New API function burn_read_data()
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@ -1 +1 @@
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#define Cdrskin_timestamP "2007.08.12.095623"
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#define Cdrskin_timestamP "2007.08.12.152937"
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@ -1061,6 +1061,9 @@ int burn_precheck_write(struct burn_write_opts *o, struct burn_disc *disc,
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Note: write_type BURN_WRITE_SAO is currently not capable of writing a mix
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of data and audio tracks. You must use BURN_WRITE_TAO for such sessions.
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To be set by burn_write_opts_set_write_type().
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Note: This function is not suitable for overwriting data in the middle of
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a valid data area because it is allowed to append trailing data.
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For exact random access overwriting use burn_random_access_write().
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@param o The options for the writing operation.
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@param disc The struct burn_disc * that described the disc to be created
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*/
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@ -1813,8 +1816,10 @@ typedef int (*burn_abort_handler_t)(void *handle, int signum, int flag);
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void burn_set_signal_handling(void *handle, burn_abort_handler_t handler,
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int mode);
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/* ts A70811 */
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/** The drive must be grabbed successfully before calling this function. It
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/** Write data in random access mode.
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The drive must be grabbed successfully before calling this function which
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circumvents usual libburn session processing and rather writes data without
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preparations or finalizing. This will work only with overwriteable media
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which are also suitable for burn_write_opts_set_start_byte(). The same
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@ -1843,6 +1848,29 @@ void burn_set_signal_handling(void *handle, burn_abort_handler_t handler,
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int burn_random_access_write(struct burn_drive *d, off_t byte_address,
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char *data, off_t data_count, int flag);
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/* ts A70812 */
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/** Read data in random access mode.
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The drive must be grabbed successfully before calling this function.
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With all currently supported drives and media the byte_address has to
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be aligned to 2048 bytes. Only data tracks with 2048 bytes per sector
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can be read this way. I.e. not CD-audio, not CD-video-stream ...
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This is a synchronous call which returns only after the full read job
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has ended (sucessfully or not). So it is wise not to read giant amounts
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of data in a single call.
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@param d The drive to which to write
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@param byte_address The start address of the read in byte (aligned to 2048)
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@param data A memory buffer capable of taking data_size bytes
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@param data_size The amount of data to be read. This does not have to
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be aligned to any block size.
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@param data_count The amount of data actually read (interesting on error)
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@param flag Bitfield for control purposes: (unused yet, submit 0)
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@return 1=sucessful , <=0 an error occured
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*/
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int burn_read_data(struct burn_drive *d, off_t byte_address,
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char data[], off_t data_size, off_t *data_count, int flag);
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#ifndef DOXYGEN
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BURN_END_DECLS
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@ -374,6 +374,9 @@ Range "scdbackup" : 0x00020000 to 0x0002ffff
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0x00020140 (FATAL,HIGH) = Drive is busy on attempt to write random access
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0x00020141 (SORRY,HIGH) = Write data count not properly aligned
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0x00020142 (FATAL,HIGH) = Drive is not grabbed on random access write
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0x00020143 (SORRY,HIGH) = Read start address not properly aligned
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0x00020144 (SORRY,HIGH) = SCSI error on read
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0x00020145 (FATAL,HIGH) = Drive is busy on attempt to read data
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libdax_audioxtr:
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@ -165,6 +165,10 @@ static unsigned char MMC_READ_FORMAT_CAPACITIES[] =
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static unsigned char MMC_RESERVE_TRACK[] =
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{ 0x53, 0, 0, 0, 0, 0, 0, 0, 0, 0};
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/* ts A70812 : Read data sectors (for types with 2048 bytes/sector only) */
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static unsigned char MMC_READ_10[] =
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{ 0x28, 0, 0, 0, 0, 0, 0, 0, 0, 0};
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static int mmc_function_spy_do_tell = 0;
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@ -2793,6 +2797,45 @@ int mmc_compose_mode_page_5(struct burn_drive *d,
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}
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/* A70812 ts */
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int mmc_read_10(struct burn_drive *d, int start,int amount, struct buffer *buf)
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{
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struct command c;
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mmc_function_spy("mmc_read_10");
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if (amount > BUFFER_SIZE / 2048)
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return -1;
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scsi_init_command(&c, MMC_READ_10, sizeof(MMC_READ_10));
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c.dxfer_len = amount * 2048;
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c.retry = 1;
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mmc_int_to_four_char(c.opcode + 2, start);
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c.opcode[7] = (amount >> 8) & 0xFF;
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c.opcode[8] = amount & 0xFF;
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c.page = buf;
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c.page->bytes = 0;
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c.page->sectors = 0;
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c.dir = FROM_DRIVE;
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d->issue_command(d, &c);
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if (c.error) {
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char msg[160];
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printf(msg,
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"SCSI error on read_10(%d,%d): key=%X asc=%2.2Xh ascq=%2.2Xh",
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start, amount,
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c.sense[2],c.sense[12],c.sense[13]);
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libdax_msgs_submit(libdax_messenger, d->global_index,
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0x00020144,
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LIBDAX_MSGS_SEV_SORRY, LIBDAX_MSGS_PRIO_HIGH,
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msg, 0, 0);
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return BE_CANCELLED;
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}
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buf->sectors = amount;
