com.sun.org.apache.xpath.internal.compiler.OpCodes Java Examples
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com.sun.org.apache.xpath.internal.compiler.OpCodes.
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Example #1
Source File: WalkerFactory.java From openjdk-jdk8u with GNU General Public License v2.0 | 6 votes |
/** * Analyze a step and give information about it's predicates. Right now this * just returns true or false if the step has a predicate. * * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param opPos The opcode position for the step. * @param stepType The type of step, one of OP_GROUP, etc. * * @return true if step has a predicate. * * @throws javax.xml.transform.TransformerException */ static boolean analyzePredicate(Compiler compiler, int opPos, int stepType) throws javax.xml.transform.TransformerException { int argLen; switch (stepType) { case OpCodes.OP_VARIABLE : case OpCodes.OP_EXTFUNCTION : case OpCodes.OP_FUNCTION : case OpCodes.OP_GROUP : argLen = compiler.getArgLength(opPos); break; default : argLen = compiler.getArgLengthOfStep(opPos); } int pos = compiler.getFirstPredicateOpPos(opPos); int nPredicates = compiler.countPredicates(pos); return (nPredicates > 0) ? true : false; }
Example #2
Source File: WalkerFactory.java From jdk1.8-source-analysis with Apache License 2.0 | 6 votes |
/** * Analyze a step and give information about it's predicates. Right now this * just returns true or false if the step has a predicate. * * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param opPos The opcode position for the step. * @param stepType The type of step, one of OP_GROUP, etc. * * @return true if step has a predicate. * * @throws javax.xml.transform.TransformerException */ static boolean analyzePredicate(Compiler compiler, int opPos, int stepType) throws javax.xml.transform.TransformerException { int argLen; switch (stepType) { case OpCodes.OP_VARIABLE : case OpCodes.OP_EXTFUNCTION : case OpCodes.OP_FUNCTION : case OpCodes.OP_GROUP : argLen = compiler.getArgLength(opPos); break; default : argLen = compiler.getArgLengthOfStep(opPos); } int pos = compiler.getFirstPredicateOpPos(opPos); int nPredicates = compiler.countPredicates(pos); return (nPredicates > 0) ? true : false; }
Example #3
Source File: WalkerFactory.java From openjdk-8-source with GNU General Public License v2.0 | 6 votes |
/** * Analyze a step and give information about it's predicates. Right now this * just returns true or false if the step has a predicate. * * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param opPos The opcode position for the step. * @param stepType The type of step, one of OP_GROUP, etc. * * @return true if step has a predicate. * * @throws javax.xml.transform.TransformerException */ static boolean analyzePredicate(Compiler compiler, int opPos, int stepType) throws javax.xml.transform.TransformerException { int argLen; switch (stepType) { case OpCodes.OP_VARIABLE : case OpCodes.OP_EXTFUNCTION : case OpCodes.OP_FUNCTION : case OpCodes.OP_GROUP : argLen = compiler.getArgLength(opPos); break; default : argLen = compiler.getArgLengthOfStep(opPos); } int pos = compiler.getFirstPredicateOpPos(opPos); int nPredicates = compiler.countPredicates(pos); return (nPredicates > 0) ? true : false; }
Example #4
Source File: WalkerFactory.java From TencentKona-8 with GNU General Public License v2.0 | 6 votes |
/** * Analyze a step and give information about it's predicates. Right now this * just returns true or false if the step has a predicate. * * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param opPos The opcode position for the step. * @param stepType The type of step, one of OP_GROUP, etc. * * @return true if step has a predicate. * * @throws javax.xml.transform.TransformerException */ static boolean analyzePredicate(Compiler compiler, int opPos, int stepType) throws javax.xml.transform.TransformerException { int argLen; switch (stepType) { case OpCodes.OP_VARIABLE : case OpCodes.OP_EXTFUNCTION : case OpCodes.OP_FUNCTION : case OpCodes.OP_GROUP : argLen = compiler.getArgLength(opPos); break; default : argLen = compiler.getArgLengthOfStep(opPos); } int pos = compiler.getFirstPredicateOpPos(opPos); int nPredicates = compiler.countPredicates(pos); return (nPredicates > 0) ? true : false; }
