openCV中的两个函数cvLoadImage和cvSaveImage接受文件路径作为参数。

例如,在保存图像时,它是 cvSaveImage(" /tmp/output.jpg",dstIpl),并在磁盘上写入。

有没有办法在内存中提供这个缓冲区?因此,输出图像将在内存中,而不是磁盘写入。

我还想知道cvSaveImage和cvLoadImage(读取和写入内存缓冲区)。谢谢!


我的目标是将文件的编码(jpeg)版本存储在内存中。同样适用于cvLoadImage,我想将内存中的jpeg加载到IplImage格式中。

有帮助吗?

解决方案

libary的SVN版本中有几个未记录的函数:

CV_IMPL CvMat* cvEncodeImage( const char* ext, 
                              const CvArr* arr, const int* _params )

CV_IMPL IplImage* cvDecodeImage( const CvMat* _buf, int iscolor )

最新的签入消息表明它们用于bmp,png,ppm和tiff(仅编码)的本机编码/解码。

或者,您可以使用标准图像编码库(例如libjpeg)并操纵IplImage中的数据以匹配编码库的输入结构。

其他提示

这对我有用

// decode jpg (or other image from a pointer)
// imageBuf contains the jpg image
    cv::Mat imgbuf = cv::Mat(480, 640, CV_8U, imageBuf);
    cv::Mat imgMat = cv::imdecode(imgbuf, CV_LOAD_IMAGE_COLOR);
// imgMat is the decoded image

// encode image into jpg
    cv::vector<uchar> buf;
    cv::imencode(".jpg", imgMat, buf, std::vector<int>() );
// encoded image is now in buf (a vector)
    imageBuf = (unsigned char *) realloc(imageBuf, buf.size());
    memcpy(imageBuf, &buf[0], buf.size());
//  size of imageBuf is buf.size();

我被问及C版而不是C ++:

#include <opencv/cv.h>
#include <opencv/highgui.h>

int
main(int argc, char **argv)
{
    char *cvwin = "camimg";

    cvNamedWindow(cvwin, CV_WINDOW_AUTOSIZE);

    // setup code, initialization, etc ...
    [ ... ]

    while (1) {      
        // getImage was my routine for getting a jpeg from a camera
        char *img = getImage(fp);
        CvMat mat;

   // substitute 640/480 with your image width, height 
        cvInitMatHeader(&mat, 640, 480, CV_8UC3, img, 0);
        IplImage *cvImg = cvDecodeImage(&mat, CV_LOAD_IMAGE_COLOR);
        cvShowImage(cvwin, cvImg);
        cvReleaseImage(&cvImg);
        if (27 == cvWaitKey(1))         // exit when user hits 'ESC' key
        break;
    }

    cvDestroyWindow(cvwin);
}

我假设你在linux上工作。来自libjpeg.doc:

  

JPEG的粗略轮廓   压缩操作是:
  分配   并初始化JPEG压缩   对象结果   指定目的地   压缩数据(例如,文件)
  组   压缩参数,包括   图像大小&amp;色彩空间

     

jpeg_start_compress(...);结果   而   (扫描线仍有待写入)
  jpeg_write_scanlines(...);

     

jpeg_finish_compress(...);结果   发布   JPEG压缩对象

执行您想要做的事情的真正技巧是提供自定义的“数据目标(或源)管理器”。在jpeglib.h中定义:

struct jpeg_destination_mgr {
  JOCTET * next_output_byte;    /* => next byte to write in buffer */
  size_t free_in_buffer;        /* # of byte spaces remaining in buffer */

  JMETHOD(void, init_destination, (j_compress_ptr cinfo));
  JMETHOD(boolean, empty_output_buffer, (j_compress_ptr cinfo));
  JMETHOD(void, term_destination, (j_compress_ptr cinfo));
};

基本上设置了这个,所以你的源和/或目的地是你想要的内存缓冲区,你应该好好去。

顺便说一句,这篇文章可能会好很多,但是很明显,libjpeg62文档非常棒。只需apt-get libjpeg62-dev并阅读libjpeg.doc并查看example.c。如果您遇到问题但无法获得某些工作,请再次发布,我相信有人可以提供帮助。

您需要从内存缓冲区加载文件的是另一个src管理器(libjpeg)。我在Ubuntu 8.10中测试了以下代码。

/******************************** First define mem buffer function bodies **************/
<pre>
/*
 * memsrc.c
 *
 * Copyright (C) 1994-1996, Thomas G. Lane.
 * This file is part of the Independent JPEG Group's software.
 * For conditions of distribution and use, see the accompanying README file.
 *
 * This file contains decompression data source routines for the case of
 * reading JPEG data from a memory buffer that is preloaded with the entire
 * JPEG file.  This would not seem especially useful at first sight, but
 * a number of people have asked for it.
 * This is really just a stripped-down version of jdatasrc.c.  Comparison
 * of this code with jdatasrc.c may be helpful in seeing how to make
 * custom source managers for other purposes.
 */

/* this is not a core library module, so it doesn't define JPEG_INTERNALS */
//include "jinclude.h"
include "jpeglib.h"
include "jerror.h"


/* Expanded data source object for memory input */

typedef struct {
  struct jpeg_source_mgr pub;   /* public fields */

  JOCTET eoi_buffer[2];     /* a place to put a dummy EOI */
} my_source_mgr;

typedef my_source_mgr * my_src_ptr;


