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Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -07001//===- subzero/src/IceTargetLowering.h - Lowering interface -----*- C++ -*-===//
2//
3// The Subzero Code Generator
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
Andrew Scull9612d322015-07-06 14:53:25 -07009///
10/// \file
Jim Stichnoth92a6e5b2015-12-02 16:52:44 -080011/// \brief Declares the TargetLowering, LoweringContext, and TargetDataLowering
12/// classes.
13///
14/// TargetLowering is an abstract class used to drive the translation/lowering
15/// process. LoweringContext maintains a context for lowering each instruction,
16/// offering conveniences such as iterating over non-deleted instructions.
17/// TargetDataLowering is an abstract class used to drive the lowering/emission
18/// of global initializers, external global declarations, and internal constant
19/// pools.
Andrew Scull9612d322015-07-06 14:53:25 -070020///
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -070021//===----------------------------------------------------------------------===//
22
23#ifndef SUBZERO_SRC_ICETARGETLOWERING_H
24#define SUBZERO_SRC_ICETARGETLOWERING_H
25
John Porto1d937a82015-12-17 06:19:34 -080026#include "IceCfgNode.h"
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -070027#include "IceDefs.h"
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -070028#include "IceInst.h" // for the names of the Inst subtypes
Jan Voung76bb0be2015-05-14 09:26:19 -070029#include "IceOperand.h"
Jim Stichnotha18cc9c2014-09-30 19:10:22 -070030#include "IceTypes.h"
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -070031
John Porto1d937a82015-12-17 06:19:34 -080032#include <utility>
33
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -070034namespace Ice {
35
Karl Schimpfc5abdc12015-10-09 13:29:13 -070036// UnimplementedError is defined as a macro so that we can get actual line
37// numbers.
38#define UnimplementedError(Flags) \
39 do { \
40 if (!static_cast<const ClFlags &>(Flags).getSkipUnimplemented()) { \
41 /* Use llvm_unreachable instead of report_fatal_error, which gives \
42 better stack traces. */ \
43 llvm_unreachable("Not yet implemented"); \
44 abort(); \
45 } \
46 } while (0)
47
Jim Stichnoth91c773e2016-01-19 09:52:22 -080048// UnimplementedLoweringError is similar in style to UnimplementedError. Given
49// a TargetLowering object pointer and an Inst pointer, it adds appropriate
50// FakeDef and FakeUse instructions to try maintain liveness consistency.
51#define UnimplementedLoweringError(Target, Instr) \
52 do { \
53 if ((Target)->Ctx->getFlags().getSkipUnimplemented()) { \
54 (Target)->addFakeDefUses(Instr); \
55 } else { \
56 /* Use llvm_unreachable instead of report_fatal_error, which gives \
57 better stack traces. */ \
Eric Holke37076a2016-01-27 14:06:35 -080058 llvm_unreachable( \
59 ("Not yet implemented: " + Instr->getInstName()).c_str()); \
Jim Stichnoth91c773e2016-01-19 09:52:22 -080060 abort(); \
61 } \
62 } while (0)
63
Andrew Scull57e12682015-09-16 11:30:19 -070064/// LoweringContext makes it easy to iterate through non-deleted instructions in
65/// a node, and insert new (lowered) instructions at the current point. Along
66/// with the instruction list container and associated iterators, it holds the
67/// current node, which is needed when inserting new instructions in order to
68/// track whether variables are used as single-block or multi-block.
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -070069class LoweringContext {
Jim Stichnoth7b451a92014-10-15 14:39:23 -070070 LoweringContext(const LoweringContext &) = delete;
71 LoweringContext &operator=(const LoweringContext &) = delete;
72
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -070073public:
Jim Stichnotheafb56c2015-06-22 10:35:22 -070074 LoweringContext() = default;
75 ~LoweringContext() = default;
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -070076 void init(CfgNode *Node);
77 Inst *getNextInst() const {
78 if (Next == End)
Jim Stichnothae953202014-12-20 06:17:49 -080079 return nullptr;
Jim Stichnoth607e9f02014-11-06 13:32:05 -080080 return Next;
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -070081 }
Jan Voungc820ddf2014-07-29 14:38:51 -070082 Inst *getNextInst(InstList::iterator &Iter) const {
Jan Vounge6e497d2014-07-30 10:06:03 -070083 advanceForward(Iter);
Jan Voungc820ddf2014-07-29 14:38:51 -070084 if (Iter == End)
Jim Stichnothae953202014-12-20 06:17:49 -080085 return nullptr;
Jim Stichnoth607e9f02014-11-06 13:32:05 -080086 return Iter;
Jan Voungc820ddf2014-07-29 14:38:51 -070087 }
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -070088 CfgNode *getNode() const { return Node; }
89 bool atEnd() const { return Cur == End; }
90 InstList::iterator getCur() const { return Cur; }
Jim Stichnoth5d2fa0c2014-12-01 09:30:55 -080091 InstList::iterator getNext() const { return Next; }
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -070092 InstList::iterator getEnd() const { return End; }
Jim Stichnoth8cfeb692016-02-05 09:50:02 -080093 void insert(Inst *Instr);
John Porto1d937a82015-12-17 06:19:34 -080094 template <typename Inst, typename... Args> Inst *insert(Args &&... A) {
95 auto *New = Inst::create(Node->getCfg(), std::forward<Args>(A)...);
96 insert(New);
97 return New;
98 }
Jan Vounge6e497d2014-07-30 10:06:03 -070099 Inst *getLastInserted() const;
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700100 void advanceCur() { Cur = Next; }
Jan Vounge6e497d2014-07-30 10:06:03 -0700101 void advanceNext() { advanceForward(Next); }
Jim Stichnotha3f57b92015-07-30 12:46:04 -0700102 void setCur(InstList::iterator C) { Cur = C; }
103 void setNext(InstList::iterator N) { Next = N; }
Jim Stichnoth336f6c42014-10-30 15:01:31 -0700104 void rewind();
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700105 void setInsertPoint(const InstList::iterator &Position) { Next = Position; }
Jim Stichnoth318f4cd2015-10-01 21:02:37 -0700106 void availabilityReset();
107 void availabilityUpdate();
108 Variable *availabilityGet(Operand *Src) const;
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700109
110private:
Andrew Scull9612d322015-07-06 14:53:25 -0700111 /// Node is the argument to Inst::updateVars().
