зеркало из https://github.com/mozilla/gecko-dev.git
Bug 891215 (part 9) - Slim down IonFrameIterator-inl.h. r=terrence.
--HG-- extra : rebase_source : 9857155ba2628a7319e9d712116eba4839689be1
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@ -12,181 +12,10 @@
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#include "ion/BaselineFrame.h"
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#include "ion/IonFrameIterator.h"
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#include "ion/Bailouts.h"
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#include "ion/Ion.h"
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namespace js {
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namespace ion {
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template <class Op>
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inline void
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SnapshotIterator::readFrameArgs(Op &op, const Value *argv, Value *scopeChain, Value *thisv,
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unsigned start, unsigned formalEnd, unsigned iterEnd,
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JSScript *script)
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{
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if (scopeChain)
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*scopeChain = read();
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else
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skip();
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// Skip slot for arguments object.
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if (script->argumentsHasVarBinding())
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skip();
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if (thisv)
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*thisv = read();
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else
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skip();
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unsigned i = 0;
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if (formalEnd < start)
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i = start;
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for (; i < start; i++)
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skip();
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for (; i < formalEnd && i < iterEnd; i++) {
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// We are not always able to read values from the snapshots, some values
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// such as non-gc things may still be live in registers and cause an
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// error while reading the machine state.
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Value v = maybeRead();
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op(v);
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}
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if (iterEnd >= formalEnd) {
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for (; i < iterEnd; i++)
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op(argv[i]);
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}
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}
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template <AllowGC allowGC>
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inline
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InlineFrameIteratorMaybeGC<allowGC>::InlineFrameIteratorMaybeGC(
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JSContext *cx, const IonFrameIterator *iter)
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: callee_(cx),
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script_(cx)
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{
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resetOn(iter);
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}
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template <AllowGC allowGC>
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inline
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InlineFrameIteratorMaybeGC<allowGC>::InlineFrameIteratorMaybeGC(
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JSContext *cx,
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const InlineFrameIteratorMaybeGC<allowGC> *iter)
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: frame_(iter ? iter->frame_ : NULL),
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framesRead_(0),
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callee_(cx),
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script_(cx)
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{
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if (frame_) {
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start_ = SnapshotIterator(*frame_);
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// findNextFrame will iterate to the next frame and init. everything.
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// Therefore to settle on the same frame, we report one frame less readed.
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framesRead_ = iter->framesRead_ - 1;
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findNextFrame();
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}
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}
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template <AllowGC allowGC>
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template <class Op>
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inline void
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InlineFrameIteratorMaybeGC<allowGC>::forEachCanonicalActualArg(
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JSContext *cx, Op op, unsigned start, unsigned count) const
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{
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unsigned nactual = numActualArgs();
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if (count == unsigned(-1))
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count = nactual - start;
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unsigned end = start + count;
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unsigned nformal = callee()->nargs;
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JS_ASSERT(start <= end && end <= nactual);
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if (more()) {
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// There is still a parent frame of this inlined frame.
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// The not overflown arguments are taken from the inlined frame,
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// because it will have the updated value when JSOP_SETARG is done.
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// All arguments (also the overflown) are the last pushed values in the parent frame.
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// To get the overflown arguments, we need to take them from there.
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// Get the non overflown arguments
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unsigned formal_end = (end < nformal) ? end : nformal;
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SnapshotIterator s(si_);
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s.readFrameArgs(op, NULL, NULL, NULL, start, nformal, formal_end, script());
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// The overflown arguments are not available in current frame.
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// They are the last pushed arguments in the parent frame of this inlined frame.
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InlineFrameIteratorMaybeGC it(cx, this);
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++it;
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unsigned argsObjAdj = it.script()->argumentsHasVarBinding() ? 1 : 0;
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SnapshotIterator parent_s(it.snapshotIterator());
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// Skip over all slots untill we get to the last slots (= arguments slots of callee)
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// the +2 is for [this] and [scopechain], and maybe +1 for [argsObj]
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JS_ASSERT(parent_s.slots() >= nactual + 2 + argsObjAdj);
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unsigned skip = parent_s.slots() - nactual - 2 - argsObjAdj;
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for (unsigned j = 0; j < skip; j++)
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parent_s.skip();
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// Get the overflown arguments
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parent_s.readFrameArgs(op, NULL, NULL, NULL, nformal, nactual, end, it.script());
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} else {
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SnapshotIterator s(si_);
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Value *argv = frame_->actualArgs();
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s.readFrameArgs(op, argv, NULL, NULL, start, nformal, end, script());
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}
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}
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template <AllowGC allowGC>
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inline JSObject *
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InlineFrameIteratorMaybeGC<allowGC>::scopeChain() const
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{
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SnapshotIterator s(si_);
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// scopeChain
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Value v = s.read();
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if (v.isObject()) {
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JS_ASSERT_IF(script()->hasAnalysis(), script()->analysis()->usesScopeChain());
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return &v.toObject();
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}
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return callee()->environment();
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}
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template <AllowGC allowGC>
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inline JSObject *
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InlineFrameIteratorMaybeGC<allowGC>::thisObject() const
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{
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// JS_ASSERT(isConstructing(...));
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SnapshotIterator s(si_);
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// scopeChain
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s.skip();
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// Arguments object.
