mirror of
https://gitlab.winehq.org/wine/wine-gecko.git
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332 lines
10 KiB
C++
332 lines
10 KiB
C++
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=2 sw=2 et tw=78: */
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/* 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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/**
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* This is not a generated file. It contains common utility functions
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* invoked from the JavaScript code generated from IDL interfaces.
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* The goal of the utility functions is to cut down on the size of
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* the generated code itself.
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*/
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#include "nsJSUtils.h"
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#include "jsapi.h"
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#include "js/OldDebugAPI.h"
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#include "jsfriendapi.h"
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#include "nsIScriptContext.h"
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#include "nsIScriptGlobalObject.h"
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#include "nsIXPConnect.h"
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#include "nsCOMPtr.h"
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#include "nsIScriptSecurityManager.h"
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#include "nsPIDOMWindow.h"
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#include "GeckoProfiler.h"
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#include "nsDOMJSUtils.h" // for GetScriptContextFromJSContext
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#include "nsJSPrincipals.h"
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#include "xpcpublic.h"
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#include "nsContentUtils.h"
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bool
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nsJSUtils::GetCallingLocation(JSContext* aContext, const char* *aFilename,
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uint32_t* aLineno)
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{
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JS::RootedScript script(aContext);
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unsigned lineno = 0;
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if (!JS_DescribeScriptedCaller(aContext, &script, &lineno)) {
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return false;
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}
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*aFilename = ::JS_GetScriptFilename(aContext, script);
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*aLineno = lineno;
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return true;
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}
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nsIScriptGlobalObject *
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nsJSUtils::GetStaticScriptGlobal(JSObject* aObj)
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{
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const JSClass* clazz;
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JSObject* glob = aObj; // starting point for search
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if (!glob)
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return nullptr;
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glob = js::GetGlobalForObjectCrossCompartment(glob);
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NS_ABORT_IF_FALSE(glob, "Infallible returns null");
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clazz = JS_GetClass(glob);
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// Whenever we end up with globals that are JSCLASS_IS_DOMJSCLASS
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// and have an nsISupports DOM object, we will need to modify this
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// check here.
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MOZ_ASSERT(!(clazz->flags & JSCLASS_IS_DOMJSCLASS));
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nsISupports* supports;
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if (!(clazz->flags & JSCLASS_HAS_PRIVATE) ||
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!(clazz->flags & JSCLASS_PRIVATE_IS_NSISUPPORTS) ||
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!(supports = (nsISupports*)::JS_GetPrivate(glob))) {
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return nullptr;
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}
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// We might either have a window directly (e.g. if the global is a
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// sandbox whose script object principal pointer is a window), or an
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// XPCWrappedNative for a window. We could also have other
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// sandbox-related script object principals, but we can't do much
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// about those short of trying to walk the proto chain of |glob|
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// looking for a window or something.
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nsCOMPtr<nsIScriptGlobalObject> sgo(do_QueryInterface(supports));
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if (!sgo) {
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nsCOMPtr<nsIXPConnectWrappedNative> wrapper(do_QueryInterface(supports));
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if (!wrapper) {
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return nullptr;
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}
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sgo = do_QueryWrappedNative(wrapper);
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}
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// We're returning a pointer to something that's about to be
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// released, but that's ok here.
