mirror of
https://gitlab.winehq.org/wine/wine-gecko.git
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345 lines
10 KiB
C++
345 lines
10 KiB
C++
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2; -*- */
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/* ***** BEGIN LICENSE BLOCK *****
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* Version: MPL 1.1/GPL 2.0/LGPL 2.1
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*
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* The contents of this file are subject to the Mozilla Public License Version
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* 1.1 (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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* http://www.mozilla.org/MPL/
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*
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* Software distributed under the License is distributed on an "AS IS" basis,
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* WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License
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* for the specific language governing rights and limitations under the
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* License.
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*
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* The Original Code is js-ctypes.
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*
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* The Initial Developer of the Original Code is
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* The Mozilla Foundation <http://www.mozilla.org/>.
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* Portions created by the Initial Developer are Copyright (C) 2009
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* the Initial Developer. All Rights Reserved.
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*
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* Contributor(s):
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* Mark Finkle <mark.finkle@gmail.com>, <mfinkle@mozilla.com>
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* Fredrik Larsson <nossralf@gmail.com>
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* Dan Witte <dwitte@mozilla.com>
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*
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* Alternatively, the contents of this file may be used under the terms of
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* either the GNU General Public License Version 2 or later (the "GPL"), or
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* the GNU Lesser General Public License Version 2.1 or later (the "LGPL"),
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* in which case the provisions of the GPL or the LGPL are applicable instead
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* of those above. If you wish to allow use of your version of this file only
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* under the terms of either the GPL or the LGPL, and not to allow others to
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* use your version of this file under the terms of the MPL, indicate your
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* decision by deleting the provisions above and replace them with the notice
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* and other provisions required by the GPL or the LGPL. If you do not delete
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* the provisions above, a recipient may use your version of this file under
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* the terms of any one of the MPL, the GPL or the LGPL.
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*
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* ***** END LICENSE BLOCK ***** */
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#include "jscntxt.h"
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#include "Function.h"
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#include "Library.h"
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#include "nsAutoPtr.h"
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namespace mozilla {
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namespace ctypes {
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/*******************************************************************************
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** Static helpers
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*******************************************************************************/
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static bool
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GetABI(JSContext* cx, jsval aCallType, ffi_abi& aResult)
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{
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if (JSVAL_IS_PRIMITIVE(aCallType))
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return false;
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ABICode abi = GetABICode(cx, JSVAL_TO_OBJECT(aCallType));
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// determine the ABI from the subset of those available on the
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// given platform. ABI_DEFAULT specifies the default
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// C calling convention (cdecl) on each platform.
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switch (abi) {
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case ABI_DEFAULT:
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aResult = FFI_DEFAULT_ABI;
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return true;
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case ABI_STDCALL:
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#if (defined(_WIN32) && !defined(_WIN64)) || defined(_OS2)
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aResult = FFI_STDCALL;
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return true;
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#endif
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case INVALID_ABI:
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break;
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}
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return false;
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}
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static JSBool
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PrepareType(JSContext* aContext, jsval aType, Type& aResult)
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{
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if (JSVAL_IS_PRIMITIVE(aType) ||
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!CType::IsCType(aContext, JSVAL_TO_OBJECT(aType))) {
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JS_ReportError(aContext, "not a ctypes type");
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return false;
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}
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JSObject* typeObj = JSVAL_TO_OBJECT(aType);
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TypeCode typeCode = CType::GetTypeCode(aContext, typeObj);
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if (typeCode == TYPE_array) {
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// convert array argument types to pointers, just like C.
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// ImplicitConvert will do the same, when passing an array as data.
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JSObject* baseType = ArrayType::GetBaseType(aContext, typeObj);
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typeObj = PointerType::CreateInternal(aContext, NULL, baseType, NULL);
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if (!typeObj)
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return false;
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} else if (typeCode == TYPE_void_t) {
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// disallow void argument types
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JS_ReportError(aContext, "Cannot have void argument type");
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return false;
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}
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// libffi cannot pass types of zero size by value.