Example #5
Source File: WalkerFactory.java From TencentKona-8 with GNU General Public License v2.0 | 6 votes |
/** * This method is for building an array of possible levels * where the target element(s) could be found for a match. * @param lpi The owning location path iterator. * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param stepOpCodePos The opcode position for the step. * * @return non-null AxesWalker derivative. * * @throws javax.xml.transform.TransformerException * @xsl.usage advanced */ static AxesWalker loadOneWalker( WalkingIterator lpi, Compiler compiler, int stepOpCodePos) throws javax.xml.transform.TransformerException { AxesWalker firstWalker = null; int stepType = compiler.getOp(stepOpCodePos); if (stepType != OpCodes.ENDOP) { // m_axesWalkers = new AxesWalker[1]; // As we unwind from the recursion, create the iterators. firstWalker = createDefaultWalker(compiler, stepType, lpi, 0); firstWalker.init(compiler, stepOpCodePos, stepType); } return firstWalker; }
Example #6
Source File: WalkerFactory.java From openjdk-8 with GNU General Public License v2.0 | 6 votes |
/** * This method is for building an array of possible levels * where the target element(s) could be found for a match. * @param lpi The owning location path iterator. * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param stepOpCodePos The opcode position for the step. * * @return non-null AxesWalker derivative. * * @throws javax.xml.transform.TransformerException * @xsl.usage advanced */ static AxesWalker loadOneWalker( WalkingIterator lpi, Compiler compiler, int stepOpCodePos) throws javax.xml.transform.TransformerException { AxesWalker firstWalker = null; int stepType = compiler.getOp(stepOpCodePos); if (stepType != OpCodes.ENDOP) { // m_axesWalkers = new AxesWalker[1]; // As we unwind from the recursion, create the iterators. firstWalker = createDefaultWalker(compiler, stepType, lpi, 0); firstWalker.init(compiler, stepOpCodePos, stepType); } return firstWalker; }
Example #7
Source File: WalkerFactory.java From openjdk-8-source with GNU General Public License v2.0 | 6 votes |
/** * This method is for building an array of possible levels * where the target element(s) could be found for a match. * @param lpi The owning location path iterator. * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param stepOpCodePos The opcode position for the step. * * @return non-null AxesWalker derivative. * * @throws javax.xml.transform.TransformerException * @xsl.usage advanced */ static AxesWalker loadOneWalker( WalkingIterator lpi, Compiler compiler, int stepOpCodePos) throws javax.xml.transform.TransformerException { AxesWalker firstWalker = null; int stepType = compiler.getOp(stepOpCodePos); if (stepType != OpCodes.ENDOP) { // m_axesWalkers = new AxesWalker[1]; // As we unwind from the recursion, create the iterators. firstWalker = createDefaultWalker(compiler, stepType, lpi, 0); firstWalker.init(compiler, stepOpCodePos, stepType); } return firstWalker; }
Example #8
Source File: WalkerFactory.java From hottub with GNU General Public License v2.0 | 6 votes |
/** * Analyze a step and give information about it's predicates. Right now this * just returns true or false if the step has a predicate. * * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param opPos The opcode position for the step. * @param stepType The type of step, one of OP_GROUP, etc. * * @return true if step has a predicate. * * @throws javax.xml.transform.TransformerException */ static boolean analyzePredicate(Compiler compiler, int opPos, int stepType) throws javax.xml.transform.TransformerException { int argLen; switch (stepType) { case OpCodes.OP_VARIABLE : case OpCodes.OP_EXTFUNCTION : case OpCodes.OP_FUNCTION : case OpCodes.OP_GROUP : argLen = compiler.getArgLength(opPos); break; default : argLen = compiler.getArgLengthOfStep(opPos); } int pos = compiler.getFirstPredicateOpPos(opPos); int nPredicates = compiler.countPredicates(pos); return (nPredicates > 0) ? true : false; }
