vm_version_x86.hpp 19.7 KB
Newer Older
D
duke 已提交
1
/*
2
 * Copyright (c) 1997, 2010, Oracle and/or its affiliates. All rights reserved.
D
duke 已提交
3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18
 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
 *
 * This code is free software; you can redistribute it and/or modify it
 * under the terms of the GNU General Public License version 2 only, as
 * published by the Free Software Foundation.
 *
 * This code is distributed in the hope that it will be useful, but WITHOUT
 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
 * version 2 for more details (a copy is included in the LICENSE file that
 * accompanied this code).
 *
 * You should have received a copy of the GNU General Public License version
 * 2 along with this work; if not, write to the Free Software Foundation,
 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
 *
19 20 21
 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
 * or visit www.oracle.com if you need additional information or have any
 * questions.
D
duke 已提交
22 23 24
 *
 */

25 26 27 28 29 30
#ifndef CPU_X86_VM_VM_VERSION_X86_HPP
#define CPU_X86_VM_VM_VERSION_X86_HPP

#include "runtime/globals_extension.hpp"
#include "runtime/vm_version.hpp"

D
duke 已提交
31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76
class VM_Version : public Abstract_VM_Version {
public:
  // cpuid result register layouts.  These are all unions of a uint32_t
  // (in case anyone wants access to the register as a whole) and a bitfield.

  union StdCpuid1Eax {
    uint32_t value;
    struct {
      uint32_t stepping   : 4,
               model      : 4,
               family     : 4,
               proc_type  : 2,
                          : 2,
               ext_model  : 4,
               ext_family : 8,
                          : 4;
    } bits;
  };

  union StdCpuid1Ebx { // example, unused
    uint32_t value;
    struct {
      uint32_t brand_id         : 8,
               clflush_size     : 8,
               threads_per_cpu  : 8,
               apic_id          : 8;
    } bits;
  };

  union StdCpuid1Ecx {
    uint32_t value;
    struct {
      uint32_t sse3     : 1,
                        : 2,
               monitor  : 1,
                        : 1,
               vmx      : 1,
                        : 1,
               est      : 1,
                        : 1,
               ssse3    : 1,
               cid      : 1,
                        : 2,
               cmpxchg16: 1,
                        : 4,
               dca      : 1,
77 78
               sse4_1   : 1,
               sse4_2   : 1,
79 80
                        : 2,
               popcnt   : 1,
K
kvn 已提交
81 82 83 84
                        : 3,
               osxsave  : 1,
               avx      : 1,
                        : 3;
D
duke 已提交
85 86 87 88 89 90 91 92 93 94 95 96
    } bits;
  };

  union StdCpuid1Edx {
    uint32_t value;
    struct {
      uint32_t          : 4,
               tsc      : 1,
                        : 3,
               cmpxchg8 : 1,
                        : 6,
               cmov     : 1,
97 98 99
                        : 3,
               clflush  : 1,
                        : 3,
D
duke 已提交
100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127
               mmx      : 1,
               fxsr     : 1,
               sse      : 1,
               sse2     : 1,
                        : 1,
               ht       : 1,
                        : 3;
    } bits;
  };

  union DcpCpuid4Eax {
    uint32_t value;
    struct {
      uint32_t cache_type    : 5,
                             : 21,
               cores_per_cpu : 6;
    } bits;
  };

  union DcpCpuid4Ebx {
    uint32_t value;
    struct {
      uint32_t L1_line_size  : 12,
               partitions    : 10,
               associativity : 10;
    } bits;
  };

K
kvn 已提交
128 129 130 131 132 133 134 135
  union TplCpuidBEbx {
    uint32_t value;
    struct {
      uint32_t logical_cpus : 16,
                            : 16;
    } bits;
  };

D
duke 已提交
136 137 138 139 140 141
  union ExtCpuid1Ecx {
    uint32_t value;
    struct {
      uint32_t LahfSahf     : 1,
               CmpLegacy    : 1,
                            : 4,
142
               lzcnt        : 1,
D
duke 已提交
143 144 145 146 147 148 149
               sse4a        : 1,
               misalignsse  : 1,
               prefetchw    : 1,
                            : 22;
    } bits;
  };

150 151 152 153 154 155 156 157 158 159 160 161 162 163
  union ExtCpuid1Edx {
    uint32_t value;
    struct {
      uint32_t           : 22,
               mmx_amd   : 1,
               mmx       : 1,
               fxsr      : 1,
                         : 4,
               long_mode : 1,
               tdnow2    : 1,
               tdnow     : 1;
    } bits;
  };

