/* */ #include "ChunkedEncoding.h" #include "DlAbortEx.h" #include "message.h" #include "Util.h" #include #include #include #define MAX_BUFSIZE (1024*1024) ChunkedEncoding::ChunkedEncoding() { strbufSize = 4096; strbuf = new char[strbufSize]; strbufTail = strbuf; state = READ_SIZE; chunkSize = 0; } ChunkedEncoding::~ChunkedEncoding() { if(strbuf != NULL) { delete [] strbuf; } } void ChunkedEncoding::init() { } bool ChunkedEncoding::finished() { return state == FINISH ? true : false; } void ChunkedEncoding::end() {} void ChunkedEncoding::inflate(char* outbuf, int32_t& outlen, const char* inbuf, int32_t inlen) { addBuffer(inbuf, inlen); char* p = strbuf; int32_t clen = 0; while(1) { if(state == READ_SIZE) { if(readChunkSize(&p) == 0) { if(chunkSize == 0) { state = FINISH; } else { state = READ_DATA; } } else { // chunk size is not fully received. break; } } else if(state == READ_DATA) { if(readData(&p, outbuf, clen, outlen) == 0) { state = READ_SIZE; } else { break; } } else { break; } // all bytes in strbuf were examined? if(strbufTail <= p) { break; } } if(strbufTail <= p) { strbufTail = strbuf; } else { // copy string between [p, strbufTail] int32_t unreadSize = strbufTail-p; char* temp = new char[strbufSize]; memcpy(temp, p, unreadSize); delete [] strbuf; strbuf = temp; strbufTail = strbuf+unreadSize; } outlen = clen; } int32_t ChunkedEncoding::readData(char** pp, char* buf, int32_t& len, int32_t maxlen) { if(buf+len == buf+maxlen) { return -1; } if(chunkSize == 0) { return readDataEOL(pp); } int32_t wsize; if(strbufTail-*pp < chunkSize) { wsize = strbufTail-*pp <= maxlen-len ? strbufTail-*pp : maxlen-len; } else { wsize = chunkSize <= maxlen-len ? chunkSize : maxlen-len; } memcpy(buf+len, *pp, wsize); chunkSize -= wsize; len += wsize; *pp += wsize; if(chunkSize == 0) { return readDataEOL(pp); } else { return -1; } } int32_t ChunkedEncoding::readDataEOL(char** pp) { char* np = (char*)memchr(*pp, '\n', strbufTail-*pp); char* rp = (char*)memchr(*pp, '\r', strbufTail-*pp); if(np != NULL && rp != NULL && np-rp == 1 && *pp == rp) { *pp += 2; return 0; } else if(strbufTail-*pp < 2) { return -1; } else { throw new DlAbortEx(EX_INVALID_CHUNK_SIZE); } } int32_t ChunkedEncoding::readChunkSize(char** pp) { // we read chunk-size from *pp char* p; char* np = (char*)memchr(*pp, '\n', strbufTail-*pp); char* rp = (char*)memchr(*pp, '\r', strbufTail-*pp); if(np == NULL || rp == NULL || np-rp != 1) { // \r\n is not found. Return -1 return -1; } p = rp; // We ignore chunk-extension char* exsp = (char*)memchr(*pp, ';', strbufTail-*pp); if(exsp == 0 || p < exsp) { exsp = p; } string temp(*pp, exsp); chunkSize = Util::parseInt(temp, 16); if(chunkSize < 0) { throw new DlAbortEx(EX_INVALID_CHUNK_SIZE); } *pp = p+2; return 0; } void ChunkedEncoding::addBuffer(const char* inbuf, int32_t inlen) { int32_t realbufSize = strbufTail-strbuf; if(realbufSize+inlen >= strbufSize) { if(realbufSize+inlen > MAX_BUFSIZE) { throw new DlAbortEx(EX_TOO_LARGE_CHUNK, realbufSize+inlen); } strbufSize = realbufSize+inlen; char* temp = new char[strbufSize]; memcpy(temp, strbuf, realbufSize); delete [] strbuf; strbuf = temp; strbufTail = strbuf+realbufSize; } memcpy(strbufTail, inbuf, inlen); strbufTail += inlen; }