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* Make ConstantFoldTerminator() handle switches with unreachable default.Hans Wennborg2015-01-261-4/+10
| | | | | | | | Tested by Transforms/SimplifyCFG/switch-to-br.ll's @unreachable function. Differential Revision: http://reviews.llvm.org/D6471 llvm-svn: 227124
* [PM] Replace the Pass argument in MergeBasicBlockIntoOnlyPred withChandler Carruth2015-01-201-9/+5
| | | | | | | | | | a DominatorTree argument as that is the analysis that it wants to update. This removes the last non-loop utility function in Utils/ which accepts a raw Pass argument. llvm-svn: 226537
* [PM] Split the AssumptionTracker immutable pass into two separate APIs:Chandler Carruth2015-01-041-2/+2
| | | | | | | | | | | | | | | | | | | | | | | | | | | | a cache of assumptions for a single function, and an immutable pass that manages those caches. The motivation for this change is two fold. Immutable analyses are really hacks around the current pass manager design and don't exist in the new design. This is usually OK, but it requires that the core logic of an immutable pass be reasonably partitioned off from the pass logic. This change does precisely that. As a consequence it also paves the way for the *many* utility functions that deal in the assumptions to live in both pass manager worlds by creating an separate non-pass object with its own independent API that they all rely on. Now, the only bits of the system that deal with the actual pass mechanics are those that actually need to deal with the pass mechanics. Once this separation is made, several simplifications become pretty obvious in the assumption cache itself. Rather than using a set and callback value handles, it can just be a vector of weak value handles. The callers can easily skip the handles that are null, and eventually we can wrap all of this up behind a filter iterator. For now, this adds boiler plate to the various passes, but this kind of boiler plate will end up making it possible to port these passes to the new pass manager, and so it will end up factored away pretty reasonably. llvm-svn: 225131
* Remove unneeded curly braces.Frederic Riss2014-12-091-4/+2
| | | | llvm-svn: 223809
* Reorder the code to avoid inserting at the beginning of a vector.Frederic Riss2014-12-091-1/+1
| | | | | | As per dblaikie suggestion, thanks\! llvm-svn: 223808
* IR: Split Metadata from ValueDuncan P. N. Exon Smith2014-12-091-8/+12
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | 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
* Correctly handle complex locations expressions in replaceDbgDeclareForAlloca()Frederic Riss2014-12-091-2/+2
| | | | | | | | | | | | | | | | replaceDbgDeclareForAlloca() replaces an alloca by a value storing the address of what was the alloca. If there is a dbg.declare corresponding to that alloca, we need to lower it to a dbg.value describing the additional dereference operation to be performed to get to the underlying variable. This is done by adding a DW_OP_deref to the complex location part of the location description. This deref was added to the end of the operation list, which is wrong. The expression applies to what is described by the dbg.{declare,value}, and as we are changing this, we need to apply the DW_OP_deref as the first operation in the list. Part of the fix for rdar://19162268. llvm-svn: 223799
* Update SetVector to rely on the underlying set's insert to return a ↵David Blaikie2014-11-191-2/+2
| | | | | | | | | | | | | pair<iterator, bool> This is to be consistent with StringSet and ultimately with the standard library's associative container insert function. This lead to updating SmallSet::insert to return pair<iterator, bool>, and then to update SmallPtrSet::insert to return pair<iterator, bool>, and then to update all the existing users of those functions... llvm-svn: 222334
* Revert "IR: MDNode => Value"Duncan P. N. Exon Smith2014-11-111-5/+5
| | | | | | | | | | | | | | | | | Instead, we're going to separate metadata from the Value hierarchy. See PR21532. This reverts commit r221375. This reverts commit r221373. This reverts commit r221359. This reverts commit r221167. This reverts commit r221027. This reverts commit r221024. This reverts commit r221023. This reverts commit r220995. This reverts commit r220994. llvm-svn: 221711
* IR: MDNode => Value: Instruction::getAllMetadataOtherThanDebugLoc()Duncan P. N. Exon Smith2014-11-031-2/+2
| | | | | | | Change `Instruction::getAllMetadataOtherThanDebugLoc()` from a vector of `MDNode` to one of `Value`. Part of PR21433. llvm-svn: 221167
* IR: MDNode => Value: Instruction::getMetadata()Duncan P. N. Exon Smith2014-11-011-3/+3
| | | | | | | | | | Change `Instruction::getMetadata()` to return `Value` as part of PR21433. Update most callers to use `Instruction::getMDNode()`, which wraps the result in a `cast_or_null<MDNode>`. llvm-svn: 221024
* Untabify and whitespace cleanups.NAKAMURA Takumi2014-10-281-4/+4
