616 lines
20 KiB
C
616 lines
20 KiB
C
// Copyright (c) 2012 Marshall A. Greenblatt. All rights reserved.
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//
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions are
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// met:
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//
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// * Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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// * Redistributions in binary form must reproduce the above
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// copyright notice, this list of conditions and the following disclaimer
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// in the documentation and/or other materials provided with the
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// distribution.
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// * Neither the name of Google Inc. nor the name Chromium Embedded
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// Framework nor the names of its contributors may be used to endorse
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// or promote products derived from this software without specific prior
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// written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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//
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// ---------------------------------------------------------------------------
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//
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// This file was generated by the CEF translator tool and should not edited
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// by hand. See the translator.README.txt file in the tools directory for
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// more information.
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//
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#ifndef CEF_INCLUDE_CAPI_CEF_V8_CAPI_H_
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#define CEF_INCLUDE_CAPI_CEF_V8_CAPI_H_
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#pragma once
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#ifdef __cplusplus
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extern "C" {
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#endif
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#include "include/capi/cef_base_capi.h"
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///
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// Register a new V8 extension with the specified JavaScript extension code and
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// handler. Functions implemented by the handler are prototyped using the
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// keyword 'native'. The calling of a native function is restricted to the scope
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// in which the prototype of the native function is defined. This function may
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// be called on any thread.
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//
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// Example JavaScript extension code: <pre>
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// // create the 'example' global object if it doesn't already exist.
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// if (!example)
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// example = {};
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// // create the 'example.test' global object if it doesn't already exist.
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// if (!example.test)
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// example.test = {};
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// (function() {
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// // Define the function 'example.test.myfunction'.
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// example.test.myfunction = function() {
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// // Call CefV8Handler::Execute() with the function name 'MyFunction'
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// // and no arguments.
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// native function MyFunction();
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// return MyFunction();
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// };
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// // Define the getter function for parameter 'example.test.myparam'.
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// example.test.__defineGetter__('myparam', function() {
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// // Call CefV8Handler::Execute() with the function name 'GetMyParam'
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// // and no arguments.
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// native function GetMyParam();
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// return GetMyParam();
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// });
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// // Define the setter function for parameter 'example.test.myparam'.
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// example.test.__defineSetter__('myparam', function(b) {
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// // Call CefV8Handler::Execute() with the function name 'SetMyParam'
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// // and a single argument.
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// native function SetMyParam();
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// if(b) SetMyParam(b);
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// });
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//
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// // Extension definitions can also contain normal JavaScript variables
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// // and functions.
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// var myint = 0;
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// example.test.increment = function() {
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// myint += 1;
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// return myint;
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// };
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// })();
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// </pre> Example usage in the page: <pre>
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// // Call the function.
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// example.test.myfunction();
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// // Set the parameter.
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// example.test.myparam = value;
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// // Get the parameter.
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// value = example.test.myparam;
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// // Call another function.
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// example.test.increment();
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// </pre>
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///
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CEF_EXPORT int cef_register_extension(const cef_string_t* extension_name,
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const cef_string_t* javascript_code, struct _cef_v8handler_t* handler);
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///
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// Structure that encapsulates a V8 context handle.
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///
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typedef struct _cef_v8context_t {
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///
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// Base structure.
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///
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cef_base_t base;
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///
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// Returns the browser for this context.
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///
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struct _cef_browser_t* (CEF_CALLBACK *get_browser)(
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struct _cef_v8context_t* self);
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///
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// Returns the frame for this context.
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///
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struct _cef_frame_t* (CEF_CALLBACK *get_frame)(struct _cef_v8context_t* self);
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///
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// Returns the global object for this context.
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///
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struct _cef_v8value_t* (CEF_CALLBACK *get_global)(
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struct _cef_v8context_t* self);
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///
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// Enter this context. A context must be explicitly entered before creating a
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// V8 Object, Array or Function asynchronously. exit() must be called the same
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// number of times as enter() before releasing this context. V8 objects belong
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// to the context in which they are created. Returns true (1) if the scope was
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// entered successfully.
