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i386.c revision 1.74.6.5
      1  1.74.6.5    martin /*	$NetBSD: i386.c,v 1.74.6.5 2019/02/11 13:23:03 martin Exp $	*/
      2       1.1        ad 
      3       1.1        ad /*-
      4       1.1        ad  * Copyright (c) 1999, 2000, 2001, 2006, 2007, 2008 The NetBSD Foundation, Inc.
      5       1.1        ad  * All rights reserved.
      6       1.1        ad  *
      7       1.1        ad  * This code is derived from software contributed to The NetBSD Foundation
      8       1.1        ad  * by Frank van der Linden,  and by Jason R. Thorpe.
      9       1.1        ad  *
     10       1.1        ad  * Redistribution and use in source and binary forms, with or without
     11       1.1        ad  * modification, are permitted provided that the following conditions
     12       1.1        ad  * are met:
     13       1.1        ad  * 1. Redistributions of source code must retain the above copyright
     14       1.1        ad  *    notice, this list of conditions and the following disclaimer.
     15       1.1        ad  * 2. Redistributions in binary form must reproduce the above copyright
     16       1.1        ad  *    notice, this list of conditions and the following disclaimer in the
     17       1.1        ad  *    documentation and/or other materials provided with the distribution.
     18       1.1        ad  *
     19       1.1        ad  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20       1.1        ad  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.1        ad  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.1        ad  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23       1.1        ad  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.1        ad  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.1        ad  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.1        ad  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.1        ad  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.1        ad  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.1        ad  * POSSIBILITY OF SUCH DAMAGE.
     30       1.1        ad  */
     31       1.1        ad 
     32       1.1        ad /*-
     33       1.1        ad  * Copyright (c)2008 YAMAMOTO Takashi,
     34       1.1        ad  * All rights reserved.
     35       1.1        ad  *
     36       1.1        ad  * Redistribution and use in source and binary forms, with or without
     37       1.1        ad  * modification, are permitted provided that the following conditions
     38       1.1        ad  * are met:
     39       1.1        ad  * 1. Redistributions of source code must retain the above copyright
     40       1.1        ad  *    notice, this list of conditions and the following disclaimer.
     41       1.1        ad  * 2. Redistributions in binary form must reproduce the above copyright
     42       1.1        ad  *    notice, this list of conditions and the following disclaimer in the
     43       1.1        ad  *    documentation and/or other materials provided with the distribution.
     44       1.1        ad  *
     45       1.1        ad  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
     46       1.1        ad  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     47       1.1        ad  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     48       1.1        ad  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     49       1.1        ad  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     50       1.1        ad  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     51       1.1        ad  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     52       1.1        ad  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     53       1.1        ad  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     54       1.1        ad  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     55       1.1        ad  * SUCH DAMAGE.
     56       1.1        ad  */
     57       1.1        ad 
     58       1.1        ad #include <sys/cdefs.h>
     59       1.1        ad #ifndef lint
     60  1.74.6.5    martin __RCSID("$NetBSD: i386.c,v 1.74.6.5 2019/02/11 13:23:03 martin Exp $");
     61       1.1        ad #endif /* not lint */
     62       1.1        ad 
     63       1.1        ad #include <sys/types.h>
     64       1.1        ad #include <sys/param.h>
     65       1.1        ad #include <sys/bitops.h>
     66       1.1        ad #include <sys/sysctl.h>
     67      1.33       dsl #include <sys/ioctl.h>
     68      1.32  drochner #include <sys/cpuio.h>
     69       1.1        ad 
     70      1.35       dsl #include <errno.h>
     71       1.1        ad #include <string.h>
     72       1.1        ad #include <stdio.h>
     73       1.1        ad #include <stdlib.h>
     74       1.1        ad #include <err.h>
     75       1.1        ad #include <assert.h>
     76       1.1        ad #include <math.h>
     77      1.14  christos #include <util.h>
     78       1.1        ad 
     79       1.1        ad #include <machine/specialreg.h>
     80       1.1        ad #include <machine/cpu.h>
     81       1.1        ad 
     82       1.1        ad #include <x86/cpuvar.h>
     83       1.1        ad #include <x86/cputypes.h>
     84       1.6  christos #include <x86/cacheinfo.h>
     85      1.32  drochner #include <x86/cpu_ucode.h>
     86       1.1        ad 
     87       1.1        ad #include "../cpuctl.h"
     88      1.34       dsl #include "cpuctl_i386.h"
     89       1.1        ad 
     90       1.7  christos /* Size of buffer for printing humanized numbers */
     91      1.16   tsutsui #define HUMAN_BUFSIZE sizeof("999KB")
     92       1.7  christos 
     93       1.1        ad struct cpu_info {
     94       1.1        ad 	const char	*ci_dev;
     95  1.74.6.4    martin 	int32_t		ci_cpu_type;	 /* for cpu's without cpuid */
     96      1.34       dsl 	int32_t		ci_cpuid_level;	 /* highest cpuid supported */
     97      1.52   msaitoh 	uint32_t	ci_cpuid_extlevel; /* highest cpuid extended func lv */
     98       1.1        ad 	uint32_t	ci_signature;	 /* X86 cpuid type */
     99      1.36       dsl 	uint32_t	ci_family;	 /* from ci_signature */
    100      1.36       dsl 	uint32_t	ci_model;	 /* from ci_signature */
    101  1.74.6.4    martin 	uint32_t	ci_feat_val[10]; /* X86 CPUID feature bits
    102      1.18  pgoyette 					  *	[0] basic features %edx
    103      1.18  pgoyette 					  *	[1] basic features %ecx
    104      1.18  pgoyette 					  *	[2] extended features %edx
    105      1.18  pgoyette 					  *	[3] extended features %ecx
    106      1.18  pgoyette 					  *	[4] VIA padlock features
    107      1.71   msaitoh 					  *	[5] structure ext. feat. %ebx
    108      1.71   msaitoh 					  *	[6] structure ext. feat. %ecx
    109  1.74.6.4    martin 					  *     [7] structure ext. feat. %edx
    110  1.74.6.4    martin 					  *	[8] XCR0 bits (d:0 %eax)
    111  1.74.6.4    martin 					  *	[9] xsave flags (d:1 %eax)
    112      1.18  pgoyette 					  */
    113       1.1        ad 	uint32_t	ci_cpu_class;	 /* CPU class */
    114       1.1        ad 	uint32_t	ci_brand_id;	 /* Intel brand id */
    115       1.1        ad 	uint32_t	ci_vendor[4];	 /* vendor string */
    116       1.1        ad 	uint32_t	ci_cpu_serial[3]; /* PIII serial number */
    117       1.1        ad 	uint64_t	ci_tsc_freq;	 /* cpu cycles/second */
    118       1.1        ad 	uint8_t		ci_packageid;
    119       1.1        ad 	uint8_t		ci_coreid;
    120       1.1        ad 	uint8_t		ci_smtid;
    121       1.1        ad 	uint32_t	ci_initapicid;
    122      1.38       dsl 
    123      1.38       dsl 	uint32_t	ci_cur_xsave;
    124      1.38       dsl 	uint32_t	ci_max_xsave;
    125      1.38       dsl 
    126       1.1        ad 	struct x86_cache_info ci_cinfo[CAI_COUNT];
    127       1.1        ad 	void		(*ci_info)(struct cpu_info *);
    128       1.1        ad };
    129       1.1        ad 
    130       1.1        ad struct cpu_nocpuid_nameclass {
    131       1.1        ad 	int cpu_vendor;
    132       1.1        ad 	const char *cpu_vendorname;
    133       1.1        ad 	const char *cpu_name;
    134       1.1        ad 	int cpu_class;
    135       1.1        ad 	void (*cpu_setup)(struct cpu_info *);
    136       1.1        ad 	void (*cpu_cacheinfo)(struct cpu_info *);
    137       1.1        ad 	void (*cpu_info)(struct cpu_info *);
    138       1.1        ad };
    139       1.1        ad 
    140       1.1        ad struct cpu_cpuid_nameclass {
    141       1.1        ad 	const char *cpu_id;
    142       1.1        ad 	int cpu_vendor;
    143       1.1        ad 	const char *cpu_vendorname;
    144       1.1        ad 	struct cpu_cpuid_family {
    145       1.1        ad 		int cpu_class;
    146      1.37       dsl 		const char *cpu_models[256];
    147      1.37       dsl 		const char *cpu_model_default;
    148       1.1        ad 		void (*cpu_setup)(struct cpu_info *);
    149       1.1        ad 		void (*cpu_probe)(struct cpu_info *);
    150       1.1        ad 		void (*cpu_info)(struct cpu_info *);
    151       1.1        ad 	} cpu_family[CPU_MAXFAMILY - CPU_MINFAMILY + 1];
    152       1.1        ad };
    153       1.1        ad 
    154       1.7  christos static const struct x86_cache_info intel_cpuid_cache_info[] = INTEL_CACHE_INFO;
    155       1.1        ad 
    156       1.1        ad /*
    157       1.1        ad  * Map Brand ID from cpuid instruction to brand name.
    158      1.41   msaitoh  * Source: Table 3-24, Mapping of Brand Indices; and Intel 64 and IA-32
    159      1.41   msaitoh  * Processor Brand Strings, Chapter 3 in "Intel (R) 64 and IA-32
    160      1.41   msaitoh  * Architectures Software Developer's Manual, Volume 2A".
    161       1.1        ad  */
    162       1.1        ad static const char * const i386_intel_brand[] = {
    163       1.1        ad 	"",		    /* Unsupported */
    164       1.1        ad 	"Celeron",	    /* Intel (R) Celeron (TM) processor */
    165  1.74.6.4    martin 	"Pentium III",	    /* Intel (R) Pentium (R) III processor */
    166       1.1        ad 	"Pentium III Xeon", /* Intel (R) Pentium (R) III Xeon (TM) processor */
    167  1.74.6.4    martin 	"Pentium III",	    /* Intel (R) Pentium (R) III processor */
    168      1.41   msaitoh 	"",		    /* 0x05: Reserved */
    169      1.71   msaitoh 	"Mobile Pentium III",/* Mobile Intel (R) Pentium (R) III processor-M */
    170       1.1        ad 	"Mobile Celeron",   /* Mobile Intel (R) Celeron (R) processor */
    171       1.1        ad 	"Pentium 4",	    /* Intel (R) Pentium (R) 4 processor */
    172       1.1        ad 	"Pentium 4",	    /* Intel (R) Pentium (R) 4 processor */
    173       1.1        ad 	"Celeron",	    /* Intel (R) Celeron (TM) processor */
    174       1.1        ad 	"Xeon",		    /* Intel (R) Xeon (TM) processor */
    175       1.1        ad 	"Xeon MP",	    /* Intel (R) Xeon (TM) processor MP */
    176      1.41   msaitoh 	"",		    /* 0x0d: Reserved */
    177       1.1        ad 	"Mobile Pentium 4", /* Mobile Intel (R) Pentium (R) 4 processor-M */
    178       1.1        ad 	"Mobile Celeron",   /* Mobile Intel (R) Celeron (R) processor */
    179      1.41   msaitoh 	"",		    /* 0x10: Reserved */
    180      1.41   msaitoh 	"Mobile Genuine",   /* Moblie Genuine Intel (R) processor */
    181  1.74.6.4    martin 	"Celeron M",	    /* Intel (R) Celeron (R) M processor */
    182      1.41   msaitoh 	"Mobile Celeron",   /* Mobile Intel (R) Celeron (R) processor */
    183  1.74.6.4    martin 	"Celeron",	    /* Intel (R) Celeron (R) processor */
    184      1.41   msaitoh 	"Mobile Genuine",   /* Moblie Genuine Intel (R) processor */
    185  1.74.6.4    martin 	"Pentium M",	    /* Intel (R) Pentium (R) M processor */
    186      1.41   msaitoh 	"Mobile Celeron",   /* Mobile Intel (R) Celeron (R) processor */
    187       1.1        ad };
    188       1.1        ad 
    189       1.1        ad /*
    190       1.1        ad  * AMD processors don't have Brand IDs, so we need these names for probe.
    191       1.1        ad  */
    192       1.1        ad static const char * const amd_brand[] = {
    193       1.1        ad 	"",
    194       1.1        ad 	"Duron",	/* AMD Duron(tm) */
    195       1.1        ad 	"MP",		/* AMD Athlon(tm) MP */
    196       1.1        ad 	"XP",		/* AMD Athlon(tm) XP */
    197       1.1        ad 	"4"		/* AMD Athlon(tm) 4 */
    198       1.1        ad };
    199       1.1        ad 
    200       1.1        ad static int cpu_vendor;
    201       1.1        ad static char cpu_brand_string[49];
    202       1.1        ad static char amd_brand_name[48];
    203      1.26       chs static int use_pae, largepagesize;
    204       1.1        ad 
    205      1.44   msaitoh /* Setup functions */
    206      1.44   msaitoh static void	disable_tsc(struct cpu_info *);
    207      1.51   msaitoh static void	amd_family5_setup(struct cpu_info *);
    208      1.44   msaitoh static void	cyrix6x86_cpu_setup(struct cpu_info *);
    209      1.44   msaitoh static void	winchip_cpu_setup(struct cpu_info *);
    210      1.44   msaitoh /* Brand/Model name functions */
    211       1.1        ad static const char *intel_family6_name(struct cpu_info *);
    212       1.1        ad static const char *amd_amd64_name(struct cpu_info *);
    213      1.44   msaitoh /* Probe functions */
    214      1.44   msaitoh static void	amd_family6_probe(struct cpu_info *);
    215      1.44   msaitoh static void	powernow_probe(struct cpu_info *);
    216      1.44   msaitoh static void	intel_family_new_probe(struct cpu_info *);
    217      1.44   msaitoh static void	via_cpu_probe(struct cpu_info *);
    218      1.44   msaitoh /* (Cache) Info functions */
    219  1.74.6.4    martin static void	intel_cpu_cacheinfo(struct cpu_info *);
    220  1.74.6.4    martin static void	amd_cpu_cacheinfo(struct cpu_info *);
    221      1.44   msaitoh static void	via_cpu_cacheinfo(struct cpu_info *);
    222      1.44   msaitoh static void	tmx86_get_longrun_status(u_int *, u_int *, u_int *);
    223      1.44   msaitoh static void	transmeta_cpu_info(struct cpu_info *);
    224      1.44   msaitoh /* Common functions */
    225      1.44   msaitoh static void	cpu_probe_base_features(struct cpu_info *, const char *);
    226      1.60   msaitoh static void	cpu_probe_hv_features(struct cpu_info *, const char *);
    227      1.44   msaitoh static void	cpu_probe_features(struct cpu_info *);
    228      1.44   msaitoh static void	print_bits(const char *, const char *, const char *, uint32_t);
    229      1.44   msaitoh static void	identifycpu_cpuids(struct cpu_info *);
    230      1.54   msaitoh static const struct x86_cache_info *cache_info_lookup(
    231      1.54   msaitoh     const struct x86_cache_info *, uint8_t);
    232       1.1        ad static const char *print_cache_config(struct cpu_info *, int, const char *,
    233       1.1        ad     const char *);
    234       1.1        ad static const char *print_tlb_config(struct cpu_info *, int, const char *,
    235       1.1        ad     const char *);
    236      1.54   msaitoh static void	x86_print_cache_and_tlb_info(struct cpu_info *);
    237       1.1        ad 
    238       1.1        ad /*
    239       1.1        ad  * Note: these are just the ones that may not have a cpuid instruction.
    240       1.1        ad  * We deal with the rest in a different way.
    241       1.1        ad  */
    242       1.1        ad const struct cpu_nocpuid_nameclass i386_nocpuid_cpus[] = {
    243       1.1        ad 	{ CPUVENDOR_INTEL, "Intel", "386SX",	CPUCLASS_386,
    244       1.1        ad 	  NULL, NULL, NULL },			/* CPU_386SX */
    245       1.1        ad 	{ CPUVENDOR_INTEL, "Intel", "386DX",	CPUCLASS_386,
    246       1.1        ad 	  NULL, NULL, NULL },			/* CPU_386   */
    247       1.1        ad 	{ CPUVENDOR_INTEL, "Intel", "486SX",	CPUCLASS_486,
    248       1.1        ad 	  NULL, NULL, NULL },			/* CPU_486SX */
    249       1.1        ad 	{ CPUVENDOR_INTEL, "Intel", "486DX",	CPUCLASS_486,
    250       1.1        ad 	  NULL, NULL, NULL },			/* CPU_486   */
    251       1.1        ad 	{ CPUVENDOR_CYRIX, "Cyrix", "486DLC",	CPUCLASS_486,
    252       1.1        ad 	  NULL, NULL, NULL },			/* CPU_486DLC */
    253       1.1        ad 	{ CPUVENDOR_CYRIX, "Cyrix", "6x86",	CPUCLASS_486,
    254       1.1        ad 	  NULL, NULL, NULL },		/* CPU_6x86 */
    255  1.74.6.4    martin 	{ CPUVENDOR_NEXGEN,"NexGen","586",	CPUCLASS_386,
    256       1.1        ad 	  NULL, NULL, NULL },			/* CPU_NX586 */
    257       1.1        ad };
    258       1.1        ad 
    259       1.1        ad const char *classnames[] = {
    260       1.1        ad 	"386",
    261       1.1        ad 	"486",
    262       1.1        ad 	"586",
    263       1.1        ad 	"686"
    264       1.1        ad };
    265       1.1        ad 
    266       1.1        ad const char *modifiers[] = {
    267       1.1        ad 	"",
    268       1.1        ad 	"OverDrive",
    269       1.1        ad 	"Dual",
    270       1.1        ad 	""
    271       1.1        ad };
    272       1.1        ad 
    273       1.1        ad const struct cpu_cpuid_nameclass i386_cpuid_cpus[] = {
    274       1.1        ad 	{
    275      1.41   msaitoh 		/*
    276      1.41   msaitoh 		 * For Intel processors, check Chapter 35Model-specific
    277      1.41   msaitoh 		 * registers (MSRS), in "Intel (R) 64 and IA-32 Architectures
    278      1.41   msaitoh 		 * Software Developer's Manual, Volume 3C".
