Merge "Log SPIR-V assembly source."
[platform/upstream/VK-GL-CTS.git] / executor / xeTestResultParser.cpp
1 /*-------------------------------------------------------------------------
2  * drawElements Quality Program Test Executor
3  * ------------------------------------------
4  *
5  * Copyright 2014 The Android Open Source Project
6  *
7  * Licensed under the Apache License, Version 2.0 (the "License");
8  * you may not use this file except in compliance with the License.
9  * You may obtain a copy of the License at
10  *
11  *      http://www.apache.org/licenses/LICENSE-2.0
12  *
13  * Unless required by applicable law or agreed to in writing, software
14  * distributed under the License is distributed on an "AS IS" BASIS,
15  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
16  * See the License for the specific language governing permissions and
17  * limitations under the License.
18  *
19  *//*!
20  * \file
21  * \brief Test case result parser.
22  *//*--------------------------------------------------------------------*/
23
24 #include "xeTestResultParser.hpp"
25 #include "xeTestCaseResult.hpp"
26 #include "xeBatchResult.hpp"
27 #include "deString.h"
28 #include "deInt32.h"
29
30 #include <sstream>
31 #include <stdlib.h>
32
33 using std::string;
34 using std::vector;
35
36 namespace xe
37 {
38
39 static inline int toInt (const char* str)
40 {
41         return atoi(str);
42 }
43
44 static inline double toDouble (const char* str)
45 {
46         return atof(str);
47 }
48
49 static inline deInt64 toInt64 (const char* str)
50 {
51         std::istringstream      s       (str);
52         deInt64                         val;
53
54         s >> val;
55
56         return val;
57 }
58
59 static inline bool toBool (const char* str)
60 {
61         return deStringEqual(str, "OK") || deStringEqual(str, "True");
62 }
63
64 static const char* stripLeadingWhitespace (const char* str)
65 {
66         int whitespaceCount = 0;
67
68         while (str[whitespaceCount]     != 0    &&
69                    (str[whitespaceCount] == ' '         ||
70                         str[whitespaceCount] == '\t'    ||
71                         str[whitespaceCount] == '\r'    ||
72                         str[whitespaceCount] == '\n'))
73                 whitespaceCount += 1;
74
75         return str + whitespaceCount;
76 }
77
78 struct EnumMapEntry
79 {
80         deUint32                hash;
81         const char*             name;
82         int                             value;
83 };
84
85 static const EnumMapEntry s_statusCodeMap[] =
86 {
87         { 0x7c8a99bc,   "Pass",                                 TESTSTATUSCODE_PASS                                             },
88         { 0x7c851ca1,   "Fail",                                 TESTSTATUSCODE_FAIL                                             },
89         { 0x10ecd324,   "QualityWarning",               TESTSTATUSCODE_QUALITY_WARNING                  },
90         { 0x341ae835,   "CompatibilityWarning", TESTSTATUSCODE_COMPATIBILITY_WARNING    },
91         { 0x058acbca,   "Pending",                              TESTSTATUSCODE_PENDING                                  },
92         { 0xc4d74b26,   "Running",                              TESTSTATUSCODE_RUNNING                                  },
93         { 0x6409f93c,   "NotSupported",                 TESTSTATUSCODE_NOT_SUPPORTED                    },
94         { 0xfa5a9ab7,   "ResourceError",                TESTSTATUSCODE_RESOURCE_ERROR                   },
95         { 0xad6793ec,   "InternalError",                TESTSTATUSCODE_INTERNAL_ERROR                   },
96         { 0x838f3034,   "Canceled",                             TESTSTATUSCODE_CANCELED                                 },
97         { 0x42b6efac,   "Timeout",                              TESTSTATUSCODE_TIMEOUT                                  },
98         { 0x0cfb98f6,   "Crash",                                TESTSTATUSCODE_CRASH                                    },
99         { 0xe326e01d,   "Disabled",                             TESTSTATUSCODE_DISABLED                                 },
100         { 0x77061af2,   "Terminated",                   TESTSTATUSCODE_TERMINATED                               }
