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| 1 library dart2js.cps_ir_integrity; |
| 2 |
| 3 import 'cps_ir_nodes.dart'; |
| 4 import 'cps_ir_nodes_sexpr.dart'; |
| 5 import '../tracer.dart' as tracer; |
| 6 |
| 7 /// Dump S-expressions on error if the tracer is enabled. |
| 8 /// |
| 9 /// Technically this has nothing to do with the tracer, but if you want one |
| 10 /// enabled, you typically want the other as well, so we use the same flag. |
| 11 const bool ENABLE_DUMP = tracer.TRACE_FILTER_PATTERN != null; |
| 12 |
| 13 /// Performs integrity checks on the CPS IR. |
| 14 /// |
| 15 /// To be run for debugging purposes, not for use in production. |
| 16 /// |
| 17 /// The following integrity checks are performed: |
| 18 /// |
| 19 /// - References are in scope of their definitions. |
| 20 /// - Recursive Continuations and InvokeContinuations are marked as recursive. |
| 21 /// - InvokeContinuations have the same arity as their target. |
| 22 /// - Reference chains are valid doubly-linked lists. |
| 23 /// - Reference chains contain exactly the references that are in the IR. |
| 24 /// - Each definition object occurs only once in the IR (no redeclaring). |
| 25 /// - Each reference object occurs only once in the IR (no sharing). |
| 26 /// |
| 27 class CheckCpsIntegrity extends RecursiveVisitor { |
| 28 |
| 29 ExecutableDefinition topLevelNode; |
| 30 |
| 31 Set<Definition> seenDefinitions = new Set<Definition>(); |
| 32 Map<Definition, Set<Reference>> seenReferences = |
| 33 <Definition, Set<Reference>>{}; |
| 34 |
| 35 Map<Definition, Node> bindings = <Definition, Node>{}; |
| 36 Set<Continuation> insideContinuations = new Set<Continuation>(); |
| 37 |
| 38 doInScope(Iterable<Definition> defs, Node binding, action()) { |
| 39 for (Definition def in defs) { |
| 40 bindings[def] = binding; |
| 41 } |
| 42 action(); |
| 43 for (Definition def in defs) { |
| 44 bindings.remove(def); |
| 45 } |
| 46 } |
| 47 |
| 48 void markAsSeen(Definition def) { |
| 49 if (!seenDefinitions.add(def)) { |
| 50 error('Redeclared $def', def); |
| 51 } |
| 52 seenReferences[def] = new Set<Reference>(); |
| 53 } |
| 54 |
| 55 @override |
| 56 visitLetCont(LetCont node) { |
| 57 // Analyze each continuation separately without the others in scope. |
| 58 for (Continuation continuation in node.continuations) { |
| 59 // We always consider a continuation to be in scope of itself. |
| 60 // The isRecursive flag is checked explicitly to give more useful |
| 61 // error messages. |
| 62 doInScope([continuation], node, () => visit(continuation)); |
| 63 } |
| 64 // Analyze the body with all continuations in scope. |
| 65 doInScope(node.continuations, node, () => visit(node.body)); |
| 66 } |
| 67 |
| 68 @override |
| 69 visitContinuation(Continuation node) { |
| 70 markAsSeen(node); |
| 71 if (node.isReturnContinuation) { |
| 72 error('Non-return continuation missing body', node); |
| 73 } |
| 74 node.parameters.forEach(markAsSeen); |
| 75 insideContinuations.add(node); |
| 76 doInScope(node.parameters, node, () => visit(node.body)); |
| 77 insideContinuations.remove(node); |
| 78 } |
| 79 |
| 80 @override |
| 81 visitRunnableBody(RunnableBody node) { |
| 82 markAsSeen(node.returnContinuation); |
| 83 if (!node.returnContinuation.isReturnContinuation) { |
| 84 error('Return continuation with a body', node); |
| 85 } |
| 86 doInScope([node.returnContinuation], node, () => visit(node.body)); |
| 87 } |
| 88 |
| 89 @override |
| 90 visitLetPrim(LetPrim node) { |
| 91 markAsSeen(node.primitive); |
| 92 visit(node.primitive); |
| 93 doInScope([node.primitive], node, () => visit(node.body)); |
| 94 } |
| 95 |
| 96 @override |
| 97 visitLetMutable(LetMutable node) { |
| 98 markAsSeen(node.variable); |
| 99 processReference(node.value); |
| 100 doInScope([node.variable], node, () => visit(node.body)); |
| 101 } |