| | | | llvm-svn: 220771
* Teach combineMetadata how to merge 'nonnull' metadata.Philip Reames2014-10-211-0/+4
| | | | | | combineMetadata is used when merging two instructions into one. This change teaches it how to merge 'nonnull' - i.e. only preserve it on the new instruction if it's set on both sources. This isn't actually used yet since I haven't adjusted any of the call sites to pass in nonnull as a 'known metadata'. llvm-svn: 220325
* DIBuilder: Encapsulate DIExpression's element typeDuncan P. N. Exon Smith2014-10-011-4/+3
| | | | | | | | `DIExpression`'s elements are 64-bit integers that are stored as `ConstantInt`. The accessors already encapsulate the storage. This commit updates the `DIBuilder` API to also encapsulate that. llvm-svn: 218797
* Move the complex address expression out of DIVariable and into an extraAdrian Prantl2014-10-011-20/+19
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | 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 Prantl2014-10-011-19/+20
| | | | | | "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 Prantl2014-10-011-20/+19
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | 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
* Make use of @llvm.assume in ValueTracking (computeKnownBits, etc.)Hal Finkel2014-09-071-2/+5
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This change, which allows @llvm.assume to be used from within computeKnownBits (and other associated functions in ValueTracking), adds some (optional) parameters to computeKnownBits and friends. These functions now (optionally) take a "context" instruction pointer, an AssumptionTracker pointer, and also a DomTree pointer, and most of the changes are just to pass this new information when it is easily available from InstSimplify, InstCombine, etc. As explained below, the significant conceptual change is that known properties of a value might depend on the control-flow location of the use (because we care that the @llvm.assume dominates the use because assumptions have control-flow dependencies). This means that, when we ask if bits are known in a value, we might get different answers for different uses. The significant changes are all in ValueTracking. Two main changes: First, as with the rest of the code, new parameters need to be passed around. To make this easier, I grouped them into a structure, and I made internal static versions of the relevant functions that take this structure as a parameter. The new code does as you might expect, it looks for @llvm.assume calls that make use of the value we're trying to learn something about (often indirectly), attempts to pattern match that expression, and uses the result if successful. By making use of the AssumptionTracker, the process of finding @llvm.assume calls is not expensive. Part of the structure being passed around inside ValueTracking is a set of already-considered @llvm.assume calls. This is to prevent a query using, for example, the assume(a == b), to recurse on itself. The context and DT params are used to find applicable assumptions. An assumption needs to dominate the context instruction, or come after it deterministically. In this latter case we only handle the specific case where both the assumption and the context instruction are in the same block, and we need to exclude assumptions from being used to simplify their own ephemeral values (those which contribute only to the assumption) because otherwise the assumption would prove its feeding comparison trivial and would be removed. This commit adds the plumbing and the logic for a simple masked-bit propagation (just enough to write a regression test). Future commits add more patterns (and, correspondingly, more regression tests). llvm-svn: 217342
* Repace SmallPtrSet with SmallPtrSetImpl in function arguments to avoid ↵Craig Topper2014-08-211-1/+1
| | | | | | needing to mention the size. llvm-svn: 216158
* Revert "Repace SmallPtrSet with SmallPtrSetImpl in function arguments to ↵Craig Topper2014-08-181-1/+1
| | | | | | | | avoid needing to mention the size." Getting a weird buildbot failure that I need to investigate. llvm-svn: 215870
* Repace SmallPtrSet with SmallPtrSetImpl in function arguments to avoid ↵Craig Topper2014-08-171-1/+1
| | | | | | needing to mention the size. llvm-svn: 215868
* Introduce a helper to combine instruction metadata.Rafael Espindola2014-08-151-0/+36
| | | | | | | | | Replace the old code in GVN and BBVectorize with it. Update SimplifyCFG to use it. Patch by Björn Steinbrink! llvm-svn: 215723
* Add @llvm.assume, lowering, and some basic propertiesHal Finkel2014-07-251-0/+28
