intel.c 24.9 KB
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/*
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 * Intel CPU Microcode Update Driver for Linux
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 *
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 * Copyright (C) 2000-2006 Tigran Aivazian <tigran@aivazian.fsnet.co.uk>
 *		 2006 Shaohua Li <shaohua.li@intel.com>
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 *
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 * Intel CPU microcode early update for Linux
 *
 * Copyright (C) 2012 Fenghua Yu <fenghua.yu@intel.com>
 *		      H Peter Anvin" <hpa@zytor.com>
 *
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 * 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.
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 */
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/*
 * This needs to be before all headers so that pr_debug in printk.h doesn't turn
 * printk calls into no_printk().
 *
 *#define DEBUG
 */
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#define pr_fmt(fmt) "microcode: " fmt
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#include <linux/earlycpio.h>
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#include <linux/firmware.h>
#include <linux/uaccess.h>
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#include <linux/vmalloc.h>
#include <linux/initrd.h>
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#include <linux/kernel.h>
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#include <linux/slab.h>
#include <linux/cpu.h>
#include <linux/mm.h>
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#include <asm/microcode_intel.h>
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#include <asm/processor.h>
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#include <asm/tlbflush.h>
#include <asm/setup.h>
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#include <asm/msr.h>
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/*
 * Temporary microcode blobs pointers storage. We note here the pointers to
 * microcode blobs we've got from whatever storage (detached initrd, builtin).
 * Later on, we put those into final storage mc_saved_data.mc_saved.
 */
static unsigned long mc_tmp_ptrs[MAX_UCODE_COUNT];

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static struct mc_saved_data {
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	unsigned int num_saved;
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	struct microcode_intel **mc_saved;
} mc_saved_data;

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/* Microcode blobs within the initrd. 0 if builtin. */
static struct ucode_blobs {
	unsigned long start;
	bool valid;
} blobs;

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static enum ucode_state
load_microcode_early(struct microcode_intel **saved,
		     unsigned int num_saved, struct ucode_cpu_info *uci)
{
	struct microcode_intel *ucode_ptr, *new_mc = NULL;
	struct microcode_header_intel *mc_hdr;
	int new_rev, ret, i;

	new_rev = uci->cpu_sig.rev;

	for (i = 0; i < num_saved; i++) {
		ucode_ptr = saved[i];
		mc_hdr	  = (struct microcode_header_intel *)ucode_ptr;

		ret = has_newer_microcode(ucode_ptr,
					  uci->cpu_sig.sig,
					  uci->cpu_sig.pf,
					  new_rev);
		if (!ret)
			continue;

		new_rev = mc_hdr->rev;
		new_mc  = ucode_ptr;
	}

	if (!new_mc)
		return UCODE_NFOUND;

	uci->mc = (struct microcode_intel *)new_mc;
	return UCODE_OK;
}

static inline void
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copy_ptrs(struct microcode_intel **mc_saved, unsigned long *mc_ptrs,
	  unsigned long off, int num_saved)
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{
	int i;

	for (i = 0; i < num_saved; i++)
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		mc_saved[i] = (struct microcode_intel *)(mc_ptrs[i] + off);
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}

#ifdef CONFIG_X86_32
static void
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microcode_phys(struct microcode_intel **mc_saved_tmp, struct mc_saved_data *mcs)
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{
	int i;
	struct microcode_intel ***mc_saved;

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	mc_saved = (struct microcode_intel ***)__pa_nodebug(&mcs->mc_saved);

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	for (i = 0; i < mcs->num_saved; i++) {
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		struct microcode_intel *p;

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		p = *(struct microcode_intel **)__pa_nodebug(mcs->mc_saved + i);
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		mc_saved_tmp[i] = (struct microcode_intel *)__pa_nodebug(p);
	}
}
#endif

static enum ucode_state
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load_microcode(struct mc_saved_data *mcs, unsigned long *mc_ptrs,
	       unsigned long offset, struct ucode_cpu_info *uci)
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{
	struct microcode_intel *mc_saved_tmp[MAX_UCODE_COUNT];
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	unsigned int count = mcs->num_saved;
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	if (!mcs->mc_saved) {
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		copy_ptrs(mc_saved_tmp, mc_ptrs, offset, count);
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		return load_microcode_early(mc_saved_tmp, count, uci);
	} else {
#ifdef CONFIG_X86_32
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		microcode_phys(mc_saved_tmp, mcs);
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		return load_microcode_early(mc_saved_tmp, count, uci);
#else
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		return load_microcode_early(mcs->mc_saved, count, uci);
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#endif
	}
}