101 };
102
103 static const EnumMapEntry s_resultItemMap[] =
104 {
105         { 0xce8ac2e4,   "Result",                               ri::TYPE_RESULT                 },
106         { 0x7c8cdcea,   "Text",                                 ri::TYPE_TEXT                   },
107         { 0xc6540c6e,   "Number",                               ri::TYPE_NUMBER                 },
108         { 0x0d656c88,   "Image",                                ri::TYPE_IMAGE                  },
109         { 0x8ac9ee14,   "ImageSet",                             ri::TYPE_IMAGESET               },
110         { 0x1181fa5a,   "VertexShader",                 ri::TYPE_SHADER                 },
111         { 0xa93daef0,   "FragmentShader",               ri::TYPE_SHADER                 },
112         { 0x8f066128,   "GeometryShader",               ri::TYPE_SHADER                 },
113         { 0x235a931c,   "TessControlShader",    ri::TYPE_SHADER                 },
114         { 0xa1bf7153,   "TessEvaluationShader", ri::TYPE_SHADER                 },
115         { 0x6c1415d9,   "ComputeShader",                ri::TYPE_SHADER                 },
116         { 0x72863a54,   "ShaderProgram",                ri::TYPE_SHADERPROGRAM  },
117         { 0xb4efc08d,   "ShaderSource",                 ri::TYPE_SHADERSOURCE   },
118         { 0xaee4380a,   "SpirVAssemblySource",  ri::TYPE_SPIRVSOURCE    },
119         { 0xff265913,   "InfoLog",                              ri::TYPE_INFOLOG                },
120         { 0x84159b73,   "EglConfig",                    ri::TYPE_EGLCONFIG              },
121         { 0xdd34391f,   "EglConfigSet",                 ri::TYPE_EGLCONFIGSET   },
122         { 0xebbb3aba,   "Section",                              ri::TYPE_SECTION                },
123         { 0xa0f15677,   "KernelSource",                 ri::TYPE_KERNELSOURCE   },
124         { 0x1ee9083a,   "CompileInfo",                  ri::TYPE_COMPILEINFO    },
125         { 0xf1004023,   "SampleList",                   ri::TYPE_SAMPLELIST             },
126         { 0xf0feae93,   "SampleInfo",                   ri::TYPE_SAMPLEINFO             },
127         { 0x2aa6f14e,   "ValueInfo",                    ri::TYPE_VALUEINFO              },
128         { 0xd09429e7,   "Sample",                               ri::TYPE_SAMPLE                 },
129         { 0x0e4a4722,   "Value",                                ri::TYPE_SAMPLEVALUE    },
130 };
131
132 static const EnumMapEntry s_imageFormatMap[] =
133 {
134         { 0xcc4ffac8,   "RGB888",               ri::Image::FORMAT_RGB888        },
135         { 0x20dcb0c1,   "RGBA8888",             ri::Image::FORMAT_RGBA8888      }
136 };
137
138 static const EnumMapEntry s_compressionMap[] =
139 {
140         { 0x7c89bbd5,   "None",                 ri::Image::COMPRESSION_NONE     },
141         { 0x0b88118a,   "PNG",                  ri::Image::COMPRESSION_PNG      }
142 };
143
144 static const EnumMapEntry s_shaderTypeFromTagMap[] =
145 {
146         { 0x1181fa5a,   "VertexShader",                 ri::Shader::SHADERTYPE_VERTEX                   },
147         { 0xa93daef0,   "FragmentShader",               ri::Shader::SHADERTYPE_FRAGMENT                 },
148         { 0x8f066128,   "GeometryShader",               ri::Shader::SHADERTYPE_GEOMETRY                 },
149         { 0x235a931c,   "TessControlShader",    ri::Shader::SHADERTYPE_TESS_CONTROL             },
150         { 0xa1bf7153,   "TessEvaluationShader", ri::Shader::SHADERTYPE_TESS_EVALUATION  },
151         { 0x6c1415d9,   "ComputeShader",                ri::Shader::SHADERTYPE_COMPUTE                  },
152 };
153
154 static const EnumMapEntry s_testTypeMap[] =
155 {
156         { 0x7fa80959,   "SelfValidate", TESTCASETYPE_SELF_VALIDATE      },
157         { 0xdb797567,   "Capability",   TESTCASETYPE_CAPABILITY         },
158         { 0x2ca3ec10,   "Accuracy",             TESTCASETYPE_ACCURACY           },
159         { 0xa48ac277,   "Performance",  TESTCASETYPE_PERFORMANCE        }
160 };
161
162 static const EnumMapEntry s_logVersionMap[] =
163 {
164         { 0x0b7dac93,   "0.2.0",                TESTLOGVERSION_0_2_0    },
165         { 0x0b7db0d4,   "0.3.0",                TESTLOGVERSION_0_3_0    },
