INFO PFX "Found %d %s " | 1303 | printk(KERN_INFO PFX "Found %d %s " |
1337 | "processors (%d cpu cores) (" VERSION ")\n", | 1304 | "processors (%d cpu cores) (" VERSION ")\n", |
1338 | num_online_nodes(), | 1305 | num_online_nodes(), |
@@ -1349,10 +1316,6 @@ static void __exit powernowk8_exit(void) | |||
1349 | dprintk("exit\n"); | 1316 | dprintk("exit\n"); |
1350 | 1317 | ||
1351 | cpufreq_unregister_driver(&cpufreq_amd64_driver); | 1318 | cpufreq_unregister_driver(&cpufreq_amd64_driver); |
1352 | |||
1353 | #ifdef CONFIG_X86_POWERNOW_K8_ACPI | ||
1354 | free_percpu(acpi_perf_data); | ||
1355 | #endif | ||
1356 | } | 1319 | } |
1357 | 1320 | ||
1358 | MODULE_AUTHOR("Paul Devriendt <paul.devriendt@amd.com> and Mark Langsdorf <mark.langsdorf@amd.com>"); | 1321 | MODULE_AUTHOR("Paul Devriendt <paul.devriendt@amd.com> and Mark Langsdorf <mark.langsdorf@amd.com>"); |
diff --git a/arch/x86/kernel/cpu/cpufreq/powernow-k8.h b/arch/x86/kernel/cpu/cpufreq/powernow-k8.h index a62612cd4be8..ab48cfed4d96 100644 --- a/arch/x86/kernel/cpu/cpufreq/powernow-k8.h +++ b/arch/x86/kernel/cpu/cpufreq/powernow-k8.h | |||
@@ -33,13 +33,12 @@ struct powernow_k8_data { | |||
33 | #ifdef CONFIG_X86_POWERNOW_K8_ACPI | 33 | #ifdef CONFIG_X86_POWERNOW_K8_ACPI |
34 | /* the acpi table needs to be kept. it's only available if ACPI was | 34 | /* the acpi table needs to be kept. it's only available if ACPI was |
35 | * used to determine valid frequency/vid/fid states */ | 35 | * used to determine valid frequency/vid/fid states */ |
36 | struct acpi_processor_performance *acpi_data; | 36 | struct acpi_processor_performance acpi_data; |
37 | #endif | 37 | #endif |
38 | /* we need to keep track of associated cores, but let cpufreq | 38 | /* we need to keep track of associated cores, but let cpufreq |
39 | * handle hotplug events - so just point at cpufreq pol->cpus | 39 | * handle hotplug events - so just point at cpufreq pol->cpus |
40 | * structure */ | 40 | * structure */ |
41 | cpumask_t *available_cores; | 41 | cpumask_t *available_cores; |
42 | cpumask_t starting_core_affinity; | ||
43 | }; | 42 | }; |
44 | 43 | ||
45 | 44 | ||
diff --git a/arch/x86/kernel/cpu/cyrix.c b/arch/x86/kernel/cpu/cyrix.c index 3fd7a67bb06a..898a5a2002ed 100644 --- a/arch/x86/kernel/cpu/cyrix.c +++ b/arch/x86/kernel/cpu/cyrix.c | |||
@@ -15,13 +15,11 @@ | |||
15 | /* | 15 | /* |
16 | * Read NSC/Cyrix DEVID registers (DIR) to get more detailed info. about the CPU | 16 | * Read NSC/Cyrix DEVID registers (DIR) to get more detailed info. about the CPU |
17 | */ | 17 | */ |
18 | static void __cpuinit do_cyrix_devid(unsigned char *dir0, unsigned char *dir1) | 18 | static void __cpuinit __do_cyrix_devid(unsigned char *dir0, unsigned char *dir1) |
19 | { | 19 | { |
20 | unsigned char ccr2, ccr3; | 20 | unsigned char ccr2, ccr3; |
21 | unsigned long flags; | ||
22 | 21 | ||