Jim Stichnotheafb56c2015-06-22 10:35:22 -0700112 CfgNode *Node = nullptr;
113 Inst *LastInserted = nullptr;
Andrew Scull57e12682015-09-16 11:30:19 -0700114 /// Cur points to the current instruction being considered. It is guaranteed
115 /// to point to a non-deleted instruction, or to be End.
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700116 InstList::iterator Cur;
Andrew Scull57e12682015-09-16 11:30:19 -0700117 /// Next doubles as a pointer to the next valid instruction (if any), and the
118 /// new-instruction insertion point. It is also updated for the caller in case
119 /// the lowering consumes more than one high-level instruction. It is
120 /// guaranteed to point to a non-deleted instruction after Cur, or to be End.
121 // TODO: Consider separating the notion of "next valid instruction" and "new
122 // instruction insertion point", to avoid confusion when previously-deleted
123 // instructions come between the two points.
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700124 InstList::iterator Next;
Andrew Scull9612d322015-07-06 14:53:25 -0700125 /// Begin is a copy of Insts.begin(), used if iterators are moved backward.
Jan Vounge6e497d2014-07-30 10:06:03 -0700126 InstList::iterator Begin;
Andrew Scull9612d322015-07-06 14:53:25 -0700127 /// End is a copy of Insts.end(), used if Next needs to be advanced.
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700128 InstList::iterator End;
Jim Stichnoth318f4cd2015-10-01 21:02:37 -0700129 /// LastDest and LastSrc capture the parameters of the last "Dest=Src" simple
130 /// assignment inserted (provided Src is a variable). This is used for simple
131 /// availability analysis.
132 Variable *LastDest = nullptr;
133 Variable *LastSrc = nullptr;
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700134
Jan Voungc820ddf2014-07-29 14:38:51 -0700135 void skipDeleted(InstList::iterator &I) const;
Jan Vounge6e497d2014-07-30 10:06:03 -0700136 void advanceForward(InstList::iterator &I) const;
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700137};
138
Jan Voung28068ad2015-07-31 12:58:46 -0700139/// A helper class to advance the LoweringContext at each loop iteration.
140class PostIncrLoweringContext {
141 PostIncrLoweringContext() = delete;
142 PostIncrLoweringContext(const PostIncrLoweringContext &) = delete;
143 PostIncrLoweringContext &operator=(const PostIncrLoweringContext &) = delete;
144
145public:
146 explicit PostIncrLoweringContext(LoweringContext &Context)
147 : Context(Context) {}
148 ~PostIncrLoweringContext() {
149 Context.advanceCur();
150 Context.advanceNext();
151 }
152
153private:
154 LoweringContext &Context;
155};
156
John Porto53611e22015-12-30 07:30:10 -0800157/// TargetLowering is the base class for all backends in Subzero. In addition to
158/// implementing the abstract methods in this class, each concrete target must
159/// also implement a named constructor in its own namespace. For instance, for
160/// X8632 we have:
161///
162/// namespace X8632 {
163/// void createTargetLowering(Cfg *Func);
164/// }
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700165class TargetLowering {
Jim Stichnothc6ead202015-02-24 09:30:30 -0800166 TargetLowering() = delete;
Jim Stichnoth7b451a92014-10-15 14:39:23 -0700167 TargetLowering(const TargetLowering &) = delete;
168 TargetLowering &operator=(const TargetLowering &) = delete;
169
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700170public:
Karl Schimpf5403f5d2016-01-15 11:07:46 -0800171 static void staticInit(GlobalContext *Ctx);
Jim Stichnoth8ff4b282016-01-04 15:39:06 -0800172 // Each target must define a public static method:
Karl Schimpf5403f5d2016-01-15 11:07:46 -0800173 // static void staticInit(GlobalContext *Ctx);
John Porto53611e22015-12-30 07:30:10 -0800174
175 static std::unique_ptr<TargetLowering> createLowering(TargetArch Target,
176 Cfg *Func);
177
178 virtual std::unique_ptr<Assembler> createAssembler() const = 0;
179
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700180 void translate() {
Jan Voung1f47ad02015-03-20 15:01:26 -0700181 switch (Ctx->getFlags().getOptLevel()) {
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700182 case Opt_m1:
183 translateOm1();
184 break;
185 case Opt_0:
186 translateO0();
187 break;
188 case Opt_1:
189 translateO1();
190 break;
191 case Opt_2:
192 translateO2();
193 break;
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700194 }
195 }
196 virtual void translateOm1() {
197 Func->setError("Target doesn't specify Om1 lowering steps.");
198 }
199 virtual void translateO0() {
200 Func->setError("Target doesn't specify O0 lowering steps.");
201 }
202 virtual void translateO1() {
203 Func->setError("Target doesn't specify O1 lowering steps.");
204 }
205 virtual void translateO2() {
206 Func->setError("Target doesn't specify O2 lowering steps.");
207 }
208
John Porto5e0a8a72015-11-20 13:50:36 -0800209 /// Generates calls to intrinsics for operations the Target can't handle.
