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* Use "willreturn" in isGuaranteedToTransferExecutionToSuccessorJohannes Doerfert2019-06-271-0/+5
| | | | | | | | | | | | | | | | | | | | | The `willreturn` function attribute guarantees that a function call will come back to the call site if the call is also known not to throw. Therefore, this attribute can be used in `isGuaranteedToTransferExecutionToSuccessor`. Patch by Hideto Ueno (@uenoku) Reviewers: jdoerfert, sstefan1 Reviewed By: jdoerfert Subscribers: hiraditya, jfb, llvm-commits Tags: #llvm Differential Revision: https://reviews.llvm.org/D63372 llvm-svn: 364580
* [LangRef] Clarify poison semanticsNikita Popov2019-06-131-0/+2
| | | | | | | | | | | | | | | | | | | | | I find the current documentation of poison somewhat confusing, mainly because its use of "undefined behavior" doesn't seem to align with our usual interpretation (of immediate UB). Especially the sentence "any instruction that has a dependence on a poison value has undefined behavior" is very confusing. Clarify poison semantics by: * Replacing the introductory paragraph with the standard rationale for having poison values. * Spelling out that instructions depending on poison return poison. * Spelling out how we go from a poison value to immediate undefined behavior and give the two examples we currently use in ValueTracking. * Spelling out that side effects depending on poison are UB. Differential Revision: https://reviews.llvm.org/D63044 llvm-svn: 363320
* Add a clarifying comment about branching on poisonPhilip Reames2019-06-131-0/+4
| | | | | | I recently got this wrong (again), and I'm sure I'm not the only one. Put a comment in the logical place someone would look to "fix" the obvious "missed optimization" which arrises based on the common misunderstanding. Hopefully, this will save others time. :) llvm-svn: 363318
* [EarlyCSE] Ensure equal keys have the same hash valueJoseph Tremoulet2019-06-131-2/+10
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Summary: The logic in EarlyCSE that looks through 'not' operations in the predicate recognizes e.g. that `select (not (cmp sgt X, Y)), X, Y` is equivalent to `select (cmp sgt X, Y), Y, X`. Without this change, however, only the latter is recognized as a form of `smin X, Y`, so the two expressions receive different hash codes. This leads to missed optimization opportunities when the quadratic probing for the two hashes doesn't happen to collide, and assertion failures when probing doesn't collide on insertion but does collide on a subsequent table grow operation. This change inverts the order of some of the pattern matching, checking first for the optional `not` and then for the min/max/abs patterns, so that e.g. both expressions above are recognized as a form of `smin X, Y`. It also adds an assertion to isEqual verifying that it implies equal hash codes; this fires when there's a collision during insertion, not just grow, and so will make it easier to notice if these functions fall out of sync again. A new flag --earlycse-debug-hash is added which can be used when changing the hash function; it forces hash collisions so that any pair of values inserted which compare as equal but hash differently will be caught by the isEqual assertion. Reviewers: spatel, nikic Reviewed By: spatel, nikic Subscribers: lebedev.ri, arsenm, craig.topper, efriedma, hiraditya, llvm-commits Tags: #llvm Differential Revision: https://reviews.llvm.org/D62644 llvm-svn: 363274
* Factor out a helper function for readability and reuse in a future patch [NFC]Philip Reames2019-06-101-2/+8
| | | | llvm-svn: 362980
* [ValueTracking][ConstantRange] Distinguish low/high always overflowNikita Popov2019-05-281-2/+4
| | | | | | | | | | | | In order to fold an always overflowing signed saturating add/sub, we need to know in which direction the always overflow occurs. This patch splits up AlwaysOverflows into AlwaysOverflowsLow and AlwaysOverflowsHigh to pass through this information (but it is not used yet). Differential Revision: https://reviews.llvm.org/D62463 llvm-svn: 361858
* [ValueTracking] Base computeOverflowForUnsignedMul() on ConstantRange code; NFCINikita Popov2019-05-261-68/+34
| | | | | | | | The implementation in ValueTracking and ConstantRange are equally powerful, reuse the one in ConstantRange, which will make this easier to extend. llvm-svn: 361723
* Revert "[ValueTracking] Improve isKnowNonZero for Ints"Nikita Popov2019-05-081-13/+13
| | | | | | | | | This reverts commit 3b137a495686bd6018d115ea82fb8bb7718349fd. As reported in https://reviews.llvm.org/D60846, this is causing miscompiles. llvm-svn: 360260
