зеркало из https://github.com/mozilla/gecko-dev.git
249 строки
9.0 KiB
C++
249 строки
9.0 KiB
C++
/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "CanRunScriptChecker.h"
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#include "CustomMatchers.h"
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void CanRunScriptChecker::registerMatchers(MatchFinder *AstMatcher) {
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auto Refcounted = qualType(hasDeclaration(cxxRecordDecl(isRefCounted())));
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auto InvalidArg =
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// We want to find any expression,
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ignoreTrivials(expr(
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// which has a refcounted pointer type,
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anyOf(
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hasType(Refcounted),
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hasType(pointsTo(Refcounted)),
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hasType(references(Refcounted))
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),
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// and which is not this,
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unless(cxxThisExpr()),
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// and which is not a method call on a smart ptr,
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unless(cxxMemberCallExpr(on(hasType(isSmartPtrToRefCounted())))),
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// and which is not calling operator* on a smart ptr.
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unless(
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allOf(
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cxxOperatorCallExpr(hasOverloadedOperatorName("*")),
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callExpr(allOf(
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hasAnyArgument(hasType(isSmartPtrToRefCounted())),
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argumentCountIs(1)
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))
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)
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),
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// and which is not a parameter of the parent function,
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unless(declRefExpr(to(parmVarDecl()))),
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// and which is not a MOZ_KnownLive wrapped value.
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unless(callExpr(callee(functionDecl(hasName("MOZ_KnownLive"))))),
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expr().bind("invalidArg")));
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auto OptionalInvalidExplicitArg = anyOf(
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// We want to find any argument which is invalid.
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hasAnyArgument(InvalidArg),
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// This makes this matcher optional.
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anything());
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// Please note that the hasCanRunScriptAnnotation() matchers are not present
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// directly in the cxxMemberCallExpr, callExpr and constructExpr matchers
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// because we check that the corresponding functions can run script later in
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// the checker code.
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AstMatcher->addMatcher(
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expr(
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anyOf(
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// We want to match a method call expression,
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cxxMemberCallExpr(
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// which optionally has an invalid arg,
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OptionalInvalidExplicitArg,
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// or which optionally has an invalid implicit this argument,
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anyOf(
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// which derefs into an invalid arg,
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on(cxxOperatorCallExpr(
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anyOf(hasAnyArgument(InvalidArg), anything()))),
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// or is an invalid arg.
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on(InvalidArg),
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anything()),
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expr().bind("callExpr")),
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// or a regular call expression,
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callExpr(
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// which optionally has an invalid arg.
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OptionalInvalidExplicitArg, expr().bind("callExpr")),
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// or a construct expression,
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cxxConstructExpr(
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// which optionally has an invalid arg.
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OptionalInvalidExplicitArg, expr().bind("constructExpr"))),
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anyOf(
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// We want to match the parent function.
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forFunction(functionDecl().bind("nonCanRunScriptParentFunction")),
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// ... optionally.
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anything())),
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this);
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}
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void CanRunScriptChecker::onStartOfTranslationUnit() {
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IsFuncSetBuilt = false;
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CanRunScriptFuncs.clear();
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}
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namespace {
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/// This class is a callback used internally to match function declarations
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/// with the MOZ_CAN_RUN_SCRIPT annotation, adding these functions and all
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/// the methods they override to the can-run-script function set.
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class FuncSetCallback : public MatchFinder::MatchCallback {
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public:
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FuncSetCallback(std::unordered_set<const FunctionDecl *> &FuncSet)
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: CanRunScriptFuncs(FuncSet) {}
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void run(const MatchFinder::MatchResult &Result) override;
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private:
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/// This method recursively adds all the methods overriden by the given
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/// paremeter.
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void addAllOverriddenMethodsRecursively(const CXXMethodDecl *Method);
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std::unordered_set<const FunctionDecl *> &CanRunScriptFuncs;
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};
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void FuncSetCallback::run(const MatchFinder::MatchResult &Result) {
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const FunctionDecl *Func;
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if (auto *Lambda = Result.Nodes.getNodeAs<LambdaExpr>("lambda")) {
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Func = Lambda->getCallOperator();
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if (!Func || !hasCustomAttribute<moz_can_run_script>(Func))
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return;
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} else {
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Func = Result.Nodes.getNodeAs<FunctionDecl>("canRunScriptFunction");
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}
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CanRunScriptFuncs.insert(Func);
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// If this is a method, we check the methods it overrides.
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if (auto *Method = dyn_cast<CXXMethodDecl>(Func)) {
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addAllOverriddenMethodsRecursively(Method);
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}
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}
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void FuncSetCallback::addAllOverriddenMethodsRecursively(
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const CXXMethodDecl *Method) {
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for (auto OverriddenMethod : Method->overridden_methods()) {
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CanRunScriptFuncs.insert(OverriddenMethod);
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// If this is not the definition, we also add the definition (if it
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// exists) to the set.
