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