xref: /titanic_51/usr/src/uts/i86pc/os/microcode.c (revision a31148363f598def767ac48c5d82e1572e44b935)
12449e17fSsherrym /*
22449e17fSsherrym  * CDDL HEADER START
32449e17fSsherrym  *
42449e17fSsherrym  * The contents of this file are subject to the terms of the
52449e17fSsherrym  * Common Development and Distribution License (the "License").
62449e17fSsherrym  * You may not use this file except in compliance with the License.
72449e17fSsherrym  *
82449e17fSsherrym  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
92449e17fSsherrym  * or http://www.opensolaris.org/os/licensing.
102449e17fSsherrym  * See the License for the specific language governing permissions
112449e17fSsherrym  * and limitations under the License.
122449e17fSsherrym  *
132449e17fSsherrym  * When distributing Covered Code, include this CDDL HEADER in each
142449e17fSsherrym  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
152449e17fSsherrym  * If applicable, add the following below this CDDL HEADER, with the
162449e17fSsherrym  * fields enclosed by brackets "[]" replaced with your own identifying
172449e17fSsherrym  * information: Portions Copyright [yyyy] [name of copyright owner]
182449e17fSsherrym  *
192449e17fSsherrym  * CDDL HEADER END
202449e17fSsherrym  */
212449e17fSsherrym 
222449e17fSsherrym /*
230ba6f73dSMark Johnson  * Copyright 2009 Sun Microsystems, Inc.  All rights reserved.
242449e17fSsherrym  * Use is subject to license terms.
252449e17fSsherrym  */
262449e17fSsherrym 
272449e17fSsherrym #include <sys/asm_linkage.h>
282449e17fSsherrym #include <sys/bootconf.h>
292449e17fSsherrym #include <sys/cpuvar.h>
302449e17fSsherrym #include <sys/cmn_err.h>
312449e17fSsherrym #include <sys/controlregs.h>
322449e17fSsherrym #include <sys/debug.h>
332449e17fSsherrym #include <sys/kobj.h>
342449e17fSsherrym #include <sys/kobj_impl.h>
352449e17fSsherrym #include <sys/machsystm.h>
362449e17fSsherrym #include <sys/param.h>
372449e17fSsherrym #include <sys/machparam.h>
382449e17fSsherrym #include <sys/promif.h>
392449e17fSsherrym #include <sys/sysmacros.h>
402449e17fSsherrym #include <sys/systm.h>
412449e17fSsherrym #include <sys/types.h>
422449e17fSsherrym #include <sys/thread.h>
432449e17fSsherrym #include <sys/ucode.h>
442449e17fSsherrym #include <sys/x86_archext.h>
452449e17fSsherrym #include <sys/x_call.h>
46843e1988Sjohnlev #ifdef	__xpv
47843e1988Sjohnlev #include <sys/hypervisor.h>
48843e1988Sjohnlev #endif
492449e17fSsherrym 
502449e17fSsherrym /*
51adc586deSMark Johnson  * AMD-specific equivalence table
522449e17fSsherrym  */
53adc586deSMark Johnson static ucode_eqtbl_amd_t *ucode_eqtbl_amd;
542449e17fSsherrym 
552449e17fSsherrym /*
562449e17fSsherrym  * mcpu_ucode_info for the boot CPU.  Statically allocated.
572449e17fSsherrym  */
582449e17fSsherrym static struct cpu_ucode_info cpu_ucode_info0;
592449e17fSsherrym 
60adc586deSMark Johnson static ucode_file_t ucodefile;
612449e17fSsherrym 
62adc586deSMark Johnson static void* ucode_zalloc(processorid_t, size_t);
63adc586deSMark Johnson static void ucode_free(processorid_t, void *, size_t);
64adc586deSMark Johnson 
65adc586deSMark Johnson static int ucode_capable_amd(cpu_t *);
66adc586deSMark Johnson static int ucode_capable_intel(cpu_t *);
67adc586deSMark Johnson 
68adc586deSMark Johnson static ucode_errno_t ucode_extract_amd(ucode_update_t *, uint8_t *, int);
69adc586deSMark Johnson static ucode_errno_t ucode_extract_intel(ucode_update_t *, uint8_t *,
70adc586deSMark Johnson     int);
71adc586deSMark Johnson 
72adc586deSMark Johnson static void ucode_file_reset_amd(ucode_file_t *, processorid_t);
73adc586deSMark Johnson static void ucode_file_reset_intel(ucode_file_t *, processorid_t);
74adc586deSMark Johnson 
75adc586deSMark Johnson static uint32_t ucode_load_amd(ucode_file_t *, cpu_ucode_info_t *, cpu_t *);
76adc586deSMark Johnson static uint32_t ucode_load_intel(ucode_file_t *, cpu_ucode_info_t *, cpu_t *);
77adc586deSMark Johnson 
78882a7af5SMark Johnson #ifdef	__xpv
79adc586deSMark Johnson static void ucode_load_xpv(ucode_update_t *);
800ba6f73dSMark Johnson static void ucode_chipset_amd(uint8_t *, int);
81882a7af5SMark Johnson #endif
822449e17fSsherrym 
830ba6f73dSMark Johnson static int ucode_equiv_cpu_amd(cpu_t *, uint16_t *);
84adc586deSMark Johnson 
85adc586deSMark Johnson static ucode_errno_t ucode_locate_amd(cpu_t *, cpu_ucode_info_t *,
86adc586deSMark Johnson     ucode_file_t *);
87adc586deSMark Johnson static ucode_errno_t ucode_locate_intel(cpu_t *, cpu_ucode_info_t *,
88adc586deSMark Johnson     ucode_file_t *);
89adc586deSMark Johnson 
900ba6f73dSMark Johnson #ifndef __xpv
910ba6f73dSMark Johnson static ucode_errno_t ucode_match_amd(uint16_t, cpu_ucode_info_t *,
92adc586deSMark Johnson     ucode_file_amd_t *, int);
930ba6f73dSMark Johnson #endif
94adc586deSMark Johnson static ucode_errno_t ucode_match_intel(int, cpu_ucode_info_t *,
95adc586deSMark Johnson     ucode_header_intel_t *, ucode_ext_table_intel_t *);
96adc586deSMark Johnson 
97adc586deSMark Johnson static void ucode_read_rev_amd(cpu_ucode_info_t *);
98adc586deSMark Johnson static void ucode_read_rev_intel(cpu_ucode_info_t *);
99adc586deSMark Johnson 
100adc586deSMark Johnson static const struct ucode_ops ucode_amd = {
101adc586deSMark Johnson 	MSR_AMD_PATCHLOADER,
102adc586deSMark Johnson 	ucode_capable_amd,
103adc586deSMark Johnson 	ucode_file_reset_amd,
104adc586deSMark Johnson 	ucode_read_rev_amd,
105adc586deSMark Johnson 	ucode_load_amd,
106adc586deSMark Johnson 	ucode_validate_amd,
107adc586deSMark Johnson 	ucode_extract_amd,
108adc586deSMark Johnson 	ucode_locate_amd
109adc586deSMark Johnson };
110adc586deSMark Johnson 
111adc586deSMark Johnson static const struct ucode_ops ucode_intel = {
112adc586deSMark Johnson 	MSR_INTC_UCODE_WRITE,
113adc586deSMark Johnson 	ucode_capable_intel,
114adc586deSMark Johnson 	ucode_file_reset_intel,
115adc586deSMark Johnson 	ucode_read_rev_intel,
116adc586deSMark Johnson 	ucode_load_intel,
117adc586deSMark Johnson 	ucode_validate_intel,
118adc586deSMark Johnson 	ucode_extract_intel,
119adc586deSMark Johnson 	ucode_locate_intel
120adc586deSMark Johnson };
121adc586deSMark Johnson 
122adc586deSMark Johnson const struct ucode_ops *ucode;
123adc586deSMark Johnson 
1242449e17fSsherrym static const char ucode_failure_fmt[] =
12588699bddSsherrym 	"cpu%d: failed to update microcode from version 0x%x to 0x%x\n";
1262449e17fSsherrym static const char ucode_success_fmt[] =
12788699bddSsherrym 	"?cpu%d: microcode has been updated from version 0x%x to 0x%x\n";
1282449e17fSsherrym 
1292449e17fSsherrym /*
1302449e17fSsherrym  * Force flag.  If set, the first microcode binary that matches
1312449e17fSsherrym  * signature and platform id will be used for microcode update,
1322449e17fSsherrym  * regardless of version.  Should only be used for debugging.
1332449e17fSsherrym  */
1342449e17fSsherrym int ucode_force_update = 0;
1352449e17fSsherrym 
1362449e17fSsherrym /*
1372449e17fSsherrym  * Allocate space for mcpu_ucode_info in the machcpu structure
1382449e17fSsherrym  * for all non-boot CPUs.
1392449e17fSsherrym  */
1402449e17fSsherrym void
1412449e17fSsherrym ucode_alloc_space(cpu_t *cp)
1422449e17fSsherrym {
1432449e17fSsherrym 	ASSERT(cp->cpu_id != 0);
144*a3114836SGerry Liu 	ASSERT(cp->cpu_m.mcpu_ucode_info == NULL);
1452449e17fSsherrym 	cp->cpu_m.mcpu_ucode_info =
1462449e17fSsherrym 	    kmem_zalloc(sizeof (*cp->cpu_m.mcpu_ucode_info), KM_SLEEP);
1472449e17fSsherrym }
1482449e17fSsherrym 
1492449e17fSsherrym void
1502449e17fSsherrym ucode_free_space(cpu_t *cp)
1512449e17fSsherrym {
152*a3114836SGerry Liu 	ASSERT(cp->cpu_m.mcpu_ucode_info != NULL);
153*a3114836SGerry Liu 	ASSERT(cp->cpu_m.mcpu_ucode_info != &cpu_ucode_info0);
1542449e17fSsherrym 	kmem_free(cp->cpu_m.mcpu_ucode_info,
1552449e17fSsherrym 	    sizeof (*cp->cpu_m.mcpu_ucode_info));
156*a3114836SGerry Liu 	cp->cpu_m.mcpu_ucode_info = NULL;
1572449e17fSsherrym }
1582449e17fSsherrym 
1592449e17fSsherrym /*
1602449e17fSsherrym  * Called when we are done with microcode update on all processors to free up
1612449e17fSsherrym  * space allocated for the microcode file.