166         { 0x0b7db0d5,   "0.3.1",                TESTLOGVERSION_0_3_1    },
167         { 0x0b7db0d6,   "0.3.2",                TESTLOGVERSION_0_3_2    },
168         { 0x0b7db0d7,   "0.3.3",                TESTLOGVERSION_0_3_3    }
169 };
170
171 static const EnumMapEntry s_sampleValueTagMap[] =
172 {
173         { 0xddf2d0d1,   "Predictor",    ri::ValueInfo::VALUETAG_PREDICTOR       },
174         { 0x9bee2c34,   "Response",             ri::ValueInfo::VALUETAG_RESPONSE        },
175 };
176
177 #if defined(DE_DEBUG)
178 static void printHashes (const char* name, const EnumMapEntry* entries, int numEntries)
179 {
180         printf("%s:\n", name);
181
182         for (int ndx = 0; ndx < numEntries; ndx++)
183                 printf("0x%08x\t%s\n", deStringHash(entries[ndx].name), entries[ndx].name);
184
185         printf("\n");
186 }
187
188 #define PRINT_HASHES(MAP) printHashes(#MAP, MAP, DE_LENGTH_OF_ARRAY(MAP))
189
190 void TestResultParser_printHashes (void)
191 {
192         PRINT_HASHES(s_statusCodeMap);
193         PRINT_HASHES(s_resultItemMap);
194         PRINT_HASHES(s_imageFormatMap);
195         PRINT_HASHES(s_compressionMap);
196         PRINT_HASHES(s_shaderTypeFromTagMap);
197         PRINT_HASHES(s_testTypeMap);
198         PRINT_HASHES(s_logVersionMap);
199         PRINT_HASHES(s_sampleValueTagMap);
200 }
201 #endif
202
203 static inline int getEnumValue (const char* enumName, const EnumMapEntry* entries, int numEntries, const char* name)
204 {
205         deUint32 hash = deStringHash(name);
206
207         for (int ndx = 0; ndx < numEntries; ndx++)
208         {
209                 if (entries[ndx].hash == hash && deStringEqual(entries[ndx].name, name))
210                         return entries[ndx].value;
211         }
212
213         throw TestResultParseError(string("Could not map '") + name + "' to " + enumName);
214 }
215
216 TestStatusCode getTestStatusCode (const char* statusCode)
217 {
218         return (TestStatusCode)getEnumValue("status code", s_statusCodeMap, DE_LENGTH_OF_ARRAY(s_statusCodeMap), statusCode);
219 }
220
221 static ri::Type getResultItemType (const char* elemName)
222 {
223         return (ri::Type)getEnumValue("result item type", s_resultItemMap, DE_LENGTH_OF_ARRAY(s_resultItemMap), elemName);
224 }
225
226 static ri::Image::Format getImageFormat (const char* imageFormat)
227 {
228         return (ri::Image::Format)getEnumValue("image format", s_imageFormatMap, DE_LENGTH_OF_ARRAY(s_imageFormatMap), imageFormat);
229 }
230
231 static ri::Image::Compression getImageCompression (const char* compression)
232 {
233         return (ri::Image::Compression)getEnumValue("image compression", s_compressionMap, DE_LENGTH_OF_ARRAY(s_compressionMap), compression);
234 }
235
236 static ri::Shader::ShaderType getShaderTypeFromTagName (const char* shaderType)
237 {
238         return (ri::Shader::ShaderType)getEnumValue("shader type", s_shaderTypeFromTagMap, DE_LENGTH_OF_ARRAY(s_shaderTypeFromTagMap), shaderType);
239 }
240
241 static TestCaseType getTestCaseType (const char* caseType)
242 {
243         return (TestCaseType)getEnumValue("test case type", s_testTypeMap, DE_LENGTH_OF_ARRAY(s_testTypeMap), caseType);
244 }
245
246 static TestLogVersion getTestLogVersion (const char* logVersion)
247 {
248         return (TestLogVersion)getEnumValue("test log version", s_logVersionMap, DE_LENGTH_OF_ARRAY(s_logVersionMap), logVersion);
249 }
250
251 static ri::ValueInfo::ValueTag getSampleValueTag (const char* tag)
252 {
253         return (ri::ValueInfo::ValueTag)getEnumValue("sample value tag", s_sampleValueTagMap, DE_LENGTH_OF_ARRAY(s_sampleValueTagMap), tag);
254 }
255
256 static TestCaseType getTestCaseTypeFromPath (const char* casePath)
257 {
258         if (deStringBeginsWith(casePath, "dEQP-GLES2."))
259         {
260                 const char* group = casePath+11;
261                 if (deStringBeginsWith(group, "capability."))
262                         return TESTCASETYPE_CAPABILITY;
263                 else if (deStringBeginsWith(group, "accuracy."))
264                         return TESTCASETYPE_ACCURACY;
265                 else if (deStringBeginsWith(group, "performance."))
