1247c9de1SEduardo Habkost /* 2247c9de1SEduardo Habkost * x86 CPU topology data structures and functions 3247c9de1SEduardo Habkost * 4247c9de1SEduardo Habkost * Copyright (c) 2012 Red Hat Inc. 5247c9de1SEduardo Habkost * 6247c9de1SEduardo Habkost * Permission is hereby granted, free of charge, to any person obtaining a copy 7247c9de1SEduardo Habkost * of this software and associated documentation files (the "Software"), to deal 8247c9de1SEduardo Habkost * in the Software without restriction, including without limitation the rights 9247c9de1SEduardo Habkost * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell 10247c9de1SEduardo Habkost * copies of the Software, and to permit persons to whom the Software is 11247c9de1SEduardo Habkost * furnished to do so, subject to the following conditions: 12247c9de1SEduardo Habkost * 13247c9de1SEduardo Habkost * The above copyright notice and this permission notice shall be included in 14247c9de1SEduardo Habkost * all copies or substantial portions of the Software. 15247c9de1SEduardo Habkost * 16247c9de1SEduardo Habkost * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 17247c9de1SEduardo Habkost * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 18247c9de1SEduardo Habkost * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 19247c9de1SEduardo Habkost * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER 20247c9de1SEduardo Habkost * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, 21247c9de1SEduardo Habkost * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN 22247c9de1SEduardo Habkost * THE SOFTWARE. 23247c9de1SEduardo Habkost */ 24869b7649SEduardo Habkost #ifndef HW_I386_TOPOLOGY_H 25869b7649SEduardo Habkost #define HW_I386_TOPOLOGY_H 26247c9de1SEduardo Habkost 275f0d69b5SZhao Liu /* 285f0d69b5SZhao Liu * This file implements the APIC-ID-based CPU topology enumeration logic, 29247c9de1SEduardo Habkost * documented at the following document: 30247c9de1SEduardo Habkost * Intel® 64 Architecture Processor Topology Enumeration 31247c9de1SEduardo Habkost * http://software.intel.com/en-us/articles/intel-64-architecture-processor-topology-enumeration/ 32247c9de1SEduardo Habkost * 33247c9de1SEduardo Habkost * This code should be compatible with AMD's "Extended Method" described at: 34247c9de1SEduardo Habkost * AMD CPUID Specification (Publication #25481) 35bad5cfcdSMichael Tokarev * Section 3: Multiple Core Calculation 36247c9de1SEduardo Habkost * as long as: 37247c9de1SEduardo Habkost * nr_threads is set to 1; 38247c9de1SEduardo Habkost * OFFSET_IDX is assumed to be 0; 39247c9de1SEduardo Habkost * CPUID Fn8000_0008_ECX[ApicIdCoreIdSize[3:0]] is set to apicid_core_width(). 