1622449e17fSsherrym  */
1632449e17fSsherrym void
164adc586deSMark Johnson ucode_cleanup()
1652449e17fSsherrym {
166126b0a71SMark Johnson 	if (ucode == NULL)
167126b0a71SMark Johnson 		return;
168adc586deSMark Johnson 
169adc586deSMark Johnson 	ucode->file_reset(&ucodefile, -1);
170adc586deSMark Johnson }
171adc586deSMark Johnson 
172adc586deSMark Johnson /*
173adc586deSMark Johnson  * Allocate/free a buffer used to hold ucode data. Space for the boot CPU is
174adc586deSMark Johnson  * allocated with BOP_ALLOC() and does not require a free.
175adc586deSMark Johnson  */
176adc586deSMark Johnson static void*
177adc586deSMark Johnson ucode_zalloc(processorid_t id, size_t size)
178adc586deSMark Johnson {
179adc586deSMark Johnson 	if (id)
180adc586deSMark Johnson 		return (kmem_zalloc(size, KM_NOSLEEP));
181adc586deSMark Johnson 
182adc586deSMark Johnson 	/* BOP_ALLOC() failure results in panic */
183adc586deSMark Johnson 	return (BOP_ALLOC(bootops, NULL, size, MMU_PAGESIZE));
184adc586deSMark Johnson }
185adc586deSMark Johnson 
186adc586deSMark Johnson static void
187adc586deSMark Johnson ucode_free(processorid_t id, void* buf, size_t size)
188adc586deSMark Johnson {
189adc586deSMark Johnson 	if (id)
190adc586deSMark Johnson 		kmem_free(buf, size);
1912449e17fSsherrym }
1922449e17fSsherrym 
1932449e17fSsherrym /*
1942449e17fSsherrym  * Check whether or not a processor is capable of microcode operations
1952449e17fSsherrym  * Returns 1 if it is capable, 0 if not.
196adc586deSMark Johnson  *
197adc586deSMark Johnson  * At this point we only support microcode update for:
198adc586deSMark Johnson  * - Intel processors family 6 and above, and
199adc586deSMark Johnson  * - AMD processors family 0x10 and above.
200adc586deSMark Johnson  *
201adc586deSMark Johnson  * We also assume that we don't support a mix of Intel and
202adc586deSMark Johnson  * AMD processors in the same box.
203adc586deSMark Johnson  *
204adc586deSMark Johnson  * An i86xpv guest domain can't update the microcode.
2052449e17fSsherrym  */
206adc586deSMark Johnson /*ARGSUSED*/
2072449e17fSsherrym static int
208adc586deSMark Johnson ucode_capable_amd(cpu_t *cp)
2092449e17fSsherrym {
210b9bfdccdSStuart Maybee 	int hwenv = get_hwenv();
211b9bfdccdSStuart Maybee 
212b9bfdccdSStuart Maybee 	if (hwenv == HW_XEN_HVM || (hwenv == HW_XEN_PV && !is_controldom())) {
213adc586deSMark Johnson 		return (0);
214adc586deSMark Johnson 	}
2150ba6f73dSMark Johnson 	return (cpuid_getfamily(cp) >= 0x10);
216adc586deSMark Johnson }
2170ba6f73dSMark Johnson 
218adc586deSMark Johnson static int
219adc586deSMark Johnson ucode_capable_intel(cpu_t *cp)
220adc586deSMark Johnson {
221b9bfdccdSStuart Maybee 	int hwenv = get_hwenv();
222b9bfdccdSStuart Maybee 
223b9bfdccdSStuart Maybee 	if (hwenv == HW_XEN_HVM || (hwenv == HW_XEN_PV && !is_controldom())) {
224882a7af5SMark Johnson 		return (0);
225882a7af5SMark Johnson 	}
226adc586deSMark Johnson 	return (cpuid_getfamily(cp) >= 6);
2272449e17fSsherrym }
2282449e17fSsherrym 
2292449e17fSsherrym /*
2302449e17fSsherrym  * Called when it is no longer necessary to keep the microcode around,
2312449e17fSsherrym  * or when the cached microcode doesn't match the CPU being processed.
2322449e17fSsherrym  */
2332449e17fSsherrym static void
234adc586deSMark Johnson ucode_file_reset_amd(ucode_file_t *ufp, processorid_t id)
2352449e17fSsherrym {
236adc586deSMark Johnson 	ucode_file_amd_t *ucodefp = ufp->amd;
2372449e17fSsherrym 
2382449e17fSsherrym 	if (ucodefp == NULL)
2392449e17fSsherrym 		return;
2402449e17fSsherrym 
241adc586deSMark Johnson 	ucode_free(id, ucodefp, sizeof (ucode_file_amd_t));
242adc586deSMark Johnson 	ufp->amd = NULL;
243adc586deSMark Johnson }
244adc586deSMark Johnson 
245adc586deSMark Johnson static void
246adc586deSMark Johnson ucode_file_reset_intel(ucode_file_t *ufp, processorid_t id)
247adc586deSMark Johnson {
248adc586deSMark Johnson 	ucode_file_intel_t *ucodefp = &ufp->intel;
249adc586deSMark Johnson 	int total_size, body_size;
250adc586deSMark Johnson 
251adc586deSMark Johnson 	if (ucodefp == NULL || ucodefp->uf_header == NULL)
252adc586deSMark Johnson 		return;
253adc586deSMark Johnson 
254adc586deSMark Johnson 	total_size = UCODE_TOTAL_SIZE_INTEL(ucodefp->uf_header->uh_total_size);
255adc586deSMark Johnson 	body_size = UCODE_BODY_SIZE_INTEL(ucodefp->uf_header->uh_body_size);
2562449e17fSsherrym 	if (ucodefp->uf_body) {
257adc586deSMark Johnson 		ucode_free(id, ucodefp->uf_body, body_size);
2582449e17fSsherrym 		ucodefp->uf_body = NULL;
2592449e17fSsherrym 	}
2602449e17fSsherrym 
2612449e17fSsherrym 	if (ucodefp->uf_ext_table) {
262adc586deSMark Johnson 		int size = total_size - body_size - UCODE_HEADER_SIZE_INTEL;
263adc586deSMark Johnson 
264adc586deSMark Johnson 		ucode_free(id, ucodefp->uf_ext_table, size);
2652449e17fSsherrym 		ucodefp->uf_ext_table = NULL;
2662449e17fSsherrym 	}
2672449e17fSsherrym 
268adc586deSMark Johnson 	ucode_free(id, ucodefp->uf_header, UCODE_HEADER_SIZE_INTEL);
269adc586deSMark Johnson 	ucodefp->uf_header = NULL;
270adc586deSMark Johnson }
271adc586deSMark Johnson 
272adc586deSMark Johnson /*
273adc586deSMark Johnson  * Find the equivalent CPU id in the equivalence table.
274adc586deSMark Johnson  */
275adc586deSMark Johnson static int
2760ba6f73dSMark Johnson ucode_equiv_cpu_amd(cpu_t *cp, uint16_t *eq_sig)
277adc586deSMark Johnson {
278adc586deSMark Johnson 	char name[MAXPATHLEN];
279adc586deSMark Johnson 	intptr_t fd;
280adc586deSMark Johnson 	int count;
281adc586deSMark Johnson 	int offset = 0, cpi_sig = cpuid_getsig(cp);
282adc586deSMark Johnson 	ucode_eqtbl_amd_t *eqtbl = ucode_eqtbl_amd;
283adc586deSMark Johnson 
284adc586deSMark Johnson 	(void) snprintf(name, MAXPATHLEN, "/%s/%s/equivalence-table",
285adc586deSMark Johnson 	    UCODE_INSTALL_PATH, cpuid_getvendorstr(cp));
286adc586deSMark Johnson 
287adc586deSMark Johnson 	/*
288adc586deSMark Johnson 	 * No kmem_zalloc() etc. available on boot cpu.
289adc586deSMark Johnson 	 */
290adc586deSMark Johnson 	if (cp->cpu_id == 0) {
291adc586deSMark Johnson 		if ((fd = kobj_open(name)) == -1)
292adc586deSMark Johnson 			return (EM_OPENFILE);
293adc586deSMark Johnson 		/* ucode_zalloc() cannot fail on boot cpu */
294adc586deSMark Johnson 		eqtbl = ucode_zalloc(cp->cpu_id, sizeof (*eqtbl));
295adc586deSMark Johnson 		ASSERT(eqtbl);
296adc586deSMark Johnson 		do {
297adc586deSMark Johnson 			count = kobj_read(fd, (int8_t *)eqtbl,
298adc586deSMark Johnson 			    sizeof (*eqtbl), offset);
299adc586deSMark Johnson 			if (count != sizeof (*eqtbl)) {
300adc586deSMark Johnson 				(void) kobj_close(fd);
301adc586deSMark Johnson 				return (EM_HIGHERREV);
302adc586deSMark Johnson 			}
303adc586deSMark Johnson 			offset += count;
304adc586deSMark Johnson 		} while (eqtbl->ue_inst_cpu && eqtbl->ue_inst_cpu != cpi_sig);
305adc586deSMark Johnson 		(void) kobj_close(fd);
306adc586deSMark Johnson 	}
307adc586deSMark Johnson 
308adc586deSMark Johnson 	/*
309adc586deSMark Johnson 	 * If not already done, load the equivalence table.
310adc586deSMark Johnson 	 * Not done on boot CPU.
