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Open Source Computer Vision Library
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701 lines
19 KiB
701 lines
19 KiB
// This file is part of OpenCV project. |
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// It is subject to the license terms in the LICENSE file found in the top-level directory |
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// of this distribution and at http://opencv.org/license.html |
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#include "precomp.hpp" |
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#include "persistence.hpp" |
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char* icv_itoa( int _val, char* buffer, int /*radix*/ ) |
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{ |
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const int radix = 10; |
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char* ptr=buffer + 23 /* enough even for 64-bit integers */; |
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unsigned val = abs(_val); |
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*ptr = '\0'; |
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do |
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{ |
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unsigned r = val / radix; |
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*--ptr = (char)(val - (r*radix) + '0'); |
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val = r; |
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} |
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while( val != 0 ); |
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if( _val < 0 ) |
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*--ptr = '-'; |
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return ptr; |
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} |
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void icvPuts( CvFileStorage* fs, const char* str ) |
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{ |
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if( fs->outbuf ) |
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std::copy(str, str + strlen(str), std::back_inserter(*fs->outbuf)); |
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else if( fs->file ) |
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fputs( str, fs->file ); |
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#if USE_ZLIB |
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else if( fs->gzfile ) |
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gzputs( fs->gzfile, str ); |
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#endif |
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else |
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CV_Error( CV_StsError, "The storage is not opened" ); |
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} |
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char* icvGets( CvFileStorage* fs, char* str, int maxCount ) |
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{ |
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if( fs->strbuf ) |
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{ |
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size_t i = fs->strbufpos, len = fs->strbufsize; |
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int j = 0; |
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const char* instr = fs->strbuf; |
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while( i < len && j < maxCount-1 ) |
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{ |
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char c = instr[i++]; |
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if( c == '\0' ) |
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break; |
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str[j++] = c; |
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if( c == '\n' ) |
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break; |
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} |
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str[j++] = '\0'; |
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fs->strbufpos = i; |
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if (maxCount > 256 && !(fs->flags & cv::FileStorage::BASE64)) |
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CV_Assert(j < maxCount - 1 && "OpenCV persistence doesn't support very long lines"); |
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return j > 1 ? str : 0; |
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} |
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if( fs->file ) |
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{ |
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char* ptr = fgets( str, maxCount, fs->file ); |
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if (ptr && maxCount > 256 && !(fs->flags & cv::FileStorage::BASE64)) |
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{ |
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size_t sz = strnlen(ptr, maxCount); |
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CV_Assert(sz < (size_t)(maxCount - 1) && "OpenCV persistence doesn't support very long lines"); |
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} |
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return ptr; |
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} |
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#if USE_ZLIB |
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if( fs->gzfile ) |
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{ |
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char* ptr = gzgets( fs->gzfile, str, maxCount ); |
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if (ptr && maxCount > 256 && !(fs->flags & cv::FileStorage::BASE64)) |
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{ |
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size_t sz = strnlen(ptr, maxCount); |
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CV_Assert(sz < (size_t)(maxCount - 1) && "OpenCV persistence doesn't support very long lines"); |
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} |
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return ptr; |
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} |
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#endif |
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CV_Error(CV_StsError, "The storage is not opened"); |
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} |
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int icvEof( CvFileStorage* fs ) |
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{ |
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if( fs->strbuf ) |
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return fs->strbufpos >= fs->strbufsize; |
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if( fs->file ) |
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return feof(fs->file); |
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#if USE_ZLIB |
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if( fs->gzfile ) |
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return gzeof(fs->gzfile); |
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#endif |
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return false; |