210 void genTargetHelperCalls();
Andrew Scull9612d322015-07-06 14:53:25 -0700211 /// Tries to do address mode optimization on a single instruction.
Jim Stichnothd97c7df2014-06-04 11:57:08 -0700212 void doAddressOpt();
Andrew Scull9612d322015-07-06 14:53:25 -0700213 /// Randomly insert NOPs.
Qining Luaee5fa82015-08-20 14:59:03 -0700214 void doNopInsertion(RandomNumberGenerator &RNG);
Andrew Scull9612d322015-07-06 14:53:25 -0700215 /// Lowers a single non-Phi instruction.
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700216 void lower();
Jim Stichnotha3f57b92015-07-30 12:46:04 -0700217 /// Inserts and lowers a single high-level instruction at a specific insertion
218 /// point.
219 void lowerInst(CfgNode *Node, InstList::iterator Next, InstHighLevel *Instr);
Andrew Scull57e12682015-09-16 11:30:19 -0700220 /// Does preliminary lowering of the set of Phi instructions in the current
221 /// node. The main intention is to do what's needed to keep the unlowered Phi
222 /// instructions consistent with the lowered non-Phi instructions, e.g. to
223 /// lower 64-bit operands on a 32-bit target.
Jim Stichnoth336f6c42014-10-30 15:01:31 -0700224 virtual void prelowerPhis() {}
Andrew Scull57e12682015-09-16 11:30:19 -0700225 /// Tries to do branch optimization on a single instruction. Returns true if
226 /// some optimization was done.
Jim Stichnothff9c7062014-09-18 04:50:49 -0700227 virtual bool doBranchOpt(Inst * /*I*/, const CfgNode * /*NextNode*/) {
228 return false;
229 }
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700230
Jim Stichnoth3d44fe82014-11-01 10:10:18 -0700231 virtual SizeT getNumRegisters() const = 0;
Andrew Scull57e12682015-09-16 11:30:19 -0700232 /// Returns a variable pre-colored to the specified physical register. This is
233 /// generally used to get very direct access to the register such as in the
234 /// prolog or epilog or for marking scratch registers as killed by a call. If
235 /// a Type is not provided, a target-specific default type is used.
Jim Stichnoth8aa39662016-02-10 11:20:30 -0800236 virtual Variable *getPhysicalRegister(RegNumT RegNum,
Jim Stichnoth98712a32014-10-24 10:59:02 -0700237 Type Ty = IceType_void) = 0;
Andrew Scull9612d322015-07-06 14:53:25 -0700238 /// Returns a printable name for the register.
Jim Stichnoth8aa39662016-02-10 11:20:30 -0800239 virtual IceString getRegName(RegNumT RegNum, Type Ty) const = 0;
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700240
241 virtual bool hasFramePointer() const { return false; }
David Sehre39d0ca2015-11-06 11:25:41 -0800242 virtual void setHasFramePointer() = 0;
Jim Stichnoth8aa39662016-02-10 11:20:30 -0800243 virtual RegNumT getStackReg() const = 0;
244 virtual RegNumT getFrameReg() const = 0;
245 virtual RegNumT getFrameOrStackReg() const = 0;
Matt Walad4799f42014-08-14 14:24:12 -0700246 virtual size_t typeWidthInBytesOnStack(Type Ty) const = 0;
David Sehre39d0ca2015-11-06 11:25:41 -0800247 virtual uint32_t getStackAlignment() const = 0;
David Sehr2f3b8ec2015-11-16 16:51:39 -0800248 virtual void reserveFixedAllocaArea(size_t Size, size_t Align) = 0;
249 virtual int32_t getFrameFixedAllocaOffset() const = 0;
John Porto614140e2015-11-23 11:43:13 -0800250 virtual uint32_t maxOutArgsSizeBytes() const { return 0; }
Jan Voung0fa6c5a2015-06-01 11:04:04 -0700251
Andrew Scull6d47bcd2015-09-17 17:10:05 -0700252 /// Return whether a 64-bit Variable should be split into a Variable64On32.
253 virtual bool shouldSplitToVariable64On32(Type Ty) const = 0;
254
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700255 bool hasComputedFrame() const { return HasComputedFrame; }
Andrew Scull57e12682015-09-16 11:30:19 -0700256 /// Returns true if this function calls a function that has the "returns
257 /// twice" attribute.
Jan Voung44d53e12014-09-11 19:18:03 -0700258 bool callsReturnsTwice() const { return CallsReturnsTwice; }
Jim Stichnothdd842db2015-01-27 12:53:53 -0800259 void setCallsReturnsTwice(bool RetTwice) { CallsReturnsTwice = RetTwice; }
Jan Voungb36ad9b2015-04-21 17:01:49 -0700260 SizeT makeNextLabelNumber() { return NextLabelNumber++; }
Andrew Scull86df4e92015-07-30 13:54:44 -0700261 SizeT makeNextJumpTableNumber() { return NextJumpTableNumber++; }
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700262 LoweringContext &getContext() { return Context; }
Jim Stichnoth8ff4b282016-01-04 15:39:06 -0800263 Cfg *getFunc() const { return Func; }
264 GlobalContext *getGlobalContext() const { return Ctx; }
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700265
266 enum RegSet {
267 RegSet_None = 0,
268 RegSet_CallerSave = 1 << 0,
269 RegSet_CalleeSave = 1 << 1,
270 RegSet_StackPointer = 1 << 2,
271 RegSet_FramePointer = 1 << 3,
272 RegSet_All = ~RegSet_None
273 };
Andrew Scull8072bae2015-09-14 16:01:26 -0700274 using RegSetMask = uint32_t;
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700275
276 virtual llvm::SmallBitVector getRegisterSet(RegSetMask Include,
277 RegSetMask Exclude) const = 0;
Jim Stichnothb40595a2016-01-29 06:14:31 -0800278 /// Get the set of physical registers available for the specified Variable's
279 /// register class, applying register restrictions from the command line.
