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path: root/llvm/lib/Transforms/Utils/AddDiscriminators.cpp
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* IR: Give 'DI' prefix to debug info metadataDuncan P. N. Exon Smith2015-04-291-4/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | 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: Drop rest of DIDescriptor subclassesDuncan P. N. Exon Smith2015-04-211-2/+2
| | | | | | | Delete the remaining subclasses of (the already deleted) `DIDescriptor`. Part of PR23080. llvm-svn: 235404
* DebugInfo: Delete subclasses of DIScopeDuncan P. N. Exon Smith2015-04-201-2/+2
| | | | | | | Delete subclasses of (the already defunct) `DIScope`, updating users to use the raw pointers from the `Metadata` hierarchy directly. llvm-svn: 235356
* DebugInfo: Gut DIScope, DIEnumerator and DISubrangeDuncan P. N. Exon Smith2015-04-161-2/+2
| | | | | | The only class the still has API left is `DIDescriptor` itself. llvm-svn: 235067
* DebugInfo: Gut DILocationDuncan P. N. Exon Smith2015-04-141-7/+7
| | | | | | | | This is along the same lines as r234832, but for `DILocation`. Clean out all accessors from `DILocation`. Any callers should be using `MDLocation` directly (e.g., via `operator->()`). llvm-svn: 234835
* DebugInfo: Move DILocation::computeNewDiscriminators()Duncan P. N. Exon Smith2015-04-141-1/+7
| | | | | | | | | As documented in PR23200 (and the FIXMEs I've added to the code here), this logic is fairly broken: it modifies the `LLVMContext` in a way that affects other modules and cannot be serialized to assembly/bitcode. For now, move it over to `MDLocation::computeNewDiscriminators()` anyway. llvm-svn: 234825
* AddDiscriminators: Create new MDLocation directlyDuncan P. N. Exon Smith2015-04-141-1/+3
| | | | | | | | | | I don't see a reason to add the `copyWithNewScope()` API over to `MDLocation` -- it seems to be a holdover from when creating locations required knowing details of operand layout -- so change `AddDiscriminators` to call `MDLocation::get()` directly. Should be no functionality change here. llvm-svn: 234824
* DebugInfo: Rewrite atSameLineAs() as MDLocation::canDiscriminate()Duncan P. N. Exon Smith2015-04-111-1/+1
| | | | | | | | Rewrite `DILocation::atSameLineAs()` as `MDLocation::canDiscriminate()` with a doxygen comment explaining its purpose. I've added a few FIXMEs where I think this check is too weak; fixing that is tracked by PR23199. llvm-svn: 234674
* Transforms: Use the new DebugLoc API, NFCDuncan P. N. Exon Smith2015-03-301-8/+9
| | | | | | Update lib/Analysis and lib/Transforms to use the new `DebugLoc` API. llvm-svn: 233587
* IR: Split Metadata from ValueDuncan P. N. Exon Smith2014-12-091-1/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Split `Metadata` away from the `Value` class hierarchy, as part of PR21532. Assembly and bitcode changes are in the wings, but this is the bulk of the change for the IR C++ API. I have a follow-up patch prepared for `clang`. If this breaks other sub-projects, I apologize in advance :(. Help me compile it on Darwin I'll try to fix it. FWIW, the errors should be easy to fix, so it may be simpler to just fix it yourself. This breaks the build for all metadata-related code that's out-of-tree. Rest assured the transition is mechanical and the compiler should catch almost all of the problems. Here's a quick guide for updating your code: - `Metadata` is the root of a class hierarchy with three main classes: `MDNode`, `MDString`, and `ValueAsMetadata`. It is distinct from the `Value` class hierarchy. It is typeless -- i.e., instances do *not* have a `Type`. - `MDNode`'s operands are all `Metadata *` (instead of `Value *`). - `TrackingVH<MDNode>` and `WeakVH` referring to metadata can be replaced with `TrackingMDNodeRef` and `TrackingMDRef`, respectively. If you're referring solely to resolved `MDNode`s -- post graph construction -- just use `MDNode*`. - `MDNode` (and the rest of `Metadata`) have only limited support for `replaceAllUsesWith()`. As long as an `MDNode` is pointing at a forward declaration -- the result of `MDNode::getTemporary()` -- it maintains a side map of its uses and can RAUW itself. Once the forward declarations are fully resolved RAUW support is dropped on the ground. This means that uniquing collisions on changing operands cause nodes to become "distinct". (This already happened fairly commonly, whenever an operand went to null.) If you're constructing complex (non self-reference) `MDNode` cycles, you need to call `MDNode::resolveCycles()` on each node (or on a top-level node that somehow references all of the nodes). Also, don't do that. Metadata cycles (and the RAUW machinery needed to construct them) are expensive. - An `MDNode` can only refer to a `Constant` through a bridge called `ConstantAsMetadata` (one of the subclasses of `ValueAsMetadata`). As a side effect, accessing an operand of an `MDNode` that is known to be, e.g., `ConstantInt`, takes three steps: first, cast from `Metadata` to `ConstantAsMetadata`; second, extract the `Constant`; third, cast down to `ConstantInt`. The eventual goal is to introduce `MDInt`/`MDFloat`/etc. and have metadata schema owners transition away from using `Constant`s when the type isn't important (and they don't care about referring to `GlobalValue`s). In the meantime, I've added transitional API to the `mdconst` namespace that matches semantics with the old code, in order to avoid adding the error-prone three-step equivalent to every call site. If your old code was: MDNode *N = foo(); bar(isa <ConstantInt>(N->getOperand(0))); baz(cast <ConstantInt>(N->getOperand(1))); bak(cast_or_null <ConstantInt>(N->getOperand(2))); bat(dyn_cast <ConstantInt>(N->getOperand(3))); bay(dyn_cast_or_null<ConstantInt>(N->getOperand(4))); you can trivially match its semantics with: MDNode *N = foo(); bar(mdconst::hasa <ConstantInt>(N->getOperand(0))); baz(mdconst::extract <ConstantInt>(N->getOperand(1))); bak(mdconst::extract_or_null <ConstantInt>(N->getOperand(2))); bat(mdconst::dyn_extract <ConstantInt>(N->getOperand(3))); bay(mdconst::dyn_extract_or_null<ConstantInt>(N->getOperand(4))); and when you transition your metadata schema to `MDInt`: MDNode *N = foo(); bar(isa <MDInt>(N->getOperand(0))); baz(cast <MDInt>(N->getOperand(1))); bak(cast_or_null <MDInt>(N->getOperand(2))); bat(dyn_cast <MDInt>(N->getOperand(3))); bay(dyn_cast_or_null<MDInt>(N->getOperand(4))); - A `CallInst` -- specifically, intrinsic instructions -- can refer to metadata through a bridge called `MetadataAsValue`. This is a subclass of `Value` where `getType()->isMetadataTy()`. `MetadataAsValue` is the *only* class that can legally refer to a `LocalAsMetadata`, which is a bridged form of non-`Constant` values like `Argument` and `Instruction`. It can also refer to any other `Metadata` subclass. (I'll break all your testcases in a follow-up commit, when I propagate this change to assembly.) llvm-svn: 223802
* Use DILexicalBlockFile, rather than DILexicalBlock, to track discriminator ↵David Blaikie2014-08-211-4/+2
| | | | | | | | | | | | | | | changes to ensure discriminator changes don't introduce new DWARF DW_TAG_lexical_blocks. Somewhat unnoticed in the original implementation of discriminators, but it could cause instructions to end up in new, small, DW_TAG_lexical_blocks due to the use of DILexicalBlock to track discriminator changes. Instead, use DILexicalBlockFile which we already use to track file changes without introducing new scopes, so it works well to track discriminator changes in the same way. llvm-svn: 216239
* [C++] Use 'nullptr'. Transforms edition.Craig Topper2014-04-251-1/+1
| | | | llvm-svn: 207196
* [Modules] Fix potential ODR violations by sinking the DEBUG_TYPEChandler Carruth2014-04-221-2/+2
| | | | | | | | | | | | | | | | | definition below all of the header #include lines, lib/Transforms/... edition. This one is tricky for two reasons. We again have a couple of passes that define something else before the includes as well. I've sunk their name macros with the DEBUG_TYPE. Also, InstCombine contains headers that need DEBUG_TYPE, so now those headers #define and #undef DEBUG_TYPE around their code, leaving them well formed modular headers. Fixing these headers was a large motivation for all of these changes, as "leaky" macros of this form are hard on the modules implementation. llvm-svn: 206844
* Fix bug 19437 - Only add discriminators for DWARF 4 and above.Diego Novillo2014-04-171-2/+7
| | | | | | | | | | | | | | Summary: This prevents the discriminator generation pass from triggering if the DWARF version being used in the module is prior to 4. Reviewers: echristo, dblaikie CC: llvm-commits Differential Revision: http://reviews.llvm.org/D3413 llvm-svn: 206507
* [Layering] Move DebugInfo.h into the IR library where its implementationChandler Carruth2014-03-061-1/+1
| | | | | | already lives. llvm-svn: 203046
* [Layering] Move DIBuilder.h into the IR library where its implementationChandler Carruth2014-03-061-1/+1
| | | | | | already lives. llvm-svn: 203038
* [C++11] Add 'override' keyword to virtual methods that override their base ↵Craig Topper2014-03-051-1/+1
| | | | | | class. llvm-svn: 202953
* [cleanup] Re-sort all the includes with utils/sort_includes.py.Chandler Carruth2014-03-041-2/+2
| | | | llvm-svn: 202811
* Pass to emit DWARF path discriminators.Diego Novillo2014-03-031-0/+217
DWARF discriminators are used to distinguish multiple control flow paths on the same source location. When this happens, instructions across basic block boundaries will share the same debug location. This pass detects this situation and creates a new lexical scope to one of the two instructions. This lexical scope is a child scope of the original and contains a new discriminator value. This discriminator is then picked up from MCObjectStreamer::EmitDwarfLocDirective to be written on the object file. This fixes http://llvm.org/bugs/show_bug.cgi?id=18270. llvm-svn: 202752
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