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* test/DebugInfo: Convert some tests to MIRMatthias Braun2018-11-021-190/+0
| | | | | | | | | | These tests are meant to test dwarf emission (or prolog/epilogue generation) so we can convert them to .mir and only run the relevant part of the pipeline. This way they become independent of changes in earlier passes such as my planned changes to RegAllocFast. llvm-svn: 345919
* Rename __asan_gen_* symbols to ___asan_gen_*.Peter Collingbourne2018-07-181-2/+2
| | | | | | | | | | This prevents gold from printing a warning when trying to export these symbols via the asan dynamic list after ThinLTO promotes them from private symbols to external symbols with hidden visibility. Differential Revision: https://reviews.llvm.org/D49498 llvm-svn: 337428
* [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
* [FastISel] Disable local value sinking by defaultReid Kleckner2018-04-111-2/+2
| | | | | | | | | | | | | | | | | | This is causing compilation timeouts on code with long sequences of local values and calls (i.e. foo(1); foo(2); foo(3); ...). It turns out that code coverage instrumentation is a great way to create sequences like this, which how our users ran into the issue in practice. Intel has a tool that detects these kinds of non-linear compile time issues, and Andy Kaylor reported it as PR37010. The current sinking code scans the whole basic block once per local value sink, which happens before emitting each call. In theory, local values should only be introduced to be used by instructions between the current flush point and the last flush point, so we should only need to scan those instructions. llvm-svn: 329822
* [FastISel] Sink local value materializations to first useReid Kleckner2018-03-141-5/+5
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Summary: Local values are constants, global addresses, and stack addresses that can't be folded into the instruction that uses them. For example, when storing the address of a global variable into memory, we need to materialize that address into a register. FastISel doesn't want to materialize any given local value more than once, so it generates all local value materialization code at EmitStartPt, which always dominates the current insertion point. This allows it to maintain a map of local value registers, and it knows that the local value area will always dominate the current insertion point. The downside is that local value instructions are always emitted without a source location. This is done to prevent jumpy line tables, but it means that the local value area will be considered part of the previous statement. Consider this C code: call1(); // line 1 ++global; // line 2 ++global; // line 3 call2(&global, &local); // line 4 Today we end up with assembly and line tables like this: .loc 1 1 callq call1 leaq global(%rip), %rdi leaq local(%rsp), %rsi .loc 1 2 addq $1, global(%rip) .loc 1 3 addq $1, global(%rip) .loc 1 4 callq call2 The LEA instructions in the local value area have no source location and are treated as being on line 1. Stepping through the code in a debugger and correlating it with the assembly won't make much sense, because these materializations are only required for line 4. This is actually problematic for the VS debugger "set next statement" feature, which effectively assumes that there are no registers live across statement boundaries. By sinking the local value code into the statement and fixing up the source location, we can make that feature work. This was filed as https://bugs.llvm.org/show_bug.cgi?id=35975 and https://crbug.com/793819. This change is obviously not enough to make this feature work reliably in all cases, but I felt that it was worth doing anyway because it usually generates smaller, more comprehensible -O0 code. I measured a 0.12% regression in code generation time with LLC on the sqlite3 amalgamation, so I think this is worth doing. There are some special cases worth calling out in the commit message: 1. local values materialized for phis 2. local values used by no-op casts 3. dead local value code Local values can be materialized for phis, and this does not show up as a vreg use in MachineRegisterInfo. In