| | | | | | | | | | | | | | | | | This is the first commit in a series that add an @llvm.assume intrinsic which can be used to provide the optimizer with a condition it may assume to be true (when the control flow would hit the intrinsic call). Some basic properties are added here: - llvm.invariant(true) is dead. - llvm.invariant(false) is unreachable (this directly corresponds to the documented behavior of MSVC's __assume(0)), so is llvm.invariant(undef). The intrinsic is tagged as writing arbitrarily, in order to maintain control dependencies. BasicAA has been updated, however, to return NoModRef for any particular location-based query so that we don't unnecessarily block code motion. llvm-svn: 213973
* Revert "[C++11] Add predecessors(BasicBlock *) / successors(BasicBlock *) ↵Duncan P. N. Exon Smith2014-07-211-8/+8
| | | | | | | | | iterator ranges." This reverts commit r213474 (and r213475), which causes a miscompile on a stage2 LTO build. I'll reply on the list in a moment. llvm-svn: 213562
* [C++11] Add predecessors(BasicBlock *) / successors(BasicBlock *) iterator ↵Manuel Jacob2014-07-201-8/+8
| | | | | | | | | | | | | | | | | | ranges. Summary: This patch introduces two new iterator ranges and updates existing code to use it. No functional change intended. Test Plan: All tests (make check-all) still pass. Reviewers: dblaikie Reviewed By: dblaikie Subscribers: llvm-commits Differential Revision: http://reviews.llvm.org/D4481 llvm-svn: 213474
* Fix an issue with the MergeBasicBlockIntoOnlyPred() helper function where it didOwen Anderson2014-07-121-0/+5
| | | | | | | | | | not properly handle the case where the predecessor block was the entry block to the function. The only in-tree client of this is JumpThreading, which worked around the issue in its own code. This patch moves the solution into the helper so that JumpThreading (and other clients) do not have to replicate the same fix everywhere. llvm-svn: 212875
* Rename ComputeMaskedBits to computeKnownBits. "Masked" has beenJay Foad2014-05-141-1/+1
| | | | | | inappropriate since it lost its Mask parameter in r154011. llvm-svn: 208811
* Split GlobalValue into GlobalValue and GlobalObject.Rafael Espindola2014-05-131-8/+8
| | | | | | | | | This allows code to statically accept a Function or a GlobalVariable, but not an alias. This is already a cleanup by itself IMHO, but the main reason for it is that it gives a lot more confidence that the refactoring to fix the design of GlobalAlias is correct. That will be a followup patch. llvm-svn: 208716
* Use auto and clang-format this snippet.Rafael Espindola2014-05-091-3/+5
| | | | llvm-svn: 208421
* Unbreak the gdb buildbot by not lowering dbg.declare intrinsics for arrays.Adrian Prantl2014-04-251-1/+7
| | | | llvm-svn: 207284
* This reapplies r207235 with an additional bugfixes caught by the msanAdrian Prantl2014-04-251-8/+14
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | buildbot - do not insert debug intrinsics before phi nodes. Debug info for optimized code: Support variables that are on the stack and described by DBG_VALUEs during their lifetime. Previously, when a variable was at a FrameIndex for any part of its lifetime, this would shadow all other DBG_VALUEs and only a single fbreg location would be emitted, which in fact is only valid for a small range and not the entire lexical scope of the variable. The included dbg-value-const-byref testcase demonstrates this. This patch fixes this by Local - emitting dbg.value intrinsics for allocas that are passed by reference - dropping all dbg.declares (they are now fully lowered to dbg.values) SelectionDAG - renamed constructors for SDDbgValue for better readability. - fix UserValue::match() to handle indirect values correctly - not inserting an MMI table entries for dbg.values that describe allocas. - lowering dbg.values that describe allocas into *indirect* DBG_VALUEs. CodeGenPrepare - leaving dbg.values for an alloca were they are (see comment) Other - regenerated/updated instcombine.ll testcase and included source rdar://problem/16679879 http://reviews.llvm.org/D3374 llvm-svn: 207269
* Revert "This reapplies r207130 with an additional testcase+and a missing ↵Adrian Prantl2014-04-251-14/+8
| | | | | | | | check for" This reverts commit 207235 to investigate msan buildbot breakage. llvm-svn: 207250
* Reapply r207135 without modifications.Adrian Prantl2014-04-251-17/+3
| | | | | | | | | | Debug info: Let dbg.values inserted by LowerDbgDeclare inherit the location of the dbg.value. This gets rid of tons of redundant variable DIEs in subscopes. rdar://problem/14874886, rdar://problem/16679936 llvm-svn: 207236
* This reapplies r207130 with an additional testcase+and a missing check forAdrian Prantl2014-04-251-8/+14