311adc586deSMark Johnson 	 */
312adc586deSMark Johnson 	if (eqtbl == NULL) {
313adc586deSMark Johnson 		struct _buf *eq;
314adc586deSMark Johnson 		uint64_t size;
315adc586deSMark Johnson 
316adc586deSMark Johnson 		if ((eq = kobj_open_file(name)) == (struct _buf *)-1)
317adc586deSMark Johnson 			return (EM_OPENFILE);
318adc586deSMark Johnson 
319adc586deSMark Johnson 		if (kobj_get_filesize(eq, &size) < 0) {
320adc586deSMark Johnson 			kobj_close_file(eq);
321adc586deSMark Johnson 			return (EM_OPENFILE);
322adc586deSMark Johnson 		}
323adc586deSMark Johnson 
324adc586deSMark Johnson 		ucode_eqtbl_amd = kmem_zalloc(size, KM_NOSLEEP);
325adc586deSMark Johnson 		if (ucode_eqtbl_amd == NULL) {
326adc586deSMark Johnson 			kobj_close_file(eq);
327adc586deSMark Johnson 			return (EM_NOMEM);
328adc586deSMark Johnson 		}
329adc586deSMark Johnson 
330adc586deSMark Johnson 		count = kobj_read_file(eq, (char *)ucode_eqtbl_amd, size, 0);
331adc586deSMark Johnson 		kobj_close_file(eq);
332adc586deSMark Johnson 
333adc586deSMark Johnson 		if (count != size)
334adc586deSMark Johnson 			return (EM_FILESIZE);
335adc586deSMark Johnson 	}
336adc586deSMark Johnson 
337adc586deSMark Johnson 	/* Get the equivalent CPU id. */
338adc586deSMark Johnson 	if (cp->cpu_id)
339adc586deSMark Johnson 		for (eqtbl = ucode_eqtbl_amd;
340adc586deSMark Johnson 		    eqtbl->ue_inst_cpu && eqtbl->ue_inst_cpu != cpi_sig;
341adc586deSMark Johnson 		    eqtbl++)
342adc586deSMark Johnson 			;
343adc586deSMark Johnson 
344adc586deSMark Johnson 	*eq_sig = eqtbl->ue_equiv_cpu;
345adc586deSMark Johnson 
346adc586deSMark Johnson 	/* No equivalent CPU id found, assume outdated microcode file. */
347adc586deSMark Johnson 	if (*eq_sig == 0)
348adc586deSMark Johnson 		return (EM_HIGHERREV);
349adc586deSMark Johnson 
350adc586deSMark Johnson 	return (EM_OK);
3512449e17fSsherrym }
3522449e17fSsherrym 
3532449e17fSsherrym /*
3540ba6f73dSMark Johnson  * xVM cannot check for the presence of PCI devices. Look for chipset-
3550ba6f73dSMark Johnson  * specific microcode patches in the container file and disable them
3560ba6f73dSMark Johnson  * by setting their CPU revision to an invalid value.
3570ba6f73dSMark Johnson  */
3580ba6f73dSMark Johnson #ifdef __xpv
3590ba6f73dSMark Johnson static void
3600ba6f73dSMark Johnson ucode_chipset_amd(uint8_t *buf, int size)
3610ba6f73dSMark Johnson {
3620ba6f73dSMark Johnson 	ucode_header_amd_t *uh;
3630ba6f73dSMark Johnson 	uint32_t *ptr = (uint32_t *)buf;
3640ba6f73dSMark Johnson 	int len = 0;
3650ba6f73dSMark Johnson 
3660ba6f73dSMark Johnson 	/* skip to first microcode patch */
3670ba6f73dSMark Johnson 	ptr += 2; len = *ptr++; ptr += len >> 2; size -= len;
3680ba6f73dSMark Johnson 
3690ba6f73dSMark Johnson 	while (size >= sizeof (ucode_header_amd_t) + 8) {
3700ba6f73dSMark Johnson 		ptr++; len = *ptr++;
3710ba6f73dSMark Johnson 		uh = (ucode_header_amd_t *)ptr;
3720ba6f73dSMark Johnson 		ptr += len >> 2; size -= len;
3730ba6f73dSMark Johnson 
3740ba6f73dSMark Johnson 		if (uh->uh_nb_id) {
3750ba6f73dSMark Johnson 			cmn_err(CE_WARN, "ignoring northbridge-specific ucode: "
3760ba6f73dSMark Johnson 			    "chipset id %x, revision %x",
3770ba6f73dSMark Johnson 			    uh->uh_nb_id, uh->uh_nb_rev);
3780ba6f73dSMark Johnson 			uh->uh_cpu_rev = 0xffff;
3790ba6f73dSMark Johnson 		}
3800ba6f73dSMark Johnson 
3810ba6f73dSMark Johnson 		if (uh->uh_sb_id) {
3820ba6f73dSMark Johnson 			cmn_err(CE_WARN, "ignoring southbridge-specific ucode: "
3830ba6f73dSMark Johnson 			    "chipset id %x, revision %x",
3840ba6f73dSMark Johnson 			    uh->uh_sb_id, uh->uh_sb_rev);
3850ba6f73dSMark Johnson 			uh->uh_cpu_rev = 0xffff;
3860ba6f73dSMark Johnson 		}
3870ba6f73dSMark Johnson 	}
3880ba6f73dSMark Johnson }
3890ba6f73dSMark Johnson #endif
3900ba6f73dSMark Johnson 
3910ba6f73dSMark Johnson /*
3922449e17fSsherrym  * Populate the ucode file structure from microcode file corresponding to
3932449e17fSsherrym  * this CPU, if exists.
3942449e17fSsherrym  *
3952449e17fSsherrym  * Return EM_OK on success, corresponding error code on failure.
3962449e17fSsherrym  */
3970ba6f73dSMark Johnson /*ARGSUSED*/
3982449e17fSsherrym static ucode_errno_t
399adc586deSMark Johnson ucode_locate_amd(cpu_t *cp, cpu_ucode_info_t *uinfop, ucode_file_t *ufp)
400adc586deSMark Johnson {
401adc586deSMark Johnson 	char name[MAXPATHLEN];
402adc586deSMark Johnson 	intptr_t fd;
4030ba6f73dSMark Johnson 	int count, rc;
404adc586deSMark Johnson 	ucode_file_amd_t *ucodefp = ufp->amd;
405adc586deSMark Johnson 
4060ba6f73dSMark Johnson #ifndef __xpv
4070ba6f73dSMark Johnson 	uint16_t eq_sig = 0;
4080ba6f73dSMark Johnson 	int i;
4090ba6f73dSMark Johnson 
410adc586deSMark Johnson 	/* get equivalent CPU id */
411adc586deSMark Johnson 	if ((rc = ucode_equiv_cpu_amd(cp, &eq_sig)) != EM_OK)
412adc586deSMark Johnson 		return (rc);
413adc586deSMark Johnson 
414adc586deSMark Johnson 	/*
415adc586deSMark Johnson 	 * Allocate a buffer for the microcode patch. If the buffer has been
416adc586deSMark Johnson 	 * allocated before, check for a matching microcode to avoid loading
417adc586deSMark Johnson 	 * the file again.
418adc586deSMark Johnson 	 */
419adc586deSMark Johnson 	if (ucodefp == NULL)
420adc586deSMark Johnson 		ucodefp = ucode_zalloc(cp->cpu_id, sizeof (*ucodefp));
421adc586deSMark Johnson 	else if (ucode_match_amd(eq_sig, uinfop, ucodefp, sizeof (*ucodefp))
422adc586deSMark Johnson 	    == EM_OK)
423adc586deSMark Johnson 		return (EM_OK);
424adc586deSMark Johnson 
425adc586deSMark Johnson 	if (ucodefp == NULL)
426adc586deSMark Johnson 		return (EM_NOMEM);
427adc586deSMark Johnson 
428adc586deSMark Johnson 	ufp->amd = ucodefp;
429adc586deSMark Johnson 
430adc586deSMark Johnson 	/*
431adc586deSMark Johnson 	 * Find the patch for this CPU. The patch files are named XXXX-YY, where
432adc586deSMark Johnson 	 * XXXX is the equivalent CPU id and YY is the running patch number.
433adc586deSMark Johnson 	 * Patches specific to certain chipsets are guaranteed to have lower
434adc586deSMark Johnson 	 * numbers than less specific patches, so we can just load the first
435adc586deSMark Johnson 	 * patch that matches.
436adc586deSMark Johnson 	 */
437adc586deSMark Johnson 
438adc586deSMark Johnson 	for (i = 0; i < 0xff; i++) {
439adc586deSMark Johnson 		(void) snprintf(name, MAXPATHLEN, "/%s/%s/%04X-%02X",
440adc586deSMark Johnson 		    UCODE_INSTALL_PATH, cpuid_getvendorstr(cp), eq_sig, i);
441adc586deSMark Johnson 		if ((fd = kobj_open(name)) == -1)
442adc586deSMark Johnson 			return (EM_NOMATCH);
443adc586deSMark Johnson 		count = kobj_read(fd, (char *)ucodefp, sizeof (*ucodefp), 0);
444adc586deSMark Johnson 		(void) kobj_close(fd);
445adc586deSMark Johnson 
446adc586deSMark Johnson 		if (ucode_match_amd(eq_sig, uinfop, ucodefp, count) == EM_OK)
447adc586deSMark Johnson 			return (EM_OK);
448adc586deSMark Johnson 	}
449adc586deSMark Johnson 	return (EM_NOMATCH);
4500ba6f73dSMark Johnson #else
4510ba6f73dSMark Johnson 	int size = 0;
4520ba6f73dSMark Johnson 	char c;
4530ba6f73dSMark Johnson 
4540ba6f73dSMark Johnson 	/*
4550ba6f73dSMark Johnson 	 * The xVM case is special. To support mixed-revision systems, the
4560ba6f73dSMark Johnson 	 * hypervisor will choose which patch to load for which CPU, so the
4570ba6f73dSMark Johnson 	 * whole microcode patch container file will have to be loaded.
4580ba6f73dSMark Johnson 	 *
4590ba6f73dSMark Johnson 	 * Since this code is only run on the boot cpu, we don't have to care
4600ba6f73dSMark Johnson 	 * about failing ucode_zalloc() or freeing allocated memory.
