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synced 2024-09-13 09:24:08 -07:00
Bug 899903 - OdinMonkey: merge AsmJSBoundsCheckVector with HeapAccessVector (r=mjrosenb)
--HG-- extra : rebase_source : 85be8040e2bdde27bc68679eb6927dec9ca828ed
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0fc4510b29
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@ -1436,13 +1436,8 @@ class MOZ_STACK_CLASS ModuleCompiler
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}
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bool collectAccesses(MIRGenerator &gen) {
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#ifdef JS_CPU_ARM
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if (!module_->addBoundsChecks(gen.asmBoundsChecks()))
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return false;
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#else
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if (!module_->addHeapAccesses(gen.heapAccesses()))
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return false;
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#endif
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if (!globalAccesses_.appendAll(gen.globalAccesses()))
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return false;
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return true;
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@ -1589,26 +1584,21 @@ class MOZ_STACK_CLASS ModuleCompiler
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data[j] = code + masm_.actualOffset(table.elem(j).code()->offset());
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}
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// Global accesses in function bodies
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// Fix up heap/global accesses now that compilation has finished
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#ifdef JS_CPU_ARM
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JS_ASSERT(globalAccesses_.length() == 0);
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// The AsmJSHeapAccess offsets need to be updated to reflect the
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// "actualOffset" (an ARM distinction).
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module_->convertBoundsChecksToActualOffset(masm_);
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for (unsigned i = 0; i < module_->numHeapAccesses(); i++) {
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AsmJSHeapAccess &access = module_->heapAccess(i);
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access.setOffset(masm_.actualOffset(access.offset()));
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}
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JS_ASSERT(globalAccesses_.length() == 0);
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#else
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for (unsigned i = 0; i < globalAccesses_.length(); i++) {
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AsmJSGlobalAccess access = globalAccesses_[i];
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masm_.patchAsmJSGlobalAccess(access.offset, code, codeBytes, access.globalDataOffset);
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}
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#endif
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// The AsmJSHeapAccess offsets need to be updated to reflect the
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// "actualOffset" (an ARM distinction).
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for (unsigned i = 0; i < module_->numHeapAccesses(); i++) {
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AsmJSHeapAccess &access = module_->heapAccess(i);
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access.updateOffset(masm_.actualOffset(access.offset()));
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}
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*module = module_.forget();
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@ -220,22 +220,7 @@ DynamicallyLinkModule(JSContext *cx, CallArgs args, AsmJSModule &module)
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if (!ArrayBufferObject::prepareForAsmJS(cx, heap))
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return LinkFail(cx, "Unable to prepare ArrayBuffer for asm.js use");
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#if defined(JS_CPU_X86)
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void *heapOffset = (void*)heap->dataPointer();
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void *heapLength = (void*)heap->byteLength();
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uint8_t *code = module.functionCode();
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for (unsigned i = 0; i < module.numHeapAccesses(); i++) {
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const AsmJSHeapAccess &access = module.heapAccess(i);
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JSC::X86Assembler::setPointer(access.patchLengthAt(code), heapLength);
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JSC::X86Assembler::setPointer(access.patchOffsetAt(code), heapOffset);
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}
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#elif defined(JS_CPU_ARM)
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// Now the length of the array is know, patch all of the bounds check sites
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// with the new length.
