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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/text_handler.h"
16 
17 #include <algorithm>
18 #include <cassert>
19 #include <cstdlib>
20 #include <cstring>
21 #include <tuple>
22 
23 #include "source/assembly_grammar.h"
24 #include "source/binary.h"
25 #include "source/ext_inst.h"
26 #include "source/instruction.h"
27 #include "source/opcode.h"
28 #include "source/text.h"
29 #include "source/util/bitutils.h"
30 #include "source/util/hex_float.h"
31 #include "source/util/parse_number.h"
32 
33 namespace spvtools {
34 namespace {
35 
36 // Advances |text| to the start of the next line and writes the new position to
37 // |position|.
advanceLine(spv_text text,spv_position position)38 spv_result_t advanceLine(spv_text text, spv_position position) {
39   while (true) {
40     if (position->index >= text->length) return SPV_END_OF_STREAM;
41     switch (text->str[position->index]) {
42       case '\0':
43         return SPV_END_OF_STREAM;
44       case '\n':
45         position->column = 0;
46         position->line++;
47         position->index++;
48         return SPV_SUCCESS;
49       default:
50         position->column++;
51         position->index++;
52         break;
53     }
54   }
55 }
56 
57 // Advances |text| to first non white space character and writes the new
58 // position to |position|.
59 // If a null terminator is found during the text advance, SPV_END_OF_STREAM is
60 // returned, SPV_SUCCESS otherwise. No error checking is performed on the
61 // parameters, its the users responsibility to ensure these are non null.
advance(spv_text text,spv_position position)62 spv_result_t advance(spv_text text, spv_position position) {
63   // NOTE: Consume white space, otherwise don't advance.
64   if (position->index >= text->length) return SPV_END_OF_STREAM;
65   switch (text->str[position->index]) {
66     case '\0':
67       return SPV_END_OF_STREAM;
68     case ';':
69       if (spv_result_t error = advanceLine(text, position)) return error;
70       return advance(text, position);
71     case ' ':
72     case '\t':
73     case '\r':
74       position->column++;
75       position->index++;
76       return advance(text, position);
77     case '\n':
78       position->column = 0;
79       position->line++;
80       position->index++;
81       return advance(text, position);
82     default:
83       break;
84   }
85   return SPV_SUCCESS;
86 }
87 
88 // Fetches the next word from the given text stream starting from the given
89 // *position. On success, writes the decoded word into *word and updates
90 // *position to the location past the returned word.
91 //
92 // A word ends at the next comment or whitespace.  However, double-quoted
93 // strings remain intact, and a backslash always escapes the next character.
getWord(spv_text text,spv_position position,std::string * word)94 spv_result_t getWord(spv_text text, spv_position position, std::string* word) {
95   if (!text->str || !text->length) return SPV_ERROR_INVALID_TEXT;
96   if (!position) return SPV_ERROR_INVALID_POINTER;
97 
98   const size_t start_index = position->index;
99 
100   bool quoting = false;
101   bool escaping = false;
102 
103   // NOTE: Assumes first character is not white space!
104   while (true) {
105     if (position->index >= text->length) {
106       word->assign(text->str + start_index, text->str + position->index);
107       return SPV_SUCCESS;
108     }
109     const char ch = text->str[position->index];
110     if (ch == '\\') {
111       escaping = !escaping;
112     } else {
113       switch (ch) {
114         case '"':
115           if (!escaping) quoting = !quoting;
116           break;
117         case ' ':
118         case ';':
119         case '\t':
120         case '\n':
121         case '\r':
122           if (escaping || quoting) break;
123           word->assign(text->str + start_index, text->str + position->index);
124           return SPV_SUCCESS;
125         case '\0': {  // NOTE: End of word found!