| 102 |
| 103 @override |
| 104 visitFunctionDefinition(FunctionDefinition node) { |
| 105 node.parameters.forEach(markAsSeen); |
| 106 if (node.body != null) { |
| 107 doInScope(node.parameters, node, () => visit(node.body)); |
| 108 } |
| 109 } |
| 110 |
| 111 @override |
| 112 visitConstructorDefinition(ConstructorDefinition node) { |
| 113 node.parameters.forEach(markAsSeen); |
| 114 doInScope(node.parameters, node, () { |
| 115 if (node.initializers != null) node.initializers.forEach(visit); |
| 116 if (node.body != null) visit(node.body); |
| 117 }); |
| 118 } |
| 119 |
| 120 @override |
| 121 visitDeclareFunction(DeclareFunction node) { |
| 122 markAsSeen(node.variable); |
| 123 doInScope([node.variable], node, () { |
| 124 visit(node.definition); |
| 125 visit(node.body); |
| 126 }); |
| 127 } |
| 128 |
| 129 @override |
| 130 processReference(Reference reference) { |
| 131 if (!bindings.containsKey(reference.definition)) { |
| 132 error('Referenced out of scope: ${reference.definition}', reference); |
| 133 } |
| 134 if (!seenReferences[reference.definition].add(reference)) { |
| 135 error('Duplicate use of Reference to ${reference.definition}', reference); |
| 136 } |
| 137 } |
| 138 |
| 139 @override |
| 140 processInvokeContinuation(InvokeContinuation node) { |
| 141 Continuation target = node.continuation.definition; |
| 142 if (node.isRecursive && !insideContinuations.contains(target)) { |
| 143 error('Non-recursive InvokeContinuation marked as recursive', node); |
| 144 } |
| 145 if (!node.isRecursive && insideContinuations.contains(target)) { |
| 146 error('Recursive InvokeContinuation marked as non-recursive', node); |
| 147 } |
| 148 if (node.isRecursive && !target.isRecursive) { |
| 149 error('Recursive Continuation was not marked as recursive', node); |
| 150 } |
| 151 if (node.arguments.length != target.parameters.length) { |
| 152 error('Arity mismatch in InvokeContinuation', node); |
| 153 } |
| 154 } |
| 155 |
| 156 void checkReferenceChain(Definition def) { |
| 157 Set<Reference> chainedReferences = new Set<Reference>(); |
| 158 Reference prev = null; |
| 159 for (Reference ref = def.firstRef; ref != null; ref = ref.next) { |
| 160 if (ref.definition != def) { |
| 161 error('Reference in chain for $def points to ${ref.definition}', def); |
| 162 } |
| 163 if (ref.previous != prev) { |
| 164 error('Broken .previous link in reference to $def', def); |
| 165 } |
| 166 prev = ref; |
| 167 if (!chainedReferences.add(ref)) { |
| 168 error('Cyclic reference chain for $def', def); |
| 169 } |
| 170 } |
| 171 if (!chainedReferences.containsAll(seenReferences[def])) { |
| 172 error('Seen reference to $def not in reference chain', def); |
| 173 } |
| 174 if (!seenReferences[def].containsAll(chainedReferences)) { |
| 175 error('Reference chain for $def contains orphaned references', def); |
| 176 } |
| 177 } |
| 178 |
| 179 error(String message, node) { |
| 180 String sexpr; |
| 181 if (ENABLE_DUMP) { |
| 182 try { |
| 183 Decorator decorator = (n, String s) => n == node ? '**$s**' : s; |
| 184 sexpr = new SExpressionStringifier(decorator).visit(topLevelNode); |
| 185 } catch (e) { |
| 186 sexpr = '(Exception thrown by SExpressionStringifier: $e)'; |
| 187 } |
| 188 } else { |
| 189 sexpr = '(Set DUMP_IR flag to enable)'; |
| 190 } |
| 191 throw 'CPS integrity violation in ${topLevelNode.element}:\n' |
| 192 '$message\n\n' |
| 193 'SExpr dump (offending node marked with **):\n\n' |
| 194 '$sexpr\n'; |
| 195 } |
| 196 |
| 197 void check(ExecutableDefinition node) { |
| 198 topLevelNode = node; |
| 199 visit(node); |
| 200 |
| 201 // Check this last, so out-of-scope references are not classified as |
| 202 // a broken reference chain. |
| 203 seenDefinitions.forEach(checkReferenceChain); |
| 204 } |
| 205 |
| 206 } |
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