Make use of return code from parse_nrg()

A mode1/2 fixup.
Some small code reorganization.
Closer to being able to parse without opening.
This commit is contained in:
rocky
2004-06-01 10:43:23 +00:00
parent ff7a568da5
commit dae18fe88f

View File

@@ -1,8 +1,8 @@
/*
$Id: nrg.c,v 1.17 2004/05/31 14:16:34 rocky Exp $
$Id: nrg.c,v 1.18 2004/06/01 10:43:23 rocky Exp $
Copyright (C) 2001, 2003 Herbert Valerio Riedel <hvr@gnu.org>
Copyright (C) 2003, 2004 Rocky Bernstein <rocky@panix.com>
Copyright (C) 2001, 2003 Herbert Valerio Riedel <hvr@gnu.org>
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
@@ -48,15 +48,27 @@
#include "cdio_private.h"
#include "_cdio_stdio.h"
static const char _rcsid[] = "$Id: nrg.c,v 1.17 2004/05/31 14:16:34 rocky Exp $";
static const char _rcsid[] = "$Id: nrg.c,v 1.18 2004/06/01 10:43:23 rocky Exp $";
/* structures used */
/* NERO (NRG) file format structures. */
/* this ugly image format is typical for lazy win32 programmers... at
least structure were set big endian, so at reverse
engineering wasn't such a big headache... */
PRAGMA_BEGIN_PACKED
typedef union {
struct {
uint32_t __x GNUC_PACKED;
uint32_t ID GNUC_PACKED;
uint32_t footer_ofs GNUC_PACKED;
} v50;
struct {
uint32_t ID GNUC_PACKED;
uint64_t footer_ofs GNUC_PACKED;
} v55;
} _footer_t;
typedef struct {
uint32_t start GNUC_PACKED;
uint32_t length GNUC_PACKED;
@@ -186,8 +198,8 @@ typedef struct {
uint32_t size;
} _img_private_t;
static bool _cdio_parse_nero_footer (_img_private_t *_obj);
static uint32_t _stat_size_nrg (void *env);
static bool parse_nrg (_img_private_t *env, const char *psz_nrg_name);
static uint32_t _stat_size_nrg (void *user_data);
#include "image_common.h"
@@ -195,12 +207,12 @@ static uint32_t _stat_size_nrg (void *env);
simulate ioctl(CDROMREADTOCENTRY).
*/
static void
_register_mapping (_img_private_t *_obj, lsn_t start_lsn, uint32_t sec_count,
_register_mapping (_img_private_t *env, lsn_t start_lsn, uint32_t sec_count,
uint64_t img_offset, uint32_t blocksize,
track_format_t track_format, bool track_green)
{
const int track_num=_obj->total_tracks;
track_info_t *this_track=&(_obj->tocent[_obj->total_tracks]);
const int track_num=env->total_tracks;
track_info_t *this_track=&(env->tocent[env->total_tracks]);
_mapping_t *_map = _cdio_malloc (sizeof (_mapping_t));
_map->start_lsn = start_lsn;
@@ -208,10 +220,10 @@ _register_mapping (_img_private_t *_obj, lsn_t start_lsn, uint32_t sec_count,
_map->img_offset = img_offset;
_map->blocksize = blocksize;
if (!_obj->mapping) _obj->mapping = _cdio_list_new ();
_cdio_list_append (_obj->mapping, _map);
if (!env->mapping) env->mapping = _cdio_list_new ();
_cdio_list_append (env->mapping, _map);
_obj->size = MAX (_obj->size, (start_lsn + sec_count));
env->size = MAX (env->size, (start_lsn + sec_count));
/* Update *this_track and track_num. These structures are
in a sense redundant witht the obj->mapping list. Perhaps one
@@ -222,7 +234,7 @@ _register_mapping (_img_private_t *_obj, lsn_t start_lsn, uint32_t sec_count,
this_track->start_lba = cdio_msf_to_lba(&this_track->start_msf);
this_track->track_num = track_num+1;
this_track->blocksize = blocksize;
if (_obj->is_cues)
if (env->is_cues)
this_track->datastart = img_offset;
else
this_track->datastart = 0;
@@ -274,10 +286,10 @@ _register_mapping (_img_private_t *_obj, lsn_t start_lsn, uint32_t sec_count,
default:
/*this_track->datasize=CDIO_CD_FRAMESIZE_RAW;*/
cdio_warn ("track %d has unknown format %d",
_obj->total_tracks, this_track->track_format);
env->total_tracks, this_track->track_format);
}
_obj->total_tracks++;
env->total_tracks++;
cdio_debug ("start lsn: %lu sector count: %0lu -> %8ld (%08lx)",
(long unsigned int) start_lsn,
@@ -290,55 +302,38 @@ _register_mapping (_img_private_t *_obj, lsn_t start_lsn, uint32_t sec_count,
/*
Disk and track information for a Nero file are located at the end
of the file. This routine extracts that information.
