Linux 3.11-rc3
[cris-mirror.git] / arch / x86 / kernel / microcode_amd.c
blob47ebb1dbfbcb2413ddaf9d4cc86b7d8558eb3c72
1 /*
2 * AMD CPU Microcode Update Driver for Linux
3 * Copyright (C) 2008-2011 Advanced Micro Devices Inc.
5 * Author: Peter Oruba <peter.oruba@amd.com>
7 * Based on work by:
8 * Tigran Aivazian <tigran@aivazian.fsnet.co.uk>
10 * Maintainers:
11 * Andreas Herrmann <herrmann.der.user@googlemail.com>
12 * Borislav Petkov <bp@alien8.de>
14 * This driver allows to upgrade microcode on F10h AMD
15 * CPUs and later.
17 * Licensed under the terms of the GNU General Public
18 * License version 2. See file COPYING for details.
21 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
23 #include <linux/firmware.h>
24 #include <linux/pci_ids.h>
25 #include <linux/uaccess.h>
26 #include <linux/vmalloc.h>
27 #include <linux/kernel.h>
28 #include <linux/module.h>
29 #include <linux/pci.h>
31 #include <asm/microcode.h>
32 #include <asm/processor.h>
33 #include <asm/msr.h>
34 #include <asm/microcode_amd.h>
36 MODULE_DESCRIPTION("AMD Microcode Update Driver");
37 MODULE_AUTHOR("Peter Oruba");
38 MODULE_LICENSE("GPL v2");
40 static struct equiv_cpu_entry *equiv_cpu_table;
42 struct ucode_patch {
43 struct list_head plist;
44 void *data;
45 u32 patch_id;
46 u16 equiv_cpu;
49 static LIST_HEAD(pcache);
51 static u16 __find_equiv_id(unsigned int cpu)
53 struct ucode_cpu_info *uci = ucode_cpu_info + cpu;
54 return find_equiv_id(equiv_cpu_table, uci->cpu_sig.sig);
57 static u32 find_cpu_family_by_equiv_cpu(u16 equiv_cpu)
59 int i = 0;
61 BUG_ON(!equiv_cpu_table);
63 while (equiv_cpu_table[i].equiv_cpu != 0) {
64 if (equiv_cpu == equiv_cpu_table[i].equiv_cpu)
65 return equiv_cpu_table[i].installed_cpu;
66 i++;
68 return 0;
72 * a small, trivial cache of per-family ucode patches
74 static struct ucode_patch *cache_find_patch(u16 equiv_cpu)
76 struct ucode_patch *p;
78 list_for_each_entry(p, &pcache, plist)
79 if (p->equiv_cpu == equiv_cpu)
80 return p;
81 return NULL;
84 static void update_cache(struct ucode_patch *new_patch)
86 struct ucode_patch *p;
88 list_for_each_entry(p, &pcache, plist) {
89 if (p->equiv_cpu == new_patch->equiv_cpu) {
90 if (p->patch_id >= new_patch->patch_id)
91 /* we already have the latest patch */
92 return;
94 list_replace(&p->plist, &new_patch->plist);
95 kfree(p->data);
96 kfree(p);
97 return;
100 /* no patch found, add it */
101 list_add_tail(&new_patch->plist, &pcache);
104 static void free_cache(void)
106 struct ucode_patch *p, *tmp;
108 list_for_each_entry_safe(p, tmp, &pcache, plist) {
109 __list_del(p->plist.prev, p->plist.next);
110 kfree(p->data);
111 kfree(p);
115 static struct ucode_patch *find_patch(unsigned int cpu)
117 u16 equiv_id;
119 equiv_id = __find_equiv_id(cpu);
120 if (!equiv_id)
121 return NULL;
123 return cache_find_patch(equiv_id);
126 static int collect_cpu_info_amd(int cpu, struct cpu_signature *csig)
128 struct cpuinfo_x86 *c = &cpu_data(cpu);
129 struct ucode_cpu_info *uci = ucode_cpu_info + cpu;
130 struct ucode_patch *p;
132 csig->sig = cpuid_eax(0x00000001);
133 csig->rev = c->microcode;
136 * a patch could have been loaded early, set uci->mc so that
137 * mc_bp_resume() can call apply_microcode()
139 p = find_patch(cpu);
140 if (p && (p->patch_id == csig->rev))
141 uci->mc = p->data;
143 pr_info("CPU%d: patch_level=0x%08x\n", cpu, csig->rev);
145 return 0;
148 static unsigned int verify_patch_size(int cpu, u32 patch_size,
149 unsigned int size)
151 struct cpuinfo_x86 *c = &cpu_data(cpu);
152 u32 max_size;
154 #define F1XH_MPB_MAX_SIZE 2048
155 #define F14H_MPB_MAX_SIZE 1824
156 #define F15H_MPB_MAX_SIZE 4096
157 #define F16H_MPB_MAX_SIZE 3458
159 switch (c->x86) {
160 case 0x14:
161 max_size = F14H_MPB_MAX_SIZE;
162 break;
163 case 0x15:
164 max_size = F15H_MPB_MAX_SIZE;
165 break;
166 case 0x16:
167 max_size = F16H_MPB_MAX_SIZE;
168 break;
