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* [GlobalOpt] Test array indices inside structs for out-of-bounds accessesDavid Green2018-07-282-2/+19
| | | | | | | | | | | | | | | | | | We now, from clang, can turn arrays of static short g_data[] = {16, 16, 16, 16, 16, 16, 16, 16, 0, 0, 0, 0, 0, 0, 0, 0}; into structs of the form @g_data = internal global <{ [8 x i16], [8 x i16] }> ... GlobalOpt will incorrectly SROA it, not realising that the access to the first element may overflow into the second. This fixes it by checking geps more thoroughly. I believe this makes the globalsra-partial.ll test case invalid as the %i value could be out of bounds. I've re-purposed it as a negative test for this case. Differential Revision: https://reviews.llvm.org/D49816 llvm-svn: 338192
* [Evaluator] Examine alias when evaluating function callEugene Leviant2018-07-101-1/+3
| | | | | | This fixes PR38120 llvm-svn: 336702
* llvm: Add support for "-fno-delete-null-pointer-checks"Manoj Gupta2018-07-0918-1/+456
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Summary: Support for this option is needed for building Linux kernel. This is a very frequently requested feature by kernel developers. More details : https://lkml.org/lkml/2018/4/4/601 GCC option description for -fdelete-null-pointer-checks: This Assume that programs cannot safely dereference null pointers, and that no code or data element resides at address zero. -fno-delete-null-pointer-checks is the inverse of this implying that null pointer dereferencing is not undefined. This feature is implemented in LLVM IR in this CL as the function attribute "null-pointer-is-valid"="true" in IR (Under review at D47894). The CL updates several passes that assumed null pointer dereferencing is undefined to not optimize when the "null-pointer-is-valid"="true" attribute is present. Reviewers: t.p.northover, efriedma, jyknight, chandlerc, rnk, srhines, void, george.burgess.iv Reviewed By: efriedma, george.burgess.iv Subscribers: eraman, haicheng, george.burgess.iv, drinkcat, theraven, reames, sanjoy, xbolva00, llvm-commits Differential Revision: https://reviews.llvm.org/D47895 llvm-svn: 336613
* Implement strip.invariant.groupPiotr Padlewski2018-07-021-10/+10
| | | | | | | | | | | | | | | | Summary: This patch introduce new intrinsic - strip.invariant.group that was described in the RFC: Devirtualization v2 Reviewers: rsmith, hfinkel, nlopes, sanjoy, amharc, kuhar Subscribers: arsenm, nhaehnle, JDevlieghere, hiraditya, xbolva00, llvm-commits Differential Revision: https://reviews.llvm.org/D47103 Co-authored-by: Krzysztof Pszeniczny <krzysztof.pszeniczny@gmail.com> llvm-svn: 336073
* [Evaluator] Improve evaluation of call instructionEugene Leviant2018-07-013-0/+239
| | | | | | Recommit of r335324 after buildbot failure fix llvm-svn: 336059
* Revert r335324 due to a builtbot failureEugene Leviant2018-06-222-107/+0
| | | | llvm-svn: 335327
* [Evaluator] Improve evaluation of call instructionEugene Leviant2018-06-222-0/+107
| | | | | | Differential revision: https://reviews.llvm.org/D46584 llvm-svn: 335324
* Fix evaluator for non-zero alloca addr spaceYaxun Liu2018-05-191-0/+17
| | | | | | | | | | | | | | The evaluator goes through BB and creates global vars as temporary values to evaluate results of LLVM instructions. It creates undef for alloca, however it assumes alloca in addr space 0. If the next instruction is addrspace cast to 0, then we get an invalid cast instruction. This patch let the temp global var have an address space matching alloca addr space, so that the valuation can be done. Differential Revision: https://reviews.llvm.org/D47081 llvm-svn: 332794