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} |
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void icvCloseFile( CvFileStorage* fs ) |
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{ |
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if( fs->file ) |
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fclose( fs->file ); |
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#if USE_ZLIB |
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else if( fs->gzfile ) |
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gzclose( fs->gzfile ); |
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#endif |
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fs->file = 0; |
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fs->gzfile = 0; |
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fs->strbuf = 0; |
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fs->strbufpos = 0; |
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fs->is_opened = false; |
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} |
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void icvRewind( CvFileStorage* fs ) |
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{ |
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if( fs->file ) |
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rewind(fs->file); |
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#if USE_ZLIB |
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else if( fs->gzfile ) |
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gzrewind(fs->gzfile); |
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#endif |
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fs->strbufpos = 0; |
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} |
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CvGenericHash* cvCreateMap( int flags, int header_size, int elem_size, CvMemStorage* storage, int start_tab_size ) |
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{ |
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if( header_size < (int)sizeof(CvGenericHash) ) |
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CV_Error( CV_StsBadSize, "Too small map header_size" ); |
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if( start_tab_size <= 0 ) |
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start_tab_size = 16; |
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CvGenericHash* map = (CvGenericHash*)cvCreateSet( flags, header_size, elem_size, storage ); |
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map->tab_size = start_tab_size; |
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start_tab_size *= sizeof(map->table[0]); |
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map->table = (void**)cvMemStorageAlloc( storage, start_tab_size ); |
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memset( map->table, 0, start_tab_size ); |
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return map; |
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} |
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void icvParseError( CvFileStorage* fs, const char* func_name, |
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const char* err_msg, const char* source_file, int source_line ) |
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{ |
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cv::String msg = cv::format("%s(%d): %s", fs->filename, fs->lineno, err_msg); |
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cv::errorNoReturn(cv::Error::StsParseError, func_name, msg.c_str(), source_file, source_line ); |
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} |
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void icvFSCreateCollection( CvFileStorage* fs, int tag, CvFileNode* collection ) |
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{ |
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if( CV_NODE_IS_MAP(tag) ) |
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{ |
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if( collection->tag != CV_NODE_NONE ) |
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{ |
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assert( fs->fmt == CV_STORAGE_FORMAT_XML ); |
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CV_PARSE_ERROR( "Sequence element should not have name (use <_></_>)" ); |
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} |
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collection->data.map = cvCreateMap( 0, sizeof(CvFileNodeHash), |
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sizeof(CvFileMapNode), fs->memstorage, 16 ); |
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} |
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else |
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{ |
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CvSeq* seq; |
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seq = cvCreateSeq( 0, sizeof(CvSeq), sizeof(CvFileNode), fs->memstorage ); |
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// if <collection> contains some scalar element, add it to the newly created collection |
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if( CV_NODE_TYPE(collection->tag) != CV_NODE_NONE ) |
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cvSeqPush( seq, collection ); |
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collection->data.seq = seq; |
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} |
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collection->tag = tag; |
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cvSetSeqBlockSize( collection->data.seq, 8 ); |
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} |
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static char* icvFSDoResize( CvFileStorage* fs, char* ptr, int len ) |
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{ |
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char* new_ptr = 0; |
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int written_len = (int)(ptr - fs->buffer_start); |
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int new_size = (int)((fs->buffer_end - fs->buffer_start)*3/2); |
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new_size = MAX( written_len + len, new_size ); |
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new_ptr = (char*)cvAlloc( new_size + 256 ); |
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fs->buffer = new_ptr + (fs->buffer - fs->buffer_start); |
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if( written_len > 0 ) |
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memcpy( new_ptr, fs->buffer_start, written_len ); |
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fs->buffer_start = new_ptr; |
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fs->buffer_end = fs->buffer_start + new_size; |
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new_ptr += written_len; |
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return new_ptr; |
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} |
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char* icvFSResizeWriteBuffer( CvFileStorage* fs, char* ptr, int len ) |
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{ |
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return ptr + len < fs->buffer_end ? ptr : icvFSDoResize( fs, ptr, len ); |