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///
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int (CEF_CALLBACK *enter)(struct _cef_v8context_t* self);
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///
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// Exit this context. Call this function only after calling enter(). Returns
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// true (1) if the scope was exited successfully.
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///
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int (CEF_CALLBACK *exit)(struct _cef_v8context_t* self);
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///
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// Returns true (1) if this object is pointing to the same handle as |that|
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// object.
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///
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int (CEF_CALLBACK *is_same)(struct _cef_v8context_t* self,
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struct _cef_v8context_t* that);
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} cef_v8context_t;
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///
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// Returns the current (top) context object in the V8 context stack.
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///
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CEF_EXPORT cef_v8context_t* cef_v8context_get_current_context();
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///
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// Returns the entered (bottom) context object in the V8 context stack.
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///
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CEF_EXPORT cef_v8context_t* cef_v8context_get_entered_context();
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///
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// Returns true (1) if V8 is currently inside a context.
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///
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CEF_EXPORT int cef_v8context_in_context();
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///
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// Structure that should be implemented to handle V8 function calls. The
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// functions of this structure will always be called on the UI thread.
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///
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typedef struct _cef_v8handler_t {
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///
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// Base structure.
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///
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cef_base_t base;
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///
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// Handle execution of the function identified by |name|. |object| is the
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// receiver ('this' object) of the function. |arguments| is the list of
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// arguments passed to the function. If execution succeeds set |retval| to the
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// function return value. If execution fails set |exception| to the exception
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// that will be thrown. Return true (1) if execution was handled.
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///
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int (CEF_CALLBACK *execute)(struct _cef_v8handler_t* self,
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const cef_string_t* name, struct _cef_v8value_t* object,
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size_t argumentsCount, struct _cef_v8value_t* const* arguments,
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struct _cef_v8value_t** retval, cef_string_t* exception);
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} cef_v8handler_t;
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///
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// Structure that should be implemented to handle V8 accessor calls. Accessor
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// identifiers are registered by calling cef_v8value_t::set_value_byaccessor().
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// The functions of this structure will always be called on the UI thread.
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///
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typedef struct _cef_v8accessor_t {
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///
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// Base structure.
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///
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cef_base_t base;
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///
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// Handle retrieval the accessor value identified by |name|. |object| is the
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// receiver ('this' object) of the accessor. If retrieval succeeds set
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// |retval| to the return value. If retrieval fails set |exception| to the
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// exception that will be thrown. Return true (1) if accessor retrieval was
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// handled.
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///
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int (CEF_CALLBACK *get)(struct _cef_v8accessor_t* self,
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const cef_string_t* name, struct _cef_v8value_t* object,
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struct _cef_v8value_t** retval, cef_string_t* exception);
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///
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// Handle assignment of the accessor value identified by |name|. |object| is
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// the receiver ('this' object) of the accessor. |value| is the new value
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// being assigned to the accessor. If assignment fails set |exception| to the
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// exception that will be thrown. Return true (1) if accessor assignment was
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// handled.
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///
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int (CEF_CALLBACK *set)(struct _cef_v8accessor_t* self,
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const cef_string_t* name, struct _cef_v8value_t* object,
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struct _cef_v8value_t* value, cef_string_t* exception);
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} cef_v8accessor_t;
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///
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// Structure representing a V8 exception.
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///
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typedef struct _cef_v8exception_t {
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///
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// Base structure.
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///
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cef_base_t base;
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///
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// Returns the exception message.
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///
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// The resulting string must be freed by calling cef_string_userfree_free().
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cef_string_userfree_t (CEF_CALLBACK *get_message)(
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struct _cef_v8exception_t* self);
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///
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// Returns the line of source code that the exception occurred within.
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///
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// The resulting string must be freed by calling cef_string_userfree_free().
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cef_string_userfree_t (CEF_CALLBACK *get_source_line)(
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struct _cef_v8exception_t* self);
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///
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// Returns the resource name for the script from where the function causing
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// the error originates.
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///
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// The resulting string must be freed by calling cef_string_userfree_free().