* Dissallow non-empty metadata for invariant.groupPiotr Padlewski2018-05-181-1/+1
| | | | | | | | | | | | | | | Summary: This feature is not needed, but it might be usefull in the future to use metadata to mark what which function should support it (and strip it when not). Reviewers: rsmith, sanjoy, amharc, kuhar Subscribers: hiraditya, llvm-commits Differential Revision: https://reviews.llvm.org/D45419 llvm-svn: 332787
* [DebugInfo] Add DILabel metadata and intrinsic llvm.dbg.label.Shiva Chen2018-05-093-5/+5
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | 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
* Rename invariant.group.barrier to launder.invariant.groupPiotr Padlewski2018-05-031-4/+4
| | | | | | | | | | | | | | Summary: This is one of the initial commit of "RFC: Devirtualization v2" proposal: https://docs.google.com/document/d/16GVtCpzK8sIHNc2qZz6RN8amICNBtvjWUod2SujZVEo/edit?usp=sharing Reviewers: rsmith, amharc, kuhar, sanjoy Subscribers: arsenm, nhaehnle, javed.absar, hiraditya, llvm-commits Differential Revision: https://reviews.llvm.org/D45111 llvm-svn: 331448
* Fix a bug in GlobalOpt's handling of DIExpressions.Adrian Prantl2018-04-271-2/+6
| | | | | | | | | This patch adds support for fragment expressions TryToShrinkGlobalToBoolean() which were previously just dropped. Thanks to Reid Kleckner for providing me a reproducer! llvm-svn: 331086
* [GlobalOpt] Fix support for casts in ctors.Mircea Trofin2018-04-061-0/+62
| | | | | | | | | | | | | | | | Summary: Fixing an issue where initializations of globals where constructors use casts were silently translated to 0-initialization. Reviewers: davidxl, evgeny777 Reviewed By: evgeny777 Subscribers: llvm-commits Differential Revision: https://reviews.llvm.org/D45198 llvm-svn: 329409
* [Evaluator] Evaluate load/store with bitcastEugene Leviant2018-03-131-0/+28
| | | | | | Differential revision: https://reviews.llvm.org/D43457 llvm-svn: 327381
* [GlobalOpt] don't change CC of musttail calle(e|r)Jonas Devlieghere2018-02-281-0/+34
| | | | | | | | | | | | | | | When the function has musttail call - its cc is fixed to be equal to the cc of the musttail callee. In such case (and in the case of the musttail callee), GlobalOpt should not change the cc to fastcc as it will break the invariant. This fixes PR36546 Patch by: Fedor Indutny (indutny) Differential revision: https://reviews.llvm.org/D43859 llvm-svn: 326376
* [FunctionAttrs][ArgumentPromotion][GlobalOpt] Disable some optimisations ↵Luke Cheeseman2018-02-221-0/+23
| | | | | | | | | | | | | | passes for naked functions - Fix for bug 36078. - Prevent the functionattrs, function-attrs, globalopt and argpromotion passes from changing naked functions. - These passes can perform some alterations to the functions that should not be applied. An example is removing parameters that are seemingly not used because they are only referenced in the inline assembly. Another example is marking the function as fastcc. llvm-svn: 325788
* Re-commit : [PowerPC] Add handling for ColdCC calling convention and a pass ↵Zaara Syeda2018-01-303-0/+132
| | | | | | | | | | | | | | | | | | | | | to mark candidates with coldcc attribute. This recommits r322721 reverted due to sanitizer memory leak build bot failures. Original commit message: This patch adds support for the coldcc calling convention for Power. This changes the set of non-volatile registers. It includes a pass to stress test the implementation by marking all static directly called functions with the coldcc attribute through the option -enable-coldcc-stress-test. It also includes an option, -ppc-enable-coldcc, to add the coldcc attribute to functions which are cold at all call sites based on BlockFrequencyInfo when the containing function does not call any non cold functions. Differential Revision: https://reviews.llvm.org/D38413 llvm-svn: 323778