FIXME: right now psz_nrg_name is not used. It will be in the future.
*/
static bool
_cdio_parse_nero_footer (_img_private_t *_obj)
parse_nrg (_img_private_t *env, const char *psz_nrg_name)
{
long unsigned int footer_start;
long unsigned int size;
char *footer_buf = NULL;
cdio_log_level_t log_level = (NULL == env) ? CDIO_LOG_INFO : CDIO_LOG_WARN;
if (_obj->size) return true;
size = cdio_stream_stat (_obj->gen.data_source);
size = cdio_stream_stat (env->gen.data_source);
if (-1 == size) return false;
{
PRAGMA_BEGIN_PACKED
union {
struct {
uint32_t __x GNUC_PACKED;
uint32_t ID GNUC_PACKED;
uint32_t footer_ofs GNUC_PACKED;
} v50;
struct {
uint32_t ID GNUC_PACKED;
uint64_t footer_ofs GNUC_PACKED;
} v55;
} buf;
PRAGMA_END_PACKED
_footer_t buf;
cdio_assert (sizeof (buf) == 12);
cdio_stream_seek (_obj->gen.data_source, size - sizeof (buf), SEEK_SET);
cdio_stream_read (_obj->gen.data_source, (void *) &buf, sizeof (buf), 1);
cdio_stream_seek (env->gen.data_source, size - sizeof (buf), SEEK_SET);
cdio_stream_read (env->gen.data_source, (void *) &buf, sizeof (buf), 1);
if (buf.v50.ID == UINT32_TO_BE (NERO_ID))
{
cdio_info ("detected Nero version 5.0 (32-bit offsets) NRG magic");
footer_start = uint32_to_be (buf.v50.footer_ofs);
}
else if (buf.v55.ID == UINT32_TO_BE (NER5_ID))
{
cdio_info ("detected Nero version 5.5.x (64-bit offsets) NRG magic");
footer_start = uint64_from_be (buf.v55.footer_ofs);
}
else
{
cdio_warn ("Image not recognized as either version 5.0 or "
"version 5.5.x type NRG");
return false;
}
if (buf.v50.ID == UINT32_TO_BE (NERO_ID)) {
cdio_info ("detected Nero version 5.0 (32-bit offsets) NRG magic");
footer_start = uint32_to_be (buf.v50.footer_ofs);
} else if (buf.v55.ID == UINT32_TO_BE (NER5_ID)) {
cdio_info ("detected Nero version 5.5.x (64-bit offsets) NRG magic");
footer_start = uint64_from_be (buf.v55.footer_ofs);
} else {
cdio_log (log_level, "Image not recognized as either version 5.0 or "
"version 5.5.x type NRG");
return false;
}
cdio_debug (".NRG footer start = %ld, length = %ld",
(long) footer_start, (long) (size - footer_start));
@@ -347,10 +342,10 @@ PRAGMA_END_PACKED
footer_buf = _cdio_malloc (size - footer_start);
cdio_stream_seek (_obj->gen.data_source, footer_start, SEEK_SET);
cdio_stream_read (_obj->gen.data_source, footer_buf, size - footer_start, 1);
cdio_stream_seek (env->gen.data_source, footer_start, SEEK_SET);
cdio_stream_read (env->gen.data_source, footer_buf,
size - footer_start, 1);
}
{
int pos = 0;
@@ -370,7 +365,7 @@ PRAGMA_END_PACKED
unsigned entries = UINT32_FROM_BE (chunk->len);
_cuex_array_t *_entries = (void *) chunk->data;
cdio_assert (_obj->mapping == NULL);
cdio_assert (env->mapping == NULL);
cdio_assert ( sizeof (_cuex_array_t) == 8 );
cdio_assert ( UINT32_FROM_BE (chunk->len) % sizeof(_cuex_array_t)
@@ -385,9 +380,9 @@ PRAGMA_END_PACKED