this case, if there are no other uses, this patch sinks the value to the first terminator, EH label, or the end of the BB if nothing else exists. Local values may also be used by no-op casts, which adds the register to the RegFixups table. Without reversing the RegFixups map direction, we don't have enough information to sink these instructions. Lastly, if the local value register has no other uses, we can delete it. This comes up when fastisel tries two instruction selection approaches and the first materializes the value but fails and the second succeeds without using the local value. Reviewers: aprantl, dblaikie, qcolombet, MatzeB, vsk, echristo Subscribers: dotdash, chandlerc, hans, sdardis, amccarth, javed.absar, zturner, llvm-commits, hiraditya Differential Revision: https://reviews.llvm.org/D43093 llvm-svn: 327581
* Followup on Proposal to move MIR physical register namespace to '$' sigil.Puyan Lotfi2018-01-311-1/+1
| | | | | | | | | | | | Discussed here: http://lists.llvm.org/pipermail/llvm-dev/2018-January/120320.html In preparation for adding support for named vregs we are changing the sigil for physical registers in MIR to '$' from '%'. This will prevent name clashes of named physical register with named vregs. llvm-svn: 323922
* [DebugInfo] Unify dumping of address rangesJonas Devlieghere2018-01-161-2/+2
| | | | | | | | | | | | | | | Summary: This patch unifies the printing of address ranges as [0x0, 0x1). rdar://34822059 Reviewers: aprantl, dblaikie Subscribers: mehdi_amini, llvm-commits Differential Revision: https://reviews.llvm.org/D42056 llvm-svn: 322543
* [CodeGen] Print register names in lowercase in both MIR and debug outputFrancis Visoiu Mistrih2017-11-281-2/+2
| | | | | | | | | | | As part of the unification of the debug format and the MIR format, always print registers as lowercase. * Only debug printing is affected. It now follows MIR. Differential Revision: https://reviews.llvm.org/D40417 llvm-svn: 319187
* llvm-dwarfdump: Replace -debug-dump=sect option with individual options.Adrian Prantl2017-09-111-1/+1
| | | | | | | | | | | | | | | | | | | | | | As discussed on llvm-dev in http://lists.llvm.org/pipermail/llvm-dev/2017-September/117301.html this changes the command line interface of llvm-dwarfdump to match the one used by the dwarfdump utility shipping on macOS. In addition to being shorter to type this format also has the advantage of allowing more than one section to be specified at the same time. In a nutshell, with this change $ llvm-dwarfdump --debug-dump=info $ llvm-dwarfdump --debug-dump=apple-objc becomes $ dwarfdump --debug-info --apple-objc Differential Revision: https://reviews.llvm.org/D37714 llvm-svn: 312970
* [dwarfdump] Pretty print location expressions and location listsReid Kleckner2017-08-291-5/+5
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Summary: Based on Fred's patch here: https://reviews.llvm.org/D6771 I can't seem to commandeer the old review, so I'm creating a new one. With that change the locations exrpessions are pretty printed inline in the DIE tree. The output looks like this for debug_loc entries: DW_AT_location [DW_FORM_data4] (0x00000000 0x0000000000000001 - 0x000000000000000b: DW_OP_consts +3 0x000000000000000b - 0x0000000000000012: DW_OP_consts +7 0x0000000000000012 - 0x000000000000001b: DW_OP_reg0 RAX, DW_OP_piece 0x4 0x000000000000001b - 0x0000000000000024: DW_OP_breg5 RDI+0) And like this for debug_loc.dwo entries: DW_AT_location [DW_FORM_sec_offset] (0x00000000 Addr idx 2 (w/ length 190): DW_OP_consts +0, DW_OP_stack_value Addr idx 3 (w/ length 23): DW_OP_reg0 RAX, DW_OP_piece 0x4) Simple locations without ranges are printed inline: DW_AT_location [DW_FORM_block1] (DW_OP_reg4 RSI, DW_OP_piece 0x4, DW_OP_bit_piece 0x20 0x0) The debug_loc(.dwo) dumping in changed accordingly to factor the code. Reviewers: dblaikie, aprantl, friss Subscribers: mgorny, javed.absar, hiraditya, llvm-commits, JDevlieghere Differential Revision: https://reviews.llvm.org/D37123 llvm-svn: 312042