* Remove alignment argument from memcpy/memmove/memset in favour of alignment ↵Daniel Neilson2018-01-194-14/+14
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | attributes (Step 1) Summary: This is a resurrection of work first proposed and discussed in Aug 2015: http://lists.llvm.org/pipermail/llvm-dev/2015-August/089384.html and initially landed (but then backed out) in Nov 2015: http://lists.llvm.org/pipermail/llvm-commits/Week-of-Mon-20151109/312083.html The @llvm.memcpy/memmove/memset intrinsics currently have an explicit argument which is required to be a constant integer. It represents the alignment of the dest (and source), and so must be the minimum of the actual alignment of the two. This change is the first in a series that allows source and dest to each have their own alignments by using the alignment attribute on their arguments. In this change we: 1) Remove the alignment argument. 2) Add alignment attributes to the source & dest arguments. We, temporarily, require that the alignments for source & dest be equal. For example, code which used to read: call void @llvm.memcpy.p0i8.p0i8.i32(i8* %dest, i8* %src, i32 100, i32 4, i1 false) will now read call void @llvm.memcpy.p0i8.p0i8.i32(i8* align 4 %dest, i8* align 4 %src, i32 100, i1 false) Downstream users may have to update their lit tests that check for @llvm.memcpy/memmove/memset call/declaration patterns. The following extended sed script may help with updating the majority of your tests, but it does not catch all possible patterns so some manual checking and updating will be required. s~declare void @llvm\.mem(set|cpy|move)\.p([^(]*)\((.*), i32, i1\)~declare void @llvm.mem\1.p\2(\3, i1)~g s~call void @llvm\.memset\.p([^(]*)i8\(i8([^*]*)\* (.*), i8 (.*), i8 (.*), i32 [01], i1 ([^)]*)\)~call void @llvm.memset.p\1i8(i8\2* \3, i8 \4, i8 \5, i1 \6)~g s~call void @llvm\.memset\.p([^(]*)i16\(i8([^*]*)\* (.*), i8 (.*), i16 (.*), i32 [01], i1 ([^)]*)\)~call void @llvm.memset.p\1i16(i8\2* \3, i8 \4, i16 \5, i1 \6)~g s~call void @llvm\.memset\.p([^(]*)i32\(i8([^*]*)\* (.*), i8 (.*), i32 (.*), i32 [01], i1 ([^)]*)\)~call void @llvm.memset.p\1i32(i8\2* \3, i8 \4, i32 \5, i1 \6)~g s~call void @llvm\.memset\.p([^(]*)i64\(i8([^*]*)\* (.*), i8 (.*), i64 (.*), i32 [01], i1 ([^)]*)\)~call void @llvm.memset.p\1i64(i8\2* \3, i8 \4, i64 \5, i1 \6)~g s~call void @llvm\.memset\.p([^(]*)i128\(i8([^*]*)\* (.*), i8 (.*), i128 (.*), i32 [01], i1 ([^)]*)\)~call void @llvm.memset.p\1i128(i8\2* \3, i8 \4, i128 \5, i1 \6)~g s~call void @llvm\.memset\.p([^(]*)i8\(i8([^*]*)\* (.*), i8 (.*), i8 (.*), i32 ([0-9]*), i1 ([^)]*)\)~call void @llvm.memset.p\1i8(i8\2* align \6 \3, i8 \4, i8 \5, i1 \7)~g s~call void @llvm\.memset\.p([^(]*)i16\(i8([^*]*)\* (.*), i8 (.*), i16 (.*), i32 ([0-9]*), i1 ([^)]*)\)~call void @llvm.memset.p\1i16(i8\2* align \6 \3, i8 \4, i16 \5, i1 \7)~g s~call void @llvm\.memset\.p([^(]*)i32\(i8([^*]*)\* (.*), i8 (.*), i32 (.*), i32 ([0-9]*), i1 ([^)]*)\)~call void @llvm.memset.p\1i32(i8\2* align \6 \3, i8 \4, i32 \5, i1 \7)~g s~call void @llvm\.memset\.p([^(]*)i64\(i8([^*]*)\* (.*), i8 (.*), i64 (.*), i32 ([0-9]*), i1 ([^)]*)\)~call void @llvm.memset.p\1i64(i8\2* align \6 \3, i8 \4, i64 \5, i1 \7)~g s~call void @llvm\.memset\.p([^(]*)i128\(i8([^*]*)\* (.*), i8 (.*), i128 (.*), i32 ([0-9]*), i1 ([^)]*)\)~call void @llvm.memset.p\1i128(i8\2* align \6 \3, i8 \4, i128 \5, i1 \7)~g s~call void @llvm\.mem(cpy|move)\.p([^(]*)i8\(i8([^*]*)\* (.