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if (script()->argumentsHasVarBinding())
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s.skip();
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// In strict modes, |this| may not be an object and thus may not be
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// readable which can either segv in read or trigger the assertion.
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Value v = s.read();
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JS_ASSERT(v.isObject());
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return &v.toObject();
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}
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template <AllowGC allowGC>
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inline unsigned
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InlineFrameIteratorMaybeGC<allowGC>::numActualArgs() const
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{
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// The number of actual arguments of inline frames is recovered by the
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// iteration process. It is recovered from the bytecode because this
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// property still hold since the for inlined frames. This property does not
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// hold for the parent frame because it can have optimize a call to
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// js_fun_call or js_fun_apply.
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if (more())
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return numActualArgs_;
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return frame_->numActualArgs();
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}
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template <AllowGC allowGC>
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inline
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InlineFrameIteratorMaybeGC<allowGC>::InlineFrameIteratorMaybeGC(
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@ -202,32 +31,6 @@ InlineFrameIteratorMaybeGC<allowGC>::InlineFrameIteratorMaybeGC(
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}
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}
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template <AllowGC allowGC>
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inline InlineFrameIteratorMaybeGC<allowGC> &
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InlineFrameIteratorMaybeGC<allowGC>::operator++()
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{
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findNextFrame();
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return *this;
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}
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template <class Op>
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inline void
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IonFrameIterator::forEachCanonicalActualArg(Op op, unsigned start, unsigned count) const
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{
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JS_ASSERT(isBaselineJS());
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unsigned nactual = numActualArgs();
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if (count == unsigned(-1))
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count = nactual - start;
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unsigned end = start + count;
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JS_ASSERT(start <= end && end <= nactual);
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Value *argv = actualArgs();
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for (unsigned i = start; i < end; i++)
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op(argv[i]);
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}
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inline BaselineFrame *
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IonFrameIterator::baselineFrame() const
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{
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@ -201,7 +201,20 @@ class IonFrameIterator
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MachineState machineState() const;
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template <class Op>
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inline void forEachCanonicalActualArg(Op op, unsigned start, unsigned count) const;
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void forEachCanonicalActualArg(Op op, unsigned start, unsigned count) const {
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JS_ASSERT(isBaselineJS());
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unsigned nactual = numActualArgs();
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if (count == unsigned(-1))
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count = nactual - start;
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unsigned end = start + count;
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JS_ASSERT(start <= end && end <= nactual);
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Value *argv = actualArgs();
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for (unsigned i = start; i < end; i++)
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op(argv[i]);
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}
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void dump() const;
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@ -248,9 +261,41 @@ class SnapshotIterator : public SnapshotReader
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}
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template <class Op>
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inline void readFrameArgs(Op &op, const Value *argv, Value *scopeChain, Value *thisv,
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unsigned start, unsigned formalEnd, unsigned iterEnd,
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JSScript *script);
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void readFrameArgs(Op &op, const Value *argv, Value *scopeChain, Value *thisv,
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unsigned start, unsigned formalEnd, unsigned iterEnd, JSScript *script)
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{
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if (scopeChain)
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*scopeChain = read();
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else
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skip();
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// Skip slot for arguments object.
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if (script->argumentsHasVarBinding())
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skip();
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if (thisv)
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*thisv = read();
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else
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skip();
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unsigned i = 0;
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if (formalEnd < start)
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i = start;
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for (; i < start; i++)
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skip();
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for (; i < formalEnd && i < iterEnd; i++) {
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// We are not always able to read values from the snapshots, some values
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// such as non-gc things may still be live in registers and cause an
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// error while reading the machine state.
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Value v = maybeRead();
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op(v);
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}
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if (iterEnd >= formalEnd) {
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for (; i < iterEnd; i++)
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op(argv[i]);
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}
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}
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Value maybeReadSlotByIndex(size_t index) {
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while (index--) {
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@ -285,9 +330,29 @@ class InlineFrameIteratorMaybeGC
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void findNextFrame();
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public:
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inline InlineFrameIteratorMaybeGC(JSContext *cx, const IonFrameIterator *iter);
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inline InlineFrameIteratorMaybeGC(JSContext *cx, const IonBailoutIterator *iter);
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inline InlineFrameIteratorMaybeGC(JSContext *cx, const InlineFrameIteratorMaybeGC *iter);
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InlineFrameIteratorMaybeGC(JSContext *cx, const IonFrameIterator *iter)
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: callee_(cx),
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script_(cx)
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{
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resetOn(iter);
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}
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InlineFrameIteratorMaybeGC(JSContext *cx, const IonBailoutIterator *iter);
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InlineFrameIteratorMaybeGC(JSContext *cx, const InlineFrameIteratorMaybeGC *iter)
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: frame_(iter ? iter->frame_ : NULL),
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framesRead_(0),
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callee_(cx),
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script_(cx)
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{
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if (frame_) {
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start_ = SnapshotIterator(*frame_);
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// findNextFrame will iterate to the next frame and init. everything.