    279      1.41   msaitoh 		 */
    280       1.1        ad 		"GenuineIntel",
    281       1.1        ad 		CPUVENDOR_INTEL,
    282       1.1        ad 		"Intel",
    283       1.1        ad 		/* Family 4 */
    284       1.1        ad 		{ {
    285       1.1        ad 			CPUCLASS_486,
    286       1.1        ad 			{
    287       1.1        ad 				"486DX", "486DX", "486SX", "486DX2", "486SL",
    288       1.1        ad 				"486SX2", 0, "486DX2 W/B Enhanced",
    289       1.1        ad 				"486DX4", 0, 0, 0, 0, 0, 0, 0,
    290       1.1        ad 			},
    291      1.37       dsl 			"486",		/* Default */
    292       1.1        ad 			NULL,
    293       1.1        ad 			NULL,
    294      1.52   msaitoh 			intel_cpu_cacheinfo,
    295       1.1        ad 		},
    296       1.1        ad 		/* Family 5 */
    297       1.1        ad 		{
    298       1.1        ad 			CPUCLASS_586,
    299       1.1        ad 			{
    300       1.1        ad 				"Pentium (P5 A-step)", "Pentium (P5)",
    301       1.1        ad 				"Pentium (P54C)", "Pentium (P24T)",
    302       1.1        ad 				"Pentium/MMX", "Pentium", 0,
    303       1.1        ad 				"Pentium (P54C)", "Pentium/MMX (Tillamook)",
    304      1.72   msaitoh 				"Quark X1000", 0, 0, 0, 0, 0, 0,
    305       1.1        ad 			},
    306      1.37       dsl 			"Pentium",	/* Default */
    307       1.1        ad 			NULL,
    308       1.1        ad 			NULL,
    309      1.52   msaitoh 			intel_cpu_cacheinfo,
    310       1.1        ad 		},
    311       1.1        ad 		/* Family 6 */
    312       1.1        ad 		{
    313       1.1        ad 			CPUCLASS_686,
    314       1.1        ad 			{
    315      1.37       dsl 				[0x00] = "Pentium Pro (A-step)",
    316      1.37       dsl 				[0x01] = "Pentium Pro",
    317      1.37       dsl 				[0x03] = "Pentium II (Klamath)",
    318      1.37       dsl 				[0x04] = "Pentium Pro",
    319      1.37       dsl 				[0x05] = "Pentium II/Celeron (Deschutes)",
    320      1.37       dsl 				[0x06] = "Celeron (Mendocino)",
    321      1.37       dsl 				[0x07] = "Pentium III (Katmai)",
    322      1.37       dsl 				[0x08] = "Pentium III (Coppermine)",
    323      1.37       dsl 				[0x09] = "Pentium M (Banias)",
    324      1.37       dsl 				[0x0a] = "Pentium III Xeon (Cascades)",
    325      1.37       dsl 				[0x0b] = "Pentium III (Tualatin)",
    326      1.37       dsl 				[0x0d] = "Pentium M (Dothan)",
    327      1.40   msaitoh 				[0x0e] = "Pentium Core Duo, Core solo",
    328      1.40   msaitoh 				[0x0f] = "Xeon 30xx, 32xx, 51xx, 53xx, 73xx, "
    329      1.40   msaitoh 					 "Core 2 Quad 6xxx, "
    330      1.40   msaitoh 					 "Core 2 Extreme 6xxx, "
    331      1.40   msaitoh 					 "Core 2 Duo 4xxx, 5xxx, 6xxx, 7xxx "
    332      1.40   msaitoh 					 "and Pentium DC",
    333      1.37       dsl 				[0x15] = "EP80579 Integrated Processor",
    334      1.37       dsl 				[0x16] = "Celeron (45nm)",
    335      1.40   msaitoh 				[0x17] = "Xeon 31xx, 33xx, 52xx, 54xx, "
    336      1.40   msaitoh 					 "Core 2 Quad 8xxx and 9xxx",
    337      1.40   msaitoh 				[0x1a] = "Core i7, Xeon 34xx, 35xx and 55xx "
    338      1.40   msaitoh 					 "(Nehalem)",
    339      1.70   msaitoh 				[0x1c] = "45nm Atom Family",
    340      1.37       dsl 				[0x1d] = "XeonMP 74xx (Nehalem)",
    341      1.37       dsl 				[0x1e] = "Core i7 and i5",
    342      1.37       dsl 				[0x1f] = "Core i7 and i5",
    343      1.37       dsl 				[0x25] = "Xeon 36xx & 56xx, i7, i5 and i3",
    344      1.37       dsl 				[0x26] = "Atom Family",
    345      1.37       dsl 				[0x27] = "Atom Family",
    346      1.40   msaitoh 				[0x2a] = "Xeon E3-12xx, 2nd gen i7, i5, "
    347      1.40   msaitoh 					 "i3 2xxx",
    348      1.37       dsl 				[0x2c] = "Xeon 36xx & 56xx, i7, i5 and i3",
    349      1.49   msaitoh 				[0x2d] = "Xeon E5 Sandy Bridge family, "
    350      1.48   msaitoh 					 "Core i7-39xx Extreme",
    351      1.37       dsl 				[0x2e] = "Xeon 75xx & 65xx",
    352      1.37       dsl 				[0x2f] = "Xeon E7 family",
    353      1.40   msaitoh 				[0x35] = "Atom Family",
    354      1.41   msaitoh 				[0x36] = "Atom S1000",
    355      1.65   msaitoh 				[0x37] = "Atom E3000, Z3[67]00",
    356      1.40   msaitoh 				[0x3a] = "Xeon E3-1200v2 and 3rd gen core, "
    357      1.48   msaitoh 					 "Ivy Bridge",
    358      1.40   msaitoh 				[0x3c] = "4th gen Core, Xeon E3-12xx v3 "
    359      1.40   msaitoh 					 "(Haswell)",
    360      1.67   msaitoh 				[0x3d] = "Core M-5xxx, 5th gen Core (Broadwell)",
    361      1.59   msaitoh 				[0x3e] = "Xeon E5/E7 v2 (Ivy Bridge-E), "
    362      1.59   msaitoh 					 "Core i7-49xx Extreme",
    363      1.67   msaitoh 				[0x3f] = "Xeon E5-4600/2600/1600 v3, Xeon E7 v3 (Haswell-E), "
    364      1.59   msaitoh 					 "Core i7-59xx Extreme",
    365      1.40   msaitoh 				[0x45] = "4th gen Core, Xeon E3-12xx v3 "
    366      1.40   msaitoh 					 "(Haswell)",
    367      1.40   msaitoh 				[0x46] = "4th gen Core, Xeon E3-12xx v3 "
    368      1.40   msaitoh 					 "(Haswell)",
    369      1.67   msaitoh 				[0x47] = "5th gen Core, Xeon E3-1200 v4 (Broadwell)",
    370      1.65   msaitoh 				[0x4a] = "Atom Z3400",
    371      1.66   msaitoh 				[0x4c] = "Atom X[57]-Z8000 (Airmont)",
    372      1.58   msaitoh 				[0x4d] = "Atom C2000",
    373      1.70   msaitoh 				[0x4e] = "6th gen Core, Xeon E3-1[25]00 v5 (Skylake)",
    374      1.73   msaitoh 				[0x4f] = "Xeon E[57] v4 (Broadwell), Core i7-69xx Extreme",
    375  1.74.6.1    martin 				[0x55] = "Xeon Scalable (Skylake)",
    376      1.68   msaitoh 				[0x56] = "Xeon D-1500 (Broadwell)",
    377  1.74.6.1    martin 				[0x57] = "Xeon Phi [357]200 (Knights Landing)",
    378      1.65   msaitoh 				[0x5a] = "Atom E3500",
    379  1.74.6.1    martin 				[0x5c] = "Atom (Goldmont)",
    380      1.66   msaitoh 				[0x5d] = "Atom X3-C3000 (Silvermont)",
    381      1.70   msaitoh 				[0x5e] = "6th gen Core, Xeon E3-1[25]00 v5 (Skylake)",
    382  1.74.6.1    martin 				[0x5f] = "Atom (Goldmont, Denverton)",
    383  1.74.6.1    martin 				[0x66] = "Future Core (Cannon Lake)",
    384  1.74.6.1    martin 				[0x7a] = "Atom (Goldmont Plus)",
    385  1.74.6.5    martin 				[0x7e] = "Future Core (Ice Lake)",
    386  1.74.6.3    martin 				[0x85] = "Xeon Phi 7215, 7285, 7295 (Knights Mill)",
    387  1.74.6.5    martin 				[0x86] = "Atom (Tremont)",
    388  1.74.6.3    martin 				[0x8e] = "7th or 8th gen Core (Kaby Lake, Coffee Lake)",
    389  1.74.6.3    martin 				[0x9e] = "7th or 8th gen Core (Kaby Lake, Coffee Lake)",
    390       1.1        ad 			},
    391      1.37       dsl 			"Pentium Pro, II or III",	/* Default */
    392       1.1        ad 			NULL,
    393       1.1        ad 			intel_family_new_probe,
    394      1.52   msaitoh 			intel_cpu_cacheinfo,
    395       1.1        ad 		},
    396       1.1        ad 		/* Family > 6 */
    397       1.1        ad 		{
    398       1.1        ad 			CPUCLASS_686,
    399       1.1        ad 			{
    400       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    401       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    402       1.1        ad 			},
    403      1.37       dsl 			"Pentium 4",	/* Default */
    404       1.1        ad 			NULL,
    405       1.1        ad 			intel_family_new_probe,
    406      1.52   msaitoh 			intel_cpu_cacheinfo,
    407       1.1        ad 		} }
    408       1.1        ad 	},
    409       1.1        ad 	{
    410       1.1        ad 		"AuthenticAMD",
    411       1.1        ad 		CPUVENDOR_AMD,
    412       1.1        ad 		"AMD",
    413       1.1        ad 		/* Family 4 */
    414       1.1        ad 		{ {
    415       1.1        ad 			CPUCLASS_486,
    416       1.1        ad 			{
    417       1.1        ad 				0, 0, 0, "Am486DX2 W/T",
    418       1.1        ad 				0, 0, 0, "Am486DX2 W/B",
    419       1.1        ad 				"Am486DX4 W/T or Am5x86 W/T 150",
    420       1.1        ad 				"Am486DX4 W/B or Am5x86 W/B 150", 0, 0,
    421       1.1        ad 				0, 0, "Am5x86 W/T 133/160",
    422       1.1        ad 				"Am5x86 W/B 133/160",
    423       1.1        ad 			},
    424      1.37       dsl 			"Am486 or Am5x86",	/* Default */
    425       1.1        ad 			NULL,
    426       1.1        ad 			NULL,
    427      1.18  pgoyette 			NULL,
    428       1.1        ad 		},
    429       1.1        ad 		/* Family 5 */
    430       1.1        ad 		{
    431       1.1        ad 			CPUCLASS_586,
    432       1.1        ad 			{
    433       1.1        ad 				"K5", "K5", "K5", "K5", 0, 0, "K6",
    434       1.1        ad 				"K6", "K6-2", "K6-III", "Geode LX", 0, 0,
    435       1.1        ad 				"K6-2+/III+", 0, 0,
    436       1.1        ad 			},
    437      1.37       dsl 			"K5 or K6",		/* Default */
    438       1.1        ad 			amd_family5_setup,
    439       1.1        ad 			NULL,
    440       1.1        ad 			amd_cpu_cacheinfo,
    441       1.1        ad 		},
    442       1.1        ad 		/* Family 6 */
    443       1.1        ad 		{
    444       1.1        ad 			CPUCLASS_686,
    445       1.1        ad 			{
    446       1.1        ad 				0, "Athlon Model 1", "Athlon Model 2",
    447       1.1        ad 				"Duron", "Athlon Model 4 (Thunderbird)",
    448       1.1        ad 				0, "Athlon", "Duron", "Athlon", 0,
    449       1.1        ad 				"Athlon", 0, 0, 0, 0, 0,
    450       1.1        ad 			},
    451      1.37       dsl 			"K7 (Athlon)",	/* Default */
    452       1.1        ad 			NULL,
    453       1.1        ad 			amd_family6_probe,
    454       1.1        ad 			amd_cpu_cacheinfo,
    455       1.1        ad 		},
    456       1.1        ad 		/* Family > 6 */
    457       1.1        ad 		{
    458       1.1        ad 			CPUCLASS_686,
    459       1.1        ad 			{
    460       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    461       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    462       1.1        ad 			},
    463      1.37       dsl 			"Unknown K8 (Athlon)",	/* Default */
    464       1.1        ad 			NULL,
    465       1.1        ad 			amd_family6_probe,
    466       1.1        ad 			amd_cpu_cacheinfo,
    467       1.1        ad 		} }
    468       1.1        ad 	},
    469       1.1        ad 	{
    470       1.1        ad 		"CyrixInstead",
    471       1.1        ad 		CPUVENDOR_CYRIX,
    472       1.1        ad 		"Cyrix",
    473       1.1        ad 		/* Family 4 */
    474       1.1        ad 		{ {
    475       1.1        ad 			CPUCLASS_486,
    476       1.1        ad 			{
    477       1.1        ad 				0, 0, 0,
    478       1.1        ad 				"MediaGX",
    479       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
    480       1.1        ad 			},
    481      1.37       dsl 			"486",		/* Default */
    482       1.1        ad 			cyrix6x86_cpu_setup, /* XXX ?? */
    483       1.1        ad 			NULL,
    484       1.1        ad 			NULL,
    485       1.1        ad 		},
    486       1.1        ad 		/* Family 5 */
    487       1.1        ad 		{
    488       1.1        ad 			CPUCLASS_586,
    489       1.1        ad 			{
    490       1.1        ad 				0, 0, "6x86", 0,
    491       1.1        ad 				"MMX-enhanced MediaGX (GXm)", /* or Geode? */
    492       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
    493       1.1        ad 			},
    494      1.37       dsl 			"6x86",		/* Default */
    495       1.1        ad 			cyrix6x86_cpu_setup,
    496       1.1        ad 			NULL,
    497       1.1        ad 			NULL,
    498       1.1        ad 		},
    499       1.1        ad 		/* Family 6 */
    500       1.1        ad 		{
    501       1.1        ad 			CPUCLASS_686,
    502       1.1        ad 			{
    503       1.1        ad 				"6x86MX", 0, 0, 0, 0, 0, 0, 0,
    504       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    505       1.1        ad 			},
    506      1.37       dsl 			"6x86MX",		/* Default */
    507       1.1        ad 			cyrix6x86_cpu_setup,
    508       1.1        ad 			NULL,
    509       1.1        ad 			NULL,
    510       1.1        ad 		},
    511       1.1        ad 		/* Family > 6 */
    512       1.1        ad 		{
    513       1.1        ad 			CPUCLASS_686,
    514       1.1        ad 			{
    515       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    516       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    517       1.1        ad 			},
    518      1.37       dsl 			"Unknown 6x86MX",		/* Default */
    519       1.1        ad 			NULL,
    520       1.1        ad 			NULL,
    521      1.18  pgoyette 			NULL,
    522       1.1        ad 		} }
    523       1.1        ad 	},
    524       1.1        ad 	{	/* MediaGX is now owned by National Semiconductor */
    525       1.1        ad 		"Geode by NSC",
    526       1.1        ad 		CPUVENDOR_CYRIX, /* XXX */
    527       1.1        ad 		"National Semiconductor",
    528       1.1        ad 		/* Family 4, NSC never had any of these */
    529       1.1        ad 		{ {
    530       1.1        ad 			CPUCLASS_486,
    531       1.1        ad 			{
    532       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    533       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    534       1.1        ad 			},
    535      1.37       dsl 			"486 compatible",	/* Default */
    536       1.1        ad 			NULL,
    537       1.1        ad 			NULL,
    538      1.18  pgoyette 			NULL,
    539       1.1        ad 		},
    540       1.1        ad 		/* Family 5: Geode family, formerly MediaGX */
    541       1.1        ad 		{
    542       1.1        ad 			CPUCLASS_586,
    543       1.1        ad 			{
    544       1.1        ad 				0, 0, 0, 0,
    545       1.1        ad 				"Geode GX1",
    546       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
    547       1.1        ad 			},
    548      1.37       dsl 			"Geode",		/* Default */
    549       1.1        ad 			cyrix6x86_cpu_setup,
    550       1.1        ad 			NULL,
    551       1.1        ad 			amd_cpu_cacheinfo,
    552       1.1        ad 		},
    553       1.1        ad 		/* Family 6, not yet available from NSC */
    554       1.1        ad 		{
    555       1.1        ad 			CPUCLASS_686,
    556       1.1        ad 			{
    557       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    558       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    559       1.1        ad 			},
    560      1.37       dsl 			"Pentium Pro compatible", /* Default */
    561       1.1        ad 			NULL,
    562       1.1        ad 			NULL,
    563      1.18  pgoyette 			NULL,
    564       1.1        ad 		},
    565       1.1        ad 		/* Family > 6, not yet available from NSC */
    566       1.1        ad 		{
    567       1.1        ad 			CPUCLASS_686,
    568       1.1        ad 			{
    569       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    570       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    571       1.1        ad 			},
    572      1.37       dsl 			"Pentium Pro compatible",	/* Default */
    573       1.1        ad 			NULL,
    574       1.1        ad 			NULL,
    575      1.18  pgoyette 			NULL,
    576       1.1        ad 		} }
    577       1.1        ad 	},
    578       1.1        ad 	{
    579       1.1        ad 		"CentaurHauls",
    580       1.1        ad 		CPUVENDOR_IDT,
    581       1.1        ad 		"IDT",
    582       1.1        ad 		/* Family 4, IDT never had any of these */
    583       1.1        ad 		{ {
    584       1.1        ad 			CPUCLASS_486,
    585       1.1        ad 			{
    586       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    587       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    588       1.1        ad 			},
    589      1.37       dsl 			"486 compatible",	/* Default */
    590       1.1        ad 			NULL,
    591       1.1        ad 			NULL,
    592      1.18  pgoyette 			NULL,
    593       1.1        ad 		},
    594       1.1        ad 		/* Family 5 */
    595       1.1        ad 		{
    596       1.1        ad 			CPUCLASS_586,
    597       1.1        ad 			{
    598       1.1        ad 				0, 0, 0, 0, "WinChip C6", 0, 0, 0,
    599       1.1        ad 				"WinChip 2", "WinChip 3", 0, 0, 0, 0, 0, 0,
    600       1.1        ad 			},
    601      1.37       dsl 			"WinChip",		/* Default */
    602       1.1        ad 			winchip_cpu_setup,
    603       1.1        ad 			NULL,
    604       1.1        ad 			NULL,
    605       1.1        ad 		},
    606       1.1        ad 		/* Family 6, VIA acquired IDT Centaur design subsidiary */
    607       1.1        ad 		{
    608       1.1        ad 			CPUCLASS_686,
    609       1.1        ad 			{
    610       1.1        ad 				0, 0, 0, 0, 0, 0, "C3 Samuel",
    611       1.1        ad 				"C3 Samuel 2/Ezra", "C3 Ezra-T",
    612      1.20  jmcneill 				"C3 Nehemiah", "C7 Esther", 0, 0, "C7 Esther",
    613      1.20  jmcneill 				0, "VIA Nano",
    614       1.1        ad 			},
    615      1.37       dsl 			"Unknown VIA/IDT",	/* Default */
    616       1.1        ad 			NULL,
    617       1.1        ad 			via_cpu_probe,
    618       1.1        ad 			via_cpu_cacheinfo,
    619       1.1        ad 		},
    620       1.1        ad 		/* Family > 6, not yet available from VIA */
    621       1.1        ad 		{
    622       1.1        ad 			CPUCLASS_686,
    623       1.1        ad 			{
    624       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    625       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    626       1.1        ad 			},
    627      1.37       dsl 			"Pentium Pro compatible",	/* Default */
    628       1.1        ad 			NULL,
    629       1.1        ad 			NULL,
    630      1.18  pgoyette 			NULL,
    631       1.1        ad 		} }
    632       1.1        ad 	},
    633       1.1        ad 	{
    634       1.1        ad 		"GenuineTMx86",
    635       1.1        ad 		CPUVENDOR_TRANSMETA,
    636       1.1        ad 		"Transmeta",
    637       1.1        ad 		/* Family 4, Transmeta never had any of these */
    638       1.1        ad 		{ {
    639       1.1        ad 			CPUCLASS_486,
    640       1.1        ad 			{
    641       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    642       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    643       1.1        ad 			},
    644      1.37       dsl 			"486 compatible",	/* Default */
    645       1.1        ad 			NULL,
    646       1.1        ad 			NULL,
    647      1.18  pgoyette 			NULL,
    648       1.1        ad 		},
    649       1.1        ad 		/* Family 5 */
    650       1.1        ad 		{
    651       1.1        ad 			CPUCLASS_586,
    652       1.1        ad 			{
    653       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    654       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    655       1.1        ad 			},
    656      1.37       dsl 			"Crusoe",		/* Default */
    657       1.1        ad 			NULL,
    658       1.1        ad 			NULL,
    659       1.1        ad 			transmeta_cpu_info,
    660       1.1        ad 		},
    661       1.1        ad 		/* Family 6, not yet available from Transmeta */
    662       1.1        ad 		{
    663       1.1        ad 			CPUCLASS_686,
    664       1.1        ad 			{
    665       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    666       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    667       1.1        ad 			},
    668      1.37       dsl 			"Pentium Pro compatible",	/* Default */
    669       1.1        ad 			NULL,
    670       1.1        ad 			NULL,
    671      1.18  pgoyette 			NULL,
    672       1.1        ad 		},
    673       1.1        ad 		/* Family > 6, not yet available from Transmeta */
    674       1.1        ad 		{
    675       1.1        ad 			CPUCLASS_686,
    676       1.1        ad 			{
    677       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    678       1.1        ad 				0, 0, 0, 0, 0, 0, 0, 0,
    679       1.1        ad 			},
    680      1.37       dsl 			"Pentium Pro compatible",	/* Default */
    681       1.1        ad 			NULL,
    682       1.1        ad 			NULL,
    683      1.18  pgoyette 			NULL,
    684       1.1        ad 		} }
    685       1.1        ad 	}
    686       1.1        ad };
    687       1.1        ad 
    688       1.1        ad /*
    689       1.1        ad  * disable the TSC such that we don't use the TSC in microtime(9)
    690       1.1        ad  * because some CPUs got the implementation wrong.
    691       1.1        ad  */
    692       1.1        ad static void
    693       1.1        ad disable_tsc(struct cpu_info *ci)
    694       1.1        ad {
    695      1.18  pgoyette 	if (ci->ci_feat_val[0] & CPUID_TSC) {
    696      1.18  pgoyette 		ci->ci_feat_val[0] &= ~CPUID_TSC;
    697       1.1        ad 		aprint_error("WARNING: broken TSC disabled\n");
    698       1.1        ad 	}
    699       1.1        ad }
    700       1.1        ad 
    701       1.1        ad static void
    702      1.44   msaitoh amd_family5_setup(struct cpu_info *ci)
    703      1.44   msaitoh {
    704      1.44   msaitoh 
    705      1.44   msaitoh 	switch (ci->ci_model) {
    706      1.44   msaitoh 	case 0:		/* AMD-K5 Model 0 */
    707      1.44   msaitoh 		/*
    708      1.44   msaitoh 		 * According to the AMD Processor Recognition App Note,
    709      1.44   msaitoh 		 * the AMD-K5 Model 0 uses the wrong bit to indicate
    710      1.44   msaitoh 		 * support for global PTEs, instead using bit 9 (APIC)
    711      1.44   msaitoh 		 * rather than bit 13 (i.e. "0x200" vs. 0x2000".  Oops!).