40247c9de1SEduardo Habkost */ 41247c9de1SEduardo Habkost 42247c9de1SEduardo Habkost 43247c9de1SEduardo Habkost #include "qemu/bitops.h" 44247c9de1SEduardo Habkost 455f0d69b5SZhao Liu /* 465f0d69b5SZhao Liu * APIC IDs can be 32-bit, but beware: APIC IDs > 255 require x2APIC support 47247c9de1SEduardo Habkost */ 48247c9de1SEduardo Habkost typedef uint32_t apic_id_t; 49247c9de1SEduardo Habkost 50dcf08bc6SBabu Moger typedef struct X86CPUTopoIDs { 51ed256144SChen Fan unsigned pkg_id; 52176d2cdaSLike Xu unsigned die_id; 53*b17a26bcSZhao Liu unsigned module_id; 54ed256144SChen Fan unsigned core_id; 55ed256144SChen Fan unsigned smt_id; 56dcf08bc6SBabu Moger } X86CPUTopoIDs; 57ed256144SChen Fan 5853a5e7bdSBabu Moger typedef struct X86CPUTopoInfo { 5953a5e7bdSBabu Moger unsigned dies_per_pkg; 603568adc9SZhao Liu unsigned modules_per_die; 613568adc9SZhao Liu unsigned cores_per_module; 6253a5e7bdSBabu Moger unsigned threads_per_core; 6353a5e7bdSBabu Moger } X86CPUTopoInfo; 6453a5e7bdSBabu Moger 656ddeb0ecSZhao Liu /* 666ddeb0ecSZhao Liu * CPUTopoLevel is the general i386 topology hierarchical representation, 676ddeb0ecSZhao Liu * ordered by increasing hierarchical relationship. 686ddeb0ecSZhao Liu * Its enumeration value is not bound to the type value of Intel (CPUID[0x1F]) 696ddeb0ecSZhao Liu * or AMD (CPUID[0x80000026]). 706ddeb0ecSZhao Liu */ 716ddeb0ecSZhao Liu enum CPUTopoLevel { 726ddeb0ecSZhao Liu CPU_TOPO_LEVEL_INVALID, 736ddeb0ecSZhao Liu CPU_TOPO_LEVEL_SMT, 746ddeb0ecSZhao Liu CPU_TOPO_LEVEL_CORE, 755304873aSZhao Liu CPU_TOPO_LEVEL_MODULE, 766ddeb0ecSZhao Liu CPU_TOPO_LEVEL_DIE, 776ddeb0ecSZhao Liu CPU_TOPO_LEVEL_PACKAGE, 786ddeb0ecSZhao Liu CPU_TOPO_LEVEL_MAX, 796ddeb0ecSZhao Liu }; 806ddeb0ecSZhao Liu 815f0d69b5SZhao Liu /* Return the bit width needed for 'count' IDs */ 82247c9de1SEduardo Habkost static unsigned apicid_bitwidth_for_count(unsigned count) 83247c9de1SEduardo Habkost { 84247c9de1SEduardo Habkost g_assert(count >= 1); 8514e53426SRichard Henderson count -= 1; 8614e53426SRichard Henderson return count ? 32 - clz32(count) : 0; 87247c9de1SEduardo Habkost } 88247c9de1SEduardo Habkost 895f0d69b5SZhao Liu /* Bit width of the SMT_ID (thread ID) field on the APIC ID */ 90f20dec0bSBabu Moger static inline unsigned apicid_smt_width(X86CPUTopoInfo *topo_info) 91247c9de1SEduardo Habkost { 92f20dec0bSBabu Moger return apicid_bitwidth_for_count(topo_info->threads_per_core); 93247c9de1SEduardo Habkost } 94247c9de1SEduardo Habkost 955f0d69b5SZhao Liu /* Bit width of the Core_ID field */ 96f20dec0bSBabu Moger static inline unsigned apicid_core_width(X86CPUTopoInfo *topo_info) 97247c9de1SEduardo Habkost { 983568adc9SZhao Liu return apicid_bitwidth_for_count(topo_info->cores_per_module); 993568adc9SZhao Liu } 1003568adc9SZhao Liu 1013568adc9SZhao Liu /* Bit width of the Module_ID field */ 1023568adc9SZhao Liu static inline unsigned apicid_module_width(X86CPUTopoInfo *topo_info) 1033568adc9SZhao Liu { 1043568adc9SZhao Liu return apicid_bitwidth_for_count(topo_info->modules_per_die); 105247c9de1SEduardo Habkost } 106247c9de1SEduardo Habkost 107d65af288SLike Xu /* Bit width of the Die_ID field */ 108f20dec0bSBabu Moger static inline unsigned apicid_die_width(X86CPUTopoInfo *topo_info) 