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// Therefore to settle on the same frame, we report one frame less readed.
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framesRead_ = iter->framesRead_ - 1;
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findNextFrame();
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}
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}
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bool more() const {
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return frame_ && framesRead_ < start_.frameCount();
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@ -299,10 +364,64 @@ class InlineFrameIteratorMaybeGC
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JSFunction *maybeCallee() const {
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return callee_;
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}
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inline unsigned numActualArgs() const;
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unsigned numActualArgs() const {
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// The number of actual arguments of inline frames is recovered by the
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// iteration process. It is recovered from the bytecode because this
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// property still hold since the for inlined frames. This property does not
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// hold for the parent frame because it can have optimize a call to
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// js_fun_call or js_fun_apply.
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if (more())
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return numActualArgs_;
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return frame_->numActualArgs();
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}
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template <class Op>
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inline void forEachCanonicalActualArg(JSContext *cx, Op op, unsigned start, unsigned count) const;
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void forEachCanonicalActualArg(JSContext *cx, Op op, unsigned start, unsigned count) const {
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unsigned nactual = numActualArgs();
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if (count == unsigned(-1))
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count = nactual - start;
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unsigned end = start + count;
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unsigned nformal = callee()->nargs;
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JS_ASSERT(start <= end && end <= nactual);
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if (more()) {
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// There is still a parent frame of this inlined frame.
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// The not overflown arguments are taken from the inlined frame,
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// because it will have the updated value when JSOP_SETARG is done.
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// All arguments (also the overflown) are the last pushed values in the parent frame.
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// To get the overflown arguments, we need to take them from there.
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// Get the non overflown arguments
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unsigned formal_end = (end < nformal) ? end : nformal;
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SnapshotIterator s(si_);
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s.readFrameArgs(op, NULL, NULL, NULL, start, nformal, formal_end, script());
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// The overflown arguments are not available in current frame.
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// They are the last pushed arguments in the parent frame of this inlined frame.
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InlineFrameIteratorMaybeGC it(cx, this);
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++it;
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unsigned argsObjAdj = it.script()->argumentsHasVarBinding() ? 1 : 0;
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SnapshotIterator parent_s(it.snapshotIterator());
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// Skip over all slots untill we get to the last slots (= arguments slots of callee)
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// the +2 is for [this] and [scopechain], and maybe +1 for [argsObj]
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JS_ASSERT(parent_s.slots() >= nactual + 2 + argsObjAdj);
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unsigned skip = parent_s.slots() - nactual - 2 - argsObjAdj;
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for (unsigned j = 0; j < skip; j++)
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parent_s.skip();
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// Get the overflown arguments
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parent_s.readFrameArgs(op, NULL, NULL, NULL, nformal, nactual, end, it.script());
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} else {
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SnapshotIterator s(si_);
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Value *argv = frame_->actualArgs();
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s.readFrameArgs(op, argv, NULL, NULL, start, nformal, end, script());
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}
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}
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JSScript *script() const {
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return script_;
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@ -315,9 +434,42 @@ class InlineFrameIteratorMaybeGC
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}
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bool isFunctionFrame() const;
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bool isConstructing() const;
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inline JSObject *scopeChain() const;
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inline JSObject *thisObject() const;
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inline InlineFrameIteratorMaybeGC &operator++();
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JSObject *scopeChain() const {
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SnapshotIterator s(si_);
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// scopeChain
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Value v = s.read();
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if (v.isObject()) {
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JS_ASSERT_IF(script()->hasAnalysis(), script()->analysis()->usesScopeChain());
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return &v.toObject();
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}
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return callee()->environment();
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}
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JSObject *thisObject() const {
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// JS_ASSERT(isConstructing(...));
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SnapshotIterator s(si_);
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// scopeChain
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s.skip();
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// Arguments object.
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if (script()->argumentsHasVarBinding())
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s.skip();
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// In strict modes, |this| may not be an object and thus may not be
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// readable which can either segv in read or trigger the assertion.
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Value v = s.read();
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JS_ASSERT(v.isObject());
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return &v.toObject();
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}
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InlineFrameIteratorMaybeGC &operator++() {
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findNextFrame();
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return *this;
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}
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void dump() const;
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