266                         return TESTCASETYPE_PERFORMANCE;
267         }
268
269         return TESTCASETYPE_SELF_VALIDATE;
270 }
271
272 static ri::NumericValue getNumericValue (const std::string& value)
273 {
274         const bool      isFloat         = value.find('.') != std::string::npos || value.find('e') != std::string::npos;
275
276         if (isFloat)
277         {
278                 const double num = toDouble(stripLeadingWhitespace(value.c_str()));
279                 return ri::NumericValue(num);
280         }
281         else
282         {
283                 const deInt64 num = toInt64(stripLeadingWhitespace(value.c_str()));
284                 return ri::NumericValue(num);
285         }
286 }
287
288 TestResultParser::TestResultParser (void)
289         : m_result                              (DE_NULL)
290         , m_state                               (STATE_NOT_INITIALIZED)
291         , m_logVersion                  (TESTLOGVERSION_LAST)
292         , m_curItemList                 (DE_NULL)
293         , m_base64DecodeOffset  (0)
294 {
295 }
296
297 TestResultParser::~TestResultParser (void)
298 {
299 }
300
301 void TestResultParser::clear (void)
302 {
303         m_xmlParser.clear();
304         m_itemStack.clear();
305
306         m_result                                = DE_NULL;
307         m_state                                 = STATE_NOT_INITIALIZED;
308         m_logVersion                    = TESTLOGVERSION_LAST;
309         m_curItemList                   = DE_NULL;
310         m_base64DecodeOffset    = 0;
311         m_curNumValue.clear();
312 }
313
314 void TestResultParser::init (TestCaseResult* dstResult)
315 {
316         clear();
317         m_result                = dstResult;
318         m_state                 = STATE_INITIALIZED;
319         m_curItemList   = &dstResult->resultItems;
320 }
321
322 TestResultParser::ParseResult TestResultParser::parse (const deUint8* bytes, int numBytes)
323 {
324         DE_ASSERT(m_result && m_state != STATE_NOT_INITIALIZED);
325
326         try
327         {
328                 bool resultChanged = false;
329
330                 m_xmlParser.feed(bytes, numBytes);
331
332                 for (;;)
333                 {
334                         xml::Element curElement = m_xmlParser.getElement();
335
336                         if (curElement == xml::ELEMENT_INCOMPLETE       ||
337                                 curElement == xml::ELEMENT_END_OF_STRING)
338                                 break;
339
340                         switch (curElement)
341                         {
342                                 case xml::ELEMENT_START:        handleElementStart();           break;
343                                 case xml::ELEMENT_END:          handleElementEnd();                     break;
344                                 case xml::ELEMENT_DATA:         handleData();                           break;
345
346                                 default:
347                                         DE_ASSERT(false);
348                         }
349
350                         resultChanged = true;
351                         m_xmlParser.advance();
352                 }
353
354                 if (m_xmlParser.getElement() == xml::ELEMENT_END_OF_STRING)
355                 {
356                         if (m_state != STATE_TEST_CASE_RESULT_ENDED)
357                                 throw TestResultParseError("Unexpected end of log data");
358
359                         return PARSERESULT_COMPLETE;
360                 }
361                 else
362                         return resultChanged ? PARSERESULT_CHANGED
363                                                                  : PARSERESULT_NOT_CHANGED;
364         }
365         catch (const TestResultParseError& e)
366         {
367                 // Set error code to result.
368                 m_result->statusCode    = TESTSTATUSCODE_INTERNAL_ERROR;
369                 m_result->statusDetails = e.what();
370
371                 return PARSERESULT_ERROR;
372         }
373         catch (const xml::ParseError& e)
374         {
375                 // Set error code to result.
376                 m_result->statusCode    = TESTSTATUSCODE_INTERNAL_ERROR;
377                 m_result->statusDetails = e.what();
378
379                 return PARSERESULT_ERROR;
380         }
381 }
382
383 const char* TestResultParser::getAttribute (const char* name)
384 {
385         if (!m_xmlParser.hasAttribute(name))
386                 throw TestResultParseError(string("Missing attribute '") + name + "' in <" + m_xmlParser.getElementName() + ">");
387
388         return m_xmlParser.getAttribute(name);
389 }
390
391 ri::Item* TestResultParser::getCurrentItem (void)
392 {
393         return !m_itemStack.empty() ? m_itemStack.back() : DE_NULL;
394 }
395
396 ri::List* TestResultParser::getCurrentItemList (void)
397 {
398         DE_ASSERT(m_curItemList);
399         return m_curItemList;
400 }
401
402 void TestResultParser::updateCurrentItemList (void)
403 {
404         m_curItemList = DE_NULL;
405
406         for (vector<ri::Item*>::reverse_iterator i = m_itemStack.rbegin(); i != m_itemStack.rend(); i++)
407         {
408                 ri::Item*       item    = *i;
409                 ri::Type        type    = item->getType();
410
411                 if (type == ri::TYPE_IMAGESET)
412                         m_curItemList = &static_cast<ri::ImageSet*>(item)->images;
413                 else if (type == ri::TYPE_SECTION)
414                         m_curItemList = &static_cast<ri::Section*>(item)->items;
415                 else if (type == ri::TYPE_EGLCONFIGSET)
416                         m_curItemList = &static_cast<ri::EglConfigSet*>(item)->configs;
417                 else if (type == ri::TYPE_SHADERPROGRAM)
418                         m_curItemList = &static_cast<ri::ShaderProgram*>(item)->shaders;
419
420                 if (m_curItemList)
421                         break;
422         }
423
424         if (!m_curItemList)
425                 m_curItemList = &m_result->resultItems;
426 }
427
428 void TestResultParser::pushItem (ri::Item* item)
429 {
430         m_itemStack.push_back(item);
431         updateCurrentItemList();
432 }
433
434 void TestResultParser::popItem (void)
435 {
436         m_itemStack.pop_back();
437         updateCurrentItemList();
438 }
439
440 void TestResultParser::handleElementStart (void)
441 {
442         const char* elemName = m_xmlParser.getElementName();
443
444         if (m_state == STATE_INITIALIZED)
445         {
446                 // Expect TestCaseResult.
447                 if (!deStringEqual(elemName, "TestCaseResult"))
448                         throw TestResultParseError(string("Expected <TestCaseResult>, got <") + elemName + ">");
449
450                 const char* version = getAttribute("Version");
451                 m_logVersion = getTestLogVersion(version);
452                 // \note Currently assumed that all known log versions are supported.