    712      1.44   msaitoh 		 */
    713      1.44   msaitoh 		if (ci->ci_feat_val[0] & CPUID_APIC)
    714      1.44   msaitoh 			ci->ci_feat_val[0] =
    715      1.44   msaitoh 			    (ci->ci_feat_val[0] & ~CPUID_APIC) | CPUID_PGE;
    716      1.44   msaitoh 		/*
    717      1.44   msaitoh 		 * XXX But pmap_pg_g is already initialized -- need to kick
    718      1.44   msaitoh 		 * XXX the pmap somehow.  How does the MP branch do this?
    719      1.44   msaitoh 		 */
    720      1.44   msaitoh 		break;
    721      1.44   msaitoh 	}
    722      1.44   msaitoh }
    723      1.44   msaitoh 
    724      1.44   msaitoh static void
    725       1.1        ad cyrix6x86_cpu_setup(struct cpu_info *ci)
    726       1.1        ad {
    727       1.1        ad 
    728       1.1        ad 	/*
    729       1.1        ad 	 * Do not disable the TSC on the Geode GX, it's reported to
    730       1.1        ad 	 * work fine.
    731       1.1        ad 	 */
    732       1.1        ad 	if (ci->ci_signature != 0x552)
    733       1.1        ad 		disable_tsc(ci);
    734       1.1        ad }
    735       1.1        ad 
    736      1.44   msaitoh static void
    737       1.1        ad winchip_cpu_setup(struct cpu_info *ci)
    738       1.1        ad {
    739      1.36       dsl 	switch (ci->ci_model) {
    740       1.1        ad 	case 4:	/* WinChip C6 */
    741       1.1        ad 		disable_tsc(ci);
    742       1.1        ad 	}
    743       1.1        ad }
    744       1.1        ad 
    745       1.1        ad 
    746       1.1        ad static const char *
    747       1.1        ad intel_family6_name(struct cpu_info *ci)
    748       1.1        ad {
    749       1.1        ad 	const char *ret = NULL;
    750       1.1        ad 	u_int l2cache = ci->ci_cinfo[CAI_L2CACHE].cai_totalsize;
    751       1.1        ad 
    752      1.36       dsl 	if (ci->ci_model == 5) {
    753       1.1        ad 		switch (l2cache) {
    754       1.1        ad 		case 0:
    755       1.1        ad 		case 128 * 1024:
    756       1.1        ad 			ret = "Celeron (Covington)";
    757       1.1        ad 			break;
    758       1.1        ad 		case 256 * 1024:
    759       1.1        ad 			ret = "Mobile Pentium II (Dixon)";
    760       1.1        ad 			break;
    761       1.1        ad 		case 512 * 1024:
    762       1.1        ad 			ret = "Pentium II";
    763       1.1        ad 			break;
    764       1.1        ad 		case 1 * 1024 * 1024:
    765       1.1        ad 		case 2 * 1024 * 1024:
    766       1.1        ad 			ret = "Pentium II Xeon";
    767       1.1        ad 			break;
    768       1.1        ad 		}
    769      1.36       dsl 	} else if (ci->ci_model == 6) {
    770       1.1        ad 		switch (l2cache) {
    771       1.1        ad 		case 256 * 1024:
    772       1.1        ad 		case 512 * 1024:
    773       1.1        ad 			ret = "Mobile Pentium II";
    774       1.1        ad 			break;
    775       1.1        ad 		}
    776      1.36       dsl 	} else if (ci->ci_model == 7) {
    777       1.1        ad 		switch (l2cache) {
    778       1.1        ad 		case 512 * 1024:
    779       1.1        ad 			ret = "Pentium III";
    780       1.1        ad 			break;
    781       1.1        ad 		case 1 * 1024 * 1024:
    782       1.1        ad 		case 2 * 1024 * 1024:
    783       1.1        ad 			ret = "Pentium III Xeon";
    784       1.1        ad 			break;
    785       1.1        ad 		}
    786      1.36       dsl 	} else if (ci->ci_model >= 8) {
    787       1.1        ad 		if (ci->ci_brand_id && ci->ci_brand_id < 0x10) {
    788       1.1        ad 			switch (ci->ci_brand_id) {
    789       1.1        ad 			case 0x3:
    790       1.1        ad 				if (ci->ci_signature == 0x6B1)
    791       1.1        ad 					ret = "Celeron";
    792       1.1        ad 				break;
    793       1.1        ad 			case 0x8:
    794       1.1        ad 				if (ci->ci_signature >= 0xF13)
    795       1.1        ad 					ret = "genuine processor";
    796       1.1        ad 				break;
    797       1.1        ad 			case 0xB:
    798       1.1        ad 				if (ci->ci_signature >= 0xF13)
    799       1.1        ad 					ret = "Xeon MP";
    800       1.1        ad 				break;
    801       1.1        ad 			case 0xE:
    802       1.1        ad 				if (ci->ci_signature < 0xF13)
    803       1.1        ad 					ret = "Xeon";
    804       1.1        ad 				break;
    805       1.1        ad 			}
    806       1.1        ad 			if (ret == NULL)
    807       1.1        ad 				ret = i386_intel_brand[ci->ci_brand_id];
    808       1.1        ad 		}
    809       1.1        ad 	}
    810       1.1        ad 
    811       1.1        ad 	return ret;
    812       1.1        ad }
    813       1.1        ad 
    814       1.1        ad /*
    815       1.1        ad  * Identify AMD64 CPU names from cpuid.
    816       1.1        ad  *
    817       1.1        ad  * Based on:
    818       1.1        ad  * "Revision Guide for AMD Athlon 64 and AMD Opteron Processors"
    819       1.1        ad  * http://www.amd.com/us-en/assets/content_type/white_papers_and_tech_docs/25759.pdf
    820       1.1        ad  * "Revision Guide for AMD NPT Family 0Fh Processors"
    821       1.1        ad  * http://www.amd.com/us-en/assets/content_type/white_papers_and_tech_docs/33610.pdf
    822       1.1        ad  * and other miscellaneous reports.
    823      1.36       dsl  *
    824      1.36       dsl  * This is all rather pointless, these are cross 'brand' since the raw
    825      1.36       dsl  * silicon is shared.
    826       1.1        ad  */
    827       1.1        ad static const char *
    828       1.1        ad amd_amd64_name(struct cpu_info *ci)
    829       1.1        ad {
    830      1.36       dsl 	static char family_str[32];
    831      1.36       dsl 
    832      1.36       dsl 	/* Only called if family >= 15 */
    833       1.1        ad 
    834      1.36       dsl 	switch (ci->ci_family) {
    835      1.36       dsl 	case 15:
    836      1.36       dsl 		switch (ci->ci_model) {
    837      1.36       dsl 		case 0x21:	/* rev JH-E1/E6 */
    838      1.36       dsl 		case 0x41:	/* rev JH-F2 */
    839      1.36       dsl 			return "Dual-Core Opteron";
    840      1.36       dsl 		case 0x23:	/* rev JH-E6 (Toledo) */
    841      1.36       dsl 			return "Dual-Core Opteron or Athlon 64 X2";
    842      1.36       dsl 		case 0x43:	/* rev JH-F2 (Windsor) */
    843      1.36       dsl 			return "Athlon 64 FX or Athlon 64 X2";
    844      1.36       dsl 		case 0x24:	/* rev SH-E5 (Lancaster?) */
    845      1.36       dsl 			return "Mobile Athlon 64 or Turion 64";
    846      1.36       dsl 		case 0x05:	/* rev SH-B0/B3/C0/CG (SledgeHammer?) */
    847      1.36       dsl 			return "Opteron or Athlon 64 FX";
    848      1.36       dsl 		case 0x15:	/* rev SH-D0 */
    849      1.36       dsl 		case 0x25:	/* rev SH-E4 */
    850      1.36       dsl 			return "Opteron";
    851      1.36       dsl 		case 0x27:	/* rev DH-E4, SH-E4 */
    852      1.36       dsl 			return "Athlon 64 or Athlon 64 FX or Opteron";
    853      1.36       dsl 		case 0x48:	/* rev BH-F2 */
    854      1.36       dsl 			return "Turion 64 X2";
    855      1.36       dsl 		case 0x04:	/* rev SH-B0/C0/CG (ClawHammer) */
    856      1.36       dsl 		case 0x07:	/* rev SH-CG (ClawHammer) */
    857      1.36       dsl 		case 0x0b:	/* rev CH-CG */
    858      1.36       dsl 		case 0x14:	/* rev SH-D0 */
    859      1.36       dsl 		case 0x17:	/* rev SH-D0 */
    860      1.36       dsl 		case 0x1b:	/* rev CH-D0 */
    861      1.36       dsl 			return "Athlon 64";
    862      1.36       dsl 		case 0x2b:	/* rev BH-E4 (Manchester) */
    863      1.36       dsl 		case 0x4b:	/* rev BH-F2 (Windsor) */
    864      1.36       dsl 			return "Athlon 64 X2";
    865      1.36       dsl 		case 0x6b:	/* rev BH-G1 (Brisbane) */
    866      1.36       dsl 			return "Athlon X2 or Athlon 64 X2";
    867      1.36       dsl 		case 0x08:	/* rev CH-CG */
    868      1.36       dsl 		case 0x0c:	/* rev DH-CG (Newcastle) */
    869      1.36       dsl 		case 0x0e:	/* rev DH-CG (Newcastle?) */
    870      1.36       dsl 		case 0x0f:	/* rev DH-CG (Newcastle/Paris) */
    871      1.36       dsl 		case 0x18:	/* rev CH-D0 */
    872      1.36       dsl 		case 0x1c:	/* rev DH-D0 (Winchester) */
    873      1.36       dsl 		case 0x1f:	/* rev DH-D0 (Winchester/Victoria) */
    874      1.36       dsl 		case 0x2c:	/* rev DH-E3/E6 */
    875      1.36       dsl 		case 0x2f:	/* rev DH-E3/E6 (Venice/Palermo) */
    876      1.36       dsl 		case 0x4f:	/* rev DH-F2 (Orleans/Manila) */
    877      1.36       dsl 		case 0x5f:	/* rev DH-F2 (Orleans/Manila) */
    878      1.36       dsl 		case 0x6f:	/* rev DH-G1 */
    879      1.36       dsl 			return "Athlon 64 or Sempron";
    880      1.36       dsl 		default:
    881       1.1        ad 			break;
    882       1.1        ad 		}
    883      1.36       dsl 		return "Unknown AMD64 CPU";
    884      1.36       dsl 
    885      1.36       dsl #if 0
    886      1.36       dsl 	case 16:
    887      1.36       dsl 		return "Family 10h";
    888      1.36       dsl 	case 17:
    889      1.36       dsl 		return "Family 11h";
    890      1.36       dsl 	case 18:
    891      1.36       dsl 		return "Family 12h";
    892      1.36       dsl 	case 19:
    893      1.36       dsl 		return "Family 14h";
    894      1.36       dsl 	case 20:
    895      1.36       dsl 		return "Family 15h";
    896      1.36       dsl #endif
    897      1.36       dsl 
    898      1.31    cegger 	default:
    899      1.25    jruoho 		break;
    900       1.1        ad 	}
    901       1.1        ad 
    902      1.36       dsl 	snprintf(family_str, sizeof family_str, "Family %xh", ci->ci_family);
    903      1.36       dsl 	return family_str;
    904       1.1        ad }
    905       1.1        ad 
    906       1.1        ad static void
    907      1.44   msaitoh intel_family_new_probe(struct cpu_info *ci)
    908       1.1        ad {
    909      1.44   msaitoh 	uint32_t descs[4];
    910       1.1        ad 
    911      1.44   msaitoh 	x86_cpuid(0x80000000, descs);
    912      1.34       dsl 
    913      1.44   msaitoh 	/*
    914      1.44   msaitoh 	 * Determine extended feature flags.
    915      1.44   msaitoh 	 */
    916      1.44   msaitoh 	if (descs[0] >= 0x80000001) {
    917      1.44   msaitoh 		x86_cpuid(0x80000001, descs);
    918      1.44   msaitoh 		ci->ci_feat_val[2] |= descs[3];
    919      1.44   msaitoh 		ci->ci_feat_val[3] |= descs[2];
    920      1.34       dsl 	}
    921      1.44   msaitoh }
    922      1.44   msaitoh 
    923      1.44   msaitoh static void
    924      1.44   msaitoh via_cpu_probe(struct cpu_info *ci)
    925      1.44   msaitoh {
    926      1.50   msaitoh 	u_int stepping = CPUID_TO_STEPPING(ci->ci_signature);
    927      1.44   msaitoh 	u_int descs[4];
    928      1.44   msaitoh 	u_int lfunc;
    929       1.1        ad 
    930      1.44   msaitoh 	/*
    931      1.44   msaitoh 	 * Determine the largest extended function value.
    932      1.44   msaitoh 	 */
    933      1.44   msaitoh 	x86_cpuid(0x80000000, descs);
    934      1.44   msaitoh 	lfunc = descs[0];
    935       1.1        ad 
    936      1.44   msaitoh 	/*
    937      1.44   msaitoh 	 * Determine the extended feature flags.
    938      1.44   msaitoh 	 */
    939      1.44   msaitoh 	if (lfunc >= 0x80000001) {
    940      1.44   msaitoh 		x86_cpuid(0x80000001, descs);
    941      1.44   msaitoh 		ci->ci_feat_val[2] |= descs[3];
    942       1.1        ad 	}
    943       1.1        ad 
    944      1.44   msaitoh 	if (ci->ci_model < 0x9 || (ci->ci_model == 0x9 && stepping < 3))
    945      1.44   msaitoh 		return;
    946      1.44   msaitoh 
    947      1.44   msaitoh 	/* Nehemiah or Esther */
    948      1.44   msaitoh 	x86_cpuid(0xc0000000, descs);
    949      1.44   msaitoh 	lfunc = descs[0];
    950      1.44   msaitoh 	if (lfunc < 0xc0000001)	/* no ACE, no RNG */
    951       1.1        ad 		return;
    952       1.1        ad 
    953      1.44   msaitoh 	x86_cpuid(0xc0000001, descs);
    954      1.44   msaitoh 	lfunc = descs[3];
    955      1.44   msaitoh 	ci->ci_feat_val[4] = lfunc;
    956      1.44   msaitoh }
    957      1.36       dsl 
    958      1.44   msaitoh static void
    959      1.44   msaitoh amd_family6_probe(struct cpu_info *ci)
    960      1.44   msaitoh {
    961      1.44   msaitoh 	uint32_t descs[4];
    962      1.44   msaitoh 	char *p;
    963      1.44   msaitoh 	size_t i;
    964      1.36       dsl 
    965      1.44   msaitoh 	x86_cpuid(0x80000000, descs);
    966      1.36       dsl 
    967      1.44   msaitoh 	/*
    968      1.44   msaitoh 	 * Determine the extended feature flags.
    969      1.44   msaitoh 	 */
    970      1.44   msaitoh 	if (descs[0] >= 0x80000001) {
    971      1.44   msaitoh 		x86_cpuid(0x80000001, descs);
    972      1.44   msaitoh 		ci->ci_feat_val[2] |= descs[3]; /* %edx */
    973      1.44   msaitoh 		ci->ci_feat_val[3] = descs[2]; /* %ecx */
    974      1.44   msaitoh 	}
    975       1.1        ad 
    976      1.44   msaitoh 	if (*cpu_brand_string == '\0')
    977       1.1        ad 		return;
    978      1.44   msaitoh 
    979      1.44   msaitoh 	for (i = 1; i < __arraycount(amd_brand); i++)
    980      1.44   msaitoh 		if ((p = strstr(cpu_brand_string, amd_brand[i])) != NULL) {
    981      1.44   msaitoh 			ci->ci_brand_id = i;
    982      1.44   msaitoh 			strlcpy(amd_brand_name, p, sizeof(amd_brand_name));
    983      1.44   msaitoh 			break;
    984      1.44   msaitoh 		}
    985      1.44   msaitoh }
    986      1.44   msaitoh 
    987      1.52   msaitoh static void
    988      1.52   msaitoh intel_cpu_cacheinfo(struct cpu_info *ci)
    989      1.52   msaitoh {
    990      1.52   msaitoh 	const struct x86_cache_info *cai;
    991      1.52   msaitoh 	u_int descs[4];
    992      1.52   msaitoh 	int iterations, i, j;
    993      1.52   msaitoh 	int type, level;
    994      1.52   msaitoh 	int ways, partitions, linesize, sets;
    995      1.52   msaitoh 	int caitype = -1;
    996      1.52   msaitoh 	int totalsize;
    997      1.52   msaitoh 	uint8_t desc;
    998      1.52   msaitoh 
    999      1.52   msaitoh 	/* Return if the cpu is old pre-cpuid instruction cpu */
   1000      1.52   msaitoh 	if (ci->ci_cpu_type >= 0)
   1001      1.52   msaitoh 		return;
   1002      1.52   msaitoh 
   1003      1.52   msaitoh 	if (ci->ci_cpuid_level < 2)
   1004      1.52   msaitoh 		return;
   1005      1.52   msaitoh 
   1006      1.52   msaitoh 	/*
   1007      1.52   msaitoh 	 * Parse the cache info from `cpuid leaf 2', if we have it.
   1008      1.52   msaitoh 	 * XXX This is kinda ugly, but hey, so is the architecture...
   1009      1.52   msaitoh 	 */
   1010      1.52   msaitoh 	x86_cpuid(2, descs);
   1011      1.52   msaitoh 	iterations = descs[0] & 0xff;
   1012      1.52   msaitoh 	while (iterations-- > 0) {
   1013      1.52   msaitoh 		for (i = 0; i < 4; i++) {
   1014      1.52   msaitoh 			if (descs[i] & 0x80000000)
   1015      1.52   msaitoh 				continue;
   1016      1.52   msaitoh 			for (j = 0; j < 4; j++) {
   1017      1.65   msaitoh 				/*
   1018      1.65   msaitoh 				 * The least significant byte in EAX
   1019      1.65   msaitoh 				 * ((desc[0] >> 0) & 0xff) is always 0x01 and
   1020      1.65   msaitoh 				 * it should be ignored.
