// RFC 9328 RTP Payload Format for Versatile Video Coding(VVC) #include "mpeg4-vvc.h" #include "sdp-payload.h" #include "base64.h" #include #include #include #include #include #include int sdp_h266(uint8_t *data, int bytes, const char* proto, unsigned short port, int payload, int frequence, const void* extra, int extra_size) { static const char* pattern = "m=video %hu %s %d\r\n" "a=rtpmap:%d H266/90000\r\n" "a=fmtp:%d"; const uint8_t nalu[] = { 13/*dci*/, 14/*vps*/, 15/*sps*/, 16/*pps*/ }; const char* sprop[] = { "sprop-dci", "sprop-vps", "sprop-sps", "sprop-pps" }; int r, n; int i, j, k; struct mpeg4_vvc_t vvc; assert(90000 == frequence); r = mpeg4_vvc_decoder_configuration_record_load((const uint8_t*)extra, extra_size, &vvc); if (r < 0) return r; n = snprintf((char*)data, bytes, pattern, port, proto && *proto ? proto : "RTP/AVP", payload, payload, payload); for (i = 0; i < sizeof(nalu) / sizeof(nalu[0]) && n < bytes; i++) { if (i > 0 && n < bytes) data[n++] = ';'; n += snprintf((char*)data + n, bytes - n, " %s=", sprop[i]); for (k = j = 0; j < vvc.numOfArrays; j++) { assert(vvc.nalu[j].bytes > 2 && vvc.nalu[j].type == ((vvc.nalu[j].data[1] >> 3) & 0x1F)); if (nalu[i] != vvc.nalu[j].type) continue; if (n + 1 + vvc.nalu[j].bytes * 2 > bytes) return -ENOMEM; // don't have enough memory if (k++ > 0 && n < bytes) data[n++] = ','; n += (int)base64_encode((char*)data + n, vvc.nalu[j].data, vvc.nalu[j].bytes); } } if (n + 2 > bytes) return -ENOMEM; // don't have enough memory data[n++] = '\r'; data[n++] = '\n'; return n; } int sdp_h266_load(uint8_t* data, int bytes, const char* vps, const char* sps, const char* pps, const char* sei, const char* dci) { int i, n, len, off; const char* p, * next; const char* sprops[5]; const uint8_t startcode[] = { 0x00, 0x00, 0x00, 0x01 }; off = 0; sprops[0] = vps; sprops[1] = sps; sprops[2] = pps; sprops[3] = sei; sprops[4] = dci; for (i = 0; i < sizeof(sprops) / sizeof(sprops[0]); i++) { p = sprops[i]; while (p) { next = strchr(p, ','); len = next ? (int)(next - p) : (int)strlen(p); if (off + (len + 3) / 4 * 3 + (int)sizeof(startcode) > bytes) return -ENOMEM; // don't have enough space memcpy(data + off, startcode, sizeof(startcode)); n = (int)base64_decode(data + off + sizeof(startcode), p, len); assert(n <= (len + 3) / 4 * 3); off += n + sizeof(startcode); p = next ? next + 1 : NULL; } } return off; }