+void RegExp::invalidateCode()
+{
+ if (!hasCode())
+ return;
+ m_state = NotCompiled;
+#if ENABLE(YARR_JIT)
+ m_regExpJITCode.clear();
+#endif
+ m_regExpBytecode.clear();
+}
+
+#if ENABLE(YARR_JIT_DEBUG)
+void RegExp::matchCompareWithInterpreter(const UString& s, int startOffset, int* offsetVector, int jitResult)
+{
+ int offsetVectorSize = (m_numSubpatterns + 1) * 2;
+ Vector<int, 32> interpreterOvector;
+ interpreterOvector.resize(offsetVectorSize);
+ int* interpreterOffsetVector = interpreterOvector.data();
+ int interpreterResult = 0;
+ int differences = 0;
+
+ // Initialize interpreterOffsetVector with the return value (index 0) and the
+ // first subpattern start indicies (even index values) set to -1.
+ // No need to init the subpattern end indicies.
+ for (unsigned j = 0, i = 0; i < m_numSubpatterns + 1; j += 2, i++)
+ interpreterOffsetVector[j] = -1;
+
+ interpreterResult = Yarr::interpret(m_regExpBytecode.get(), s, startOffset, interpreterOffsetVector);
+
+ if (jitResult != interpreterResult)
+ differences++;
+
+ for (unsigned j = 2, i = 0; i < m_numSubpatterns; j +=2, i++)
+ if ((offsetVector[j] != interpreterOffsetVector[j])
+ || ((offsetVector[j] >= 0) && (offsetVector[j+1] != interpreterOffsetVector[j+1])))
+ differences++;
+
+ if (differences) {
+ dataLog("RegExp Discrepency for /%s/\n string input ", pattern().utf8().data());
+ unsigned segmentLen = s.length() - static_cast<unsigned>(startOffset);
+
+ dataLog((segmentLen < 150) ? "\"%s\"\n" : "\"%148s...\"\n", s.utf8().data() + startOffset);
+
+ if (jitResult != interpreterResult) {
+ dataLog(" JIT result = %d, blah interpreted result = %d\n", jitResult, interpreterResult);
+ differences--;
+ } else {
+ dataLog(" Correct result = %d\n", jitResult);
+ }
+
+ if (differences) {
+ for (unsigned j = 2, i = 0; i < m_numSubpatterns; j +=2, i++) {
+ if (offsetVector[j] != interpreterOffsetVector[j])
+ dataLog(" JIT offset[%d] = %d, interpreted offset[%d] = %d\n", j, offsetVector[j], j, interpreterOffsetVector[j]);
+ if ((offsetVector[j] >= 0) && (offsetVector[j+1] != interpreterOffsetVector[j+1]))
+ dataLog(" JIT offset[%d] = %d, interpreted offset[%d] = %d\n", j+1, offsetVector[j+1], j+1, interpreterOffsetVector[j+1]);
+ }
+ }
+ }
+}
+#endif
+
+#if ENABLE(REGEXP_TRACING)
+ void RegExp::printTraceData()
+ {
+ char formattedPattern[41];
+ char rawPattern[41];
+
+ strncpy(rawPattern, pattern().utf8().data(), 40);
+ rawPattern[40]= '\0';
+
+ int pattLen = strlen(rawPattern);
+
+ snprintf(formattedPattern, 41, (pattLen <= 38) ? "/%.38s/" : "/%.36s...", rawPattern);
+
+#if ENABLE(YARR_JIT)
+ Yarr::YarrCodeBlock& codeBlock = m_regExpJITCode;
+
+ const size_t jitAddrSize = 20;
+ char jitAddr[jitAddrSize];
+ if (m_state == JITCode)
+ snprintf(jitAddr, jitAddrSize, "fallback");
+ else
+ snprintf(jitAddr, jitAddrSize, "0x%014lx", reinterpret_cast<unsigned long int>(codeBlock.getAddr()));
+#else
+ const char* jitAddr = "JIT Off";
+#endif
+
+ printf("%-40.40s %16.16s %10d %10d\n", formattedPattern, jitAddr, m_rtMatchCallCount, m_rtMatchFoundCount);
+ }