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Lei Zhangf18e1f22016-09-12 14:11:46 -04001// Copyright (c) 2016 Google Inc.
2//
3// Licensed under the Apache License, Version 2.0 (the "License");
4// you may not use this file except in compliance with the License.
5// You may obtain a copy of the License at
6//
7// http://www.apache.org/licenses/LICENSE-2.0
8//
9// Unless required by applicable law or agreed to in writing, software
10// distributed under the License is distributed on an "AS IS" BASIS,
11// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12// See the License for the specific language governing permissions and
13// limitations under the License.
14
15#ifndef SPIRV_TOOLS_OPTIMIZER_HPP_
16#define SPIRV_TOOLS_OPTIMIZER_HPP_
17
18#include <memory>
David Netoc32e79e2018-01-04 12:59:50 -050019#include <ostream>
Lei Zhangf18e1f22016-09-12 14:11:46 -040020#include <string>
21#include <unordered_map>
22#include <vector>
23
24#include "libspirv.hpp"
Lei Zhangf18e1f22016-09-12 14:11:46 -040025
26namespace spvtools {
27
28// C++ interface for SPIR-V optimization functionalities. It wraps the context
29// (including target environment and the corresponding SPIR-V grammar) and
30// provides methods for registering optimization passes and optimizing.
31//
32// Instances of this class provides basic thread-safety guarantee.
33class Optimizer {
34 public:
35 // The token for an optimization pass. It is returned via one of the
36 // Create*Pass() standalone functions at the end of this header file and
37 // consumed by the RegisterPass() method. Tokens are one-time objects that
38 // only support move; copying is not allowed.
39 struct PassToken {
40 struct Impl; // Opaque struct for holding inernal data.
41
42 PassToken(std::unique_ptr<Impl>);
43
44 // Tokens can only be moved. Copying is disabled.
45 PassToken(const PassToken&) = delete;
46 PassToken(PassToken&&);
47 PassToken& operator=(const PassToken&) = delete;
48 PassToken& operator=(PassToken&&);
49
50 ~PassToken();
51
52 std::unique_ptr<Impl> impl_; // Unique pointer to internal data.
53 };
54
55 // Constructs an instance with the given target |env|, which is used to decode
56 // the binaries to be optimized later.
57 //
58 // The constructed instance will have an empty message consumer, which just
59 // ignores all messages from the library. Use SetMessageConsumer() to supply
60 // one if messages are of concern.
61 explicit Optimizer(spv_target_env env);
62
63 // Disables copy/move constructor/assignment operations.
64 Optimizer(const Optimizer&) = delete;
65 Optimizer(Optimizer&&) = delete;
66 Optimizer& operator=(const Optimizer&) = delete;
67 Optimizer& operator=(Optimizer&&) = delete;
68
69 // Destructs this instance.
70 ~Optimizer();
71
72 // Sets the message consumer to the given |consumer|. The |consumer| will be
73 // invoked once for each message communicated from the library.
74 void SetMessageConsumer(MessageConsumer consumer);
75
76 // Registers the given |pass| to this optimizer. Passes will be run in the
77 // exact order of registration. The token passed in will be consumed by this
78 // method.
79 Optimizer& RegisterPass(PassToken&& pass);
80
Diego Novilloc90d7302017-08-30 14:19:22 -040081 // Registers passes that attempt to improve performance of generated code.
82 // This sequence of passes is subject to constant review and will change
83 // from time to time.
84 Optimizer& RegisterPerformancePasses();
85
86 // Registers passes that attempt to improve the size of generated code.
87 // This sequence of passes is subject to constant review and will change
88 // from time to time.
89 Optimizer& RegisterSizePasses();
90
Lei Zhangaec60b82017-11-17 16:50:43 -050091 // Registers passes that attempt to legalize the generated code.
92 //
93 // Note: this recipe is specially for legalizing SPIR-V. It should be used
94 // by compilers after translating HLSL source code literally. It should
95 // *not* be used by general workloads for performance or size improvement.
96 //
97 // This sequence of passes is subject to constant review and will change
98 // from time to time.
99 Optimizer& RegisterLegalizationPasses();
100
Lei Zhangf18e1f22016-09-12 14:11:46 -0400101 // Optimizes the given SPIR-V module |original_binary| and writes the
102 // optimized binary into |optimized_binary|.