/*
 * Given CPU signature and a microcode patch, this function finds if the
 * microcode patch has matching family and model with the CPU.
 */
static enum ucode_state
matching_model_microcode(struct microcode_header_intel *mc_header,
			unsigned long sig)
{
	unsigned int fam, model;
	unsigned int fam_ucode, model_ucode;
	struct extended_sigtable *ext_header;
	unsigned long total_size = get_totalsize(mc_header);
	unsigned long data_size = get_datasize(mc_header);
	int ext_sigcount, i;
	struct extended_signature *ext_sig;

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	fam   = x86_family(sig);
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	model = x86_model(sig);

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	fam_ucode   = x86_family(mc_header->sig);
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	model_ucode = x86_model(mc_header->sig);

	if (fam == fam_ucode && model == model_ucode)
		return UCODE_OK;

	/* Look for ext. headers: */
	if (total_size <= data_size + MC_HEADER_SIZE)
		return UCODE_NFOUND;

	ext_header   = (void *) mc_header + data_size + MC_HEADER_SIZE;
	ext_sig      = (void *)ext_header + EXT_HEADER_SIZE;
	ext_sigcount = ext_header->count;

	for (i = 0; i < ext_sigcount; i++) {
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		fam_ucode   = x86_family(ext_sig->sig);
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		model_ucode = x86_model(ext_sig->sig);

		if (fam == fam_ucode && model == model_ucode)
			return UCODE_OK;

		ext_sig++;
	}
	return UCODE_NFOUND;
}

static int
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save_microcode(struct mc_saved_data *mcs,
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	       struct microcode_intel **mc_saved_src,
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	       unsigned int num_saved)
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{
	int i, j;
	struct microcode_intel **saved_ptr;
	int ret;

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	if (!num_saved)
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		return -EINVAL;

	/*
	 * Copy new microcode data.
	 */
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	saved_ptr = kcalloc(num_saved, sizeof(struct microcode_intel *), GFP_KERNEL);
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	if (!saved_ptr)
		return -ENOMEM;

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	for (i = 0; i < num_saved; i++) {
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		struct microcode_header_intel *mc_hdr;
		struct microcode_intel *mc;
		unsigned long size;

		if (!mc_saved_src[i]) {
			ret = -EINVAL;
			goto err;
		}

		mc     = mc_saved_src[i];
		mc_hdr = &mc->hdr;
		size   = get_totalsize(mc_hdr);

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		saved_ptr[i] = kmemdup(mc, size, GFP_KERNEL);
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		if (!saved_ptr[i]) {
			ret = -ENOMEM;
			goto err;
		}
	}

	/*
	 * Point to newly saved microcode.
	 */
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	mcs->mc_saved  = saved_ptr;
	mcs->num_saved = num_saved;
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	return 0;

err:
	for (j = 0; j <= i; j++)
		kfree(saved_ptr[j]);
	kfree(saved_ptr);

	return ret;
}

/*
 * A microcode patch in ucode_ptr is saved into mc_saved
 * - if it has matching signature and newer revision compared to an existing
 *   patch mc_saved.
 * - or if it is a newly discovered microcode patch.
 *
 * The microcode patch should have matching model with CPU.
 *
 * Returns: The updated number @num_saved of saved microcode patches.
 */
static unsigned int _save_mc(struct microcode_intel **mc_saved,
			     u8 *ucode_ptr, unsigned int num_saved)
{
	struct microcode_header_intel *mc_hdr, *mc_saved_hdr;
	unsigned int sig, pf;
	int found = 0, i;

	mc_hdr = (struct microcode_header_intel *)ucode_ptr;

	for (i = 0; i < num_saved; i++) {
		mc_saved_hdr = (struct microcode_header_intel *)mc_saved[i];
		sig	     = mc_saved_hdr->sig;
		pf	     = mc_saved_hdr->pf;

		if (!find_matching_signature(ucode_ptr, sig, pf))
			continue;

		found = 1;

		if (mc_hdr->rev <= mc_saved_hdr->rev)
			continue;

		/*
		 * Found an older ucode saved earlier. Replace it with
		 * this newer one.
		 */
		mc_saved[i] = (struct microcode_intel *)ucode_ptr;
		break;
	}

	/* Newly detected microcode, save it to memory. */
	if (i >= num_saved && !found)
		mc_saved[num_saved++] = (struct microcode_intel *)ucode_ptr;

	return num_saved;
}

/*
 * Get microcode matching with BSP's model. Only CPUs with the same model as
 * BSP can stay in the platform.
 */
static enum ucode_state __init
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get_matching_model_microcode(unsigned long start, void *data, size_t size,
			     struct mc_saved_data *mcs, unsigned long *mc_ptrs,
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			     struct ucode_cpu_info *uci)
{
	struct microcode_intel *mc_saved_tmp[MAX_UCODE_COUNT];
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	struct microcode_header_intel *mc_header;
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	unsigned int num_saved = mcs->num_saved;
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	enum ucode_state state = UCODE_OK;
	unsigned int leftover = size;
	u8 *ucode_ptr = data;
	unsigned int mc_size;
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	int i;

