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overhead where possible. Thanks to Jakob for the suggestions.
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whether LiveIntervals::getInstructionFromIndex(def) returns NULL.
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and it will be removed shortly.
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JIT of a GC point.
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doubt it but it's possible it's exposing another bug somewhere.
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Patch by Nathan Jeffords!
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conditional one.
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close to their sources to facilitate coalescing.
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when the unconditional branch destination is the fallthrough block. The
canonicalization makes it easier to allow optimizations on DAGs to invert
conditional branches. The branch folding pass (and AnalyzeBranch) will clean up
the unnecessary unconditional branches later.
This is one of the patches leading up to disabling codegen prepare critical edge
splitting.
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to hide the gory details.
Allocator instances can now be created by calling createPBQPRegisterAllocator.
Tidied up use of CoalescerPair as per Jakob's suggestions.
Made the new PBQPBuilder based construction process the default. The internal construction process
remains in-place and available via -pbqp-builder=false for now. It will be removed shortly if the new
process doesn't cause any regressions.
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lowered using a series of shifts.
Fixes <rdar://problem/8285015>.
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creating it before and subtracting split ranges.
This way, the SSA update code in LiveIntervalMap can properly create and use new
phi values in dupli. Now it is possible to create split regions where a value
escapes along two different CFG edges, creating phi values outside the split
region.
This is a work in progress and probably quite broken.
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that complex patterns are matched after the entire pattern has
a structural match, therefore the NodeStack isn't in a useful
state when the actual call to the matcher happens.
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current basic block then insert DBG_VALUE so that debug value of the variable is also transfered to new vreg.
Testcase is in r114476.
This fixes radar 8412415.
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target-dependent, by using
the predicate to discover the number of sign bits. Enhance X86's target lowering to provide
a useful response to this query.
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matched, allow ComplexPatterns to opt into getting the parent node
of the operand being matched.
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I think I've audited all uses, so it should be dependable for address spaces,
and the pointer+offset info should also be accurate when there.
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and store intrinsics are represented with MemIntrinsicSDNodes.
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MachinePointerInfo around more.
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with an indexed load/store that has an offset in the index.
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instead of calling lower_bound or upper_bound directly.
This cleans up the search logic a bit because {lower,upper}_bound compare
LR->start by default, and it is usually simpler to search LR->end.
Funnelling all searches through one function also makes it possible to replace
the search algorithm with something faster than binary search.
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SelectionDAG::getExtLoad overload, and eliminate it.
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getLoad overloads.
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with SVOffset computation.
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no functionality change (step #1)
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between pairs of virtuals, and between virtuals and physicals).
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into OptimizeCompareInstr.
This necessitates the passing of CmpValue around,
so widen the virtual functions to accomodate.
No functionality changes.
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pass a completely incorrect SrcValue, which would result in a miscompile with
combiner-aa.
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"getFixedStack" on the MachinePointerInfo class. While
this isn't the problem I'm setting out to solve, it is the
right way to eliminate PseudoSourceValue, so lets go with it.
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instead of srcvalue/offset pairs. This corrects SV info for mem
operations whose size is > 32-bits.
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MachinePointerInfo. Among other virtues, this doesn't silently truncate the
svoffset to 32-bits.
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