103 // Returns true on successful optimization, whether or not the module is
104 // modified. Returns false if errors occur when processing |original_binary|
105 // using any of the registered passes. In that case, no further passes are
Diego Novilloc90d7302017-08-30 14:19:22 -0400106 // executed and the contents in |optimized_binary| may be invalid.
Lei Zhangf18e1f22016-09-12 14:11:46 -0400107 //
108 // It's allowed to alias |original_binary| to the start of |optimized_binary|.
109 bool Run(const uint32_t* original_binary, size_t original_binary_size,
110 std::vector<uint32_t>* optimized_binary) const;
111
Diego Novilloc90d7302017-08-30 14:19:22 -0400112 // Returns a vector of strings with all the pass names added to this
113 // optimizer's pass manager. These strings are valid until the associated
114 // pass manager is destroyed.
Steven Perron58347192017-10-20 12:17:41 -0400115 std::vector<const char*> GetPassNames() const;
Diego Novilloc90d7302017-08-30 14:19:22 -0400116
David Netoc32e79e2018-01-04 12:59:50 -0500117 // Sets the option to print the disassembly before each pass and after the
118 // last pass. If |out| is null, then no output is generated. Otherwise,
119 // output is sent to the |out| output stream.
120 Optimizer& SetPrintAll(std::ostream* out);
121
Lei Zhangf18e1f22016-09-12 14:11:46 -0400122 private:
123 struct Impl; // Opaque struct for holding internal data.
124 std::unique_ptr<Impl> impl_; // Unique pointer to internal data.
125};
126
127// Creates a null pass.
128// A null pass does nothing to the SPIR-V module to be optimized.
129Optimizer::PassToken CreateNullPass();
130
131// Creates a strip-debug-info pass.
132// A strip-debug-info pass removes all debug instructions (as documented in
133// Section 3.32.2 of the SPIR-V spec) of the SPIR-V module to be optimized.
134Optimizer::PassToken CreateStripDebugInfoPass();
135
Steven Perrone43c9102017-09-19 10:12:13 -0400136// Creates an eliminate-dead-functions pass.
Steven Perron58347192017-10-20 12:17:41 -0400137// An eliminate-dead-functions pass will remove all functions that are not in
138// the call trees rooted at entry points and exported functions. These
139// functions are not needed because they will never be called.
Steven Perrone43c9102017-09-19 10:12:13 -0400140Optimizer::PassToken CreateEliminateDeadFunctionsPass();
141
qining144f59e2017-04-19 18:10:59 -0400142// Creates a set-spec-constant-default-value pass from a mapping from spec-ids
143// to the default values in the form of string.
Lei Zhangf18e1f22016-09-12 14:11:46 -0400144// A set-spec-constant-default-value pass sets the default values for the
145// spec constants that have SpecId decorations (i.e., those defined by
146// OpSpecConstant{|True|False} instructions).
147Optimizer::PassToken CreateSetSpecConstantDefaultValuePass(
148 const std::unordered_map<uint32_t, std::string>& id_value_map);
149
qining144f59e2017-04-19 18:10:59 -0400150// Creates a set-spec-constant-default-value pass from a mapping from spec-ids
151// to the default values in the form of bit pattern.
152// A set-spec-constant-default-value pass sets the default values for the
153// spec constants that have SpecId decorations (i.e., those defined by
154// OpSpecConstant{|True|False} instructions).
155Optimizer::PassToken CreateSetSpecConstantDefaultValuePass(
156 const std::unordered_map<uint32_t, std::vector<uint32_t>>& id_value_map);
157
David Neto11a867f2017-04-01 16:10:16 -0400158// Creates a flatten-decoration pass.
159// A flatten-decoration pass replaces grouped decorations with equivalent
160// ungrouped decorations. That is, it replaces each OpDecorationGroup
161// instruction and associated OpGroupDecorate and OpGroupMemberDecorate
162// instructions with equivalent OpDecorate and OpMemberDecorate instructions.
163// The pass does not attempt to preserve debug information for instructions
164// it removes.
165Optimizer::PassToken CreateFlattenDecorationPass();
166
Lei Zhangf18e1f22016-09-12 14:11:46 -0400167// Creates a freeze-spec-constant-value pass.