* Remove PrologEpilogInserter's usage of DBG_VALUE's offset fieldAdrian Prantl2017-08-011-1/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | In the last half-dozen commits to LLVM I removed code that became dead after removing the offset parameter from llvm.dbg.value gradually proceeding from IR towards the backend. Before I can move on to DwarfDebug and friends there is one last side-called offset I need to remove: This patch modifies PrologEpilogInserter's use of the DBG_VALUE's offset argument to use a DIExpression instead. Because the PrologEpilogInserter runs at the Machine level I had to play a little trick with a named llvm.dbg.mir node to get the DIExpressions to print in MIR dumps (which print the llvm::Module followed by the MachineFunction dump). I also had to add rudimentary DwarfExpression support to CodeView and as a side-effect also fixed a bug (CodeViewDebug::collectVariableInfo was supposed to give up on variables with complex DIExpressions, but would fail to do so for fragments, which are also modeled as DIExpressions). With this last holdover removed we will have only one canonical way of representing offsets to debug locations which will simplify the code in DwarfDebug (and future versions of CodeViewDebug once it starts handling more complex expressions) and make it easier to reason about. This patch is NFC-ish: All test case changes are for assembler comments and the binary output does not change. rdar://problem/33580047 Differential Revision: https://reviews.llvm.org/D36125 llvm-svn: 309751
* Debug Info: Also check the DWARF output in assembler-only test casesAdrian Prantl2017-07-311-0/+6
| | | | | | This will prevent me from introducing a regression in my next commit. llvm-svn: 309623
* Print complete DIExpressions in the assembler output DEBUG_VALUE comments.Adrian Prantl2017-04-251-2/+2
| | | | | | The previous code was complex, incorrect, and couldn't print everything. llvm-svn: 301333
* [PR27284] Reverse the ownership between DICompileUnit and DISubprogram.Adrian Prantl2016-04-151-3/+2
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Currently each Function points to a DISubprogram and DISubprogram has a scope field. For member functions the scope is a DICompositeType. DIScopes point to the DICompileUnit to facilitate type uniquing. Distinct DISubprograms (with isDefinition: true) are not part of the type hierarchy and cannot be uniqued. This change removes the subprograms list from DICompileUnit and instead adds a pointer to the owning compile unit to distinct DISubprograms. This would make it easy for ThinLTO to strip unneeded DISubprograms and their transitively referenced debug info. Motivation ---------- Materializing DISubprograms is currently the most expensive operation when doing a ThinLTO build of clang. We want the DISubprogram to be stored in a separate Bitcode block (or the same block as the function body) so we can avoid having to expensively deserialize all DISubprograms together with the global metadata. If a function has been inlined into another subprogram we need to store a reference the block containing the inlined subprogram. Attached to https://llvm.org/bugs/show_bug.cgi?id=27284 is a python script that updates LLVM IR testcases to the new format. http://reviews.llvm.org/D19034 <rdar://problem/25256815> llvm-svn: 266446
* testcase gardening: update the emissionKind enum to the new syntax. (NFC)Adrian Prantl2016-04-011-1/+1
| | | | llvm-svn: 265081
* Consider regmasks when computing register-based DBG_VALUE live rangesReid Kleckner2016-03-251-1/+5
| | | | | | | | | | | | | | Now register parameters that aren't saved to the stack or CSRs are considered dead after the first call. Previously the debugger would show whatever was in the register. Fixes PR26589 Reviewers: aprantl Differential Revision: http://reviews.llvm.org/D17211 llvm-svn: 264429
* Clean up the processing of dbg.value in various placesKeno Fischer2015-12-191-6/+5