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	while (leftover && num_saved < ARRAY_SIZE(mc_saved_tmp)) {
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		if (leftover < sizeof(mc_header))
			break;

		mc_header = (struct microcode_header_intel *)ucode_ptr;

		mc_size = get_totalsize(mc_header);
		if (!mc_size || mc_size > leftover ||
			microcode_sanity_check(ucode_ptr, 0) < 0)
			break;

		leftover -= mc_size;

		/*
		 * Since APs with same family and model as the BSP may boot in
		 * the platform, we need to find and save microcode patches
		 * with the same family and model as the BSP.
		 */
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		if (matching_model_microcode(mc_header, uci->cpu_sig.sig) != UCODE_OK) {
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			ucode_ptr += mc_size;
			continue;
		}

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		num_saved = _save_mc(mc_saved_tmp, ucode_ptr, num_saved);
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		ucode_ptr += mc_size;
	}

	if (leftover) {
		state = UCODE_ERROR;
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		return state;
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	}

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	if (!num_saved) {
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		state = UCODE_NFOUND;
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		return state;
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	}

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	for (i = 0; i < num_saved; i++)
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		mc_ptrs[i] = (unsigned long)mc_saved_tmp[i] - start;
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	mcs->num_saved = num_saved;
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	return state;
}

static int collect_cpu_info_early(struct ucode_cpu_info *uci)
{
	unsigned int val[2];
	unsigned int family, model;
	struct cpu_signature csig;
	unsigned int eax, ebx, ecx, edx;

	csig.sig = 0;
	csig.pf = 0;
	csig.rev = 0;

	memset(uci, 0, sizeof(*uci));

	eax = 0x00000001;
	ecx = 0;
	native_cpuid(&eax, &ebx, &ecx, &edx);
	csig.sig = eax;

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	family = x86_family(csig.sig);
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	model  = x86_model(csig.sig);

	if ((model >= 5) || (family > 6)) {
		/* get processor flags from MSR 0x17 */
		native_rdmsr(MSR_IA32_PLATFORM_ID, val[0], val[1]);
		csig.pf = 1 << ((val[1] >> 18) & 7);
	}
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	native_wrmsrl(MSR_IA32_UCODE_REV, 0);
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	/* As documented in the SDM: Do a CPUID 1 here */
	sync_core();

	/* get the current revision from MSR 0x8B */
	native_rdmsr(MSR_IA32_UCODE_REV, val[0], val[1]);

	csig.rev = val[1];

	uci->cpu_sig = csig;
	uci->valid = 1;

	return 0;
}

static void show_saved_mc(void)
{
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#ifdef DEBUG
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	int i, j;
	unsigned int sig, pf, rev, total_size, data_size, date;
	struct ucode_cpu_info uci;

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	if (!mc_saved_data.num_saved) {
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		pr_debug("no microcode data saved.\n");
		return;
	}
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	pr_debug("Total microcode saved: %d\n", mc_saved_data.num_saved);
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	collect_cpu_info_early(&uci);

	sig = uci.cpu_sig.sig;
	pf = uci.cpu_sig.pf;
	rev = uci.cpu_sig.rev;
	pr_debug("CPU: sig=0x%x, pf=0x%x, rev=0x%x\n", sig, pf, rev);

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	for (i = 0; i < mc_saved_data.num_saved; i++) {
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		struct microcode_header_intel *mc_saved_header;
		struct extended_sigtable *ext_header;
		int ext_sigcount;
		struct extended_signature *ext_sig;

		mc_saved_header = (struct microcode_header_intel *)
				  mc_saved_data.mc_saved[i];
		sig = mc_saved_header->sig;
		pf = mc_saved_header->pf;
		rev = mc_saved_header->rev;
		total_size = get_totalsize(mc_saved_header);
		data_size = get_datasize(mc_saved_header);
		date = mc_saved_header->date;

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		pr_debug("mc_saved[%d]: sig=0x%x, pf=0x%x, rev=0x%x, total size=0x%x, date = %04x-%02x-%02x\n",
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			 i, sig, pf, rev, total_size,
			 date & 0xffff,
			 date >> 24,
			 (date >> 16) & 0xff);