cdio_info ("CUES type image detected" );
/*cdio_assert (lsn == 0?);*/
_obj->is_cues = true; /* HACK alert. */
_obj->total_tracks = 0;
_obj->first_track_num = 1;
env->is_cues = true; /* HACK alert. */
env->total_tracks = 0;
env->first_track_num = 1;
for (idx = 1; idx < entries-1; idx += 2) {
lsn_t sec_count;
@@ -403,7 +398,7 @@ PRAGMA_END_PACKED
lsn = UINT32_FROM_BE (_entries[idx].lsn);
sec_count = UINT32_FROM_BE (_entries[idx + 1].lsn);
_register_mapping (_obj, lsn, sec_count*2,
_register_mapping (env, lsn, sec_count*2,
(lsn+CDIO_PREGAP_SECTORS) * M2RAW_SECTOR_SIZE,
M2RAW_SECTOR_SIZE, TRACK_FORMAT_XA, true);
}
@@ -423,7 +418,7 @@ PRAGMA_END_PACKED
lsn = UINT32_FROM_BE (_entries[idx].lsn);
sec_count = UINT32_FROM_BE (_entries[idx + 1].lsn);
_register_mapping (_obj, lsn, sec_count - lsn,
_register_mapping (env, lsn, sec_count - lsn,
(lsn + CDIO_PREGAP_SECTORS)*M2RAW_SECTOR_SIZE,
M2RAW_SECTOR_SIZE, TRACK_FORMAT_XA, true);
}
@@ -435,32 +430,34 @@ PRAGMA_END_PACKED
case DAOI_ID: /* "DAOI" */
{
track_format_t track_format;
int form;
int form2;
_obj->mcn = _cdio_malloc (CDIO_MCN_SIZE);
env->mcn = _cdio_malloc (CDIO_MCN_SIZE);
if (DAOX_ID == opcode) {
_daox_array_t *_entries = (void *) chunk->data;
form = _entries->_unknown[1];
_obj->dtyp = _entries->_unknown[19];
memcpy(_obj->mcn, &(_entries->mcn), CDIO_MCN_SIZE);
form2 = _entries->_unknown[1];
env->dtyp = _entries->_unknown[19];
memcpy(env->mcn, &(_entries->mcn), CDIO_MCN_SIZE);
} else {
_daoi_array_t *_entries = (void *) chunk->data;
form = _entries->_unknown[1];
_obj->dtyp = _entries->_unknown[19];
memcpy(_obj->mcn, &(_entries->mcn), CDIO_MCN_SIZE);
form2 = _entries->_unknown[1];
env->dtyp = _entries->_unknown[19];
memcpy(env->mcn, &(_entries->mcn), CDIO_MCN_SIZE);
}
_obj->is_dao = true;
env->is_dao = true;
cdio_debug ("DAO%c tag detected, track format %d, form %x\n",
opcode==DAOX_ID ? 'X': 'I', _obj->dtyp, form);
switch (_obj->dtyp) {
opcode==DAOX_ID ? 'X': 'I', env->dtyp, form2);
switch (env->dtyp) {
case 0:
/* Mode 1 */
track_format = TRACK_FORMAT_DATA;
break;
case 2:
/* Mode 2 form 1 */
form2 = 0;
track_format = TRACK_FORMAT_XA;
break;
case 3:
/* Mode 2 */
@@ -475,44 +472,47 @@ PRAGMA_END_PACKED
track_format = TRACK_FORMAT_AUDIO;
break;
default:
cdio_warn ("Unknown track format %x\n",
_obj->dtyp);
cdio_log (log_level, "Unknown track format %x\n",
env->dtyp);
track_format = TRACK_FORMAT_AUDIO;
}
if (0 == form) {
if (0 == form2) {
int i;
for (i=0; i<_obj->total_tracks; i++) {
_obj->tocent[i].track_format= track_format;
_obj->tocent[i].datastart = 0;
_obj->tocent[i].track_green = false;
for (i=0; i<env->total_tracks; i++) {
env->tocent[i].track_format= track_format;
env->tocent[i].datastart = 0;
env->tocent[i].track_green = false;
if (TRACK_FORMAT_AUDIO == track_format) {
_obj->tocent[i].blocksize = CDIO_CD_FRAMESIZE_RAW;