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Summary: First up is instcombine, where in the dbg.declare -> dbg.value conversion, the llvm.dbg.value needs to be called on the actual loaded value, rather than the address (since the whole point of this transformation is to be able to get rid of the alloca). Further, now that that's cleaned up, we can remove a hack in the backend, that would add an implicit OP_deref if the argument to dbg.value was an alloca. This stems from before the existence of DIExpression and is no longer necessary since the deref can be expressed explicitly. Now, in order to make sure that the tests pass with this change, we need to correct the printing of DEBUG_VALUE comments to take into account the expression, which wasn't taken into account before. Unfortunately, for both these changes, there were a number of incorrect test cases (mostly the wrong number of DW_OP_derefs, but also a couple where the test itself was broken more badly). aprantl and I have gone through and adjusted these test case in order to make them pass with these fixes and in some cases to make sure they're actually testing what they are meant to test. Reviewers: aprantl Subscribers: dsanders Differential Revision: http://reviews.llvm.org/D14186 llvm-svn: 256077
* Update DebugInfo tests for the change in DEBUG_VALUE output in r253338.Dan Gohman2015-11-171-2/+2
| | | | llvm-svn: 253340
* DI: Reverse direction of subprogram -> function edge.Peter Collingbourne2015-11-051-2/+2
| | | | | | | | | | | | | | | | | | | | | | | Previously, subprograms contained a metadata reference to the function they described. Because most clients need to get or set a subprogram for a given function rather than the other way around, this created unneeded inefficiency. For example, many passes needed to call the function llvm::makeSubprogramMap() to build a mapping from functions to subprograms, and the IR linker needed to fix up function references in a way that caused quadratic complexity in the IR linking phase of LTO. This change reverses the direction of the edge by storing the subprogram as function-level metadata and removing DISubprogram's function field. Since this is an IR change, a bitcode upgrade has been provided. Fixes PR23367. An upgrade script for textual IR for out-of-tree clients is attached to the PR. Differential Revision: http://reviews.llvm.org/D14265 llvm-svn: 252219
* DI: Require subprogram definitions to be distinctDuncan P. N. Exon Smith2015-08-281-1/+1
| | | | | | | | | | | | | | | | | | | | | | | | As a follow-up to r246098, require `DISubprogram` definitions (`isDefinition: true`) to be 'distinct'. Specifically, add an assembler check, a verifier check, and bitcode upgrading logic to combat testcase bitrot after the `DIBuilder` change. While working on the testcases, I realized that test/Linker/subprogram-linkonce-weak-odr.ll isn't relevant anymore. Its purpose was to check for a corner case in PR22792 where two subprogram definitions match exactly and share the same metadata node. The new verifier check, requiring that subprogram definitions are 'distinct', precludes that possibility. I updated almost all the IR with the following script: git grep -l -E -e '= !DISubprogram\(.* isDefinition: true' | grep -v test/Bitcode | xargs sed -i '' -e 's/= \(!DISubprogram(.*, isDefinition: true\)/= distinct \1/' Likely some variant of would work for out-of-tree testcases. llvm-svn: 246327
* DI: Disallow uniquable DICompileUnitsDuncan P. N. Exon Smith2015-08-031-1/+1
| | | | | | | | | | | | | | | | | | Since r241097, `DIBuilder` has only created distinct `DICompileUnit`s. The backend is liable to start relying on that (if it hasn't already), so make uniquable `DICompileUnit`s illegal and automatically upgrade old bitcode. This is a nice cleanup, since we can remove an unnecessary `DenseSet` (and the associated uniquing info) from `LLVMContextImpl`. Almost all the testcases were updated with this script: git grep -e '= !DICompileUnit' -l -- test | grep -v test/Bitcode | xargs sed -i '' -e 's,= !DICompileUnit,= distinct !DICompileUnit,' I imagine something similar should work for out-of-tree testcases. llvm-svn: 243885
* DI: Remove DW_TAG_arg_variable and DW_TAG_auto_variableDuncan P. N. Exon Smith2015-07-311-1/+1