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ion::IonContext ic(cx, NULL);
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module.patchBoundsChecks(heap->byteLength());
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#endif
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module.patchHeapAccesses(heap, cx);
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}
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AutoObjectVector ffis(cx);
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@ -72,6 +72,26 @@ js::NewAsmJSModuleObject(JSContext *cx, ScopedJSDeletePtr<AsmJSModule> *module)
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return obj;
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}
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void
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AsmJSModule::patchHeapAccesses(ArrayBufferObject *heap, JSContext *cx)
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{
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JS_ASSERT(IsPowerOfTwo(heap->byteLength()));
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#if defined(JS_CPU_X86)
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void *heapOffset = (void*)heap->dataPointer();
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void *heapLength = (void*)heap->byteLength();
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for (unsigned i = 0; i < heapAccesses_.length(); i++) {
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JSC::X86Assembler::setPointer(heapAccesses_[i].patchLengthAt(code_), heapLength);
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JSC::X86Assembler::setPointer(heapAccesses_[i].patchOffsetAt(code_), heapOffset);
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}
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#elif defined(JS_CPU_ARM)
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ion::IonContext ic(cx, NULL);
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ion::AutoFlushCache afc("patchBoundsCheck");
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uint32_t bits = mozilla::CeilingLog2(heap->byteLength());
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for (unsigned i = 0; i < heapAccesses_.length(); i++)
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ion::Assembler::updateBoundsCheck(bits, (ion::Instruction*)(heapAccesses_[i].offset() + code_));
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#endif
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}
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AsmJSModule::~AsmJSModule()
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{
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if (code_) {
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@ -360,9 +360,6 @@ class AsmJSModule
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typedef Vector<Global, 0, SystemAllocPolicy> GlobalVector;
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typedef Vector<Exit, 0, SystemAllocPolicy> ExitVector;
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typedef Vector<ion::AsmJSHeapAccess, 0, SystemAllocPolicy> HeapAccessVector;
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#if defined(JS_CPU_ARM)
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typedef Vector<ion::AsmJSBoundsCheck, 0, SystemAllocPolicy> BoundsCheckVector;
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#endif
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typedef Vector<ion::IonScriptCounts *, 0, SystemAllocPolicy> FunctionCountsVector;
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#if defined(MOZ_VTUNE) or defined(JS_ION_PERF)
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typedef Vector<ProfiledFunction, 0, SystemAllocPolicy> ProfiledFunctionVector;
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@ -372,9 +369,6 @@ class AsmJSModule
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ExitVector exits_;
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ExportedFunctionVector exports_;
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HeapAccessVector heapAccesses_;
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#if defined(JS_CPU_ARM)
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BoundsCheckVector boundsChecks_;
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#endif
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#if defined(MOZ_VTUNE)
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ProfiledFunctionVector profiledFunctions_;
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#endif
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@ -676,33 +670,7 @@ class AsmJSModule
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const ion::AsmJSHeapAccess &heapAccess(unsigned i) const {
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return heapAccesses_[i];
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}
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#if defined(JS_CPU_ARM)
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bool addBoundsChecks(const ion::AsmJSBoundsCheckVector &checks) {
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return boundsChecks_.appendAll(checks);
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}
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void convertBoundsChecksToActualOffset(ion::MacroAssembler &masm) {
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for (unsigned i = 0; i < boundsChecks_.length(); i++)
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boundsChecks_[i].setOffset(masm.actualOffset(boundsChecks_[i].offset()));
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}
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void patchBoundsChecks(unsigned heapSize) {
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if (heapSize == 0)
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return;
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ion::AutoFlushCache afc("patchBoundsCheck");
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uint32_t bits = mozilla::CeilingLog2(heapSize);
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for (unsigned i = 0; i < boundsChecks_.length(); i++)
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ion::Assembler::updateBoundsCheck(bits, (ion::Instruction*)(boundsChecks_[i].offset() + code_));
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}
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unsigned numBoundsChecks() const {
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return boundsChecks_.length();
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}
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const ion::AsmJSBoundsCheck &boundsCheck(unsigned i) const {
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return boundsChecks_[i];
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}
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#endif
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void patchHeapAccesses(ArrayBufferObject *heap, JSContext *cx);
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void takeOwnership(JSC::ExecutablePool *pool, uint8_t *code, size_t codeBytes, size_t totalBytes) {
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JS_ASSERT(uintptr_t(code) % AsmJSPageSize == 0);
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@ -115,21 +115,12 @@ class MIRGenerator