Jim Stichnothc59288b2015-11-09 11:38:40 -0800280 virtual const llvm::SmallBitVector &
281 getRegistersForVariable(const Variable *Var) const = 0;
Jim Stichnothb40595a2016-01-29 06:14:31 -0800282 /// Get the set of *all* physical registers available for the specified
283 /// Variable's register class, *not* applying register restrictions from the
284 /// command line.
285 virtual const llvm::SmallBitVector &
286 getAllRegistersForVariable(const Variable *Var) const = 0;
Jim Stichnoth8aa39662016-02-10 11:20:30 -0800287 virtual const llvm::SmallBitVector &getAliasesForRegister(RegNumT) const = 0;
John Portobb0a5fe2015-09-04 11:23:41 -0700288
Jim Stichnoth70d0a052014-11-14 15:53:46 -0800289 void regAlloc(RegAllocKind Kind);
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700290
Qining Luaee5fa82015-08-20 14:59:03 -0700291 virtual void
Jim Stichnoth8aa39662016-02-10 11:20:30 -0800292 makeRandomRegisterPermutation(llvm::SmallVectorImpl<RegNumT> &Permutation,
Qining Luaee5fa82015-08-20 14:59:03 -0700293 const llvm::SmallBitVector &ExcludeRegisters,
294 uint64_t Salt) const = 0;
Jim Stichnothe6d24782014-12-19 05:42:24 -0800295
Andrew Scull87f80c12015-07-20 10:19:16 -0700296 /// Get the minimum number of clusters required for a jump table to be
297 /// considered.
298 virtual SizeT getMinJumpTableSize() const = 0;
Andrew Scull86df4e92015-07-30 13:54:44 -0700299 virtual void emitJumpTable(const Cfg *Func,
300 const InstJumpTable *JumpTable) const = 0;
Andrew Scull87f80c12015-07-20 10:19:16 -0700301
Jim Stichnoth144cdce2014-09-22 16:02:59 -0700302 virtual void emitVariable(const Variable *Var) const = 0;
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700303
Jim Stichnoth8ff4b282016-01-04 15:39:06 -0800304 void emitWithoutPrefix(const ConstantRelocatable *CR,
305 const char *Suffix = "") const;
Jan Voung76bb0be2015-05-14 09:26:19 -0700306
Jan Voung76bb0be2015-05-14 09:26:19 -0700307 virtual void emit(const ConstantInteger32 *C) const = 0;
308 virtual void emit(const ConstantInteger64 *C) const = 0;
309 virtual void emit(const ConstantFloat *C) const = 0;
310 virtual void emit(const ConstantDouble *C) const = 0;
Jim Stichnoth8ff4b282016-01-04 15:39:06 -0800311 virtual void emit(const ConstantUndef *C) const = 0;
312 virtual void emit(const ConstantRelocatable *CR) const = 0;
Jan Voung76bb0be2015-05-14 09:26:19 -0700313
Andrew Scull9612d322015-07-06 14:53:25 -0700314 /// Performs target-specific argument lowering.
Matt Wala45a06232014-07-09 16:33:22 -0700315 virtual void lowerArguments() = 0;
316
Jim Stichnotha59ae6f2015-05-17 10:11:41 -0700317 virtual void initNodeForLowering(CfgNode *) {}
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700318 virtual void addProlog(CfgNode *Node) = 0;
319 virtual void addEpilog(CfgNode *Node) = 0;
320
Jim Stichnotheafb56c2015-06-22 10:35:22 -0700321 virtual ~TargetLowering() = default;
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700322
John Porto3bf335f2016-01-15 11:17:55 -0800323private:
324 // This control variable is used by AutoBundle (RAII-style bundle
325 // locking/unlocking) to prevent nested bundles.
326 bool AutoBundling = false;
327
Eric Holkd6cf6b32016-02-17 11:09:48 -0800328 /// This indicates whether we are in the genTargetHelperCalls phase, and
329 /// therefore can do things like scalarization.
330 bool GeneratingTargetHelpers = false;
331
John Porto3bf335f2016-01-15 11:17:55 -0800332 // _bundle_lock(), and _bundle_unlock(), were made private to force subtargets
333 // to use the AutoBundle helper.
334 void
335 _bundle_lock(InstBundleLock::Option BundleOption = InstBundleLock::Opt_None) {
336 Context.insert<InstBundleLock>(BundleOption);
337 }
338 void _bundle_unlock() { Context.insert<InstBundleUnlock>(); }
339
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700340protected:
John Porto3bf335f2016-01-15 11:17:55 -0800341 /// AutoBundle provides RIAA-style bundling. Sub-targets are expected to use
342 /// it when emitting NaCl Bundles to ensure proper bundle_unlocking, and
343 /// prevent nested bundles.
344 ///
345 /// AutoBundle objects will emit a _bundle_lock during construction (but only
346 /// if sandboxed code generation was requested), and a bundle_unlock() during
347 /// destruction. By carefully scoping objects of this type, Subtargets can
348 /// ensure proper bundle emission.