   1021      1.65   msaitoh 				 */
   1022      1.52   msaitoh 				if (i == 0 && j == 0)
   1023      1.52   msaitoh 					continue;
   1024      1.52   msaitoh 				desc = (descs[i] >> (j * 8)) & 0xff;
   1025      1.52   msaitoh 				if (desc == 0)
   1026      1.52   msaitoh 					continue;
   1027      1.52   msaitoh 				cai = cache_info_lookup(intel_cpuid_cache_info,
   1028      1.52   msaitoh 				    desc);
   1029      1.52   msaitoh 				if (cai != NULL)
   1030      1.52   msaitoh 					ci->ci_cinfo[cai->cai_index] = *cai;
   1031  1.74.6.3    martin 				else if ((verbose != 0) && (desc != 0xff)
   1032  1.74.6.3    martin 				    && (desc != 0xfe))
   1033  1.74.6.3    martin 					aprint_error_dev(ci->ci_dev, "error:"
   1034  1.74.6.3    martin 					    " Unknown cacheinfo desc %02x\n",
   1035      1.55   msaitoh 					    desc);
   1036      1.52   msaitoh 			}
   1037      1.52   msaitoh 		}
   1038      1.52   msaitoh 		x86_cpuid(2, descs);
   1039      1.52   msaitoh 	}
   1040      1.52   msaitoh 
   1041      1.52   msaitoh 	if (ci->ci_cpuid_level < 4)
   1042      1.52   msaitoh 		return;
   1043      1.52   msaitoh 
   1044      1.52   msaitoh 	/* Parse the cache info from `cpuid leaf 4', if we have it. */
   1045      1.52   msaitoh 	for (i = 0; ; i++) {
   1046      1.52   msaitoh 		x86_cpuid2(4, i, descs);
   1047      1.52   msaitoh 		type = __SHIFTOUT(descs[0], CPUID_DCP_CACHETYPE);
   1048      1.52   msaitoh 		if (type == CPUID_DCP_CACHETYPE_N)
   1049      1.52   msaitoh 			break;
   1050      1.52   msaitoh 		level = __SHIFTOUT(descs[0], CPUID_DCP_CACHELEVEL);
   1051      1.52   msaitoh 		switch (level) {
   1052      1.52   msaitoh 		case 1:
   1053      1.52   msaitoh 			if (type == CPUID_DCP_CACHETYPE_I)
   1054      1.52   msaitoh 				caitype = CAI_ICACHE;
   1055      1.52   msaitoh 			else if (type == CPUID_DCP_CACHETYPE_D)
   1056      1.52   msaitoh 				caitype = CAI_DCACHE;
   1057      1.52   msaitoh 			else
   1058      1.52   msaitoh 				caitype = -1;
   1059      1.52   msaitoh 			break;
   1060      1.52   msaitoh 		case 2:
   1061      1.52   msaitoh 			if (type == CPUID_DCP_CACHETYPE_U)
   1062      1.52   msaitoh 				caitype = CAI_L2CACHE;
   1063      1.52   msaitoh 			else
   1064      1.52   msaitoh 				caitype = -1;
   1065      1.52   msaitoh 			break;
   1066      1.52   msaitoh 		case 3:
   1067      1.52   msaitoh 			if (type == CPUID_DCP_CACHETYPE_U)
   1068      1.52   msaitoh 				caitype = CAI_L3CACHE;
   1069      1.52   msaitoh 			else
   1070      1.52   msaitoh 				caitype = -1;
   1071      1.52   msaitoh 			break;
   1072      1.52   msaitoh 		default:
   1073      1.52   msaitoh 			caitype = -1;
   1074      1.52   msaitoh 			break;
   1075      1.52   msaitoh 		}
   1076      1.52   msaitoh 		if (caitype == -1) {
   1077  1.74.6.3    martin 			aprint_error_dev(ci->ci_dev,
   1078  1.74.6.3    martin 			    "error: unknown cache level&type (%d & %d)\n",
   1079      1.52   msaitoh 			    level, type);
   1080      1.52   msaitoh 			continue;
   1081      1.52   msaitoh 		}
   1082      1.52   msaitoh 		ways = __SHIFTOUT(descs[1], CPUID_DCP_WAYS) + 1;
   1083      1.52   msaitoh 		partitions =__SHIFTOUT(descs[1], CPUID_DCP_PARTITIONS)
   1084      1.52   msaitoh 		    + 1;
   1085      1.52   msaitoh 		linesize = __SHIFTOUT(descs[1], CPUID_DCP_LINESIZE)
   1086      1.52   msaitoh 		    + 1;
   1087      1.52   msaitoh 		sets = descs[2] + 1;
   1088      1.52   msaitoh 		totalsize = ways * partitions * linesize * sets;
   1089      1.52   msaitoh 		ci->ci_cinfo[caitype].cai_totalsize = totalsize;
   1090      1.52   msaitoh 		ci->ci_cinfo[caitype].cai_associativity = ways;
   1091      1.52   msaitoh 		ci->ci_cinfo[caitype].cai_linesize = linesize;
   1092      1.52   msaitoh 	}
   1093  1.74.6.3    martin 
   1094  1.74.6.3    martin 	if (ci->ci_cpuid_level < 0x18)
   1095  1.74.6.3    martin 		return;
   1096  1.74.6.3    martin 	/* Parse the TLB info from `cpuid leaf 18H', if we have it. */
   1097  1.74.6.3    martin 	x86_cpuid(0x18, descs);
   1098  1.74.6.3    martin 	iterations = descs[0];
   1099  1.74.6.3    martin 	for (i = 0; i <= iterations; i++) {
   1100  1.74.6.3    martin 		uint32_t pgsize;
   1101  1.74.6.3    martin 		bool full;
   1102  1.74.6.3    martin 
   1103  1.74.6.3    martin 		x86_cpuid2(0x18, i, descs);
   1104  1.74.6.3    martin 		type = __SHIFTOUT(descs[3], CPUID_DATP_TCTYPE);
   1105  1.74.6.3    martin 		if (type == CPUID_DATP_TCTYPE_N)
   1106  1.74.6.3    martin 			continue;
   1107  1.74.6.3    martin 		level = __SHIFTOUT(descs[3], CPUID_DATP_TCLEVEL);
   1108  1.74.6.3    martin 		pgsize = __SHIFTOUT(descs[1], CPUID_DATP_PGSIZE);
   1109  1.74.6.3    martin 		switch (level) {
   1110  1.74.6.3    martin 		case 1:
   1111  1.74.6.3    martin 			if (type == CPUID_DATP_TCTYPE_I) {
   1112  1.74.6.3    martin 				switch (pgsize) {
   1113  1.74.6.3    martin 				case CPUID_DATP_PGSIZE_4KB:
   1114  1.74.6.3    martin 					caitype = CAI_ITLB;
   1115  1.74.6.3    martin 					break;
   1116  1.74.6.3    martin 				case CPUID_DATP_PGSIZE_2MB
   1117  1.74.6.3    martin 				    | CPUID_DATP_PGSIZE_4MB:
   1118  1.74.6.3    martin 					caitype = CAI_ITLB2;
   1119  1.74.6.3    martin 					break;
   1120  1.74.6.3    martin 				case CPUID_DATP_PGSIZE_1GB:
   1121  1.74.6.3    martin 					caitype = CAI_L1_1GBITLB;
   1122  1.74.6.3    martin 					break;
   1123  1.74.6.3    martin 				default:
   1124  1.74.6.3    martin 					aprint_error_dev(ci->ci_dev,
   1125  1.74.6.3    martin 					    "error: unknown ITLB size (%d)\n",
   1126  1.74.6.3    martin 					    pgsize);
   1127  1.74.6.3    martin 					caitype = CAI_ITLB;
   1128  1.74.6.3    martin 					break;
   1129  1.74.6.3    martin 				}
   1130  1.74.6.3    martin 			} else if (type == CPUID_DATP_TCTYPE_D) {
   1131  1.74.6.3    martin 				switch (pgsize) {
   1132  1.74.6.3    martin 				case CPUID_DATP_PGSIZE_4KB:
   1133  1.74.6.3    martin 					caitype = CAI_DTLB;
   1134  1.74.6.3    martin 					break;
   1135  1.74.6.3    martin 				case CPUID_DATP_PGSIZE_2MB
   1136  1.74.6.3    martin 				    | CPUID_DATP_PGSIZE_4MB:
   1137  1.74.6.3    martin 					caitype = CAI_DTLB2;
   1138  1.74.6.3    martin 					break;
   1139  1.74.6.3    martin 				case CPUID_DATP_PGSIZE_1GB:
   1140  1.74.6.3    martin 					caitype = CAI_L1_1GBDTLB;
   1141  1.74.6.3    martin 					break;
   1142  1.74.6.3    martin 				default:
   1143  1.74.6.3    martin 					aprint_error_dev(ci->ci_dev,
   1144  1.74.6.3    martin 					    "error: unknown DTLB size (%d)\n",
   1145  1.74.6.3    martin 					    pgsize);
   1146  1.74.6.3    martin 					caitype = CAI_DTLB;
   1147  1.74.6.3    martin 					break;
   1148  1.74.6.3    martin 				}
   1149  1.74.6.3    martin 			} else
   1150  1.74.6.3    martin 				caitype = -1;
   1151  1.74.6.3    martin 			break;
   1152  1.74.6.3    martin 		case 2:
   1153  1.74.6.3    martin 			if (type == CPUID_DATP_TCTYPE_I)
   1154  1.74.6.3    martin 				caitype = CAI_L2_ITLB;
   1155  1.74.6.3    martin 			else if (type == CPUID_DATP_TCTYPE_D)
   1156  1.74.6.3    martin 				caitype = CAI_L2_DTLB;
   1157  1.74.6.3    martin 			else if (type == CPUID_DATP_TCTYPE_U) {
   1158  1.74.6.3    martin 				switch (pgsize) {
   1159  1.74.6.3    martin 				case CPUID_DATP_PGSIZE_4KB:
   1160  1.74.6.3    martin 					caitype = CAI_L2_STLB;
   1161  1.74.6.3    martin 					break;
   1162  1.74.6.3    martin 				case CPUID_DATP_PGSIZE_4KB
   1163  1.74.6.3    martin 				    | CPUID_DATP_PGSIZE_2MB:
   1164  1.74.6.3    martin 					caitype = CAI_L2_STLB2;
   1165  1.74.6.3    martin 					break;
   1166  1.74.6.3    martin 				case CPUID_DATP_PGSIZE_2MB
   1167  1.74.6.3    martin 				    | CPUID_DATP_PGSIZE_4MB:
   1168  1.74.6.3    martin 					caitype = CAI_L2_STLB3;
   1169  1.74.6.3    martin 					break;
   1170  1.74.6.3    martin 				default:
   1171  1.74.6.3    martin 					aprint_error_dev(ci->ci_dev,
   1172  1.74.6.3    martin 					    "error: unknown L2 STLB size (%d)\n",
   1173  1.74.6.3    martin 					    pgsize);
   1174  1.74.6.3    martin 					caitype = CAI_DTLB;
   1175  1.74.6.3    martin 					break;
   1176  1.74.6.3    martin 				}
   1177  1.74.6.3    martin 			} else
   1178  1.74.6.3    martin 				caitype = -1;
   1179  1.74.6.3    martin 			break;
   1180  1.74.6.3    martin 		case 3:
   1181  1.74.6.3    martin 			/* XXX need work for L3 TLB */
   1182  1.74.6.3    martin 			caitype = CAI_L3CACHE;
   1183  1.74.6.3    martin 			break;
   1184  1.74.6.3    martin 		default:
   1185  1.74.6.3    martin 			caitype = -1;
   1186  1.74.6.3    martin 			break;
   1187  1.74.6.3    martin 		}
   1188  1.74.6.3    martin 		if (caitype == -1) {
   1189  1.74.6.3    martin 			aprint_error_dev(ci->ci_dev,
   1190  1.74.6.3    martin 			    "error: unknown TLB level&type (%d & %d)\n",
   1191  1.74.6.3    martin 			    level, type);
   1192  1.74.6.3    martin 			continue;
   1193  1.74.6.3    martin 		}
   1194  1.74.6.3    martin 		switch (pgsize) {
   1195  1.74.6.3    martin 		case CPUID_DATP_PGSIZE_4KB:
   1196  1.74.6.3    martin 			linesize = 4 * 1024;
   1197  1.74.6.3    martin 			break;
   1198  1.74.6.3    martin 		case CPUID_DATP_PGSIZE_2MB:
   1199  1.74.6.3    martin 			linesize = 2 * 1024 * 1024;
   1200  1.74.6.3    martin 			break;
   1201  1.74.6.3    martin 		case CPUID_DATP_PGSIZE_4MB:
   1202  1.74.6.3    martin 			linesize = 4 * 1024 * 1024;
   1203  1.74.6.3    martin 			break;
   1204  1.74.6.3    martin 		case CPUID_DATP_PGSIZE_1GB:
   1205  1.74.6.3    martin 			linesize = 1024 * 1024 * 1024;
   1206  1.74.6.3    martin 			break;
   1207  1.74.6.3    martin 		case CPUID_DATP_PGSIZE_2MB | CPUID_DATP_PGSIZE_4MB:
   1208  1.74.6.3    martin 			aprint_error_dev(ci->ci_dev,
   1209  1.74.6.3    martin 			    "WARINING: Currently 2M/4M info can't print correctly\n");
   1210  1.74.6.3    martin 			linesize = 4 * 1024 * 1024;
   1211  1.74.6.3    martin 			break;
   1212  1.74.6.3    martin 		default:
   1213  1.74.6.3    martin 			aprint_error_dev(ci->ci_dev,
   1214  1.74.6.3    martin 			    "error: Unknown size combination\n");
   1215  1.74.6.3    martin 			linesize = 4 * 1024;
   1216  1.74.6.3    martin 			break;
   1217  1.74.6.3    martin 		}
   1218  1.74.6.3    martin 		ways = __SHIFTOUT(descs[1], CPUID_DATP_WAYS);
   1219  1.74.6.3    martin 		sets = descs[2];
   1220  1.74.6.3    martin 		full = descs[3] & CPUID_DATP_FULLASSOC;
   1221  1.74.6.3    martin 		ci->ci_cinfo[caitype].cai_totalsize
   1222  1.74.6.3    martin 		    = ways * sets; /* entries */
   1223  1.74.6.3    martin 		ci->ci_cinfo[caitype].cai_associativity
   1224  1.74.6.3    martin 		    = full ? 0xff : ways;
   1225  1.74.6.3    martin 		ci->ci_cinfo[caitype].cai_linesize = linesize; /* pg size */
   1226  1.74.6.3    martin 	}
   1227      1.52   msaitoh }
   1228      1.52   msaitoh 
   1229      1.44   msaitoh static const struct x86_cache_info amd_cpuid_l2cache_assoc_info[] =
   1230      1.44   msaitoh     AMD_L2CACHE_INFO;
   1231      1.44   msaitoh 
   1232      1.44   msaitoh static const struct x86_cache_info amd_cpuid_l3cache_assoc_info[] =
   1233      1.44   msaitoh     AMD_L3CACHE_INFO;
   1234      1.44   msaitoh 
   1235      1.44   msaitoh static void
   1236      1.44   msaitoh amd_cpu_cacheinfo(struct cpu_info *ci)
   1237      1.44   msaitoh {
   1238      1.44   msaitoh 	const struct x86_cache_info *cp;
   1239      1.44   msaitoh 	struct x86_cache_info *cai;
   1240      1.44   msaitoh 	u_int descs[4];
   1241      1.44   msaitoh 	u_int lfunc;
   1242       1.1        ad 
   1243       1.1        ad 	/*
   1244      1.44   msaitoh 	 * K5 model 0 has none of this info.
   1245       1.1        ad 	 */
   1246      1.44   msaitoh 	if (ci->ci_family == 5 && ci->ci_model == 0)
   1247      1.44   msaitoh 		return;
   1248       1.1        ad 
   1249      1.44   msaitoh 	/*
   1250      1.44   msaitoh 	 * Determine the largest extended function value.
   1251      1.44   msaitoh 	 */
   1252      1.44   msaitoh 	x86_cpuid(0x80000000, descs);
   1253      1.44   msaitoh 	lfunc = descs[0];
   1254       1.1        ad 
   1255      1.44   msaitoh 	/*
   1256      1.44   msaitoh 	 * Determine L1 cache/TLB info.
   1257      1.44   msaitoh 	 */
   1258      1.44   msaitoh 	if (lfunc < 0x80000005) {
   1259      1.44   msaitoh 		/* No L1 cache info available. */
   1260      1.44   msaitoh 		return;
   1261       1.1        ad 	}
   1262       1.1        ad 
   1263      1.44   msaitoh 	x86_cpuid(0x80000005, descs);
   1264       1.1        ad 
   1265       1.1        ad 	/*
   1266      1.44   msaitoh 	 * K6-III and higher have large page TLBs.
   1267       1.1        ad 	 */
   1268      1.44   msaitoh 	if ((ci->ci_family == 5 && ci->ci_model >= 9) || ci->ci_family >= 6) {
   1269      1.44   msaitoh 		cai = &ci->ci_cinfo[CAI_ITLB2];
   1270      1.44   msaitoh 		cai->cai_totalsize = AMD_L1_EAX_ITLB_ENTRIES(descs[0]);
   1271      1.44   msaitoh 		cai->cai_associativity = AMD_L1_EAX_ITLB_ASSOC(descs[0]);
   1272      1.44   msaitoh 		cai->cai_linesize = largepagesize;
   1273      1.44   msaitoh 
   1274      1.44   msaitoh 		cai = &ci->ci_cinfo[CAI_DTLB2];
   1275      1.44   msaitoh 		cai->cai_totalsize = AMD_L1_EAX_DTLB_ENTRIES(descs[0]);
   1276      1.44   msaitoh 		cai->cai_associativity = AMD_L1_EAX_DTLB_ASSOC(descs[0]);
   1277      1.44   msaitoh 		cai->cai_linesize = largepagesize;
   1278       1.1        ad 	}
   1279      1.38       dsl 
   1280      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_ITLB];
   1281      1.44   msaitoh 	cai->cai_totalsize = AMD_L1_EBX_ITLB_ENTRIES(descs[1]);
   1282      1.44   msaitoh 	cai->cai_associativity = AMD_L1_EBX_ITLB_ASSOC(descs[1]);
   1283      1.44   msaitoh 	cai->cai_linesize = (4 * 1024);
   1284      1.38       dsl 
   1285      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_DTLB];
   1286      1.44   msaitoh 	cai->cai_totalsize = AMD_L1_EBX_DTLB_ENTRIES(descs[1]);
   1287      1.44   msaitoh 	cai->cai_associativity = AMD_L1_EBX_DTLB_ASSOC(descs[1]);
   1288      1.44   msaitoh 	cai->cai_linesize = (4 * 1024);
   1289      1.38       dsl 
   1290      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_DCACHE];
   1291      1.44   msaitoh 	cai->cai_totalsize = AMD_L1_ECX_DC_SIZE(descs[2]);
   1292      1.44   msaitoh 	cai->cai_associativity = AMD_L1_ECX_DC_ASSOC(descs[2]);
   1293      1.44   msaitoh 	cai->cai_linesize = AMD_L1_ECX_DC_LS(descs[2]);
   1294       1.1        ad 
   1295      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_ICACHE];
   1296      1.44   msaitoh 	cai->cai_totalsize = AMD_L1_EDX_IC_SIZE(descs[3]);
   1297      1.44   msaitoh 	cai->cai_associativity = AMD_L1_EDX_IC_ASSOC(descs[3]);
   1298      1.44   msaitoh 	cai->cai_linesize = AMD_L1_EDX_IC_LS(descs[3]);
   1299       1.1        ad 
   1300      1.44   msaitoh 	/*
   1301      1.44   msaitoh 	 * Determine L2 cache/TLB info.