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cef_string_userfree_t (CEF_CALLBACK *get_script_resource_name)(
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struct _cef_v8exception_t* self);
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///
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// Returns the 1-based number of the line where the error occurred or 0 if the
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// line number is unknown.
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///
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int (CEF_CALLBACK *get_line_number)(struct _cef_v8exception_t* self);
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///
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// Returns the index within the script of the first character where the error
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// occurred.
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///
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int (CEF_CALLBACK *get_start_position)(struct _cef_v8exception_t* self);
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///
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// Returns the index within the script of the last character where the error
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// occurred.
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///
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int (CEF_CALLBACK *get_end_position)(struct _cef_v8exception_t* self);
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///
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// Returns the index within the line of the first character where the error
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// occurred.
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///
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int (CEF_CALLBACK *get_start_column)(struct _cef_v8exception_t* self);
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///
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// Returns the index within the line of the last character where the error
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// occurred.
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///
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int (CEF_CALLBACK *get_end_column)(struct _cef_v8exception_t* self);
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} cef_v8exception_t;
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///
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// Structure representing a V8 value. The functions of this structure should
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// only be called on the UI thread.
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///
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typedef struct _cef_v8value_t {
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///
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// Base structure.
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///
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cef_base_t base;
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///
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// True if the value type is undefined.
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///
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int (CEF_CALLBACK *is_undefined)(struct _cef_v8value_t* self);
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///
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// True if the value type is null.
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///
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int (CEF_CALLBACK *is_null)(struct _cef_v8value_t* self);
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///
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// True if the value type is bool.
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///
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int (CEF_CALLBACK *is_bool)(struct _cef_v8value_t* self);
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///
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// True if the value type is int.
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///
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int (CEF_CALLBACK *is_int)(struct _cef_v8value_t* self);
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///
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// True if the value type is double.
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///
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int (CEF_CALLBACK *is_double)(struct _cef_v8value_t* self);
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///
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// True if the value type is Date.
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///
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int (CEF_CALLBACK *is_date)(struct _cef_v8value_t* self);
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///
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// True if the value type is string.
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///
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int (CEF_CALLBACK *is_string)(struct _cef_v8value_t* self);
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///
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// True if the value type is object.
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///
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int (CEF_CALLBACK *is_object)(struct _cef_v8value_t* self);
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///
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// True if the value type is array.
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///
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int (CEF_CALLBACK *is_array)(struct _cef_v8value_t* self);
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///
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// True if the value type is function.
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///
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int (CEF_CALLBACK *is_function)(struct _cef_v8value_t* self);
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///
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// Returns true (1) if this object is pointing to the same handle as |that|
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// object.
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///
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int (CEF_CALLBACK *is_same)(struct _cef_v8value_t* self,
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struct _cef_v8value_t* that);
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///
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// Return a bool value. The underlying data will be converted to if
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// necessary.
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///
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int (CEF_CALLBACK *get_bool_value)(struct _cef_v8value_t* self);
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///
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// Return an int value. The underlying data will be converted to if
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// necessary.
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///
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int (CEF_CALLBACK *get_int_value)(struct _cef_v8value_t* self);
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///
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// Return a double value. The underlying data will be converted to if
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// necessary.
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///
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double (CEF_CALLBACK *get_double_value)(struct _cef_v8value_t* self);
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///
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// Return a Date value. The underlying data will be converted to if
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// necessary.
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///
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cef_time_t (CEF_CALLBACK *get_date_value)(struct _cef_v8value_t* self);
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///
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// Return a string value. The underlying data will be converted to if
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// necessary.
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///
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// The resulting string must be freed by calling cef_string_userfree_free().
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cef_string_userfree_t (CEF_CALLBACK *get_string_value)(
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struct _cef_v8value_t* self);
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// OBJECT METHODS - These functions are only available on objects. Arrays and
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// functions are also objects. String- and integer-based keys can be used
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// interchangably with the framework converting between them as necessary.
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///
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// Returns true (1) if the object has a value with the specified identifier.