* [ValueTracking] Improve isKnowNonZero for IntsDan Robertson2019-05-081-13/+13
| | | | | | | | | Improve isKnownNonZero for integers in order to improve cttz optimizations. Differential Revision: https://reviews.llvm.org/D60846 llvm-svn: 360222
* [ValueTracking] add logic for known-never-nan with minnum/maxnumSanjay Patel2019-05-071-0/+5
| | | | | | From the LangRef: "Returns NaN only if both operands are NaN." llvm-svn: 360206
* Add "const" in GetUnderlyingObjects. NFCBjorn Pettersson2019-04-241-9/+10
| | | | | | | | | | | | | | | | | | | | | | | | | | | | Summary: Both the input Value pointer and the returned Value pointers in GetUnderlyingObjects are now declared as const. It turned out that all current (in-tree) uses of GetUnderlyingObjects were trivial to update, being satisfied with have those Value pointers declared as const. Actually, in the past several of the users had to use const_cast, just because of ValueTracking not providing a version of GetUnderlyingObjects with "const" Value pointers. With this patch we get rid of those const casts. Reviewers: hfinkel, materi, jkorous Reviewed By: jkorous Subscribers: dexonsmith, jkorous, jholewinski, sdardis, eraman, hiraditya, jrtc27, atanasyan, llvm-commits Tags: #llvm Differential Revision: https://reviews.llvm.org/D61038 llvm-svn: 359072
* [ConstantRange] Add getNonEmpty() constructorNikita Popov2019-04-211-2/+1
| | | | | | | | | | | | | | ConstantRanges have an annoying special case: If upper and lower are the same, it can be either an empty or a full set. When constructing constant ranges nearly always a full set is intended, but this still requires an explicit check in many places. This revision adds a getNonEmpty() constructor that disambiguates this case: If upper and lower are the same, a full set is created. Differential Revision: https://reviews.llvm.org/D60947 llvm-svn: 358854
* [IR] Add WithOverflowInst classNikita Popov2019-04-161-13/+2
| | | | | | | | | | | | | | This adds a WithOverflowInst class with a few helper methods to get the underlying binop, signedness and nowrap type and makes use of it where sensible. There will be two more uses in D60650/D60656. The refactorings are all NFC, though I left some TODOs where things could be improved. In particular we have two places where add/sub are handled but mul isn't. Differential Revision: https://reviews.llvm.org/D60668 llvm-svn: 358512
* [ValueTracking] Change if-else chain into switch in computeKnownBitsFromAssumeSander de Smalen2019-04-111-8/+18
| | | | | | | | | | | This is a follow-up patch to D60504 to further improve performance issues in computeKnownBitsFromAssume. The patch is NFC, but may improve compile-time performance if the compiler isn't clever enough to do the optimization itself. llvm-svn: 358163
* Improve compile-time performance in computeKnownBitsFromAssume.Sander de Smalen2019-04-101-217/+214
| | | | | | | | | | | | | | This patch changes the order of pattern matching by first testing a compare instruction's predicate, before doing the pattern match for the whole expression tree. Patch by Paul Walker. Reviewed By: spatel Differential Revision: https://reviews.llvm.org/D60504 llvm-svn: 358097
* [ValueTracking] Use computeConstantRange() for signed sub overflow determinationNikita Popov2019-04-091-6/+4
| | | | | | | | | | This is the same change as D60420 but for signed sub rather than signed add: Range information is intersected into the known bits result, allows to detect more no/always overflow conditions. Differential Revision: https://reviews.llvm.org/D60469 llvm-svn: 358020
* [ValueTracking] Use computeConstantRange() in signed add overflow determinationNikita Popov2019-04-091-8/+6
| | | | | | | | | | | | | This is D59386 for the signed add case. The computeConstantRange() result is now intersected into the existing known bits information, allowing to detect additional no-overflow/always-overflow conditions (though the latter isn't used yet). This (finally...) covers the motivating case from D59071. Differential Revision: https://reviews.llvm.org/D60420 llvm-svn: 358014
* [ValueTracking] Use ConstantRange methods; NFCNikita Popov2019-04-091-3/+3
| | | | | | | | | Switch part of the computeOverflowForSignedAdd() implementation to use Range.isAllNegative() rather than KnownBits.isNegative() and similar. They do the same thing, but using the ConstantRange methods allows dropping the KnownBits variables more easily in D60420. llvm-svn: 357969
* [ValueTracking] Explicitly specify intersection type; NFCNikita Popov2019-04-091-2/+5
| | | | | | Preparation for D60420. llvm-svn: 357968
* Reapply [ValueTracking] Support min/max selects in computeConstantRange()Nikita Popov2019-04-071-1/+22
