1cda07865SPeter Wemm /*- 24536af6aSKATO Takenori * Copyright (c) KATO Takenori, 1997, 1998. 3a8e282d6SKATO Takenori * 4a8e282d6SKATO Takenori * All rights reserved. Unpublished rights reserved under the copyright 5a8e282d6SKATO Takenori * laws of Japan. 6a8e282d6SKATO Takenori * 7a8e282d6SKATO Takenori * Redistribution and use in source and binary forms, with or without 8a8e282d6SKATO Takenori * modification, are permitted provided that the following conditions 9a8e282d6SKATO Takenori * are met: 10a8e282d6SKATO Takenori * 11a8e282d6SKATO Takenori * 1. Redistributions of source code must retain the above copyright 12a8e282d6SKATO Takenori * notice, this list of conditions and the following disclaimer as 13a8e282d6SKATO Takenori * the first lines of this file unmodified. 14a8e282d6SKATO Takenori * 2. Redistributions in binary form must reproduce the above copyright 15a8e282d6SKATO Takenori * notice, this list of conditions and the following disclaimer in the 16a8e282d6SKATO Takenori * documentation and/or other materials provided with the distribution. 17a8e282d6SKATO Takenori * 18a8e282d6SKATO Takenori * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 19a8e282d6SKATO Takenori * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 20a8e282d6SKATO Takenori * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 21a8e282d6SKATO Takenori * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 22a8e282d6SKATO Takenori * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 23a8e282d6SKATO Takenori * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 24a8e282d6SKATO Takenori * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 25a8e282d6SKATO Takenori * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 26a8e282d6SKATO Takenori * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 27a8e282d6SKATO Takenori * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 28a8e282d6SKATO Takenori */ 29a8e282d6SKATO Takenori 3056ae44c5SDavid E. O'Brien #include <sys/cdefs.h> 3156ae44c5SDavid E. O'Brien __FBSDID("$FreeBSD$"); 3256ae44c5SDavid E. O'Brien 33a8e282d6SKATO Takenori #include "opt_cpu.h" 34a8e282d6SKATO Takenori 35a8e282d6SKATO Takenori #include <sys/param.h> 36a8e282d6SKATO Takenori #include <sys/kernel.h> 37*cd9e9d1bSKonstantin Belousov #include <sys/pcpu.h> 38a8e282d6SKATO Takenori #include <sys/systm.h> 399d146ac5SPeter Wemm #include <sys/sysctl.h> 40a8e282d6SKATO Takenori 41a8e282d6SKATO Takenori #include <machine/cputypes.h> 42a8e282d6SKATO Takenori #include <machine/md_var.h> 43a8e282d6SKATO Takenori #include <machine/specialreg.h> 44a8e282d6SKATO Takenori 45430e272cSPeter Wemm #include <vm/vm.h> 46430e272cSPeter Wemm #include <vm/pmap.h> 4720916c1fSKATO Takenori 4810deca7eSJohn Baldwin static int hw_instruction_sse; 499d146ac5SPeter Wemm SYSCTL_INT(_hw, OID_AUTO, instruction_sse, CTLFLAG_RD, 5010deca7eSJohn Baldwin &hw_instruction_sse, 0, "SIMD/MMX2 instructions available