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* Revert "Temporarily Revert "Add basic loop fusion pass.""Eric Christopher2019-04-171-0/+32
| | | | | | | | The reversion apparently deleted the test/Transforms directory. Will be re-reverting again. llvm-svn: 358552
* Temporarily Revert "Add basic loop fusion pass."Eric Christopher2019-04-171-32/+0
| | | | | | | | As it's causing some bot failures (and per request from kbarton). This reverts commit r358543/ab70da07286e618016e78247e4a24fcb84077fda. llvm-svn: 358546
* [DebugInfo] Add DILabel metadata and intrinsic llvm.dbg.label.Shiva Chen2018-05-091-1/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | In order to set breakpoints on labels and list source code around labels, we need collect debug information for labels, i.e., label name, the function label belong, line number in the file, and the address label located. In order to keep these information in LLVM IR and to allow backend to generate debug information correctly. We create a new kind of metadata for labels, DILabel. The format of DILabel is !DILabel(scope: !1, name: "foo", file: !2, line: 3) We hope to keep debug information as much as possible even the code is optimized. So, we create a new kind of intrinsic for label metadata to avoid the metadata is eliminated with basic block. The intrinsic will keep existing if we keep it from optimized out. The format of the intrinsic is llvm.dbg.label(metadata !1) It has only one argument, that is the DILabel metadata. The intrinsic will follow the label immediately. Backend could get the label metadata through the intrinsic's parameter. We also create DIBuilder API for labels to be used by Frontend. Frontend could use createLabel() to allocate DILabel objects, and use insertLabel() to insert llvm.dbg.label intrinsic in LLVM IR. Differential Revision: https://reviews.llvm.org/D45024 Patch by Hsiangkai Wang. llvm-svn: 331841
* revert r325515: [TTI CostModel] change default cost of FP ops to 1 (PR36280)Sanjay Patel2018-02-211-1/+1
| | | | | | | | There are too many perf regressions resulting from this, so we need to investigate (and add tests for) targets like ARM and AArch64 before trying to reinstate. llvm-svn: 325658
* [TTI CostModel] change default cost of FP ops to 1 (PR36280)Sanjay Patel2018-02-191-1/+1
| | | | | | | | | | | | | | | | | | This change was mentioned at least as far back as: https://bugs.llvm.org/show_bug.cgi?id=26837#c26 ...and I found a real program that is harmed by this: Himeno running on AMD Jaguar gets 6% slower with SLP vectorization: https://bugs.llvm.org/show_bug.cgi?id=36280 ...but the change here appears to solve that bug only accidentally. The div/rem costs for x86 look very wrong in some cases, but that's already true, so we can fix those in follow-up patches. There's also evidence that more cost model changes are needed to solve SLP problems as shown in D42981, but that's an independent problem (though the solution may be adjusted after this change is made). Differential Revision: https://reviews.llvm.org/D43079 llvm-svn: 325515
* [SLP] Emit optimization remarksAdam Nemet2017-05-111-0/+32
The approach I followed was to emit the remark after getTreeCost concludes that SLP is profitable. I initially tried emitting them after the vectorizeRootInstruction calls in vectorizeChainsInBlock but I vaguely remember missing a few cases for example in HorizontalReduction::tryToReduce. ORE is placed in BoUpSLP so that it's available from everywhere (notably HorizontalReduction::tryToReduce). We use the first instruction in the root bundle as the locator for the remark. In order to get a sense how far the tree is spanning I've include the size of the tree in the remark. This is not perfect of course but it gives you at least a rough idea about the tree. Then you can follow up with -view-slp-tree to really see the actual tree. llvm-svn: 302811
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