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} |
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char* icvFSFlush( CvFileStorage* fs ) |
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{ |
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char* ptr = fs->buffer; |
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int indent; |
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if( ptr > fs->buffer_start + fs->space ) |
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{ |
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ptr[0] = '\n'; |
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ptr[1] = '\0'; |
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icvPuts( fs, fs->buffer_start ); |
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fs->buffer = fs->buffer_start; |
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} |
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indent = fs->struct_indent; |
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if( fs->space != indent ) |
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{ |
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memset( fs->buffer_start, ' ', indent ); |
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fs->space = indent; |
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} |
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ptr = fs->buffer = fs->buffer_start + fs->space; |
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return ptr; |
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} |
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void icvClose( CvFileStorage* fs, cv::String* out ) |
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{ |
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if( out ) |
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out->clear(); |
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if( !fs ) |
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CV_Error( CV_StsNullPtr, "NULL double pointer to file storage" ); |
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if( fs->is_opened ) |
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{ |
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if( fs->write_mode && (fs->file || fs->gzfile || fs->outbuf) ) |
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{ |
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if( fs->write_stack ) |
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{ |
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while( fs->write_stack->total > 0 ) |
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cvEndWriteStruct(fs); |
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} |
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icvFSFlush(fs); |
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if( fs->fmt == CV_STORAGE_FORMAT_XML ) |
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icvPuts( fs, "</opencv_storage>\n" ); |
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else if ( fs->fmt == CV_STORAGE_FORMAT_JSON ) |
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icvPuts( fs, "}\n" ); |
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} |
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icvCloseFile(fs); |
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} |
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if( fs->outbuf && out ) |
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{ |
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*out = cv::String(fs->outbuf->begin(), fs->outbuf->end()); |
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} |
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} |
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char* icvDoubleToString( char* buf, double value ) |
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{ |
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Cv64suf val; |
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unsigned ieee754_hi; |
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val.f = value; |
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ieee754_hi = (unsigned)(val.u >> 32); |
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if( (ieee754_hi & 0x7ff00000) != 0x7ff00000 ) |
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{ |
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int ivalue = cvRound(value); |
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if( ivalue == value ) |
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sprintf( buf, "%d.", ivalue ); |
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else |
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{ |
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static const char* fmt = "%.16e"; |
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char* ptr = buf; |
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sprintf( buf, fmt, value ); |
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if( *ptr == '+' || *ptr == '-' ) |
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ptr++; |
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for( ; cv_isdigit(*ptr); ptr++ ) |
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; |
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if( *ptr == ',' ) |
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*ptr = '.'; |
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} |
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} |
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else |
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{ |
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unsigned ieee754_lo = (unsigned)val.u; |
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if( (ieee754_hi & 0x7fffffff) + (ieee754_lo != 0) > 0x7ff00000 ) |
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strcpy( buf, ".Nan" ); |
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else |
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strcpy( buf, (int)ieee754_hi < 0 ? "-.Inf" : ".Inf" ); |
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} |
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return buf; |
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} |
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char* icvFloatToString( char* buf, float value ) |
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{ |
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Cv32suf val; |
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unsigned ieee754; |
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val.f = value; |
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ieee754 = val.u; |
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if( (ieee754 & 0x7f800000) != 0x7f800000 ) |
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{ |
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int ivalue = cvRound(value); |
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if( ivalue == value ) |
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sprintf( buf, "%d.", ivalue ); |
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else |
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{ |
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static const char* fmt = "%.8e"; |
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char* ptr = buf; |
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sprintf( buf, fmt, value ); |