4610ba6f73dSMark Johnson 	 */
4620ba6f73dSMark Johnson 	if (cp->cpu_id != 0)
4630ba6f73dSMark Johnson 		return (EM_INVALIDARG);
4640ba6f73dSMark Johnson 
4650ba6f73dSMark Johnson 	(void) snprintf(name, MAXPATHLEN, "/%s/%s/container",
4660ba6f73dSMark Johnson 	    UCODE_INSTALL_PATH, cpuid_getvendorstr(cp));
4670ba6f73dSMark Johnson 
4680ba6f73dSMark Johnson 	if ((fd = kobj_open(name)) == -1)
4690ba6f73dSMark Johnson 		return (EM_OPENFILE);
4700ba6f73dSMark Johnson 
4710ba6f73dSMark Johnson 	/* get the file size by counting bytes */
4720ba6f73dSMark Johnson 	do {
4730ba6f73dSMark Johnson 		count = kobj_read(fd, &c, 1, size);
4740ba6f73dSMark Johnson 		size += count;
4750ba6f73dSMark Johnson 	} while (count);
4760ba6f73dSMark Johnson 
4770ba6f73dSMark Johnson 	ucodefp = ucode_zalloc(cp->cpu_id, sizeof (*ucodefp));
4780ba6f73dSMark Johnson 	ASSERT(ucodefp);
4790ba6f73dSMark Johnson 	ufp->amd = ucodefp;
4800ba6f73dSMark Johnson 
4810ba6f73dSMark Johnson 	ucodefp->usize = size;
4820ba6f73dSMark Johnson 	ucodefp->ucodep = ucode_zalloc(cp->cpu_id, size);
4830ba6f73dSMark Johnson 	ASSERT(ucodefp->ucodep);
4840ba6f73dSMark Johnson 
4850ba6f73dSMark Johnson 	/* load the microcode patch container file */
4860ba6f73dSMark Johnson 	count = kobj_read(fd, (char *)ucodefp->ucodep, size, 0);
4870ba6f73dSMark Johnson 	(void) kobj_close(fd);
4880ba6f73dSMark Johnson 
4890ba6f73dSMark Johnson 	if (count != size)
4900ba6f73dSMark Johnson 		return (EM_FILESIZE);
4910ba6f73dSMark Johnson 
4920ba6f73dSMark Johnson 	/* make sure the container file is valid */
4930ba6f73dSMark Johnson 	rc = ucode->validate(ucodefp->ucodep, ucodefp->usize);
4940ba6f73dSMark Johnson 
4950ba6f73dSMark Johnson 	if (rc != EM_OK)
4960ba6f73dSMark Johnson 		return (rc);
4970ba6f73dSMark Johnson 
4980ba6f73dSMark Johnson 	/* disable chipset-specific patches */
4990ba6f73dSMark Johnson 	ucode_chipset_amd(ucodefp->ucodep, ucodefp->usize);
5000ba6f73dSMark Johnson 
5010ba6f73dSMark Johnson 	return (EM_OK);
5020ba6f73dSMark Johnson #endif
503adc586deSMark Johnson }
504adc586deSMark Johnson 
505adc586deSMark Johnson static ucode_errno_t
506adc586deSMark Johnson ucode_locate_intel(cpu_t *cp, cpu_ucode_info_t *uinfop, ucode_file_t *ufp)
5072449e17fSsherrym {
5082449e17fSsherrym 	char		name[MAXPATHLEN];
5092449e17fSsherrym 	intptr_t	fd;
5102449e17fSsherrym 	int		count;
511adc586deSMark Johnson 	int		header_size = UCODE_HEADER_SIZE_INTEL;
5122449e17fSsherrym 	int		cpi_sig = cpuid_getsig(cp);
5132449e17fSsherrym 	ucode_errno_t	rc = EM_OK;
514adc586deSMark Johnson 	ucode_file_intel_t *ucodefp = &ufp->intel;
515adc586deSMark Johnson 
516adc586deSMark Johnson 	ASSERT(ucode);
5172449e17fSsherrym 
5182449e17fSsherrym 	/*
5192449e17fSsherrym 	 * If the microcode matches the CPU we are processing, use it.
5202449e17fSsherrym 	 */
521adc586deSMark Johnson 	if (ucode_match_intel(cpi_sig, uinfop, ucodefp->uf_header,
5222449e17fSsherrym 	    ucodefp->uf_ext_table) == EM_OK && ucodefp->uf_body != NULL) {
5232449e17fSsherrym 		return (EM_OK);
5242449e17fSsherrym 	}
5252449e17fSsherrym 
5262449e17fSsherrym 	/*
5272449e17fSsherrym 	 * Look for microcode file with the right name.
5282449e17fSsherrym 	 */
5292449e17fSsherrym 	(void) snprintf(name, MAXPATHLEN, "/%s/%s/%08X-%02X",
5302449e17fSsherrym 	    UCODE_INSTALL_PATH, cpuid_getvendorstr(cp), cpi_sig,
5312449e17fSsherrym 	    uinfop->cui_platid);
5322449e17fSsherrym 	if ((fd = kobj_open(name)) == -1) {
5332449e17fSsherrym 		return (EM_OPENFILE);
5342449e17fSsherrym 	}
5352449e17fSsherrym 
5362449e17fSsherrym 	/*
5372449e17fSsherrym 	 * We found a microcode file for the CPU we are processing,
5382449e17fSsherrym 	 * reset the microcode data structure and read in the new
5392449e17fSsherrym 	 * file.
5402449e17fSsherrym 	 */
541adc586deSMark Johnson 	ucode->file_reset(ufp, cp->cpu_id);
5422449e17fSsherrym 
543adc586deSMark Johnson 	ucodefp->uf_header = ucode_zalloc(cp->cpu_id, header_size);
544adc586deSMark Johnson 	if (ucodefp->uf_header == NULL)
545adc586deSMark Johnson 		return (EM_NOMEM);
546adc586deSMark Johnson 
547adc586deSMark Johnson 	count = kobj_read(fd, (char *)ucodefp->uf_header, header_size, 0);
5482449e17fSsherrym 
5492449e17fSsherrym 	switch (count) {
550adc586deSMark Johnson 	case UCODE_HEADER_SIZE_INTEL: {
5512449e17fSsherrym 
552adc586deSMark Johnson 		ucode_header_intel_t	*uhp = ucodefp->uf_header;
5532449e17fSsherrym 		uint32_t	offset = header_size;
5542449e17fSsherrym 		int		total_size, body_size, ext_size;
5552449e17fSsherrym 		uint32_t	sum = 0;
5562449e17fSsherrym 
5572449e17fSsherrym 		/*
5582449e17fSsherrym 		 * Make sure that the header contains valid fields.
5592449e17fSsherrym 		 */
560adc586deSMark Johnson 		if ((rc = ucode_header_validate_intel(uhp)) == EM_OK) {
561adc586deSMark Johnson 			total_size = UCODE_TOTAL_SIZE_INTEL(uhp->uh_total_size);
562adc586deSMark Johnson 			body_size = UCODE_BODY_SIZE_INTEL(uhp->uh_body_size);
563adc586deSMark Johnson 			ucodefp->uf_body = ucode_zalloc(cp->cpu_id, body_size);
564adc586deSMark Johnson 			if (ucodefp->uf_body == NULL) {
5652449e17fSsherrym 				rc = EM_NOMEM;
5662449e17fSsherrym 				break;
5672449e17fSsherrym 			}
5682449e17fSsherrym 
5692449e17fSsherrym 			if (kobj_read(fd, (char *)ucodefp->uf_body,
5702449e17fSsherrym 			    body_size, offset) != body_size)
5712449e17fSsherrym 				rc = EM_FILESIZE;
5722449e17fSsherrym 		}
5732449e17fSsherrym 
5742449e17fSsherrym 		if (rc)
5752449e17fSsherrym 			break;
5762449e17fSsherrym 
577adc586deSMark Johnson 		sum = ucode_checksum_intel(0, header_size,
578adc586deSMark Johnson 		    (uint8_t *)ucodefp->uf_header);
579adc586deSMark Johnson 		if (ucode_checksum_intel(sum, body_size, ucodefp->uf_body)) {
5802449e17fSsherrym 			rc = EM_CHECKSUM;
5812449e17fSsherrym 			break;
5822449e17fSsherrym 		}
5832449e17fSsherrym 
5842449e17fSsherrym 		/*
5852449e17fSsherrym 		 * Check to see if there is extended signature table.