Example #9
Source File: WalkerFactory.java From jdk1.8-source-analysis with Apache License 2.0 | 6 votes |
/** * This method is for building an array of possible levels * where the target element(s) could be found for a match. * @param lpi The owning location path iterator. * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param stepOpCodePos The opcode position for the step. * * @return non-null AxesWalker derivative. * * @throws javax.xml.transform.TransformerException * @xsl.usage advanced */ static AxesWalker loadOneWalker( WalkingIterator lpi, Compiler compiler, int stepOpCodePos) throws javax.xml.transform.TransformerException { AxesWalker firstWalker = null; int stepType = compiler.getOp(stepOpCodePos); if (stepType != OpCodes.ENDOP) { // m_axesWalkers = new AxesWalker[1]; // As we unwind from the recursion, create the iterators. firstWalker = createDefaultWalker(compiler, stepType, lpi, 0); firstWalker.init(compiler, stepOpCodePos, stepType); } return firstWalker; }
Example #10
Source File: WalkerFactory.java From openjdk-8 with GNU General Public License v2.0 | 6 votes |
/** * Analyze a step and give information about it's predicates. Right now this * just returns true or false if the step has a predicate. * * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param opPos The opcode position for the step. * @param stepType The type of step, one of OP_GROUP, etc. * * @return true if step has a predicate. * * @throws javax.xml.transform.TransformerException */ static boolean analyzePredicate(Compiler compiler, int opPos, int stepType) throws javax.xml.transform.TransformerException { int argLen; switch (stepType) { case OpCodes.OP_VARIABLE : case OpCodes.OP_EXTFUNCTION : case OpCodes.OP_FUNCTION : case OpCodes.OP_GROUP : argLen = compiler.getArgLength(opPos); break; default : argLen = compiler.getArgLengthOfStep(opPos); } int pos = compiler.getFirstPredicateOpPos(opPos); int nPredicates = compiler.countPredicates(pos); return (nPredicates > 0) ? true : false; }
Example #11
Source File: WalkerFactory.java From jdk8u60 with GNU General Public License v2.0 | 6 votes |
/** * This method is for building an array of possible levels * where the target element(s) could be found for a match. * @param lpi The owning location path iterator. * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param stepOpCodePos The opcode position for the step. * * @return non-null AxesWalker derivative. * * @throws javax.xml.transform.TransformerException * @xsl.usage advanced */ static AxesWalker loadOneWalker( WalkingIterator lpi, Compiler compiler, int stepOpCodePos) throws javax.xml.transform.TransformerException { AxesWalker firstWalker = null; int stepType = compiler.getOp(stepOpCodePos); if (stepType != OpCodes.ENDOP) { // m_axesWalkers = new AxesWalker[1]; // As we unwind from the recursion, create the iterators. firstWalker = createDefaultWalker(compiler, stepType, lpi, 0); firstWalker.init(compiler, stepOpCodePos, stepType); } return firstWalker; }
Example #12
Source File: WalkerFactory.java From jdk8u60 with GNU General Public License v2.0 | 6 votes |