168// A freeze-spec-constant pass specializes the value of spec constants to
169// their default values. This pass only processes the spec constants that have
170// SpecId decorations (defined by OpSpecConstant, OpSpecConstantTrue, or
171// OpSpecConstantFalse instructions) and replaces them with their normal
172// counterparts (OpConstant, OpConstantTrue, or OpConstantFalse). The
173// corresponding SpecId annotation instructions will also be removed. This
174// pass does not fold the newly added normal constants and does not process
175// other spec constants defined by OpSpecConstantComposite or
176// OpSpecConstantOp.
177Optimizer::PassToken CreateFreezeSpecConstantValuePass();
178
179// Creates a fold-spec-constant-op-and-composite pass.
180// A fold-spec-constant-op-and-composite pass folds spec constants defined by
181// OpSpecConstantOp or OpSpecConstantComposite instruction, to normal Constants
182// defined by OpConstantTrue, OpConstantFalse, OpConstant, OpConstantNull, or
183// OpConstantComposite instructions. Note that spec constants defined with
184// OpSpecConstant, OpSpecConstantTrue, or OpSpecConstantFalse instructions are
185// not handled, as these instructions indicate their value are not determined
186// and can be changed in future. A spec constant is foldable if all of its
187// value(s) can be determined from the module. E.g., an integer spec constant
188// defined with OpSpecConstantOp instruction can be folded if its value won't
189// change later. This pass will replace the original OpSpecContantOp instruction
190// with an OpConstant instruction. When folding composite spec constants,
191// new instructions may be inserted to define the components of the composite
192// constant first, then the original spec constants will be replaced by
193// OpConstantComposite instructions.
194//
195// There are some operations not supported yet:
196// OpSConvert, OpFConvert, OpQuantizeToF16 and
197// all the operations under Kernel capability.
198// TODO(qining): Add support for the operations listed above.
199Optimizer::PassToken CreateFoldSpecConstantOpAndCompositePass();
200
201// Creates a unify-constant pass.
202// A unify-constant pass de-duplicates the constants. Constants with the exact
203// same value and identical form will be unified and only one constant will
204// be kept for each unique pair of type and value.
205// There are several cases not handled by this pass:
206// 1) Constants defined by OpConstantNull instructions (null constants) and
207// constants defined by OpConstantFalse, OpConstant or OpConstantComposite
208// with value 0 (zero-valued normal constants) are not considered equivalent.
209// So null constants won't be used to replace zero-valued normal constants,
210// vice versa.
211// 2) Whenever there are decorations to the constant's result id id, the
212// constant won't be handled, which means, it won't be used to replace any
213// other constants, neither can other constants replace it.
214// 3) NaN in float point format with different bit patterns are not unified.
215Optimizer::PassToken CreateUnifyConstantPass();
216
217// Creates a eliminate-dead-constant pass.
218// A eliminate-dead-constant pass removes dead constants, including normal
219// contants defined by OpConstant, OpConstantComposite, OpConstantTrue, or
220// OpConstantFalse and spec constants defined by OpSpecConstant,
221// OpSpecConstantComposite, OpSpecConstantTrue, OpSpecConstantFalse or
222// OpSpecConstantOp.
223Optimizer::PassToken CreateEliminateDeadConstantPass();
224
Steven Perrone4c7d8e2017-09-08 12:08:03 -0400225// Creates a strength-reduction pass.
226// A strength-reduction pass will look for opportunities to replace an
227// instruction with an equivalent and less expensive one. For example,
228// multiplying by a power of 2 can be replaced by a bit shift.
229Optimizer::PassToken CreateStrengthReductionPass();
230
GregFad1d0352017-06-07 15:28:53 -0600231// Creates a block merge pass.
232// This pass searches for blocks with a single Branch to a block with no
233// other predecessors and merges the blocks into a single block. Continue
234// blocks and Merge blocks are not candidates for the second block.
235//
236// The pass is most useful after Dead Branch Elimination, which can leave
237// such sequences of blocks. Merging them makes subsequent passes more
238// effective, such as single block local store-load elimination.
239//
240// While this pass reduces the number of occurrences of this sequence, at
241// this time it does not guarantee all such sequences are eliminated.
242//
243// Presence of phi instructions can inhibit this optimization. Handling
Steven Perrone43c9102017-09-19 10:12:13 -0400244// these is left for future improvements.
GregFad1d0352017-06-07 15:28:53 -0600245Optimizer::PassToken CreateBlockMergePass();
246
GregF429ca052017-08-15 17:58:28 -0600247// Creates an exhaustive inline pass.