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JS_ASSERT(CType::GetSize(aContext, typeObj) != 0);
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aResult.mType = typeObj;
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aResult.mFFIType = *CType::GetFFIType(aContext, typeObj);
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return true;
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}
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static JSBool
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PrepareResultType(JSContext* aContext, jsval aType, Type& aResult)
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{
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if (JSVAL_IS_PRIMITIVE(aType) ||
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!CType::IsCType(aContext, JSVAL_TO_OBJECT(aType))) {
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JS_ReportError(aContext, "not a ctypes type");
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return false;
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}
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JSObject* typeObj = JSVAL_TO_OBJECT(aType);
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TypeCode typeCode = CType::GetTypeCode(aContext, typeObj);
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// Arrays can never be return types.
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if (typeCode == TYPE_array) {
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JS_ReportError(aContext, "Result type cannot be an array");
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return false;
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}
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// libffi cannot pass types of zero size by value.
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JS_ASSERT(typeCode == TYPE_void_t || CType::GetSize(aContext, typeObj) != 0);
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aResult.mType = typeObj;
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aResult.mFFIType = *CType::GetFFIType(aContext, typeObj);
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return true;
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}
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/*******************************************************************************
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** Function implementation
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*******************************************************************************/
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Function::Function()
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: mNext(NULL)
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{
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}
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Function::~Function()
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{
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}
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JSBool
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Function::Init(JSContext* aContext,
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PRFuncPtr aFunc,
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jsval aCallType,
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jsval aResultType,
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jsval* aArgTypes,
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uintN aArgLength)
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{
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mFunc = aFunc;
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// determine the ABI
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if (!GetABI(aContext, aCallType, mCallType)) {
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JS_ReportError(aContext, "Invalid ABI specification");
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return false;
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}
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// prepare the result type
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if (!PrepareResultType(aContext, aResultType, mResultType))
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return false;
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// prepare the argument types
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mArgTypes.SetCapacity(aArgLength);
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for (PRUint32 i = 0; i < aArgLength; ++i) {
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if (!PrepareType(aContext, aArgTypes[i], *mArgTypes.AppendElement()))
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return false;
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// ffi_prep_cif requires an array of ffi_types; prepare it separately.
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mFFITypes.AppendElement(&mArgTypes[i].mFFIType);
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}
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ffi_status status = ffi_prep_cif(&mCIF, mCallType, mFFITypes.Length(),
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&mResultType.mFFIType, mFFITypes.Elements());
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switch (status) {
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case FFI_OK:
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return true;
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case FFI_BAD_ABI:
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JS_ReportError(aContext, "Invalid ABI specification");
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return false;
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case FFI_BAD_TYPEDEF:
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JS_ReportError(aContext, "Invalid type specification");
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return false;
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default:
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JS_ReportError(aContext, "Unknown libffi error");
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return false;
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}
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}
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JSBool
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Function::Execute(JSContext* cx, PRUint32 argc, jsval* vp)
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{
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if (argc != mArgTypes.Length()) {
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JS_ReportError(cx, "Number of arguments does not match declaration");
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return false;
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}
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// prepare the values for each argument
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nsAutoTArray<AutoValue, 16> values;
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nsAutoTArray<AutoValue, 16> strings;
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for (PRUint32 i = 0; i < mArgTypes.Length(); ++i) {
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AutoValue& value = *values.AppendElement();
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jsval arg = JS_ARGV(cx, vp)[i];
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bool freePointer = false;
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if (!value.SizeToType(cx, mArgTypes[i].mType)) {
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JS_ReportAllocationOverflow(cx);
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return false;
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}
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if (!ImplicitConvert(cx, arg, mArgTypes[i].mType, value.mData, true, &freePointer))
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return false;
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if (freePointer) {
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// ImplicitConvert converted a string for us, which we have to free.
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// Keep track of it.