D
duke 已提交
164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181
  union ExtCpuid5Ex {
    uint32_t value;
    struct {
      uint32_t L1_line_size : 8,
               L1_tag_lines : 8,
               L1_assoc     : 8,
               L1_size      : 8;
    } bits;
  };

  union ExtCpuid8Ecx {
    uint32_t value;
    struct {
      uint32_t cores_per_cpu : 8,
                             : 24;
    } bits;
  };

K
kvn 已提交
182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209
  union SefCpuid7Eax {
    uint32_t value;
  };

  union SefCpuid7Ebx {
    uint32_t value;
    struct {
      uint32_t fsgsbase : 1,
                        : 2,
                   bmi1 : 1,
                        : 1,
                   avx2 : 1,
                        : 2,
                   bmi2 : 1,
                        : 23;
    } bits;
  };

  union XemXcr0Eax {
    uint32_t value;
    struct {
      uint32_t x87 : 1,
               sse : 1,
               ymm : 1,
                   : 29;
    } bits;
  };

D
duke 已提交
210 211 212 213 214 215 216 217 218
protected:
   static int _cpu;
   static int _model;
   static int _stepping;
   static int _cpuFeatures;     // features returned by the "cpuid" instruction
                                // 0 if this instruction is not available
   static const char* _features_str;

   enum {
219 220 221 222 223
     CPU_CX8    = (1 << 0), // next bits are from cpuid 1 (EDX)
     CPU_CMOV   = (1 << 1),
     CPU_FXSR   = (1 << 2),
     CPU_HT     = (1 << 3),
     CPU_MMX    = (1 << 4),
224 225
     CPU_3DNOW_PREFETCH  = (1 << 5), // Processor supports 3dnow prefetch and prefetchw instructions
                                     // may not necessarily support other 3dnow instructions
226 227 228 229 230
     CPU_SSE    = (1 << 6),
     CPU_SSE2   = (1 << 7),
     CPU_SSE3   = (1 << 8), // SSE3 comes from cpuid 1 (ECX)
     CPU_SSSE3  = (1 << 9),
     CPU_SSE4A  = (1 << 10),
231
     CPU_SSE4_1 = (1 << 11),
232
     CPU_SSE4_2 = (1 << 12),
233
     CPU_POPCNT = (1 << 13),
K
kvn 已提交
234 235 236
     CPU_LZCNT  = (1 << 14),
     CPU_AVX    = (1 << 15),
     CPU_AVX2   = (1 << 16)
D
duke 已提交
237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263
   } cpuFeatureFlags;

  // cpuid information block.  All info derived from executing cpuid with
  // various function numbers is stored here.  Intel and AMD info is
  // merged in this block: accessor methods disentangle it.
  //
  // The info block is laid out in subblocks of 4 dwords corresponding to
  // eax, ebx, ecx and edx, whether or not they contain anything useful.
  struct CpuidInfo {
    // cpuid function 0
    uint32_t std_max_function;
    uint32_t std_vendor_name_0;
    uint32_t std_vendor_name_1;
    uint32_t std_vendor_name_2;

    // cpuid function 1
    StdCpuid1Eax std_cpuid1_eax;
    StdCpuid1Ebx std_cpuid1_ebx;
    StdCpuid1Ecx std_cpuid1_ecx;
    StdCpuid1Edx std_cpuid1_edx;

    // cpuid function 4 (deterministic cache parameters)
    DcpCpuid4Eax dcp_cpuid4_eax;
    DcpCpuid4Ebx dcp_cpuid4_ebx;
    uint32_t     dcp_cpuid4_ecx; // unused currently
    uint32_t     dcp_cpuid4_edx; // unused currently

K
kvn 已提交
264 265 266 267 268 269
    // cpuid function 7 (structured extended features)
    SefCpuid7Eax sef_cpuid7_eax;
    SefCpuid7Ebx sef_cpuid7_ebx;
    uint32_t     sef_cpuid7_ecx; // unused currently
    uint32_t     sef_cpuid7_edx; // unused currently

K
kvn 已提交
270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288
    // cpuid function 0xB (processor topology)
    // ecx = 0
    uint32_t     tpl_cpuidB0_eax;
    TplCpuidBEbx tpl_cpuidB0_ebx;
    uint32_t     tpl_cpuidB0_ecx; // unused currently
    uint32_t     tpl_cpuidB0_edx; // unused currently