		/* Look for ext. headers: */
		if (total_size <= data_size + MC_HEADER_SIZE)
			continue;

		ext_header = (void *) mc_saved_header + data_size + MC_HEADER_SIZE;
		ext_sigcount = ext_header->count;
		ext_sig = (void *)ext_header + EXT_HEADER_SIZE;

		for (j = 0; j < ext_sigcount; j++) {
			sig = ext_sig->sig;
			pf = ext_sig->pf;

			pr_debug("\tExtended[%d]: sig=0x%x, pf=0x%x\n",
				 j, sig, pf);

			ext_sig++;
		}

	}
#endif
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}
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#ifdef CONFIG_HOTPLUG_CPU
static DEFINE_MUTEX(x86_cpu_microcode_mutex);
/*
 * Save this mc into mc_saved_data. So it will be loaded early when a CPU is
 * hot added or resumes.
 *
 * Please make sure this mc should be a valid microcode patch before calling
 * this function.
 */
int save_mc_for_early(u8 *mc)
{
	struct microcode_intel *mc_saved_tmp[MAX_UCODE_COUNT];
	unsigned int mc_saved_count_init;
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	unsigned int num_saved;
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	struct microcode_intel **mc_saved;
	int ret = 0;
	int i;

	/*
	 * Hold hotplug lock so mc_saved_data is not accessed by a CPU in
	 * hotplug.
	 */
	mutex_lock(&x86_cpu_microcode_mutex);

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	mc_saved_count_init = mc_saved_data.num_saved;
	num_saved = mc_saved_data.num_saved;
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	mc_saved = mc_saved_data.mc_saved;

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	if (mc_saved && num_saved)
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		memcpy(mc_saved_tmp, mc_saved,
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		       num_saved * sizeof(struct microcode_intel *));
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	/*
	 * Save the microcode patch mc in mc_save_tmp structure if it's a newer
	 * version.
	 */
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	num_saved = _save_mc(mc_saved_tmp, mc, num_saved);
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	/*
	 * Save the mc_save_tmp in global mc_saved_data.
	 */
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	ret = save_microcode(&mc_saved_data, mc_saved_tmp, num_saved);
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	if (ret) {
		pr_err("Cannot save microcode patch.\n");
		goto out;
	}

	show_saved_mc();

	/*
	 * Free old saved microcode data.
	 */
	if (mc_saved) {
		for (i = 0; i < mc_saved_count_init; i++)
			kfree(mc_saved[i]);
		kfree(mc_saved);
	}

out:
	mutex_unlock(&x86_cpu_microcode_mutex);

	return ret;
}
EXPORT_SYMBOL_GPL(save_mc_for_early);
#endif

static bool __init load_builtin_intel_microcode(struct cpio_data *cp)
{
#ifdef CONFIG_X86_64
	unsigned int eax = 0x00000001, ebx, ecx = 0, edx;
	char name[30];

	native_cpuid(&eax, &ebx, &ecx, &edx);

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	sprintf(name, "intel-ucode/%02x-%02x-%02x",
		      x86_family(eax), x86_model(eax), x86_stepping(eax));
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	return get_builtin_firmware(cp, name);
#else
	return false;
#endif
}

/*
 * Print ucode update info.
 */
static void
print_ucode_info(struct ucode_cpu_info *uci, unsigned int date)
{
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	pr_info_once("microcode updated early to revision 0x%x, date = %04x-%02x-%02x\n",
		     uci->cpu_sig.rev,
		     date & 0xffff,
		     date >> 24,
		     (date >> 16) & 0xff);
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}

#ifdef CONFIG_X86_32

static int delay_ucode_info;
static int current_mc_date;

/*
 * Print early updated ucode info after printk works. This is delayed info dump.
 */
void show_ucode_info_early(void)
{
	struct ucode_cpu_info uci;

	if (delay_ucode_info) {
		collect_cpu_info_early(&uci);
		print_ucode_info(&uci, current_mc_date);
		delay_ucode_info = 0;
	}
}

/*
 * At this point, we can not call printk() yet. Keep microcode patch number in
 * mc_saved_data.mc_saved and delay printing microcode info in
 * show_ucode_info_early() until printk() works.
 */
static void print_ucode(struct ucode_cpu_info *uci)
{
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	struct microcode_intel *mc;
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	int *delay_ucode_info_p;
	int *current_mc_date_p;

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	mc = uci->mc;
	if (!mc)
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		return;

	delay_ucode_info_p = (int *)__pa_nodebug(&delay_ucode_info);
	current_mc_date_p = (int *)__pa_nodebug(&current_mc_date);

	*delay_ucode_info_p = 1;
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	*current_mc_date_p = mc->hdr.date;
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}
#else

/*
 * Flush global tlb. We only do this in x86_64 where paging has been enabled
 * already and PGE should be enabled as well.
 */
static inline void flush_tlb_early(void)
{
	__native_flush_tlb_global_irq_disabled();
}

static inline void print_ucode(struct ucode_cpu_info *uci)
{
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	struct microcode_intel *mc;
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	mc = uci->mc;
	if (!mc)
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		return;