349 class AutoBundle {
350 AutoBundle() = delete;
351 AutoBundle(const AutoBundle &) = delete;
352 AutoBundle &operator=(const AutoBundle &) = delete;
353
354 public:
355 explicit AutoBundle(TargetLowering *Target, InstBundleLock::Option Option =
356 InstBundleLock::Opt_None);
357 ~AutoBundle();
358
359 private:
360 TargetLowering *const Target;
361 const bool NeedSandboxing;
362 };
363
Jim Stichnothc6ead202015-02-24 09:30:30 -0800364 explicit TargetLowering(Cfg *Func);
Karl Schimpf5403f5d2016-01-15 11:07:46 -0800365 // Applies command line filters to TypeToRegisterSet array.
366 static void
367 filterTypeToRegisterSet(GlobalContext *Ctx, int32_t NumRegs,
368 llvm::SmallBitVector TypeToRegisterSet[],
369 size_t TypeToRegisterSetSize,
Jim Stichnoth8aa39662016-02-10 11:20:30 -0800370 std::function<IceString(RegNumT)> getRegName,
Jim Stichnoth2544d4d2016-01-22 13:07:46 -0800371 std::function<IceString(RegClass)> getRegClassName);
Jim Stichnoth8cfeb692016-02-05 09:50:02 -0800372 virtual void lowerAlloca(const InstAlloca *Instr) = 0;
373 virtual void lowerArithmetic(const InstArithmetic *Instr) = 0;
374 virtual void lowerAssign(const InstAssign *Instr) = 0;
375 virtual void lowerBr(const InstBr *Instr) = 0;
376 virtual void lowerCall(const InstCall *Instr) = 0;
377 virtual void lowerCast(const InstCast *Instr) = 0;
378 virtual void lowerFcmp(const InstFcmp *Instr) = 0;
379 virtual void lowerExtractElement(const InstExtractElement *Instr) = 0;
380 virtual void lowerIcmp(const InstIcmp *Instr) = 0;
381 virtual void lowerInsertElement(const InstInsertElement *Instr) = 0;
382 virtual void lowerIntrinsicCall(const InstIntrinsicCall *Instr) = 0;
383 virtual void lowerLoad(const InstLoad *Instr) = 0;
384 virtual void lowerPhi(const InstPhi *Instr) = 0;
385 virtual void lowerRet(const InstRet *Instr) = 0;
386 virtual void lowerSelect(const InstSelect *Instr) = 0;
387 virtual void lowerStore(const InstStore *Instr) = 0;
388 virtual void lowerSwitch(const InstSwitch *Instr) = 0;
389 virtual void lowerUnreachable(const InstUnreachable *Instr) = 0;
Jim Stichnothe4f65d82015-06-17 22:16:02 -0700390 virtual void lowerOther(const Inst *Instr);
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700391
John Porto5e0a8a72015-11-20 13:50:36 -0800392 virtual void genTargetHelperCallFor(Inst *Instr) = 0;
John Portof4198542015-11-20 14:17:23 -0800393 virtual uint32_t getCallStackArgumentsSizeBytes(const InstCall *Instr) = 0;
John Porto5e0a8a72015-11-20 13:50:36 -0800394
Jim Stichnothd97c7df2014-06-04 11:57:08 -0700395 virtual void doAddressOptLoad() {}
396 virtual void doAddressOptStore() {}
Jim Stichnothad2989b2015-09-15 10:21:42 -0700397 virtual void doMockBoundsCheck(Operand *) {}
Qining Luaee5fa82015-08-20 14:59:03 -0700398 virtual void randomlyInsertNop(float Probability,
399 RandomNumberGenerator &RNG) = 0;
Andrew Scull57e12682015-09-16 11:30:19 -0700400 /// This gives the target an opportunity to post-process the lowered expansion
401 /// before returning.
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700402 virtual void postLower() {}
403
Jim Stichnoth91c773e2016-01-19 09:52:22 -0800404 /// When the SkipUnimplemented flag is set, addFakeDefUses() gets invoked by
405 /// the UnimplementedLoweringError macro to insert fake uses of all the
406 /// instruction variables and a fake def of the instruction dest, in order to
407 /// preserve integrity of liveness analysis.
408 void addFakeDefUses(const Inst *Instr);
409
Jim Stichnoth230d4102015-09-25 17:40:32 -0700410 /// Find (non-SSA) instructions where the Dest variable appears in some source
411 /// operand, and set the IsDestRedefined flag. This keeps liveness analysis
412 /// consistent.
413 void markRedefinitions();
Jan Voungb3401d22015-05-18 09:38:21 -0700414
Andrew Scull57e12682015-09-16 11:30:19 -0700415 /// Make a pass over the Cfg to determine which variables need stack slots and
416 /// place them in a sorted list (SortedSpilledVariables). Among those, vars,
417 /// classify the spill variables as local to the basic block vs global
418 /// (multi-block) in order to compute the parameters GlobalsSize and
419 /// SpillAreaSizeBytes (represents locals or general vars if the coalescing of
420 /// locals is disallowed) along with alignments required for variables in each
421 /// area. We rely on accurate VMetadata in order to classify a variable as
422 /// global vs local (otherwise the variable is conservatively global). The
423 /// in-args should be initialized to 0.
Andrew Scull9612d322015-07-06 14:53:25 -0700424 ///
Andrew Scull57e12682015-09-16 11:30:19 -0700425 /// This is only a pre-pass and the actual stack slot assignment is handled
426 /// separately.
Andrew Scull9612d322015-07-06 14:53:25 -0700427 ///
Andrew Scull57e12682015-09-16 11:30:19 -0700428 /// There may be target-specific Variable types, which will be handled by
429 /// TargetVarHook. If the TargetVarHook returns true, then the variable is
430 /// skipped and not considered with the rest of the spilled variables.