   1302      1.44   msaitoh 	 */
   1303      1.44   msaitoh 	if (lfunc < 0x80000006) {
   1304      1.44   msaitoh 		/* No L2 cache info available. */
   1305       1.1        ad 		return;
   1306      1.44   msaitoh 	}
   1307      1.44   msaitoh 
   1308      1.44   msaitoh 	x86_cpuid(0x80000006, descs);
   1309       1.1        ad 
   1310      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_L2_ITLB];
   1311      1.44   msaitoh 	cai->cai_totalsize = AMD_L2_EBX_IUTLB_ENTRIES(descs[1]);
   1312      1.44   msaitoh 	cai->cai_associativity = AMD_L2_EBX_IUTLB_ASSOC(descs[1]);
   1313      1.44   msaitoh 	cai->cai_linesize = (4 * 1024);
   1314      1.44   msaitoh 	cp = cache_info_lookup(amd_cpuid_l2cache_assoc_info,
   1315      1.44   msaitoh 	    cai->cai_associativity);
   1316      1.44   msaitoh 	if (cp != NULL)
   1317      1.44   msaitoh 		cai->cai_associativity = cp->cai_associativity;
   1318      1.44   msaitoh 	else
   1319      1.44   msaitoh 		cai->cai_associativity = 0;	/* XXX Unknown/reserved */
   1320       1.1        ad 
   1321      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_L2_ITLB2];
   1322      1.44   msaitoh 	cai->cai_totalsize = AMD_L2_EAX_IUTLB_ENTRIES(descs[0]);
   1323      1.44   msaitoh 	cai->cai_associativity = AMD_L2_EAX_IUTLB_ASSOC(descs[0]);
   1324      1.44   msaitoh 	cai->cai_linesize = largepagesize;
   1325      1.44   msaitoh 	cp = cache_info_lookup(amd_cpuid_l2cache_assoc_info,
   1326      1.44   msaitoh 	    cai->cai_associativity);
   1327      1.44   msaitoh 	if (cp != NULL)
   1328      1.44   msaitoh 		cai->cai_associativity = cp->cai_associativity;
   1329      1.44   msaitoh 	else
   1330      1.44   msaitoh 		cai->cai_associativity = 0;	/* XXX Unknown/reserved */
   1331       1.1        ad 
   1332      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_L2_DTLB];
   1333      1.44   msaitoh 	cai->cai_totalsize = AMD_L2_EBX_DTLB_ENTRIES(descs[1]);
   1334      1.44   msaitoh 	cai->cai_associativity = AMD_L2_EBX_DTLB_ASSOC(descs[1]);
   1335      1.44   msaitoh 	cai->cai_linesize = (4 * 1024);
   1336      1.44   msaitoh 	cp = cache_info_lookup(amd_cpuid_l2cache_assoc_info,
   1337      1.44   msaitoh 	    cai->cai_associativity);
   1338      1.44   msaitoh 	if (cp != NULL)
   1339      1.44   msaitoh 		cai->cai_associativity = cp->cai_associativity;
   1340      1.44   msaitoh 	else
   1341      1.44   msaitoh 		cai->cai_associativity = 0;	/* XXX Unknown/reserved */
   1342       1.1        ad 
   1343      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_L2_DTLB2];
   1344      1.44   msaitoh 	cai->cai_totalsize = AMD_L2_EAX_DTLB_ENTRIES(descs[0]);
   1345      1.44   msaitoh 	cai->cai_associativity = AMD_L2_EAX_DTLB_ASSOC(descs[0]);
   1346      1.44   msaitoh 	cai->cai_linesize = largepagesize;
   1347      1.44   msaitoh 	cp = cache_info_lookup(amd_cpuid_l2cache_assoc_info,
   1348      1.44   msaitoh 	    cai->cai_associativity);
   1349      1.44   msaitoh 	if (cp != NULL)
   1350      1.44   msaitoh 		cai->cai_associativity = cp->cai_associativity;
   1351      1.44   msaitoh 	else
   1352      1.44   msaitoh 		cai->cai_associativity = 0;	/* XXX Unknown/reserved */
   1353       1.1        ad 
   1354      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_L2CACHE];
   1355      1.44   msaitoh 	cai->cai_totalsize = AMD_L2_ECX_C_SIZE(descs[2]);
   1356      1.44   msaitoh 	cai->cai_associativity = AMD_L2_ECX_C_ASSOC(descs[2]);
   1357      1.44   msaitoh 	cai->cai_linesize = AMD_L2_ECX_C_LS(descs[2]);
   1358       1.1        ad 
   1359      1.44   msaitoh 	cp = cache_info_lookup(amd_cpuid_l2cache_assoc_info,
   1360      1.44   msaitoh 	    cai->cai_associativity);
   1361      1.44   msaitoh 	if (cp != NULL)
   1362      1.44   msaitoh 		cai->cai_associativity = cp->cai_associativity;
   1363      1.44   msaitoh 	else
   1364      1.44   msaitoh 		cai->cai_associativity = 0;	/* XXX Unknown/reserved */
   1365       1.1        ad 
   1366      1.44   msaitoh 	/*
   1367      1.44   msaitoh 	 * Determine L3 cache info on AMD Family 10h and newer processors
   1368      1.44   msaitoh 	 */
   1369      1.44   msaitoh 	if (ci->ci_family >= 0x10) {
   1370      1.44   msaitoh 		cai = &ci->ci_cinfo[CAI_L3CACHE];
   1371      1.44   msaitoh 		cai->cai_totalsize = AMD_L3_EDX_C_SIZE(descs[3]);
   1372      1.44   msaitoh 		cai->cai_associativity = AMD_L3_EDX_C_ASSOC(descs[3]);
   1373      1.44   msaitoh 		cai->cai_linesize = AMD_L3_EDX_C_LS(descs[3]);
   1374       1.1        ad 
   1375      1.44   msaitoh 		cp = cache_info_lookup(amd_cpuid_l3cache_assoc_info,
   1376      1.44   msaitoh 		    cai->cai_associativity);
   1377      1.44   msaitoh 		if (cp != NULL)
   1378      1.44   msaitoh 			cai->cai_associativity = cp->cai_associativity;
   1379      1.44   msaitoh 		else
   1380      1.44   msaitoh 			cai->cai_associativity = 0;	/* XXX Unkn/Rsvd */
   1381      1.44   msaitoh 	}
   1382       1.1        ad 
   1383       1.1        ad 	/*
   1384      1.44   msaitoh 	 * Determine 1GB TLB info.
   1385       1.1        ad 	 */
   1386      1.44   msaitoh 	if (lfunc < 0x80000019) {
   1387      1.44   msaitoh 		/* No 1GB TLB info available. */
   1388      1.44   msaitoh 		return;
   1389       1.1        ad 	}
   1390      1.44   msaitoh 
   1391      1.44   msaitoh 	x86_cpuid(0x80000019, descs);
   1392      1.44   msaitoh 
   1393      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_L1_1GBITLB];
   1394      1.44   msaitoh 	cai->cai_totalsize = AMD_L1_1GB_EAX_IUTLB_ENTRIES(descs[0]);
   1395      1.44   msaitoh 	cai->cai_associativity = AMD_L1_1GB_EAX_IUTLB_ASSOC(descs[0]);
   1396      1.44   msaitoh 	cai->cai_linesize = (1024 * 1024 * 1024);
   1397      1.44   msaitoh 	cp = cache_info_lookup(amd_cpuid_l2cache_assoc_info,
   1398      1.44   msaitoh 	    cai->cai_associativity);
   1399      1.44   msaitoh 	if (cp != NULL)
   1400      1.44   msaitoh 		cai->cai_associativity = cp->cai_associativity;
   1401      1.44   msaitoh 	else
   1402      1.44   msaitoh 		cai->cai_associativity = 0;	/* XXX Unknown/reserved */
   1403      1.44   msaitoh 
   1404      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_L1_1GBDTLB];
   1405      1.44   msaitoh 	cai->cai_totalsize = AMD_L1_1GB_EAX_DTLB_ENTRIES(descs[0]);
   1406      1.44   msaitoh 	cai->cai_associativity = AMD_L1_1GB_EAX_DTLB_ASSOC(descs[0]);
   1407      1.44   msaitoh 	cai->cai_linesize = (1024 * 1024 * 1024);
   1408      1.44   msaitoh 	cp = cache_info_lookup(amd_cpuid_l2cache_assoc_info,
   1409      1.44   msaitoh 	    cai->cai_associativity);
   1410      1.44   msaitoh 	if (cp != NULL)
   1411      1.44   msaitoh 		cai->cai_associativity = cp->cai_associativity;
   1412      1.44   msaitoh 	else
   1413      1.44   msaitoh 		cai->cai_associativity = 0;	/* XXX Unknown/reserved */
   1414      1.44   msaitoh 
   1415      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_L2_1GBITLB];
   1416      1.44   msaitoh 	cai->cai_totalsize = AMD_L2_1GB_EBX_IUTLB_ENTRIES(descs[1]);
   1417      1.44   msaitoh 	cai->cai_associativity = AMD_L2_1GB_EBX_IUTLB_ASSOC(descs[1]);
   1418      1.44   msaitoh 	cai->cai_linesize = (1024 * 1024 * 1024);
   1419      1.44   msaitoh 	cp = cache_info_lookup(amd_cpuid_l2cache_assoc_info,
   1420      1.44   msaitoh 	    cai->cai_associativity);
   1421      1.44   msaitoh 	if (cp != NULL)
   1422      1.44   msaitoh 		cai->cai_associativity = cp->cai_associativity;
   1423      1.44   msaitoh 	else
   1424      1.44   msaitoh 		cai->cai_associativity = 0;	/* XXX Unknown/reserved */
   1425      1.44   msaitoh 
   1426      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_L2_1GBDTLB];
   1427      1.44   msaitoh 	cai->cai_totalsize = AMD_L2_1GB_EBX_DUTLB_ENTRIES(descs[1]);
   1428      1.44   msaitoh 	cai->cai_associativity = AMD_L2_1GB_EBX_DUTLB_ASSOC(descs[1]);
   1429      1.44   msaitoh 	cai->cai_linesize = (1024 * 1024 * 1024);
   1430      1.44   msaitoh 	cp = cache_info_lookup(amd_cpuid_l2cache_assoc_info,
   1431      1.44   msaitoh 	    cai->cai_associativity);
   1432      1.44   msaitoh 	if (cp != NULL)
   1433      1.44   msaitoh 		cai->cai_associativity = cp->cai_associativity;
   1434      1.44   msaitoh 	else
   1435      1.44   msaitoh 		cai->cai_associativity = 0;	/* XXX Unknown/reserved */
   1436       1.1        ad }
   1437       1.1        ad 
   1438       1.1        ad static void
   1439      1.44   msaitoh via_cpu_cacheinfo(struct cpu_info *ci)
   1440       1.1        ad {
   1441      1.44   msaitoh 	struct x86_cache_info *cai;
   1442      1.44   msaitoh 	int stepping;
   1443      1.44   msaitoh 	u_int descs[4];
   1444      1.44   msaitoh 	u_int lfunc;
   1445      1.44   msaitoh 
   1446      1.50   msaitoh 	stepping = CPUID_TO_STEPPING(ci->ci_signature);
   1447       1.1        ad 
   1448      1.44   msaitoh 	/*
   1449      1.44   msaitoh 	 * Determine the largest extended function value.
   1450      1.44   msaitoh 	 */
   1451       1.1        ad 	x86_cpuid(0x80000000, descs);
   1452      1.44   msaitoh 	lfunc = descs[0];
   1453       1.1        ad 
   1454       1.1        ad 	/*
   1455      1.44   msaitoh 	 * Determine L1 cache/TLB info.
   1456       1.1        ad 	 */
   1457      1.44   msaitoh 	if (lfunc < 0x80000005) {
   1458      1.44   msaitoh 		/* No L1 cache info available. */
   1459      1.44   msaitoh 		return;
   1460       1.1        ad 	}
   1461       1.1        ad 
   1462      1.44   msaitoh 	x86_cpuid(0x80000005, descs);
   1463      1.44   msaitoh 
   1464      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_ITLB];
   1465      1.44   msaitoh 	cai->cai_totalsize = VIA_L1_EBX_ITLB_ENTRIES(descs[1]);
   1466      1.44   msaitoh 	cai->cai_associativity = VIA_L1_EBX_ITLB_ASSOC(descs[1]);
   1467      1.44   msaitoh 	cai->cai_linesize = (4 * 1024);
   1468      1.44   msaitoh 
   1469      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_DTLB];
   1470      1.44   msaitoh 	cai->cai_totalsize = VIA_L1_EBX_DTLB_ENTRIES(descs[1]);
   1471      1.44   msaitoh 	cai->cai_associativity = VIA_L1_EBX_DTLB_ASSOC(descs[1]);
   1472      1.44   msaitoh 	cai->cai_linesize = (4 * 1024);
   1473      1.44   msaitoh 
   1474      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_DCACHE];
   1475      1.44   msaitoh 	cai->cai_totalsize = VIA_L1_ECX_DC_SIZE(descs[2]);
   1476      1.44   msaitoh 	cai->cai_associativity = VIA_L1_ECX_DC_ASSOC(descs[2]);
   1477      1.44   msaitoh 	cai->cai_linesize = VIA_L1_EDX_IC_LS(descs[2]);
   1478      1.44   msaitoh 	if (ci->ci_model == 9 && stepping == 8) {
   1479      1.44   msaitoh 		/* Erratum: stepping 8 reports 4 when it should be 2 */
   1480      1.44   msaitoh 		cai->cai_associativity = 2;
   1481      1.44   msaitoh 	}
   1482      1.44   msaitoh 
   1483      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_ICACHE];
   1484      1.44   msaitoh 	cai->cai_totalsize = VIA_L1_EDX_IC_SIZE(descs[3]);
   1485      1.44   msaitoh 	cai->cai_associativity = VIA_L1_EDX_IC_ASSOC(descs[3]);
   1486      1.44   msaitoh 	cai->cai_linesize = VIA_L1_EDX_IC_LS(descs[3]);
   1487      1.44   msaitoh 	if (ci->ci_model == 9 && stepping == 8) {
   1488      1.44   msaitoh 		/* Erratum: stepping 8 reports 4 when it should be 2 */
   1489      1.44   msaitoh 		cai->cai_associativity = 2;
   1490      1.44   msaitoh 	}
   1491      1.44   msaitoh 
   1492      1.44   msaitoh 	/*
   1493      1.44   msaitoh 	 * Determine L2 cache/TLB info.
   1494      1.44   msaitoh 	 */
   1495      1.44   msaitoh 	if (lfunc < 0x80000006) {
   1496      1.44   msaitoh 		/* No L2 cache info available. */
   1497       1.1        ad 		return;
   1498      1.44   msaitoh 	}
   1499       1.1        ad 
   1500      1.44   msaitoh 	x86_cpuid(0x80000006, descs);
   1501       1.1        ad 
   1502      1.44   msaitoh 	cai = &ci->ci_cinfo[CAI_L2CACHE];
   1503      1.44   msaitoh 	if (ci->ci_model >= 9) {
   1504      1.44   msaitoh 		cai->cai_totalsize = VIA_L2N_ECX_C_SIZE(descs[2]);
   1505      1.44   msaitoh 		cai->cai_associativity = VIA_L2N_ECX_C_ASSOC(descs[2]);
   1506      1.44   msaitoh 		cai->cai_linesize = VIA_L2N_ECX_C_LS(descs[2]);
   1507      1.44   msaitoh 	} else {
   1508      1.44   msaitoh 		cai->cai_totalsize = VIA_L2_ECX_C_SIZE(descs[2]);
   1509      1.44   msaitoh 		cai->cai_associativity = VIA_L2_ECX_C_ASSOC(descs[2]);
   1510      1.44   msaitoh 		cai->cai_linesize = VIA_L2_ECX_C_LS(descs[2]);
   1511       1.1        ad 	}
   1512       1.1        ad }
   1513       1.1        ad 
   1514       1.1        ad static void
   1515       1.1        ad tmx86_get_longrun_status(u_int *frequency, u_int *voltage, u_int *percentage)
   1516       1.1        ad {
   1517       1.1        ad 	u_int descs[4];
   1518       1.1        ad 
   1519       1.1        ad 	x86_cpuid(0x80860007, descs);
   1520       1.1        ad 	*frequency = descs[0];
   1521       1.1        ad 	*voltage = descs[1];
   1522       1.1        ad 	*percentage = descs[2];
   1523       1.1        ad }
   1524       1.1        ad 
   1525       1.1        ad static void
   1526       1.1        ad transmeta_cpu_info(struct cpu_info *ci)
   1527       1.1        ad {
   1528       1.1        ad 	u_int descs[4], nreg;
   1529       1.1        ad 	u_int frequency, voltage, percentage;
   1530       1.1        ad 
   1531       1.1        ad 	x86_cpuid(0x80860000, descs);
   1532       1.1        ad 	nreg = descs[0];
   1533       1.1        ad 	if (nreg >= 0x80860001) {
   1534       1.1        ad 		x86_cpuid(0x80860001, descs);
   1535       1.1        ad 		aprint_verbose_dev(ci->ci_dev, "Processor revision %u.%u.%u.%u\n",
   1536       1.1        ad 		    (descs[1] >> 24) & 0xff,
   1537       1.1        ad 		    (descs[1] >> 16) & 0xff,
   1538       1.1        ad 		    (descs[1] >> 8) & 0xff,
   1539       1.1        ad 		    descs[1] & 0xff);
   1540       1.1        ad 	}
   1541       1.1        ad 	if (nreg >= 0x80860002) {
   1542       1.1        ad 		x86_cpuid(0x80860002, descs);
   1543       1.1        ad 		aprint_verbose_dev(ci->ci_dev, "Code Morphing Software Rev: %u.%u.%u-%u-%u\n",
   1544       1.1        ad 		    (descs[1] >> 24) & 0xff,
   1545       1.1        ad 		    (descs[1] >> 16) & 0xff,
   1546       1.1        ad 		    (descs[1] >> 8) & 0xff,
   1547       1.1        ad 		    descs[1] & 0xff,
   1548       1.1        ad 		    descs[2]);
   1549       1.1        ad 	}
   1550       1.1        ad 	if (nreg >= 0x80860006) {
   1551       1.1        ad 		union {
   1552       1.1        ad 			char text[65];
   1553       1.1        ad 			u_int descs[4][4];
   1554       1.1        ad 		} info;
   1555       1.1        ad 		int i;
   1556       1.1        ad 
   1557       1.1        ad 		for (i=0; i<4; i++) {
   1558       1.1        ad 			x86_cpuid(0x80860003 + i, info.descs[i]);
   1559       1.1        ad 		}
   1560       1.1        ad 		info.text[64] = '\0';
   1561       1.1        ad 		aprint_verbose_dev(ci->ci_dev, "%s\n", info.text);
   1562       1.1        ad 	}
   1563       1.1        ad 
   1564       1.1        ad 	if (nreg >= 0x80860007) {
   1565       1.1        ad 		tmx86_get_longrun_status(&frequency,
   1566       1.1        ad 		    &voltage, &percentage);
   1567       1.1        ad 		aprint_verbose_dev(ci->ci_dev, "LongRun <%dMHz %dmV %d%%>\n",
   1568       1.1        ad 		    frequency, voltage, percentage);
   1569       1.1        ad 	}
   1570       1.1        ad }
   1571       1.1        ad 
   1572      1.38       dsl static void
   1573      1.44   msaitoh cpu_probe_base_features(struct cpu_info *ci, const char *cpuname)
   1574      1.44   msaitoh {
   1575      1.44   msaitoh 	u_int descs[4];
   1576      1.52   msaitoh 	int i;
   1577      1.44   msaitoh 	uint32_t brand[12];
   1578      1.44   msaitoh 
   1579      1.44   msaitoh 	memset(ci, 0, sizeof(*ci));
   1580      1.44   msaitoh 	ci->ci_dev = cpuname;
   1581      1.44   msaitoh 
   1582      1.44   msaitoh 	ci->ci_cpu_type = x86_identify();
   1583      1.44   msaitoh 	if (ci->ci_cpu_type >= 0) {
   1584      1.44   msaitoh 		/* Old pre-cpuid instruction cpu */
   1585      1.44   msaitoh 		ci->ci_cpuid_level = -1;
   1586      1.44   msaitoh 		return;
   1587      1.44   msaitoh 	}
   1588      1.44   msaitoh 
   1589      1.51   msaitoh 	/*
   1590      1.51   msaitoh 	 * This CPU supports cpuid instruction, so we can call x86_cpuid()
   1591      1.51   msaitoh 	 * function.
   1592      1.51   msaitoh 	 */
   1593      1.51   msaitoh 
   1594      1.51   msaitoh 	/*
   1595      1.51   msaitoh 	 * Fn0000_0000:
   1596      1.51   msaitoh 	 * - Save cpuid max level.
   1597      1.51   msaitoh 	 * - Save vendor string.
   1598      1.51   msaitoh 	 */
   1599      1.44   msaitoh 	x86_cpuid(0, descs);
   1600      1.44   msaitoh 	ci->ci_cpuid_level = descs[0];
   1601      1.51   msaitoh 	/* Save vendor string */
   1602      1.44   msaitoh 	ci->ci_vendor[0] = descs[1];
   1603      1.44   msaitoh 	ci->ci_vendor[2] = descs[2];
   1604      1.44   msaitoh 	ci->ci_vendor[1] = descs[3];
   1605      1.44   msaitoh 	ci->ci_vendor[3] = 0;
   1606      1.54   msaitoh 
   1607      1.51   msaitoh 	/*
   1608      1.52   msaitoh 	 * Fn8000_0000:
   1609      1.52   msaitoh 	 * - Get cpuid extended function's max level.
   1610      1.52   msaitoh 	 */
   1611      1.52   msaitoh 	x86_cpuid(0x80000000, descs);
   1612      1.62   msaitoh 	if (descs[0] >= 0x80000000)
   1613      1.52   msaitoh 		ci->ci_cpuid_extlevel = descs[0];
   1614      1.62   msaitoh 	else {
   1615      1.52   msaitoh 		/* Set lower value than 0x80000000 */
   1616      1.52   msaitoh 		ci->ci_cpuid_extlevel = 0;
   1617      1.52   msaitoh 	}
   1618      1.52   msaitoh 
   1619      1.52   msaitoh 	/*
   1620      1.51   msaitoh 	 * Fn8000_000[2-4]:
   1621      1.51   msaitoh 	 * - Save brand string.
   1622      1.51   msaitoh 	 */
   1623      1.52   msaitoh 	if (ci->ci_cpuid_extlevel >= 0x80000004) {
   1624      1.44   msaitoh 		x86_cpuid(0x80000002, brand);
   1625      1.44   msaitoh 		x86_cpuid(0x80000003, brand + 4);
   1626      1.44   msaitoh 		x86_cpuid(0x80000004, brand + 8);
   1627      1.44   msaitoh 		for (i = 0; i < 48; i++)
   1628      1.44   msaitoh 			if (((char *) brand)[i] != ' ')
   1629      1.44   msaitoh 				break;
   1630      1.44   msaitoh 		memcpy(cpu_brand_string, ((char *) brand) + i, 48 - i);
   1631      1.44   msaitoh 	}
   1632      1.44   msaitoh 
   1633      1.44   msaitoh 	if (ci->ci_cpuid_level < 1)
   1634      1.44   msaitoh 		return;
   1635      1.44   msaitoh 
   1636      1.51   msaitoh 	/*
   1637      1.51   msaitoh 	 * Fn0000_0001:
   1638      1.51   msaitoh 	 * - Get CPU family, model and stepping (from eax).
