author | shade |
Thu, 04 Feb 2016 21:44:23 +0300 | |
changeset 35708 | 290a3952e434 |
parent 35154 | a9b3c1984a01 |
child 35581 | dd47cf4734f2 |
permissions | -rw-r--r-- |
29183 | 1 |
/* |
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* Copyright (c) 1997, 2015, Oracle and/or its affiliates. All rights reserved. |
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* Copyright (c) 2015, Red Hat Inc. All rights reserved. |
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
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* |
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* This code is free software; you can redistribute it and/or modify it |
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* under the terms of the GNU General Public License version 2 only, as |
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* published by the Free Software Foundation. |
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* |
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* This code is distributed in the hope that it will be useful, but WITHOUT |
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License |
|
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* version 2 for more details (a copy is included in the LICENSE file that |
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* accompanied this code). |
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* |
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* You should have received a copy of the GNU General Public License version |
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* 2 along with this work; if not, write to the Free Software Foundation, |
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. |
|
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* |
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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* or visit www.oracle.com if you need additional information or have any |
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* questions. |
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* |
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*/ |
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||
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#include "precompiled.hpp" |
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#include "asm/macroAssembler.hpp" |
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#include "asm/macroAssembler.inline.hpp" |
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#include "memory/resourceArea.hpp" |
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#include "runtime/java.hpp" |
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#include "runtime/stubCodeGenerator.hpp" |
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#include "vm_version_aarch64.hpp" |
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#ifdef TARGET_OS_FAMILY_linux |
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# include "os_linux.inline.hpp" |
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#endif |
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#ifndef BUILTIN_SIM |
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#include <sys/auxv.h> |
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#include <asm/hwcap.h> |
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#else |
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#define getauxval(hwcap) 0 |
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#endif |
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#ifndef HWCAP_AES |
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#define HWCAP_AES (1<<3) |
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#endif |
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#ifndef HWCAP_PMULL |
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#define HWCAP_PMULL (1<<4) |
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#endif |
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#ifndef HWCAP_SHA1 |
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#define HWCAP_SHA1 (1<<5) |
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#endif |
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#ifndef HWCAP_SHA2 |
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#define HWCAP_SHA2 (1<<6) |
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#endif |
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#ifndef HWCAP_CRC32 |
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#define HWCAP_CRC32 (1<<7) |
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#endif |
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int VM_Version::_cpu; |
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int VM_Version::_model; |
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int VM_Version::_model2; |
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int VM_Version::_variant; |
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int VM_Version::_revision; |
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int VM_Version::_stepping; |
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static BufferBlob* stub_blob; |
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static const int stub_size = 550; |
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extern "C" { |
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typedef void (*getPsrInfo_stub_t)(void*); |
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} |
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static getPsrInfo_stub_t getPsrInfo_stub = NULL; |
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class VM_Version_StubGenerator: public StubCodeGenerator { |
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public: |
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VM_Version_StubGenerator(CodeBuffer *c) : StubCodeGenerator(c) {} |
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address generate_getPsrInfo() { |
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StubCodeMark mark(this, "VM_Version", "getPsrInfo_stub"); |
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# define __ _masm-> |
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address start = __ pc(); |
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#ifdef BUILTIN_SIM |
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__ c_stub_prolog(1, 0, MacroAssembler::ret_type_void); |
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#endif |
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// void getPsrInfo(VM_Version::CpuidInfo* cpuid_info); |
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address entry = __ pc(); |
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// TODO : redefine fields in CpuidInfo and generate |
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// code to fill them in |
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__ ret(lr); |
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# undef __ |