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return sgo;
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}
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nsIScriptContext *
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nsJSUtils::GetStaticScriptContext(JSObject* aObj)
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{
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nsIScriptGlobalObject *nativeGlobal = GetStaticScriptGlobal(aObj);
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if (!nativeGlobal)
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return nullptr;
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return nativeGlobal->GetScriptContext();
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}
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nsIScriptGlobalObject *
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nsJSUtils::GetDynamicScriptGlobal(JSContext* aContext)
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{
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nsIScriptContext *scriptCX = GetDynamicScriptContext(aContext);
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if (!scriptCX)
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return nullptr;
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return scriptCX->GetGlobalObject();
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}
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nsIScriptContext *
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nsJSUtils::GetDynamicScriptContext(JSContext *aContext)
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{
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return GetScriptContextFromJSContext(aContext);
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}
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uint64_t
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nsJSUtils::GetCurrentlyRunningCodeInnerWindowID(JSContext *aContext)
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{
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if (!aContext)
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return 0;
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uint64_t innerWindowID = 0;
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JSObject *jsGlobal = JS::CurrentGlobalOrNull(aContext);
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if (jsGlobal) {
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nsIScriptGlobalObject *scriptGlobal = GetStaticScriptGlobal(jsGlobal);
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if (scriptGlobal) {
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nsCOMPtr<nsPIDOMWindow> win = do_QueryInterface(scriptGlobal);
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if (win)
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innerWindowID = win->WindowID();
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}
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}
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return innerWindowID;
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}
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void
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nsJSUtils::ReportPendingException(JSContext *aContext)
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{
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if (JS_IsExceptionPending(aContext)) {
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bool saved = JS_SaveFrameChain(aContext);
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{
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nsIScriptContext* scx = GetScriptContextFromJSContext(aContext);
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JS::Rooted<JSObject*> scope(aContext);
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scope = scx ? scx->GetWindowProxy()
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: js::DefaultObjectForContextOrNull(aContext);
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JSAutoCompartment ac(aContext, scope);
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JS_ReportPendingException(aContext);
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}
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if (saved) {
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JS_RestoreFrameChain(aContext);
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}
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}
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}
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nsresult
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nsJSUtils::CompileFunction(JSContext* aCx,
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JS::HandleObject aTarget,
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JS::CompileOptions& aOptions,
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const nsACString& aName,
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uint32_t aArgCount,
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const char** aArgArray,
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const nsAString& aBody,
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JSObject** aFunctionObject)
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{
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MOZ_ASSERT(js::GetEnterCompartmentDepth(aCx) > 0);
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MOZ_ASSERT_IF(aTarget, js::IsObjectInContextCompartment(aTarget, aCx));
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MOZ_ASSERT_IF(aOptions.versionSet, aOptions.version != JSVERSION_UNKNOWN);
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mozilla::DebugOnly<nsIScriptContext*> ctx = GetScriptContextFromJSContext(aCx);
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MOZ_ASSERT_IF(ctx, ctx->IsContextInitialized());
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// Since aTarget and aCx are same-compartment, there should be no distinction
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// between the object principal and the cx principal.
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// However, aTarget may be null in the wacky aShared case. So use the cx.
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JSPrincipals* p = JS_GetCompartmentPrincipals(js::GetContextCompartment(aCx));
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aOptions.setPrincipals(p);
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// Do the junk Gecko is supposed to do before calling into JSAPI.
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if (aTarget) {
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JS::ExposeObjectToActiveJS(aTarget);
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}
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// Compile.
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JSFunction* fun = JS::CompileFunction(aCx, aTarget, aOptions,
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PromiseFlatCString(aName).get(),
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aArgCount, aArgArray,
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PromiseFlatString(aBody).get(),
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aBody.Length());
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if (!fun) {
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ReportPendingException(aCx);
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return NS_ERROR_FAILURE;
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}
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*aFunctionObject = JS_GetFunctionObject(fun);
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return NS_OK;
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}
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class MOZ_STACK_CLASS AutoDontReportUncaught {
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JSContext* mContext;
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bool mWasSet;
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public:
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AutoDontReportUncaught(JSContext* aContext) : mContext(aContext) {
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MOZ_ASSERT(aContext);
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mWasSet = JS::ContextOptionsRef(mContext).dontReportUncaught();
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if (!mWasSet) {
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JS::ContextOptionsRef(mContext).setDontReportUncaught(true);
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}
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}
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~AutoDontReportUncaught() {
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if (!mWasSet) {
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JS::ContextOptionsRef(mContext).setDontReportUncaught(false);
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}
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}
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};
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nsresult
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nsJSUtils::EvaluateString(JSContext* aCx,
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const nsAString& aScript,
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JS::Handle<JSObject*> aScopeObject,
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JS::CompileOptions& aCompileOptions,
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EvaluateOptions& aEvaluateOptions,
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JS::Value* aRetValue,
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void **aOffThreadToken)
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{
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PROFILER_LABEL("JS", "EvaluateString");
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MOZ_ASSERT_IF(aCompileOptions.versionSet,
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aCompileOptions.version != JSVERSION_UNKNOWN);
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MOZ_ASSERT_IF(aEvaluateOptions.coerceToString, aRetValue);
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MOZ_ASSERT_IF(!aEvaluateOptions.reportUncaught, aRetValue);
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MOZ_ASSERT(aCx == nsContentUtils::GetCurrentJSContext());
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// Unfortunately, the JS engine actually compiles scripts with a return value
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// in a different, less efficient way. Furthermore, it can't JIT them in many
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// cases. So we need to be explicitly told whether the caller cares about the
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// return value. Callers use null to indicate they don't care.