| | | | | | | | | | | | | | | | | | | | | | | | Remove the fake `DW_TAG_auto_variable` and `DW_TAG_arg_variable` tags, using `DW_TAG_variable` in their place Stop exposing the `tag:` field at all in the assembly format for `DILocalVariable`. Most of the testcase updates were generated by the following sed script: find test/ -name "*.ll" -o -name "*.mir" | xargs grep -l 'DILocalVariable' | xargs sed -i '' \ -e 's/tag: DW_TAG_arg_variable, //' \ -e 's/tag: DW_TAG_auto_variable, //' There were only a handful of tests in `test/Assembly` that I needed to update by hand. (Note: a follow-up could change `DILocalVariable::DILocalVariable()` to set the tag to `DW_TAG_formal_parameter` instead of `DW_TAG_variable` (as appropriate), instead of having that logic magically in the backend in `DbgVariable`. I've added a FIXME to that effect.) llvm-svn: 243774
* IR: Give 'DI' prefix to debug info metadataDuncan P. N. Exon Smith2015-04-291-10/+10
| | | | | | | | | | | | | | | | | | | | | | | | | | | | Finish off PR23080 by renaming the debug info IR constructs from `MD*` to `DI*`. The last of the `DIDescriptor` classes were deleted in r235356, and the last of the related typedefs removed in r235413, so this has all baked for about a week. Note: If you have out-of-tree code (like a frontend), I recommend that you get everything compiling and tests passing with the *previous* commit before updating to this one. It'll be easier to keep track of what code is using the `DIDescriptor` hierarchy and what you've already updated, and I think you're extremely unlikely to insert bugs. YMMV of course. Back to *this* commit: I did this using the rename-md-di-nodes.sh upgrade script I've attached to PR23080 (both code and testcases) and filtered through clang-format-diff.py. I edited the tests for test/Assembler/invalid-generic-debug-node-*.ll by hand since the columns were off-by-three. It should work on your out-of-tree testcases (and code, if you've followed the advice in the previous paragraph). Some of the tests are in badly named files now (e.g., test/Assembler/invalid-mdcompositetype-missing-tag.ll should be 'dicompositetype'); I'll come back and move the files in a follow-up commit. llvm-svn: 236120
* DebugInfo: Add missing !dbg attachments to intrinsicsDuncan P. N. Exon Smith2015-04-151-1/+1
| | | | | | | | Add missing `!dbg` attachments to `@llvm.dbg.*` intrinsics. I updated these using a script (add-dbg-to-intrinsics.sh) that I'll attach to PR22778 for posterity. llvm-svn: 235040
* Use the existing begin and end symbol for debug info.Rafael Espindola2015-03-051-1/+1
| | | | llvm-svn: 231338
* Use the vanilla func_end symbol for .size.Rafael Espindola2015-03-041-1/+1
| | | | | | No need to create yet another temp symbol. llvm-svn: 231198
* DebugInfo: Move new hierarchy into placeDuncan P. N. Exon Smith2015-03-031-9/+9
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Move the specialized metadata nodes for the new debug info hierarchy into place, finishing off PR22464. I've done bootstraps (and all that) and I'm confident this commit is NFC as far as DWARF output is concerned. Let me know if I'm wrong :). The code changes are fairly mechanical: - Bumped the "Debug Info Version". - `DIBuilder` now creates the appropriate subclass of `MDNode`. - Subclasses of DIDescriptor now expect to hold their "MD" counterparts (e.g., `DIBasicType` expects `MDBasicType`). - Deleted a ton of dead code in `AsmWriter.cpp` and `DebugInfo.cpp` for printing comments. - Big update to LangRef to describe the nodes in the new hierarchy. Feel free to make it better. Testcase changes are enormous. There's an accompanying clang commit on its way. If you have out-of-tree debug info testcases, I just broke your build. - `upgrade-specialized-nodes.sh` is attached to PR22564. I used it to update all the IR testcases. - Unfortunately I failed to find way to script the updates to CHECK lines, so I updated all of these by hand. This was fairly painful, since the old CHECKs are difficult to reason about. That's one of the benefits of the new hierarchy. This work isn't quite finished, BTW. The `DIDescriptor` subclasses are almost empty wrappers, but not quite: they still have loose casting checks (see the `RETURN_FROM_RAW()` macro). Once they're completely gutted, I'll rename the "MD" classes to "DI" and kill the wrappers. I also expect to make a few schema changes now that it's easier to reason about everything. llvm-svn: 231082
* [opaque pointer type] Add textual IR support for explicit type parameter to ↵David Blaikie2015-02-271-5/+5
