1 // Copyright (c) 2015-2016 The Khronos Group 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 #include "source/operand.h"
16 
17 #include <assert.h>
18 #include <string.h>
19 #include <algorithm>
20 
21 #include "source/macro.h"
22 #include "source/spirv_constant.h"
23 #include "source/spirv_target_env.h"
24 
25 // For now, assume unified1 contains up to SPIR-V 1.3 and no later
26 // SPIR-V version.
27 // TODO(dneto): Make one set of tables, but with version tags on a
28 // per-item basis. https://github.com/KhronosGroup/SPIRV-Tools/issues/1195
29 
30 #include "operand.kinds-unified1.inc"
31 
32 static const spv_operand_table_t kOperandTable = {
33     ARRAY_SIZE(pygen_variable_OperandInfoTable),
34     pygen_variable_OperandInfoTable};
35 
spvOperandTableGet(spv_operand_table * pOperandTable,spv_target_env)36 spv_result_t spvOperandTableGet(spv_operand_table* pOperandTable,
37                                 spv_target_env) {
38   if (!pOperandTable) return SPV_ERROR_INVALID_POINTER;
39 
40   *pOperandTable = &kOperandTable;
41   return SPV_SUCCESS;
42 }
43 
spvOperandTableNameLookup(spv_target_env env,const spv_operand_table table,const spv_operand_type_t type,const char * name,const size_t nameLength,spv_operand_desc * pEntry)44 spv_result_t spvOperandTableNameLookup(spv_target_env env,
45                                        const spv_operand_table table,
46                                        const spv_operand_type_t type,
47                                        const char* name,
48                                        const size_t nameLength,
49                                        spv_operand_desc* pEntry) {
50   if (!table) return SPV_ERROR_INVALID_TABLE;
51   if (!name || !pEntry) return SPV_ERROR_INVALID_POINTER;
52 
53   for (uint64_t typeIndex = 0; typeIndex < table->count; ++typeIndex) {
54     const auto& group = table->types[typeIndex];
55     if (type != group.type) continue;
56     for (uint64_t index = 0; index < group.count; ++index) {
57       const auto& entry = group.entries[index];
58       // We consider the current operand as available as long as
59       // 1. The target environment satisfies the minimal requirement of the
60       //    operand; or
61       // 2. There is at least one extension enabling this operand; or
62       // 3. There is at least one capability enabling this operand.
63       //
64       // Note that the second rule assumes the extension enabling this operand
65       // is indeed requested in the SPIR-V code; checking that should be
66       // validator's work.
67       if ((spvVersionForTargetEnv(env) >= entry.minVersion ||
68            entry.numExtensions > 0u || entry.numCapabilities > 0u) &&
69           nameLength == strlen(entry.name) &&
70           !strncmp(entry.name, name, nameLength)) {
71         *pEntry = &entry;
72         return SPV_SUCCESS;
73       }
74     }
75   }
76 
77   return SPV_ERROR_INVALID_LOOKUP;
78 }
79 
spvOperandTableValueLookup(spv_target_env env,const spv_operand_table table,const spv_operand_type_t type,const uint32_t value,spv_operand_desc * pEntry)80 spv_result_t spvOperandTableValueLookup(spv_target_env env,
81                                         const spv_operand_table table,
82                                         const spv_operand_type_t type,
83                                         const uint32_t value,
84                                         spv_operand_desc* pEntry) {
85   if (!table) return SPV_ERROR_INVALID_TABLE;
86   if (!pEntry) return SPV_ERROR_INVALID_POINTER;
87 
88   spv_operand_desc_t needle = {"", value, 0, nullptr, 0, nullptr, {}, ~0u};
89 
90   auto comp = [](const spv_operand_desc_t& lhs, const spv_operand_desc_t& rhs) {
91     return lhs.value < rhs.value;
92   };
93 
94   for (uint64_t typeIndex = 0; typeIndex < table->count; ++typeIndex) {
95     const auto& group = table->types[typeIndex];
96     if (type != group.type) continue;
97 
98     const auto beg = group.entries;
99     const auto end = group.entries + group.count;
100 
101     // We need to loop here because there can exist multiple symbols for the
102     // same operand value, and they can be introduced in different target
103     // environments, which means they can have different minimal version
104     // requirements. For example, SubgroupEqMaskKHR can exist in any SPIR-V
105     // version as long as the SPV_KHR_shader_ballot extension is there; but
106     // starting from SPIR-V 1.3, SubgroupEqMask, which has the same numeric
107     // value as SubgroupEqMaskKHR, is available in core SPIR-V without extension
108     // requirements.