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if( *ptr == '+' || *ptr == '-' ) |
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ptr++; |
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for( ; cv_isdigit(*ptr); ptr++ ) |
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; |
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if( *ptr == ',' ) |
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*ptr = '.'; |
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} |
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} |
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else |
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{ |
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if( (ieee754 & 0x7fffffff) != 0x7f800000 ) |
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strcpy( buf, ".Nan" ); |
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else |
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strcpy( buf, (int)ieee754 < 0 ? "-.Inf" : ".Inf" ); |
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} |
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return buf; |
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} |
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static void icvProcessSpecialDouble( CvFileStorage* fs, char* buf, double* value, char** endptr ) |
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{ |
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char c = buf[0]; |
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int inf_hi = 0x7ff00000; |
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if( c == '-' || c == '+' ) |
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{ |
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inf_hi = c == '-' ? 0xfff00000 : 0x7ff00000; |
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c = *++buf; |
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} |
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if( c != '.' ) |
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CV_PARSE_ERROR( "Bad format of floating-point constant" ); |
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union{double d; uint64 i;} v; |
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v.d = 0.; |
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if( toupper(buf[1]) == 'I' && toupper(buf[2]) == 'N' && toupper(buf[3]) == 'F' ) |
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v.i = (uint64)inf_hi << 32; |
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else if( toupper(buf[1]) == 'N' && toupper(buf[2]) == 'A' && toupper(buf[3]) == 'N' ) |
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v.i = (uint64)-1; |
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else |
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CV_PARSE_ERROR( "Bad format of floating-point constant" ); |
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*value = v.d; |
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*endptr = buf + 4; |
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} |
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double icv_strtod( CvFileStorage* fs, char* ptr, char** endptr ) |
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{ |
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double fval = strtod( ptr, endptr ); |
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if( **endptr == '.' ) |
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{ |
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char* dot_pos = *endptr; |
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*dot_pos = ','; |
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double fval2 = strtod( ptr, endptr ); |
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*dot_pos = '.'; |
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if( *endptr > dot_pos ) |
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fval = fval2; |
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else |
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*endptr = dot_pos; |
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} |
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if( *endptr == ptr || cv_isalpha(**endptr) ) |
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icvProcessSpecialDouble( fs, ptr, &fval, endptr ); |
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return fval; |
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} |
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void switch_to_Base64_state( CvFileStorage* fs, base64::fs::State state ) |
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{ |
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const char * err_unkonwn_state = "Unexpected error, unable to determine the Base64 state."; |
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const char * err_unable_to_switch = "Unexpected error, unable to switch to this state."; |
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/* like a finite state machine */ |
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switch (fs->state_of_writing_base64) |
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{ |
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case base64::fs::Uncertain: |
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switch (state) |
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{ |
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case base64::fs::InUse: |
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CV_DbgAssert( fs->base64_writer == 0 ); |
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fs->base64_writer = new base64::Base64Writer( fs ); |
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break; |
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case base64::fs::Uncertain: |
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break; |
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case base64::fs::NotUse: |
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break; |
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default: |
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CV_Error( CV_StsError, err_unkonwn_state ); |
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break; |
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} |
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break; |
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case base64::fs::InUse: |
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switch (state) |
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{ |
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case base64::fs::InUse: |
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case base64::fs::NotUse: |
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CV_Error( CV_StsError, err_unable_to_switch ); |
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break; |
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case base64::fs::Uncertain: |
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delete fs->base64_writer; |
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fs->base64_writer = 0; |
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break; |
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default: |
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CV_Error( CV_StsError, err_unkonwn_state ); |