126           word->assign(text->str + start_index, text->str + position->index);
127           return SPV_SUCCESS;
128         }
129         default:
130           break;
131       }
132       escaping = false;
133     }
134 
135     position->column++;
136     position->index++;
137   }
138 }
139 
140 // Returns true if the characters in the text as position represent
141 // the start of an Opcode.
startsWithOp(spv_text text,spv_position position)142 bool startsWithOp(spv_text text, spv_position position) {
143   if (text->length < position->index + 3) return false;
144   char ch0 = text->str[position->index];
145   char ch1 = text->str[position->index + 1];
146   char ch2 = text->str[position->index + 2];
147   return ('O' == ch0 && 'p' == ch1 && ('A' <= ch2 && ch2 <= 'Z'));
148 }
149 
150 }  // namespace
151 
152 const IdType kUnknownType = {0, false, IdTypeClass::kBottom};
153 
154 // TODO(dneto): Reorder AssemblyContext definitions to match declaration order.
155 
156 // This represents all of the data that is only valid for the duration of
157 // a single compilation.
spvNamedIdAssignOrGet(const char * textValue)158 uint32_t AssemblyContext::spvNamedIdAssignOrGet(const char* textValue) {
159   if (!ids_to_preserve_.empty()) {
160     uint32_t id = 0;
161     if (spvtools::utils::ParseNumber(textValue, &id)) {
162       if (ids_to_preserve_.find(id) != ids_to_preserve_.end()) {
163         bound_ = std::max(bound_, id + 1);
164         return id;
165       }
166     }
167   }
168 
169   const auto it = named_ids_.find(textValue);
170   if (it == named_ids_.end()) {
171     uint32_t id = next_id_++;
172     if (!ids_to_preserve_.empty()) {
173       while (ids_to_preserve_.find(id) != ids_to_preserve_.end()) {
174         id = next_id_++;
175       }
176     }
177 
178     named_ids_.emplace(textValue, id);
179     bound_ = std::max(bound_, id + 1);
180     return id;
181   }
182 
183   return it->second;
184 }
185 
getBound() const186 uint32_t AssemblyContext::getBound() const { return bound_; }
187 
advance()188 spv_result_t AssemblyContext::advance() {
189   return spvtools::advance(text_, &current_position_);
190 }
191 
getWord(std::string * word,spv_position next_position)192 spv_result_t AssemblyContext::getWord(std::string* word,
193                                       spv_position next_position) {
194   *next_position = current_position_;
195   return spvtools::getWord(text_, next_position, word);
196 }
197 
startsWithOp()198 bool AssemblyContext::startsWithOp() {
199   return spvtools::startsWithOp(text_, &current_position_);
200 }
201 
isStartOfNewInst()202 bool AssemblyContext::isStartOfNewInst() {
203   spv_position_t pos = current_position_;
204   if (spvtools::advance(text_, &pos)) return false;
205   if (spvtools::startsWithOp(text_, &pos)) return true;
206 
207   std::string word;
208   pos = current_position_;
209   if (spvtools::getWord(text_, &pos, &word)) return false;
210   if ('%' != word.front()) return false;
211 
212   if (spvtools::advance(text_, &pos)) return false;
213   if (spvtools::getWord(text_, &pos, &word)) return false;
214   if ("=" != word) return false;
215 
216   if (spvtools::advance(text_, &pos)) return false;
217   if (spvtools::startsWithOp(text_, &pos)) return true;
218   return false;
219 }
220 
peek() const221 char AssemblyContext::peek() const {
222   return text_->str[current_position_.index];
223 }
224 
hasText() const225 bool AssemblyContext::hasText() const {
226   return text_->length > current_position_.index;
227 }
228 
seekForward(uint32_t size)229 void AssemblyContext::seekForward(uint32_t size) {
230   current_position_.index += size;
231   current_position_.column += size;
232 }
233 
binaryEncodeU32(const uint32_t value,spv_instruction_t * pInst)234 spv_result_t AssemblyContext::binaryEncodeU32(const uint32_t value,
235                                               spv_instruction_t* pInst) {
236   pInst->words.insert(pInst->words.end(), value);
237   return SPV_SUCCESS;
238 }
239 
binaryEncodeNumericLiteral(const char * val,spv_result_t error_code,const IdType & type,spv_instruction_t * pInst)240 spv_result_t AssemblyContext::binaryEncodeNumericLiteral(
241     const char* val, spv_result_t error_code, const IdType& type,
242     spv_instruction_t* pInst) {
243   using spvtools::utils::EncodeNumberStatus;
244   // Populate the NumberType from the IdType for parsing.