*), i8([^*]*)\* (.*), i8 (.*), i32 [01], i1 ([^)]*)\)~call void @llvm.mem\1.p\2i8(i8\3* \4, i8\5* \6, i8 \7, i1 \8)~g s~call void @llvm\.mem(cpy|move)\.p([^(]*)i16\(i8([^*]*)\* (.*), i8([^*]*)\* (.*), i16 (.*), i32 [01], i1 ([^)]*)\)~call void @llvm.mem\1.p\2i16(i8\3* \4, i8\5* \6, i16 \7, i1 \8)~g s~call void @llvm\.mem(cpy|move)\.p([^(]*)i32\(i8([^*]*)\* (.*), i8([^*]*)\* (.*), i32 (.*), i32 [01], i1 ([^)]*)\)~call void @llvm.mem\1.p\2i32(i8\3* \4, i8\5* \6, i32 \7, i1 \8)~g s~call void @llvm\.mem(cpy|move)\.p([^(]*)i64\(i8([^*]*)\* (.*), i8([^*]*)\* (.*), i64 (.*), i32 [01], i1 ([^)]*)\)~call void @llvm.mem\1.p\2i64(i8\3* \4, i8\5* \6, i64 \7, i1 \8)~g s~call void @llvm\.mem(cpy|move)\.p([^(]*)i128\(i8([^*]*)\* (.*), i8([^*]*)\* (.*), i128 (.*), i32 [01], i1 ([^)]*)\)~call void @llvm.mem\1.p\2i128(i8\3* \4, i8\5* \6, i128 \7, i1 \8)~g s~call void @llvm\.mem(cpy|move)\.p([^(]*)i8\(i8([^*]*)\* (.*), i8([^*]*)\* (.*), i8 (.*), i32 ([0-9]*), i1 ([^)]*)\)~call void @llvm.mem\1.p\2i8(i8\3* align \8 \4, i8\5* align \8 \6, i8 \7, i1 \9)~g s~call void @llvm\.mem(cpy|move)\.p([^(]*)i16\(i8([^*]*)\* (.*), i8([^*]*)\* (.*), i16 (.*), i32 ([0-9]*), i1 ([^)]*)\)~call void @llvm.mem\1.p\2i16(i8\3* align \8 \4, i8\5* align \8 \6, i16 \7, i1 \9)~g s~call void @llvm\.mem(cpy|move)\.p([^(]*)i32\(i8([^*]*)\* (.*), i8([^*]*)\* (.*), i32 (.*), i32 ([0-9]*), i1 ([^)]*)\)~call void @llvm.mem\1.p\2i32(i8\3* align \8 \4, i8\5* align \8 \6, i32 \7, i1 \9)~g s~call void @llvm\.mem(cpy|move)\.p([^(]*)i64\(i8([^*]*)\* (.*), i8([^*]*)\* (.*), i64 (.*), i32 ([0-9]*), i1 ([^)]*)\)~call void @llvm.mem\1.p\2i64(i8\3* align \8 \4, i8\5* align \8 \6, i64 \7, i1 \9)~g s~call void @llvm\.mem(cpy|move)\.p([^(]*)i128\(i8([^*]*)\* (.*), i8([^*]*)\* (.*), i128 (.*), i32 ([0-9]*), i1 ([^)]*)\)~call void @llvm.mem\1.p\2i128(i8\3* align \8 \4, i8\5* align \8 \6, i128 \7, i1 \9)~g The remaining changes in the series will: Step 2) Expand the IRBuilder API to allow creation of memcpy/memmove with differing source and dest alignments. Step 3) Update Clang to use the new IRBuilder API. Step 4) Update Polly to use the new IRBuilder API. Step 5) Update LLVM passes that create memcpy/memmove calls to use the new IRBuilder API, and those that use use MemIntrinsicInst::[get|set]Alignment() to use getDestAlignment() and getSourceAlignment() instead. Step 6) Remove the single-alignment IRBuilder API for memcpy/memmove, and the MemIntrinsicInst::[get|set]Alignment() methods. Reviewers: pete, hfinkel, lhames, reames, bollu Reviewed By: reames Subscribers: niosHD, reames, jholewinski, qcolombet, jfb, sanjoy, arsenm, dschuff, dylanmckay, mehdi_amini, sdardis, nemanjai, david2050, nhaehnle, javed.absar, sbc100, jgravelle-google, eraman, aheejin, kbarton, JDevlieghere, asb, rbar, johnrusso, simoncook, jordy.potman.lists, apazos, sabuasal, llvm-commits Differential Revision: https://reviews.llvm.org/D41675 llvm-svn: 322965
* Revert [PowerPC] This reverts commit rL322721Zaara Syeda2018-01-173-132/+0
| | | | | | Failing build bots. Revert the commit now. llvm-svn: 322748
* [PowerPC] Add handling for ColdCC calling convention and a pass to markZaara Syeda2018-01-173-0/+132
| | | | | | | | | | | | | | | | candidates with coldcc attribute. This patch adds support for the coldcc calling convention for Power. This changes the set of non-volatile registers. It includes a pass to stress test the implementation by marking all static directly called functions with the coldcc attribute through the option -enable-coldcc-stress-test. It also includes an option, -ppc-enable-coldcc, to add the coldcc attribute to functions which are cold at all call sites based on BlockFrequencyInfo when the containing function does not call any non cold functions. Differential Revision: https://reviews.llvm.org/D38413 llvm-svn: 322721