5862449e17fSsherrym 		 */
5872449e17fSsherrym 		offset = body_size + header_size;
5882449e17fSsherrym 		ext_size = total_size - offset;
5892449e17fSsherrym 
5902449e17fSsherrym 		if (ext_size <= 0)
5912449e17fSsherrym 			break;
5922449e17fSsherrym 
593adc586deSMark Johnson 		ucodefp->uf_ext_table = ucode_zalloc(cp->cpu_id, ext_size);
594adc586deSMark Johnson 		if (ucodefp->uf_ext_table == NULL) {
5952449e17fSsherrym 			rc = EM_NOMEM;
5962449e17fSsherrym 			break;
5972449e17fSsherrym 		}
5982449e17fSsherrym 
5992449e17fSsherrym 		if (kobj_read(fd, (char *)ucodefp->uf_ext_table,
6002449e17fSsherrym 		    ext_size, offset) != ext_size) {
6012449e17fSsherrym 			rc = EM_FILESIZE;
602adc586deSMark Johnson 		} else if (ucode_checksum_intel(0, ext_size,
6032449e17fSsherrym 		    (uint8_t *)(ucodefp->uf_ext_table))) {
6042449e17fSsherrym 			rc = EM_CHECKSUM;
6052449e17fSsherrym 		} else {
6062449e17fSsherrym 			int i;
6072449e17fSsherrym 
608adc586deSMark Johnson 			ext_size -= UCODE_EXT_TABLE_SIZE_INTEL;
6092449e17fSsherrym 			for (i = 0; i < ucodefp->uf_ext_table->uet_count;
6102449e17fSsherrym 			    i++) {
611adc586deSMark Johnson 				if (ucode_checksum_intel(0,
612adc586deSMark Johnson 				    UCODE_EXT_SIG_SIZE_INTEL,
6132449e17fSsherrym 				    (uint8_t *)(&(ucodefp->uf_ext_table->
6142449e17fSsherrym 				    uet_ext_sig[i])))) {
6152449e17fSsherrym 					rc = EM_CHECKSUM;
6162449e17fSsherrym 					break;
6172449e17fSsherrym 				}
6182449e17fSsherrym 			}
6192449e17fSsherrym 		}
6202449e17fSsherrym 		break;
6212449e17fSsherrym 	}
6222449e17fSsherrym 
6232449e17fSsherrym 	default:
6242449e17fSsherrym 		rc = EM_FILESIZE;
6252449e17fSsherrym 		break;
6262449e17fSsherrym 	}
6272449e17fSsherrym 
6282449e17fSsherrym 	kobj_close(fd);
6292449e17fSsherrym 
6302449e17fSsherrym 	if (rc != EM_OK)
6312449e17fSsherrym 		return (rc);
6322449e17fSsherrym 
633adc586deSMark Johnson 	rc = ucode_match_intel(cpi_sig, uinfop, ucodefp->uf_header,
6342449e17fSsherrym 	    ucodefp->uf_ext_table);
6352449e17fSsherrym 
6362449e17fSsherrym 	return (rc);
6372449e17fSsherrym }
6382449e17fSsherrym 
6390ba6f73dSMark Johnson #ifndef __xpv
640adc586deSMark Johnson static ucode_errno_t
6410ba6f73dSMark Johnson ucode_match_amd(uint16_t eq_sig, cpu_ucode_info_t *uinfop,
6420ba6f73dSMark Johnson     ucode_file_amd_t *ucodefp, int size)
643adc586deSMark Johnson {
644adc586deSMark Johnson 	ucode_header_amd_t *uh;
645adc586deSMark Johnson 
646adc586deSMark Johnson 	if (ucodefp == NULL || size < sizeof (ucode_header_amd_t))
647adc586deSMark Johnson 		return (EM_NOMATCH);
648adc586deSMark Johnson 
649adc586deSMark Johnson 	/*
650adc586deSMark Johnson 	 * Don't even think about loading patches that would require code
651adc586deSMark Johnson 	 * execution.
652adc586deSMark Johnson 	 */
653adc586deSMark Johnson 	if (size > offsetof(ucode_file_amd_t, uf_code_present) &&
654adc586deSMark Johnson 	    ucodefp->uf_code_present)
655adc586deSMark Johnson 		return (EM_NOMATCH);
656adc586deSMark Johnson 
657adc586deSMark Johnson 	uh = &ucodefp->uf_header;
658adc586deSMark Johnson 
659adc586deSMark Johnson 	if (eq_sig != uh->uh_cpu_rev)
660adc586deSMark Johnson 		return (EM_NOMATCH);
661adc586deSMark Johnson 
662adc586deSMark Johnson 	if (uh->uh_nb_id) {
663adc586deSMark Johnson 		cmn_err(CE_WARN, "ignoring northbridge-specific ucode: "
664adc586deSMark Johnson 		    "chipset id %x, revision %x", uh->uh_nb_id, uh->uh_nb_rev);
665adc586deSMark Johnson 		return (EM_NOMATCH);
666adc586deSMark Johnson 	}
667adc586deSMark Johnson 
668adc586deSMark Johnson 	if (uh->uh_sb_id) {
669adc586deSMark Johnson 		cmn_err(CE_WARN, "ignoring southbridge-specific ucode: "
670adc586deSMark Johnson 		    "chipset id %x, revision %x", uh->uh_sb_id, uh->uh_sb_rev);
671adc586deSMark Johnson 		return (EM_NOMATCH);
672adc586deSMark Johnson 	}
673adc586deSMark Johnson 
674adc586deSMark Johnson 	if (uh->uh_patch_id <= uinfop->cui_rev)
675adc586deSMark Johnson 		return (EM_HIGHERREV);
676adc586deSMark Johnson 
677adc586deSMark Johnson 	return (EM_OK);
678adc586deSMark Johnson }
6790ba6f73dSMark Johnson #endif
6802449e17fSsherrym 
6812449e17fSsherrym /*
6822449e17fSsherrym  * Returns 1 if the microcode is for this processor; 0 otherwise.
6832449e17fSsherrym  */
6842449e17fSsherrym static ucode_errno_t
685adc586deSMark Johnson ucode_match_intel(int cpi_sig, cpu_ucode_info_t *uinfop,
686adc586deSMark Johnson     ucode_header_intel_t *uhp, ucode_ext_table_intel_t *uetp)
6872449e17fSsherrym {
688adc586deSMark Johnson 	if (uhp == NULL)
689adc586deSMark Johnson 		return (EM_NOMATCH);
6902449e17fSsherrym 
691adc586deSMark Johnson 	if (UCODE_MATCH_INTEL(cpi_sig, uhp->uh_signature,
6922449e17fSsherrym 	    uinfop->cui_platid, uhp->uh_proc_flags)) {
6932449e17fSsherrym 
6942449e17fSsherrym 		if (uinfop->cui_rev >= uhp->uh_rev && !ucode_force_update)
6952449e17fSsherrym 			return (EM_HIGHERREV);
6962449e17fSsherrym 
6972449e17fSsherrym 		return (EM_OK);
6982449e17fSsherrym 	}
6992449e17fSsherrym 
7002449e17fSsherrym 	if (uetp != NULL) {
7012449e17fSsherrym 		int i;
7022449e17fSsherrym 
7032449e17fSsherrym 		for (i = 0; i < uetp->uet_count; i++) {
704adc586deSMark Johnson 			ucode_ext_sig_intel_t *uesp;
7052449e17fSsherrym 
7062449e17fSsherrym 			uesp = &uetp->uet_ext_sig[i];
7072449e17fSsherrym 
708adc586deSMark Johnson 			if (UCODE_MATCH_INTEL(cpi_sig, uesp->ues_signature,
7092449e17fSsherrym 			    uinfop->cui_platid, uesp->ues_proc_flags)) {
7102449e17fSsherrym 
7112449e17fSsherrym 				if (uinfop->cui_rev >= uhp->uh_rev &&
7122449e17fSsherrym 				    !ucode_force_update)
7132449e17fSsherrym 					return (EM_HIGHERREV);
7142449e17fSsherrym 
7152449e17fSsherrym 				return (EM_OK);
7162449e17fSsherrym 			}
7172449e17fSsherrym 		}
7182449e17fSsherrym 	}
7192449e17fSsherrym 
7202449e17fSsherrym 	return (EM_NOMATCH);
7212449e17fSsherrym }
7222449e17fSsherrym 
7232449e17fSsherrym /*ARGSUSED*/
7242449e17fSsherrym static int
7252449e17fSsherrym ucode_write(xc_arg_t arg1, xc_arg_t unused2, xc_arg_t unused3)
7262449e17fSsherrym {
727adc586deSMark Johnson 	ucode_update_t *uusp = (ucode_update_t *)arg1;
728adc586deSMark Johnson 	cpu_ucode_info_t *uinfop = CPU->cpu_m.mcpu_ucode_info;
7292449e17fSsherrym 
730adc586deSMark Johnson 	ASSERT(ucode);
7312449e17fSsherrym 	ASSERT(uusp->ucodep);
7322449e17fSsherrym 
733882a7af5SMark Johnson #ifndef	__xpv
7342449e17fSsherrym 	/*
7352449e17fSsherrym 	 * Check one more time to see if it is really necessary to update
7362449e17fSsherrym 	 * microcode just in case this is a hyperthreaded processor where
7372449e17fSsherrym 	 * the threads share the same microcode.
7382449e17fSsherrym 	 */
7392449e17fSsherrym 	if (!ucode_force_update) {
740adc586deSMark Johnson 		ucode->read_rev(uinfop);
7412449e17fSsherrym 		uusp->new_rev = uinfop->cui_rev;
7422449e17fSsherrym 		if (uinfop->cui_rev >= uusp->expected_rev)
7432449e17fSsherrym 			return (0);
7442449e17fSsherrym 	}
7452449e17fSsherrym 
746adc586deSMark Johnson 	wrmsr(ucode->write_msr, (uintptr_t)uusp->ucodep);
747882a7af5SMark Johnson #endif
748adc586deSMark Johnson 	ucode->read_rev(uinfop);
7492449e17fSsherrym 	uusp->new_rev = uinfop->cui_rev;
7502449e17fSsherrym 
7512449e17fSsherrym 	return (0);
7522449e17fSsherrym }
7532449e17fSsherrym 
754adc586deSMark Johnson /*ARGSUSED*/
755adc586deSMark Johnson static uint32_t
756adc586deSMark Johnson ucode_load_amd(ucode_file_t *ufp, cpu_ucode_info_t *uinfop, cpu_t *cp)
7572449e17fSsherrym {
758adc586deSMark Johnson 	ucode_file_amd_t *ucodefp = ufp->amd;
759adc586deSMark Johnson #ifdef	__xpv
760adc586deSMark Johnson 	ucode_update_t uus;
761adc586deSMark Johnson #endif
762adc586deSMark Johnson 
763adc586deSMark Johnson 	ASSERT(ucode);
764adc586deSMark Johnson 	ASSERT(ucodefp);
765adc586deSMark Johnson 
766adc586deSMark Johnson #ifndef	__xpv
7672449e17fSsherrym 	kpreempt_disable();
768adc586deSMark Johnson 	wrmsr(ucode->write_msr, (uintptr_t)ucodefp);
769adc586deSMark Johnson 	ucode->read_rev(uinfop);
7702449e17fSsherrym 	kpreempt_enable();
7710ba6f73dSMark Johnson 
7720ba6f73dSMark Johnson 	return (ucodefp->uf_header.uh_patch_id);
773adc586deSMark Johnson #else
7740ba6f73dSMark Johnson 	uus.ucodep = ucodefp->ucodep;
7750ba6f73dSMark Johnson 	uus.usize = ucodefp->usize;
776adc586deSMark Johnson 	ucode_load_xpv(&uus);
777adc586deSMark Johnson 	ucode->read_rev(uinfop);
778adc586deSMark Johnson 	uus.new_rev = uinfop->cui_rev;
779adc586deSMark Johnson 
7800ba6f73dSMark Johnson 	return (uus.new_rev);
7810ba6f73dSMark Johnson #endif
782adc586deSMark Johnson }
783adc586deSMark Johnson 
784adc586deSMark Johnson /*ARGSUSED2*/
785adc586deSMark Johnson static uint32_t
786adc586deSMark Johnson ucode_load_intel(ucode_file_t *ufp, cpu_ucode_info_t *uinfop, cpu_t *cp)
787adc586deSMark Johnson {
788adc586deSMark Johnson 	ucode_file_intel_t *ucodefp = &ufp->intel;
789adc586deSMark Johnson #ifdef __xpv
790adc586deSMark Johnson 	uint32_t ext_offset;
791adc586deSMark Johnson 	uint32_t body_size;
792adc586deSMark Johnson 	uint32_t ext_size;
793adc586deSMark Johnson 	uint8_t *ustart;
794adc586deSMark Johnson 	uint32_t usize;
795adc586deSMark Johnson 	ucode_update_t uus;
796adc586deSMark Johnson #endif
797adc586deSMark Johnson 
798adc586deSMark Johnson 	ASSERT(ucode);
799adc586deSMark Johnson 
800adc586deSMark Johnson #ifdef __xpv
801adc586deSMark Johnson 	/*
802adc586deSMark Johnson 	 * the hypervisor wants the header, data, and extended
803adc586deSMark Johnson 	 * signature tables. We can only get here from the boot
804adc586deSMark Johnson 	 * CPU (cpu #0), we don't need to free as ucode_zalloc() will
805adc586deSMark Johnson 	 * use BOP_ALLOC().