Jan Voung0fa6c5a2015-06-01 11:04:04 -0700431 void getVarStackSlotParams(VarList &SortedSpilledVariables,
432 llvm::SmallBitVector &RegsUsed,
433 size_t *GlobalsSize, size_t *SpillAreaSizeBytes,
434 uint32_t *SpillAreaAlignmentBytes,
435 uint32_t *LocalsSlotsAlignmentBytes,
436 std::function<bool(Variable *)> TargetVarHook);
437
Andrew Scull57e12682015-09-16 11:30:19 -0700438 /// Calculate the amount of padding needed to align the local and global areas
439 /// to the required alignment. This assumes the globals/locals layout used by
440 /// getVarStackSlotParams and assignVarStackSlots.
Jan Voung0fa6c5a2015-06-01 11:04:04 -0700441 void alignStackSpillAreas(uint32_t SpillAreaStartOffset,
442 uint32_t SpillAreaAlignmentBytes,
443 size_t GlobalsSize,
444 uint32_t LocalsSlotsAlignmentBytes,
445 uint32_t *SpillAreaPaddingBytes,
446 uint32_t *LocalsSlotsPaddingBytes);
447
Andrew Scull57e12682015-09-16 11:30:19 -0700448 /// Make a pass through the SortedSpilledVariables and actually assign stack
449 /// slots. SpillAreaPaddingBytes takes into account stack alignment padding.
450 /// The SpillArea starts after that amount of padding. This matches the scheme
451 /// in getVarStackSlotParams, where there may be a separate multi-block global
452 /// var spill area and a local var spill area.
Jan Voung0fa6c5a2015-06-01 11:04:04 -0700453 void assignVarStackSlots(VarList &SortedSpilledVariables,
454 size_t SpillAreaPaddingBytes,
455 size_t SpillAreaSizeBytes,
456 size_t GlobalsAndSubsequentPaddingSize,
457 bool UsesFramePointer);
458
Andrew Scull57e12682015-09-16 11:30:19 -0700459 /// Sort the variables in Source based on required alignment. The variables
460 /// with the largest alignment need are placed in the front of the Dest list.
Jan Voung0fa6c5a2015-06-01 11:04:04 -0700461 void sortVarsByAlignment(VarList &Dest, const VarList &Source) const;
462
Andrew Scull9612d322015-07-06 14:53:25 -0700463 /// Make a call to an external helper function.
Jan Voungb36ad9b2015-04-21 17:01:49 -0700464 InstCall *makeHelperCall(const IceString &Name, Variable *Dest,
465 SizeT MaxSrcs);
466
Jim Stichnoth230d4102015-09-25 17:40:32 -0700467 void _set_dest_redefined() { Context.getLastInserted()->setDestRedefined(); }
Jan Voung0fa6c5a2015-06-01 11:04:04 -0700468
Andrew Scullcfa628b2015-08-20 14:23:05 -0700469 bool shouldOptimizeMemIntrins();
470
Eric Holkcfc25532016-02-09 17:47:58 -0800471 void scalarizeArithmetic(InstArithmetic::OpKind K, Variable *Dest,
472 Operand *Src0, Operand *Src1);
473
Eric Holkcc69fa22016-02-10 13:07:06 -0800474 /// Generalizes scalarizeArithmetic to support other instruction types.
475 ///
Eric Holkd6cf6b32016-02-17 11:09:48 -0800476 /// insertScalarInstruction is a function-like object with signature
Eric Holkcc69fa22016-02-10 13:07:06 -0800477 /// (Variable *Dest, Variable *Src0, Variable *Src1) -> Instr *.
Eric Holkd6cf6b32016-02-17 11:09:48 -0800478 template <typename... Operands,
479 typename F = std::function<Inst *(Variable *, Operands *...)>>
480 void scalarizeInstruction(Variable *Dest, F insertScalarInstruction,
481 Operands *... Srcs) {
482 assert(GeneratingTargetHelpers &&
483 "scalarizeInstruction called during incorrect phase");
Eric Holkcc69fa22016-02-10 13:07:06 -0800484 const Type DestTy = Dest->getType();
485 assert(isVectorType(DestTy));
486 const Type DestElementTy = typeElementType(DestTy);
487 const SizeT NumElements = typeNumElements(DestTy);
Eric Holkcc69fa22016-02-10 13:07:06 -0800488
489 Variable *T = Func->makeVariable(DestTy);
490 Context.insert<InstFakeDef>(T);
Eric Holkcc69fa22016-02-10 13:07:06 -0800491
Eric Holkd6cf6b32016-02-17 11:09:48 -0800492 for (SizeT I = 0; I < NumElements; ++I) {
493 auto *Index = Ctx->getConstantInt32(I);
494
495 auto makeExtractThunk = [this, Index, NumElements](Operand *Src) {
496 return [this, Index, NumElements, Src]() {
497 assert(typeNumElements(Src->getType()) == NumElements);
498
499 const auto ElementTy = typeElementType(Src->getType());
500 auto *Op = Func->makeVariable(ElementTy);
501 Context.insert<InstExtractElement>(Op, Src, Index);
502 return Op;
503 };
504 };
Eric Holkcc69fa22016-02-10 13:07:06 -0800505
506 // Perform the operation as a scalar operation.