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JS_ASSERT(compilingAsmJS());
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return performsAsmJSCall_;
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}
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#ifndef JS_CPU_ARM
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bool noteHeapAccess(AsmJSHeapAccess heapAccess) {
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return asmJSHeapAccesses_.append(heapAccess);
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}
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const Vector<AsmJSHeapAccess, 0, IonAllocPolicy> &heapAccesses() const {
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return asmJSHeapAccesses_;
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}
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#else
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bool noteBoundsCheck(uint32_t offsetBefore) {
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return asmJSBoundsChecks_.append(AsmJSBoundsCheck(offsetBefore));
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}
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const Vector<AsmJSBoundsCheck, 0, IonAllocPolicy> &asmBoundsChecks() const {
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return asmJSBoundsChecks_;
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}
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#endif
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bool noteGlobalAccess(unsigned offset, unsigned globalDataOffset) {
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return asmJSGlobalAccesses_.append(AsmJSGlobalAccess(offset, globalDataOffset));
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}
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@ -151,11 +142,7 @@ class MIRGenerator
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uint32_t maxAsmJSStackArgBytes_;
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bool performsAsmJSCall_;
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#ifdef JS_CPU_ARM
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AsmJSBoundsCheckVector asmJSBoundsChecks_;
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#else
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AsmJSHeapAccessVector asmJSHeapAccesses_;
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#endif
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AsmJSGlobalAccessVector asmJSGlobalAccesses_;
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#if defined(JS_ION_PERF)
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@ -785,77 +785,60 @@ class ABIArg
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class AsmJSHeapAccess
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{
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uint32_t offset_;
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uint8_t opLength_;
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#if defined(JS_CPU_X86)
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uint8_t cmpDelta_;
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uint8_t cmpDelta_; // the number of bytes from the cmp to the load/store instruction
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#endif
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#if defined(JS_CPU_X86) || defined(JS_CPU_X64)
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uint8_t opLength_; // the length of the load/store instruction
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uint8_t isFloat32Load_;
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ion::AnyRegister::Code loadedReg_ : 8;
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#endif
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JS_STATIC_ASSERT(ion::AnyRegister::Total < UINT8_MAX);
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public:
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#if defined(JS_CPU_X86)
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AsmJSHeapAccess(uint32_t cmp, uint32_t offset, uint32_t after, ArrayBufferView::ViewType vt,
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AnyRegister loadedReg)
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: offset_(offset),
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opLength_(after - offset),
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cmpDelta_(offset - cmp),
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isFloat32Load_(vt == ArrayBufferView::TYPE_FLOAT32),
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loadedReg_(loadedReg.code())
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{}
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AsmJSHeapAccess(uint32_t cmp, uint32_t offset, uint8_t after)
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: offset_(offset),
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opLength_(after - offset),
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cmpDelta_(offset - cmp),
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isFloat32Load_(false),
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loadedReg_(UINT8_MAX)
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{}
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#else
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#if defined(JS_CPU_X86) || defined(JS_CPU_X64)
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AsmJSHeapAccess(uint32_t offset, uint32_t after, ArrayBufferView::ViewType vt,
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AnyRegister loadedReg)
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AnyRegister loadedReg, uint32_t cmp = UINT32_MAX)
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: offset_(offset),
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# if defined(JS_CPU_X86)
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cmpDelta_(offset - cmp),
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# endif
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opLength_(after - offset),
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isFloat32Load_(vt == ArrayBufferView::TYPE_FLOAT32),
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loadedReg_(loadedReg.code())
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{}
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AsmJSHeapAccess(uint32_t offset, uint8_t after)
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AsmJSHeapAccess(uint32_t offset, uint8_t after, uint32_t cmp = UINT32_MAX)
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: offset_(offset),
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# if defined(JS_CPU_X86)
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cmpDelta_(offset - cmp),
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# endif
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opLength_(after - offset),
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isFloat32Load_(false),
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loadedReg_(UINT8_MAX)
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{}
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#elif defined(JS_CPU_ARM)
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explicit AsmJSHeapAccess(uint32_t offset)
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: offset_(offset)
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{}
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#endif