   1639      1.51   msaitoh 	 * - Initial local APIC ID and brand ID (from ebx)
   1640      1.52   msaitoh 	 * - CPUID2 (from ecx)
   1641      1.52   msaitoh 	 * - CPUID (from edx)
   1642      1.51   msaitoh 	 */
   1643      1.44   msaitoh 	x86_cpuid(1, descs);
   1644      1.44   msaitoh 	ci->ci_signature = descs[0];
   1645      1.44   msaitoh 
   1646      1.44   msaitoh 	/* Extract full family/model values */
   1647      1.50   msaitoh 	ci->ci_family = CPUID_TO_FAMILY(ci->ci_signature);
   1648      1.50   msaitoh 	ci->ci_model = CPUID_TO_MODEL(ci->ci_signature);
   1649      1.44   msaitoh 
   1650      1.44   msaitoh 	/* Brand is low order 8 bits of ebx */
   1651  1.74.6.1    martin 	ci->ci_brand_id = __SHIFTOUT(descs[1], CPUID_BRAND_INDEX);
   1652      1.51   msaitoh 	/* Initial local APIC ID */
   1653  1.74.6.1    martin 	ci->ci_initapicid = __SHIFTOUT(descs[1], CPUID_LOCAL_APIC_ID);
   1654      1.44   msaitoh 
   1655      1.44   msaitoh 	ci->ci_feat_val[1] = descs[2];
   1656      1.44   msaitoh 	ci->ci_feat_val[0] = descs[3];
   1657      1.44   msaitoh 
   1658      1.44   msaitoh 	if (ci->ci_cpuid_level < 3)
   1659      1.44   msaitoh 		return;
   1660      1.44   msaitoh 
   1661      1.44   msaitoh 	/*
   1662      1.44   msaitoh 	 * If the processor serial number misfeature is present and supported,
   1663      1.44   msaitoh 	 * extract it here.
   1664      1.44   msaitoh 	 */
   1665      1.44   msaitoh 	if ((ci->ci_feat_val[0] & CPUID_PN) != 0) {
   1666      1.44   msaitoh 		ci->ci_cpu_serial[0] = ci->ci_signature;
   1667      1.44   msaitoh 		x86_cpuid(3, descs);
   1668      1.44   msaitoh 		ci->ci_cpu_serial[2] = descs[2];
   1669      1.44   msaitoh 		ci->ci_cpu_serial[1] = descs[3];
   1670      1.44   msaitoh 	}
   1671      1.44   msaitoh 
   1672      1.71   msaitoh 	if (ci->ci_cpuid_level < 0x7)
   1673      1.71   msaitoh 		return;
   1674      1.71   msaitoh 
   1675      1.71   msaitoh 	x86_cpuid(7, descs);
   1676      1.71   msaitoh 	ci->ci_feat_val[5] = descs[1];
   1677      1.71   msaitoh 	ci->ci_feat_val[6] = descs[2];
   1678  1.74.6.4    martin 	ci->ci_feat_val[7] = descs[3];
   1679      1.71   msaitoh 
   1680      1.44   msaitoh 	if (ci->ci_cpuid_level < 0xd)
   1681      1.44   msaitoh 		return;
   1682      1.44   msaitoh 
   1683      1.44   msaitoh 	/* Get support XCR0 bits */
   1684      1.44   msaitoh 	x86_cpuid2(0xd, 0, descs);
   1685  1.74.6.4    martin 	ci->ci_feat_val[8] = descs[0];	/* Actually 64 bits */
   1686      1.44   msaitoh 	ci->ci_cur_xsave = descs[1];
   1687      1.44   msaitoh 	ci->ci_max_xsave = descs[2];
   1688      1.44   msaitoh 
   1689      1.44   msaitoh 	/* Additional flags (eg xsaveopt support) */
   1690      1.44   msaitoh 	x86_cpuid2(0xd, 1, descs);
   1691  1.74.6.4    martin 	ci->ci_feat_val[9] = descs[0];	 /* Actually 64 bits */
   1692      1.44   msaitoh }
   1693      1.44   msaitoh 
   1694      1.44   msaitoh static void
   1695      1.60   msaitoh cpu_probe_hv_features(struct cpu_info *ci, const char *cpuname)
   1696      1.60   msaitoh {
   1697      1.60   msaitoh 	uint32_t descs[4];
   1698      1.60   msaitoh 	char hv_sig[13];
   1699      1.60   msaitoh 	char *p;
   1700      1.60   msaitoh 	const char *hv_name;
   1701      1.60   msaitoh 	int i;
   1702      1.60   msaitoh 
   1703      1.60   msaitoh 	/*
   1704      1.60   msaitoh 	 * [RFC] CPUID usage for interaction between Hypervisors and Linux.
   1705      1.60   msaitoh 	 * http://lkml.org/lkml/2008/10/1/246
   1706      1.60   msaitoh 	 *
   1707      1.60   msaitoh 	 * KB1009458: Mechanisms to determine if software is running in
   1708      1.60   msaitoh 	 * a VMware virtual machine
   1709      1.60   msaitoh 	 * http://kb.vmware.com/kb/1009458
   1710      1.60   msaitoh 	 */
   1711      1.60   msaitoh 	if ((ci->ci_feat_val[1] & CPUID2_RAZ) != 0) {
   1712      1.60   msaitoh 		x86_cpuid(0x40000000, descs);
   1713      1.60   msaitoh 		for (i = 1, p = hv_sig; i < 4; i++, p += sizeof(descs) / 4)
   1714      1.60   msaitoh 			memcpy(p, &descs[i], sizeof(descs[i]));
   1715      1.60   msaitoh 		*p = '\0';
   1716      1.60   msaitoh 		/*
   1717      1.60   msaitoh 		 * HV vendor	ID string
   1718      1.60   msaitoh 		 * ------------+--------------
   1719      1.60   msaitoh 		 * KVM		"KVMKVMKVM"
   1720      1.60   msaitoh 		 * Microsoft	"Microsoft Hv"
   1721      1.60   msaitoh 		 * VMware	"VMwareVMware"
   1722      1.60   msaitoh 		 * Xen		"XenVMMXenVMM"
   1723      1.60   msaitoh 		 */
   1724      1.60   msaitoh 		if (strncmp(hv_sig, "KVMKVMKVM", 9) == 0)
   1725      1.60   msaitoh 			hv_name = "KVM";
   1726      1.60   msaitoh 		else if (strncmp(hv_sig, "Microsoft Hv", 12) == 0)
   1727      1.61     skrll 			hv_name = "Hyper-V";
   1728      1.60   msaitoh 		else if (strncmp(hv_sig, "VMwareVMware", 12) == 0)
   1729      1.60   msaitoh 			hv_name = "VMware";
   1730      1.60   msaitoh 		else if (strncmp(hv_sig, "XenVMMXenVMM", 12) == 0)
   1731      1.60   msaitoh 			hv_name = "Xen";
   1732      1.60   msaitoh 		else
   1733      1.60   msaitoh 			hv_name = "unknown";
   1734      1.60   msaitoh 
   1735      1.60   msaitoh 		printf("%s: Running on hypervisor: %s\n", cpuname, hv_name);
   1736      1.60   msaitoh 	}
   1737      1.60   msaitoh }
   1738      1.60   msaitoh 
   1739      1.60   msaitoh static void
   1740      1.44   msaitoh cpu_probe_features(struct cpu_info *ci)
   1741      1.44   msaitoh {
   1742      1.44   msaitoh 	const struct cpu_cpuid_nameclass *cpup = NULL;
   1743      1.44   msaitoh 	unsigned int i;
   1744      1.44   msaitoh 
   1745      1.44   msaitoh 	if (ci->ci_cpuid_level < 1)
   1746      1.44   msaitoh 		return;
   1747      1.44   msaitoh 
   1748      1.44   msaitoh 	for (i = 0; i < __arraycount(i386_cpuid_cpus); i++) {
   1749      1.44   msaitoh 		if (!strncmp((char *)ci->ci_vendor,
   1750      1.44   msaitoh 		    i386_cpuid_cpus[i].cpu_id, 12)) {
   1751      1.44   msaitoh 			cpup = &i386_cpuid_cpus[i];
   1752      1.44   msaitoh 			break;
   1753      1.44   msaitoh 		}
   1754      1.44   msaitoh 	}
   1755      1.44   msaitoh 
   1756      1.44   msaitoh 	if (cpup == NULL)
   1757      1.44   msaitoh 		return;
   1758      1.44   msaitoh 
   1759      1.44   msaitoh 	i = ci->ci_family - CPU_MINFAMILY;
   1760      1.44   msaitoh 
   1761      1.44   msaitoh 	if (i >= __arraycount(cpup->cpu_family))
   1762      1.44   msaitoh 		i = __arraycount(cpup->cpu_family) - 1;
   1763      1.44   msaitoh 
   1764      1.44   msaitoh 	if (cpup->cpu_family[i].cpu_probe == NULL)
   1765      1.44   msaitoh 		return;
   1766      1.44   msaitoh 
   1767      1.44   msaitoh 	(*cpup->cpu_family[i].cpu_probe)(ci);
   1768      1.44   msaitoh }
   1769      1.44   msaitoh 
   1770      1.44   msaitoh static void
   1771      1.38       dsl print_bits(const char *cpuname, const char *hdr, const char *fmt, uint32_t val)
   1772      1.38       dsl {
   1773      1.38       dsl 	char buf[32 * 16];
   1774      1.38       dsl 	char *bp;
   1775      1.38       dsl 
   1776      1.38       dsl #define	MAX_LINE_LEN	79	/* get from command arg or 'stty cols' ? */
   1777      1.38       dsl 
   1778      1.38       dsl 	if (val == 0 || fmt == NULL)
   1779      1.38       dsl 		return;
   1780      1.38       dsl 
   1781      1.38       dsl 	snprintb_m(buf, sizeof(buf), fmt, val,
   1782      1.38       dsl 	    MAX_LINE_LEN - strlen(cpuname) - 2 - strlen(hdr) - 1);
   1783      1.38       dsl 	bp = buf;
   1784      1.38       dsl 	while (*bp != '\0') {
   1785      1.38       dsl 		aprint_verbose("%s: %s %s\n", cpuname, hdr, bp);
   1786      1.38       dsl 		bp += strlen(bp) + 1;
   1787      1.38       dsl 	}
   1788      1.38       dsl }
   1789      1.38       dsl 
   1790      1.44   msaitoh static void
   1791  1.74.6.4    martin identifycpu_cpuids_intel_0x04(struct cpu_info *ci)
   1792       1.1        ad {
   1793      1.44   msaitoh 	u_int lp_max = 1;	/* logical processors per package */
   1794      1.44   msaitoh 	u_int smt_max;		/* smt per core */
   1795      1.44   msaitoh 	u_int core_max = 1;	/* core per package */
   1796      1.44   msaitoh 	u_int smt_bits, core_bits;
   1797      1.44   msaitoh 	uint32_t descs[4];
   1798      1.44   msaitoh 
   1799      1.44   msaitoh 	/*
   1800      1.44   msaitoh 	 * 253668.pdf 7.10.2
   1801      1.44   msaitoh 	 */
   1802      1.44   msaitoh 
   1803      1.44   msaitoh 	if ((ci->ci_feat_val[0] & CPUID_HTT) != 0) {
   1804      1.44   msaitoh 		x86_cpuid(1, descs);
   1805  1.74.6.1    martin 		lp_max = __SHIFTOUT(descs[1], CPUID_HTT_CORES);
   1806      1.44   msaitoh 	}
   1807  1.74.6.4    martin 	x86_cpuid2(4, 0, descs);
   1808  1.74.6.4    martin 	core_max = __SHIFTOUT(descs[0], CPUID_DCP_CORE_P_PKG) + 1;
   1809  1.74.6.4    martin 
   1810      1.44   msaitoh 	assert(lp_max >= core_max);
   1811      1.44   msaitoh 	smt_max = lp_max / core_max;
   1812      1.44   msaitoh 	smt_bits = ilog2(smt_max - 1) + 1;
   1813      1.44   msaitoh 	core_bits = ilog2(core_max - 1) + 1;
   1814  1.74.6.4    martin 
   1815  1.74.6.4    martin 	if (smt_bits + core_bits)
   1816      1.44   msaitoh 		ci->ci_packageid = ci->ci_initapicid >> (smt_bits + core_bits);
   1817  1.74.6.4    martin 
   1818  1.74.6.4    martin 	if (core_bits)
   1819  1.74.6.4    martin 		ci->ci_coreid = __SHIFTOUT(ci->ci_initapicid,
   1820  1.74.6.4    martin 		    __BITS(smt_bits, smt_bits + core_bits - 1));
   1821  1.74.6.4    martin 
   1822  1.74.6.4    martin 	if (smt_bits)
   1823  1.74.6.4    martin 		ci->ci_smtid = __SHIFTOUT(ci->ci_initapicid,
   1824  1.74.6.4    martin 		    __BITS((int)0, (int)(smt_bits - 1)));
   1825  1.74.6.4    martin }
   1826  1.74.6.4    martin 
   1827  1.74.6.4    martin static void
   1828  1.74.6.4    martin identifycpu_cpuids_intel_0x0b(struct cpu_info *ci)
   1829  1.74.6.4    martin {
   1830  1.74.6.4    martin 	const char *cpuname = ci->ci_dev;
   1831  1.74.6.4    martin 	u_int smt_bits, core_bits, core_shift = 0, pkg_shift = 0;
   1832  1.74.6.4    martin 	uint32_t descs[4];
   1833  1.74.6.4    martin 	int i;
   1834  1.74.6.4    martin 
   1835  1.74.6.4    martin 	x86_cpuid(0x0b, descs);
   1836  1.74.6.4    martin 	if (descs[1] == 0) {
   1837  1.74.6.4    martin 		identifycpu_cpuids_intel_0x04(ci);
   1838  1.74.6.4    martin 		return;
   1839  1.74.6.4    martin 	}
   1840  1.74.6.4    martin 
   1841  1.74.6.4    martin 	for (i = 0; ; i++) {
   1842  1.74.6.4    martin 		unsigned int shiftnum, lvltype;
   1843  1.74.6.4    martin 		x86_cpuid2(0x0b, i, descs);
   1844  1.74.6.4    martin 
   1845  1.74.6.4    martin 		/* On invalid level, (EAX and) EBX return 0 */
   1846  1.74.6.4    martin 		if (descs[1] == 0)
   1847  1.74.6.4    martin 			break;
   1848  1.74.6.4    martin 
   1849  1.74.6.4    martin 		shiftnum = __SHIFTOUT(descs[0], CPUID_TOP_SHIFTNUM);
   1850  1.74.6.4    martin 		lvltype = __SHIFTOUT(descs[2], CPUID_TOP_LVLTYPE);
   1851  1.74.6.4    martin 		switch (lvltype) {
   1852  1.74.6.4    martin 		case CPUID_TOP_LVLTYPE_SMT:
   1853  1.74.6.4    martin 			core_shift = shiftnum;
   1854  1.74.6.4    martin 			break;
   1855  1.74.6.4    martin 		case CPUID_TOP_LVLTYPE_CORE:
   1856  1.74.6.4    martin 			pkg_shift = shiftnum;
   1857  1.74.6.4    martin 			break;
   1858  1.74.6.4    martin 		case CPUID_TOP_LVLTYPE_INVAL:
   1859  1.74.6.4    martin 			aprint_verbose("%s: Invalid level type\n", cpuname);
   1860  1.74.6.4    martin 			break;
   1861  1.74.6.4    martin 		default:
   1862  1.74.6.4    martin 			aprint_verbose("%s: Unknown level type(%d) \n",
   1863  1.74.6.4    martin 			    cpuname, lvltype);
   1864  1.74.6.4    martin 			break;
   1865  1.74.6.4    martin 		}
   1866      1.44   msaitoh 	}
   1867  1.74.6.4    martin 
   1868  1.74.6.4    martin 	assert(pkg_shift >= core_shift);
   1869  1.74.6.4    martin 	smt_bits = core_shift;
   1870  1.74.6.4    martin 	core_bits = pkg_shift - core_shift;
   1871  1.74.6.4    martin 
   1872  1.74.6.4    martin 	ci->ci_packageid = ci->ci_initapicid >> pkg_shift;
   1873  1.74.6.4    martin 
   1874  1.74.6.4    martin 	if (core_bits)
   1875  1.74.6.4    martin 		ci->ci_coreid = __SHIFTOUT(ci->ci_initapicid,
   1876  1.74.6.4    martin 		    __BITS(core_shift, pkg_shift - 1));
   1877  1.74.6.4    martin 
   1878  1.74.6.4    martin 	if (smt_bits)
   1879  1.74.6.4    martin 		ci->ci_smtid = __SHIFTOUT(ci->ci_initapicid,
   1880  1.74.6.4    martin 		    __BITS((int)0, core_shift - 1));
   1881  1.74.6.4    martin }
   1882  1.74.6.4    martin 
   1883  1.74.6.4    martin static void
   1884  1.74.6.4    martin identifycpu_cpuids_intel(struct cpu_info *ci)
   1885  1.74.6.4    martin {
   1886  1.74.6.4    martin 	const char *cpuname = ci->ci_dev;
   1887  1.74.6.4    martin 
   1888  1.74.6.4    martin 	if (ci->ci_cpuid_level >= 0x0b)
   1889  1.74.6.4    martin 		identifycpu_cpuids_intel_0x0b(ci);
   1890  1.74.6.4    martin 	else if (ci->ci_cpuid_level >= 4)
   1891  1.74.6.4    martin 		identifycpu_cpuids_intel_0x04(ci);
   1892  1.74.6.4    martin 
   1893      1.44   msaitoh 	aprint_verbose("%s: Cluster/Package ID %u\n", cpuname,
   1894      1.44   msaitoh 	    ci->ci_packageid);
   1895  1.74.6.4    martin 	aprint_verbose("%s: Core ID %u\n", cpuname, ci->ci_coreid);
   1896  1.74.6.4    martin 	aprint_verbose("%s: SMT ID %u\n", cpuname, ci->ci_smtid);
   1897  1.74.6.4    martin }
   1898      1.44   msaitoh 
   1899  1.74.6.4    martin static void
   1900  1.74.6.4    martin identifycpu_cpuids(struct cpu_info *ci)
   1901  1.74.6.4    martin {
   1902  1.74.6.4    martin 	const char *cpuname = ci->ci_dev;
   1903      1.44   msaitoh 
   1904  1.74.6.4    martin 	aprint_verbose("%s: Initial APIC ID %u\n", cpuname, ci->ci_initapicid);
   1905  1.74.6.4    martin 	ci->ci_packageid = ci->ci_initapicid;
   1906  1.74.6.4    martin 	ci->ci_coreid = 0;
   1907  1.74.6.4    martin 	ci->ci_smtid = 0;
   1908  1.74.6.4    martin 
   1909  1.74.6.4    martin 	if (cpu_vendor == CPUVENDOR_INTEL)
   1910  1.74.6.4    martin 		identifycpu_cpuids_intel(ci);
   1911      1.44   msaitoh }
   1912      1.44   msaitoh 
   1913      1.44   msaitoh void