248// An exhaustive inline pass attempts to exhaustively inline all function
249// calls in all functions in an entry point call tree. The intent is to enable,
250// albeit through brute force, analysis and optimization across function
251// calls by subsequent optimization passes. As the inlining is exhaustive,
252// there is no attempt to optimize for size or runtime performance. Functions
253// that are not in the call tree of an entry point are not changed.
GregFe28bd392017-08-01 17:20:13 -0600254Optimizer::PassToken CreateInlineExhaustivePass();
Steven Perrone43c9102017-09-19 10:12:13 -0400255
GregF429ca052017-08-15 17:58:28 -0600256// Creates an opaque inline pass.
257// An opaque inline pass inlines all function calls in all functions in all
258// entry point call trees where the called function contains an opaque type
259// in either its parameter types or return type. An opaque type is currently
260// defined as Image, Sampler or SampledImage. The intent is to enable, albeit
261// through brute force, analysis and optimization across these function calls
262// by subsequent passes in order to remove the storing of opaque types which is
263// not legal in Vulkan. Functions that are not in the call tree of an entry
264// point are not changed.
265Optimizer::PassToken CreateInlineOpaquePass();
Steven Perrone43c9102017-09-19 10:12:13 -0400266
GregF7c8da662017-05-18 14:51:55 -0600267// Creates a single-block local variable load/store elimination pass.
Steven Perrone43c9102017-09-19 10:12:13 -0400268// For every entry point function, do single block memory optimization of
GregF7c8da662017-05-18 14:51:55 -0600269// function variables referenced only with non-access-chain loads and stores.
270// For each targeted variable load, if previous store to that variable in the
271// block, replace the load's result id with the value id of the store.
272// If previous load within the block, replace the current load's result id
273// with the previous load's result id. In either case, delete the current
274// load. Finally, check if any remaining stores are useless, and delete store
275// and variable if possible.
276//
277// The presence of access chain references and function calls can inhibit
278// the above optimization.
279//
Steven Perron79a00642017-12-11 13:10:24 -0500280// Only modules with relaxed logical addressing (see opt/instruction.h) are
281// currently processed.
GregF7c8da662017-05-18 14:51:55 -0600282//
Steven Perrone43c9102017-09-19 10:12:13 -0400283// This pass is most effective if preceeded by Inlining and
GregF7c8da662017-05-18 14:51:55 -0600284// LocalAccessChainConvert. This pass will reduce the work needed to be done
GregFcc8bad32017-06-16 15:37:31 -0600285// by LocalSingleStoreElim and LocalMultiStoreElim.
GregF429ca052017-08-15 17:58:28 -0600286//
287// Only functions in the call tree of an entry point are processed.
GregF7c8da662017-05-18 14:51:55 -0600288Optimizer::PassToken CreateLocalSingleBlockLoadStoreElimPass();
Greg Fischer04fcc662016-11-10 10:11:50 -0700289
GregF52e247f2017-06-02 13:23:20 -0600290// Create dead branch elimination pass.
291// For each entry point function, this pass will look for SelectionMerge
292// BranchConditionals with constant condition and convert to a Branch to
293// the indicated label. It will delete resulting dead blocks.
294//
Andrey Tuganov4b1577a2017-10-05 16:26:09 -0400295// For all phi functions in merge block, replace all uses with the id
296// corresponding to the living predecessor.
297//
GregF52e247f2017-06-02 13:23:20 -0600298// This pass only works on shaders (guaranteed to have structured control
299// flow). Note that some such branches and blocks may be left to avoid
300// creating invalid control flow. Improving this is left to future work.
301//
302// This pass is most effective when preceeded by passes which eliminate
303// local loads and stores, effectively propagating constant values where
304// possible.
305Optimizer::PassToken CreateDeadBranchElimPass();
306
GregFcc8bad32017-06-16 15:37:31 -0600307// Creates an SSA local variable load/store elimination pass.
308// For every entry point function, eliminate all loads and stores of function
309// scope variables only referenced with non-access-chain loads and stores.
Steven Perrone43c9102017-09-19 10:12:13 -0400310// Eliminate the variables as well.
GregFcc8bad32017-06-16 15:37:31 -0600311//
312// The presence of access chain references and function calls can inhibit
313// the above optimization.
314//
Steven Perron79a00642017-12-11 13:10:24 -0500315// Only shader modules with relaxed logical addressing (see opt/instruction.h)
316// are currently processed. Currently modules with any extensions enabled are
317// not processed. This is left for future work.
