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302 lines
10 KiB
302 lines
10 KiB
8 years ago
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#include <esp8266.h>
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#include <osapi.h>
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#include "multipart.h"
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#include "cgi.h"
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#define BOUNDARY_SIZE 100
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typedef enum {
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STATE_SEARCH_BOUNDARY = 0, // state: searching multipart boundary
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STATE_SEARCH_HEADER, // state: search multipart file header
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STATE_SEARCH_HEADER_END, // state: search the end of the file header
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STATE_UPLOAD_FILE, // state: read file content
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STATE_ERROR, // state: error (stop processing)
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} MultipartState;
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struct _MultipartCtx {
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MultipartCallback callBack; // callback for multipart events
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int position; // current file position
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int startTime; // timestamp when connection was initiated
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int recvPosition; // receive position (how many bytes was processed from the HTTP post)
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char * boundaryBuffer; // buffer used for boundary detection
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int boundaryBufferPtr; // pointer in the boundary buffer
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MultipartState state; // multipart processing state
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};
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// this method is responsible for creating the multipart context
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MultipartCtx * ICACHE_FLASH_ATTR multipartCreateContext(MultipartCallback callback)
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{
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MultipartCtx * ctx = (MultipartCtx *)os_malloc(sizeof(MultipartCtx));
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ctx->callBack = callback;
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ctx->position = ctx->startTime = ctx->recvPosition = ctx->boundaryBufferPtr = 0;
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ctx->boundaryBuffer = NULL;
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ctx->state = STATE_SEARCH_BOUNDARY;
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return ctx;
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}
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// for allocating buffer for multipart upload
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void ICACHE_FLASH_ATTR multipartAllocBoundaryBuffer(MultipartCtx * context)
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{
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if( context->boundaryBuffer == NULL )
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context->boundaryBuffer = (char *)os_malloc(3*BOUNDARY_SIZE + 1);
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context->boundaryBufferPtr = 0;
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}
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// for freeing multipart buffer
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void ICACHE_FLASH_ATTR multipartFreeBoundaryBuffer(MultipartCtx * context)
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{
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if( context->boundaryBuffer != NULL )
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{
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os_free(context->boundaryBuffer);
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context->boundaryBuffer = NULL;
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}
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}
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// for destroying the context
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void ICACHE_FLASH_ATTR multipartDestroyContext(MultipartCtx * context)
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{
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multipartFreeBoundaryBuffer(context);
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os_free(context);
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}
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// this is because of os_memmem is missing
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void * mp_memmem(const void *l, size_t l_len, const void *s, size_t s_len)
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{
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register char *cur, *last;
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const char *cl = (const char *)l;
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const char *cs = (const char *)s;
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/* we need something to compare */
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if (l_len == 0 || s_len == 0)
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return NULL;
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/* "s" must be smaller or equal to "l" */
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if (l_len < s_len)
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return NULL;
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/* special case where s_len == 1 */
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if (s_len == 1)
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return memchr(l, (int)*cs, l_len);
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/* the last position where its possible to find "s" in "l" */
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last = (char *)cl + l_len - s_len;
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for (cur = (char *)cl; cur <= last; cur++)
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if (cur[0] == cs[0] && memcmp(cur, cs, s_len) == 0)
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return cur;
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return NULL;
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}
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// this method is for processing data coming from the HTTP post request
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// context: the multipart context
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// boundary: a string which indicates boundary
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// data: the received data
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// len: the received data length (can't be bigger than BOUNDARY_SIZE)
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// last: last packet indicator
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//
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// Detecting a boundary is not easy. One has to take care of boundaries which are splitted in 2 packets
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// [Packet 1, 5 bytes of the boundary][Packet 2, remaining 10 bytes of the boundary];
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//
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// Algorythm:
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// - create a buffer which size is 3*BOUNDARY_SIZE
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// - put data into the buffer as long as the buffer size is smaller than 2*BOUNDARY_SIZE
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// - search boundary in the received buffer, if found: boundary reached -> process data before boundary -> process boundary
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// - if not found -> process the first BOUNDARY_SIZE amount of bytes from the buffer
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// - remove processed data from the buffer
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// this algorythm guarantees that no boundary loss will happen
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int ICACHE_FLASH_ATTR multipartProcessData(MultipartCtx * context, char * boundary, char * data, int len, int last)
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{
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if( len != 0 ) // add data to the boundary buffer
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{
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os_memcpy(context->boundaryBuffer + context->boundaryBufferPtr, data, len);
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context->boundaryBufferPtr += len;
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context->boundaryBuffer[context->boundaryBufferPtr] = 0;
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}
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while( context->boundaryBufferPtr > 0 )
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{
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if( ! last && context->boundaryBufferPtr <= 2 * BOUNDARY_SIZE ) // return if buffer is too small and not the last packet is processed
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return 0;
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int dataSize = BOUNDARY_SIZE;
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char * boundaryLoc = mp_memmem( context->boundaryBuffer, context->boundaryBufferPtr, boundary, os_strlen(boundary) );
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if( boundaryLoc != NULL )
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{
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int pos = boundaryLoc - context->boundaryBuffer;
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if( pos > BOUNDARY_SIZE ) // process in the next call
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boundaryLoc = NULL;
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else
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dataSize = pos;
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}
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if( dataSize != 0 ) // data to process
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{
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switch( context->state )
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{
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case STATE_SEARCH_HEADER:
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case STATE_SEARCH_HEADER_END:
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{
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char * chr = os_strchr( context->boundaryBuffer, '\n' );
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if( chr != NULL )
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{
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// chop datasize to contain only one line
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int pos = chr - context->boundaryBuffer + 1;
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if( pos < dataSize ) // if chop smaller than the dataSize, delete the boundary
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{
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dataSize = pos;
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boundaryLoc = NULL; // process boundary next time
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}
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if( context->state == STATE_SEARCH_HEADER_END )
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{
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if( pos == 1 || ( ( pos == 2 ) && ( context->boundaryBuffer[0] == '\r' ) ) ) // empty line?