   1914      1.44   msaitoh identifycpu(int fd, const char *cpuname)
   1915      1.44   msaitoh {
   1916      1.44   msaitoh 	const char *name = "", *modifier, *vendorname, *brand = "";
   1917      1.44   msaitoh 	int class = CPUCLASS_386;
   1918      1.44   msaitoh 	unsigned int i;
   1919      1.44   msaitoh 	int modif, family;
   1920      1.44   msaitoh 	const struct cpu_cpuid_nameclass *cpup = NULL;
   1921      1.44   msaitoh 	const struct cpu_cpuid_family *cpufam;
   1922      1.44   msaitoh 	struct cpu_info *ci, cistore;
   1923      1.62   msaitoh 	u_int descs[4];
   1924      1.44   msaitoh 	size_t sz;
   1925      1.44   msaitoh 	struct cpu_ucode_version ucode;
   1926      1.44   msaitoh 	union {
   1927      1.44   msaitoh 		struct cpu_ucode_version_amd amd;
   1928      1.44   msaitoh 		struct cpu_ucode_version_intel1 intel1;
   1929      1.44   msaitoh 	} ucvers;
   1930      1.44   msaitoh 
   1931      1.44   msaitoh 	ci = &cistore;
   1932      1.44   msaitoh 	cpu_probe_base_features(ci, cpuname);
   1933      1.62   msaitoh 	aprint_verbose("%s: highest basic info %08x\n", cpuname,
   1934      1.62   msaitoh 	    ci->ci_cpuid_level);
   1935      1.62   msaitoh 	if (verbose) {
   1936      1.62   msaitoh 		int bf;
   1937      1.62   msaitoh 
   1938      1.62   msaitoh 		for (bf = 0; bf <= ci->ci_cpuid_level; bf++) {
   1939      1.62   msaitoh 			x86_cpuid(bf, descs);
   1940      1.62   msaitoh 			printf("%s: %08x: %08x %08x %08x %08x\n", cpuname,
   1941      1.62   msaitoh 			    bf, descs[0], descs[1], descs[2], descs[3]);
   1942      1.62   msaitoh 		}
   1943      1.62   msaitoh 	}
   1944      1.62   msaitoh 	if (ci->ci_cpuid_extlevel >=  0x80000000)
   1945      1.62   msaitoh 		aprint_verbose("%s: highest extended info %08x\n", cpuname,
   1946      1.62   msaitoh 		    ci->ci_cpuid_extlevel);
   1947      1.62   msaitoh 	if (verbose) {
   1948      1.62   msaitoh 		unsigned int ef;
   1949      1.62   msaitoh 
   1950      1.62   msaitoh 		for (ef = 0x80000000; ef <= ci->ci_cpuid_extlevel; ef++) {
   1951      1.62   msaitoh 			x86_cpuid(ef, descs);
   1952      1.62   msaitoh 			printf("%s: %08x: %08x %08x %08x %08x\n", cpuname,
   1953      1.62   msaitoh 			    ef, descs[0], descs[1], descs[2], descs[3]);
   1954      1.62   msaitoh 		}
   1955      1.62   msaitoh 	}
   1956      1.62   msaitoh 
   1957      1.60   msaitoh 	cpu_probe_hv_features(ci, cpuname);
   1958      1.44   msaitoh 	cpu_probe_features(ci);
   1959       1.1        ad 
   1960      1.34       dsl 	if (ci->ci_cpu_type >= 0) {
   1961      1.51   msaitoh 		/* Old pre-cpuid instruction cpu */
   1962      1.34       dsl 		if (ci->ci_cpu_type >= (int)__arraycount(i386_nocpuid_cpus))
   1963      1.34       dsl 			errx(1, "unknown cpu type %d", ci->ci_cpu_type);
   1964      1.34       dsl 		name = i386_nocpuid_cpus[ci->ci_cpu_type].cpu_name;
   1965      1.34       dsl 		cpu_vendor = i386_nocpuid_cpus[ci->ci_cpu_type].cpu_vendor;
   1966      1.34       dsl 		vendorname = i386_nocpuid_cpus[ci->ci_cpu_type].cpu_vendorname;
   1967      1.34       dsl 		class = i386_nocpuid_cpus[ci->ci_cpu_type].cpu_class;
   1968      1.34       dsl 		ci->ci_info = i386_nocpuid_cpus[ci->ci_cpu_type].cpu_info;
   1969       1.1        ad 		modifier = "";
   1970       1.1        ad 	} else {
   1971      1.51   msaitoh 		/* CPU which support cpuid instruction */
   1972       1.1        ad 		modif = (ci->ci_signature >> 12) & 0x3;
   1973      1.37       dsl 		family = ci->ci_family;
   1974       1.1        ad 		if (family < CPU_MINFAMILY)
   1975       1.1        ad 			errx(1, "identifycpu: strange family value");
   1976      1.37       dsl 		if (family > CPU_MAXFAMILY)
   1977      1.37       dsl 			family = CPU_MAXFAMILY;
   1978       1.1        ad 
   1979      1.36       dsl 		for (i = 0; i < __arraycount(i386_cpuid_cpus); i++) {
   1980       1.1        ad 			if (!strncmp((char *)ci->ci_vendor,
   1981       1.1        ad 			    i386_cpuid_cpus[i].cpu_id, 12)) {
   1982       1.1        ad 				cpup = &i386_cpuid_cpus[i];
   1983       1.1        ad 				break;
   1984       1.1        ad 			}
   1985       1.1        ad 		}
   1986       1.1        ad 
   1987       1.1        ad 		if (cpup == NULL) {
   1988       1.1        ad 			cpu_vendor = CPUVENDOR_UNKNOWN;
   1989       1.1        ad 			if (ci->ci_vendor[0] != '\0')
   1990       1.1        ad 				vendorname = (char *)&ci->ci_vendor[0];
   1991       1.1        ad 			else
   1992       1.1        ad 				vendorname = "Unknown";
   1993       1.1        ad 			class = family - 3;
   1994       1.1        ad 			modifier = "";
   1995       1.1        ad 			name = "";
   1996       1.1        ad 			ci->ci_info = NULL;
   1997       1.1        ad 		} else {
   1998       1.1        ad 			cpu_vendor = cpup->cpu_vendor;
   1999       1.1        ad 			vendorname = cpup->cpu_vendorname;
   2000       1.1        ad 			modifier = modifiers[modif];
   2001       1.1        ad 			cpufam = &cpup->cpu_family[family - CPU_MINFAMILY];
   2002      1.37       dsl 			name = cpufam->cpu_models[ci->ci_model];
   2003      1.18  pgoyette 			if (name == NULL || *name == '\0')
   2004  1.74.6.4    martin 				name = cpufam->cpu_model_default;
   2005       1.1        ad 			class = cpufam->cpu_class;
   2006       1.1        ad 			ci->ci_info = cpufam->cpu_info;
   2007       1.1        ad 
   2008       1.1        ad 			if (cpu_vendor == CPUVENDOR_INTEL) {
   2009      1.37       dsl 				if (ci->ci_family == 6 && ci->ci_model >= 5) {
   2010       1.1        ad 					const char *tmp;
   2011       1.1        ad 					tmp = intel_family6_name(ci);
   2012       1.1        ad 					if (tmp != NULL)
   2013       1.1        ad 						name = tmp;
   2014       1.1        ad 				}
   2015      1.37       dsl 				if (ci->ci_family == 15 &&
   2016       1.1        ad 				    ci->ci_brand_id <
   2017       1.1        ad 				    __arraycount(i386_intel_brand) &&
   2018       1.1        ad 				    i386_intel_brand[ci->ci_brand_id])
   2019       1.1        ad 					name =
   2020  1.74.6.4    martin 					    i386_intel_brand[ci->ci_brand_id];
   2021       1.1        ad 			}
   2022       1.1        ad 
   2023       1.1        ad 			if (cpu_vendor == CPUVENDOR_AMD) {
   2024      1.37       dsl 				if (ci->ci_family == 6 && ci->ci_model >= 6) {
   2025       1.1        ad 					if (ci->ci_brand_id == 1)
   2026       1.1        ad 						/*
   2027       1.1        ad 						 * It's Duron. We override the
   2028       1.1        ad 						 * name, since it might have
   2029       1.1        ad 						 * been misidentified as Athlon.
   2030       1.1        ad 						 */
   2031       1.1        ad 						name =
   2032       1.1        ad 						    amd_brand[ci->ci_brand_id];
   2033       1.1        ad 					else
   2034       1.1        ad 						brand = amd_brand_name;
   2035       1.1        ad 				}
   2036      1.50   msaitoh 				if (CPUID_TO_BASEFAMILY(ci->ci_signature)
   2037      1.50   msaitoh 				    == 0xf) {
   2038      1.37       dsl 					/* Identify AMD64 CPU names.  */
   2039       1.1        ad 					const char *tmp;
   2040       1.1        ad 					tmp = amd_amd64_name(ci);
   2041       1.1        ad 					if (tmp != NULL)
   2042       1.1        ad 						name = tmp;
   2043       1.1        ad 				}
   2044       1.1        ad 			}
   2045       1.1        ad 
   2046      1.37       dsl 			if (cpu_vendor == CPUVENDOR_IDT && ci->ci_family >= 6)
   2047       1.1        ad 				vendorname = "VIA";
   2048       1.1        ad 		}
   2049       1.1        ad 	}
   2050       1.1        ad 
   2051       1.1        ad 	ci->ci_cpu_class = class;
   2052       1.1        ad 
   2053       1.1        ad 	sz = sizeof(ci->ci_tsc_freq);
   2054       1.1        ad 	(void)sysctlbyname("machdep.tsc_freq", &ci->ci_tsc_freq, &sz, NULL, 0);
   2055      1.26       chs 	sz = sizeof(use_pae);
   2056      1.26       chs 	(void)sysctlbyname("machdep.pae", &use_pae, &sz, NULL, 0);
   2057      1.26       chs 	largepagesize = (use_pae ? 2 * 1024 * 1024 : 4 * 1024 * 1024);
   2058       1.1        ad 
   2059      1.38       dsl 	/*
   2060      1.38       dsl 	 * The 'cpu_brand_string' is much more useful than the 'cpu_model'
   2061      1.38       dsl 	 * we try to determine from the family/model values.
   2062      1.38       dsl 	 */
   2063      1.38       dsl 	if (*cpu_brand_string != '\0')
   2064      1.38       dsl 		aprint_normal("%s: \"%s\"\n", cpuname, cpu_brand_string);
   2065      1.38       dsl 
   2066      1.38       dsl 	aprint_normal("%s: %s", cpuname, vendorname);
   2067      1.38       dsl 	if (*modifier)
   2068      1.38       dsl 		aprint_normal(" %s", modifier);
   2069      1.38       dsl 	if (*name)
   2070      1.38       dsl 		aprint_normal(" %s", name);
   2071      1.38       dsl 	if (*brand)
   2072      1.38       dsl 		aprint_normal(" %s", brand);
   2073      1.38       dsl 	aprint_normal(" (%s-class)", classnames[class]);
   2074       1.1        ad 
   2075       1.1        ad 	if (ci->ci_tsc_freq != 0)
   2076      1.63   msaitoh 		aprint_normal(", %ju.%02ju MHz",
   2077      1.28     joerg 		    ((uintmax_t)ci->ci_tsc_freq + 4999) / 1000000,
   2078      1.28     joerg 		    (((uintmax_t)ci->ci_tsc_freq + 4999) / 10000) % 100);
   2079      1.63   msaitoh 	aprint_normal("\n");
   2080      1.38       dsl 
   2081      1.38       dsl 	aprint_normal_dev(ci->ci_dev, "family %#x model %#x stepping %#x",
   2082      1.50   msaitoh 	    ci->ci_family, ci->ci_model, CPUID_TO_STEPPING(ci->ci_signature));
   2083       1.1        ad 	if (ci->ci_signature != 0)
   2084      1.38       dsl 		aprint_normal(" (id %#x)", ci->ci_signature);
   2085       1.1        ad 	aprint_normal("\n");
   2086       1.1        ad 
   2087       1.1        ad 	if (ci->ci_info)
   2088       1.1        ad 		(*ci->ci_info)(ci);
   2089       1.1        ad 
   2090      1.18  pgoyette 	/*
   2091      1.18  pgoyette 	 * display CPU feature flags
   2092      1.18  pgoyette 	 */
   2093      1.18  pgoyette 
   2094      1.38       dsl 	print_bits(cpuname, "features", CPUID_FLAGS1, ci->ci_feat_val[0]);
   2095      1.38       dsl 	print_bits(cpuname, "features1", CPUID2_FLAGS1, ci->ci_feat_val[1]);
   2096      1.18  pgoyette 
   2097      1.38       dsl 	/* These next two are actually common definitions! */
   2098      1.38       dsl 	print_bits(cpuname, "features2",
   2099      1.38       dsl 	    cpu_vendor == CPUVENDOR_INTEL ? CPUID_INTEL_EXT_FLAGS
   2100      1.38       dsl 		: CPUID_EXT_FLAGS, ci->ci_feat_val[2]);
   2101      1.38       dsl 	print_bits(cpuname, "features3",
   2102      1.38       dsl 	    cpu_vendor == CPUVENDOR_INTEL ? CPUID_INTEL_FLAGS4
   2103      1.38       dsl 		: CPUID_AMD_FLAGS4, ci->ci_feat_val[3]);
   2104      1.38       dsl 
   2105      1.38       dsl 	print_bits(cpuname, "padloack features", CPUID_FLAGS_PADLOCK,
   2106      1.38       dsl 	    ci->ci_feat_val[4]);
   2107  1.74.6.1    martin 	if ((cpu_vendor == CPUVENDOR_INTEL) || (cpu_vendor == CPUVENDOR_AMD))
   2108  1.74.6.1    martin 		print_bits(cpuname, "features5", CPUID_SEF_FLAGS,
   2109  1.74.6.1    martin 		    ci->ci_feat_val[5]);
   2110  1.74.6.4    martin 	if ((cpu_vendor == CPUVENDOR_INTEL) || (cpu_vendor == CPUVENDOR_AMD))
   2111  1.74.6.1    martin 		print_bits(cpuname, "features6", CPUID_SEF_FLAGS1,
   2112  1.74.6.1    martin 		    ci->ci_feat_val[6]);
   2113  1.74.6.2    martin 
   2114  1.74.6.4    martin 	if (cpu_vendor == CPUVENDOR_INTEL)
   2115  1.74.6.4    martin 		print_bits(cpuname, "features7", CPUID_SEF_FLAGS2,
   2116  1.74.6.4    martin 		    ci->ci_feat_val[7]);
   2117  1.74.6.2    martin 
   2118  1.74.6.4    martin 	print_bits(cpuname, "xsave features", XCR0_FLAGS1, ci->ci_feat_val[8]);
   2119      1.38       dsl 	print_bits(cpuname, "xsave instructions", CPUID_PES1_FLAGS,
   2120  1.74.6.4    martin 	    ci->ci_feat_val[9]);
   2121      1.38       dsl 
   2122      1.38       dsl 	if (ci->ci_max_xsave != 0) {
   2123      1.38       dsl 		aprint_normal("%s: xsave area size: current %d, maximum %d",
   2124  1.74.6.4    martin 		    cpuname, ci->ci_cur_xsave, ci->ci_max_xsave);
   2125      1.38       dsl 		aprint_normal(", xgetbv %sabled\n",
   2126      1.38       dsl 		    ci->ci_feat_val[1] & CPUID2_OSXSAVE ? "en" : "dis");
   2127      1.38       dsl 		if (ci->ci_feat_val[1] & CPUID2_OSXSAVE)
   2128      1.38       dsl 			print_bits(cpuname, "enabled xsave", XCR0_FLAGS1,
   2129      1.38       dsl 			    x86_xgetbv());
   2130      1.12    cegger 	}
   2131       1.1        ad 
   2132      1.54   msaitoh 	x86_print_cache_and_tlb_info(ci);
   2133       1.1        ad 
   2134      1.18  pgoyette 	if (ci->ci_cpuid_level >= 3 && (ci->ci_feat_val[0] & CPUID_PN)) {
   2135       1.1        ad 		aprint_verbose("%s: serial number %04X-%04X-%04X-%04X-%04X-%04X\n",
   2136       1.1        ad 		    cpuname,
   2137       1.1        ad 		    ci->ci_cpu_serial[0] / 65536, ci->ci_cpu_serial[0] % 65536,
   2138       1.1        ad 		    ci->ci_cpu_serial[1] / 65536, ci->ci_cpu_serial[1] % 65536,
   2139       1.1        ad 		    ci->ci_cpu_serial[2] / 65536, ci->ci_cpu_serial[2] % 65536);
   2140       1.1        ad 	}
   2141       1.1        ad 
   2142      1.71   msaitoh 	if (ci->ci_cpu_class == CPUCLASS_386)
   2143       1.1        ad 		errx(1, "NetBSD requires an 80486 or later processor");
   2144       1.1        ad 
   2145      1.34       dsl 	if (ci->ci_cpu_type == CPU_486DLC) {
   2146       1.1        ad #ifndef CYRIX_CACHE_WORKS
   2147       1.1        ad 		aprint_error("WARNING: CYRIX 486DLC CACHE UNCHANGED.\n");
   2148       1.1        ad #else
   2149       1.1        ad #ifndef CYRIX_CACHE_REALLY_WORKS
   2150       1.1        ad 		aprint_error("WARNING: CYRIX 486DLC CACHE ENABLED IN HOLD-FLUSH MODE.\n");
   2151       1.1        ad #else
   2152       1.1        ad 		aprint_error("WARNING: CYRIX 486DLC CACHE ENABLED.\n");
   2153       1.1        ad #endif
   2154       1.1        ad #endif
   2155       1.1        ad 	}
   2156       1.1        ad 
   2157       1.1        ad 	/*
   2158       1.1        ad 	 * Everything past this point requires a Pentium or later.