245   spvtools::utils::NumberType number_type;
246   switch (type.type_class) {
247     case IdTypeClass::kOtherType:
248       return diagnostic(SPV_ERROR_INTERNAL)
249              << "Unexpected numeric literal type";
250     case IdTypeClass::kScalarIntegerType:
251       if (type.isSigned) {
252         number_type = {type.bitwidth, SPV_NUMBER_SIGNED_INT};
253       } else {
254         number_type = {type.bitwidth, SPV_NUMBER_UNSIGNED_INT};
255       }
256       break;
257     case IdTypeClass::kScalarFloatType:
258       number_type = {type.bitwidth, SPV_NUMBER_FLOATING};
259       break;
260     case IdTypeClass::kBottom:
261       // kBottom means the type is unknown and we need to infer the type before
262       // parsing the number. The rule is: If there is a decimal point, treat
263       // the value as a floating point value, otherwise a integer value, then
264       // if the first char of the integer text is '-', treat the integer as a
265       // signed integer, otherwise an unsigned integer.
266       uint32_t bitwidth = static_cast<uint32_t>(assumedBitWidth(type));
267       if (strchr(val, '.')) {
268         number_type = {bitwidth, SPV_NUMBER_FLOATING};
269       } else if (type.isSigned || val[0] == '-') {
270         number_type = {bitwidth, SPV_NUMBER_SIGNED_INT};
271       } else {
272         number_type = {bitwidth, SPV_NUMBER_UNSIGNED_INT};
273       }
274       break;
275   }
276 
277   std::string error_msg;
278   EncodeNumberStatus parse_status = ParseAndEncodeNumber(
279       val, number_type,
280       [this, pInst](uint32_t d) { this->binaryEncodeU32(d, pInst); },
281       &error_msg);
282   switch (parse_status) {
283     case EncodeNumberStatus::kSuccess:
284       return SPV_SUCCESS;
285     case EncodeNumberStatus::kInvalidText:
286       return diagnostic(error_code) << error_msg;
287     case EncodeNumberStatus::kUnsupported:
288       return diagnostic(SPV_ERROR_INTERNAL) << error_msg;
289     case EncodeNumberStatus::kInvalidUsage:
290       return diagnostic(SPV_ERROR_INVALID_TEXT) << error_msg;
291   }
292   // This line is not reachable, only added to satisfy the compiler.
293   return diagnostic(SPV_ERROR_INTERNAL)
294          << "Unexpected result code from ParseAndEncodeNumber()";
295 }
296 
binaryEncodeString(const char * value,spv_instruction_t * pInst)297 spv_result_t AssemblyContext::binaryEncodeString(const char* value,
298                                                  spv_instruction_t* pInst) {
299   const size_t length = strlen(value);
300   const size_t wordCount = (length / 4) + 1;
301   const size_t oldWordCount = pInst->words.size();
302   const size_t newWordCount = oldWordCount + wordCount;
303 
304   // TODO(dneto): We can just defer this check until later.
305   if (newWordCount > SPV_LIMIT_INSTRUCTION_WORD_COUNT_MAX) {
306     return diagnostic() << "Instruction too long: more than "
307                         << SPV_LIMIT_INSTRUCTION_WORD_COUNT_MAX << " words.";
308   }
309 
310   pInst->words.resize(newWordCount);
311 
312   // Make sure all the bytes in the last word are 0, in case we only
313   // write a partial word at the end.