| | | | | | | | | | | | | | | | | | Add support for min/max flavor selects in computeConstantRange(), which allows us to fold comparisons of a min/max against a constant in InstSimplify. This fixes an infinite InstCombine loop, with the test case taken from D59378. Relative to the previous iteration, this contains some adjustments for AMDGPU med3 tests: The AMDGPU target runs InstSimplify prior to codegen, which ends up constant folding some existing med3 tests after this change. To preserve these tests a hidden -amdgpu-scalar-ir-passes option is added, which allows disabling scalar IR passes (that use InstSimplify) for testing purposes. Differential Revision: https://reviews.llvm.org/D59506 llvm-svn: 357870
* [ConstantRange] Add getFull() + getEmpty() named constructors; NFCNikita Popov2019-03-241-1/+1
| | | | | | | | | | | | | | | | This adds ConstantRange::getFull(BitWidth) and ConstantRange::getEmpty(BitWidth) named constructors as more readable alternatives to the current ConstantRange(BitWidth, /* full */ false) and similar. Additionally private getFull() and getEmpty() member functions are added which return a full/empty range with the same bit width -- these are commonly needed inside ConstantRange.cpp. The IsFullSet argument in the ConstantRange(BitWidth, IsFullSet) constructor is now mandatory for the few usages that still make use of it. Differential Revision: https://reviews.llvm.org/D59716 llvm-svn: 356852
* [ValueTracking] Avoid redundant known bits calculation in ↵Nikita Popov2019-03-221-6/+8
| | | | | | | | | | | | | | | | | | | computeOverflowForSignedAdd() We're already computing the known bits of the operands here. If the known bits of the operands can determine the sign bit of the result, we'll already catch this in signedAddMayOverflow(). The only other way (and as the comment already indicates) we'll get new information from computing known bits on the whole add, is if there's an assumption on it. As such, we change the code to only compute known bits from assumptions, instead of computing full known bits on the add (which would unnecessarily recompute the known bits of the operands as well). Differential Revision: https://reviews.llvm.org/D59473 llvm-svn: 356785
* [ValueTracking] Use ConstantRange based overflow check for signed subNikita Popov2019-03-211-10/+5
| | | | | | | | | | | | | | This is D59450, but for signed sub. This case is not NFC, because the overflow logic in ConstantRange is more powerful than the existing check. This resolves the TODO in the function. I've added two tests to show that this indeed catches more cases than the previous logic, but the main correctness test coverage here is in the existing ConstantRange unit tests. Differential Revision: https://reviews.llvm.org/D59617 llvm-svn: 356685
* [ValueTracking] Compute range for abs without nswNikita Popov2019-03-201-7/+8
| | | | | | | | | | | | | This is a small followup to D59511. The code that was moved into computeConstantRange() there is a bit overly conversative: If the abs is not nsw, it does not compute any range. However, abs without nsw still has a well-defined contiguous unsigned range from 0 to SIGNED_MIN. This is a lot less useful than the usual 0 to SIGNED_MAX range, but if we're already here we might as well specify it... Differential Revision: https://reviews.llvm.org/D59563 llvm-svn: 356586
* [ValueTracking] Use computeConstantRange() for unsigned add/sub overflowNikita Popov2019-03-191-14/+25
| | | | | | | | | | | | | | | | | | Improve computeOverflowForUnsignedAdd/Sub in ValueTracking by intersecting the computeConstantRange() result into the ConstantRange created from computeKnownBits(). This allows us to detect some additional never/always overflows conditions that can't be determined from known bits. This revision also adds basic handling for constants to computeConstantRange(). Non-splat vectors will be handled in a followup. The signed case will also be handled in a followup, as it needs some more groundwork. Differential Revision: https://reviews.llvm.org/D59386 llvm-svn: 356489