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if (!OverriddenMethod->isThisDeclarationADefinition()) {
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if (auto Def = OverriddenMethod->getDefinition()) {
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CanRunScriptFuncs.insert(Def);
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}
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}
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addAllOverriddenMethodsRecursively(OverriddenMethod);
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}
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}
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} // namespace
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void CanRunScriptChecker::buildFuncSet(ASTContext *Context) {
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// We create a match finder.
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MatchFinder Finder;
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// We create the callback which will be called when we find a function with
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// a MOZ_CAN_RUN_SCRIPT annotation.
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FuncSetCallback Callback(CanRunScriptFuncs);
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// We add the matcher to the finder, linking it to our callback.
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Finder.addMatcher(
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functionDecl(hasCanRunScriptAnnotation()).bind("canRunScriptFunction"),
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&Callback);
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Finder.addMatcher(
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lambdaExpr().bind("lambda"),
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&Callback);
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// We start the analysis, given the ASTContext our main checker is in.
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Finder.matchAST(*Context);
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}
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void CanRunScriptChecker::check(const MatchFinder::MatchResult &Result) {
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// If the set of functions which can run script is not yet built, then build
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// it.
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if (!IsFuncSetBuilt) {
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buildFuncSet(Result.Context);
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IsFuncSetBuilt = true;
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}
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const char *ErrorInvalidArg =
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"arguments must all be strong refs or parent parameters when calling a "
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"function marked as MOZ_CAN_RUN_SCRIPT (including the implicit object "
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"argument)";
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const char *ErrorNonCanRunScriptParent =
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"functions marked as MOZ_CAN_RUN_SCRIPT can only be called from "
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"functions also marked as MOZ_CAN_RUN_SCRIPT";
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const char *NoteNonCanRunScriptParent = "parent function declared here";
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const Expr *InvalidArg = Result.Nodes.getNodeAs<Expr>("invalidArg");
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const CallExpr *Call = Result.Nodes.getNodeAs<CallExpr>("callExpr");
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// If we don't find the FunctionDecl linked to this call or if it's not marked
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// as can-run-script, consider that we didn't find a match.
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if (Call && (!Call->getDirectCallee() ||
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!CanRunScriptFuncs.count(Call->getDirectCallee()))) {
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Call = nullptr;
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}
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const CXXConstructExpr *Construct =
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Result.Nodes.getNodeAs<CXXConstructExpr>("constructExpr");
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// If we don't find the CXXConstructorDecl linked to this construct expression
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// or if it's not marked as can-run-script, consider that we didn't find a
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// match.
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if (Construct && (!Construct->getConstructor() ||
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!CanRunScriptFuncs.count(Construct->getConstructor()))) {
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Construct = nullptr;
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}
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const FunctionDecl *ParentFunction =
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Result.Nodes.getNodeAs<FunctionDecl>("nonCanRunScriptParentFunction");
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// If the parent function can run script, consider that we didn't find a match
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// because we only care about parent functions which can't run script.
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//
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// In addition, If the parent function is annotated as a
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// CAN_RUN_SCRIPT_BOUNDARY, we don't want to complain about it calling a
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// CAN_RUN_SCRIPT function. This is a mechanism to opt out of the infectious
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// nature of CAN_RUN_SCRIPT which is necessary in some tricky code like
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// Bindings.
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if (ParentFunction &&
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(CanRunScriptFuncs.count(ParentFunction) ||
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hasCustomAttribute<moz_can_run_script_boundary>(ParentFunction))) {
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ParentFunction = nullptr;
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}
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// Get the call range from either the CallExpr or the ConstructExpr.
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SourceRange CallRange;
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if (Call) {
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CallRange = Call->getSourceRange();
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} else if (Construct) {
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CallRange = Construct->getSourceRange();
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} else {
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// If we have neither a Call nor a Construct, we have nothing do to here.
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return;
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}
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// If we have an invalid argument in the call, we emit the diagnostic to
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// signal it.
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if (InvalidArg) {
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diag(InvalidArg->getExprLoc(), ErrorInvalidArg, DiagnosticIDs::Error)
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<< CallRange;
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}
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// If the parent function is not marked as MOZ_CAN_RUN_SCRIPT, we emit an
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// error and a not indicating it.
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if (ParentFunction) {
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assert(!hasCustomAttribute<moz_can_run_script>(ParentFunction) &&
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"Matcher missed something");
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diag(CallRange.getBegin(), ErrorNonCanRunScriptParent, DiagnosticIDs::Error)
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<< CallRange;
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diag(ParentFunction->getLocation(), NoteNonCanRunScriptParent,
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DiagnosticIDs::Note);
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}
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}
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