Eric Holkd6cf6b32016-02-17 11:09:48 -0800507 auto *Res = Func->makeVariable(DestElementTy);
508 auto *Arith = applyToThunkedArgs(insertScalarInstruction, Res,
509 makeExtractThunk(Srcs)...);
Eric Holkcc69fa22016-02-10 13:07:06 -0800510 genTargetHelperCallFor(Arith);
511
Eric Holkcc69fa22016-02-10 13:07:06 -0800512 Variable *DestT = Func->makeVariable(DestTy);
513 Context.insert<InstInsertElement>(DestT, T, Res, Index);
514 T = DestT;
515 }
516 Context.insert<InstAssign>(Dest, T);
517 }
518
Eric Holkd6cf6b32016-02-17 11:09:48 -0800519 // applyToThunkedArgs is used by scalarizeInstruction. Ideally, we would just
520 // call insertScalarInstruction(Res, Srcs...), but C++ does not specify
521 // evaluation order which means this leads to an unpredictable final
522 // output. Instead, we wrap each of the Srcs in a thunk and these
523 // applyToThunkedArgs functions apply the thunks in a well defined order so we
524 // still get well-defined output.
525 Inst *applyToThunkedArgs(
526 std::function<Inst *(Variable *, Variable *)> insertScalarInstruction,
527 Variable *Res, std::function<Variable *()> thunk0) {
528 auto *Src0 = thunk0();
529 return insertScalarInstruction(Res, Src0);
530 }
Eric Holkcc69fa22016-02-10 13:07:06 -0800531
Eric Holkd6cf6b32016-02-17 11:09:48 -0800532 Inst *
533 applyToThunkedArgs(std::function<Inst *(Variable *, Variable *, Variable *)>
534 insertScalarInstruction,
535 Variable *Res, std::function<Variable *()> thunk0,
536 std::function<Variable *()> thunk1) {
537 auto *Src0 = thunk0();
538 auto *Src1 = thunk1();
539 return insertScalarInstruction(Res, Src0, Src1);
540 }
Eric Holkcc69fa22016-02-10 13:07:06 -0800541
Eric Holkd6cf6b32016-02-17 11:09:48 -0800542 Inst *applyToThunkedArgs(
543 std::function<Inst *(Variable *, Variable *, Variable *, Variable *)>
544 insertScalarInstruction,
545 Variable *Res, std::function<Variable *()> thunk0,
546 std::function<Variable *()> thunk1, std::function<Variable *()> thunk2) {
547 auto *Src0 = thunk0();
548 auto *Src1 = thunk1();
549 auto *Src2 = thunk2();
550 return insertScalarInstruction(Res, Src0, Src1, Src2);
Eric Holkcc69fa22016-02-10 13:07:06 -0800551 }
552
John Portoac2388c2016-01-22 07:10:56 -0800553 /// SandboxType enumerates all possible sandboxing strategies that
554 enum SandboxType {
555 ST_None,
556 ST_NaCl,
557 ST_Nonsfi,
558 };
559
560 static SandboxType determineSandboxTypeFromFlags(const ClFlags &Flags);
561
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700562 Cfg *Func;
563 GlobalContext *Ctx;
Jim Stichnotheafb56c2015-06-22 10:35:22 -0700564 bool HasComputedFrame = false;
565 bool CallsReturnsTwice = false;
Jim Stichnotheafb56c2015-06-22 10:35:22 -0700566 SizeT NextLabelNumber = 0;
Andrew Scull86df4e92015-07-30 13:54:44 -0700567 SizeT NextJumpTableNumber = 0;
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700568 LoweringContext Context;
John Portoac2388c2016-01-22 07:10:56 -0800569 const SandboxType SandboxingType = ST_None;
Jim Stichnoth9738a9e2015-02-23 16:39:06 -0800570
Jim Stichnothc4508792015-03-01 23:12:55 -0800571 // Runtime helper function names
572 const static constexpr char *H_bitcast_16xi1_i16 = "__Sz_bitcast_16xi1_i16";
573 const static constexpr char *H_bitcast_8xi1_i8 = "__Sz_bitcast_8xi1_i8";
574 const static constexpr char *H_bitcast_i16_16xi1 = "__Sz_bitcast_i16_16xi1";
575 const static constexpr char *H_bitcast_i8_8xi1 = "__Sz_bitcast_i8_8xi1";
576 const static constexpr char *H_call_ctpop_i32 = "__popcountsi2";
577 const static constexpr char *H_call_ctpop_i64 = "__popcountdi2";
578 const static constexpr char *H_call_longjmp = "longjmp";
579 const static constexpr char *H_call_memcpy = "memcpy";
580 const static constexpr char *H_call_memmove = "memmove";
581 const static constexpr char *H_call_memset = "memset";
582 const static constexpr char *H_call_read_tp = "__nacl_read_tp";
583 const static constexpr char *H_call_setjmp = "setjmp";
584 const static constexpr char *H_fptosi_f32_i64 = "__Sz_fptosi_f32_i64";
585 const static constexpr char *H_fptosi_f64_i64 = "__Sz_fptosi_f64_i64";
586 const static constexpr char *H_fptoui_4xi32_f32 = "__Sz_fptoui_4xi32_f32";
587 const static constexpr char *H_fptoui_f32_i32 = "__Sz_fptoui_f32_i32";
588 const static constexpr char *H_fptoui_f32_i64 = "__Sz_fptoui_f32_i64";
589 const static constexpr char *H_fptoui_f64_i32 = "__Sz_fptoui_f64_i32";
590 const static constexpr char *H_fptoui_f64_i64 = "__Sz_fptoui_f64_i64";
591 const static constexpr char *H_frem_f32 = "fmodf";
592 const static constexpr char *H_frem_f64 = "fmod";