109     // Assumes the underlying table is already sorted ascendingly according to
110     // opcode value.
111     for (auto it = std::lower_bound(beg, end, needle, comp);
112          it != end && it->value == value; ++it) {
113       // We consider the current operand as available as long as
114       // 1. The target environment satisfies the minimal requirement of the
115       //    operand; or
116       // 2. There is at least one extension enabling this operand; or
117       // 3. There is at least one capability enabling this operand.
118       //
119       // Note that the second rule assumes the extension enabling this operand
120       // is indeed requested in the SPIR-V code; checking that should be
121       // validator's work.
122       if (spvVersionForTargetEnv(env) >= it->minVersion ||
123           it->numExtensions > 0u || it->numCapabilities > 0u) {
124         *pEntry = it;
125         return SPV_SUCCESS;
126       }
127     }
128   }
129 
130   return SPV_ERROR_INVALID_LOOKUP;
131 }
132 
spvOperandTypeStr(spv_operand_type_t type)133 const char* spvOperandTypeStr(spv_operand_type_t type) {
134   switch (type) {
135     case SPV_OPERAND_TYPE_ID:
136     case SPV_OPERAND_TYPE_OPTIONAL_ID:
137       return "ID";
138     case SPV_OPERAND_TYPE_TYPE_ID:
139       return "type ID";
140     case SPV_OPERAND_TYPE_RESULT_ID:
141       return "result ID";
142     case SPV_OPERAND_TYPE_LITERAL_INTEGER:
143     case SPV_OPERAND_TYPE_OPTIONAL_LITERAL_INTEGER:
144     case SPV_OPERAND_TYPE_OPTIONAL_LITERAL_NUMBER:
145       return "literal number";
146     case SPV_OPERAND_TYPE_OPTIONAL_TYPED_LITERAL_INTEGER:
147       return "possibly multi-word literal integer";
148     case SPV_OPERAND_TYPE_TYPED_LITERAL_NUMBER:
149       return "possibly multi-word literal number";
150     case SPV_OPERAND_TYPE_EXTENSION_INSTRUCTION_NUMBER:
151       return "extension instruction number";
152     case SPV_OPERAND_TYPE_SPEC_CONSTANT_OP_NUMBER:
153       return "OpSpecConstantOp opcode";
154     case SPV_OPERAND_TYPE_LITERAL_STRING:
155     case SPV_OPERAND_TYPE_OPTIONAL_LITERAL_STRING:
156       return "literal string";
157     case SPV_OPERAND_TYPE_SOURCE_LANGUAGE:
158       return "source language";
159     case SPV_OPERAND_TYPE_EXECUTION_MODEL:
160       return "execution model";
161     case SPV_OPERAND_TYPE_ADDRESSING_MODEL:
162       return "addressing model";
163     case SPV_OPERAND_TYPE_MEMORY_MODEL:
164       return "memory model";
165     case SPV_OPERAND_TYPE_EXECUTION_MODE:
166       return "execution mode";
167     case SPV_OPERAND_TYPE_STORAGE_CLASS:
168       return "storage class";
169     case SPV_OPERAND_TYPE_DIMENSIONALITY:
170       return "dimensionality";