| | | | | | | | | | | | | | | | | | | | | | | | load instruction Essentially the same as the GEP change in r230786. A similar migration script can be used to update test cases, though a few more test case improvements/changes were required this time around: (r229269-r229278) import fileinput import sys import re pat = re.compile(r"((?:=|:|^)\s*load (?:atomic )?(?:volatile )?(.*?))(| addrspace\(\d+\) *)\*($| *(?:%|@|null|undef|blockaddress|getelementptr|addrspacecast|bitcast|inttoptr|\[\[[a-zA-Z]|\{\{).*$)") for line in sys.stdin: sys.stdout.write(re.sub(pat, r"\1, \2\3*\4", line)) Reviewers: rafael, dexonsmith, grosser Differential Revision: http://reviews.llvm.org/D7649 llvm-svn: 230794
* IR: Move MDLocation into placeDuncan P. N. Exon Smith2015-01-141-1/+1
| | | | | | | | | | | | | | | | | | | | This commit moves `MDLocation`, finishing off PR21433. There's an accompanying clang commit for frontend testcases. I'll attach the testcase upgrade script I used to PR21433 to help out-of-tree frontends/backends. This changes the schema for `DebugLoc` and `DILocation` from: !{i32 3, i32 7, !7, !8} to: !MDLocation(line: 3, column: 7, scope: !7, inlinedAt: !8) Note that empty fields (line/column: 0 and inlinedAt: null) don't get printed by the assembly writer. llvm-svn: 226048
* Debug Info: Move the complex expression handling (=the remainder) ofAdrian Prantl2015-01-131-2/+2
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | emitDebugLocValue() into DwarfExpression. Ought to be NFC, but it actually uncovered a bug in the debug-loc-asan.ll testcase. The testcase checks that the address of variable "y" is stored at [RSP+16], which also lines up with the comment. It also check(ed) that the *value* of "y" is stored in RDI before that, but that is actually incorrect, since RDI is the very value that is stored in [RSP+16]. Here's the assembler output: movb 2147450880(%rcx), %r8b #DEBUG_VALUE: bar:y <- RDI cmpb $0, %r8b movq %rax, 32(%rsp) # 8-byte Spill movq %rsi, 24(%rsp) # 8-byte Spill movq %rdi, 16(%rsp) # 8-byte Spill .Ltmp3: #DEBUG_VALUE: bar:y <- [RSP+16] Fixed the comment to spell out the correct register and the check to expect an address rather than a value. Note that the range that is emitted for the RDI location was and is still wrong, it claims to begin at the function prologue, but really it should start where RDI is first assigned. llvm-svn: 225851
* IR: Make metadata typeless in assemblyDuncan P. N. Exon Smith2014-12-151-16/+16
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Now that `Metadata` is typeless, reflect that in the assembly. These are the matching assembly changes for the metadata/value split in r223802. - Only use the `metadata` type when referencing metadata from a call intrinsic -- i.e., only when it's used as a `Value`. - Stop pretending that `ValueAsMetadata` is wrapped in an `MDNode` when referencing it from call intrinsics. So, assembly like this: define @foo(i32 %v) { call void @llvm.foo(metadata !{i32 %v}, metadata !0) call void @llvm.foo(metadata !{i32 7}, metadata !0) call void @llvm.foo(metadata !1, metadata !0) call void @llvm.foo(metadata !3, metadata !0) call void @llvm.foo(metadata !{metadata !3}, metadata !0) ret void, !bar !2 } !0 = metadata !{metadata !2} !1 = metadata !{i32* @global} !2 = metadata !{metadata !3} !3 = metadata !{} turns into this: define @foo(i32 %v) { call void @llvm.foo(metadata i32 %v, metadata !0) call void @llvm.foo(metadata i32 7, metadata !0) call void @llvm.foo(metadata i32* @global, metadata !0) call void @llvm.foo(metadata !3, metadata !0) call void @llvm.foo(metadata !{!3}, metadata !0) ret void, !bar !2 } !0 = !{!2} !1 = !{i32* @global} !2 = !{!3} !3 = !{} I wrote an upgrade script that handled almost all of the tests in llvm and many of the tests in cfe (even handling many `CHECK` lines). I've attached it (or will attach it in a moment if you're speedy) to PR21532 to help everyone update their out-of-tree testcases. This is part of PR21532. llvm-svn: 224257
* Fix a bit of confusion about .set and produce more readable assembly.Rafael Espindola2014-10-211-8/+4