GregFcc8bad32017-06-16 15:37:31 -0600318//
Steven Perrone43c9102017-09-19 10:12:13 -0400319// This pass is most effective if preceeded by Inlining and
GregFcc8bad32017-06-16 15:37:31 -0600320// LocalAccessChainConvert. LocalSingleStoreElim and LocalSingleBlockElim
321// will reduce the work that this pass has to do.
322Optimizer::PassToken CreateLocalMultiStoreElimPass();
323
GregFaa7e6872017-05-12 17:27:21 -0600324// Creates a local access chain conversion pass.
325// A local access chain conversion pass identifies all function scope
326// variables which are accessed only with loads, stores and access chains
327// with constant indices. It then converts all loads and stores of such
328// variables into equivalent sequences of loads, stores, extracts and inserts.
329//
330// This pass only processes entry point functions. It currently only converts
331// non-nested, non-ptr access chains. It does not process modules with
332// non-32-bit integer types present. Optional memory access options on loads
333// and stores are ignored as we are only processing function scope variables.
334//
335// This pass unifies access to these variables to a single mode and simplifies
336// subsequent analysis and elimination of these variables along with their
337// loads and stores allowing values to propagate to their points of use where
338// possible.
339Optimizer::PassToken CreateLocalAccessChainConvertPass();
340
GregF0c5722f2017-05-19 17:31:28 -0600341// Creates a local single store elimination pass.
Steven Perrone43c9102017-09-19 10:12:13 -0400342// For each entry point function, this pass eliminates loads and stores for
GregF0c5722f2017-05-19 17:31:28 -0600343// function scope variable that are stored to only once, where possible. Only
344// whole variable loads and stores are eliminated; access-chain references are
345// not optimized. Replace all loads of such variables with the value that is
346// stored and eliminate any resulting dead code.
347//
348// Currently, the presence of access chains and function calls can inhibit this
349// pass, however the Inlining and LocalAccessChainConvert passes can make it
350// more effective. In additional, many non-load/store memory operations are
351// not supported and will prohibit optimization of a function. Support of
352// these operations are future work.
353//
Steven Perron79a00642017-12-11 13:10:24 -0500354// Only shader modules with relaxed logical addressing (see opt/instruction.h)
355// are currently processed.
356//
GregF0c5722f2017-05-19 17:31:28 -0600357// This pass will reduce the work needed to be done by LocalSingleBlockElim
GregFcc8bad32017-06-16 15:37:31 -0600358// and LocalMultiStoreElim and can improve the effectiveness of other passes
359// such as DeadBranchElimination which depend on values for their analysis.
GregF0c5722f2017-05-19 17:31:28 -0600360Optimizer::PassToken CreateLocalSingleStoreElimPass();
361
GregF6136bf92017-05-26 10:33:11 -0600362// Creates an insert/extract elimination pass.
363// This pass processes each entry point function in the module, searching for
364// extracts on a sequence of inserts. It further searches the sequence for an
365// insert with indices identical to the extract. If such an insert can be
366// found before hitting a conflicting insert, the extract's result id is
367// replaced with the id of the values from the insert.
368//
369// Besides removing extracts this pass enables subsequent dead code elimination
370// passes to delete the inserts. This pass performs best after access chains are
371// converted to inserts and extracts and local loads and stores are eliminated.
372Optimizer::PassToken CreateInsertExtractElimPass();
373
GregFf4b29f32017-07-03 17:23:04 -0600374// Creates a pass to consolidate uniform references.
375// For each entry point function in the module, first change all constant index
Steven Perrone43c9102017-09-19 10:12:13 -0400376// access chain loads into equivalent composite extracts. Then consolidate
GregFf4b29f32017-07-03 17:23:04 -0600377// identical uniform loads into one uniform load. Finally, consolidate
378// identical uniform extracts into one uniform extract. This may require
379// moving a load or extract to a point which dominates all uses.
380//
381// This pass requires a module to have structured control flow ie shader
382// capability. It also requires logical addressing ie Addresses capability
383// is not enabled. It also currently does not support any extensions.
384//
385// This pass currently only optimizes loads with a single index.