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break; |
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} |
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break; |
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case base64::fs::NotUse: |
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switch (state) |
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{ |
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case base64::fs::InUse: |
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case base64::fs::NotUse: |
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CV_Error( CV_StsError, err_unable_to_switch ); |
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break; |
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case base64::fs::Uncertain: |
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break; |
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default: |
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CV_Error( CV_StsError, err_unkonwn_state ); |
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break; |
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} |
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break; |
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default: |
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CV_Error( CV_StsError, err_unkonwn_state ); |
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break; |
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} |
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fs->state_of_writing_base64 = state; |
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} |
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void check_if_write_struct_is_delayed( CvFileStorage* fs, bool change_type_to_base64 ) |
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{ |
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if ( fs->is_write_struct_delayed ) |
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{ |
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/* save data to prevent recursive call errors */ |
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std::string struct_key; |
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std::string type_name; |
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int struct_flags = fs->delayed_struct_flags; |
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if ( fs->delayed_struct_key != 0 && *fs->delayed_struct_key != '\0' ) |
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{ |
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struct_key.assign(fs->delayed_struct_key); |
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} |
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if ( fs->delayed_type_name != 0 && *fs->delayed_type_name != '\0' ) |
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{ |
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type_name.assign(fs->delayed_type_name); |
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} |
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/* reset */ |
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delete[] fs->delayed_struct_key; |
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delete[] fs->delayed_type_name; |
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fs->delayed_struct_key = 0; |
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fs->delayed_struct_flags = 0; |
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fs->delayed_type_name = 0; |
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fs->is_write_struct_delayed = false; |
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/* call */ |
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if ( change_type_to_base64 ) |
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{ |
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fs->start_write_struct( fs, struct_key.c_str(), struct_flags, "binary"); |
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if ( fs->state_of_writing_base64 != base64::fs::Uncertain ) |
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switch_to_Base64_state( fs, base64::fs::Uncertain ); |
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switch_to_Base64_state( fs, base64::fs::InUse ); |
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} |
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else |
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{ |
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fs->start_write_struct( fs, struct_key.c_str(), struct_flags, type_name.c_str()); |
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if ( fs->state_of_writing_base64 != base64::fs::Uncertain ) |
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switch_to_Base64_state( fs, base64::fs::Uncertain ); |
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switch_to_Base64_state( fs, base64::fs::NotUse ); |
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} |
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} |
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} |
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void make_write_struct_delayed( CvFileStorage* fs, const char* key, int struct_flags, const char* type_name ) |
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{ |
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CV_Assert( fs->is_write_struct_delayed == false ); |
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CV_DbgAssert( fs->delayed_struct_key == 0 ); |
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CV_DbgAssert( fs->delayed_struct_flags == 0 ); |
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CV_DbgAssert( fs->delayed_type_name == 0 ); |
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fs->delayed_struct_flags = struct_flags; |
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if ( key != 0 ) |
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{ |
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fs->delayed_struct_key = new char[strlen(key) + 1U]; |
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strcpy(fs->delayed_struct_key, key); |
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} |
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if ( type_name != 0 ) |
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{ |
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fs->delayed_type_name = new char[strlen(type_name) + 1U]; |
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strcpy(fs->delayed_type_name, type_name); |
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} |
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fs->is_write_struct_delayed = true; |
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} |
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static const char symbols[9] = "ucwsifdr"; |
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char icvTypeSymbol(int depth) |
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{ |
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CV_Assert(depth >=0 && depth < 9); |
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return symbols[depth]; |
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} |
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static int icvSymbolToType(char c) |
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{ |
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const char* pos = strchr( symbols, c ); |