/** * Analyze a step and give information about it's predicates. Right now this * just returns true or false if the step has a predicate. * * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param opPos The opcode position for the step. * @param stepType The type of step, one of OP_GROUP, etc. * * @return true if step has a predicate. * * @throws javax.xml.transform.TransformerException */ static boolean analyzePredicate(Compiler compiler, int opPos, int stepType) throws javax.xml.transform.TransformerException { int argLen; switch (stepType) { case OpCodes.OP_VARIABLE : case OpCodes.OP_EXTFUNCTION : case OpCodes.OP_FUNCTION : case OpCodes.OP_GROUP : argLen = compiler.getArgLength(opPos); break; default : argLen = compiler.getArgLengthOfStep(opPos); } int pos = compiler.getFirstPredicateOpPos(opPos); int nPredicates = compiler.countPredicates(pos); return (nPredicates > 0) ? true : false; }
Example #13
Source File: WalkerFactory.java From openjdk-jdk9 with GNU General Public License v2.0 | 6 votes |
/** * Analyze a step and give information about it's predicates. Right now this * just returns true or false if the step has a predicate. * * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param opPos The opcode position for the step. * @param stepType The type of step, one of OP_GROUP, etc. * * @return true if step has a predicate. * * @throws javax.xml.transform.TransformerException */ static boolean analyzePredicate(Compiler compiler, int opPos, int stepType) throws javax.xml.transform.TransformerException { int argLen; switch (stepType) { case OpCodes.OP_VARIABLE : case OpCodes.OP_EXTFUNCTION : case OpCodes.OP_FUNCTION : case OpCodes.OP_GROUP : argLen = compiler.getArgLength(opPos); break; default : argLen = compiler.getArgLengthOfStep(opPos); } int pos = compiler.getFirstPredicateOpPos(opPos); int nPredicates = compiler.countPredicates(pos); return (nPredicates > 0) ? true : false; }
Example #14
Source File: WalkerFactory.java From openjdk-jdk9 with GNU General Public License v2.0 | 6 votes |
/** * This method is for building an array of possible levels * where the target element(s) could be found for a match. * @param lpi The owning location path iterator. * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param stepOpCodePos The opcode position for the step. * * @return non-null AxesWalker derivative. * * @throws javax.xml.transform.TransformerException * @xsl.usage advanced */ static AxesWalker loadOneWalker( WalkingIterator lpi, Compiler compiler, int stepOpCodePos) throws javax.xml.transform.TransformerException { AxesWalker firstWalker = null; int stepType = compiler.getOp(stepOpCodePos); if (stepType != OpCodes.ENDOP) { // m_axesWalkers = new AxesWalker[1]; // As we unwind from the recursion, create the iterators. firstWalker = createDefaultWalker(compiler, stepType, lpi, 0); firstWalker.init(compiler, stepOpCodePos, stepType); } return firstWalker; }
Example #15
Source File: WalkerFactory.java From JDKSourceCode1.8 with MIT License | 6 votes |
/** * This method is for building an array of possible levels * where the target element(s) could be found for a match. * @param lpi The owning location path iterator. * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param stepOpCodePos The opcode position for the step. * * @return non-null AxesWalker derivative. * * @throws javax.xml.transform.TransformerException * @xsl.usage advanced */ static AxesWalker loadOneWalker( WalkingIterator lpi, Compiler compiler, int stepOpCodePos) throws javax.xml.transform.TransformerException { AxesWalker firstWalker = null; int stepType = compiler.getOp(stepOpCodePos); if (stepType != OpCodes.ENDOP) { // m_axesWalkers = new AxesWalker[1]; // As we unwind from the recursion, create the iterators. firstWalker = createDefaultWalker(compiler, stepType, lpi, 0); firstWalker.init(compiler, stepOpCodePos, stepType); } return firstWalker; }
Example #16
Source File: WalkerFactory.java From Bytecoder with Apache License 2.0 | 6 votes |