171     case SPV_OPERAND_TYPE_SAMPLER_ADDRESSING_MODE:
172       return "sampler addressing mode";
173     case SPV_OPERAND_TYPE_SAMPLER_FILTER_MODE:
174       return "sampler filter mode";
175     case SPV_OPERAND_TYPE_SAMPLER_IMAGE_FORMAT:
176       return "image format";
177     case SPV_OPERAND_TYPE_FP_FAST_MATH_MODE:
178       return "floating-point fast math mode";
179     case SPV_OPERAND_TYPE_FP_ROUNDING_MODE:
180       return "floating-point rounding mode";
181     case SPV_OPERAND_TYPE_LINKAGE_TYPE:
182       return "linkage type";
183     case SPV_OPERAND_TYPE_ACCESS_QUALIFIER:
184     case SPV_OPERAND_TYPE_OPTIONAL_ACCESS_QUALIFIER:
185       return "access qualifier";
186     case SPV_OPERAND_TYPE_FUNCTION_PARAMETER_ATTRIBUTE:
187       return "function parameter attribute";
188     case SPV_OPERAND_TYPE_DECORATION:
189       return "decoration";
190     case SPV_OPERAND_TYPE_BUILT_IN:
191       return "built-in";
192     case SPV_OPERAND_TYPE_SELECTION_CONTROL:
193       return "selection control";
194     case SPV_OPERAND_TYPE_LOOP_CONTROL:
195       return "loop control";
196     case SPV_OPERAND_TYPE_FUNCTION_CONTROL:
197       return "function control";
198     case SPV_OPERAND_TYPE_MEMORY_SEMANTICS_ID:
199       return "memory semantics ID";
200     case SPV_OPERAND_TYPE_MEMORY_ACCESS:
201     case SPV_OPERAND_TYPE_OPTIONAL_MEMORY_ACCESS:
202       return "memory access";
203     case SPV_OPERAND_TYPE_SCOPE_ID:
204       return "scope ID";
205     case SPV_OPERAND_TYPE_GROUP_OPERATION:
206       return "group operation";
207     case SPV_OPERAND_TYPE_KERNEL_ENQ_FLAGS:
208       return "kernel enqeue flags";
209     case SPV_OPERAND_TYPE_KERNEL_PROFILING_INFO:
210       return "kernel profiling info";
211     case SPV_OPERAND_TYPE_CAPABILITY:
212       return "capability";
213     case SPV_OPERAND_TYPE_IMAGE:
214     case SPV_OPERAND_TYPE_OPTIONAL_IMAGE:
215       return "image";
216     case SPV_OPERAND_TYPE_OPTIONAL_CIV:
217       return "context-insensitive value";
218     case SPV_OPERAND_TYPE_DEBUG_INFO_FLAGS:
219       return "debug info flags";
220     case SPV_OPERAND_TYPE_DEBUG_BASE_TYPE_ATTRIBUTE_ENCODING:
221       return "debug base type encoding";
222     case SPV_OPERAND_TYPE_DEBUG_COMPOSITE_TYPE:
223       return "debug composite type";
224     case SPV_OPERAND_TYPE_DEBUG_TYPE_QUALIFIER:
225       return "debug type qualifier";
226     case SPV_OPERAND_TYPE_DEBUG_OPERATION:
227       return "debug operation";
228 
229     // The next values are for values returned from an instruction, not actually
230     // an operand.  So the specific strings don't matter.  But let's add them
231     // for completeness and ease of testing.
