ICode9

精准搜索请尝试: 精确搜索
首页 > 其他分享> 文章详细

webrtc ring_buffer

2021-07-05 01:33:40  阅读:272  来源: 互联网

标签:buffer self ptr element read ring data webrtc size


pjproject-2.10/third_party/webrtc/src/webrtc/common_audio

ring_buffer.c

/*
 *  Copyright (c) 2011 The WebRTC project authors. All Rights Reserved.
 *
 *  Use of this source code is governed by a BSD-style license
 *  that can be found in the LICENSE file in the root of the source
 *  tree. An additional intellectual property rights grant can be found
 *  in the file PATENTS.  All contributing project authors may
 *  be found in the AUTHORS file in the root of the source tree.
 */

// A ring buffer to hold arbitrary data. Provides no thread safety. Unless
// otherwise specified, functions return 0 on success and -1 on error.

#include "webrtc/common_audio/ring_buffer.h"

#include <stddef.h>  // size_t
#include <stdlib.h>
#include <string.h>

enum Wrap {
  SAME_WRAP,
  DIFF_WRAP
};

struct RingBuffer {
  size_t read_pos;
  size_t write_pos;
  size_t element_count;
  size_t element_size;
  enum Wrap rw_wrap;
  char* data;
};

// Get address of region(s) from which we can read data.
// If the region is contiguous, |data_ptr_bytes_2| will be zero.
// If non-contiguous, |data_ptr_bytes_2| will be the size in bytes of the second
// region. Returns room available to be read or |element_count|, whichever is
// smaller.
static size_t GetBufferReadRegions(RingBuffer* buf,
                                   size_t element_count,
                                   void** data_ptr_1,
                                   size_t* data_ptr_bytes_1,
                                   void** data_ptr_2,
                                   size_t* data_ptr_bytes_2) {

  const size_t readable_elements = WebRtc_available_read(buf);
  const size_t read_elements = (readable_elements < element_count ?
      readable_elements : element_count);
  const size_t margin = buf->element_count - buf->read_pos;

  // Check to see if read is not contiguous.
  if (read_elements > margin) {
    // Write data in two blocks that wrap the buffer.
    *data_ptr_1 = buf->data + buf->read_pos * buf->element_size;
    *data_ptr_bytes_1 = margin * buf->element_size;
    *data_ptr_2 = buf->data;
    *data_ptr_bytes_2 = (read_elements - margin) * buf->element_size;
  } else {
    *data_ptr_1 = buf->data + buf->read_pos * buf->element_size;
    *data_ptr_bytes_1 = read_elements * buf->element_size;
    *data_ptr_2 = NULL;
    *data_ptr_bytes_2 = 0;
  }

  return read_elements;
}

RingBuffer* WebRtc_CreateBuffer(size_t element_count, size_t element_size) {
  RingBuffer* self = NULL;
  if (element_count == 0 || element_size == 0) {
    return NULL;
  }

  self = malloc(sizeof(RingBuffer));
  if (!self) {
    return NULL;
  }

  self->data = malloc(element_count * element_size);
  if (!self->data) {
    free(self);
    self = NULL;
    return NULL;
  }

  self->element_count = element_count;
  self->element_size = element_size;
  WebRtc_InitBuffer(self);

  return self;
}

void WebRtc_InitBuffer(RingBuffer* self) {
  self->read_pos = 0;
  self->write_pos = 0;
  self->rw_wrap = SAME_WRAP;

  // Initialize buffer to zeros
  memset(self->data, 0, self->element_count * self->element_size);
}

void WebRtc_FreeBuffer(void* handle) {
  RingBuffer* self = (RingBuffer*)handle;
  if (!self) {
    return;
  }

  free(self->data);
  free(self);
}

size_t WebRtc_ReadBuffer(RingBuffer* self,
                         void** data_ptr,
                         void* data,
                         size_t element_count) {

  if (self == NULL) {
    return 0;
  }
  if (data == NULL) {
    return 0;
  }

  {
    void* buf_ptr_1 = NULL;
    void* buf_ptr_2 = NULL;
    size_t buf_ptr_bytes_1 = 0;
    size_t buf_ptr_bytes_2 = 0;
    const size_t read_count = GetBufferReadRegions(self,
                                                   element_count,
                                                   &buf_ptr_1,
                                                   &buf_ptr_bytes_1,
                                                   &buf_ptr_2,
                                                   &buf_ptr_bytes_2);

    if (buf_ptr_bytes_2 > 0) {
      // We have a wrap around when reading the buffer. Copy the buffer data to
      // |data| and point to it.
      memcpy(data, buf_ptr_1, buf_ptr_bytes_1);
      memcpy(((char*) data) + buf_ptr_bytes_1, buf_ptr_2, buf_ptr_bytes_2);
      buf_ptr_1 = data;
    } else if (!data_ptr) {
      // No wrap, but a memcpy was requested.
      memcpy(data, buf_ptr_1, buf_ptr_bytes_1);
    }
    if (data_ptr) {
      // |buf_ptr_1| == |data| in the case of a wrap.
      *data_ptr = buf_ptr_1;
    }

    // Update read position
    WebRtc_MoveReadPtr(self, (int) read_count);

    return read_count;
  }
}

size_t WebRtc_WriteBuffer(RingBuffer* self,
                          const void* data,
                          size_t element_count) {
  if (!self) {
    return 0;
  }
  if (!data) {
    return 0;
  }