806adc586deSMark Johnson 	 */
807adc586deSMark Johnson 	usize = UCODE_TOTAL_SIZE_INTEL(ucodefp->uf_header->uh_total_size);
808adc586deSMark Johnson 	ustart = ucode_zalloc(cp->cpu_id, usize);
809adc586deSMark Johnson 	ASSERT(ustart);
810adc586deSMark Johnson 
811adc586deSMark Johnson 	body_size = UCODE_BODY_SIZE_INTEL(ucodefp->uf_header->uh_body_size);
812adc586deSMark Johnson 	ext_offset = body_size + UCODE_HEADER_SIZE_INTEL;
813adc586deSMark Johnson 	ext_size = usize - ext_offset;
814adc586deSMark Johnson 	ASSERT(ext_size >= 0);
815adc586deSMark Johnson 
816adc586deSMark Johnson 	(void) memcpy(ustart, ucodefp->uf_header, UCODE_HEADER_SIZE_INTEL);
817adc586deSMark Johnson 	(void) memcpy(&ustart[UCODE_HEADER_SIZE_INTEL], ucodefp->uf_body,
818adc586deSMark Johnson 	    body_size);
819adc586deSMark Johnson 	if (ext_size > 0) {
820adc586deSMark Johnson 		(void) memcpy(&ustart[ext_offset],
821adc586deSMark Johnson 		    ucodefp->uf_ext_table, ext_size);
822adc586deSMark Johnson 	}
823adc586deSMark Johnson 	uus.ucodep = ustart;
824adc586deSMark Johnson 	uus.usize = usize;
825adc586deSMark Johnson 	ucode_load_xpv(&uus);
826adc586deSMark Johnson 	ucode->read_rev(uinfop);
827adc586deSMark Johnson 	uus.new_rev = uinfop->cui_rev;
828adc586deSMark Johnson #else
829adc586deSMark Johnson 	kpreempt_disable();
830adc586deSMark Johnson 	wrmsr(ucode->write_msr, (uintptr_t)ucodefp->uf_body);
831adc586deSMark Johnson 	ucode->read_rev(uinfop);
832adc586deSMark Johnson 	kpreempt_enable();
833adc586deSMark Johnson #endif
834adc586deSMark Johnson 
835adc586deSMark Johnson 	return (ucodefp->uf_header->uh_rev);
8362449e17fSsherrym }
8372449e17fSsherrym 
838882a7af5SMark Johnson 
839882a7af5SMark Johnson #ifdef	__xpv
840882a7af5SMark Johnson static void
841adc586deSMark Johnson ucode_load_xpv(ucode_update_t *uusp)
842882a7af5SMark Johnson {
843882a7af5SMark Johnson 	xen_platform_op_t op;
844882a7af5SMark Johnson 	int e;
845882a7af5SMark Johnson 
846882a7af5SMark Johnson 	ASSERT(DOMAIN_IS_INITDOMAIN(xen_info));
847882a7af5SMark Johnson 
848882a7af5SMark Johnson 	kpreempt_disable();
849882a7af5SMark Johnson 	op.cmd = XENPF_microcode_update;
850882a7af5SMark Johnson 	op.interface_version = XENPF_INTERFACE_VERSION;
851882a7af5SMark Johnson 	/*LINTED: constant in conditional context*/
852adc586deSMark Johnson 	set_xen_guest_handle(op.u.microcode.data, uusp->ucodep);
853adc586deSMark Johnson 	op.u.microcode.length = uusp->usize;
854882a7af5SMark Johnson 	e = HYPERVISOR_platform_op(&op);
855882a7af5SMark Johnson 	if (e != 0) {
856882a7af5SMark Johnson 		cmn_err(CE_WARN, "hypervisor failed to accept uCode update");
857882a7af5SMark Johnson 	}
858882a7af5SMark Johnson 	kpreempt_enable();
859882a7af5SMark Johnson }
860882a7af5SMark Johnson #endif /* __xpv */
861882a7af5SMark Johnson 
862adc586deSMark Johnson static void
863adc586deSMark Johnson ucode_read_rev_amd(cpu_ucode_info_t *uinfop)
864adc586deSMark Johnson {
865adc586deSMark Johnson 	uinfop->cui_rev = rdmsr(MSR_AMD_PATCHLEVEL);
866adc586deSMark Johnson }
867882a7af5SMark Johnson 
8682449e17fSsherrym static void
869adc586deSMark Johnson ucode_read_rev_intel(cpu_ucode_info_t *uinfop)
8702449e17fSsherrym {
8712449e17fSsherrym 	struct cpuid_regs crs;
8722449e17fSsherrym 
8732449e17fSsherrym 	/*
8742449e17fSsherrym 	 * The Intel 64 and IA-32 Architecture Software Developer's Manual
8752449e17fSsherrym 	 * recommends that MSR_INTC_UCODE_REV be loaded with 0 first, then
8762449e17fSsherrym 	 * execute cpuid to guarantee the correct reading of this register.
8772449e17fSsherrym 	 */
8782449e17fSsherrym 	wrmsr(MSR_INTC_UCODE_REV, 0);
8792449e17fSsherrym 	(void) __cpuid_insn(&crs);
8802449e17fSsherrym 	uinfop->cui_rev = (rdmsr(MSR_INTC_UCODE_REV) >> INTC_UCODE_REV_SHIFT);
8812449e17fSsherrym }
8822449e17fSsherrym 
883adc586deSMark Johnson static ucode_errno_t
884adc586deSMark Johnson ucode_extract_amd(ucode_update_t *uusp, uint8_t *ucodep, int size)
885adc586deSMark Johnson {
8860ba6f73dSMark Johnson #ifndef __xpv
887adc586deSMark Johnson 	uint32_t *ptr = (uint32_t *)ucodep;
888adc586deSMark Johnson 	ucode_eqtbl_amd_t *eqtbl;
889adc586deSMark Johnson 	ucode_file_amd_t *ufp;
8900ba6f73dSMark Johnson 	int count;
8910ba6f73dSMark Johnson 	int higher = 0;
8920ba6f73dSMark Johnson 	ucode_errno_t rc = EM_NOMATCH;
8930ba6f73dSMark Johnson 	uint16_t eq_sig;
894adc586deSMark Johnson 
895adc586deSMark Johnson 	/* skip over magic number & equivalence table header */
896adc586deSMark Johnson 	ptr += 2; size -= 8;
897adc586deSMark Johnson 
898adc586deSMark Johnson 	count = *ptr++; size -= 4;
899adc586deSMark Johnson 	for (eqtbl = (ucode_eqtbl_amd_t *)ptr;
900adc586deSMark Johnson 	    eqtbl->ue_inst_cpu && eqtbl->ue_inst_cpu != uusp->sig;
901adc586deSMark Johnson 	    eqtbl++)
902adc586deSMark Johnson 		;
903adc586deSMark Johnson 
904adc586deSMark Johnson 	eq_sig = eqtbl->ue_equiv_cpu;
905adc586deSMark Johnson 
906adc586deSMark Johnson 	/* No equivalent CPU id found, assume outdated microcode file. */
907adc586deSMark Johnson 	if (eq_sig == 0)
908adc586deSMark Johnson 		return (EM_HIGHERREV);
909adc586deSMark Johnson 
910adc586deSMark Johnson 	/* Use the first microcode patch that matches. */
911adc586deSMark Johnson 	do {
912adc586deSMark Johnson 		ptr += count >> 2; size -= count;
913adc586deSMark Johnson 
914adc586deSMark Johnson 		if (!size)
9150ba6f73dSMark Johnson 			return (higher ? EM_HIGHERREV : EM_NOMATCH);
916adc586deSMark Johnson 
917adc586deSMark Johnson 		ptr++; size -= 4;
918adc586deSMark Johnson 		count = *ptr++; size -= 4;
919adc586deSMark Johnson 		ufp = (ucode_file_amd_t *)ptr;
9200ba6f73dSMark Johnson 
9210ba6f73dSMark Johnson 		rc = ucode_match_amd(eq_sig, &uusp->info, ufp, count);
9220ba6f73dSMark Johnson 		if (rc == EM_HIGHERREV)
9230ba6f73dSMark Johnson 			higher = 1;
9240ba6f73dSMark Johnson 	} while (rc != EM_OK);
925adc586deSMark Johnson 
926adc586deSMark Johnson 	uusp->ucodep = (uint8_t *)ufp;
927adc586deSMark Johnson 	uusp->usize = count;
928adc586deSMark Johnson 	uusp->expected_rev = ufp->uf_header.uh_patch_id;
9290ba6f73dSMark Johnson #else
9300ba6f73dSMark Johnson 	/*
9310ba6f73dSMark Johnson 	 * The hypervisor will choose the patch to load, so there is no way to
9320ba6f73dSMark Johnson 	 * know the "expected revision" in advance. This is especially true on
9330ba6f73dSMark Johnson 	 * mixed-revision systems where more than one patch will be loaded.