232     case SPV_OPERAND_TYPE_IMAGE_CHANNEL_ORDER:
233       return "image channel order";
234     case SPV_OPERAND_TYPE_IMAGE_CHANNEL_DATA_TYPE:
235       return "image channel data type";
236 
237     case SPV_OPERAND_TYPE_NONE:
238       return "NONE";
239     default:
240       assert(0 && "Unhandled operand type!");
241       break;
242   }
243   return "unknown";
244 }
245 
spvPushOperandTypes(const spv_operand_type_t * types,spv_operand_pattern_t * pattern)246 void spvPushOperandTypes(const spv_operand_type_t* types,
247                          spv_operand_pattern_t* pattern) {
248   const spv_operand_type_t* endTypes;
249   for (endTypes = types; *endTypes != SPV_OPERAND_TYPE_NONE; ++endTypes) {
250   }
251 
252   while (endTypes-- != types) {
253     pattern->push_back(*endTypes);
254   }
255 }
256 
spvPushOperandTypesForMask(spv_target_env env,const spv_operand_table operandTable,const spv_operand_type_t type,const uint32_t mask,spv_operand_pattern_t * pattern)257 void spvPushOperandTypesForMask(spv_target_env env,
258                                 const spv_operand_table operandTable,
259                                 const spv_operand_type_t type,
260                                 const uint32_t mask,
261                                 spv_operand_pattern_t* pattern) {
262   // Scan from highest bits to lowest bits because we will append in LIFO
263   // fashion, and we need the operands for lower order bits to be consumed first
264   for (uint32_t candidate_bit = (1u << 31u); candidate_bit;
265        candidate_bit >>= 1) {
266     if (candidate_bit & mask) {
267       spv_operand_desc entry = nullptr;
268       if (SPV_SUCCESS == spvOperandTableValueLookup(env, operandTable, type,
269                                                     candidate_bit, &entry)) {
270         spvPushOperandTypes(entry->operandTypes, pattern);
271       }
272     }
273   }
274 }
275 
spvOperandIsConcrete(spv_operand_type_t type)276 bool spvOperandIsConcrete(spv_operand_type_t type) {
277   if (spvIsIdType(type) || spvOperandIsConcreteMask(type)) {
278     return true;
279   }
280   switch (type) {
281     case SPV_OPERAND_TYPE_LITERAL_INTEGER:
282     case SPV_OPERAND_TYPE_EXTENSION_INSTRUCTION_NUMBER:
283     case SPV_OPERAND_TYPE_SPEC_CONSTANT_OP_NUMBER:
284     case SPV_OPERAND_TYPE_TYPED_LITERAL_NUMBER:
285     case SPV_OPERAND_TYPE_LITERAL_STRING:
286     case SPV_OPERAND_TYPE_SOURCE_LANGUAGE:
287     case SPV_OPERAND_TYPE_EXECUTION_MODEL:
288     case SPV_OPERAND_TYPE_ADDRESSING_MODEL:
289     case SPV_OPERAND_TYPE_MEMORY_MODEL:
290     case SPV_OPERAND_TYPE_EXECUTION_MODE:
291     case SPV_OPERAND_TYPE_STORAGE_CLASS:
292     case SPV_OPERAND_TYPE_DIMENSIONALITY:
293     case SPV_OPERAND_TYPE_SAMPLER_ADDRESSING_MODE:
294     case SPV_OPERAND_TYPE_SAMPLER_FILTER_MODE:
295     case SPV_OPERAND_TYPE_SAMPLER_IMAGE_FORMAT:
296     case SPV_OPERAND_TYPE_IMAGE_CHANNEL_ORDER:
297     case SPV_OPERAND_TYPE_IMAGE_CHANNEL_DATA_TYPE:
298     case SPV_OPERAND_TYPE_FP_ROUNDING_MODE:
299     case SPV_OPERAND_TYPE_LINKAGE_TYPE:
300     case SPV_OPERAND_TYPE_ACCESS_QUALIFIER:
301     case SPV_OPERAND_TYPE_FUNCTION_PARAMETER_ATTRIBUTE:
302     case SPV_OPERAND_TYPE_DECORATION:
303     case SPV_OPERAND_TYPE_BUILT_IN:
304     case SPV_OPERAND_TYPE_GROUP_OPERATION:
305     case SPV_OPERAND_TYPE_KERNEL_ENQ_FLAGS:
306     case SPV_OPERAND_TYPE_KERNEL_PROFILING_INFO:
307     case SPV_OPERAND_TYPE_CAPABILITY:
308     case SPV_OPERAND_TYPE_DEBUG_BASE_TYPE_ATTRIBUTE_ENCODING:
309     case SPV_OPERAND_TYPE_DEBUG_COMPOSITE_TYPE:
310     case SPV_OPERAND_TYPE_DEBUG_TYPE_QUALIFIER:
311     case SPV_OPERAND_TYPE_DEBUG_OPERATION:
312       return true;
313     default:
314       break;
315   }
316   return false;
317 }
318 
spvOperandIsConcreteMask(spv_operand_type_t type)319 bool spvOperandIsConcreteMask(spv_operand_type_t type) {
320   switch (type) {
321     case SPV_OPERAND_TYPE_IMAGE:
322     case SPV_OPERAND_TYPE_FP_FAST_MATH_MODE:
323     case SPV_OPERAND_TYPE_SELECTION_CONTROL:
324     case SPV_OPERAND_TYPE_LOOP_CONTROL:
325     case SPV_OPERAND_TYPE_FUNCTION_CONTROL:
326     case SPV_OPERAND_TYPE_MEMORY_ACCESS:
327     case SPV_OPERAND_TYPE_DEBUG_INFO_FLAGS:
328       return true;
329     default:
330       break;
331   }
332   return false;
333 }
334 
spvOperandIsOptional(spv_operand_type_t type)335 bool spvOperandIsOptional(spv_operand_type_t type) {
336   return SPV_OPERAND_TYPE_FIRST_OPTIONAL_TYPE <= type &&
337          type <= SPV_OPERAND_TYPE_LAST_OPTIONAL_TYPE;
338 }
339 
spvOperandIsVariable(spv_operand_type_t type)340 bool spvOperandIsVariable(spv_operand_type_t type) {
341   return SPV_OPERAND_TYPE_FIRST_VARIABLE_TYPE <= type &&
342          type <= SPV_OPERAND_TYPE_LAST_VARIABLE_TYPE;
343 }
344 
spvExpandOperandSequenceOnce(spv_operand_type_t type,spv_operand_pattern_t * pattern)345 bool spvExpandOperandSequenceOnce(spv_operand_type_t type,
346                                   spv_operand_pattern_t* pattern) {
347   switch (type) {
348     case SPV_OPERAND_TYPE_VARIABLE_ID:
349       pattern->push_back(type);
350       pattern->push_back(SPV_OPERAND_TYPE_OPTIONAL_ID);
351       return true;
352     case SPV_OPERAND_TYPE_VARIABLE_LITERAL_INTEGER:
353       pattern->push_back(type);
354       pattern->push_back(SPV_OPERAND_TYPE_OPTIONAL_LITERAL_INTEGER);
355       return true;
356     case SPV_OPERAND_TYPE_VARIABLE_LITERAL_INTEGER_ID:
357       // Represents Zero or more (Literal number, Id) pairs,
358       // where the literal number must be a scalar integer.
359       pattern->push_back(type);
360       pattern->push_back(SPV_OPERAND_TYPE_ID);
361       pattern->push_back(SPV_OPERAND_TYPE_OPTIONAL_TYPED_LITERAL_INTEGER);
362       return true;
363     case SPV_OPERAND_TYPE_VARIABLE_ID_LITERAL_INTEGER:
364       // Represents Zero or more (Id, Literal number) pairs.
365       pattern->push_back(type);
366       pattern->push_back(SPV_OPERAND_TYPE_LITERAL_INTEGER);
367       pattern->push_back(SPV_OPERAND_TYPE_OPTIONAL_ID);
368       return true;
369     default:
370       break;
371   }
372   return false;
373 }
374 
spvTakeFirstMatchableOperand(spv_operand_pattern_t * pattern)375 spv_operand_type_t spvTakeFirstMatchableOperand(
376     spv_operand_pattern_t* pattern) {
377   assert(!pattern->empty());
378   spv_operand_type_t result;
379   do {
380     result = pattern->back();
381     pattern->pop_back();
382   } while (spvExpandOperandSequenceOnce(result, pattern));
383   return result;
384 }
385 
spvAlternatePatternFollowingImmediate(const spv_operand_pattern_t & pattern)386 spv_operand_pattern_t spvAlternatePatternFollowingImmediate(
387     const spv_operand_pattern_t& pattern) {
388   auto it =
389       std::find(pattern.crbegin(), pattern.crend(), SPV_OPERAND_TYPE_RESULT_ID);
390   if (it != pattern.crend()) {
391     spv_operand_pattern_t alternatePattern(it - pattern.crbegin() + 2,
392                                            SPV_OPERAND_TYPE_OPTIONAL_CIV);
393     alternatePattern[1] = SPV_OPERAND_TYPE_RESULT_ID;
394     return alternatePattern;
395   }
396 
397   // No result-id found, so just expect CIVs.