109247c9de1SEduardo Habkost { 110f20dec0bSBabu Moger return apicid_bitwidth_for_count(topo_info->dies_per_pkg); 111d65af288SLike Xu } 112d65af288SLike Xu 1135f0d69b5SZhao Liu /* Bit offset of the Core_ID field */ 114f20dec0bSBabu Moger static inline unsigned apicid_core_offset(X86CPUTopoInfo *topo_info) 115d65af288SLike Xu { 116f20dec0bSBabu Moger return apicid_smt_width(topo_info); 117d65af288SLike Xu } 118d65af288SLike Xu 1193568adc9SZhao Liu /* Bit offset of the Module_ID field */ 1203568adc9SZhao Liu static inline unsigned apicid_module_offset(X86CPUTopoInfo *topo_info) 1213568adc9SZhao Liu { 1223568adc9SZhao Liu return apicid_core_offset(topo_info) + apicid_core_width(topo_info); 1233568adc9SZhao Liu } 1243568adc9SZhao Liu 125d65af288SLike Xu /* Bit offset of the Die_ID field */ 126f20dec0bSBabu Moger static inline unsigned apicid_die_offset(X86CPUTopoInfo *topo_info) 127d65af288SLike Xu { 1283568adc9SZhao Liu return apicid_module_offset(topo_info) + apicid_module_width(topo_info); 129247c9de1SEduardo Habkost } 130247c9de1SEduardo Habkost 1315f0d69b5SZhao Liu /* Bit offset of the Pkg_ID (socket ID) field */ 132f20dec0bSBabu Moger static inline unsigned apicid_pkg_offset(X86CPUTopoInfo *topo_info) 133247c9de1SEduardo Habkost { 134f20dec0bSBabu Moger return apicid_die_offset(topo_info) + apicid_die_width(topo_info); 135247c9de1SEduardo Habkost } 136247c9de1SEduardo Habkost 1375f0d69b5SZhao Liu /* 1385f0d69b5SZhao Liu * Make APIC ID for the CPU based on Pkg_ID, Core_ID, SMT_ID 139247c9de1SEduardo Habkost * 140247c9de1SEduardo Habkost * The caller must make sure core_id < nr_cores and smt_id < nr_threads. 141247c9de1SEduardo Habkost */ 1423c6712ecSBabu Moger static inline apic_id_t x86_apicid_from_topo_ids(X86CPUTopoInfo *topo_info, 143dcf08bc6SBabu Moger const X86CPUTopoIDs *topo_ids) 144247c9de1SEduardo Habkost { 145f20dec0bSBabu Moger return (topo_ids->pkg_id << apicid_pkg_offset(topo_info)) | 146f20dec0bSBabu Moger (topo_ids->die_id << apicid_die_offset(topo_info)) | 147*b17a26bcSZhao Liu (topo_ids->module_id << apicid_module_offset(topo_info)) | 148f20dec0bSBabu Moger (topo_ids->core_id << apicid_core_offset(topo_info)) | 149dcf08bc6SBabu Moger topo_ids->smt_id; 150247c9de1SEduardo Habkost } 151247c9de1SEduardo Habkost 1525f0d69b5SZhao Liu /* 1535f0d69b5SZhao Liu * Calculate thread/core/package IDs for a specific topology, 154247c9de1SEduardo Habkost * based on (contiguous) CPU index 155247c9de1SEduardo Habkost */ 15653a5e7bdSBabu Moger static inline void x86_topo_ids_from_idx(X86CPUTopoInfo *topo_info, 157247c9de1SEduardo Habkost unsigned cpu_index, 158dcf08bc6SBabu Moger X86CPUTopoIDs *topo_ids) 159247c9de1SEduardo Habkost { 16053a5e7bdSBabu Moger unsigned nr_dies = topo_info->dies_per_pkg; 161*b17a26bcSZhao Liu unsigned nr_modules = topo_info->modules_per_die; 162*b17a26bcSZhao Liu unsigned nr_cores = topo_info->cores_per_module; 16353a5e7bdSBabu Moger unsigned nr_threads = topo_info->threads_per_core; 