23 | /* we test for DEVID by checking whether CCR3 is writable */ | 22 | /* we test for DEVID by checking whether CCR3 is writable */ |
24 | local_irq_save(flags); | ||
25 | ccr3 = getCx86(CX86_CCR3); | 23 | ccr3 = getCx86(CX86_CCR3); |
26 | setCx86(CX86_CCR3, ccr3 ^ 0x80); | 24 | setCx86(CX86_CCR3, ccr3 ^ 0x80); |
27 | getCx86(0xc0); /* dummy to change bus */ | 25 | getCx86(0xc0); /* dummy to change bus */ |
@@ -44,9 +42,16 @@ static void __cpuinit do_cyrix_devid(unsigned char *dir0, unsigned char *dir1) | |||
44 | *dir0 = getCx86(CX86_DIR0); | 42 | *dir0 = getCx86(CX86_DIR0); |
45 | *dir1 = getCx86(CX86_DIR1); | 43 | *dir1 = getCx86(CX86_DIR1); |
46 | } | 44 | } |
47 | local_irq_restore(flags); | ||
48 | } | 45 | } |
49 | 46 | ||
47 | static void __cpuinit do_cyrix_devid(unsigned char *dir0, unsigned char *dir1) | ||
48 | { | ||
49 | unsigned long flags; | ||
50 | |||
51 | local_irq_save(flags); | ||
52 | __do_cyrix_devid(dir0, dir1); | ||
53 | local_irq_restore(flags); | ||
54 | } | ||
50 | /* | 55 | /* |
51 | * Cx86_dir0_msb is a HACK needed by check_cx686_cpuid/slop in bugs.h in | 56 | * Cx86_dir0_msb is a HACK needed by check_cx686_cpuid/slop in bugs.h in |
52 | * order to identify the Cyrix CPU model after we're out of setup.c | 57 | * order to identify the Cyrix CPU model after we're out of setup.c |
@@ -134,23 +139,6 @@ static void __cpuinit set_cx86_memwb(void) | |||
134 | setCx86(CX86_CCR2, getCx86(CX86_CCR2) | 0x14); | 139 | setCx86(CX86_CCR2, getCx86(CX86_CCR2) | 0x14); |
135 | } | 140 | } |
136 | 141 | ||
137 | static void __cpuinit set_cx86_inc(void) | ||
138 | { | ||
139 | unsigned char ccr3; | ||
140 | |||
141 | printk(KERN_INFO "Enable Incrementor on Cyrix/NSC processor.\n"); | ||
142 | |||
143 | ccr3 = getCx86(CX86_CCR3); | ||
144 | setCx86(CX86_CCR3, (ccr3 & 0x0f) | 0x10); /* enable MAPEN */ | ||
145 | /* PCR1 -- Performance Control */ | ||
146 | /* Incrementor on, whatever that is */ | ||
147 | setCx86(CX86_PCR1, getCx86(CX86_PCR1) | 0x02); | ||
148 | /* PCR0 -- Performance Control */ | ||
149 | /* Incrementor Margin 10 */ | ||
150 | setCx86(CX86_PCR0, getCx86(CX86_PCR0) | 0x04); | ||
151 | setCx86(CX86_CCR3, ccr3); /* disable MAPEN */ | ||
152 | } | ||
153 | |||
154 | /* | 142 | /* |
155 | * Configure later MediaGX and/or Geode processor. | 143 | * Configure later MediaGX and/or Geode processor. |
156 | */ | 144 | */ |
@@ -174,11 +162,28 @@ static void __cpuinit geode_configure(void) | |||
174 | 162 | ||
175 | set_cx86_memwb(); | 163 | set_cx86_memwb(); |
176 | set_cx86_reorder(); | 164 | set_cx86_reorder(); |
177 | set_cx86_inc(); | ||
178 | 165 | ||
179 | local_irq_restore(flags); | 166 | local_irq_restore(flags); |
180 | } | 167 | } |
181 | 168 | ||
169 | static void __cpuinit early_init_cyrix(struct cpuinfo_x86 *c) | ||
170 | { | ||
171 | unsigned char dir0, dir0_msn, dir1 = 0; | ||
172 | |||
173 | __do_cyrix_devid(&dir0, &dir1); | ||