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if (aRetValue) {
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*aRetValue = JSVAL_VOID;
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}
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JS::ExposeObjectToActiveJS(aScopeObject);
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nsAutoMicroTask mt;
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JSPrincipals* p = JS_GetCompartmentPrincipals(js::GetObjectCompartment(aScopeObject));
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aCompileOptions.setPrincipals(p);
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bool ok = false;
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nsresult rv = nsContentUtils::GetSecurityManager()->
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CanExecuteScripts(aCx, nsJSPrincipals::get(p), &ok);
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NS_ENSURE_SUCCESS(rv, rv);
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NS_ENSURE_TRUE(ok, NS_OK);
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mozilla::Maybe<AutoDontReportUncaught> dontReport;
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if (!aEvaluateOptions.reportUncaught) {
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// We need to prevent AutoLastFrameCheck from reporting and clearing
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// any pending exceptions.
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dontReport.construct(aCx);
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}
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// Scope the JSAutoCompartment so that we can later wrap the return value
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// into the caller's cx.
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{
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JSAutoCompartment ac(aCx, aScopeObject);
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JS::RootedObject rootedScope(aCx, aScopeObject);
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if (aOffThreadToken) {
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JSScript *script = JS::FinishOffThreadScript(aCx, JS_GetRuntime(aCx), *aOffThreadToken);
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*aOffThreadToken = nullptr; // Mark the token as having been finished.
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if (script) {
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ok = JS_ExecuteScript(aCx, rootedScope, script, aRetValue);
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} else {
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ok = false;
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}
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} else {
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ok = JS::Evaluate(aCx, rootedScope, aCompileOptions,
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PromiseFlatString(aScript).get(),
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aScript.Length(), aRetValue);
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}
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if (ok && aEvaluateOptions.coerceToString && !aRetValue->isUndefined()) {
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JSString* str = JS_ValueToString(aCx, *aRetValue);
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ok = !!str;
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*aRetValue = ok ? JS::StringValue(str) : JS::UndefinedValue();
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}
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}
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if (!ok) {
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if (aEvaluateOptions.reportUncaught) {
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ReportPendingException(aCx);
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if (aRetValue) {
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*aRetValue = JS::UndefinedValue();
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}
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} else {
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rv = JS_IsExceptionPending(aCx) ? NS_ERROR_FAILURE
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: NS_ERROR_OUT_OF_MEMORY;
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JS::RootedValue exn(aCx);
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JS_GetPendingException(aCx, &exn);
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if (aRetValue) {
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*aRetValue = exn;
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}
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JS_ClearPendingException(aCx);
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}
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}
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// Wrap the return value into whatever compartment aCx was in.
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if (aRetValue) {
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JS::Rooted<JS::Value> v(aCx, *aRetValue);
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if (!JS_WrapValue(aCx, &v)) {
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return NS_ERROR_OUT_OF_MEMORY;
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}
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*aRetValue = v;
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}
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return rv;
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}
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//
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// nsDOMJSUtils.h
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//
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JSObject* GetDefaultScopeFromJSContext(JSContext *cx)
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{
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// DOM JSContexts don't store their default compartment object on
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// the cx, so in those cases we need to fetch it via the scx
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// instead.
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nsIScriptContext *scx = GetScriptContextFromJSContext(cx);
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if (scx) {
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return scx->GetWindowProxy();
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}
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return js::DefaultObjectForContextOrNull(cx);
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}
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