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is a temporary measure until my fix for PR13021 is ready.
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creating a call to a library function.
Update all clients to pass the TLI information around.
Previous draft reviewed by Eli.
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rdar://11931823.
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moved earlier. This fixes some layering issues.
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belongs. I dunno why in the world I dropped it in the Scalar folder in the first place.
No functionality change.
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GetBestDestForJumpOnUndef() assumes there is at least 1 successor, which isn't
true if the block ends in an indirect branch with no successors. Fix this by
bailing out earlier in this case.
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Minor oversight noticed by inspection. Sorry no unit test.
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Fixes PR13371: indvars pass incorrectly substitutes 'undef' values.
I do not like this fix. It's needed until/unless the meaning of undef
changes. It attempts to be complete according to the IR spec, but I
don't have much confidence in the implementation given the difficulty
testing undefined behavior. Worse, this invalidates some of my
hard-fought work on indvars and LSR to optimize pointer induction
variables. It results benchmark regressions, which I'll track
internally. On x86_64 no LTO I see:
-3% huffbench
-3% 400.perlbench
-8% fhourstones
My only suggestion for recovering is to change the meaning of
undef. If we could trust an arbitrary instruction to produce a some
real value that can be manipulated (e.g. incremented) according to
non-undef rules, then this case could be easily handled with SCEV.
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Speculatively fix crashes by code inspection. Can't reproduce them yet.
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Some units tests crashed on a different platform.
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This places limits on CollectSubexprs to constrains the number of
reassociation possibilities. It limits the recursion depth and skips
over chains of nested recurrences outside the current loop.
Fixes PR13361. Although underlying SCEV behavior is still potentially bad.
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All SCEV expressions used by LSR formulae must be safe to
expand. i.e. they may not contain UDiv unless we can prove nonzero
denominator.
Fixes PR11356: LSR hoists UDiv.
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be >= 0 (signed).
(LLVM optimizers cannot do this optimization by themselves)
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nodes in unwind BB
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This happens when codegenprepare is invoked via opt.
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really happening. No intended functionality change.
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the optimizers producing a multiply expression with more multiplications than
the original (!).
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This was always part of the VMCore library out of necessity -- it deals
entirely in the IR. The .cpp file in fact was already part of the VMCore
library. This is just a mechanical move.
I've tried to go through and re-apply the coding standard's preferred
header sort, but at 40-ish files, I may have gotten some wrong. Please
let me know if so.
I'll be committing the corresponding updates to Clang and Polly, and
Duncan has DragonEgg.
Thanks to Bill and Eric for giving the green light for this bit of cleanup.
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(a.k.a. MDNodes). The module doesn't belong in Analysis. Move it to the VMCore
instead.
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include/llvm/Analysis/DebugInfo.h to include/llvm/DebugInfo.h.
The reasoning is because the DebugInfo module is simply an interface to the
debug info MDNodes and has nothing to do with analysis.
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before the expression root. Any existing operators that are changed to use one
of them needs to be moved between it and the expression root, and recursively
for the operators using that one. When I rewrote RewriteExprTree I accidentally
inverted the logic, resulting in the compacting going down from operators to
operands rather than up from operands to the operators using them, oops. Fix
this, resolving PR12963.
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perfectly ok to mark realloc as noalias
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whole thing should be upgraded to use the MemoryBuiltin interface anyway..
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the call correctly even in the case where it is an invoke. This
fixes rdar://11714057.
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- simplifycfg: invoke undef/null -> unreachable
- instcombine: invoke new -> invoke expect(0, 0) (an arbitrary NOOP intrinsic; only done if the allocated memory is unused, of course)
- verifier: allow invoke of intrinsics (to make the previous step work)
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most of the code from here).
Remove the alloc_size.ll test until we settle on a metadata format that makes everyone happy..
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- provide more extensive set of functions to detect library allocation functions (e.g., malloc, calloc, strdup, etc)
- provide an API to compute the size and offset of an object pointed by
Move a few clients (GVN, AA, instcombine, ...) to the new API.
This implementation is a lot more aggressive than each of the custom implementations being replaced.
Patch reviewed by Nick Lewycky and Chandler Carruth, thanks.
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A patch by Tom Stellard with minor changes.
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it to be able to replace operations on these vector alloca's with insert/extract element insts
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There are other passes, BBVectorize specifically, that also need some of
this functionality.
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SmallSetVector. Patch by Daniel Reynaud. rdar://11671029
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Dynamic GEPs created by SROA needed to insert extra "i32 0"
operands to index through structs and arrays to get to the
vector being indexed.
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For non-address users, Base and Scaled registers are not specially
associated to fit an address mode, so SCEVExpander should apply normal
expansion rules. Otherwise we may sink computation into inner loops
that have already been optimized.
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the vectors are dynamically indexed
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example degenerate phi nodes and binops that use themselves in unreachable code.
Thanks to Charles Davis for the testcase that uncovered this can of worms.
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is out of range to be replaced with a scalar access. Now with additional fix and test for indexing into a vector inside a struct
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vectorise buildbot
This reverts commit 12c1f86ffa731e2952c80d2cc577000c96b8962c.
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is out of range to be replaced with a scalar access. Now with additional fix and test for indexing into a vector inside a struct
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range to be replaced with a scalar access"
This reverts commit 51786e0aaec76b973205066bd44f7f427b21969f.
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be replaced with a scalar access
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combine to the absorbing element. Thanks to nbjoerg on IRC for pointing this
out.
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