169 default:
170 max_size = F1XH_MPB_MAX_SIZE;
171 break;
174 if (patch_size > min_t(u32, size, max_size)) {
175 pr_err("patch size mismatch\n");
176 return 0;
179 return patch_size;
182 int __apply_microcode_amd(struct microcode_amd *mc_amd)
184 u32 rev, dummy;
186 wrmsrl(MSR_AMD64_PATCH_LOADER, (u64)(long)&mc_amd->hdr.data_code);
188 /* verify patch application was successful */
189 rdmsr(MSR_AMD64_PATCH_LEVEL, rev, dummy);
190 if (rev != mc_amd->hdr.patch_id)
191 return -1;
193 return 0;
196 int apply_microcode_amd(int cpu)
198 struct cpuinfo_x86 *c = &cpu_data(cpu);
199 struct microcode_amd *mc_amd;
200 struct ucode_cpu_info *uci;
201 struct ucode_patch *p;
202 u32 rev, dummy;
204 BUG_ON(raw_smp_processor_id() != cpu);
206 uci = ucode_cpu_info + cpu;
208 p = find_patch(cpu);
209 if (!p)
210 return 0;
212 mc_amd = p->data;
213 uci->mc = p->data;
215 rdmsr(MSR_AMD64_PATCH_LEVEL, rev, dummy);
217 /* need to apply patch? */
218 if (rev >= mc_amd->hdr.patch_id) {
219 c->microcode = rev;
220 return 0;
223 if (__apply_microcode_amd(mc_amd))
224 pr_err("CPU%d: update failed for patch_level=0x%08x\n",
225 cpu, mc_amd->hdr.patch_id);
226 else
227 pr_info("CPU%d: new patch_level=0x%08x\n", cpu,
228 mc_amd->hdr.patch_id);
230 uci->cpu_sig.rev = mc_amd->hdr.patch_id;
231 c->microcode = mc_amd->hdr.patch_id;
233 return 0;
236 static int install_equiv_cpu_table(const u8 *buf)
238 unsigned int *ibuf = (unsigned int *)buf;
239 unsigned int type = ibuf[1];
240 unsigned int size = ibuf[2];
242 if (type != UCODE_EQUIV_CPU_TABLE_TYPE || !size) {
243 pr_err("empty section/"
244 "invalid type field in container file section header\n");
245 return -EINVAL;
248 equiv_cpu_table = vmalloc(size);
249 if (!equiv_cpu_table) {
250 pr_err("failed to allocate equivalent CPU table\n");
251 return -ENOMEM;
254 memcpy(equiv_cpu_table, buf + CONTAINER_HDR_SZ, size);
256 /* add header length */
257 return size + CONTAINER_HDR_SZ;
260 static void free_equiv_cpu_table(void)
262 vfree(equiv_cpu_table);
263 equiv_cpu_table = NULL;
266 static void cleanup(void)
268 free_equiv_cpu_table();
269 free_cache();
273 * We return the current size even if some of the checks failed so that
274 * we can skip over the next patch. If we return a negative value, we
275 * signal a grave error like a memory allocation has failed and the
276 * driver cannot continue functioning normally. In such cases, we tear
277 * down everything we've used up so far and exit.
279 static int verify_and_add_patch(unsigned int cpu, u8 *fw, unsigned int leftover)
281 struct cpuinfo_x86 *c = &cpu_data(cpu);
282 struct microcode_header_amd *mc_hdr;
283 struct ucode_patch *patch;
284 unsigned int patch_size, crnt_size, ret;
285 u32 proc_fam;
286 u16 proc_id;
288 patch_size = *(u32 *)(fw + 4);
289 crnt_size = patch_size + SECTION_HDR_SIZE;
290 mc_hdr = (struct microcode_header_amd *)(fw + SECTION_HDR_SIZE);
291 proc_id = mc_hdr->processor_rev_id;
293 proc_fam = find_cpu_family_by_equiv_cpu(proc_id);
294 if (!proc_fam) {
295 pr_err("No patch family for equiv ID: 0x%04x\n", proc_id);
296 return crnt_size;
299 /* check if patch is for the current family */
300 proc_fam = ((proc_fam >> 8) & 0xf) + ((proc_fam >> 20) & 0xff);
301 if (proc_fam != c->x86)
302 return crnt_size;
304 if (mc_hdr->nb_dev_id || mc_hdr->sb_dev_id) {
305 pr_err("Patch-ID 0x%08x: chipset-specific code unsupported.\n",
306 mc_hdr->patch_id);
307 return crnt_size;
310 ret = verify_patch_size(cpu, patch_size, leftover);
311 if (!ret) {
312 pr_err("Patch-ID 0x%08x: size mismatch.\n", mc_hdr->patch_id);
313 return crnt_size;
316 patch = kzalloc(sizeof(*patch), GFP_KERNEL);
317 if (!patch) {
318 pr_err("Patch allocation failure.\n");
319 return -EINVAL;
322 patch->data = kzalloc(patch_size, GFP_KERNEL);
323 if (!patch->data) {
324 pr_err("Patch data allocation failure.\n");
325 kfree(patch);
326 return -EINVAL;