/** * Analyze a step and give information about it's predicates. Right now this * just returns true or false if the step has a predicate. * * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param opPos The opcode position for the step. * @param stepType The type of step, one of OP_GROUP, etc. * * @return true if step has a predicate. * * @throws javax.xml.transform.TransformerException */ static boolean analyzePredicate(Compiler compiler, int opPos, int stepType) throws javax.xml.transform.TransformerException { int argLen; switch (stepType) { case OpCodes.OP_VARIABLE : case OpCodes.OP_EXTFUNCTION : case OpCodes.OP_FUNCTION : case OpCodes.OP_GROUP : argLen = compiler.getArgLength(opPos); break; default : argLen = compiler.getArgLengthOfStep(opPos); } int pos = compiler.getFirstPredicateOpPos(opPos); int nPredicates = compiler.countPredicates(pos); return (nPredicates > 0) ? true : false; }
Example #17
Source File: WalkerFactory.java From JDKSourceCode1.8 with MIT License | 6 votes |
/** * Analyze a step and give information about it's predicates. Right now this * just returns true or false if the step has a predicate. * * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param opPos The opcode position for the step. * @param stepType The type of step, one of OP_GROUP, etc. * * @return true if step has a predicate. * * @throws javax.xml.transform.TransformerException */ static boolean analyzePredicate(Compiler compiler, int opPos, int stepType) throws javax.xml.transform.TransformerException { int argLen; switch (stepType) { case OpCodes.OP_VARIABLE : case OpCodes.OP_EXTFUNCTION : case OpCodes.OP_FUNCTION : case OpCodes.OP_GROUP : argLen = compiler.getArgLength(opPos); break; default : argLen = compiler.getArgLengthOfStep(opPos); } int pos = compiler.getFirstPredicateOpPos(opPos); int nPredicates = compiler.countPredicates(pos); return (nPredicates > 0) ? true : false; }
Example #18
Source File: WalkerFactory.java From Bytecoder with Apache License 2.0 | 6 votes |
/** * This method is for building an array of possible levels * where the target element(s) could be found for a match. * @param lpi The owning location path iterator. * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param stepOpCodePos The opcode position for the step. * * @return non-null AxesWalker derivative. * * @throws javax.xml.transform.TransformerException * @xsl.usage advanced */ static AxesWalker loadOneWalker( WalkingIterator lpi, Compiler compiler, int stepOpCodePos) throws javax.xml.transform.TransformerException { AxesWalker firstWalker = null; int stepType = compiler.getOp(stepOpCodePos); if (stepType != OpCodes.ENDOP) { // m_axesWalkers = new AxesWalker[1]; // As we unwind from the recursion, create the iterators. firstWalker = createDefaultWalker(compiler, stepType, lpi, 0); firstWalker.init(compiler, stepOpCodePos, stepType); } return firstWalker; }
Example #19
Source File: WalkerFactory.java From openjdk-jdk8u-backup with GNU General Public License v2.0 | 6 votes |
/** * Analyze a step and give information about it's predicates. Right now this * just returns true or false if the step has a predicate. * * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param opPos The opcode position for the step. * @param stepType The type of step, one of OP_GROUP, etc. * * @return true if step has a predicate. * * @throws javax.xml.transform.TransformerException */ static boolean analyzePredicate(Compiler compiler, int opPos, int stepType) throws javax.xml.transform.TransformerException { int argLen; switch (stepType) { case OpCodes.OP_VARIABLE : case OpCodes.OP_EXTFUNCTION : case OpCodes.OP_FUNCTION : case OpCodes.OP_GROUP : argLen = compiler.getArgLength(opPos); break; default : argLen = compiler.getArgLengthOfStep(opPos); } int pos = compiler.getFirstPredicateOpPos(opPos); int nPredicates = compiler.countPredicates(pos); return (nPredicates > 0) ? true : false; }
Example #20
Source File: WalkerFactory.java From openjdk-jdk8u with GNU General Public License v2.0 | 6 votes |