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if( !pos ) |
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CV_Error( CV_StsBadArg, "Invalid data type specification" ); |
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return static_cast<int>(pos - symbols); |
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} |
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char* icvEncodeFormat( int elem_type, char* dt ) |
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{ |
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sprintf( dt, "%d%c", CV_MAT_CN(elem_type), icvTypeSymbol(CV_MAT_DEPTH(elem_type)) ); |
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return dt + ( dt[2] == '\0' && dt[0] == '1' ); |
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} |
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int icvDecodeFormat( const char* dt, int* fmt_pairs, int max_len ) |
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{ |
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int fmt_pair_count = 0; |
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int i = 0, k = 0, len = dt ? (int)strlen(dt) : 0; |
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if( !dt || !len ) |
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return 0; |
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assert( fmt_pairs != 0 && max_len > 0 ); |
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fmt_pairs[0] = 0; |
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max_len *= 2; |
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for( ; k < len; k++ ) |
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{ |
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char c = dt[k]; |
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if( cv_isdigit(c) ) |
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{ |
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int count = c - '0'; |
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if( cv_isdigit(dt[k+1]) ) |
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{ |
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char* endptr = 0; |
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count = (int)strtol( dt+k, &endptr, 10 ); |
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k = (int)(endptr - dt) - 1; |
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} |
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if( count <= 0 ) |
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CV_Error( CV_StsBadArg, "Invalid data type specification" ); |
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fmt_pairs[i] = count; |
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} |
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else |
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{ |
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int depth = icvSymbolToType(c); |
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if( fmt_pairs[i] == 0 ) |
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fmt_pairs[i] = 1; |
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fmt_pairs[i+1] = depth; |
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if( i > 0 && fmt_pairs[i+1] == fmt_pairs[i-1] ) |
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fmt_pairs[i-2] += fmt_pairs[i]; |
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else |
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{ |
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i += 2; |
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if( i >= max_len ) |
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CV_Error( CV_StsBadArg, "Too long data type specification" ); |
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} |
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fmt_pairs[i] = 0; |
|
} |
|
} |
|
|
|
fmt_pair_count = i/2; |
|
return fmt_pair_count; |
|
} |
|
|
|
|
|
int icvCalcElemSize( const char* dt, int initial_size ) |
|
{ |
|
int size = 0; |
|
int fmt_pairs[CV_FS_MAX_FMT_PAIRS], i, fmt_pair_count; |
|
int comp_size; |
|
|
|
fmt_pair_count = icvDecodeFormat( dt, fmt_pairs, CV_FS_MAX_FMT_PAIRS ); |
|
fmt_pair_count *= 2; |
|
for( i = 0, size = initial_size; i < fmt_pair_count; i += 2 ) |
|
{ |
|
comp_size = CV_ELEM_SIZE(fmt_pairs[i+1]); |
|
size = cvAlign( size, comp_size ); |
|
size += comp_size * fmt_pairs[i]; |
|
} |
|
if( initial_size == 0 ) |
|
{ |
|
comp_size = CV_ELEM_SIZE(fmt_pairs[1]); |
|
size = cvAlign( size, comp_size ); |
|
} |
|
return size; |
|
} |
|
|
|
|
|
int icvCalcStructSize( const char* dt, int initial_size ) |
|
{ |
|
int size = icvCalcElemSize( dt, initial_size ); |
|
size_t elem_max_size = 0; |
|
for ( const char * type = dt; *type != '\0'; type++ ) { |
|
switch ( *type ) |
|
{ |
|
case 'u': { elem_max_size = std::max( elem_max_size, sizeof(uchar ) ); break; } |
|
case 'c': { elem_max_size = std::max( elem_max_size, sizeof(schar ) ); break; } |
|
case 'w': { elem_max_size = std::max( elem_max_size, sizeof(ushort) ); break; } |
|
case 's': { elem_max_size = std::max( elem_max_size, sizeof(short ) ); break; } |
|
case 'i': { elem_max_size = std::max( elem_max_size, sizeof(int ) ); break; } |
|
case 'f': { elem_max_size = std::max( elem_max_size, sizeof(float ) ); break; } |
|
case 'd': { elem_max_size = std::max( elem_max_size, sizeof(double) ); break; } |
|
default: break; |
|
} |
|
} |
|
size = cvAlign( size, static_cast<int>(elem_max_size) ); |
|
return size; |
|
} |
|
|
|
int icvDecodeSimpleFormat( const char* dt ) |
|
{ |
|
int elem_type = -1; |
|
int fmt_pairs[CV_FS_MAX_FMT_PAIRS], fmt_pair_count; |
|
|
|
fmt_pair_count = icvDecodeFormat( dt, fmt_pairs, CV_FS_MAX_FMT_PAIRS ); |
|
if( fmt_pair_count != 1 || fmt_pairs[0] >= CV_CN_MAX) |
|
CV_Error( CV_StsError, "Too complex format for the matrix" ); |
|
|
|
elem_type = CV_MAKETYPE( fmt_pairs[1], fmt_pairs[0] ); |
|
|
|
return elem_type; |
|
} |
|
|
|
void icvWriteCollection( CvFileStorage* fs, const CvFileNode* node ) |
|
{ |
|
int i, total = node->data.seq->total; |
|
int elem_size = node->data.seq->elem_size; |
|
int is_map = CV_NODE_IS_MAP(node->tag); |
|
CvSeqReader reader; |
|
|
|
cvStartReadSeq( node->data.seq, &reader, 0 ); |
|
|
|
for( i = 0; i < total; i++ ) |
|
{ |
|
CvFileMapNode* elem = (CvFileMapNode*)reader.ptr; |
|
if( !is_map || CV_IS_SET_ELEM(elem) ) |
|
{ |
|
const char* name = is_map ? elem->key->str.ptr : 0; |
|
icvWriteFileNode( fs, name, &elem->value ); |
|
} |
|
CV_NEXT_SEQ_ELEM( elem_size, reader ); |
|
} |
|
} |
|
|
|
void icvWriteFileNode( CvFileStorage* fs, const char* name, const CvFileNode* node ) |
|
{ |
|
switch( CV_NODE_TYPE(node->tag) ) |
|
{ |
|
case CV_NODE_INT: |
|
fs->write_int( fs, name, node->data.i ); |
|
break; |
|
case CV_NODE_REAL: |
|
fs->write_real( fs, name, node->data.f ); |
|
break; |
|
case CV_NODE_STR: |
|
fs->write_string( fs, name, node->data.str.ptr, 0 ); |
|
break; |
|
case CV_NODE_SEQ: |
|
case CV_NODE_MAP: |
|
cvStartWriteStruct( fs, name, CV_NODE_TYPE(node->tag) + |
|
(CV_NODE_SEQ_IS_SIMPLE(node->data.seq) ? CV_NODE_FLOW : 0), |
|
node->info ? node->info->type_name : 0 ); |
|
icvWriteCollection( fs, node ); |
|
cvEndWriteStruct( fs ); |
|
break; |
|
case CV_NODE_NONE: |
|
cvStartWriteStruct( fs, name, CV_NODE_SEQ, 0 ); |
|
cvEndWriteStruct( fs ); |
|
break; |
|
default: |
|
CV_Error( CV_StsBadFlag, "Unknown type of file node" ); |
|
} |
|
}
|
|
|