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strings.AppendElement()->mData = *static_cast<char**>(value.mData);
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}
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}
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// initialize a pointer to an appropriate location, for storing the result
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AutoValue resultValue;
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if (CType::GetTypeCode(cx, mResultType.mType) != TYPE_void_t &&
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!resultValue.SizeToType(cx, mResultType.mType)) {
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JS_ReportAllocationOverflow(cx);
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return false;
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}
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// suspend the request before we call into the function, since the call
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// may block or otherwise take a long time to return.
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jsrefcount rc = JS_SuspendRequest(cx);
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ffi_call(&mCIF, FFI_FN(mFunc), resultValue.mData, reinterpret_cast<void**>(values.Elements()));
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JS_ResumeRequest(cx, rc);
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// prepare a JS object from the result
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jsval rval;
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if (!ConvertToJS(cx, mResultType.mType, NULL, resultValue.mData, false, &rval))
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return false;
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JS_SET_RVAL(cx, vp, rval);
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return true;
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}
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void
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Function::Trace(JSTracer *trc)
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{
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// Identify the result CType to the tracer.
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JS_CALL_TRACER(trc, mResultType.mType, JSTRACE_OBJECT, "CType");
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// Identify each argument CType to the tracer.
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for (PRUint32 i = 0; i < mArgTypes.Length(); ++i)
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JS_CALL_TRACER(trc, mArgTypes[i].mType, JSTRACE_OBJECT, "CType");
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}
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/*******************************************************************************
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** JSObject implementation
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*******************************************************************************/
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JSObject*
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Function::Create(JSContext* aContext,
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JSObject* aLibrary,
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PRFuncPtr aFunc,
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const char* aName,
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jsval aCallType,
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jsval aResultType,
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jsval* aArgTypes,
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uintN aArgLength)
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{
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// create new Function instance
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nsAutoPtr<Function> self(new Function());
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if (!self) {
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JS_ReportOutOfMemory(aContext);
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return NULL;
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}
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// deduce and check the ABI and parameter types
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if (!self->Init(aContext, aFunc, aCallType, aResultType, aArgTypes, aArgLength))
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return NULL;
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// create and root the new JS function object
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JSFunction* fn = JS_NewFunction(aContext, JSNative(Function::Call),
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aArgLength, JSFUN_FAST_NATIVE, NULL, aName);
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if (!fn)
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return NULL;
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JSObject* fnObj = JS_GetFunctionObject(fn);
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JSAutoTempValueRooter fnRoot(aContext, fnObj);
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// stash a pointer to self, which Function::Call will need at call time
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if (!JS_SetReservedSlot(aContext, fnObj, SLOT_FUNCTION, PRIVATE_TO_JSVAL(self.get())))
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return NULL;
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// make a strong reference to the library for GC-safety
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if (!JS_SetReservedSlot(aContext, fnObj, SLOT_LIBRARYOBJ, OBJECT_TO_JSVAL(aLibrary)))
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return NULL;
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// Tell the library we exist, so it can (a) identify our CTypes to the tracer
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// and (b) delete our Function instance when it comes time to finalize.
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// (JS functions don't have finalizers.)
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if (!Library::AddFunction(aContext, aLibrary, self))
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return NULL;
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self.forget();
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return fnObj;
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}
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static Function*
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GetFunction(JSContext* cx, JSObject* obj)
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{
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jsval slot;
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JS_GetReservedSlot(cx, obj, SLOT_FUNCTION, &slot);
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return static_cast<Function*>(JSVAL_TO_PRIVATE(slot));
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}
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JSBool
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Function::Call(JSContext* cx, uintN argc, jsval* vp)
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{
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JSObject* callee = JSVAL_TO_OBJECT(JS_CALLEE(cx, vp));
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jsval slot;
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JS_GetReservedSlot(cx, callee, SLOT_LIBRARYOBJ, &slot);
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PRLibrary* library = Library::GetLibrary(cx, JSVAL_TO_OBJECT(slot));
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if (!library) {
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JS_ReportError(cx, "library is not open");
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return JS_FALSE;
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}
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return GetFunction(cx, callee)->Execute(cx, argc, vp);
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}
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}
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}
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