    // ecx = 1
    uint32_t     tpl_cpuidB1_eax;
    TplCpuidBEbx tpl_cpuidB1_ebx;
    uint32_t     tpl_cpuidB1_ecx; // unused currently
    uint32_t     tpl_cpuidB1_edx; // unused currently

    // ecx = 2
    uint32_t     tpl_cpuidB2_eax;
    TplCpuidBEbx tpl_cpuidB2_ebx;
    uint32_t     tpl_cpuidB2_ecx; // unused currently
    uint32_t     tpl_cpuidB2_edx; // unused currently

D
duke 已提交
289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316
    // cpuid function 0x80000000 // example, unused
    uint32_t ext_max_function;
    uint32_t ext_vendor_name_0;
    uint32_t ext_vendor_name_1;
    uint32_t ext_vendor_name_2;

    // cpuid function 0x80000001
    uint32_t     ext_cpuid1_eax; // reserved
    uint32_t     ext_cpuid1_ebx; // reserved
    ExtCpuid1Ecx ext_cpuid1_ecx;
    ExtCpuid1Edx ext_cpuid1_edx;

    // cpuid functions 0x80000002 thru 0x80000004: example, unused
    uint32_t proc_name_0, proc_name_1, proc_name_2, proc_name_3;
    uint32_t proc_name_4, proc_name_5, proc_name_6, proc_name_7;
    uint32_t proc_name_8, proc_name_9, proc_name_10,proc_name_11;

    // cpuid function 0x80000005 //AMD L1, Intel reserved
    uint32_t     ext_cpuid5_eax; // unused currently
    uint32_t     ext_cpuid5_ebx; // reserved
    ExtCpuid5Ex  ext_cpuid5_ecx; // L1 data cache info (AMD)
    ExtCpuid5Ex  ext_cpuid5_edx; // L1 instruction cache info (AMD)

    // cpuid function 0x80000008
    uint32_t     ext_cpuid8_eax; // unused currently
    uint32_t     ext_cpuid8_ebx; // reserved
    ExtCpuid8Ecx ext_cpuid8_ecx;
    uint32_t     ext_cpuid8_edx; // reserved
K
kvn 已提交
317 318 319 320

    // extended control register XCR0 (the XFEATURE_ENABLED_MASK register)
    XemXcr0Eax   xem_xcr0_eax;
    uint32_t     xem_xcr0_edx; // reserved
D
duke 已提交
321 322 323 324 325 326 327 328
  };

  // The actual cpuid info block
  static CpuidInfo _cpuid_info;

  // Extractors and predicates
  static uint32_t extended_cpu_family() {
    uint32_t result = _cpuid_info.std_cpuid1_eax.bits.family;
329
    result += _cpuid_info.std_cpuid1_eax.bits.ext_family;
D
duke 已提交
330 331 332 333
    return result;
  }
  static uint32_t extended_cpu_model() {
    uint32_t result = _cpuid_info.std_cpuid1_eax.bits.model;
334
    result |= _cpuid_info.std_cpuid1_eax.bits.ext_model << 4;
D
duke 已提交
335 336 337 338 339 340 341 342 343 344 345 346 347 348 349 350
    return result;
  }
  static uint32_t cpu_stepping() {
    uint32_t result = _cpuid_info.std_cpuid1_eax.bits.stepping;
    return result;
  }
  static uint logical_processor_count() {
    uint result = threads_per_core();
    return result;
  }
  static uint32_t feature_flags() {
    uint32_t result = 0;
    if (_cpuid_info.std_cpuid1_edx.bits.cmpxchg8 != 0)
      result |= CPU_CX8;
    if (_cpuid_info.std_cpuid1_edx.bits.cmov != 0)
      result |= CPU_CMOV;
351 352
    if (_cpuid_info.std_cpuid1_edx.bits.fxsr != 0 || (is_amd() &&
        _cpuid_info.ext_cpuid1_edx.bits.fxsr != 0))
D
duke 已提交
353 354 355 356
      result |= CPU_FXSR;
    // HT flag is set for multi-core processors also.
    if (threads_per_core() > 1)
      result |= CPU_HT;
357 358
    if (_cpuid_info.std_cpuid1_edx.bits.mmx != 0 || (is_amd() &&
        _cpuid_info.ext_cpuid1_edx.bits.mmx != 0))
D
duke 已提交
359 360 361 362 363 364 365 366 367
      result |= CPU_MMX;
    if (_cpuid_info.std_cpuid1_edx.bits.sse != 0)
      result |= CPU_SSE;
    if (_cpuid_info.std_cpuid1_edx.bits.sse2 != 0)
      result |= CPU_SSE2;
    if (_cpuid_info.std_cpuid1_ecx.bits.sse3 != 0)
      result |= CPU_SSE3;
    if (_cpuid_info.std_cpuid1_ecx.bits.ssse3 != 0)
      result |= CPU_SSSE3;
368 369 370 371
    if (_cpuid_info.std_cpuid1_ecx.bits.sse4_1 != 0)
      result |= CPU_SSE4_1;
    if (_cpuid_info.std_cpuid1_ecx.bits.sse4_2 != 0)
      result |= CPU_SSE4_2;
372 373
    if (_cpuid_info.std_cpuid1_ecx.bits.popcnt != 0)
      result |= CPU_POPCNT;
K
kvn 已提交
374 375 376 377 378 379 380 381
    if (_cpuid_info.std_cpuid1_ecx.bits.avx != 0 &&
        _cpuid_info.std_cpuid1_ecx.bits.osxsave != 0 &&
        _cpuid_info.xem_xcr0_eax.bits.sse != 0 &&
        _cpuid_info.xem_xcr0_eax.bits.ymm != 0) {
      result |= CPU_AVX;
      if (_cpuid_info.sef_cpuid7_ebx.bits.avx2 != 0)
        result |= CPU_AVX2;
    }
382 383 384