329 /* All looks ok, copy patch... */
330 memcpy(patch->data, fw + SECTION_HDR_SIZE, patch_size);
331 INIT_LIST_HEAD(&patch->plist);
332 patch->patch_id = mc_hdr->patch_id;
333 patch->equiv_cpu = proc_id;
335 /* ... and add to cache. */
336 update_cache(patch);
338 return crnt_size;
341 static enum ucode_state __load_microcode_amd(int cpu, const u8 *data, size_t size)
343 enum ucode_state ret = UCODE_ERROR;
344 unsigned int leftover;
345 u8 *fw = (u8 *)data;
346 int crnt_size = 0;
347 int offset;
349 offset = install_equiv_cpu_table(data);
350 if (offset < 0) {
351 pr_err("failed to create equivalent cpu table\n");
352 return ret;
354 fw += offset;
355 leftover = size - offset;
357 if (*(u32 *)fw != UCODE_UCODE_TYPE) {
358 pr_err("invalid type field in container file section header\n");
359 free_equiv_cpu_table();
360 return ret;
363 while (leftover) {
364 crnt_size = verify_and_add_patch(cpu, fw, leftover);
365 if (crnt_size < 0)
366 return ret;
368 fw += crnt_size;
369 leftover -= crnt_size;
372 return UCODE_OK;
375 enum ucode_state load_microcode_amd(int cpu, const u8 *data, size_t size)
377 enum ucode_state ret;
379 /* free old equiv table */
380 free_equiv_cpu_table();
382 ret = __load_microcode_amd(cpu, data, size);
384 if (ret != UCODE_OK)
385 cleanup();
387 #if defined(CONFIG_MICROCODE_AMD_EARLY) && defined(CONFIG_X86_32)
388 /* save BSP's matching patch for early load */
389 if (cpu_data(cpu).cpu_index == boot_cpu_data.cpu_index) {
390 struct ucode_patch *p = find_patch(cpu);
391 if (p) {
392 memset(amd_bsp_mpb, 0, MPB_MAX_SIZE);
393 memcpy(amd_bsp_mpb, p->data, min_t(u32, ksize(p->data),
394 MPB_MAX_SIZE));
397 #endif
398 return ret;
402 * AMD microcode firmware naming convention, up to family 15h they are in
403 * the legacy file:
405 * amd-ucode/microcode_amd.bin
407 * This legacy file is always smaller than 2K in size.
409 * Beginning with family 15h, they are in family-specific firmware files:
411 * amd-ucode/microcode_amd_fam15h.bin
412 * amd-ucode/microcode_amd_fam16h.bin
413 * ...
415 * These might be larger than 2K.
417 static enum ucode_state request_microcode_amd(int cpu, struct device *device,
418 bool refresh_fw)
420 char fw_name[36] = "amd-ucode/microcode_amd.bin";
421 struct cpuinfo_x86 *c = &cpu_data(cpu);
422 enum ucode_state ret = UCODE_NFOUND;
423 const struct firmware *fw;
425 /* reload ucode container only on the boot cpu */
426 if (!refresh_fw || c->cpu_index != boot_cpu_data.cpu_index)
427 return UCODE_OK;
429 if (c->x86 >= 0x15)
430 snprintf(fw_name, sizeof(fw_name), "amd-ucode/microcode_amd_fam%.2xh.bin", c->x86);
432 if (request_firmware(&fw, (const char *)fw_name, device)) {
433 pr_err("failed to load file %s\n", fw_name);
434 goto out;
437 ret = UCODE_ERROR;
438 if (*(u32 *)fw->data != UCODE_MAGIC) {
439 pr_err("invalid magic value (0x%08x)\n", *(u32 *)fw->data);
440 goto fw_release;
443 ret = load_microcode_amd(cpu, fw->data, fw->size);
445 fw_release:
446 release_firmware(fw);
448 out:
449 return ret;
452 static enum ucode_state
453 request_microcode_user(int cpu, const void __user *buf, size_t size)
455 return UCODE_ERROR;
458 static void microcode_fini_cpu_amd(int cpu)
460 struct ucode_cpu_info *uci = ucode_cpu_info + cpu;
462 uci->mc = NULL;
465 static struct microcode_ops microcode_amd_ops = {
466 .request_microcode_user = request_microcode_user,
467 .request_microcode_fw = request_microcode_amd,
468 .collect_cpu_info = collect_cpu_info_amd,
469 .apply_microcode = apply_microcode_amd,
470 .microcode_fini_cpu = microcode_fini_cpu_amd,
473 struct microcode_ops * __init init_amd_microcode(void)
475 struct cpuinfo_x86 *c = &cpu_data(0);
477 if (c->x86_vendor != X86_VENDOR_AMD || c->x86 < 0x10) {
478 pr_warning("AMD CPU family 0x%x not supported\n", c->x86);
479 return NULL;
482 return &microcode_amd_ops;
485 void __exit exit_amd_microcode(void)
487 cleanup();