in CPU"); 516f5c96c4SJun Kuriyama /* 526f5c96c4SJun Kuriyama * -1: automatic (default) 536f5c96c4SJun Kuriyama * 0: keep enable CLFLUSH 546f5c96c4SJun Kuriyama * 1: force disable CLFLUSH 556f5c96c4SJun Kuriyama */ 566f5c96c4SJun Kuriyama static int hw_clflush_disable = -1; 579d146ac5SPeter Wemm 58afa88623SPeter Wemm int cpu; /* Are we 386, 386sx, 486, etc? */ 59afa88623SPeter Wemm u_int cpu_feature; /* Feature flags */ 60430e272cSPeter Wemm u_int cpu_feature2; /* Feature flags */ 619c3acb0bSJung-uk Kim u_int amd_feature; /* AMD feature flags */ 629c3acb0bSJung-uk Kim u_int amd_feature2; /* AMD feature flags */ 63780f139bSJung-uk Kim u_int amd_pminfo; /* AMD advanced power management info */ 6492df0bdaSJung-uk Kim u_int via_feature_rng; /* VIA RNG features */ 6592df0bdaSJung-uk Kim u_int via_feature_xcrypt; /* VIA ACE features */ 66afa88623SPeter Wemm u_int cpu_high; /* Highest arg to CPUID */ 67430e272cSPeter Wemm u_int cpu_exthigh; /* Highest arg to extended CPUID */ 68afa88623SPeter Wemm u_int cpu_id; /* Stepping ID */ 69afa88623SPeter Wemm u_int cpu_procinfo; /* HyperThreading Info / Brand Index / CLFUSH */ 709c3acb0bSJung-uk Kim u_int cpu_procinfo2; /* Multicore info */ 71afa88623SPeter Wemm char cpu_vendor[20]; /* CPU Origin code */ 725113aa0aSJung-uk Kim u_int cpu_vendor_id; /* CPU vendor ID */ 7310deca7eSJohn Baldwin u_int cpu_fxsr; /* SSE enabled */ 747da6810bSDavid Xu u_int cpu_mxcsr_mask; /* Valid bits in mxcsr */ 75206a3368SKonstantin Belousov u_int cpu_clflush_line_size = 32; 762773649dSKonstantin Belousov u_int cpu_stdext_feature; 778c6f8f3dSKonstantin Belousov u_int cpu_max_ext_state_size; 784faa812aSPeter Wemm 7992df0bdaSJung-uk Kim SYSCTL_UINT(_hw, OID_AUTO, via_feature_rng, CTLFLAG_RD, 80cd45fec0SJung-uk Kim &via_feature_rng, 0, "VIA RNG feature available in CPU"); 8192df0bdaSJung-uk Kim SYSCTL_UINT(_hw, OID_AUTO, via_feature_xcrypt, CTLFLAG_RD, 82cd45fec0SJung-uk Kim &via_feature_xcrypt, 0, "VIA xcrypt feature available in CPU"); 8392df0bdaSJung-uk Kim 843ce5dbccSJung-uk Kim static void 853ce5dbccSJung-uk Kim init_amd(void) 863ce5dbccSJung-uk Kim { 873ce5dbccSJung-uk Kim 883ce5dbccSJung-uk Kim /* 893ce5dbccSJung-uk Kim * Work around Erratum 721 for Family 10h and 12h processors. 903ce5dbccSJung-uk Kim * These processors may incorrectly update the stack pointer 913ce5dbccSJung-uk Kim * after a long series of push and/or near-call instructions, 923ce5dbccSJung-uk Kim * or a long series of pop and/or near-return instructions. 933ce5dbccSJung-uk Kim * 943ce5dbccSJung-uk Kim * http://support.amd.com/us/Processor_TechDocs/41322_10h_Rev_Gd.pdf 953ce5dbccSJung-uk Kim * http://support.amd.com/us/Processor_TechDocs/44739_12h_Rev_Gd.pdf 9665211d02SKonstantin Belousov * 9765211d02SKonstantin Belousov * Hypervisors do not provide access to the errata MSR, 9865211d02SKonstantin Belousov * causing #GP exception on attempt to apply the errata. The 9965211d02SKonstantin Belousov * MSR write shall be done on host and persist globally 10065211d02SKonstantin Belousov * anyway, so do not try to do it when under virtualization. 