* Add an @llvm.sideeffect intrinsicDan Gohman2017-11-081-0/+16
| | | | | | | | | | | | | | | | | | | | | | | | | | This patch implements Chandler's idea [0] for supporting languages that require support for infinite loops with side effects, such as Rust, providing part of a solution to bug 965 [1]. Specifically, it adds an `llvm.sideeffect()` intrinsic, which has no actual effect, but which appears to optimization passes to have obscure side effects, such that they don't optimize away loops containing it. It also teaches several optimization passes to ignore this intrinsic, so that it doesn't significantly impact optimization in most cases. As discussed on llvm-dev [2], this patch is the first of two major parts. The second part, to change LLVM's semantics to have defined behavior on infinite loops by default, with a function attribute for opting into potential-undefined-behavior, will be implemented and posted for review in a separate patch. [0] http://lists.llvm.org/pipermail/llvm-dev/2015-July/088103.html [1] https://bugs.llvm.org/show_bug.cgi?id=965 [2] http://lists.llvm.org/pipermail/llvm-dev/2017-October/118632.html Differential Revision: https://reviews.llvm.org/D38336 llvm-svn: 317729
* Fixed reverted commit rL312318Strahinja Petrovic2017-09-212-0/+103
| | | | | | | | | | This patch contains fix for reverted commit rL312318 which was causing failure due to use of unchecked dyn_cast to CIInit. Patch by: Nikola Prica. llvm-svn: 313870
* Revert r312318, r312325, r312424, r312489Richard Trieu2017-09-071-57/+0
| | | | | | | | | | r312318 - Debug info for variables whose type is shrinked to bool r312325, r312424, r312489 - Test case for r312318 Revision 312318 introduced a null dereference bug. Details in https://bugs.llvm.org/show_bug.cgi?id=34490 llvm-svn: 312758
* Fix test/Transforms/GlobalOpt/integer-bool-dwarfStrahinja Petrovic2017-09-041-11/+2
| | | | | | | | | This patch fixes regression related with integer-bool-dwarf test. Patch by Nikola Prica. llvm-svn: 312489
* Fix buildbot failures for new test that requires the X86 target be built.Don Hinton2017-09-021-0/+1
| | | | llvm-svn: 312424
* Adding missing test case in rL312318Strahinja Petrovic2017-09-011-0/+65
| | | | | | | | | Adding test for debug info for integer variables whose type is shrinked to bool. Patch by Nikola Prica. llvm-svn: 312325
* Canonicalize the representation of empty an expression in ↵Adrian Prantl2017-08-302-2/+2
| | | | | | | | | | | | | | | | DIGlobalVariableExpression This change simplifies code that has to deal with DIGlobalVariableExpression and mirrors how we treat DIExpressions in debug info intrinsics. Before this change there were two ways of representing empty expressions on globals, a nullptr and an empty !DIExpression(). If someone needs to upgrade out-of-tree testcases: perl -pi -e 's/(!DIGlobalVariableExpression\(var: ![0-9]*)\)/\1, expr: !DIExpression())/g' <MYTEST.ll> will catch 95%. llvm-svn: 312144
* Remove the obsolete offset parameter from @llvm.dbg.valueAdrian Prantl2017-07-282-7/+7
| | | | | | | | | | | | There is no situation where this rarely-used argument cannot be substituted with a DIExpression and removing it allows us to simplify the DWARF backend. Note that this patch does not yet remove any of the newly dead code. rdar://problem/33580047 Differential Revision: https://reviews.llvm.org/D35951 llvm-svn: 309426
* [GlobalOpt] Autogenerate checks for the test in PR33686.Davide Italiano2017-07-131-5/+5