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///
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int (CEF_CALLBACK *has_value_bykey)(struct _cef_v8value_t* self,
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const cef_string_t* key);
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///
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// Returns true (1) if the object has a value with the specified identifier.
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///
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int (CEF_CALLBACK *has_value_byindex)(struct _cef_v8value_t* self, int index);
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///
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// Delete the value with the specified identifier.
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///
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int (CEF_CALLBACK *delete_value_bykey)(struct _cef_v8value_t* self,
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const cef_string_t* key);
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///
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// Delete the value with the specified identifier.
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///
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int (CEF_CALLBACK *delete_value_byindex)(struct _cef_v8value_t* self,
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int index);
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///
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// Returns the value with the specified identifier.
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///
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struct _cef_v8value_t* (CEF_CALLBACK *get_value_bykey)(
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struct _cef_v8value_t* self, const cef_string_t* key);
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///
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// Returns the value with the specified identifier.
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///
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struct _cef_v8value_t* (CEF_CALLBACK *get_value_byindex)(
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struct _cef_v8value_t* self, int index);
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///
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// Associate a value with the specified identifier.
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///
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int (CEF_CALLBACK *set_value_bykey)(struct _cef_v8value_t* self,
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const cef_string_t* key, struct _cef_v8value_t* value,
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enum cef_v8_propertyattribute_t attribute);
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///
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// Associate a value with the specified identifier.
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///
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int (CEF_CALLBACK *set_value_byindex)(struct _cef_v8value_t* self, int index,
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struct _cef_v8value_t* value);
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///
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// Register an identifier whose access will be forwarded to the
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// cef_v8accessor_t instance passed to
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// cef_v8value_t::cef_v8value_create_object_with_accessor().
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///
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int (CEF_CALLBACK *set_value_byaccessor)(struct _cef_v8value_t* self,
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const cef_string_t* key, enum cef_v8_accesscontrol_t settings,
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enum cef_v8_propertyattribute_t attribute);
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///
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// Read the keys for the object's values into the specified vector. Integer-
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// based keys will also be returned as strings.
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///
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int (CEF_CALLBACK *get_keys)(struct _cef_v8value_t* self,
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cef_string_list_t keys);
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///
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// Returns the user data, if any, specified when the object was created.
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///
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struct _cef_base_t* (CEF_CALLBACK *get_user_data)(
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struct _cef_v8value_t* self);
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///
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// Returns the amount of externally allocated memory registered for the
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// object.
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///
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int (CEF_CALLBACK *get_externally_allocated_memory)(
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struct _cef_v8value_t* self);
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///
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// Adjusts the amount of registered external memory for the object. Used to
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// give V8 an indication of the amount of externally allocated memory that is
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// kept alive by JavaScript objects. V8 uses this information to decide when
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// to perform global garbage collection. Each cef_v8value_t tracks the amount
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// of external memory associated with it and automatically decreases the
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// global total by the appropriate amount on its destruction.
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// |change_in_bytes| specifies the number of bytes to adjust by. This function
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// returns the number of bytes associated with the object after the
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// adjustment.
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///
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int (CEF_CALLBACK *adjust_externally_allocated_memory)(
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struct _cef_v8value_t* self, int change_in_bytes);
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// ARRAY METHODS - These functions are only available on arrays.
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///
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// Returns the number of elements in the array.
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///
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int (CEF_CALLBACK *get_array_length)(struct _cef_v8value_t* self);
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// FUNCTION METHODS - These functions are only available on functions.
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///
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// Returns the function name.
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///
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// The resulting string must be freed by calling cef_string_userfree_free().
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cef_string_userfree_t (CEF_CALLBACK *get_function_name)(
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struct _cef_v8value_t* self);
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///
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// Returns the function handler or NULL if not a CEF-created function.