174 | dir0_msn = dir0 >> 4; /* identifies CPU "family" */ | ||
175 | |||
176 | switch (dir0_msn) { | ||
177 | case 3: /* 6x86/6x86L */ | ||
178 | /* Emulate MTRRs using Cyrix's ARRs. */ | ||
179 | set_cpu_cap(c, X86_FEATURE_CYRIX_ARR); | ||
180 | break; | ||
181 | case 5: /* 6x86MX/M II */ | ||
182 | /* Emulate MTRRs using Cyrix's ARRs. */ | ||
183 | set_cpu_cap(c, X86_FEATURE_CYRIX_ARR); | ||
184 | break; | ||
185 | } | ||
186 | } | ||
182 | 187 | ||
183 | static void __cpuinit init_cyrix(struct cpuinfo_x86 *c) | 188 | static void __cpuinit init_cyrix(struct cpuinfo_x86 *c) |
184 | { | 189 | { |
@@ -434,6 +439,7 @@ static void __cpuinit cyrix_identify(struct cpuinfo_x86 *c) | |||
434 | static struct cpu_dev cyrix_cpu_dev __cpuinitdata = { | 439 | static struct cpu_dev cyrix_cpu_dev __cpuinitdata = { |
435 | .c_vendor = "Cyrix", | 440 | .c_vendor = "Cyrix", |
436 | .c_ident = { "CyrixInstead" }, | 441 | .c_ident = { "CyrixInstead" }, |
442 | .c_early_init = early_init_cyrix, | ||
437 | .c_init = init_cyrix, | 443 | .c_init = init_cyrix, |
438 | .c_identify = cyrix_identify, | 444 | .c_identify = cyrix_identify, |
439 | }; | 445 | }; |
diff --git a/arch/x86/kernel/cpu/feature_names.c b/arch/x86/kernel/cpu/feature_names.c index e43ad4ad4cba..c9017799497c 100644 --- a/arch/x86/kernel/cpu/feature_names.c +++ b/arch/x86/kernel/cpu/feature_names.c | |||
@@ -39,7 +39,8 @@ const char * const x86_cap_flags[NCAPINTS*32] = { | |||
39 | NULL, NULL, NULL, NULL, | 39 | NULL, NULL, NULL, NULL, |
40 | "constant_tsc", "up", NULL, "arch_perfmon", | 40 | "constant_tsc", "up", NULL, "arch_perfmon", |
41 | "pebs", "bts", NULL, NULL, | 41 | "pebs", "bts", NULL, NULL, |
42 | "rep_good", NULL, NULL, NULL, NULL, NULL, NULL, NULL, | 42 | "rep_good", NULL, NULL, NULL, |
43 | "nopl", NULL, NULL, NULL, | ||
43 | NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, | 44 | NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, |
44 | 45 | ||
45 | /* Intel-defined (#2) */ | 46 | /* Intel-defined (#2) */ |
diff --git a/arch/x86/kernel/cpu/mcheck/mce_64.c b/arch/x86/kernel/cpu/mcheck/mce_64.c index 65a339678ece..726a5fcdf341 100644 --- a/arch/x86/kernel/cpu/mcheck/mce_64.c +++ b/arch/x86/kernel/cpu/mcheck/mce_64.c | |||
@@ -759,6 +759,7 @@ static struct sysdev_class mce_sysclass = { | |||
759 | }; | 759 | }; |
760 | 760 | ||
761 | DEFINE_PER_CPU(struct sys_device, device_mce); | 761 | DEFINE_PER_CPU(struct sys_device, device_mce); |
762 | void (*threshold_cpu_callback)(unsigned long action, unsigned int cpu) __cpuinitdata; | ||
762 | 763 | ||
763 | /* Why are there no generic functions for this? */ | 764 | /* Why are there no generic functions for this? */ |
764 | #define ACCESSOR(name, var, start) \ | 765 | #define ACCESSOR(name, var, start) \ |
@@ -883,9 +884,13 @@ static int __cpuinit mce_cpu_callback(struct notifier_block *nfb, | |||
883 | case CPU_ONLINE: | 884 | case CPU_ONLINE: |