| | | | | | Also fix a typo while here. llvm-svn: 307921
* Reapply [GlobalOpt] Remove unreachable blocks before optimizing a function.Davide Italiano2017-07-131-0/+17
| | | | | | | This commit reapplies r307215 now that we found out and fixed the cause of the cfi test failure (in r307871). llvm-svn: 307920
* [IPO] Temporarily rollback r307215.Davide Italiano2017-07-111-17/+0
| | | | | | | | | [GlobalOpt] Remove unreachable blocks before optimizing a function. While the change is presumably correct, it exposes a latent bug in DI which breaks on of the CFI checks. I'll analyze it further and try to understand what's going on. llvm-svn: 307729
* [GlobalOpt] Remove unreachable blocks before optimizing a function.Davide Italiano2017-07-051-0/+17
| | | | | | | | | | | | | | | | | LLVM's definition of dominance allows instructions that are cyclic in unreachable blocks, e.g.: %pat = select i1 %condition, @global, i16* %pat because any instruction dominates an instruction in a block that's not reachable from entry. So, remove unreachable blocks from the function, because a) there's no point in analyzing them and b) GlobalOpt should otherwise grow some more complicated logic to break these cycles. Differential Revision: https://reviews.llvm.org/D35028 llvm-svn: 307215
* [GlobalOpt] Correctly update metadata when localizing a global.Eli Friedman2017-04-271-0/+70
| | | | | | | | | Just calling dropAllReferences leaves pointers to the ConstantExpr behind, so we would eventually crash with a null pointer dereference. Differential Revision: https://reviews.llvm.org/D32551 llvm-svn: 301575
* Verifier: Disallow a line number without a file in DISubprogramJustin Bogner2017-02-171-1/+1
| | | | | | | | A line number doesn't make much sense if you don't say where it's from. Add a verifier check for this and update some tests that had bogus debug info. llvm-svn: 295516
* Fix some broken CHECK lines.Benjamin Kramer2017-01-221-2/+2
| | | | | | The colon is important. llvm-svn: 292761
* Renumber testcase metadata nodes after r290153.Adrian Prantl2016-12-221-54/+52
| | | | | | | | | | | | | This patch renumbers the metadata nodes in debug info testcases after https://reviews.llvm.org/D26769. This is a separate patch because it causes so much churn. This was implemented with a python script that pipes the testcases through llvm-as - | llvm-dis - and then goes through the original and new output side-by side to insert all comments at a close-enough location. Differential Revision: https://reviews.llvm.org/D27765 llvm-svn: 290292
* Legalize metadata in legacy testcasesAdrian Prantl2016-12-211-8/+7
| | | | llvm-svn: 290287
* Legalize metadata in legacy testcasesAdrian Prantl2016-12-211-1/+5
| | | | llvm-svn: 290286
* [IR] Remove the DIExpression field from DIGlobalVariable.Adrian Prantl2016-12-201-1/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This patch implements PR31013 by introducing a DIGlobalVariableExpression that holds a pair of DIGlobalVariable and DIExpression. Currently, DIGlobalVariables holds a DIExpression. This is not the best way to model this: (1) The DIGlobalVariable should describe the source level variable, not how to get to its location. (2) It makes it unsafe/hard to update the expressions when we call replaceExpression on the DIGLobalVariable. (3) It makes it impossible to represent a global variable that is in more than one location (e.g., a variable with multiple DW_OP_LLVM_fragment-s). We also moved away from attaching the DIExpression to DILocalVariable for the same reasons. This reapplies r289902 with additional testcase upgrades and a change to the Bitcode record for DIGlobalVariable, that makes upgrading the old format unambiguous also for variables without DIExpressions. <rdar://problem/29250149> https://llvm.org/bugs/show_bug.cgi?id=31013 Differential Revision: https://reviews.llvm.org/D26769 llvm-svn: 290153