    // AMD features.
    if (is_amd()) {
385 386 387
      if ((_cpuid_info.ext_cpuid1_edx.bits.tdnow != 0) ||
          (_cpuid_info.ext_cpuid1_ecx.bits.prefetchw != 0))
        result |= CPU_3DNOW_PREFETCH;
388 389 390 391 392 393
      if (_cpuid_info.ext_cpuid1_ecx.bits.lzcnt != 0)
        result |= CPU_LZCNT;
      if (_cpuid_info.ext_cpuid1_ecx.bits.sse4a != 0)
        result |= CPU_SSE4A;
    }

D
duke 已提交
394 395 396 397 398 399 400 401 402 403
    return result;
  }

  static void get_processor_features();

public:
  // Offsets for cpuid asm stub
  static ByteSize std_cpuid0_offset() { return byte_offset_of(CpuidInfo, std_max_function); }
  static ByteSize std_cpuid1_offset() { return byte_offset_of(CpuidInfo, std_cpuid1_eax); }
  static ByteSize dcp_cpuid4_offset() { return byte_offset_of(CpuidInfo, dcp_cpuid4_eax); }
K
kvn 已提交
404
  static ByteSize sef_cpuid7_offset() { return byte_offset_of(CpuidInfo, sef_cpuid7_eax); }
D
duke 已提交
405 406 407
  static ByteSize ext_cpuid1_offset() { return byte_offset_of(CpuidInfo, ext_cpuid1_eax); }
  static ByteSize ext_cpuid5_offset() { return byte_offset_of(CpuidInfo, ext_cpuid5_eax); }
  static ByteSize ext_cpuid8_offset() { return byte_offset_of(CpuidInfo, ext_cpuid8_eax); }
K
kvn 已提交
408 409 410
  static ByteSize tpl_cpuidB0_offset() { return byte_offset_of(CpuidInfo, tpl_cpuidB0_eax); }
  static ByteSize tpl_cpuidB1_offset() { return byte_offset_of(CpuidInfo, tpl_cpuidB1_eax); }
  static ByteSize tpl_cpuidB2_offset() { return byte_offset_of(CpuidInfo, tpl_cpuidB2_eax); }
K
kvn 已提交
411
  static ByteSize xem_xcr0_offset() { return byte_offset_of(CpuidInfo, xem_xcr0_eax); }
D
duke 已提交
412 413 414 415 416 417 418 419 420 421 422 423 424 425 426 427 428 429 430 431 432 433 434 435 436 437 438 439 440 441

  // Initialization
  static void initialize();

  // Asserts
  static void assert_is_initialized() {
    assert(_cpuid_info.std_cpuid1_eax.bits.family != 0, "VM_Version not initialized");
  }