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | AllocaInst that was missing in one location. Debug info for optimized code: Support variables that are on the stack and described by DBG_VALUEs during their lifetime. Previously, when a variable was at a FrameIndex for any part of its lifetime, this would shadow all other DBG_VALUEs and only a single fbreg location would be emitted, which in fact is only valid for a small range and not the entire lexical scope of the variable. The included dbg-value-const-byref testcase demonstrates this. This patch fixes this by Local - emitting dbg.value intrinsics for allocas that are passed by reference - dropping all dbg.declares (they are now fully lowered to dbg.values) SelectionDAG - renamed constructors for SDDbgValue for better readability. - fix UserValue::match() to handle indirect values correctly - not inserting an MMI table entries for dbg.values that describe allocas. - lowering dbg.values that describe allocas into *indirect* DBG_VALUEs. CodeGenPrepare - leaving dbg.values for an alloca were they are (see comment) Other - regenerated/updated instcombine.ll testcase and included source rdar://problem/16679879 http://reviews.llvm.org/D3374 llvm-svn: 207235
* [C++] Use 'nullptr'. Transforms edition.Craig Topper2014-04-251-7/+7
| | | | llvm-svn: 207196
* Revert "This reapplies r207130 with an additional testcase+and a missing ↵Adrian Prantl2014-04-251-14/+8
| | | | | | | | check for" Typo in testcase. llvm-svn: 207166
* This reapplies r207130 with an additional testcase+and a missing check forAdrian Prantl2014-04-251-8/+14
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | AllocaInst that was missing in one location. Debug info for optimized code: Support variables that are on the stack and described by DBG_VALUEs during their lifetime. Previously, when a variable was at a FrameIndex for any part of its lifetime, this would shadow all other DBG_VALUEs and only a single fbreg location would be emitted, which in fact is only valid for a small range and not the entire lexical scope of the variable. The included dbg-value-const-byref testcase demonstrates this. This patch fixes this by Local - emitting dbg.value intrinsics for allocas that are passed by reference - dropping all dbg.declares (they are now fully lowered to dbg.values) SelectionDAG - renamed constructors for SDDbgValue for better readability. - fix UserValue::match() to handle indirect values correctly - not inserting an MMI table entries for dbg.values that describe allocas. - lowering dbg.values that describe allocas into *indirect* DBG_VALUEs. CodeGenPrepare - leaving dbg.values for an alloca were they are (see comment) Other - regenerated/updated instcombine.ll testcase and included source rdar://problem/16679879 http://reviews.llvm.org/D3374 llvm-svn: 207165
* Revert "Debug info for optimized code: Support variables that are on the ↵Adrian Prantl2014-04-251-14/+8
| | | | | | | | stack and" This reverts commit 207130 for buildbot breakage. llvm-svn: 207162
* Revert "Debug info: Let dbg.values inserted by LowerDbgDeclare inherit the ↵Adrian Prantl2014-04-241-3/+17
| | | | | | | | location" This reverts commit 207130 for buildbot breakage. llvm-svn: 207159
* Debug info: Let dbg.values inserted by LowerDbgDeclare inherit the locationAdrian Prantl2014-04-241-17/+3
| | | | | | | | | of the dbg.value. This gets rid of tons of redundant variable DIEs in subscopes. rdar://problem/14874886, rdar://problem/16679936 llvm-svn: 207135
* Debug info for optimized code: Support variables that are on the stack andAdrian Prantl2014-04-241-8/+14
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | described by DBG_VALUEs during their lifetime. Previously, when a variable was at a FrameIndex for any part of its lifetime, this would shadow all other DBG_VALUEs and only a single fbreg location would be emitted, which in fact is only valid for a small range and not the entire lexical scope of the variable. The included dbg-value-const-byref testcase demonstrates this. This patch fixes this by Local - emitting dbg.value intrinsics for allocas that are passed by reference - dropping all dbg.declares (they are now fully lowered to dbg.values) SelectionDAG - renamed constructors for SDDbgValue for better readability. - fix UserValue::match() to handle indirect values correctly - not inserting an MMI table entries for dbg.values that describe allocas. - lowering dbg.values that describe allocas into *indirect* DBG_VALUEs. CodeGenPrepare - leaving dbg.values for an alloca were they are (see comment) Other - regenerated/updated instcombine-intrinsics testcase and included source rdar://problem/16679879 http://reviews.llvm.org/D3374 llvm-svn: 207130
* [Modules] Make Support/Debug.h modular. This requires it to not changeChandler Carruth2014-04-211-0/+2