453
454                 m_result->casePath      = getAttribute("CasePath");
455                 m_result->caseType      = TESTCASETYPE_SELF_VALIDATE;
456
457                 if (m_xmlParser.hasAttribute("CaseType"))
458                         m_result->caseType = getTestCaseType(m_xmlParser.getAttribute("CaseType"));
459                 else
460                 {
461                         // Do guess based on path for legacy log files.
462                         if (m_logVersion >= TESTLOGVERSION_0_3_2)
463                                 throw TestResultParseError("Missing CaseType attribute in <TestCaseResult>");
464                         m_result->caseType = getTestCaseTypeFromPath(m_result->casePath.c_str());
465                 }
466
467                 m_state = STATE_IN_TEST_CASE_RESULT;
468         }
469         else
470         {
471                 ri::List*       curList         = getCurrentItemList();
472                 ri::Type        itemType        = getResultItemType(elemName);
473                 ri::Item*       item            = DE_NULL;
474                 ri::Item*       parentItem      = getCurrentItem();
475                 ri::Type        parentType      = parentItem ? parentItem->getType() : ri::TYPE_LAST;
476
477                 switch (itemType)
478                 {
479                         case ri::TYPE_RESULT:
480                         {
481                                 ri::Result* result = curList->allocItem<ri::Result>();
482                                 result->statusCode = getTestStatusCode(getAttribute("StatusCode"));
483                                 item = result;
484                                 break;
485                         }
486
487                         case ri::TYPE_TEXT:
488                                 item = curList->allocItem<ri::Text>();
489                                 break;
490
491                         case ri::TYPE_SECTION:
492                         {
493                                 ri::Section* section = curList->allocItem<ri::Section>();
494                                 section->name                   = getAttribute("Name");
495                                 section->description    = getAttribute("Description");
496                                 item = section;
497                                 break;
498                         }
499
500                         case ri::TYPE_NUMBER:
501                         {
502                                 ri::Number* number = curList->allocItem<ri::Number>();
503                                 number->name            = getAttribute("Name");
504                                 number->description     = getAttribute("Description");
505                                 number->unit            = getAttribute("Unit");
506
507                                 if (m_xmlParser.hasAttribute("Tag"))
508                                         number->tag = m_xmlParser.getAttribute("Tag");
509
510                                 item = number;
511
512                                 m_curNumValue.clear();
513                                 break;
514                         }
515
516                         case ri::TYPE_IMAGESET:
517                         {
518                                 ri::ImageSet* imageSet = curList->allocItem<ri::ImageSet>();
519                                 imageSet->name                  = getAttribute("Name");
520                                 imageSet->description   = getAttribute("Description");
521                                 item = imageSet;
522                                 break;
523                         }
524
525                         case ri::TYPE_IMAGE:
526                         {
527                                 ri::Image* image = curList->allocItem<ri::Image>();
528                                 image->name                     = getAttribute("Name");
529                                 image->description      = getAttribute("Description");
530                                 image->width            = toInt(getAttribute("Width"));
531                                 image->height           = toInt(getAttribute("Height"));
532                                 image->format           = getImageFormat(getAttribute("Format"));
533                                 image->compression      = getImageCompression(getAttribute("CompressionMode"));
534                                 item = image;
535                                 break;
536                         }
537
538                         case ri::TYPE_SHADERPROGRAM:
539                         {
540                                 ri::ShaderProgram* shaderProgram = curList->allocItem<ri::ShaderProgram>();
541                                 shaderProgram->linkStatus = toBool(getAttribute("LinkStatus"));
542                                 item = shaderProgram;
543                                 break;
544                         }
545
546                         case ri::TYPE_SHADER:
547                         {
548                                 if (parentType != ri::TYPE_SHADERPROGRAM)
549                                         throw TestResultParseError(string("<") + elemName + "> outside of <ShaderProgram>");
550
551                                 ri::Shader* shader = curList->allocItem<ri::Shader>();
552
553                                 shader->shaderType              = getShaderTypeFromTagName(elemName);
554                                 shader->compileStatus   = toBool(getAttribute("CompileStatus"));
555
556                                 item = shader;
557                                 break;
558                         }
559
560                         case ri::TYPE_SPIRVSOURCE:
561                         {
562                                 if (parentType != ri::TYPE_SHADERPROGRAM)
563                                         throw TestResultParseError(string("<") + elemName + "> outside of <ShaderProgram>");
564                                 item = curList->allocItem<ri::SpirVSource>();
565                                 break;
566                         }
567
568                         case ri::TYPE_SHADERSOURCE:
569                                 if (parentType == ri::TYPE_SHADER)
570                                         item = &static_cast<ri::Shader*>(parentItem)->source;
571                                 else
572                                         throw TestResultParseError("Unexpected <ShaderSource>");
573                                 break;
574
575                         case ri::TYPE_INFOLOG:
576                                 if (parentType == ri::TYPE_SHADERPROGRAM)