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return start; |
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} |
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}; |
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void VM_Version::get_processor_features() { |
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_supports_cx8 = true; |
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_supports_atomic_getset4 = true; |
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_supports_atomic_getadd4 = true; |
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_supports_atomic_getset8 = true; |
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_supports_atomic_getadd8 = true; |
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if (FLAG_IS_DEFAULT(AllocatePrefetchDistance)) |
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FLAG_SET_DEFAULT(AllocatePrefetchDistance, 256); |
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if (FLAG_IS_DEFAULT(AllocatePrefetchStepSize)) |
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FLAG_SET_DEFAULT(AllocatePrefetchStepSize, 64); |
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FLAG_SET_DEFAULT(PrefetchScanIntervalInBytes, 256); |
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FLAG_SET_DEFAULT(PrefetchFieldsAhead, 256); |
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FLAG_SET_DEFAULT(PrefetchCopyIntervalInBytes, 256); |
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FLAG_SET_DEFAULT(UseSSE42Intrinsics, true); |
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unsigned long auxv = getauxval(AT_HWCAP); |
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char buf[512]; |
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_features = auxv; |
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int cpu_lines = 0; |
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if (FILE *f = fopen("/proc/cpuinfo", "r")) { |
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char buf[128], *p; |
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while (fgets(buf, sizeof (buf), f) != NULL) { |
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if (p = strchr(buf, ':')) { |
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long v = strtol(p+1, NULL, 0); |
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if (strncmp(buf, "CPU implementer", sizeof "CPU implementer" - 1) == 0) { |
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_cpu = v; |
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cpu_lines++; |
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} else if (strncmp(buf, "CPU variant", sizeof "CPU variant" - 1) == 0) { |
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_variant = v; |
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} else if (strncmp(buf, "CPU part", sizeof "CPU part" - 1) == 0) { |
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if (_model != v) _model2 = _model; |
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_model = v; |
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} else if (strncmp(buf, "CPU revision", sizeof "CPU revision" - 1) == 0) { |
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_revision = v; |
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} |
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} |
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} |
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fclose(f); |
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} |
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// Enable vendor specific features |
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if (_cpu == CPU_CAVIUM && _variant == 0) _features |= CPU_DMB_ATOMICS; |
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if (_cpu == CPU_ARM && (_model == 0xd03 || _model2 == 0xd03)) _features |= CPU_A53MAC; |
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// If an olde style /proc/cpuinfo (cpu_lines == 1) then if _model is an A57 (0xd07) |
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// we assume the worst and assume we could be on a big little system and have |
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// undisclosed A53 cores which we could be swapped to at any stage |
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if (_cpu == CPU_ARM && cpu_lines == 1 && _model == 0xd07) _features |= CPU_A53MAC; |
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sprintf(buf, "0x%02x:0x%x:0x%03x:%d", _cpu, _variant, _model, _revision); |
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if (_model2) sprintf(buf+strlen(buf), "(0x%03x)", _model2); |
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if (auxv & HWCAP_ASIMD) strcat(buf, ", simd"); |
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if (auxv & HWCAP_CRC32) strcat(buf, ", crc"); |
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if (auxv & HWCAP_AES) strcat(buf, ", aes"); |
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if (auxv & HWCAP_SHA1) strcat(buf, ", sha1"); |
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if (auxv & HWCAP_SHA2) strcat(buf, ", sha256"); |
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_features_string = os::strdup(buf); |
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172 |
if (FLAG_IS_DEFAULT(UseCRC32)) { |
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UseCRC32 = (auxv & HWCAP_CRC32) != 0; |
|
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} |
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175 |
if (UseCRC32 && (auxv & HWCAP_CRC32) == 0) { |
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warning("UseCRC32 specified, but not supported on this CPU"); |
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} |
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if (FLAG_IS_DEFAULT(UseAdler32Intrinsics)) { |
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FLAG_SET_DEFAULT(UseAdler32Intrinsics, true); |
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} |
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if (UseVectorizedMismatchIntrinsic) { |
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warning("UseVectorizedMismatchIntrinsic specified, but not available on this CPU."); |
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FLAG_SET_DEFAULT(UseVectorizedMismatchIntrinsic, false); |
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} |
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|
29183 | 188 |
if (auxv & HWCAP_AES) { |
189 |
UseAES = UseAES || FLAG_IS_DEFAULT(UseAES); |
|
190 |
UseAESIntrinsics = |
|
191 |
UseAESIntrinsics || (UseAES && FLAG_IS_DEFAULT(UseAESIntrinsics)); |
|
192 |
if (UseAESIntrinsics && !UseAES) { |
|
193 |
warning("UseAESIntrinsics enabled, but UseAES not, enabling"); |
|
194 |
UseAES = true; |
|
195 |
} |
|
196 |
} else { |
|
197 |
if (UseAES) { |
|
198 |
warning("UseAES specified, but not supported on this CPU"); |