884 | case CPU_ONLINE_FROZEN: | 885 | case CPU_ONLINE_FROZEN: |
885 | mce_create_device(cpu); | 886 | mce_create_device(cpu); |
887 | if (threshold_cpu_callback) | ||
888 | threshold_cpu_callback(action, cpu); | ||
886 | break; | 889 | break; |
887 | case CPU_DEAD: | 890 | case CPU_DEAD: |
888 | case CPU_DEAD_FROZEN: | 891 | case CPU_DEAD_FROZEN: |
892 | if (threshold_cpu_callback) | ||
893 | threshold_cpu_callback(action, cpu); | ||
889 | mce_remove_device(cpu); | 894 | mce_remove_device(cpu); |
890 | break; | 895 | break; |
891 | } | 896 | } |
diff --git a/arch/x86/kernel/cpu/mcheck/mce_amd_64.c b/arch/x86/kernel/cpu/mcheck/mce_amd_64.c index 88736cadbaa6..5eb390a4b2e9 100644 --- a/arch/x86/kernel/cpu/mcheck/mce_amd_64.c +++ b/arch/x86/kernel/cpu/mcheck/mce_amd_64.c | |||
@@ -628,6 +628,7 @@ static void threshold_remove_bank(unsigned int cpu, int bank) | |||
628 | deallocate_threshold_block(cpu, bank); | 628 | deallocate_threshold_block(cpu, bank); |
629 | 629 | ||
630 | free_out: | 630 | free_out: |
631 | kobject_del(b->kobj); | ||
631 | kobject_put(b->kobj); | 632 | kobject_put(b->kobj); |
632 | kfree(b); | 633 | kfree(b); |
633 | per_cpu(threshold_banks, cpu)[bank] = NULL; | 634 | per_cpu(threshold_banks, cpu)[bank] = NULL; |
@@ -645,14 +646,11 @@ static void threshold_remove_device(unsigned int cpu) | |||
645 | } | 646 | } |
646 | 647 | ||
647 | /* get notified when a cpu comes on/off */ | 648 | /* get notified when a cpu comes on/off */ |
648 | static int __cpuinit threshold_cpu_callback(struct notifier_block *nfb, | 649 | static void __cpuinit amd_64_threshold_cpu_callback(unsigned long action, |
649 | unsigned long action, void *hcpu) | 650 | unsigned int cpu) |
650 | { | 651 | { |
651 | /* cpu was unsigned int to begin with */ | ||
652 | unsigned int cpu = (unsigned long)hcpu; | ||
653 | |||
654 | if (cpu >= NR_CPUS) | 652 | if (cpu >= NR_CPUS) |
655 | goto out; | 653 | return; |
656 | 654 | ||
657 | switch (action) { | 655 | switch (action) { |
658 | case CPU_ONLINE: | 656 | case CPU_ONLINE: |
@@ -666,14 +664,8 @@ static int __cpuinit threshold_cpu_callback(struct notifier_block *nfb, | |||
666 | default: | 664 | default: |
667 | break; | 665 | break; |
668 | } | 666 | } |
669 | out: | ||
670 | return NOTIFY_OK; | ||
671 | } | 667 | } |
672 | 668 | ||
673 | static struct notifier_block threshold_cpu_notifier __cpuinitdata = { | ||
674 | .notifier_call = threshold_cpu_callback, | ||
675 | }; | ||
676 | |||
677 | static __init int threshold_init_device(void) | 669 | static __init int threshold_init_device(void) |
678 | { | 670 | { |
679 | unsigned lcpu = 0; | 671 | unsigned lcpu = 0; |
@@ -684,7 +676,7 @@ static __init int threshold_init_device(void) | |||
684 | if (err) | 676 | if (err) |
685 | return err; | 677 | return err; |
686 | } | 678 | } |
687 | register_hotcpu_notifier(&threshold_cpu_notifier); | 679 | threshold_cpu_callback = amd_64_threshold_cpu_callback; |