577                                         item = &static_cast<ri::ShaderProgram*>(parentItem)->linkInfoLog;
578                                 else if (parentType == ri::TYPE_SHADER)
579                                         item = &static_cast<ri::Shader*>(parentItem)->infoLog;
580                                 else if (parentType == ri::TYPE_COMPILEINFO)
581                                         item = &static_cast<ri::CompileInfo*>(parentItem)->infoLog;
582                                 else
583                                         throw TestResultParseError("Unexpected <InfoLog>");
584                                 break;
585
586                         case ri::TYPE_KERNELSOURCE:
587                                 item = curList->allocItem<ri::KernelSource>();
588                                 break;
589
590                         case ri::TYPE_COMPILEINFO:
591                         {
592                                 ri::CompileInfo* info = curList->allocItem<ri::CompileInfo>();
593                                 info->name                      = getAttribute("Name");
594                                 info->description       = getAttribute("Description");
595                                 info->compileStatus     = toBool(getAttribute("CompileStatus"));
596                                 item = info;
597                                 break;
598                         }
599
600                         case ri::TYPE_EGLCONFIGSET:
601                         {
602                                 ri::EglConfigSet* set = curList->allocItem<ri::EglConfigSet>();
603                                 set->name                       = getAttribute("Name");
604                                 set->description        = m_xmlParser.hasAttribute("Description") ? m_xmlParser.getAttribute("Description") : "";
605                                 item = set;
606                                 break;
607                         }
608
609                         case ri::TYPE_EGLCONFIG:
610                         {
611                                 ri::EglConfig* config = curList->allocItem<ri::EglConfig>();
612                                 config->bufferSize                              = toInt(getAttribute("BufferSize"));
613                                 config->redSize                                 = toInt(getAttribute("RedSize"));
614                                 config->greenSize                               = toInt(getAttribute("GreenSize"));
615                                 config->blueSize                                = toInt(getAttribute("BlueSize"));
616                                 config->luminanceSize                   = toInt(getAttribute("LuminanceSize"));
617                                 config->alphaSize                               = toInt(getAttribute("AlphaSize"));
618                                 config->alphaMaskSize                   = toInt(getAttribute("AlphaMaskSize"));
619                                 config->bindToTextureRGB                = toBool(getAttribute("BindToTextureRGB"));
620                                 config->bindToTextureRGBA               = toBool(getAttribute("BindToTextureRGBA"));
621                                 config->colorBufferType                 = getAttribute("ColorBufferType");
622                                 config->configCaveat                    = getAttribute("ConfigCaveat");
623                                 config->configID                                = toInt(getAttribute("ConfigID"));
624                                 config->conformant                              = getAttribute("Conformant");
625                                 config->depthSize                               = toInt(getAttribute("DepthSize"));
626                                 config->level                                   = toInt(getAttribute("Level"));
627                                 config->maxPBufferWidth                 = toInt(getAttribute("MaxPBufferWidth"));
628                                 config->maxPBufferHeight                = toInt(getAttribute("MaxPBufferHeight"));
629                                 config->maxPBufferPixels                = toInt(getAttribute("MaxPBufferPixels"));
630                                 config->maxSwapInterval                 = toInt(getAttribute("MaxSwapInterval"));
631                                 config->minSwapInterval                 = toInt(getAttribute("MinSwapInterval"));
632                                 config->nativeRenderable                = toBool(getAttribute("NativeRenderable"));
633                                 config->renderableType                  = getAttribute("RenderableType");
634                                 config->sampleBuffers                   = toInt(getAttribute("SampleBuffers"));
635                                 config->samples                                 = toInt(getAttribute("Samples"));
636                                 config->stencilSize                             = toInt(getAttribute("StencilSize"));
637                                 config->surfaceTypes                    = getAttribute("SurfaceTypes");
638                                 config->transparentType                 = getAttribute("TransparentType");
639                                 config->transparentRedValue             = toInt(getAttribute("TransparentRedValue"));
640                                 config->transparentGreenValue   = toInt(getAttribute("TransparentGreenValue"));
641                                 config->transparentBlueValue    = toInt(getAttribute("TransparentBlueValue"));
642                                 item = config;
643                                 break;
644                         }
645
646                         case ri::TYPE_SAMPLELIST:
647                         {
648                                 ri::SampleList* list = curList->allocItem<ri::SampleList>();
649                                 list->name                      = getAttribute("Name");
650                                 list->description       = getAttribute("Description");
651                                 item = list;
652                                 break;
653                         }
654
655                         case ri::TYPE_SAMPLEINFO:
656                         {
657                                 if (parentType != ri::TYPE_SAMPLELIST)
658                                         throw TestResultParseError("<SampleInfo> outside of <SampleList>");
659
660                                 ri::SampleList* list    = static_cast<ri::SampleList*>(parentItem);
661                                 ri::SampleInfo* info    = &list->sampleInfo;
