github.com/ckxng/wakeup@v0.0.0-20190105202853-90356a5f5a15/include/capi/cef_task_capi.h (about)

     1  // Copyright (c) 2014 Marshall A. Greenblatt. All rights reserved.
     2  //
     3  // Redistribution and use in source and binary forms, with or without
     4  // modification, are permitted provided that the following conditions are
     5  // met:
     6  //
     7  //    * Redistributions of source code must retain the above copyright
     8  // notice, this list of conditions and the following disclaimer.
     9  //    * Redistributions in binary form must reproduce the above
    10  // copyright notice, this list of conditions and the following disclaimer
    11  // in the documentation and/or other materials provided with the
    12  // distribution.
    13  //    * Neither the name of Google Inc. nor the name Chromium Embedded
    14  // Framework nor the names of its contributors may be used to endorse
    15  // or promote products derived from this software without specific prior
    16  // written permission.
    17  //
    18  // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
    19  // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
    20  // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
    21  // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
    22  // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
    23  // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
    24  // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
    25  // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
    26  // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
    27  // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
    28  // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
    29  //
    30  // ---------------------------------------------------------------------------
    31  //
    32  // This file was generated by the CEF translator tool and should not edited
    33  // by hand. See the translator.README.txt file in the tools directory for
    34  // more information.
    35  //
    36  
    37  #ifndef CEF_INCLUDE_CAPI_CEF_TASK_CAPI_H_
    38  #define CEF_INCLUDE_CAPI_CEF_TASK_CAPI_H_
    39  #pragma once
    40  
    41  #ifdef __cplusplus
    42  extern "C" {
    43  #endif
    44  
    45  #include "include/capi/cef_base_capi.h"
    46  
    47  
    48  ///
    49  // Implement this structure for asynchronous task execution. If the task is
    50  // posted successfully and if the associated message loop is still running then
    51  // the execute() function will be called on the target thread. If the task fails
    52  // to post then the task object may be destroyed on the source thread instead of
    53  // the target thread. For this reason be cautious when performing work in the
    54  // task object destructor.
    55  ///
    56  typedef struct _cef_task_t {
    57    ///
    58    // Base structure.
    59    ///
    60    cef_base_t base;
    61  
    62    ///
    63    // Method that will be executed on the target thread.
    64    ///
    65    void (CEF_CALLBACK *execute)(struct _cef_task_t* self);
    66  } cef_task_t;
    67  
    68  
    69  ///
    70  // Structure that asynchronously executes tasks on the associated thread. It is
    71  // safe to call the functions of this structure on any thread.
    72  //
    73  // CEF maintains multiple internal threads that are used for handling different
    74  // types of tasks in different processes. The cef_thread_id_t definitions in
    75  // cef_types.h list the common CEF threads. Task runners are also available for
    76  // other CEF threads as appropriate (for example, V8 WebWorker threads).
    77  ///
    78  typedef struct _cef_task_runner_t {
    79    ///
    80    // Base structure.
    81    ///
    82    cef_base_t base;
    83  
    84    ///
    85    // Returns true (1) if this object is pointing to the same task runner as
    86    // |that| object.
    87    ///
    88    int (CEF_CALLBACK *is_same)(struct _cef_task_runner_t* self,
    89        struct _cef_task_runner_t* that);
    90  
    91    ///
    92    // Returns true (1) if this task runner belongs to the current thread.
    93    ///
    94    int (CEF_CALLBACK *belongs_to_current_thread)(
    95        struct _cef_task_runner_t* self);
    96  
    97    ///
    98    // Returns true (1) if this task runner is for the specified CEF thread.
    99    ///
   100    int (CEF_CALLBACK *belongs_to_thread)(struct _cef_task_runner_t* self,
   101        cef_thread_id_t threadId);
   102  
   103    ///
   104    // Post a task for execution on the thread associated with this task runner.
   105    // Execution will occur asynchronously.
   106    ///
   107    int (CEF_CALLBACK *post_task)(struct _cef_task_runner_t* self,
   108        struct _cef_task_t* task);
   109  
   110    ///
   111    // Post a task for delayed execution on the thread associated with this task
   112    // runner. Execution will occur asynchronously. Delayed tasks are not
   113    // supported on V8 WebWorker threads and will be executed without the
   114    // specified delay.
   115    ///
   116    int (CEF_CALLBACK *post_delayed_task)(struct _cef_task_runner_t* self,
   117        struct _cef_task_t* task, int64 delay_ms);
   118  } cef_task_runner_t;
   119  
   120  
   121  ///
   122  // Returns the task runner for the current thread. Only CEF threads will have
   123  // task runners. An NULL reference will be returned if this function is called
   124  // on an invalid thread.
   125  ///
   126  CEF_EXPORT cef_task_runner_t* cef_task_runner_get_for_current_thread();
   127  
   128  ///
   129  // Returns the task runner for the specified CEF thread.
   130  ///
   131  CEF_EXPORT cef_task_runner_t* cef_task_runner_get_for_thread(
   132      cef_thread_id_t threadId);
   133  
   134  
   135  ///
   136  // Returns true (1) if called on the specified thread. Equivalent to using
   137  // cef_task_runner_t::GetForThread(threadId)->belongs_to_current_thread().
   138  ///
   139  CEF_EXPORT int cef_currently_on(cef_thread_id_t threadId);
   140  
   141  ///
   142  // Post a task for execution on the specified thread. Equivalent to using
   143  // cef_task_runner_t::GetForThread(threadId)->PostTask(task).
   144  ///
   145  CEF_EXPORT int cef_post_task(cef_thread_id_t threadId, cef_task_t* task);
   146  
   147  ///
   148  // Post a task for delayed execution on the specified thread. Equivalent to
   149  // using cef_task_runner_t::GetForThread(threadId)->PostDelayedTask(task,
   150  // delay_ms).
   151  ///
   152  CEF_EXPORT int cef_post_delayed_task(cef_thread_id_t threadId, cef_task_t* task,
   153      int64 delay_ms);
   154  
   155  #ifdef __cplusplus
   156  }
   157  #endif
   158  
   159  #endif  // CEF_INCLUDE_CAPI_CEF_TASK_CAPI_H_