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | behavior based on other files defining DEBUG_TYPE, which means it cannot define DEBUG_TYPE at all. This is actually better IMO as it forces folks to define relevant DEBUG_TYPEs for their files. However, it requires all files that currently use DEBUG(...) to define a DEBUG_TYPE if they don't already. I've updated all such files in LLVM and will do the same for other upstream projects. This still leaves one important change in how LLVM uses the DEBUG_TYPE macro going forward: we need to only define the macro *after* header files have been #include-ed. Previously, this wasn't possible because Debug.h required the macro to be pre-defined. This commit removes that. By defining DEBUG_TYPE after the includes two things are fixed: - Header files that need to provide a DEBUG_TYPE for some inline code can do so by defining the macro before their inline code and undef-ing it afterward so the macro does not escape. - We no longer have rampant ODR violations due to including headers with different DEBUG_TYPE definitions. This may be mostly an academic violation today, but with modules these types of violations are easy to check for and potentially very relevant. Where necessary to suppor headers with DEBUG_TYPE, I have moved the definitions below the includes in this commit. I plan to move the rest of the DEBUG_TYPE macros in LLVM in subsequent commits; this one is big enough. The comments in Debug.h, which were hilariously out of date already, have been updated to reflect the recommended practice going forward. llvm-svn: 206822
* C++11: convert verbose loops to range-based loops.Adrian Prantl2014-03-271-7/+6
| | | | llvm-svn: 204981
* [C++11] Add range based accessors for the Use-Def chain of a Value.Chandler Carruth2014-03-091-14/+11
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This requires a number of steps. 1) Move value_use_iterator into the Value class as an implementation detail 2) Change it to actually be a *Use* iterator rather than a *User* iterator. 3) Add an adaptor which is a User iterator that always looks through the Use to the User. 4) Wrap these in Value::use_iterator and Value::user_iterator typedefs. 5) Add the range adaptors as Value::uses() and Value::users(). 6) Update *all* of the callers to correctly distinguish between whether they wanted a use_iterator (and to explicitly dig out the User when needed), or a user_iterator which makes the Use itself totally opaque. Because #6 requires churning essentially everything that walked the Use-Def chains, I went ahead and added all of the range adaptors and switched them to range-based loops where appropriate. Also because the renaming requires at least churning every line of code, it didn't make any sense to split these up into multiple commits -- all of which would touch all of the same lies of code. The result is still not quite optimal. The Value::use_iterator is a nice regular iterator, but Value::user_iterator is an iterator over User*s rather than over the User objects themselves. As a consequence, it fits a bit awkwardly into the range-based world and it has the weird extra-dereferencing 'operator->' that so many of our iterators have. I think this could be fixed by providing something which transforms a range of T&s into a range of T*s, but that *can* be separated into another patch, and it isn't yet 100% clear whether this is the right move. However, this change gets us most of the benefit and cleans up a substantial amount of code around Use and User. =] llvm-svn: 203364
* [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
* [Modules] Move CFG.h to the IR library as it defines graph traits overChandler Carruth2014-03-041-1/+1
| | | | | | IR types. llvm-svn: 202827
* [Modules] Move ValueHandle into the IR library where Value itself lives.Chandler Carruth2014-03-041-1/+1
| | | | | | | | | | | Move the test for this class into the IR unittests as well. This uncovers that ValueMap too is in the IR library. Ironically, the unittest for ValueMap is useless in the Support library (honestly, so was the ValueHandle test) and so it already lives in the IR unittests. Mmmm, tasty layering. llvm-svn: 202821
* [Modules] Move GetElementPtrTypeIterator into the IR library. As itsChandler Carruth2014-03-041-1/+1
| | | | | | | | | name might indicate, it is an iterator over the types in an instruction in the IR.... You see where this is going. Another step of modularizing the support library. llvm-svn: 202815
* [PM] Split DominatorTree into a concrete analysis result object whichChandler Carruth2014-01-131-5/+6
| | | | | | | | | | | | | | | | | | | | | | | can be used by both the new pass manager and the old. This removes it from any of the virtual mess of the pass interfaces and lets it derive cleanly from the DominatorTreeBase<> template. In turn, tons of boilerplate interface can be nuked and it turns into a very straightforward extension of the base DominatorTree interface. The old analysis pass is now a simple wrapper. The names and style of this split should match the split between CallGraph and CallGraphWrapperPass. All of the users of DominatorTree have been updated to match using many of the same tricks as with CallGraph. The goal is that the common type remains the resulting DominatorTree rather than the pass. This will make subsequent work toward the new pass manager significantly easier. Also in numerous places things became cleaner because I switched from re-running the pass (!!! mid way through some other passes run!!!) to directly recomputing the domtree. llvm-svn: 199104
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