662
663                                 item = info;
664                                 break;
665                         }
666
667                         case ri::TYPE_VALUEINFO:
668                         {
669                                 if (parentType != ri::TYPE_SAMPLEINFO)
670                                         throw TestResultParseError("<ValueInfo> outside of <SampleInfo>");
671
672                                 ri::SampleInfo* sampleInfo      = static_cast<ri::SampleInfo*>(parentItem);
673                                 ri::ValueInfo*  valueInfo       = sampleInfo->valueInfos.allocItem<ri::ValueInfo>();
674
675                                 valueInfo->name                 = getAttribute("Name");
676                                 valueInfo->description  = getAttribute("Description");
677                                 valueInfo->tag                  = getSampleValueTag(getAttribute("Tag"));
678
679                                 if (m_xmlParser.hasAttribute("Unit"))
680                                         valueInfo->unit = getAttribute("Unit");
681
682                                 item = valueInfo;
683                                 break;
684                         }
685
686                         case ri::TYPE_SAMPLE:
687                         {
688                                 if (parentType != ri::TYPE_SAMPLELIST)
689                                         throw TestResultParseError("<Sample> outside of <SampleList>");
690
691                                 ri::SampleList* list    = static_cast<ri::SampleList*>(parentItem);
692                                 ri::Sample*             sample  = list->samples.allocItem<ri::Sample>();
693
694                                 item = sample;
695                                 break;
696                         }
697
698                         case ri::TYPE_SAMPLEVALUE:
699                         {
700                                 if (parentType != ri::TYPE_SAMPLE)
701                                         throw TestResultParseError("<Value> outside of <Sample>");
702
703                                 ri::Sample*                     sample  = static_cast<ri::Sample*>(parentItem);
704                                 ri::SampleValue*        value   = sample->values.allocItem<ri::SampleValue>();
705
706                                 item = value;
707                                 break;
708                         }
709
710                         default:
711                                 throw TestResultParseError(string("Unsupported element '") + elemName + ("'"));
712                 }
713
714                 DE_ASSERT(item);
715                 pushItem(item);
716
717                 // Reset base64 decoding offset.
718                 m_base64DecodeOffset = 0;
719         }
720 }
721
722 void TestResultParser::handleElementEnd (void)
723 {
724         const char* elemName = m_xmlParser.getElementName();
725
726         if (m_state != STATE_IN_TEST_CASE_RESULT)
727                 throw TestResultParseError(string("Unexpected </") + elemName + "> outside of <TestCaseResult>");
728
729         if (deStringEqual(elemName, "TestCaseResult"))
730         {
731                 // Logs from buggy test cases may contain invalid XML.
732                 // DE_ASSERT(getCurrentItem() == DE_NULL);
733                 // \todo [2012-11-22 pyry] Log warning.
734
735                 m_state = STATE_TEST_CASE_RESULT_ENDED;
736         }
737         else
738         {
739                 ri::Type        itemType        = getResultItemType(elemName);
740                 ri::Item*       curItem         = getCurrentItem();
741
742                 if (!curItem || itemType != curItem->getType())
743                         throw TestResultParseError(string("Unexpected </") + elemName + ">");
744
745                 if (itemType == ri::TYPE_RESULT)
746                 {
747                         ri::Result* result = static_cast<ri::Result*>(curItem);
748                         m_result->statusCode    = result->statusCode;
749                         m_result->statusDetails = result->details;
750                 }
751                 else if (itemType == ri::TYPE_NUMBER)
752                 {
753                         // Parse value for number.
754                         ri::Number*     number  = static_cast<ri::Number*>(curItem);
755                         number->value = getNumericValue(m_curNumValue);
756                         m_curNumValue.clear();
757                 }
758                 else if (itemType == ri::TYPE_SAMPLEVALUE)
759                 {
760                         ri::SampleValue* value = static_cast<ri::SampleValue*>(curItem);
761                         value->value = getNumericValue(m_curNumValue);
762                         m_curNumValue.clear();
763                 }
764
765                 popItem();
766         }
767 }
768
769 void TestResultParser::handleData (void)
770 {
771         ri::Item*       curItem         = getCurrentItem();
772         ri::Type        type            = curItem ? curItem->getType() : ri::TYPE_LAST;
773
774         switch (type)
775         {
776                 case ri::TYPE_RESULT:
777                         m_xmlParser.appendDataStr(static_cast<ri::Result*>(curItem)->details);
778                         break;
779
780                 case ri::TYPE_TEXT:
781                         m_xmlParser.appendDataStr(static_cast<ri::Text*>(curItem)->text);
782                         break;
783
784                 case ri::TYPE_SHADERSOURCE:
785                         m_xmlParser.appendDataStr(static_cast<ri::ShaderSource*>(curItem)->source);
786                         break;
787
788                 case ri::TYPE_SPIRVSOURCE:
789                         m_xmlParser.appendDataStr(static_cast<ri::SpirVSource*>(curItem)->source);
790                         break;
791
792                 case ri::TYPE_INFOLOG:
793                         m_xmlParser.appendDataStr(static_cast<ri::InfoLog*>(curItem)->log);
794                         break;
795
796                 case ri::TYPE_KERNELSOURCE:
797                         m_xmlParser.appendDataStr(static_cast<ri::KernelSource*>(curItem)->source);
798                         break;
799
800                 case ri::TYPE_NUMBER:
801                 case ri::TYPE_SAMPLEVALUE:
802                         m_xmlParser.appendDataStr(m_curNumValue);
803                         break;
804
805                 case ri::TYPE_IMAGE:
806                 {
807                         ri::Image* image = static_cast<ri::Image*>(curItem);
808
809                         // Base64 decode.