|
199 |
} |
|
200 |
if (UseAESIntrinsics) { |
|
201 |
warning("UseAESIntrinsics specified, but not supported on this CPU"); |
|
202 |
} |
|
203 |
} |
|
204 |
||
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if (UseAESCTRIntrinsics) { |
206 |
warning("AES/CTR intrinsics are not available on this CPU"); |
|
207 |
FLAG_SET_DEFAULT(UseAESCTRIntrinsics, false); |
|
208 |
} |
|
209 |
||
29183 | 210 |
if (FLAG_IS_DEFAULT(UseCRC32Intrinsics)) { |
211 |
UseCRC32Intrinsics = true; |
|
212 |
} |
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213 |
||
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if (auxv & HWCAP_CRC32) { |
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if (FLAG_IS_DEFAULT(UseCRC32CIntrinsics)) { |
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FLAG_SET_DEFAULT(UseCRC32CIntrinsics, true); |
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} |
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} else if (UseCRC32CIntrinsics) { |
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warning("CRC32C is not available on the CPU"); |
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FLAG_SET_DEFAULT(UseCRC32CIntrinsics, false); |
221 |
} |
|
222 |
||
29183 | 223 |
if (auxv & (HWCAP_SHA1 | HWCAP_SHA2)) { |
224 |
if (FLAG_IS_DEFAULT(UseSHA)) { |
|
225 |
FLAG_SET_DEFAULT(UseSHA, true); |
|
226 |
} |
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227 |
} else if (UseSHA) { |
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228 |
warning("SHA instructions are not available on this CPU"); |
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229 |
FLAG_SET_DEFAULT(UseSHA, false); |
|
230 |
} |
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231 |
||
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if (UseSHA && (auxv & HWCAP_SHA1)) { |
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if (FLAG_IS_DEFAULT(UseSHA1Intrinsics)) { |
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FLAG_SET_DEFAULT(UseSHA1Intrinsics, true); |
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} |
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} else if (UseSHA1Intrinsics) { |
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warning("Intrinsics for SHA-1 crypto hash functions not available on this CPU."); |
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FLAG_SET_DEFAULT(UseSHA1Intrinsics, false); |
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} |
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|
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if (UseSHA && (auxv & HWCAP_SHA2)) { |
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if (FLAG_IS_DEFAULT(UseSHA256Intrinsics)) { |
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FLAG_SET_DEFAULT(UseSHA256Intrinsics, true); |
29183 | 244 |
} |
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} else if (UseSHA256Intrinsics) { |
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warning("Intrinsics for SHA-224 and SHA-256 crypto hash functions not available on this CPU."); |
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FLAG_SET_DEFAULT(UseSHA256Intrinsics, false); |
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} |
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|
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if (UseSHA512Intrinsics) { |
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warning("Intrinsics for SHA-384 and SHA-512 crypto hash functions not available on this CPU."); |
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FLAG_SET_DEFAULT(UseSHA512Intrinsics, false); |
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} |
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|
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if (!(UseSHA1Intrinsics || UseSHA256Intrinsics || UseSHA512Intrinsics)) { |
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FLAG_SET_DEFAULT(UseSHA, false); |
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} |
258 |
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if (auxv & HWCAP_PMULL) { |
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if (FLAG_IS_DEFAULT(UseGHASHIntrinsics)) { |
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FLAG_SET_DEFAULT(UseGHASHIntrinsics, true); |
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} |
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} else if (UseGHASHIntrinsics) { |
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warning("GHASH intrinsics are not available on this CPU"); |
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FLAG_SET_DEFAULT(UseGHASHIntrinsics, false); |
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} |
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267 |
|
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// This machine allows unaligned memory accesses |
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if (FLAG_IS_DEFAULT(UseUnalignedAccesses)) { |
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FLAG_SET_DEFAULT(UseUnalignedAccesses, true); |
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} |
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272 |
|
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if (FLAG_IS_DEFAULT(UseMultiplyToLenIntrinsic)) { |
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UseMultiplyToLenIntrinsic = true; |
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} |
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|
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if (FLAG_IS_DEFAULT(UseBarriersForVolatile)) { |
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UseBarriersForVolatile = (_features & CPU_DMB_ATOMICS) != 0; |
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} |
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|
31517 | 281 |
if (FLAG_IS_DEFAULT(UsePopCountInstruction)) { |
282 |
UsePopCountInstruction = true; |
|
283 |
} |
|
284 |
||
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if (FLAG_IS_DEFAULT(UseMontgomeryMultiplyIntrinsic)) { |
286 |
UseMontgomeryMultiplyIntrinsic = true; |
|
287 |
} |
|
288 |
if (FLAG_IS_DEFAULT(UseMontgomerySquareIntrinsic)) { |
|
289 |
UseMontgomerySquareIntrinsic = true; |
|
290 |
} |
|
291 |
||
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#ifdef COMPILER2 |
293 |
if (FLAG_IS_DEFAULT(OptoScheduling)) { |
|
294 |
OptoScheduling = true; |
|
295 |
} |
|
296 |
#endif |
|
297 |
} |
|
298 |
||
299 |
void VM_Version::initialize() { |
|
300 |
ResourceMark rm; |
|
301 |
||
302 |
stub_blob = BufferBlob::create("getPsrInfo_stub", stub_size); |
|
303 |
if (stub_blob == NULL) { |
|
304 |
vm_exit_during_initialization("Unable to allocate getPsrInfo_stub"); |
|
305 |
} |
|
306 |
||
307 |
CodeBuffer c(stub_blob); |
|
308 |
VM_Version_StubGenerator g(&c); |
|
309 |
getPsrInfo_stub = CAST_TO_FN_PTR(getPsrInfo_stub_t, |
|
310 |
g.generate_getPsrInfo()); |
|
311 |
||
312 |
get_processor_features(); |
|
313 |
} |