* [SelectionDAG] Handle unary SelectPatternFlavor for ABS case in ↵Simon Pilgrim2019-03-191-0/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | SelectionDAGBuilder::visitSelect These changes are related to PR37743 and include: SelectionDAGBuilder::visitSelect handles the unary SelectPatternFlavor::SPF_ABS case to build ABS node. Delete the redundant recognizer of the integer ABS pattern from the DAGCombiner. Add promoting the integer ABS node in the LegalizeIntegerType. Expand-based legalization of integer result for the ABS nodes. Expand-based legalization of ABS vector operations. Add some integer abs testcases for different typesizes for Thumb arch Add the custom ABS expanding and change the SAD pattern recognizer for X86 arch: The i64 result of the ABS is expanded to: tmp = (SRA, Hi, 31) Lo = (UADDO tmp, Lo) Hi = (XOR tmp, (ADDCARRY tmp, hi, Lo:1)) Lo = (XOR tmp, Lo) The "detectZextAbsDiff" function is changed for the recognition of pattern with the ABS node. Given a ABS node, detect the following pattern: (ABS (SUB (ZERO_EXTEND a), (ZERO_EXTEND b))). Change integer abs testcases for codegen with the ABS node support for AArch64. Indicate that the ABS is legal for the i64 type when the NEON is supported. Change the integer abs testcases to show changing of codegen. Add combine and legalization of ABS nodes for Thumb arch. Extend 'matchSelectPattern' to recognize the ABS patterns with ICMP_SGE condition. For discussion, see https://bugs.llvm.org/show_bug.cgi?id=37743 Patch by: @ikulagin (Ivan Kulagin) Differential Revision: https://reviews.llvm.org/D49837 llvm-svn: 356468
* Revert "[ValueTracking][InstSimplify] Support min/max selects in ↵Nikita Popov2019-03-181-22/+1
| | | | | | | | | | computeConstantRange()" This reverts commit 106f0cdefb02afc3064268dc7a71419b409ed2f3. This change impacts the AMDGPU smed3.ll and umed3.ll codegen tests. llvm-svn: 356424
* [ValueTracking][InstSimplify] Support min/max selects in computeConstantRange()Nikita Popov2019-03-181-1/+22
| | | | | | | | | | | | Add support for min/max flavor selects in computeConstantRange(), which allows us to fold comparisons of a min/max against a constant in InstSimplify. This was suggested by spatel as an alternative approach to D59378. I've also added the infinite looping test from that revision here. Differential Revision: https://reviews.llvm.org/D59506 llvm-svn: 356415
* [ValueTracking][InstSimplify] Move abs handling into computeConstantRange(); NFCNikita Popov2019-03-181-0/+32
| | | | | | | | | | | This is preparation for D59506. The InstructionSimplify abs handling is moved into computeConstantRange(), which is the general place for such calculations. This is NFC and doesn't affect the existing tests in test/Transforms/InstSimplify/icmp-abs-nabs.ll. Differential Revision: https://reviews.llvm.org/D59511 llvm-svn: 356409
* [ValueTracking] Use ConstantRange overflow check for signed add; NFCNikita Popov2019-03-171-48/+8
| | | | | | | | | | | | | | | | This is the same change as rL356290, but for signed add. It replaces the existing ripple logic with the overflow logic in ConstantRange. This is NFC in that it should return NeverOverflow in exactly the same cases as the previous implementation. However, it does make computeOverflowForSignedAdd() more powerful by now also determining AlwaysOverflows conditions. As none of its consumers handle this yet, this has no impact on optimization. Making use of AlwaysOverflows in with.overflow folding will be handled as a followup. Differential Revision: https://reviews.llvm.org/D59450 llvm-svn: 356345
* [ConstantRange] Add fromKnownBits() methodNikita Popov2019-03-171-11/+8
| | | | | | | | | | | | | | Following the suggestion in D59450, I'm moving the code for constructing a ConstantRange from KnownBits out of ValueTracking, which also allows us to test this code independently. I'm adding this method to ConstantRange rather than KnownBits (which would have been a bit nicer API wise) to avoid creating a dependency from Support to IR, where ConstantRange lives. Differential Revision: https://reviews.llvm.org/D59475 llvm-svn: 356339
* [ValueTracking] Use ConstantRange overflow checks for unsigned add/sub; NFCNikita Popov2019-03-151-20/+26
| | | | | | | | | | | | | | | Use the methods introduced in rL356276 to implement the computeOverflowForUnsigned(Add|Sub) functions in ValueTracking, by converting the KnownBits into a ConstantRange. This is NFC: The existing KnownBits based implementation uses the same logic as the the ConstantRange based one. This is not the case for the signed equivalents, so I'm only changing unsigned here. This is in preparation for D59386, which will also intersect the computeConstantRange() result into the range determined from KnownBits. llvm-svn: 356290
* [ValueTracking] Move constant range computation into ValueTracking; NFCNikita Popov2019-03-091-0/+238
| | | | | | | | | | | | | | | | InstructionSimplify currently has some code to determine the constant range of integer instructions for some simple cases. It is used to simplify icmps. This change moves the relevant code into ValueTracking as llvm::computeConstantRange(), so it can also be reused for other purposes. In particular this is with the optimization of overflow checks in mind (ref D59071), where constant ranges cover some cases that known bits don't. llvm-svn: 355781