/** * This method is for building an array of possible levels * where the target element(s) could be found for a match. * @param lpi The owning location path iterator. * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param stepOpCodePos The opcode position for the step. * * @return non-null AxesWalker derivative. * * @throws javax.xml.transform.TransformerException * @xsl.usage advanced */ static AxesWalker loadOneWalker( WalkingIterator lpi, Compiler compiler, int stepOpCodePos) throws javax.xml.transform.TransformerException { AxesWalker firstWalker = null; int stepType = compiler.getOp(stepOpCodePos); if (stepType != OpCodes.ENDOP) { // m_axesWalkers = new AxesWalker[1]; // As we unwind from the recursion, create the iterators. firstWalker = createDefaultWalker(compiler, stepType, lpi, 0); firstWalker.init(compiler, stepOpCodePos, stepType); } return firstWalker; }
Example #21
Source File: WalkerFactory.java From openjdk-jdk8u-backup with GNU General Public License v2.0 | 6 votes |
/** * This method is for building an array of possible levels * where the target element(s) could be found for a match. * @param lpi The owning location path iterator. * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param stepOpCodePos The opcode position for the step. * * @return non-null AxesWalker derivative. * * @throws javax.xml.transform.TransformerException * @xsl.usage advanced */ static AxesWalker loadOneWalker( WalkingIterator lpi, Compiler compiler, int stepOpCodePos) throws javax.xml.transform.TransformerException { AxesWalker firstWalker = null; int stepType = compiler.getOp(stepOpCodePos); if (stepType != OpCodes.ENDOP) { // m_axesWalkers = new AxesWalker[1]; // As we unwind from the recursion, create the iterators. firstWalker = createDefaultWalker(compiler, stepType, lpi, 0); firstWalker.init(compiler, stepOpCodePos, stepType); } return firstWalker; }
Example #22
Source File: WalkerFactory.java From hottub with GNU General Public License v2.0 | 6 votes |
/** * This method is for building an array of possible levels * where the target element(s) could be found for a match. * @param lpi The owning location path iterator. * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param stepOpCodePos The opcode position for the step. * * @return non-null AxesWalker derivative. * * @throws javax.xml.transform.TransformerException * @xsl.usage advanced */ static AxesWalker loadOneWalker( WalkingIterator lpi, Compiler compiler, int stepOpCodePos) throws javax.xml.transform.TransformerException { AxesWalker firstWalker = null; int stepType = compiler.getOp(stepOpCodePos); if (stepType != OpCodes.ENDOP) { // m_axesWalkers = new AxesWalker[1]; // As we unwind from the recursion, create the iterators. firstWalker = createDefaultWalker(compiler, stepType, lpi, 0); firstWalker.init(compiler, stepOpCodePos, stepType); } return firstWalker; }
Example #23
Source File: WalkerFactory.java From hottub with GNU General Public License v2.0 | 5 votes |
static boolean isProximateInnerExpr(Compiler compiler, int opPos) { int op = compiler.getOp(opPos); int innerExprOpPos = opPos+2; switch(op) { case OpCodes.OP_ARGUMENT: if(isProximateInnerExpr(compiler, innerExprOpPos)) return true; break; case OpCodes.OP_VARIABLE: case OpCodes.OP_NUMBERLIT: case OpCodes.OP_LITERAL: case OpCodes.OP_LOCATIONPATH: break; // OK case OpCodes.OP_FUNCTION: boolean isProx = functionProximateOrContainsProximate(compiler, opPos); if(isProx) return true; break; case OpCodes.OP_GT: case OpCodes.OP_GTE: case OpCodes.OP_LT: case OpCodes.OP_LTE: case OpCodes.OP_EQUALS: int leftPos = OpMap.getFirstChildPos(op); int rightPos = compiler.getNextOpPos(leftPos); isProx = isProximateInnerExpr(compiler, leftPos); if(isProx) return true; isProx = isProximateInnerExpr(compiler, rightPos); if(isProx) return true; break; default: return true; // be conservative... } return false; }
Example #24
Source File: WalkerFactory.java From openjdk-jdk9 with GNU General Public License v2.0 | 5 votes |