810                         int numBytesIn = m_xmlParser.getDataSize();
811
812                         for (int inNdx = 0; inNdx < numBytesIn; inNdx++)
813                         {
814                                 deUint8         byte            = m_xmlParser.getDataByte(inNdx);
815                                 deUint8         decodedBits     = 0;
816
817                                 if (de::inRange<deInt8>(byte, 'A', 'Z'))
818                                         decodedBits = (deUint8)(byte - 'A');
819                                 else if (de::inRange<deInt8>(byte, 'a', 'z'))
820                                         decodedBits = (deUint8)(('Z'-'A'+1) + (byte-'a'));
821                                 else if (de::inRange<deInt8>(byte, '0', '9'))
822                                         decodedBits = (deUint8)(('Z'-'A'+1) + ('z'-'a'+1) + (byte-'0'));
823                                 else if (byte == '+')
824                                         decodedBits = ('Z'-'A'+1) + ('z'-'a'+1) + ('9'-'0'+1);
825                                 else if (byte == '/')
826                                         decodedBits = ('Z'-'A'+1) + ('z'-'a'+1) + ('9'-'0'+2);
827                                 else if (byte == '=')
828                                 {
829                                         // Padding at end - remove last byte.
830                                         if (image->data.empty())
831                                                 throw TestResultParseError("Malformed base64 data");
832                                         image->data.pop_back();
833                                         continue;
834                                 }
835                                 else
836                                         continue; // Not an B64 input character.
837
838                                 int phase = m_base64DecodeOffset % 4;
839
840                                 if (phase == 0)
841                                         image->data.resize(image->data.size()+3, 0);
842
843                                 if ((int)image->data.size() < (m_base64DecodeOffset>>2)*3 + 3)
844                                         throw TestResultParseError("Malformed base64 data");
845                                 deUint8* outPtr = &image->data[(m_base64DecodeOffset>>2)*3];
846
847                                 switch (phase)
848                                 {
849                                         case 0: outPtr[0] |= (deUint8)(decodedBits<<2);                                                                                                 break;
850                                         case 1: outPtr[0] |= (deUint8)(decodedBits>>4); outPtr[1] |= (deUint8)((decodedBits&0xF)<<4);   break;
851                                         case 2: outPtr[1] |= (deUint8)(decodedBits>>2); outPtr[2] |= (deUint8)((decodedBits&0x3)<<6);   break;
852                                         case 3: outPtr[2] |= decodedBits;                                                                                                                               break;
853                                         default:
854                                                 DE_ASSERT(false);
855                                 }
856
857                                 m_base64DecodeOffset += 1;
858                         }
859
860                         break;
861                 }
862
863                 default:
864                         // Just ignore data.
865                         break;
866         }
867 }
868
869 //! Helper for parsing TestCaseResult from TestCaseResultData.
870 void parseTestCaseResultFromData (TestResultParser* parser, TestCaseResult* result, const TestCaseResultData& data)
871 {
872         DE_ASSERT(result->resultItems.getNumItems() == 0);
873
874         // Initialize status codes etc. from data.
875         result->casePath                = data.getTestCasePath();
876         result->caseType                = TESTCASETYPE_SELF_VALIDATE;
877         result->statusCode              = data.getStatusCode();
878         result->statusDetails   = data.getStatusDetails();
879
880         if (data.getDataSize() > 0)
881         {
882                 parser->init(result);
883
884                 const TestResultParser::ParseResult parseResult = parser->parse(data.getData(), data.getDataSize());
885
886                 if (result->statusCode == TESTSTATUSCODE_LAST)
887                 {
888                         result->statusCode = TESTSTATUSCODE_INTERNAL_ERROR;
889
890                         if (parseResult == TestResultParser::PARSERESULT_ERROR)
891                                 result->statusDetails = "Test case result parsing failed";
892                         else if (parseResult != TestResultParser::PARSERESULT_COMPLETE)
893                                 result->statusDetails = "Incomplete test case result";
894                         else
895                                 result->statusDetails = "Test case result is missing <Result> item";
896                 }
897         }
898         else if (result->statusCode == TESTSTATUSCODE_LAST)
899         {
900                 result->statusCode              = TESTSTATUSCODE_TERMINATED;
901                 result->statusDetails   = "Empty test case result";
902         }
903
904         if (result->casePath.empty())
905                 throw Error("Empty test case path in result");
906
907         if (result->caseType == TESTCASETYPE_LAST)
908                 throw Error("Invalid test case type in result");
909
910         DE_ASSERT(result->statusCode != TESTSTATUSCODE_LAST);
911 }
912
913 } // xe