* [ValueTracking] do not try to peek through bitcasts in ↵Sanjay Patel2019-03-031-3/+1
| | | | | | | | | | computeKnownBitsFromAssume() There are no tests for this case, and I'm not sure how it could ever work, so I'm just removing this option from the matcher. This should fix PR40940: https://bugs.llvm.org/show_bug.cgi?id=40940 llvm-svn: 355292
* [ValueTracking] Known bits support for unsigned saturating add/subNikita Popov2019-03-011-0/+31
| | | | | | | | | | | | | | | | We have two sources of known bits: 1. For adds leading ones of either operand are preserved. For sub leading zeros of LHS and leading ones of RHS become leading zeros in the result. 2. The saturating math is a select between add/sub and an all-ones/ zero value. As such we can carry out the add/sub known bits calculation, and only preseve the known one/zero bits respectively. Differential Revision: https://reviews.llvm.org/D58329 llvm-svn: 355223
* [ValueTracking] More accurate unsigned sub overflow detectionNikita Popov2019-02-281-11/+9
| | | | | | | | | | | | Second part of D58593. Compute precise overflow conditions based on all known bits, rather than just the sign bits. Unsigned a - b overflows iff a < b, and we can determine whether this always/never happens based on the minimal and maximal values achievable for a and b subject to the known bits constraint. llvm-svn: 355109
* Add support for computing "zext of value" in KnownBits. NFCIBjorn Pettersson2019-02-281-5/+2
| | | | | | | | | | | | | | | | | | | | | | | | | | Summary: The description of KnownBits::zext() and KnownBits::zextOrTrunc() has confusingly been telling that the operation is equivalent to zero extending the value we're tracking. That has not been true, instead the user has been forced to explicitly set the extended bits as known zero afterwards. This patch adds a second argument to KnownBits::zext() and KnownBits::zextOrTrunc() to control if the extended bits should be considered as known zero or as unknown. Reviewers: craig.topper, RKSimon Reviewed By: RKSimon Subscribers: javed.absar, hiraditya, jdoerfert, llvm-commits Tags: #llvm Differential Revision: https://reviews.llvm.org/D58650 llvm-svn: 355099
* [ValueTracking] More accurate unsigned add overflow detectionNikita Popov2019-02-281-14/+10
| | | | | | | | | | | | Part of D58593. Compute precise overflow conditions based on all known bits, rather than just the sign bits. Unsigned a + b overflows iff a > ~b, and we can determine whether this always/never happens based on the minimal and maximal values achievable for a and ~b subject to the known bits constraint. llvm-svn: 355072
* Teach isGuaranteedToTransferExecutionToSuccessor about widenable conditionsMax Kazantsev2019-02-141-1/+2
| | | | | | | Widenable condition intrinsic is guaranteed to return value, notify the isGuaranteedToTransferExecutionToSuccessor function about it. llvm-svn: 354020
* Implementation of asm-goto support in LLVMCraig Topper2019-02-081-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | This patch accompanies the RFC posted here: http://lists.llvm.org/pipermail/llvm-dev/2018-October/127239.html This patch adds a new CallBr IR instruction to support asm-goto inline assembly like gcc as used by the linux kernel. This instruction is both a call instruction and a terminator instruction with multiple successors. Only inline assembly usage is supported today. This also adds a new INLINEASM_BR opcode to SelectionDAG and MachineIR to represent an INLINEASM block that is also considered a terminator instruction. There will likely be more bug fixes and optimizations to follow this, but we felt it had reached a point where we would like to switch to an incremental development model. Patch by Craig Topper, Alexander Ivchenko, Mikhail Dvoretckii Differential Revision: https://reviews.llvm.org/D53765 llvm-svn: 353563
* [NFC] fix trivial typos in commentsHiroshi Inoue2019-01-301-1/+1
| | | | llvm-svn: 352602
* [ValueTracking] Look through casts when determining non-nullnessJohannes Doerfert2019-01-261-0/+22
| | | | | | | | | | Bitcast and certain Ptr2Int/Int2Ptr instructions will not alter the value of their operand and can therefore be looked through when we determine non-nullness. Differential Revision: https://reviews.llvm.org/D54956 llvm-svn: 352293
* Update the file headers across all of the LLVM projects in the monorepoChandler Carruth2019-01-191-4/+3