9340ba6f73dSMark Johnson 	 */
9350ba6f73dSMark Johnson 	uusp->expected_rev = 0;
9360ba6f73dSMark Johnson 	uusp->ucodep = ucodep;
9370ba6f73dSMark Johnson 	uusp->usize = size;
9380ba6f73dSMark Johnson 
9390ba6f73dSMark Johnson 	ucode_chipset_amd(ucodep, size);
9400ba6f73dSMark Johnson #endif
941adc586deSMark Johnson 
942adc586deSMark Johnson 	return (EM_OK);
943adc586deSMark Johnson }
944adc586deSMark Johnson 
945adc586deSMark Johnson static ucode_errno_t
946adc586deSMark Johnson ucode_extract_intel(ucode_update_t *uusp, uint8_t *ucodep, int size)
947adc586deSMark Johnson {
948adc586deSMark Johnson 	uint32_t	header_size = UCODE_HEADER_SIZE_INTEL;
949adc586deSMark Johnson 	int		remaining;
950adc586deSMark Johnson 	int		found = 0;
951adc586deSMark Johnson 	ucode_errno_t	search_rc = EM_NOMATCH; /* search result */
952adc586deSMark Johnson 
953adc586deSMark Johnson 	/*
954adc586deSMark Johnson 	 * Go through the whole buffer in case there are
955adc586deSMark Johnson 	 * multiple versions of matching microcode for this
956adc586deSMark Johnson 	 * processor.
957adc586deSMark Johnson 	 */
958adc586deSMark Johnson 	for (remaining = size; remaining > 0; ) {
959adc586deSMark Johnson 		int	total_size, body_size, ext_size;
960adc586deSMark Johnson 		uint8_t	*curbuf = &ucodep[size - remaining];
961adc586deSMark Johnson 		ucode_header_intel_t *uhp = (ucode_header_intel_t *)curbuf;
962adc586deSMark Johnson 		ucode_ext_table_intel_t *uetp = NULL;
963adc586deSMark Johnson 		ucode_errno_t tmprc;
964adc586deSMark Johnson 
965adc586deSMark Johnson 		total_size = UCODE_TOTAL_SIZE_INTEL(uhp->uh_total_size);
966adc586deSMark Johnson 		body_size = UCODE_BODY_SIZE_INTEL(uhp->uh_body_size);
967adc586deSMark Johnson 		ext_size = total_size - (header_size + body_size);
968adc586deSMark Johnson 
969adc586deSMark Johnson 		if (ext_size > 0)
970adc586deSMark Johnson 			uetp = (ucode_ext_table_intel_t *)
971adc586deSMark Johnson 			    &curbuf[header_size + body_size];
972adc586deSMark Johnson 
973adc586deSMark Johnson 		tmprc = ucode_match_intel(uusp->sig, &uusp->info, uhp, uetp);
974adc586deSMark Johnson 
975adc586deSMark Johnson 		/*
976adc586deSMark Johnson 		 * Since we are searching through a big file
977adc586deSMark Johnson 		 * containing microcode for pretty much all the
978adc586deSMark Johnson 		 * processors, we are bound to get EM_NOMATCH
979adc586deSMark Johnson 		 * at one point.  However, if we return
980adc586deSMark Johnson 		 * EM_NOMATCH to users, it will really confuse
981adc586deSMark Johnson 		 * them.  Therefore, if we ever find a match of
982adc586deSMark Johnson 		 * a lower rev, we will set return code to
983adc586deSMark Johnson 		 * EM_HIGHERREV.
984adc586deSMark Johnson 		 */
985adc586deSMark Johnson 		if (tmprc == EM_HIGHERREV)
986adc586deSMark Johnson 			search_rc = EM_HIGHERREV;
987adc586deSMark Johnson 
988adc586deSMark Johnson 		if (tmprc == EM_OK &&
989adc586deSMark Johnson 		    uusp->expected_rev < uhp->uh_rev) {
990adc586deSMark Johnson #ifndef __xpv
991adc586deSMark Johnson 			uusp->ucodep = (uint8_t *)&curbuf[header_size];
992adc586deSMark Johnson #else
993adc586deSMark Johnson 			uusp->ucodep = (uint8_t *)curbuf;
994adc586deSMark Johnson #endif
995adc586deSMark Johnson 			uusp->usize =
996adc586deSMark Johnson 			    UCODE_TOTAL_SIZE_INTEL(uhp->uh_total_size);
997adc586deSMark Johnson 			uusp->expected_rev = uhp->uh_rev;
998adc586deSMark Johnson 			found = 1;
999adc586deSMark Johnson 		}
1000adc586deSMark Johnson 
1001adc586deSMark Johnson 		remaining -= total_size;
1002adc586deSMark Johnson 	}
1003adc586deSMark Johnson 
1004adc586deSMark Johnson 	if (!found)
1005adc586deSMark Johnson 		return (search_rc);
1006adc586deSMark Johnson 
1007adc586deSMark Johnson 	return (EM_OK);
1008adc586deSMark Johnson }
10092449e17fSsherrym /*
10102449e17fSsherrym  * Entry point to microcode update from the ucode_drv driver.
10112449e17fSsherrym  *
10122449e17fSsherrym  * Returns EM_OK on success, corresponding error code on failure.
10132449e17fSsherrym  */
10142449e17fSsherrym ucode_errno_t
10152449e17fSsherrym ucode_update(uint8_t *ucodep, int size)
10162449e17fSsherrym {
10172449e17fSsherrym 	int		found = 0;
10182449e17fSsherrym 	processorid_t	id;
1019adc586deSMark Johnson 	ucode_update_t	cached = { 0 };
1020adc586deSMark Johnson 	ucode_update_t	*cachedp = NULL;
10212449e17fSsherrym 	ucode_errno_t	rc = EM_OK;
10222449e17fSsherrym 	ucode_errno_t	search_rc = EM_NOMATCH; /* search result */
10232449e17fSsherrym 	cpuset_t cpuset;
10242449e17fSsherrym 
1025adc586deSMark Johnson 	ASSERT(ucode);
10262449e17fSsherrym 	ASSERT(ucodep);
10272449e17fSsherrym 	CPUSET_ZERO(cpuset);
10282449e17fSsherrym 
1029adc586deSMark Johnson 	if (!ucode->capable(CPU))
10302449e17fSsherrym 		return (EM_NOTSUP);
10312449e17fSsherrym 
10322449e17fSsherrym 	mutex_enter(&cpu_lock);
10332449e17fSsherrym 
10342449e17fSsherrym 	for (id = 0; id < max_ncpus; id++) {
10352449e17fSsherrym 		cpu_t *cpu;
1036adc586deSMark Johnson 		ucode_update_t uus = { 0 };
1037adc586deSMark Johnson 		ucode_update_t *uusp = &uus;
10382449e17fSsherrym 
10392449e17fSsherrym 		/*
10402449e17fSsherrym 		 * If there is no such CPU or it is not xcall ready, skip it.
10412449e17fSsherrym 		 */
10422449e17fSsherrym 		if ((cpu = cpu_get(id)) == NULL ||
10432449e17fSsherrym 		    !(cpu->cpu_flags & CPU_READY))
10442449e17fSsherrym 			continue;
10452449e17fSsherrym 
10462449e17fSsherrym 		uusp->sig = cpuid_getsig(cpu);
10472449e17fSsherrym 		bcopy(cpu->cpu_m.mcpu_ucode_info, &uusp->info,
10482449e17fSsherrym 		    sizeof (uusp->info));
10492449e17fSsherrym 
10502449e17fSsherrym 		/*
10512449e17fSsherrym 		 * If the current CPU has the same signature and platform
10522449e17fSsherrym 		 * id as the previous one we processed, reuse the information.
10532449e17fSsherrym 		 */
10542449e17fSsherrym 		if (cachedp && cachedp->sig == cpuid_getsig(cpu) &&
10552449e17fSsherrym 		    cachedp->info.cui_platid == uusp->info.cui_platid) {
10562449e17fSsherrym 			uusp->ucodep = cachedp->ucodep;
10572449e17fSsherrym 			uusp->expected_rev = cachedp->expected_rev;
10582449e17fSsherrym 			/*
10592449e17fSsherrym 			 * Intuitively we should check here to see whether the
10602449e17fSsherrym 			 * running microcode rev is >= the expected rev, and
10612449e17fSsherrym 			 * quit if it is.  But we choose to proceed with the
10622449e17fSsherrym 			 * xcall regardless of the running version so that
10632449e17fSsherrym 			 * the other threads in an HT processor can update
10642449e17fSsherrym 			 * the cpu_ucode_info structure in machcpu.
10652449e17fSsherrym 			 */
1066adc586deSMark Johnson 		} else if ((search_rc = ucode->extract(uusp, ucodep, size))
1067adc586deSMark Johnson 		    == EM_OK) {
10682449e17fSsherrym 			bcopy(uusp, &cached, sizeof (cached));
10692449e17fSsherrym 			cachedp = &cached;
10702449e17fSsherrym 			found = 1;
10712449e17fSsherrym 		}
10722449e17fSsherrym 
10732449e17fSsherrym 		/* Nothing to do */
10742449e17fSsherrym 		if (uusp->ucodep == NULL)
10752449e17fSsherrym 			continue;
10762449e17fSsherrym 
1077882a7af5SMark Johnson #ifdef	__xpv
1078882a7af5SMark Johnson 		/*
1079882a7af5SMark Johnson 		 * for i86xpv, the hypervisor will update all the CPUs.