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	print_ucode_info(uci, mc->hdr.date);
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}
#endif

static int apply_microcode_early(struct ucode_cpu_info *uci, bool early)
{
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	struct microcode_intel *mc;
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	unsigned int val[2];

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	mc = uci->mc;
	if (!mc)
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		return 0;

	/* write microcode via MSR 0x79 */
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	native_wrmsrl(MSR_IA32_UCODE_WRITE, (unsigned long)mc->bits);
	native_wrmsrl(MSR_IA32_UCODE_REV, 0);
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	/* As documented in the SDM: Do a CPUID 1 here */
	sync_core();

	/* get the current revision from MSR 0x8B */
	native_rdmsr(MSR_IA32_UCODE_REV, val[0], val[1]);
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	if (val[1] != mc->hdr.rev)
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		return -1;

#ifdef CONFIG_X86_64
	/* Flush global tlb. This is precaution. */
	flush_tlb_early();
#endif
	uci->cpu_sig.rev = val[1];

	if (early)
		print_ucode(uci);
	else
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		print_ucode_info(uci, mc->hdr.date);
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	return 0;
}

/*
 * This function converts microcode patch offsets previously stored in
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 * mc_tmp_ptrs to pointers and stores the pointers in mc_saved_data.
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 */
int __init save_microcode_in_initrd_intel(void)
{
	struct microcode_intel *mc_saved[MAX_UCODE_COUNT];
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	unsigned int count = mc_saved_data.num_saved;
	unsigned long offset = 0;
	int ret;
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	if (!count)
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		return 0;
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	/*
	 * We have found a valid initrd but it might've been relocated in the
	 * meantime so get its updated address.
	 */
	if (IS_ENABLED(CONFIG_BLK_DEV_INITRD) && blobs.valid)
		offset = initrd_start;

	copy_ptrs(mc_saved, mc_tmp_ptrs, offset, count);
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	ret = save_microcode(&mc_saved_data, mc_saved, count);
	if (ret)
		pr_err("Cannot save microcode patches from initrd.\n");

	show_saved_mc();

	return ret;
}

684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755
static __init enum ucode_state
__scan_microcode_initrd(struct cpio_data *cd, struct ucode_blobs *blbp)
{
#ifdef CONFIG_BLK_DEV_INITRD
	long offset = 0;
	static __initdata char ucode_name[] = "kernel/x86/microcode/GenuineIntel.bin";
	char *p = IS_ENABLED(CONFIG_X86_32) ? (char *)__pa_nodebug(ucode_name)
						    : ucode_name;
# ifdef CONFIG_X86_32
	unsigned long start = 0, size;
	struct boot_params *params;

	params = (struct boot_params *)__pa_nodebug(&boot_params);
	size   = params->hdr.ramdisk_size;

	/*
	 * Set start only if we have an initrd image. We cannot use initrd_start
	 * because it is not set that early yet.
	 */
	start = (size ? params->hdr.ramdisk_image : 0);

# else /* CONFIG_X86_64 */
	unsigned long start = 0, size;

	size  = (u64)boot_params.ext_ramdisk_size << 32;
	size |= boot_params.hdr.ramdisk_size;

	if (size) {
		start  = (u64)boot_params.ext_ramdisk_image << 32;
		start |= boot_params.hdr.ramdisk_image;

		start += PAGE_OFFSET;
	}
# endif

	*cd = find_cpio_data(p, (void *)start, size, &offset);
	if (cd->data) {
		blbp->start = start;
		blbp->valid = true;

		return UCODE_OK;
	} else
#endif /* CONFIG_BLK_DEV_INITRD */
		return UCODE_ERROR;
}

static __init enum ucode_state
scan_microcode(struct mc_saved_data *mcs, unsigned long *mc_ptrs,
	       struct ucode_cpu_info *uci, struct ucode_blobs *blbp)
{
	struct cpio_data cd = { NULL, 0, "" };
	enum ucode_state ret;

	/* try built-in microcode first */
	if (load_builtin_intel_microcode(&cd))
		/*
		 * Invalidate blobs as we might've gotten an initrd too,
		 * supplied by the boot loader, by mistake or simply forgotten
		 * there. That's fine, we ignore it since we've found builtin
		 * microcode already.
		 */
		blbp->valid = false;
	else {
		ret = __scan_microcode_initrd(&cd, blbp);
		if (ret != UCODE_OK)
			return ret;
	}

	return get_matching_model_microcode(blbp->start, cd.data, cd.size,
					    mcs, mc_ptrs, uci);
}