  //
  // Processor family:
  //       3   -  386
  //       4   -  486
  //       5   -  Pentium
  //       6   -  PentiumPro, Pentium II, Celeron, Xeon, Pentium III, Athlon,
  //              Pentium M, Core Solo, Core Duo, Core2 Duo
  //    family 6 model:   9,        13,       14,        15
  //    0x0f   -  Pentium 4, Opteron
  //
  // Note: The cpu family should be used to select between
  //       instruction sequences which are valid on all Intel
  //       processors.  Use the feature test functions below to
  //       determine whether a particular instruction is supported.
  //
  static int  cpu_family()        { return _cpu;}
  static bool is_P6()             { return cpu_family() >= 6; }

  static bool is_amd()            { assert_is_initialized(); return _cpuid_info.std_vendor_name_0 == 0x68747541; } // 'htuA'
  static bool is_intel()          { assert_is_initialized(); return _cpuid_info.std_vendor_name_0 == 0x756e6547; } // 'uneG'

442 443 444 445 446 447 448
  static bool supports_processor_topology() {
    return (_cpuid_info.std_max_function >= 0xB) &&
           // eax[4:0] | ebx[0:15] == 0 indicates invalid topology level.
           // Some cpus have max cpuid >= 0xB but do not support processor topology.
           ((_cpuid_info.tpl_cpuidB0_eax & 0x1f | _cpuid_info.tpl_cpuidB0_ebx.bits.logical_cpus) != 0);
  }

D
duke 已提交
449 450 451
  static uint cores_per_cpu()  {
    uint result = 1;
    if (is_intel()) {
452
      if (supports_processor_topology()) {
K
kvn 已提交
453 454 455 456 457
        result = _cpuid_info.tpl_cpuidB1_ebx.bits.logical_cpus /
                 _cpuid_info.tpl_cpuidB0_ebx.bits.logical_cpus;
      } else {
        result = (_cpuid_info.dcp_cpuid4_eax.bits.cores_per_cpu + 1);
      }
D
duke 已提交
458 459 460 461 462 463 464 465
    } else if (is_amd()) {
      result = (_cpuid_info.ext_cpuid8_ecx.bits.cores_per_cpu + 1);
    }
    return result;
  }

  static uint threads_per_core()  {
    uint result = 1;
466
    if (is_intel() && supports_processor_topology()) {
K
kvn 已提交
467 468
      result = _cpuid_info.tpl_cpuidB0_ebx.bits.logical_cpus;
    } else if (_cpuid_info.std_cpuid1_edx.bits.ht != 0) {
D
duke 已提交
469 470 471 472 473 474
      result = _cpuid_info.std_cpuid1_ebx.bits.threads_per_cpu /
               cores_per_cpu();
    }
    return result;
  }

475
  static intx prefetch_data_size()  {
D
duke 已提交
476 477 478 479 480 481 482
    intx result = 0;
    if (is_intel()) {
      result = (_cpuid_info.dcp_cpuid4_ebx.bits.L1_line_size + 1);
    } else if (is_amd()) {
      result = _cpuid_info.ext_cpuid5_ecx.bits.L1_line_size;
    }
    if (result < 32) // not defined ?
483
      result = 32;   // 32 bytes by default on x86 and other x64
D
duke 已提交
484 485 486 487 488 489 490 491 492 493 494 495 496 497 498 499
    return result;
  }

  //
  // Feature identification
  //
  static bool supports_cpuid()    { return _cpuFeatures  != 0; }
  static bool supports_cmpxchg8() { return (_cpuFeatures & CPU_CX8) != 0; }
  static bool supports_cmov()     { return (_cpuFeatures & CPU_CMOV) != 0; }
  static bool supports_fxsr()     { return (_cpuFeatures & CPU_FXSR) != 0; }
  static bool supports_ht()       { return (_cpuFeatures & CPU_HT) != 0; }
  static bool supports_mmx()      { return (_cpuFeatures & CPU_MMX) != 0; }
  static bool supports_sse()      { return (_cpuFeatures & CPU_SSE) != 0; }
  static bool supports_sse2()     { return (_cpuFeatures & CPU_SSE2) != 0; }
  static bool supports_sse3()     { return (_cpuFeatures & CPU_SSE3) != 0; }
  static bool supports_ssse3()    { return (_cpuFeatures & CPU_SSSE3)!= 0; }
500 501
  static bool supports_sse4_1()   { return (_cpuFeatures & CPU_SSE4_1) != 0; }
  static bool supports_sse4_2()   { return (_cpuFeatures & CPU_SSE4_2) != 0; }
502
  static bool supports_popcnt()   { return (_cpuFeatures & CPU_POPCNT) != 0; }
K
kvn 已提交
503 504
  static bool supports_avx()      { return (_cpuFeatures & CPU_AVX) != 0; }
  static bool supports_avx2()     { return (_cpuFeatures & CPU_AVX2) != 0; }
D
duke 已提交
505 506 507
  //
  // AMD features
  //
508
  static bool supports_3dnow_prefetch()    { return (_cpuFeatures & CPU_3DNOW_PREFETCH) != 0; }
D
duke 已提交
509
  static bool supports_mmx_ext()  { return is_amd() && _cpuid_info.ext_cpuid1_edx.bits.mmx_amd != 0; }
510
  static bool supports_lzcnt()    { return (_cpuFeatures & CPU_LZCNT) != 0; }
D
duke 已提交
511 512
  static bool supports_sse4a()    { return (_cpuFeatures & CPU_SSE4A) != 0; }