Jim Stichnoth8ff4b282016-01-04 15:39:06 -0800593 const static constexpr char *H_getIP_prefix = "__Sz_getIP_";
Jan Voung6ec369e2015-06-30 11:03:15 -0700594 const static constexpr char *H_sdiv_i32 = "__divsi3";
Jim Stichnothc4508792015-03-01 23:12:55 -0800595 const static constexpr char *H_sdiv_i64 = "__divdi3";
596 const static constexpr char *H_sitofp_i64_f32 = "__Sz_sitofp_i64_f32";
597 const static constexpr char *H_sitofp_i64_f64 = "__Sz_sitofp_i64_f64";
Jan Voung6ec369e2015-06-30 11:03:15 -0700598 const static constexpr char *H_srem_i32 = "__modsi3";
Jim Stichnothc4508792015-03-01 23:12:55 -0800599 const static constexpr char *H_srem_i64 = "__moddi3";
Jan Voung6ec369e2015-06-30 11:03:15 -0700600 const static constexpr char *H_udiv_i32 = "__udivsi3";
Jim Stichnothc4508792015-03-01 23:12:55 -0800601 const static constexpr char *H_udiv_i64 = "__udivdi3";
602 const static constexpr char *H_uitofp_4xi32_4xf32 = "__Sz_uitofp_4xi32_4xf32";
603 const static constexpr char *H_uitofp_i32_f32 = "__Sz_uitofp_i32_f32";
604 const static constexpr char *H_uitofp_i32_f64 = "__Sz_uitofp_i32_f64";
605 const static constexpr char *H_uitofp_i64_f32 = "__Sz_uitofp_i64_f32";
606 const static constexpr char *H_uitofp_i64_f64 = "__Sz_uitofp_i64_f64";
Jan Voung6ec369e2015-06-30 11:03:15 -0700607 const static constexpr char *H_urem_i32 = "__umodsi3";
Jim Stichnothc4508792015-03-01 23:12:55 -0800608 const static constexpr char *H_urem_i64 = "__umoddi3";
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700609};
610
Andrew Scull57e12682015-09-16 11:30:19 -0700611/// TargetDataLowering is used for "lowering" data including initializers for
612/// global variables, and the internal constant pools. It is separated out from
613/// TargetLowering because it does not require a Cfg.
Jan Voung72984d82015-01-29 14:42:38 -0800614class TargetDataLowering {
615 TargetDataLowering() = delete;
616 TargetDataLowering(const TargetDataLowering &) = delete;
617 TargetDataLowering &operator=(const TargetDataLowering &) = delete;
Jim Stichnoth7b451a92014-10-15 14:39:23 -0700618
Jim Stichnothde4ca712014-06-29 08:13:48 -0700619public:
Jim Stichnothbbca7542015-02-11 16:08:31 -0800620 static std::unique_ptr<TargetDataLowering> createLowering(GlobalContext *Ctx);
Jan Voung72984d82015-01-29 14:42:38 -0800621 virtual ~TargetDataLowering();
Jan Voung839c4ce2014-07-28 15:19:43 -0700622
John Porto8b1a7052015-06-17 13:20:08 -0700623 virtual void lowerGlobals(const VariableDeclarationList &Vars,
624 const IceString &SectionSuffix) = 0;
John Porto0f86d032015-06-15 07:44:27 -0700625 virtual void lowerConstants() = 0;
Andrew Scull86df4e92015-07-30 13:54:44 -0700626 virtual void lowerJumpTables() = 0;
Jim Stichnothde4ca712014-06-29 08:13:48 -0700627
628protected:
John Porto8b1a7052015-06-17 13:20:08 -0700629 void emitGlobal(const VariableDeclaration &Var,
630 const IceString &SectionSuffix);
Jan Voung58eea4d2015-06-15 15:11:56 -0700631
Andrew Scull57e12682015-09-16 11:30:19 -0700632 /// For now, we assume .long is the right directive for emitting 4 byte emit
633 /// global relocations. However, LLVM MIPS usually uses .4byte instead.
Andrew Scull9612d322015-07-06 14:53:25 -0700634 /// Perhaps there is some difference when the location is unaligned.
John Porto8b1a7052015-06-17 13:20:08 -0700635 static const char *getEmit32Directive() { return ".long"; }
Jan Voung58eea4d2015-06-15 15:11:56 -0700636
Jim Stichnothc6ead202015-02-24 09:30:30 -0800637 explicit TargetDataLowering(GlobalContext *Ctx) : Ctx(Ctx) {}
Jim Stichnothde4ca712014-06-29 08:13:48 -0700638 GlobalContext *Ctx;
Jim Stichnothde4ca712014-06-29 08:13:48 -0700639};
640
Andrew Scull57e12682015-09-16 11:30:19 -0700641/// TargetHeaderLowering is used to "lower" the header of an output file. It
642/// writes out the target-specific header attributes. E.g., for ARM this writes
643/// out the build attributes (float ABI, etc.).
Jan Voungfb792842015-06-11 15:27:50 -0700644class TargetHeaderLowering {
645 TargetHeaderLowering() = delete;
646 TargetHeaderLowering(const TargetHeaderLowering &) = delete;
647 TargetHeaderLowering &operator=(const TargetHeaderLowering &) = delete;
648
649public:
650 static std::unique_ptr<TargetHeaderLowering>
651 createLowering(GlobalContext *Ctx);
652 virtual ~TargetHeaderLowering();
653
654 virtual void lower() {}
655
656protected:
657 explicit TargetHeaderLowering(GlobalContext *Ctx) : Ctx(Ctx) {}
658 GlobalContext *Ctx;
659};
660
Jim Stichnoth5bc2b1d2014-05-22 13:38:48 -0700661} // end of namespace Ice
662
663#endif // SUBZERO_SRC_ICETARGETLOWERING_H