* Revert "[IR] Remove the DIExpression field from DIGlobalVariable."Adrian Prantl2016-12-161-1/+1
| | | | | | | | | | | | | | | | | This reverts commit 289920 (again). I forgot to implement a Bitcode upgrade for the case where a DIGlobalVariable has not DIExpression. Unfortunately it is not possible to safely upgrade these variables without adding a flag to the bitcode record indicating which version they are. My plan of record is to roll the planned follow-up patch that adds a unit: field to DIGlobalVariable into this patch before recomitting. This way we only need one Bitcode upgrade for both changes (with a version flag in the bitcode record to safely distinguish the record formats). Sorry for the churn! llvm-svn: 289982
* [IR] Remove the DIExpression field from DIGlobalVariable.Adrian Prantl2016-12-161-1/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | This patch implements PR31013 by introducing a DIGlobalVariableExpression that holds a pair of DIGlobalVariable and DIExpression. Currently, DIGlobalVariables holds a DIExpression. This is not the best way to model this: (1) The DIGlobalVariable should describe the source level variable, not how to get to its location. (2) It makes it unsafe/hard to update the expressions when we call replaceExpression on the DIGLobalVariable. (3) It makes it impossible to represent a global variable that is in more than one location (e.g., a variable with multiple DW_OP_LLVM_fragment-s). We also moved away from attaching the DIExpression to DILocalVariable for the same reasons. This reapplies r289902 with additional testcase upgrades. <rdar://problem/29250149> https://llvm.org/bugs/show_bug.cgi?id=31013 Differential Revision: https://reviews.llvm.org/D26769 llvm-svn: 289920
* Revert "[IR] Remove the DIExpression field from DIGlobalVariable."Adrian Prantl2016-12-161-1/+1
| | | | | | This reverts commit 289902 while investigating bot berakage. llvm-svn: 289906
* [IR] Remove the DIExpression field from DIGlobalVariable.Adrian Prantl2016-12-161-1/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | This patch implements PR31013 by introducing a DIGlobalVariableExpression that holds a pair of DIGlobalVariable and DIExpression. Currently, DIGlobalVariables holds a DIExpression. This is not the best way to model this: (1) The DIGlobalVariable should describe the source level variable, not how to get to its location. (2) It makes it unsafe/hard to update the expressions when we call replaceExpression on the DIGLobalVariable. (3) It makes it impossible to represent a global variable that is in more than one location (e.g., a variable with multiple DW_OP_LLVM_fragment-s). We also moved away from attaching the DIExpression to DILocalVariable for the same reasons. <rdar://problem/29250149> https://llvm.org/bugs/show_bug.cgi?id=31013 Differential Revision: https://reviews.llvm.org/D26769 llvm-svn: 289902
* [GlobalOpt] Dead Eliminate declarationsMehdi Amini2016-09-151-0/+7
| | | | | | | | | | | | GlobalOpt is already dead-code-eliminating global definitions. With this change it also takes care of declarations. Hopefully this should make it now a strict superset of GlobalDCE. This is important for LTO/ThinLTO as we don't want the linker to see "undefined reference" when it processes the input files: it could prevent proper internalization (or even load an extra file from a static archive, changing the behavior of the program!). llvm-svn: 281653