/*
 * Initialize source --- called by jpeg_read_header
 * before any data is actually read.
 */

METHODDEF(void)
init_source (j_decompress_ptr cinfo)
{
  /* No work, since jpeg_memory_src set up the buffer pointer and count.
   * Indeed, if we want to read multiple JPEG images from one buffer,
   * this *must* not do anything to the pointer.
   */
}


/*
 * Fill the input buffer --- called whenever buffer is emptied.
 *
 * In this application, this routine should never be called; if it is called,
 * the decompressor has overrun the end of the input buffer, implying we
 * supplied an incomplete or corrupt JPEG datastream.  A simple error exit
 * might be the most appropriate response.
 *
 * But what we choose to do in this code is to supply dummy EOI markers
 * in order to force the decompressor to finish processing and supply
 * some sort of output image, no matter how corrupted.
 */

METHODDEF(boolean)
fill_input_buffer (j_decompress_ptr cinfo)
{
  my_src_ptr src = (my_src_ptr) cinfo->src;

  WARNMS(cinfo, JWRN_JPEG_EOF);

  /* Create a fake EOI marker */
  src->eoi_buffer[0] = (JOCTET) 0xFF;
  src->eoi_buffer[1] = (JOCTET) JPEG_EOI;
  src->pub.next_input_byte = src->eoi_buffer;
  src->pub.bytes_in_buffer = 2;

  return TRUE;
}


/*
 * Skip data --- used to skip over a potentially large amount of
 * uninteresting data (such as an APPn marker).
 *
 * If we overrun the end of the buffer, we let fill_input_buffer deal with
 * it.  An extremely large skip could cause some time-wasting here, but
 * it really isn't supposed to happen ... and the decompressor will never
 * skip more than 64K anyway.
 */

METHODDEF(void)
skip_input_data (j_decompress_ptr cinfo, long num_bytes)
{
  my_src_ptr src = (my_src_ptr) cinfo->src;

  if (num_bytes > 0) {
    while (num_bytes > (long) src->pub.bytes_in_buffer) {
      num_bytes -= (long) src->pub.bytes_in_buffer;
      (void) fill_input_buffer(cinfo);
      /* note we assume that fill_input_buffer will never return FALSE,
       * so suspension need not be handled.
       */
    }
    src->pub.next_input_byte += (size_t) num_bytes;
    src->pub.bytes_in_buffer -= (size_t) num_bytes;
  }
}


/*
 * An additional method that can be provided by data source modules is the
 * resync_to_restart method for error recovery in the presence of RST markers.
 * For the moment, this source module just uses the default resync method
 * provided by the JPEG library.  That method assumes that no backtracking
 * is possible.
 */


/*
 * Terminate source --- called by jpeg_finish_decompress
 * after all data has been read.  Often a no-op.
 *
 * NB: *not* called by jpeg_abort or jpeg_destroy; surrounding
 * application must deal with any cleanup that should happen even
 * for error exit.
 */

METHODDEF(void)
term_source (j_decompress_ptr cinfo)
{
  /* no work necessary here */
}


/*
 * Prepare for input from a memory buffer.
 */

GLOBAL(void)
jpeg_memory_src (j_decompress_ptr cinfo, const JOCTET * buffer, size_t bufsize)
{
  my_src_ptr src;

  /* The source object is made permanent so that a series of JPEG images
   * can be read from a single buffer by calling jpeg_memory_src
   * only before the first one.
   * This makes it unsafe to use this manager and a different source
   * manager serially with the same JPEG object.  Caveat programmer.
   */
  if (cinfo->src == NULL) { /* first time for this JPEG object? */
    cinfo->src = (struct jpeg_source_mgr *)
      (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_PERMANENT,
                  SIZEOF(my_source_mgr));
  }

  src = (my_src_ptr) cinfo->src;
  src->pub.init_source = init_source;
  src->pub.fill_input_buffer = fill_input_buffer;
  src->pub.skip_input_data = skip_input_data;
  src->pub.resync_to_restart = jpeg_resync_to_restart; /* use default method */
  src->pub.term_source = term_source;

  src->pub.next_input_byte = buffer;
  src->pub.bytes_in_buffer = bufsize;
}

然后用法非常简单。您可能需要使用sizeof()替换SIZEOF()。找一个标准的解压缩示例。只需替换“jpeg_stdio_src”即可。使用“jpeg_memory_src”。希望有所帮助!

这是Delphi中的一个例子。它转换24位位图以用于OpenCV

function BmpToPIplImageEx(Bmp: TBitmap): pIplImage;
Var
  i: Integer;
  offset: LongInt;
  dataByte: PByteArray;  
Begin
  Assert(Bmp.PixelFormat = pf24bit, 'PixelFormat must be 24bit');
  Result := cvCreateImageHeader(cvSize(Bmp.Width, Bmp.Height), IPL_DEPTH_8U, 3);
  cvCreateData(Result);
  for i := 0 to Bmp.height - 1 do
  Begin        
    offset   := longint(Result.imageData) + Result.WidthStep * i;
    dataByte := PByteArray(offset);    
    CopyMemory(dataByte, Bmp.Scanline[i], Result.WidthStep);
  End;
End;

这是一个间接的答案......

过去,我直接使用 libpng libjpeg 直接这样做。它们具有足够低级别的API,您可以使用内存缓冲区而不是文件缓冲区来进行读写。

许可以下: CC-BY-SA归因
不隶属于 StackOverflow
scroll top