static boolean isProximateInnerExpr(Compiler compiler, int opPos) { int op = compiler.getOp(opPos); int innerExprOpPos = opPos+2; switch(op) { case OpCodes.OP_ARGUMENT: if(isProximateInnerExpr(compiler, innerExprOpPos)) return true; break; case OpCodes.OP_VARIABLE: case OpCodes.OP_NUMBERLIT: case OpCodes.OP_LITERAL: case OpCodes.OP_LOCATIONPATH: break; // OK case OpCodes.OP_FUNCTION: boolean isProx = functionProximateOrContainsProximate(compiler, opPos); if(isProx) return true; break; case OpCodes.OP_GT: case OpCodes.OP_GTE: case OpCodes.OP_LT: case OpCodes.OP_LTE: case OpCodes.OP_EQUALS: int leftPos = OpMap.getFirstChildPos(op); int rightPos = compiler.getNextOpPos(leftPos); isProx = isProximateInnerExpr(compiler, leftPos); if(isProx) return true; isProx = isProximateInnerExpr(compiler, rightPos); if(isProx) return true; break; default: return true; // be conservative... } return false; }
Example #25
Source File: WalkerFactory.java From openjdk-jdk8u-backup with GNU General Public License v2.0 | 5 votes |
/** * This method is for building an array of possible levels * where the target element(s) could be found for a match. * @param lpi The owning location path iterator object. * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param stepOpCodePos The opcode position for the step. * @param stepIndex The top-level step index withing the iterator. * * @return non-null AxesWalker derivative. * * @throws javax.xml.transform.TransformerException * @xsl.usage advanced */ static AxesWalker loadWalkers( WalkingIterator lpi, Compiler compiler, int stepOpCodePos, int stepIndex) throws javax.xml.transform.TransformerException { int stepType; AxesWalker firstWalker = null; AxesWalker walker, prevWalker = null; int analysis = analyze(compiler, stepOpCodePos, stepIndex); while (OpCodes.ENDOP != (stepType = compiler.getOp(stepOpCodePos))) { walker = createDefaultWalker(compiler, stepOpCodePos, lpi, analysis); walker.init(compiler, stepOpCodePos, stepType); walker.exprSetParent(lpi); // walker.setAnalysis(analysis); if (null == firstWalker) { firstWalker = walker; } else { prevWalker.setNextWalker(walker); walker.setPrevWalker(prevWalker); } prevWalker = walker; stepOpCodePos = compiler.getNextStepPos(stepOpCodePos); if (stepOpCodePos < 0) break; } return firstWalker; }
Example #26
Source File: WalkerFactory.java From hottub with GNU General Public License v2.0 | 5 votes |
/** * This method is for building an array of possible levels * where the target element(s) could be found for a match. * @param lpi The owning location path iterator object. * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param stepOpCodePos The opcode position for the step. * @param stepIndex The top-level step index withing the iterator. * * @return non-null AxesWalker derivative. * * @throws javax.xml.transform.TransformerException * @xsl.usage advanced */ static AxesWalker loadWalkers( WalkingIterator lpi, Compiler compiler, int stepOpCodePos, int stepIndex) throws javax.xml.transform.TransformerException { int stepType; AxesWalker firstWalker = null; AxesWalker walker, prevWalker = null; int analysis = analyze(compiler, stepOpCodePos, stepIndex); while (OpCodes.ENDOP != (stepType = compiler.getOp(stepOpCodePos))) { walker = createDefaultWalker(compiler, stepOpCodePos, lpi, analysis); walker.init(compiler, stepOpCodePos, stepType); walker.exprSetParent(lpi); // walker.setAnalysis(analysis); if (null == firstWalker) { firstWalker = walker; } else { prevWalker.setNextWalker(walker); walker.setPrevWalker(prevWalker); } prevWalker = walker; stepOpCodePos = compiler.getNextStepPos(stepOpCodePos); if (stepOpCodePos < 0) break; } return firstWalker; }
Example #27
Source File: WalkerFactory.java From openjdk-8 with GNU General Public License v2.0 | 5 votes |