688 | return 0; | 680 | return 0; |
689 | } | 681 | } |
690 | 682 | ||
diff --git a/arch/x86/kernel/cpu/mtrr/generic.c b/arch/x86/kernel/cpu/mtrr/generic.c index 509bd3d9eacd..cb7d3b6a80eb 100644 --- a/arch/x86/kernel/cpu/mtrr/generic.c +++ b/arch/x86/kernel/cpu/mtrr/generic.c | |||
@@ -379,6 +379,7 @@ static void generic_get_mtrr(unsigned int reg, unsigned long *base, | |||
379 | unsigned long *size, mtrr_type *type) | 379 | unsigned long *size, mtrr_type *type) |
380 | { | 380 | { |
381 | unsigned int mask_lo, mask_hi, base_lo, base_hi; | 381 | unsigned int mask_lo, mask_hi, base_lo, base_hi; |
382 | unsigned int tmp, hi; | ||
382 | 383 | ||
383 | rdmsr(MTRRphysMask_MSR(reg), mask_lo, mask_hi); | 384 | rdmsr(MTRRphysMask_MSR(reg), mask_lo, mask_hi); |
384 | if ((mask_lo & 0x800) == 0) { | 385 | if ((mask_lo & 0x800) == 0) { |
@@ -392,8 +393,23 @@ static void generic_get_mtrr(unsigned int reg, unsigned long *base, | |||
392 | rdmsr(MTRRphysBase_MSR(reg), base_lo, base_hi); | 393 | rdmsr(MTRRphysBase_MSR(reg), base_lo, base_hi); |
393 | 394 | ||
394 | /* Work out the shifted address mask. */ | 395 | /* Work out the shifted address mask. */ |
395 | mask_lo = size_or_mask | mask_hi << (32 - PAGE_SHIFT) | 396 | tmp = mask_hi << (32 - PAGE_SHIFT) | mask_lo >> PAGE_SHIFT; |
396 | | mask_lo >> PAGE_SHIFT; | 397 | mask_lo = size_or_mask | tmp; |
398 | /* Expand tmp with high bits to all 1s*/ | ||
399 | hi = fls(tmp); | ||
400 | if (hi > 0) { | ||
401 | tmp |= ~((1<<(hi - 1)) - 1); | ||
402 | |||
403 | if (tmp != mask_lo) { | ||
404 | static int once = 1; | ||
405 | |||
406 | if (once) { | ||
407 | printk(KERN_INFO "mtrr: your BIOS has set up an incorrect mask, fixing it up.\n"); | ||
408 | once = 0; | ||
409 | } | ||
410 | mask_lo = tmp; | ||
411 | } | ||
412 | } | ||
397 | 413 | ||
398 | /* This works correctly if size is a power of two, i.e. a | 414 | /* This works correctly if size is a power of two, i.e. a |
399 | contiguous range. */ | 415 | contiguous range. */ |
diff --git a/arch/x86/kernel/cpu/mtrr/main.c b/arch/x86/kernel/cpu/mtrr/main.c index 6f23969c8faf..b117d7f8a564 100644 --- a/arch/x86/kernel/cpu/mtrr/main.c +++ b/arch/x86/kernel/cpu/mtrr/main.c | |||
@@ -1496,11 +1496,8 @@ int __init mtrr_trim_uncached_memory(unsigned long end_pfn) | |||
1496 | 1496 | ||
1497 | /* kvm/qemu doesn't have mtrr set right, don't trim them all */ | 1497 | /* kvm/qemu doesn't have mtrr set right, don't trim them all */ |
1498 | if (!highest_pfn) { | 1498 | if (!highest_pfn) { |
1499 | if (!kvm_para_available()) { | 1499 | WARN(!kvm_para_available(), KERN_WARNING |
1500 | printk(KERN_WARNING | ||
1501 | "WARNING: strange, CPU MTRRs all blank?\n"); | 1500 | "WARNING: strange, CPU MTRRs all blank?\n"); |
1502 | WARN_ON(1); | ||
1503 | } | ||
1504 | return 0; | 1501 | return 0; |
1505 | } | 1502 | } |
1506 | 1503 | ||