32 fixed(8, ff_byte, 0xff);
43 HEADER(
"User Data Registered ITU-T T.35");
45 u(8, itu_t_t35_country_code, 0x00, 0xff);
49 u(8, itu_t_t35_country_code_extension_byte, 0x00, 0xff);
54 if (
state->payload_size <
i) {
56 "Invalid SEI user data registered payload.\n");
64 xu(8, itu_t_t35_payload_byte[], current->
data[j], 0x00, 0xff, 1,
i + j);
75 HEADER(
"User Data Unregistered");
78 if (
state->payload_size < 16) {
80 "Invalid SEI user data unregistered payload.\n");
86 for (
i = 0;
i < 16;
i++)
87 us(8, uuid_iso_iec_11578[
i], 0x00, 0xff, 1,
i);
92 xu(8, user_data_payload_byte[
i], current->
data[
i], 0x00, 0xff, 1,
i);
104 HEADER(
"Mastering Display Colour Volume");
106 for (
c = 0;
c < 3;
c++) {
107 ubs(16, display_primaries_x[
c], 1,
c);
108 ubs(16, display_primaries_y[
c], 1,
c);
111 ub(16, white_point_x);
112 ub(16, white_point_y);
114 ub(32, max_display_mastering_luminance);
115 ub(32, min_display_mastering_luminance);
126 HEADER(
"Content Light Level Information");
128 ub(16, max_content_light_level);
129 ub(16, max_pic_average_light_level);
141 HEADER(
"Alternative Transfer Characteristics");
143 ub(8, preferred_transfer_characteristics);
153 static const uint16_t max_ambient_light_value = 50000;
156 HEADER(
"Ambient Viewing Environment");
159 u(16, ambient_light_x, 0, max_ambient_light_value);
160 u(16, ambient_light_y, 0, max_ambient_light_value);
174 .payload_type = current->payload_type,
175 .payload_size = current->payload_size,
176 .extension_present = current->extension_bit_length > 0,
178 int start_position, current_position, bits_written;
189 bits_written = current_position - start_position;
192 bits_written < 8 * current->payload_size) {
199 bits_left = 8 * current->payload_size - bits_written;
209 current->extension_bit_length =
213 if (current->extension_bit_length > 0) {
215 (current->extension_bit_length + 7) / 8);
217 bits_left = current->extension_bit_length;
220 xu(length, reserved_payload_extension_data,
221 current->extension_data[
i],
227 fixed(1, bit_equal_to_one, 1);
229 fixed(1, bit_equal_to_zero, 0);
233 current->payload_size = (
put_bits_count(rw) - start_position) / 8;
239 allocate(current->payload_ref, current->payload_size);
240 current->payload = current->payload_ref;
242 allocate(current->payload, current->payload_size);
244 data = current->payload;
246 for (
i = 0;
i < current->payload_size;
i++)
247 xu(8, payload_byte[
i],
data[
i], 0, 255, 1,
i);
261 uint32_t payload_type = 0;
262 uint32_t payload_size = 0;
267 fixed(8, ff_byte, 0xff);
270 xu(8, last_payload_type_byte,
tmp, 0, 254, 0);
274 fixed(8, ff_byte, 0xff);
277 xu(8, last_payload_size_byte,
tmp, 0, 254, 0);
284 "Invalid SEI message: payload_size too large "
285 "(%"PRIu32
" bytes).\n", payload_size);
293 message = ¤t->messages[k];
295 message->payload_type = payload_type;
296 message->payload_size = payload_size;
306 for (k = 0; k < current->nb_messages; k++) {
311 message = ¤t->messages[k];
315 trace =
ctx->trace_enable;
316 ctx->trace_enable = 0;
319 for (
i = 0;
i < 2;
i++) {
324 fixed(8, ff_byte, 0xff);
327 xu(8, last_payload_type_byte,
tmp, 0, 254, 0);
331 fixed(8, ff_byte, 0xff);
334 xu(8, last_payload_size_byte,
tmp, 0, 254, 0);
337 ctx->trace_enable = trace;