| | | | | | | | | | | | | | | Every target we support has support for assembly that looks like a = b - c .long a What is special about MachO is that the above combination suppresses the production of a relocation. With this change we avoid producing the intermediary labels when they don't add any value. llvm-svn: 220256
* Revert "Revert "DI: Fold constant arguments into a single MDString""Duncan P. N. Exon Smith2014-10-031-8/+8
| | | | | | | | | | | | | | | | | | | | | | This reverts commit r218918, effectively reapplying r218914 after fixing an Ocaml bindings test and an Asan crash. The root cause of the latter was a tightened-up check in `DILexicalBlock::Verify()`, so I'll file a PR to investigate who requires the loose check (and why). Original commit message follows. -- This patch addresses the first stage of PR17891 by folding constant arguments together into a single MDString. Integers are stringified and a `\0` character is used as a separator. Part of PR17891. Note: I've attached my testcases upgrade scripts to the PR. If I've just broken your out-of-tree testcases, they might help. llvm-svn: 219010
* Revert "DI: Fold constant arguments into a single MDString"Duncan P. N. Exon Smith2014-10-021-8/+8
| | | | | | This reverts commit r218914 while I investigate some bots. llvm-svn: 218918
* DI: Fold constant arguments into a single MDStringDuncan P. N. Exon Smith2014-10-021-8/+8
| | | | | | | | | | | | | This patch addresses the first stage of PR17891 by folding constant arguments together into a single MDString. Integers are stringified and a `\0` character is used as a separator. Part of PR17891. Note: I've attached my testcases upgrade scripts to the PR. If I've just broken your out-of-tree testcases, they might help. llvm-svn: 218914
* Move the complex address expression out of DIVariable and into an extraAdrian Prantl2014-10-011-4/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | argument of the llvm.dbg.declare/llvm.dbg.value intrinsics. Previously, DIVariable was a variable-length field that has an optional reference to a Metadata array consisting of a variable number of complex address expressions. In the case of OpPiece expressions this is wasting a lot of storage in IR, because when an aggregate type is, e.g., SROA'd into all of its n individual members, the IR will contain n copies of the DIVariable, all alike, only differing in the complex address reference at the end. By making the complex address into an extra argument of the dbg.value/dbg.declare intrinsics, all of the pieces can reference the same variable and the complex address expressions can be uniqued across the CU, too. Down the road, this will allow us to move other flags, such as "indirection" out of the DIVariable, too. The new intrinsics look like this: declare void @llvm.dbg.declare(metadata %storage, metadata %var, metadata %expr) declare void @llvm.dbg.value(metadata %storage, i64 %offset, metadata %var, metadata %expr) This patch adds a new LLVM-local tag to DIExpressions, so we can detect and pretty-print DIExpression metadata nodes. What this patch doesn't do: This patch does not touch the "Indirect" field in DIVariable; but moving that into the expression would be a natural next step. http://reviews.llvm.org/D4919 rdar://problem/17994491 Thanks to dblaikie and dexonsmith for reviewing this patch! Note: I accidentally committed a bogus older version of this patch previously. llvm-svn: 218787
* Revert r218778 while investigating buldbot breakage.Adrian Prantl2014-10-011-4/+4
| | | | | | "Move the complex address expression out of DIVariable and into an extra" llvm-svn: 218782
* Move the complex address expression out of DIVariable and into an extraAdrian Prantl2014-10-011-4/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | argument of the llvm.dbg.declare/llvm.dbg.value intrinsics. Previously, DIVariable was a variable-length field that has an optional reference to a Metadata array consisting of a variable number of complex address expressions. In the case of OpPiece expressions this is wasting a lot of storage in IR, because when an aggregate type is, e.g., SROA'd into all of its n individual members, the IR will contain n copies of the DIVariable, all alike, only differing in the complex address reference at the end. By making the complex address into an extra argument