756
static void __init
757
_load_ucode_intel_bsp(struct mc_saved_data *mcs, unsigned long *mc_ptrs,
758
		      struct ucode_blobs *blbp)
759 760 761 762 763 764
{
	struct ucode_cpu_info uci;
	enum ucode_state ret;

	collect_cpu_info_early(&uci);

765
	ret = scan_microcode(mcs, mc_ptrs, &uci, blbp);
766 767 768
	if (ret != UCODE_OK)
		return;

769
	ret = load_microcode(mcs, mc_ptrs, blbp->start, &uci);
770 771 772 773 774 775 776 777
	if (ret != UCODE_OK)
		return;

	apply_microcode_early(&uci, true);
}

void __init load_ucode_intel_bsp(void)
{
778 779 780
	struct ucode_blobs *blobs_p;
	struct mc_saved_data *mcs;
	unsigned long *ptrs;
781

782 783 784 785
#ifdef CONFIG_X86_32
	mcs	= (struct mc_saved_data *)__pa_nodebug(&mc_saved_data);
	ptrs	= (unsigned long *)__pa_nodebug(&mc_tmp_ptrs);
	blobs_p	= (struct ucode_blobs *)__pa_nodebug(&blobs);
786
#else
787 788 789
	mcs	= &mc_saved_data;
	ptrs	= mc_tmp_ptrs;
	blobs_p = &blobs;
790
#endif
791 792

	_load_ucode_intel_bsp(mcs, ptrs, blobs_p);
793 794 795 796
}

void load_ucode_intel_ap(void)
{
797 798
	struct ucode_blobs *blobs_p;
	struct mc_saved_data *mcs;
799
	struct ucode_cpu_info uci;
800
	enum ucode_state ret;
801
	unsigned long *ptrs;
802

803 804 805 806
#ifdef CONFIG_X86_32
	mcs	= (struct mc_saved_data *)__pa_nodebug(&mc_saved_data);
	ptrs	= (unsigned long *)__pa_nodebug(mc_tmp_ptrs);
	blobs_p	= (struct ucode_blobs *)__pa_nodebug(&blobs);
807
#else
808 809 810
	mcs	= &mc_saved_data;
	ptrs	= mc_tmp_ptrs;
	blobs_p = &blobs;
811 812 813 814 815 816
#endif

	/*
	 * If there is no valid ucode previously saved in memory, no need to
	 * update ucode on this AP.
	 */
817
	if (!mcs->num_saved)
818 819 820
		return;

	collect_cpu_info_early(&uci);
821
	ret = load_microcode(mcs, ptrs, blobs_p->start, &uci);
822 823 824 825 826 827 828 829 830 831 832
	if (ret != UCODE_OK)
		return;

	apply_microcode_early(&uci, true);
}

void reload_ucode_intel(void)
{
	struct ucode_cpu_info uci;
	enum ucode_state ret;

833
	if (!mc_saved_data.num_saved)
834 835 836 837 838
		return;

	collect_cpu_info_early(&uci);

	ret = load_microcode_early(mc_saved_data.mc_saved,
839
				   mc_saved_data.num_saved, &uci);
840 841 842 843 844 845
	if (ret != UCODE_OK)
		return;

	apply_microcode_early(&uci, false);
}

846
static int collect_cpu_info(int cpu_num, struct cpu_signature *csig)
L
Linus Torvalds 已提交
847
{
848
	struct cpuinfo_x86 *c = &cpu_data(cpu_num);
L
Linus Torvalds 已提交
849 850
	unsigned int val[2];

851
	memset(csig, 0, sizeof(*csig));
L
Linus Torvalds 已提交
852

853
	csig->sig = cpuid_eax(0x00000001);
854 855 856 857

	if ((c->x86_model >= 5) || (c->x86 > 6)) {
		/* get processor flags from MSR 0x17 */
		rdmsr(MSR_IA32_PLATFORM_ID, val[0], val[1]);
858
		csig->pf = 1 << ((val[1] >> 18) & 7);
L
Linus Torvalds 已提交
859 860
	}

861
	csig->rev = c->microcode;
862 863
	pr_info("CPU%d sig=0x%x, pf=0x%x, revision=0x%x\n",
		cpu_num, csig->sig, csig->pf, csig->rev);
864 865

	return 0;
L
Linus Torvalds 已提交
866 867
}

868 869 870 871
/*
 * return 0 - no update found
 * return 1 - found update
 */
872
static int get_matching_mc(struct microcode_intel *mc, int cpu)
873
{
874 875
	struct cpu_signature cpu_sig;
	unsigned int csig, cpf, crev;
876