16453a5e7bdSBabu Moger 165*b17a26bcSZhao Liu topo_ids->pkg_id = cpu_index / (nr_dies * nr_modules * 166*b17a26bcSZhao Liu nr_cores * nr_threads); 167*b17a26bcSZhao Liu topo_ids->die_id = cpu_index / (nr_modules * nr_cores * 168*b17a26bcSZhao Liu nr_threads) % nr_dies; 169*b17a26bcSZhao Liu topo_ids->module_id = cpu_index / (nr_cores * nr_threads) % 170*b17a26bcSZhao Liu nr_modules; 171dcf08bc6SBabu Moger topo_ids->core_id = cpu_index / nr_threads % nr_cores; 172dcf08bc6SBabu Moger topo_ids->smt_id = cpu_index % nr_threads; 173247c9de1SEduardo Habkost } 174247c9de1SEduardo Habkost 1755f0d69b5SZhao Liu /* 1765f0d69b5SZhao Liu * Calculate thread/core/package IDs for a specific topology, 1779f3aab58SIgor Mammedov * based on APIC ID 1789f3aab58SIgor Mammedov */ 1799f3aab58SIgor Mammedov static inline void x86_topo_ids_from_apicid(apic_id_t apicid, 18053a5e7bdSBabu Moger X86CPUTopoInfo *topo_info, 181dcf08bc6SBabu Moger X86CPUTopoIDs *topo_ids) 1829f3aab58SIgor Mammedov { 183dcf08bc6SBabu Moger topo_ids->smt_id = apicid & 184f20dec0bSBabu Moger ~(0xFFFFFFFFUL << apicid_smt_width(topo_info)); 185dcf08bc6SBabu Moger topo_ids->core_id = 186f20dec0bSBabu Moger (apicid >> apicid_core_offset(topo_info)) & 187f20dec0bSBabu Moger ~(0xFFFFFFFFUL << apicid_core_width(topo_info)); 188*b17a26bcSZhao Liu topo_ids->module_id = 189*b17a26bcSZhao Liu (apicid >> apicid_module_offset(topo_info)) & 190*b17a26bcSZhao Liu ~(0xFFFFFFFFUL << apicid_module_width(topo_info)); 191dcf08bc6SBabu Moger topo_ids->die_id = 192f20dec0bSBabu Moger (apicid >> apicid_die_offset(topo_info)) & 193f20dec0bSBabu Moger ~(0xFFFFFFFFUL << apicid_die_width(topo_info)); 194f20dec0bSBabu Moger topo_ids->pkg_id = apicid >> apicid_pkg_offset(topo_info); 1959f3aab58SIgor Mammedov } 1969f3aab58SIgor Mammedov 1975f0d69b5SZhao Liu /* 1985f0d69b5SZhao Liu * Make APIC ID for the CPU 'cpu_index' 199247c9de1SEduardo Habkost * 200247c9de1SEduardo Habkost * 'cpu_index' is a sequential, contiguous ID for the CPU. 201247c9de1SEduardo Habkost */ 20253a5e7bdSBabu Moger static inline apic_id_t x86_apicid_from_cpu_idx(X86CPUTopoInfo *topo_info, 203247c9de1SEduardo Habkost unsigned cpu_index) 204247c9de1SEduardo Habkost { 205dcf08bc6SBabu Moger X86CPUTopoIDs topo_ids; 20653a5e7bdSBabu Moger x86_topo_ids_from_idx(topo_info, cpu_index, &topo_ids); 2073c6712ecSBabu Moger return x86_apicid_from_topo_ids(topo_info, &topo_ids); 208247c9de1SEduardo Habkost } 209247c9de1SEduardo Habkost 2106ddeb0ecSZhao Liu /* 2115304873aSZhao Liu * Check whether there's extended topology level (module or die)? 2126ddeb0ecSZhao Liu */ 2136ddeb0ecSZhao Liu static inline bool x86_has_extended_topo(unsigned long *topo_bitmap) 2146ddeb0ecSZhao Liu { 2155304873aSZhao Liu return test_bit(CPU_TOPO_LEVEL_MODULE, topo_bitmap) || 2165304873aSZhao Liu test_bit(CPU_TOPO_LEVEL_DIE, topo_bitmap); 2176ddeb0ecSZhao Liu } 2186ddeb0ecSZhao Liu 219869b7649SEduardo Habkost #endif /* HW_I386_TOPOLOGY_H */ 220