* DebugInfo: New metadata representation for global variables.Peter Collingbourne2016-09-131-2/+2
| | | | | | | | | | | | | This patch reverses the edge from DIGlobalVariable to GlobalVariable. This will allow us to more easily preserve debug info metadata when manipulating global variables. Fixes PR30362. A program for upgrading test cases is attached to that bug. Differential Revision: http://reviews.llvm.org/D20147 llvm-svn: 281284
* Revert "Revert "Invariant start/end intrinsics overloaded for address space""Mehdi Amini2016-08-132-7/+7
| | | | | | This reverts commit 32fc6488e48eafc0ca1bac1bd9cbf0008224d530. llvm-svn: 278609
* Revert "Invariant start/end intrinsics overloaded for address space"Mehdi Amini2016-08-132-7/+7
| | | | | | This reverts commit r276447. llvm-svn: 278608
* IR: Drop uniquing when an MDNode Value operand is deletedDuncan P. N. Exon Smith2016-08-031-1/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This is a fix for PR28697. An MDNode can indirectly refer to a GlobalValue, through a ConstantAsMetadata. When the GlobalValue is deleted, the MDNode operand is reset to `nullptr`. If the node is uniqued, this can lead to a hard-to-detect cache invalidation in a Metadata map that's shared across an LLVMContext. Consider: 1. A map from Metadata* to `T` called RemappedMDs. 2. A node that references a global variable, `!{i1* @GV}`. 3. Insert `!{i1* @GV} -> SomeT` in the map. 4. Delete `@GV`, leaving behind `!{null} -> SomeT`. Looking up the generic and uninteresting `!{null}` gives you `SomeT`, which is likely related to `@GV`. Worse, `SomeT`'s lifetime may be tied to the deleted `@GV`. This occurs in practice in the shared ValueMap used since r266579 in the IRMover. Other code that handles more than one Module (with different lifetimes) in the same LLVMContext could hit it too. The fix here is a partial revert of r225223: in the rare case that an MDNode operand is a ConstantAsMetadata (i.e., wrapping a node from the Value hierarchy), drop uniquing if it gets replaced with `nullptr`. This changes step #4 above to leave behind `distinct !{null} -> SomeT`, which can't be confused with the generic `!{null}`. In theory, this can cause some churn in the LLVMContext's MDNode uniquing map when Values are being deleted. However: - The number of GlobalValues referenced from uniqued MDNodes is expected to be quite small. E.g., the debug info metadata schema only references GlobalValues from distinct nodes. - Other Constants have the lifetime of the LLVMContext, whose teardown is careful to drop references before deleting the constants. As a result, I don't expect a compile time regression from this change. llvm-svn: 277625
* Invariant start/end intrinsics overloaded for address spaceAnna Thomas2016-07-222-7/+7
| | | | | | | | | | | | | | | | | | | | | | Summary: The llvm.invariant.start and llvm.invariant.end intrinsics currently support specifying invariant memory objects only in the default address space. With this change, these intrinsics are overloaded for any adddress space for memory objects and we can use these llvm invariant intrinsics in non-default address spaces. Example: llvm.invariant.start.p1i8(i64 4, i8 addrspace(1)* %ptr) This overloaded intrinsic is needed for representing final or invariant memory in managed languages. Reviewers: apilipenko, reames Subscribers: llvm-commits llvm-svn: 276447
* Revert "Invariant start/end intrinsics overloaded for address space"Anna Thomas2016-07-212-7/+7
| | | | | | This reverts commit r276316. llvm-svn: 276320
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