   2159       1.1        ad 	 */
   2160       1.1        ad 	if (ci->ci_cpuid_level < 0)
   2161       1.1        ad 		return;
   2162       1.1        ad 
   2163       1.1        ad 	identifycpu_cpuids(ci);
   2164       1.1        ad 
   2165  1.74.6.4    martin 	if ((ci->ci_cpuid_level >= 5)
   2166  1.74.6.4    martin 	    && ((cpu_vendor == CPUVENDOR_INTEL)
   2167  1.74.6.4    martin 		|| (cpu_vendor == CPUVENDOR_AMD))) {
   2168  1.74.6.4    martin 		uint16_t lmin, lmax;
   2169  1.74.6.4    martin 		x86_cpuid(5, descs);
   2170  1.74.6.4    martin 
   2171  1.74.6.4    martin 		print_bits(cpuname, "MONITOR/MWAIT extensions",
   2172  1.74.6.4    martin 		    CPUID_MON_FLAGS, descs[2]);
   2173  1.74.6.4    martin 		lmin = __SHIFTOUT(descs[0], CPUID_MON_MINSIZE);
   2174  1.74.6.4    martin 		lmax = __SHIFTOUT(descs[1], CPUID_MON_MAXSIZE);
   2175  1.74.6.4    martin 		aprint_normal("%s: monitor-line size %hu", cpuname, lmin);
   2176  1.74.6.4    martin 		if (lmin != lmax)
   2177  1.74.6.4    martin 			aprint_normal("-%hu", lmax);
   2178  1.74.6.4    martin 		aprint_normal("\n");
   2179  1.74.6.4    martin 
   2180  1.74.6.4    martin 		for (i = 0; i <= 7; i++) {
   2181  1.74.6.4    martin 			unsigned int num = CPUID_MON_SUBSTATE(descs[3], i);
   2182  1.74.6.4    martin 
   2183  1.74.6.4    martin 			if (num != 0)
   2184  1.74.6.4    martin 				aprint_normal("%s: C%u substates %u\n",
   2185  1.74.6.4    martin 				    cpuname, i, num);
   2186  1.74.6.4    martin 		}
   2187  1.74.6.4    martin 	}
   2188  1.74.6.4    martin 	if ((ci->ci_cpuid_level >= 6)
   2189  1.74.6.4    martin 	    && ((cpu_vendor == CPUVENDOR_INTEL)
   2190  1.74.6.4    martin 		|| (cpu_vendor == CPUVENDOR_AMD))) {
   2191  1.74.6.4    martin 		x86_cpuid(6, descs);
   2192  1.74.6.4    martin 		print_bits(cpuname, "DSPM-eax", CPUID_DSPM_FLAGS, descs[0]);
   2193  1.74.6.4    martin 		print_bits(cpuname, "DSPM-ecx", CPUID_DSPM_FLAGS1, descs[2]);
   2194  1.74.6.4    martin 	}
   2195  1.74.6.4    martin 	if ((ci->ci_cpuid_level >= 7)
   2196  1.74.6.4    martin 	    && ((cpu_vendor == CPUVENDOR_INTEL)
   2197  1.74.6.4    martin 		|| (cpu_vendor == CPUVENDOR_AMD))) {
   2198  1.74.6.4    martin 		x86_cpuid(7, descs);
   2199  1.74.6.4    martin 		aprint_verbose("%s: SEF highest subleaf %08x\n",
   2200  1.74.6.4    martin 		    cpuname, descs[0]);
   2201  1.74.6.4    martin 	}
   2202       1.1        ad 
   2203       1.5        ad 	if (cpu_vendor == CPUVENDOR_AMD) {
   2204  1.74.6.4    martin 		x86_cpuid(0x80000000, descs);
   2205  1.74.6.4    martin 		if (descs[0] >= 0x80000007)
   2206      1.22    cegger 			powernow_probe(ci);
   2207      1.22    cegger 
   2208  1.74.6.4    martin 		if ((descs[0] >= 0x8000000a)
   2209  1.74.6.4    martin 		    && (ci->ci_feat_val[3] & CPUID_SVM) != 0) {
   2210  1.74.6.4    martin 			x86_cpuid(0x8000000a, descs);
   2211      1.15      yamt 			aprint_verbose("%s: SVM Rev. %d\n", cpuname,
   2212  1.74.6.4    martin 			    descs[0] & 0xf);
   2213  1.74.6.4    martin 			aprint_verbose("%s: SVM NASID %d\n", cpuname,
   2214  1.74.6.4    martin 			    descs[1]);
   2215  1.74.6.4    martin 			print_bits(cpuname, "SVM features",
   2216  1.74.6.4    martin 			    CPUID_AMD_SVM_FLAGS, descs[3]);
   2217      1.15      yamt 		}
   2218      1.39      yamt 	} else if (cpu_vendor == CPUVENDOR_INTEL) {
   2219      1.54   msaitoh 		int32_t bi_index;
   2220      1.39      yamt 
   2221      1.54   msaitoh 		for (bi_index = 1; bi_index <= ci->ci_cpuid_level; bi_index++) {
   2222  1.74.6.4    martin 			x86_cpuid(bi_index, descs);
   2223      1.39      yamt 			switch (bi_index) {
   2224  1.74.6.4    martin 			case 0x0a:
   2225  1.74.6.4    martin 				print_bits(cpuname, "Perfmon-eax",
   2226  1.74.6.4    martin 				    CPUID_PERF_FLAGS0, descs[0]);
   2227  1.74.6.4    martin 				print_bits(cpuname, "Perfmon-ebx",
   2228  1.74.6.4    martin 				    CPUID_PERF_FLAGS1, descs[1]);
   2229  1.74.6.4    martin 				print_bits(cpuname, "Perfmon-edx",
   2230  1.74.6.4    martin 				    CPUID_PERF_FLAGS3, descs[3]);
   2231      1.39      yamt 				break;
   2232      1.39      yamt 			default:
   2233  1.74.6.4    martin #if 0
   2234      1.39      yamt 				aprint_verbose("%s: basic %08x-eax %08x\n",
   2235  1.74.6.4    martin 				    cpuname, bi_index, descs[0]);
   2236      1.39      yamt 				aprint_verbose("%s: basic %08x-ebx %08x\n",
   2237  1.74.6.4    martin 				    cpuname, bi_index, descs[1]);
   2238      1.39      yamt 				aprint_verbose("%s: basic %08x-ecx %08x\n",
   2239  1.74.6.4    martin 				    cpuname, bi_index, descs[2]);
   2240      1.39      yamt 				aprint_verbose("%s: basic %08x-edx %08x\n",
   2241  1.74.6.4    martin 				    cpuname, bi_index, descs[3]);
   2242      1.39      yamt #endif
   2243  1.74.6.4    martin 				break;
   2244      1.39      yamt 			}
   2245      1.39      yamt 		}
   2246       1.1        ad 	}
   2247       1.1        ad 
   2248       1.1        ad #ifdef INTEL_ONDEMAND_CLOCKMOD
   2249       1.1        ad 	clockmod_init();
   2250       1.1        ad #endif
   2251       1.2        ad 
   2252      1.32  drochner 	if (cpu_vendor == CPUVENDOR_AMD)
   2253      1.32  drochner 		ucode.loader_version = CPU_UCODE_LOADER_AMD;
   2254      1.32  drochner 	else if (cpu_vendor == CPUVENDOR_INTEL)
   2255      1.32  drochner 		ucode.loader_version = CPU_UCODE_LOADER_INTEL1;
   2256      1.32  drochner 	else
   2257      1.32  drochner 		return;
   2258      1.35       dsl 
   2259      1.32  drochner 	ucode.data = &ucvers;
   2260      1.35       dsl 	if (ioctl(fd, IOC_CPU_UCODE_GET_VERSION, &ucode) < 0) {
   2261      1.35       dsl #ifdef __i386__
   2262      1.35       dsl 		struct cpu_ucode_version_64 ucode_64;
   2263      1.35       dsl 		if (errno != ENOTTY)
   2264      1.35       dsl 			return;
   2265      1.35       dsl 		/* Try the 64 bit ioctl */
   2266      1.35       dsl 		memset(&ucode_64, 0, sizeof ucode_64);
   2267      1.35       dsl 		ucode_64.data = &ucvers;
   2268      1.35       dsl 		ucode_64.loader_version = ucode.loader_version;
   2269      1.35       dsl 		if (ioctl(fd, IOC_CPU_UCODE_GET_VERSION_64, &ucode_64) < 0)
   2270      1.35       dsl 			return;
   2271      1.64   msaitoh #else
   2272      1.64   msaitoh 		return;
   2273      1.35       dsl #endif
   2274      1.35       dsl 	}
   2275      1.35       dsl 
   2276      1.32  drochner 	if (cpu_vendor == CPUVENDOR_AMD)
   2277      1.32  drochner 		printf("%s: UCode version: 0x%"PRIx64"\n", cpuname, ucvers.amd.version);
   2278      1.32  drochner 	else if (cpu_vendor == CPUVENDOR_INTEL)
   2279      1.32  drochner 		printf("%s: microcode version 0x%x, platform ID %d\n", cpuname,
   2280  1.74.6.4    martin 		    ucvers.intel1.ucodeversion, ucvers.intel1.platformid);
   2281       1.1        ad }
   2282       1.1        ad 
   2283      1.54   msaitoh static const struct x86_cache_info *
   2284      1.54   msaitoh cache_info_lookup(const struct x86_cache_info *cai, uint8_t desc)
   2285      1.54   msaitoh {
   2286      1.54   msaitoh 	int i;
   2287      1.54   msaitoh 
   2288      1.54   msaitoh 	for (i = 0; cai[i].cai_desc != 0; i++) {
   2289      1.54   msaitoh 		if (cai[i].cai_desc == desc)
   2290      1.54   msaitoh 			return (&cai[i]);
   2291      1.54   msaitoh 	}
   2292      1.54   msaitoh 
   2293      1.54   msaitoh 	return (NULL);
   2294      1.54   msaitoh }
   2295      1.54   msaitoh 
   2296       1.1        ad static const char *
   2297       1.1        ad print_cache_config(struct cpu_info *ci, int cache_tag, const char *name,
   2298       1.1        ad     const char *sep)
   2299       1.1        ad {
   2300       1.1        ad 	struct x86_cache_info *cai = &ci->ci_cinfo[cache_tag];
   2301       1.7  christos 	char human_num[HUMAN_BUFSIZE];
   2302       1.1        ad 
   2303       1.1        ad 	if (cai->cai_totalsize == 0)
   2304       1.1        ad 		return sep;
   2305       1.1        ad 
   2306       1.1        ad 	if (sep == NULL)
   2307       1.1        ad 		aprint_verbose_dev(ci->ci_dev, "");
   2308       1.1        ad 	else
   2309       1.1        ad 		aprint_verbose("%s", sep);
   2310       1.1        ad 	if (name != NULL)
   2311       1.1        ad 		aprint_verbose("%s ", name);
   2312       1.1        ad 
   2313       1.1        ad 	if (cai->cai_string != NULL) {
   2314       1.1        ad 		aprint_verbose("%s ", cai->cai_string);
   2315       1.1        ad 	} else {
   2316       1.8  christos 		(void)humanize_number(human_num, sizeof(human_num),
   2317  1.74.6.4    martin 		    cai->cai_totalsize, "B", HN_AUTOSCALE, HN_NOSPACE);
   2318       1.7  christos 		aprint_verbose("%s %dB/line ", human_num, cai->cai_linesize);
   2319       1.1        ad 	}
   2320       1.1        ad 	switch (cai->cai_associativity) {
   2321  1.74.6.4    martin 	case	0:
   2322       1.1        ad 		aprint_verbose("disabled");
   2323       1.1        ad 		break;
   2324  1.74.6.4    martin 	case	1:
   2325       1.1        ad 		aprint_verbose("direct-mapped");
   2326       1.1        ad 		break;
   2327       1.1        ad 	case 0xff:
   2328       1.1        ad 		aprint_verbose("fully associative");
   2329       1.1        ad 		break;
   2330       1.1        ad 	default:
   2331       1.1        ad 		aprint_verbose("%d-way", cai->cai_associativity);
   2332       1.1        ad 		break;
   2333       1.1        ad 	}
   2334       1.1        ad 	return ", ";
   2335       1.1        ad }
   2336       1.1        ad 
   2337       1.1        ad static const char *
   2338       1.1        ad print_tlb_config(struct cpu_info *ci, int cache_tag, const char *name,
   2339       1.1        ad     const char *sep)
   2340       1.1        ad {
   2341       1.1        ad 	struct x86_cache_info *cai = &ci->ci_cinfo[cache_tag];
   2342       1.7  christos 	char human_num[HUMAN_BUFSIZE];
   2343       1.1        ad 
   2344       1.1        ad 	if (cai->cai_totalsize == 0)
   2345       1.1        ad 		return sep;
   2346       1.1        ad 
   2347       1.1        ad 	if (sep == NULL)
   2348       1.1        ad 		aprint_verbose_dev(ci->ci_dev, "");
   2349       1.1        ad 	else
   2350       1.1        ad 		aprint_verbose("%s", sep);
   2351       1.1        ad 	if (name != NULL)
   2352       1.1        ad 		aprint_verbose("%s ", name);
   2353       1.1        ad 
   2354       1.1        ad 	if (cai->cai_string != NULL) {
   2355       1.1        ad 		aprint_verbose("%s", cai->cai_string);
   2356       1.1        ad 	} else {
   2357       1.7  christos 		(void)humanize_number(human_num, sizeof(human_num),
   2358  1.74.6.4    martin 		    cai->cai_linesize, "B", HN_AUTOSCALE, HN_NOSPACE);
   2359       1.7  christos 		aprint_verbose("%d %s entries ", cai->cai_totalsize,
   2360       1.7  christos 		    human_num);
   2361       1.1        ad 		switch (cai->cai_associativity) {
   2362       1.1        ad 		case 0:
   2363       1.1        ad 			aprint_verbose("disabled");
   2364       1.1        ad 			break;
   2365       1.1        ad 		case 1:
   2366       1.1        ad 			aprint_verbose("direct-mapped");
   2367       1.1        ad 			break;
   2368       1.1        ad 		case 0xff:
   2369       1.1        ad 			aprint_verbose("fully associative");
   2370       1.1        ad 			break;
   2371       1.1        ad 		default:
   2372       1.1        ad 			aprint_verbose("%d-way", cai->cai_associativity);
   2373       1.1        ad 			break;
   2374       1.1        ad 		}
   2375       1.1        ad 	}
   2376       1.1        ad 	return ", ";
   2377       1.1        ad }
   2378       1.1        ad 
   2379       1.1        ad static void
   2380      1.54   msaitoh x86_print_cache_and_tlb_info(struct cpu_info *ci)
   2381       1.1        ad {
   2382      1.47       mrg 	const char *sep = NULL;
   2383       1.1        ad 
   2384       1.1        ad 	if (ci->ci_cinfo[CAI_ICACHE].cai_totalsize != 0 ||
   2385       1.1        ad 	    ci->ci_cinfo[CAI_DCACHE].cai_totalsize != 0) {
   2386       1.1        ad 		sep = print_cache_config(ci, CAI_ICACHE, "I-cache", NULL);
   2387       1.1        ad 		sep = print_cache_config(ci, CAI_DCACHE, "D-cache", sep);
   2388       1.1        ad 		if (sep != NULL)
   2389       1.1        ad 			aprint_verbose("\n");
   2390       1.1        ad 	}
   2391       1.1        ad 	if (ci->ci_cinfo[CAI_L2CACHE].cai_totalsize != 0) {
   2392       1.1        ad 		sep = print_cache_config(ci, CAI_L2CACHE, "L2 cache", NULL);
   2393       1.1        ad 		if (sep != NULL)
   2394       1.1        ad 			aprint_verbose("\n");
   2395       1.1        ad 	}
   2396      1.26       chs 	if (ci->ci_cinfo[CAI_L3CACHE].cai_totalsize != 0) {
   2397      1.26       chs 		sep = print_cache_config(ci, CAI_L3CACHE, "L3 cache", NULL);
   2398      1.26       chs 		if (sep != NULL)
   2399      1.26       chs 			aprint_verbose("\n");
   2400      1.26       chs 	}
   2401      1.46   msaitoh 	if (ci->ci_cinfo[CAI_PREFETCH].cai_linesize != 0) {
   2402      1.46   msaitoh 		aprint_verbose_dev(ci->ci_dev, "%dB prefetching",
   2403  1.74.6.4    martin 		    ci->ci_cinfo[CAI_PREFETCH].cai_linesize);
   2404      1.46   msaitoh 		if (sep != NULL)
   2405      1.46   msaitoh 			aprint_verbose("\n");
   2406      1.46   msaitoh 	}
   2407       1.1        ad 	if (ci->ci_cinfo[CAI_ITLB].cai_totalsize != 0) {
   2408       1.1        ad 		sep = print_tlb_config(ci, CAI_ITLB, "ITLB", NULL);
   2409       1.1        ad 		sep = print_tlb_config(ci, CAI_ITLB2, NULL, sep);
   2410       1.1        ad 		if (sep != NULL)
   2411       1.1        ad 			aprint_verbose("\n");
   2412       1.1        ad 	}
   2413       1.1        ad 	if (ci->ci_cinfo[CAI_DTLB].cai_totalsize != 0) {
   2414       1.1        ad 		sep = print_tlb_config(ci, CAI_DTLB, "DTLB", NULL);
   2415       1.1        ad 		sep = print_tlb_config(ci, CAI_DTLB2, NULL, sep);
   2416       1.1        ad 		if (sep != NULL)
   2417       1.1        ad 			aprint_verbose("\n");
   2418       1.1        ad 	}
   2419      1.26       chs 	if (ci->ci_cinfo[CAI_L2_ITLB].cai_totalsize != 0) {
   2420      1.26       chs 		sep = print_tlb_config(ci, CAI_L2_ITLB, "L2 ITLB", NULL);
   2421      1.26       chs 		sep = print_tlb_config(ci, CAI_L2_ITLB2, NULL, sep);
   2422      1.26       chs 		if (sep != NULL)
   2423      1.26       chs 			aprint_verbose("\n");
   2424      1.26       chs 	}
   2425      1.26       chs 	if (ci->ci_cinfo[CAI_L2_DTLB].cai_totalsize != 0) {
   2426      1.26       chs 		sep = print_tlb_config(ci, CAI_L2_DTLB, "L2 DTLB", NULL);
   2427      1.26       chs 		sep = print_tlb_config(ci, CAI_L2_DTLB2, NULL, sep);
   2428      1.26       chs 		if (sep != NULL)
   2429      1.26       chs 			aprint_verbose("\n");
   2430      1.26       chs 	}
   2431      1.42   msaitoh 	if (ci->ci_cinfo[CAI_L2_STLB].cai_totalsize != 0) {
   2432      1.42   msaitoh 		sep = print_tlb_config(ci, CAI_L2_STLB, "L2 STLB", NULL);
   2433      1.42   msaitoh 		sep = print_tlb_config(ci, CAI_L2_STLB2, NULL, sep);
   2434  1.74.6.3    martin 		sep = print_tlb_config(ci, CAI_L2_STLB3, NULL, sep);
   2435      1.42   msaitoh 		if (sep != NULL)
   2436      1.42   msaitoh 			aprint_verbose("\n");
   2437      1.42   msaitoh 	}
   2438      1.26       chs 	if (ci->ci_cinfo[CAI_L1_1GBITLB].cai_totalsize != 0) {
   2439      1.42   msaitoh 		sep = print_tlb_config(ci, CAI_L1_1GBITLB, "L1 1GB page ITLB",
   2440      1.42   msaitoh 		    NULL);
   2441      1.26       chs 		if (sep != NULL)
   2442      1.26       chs 			aprint_verbose("\n");
   2443      1.26       chs 	}
   2444      1.26       chs 	if (ci->ci_cinfo[CAI_L1_1GBDTLB].cai_totalsize != 0) {
   2445      1.42   msaitoh 		sep = print_tlb_config(ci, CAI_L1_1GBDTLB, "L1 1GB page DTLB",
   2446      1.42   msaitoh 		    NULL);
   2447      1.26       chs 		if (sep != NULL)
   2448      1.26       chs 			aprint_verbose("\n");
   2449      1.26       chs 	}
   2450      1.26       chs 	if (ci->ci_cinfo[CAI_L2_1GBITLB].cai_totalsize != 0) {
   2451      1.42   msaitoh 		sep = print_tlb_config(ci, CAI_L2_1GBITLB, "L2 1GB page ITLB",
   2452      1.42   msaitoh 		    NULL);
   2453      1.26       chs 		if (sep != NULL)
   2454      1.26       chs 			aprint_verbose("\n");
   2455      1.26       chs 	}
   2456      1.26       chs 	if (ci->ci_cinfo[CAI_L2_1GBDTLB].cai_totalsize != 0) {
   2457      1.42   msaitoh 		sep = print_tlb_config(ci, CAI_L2_1GBDTLB, "L2 1GB page DTLB",
   2458      1.42   msaitoh 		    NULL);
   2459       1.7  christos 		if (sep != NULL)
   2460       1.7  christos 			aprint_verbose("\n");
   2461       1.7  christos 	}
   2462       1.1        ad }
   2463       1.5        ad 
   2464       1.5        ad static void
   2465       1.5        ad powernow_probe(struct cpu_info *ci)
   2466       1.5        ad {
   2467       1.5        ad 	uint32_t regs[4];
   2468      1.14  christos 	char buf[256];
   2469       1.5        ad 
   2470       1.5        ad 	x86_cpuid(0x80000007, regs);
   2471       1.5        ad 
   2472      1.14  christos 	snprintb(buf, sizeof(buf), CPUID_APM_FLAGS, regs[3]);
   2473       1.5        ad 	aprint_normal_dev(ci->ci_dev, "AMD Power Management features: %s\n",
   2474      1.14  christos 	    buf);
   2475       1.5        ad }
   2476      1.32  drochner 
   2477      1.32  drochner int
   2478      1.32  drochner ucodeupdate_check(int fd, struct cpu_ucode *uc)
   2479      1.32  drochner {
   2480      1.32  drochner 	struct cpu_info ci;
   2481      1.32  drochner 	int loader_version, res;
   2482      1.32  drochner 	struct cpu_ucode_version versreq;
   2483      1.32  drochner 
   2484      1.34       dsl 	cpu_probe_base_features(&ci, "unknown");
   2485      1.34       dsl 
   2486      1.32  drochner 	if (!strcmp((char *)ci.ci_vendor, "AuthenticAMD"))
   2487      1.32  drochner 		loader_version = CPU_UCODE_LOADER_AMD;
   2488      1.32  drochner 	else if (!strcmp((char *)ci.ci_vendor, "GenuineIntel"))
   2489      1.32  drochner 		loader_version = CPU_UCODE_LOADER_INTEL1;
   2490      1.32  drochner 	else
   2491      1.32  drochner 		return -1;
   2492      1.32  drochner 
   2493      1.32  drochner 	/* check whether the kernel understands this loader version */
   2494      1.32  drochner 	versreq.loader_version = loader_version;
   2495      1.32  drochner 	versreq.data = 0;
   2496      1.32  drochner 	res = ioctl(fd, IOC_CPU_UCODE_GET_VERSION, &versreq);
   2497      1.32  drochner 	if (res)
   2498      1.32  drochner 		return -1;
   2499      1.32  drochner 
   2500      1.32  drochner 	switch (loader_version) {
   2501      1.32  drochner 	case CPU_UCODE_LOADER_AMD:
   2502      1.32  drochner 		if (uc->cpu_nr != -1) {
   2503      1.32  drochner 			/* printf? */
   2504      1.32  drochner 			return -1;
   2505      1.32  drochner 		}
   2506      1.32  drochner 		uc->cpu_nr = CPU_UCODE_ALL_CPUS;
   2507      1.32  drochner 		break;
   2508      1.32  drochner 	case CPU_UCODE_LOADER_INTEL1:
   2509      1.32  drochner 		if (uc->cpu_nr == -1)
   2510      1.32  drochner 			uc->cpu_nr = CPU_UCODE_ALL_CPUS; /* for Xen */
   2511      1.32  drochner 		else
   2512      1.32  drochner 			uc->cpu_nr = CPU_UCODE_CURRENT_CPU;
   2513      1.32  drochner 		break;
   2514      1.32  drochner 	default: /* can't happen */
   2515      1.32  drochner 		return -1;
   2516      1.32  drochner 	}
   2517      1.32  drochner 	uc->loader_version = loader_version;
   2518      1.32  drochner 	return 0;
   2519      1.32  drochner }
   2520