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buf->bytes = amount * 2048;
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return 0;
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}
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/* ts A61021 : the mmc specific part of sg.c:enumerate_common()
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*/
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int mmc_setup_drive(struct burn_drive *d)
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@ -2815,6 +2858,7 @@ int mmc_setup_drive(struct burn_drive *d)
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d->read_buffer_capacity = mmc_read_buffer_capacity;
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d->format_unit = mmc_format_unit;
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d->read_format_capacities = mmc_read_format_capacities;
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d->read_10 = mmc_read_10;
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/* ts A70302 */
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@ -68,6 +68,11 @@ int mmc_compose_mode_page_5(struct burn_drive *d,
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const struct burn_write_opts *o,
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unsigned char *pd);
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/* ts A70812 : return 0 = ok , return BE_CANCELLED = error occured */
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int mmc_read_10(struct burn_drive *d, int start, int amount,
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struct buffer *buf);
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/* mmc5r03c.pdf 4.3.4.4.1 d) "The maximum number of RZones is 2 302." */
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#define BURN_MMC_FAKE_TOC_MAX_SIZE 2302
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@ -31,6 +31,12 @@
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#include "read.h"
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#include "options.h"
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/* ts A70812 */
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#include "error.h"
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#include "libdax_msgs.h"
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extern struct libdax_msgs *libdax_messenger;
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void burn_disc_read(struct burn_drive *d, const struct burn_read_opts *o)
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{
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#if 0
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@ -280,3 +286,68 @@ static void flipq(unsigned char *sub)
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*(sub + 12 + 11) = ~*(sub + 12 + 11);
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}
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*/
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/* ts A70812 : API function */
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int burn_read_data(struct burn_drive *d, off_t byte_address,
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char data[], off_t data_size, off_t *data_count, int flag)
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{
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int alignment = 2048, start, upto, chunksize, err, cpy_size;
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char msg[81], *wpt;
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struct buffer buf;
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*data_count = 0;
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if (d->released) {
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libdax_msgs_submit(libdax_messenger,
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d->global_index, 0x00020142,
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LIBDAX_MSGS_SEV_FATAL, LIBDAX_MSGS_PRIO_HIGH,
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"Drive is not grabbed on random access write", 0, 0);
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return 0;
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}
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if ((byte_address % alignment) != 0) {
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sprintf(msg,
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"Read start address not properly aligned (%d bytes)",
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alignment);
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libdax_msgs_submit(libdax_messenger, d->global_index,
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0x00020143,
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LIBDAX_MSGS_SEV_SORRY, LIBDAX_MSGS_PRIO_HIGH,
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msg, 0, 0);
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return 0;
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}
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if (d->busy != BURN_DRIVE_IDLE) {
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libdax_msgs_submit(libdax_messenger,
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d->global_index, 0x00020145,
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LIBDAX_MSGS_SEV_FATAL, LIBDAX_MSGS_PRIO_HIGH,
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"Drive is busy on attempt to read data", 0, 0);
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return 0;
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}
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d->busy = BURN_DRIVE_READING;
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d->buffer = &buf;
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start = byte_address / 2048;
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upto = start + data_size / 2048;
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if (data_size % 2048)
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upto++;
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wpt = data;
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for (; start < upto; start += 16) {
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chunksize = upto - start;
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if (chunksize > 16) {
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chunksize = 16;
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cpy_size = 16 * 2048;
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} else
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cpy_size = data_size - *data_count;
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err = d->read_10(d, start, chunksize, d->buffer);
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if (err == BE_CANCELLED) {
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d->busy = BURN_DRIVE_IDLE;
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return 0;
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}
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memcpy(wpt, d->buffer->data, cpy_size);
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wpt += cpy_size;
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*data_count += cpy_size;
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}
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d->buffer = NULL;
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d->busy = BURN_DRIVE_IDLE;
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return 1;
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}
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/* mmc5r03c.pdf 6.24 : get list of available formats */
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int (*read_format_capacities) (struct burn_drive *d, int top_wanted);
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/* ts A70812 */
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/* mmc5r03c.pdf 6.15 : read data sectors (start and amount in LBA) */
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int (*read_10) (struct burn_drive *d, int start, int amount,
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struct buffer *buf);
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};
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/* end of generic 'drive' data structures */
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@ -1970,7 +1970,7 @@ fail_wo_sync:;
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d->busy = BURN_DRIVE_IDLE;
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}
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/* ts A70811 : API function */
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int burn_random_access_write(struct burn_drive *d, off_t byte_address,
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char *data, off_t data_count, int flag)
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{
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@ -2051,6 +2051,7 @@ int burn_random_access_write(struct burn_drive *d, off_t byte_address,
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if (flag & 1)
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d->sync_cache(d);
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d->buffer = NULL;
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d->busy = BURN_DRIVE_IDLE;
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return(1);
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}
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