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{
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context->state = STATE_UPLOAD_FILE;
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context->position = 0;
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}
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}
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else if( os_strncmp( context->boundaryBuffer, "Content-Disposition:", 20 ) == 0 )
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{
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char * fnam = os_strstr( context->boundaryBuffer, "filename=" );
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if( fnam != NULL )
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{
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int pos = fnam - context->boundaryBuffer + 9;
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if( pos < dataSize )
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{
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while(context->boundaryBuffer[pos] == ' ') pos++; // skip spaces
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if( context->boundaryBuffer[pos] == '"' ) // quote start
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{
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pos++;
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int start = pos;
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while( pos < context->boundaryBufferPtr )
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{
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if( context->boundaryBuffer[pos] == '"' ) // quote end
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break;
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pos++;
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}
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if( pos < context->boundaryBufferPtr )
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{
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context->boundaryBuffer[pos] = 0; // terminating zero for the file name
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os_printf("Uploading file: %s\n", context->boundaryBuffer + start);
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if( context->callBack( FILE_START, context->boundaryBuffer + start, pos - start, 0 ) ) // FILE_START callback
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return 1; // if an error happened
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context->boundaryBuffer[pos] = '"'; // restore the original quote
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context->state = STATE_SEARCH_HEADER_END;
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}
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}
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}
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}
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}
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}
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}
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break;
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case STATE_UPLOAD_FILE:
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{
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char c = context->boundaryBuffer[dataSize];
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context->boundaryBuffer[dataSize] = 0; // add terminating zero (for easier handling)
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if( context->callBack( FILE_DATA, context->boundaryBuffer, dataSize, context->position ) ) // FILE_DATA callback
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return 1;
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context->boundaryBuffer[dataSize] = c;
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context->position += dataSize;
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}
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break;
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default:
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break;
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}
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}
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if( boundaryLoc != NULL ) // boundary found?
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{
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dataSize += os_strlen(boundary); // jump over the boundary
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if( context->state == STATE_UPLOAD_FILE )
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{
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if( context->callBack( FILE_DONE, NULL, 0, context->position ) ) // file done callback
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return 1; // if an error happened
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os_printf("File upload done\n");
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}
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context->state = STATE_SEARCH_HEADER; // search the next header
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}
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// move the buffer back with dataSize
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context->boundaryBufferPtr -= dataSize;
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os_memcpy(context->boundaryBuffer, context->boundaryBuffer + dataSize, context->boundaryBufferPtr);
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}
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return 0;
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}
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// for processing multipart requests
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int ICACHE_FLASH_ATTR multipartProcess(MultipartCtx * context, HttpdConnData * connData )
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{
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if (connData->conn==NULL) return HTTPD_CGI_DONE; // Connection aborted. Clean up.
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if (connData->requestType == HTTPD_METHOD_POST) {
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HttpdPostData *post = connData->post;
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if( post->multipartBoundary == NULL )
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{
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errorResponse(connData, 404, "Only multipart POST is supported");
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return HTTPD_CGI_DONE;
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}
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if( connData->startTime != context->startTime )
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{
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// reinitialize, as this is a new request
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context->position = 0;
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context->recvPosition = 0;
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context->startTime = connData->startTime;
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context->state = STATE_SEARCH_BOUNDARY;
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multipartAllocBoundaryBuffer(context);
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}
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if( context->state != STATE_ERROR )
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{
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int feed = 0;
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while( feed < post->buffLen )
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{
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int len = post->buffLen - feed;
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if( len > BOUNDARY_SIZE )
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len = BOUNDARY_SIZE;
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if( multipartProcessData(context, post->multipartBoundary, post->buff + feed, len, 0) )
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{
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context->state = STATE_ERROR;
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break;
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}
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feed += len;
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}
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}
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context->recvPosition += post->buffLen;
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if( context->recvPosition < post->len )
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return HTTPD_CGI_MORE;
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if( context->state != STATE_ERROR )
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{
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// this is the last package, process the remaining data
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if( multipartProcessData(context, post->multipartBoundary, NULL, 0, 1) )
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context->state = STATE_ERROR;
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}
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multipartFreeBoundaryBuffer( context );
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if( context->state == STATE_ERROR )
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errorResponse(connData, 400, "Invalid file upload!");
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else
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{
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httpdStartResponse(connData, 204);
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httpdEndHeaders(connData);
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}
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return HTTPD_CGI_DONE;
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}
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else {
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errorResponse(connData, 404, "Only multipart POST is supported");
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return HTTPD_CGI_DONE;
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}
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}
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