  {
    const size_t free_elements = WebRtc_available_write(self);
    const size_t write_elements = (free_elements < element_count ? free_elements
        : element_count);
    size_t n = write_elements;
    const size_t margin = self->element_count - self->write_pos;

    if (write_elements > margin) {
      // Buffer wrap around when writing.
      memcpy(self->data + self->write_pos * self->element_size,
             data, margin * self->element_size);
      self->write_pos = 0;
      n -= margin;
      self->rw_wrap = DIFF_WRAP;
    }
    memcpy(self->data + self->write_pos * self->element_size,
           ((const char*) data) + ((write_elements - n) * self->element_size),
           n * self->element_size);
    self->write_pos += n;

    return write_elements;
  }
}

int WebRtc_MoveReadPtr(RingBuffer* self, int element_count) {
  if (!self) {
    return 0;
  }

  {
    // We need to be able to take care of negative changes, hence use "int"
    // instead of "size_t".
    const int free_elements = (int) WebRtc_available_write(self);
    const int readable_elements = (int) WebRtc_available_read(self);
    int read_pos = (int) self->read_pos;

    if (element_count > readable_elements) {
      element_count = readable_elements;
    }
    if (element_count < -free_elements) {
      element_count = -free_elements;
    }

    read_pos += element_count;
    if (read_pos > (int) self->element_count) {
      // Buffer wrap around. Restart read position and wrap indicator.
      read_pos -= (int) self->element_count;
      self->rw_wrap = SAME_WRAP;
    }
    if (read_pos < 0) {
      // Buffer wrap around. Restart read position and wrap indicator.
      read_pos += (int) self->element_count;
      self->rw_wrap = DIFF_WRAP;
    }

    self->read_pos = (size_t) read_pos;

    return element_count;
  }
}

size_t WebRtc_available_read(const RingBuffer* self) {
  if (!self) {
    return 0;
  }

  if (self->rw_wrap == SAME_WRAP) {
    return self->write_pos - self->read_pos;
  } else {
    return self->element_count - self->read_pos + self->write_pos;
  }
}

size_t WebRtc_available_write(const RingBuffer* self) {
  if (!self) {
    return 0;
  }

  return self->element_count - WebRtc_available_read(self);
}

ring_buffer.h

/*
 *  Copyright (c) 2011 The WebRTC project authors. All Rights Reserved.
 *
 *  Use of this source code is governed by a BSD-style license
 *  that can be found in the LICENSE file in the root of the source
 *  tree. An additional intellectual property rights grant can be found
 *  in the file PATENTS.  All contributing project authors may
 *  be found in the AUTHORS file in the root of the source tree.
 */

// A ring buffer to hold arbitrary data. Provides no thread safety. Unless
// otherwise specified, functions return 0 on success and -1 on error.

#ifndef WEBRTC_COMMON_AUDIO_RING_BUFFER_H_
#define WEBRTC_COMMON_AUDIO_RING_BUFFER_H_

#ifdef __cplusplus
extern "C" {
#endif

#include <stddef.h>  // size_t

typedef struct RingBuffer RingBuffer;

// Creates and initializes the buffer. Returns NULL on failure.
RingBuffer* WebRtc_CreateBuffer(size_t element_count, size_t element_size);
void WebRtc_InitBuffer(RingBuffer* handle);
void WebRtc_FreeBuffer(void* handle);

// Reads data from the buffer. The |data_ptr| will point to the address where
// it is located. If all |element_count| data are feasible to read without
// buffer wrap around |data_ptr| will point to the location in the buffer.
// Otherwise, the data will be copied to |data| (memory allocation done by the
// user) and |data_ptr| points to the address of |data|. |data_ptr| is only
// guaranteed to be valid until the next call to WebRtc_WriteBuffer().
//
// To force a copying to |data|, pass a NULL |data_ptr|.
//
// Returns number of elements read.
size_t WebRtc_ReadBuffer(RingBuffer* handle,
                         void** data_ptr,
                         void* data,
                         size_t element_count);

// Writes |data| to buffer and returns the number of elements written.
size_t WebRtc_WriteBuffer(RingBuffer* handle, const void* data,
                          size_t element_count);

// Moves the buffer read position and returns the number of elements moved.
// Positive |element_count| moves the read position towards the write position,
// that is, flushing the buffer. Negative |element_count| moves the read
// position away from the the write position, that is, stuffing the buffer.
// Returns number of elements moved.
int WebRtc_MoveReadPtr(RingBuffer* handle, int element_count);

// Returns number of available elements to read.
size_t WebRtc_available_read(const RingBuffer* handle);

// Returns number of available elements for write.
size_t WebRtc_available_write(const RingBuffer* handle);

#ifdef __cplusplus
}
#endif

#endif  // WEBRTC_COMMON_AUDIO_RING_BUFFER_H_

 

标签:buffer,self,ptr,element,read,ring,data,webrtc,size
来源: https://www.cnblogs.com/dong1/p/14970573.html

本站声明: 1. iCode9 技术分享网(下文简称本站)提供的所有内容,仅供技术学习、探讨和分享;
2. 关于本站的所有留言、评论、转载及引用,纯属内容发起人的个人观点,与本站观点和立场无关;
3. 关于本站的所有言论和文字,纯属内容发起人的个人观点,与本站观点和立场无关;
4. 本站文章均是网友提供,不完全保证技术分享内容的完整性、准确性、时效性、风险性和版权归属;如您发现该文章侵犯了您的权益,可联系我们第一时间进行删除;
5. 本站为非盈利性的个人网站,所有内容不会用来进行牟利,也不会利用任何形式的广告来间接获益,纯粹是为了广大技术爱好者提供技术内容和技术思想的分享性交流网站。

专注分享技术,共同学习,共同进步。侵权联系[81616952@qq.com]

Copyright (C)ICode9.com, All Rights Reserved.

ICode9版权所有