398   return {SPV_OPERAND_TYPE_OPTIONAL_CIV};
399 }
400 
spvIsIdType(spv_operand_type_t type)401 bool spvIsIdType(spv_operand_type_t type) {
402   switch (type) {
403     case SPV_OPERAND_TYPE_ID:
404     case SPV_OPERAND_TYPE_TYPE_ID:
405     case SPV_OPERAND_TYPE_RESULT_ID:
406     case SPV_OPERAND_TYPE_MEMORY_SEMANTICS_ID:
407     case SPV_OPERAND_TYPE_SCOPE_ID:
408       return true;
409     default:
410       return false;
411   }
412 }
413 
spvIsInIdType(spv_operand_type_t type)414 bool spvIsInIdType(spv_operand_type_t type) {
415   if (!spvIsIdType(type)) {
416     // If it is not an ID it cannot be an input ID.
417     return false;
418   }
419   switch (type) {
420     // Blacklist non-input IDs.
421     case SPV_OPERAND_TYPE_TYPE_ID:
422     case SPV_OPERAND_TYPE_RESULT_ID:
423       return false;
424     default:
425       return true;
426   }
427 }
428 
spvOperandCanBeForwardDeclaredFunction(SpvOp opcode)429 std::function<bool(unsigned)> spvOperandCanBeForwardDeclaredFunction(
430     SpvOp opcode) {
431   std::function<bool(unsigned index)> out;
432   switch (opcode) {
433     case SpvOpExecutionMode:
434     case SpvOpExecutionModeId:
435     case SpvOpEntryPoint:
436     case SpvOpName:
437     case SpvOpMemberName:
438     case SpvOpSelectionMerge:
439     case SpvOpDecorate:
440     case SpvOpMemberDecorate:
441     case SpvOpDecorateId:
442     case SpvOpDecorateStringGOOGLE:
443     case SpvOpMemberDecorateStringGOOGLE:
444     case SpvOpTypeStruct:
445     case SpvOpBranch:
446     case SpvOpLoopMerge:
447       out = [](unsigned) { return true; };
448       break;
449     case SpvOpGroupDecorate:
450     case SpvOpGroupMemberDecorate:
451     case SpvOpBranchConditional:
452     case SpvOpSwitch:
453       out = [](unsigned index) { return index != 0; };
454       break;
455 
456     case SpvOpFunctionCall:
457       // The Function parameter.
458       out = [](unsigned index) { return index == 2; };
459       break;
460 
461     case SpvOpPhi:
462       out = [](unsigned index) { return index > 1; };
463       break;
464 
465     case SpvOpEnqueueKernel:
466       // The Invoke parameter.
467       out = [](unsigned index) { return index == 8; };
468       break;
469 
470     case SpvOpGetKernelNDrangeSubGroupCount:
471     case SpvOpGetKernelNDrangeMaxSubGroupSize:
472       // The Invoke parameter.
473       out = [](unsigned index) { return index == 3; };
474       break;
475 
476     case SpvOpGetKernelWorkGroupSize:
477     case SpvOpGetKernelPreferredWorkGroupSizeMultiple:
478       // The Invoke parameter.
479       out = [](unsigned index) { return index == 2; };
480       break;
481     case SpvOpTypeForwardPointer:
482       out = [](unsigned index) { return index == 0; };
483       break;
484     default:
485       out = [](unsigned) { return false; };
486       break;
487   }
488   return out;
489 }
490