1013ce5dbccSJung-uk Kim */ 1023ce5dbccSJung-uk Kim switch (CPUID_TO_FAMILY(cpu_id)) { 1033ce5dbccSJung-uk Kim case 0x10: 1043ce5dbccSJung-uk Kim case 0x12: 10565211d02SKonstantin Belousov if ((cpu_feature2 & CPUID2_HV) == 0) 1063ce5dbccSJung-uk Kim wrmsr(0xc0011029, rdmsr(0xc0011029) | 1); 1073ce5dbccSJung-uk Kim break; 1083ce5dbccSJung-uk Kim } 1093ce5dbccSJung-uk Kim } 1103ce5dbccSJung-uk Kim 11192df0bdaSJung-uk Kim /* 112cd45fec0SJung-uk Kim * Initialize special VIA features 11392df0bdaSJung-uk Kim */ 11492df0bdaSJung-uk Kim static void 11592df0bdaSJung-uk Kim init_via(void) 11692df0bdaSJung-uk Kim { 11792df0bdaSJung-uk Kim u_int regs[4], val; 11892df0bdaSJung-uk Kim 119cd45fec0SJung-uk Kim /* 120cd45fec0SJung-uk Kim * Check extended CPUID for PadLock features. 121cd45fec0SJung-uk Kim * 122cd45fec0SJung-uk Kim * http://www.via.com.tw/en/downloads/whitepapers/initiatives/padlock/programming_guide.pdf 123cd45fec0SJung-uk Kim */ 12492df0bdaSJung-uk Kim do_cpuid(0xc0000000, regs); 125cd45fec0SJung-uk Kim if (regs[0] >= 0xc0000001) { 12692df0bdaSJung-uk Kim do_cpuid(0xc0000001, regs); 12792df0bdaSJung-uk Kim val = regs[3]; 12892df0bdaSJung-uk Kim } else 129cd45fec0SJung-uk Kim return; 13092df0bdaSJung-uk Kim 131cd45fec0SJung-uk Kim /* Enable RNG if present. */ 132cd45fec0SJung-uk Kim if ((val & VIA_CPUID_HAS_RNG) != 0) { 13392df0bdaSJung-uk Kim via_feature_rng = VIA_HAS_RNG; 134cd45fec0SJung-uk Kim wrmsr(0x110B, rdmsr(0x110B) | VIA_CPUID_DO_RNG); 13592df0bdaSJung-uk Kim } 136cd45fec0SJung-uk Kim 137cd45fec0SJung-uk Kim /* Enable PadLock if present. */ 138cd45fec0SJung-uk Kim if ((val & VIA_CPUID_HAS_ACE) != 0) 13992df0bdaSJung-uk Kim via_feature_xcrypt |= VIA_HAS_AES; 140cd45fec0SJung-uk Kim if ((val & VIA_CPUID_HAS_ACE2) != 0) 14192df0bdaSJung-uk Kim via_feature_xcrypt |= VIA_HAS_AESCTR; 142cd45fec0SJung-uk Kim if ((val & VIA_CPUID_HAS_PHE) != 0) 14392df0bdaSJung-uk Kim via_feature_xcrypt |= VIA_HAS_SHA; 144cd45fec0SJung-uk Kim if ((val & VIA_CPUID_HAS_PMM) != 0) 14592df0bdaSJung-uk Kim via_feature_xcrypt |= VIA_HAS_MM; 146cd45fec0SJung-uk Kim if (via_feature_xcrypt != 0) 147cd45fec0SJung-uk Kim wrmsr(0x1107, rdmsr(0x1107) | (1 << 28)); 14892df0bdaSJung-uk Kim } 14992df0bdaSJung-uk Kim 1509d146ac5SPeter Wemm /* 151430e272cSPeter Wemm * Initialize CPU control registers 1529d146ac5SPeter Wemm */ 1539d146ac5SPeter Wemm void 154430e272cSPeter Wemm initializecpu(void) 1559d146ac5SPeter Wemm { 156430e272cSPeter Wemm uint64_t msr; 157*cd9e9d1bSKonstantin Belousov uint32_t cr4; 158430e272cSPeter Wemm 159*cd9e9d1bSKonstantin Belousov cr4 = rcr4(); 1609d146ac5SPeter Wemm if ((cpu_feature & CPUID_XMM) && (cpu_feature & CPUID_FXSR)) { 161*cd9e9d1bSKonstantin Belousov cr4 |= CR4_FXSR | CR4_XMM; 1629d146ac5SPeter Wemm cpu_fxsr = hw_instruction_sse = 1; 1639d146ac5SPeter Wemm } 164*cd9e9d1bSKonstantin Belousov if (cpu_stdext_feature & CPUID_STDEXT_FSGSBASE) 165*cd9e9d1bSKonstantin Belousov cr4 |= CR4_FSGSBASE; 166*cd9e9d1bSKonstantin Belousov 167*cd9e9d1bSKonstantin Belousov /* 168*cd9e9d1bSKonstantin Belousov * Postpone enabling the SMEP on the boot CPU until the page 169*cd9e9d1bSKonstantin Belousov * tables are switched from the boot loader identity mapping 170*cd9e9d1bSKonstantin Belousov * to the kernel tables. The boot loader enables the U bit in 171*cd9e9d1bSKonstantin Belousov * its tables. 172*cd9e9d1bSKonstantin Belousov */ 173*cd9e9d1bSKonstantin Belousov if (!IS_BSP() && (cpu_stdext_feature & CPUID_STDEXT_SMEP)) 174*cd9e9d1bSKonstantin Belousov cr4 |= CR4_SMEP; 175*cd9e9d1bSKonstantin Belousov load_cr4(cr4); 176430e272cSPeter Wemm if ((amd_feature & AMDID_NX) != 0) { 177430e272cSPeter Wemm msr = rdmsr(MSR_EFER) | EFER_NXE; 178430e272cSPeter Wemm wrmsr(MSR_EFER, msr); 179430e272cSPeter Wemm pg_nx = PG_NX; 1809d146ac5SPeter Wemm } 1813ce5dbccSJung-uk Kim switch (cpu_vendor_id) { 1823ce5dbccSJung-uk Kim case CPU_VENDOR_AMD: 1833ce5dbccSJung-uk Kim init_amd(); 1843ce5dbccSJung-uk Kim break; 1853ce5dbccSJung-uk Kim case CPU_VENDOR_CENTAUR: 18692df0bdaSJung-uk Kim init_via(); 1873ce5dbccSJung-uk Kim break; 1883ce5dbccSJung-uk Kim } 189ec24e8d4SKonstantin Belousov } 190ec24e8d4SKonstantin Belousov 191ec24e8d4SKonstantin Belousov void 192ec24e8d4SKonstantin Belousov initializecpucache() 193ec24e8d4SKonstantin Belousov { 194206a3368SKonstantin Belousov 195206a3368SKonstantin Belousov /* 196206a3368SKonstantin Belousov * CPUID with %eax = 1, %ebx returns 197206a3368SKonstantin Belousov * Bits 15-8: CLFLUSH line size 198206a3368SKonstantin Belousov * (Value * 8 = cache line size in bytes) 199206a3368SKonstantin Belousov */ 200206a3368SKonstantin Belousov if ((cpu_feature & CPUID_CLFSH) != 0) 201206a3368SKonstantin Belousov cpu_clflush_line_size = ((cpu_procinfo >> 8) & 0xff) * 8; 202b02395c6SKonstantin Belousov /* 2037134e390SJohn Baldwin * XXXKIB: (temporary) hack to work around traps generated 2047134e390SJohn Baldwin * when CLFLUSHing APIC register window under virtualization 2057134e390SJohn Baldwin * environments. These environments tend to disable the 2067134e390SJohn Baldwin * CPUID_SS feature even though the native CPU supports it. 207b02395c6SKonstantin Belousov */ 2086f5c96c4SJun Kuriyama TUNABLE_INT_FETCH("hw.clflush_disable", &hw_clflush_disable); 2097134e390SJohn Baldwin if (vm_guest != VM_GUEST_NO && hw_clflush_disable == -1) 210b02395c6SKonstantin Belousov cpu_feature &= ~CPUID_CLFSH; 2116f5c96c4SJun Kuriyama /* 2126f5c96c4SJun Kuriyama * Allow to disable CLFLUSH feature manually by 2137134e390SJohn Baldwin * hw.clflush_disable tunable. 2146f5c96c4SJun Kuriyama */ 215bb830eceSJun Kuriyama if (hw_clflush_disable == 1) 2166f5c96c4SJun Kuriyama cpu_feature &= ~CPUID_CLFSH; 2176f5c96c4SJun Kuriyama } 218