877
	collect_cpu_info(cpu, &cpu_sig);
D
Dmitry Adamushko 已提交
878

879 880 881
	csig = cpu_sig.sig;
	cpf = cpu_sig.pf;
	crev = cpu_sig.rev;
882

883
	return has_newer_microcode(mc, csig, cpf, crev);
L
Linus Torvalds 已提交
884 885
}

886
static int apply_microcode_intel(int cpu)
L
Linus Torvalds 已提交
887
{
888
	struct microcode_intel *mc;
I
Ingo Molnar 已提交
889
	struct ucode_cpu_info *uci;
890
	struct cpuinfo_x86 *c;
L
Linus Torvalds 已提交
891
	unsigned int val[2];
I
Ingo Molnar 已提交
892

893
	/* We should bind the task to the CPU */
894
	if (WARN_ON(raw_smp_processor_id() != cpu))
895
		return -1;
896

897 898
	uci = ucode_cpu_info + cpu;
	mc = uci->mc;
899
	if (!mc)
900
		return 0;
L
Linus Torvalds 已提交
901

902 903
	/*
	 * Microcode on this CPU could be updated earlier. Only apply the
904
	 * microcode patch in mc when it is newer than the one on this
905 906
	 * CPU.
	 */
907
	if (!get_matching_mc(mc, cpu))
908 909
		return 0;

L
Linus Torvalds 已提交
910
	/* write microcode via MSR 0x79 */
911 912
	wrmsrl(MSR_IA32_UCODE_WRITE, (unsigned long)mc->bits);
	wrmsrl(MSR_IA32_UCODE_REV, 0);
L
Linus Torvalds 已提交
913

914
	/* As documented in the SDM: Do a CPUID 1 here */
915
	sync_core();
916

L
Linus Torvalds 已提交
917 918 919
	/* get the current revision from MSR 0x8B */
	rdmsr(MSR_IA32_UCODE_REV, val[0], val[1]);

920
	if (val[1] != mc->hdr.rev) {
921
		pr_err("CPU%d update to revision 0x%x failed\n",
922
		       cpu, mc->hdr.rev);
923
		return -1;
924
	}
925

926
	pr_info("CPU%d updated to revision 0x%x, date = %04x-%02x-%02x\n",
927
		cpu, val[1],
928 929 930
		mc->hdr.date & 0xffff,
		mc->hdr.date >> 24,
		(mc->hdr.date >> 16) & 0xff);
I
Ingo Molnar 已提交
931

932 933
	c = &cpu_data(cpu);

934
	uci->cpu_sig.rev = val[1];
935
	c->microcode = val[1];
936 937

	return 0;
L
Linus Torvalds 已提交
938 939
}

940 941
static enum ucode_state generic_load_microcode(int cpu, void *data, size_t size,
				int (*get_ucode_data)(void *, const void *, size_t))
942
{
D
Dmitry Adamushko 已提交
943
	struct ucode_cpu_info *uci = ucode_cpu_info + cpu;
944
	u8 *ucode_ptr = data, *new_mc = NULL, *mc = NULL;
D
Dmitry Adamushko 已提交
945 946
	int new_rev = uci->cpu_sig.rev;
	unsigned int leftover = size;
947
	enum ucode_state state = UCODE_OK;
948
	unsigned int curr_mc_size = 0;
949
	unsigned int csig, cpf;
950

D
Dmitry Adamushko 已提交
951 952 953
	while (leftover) {
		struct microcode_header_intel mc_header;
		unsigned int mc_size;
954

955 956 957 958 959
		if (leftover < sizeof(mc_header)) {
			pr_err("error! Truncated header in microcode data file\n");
			break;
		}

D
Dmitry Adamushko 已提交
960 961
		if (get_ucode_data(&mc_header, ucode_ptr, sizeof(mc_header)))
			break;
962

D
Dmitry Adamushko 已提交
963 964
		mc_size = get_totalsize(&mc_header);
		if (!mc_size || mc_size > leftover) {
965
			pr_err("error! Bad data in microcode data file\n");
D
Dmitry Adamushko 已提交
966 967
			break;
		}
968

969 970
		/* For performance reasons, reuse mc area when possible */
		if (!mc || mc_size > curr_mc_size) {
971
			vfree(mc);
972 973 974 975 976
			mc = vmalloc(mc_size);
			if (!mc)
				break;
			curr_mc_size = mc_size;
		}
D
Dmitry Adamushko 已提交
977 978

		if (get_ucode_data(mc, ucode_ptr, mc_size) ||
979
		    microcode_sanity_check(mc, 1) < 0) {
D
Dmitry Adamushko 已提交
980 981 982
			break;
		}