513 514 515 516
  // Intel Core and newer cpus have fast IDIV instruction (excluding Atom).
  static bool has_fast_idiv()     { return is_intel() && cpu_family() == 6 &&
                                           supports_sse3() && _model != 0x1C; }

D
duke 已提交
517 518 519 520 521 522 523 524
  static bool supports_compare_and_exchange() { return true; }

  static const char* cpu_features()           { return _features_str; }

  static intx allocate_prefetch_distance() {
    // This method should be called before allocate_prefetch_style().
    //
    // Hardware prefetching (distance/size in bytes):
525
    // Pentium 3 -  64 /  32
D
duke 已提交
526
    // Pentium 4 - 256 / 128
527
    // Athlon    -  64 /  32 ????
D
duke 已提交
528 529 530 531
    // Opteron   - 128 /  64 only when 2 sequential cache lines accessed
    // Core      - 128 /  64
    //
    // Software prefetching (distance in bytes / instruction with best score):
532
    // Pentium 3 - 128 / prefetchnta
D
duke 已提交
533
    // Pentium 4 - 512 / prefetchnta
534
    // Athlon    - 128 / prefetchnta
D
duke 已提交
535 536 537 538 539
    // Opteron   - 256 / prefetchnta
    // Core      - 256 / prefetchnta
    // It will be used only when AllocatePrefetchStyle > 0

    intx count = AllocatePrefetchDistance;
540 541 542 543 544 545 546 547 548 549 550 551 552 553 554
    if (count < 0) {   // default ?
      if (is_amd()) {  // AMD
        if (supports_sse2())
          count = 256; // Opteron
        else
          count = 128; // Athlon
      } else {         // Intel
        if (supports_sse2())
          if (cpu_family() == 6) {
            count = 256; // Pentium M, Core, Core2
          } else {
            count = 512; // Pentium 4
          }
        else
          count = 128; // Pentium 3 (and all other old CPUs)
D
duke 已提交
555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571 572 573 574 575 576 577 578 579 580 581 582 583 584 585 586
      }
    }
    return count;
  }
  static intx allocate_prefetch_style() {
    assert(AllocatePrefetchStyle >= 0, "AllocatePrefetchStyle should be positive");
    // Return 0 if AllocatePrefetchDistance was not defined.
    return AllocatePrefetchDistance > 0 ? AllocatePrefetchStyle : 0;
  }

  // Prefetch interval for gc copy/scan == 9 dcache lines.  Derived from
  // 50-warehouse specjbb runs on a 2-way 1.8ghz opteron using a 4gb heap.
  // Tested intervals from 128 to 2048 in increments of 64 == one cache line.
  // 256 bytes (4 dcache lines) was the nearest runner-up to 576.

  // gc copy/scan is disabled if prefetchw isn't supported, because
  // Prefetch::write emits an inlined prefetchw on Linux.
  // Do not use the 3dnow prefetchw instruction.  It isn't supported on em64t.
  // The used prefetcht0 instruction works for both amd64 and em64t.
  static intx prefetch_copy_interval_in_bytes() {
    intx interval = PrefetchCopyIntervalInBytes;
    return interval >= 0 ? interval : 576;
  }
  static intx prefetch_scan_interval_in_bytes() {
    intx interval = PrefetchScanIntervalInBytes;
    return interval >= 0 ? interval : 576;
  }
  static intx prefetch_fields_ahead() {
    intx count = PrefetchFieldsAhead;
    return count >= 0 ? count : 1;
  }
};
587 588

#endif // CPU_X86_VM_VM_VERSION_X86_HPP