314   pInst->words.back() = 0;
315 
316   char* dest = (char*)&pInst->words[oldWordCount];
317   strncpy(dest, value, length + 1);
318 
319   return SPV_SUCCESS;
320 }
321 
recordTypeDefinition(const spv_instruction_t * pInst)322 spv_result_t AssemblyContext::recordTypeDefinition(
323     const spv_instruction_t* pInst) {
324   uint32_t value = pInst->words[1];
325   if (types_.find(value) != types_.end()) {
326     return diagnostic() << "Value " << value
327                         << " has already been used to generate a type";
328   }
329 
330   if (pInst->opcode == SpvOpTypeInt) {
331     if (pInst->words.size() != 4)
332       return diagnostic() << "Invalid OpTypeInt instruction";
333     types_[value] = {pInst->words[2], pInst->words[3] != 0,
334                      IdTypeClass::kScalarIntegerType};
335   } else if (pInst->opcode == SpvOpTypeFloat) {
336     if (pInst->words.size() != 3)
337       return diagnostic() << "Invalid OpTypeFloat instruction";
338     types_[value] = {pInst->words[2], false, IdTypeClass::kScalarFloatType};
339   } else {
340     types_[value] = {0, false, IdTypeClass::kOtherType};
341   }
342   return SPV_SUCCESS;
343 }
344 
getTypeOfTypeGeneratingValue(uint32_t value) const345 IdType AssemblyContext::getTypeOfTypeGeneratingValue(uint32_t value) const {
346   auto type = types_.find(value);
347   if (type == types_.end()) {
348     return kUnknownType;
349   }
350   return std::get<1>(*type);
351 }
352 
getTypeOfValueInstruction(uint32_t value) const353 IdType AssemblyContext::getTypeOfValueInstruction(uint32_t value) const {
354   auto type_value = value_types_.find(value);
355   if (type_value == value_types_.end()) {
356     return {0, false, IdTypeClass::kBottom};
357   }
358   return getTypeOfTypeGeneratingValue(std::get<1>(*type_value));
359 }
360 
recordTypeIdForValue(uint32_t value,uint32_t type)361 spv_result_t AssemblyContext::recordTypeIdForValue(uint32_t value,
362                                                    uint32_t type) {
363   bool successfully_inserted = false;
364   std::tie(std::ignore, successfully_inserted) =
365       value_types_.insert(std::make_pair(value, type));
366   if (!successfully_inserted)
367     return diagnostic() << "Value is being defined a second time";
368   return SPV_SUCCESS;
369 }
370 
recordIdAsExtInstImport(uint32_t id,spv_ext_inst_type_t type)371 spv_result_t AssemblyContext::recordIdAsExtInstImport(
372     uint32_t id, spv_ext_inst_type_t type) {
373   bool successfully_inserted = false;
374   std::tie(std::ignore, successfully_inserted) =
375       import_id_to_ext_inst_type_.insert(std::make_pair(id, type));
376   if (!successfully_inserted)
377     return diagnostic() << "Import Id is being defined a second time";
378   return SPV_SUCCESS;
379 }
380 
getExtInstTypeForId(uint32_t id) const381 spv_ext_inst_type_t AssemblyContext::getExtInstTypeForId(uint32_t id) const {
382   auto type = import_id_to_ext_inst_type_.find(id);
383   if (type == import_id_to_ext_inst_type_.end()) {
384     return SPV_EXT_INST_TYPE_NONE;
385   }
386   return std::get<1>(*type);
387 }
388 
GetNumericIds() const389 std::set<uint32_t> AssemblyContext::GetNumericIds() const {
390   std::set<uint32_t> ids;
391   for (const auto& kv : named_ids_) {
392     uint32_t id;
393     if (spvtools::utils::ParseNumber(kv.first.c_str(), &id)) ids.insert(id);
394   }
395   return ids;
396 }
397 
398 }  // namespace spvtools
399