386Optimizer::PassToken CreateCommonUniformElimPass();
387
GregF9de4e692017-06-08 10:37:21 -0600388// Create aggressive dead code elimination pass
389// This pass eliminates unused code from functions. In addition,
390// it detects and eliminates code which may have spurious uses but which do
391// not contribute to the output of the function. The most common cause of
392// such code sequences is summations in loops whose result is no longer used
393// due to dead code elimination. This optimization has additional compile
394// time cost over standard dead code elimination.
395//
396// This pass only processes entry point functions. It also only processes
Steven Perron79a00642017-12-11 13:10:24 -0500397// shaders with relaxed logical addressing (see opt/instruction.h). It currently
398// will not process functions with function calls.
GregF9de4e692017-06-08 10:37:21 -0600399//
400// This pass will be made more effective by first running passes that remove
401// dead control flow and inlines function calls.
402//
403// This pass can be especially useful after running Local Access Chain
404// Conversion, which tends to cause cycles of dead code to be left after
405// Store/Load elimination passes are completed. These cycles cannot be
406// eliminated with standard dead code elimination.
407Optimizer::PassToken CreateAggressiveDCEPass();
408
Andrey Tuganov1e309af2017-04-11 15:11:04 -0400409// Creates a compact ids pass.
410// The pass remaps result ids to a compact and gapless range starting from %1.
411Optimizer::PassToken CreateCompactIdsPass();
412
Pierre Moreau86627f72017-07-13 02:16:51 +0200413// Creates a remove duplicate capabilities pass.
414Optimizer::PassToken CreateRemoveDuplicatesPass();
415
Diego Novilloc75704e2017-09-06 08:56:41 -0400416// Creates a CFG cleanup pass.
417// This pass removes cruft from the control flow graph of functions that are
418// reachable from entry points and exported functions. It currently includes the
419// following functionality:
420//
421// - Removal of unreachable basic blocks.
422Optimizer::PassToken CreateCFGCleanupPass();
423
Steven Perron58347192017-10-20 12:17:41 -0400424// Create dead variable elimination pass.
425// This pass will delete module scope variables, along with their decorations,
426// that are not referenced.
427Optimizer::PassToken CreateDeadVariableEliminationPass();
428
Alan Bakera92d69b2017-11-08 16:22:10 -0500429// Create merge return pass.
430// This pass replaces all returns with unconditional branches to a new block
431// containing a return. If necessary, this new block will contain a PHI node to
432// select the correct return value.
433//
434// This pass does not consider unreachable code, nor does it perform any other
435// optimizations.
436//
437// This pass does not currently support structured control flow. It bails out if
438// the shader capability is detected.
439Optimizer::PassToken CreateMergeReturnPass();
440
Steven Perron28c41552017-11-10 20:26:55 -0500441// Create value numbering pass.
442// This pass will look for instructions in the same basic block that compute the
443// same value, and remove the redundant ones.
444Optimizer::PassToken CreateLocalRedundancyEliminationPass();
Steven Perron5d602ab2017-12-04 12:29:51 -0500445
446// Create global value numbering pass.
447// This pass will look for instructions where the same value is computed on all
448// paths leading to the instruction. Those instructions are deleted.
449Optimizer::PassToken CreateRedundancyEliminationPass();
Alan Baker867451f2017-11-30 17:03:06 -0500450
451// Create scalar replacement pass.
452// This pass replaces composite function scope variables with variables for each
453// element if those elements are accessed individually.
454Optimizer::PassToken CreateScalarReplacementPass();
Steven Perronb86eb682017-12-11 13:10:24 -0500455
456// Create a private to local pass.
457// This pass looks for variables delcared in the private storage class that are
458// used in only one function. Those variables are moved to the function storage
459// class in the function that they are used.
460Optimizer::PassToken CreatePrivateToLocalPass();
Diego Novillo4ba9dcc2017-12-05 11:39:25 -0500461
462// Creates a conditional constant propagation (CCP) pass.
463// This pass implements the SSA-CCP algorithm in
464//
465// Constant propagation with conditional branches,
466// Wegman and Zadeck, ACM TOPLAS 13(2):181-210.
467//
468// Constant values in expressions and conditional jumps are folded and
469// simplified. This may reduce code size by removing never executed jump targets
470// and computations with constant operands.
471Optimizer::PassToken CreateCCPPass();
472
Lei Zhangf18e1f22016-09-12 14:11:46 -0400473} // namespace spvtools
474
475#endif // SPIRV_TOOLS_OPTIMIZER_HPP_