1080882a7af5SMark Johnson 		 * the hypervisor wants the header, data, and extended
1081882a7af5SMark Johnson 		 * signature tables. ucode_write will just read in the
1082882a7af5SMark Johnson 		 * updated version on all the CPUs after the update has
1083882a7af5SMark Johnson 		 * completed.
1084882a7af5SMark Johnson 		 */
1085c9b5d7d2SMark Johnson 		if (id == 0) {
1086adc586deSMark Johnson 			ucode_load_xpv(uusp);
1087c9b5d7d2SMark Johnson 		}
1088882a7af5SMark Johnson #endif
1089882a7af5SMark Johnson 
10902449e17fSsherrym 		CPUSET_ADD(cpuset, id);
10912449e17fSsherrym 		kpreempt_disable();
1092f34a7178SJoe Bonasera 		xc_sync((xc_arg_t)uusp, 0, 0, CPUSET2BV(cpuset), ucode_write);
10932449e17fSsherrym 		kpreempt_enable();
10942449e17fSsherrym 		CPUSET_DEL(cpuset, id);
10952449e17fSsherrym 
10960ba6f73dSMark Johnson 		if (uusp->new_rev != 0 && uusp->info.cui_rev == uusp->new_rev) {
10970ba6f73dSMark Johnson 			rc = EM_HIGHERREV;
10980ba6f73dSMark Johnson 		} else if ((uusp->new_rev == 0) || (uusp->expected_rev != 0 &&
10990ba6f73dSMark Johnson 		    uusp->expected_rev != uusp->new_rev)) {
11002449e17fSsherrym 			cmn_err(CE_WARN, ucode_failure_fmt,
11012449e17fSsherrym 			    id, uusp->info.cui_rev, uusp->expected_rev);
11022449e17fSsherrym 			rc = EM_UPDATE;
11030ba6f73dSMark Johnson 		} else {
11040ba6f73dSMark Johnson 			cmn_err(CE_CONT, ucode_success_fmt,
11050ba6f73dSMark Johnson 			    id, uusp->info.cui_rev, uusp->new_rev);
11062449e17fSsherrym 		}
11072449e17fSsherrym 	}
11082449e17fSsherrym 
11092449e17fSsherrym 	mutex_exit(&cpu_lock);
11102449e17fSsherrym 
11112449e17fSsherrym 	if (!found)
11122449e17fSsherrym 		rc = search_rc;
11132449e17fSsherrym 
11142449e17fSsherrym 	return (rc);
11152449e17fSsherrym }
11162449e17fSsherrym 
11172449e17fSsherrym /*
11182449e17fSsherrym  * Initialize mcpu_ucode_info, and perform microcode update if necessary.
11192449e17fSsherrym  * This is the entry point from boot path where pointer to CPU structure
11202449e17fSsherrym  * is available.
11212449e17fSsherrym  *
11222449e17fSsherrym  * cpuid_info must be initialized before ucode_check can be called.
11232449e17fSsherrym  */
11242449e17fSsherrym void
11252449e17fSsherrym ucode_check(cpu_t *cp)
11262449e17fSsherrym {
1127adc586deSMark Johnson 	cpu_ucode_info_t *uinfop;
11282449e17fSsherrym 	ucode_errno_t rc = EM_OK;
1129adc586deSMark Johnson 	uint32_t new_rev = 0;
11302449e17fSsherrym 
11312449e17fSsherrym 	ASSERT(cp);
1132*a3114836SGerry Liu 	/*
1133*a3114836SGerry Liu 	 * Space statically allocated for BSP, ensure pointer is set
1134*a3114836SGerry Liu 	 */
1135*a3114836SGerry Liu 	if (cp->cpu_id == 0 && cp->cpu_m.mcpu_ucode_info == NULL)
11362449e17fSsherrym 		cp->cpu_m.mcpu_ucode_info = &cpu_ucode_info0;
11372449e17fSsherrym 
11382449e17fSsherrym 	uinfop = cp->cpu_m.mcpu_ucode_info;
11392449e17fSsherrym 	ASSERT(uinfop);
11402449e17fSsherrym 
1141adc586deSMark Johnson 	/* set up function pointers if not already done */
1142adc586deSMark Johnson 	if (!ucode)
1143adc586deSMark Johnson 		switch (cpuid_getvendor(cp)) {
1144adc586deSMark Johnson 		case X86_VENDOR_AMD:
1145adc586deSMark Johnson 			ucode = &ucode_amd;
1146adc586deSMark Johnson 			break;
1147adc586deSMark Johnson 		case X86_VENDOR_Intel:
1148adc586deSMark Johnson 			ucode = &ucode_intel;
1149adc586deSMark Johnson 			break;
1150adc586deSMark Johnson 		default:
1151126b0a71SMark Johnson 			ucode = NULL;
1152adc586deSMark Johnson 			return;
1153adc586deSMark Johnson 		}
1154adc586deSMark Johnson 
1155adc586deSMark Johnson 	if (!ucode->capable(cp))
11562449e17fSsherrym 		return;
11572449e17fSsherrym 
11582449e17fSsherrym 	/*
11592449e17fSsherrym 	 * The MSR_INTC_PLATFORM_ID is supported in Celeron and Xeon
11602449e17fSsherrym 	 * (Family 6, model 5 and above) and all processors after.
11612449e17fSsherrym 	 */
1162adc586deSMark Johnson 	if ((cpuid_getvendor(cp) == X86_VENDOR_Intel) &&
1163adc586deSMark Johnson 	    ((cpuid_getmodel(cp) >= 5) || (cpuid_getfamily(cp) > 6))) {
11642449e17fSsherrym 		uinfop->cui_platid = 1 << ((rdmsr(MSR_INTC_PLATFORM_ID) >>
11652449e17fSsherrym 		    INTC_PLATFORM_ID_SHIFT) & INTC_PLATFORM_ID_MASK);
11662449e17fSsherrym 	}
11672449e17fSsherrym 
1168adc586deSMark Johnson 	ucode->read_rev(uinfop);
11692449e17fSsherrym 
1170c9b5d7d2SMark Johnson #ifdef	__xpv
1171c9b5d7d2SMark Johnson 	/*
1172c9b5d7d2SMark Johnson 	 * for i86xpv, the hypervisor will update all the CPUs. We only need
1173c9b5d7d2SMark Johnson 	 * do do this on one of the CPUs (and there always is a CPU 0).
1174c9b5d7d2SMark Johnson 	 */
1175c9b5d7d2SMark Johnson 	if (cp->cpu_id != 0) {
1176c9b5d7d2SMark Johnson 		return;
1177c9b5d7d2SMark Johnson 	}
1178c9b5d7d2SMark Johnson #endif
1179c9b5d7d2SMark Johnson 
11802449e17fSsherrym 	/*
11812449e17fSsherrym 	 * Check to see if we need ucode update
11822449e17fSsherrym 	 */
1183adc586deSMark Johnson 	if ((rc = ucode->locate(cp, uinfop, &ucodefile)) == EM_OK) {
1184adc586deSMark Johnson 		new_rev = ucode->load(&ucodefile, uinfop, cp);
1185882a7af5SMark Johnson 
1186adc586deSMark Johnson 		if (uinfop->cui_rev != new_rev)
11872449e17fSsherrym 			cmn_err(CE_WARN, ucode_failure_fmt, cp->cpu_id,
1188adc586deSMark Johnson 			    uinfop->cui_rev, new_rev);
11892449e17fSsherrym 	}
11902449e17fSsherrym 
11912449e17fSsherrym 	/*
11922449e17fSsherrym 	 * If we fail to find a match for any reason, free the file structure
11932449e17fSsherrym 	 * just in case we have read in a partial file.
11942449e17fSsherrym 	 *
11952449e17fSsherrym 	 * Since the scratch memory for holding the microcode for the boot CPU
11962449e17fSsherrym 	 * came from BOP_ALLOC, we will reset the data structure as if we
11972449e17fSsherrym 	 * never did the allocation so we don't have to keep track of this
11982449e17fSsherrym 	 * special chunk of memory.  We free the memory used for the rest
11992449e17fSsherrym 	 * of the CPUs in start_other_cpus().
12002449e17fSsherrym 	 */
12012449e17fSsherrym 	if (rc != EM_OK || cp->cpu_id == 0)
1202adc586deSMark Johnson 		ucode->file_reset(&ucodefile, cp->cpu_id);
12032449e17fSsherrym }
12042449e17fSsherrym 
12052449e17fSsherrym /*
12062449e17fSsherrym  * Returns microcode revision from the machcpu structure.
12072449e17fSsherrym  */
12082449e17fSsherrym ucode_errno_t
12092449e17fSsherrym ucode_get_rev(uint32_t *revp)
12102449e17fSsherrym {
12112449e17fSsherrym 	int i;
12122449e17fSsherrym 
1213adc586deSMark Johnson 	ASSERT(ucode);
12142449e17fSsherrym 	ASSERT(revp);
12152449e17fSsherrym 
1216adc586deSMark Johnson 	if (!ucode->capable(CPU))
12172449e17fSsherrym 		return (EM_NOTSUP);
12182449e17fSsherrym 
12192449e17fSsherrym 	mutex_enter(&cpu_lock);
12202449e17fSsherrym 	for (i = 0; i < max_ncpus; i++) {
12212449e17fSsherrym 		cpu_t *cpu;
12222449e17fSsherrym 
12232449e17fSsherrym 		if ((cpu = cpu_get(i)) == NULL)
12242449e17fSsherrym 			continue;
12252449e17fSsherrym 
12262449e17fSsherrym 		revp[i] = cpu->cpu_m.mcpu_ucode_info->cui_rev;
12272449e17fSsherrym 	}
12282449e17fSsherrym 	mutex_exit(&cpu_lock);
12292449e17fSsherrym 
12302449e17fSsherrym 	return (EM_OK);
12312449e17fSsherrym }
1232