/** * This method is for building an array of possible levels * where the target element(s) could be found for a match. * @param lpi The owning location path iterator object. * @param compiler non-null reference to compiler object that has processed * the XPath operations into an opcode map. * @param stepOpCodePos The opcode position for the step. * @param stepIndex The top-level step index withing the iterator. * * @return non-null AxesWalker derivative. * * @throws javax.xml.transform.TransformerException * @xsl.usage advanced */ static AxesWalker loadWalkers( WalkingIterator lpi, Compiler compiler, int stepOpCodePos, int stepIndex) throws javax.xml.transform.TransformerException { int stepType; AxesWalker firstWalker = null; AxesWalker walker, prevWalker = null; int analysis = analyze(compiler, stepOpCodePos, stepIndex); while (OpCodes.ENDOP != (stepType = compiler.getOp(stepOpCodePos))) { walker = createDefaultWalker(compiler, stepOpCodePos, lpi, analysis); walker.init(compiler, stepOpCodePos, stepType); walker.exprSetParent(lpi); // walker.setAnalysis(analysis); if (null == firstWalker) { firstWalker = walker; } else { prevWalker.setNextWalker(walker); walker.setPrevWalker(prevWalker); } prevWalker = walker; stepOpCodePos = compiler.getNextStepPos(stepOpCodePos); if (stepOpCodePos < 0) break; } return firstWalker; }
Example #28
Source File: WalkerFactory.java From openjdk-8 with GNU General Public License v2.0 | 5 votes |
static boolean isProximateInnerExpr(Compiler compiler, int opPos) { int op = compiler.getOp(opPos); int innerExprOpPos = opPos+2; switch(op) { case OpCodes.OP_ARGUMENT: if(isProximateInnerExpr(compiler, innerExprOpPos)) return true; break; case OpCodes.OP_VARIABLE: case OpCodes.OP_NUMBERLIT: case OpCodes.OP_LITERAL: case OpCodes.OP_LOCATIONPATH: break; // OK case OpCodes.OP_FUNCTION: boolean isProx = functionProximateOrContainsProximate(compiler, opPos); if(isProx) return true; break; case OpCodes.OP_GT: case OpCodes.OP_GTE: case OpCodes.OP_LT: case OpCodes.OP_LTE: case OpCodes.OP_EQUALS: int leftPos = OpMap.getFirstChildPos(op); int rightPos = compiler.getNextOpPos(leftPos); isProx = isProximateInnerExpr(compiler, leftPos); if(isProx) return true; isProx = isProximateInnerExpr(compiler, rightPos); if(isProx) return true; break; default: return true; // be conservative... } return false; }
Example #29
Source File: WalkerFactory.java From openjdk-jdk8u-backup with GNU General Public License v2.0 | 5 votes |
static boolean isProximateInnerExpr(Compiler compiler, int opPos) { int op = compiler.getOp(opPos); int innerExprOpPos = opPos+2; switch(op) { case OpCodes.OP_ARGUMENT: if(isProximateInnerExpr(compiler, innerExprOpPos)) return true; break; case OpCodes.OP_VARIABLE: case OpCodes.OP_NUMBERLIT: case OpCodes.OP_LITERAL: case OpCodes.OP_LOCATIONPATH: break; // OK case OpCodes.OP_FUNCTION: boolean isProx = functionProximateOrContainsProximate(compiler, opPos); if(isProx) return true; break; case OpCodes.OP_GT: case OpCodes.OP_GTE: case OpCodes.OP_LT: case OpCodes.OP_LTE: case OpCodes.OP_EQUALS: int leftPos = OpMap.getFirstChildPos(op); int rightPos = compiler.getNextOpPos(leftPos); isProx = isProximateInnerExpr(compiler, leftPos); if(isProx) return true; isProx = isProximateInnerExpr(compiler, rightPos); if(isProx) return true; break; default: return true; // be conservative... } return false; }
Example #30
Source File: WalkerFactory.java From openjdk-8-source with GNU General Public License v2.0 | 5 votes |
static boolean isProximateInnerExpr(Compiler compiler, int opPos) { int op = compiler.getOp(opPos); int innerExprOpPos = opPos+2; switch(op) { case OpCodes.OP_ARGUMENT: if(isProximateInnerExpr(compiler, innerExprOpPos)) return true; break; case OpCodes.OP_VARIABLE: case OpCodes.OP_NUMBERLIT: case OpCodes.OP_LITERAL: case OpCodes.OP_LOCATIONPATH: break; // OK case OpCodes.OP_FUNCTION: boolean isProx = functionProximateOrContainsProximate(compiler, opPos); if(isProx) return true; break; case OpCodes.OP_GT: case OpCodes.OP_GTE: case OpCodes.OP_LT: case OpCodes.OP_LTE: case OpCodes.OP_EQUALS: int leftPos = OpMap.getFirstChildPos(op); int rightPos = compiler.getNextOpPos(leftPos); isProx = isProximateInnerExpr(compiler, leftPos); if(isProx) return true; isProx = isProximateInnerExpr(compiler, rightPos); if(isProx) return true; break; default: return true; // be conservative... } return false; }