983 984
		csig = uci->cpu_sig.sig;
		cpf = uci->cpu_sig.pf;
985
		if (has_newer_microcode(mc, csig, cpf, new_rev)) {
986
			vfree(new_mc);
D
Dmitry Adamushko 已提交
987 988
			new_rev = mc_header.rev;
			new_mc  = mc;
989 990
			mc = NULL;	/* trigger new vmalloc */
		}
D
Dmitry Adamushko 已提交
991 992 993

		ucode_ptr += mc_size;
		leftover  -= mc_size;
994 995
	}

996
	vfree(mc);
997

998
	if (leftover) {
999
		vfree(new_mc);
1000
		state = UCODE_ERROR;
I
Ingo Molnar 已提交
1001
		goto out;
1002
	}
I
Ingo Molnar 已提交
1003

1004 1005
	if (!new_mc) {
		state = UCODE_NFOUND;
I
Ingo Molnar 已提交
1006
		goto out;
1007
	}
D
Dmitry Adamushko 已提交
1008

1009
	vfree(uci->mc);
I
Ingo Molnar 已提交
1010 1011
	uci->mc = (struct microcode_intel *)new_mc;

1012 1013 1014 1015 1016 1017 1018
	/*
	 * If early loading microcode is supported, save this mc into
	 * permanent memory. So it will be loaded early when a CPU is hot added
	 * or resumes.
	 */
	save_mc_for_early(new_mc);

1019 1020
	pr_debug("CPU%d found a matching microcode update with version 0x%x (current=0x%x)\n",
		 cpu, new_rev, uci->cpu_sig.rev);
1021 1022
out:
	return state;
1023 1024
}

D
Dmitry Adamushko 已提交
1025 1026 1027 1028 1029
static int get_ucode_fw(void *to, const void *from, size_t n)
{
	memcpy(to, from, n);
	return 0;
}
1030

1031 1032
static enum ucode_state request_microcode_fw(int cpu, struct device *device,
					     bool refresh_fw)
1033 1034
{
	char name[30];
1035
	struct cpuinfo_x86 *c = &cpu_data(cpu);
1036
	const struct firmware *firmware;
1037
	enum ucode_state ret;
1038

P
Peter Oruba 已提交
1039
	sprintf(name, "intel-ucode/%02x-%02x-%02x",
1040
		c->x86, c->x86_model, c->x86_mask);
1041

1042
	if (request_firmware_direct(&firmware, name, device)) {
1043
		pr_debug("data file %s load failed\n", name);
1044
		return UCODE_NFOUND;
1045
	}
D
Dmitry Adamushko 已提交
1046

1047 1048
	ret = generic_load_microcode(cpu, (void *)firmware->data,
				     firmware->size, &get_ucode_fw);
D
Dmitry Adamushko 已提交
1049

1050 1051
	release_firmware(firmware);

D
Dmitry Adamushko 已提交
1052 1053 1054 1055 1056 1057 1058 1059
	return ret;
}

static int get_ucode_user(void *to, const void *from, size_t n)
{
	return copy_from_user(to, from, n);
}

1060 1061
static enum ucode_state
request_microcode_user(int cpu, const void __user *buf, size_t size)
D
Dmitry Adamushko 已提交
1062
{
1063
	return generic_load_microcode(cpu, (void *)buf, size, &get_ucode_user);
1064 1065
}

P
Peter Oruba 已提交
1066
static void microcode_fini_cpu(int cpu)
1067 1068 1069
{
	struct ucode_cpu_info *uci = ucode_cpu_info + cpu;

1070 1071
	vfree(uci->mc);
	uci->mc = NULL;
1072
}
P
Peter Oruba 已提交
1073

H
Hannes Eder 已提交
1074
static struct microcode_ops microcode_intel_ops = {
D
Dmitry Adamushko 已提交
1075 1076
	.request_microcode_user		  = request_microcode_user,
	.request_microcode_fw             = request_microcode_fw,
P
Peter Oruba 已提交
1077
	.collect_cpu_info                 = collect_cpu_info,
1078
	.apply_microcode                  = apply_microcode_intel,
P
Peter Oruba 已提交
1079 1080 1081
	.microcode_fini_cpu               = microcode_fini_cpu,
};

1082
struct microcode_ops * __init init_intel_microcode(void)
P
Peter Oruba 已提交
1083
{
1084
	struct cpuinfo_x86 *c = &boot_cpu_data;
1085 1086 1087 1088 1089 1090 1091

	if (c->x86_vendor != X86_VENDOR_INTEL || c->x86 < 6 ||
	    cpu_has(c, X86_FEATURE_IA64)) {
		pr_err("Intel CPU family 0x%x not supported\n", c->x86);
		return NULL;
	}

1092
	return &microcode_intel_ops;
P
Peter Oruba 已提交
1093 1094
}