of the dbg.value/dbg.declare intrinsics, all of the pieces can reference the same variable and the complex address expressions can be uniqued across the CU, too. Down the road, this will allow us to move other flags, such as "indirection" out of the DIVariable, too. The new intrinsics look like this: declare void @llvm.dbg.declare(metadata %storage, metadata %var, metadata %expr) declare void @llvm.dbg.value(metadata %storage, i64 %offset, metadata %var, metadata %expr) This patch adds a new LLVM-local tag to DIExpressions, so we can detect and pretty-print DIExpression metadata nodes. What this patch doesn't do: This patch does not touch the "Indirect" field in DIVariable; but moving that into the expression would be a natural next step. http://reviews.llvm.org/D4919 rdar://problem/17994491 Thanks to dblaikie and dexonsmith for reviewing this patch! llvm-svn: 218778
* Debug info: split out complex DIVariable address expressions into aAdrian Prantl2014-06-301-2/+2
| | | | | | | | | | | separate MDNode so they can be uniqued via folding set magic. To conserve space, DIVariable nodes are still variable-length, with the last two fields being optional. No functional change. http://reviews.llvm.org/D3526 llvm-svn: 212050
* Allow X86FastIsel to cope with 64 bit absolute relocationsLouis Gerbarg2014-06-171-4/+4
| | | | | | | | | | | | This patch is a follow up to r211040 & r211052. Rather than bailing out of fast isel this patch will generate an alternate instruction (movabsq) instead of the leaq. While this will always have enough room to handle the 64 bit displacment it is generally over kill for internal symbols (most displacements will be within 32 bits) but since we have no way of communicating the code model to the the assmebler in order to avoid flagging an absolute leal/leaq as illegal when using a symbolic displacement. llvm-svn: 211130
* Improve comments for r211040Louis Gerbarg2014-06-161-2/+2
| | | | | | | | Added comment to clarify why we r211040 choose to bail out of fast isel instead of generating a more complicated relocation, and fix mislabelled register in the comments of the asan test case. llvm-svn: 211052
* Fix illegal relocations in X86FastISelLouis Gerbarg2014-06-161-3/+3
| | | | | | | | | | | | On x86_86 the lea instruction can only use a 32 bit immediate value. When the code is compiled statically the RIP register is not used, meaning the immediate is all that can be used for the relocation, which is not sufficient in the case of targets more than +/- 2GB away. This patch bails out of fast isel in those cases and reverts to DAG which does the right thing. Test case included. llvm-svn: 211040
* Generate better location ranges for some register-described variables.Alexey Samsonov2014-06-091-0/+186
Don't terminate location ranges for register-described variables at the end of machine basic block if this register is never modified in the function body, except for the prologue and epilogue. Prologue location is guessed by FrameSetup flags on MachineInstructions, while epilogue location is deduced from debug locations of instructions in the basic blocks ending with return instructions. This patch is mostly targeted to fix non-trivial debug locations for variables addressed via stack and frame pointers. It is not really a generic fix. We can still produce poor debug info for register-described variables if this register *is* modified somewhere in the function, but in unrelated places. This might be the case for the debug info in optimized binaries (e.g. for local variables in inlined functions). LiveDebugVariables pass in CodeGen attempts to fix this problem by adjusting DBG_VALUE instructions, but this pass is tied to greedy register allocator, which is used in optimized builds only. Proper fix would likely involve generalizing LiveDebugVariables to all register allocators. See more discussion in http://reviews.llvm.org/D3933 review thread. I'm proceeding with this patch to fix immediate severe problems and important cases, e.g. fix completely broken debug info with AddressSanitizer and fix PR19307 (missing debug info for by-value std::string arguments). llvm-svn: 210492
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