| | | | | | | | | | | | | | | | | to reflect the new license. We understand that people may be surprised that we're moving the header entirely to discuss the new license. We checked this carefully with the Foundation's lawyer and we believe this is the correct approach. Essentially, all code in the project is now made available by the LLVM project under our new license, so you will see that the license headers include that license only. Some of our contributors have contributed code under our old license, and accordingly, we have retained a copy of our old license notice in the top-level files in each project and repository. llvm-svn: 351636
* [CallSite removal] Migrate all Alias Analysis APIs to use the newlyChandler Carruth2019-01-071-14/+14
| | | | | | | | | | | | | | | | | | | | | | | | | | minted `CallBase` class instead of the `CallSite` wrapper. This moves the largest interwoven collection of APIs that traffic in `CallSite`s. While a handful of these could have been migrated with a minorly more shallow migration by converting from a `CallSite` to a `CallBase`, it hardly seemed worth it. Most of the APIs needed to migrate together because of the complex interplay of AA APIs and the fact that converting from a `CallBase` to a `CallSite` isn't free in its current implementation. Out of tree users of these APIs can fairly reliably migrate with some combination of `.getInstruction()` on the `CallSite` instance and casting the resulting pointer. The most generic form will look like `CS` -> `cast_or_null<CallBase>(CS.getInstruction())` but in most cases there is a more elegant migration. Hopefully, this migrates enough APIs for users to fully move from `CallSite` to the base class. All of the in-tree users were easily migrated in that fashion. Thanks for the review from Saleem! Differential Revision: https://reviews.llvm.org/D55641 llvm-svn: 350503
* [ValueTracking] Fix a misuse of APInt in GetPointerBaseWithConstantOffsetFlorian Hahn2019-01-041-1/+8
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | GetPointerBaseWithConstantOffset include this code, where ByteOffset and GEPOffset are both of type llvm::APInt : ByteOffset += GEPOffset.getSExtValue(); The problem with this line is that getSExtValue() returns an int64_t, but the += matches an overload for uint64_t. The problem is that the resulting APInt is no longer considered to be signed. That in turn causes assertion failures later on if the relevant pointer type is > 64 bits in width and the GEPOffset was negative. Changing it to ByteOffset += GEPOffset.sextOrTrunc(ByteOffset.getBitWidth()); resolves the issue and explicitly performs the sign-extending or truncation. Additionally, instead of asserting later if the result is > 64 bits, it breaks out of the loop in that case. See also https://reviews.llvm.org/D24729 https://reviews.llvm.org/D24772 This commit must be merged after D38662 in order for the test to pass. Patch by Michael Ferguson <mpfergu@gmail.com>. Reviewers: reames, sanjoy, hfinkel Reviewed By: hfinkel Differential Revision: https://reviews.llvm.org/D38501 llvm-svn: 350395
* [IR] Add Instruction::isLifetimeStartOrEnd, NFCVedant Kumar2018-12-211-2/+1
| | | | | | | | | | | Instruction::isLifetimeStartOrEnd() checks whether an Instruction is an llvm.lifetime.start or an llvm.lifetime.end intrinsic. This was suggested as a cleanup in D55967. Differential Revision: https://reviews.llvm.org/D56019 llvm-svn: 349964
* [ValueTracking] remove unused parameters from helper functions; NFCSanjay Patel2018-12-191-23/+16
| | | | llvm-svn: 349641
* [ValueTracking] Support funnel shifts in computeKnownBits()Nikita Popov2018-12-021-0/+21
| | | | | | | | | | | | If the shift amount is known, we can determine the known bits of the output based on the known bits of two inputs. This is essentially the same functionality as implemented in D54869, but for ValueTracking rather than InstCombine SimplifyDemandedBits. Differential Revision: https://reviews.llvm.org/D55140 llvm-svn: 348091
* [ValueTracking] add helper function for testing implied condition; NFCISanjay Patel2018-12-021-0/+32
| | | | | | | | We were duplicating code around the existing isImpliedCondition() that checks for a predecessor block/dominating condition, so make that a wrapper call. llvm-svn: 348088
* [ValueTracking] Determine always-overflow condition for unsigned subNikita Popov2018-11-281-6/+11
| | | | | | | | | | | | Always-overflow was already determined for unsigned addition, but not subtraction. This patch establishes parity. This allows us to perform some additional simplifications for signed saturating subtractions. This change is part of https://reviews.llvm.org/D54534. llvm-svn: 347771
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