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///
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struct _cef_v8handler_t* (CEF_CALLBACK *get_function_handler)(
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struct _cef_v8value_t* self);
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///
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// Execute the function using the current V8 context. This function should
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// only be called from within the scope of a cef_v8handler_t or
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// cef_v8accessor_t callback, or in combination with calling enter() and
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// exit() on a stored cef_v8context_t reference. |object| is the receiver
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// ('this' object) of the function. |arguments| is the list of arguments that
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// will be passed to the function. If execution succeeds |retval| will be set
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// to the function return value. If execution fails |exception| will be set to
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// the exception that was thrown. If |rethrow_exception| is true (1) any
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// exception will also be re- thrown. This function returns false (0) if
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// called incorrectly.
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///
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int (CEF_CALLBACK *execute_function)(struct _cef_v8value_t* self,
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struct _cef_v8value_t* object, size_t argumentsCount,
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struct _cef_v8value_t* const* arguments, struct _cef_v8value_t** retval,
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struct _cef_v8exception_t** exception, int rethrow_exception);
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///
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// Execute the function using the specified V8 context. |object| is the
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// receiver ('this' object) of the function. |arguments| is the list of
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// arguments that will be passed to the function. If execution succeeds
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// |retval| will be set to the function return value. If execution fails
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// |exception| will be set to the exception that was thrown. If
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// |rethrow_exception| is true (1) any exception will also be re-thrown. This
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// function returns false (0) if called incorrectly.
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///
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int (CEF_CALLBACK *execute_function_with_context)(struct _cef_v8value_t* self,
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struct _cef_v8context_t* context, struct _cef_v8value_t* object,
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size_t argumentsCount, struct _cef_v8value_t* const* arguments,
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struct _cef_v8value_t** retval, struct _cef_v8exception_t** exception,
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int rethrow_exception);
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} cef_v8value_t;
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///
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// Create a new cef_v8value_t object of type undefined.
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///
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CEF_EXPORT cef_v8value_t* cef_v8value_create_undefined();
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///
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// Create a new cef_v8value_t object of type null.
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///
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CEF_EXPORT cef_v8value_t* cef_v8value_create_null();
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///
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// Create a new cef_v8value_t object of type bool.
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///
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CEF_EXPORT cef_v8value_t* cef_v8value_create_bool(int value);
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///
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// Create a new cef_v8value_t object of type int.
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///
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CEF_EXPORT cef_v8value_t* cef_v8value_create_int(int value);
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///
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// Create a new cef_v8value_t object of type double.
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///
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CEF_EXPORT cef_v8value_t* cef_v8value_create_double(double value);
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///
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// Create a new cef_v8value_t object of type Date.
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///
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CEF_EXPORT cef_v8value_t* cef_v8value_create_date(const cef_time_t* date);
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///
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// Create a new cef_v8value_t object of type string.
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///
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CEF_EXPORT cef_v8value_t* cef_v8value_create_string(const cef_string_t* value);
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///
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// Create a new cef_v8value_t object of type object with optional user data and
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// accessor. This function should only be called from within the scope of a
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// cef_v8context_tHandler, cef_v8handler_t or cef_v8accessor_t callback, or in
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// combination with calling enter() and exit() on a stored cef_v8context_t
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// reference.
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///
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CEF_EXPORT cef_v8value_t* cef_v8value_create_object_with_accessor(
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cef_base_t* user_data, cef_v8accessor_t* accessor);
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///
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// Create a new cef_v8value_t object of type array. This function should only be
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// called from within the scope of a cef_v8context_tHandler, cef_v8handler_t or
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// cef_v8accessor_t callback, or in combination with calling enter() and exit()
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// on a stored cef_v8context_t reference.
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///
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CEF_EXPORT cef_v8value_t* cef_v8value_create_array();
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///
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// Create a new cef_v8value_t object of type function. This function should only
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// be called from within the scope of a cef_v8context_tHandler, cef_v8handler_t
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// or cef_v8accessor_t callback, or in combination with calling enter() and
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// exit() on a stored cef_v8context_t reference.
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///
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CEF_EXPORT cef_v8value_t* cef_v8value_create_function(const cef_string_t* name,
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cef_v8handler_t* handler);
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#ifdef __cplusplus
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}
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#endif
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#endif // CEF_INCLUDE_CAPI_CEF_V8_CAPI_H_
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