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uint32_t offset() const { return offset_; }
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unsigned opLength() const { return opLength_; }
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bool isLoad() const { return loadedReg_ != UINT8_MAX; }
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bool isFloat32Load() const { return isFloat32Load_; }
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ion::AnyRegister loadedReg() const { return ion::AnyRegister::FromCode(loadedReg_); }
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void setOffset(uint32_t offset) { offset_ = offset; }
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#if defined(JS_CPU_X86)
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void *patchLengthAt(uint8_t *code) const { return code + (offset_ - cmpDelta_); }
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void *patchOffsetAt(uint8_t *code) const { return code + (offset_ + opLength_); }
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#endif
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void updateOffset(uint32_t offset) { offset_ = offset; }
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#if defined(JS_CPU_X86) || defined(JS_CPU_X64)
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unsigned opLength() const { return opLength_; }
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bool isLoad() const { return loadedReg_ != UINT8_MAX; }
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bool isFloat32Load() const { return isFloat32Load_; }
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ion::AnyRegister loadedReg() const { return ion::AnyRegister::FromCode(loadedReg_); }
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#endif
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};
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typedef Vector<AsmJSHeapAccess, 0, IonAllocPolicy> AsmJSHeapAccessVector;
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#ifdef JS_CPU_ARM
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struct AsmJSBoundsCheck
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{
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unsigned offset_;
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AsmJSBoundsCheck(unsigned offset)
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: offset_(offset)
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{}
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void setOffset(uint32_t offset) { offset_ = offset; }
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unsigned offset() {return offset_;}
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};
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typedef Vector<AsmJSBoundsCheck, 0, IonAllocPolicy> AsmJSBoundsCheckVector;
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#endif
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} // namespace ion
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} // namespace js
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@ -1808,7 +1808,7 @@ CodeGeneratorARM::visitAsmJSLoadHeap(LAsmJSLoadHeap *ins)
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ToRegister(ins->output()), Offset, Assembler::Zero);
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masm.ma_mov(Imm32(0), ToRegister(ins->output()), NoSetCond, Assembler::NonZero);
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}
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return gen->noteBoundsCheck(bo.getOffset());
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return gen->noteHeapAccess(AsmJSHeapAccess(bo.getOffset()));
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}
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bool
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@ -1846,7 +1846,7 @@ CodeGeneratorARM::visitAsmJSStoreHeap(LAsmJSStoreHeap *ins)
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masm.ma_dataTransferN(IsStore, size, isSigned, HeapReg, index,
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ToRegister(ins->value()), Offset, Assembler::Zero);
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}
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return gen->noteBoundsCheck(bo.getOffset());
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return gen->noteHeapAccess(AsmJSHeapAccess(bo.getOffset()));
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}
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bool
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@ -496,13 +496,13 @@ CodeGeneratorX86::visitAsmJSLoadHeap(LAsmJSLoadHeap *ins)
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uint32_t after = masm.size();
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masm.cvtss2sd(dest, dest);
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masm.bind(ool->rejoin());
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return gen->noteHeapAccess(AsmJSHeapAccess(cmp.offset(), before, after, vt, AnyRegister(dest)));
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return gen->noteHeapAccess(AsmJSHeapAccess(before, after, vt, AnyRegister(dest), cmp.offset()));
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}
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uint32_t before = masm.size();
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loadViewTypeElement(vt, srcAddr, out);
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uint32_t after = masm.size();
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masm.bind(ool->rejoin());
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return gen->noteHeapAccess(AsmJSHeapAccess(cmp.offset(), before, after, vt, ToAnyRegister(out)));
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return gen->noteHeapAccess(AsmJSHeapAccess(before, after, vt, ToAnyRegister(out), cmp.offset()));
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}
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bool
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@ -583,13 +583,13 @@ CodeGeneratorX86::visitAsmJSStoreHeap(LAsmJSStoreHeap *ins)
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masm.movssWithPatch(ScratchFloatReg, dstAddr);
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uint32_t after = masm.size();
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masm.bind(&rejoin);
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return gen->noteHeapAccess(AsmJSHeapAccess(cmp.offset(), before, after));
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return gen->noteHeapAccess(AsmJSHeapAccess(before, after, cmp.offset()));
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}
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uint32_t before = masm.size();
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storeViewTypeElement(vt, value, dstAddr);
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uint32_t after = masm.size();
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masm.bind(&rejoin);
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return gen->noteHeapAccess(AsmJSHeapAccess(cmp.offset(), before, after));
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return gen->noteHeapAccess(AsmJSHeapAccess(before, after, cmp.offset()));
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}
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bool
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