_obj->tocent[i].datasize = CDIO_CD_FRAMESIZE_RAW;
_obj->tocent[i].endsize = 0;
env->tocent[i].blocksize = CDIO_CD_FRAMESIZE_RAW;
env->tocent[i].datasize = CDIO_CD_FRAMESIZE_RAW;
env->tocent[i].endsize = 0;
} else {
_obj->tocent[i].datasize = CDIO_CD_FRAMESIZE;
_obj->tocent[i].datastart = 0;
env->tocent[i].datasize = CDIO_CD_FRAMESIZE;
env->tocent[i].datastart = 0;
}
}
} else if (2 == form) {
} else if (2 == form2) {
int i;
for (i=0; i<_obj->total_tracks; i++) {
_obj->tocent[i].track_green = true;
_obj->tocent[i].track_format= track_format;
_obj->tocent[i].datasize = CDIO_CD_FRAMESIZE;
for (i=0; i<env->total_tracks; i++) {
env->tocent[i].track_green = true;
env->tocent[i].track_format= track_format;
env->tocent[i].datasize = CDIO_CD_FRAMESIZE;
if (TRACK_FORMAT_XA == track_format) {
_obj->tocent[i].datastart = CDIO_CD_SYNC_SIZE
env->tocent[i].datastart = CDIO_CD_SYNC_SIZE
+ CDIO_CD_HEADER_SIZE + CDIO_CD_SUBHEADER_SIZE;
_obj->tocent[i].endsize = CDIO_CD_SYNC_SIZE
env->tocent[i].endsize = CDIO_CD_SYNC_SIZE
+ CDIO_CD_ECC_SIZE;
} else {
_obj->tocent[i].datastart = CDIO_CD_SYNC_SIZE
env->tocent[i].datastart = CDIO_CD_SYNC_SIZE
+ CDIO_CD_HEADER_SIZE;
_obj->tocent[i].endsize = CDIO_CD_EDC_SIZE
env->tocent[i].endsize = CDIO_CD_EDC_SIZE
+ CDIO_CD_M1F1_ZERO_SIZE + CDIO_CD_ECC_SIZE;
}
}
} else {
cdio_log (log_level, "Don't know if form1 or form2 form2: %x\n",
form2);
}
break;
}
@@ -533,7 +533,7 @@ PRAGMA_END_PACKED
unsigned entries = UINT32_FROM_BE (chunk->len);
_etnf_array_t *_entries = (void *) chunk->data;
cdio_assert (_obj->mapping == NULL);
cdio_assert (env->mapping == NULL);
cdio_assert ( sizeof (_etnf_array_t) == 20 );
cdio_assert ( UINT32_FROM_BE(chunk->len) % sizeof(_etnf_array_t)
@@ -576,8 +576,9 @@ PRAGMA_END_PACKED
blocksize = CDIO_CD_FRAMESIZE_RAW;
break;
default:
cdio_warn ("Don't know how to handle track mode (%lu)?",
(long unsigned int) track_mode);
cdio_log (log_level,
"Don't know how to handle track mode (%lu)?",
(long unsigned int) track_mode);
free(footer_buf);
return false;
}
@@ -589,7 +590,7 @@ PRAGMA_END_PACKED
cdio_assert (_start * blocksize == _start2);
_start += idx * CDIO_PREGAP_SECTORS;
_register_mapping (_obj, _start, _len, _start2, blocksize,
_register_mapping (env, _start, _len, _start2, blocksize,
track_format, track_green);
}
@@ -601,7 +602,7 @@ PRAGMA_END_PACKED
unsigned entries = uint32_from_be (chunk->len);
_etn2_array_t *_entries = (void *) chunk->data;
cdio_assert (_obj->mapping == NULL);
cdio_assert (env->mapping == NULL);
cdio_assert (sizeof (_etn2_array_t) == 32);
cdio_assert (uint32_from_be (chunk->len) % sizeof (_etn2_array_t) == 0);
@@ -644,25 +645,30 @@ PRAGMA_END_PACKED
blocksize = CDIO_CD_FRAMESIZE_RAW;
break;
default:
cdio_warn ("Don't know how to handle track mode (%lu)?",
(long unsigned int) track_mode);
cdio_log (log_level,
"Don't know how to handle track mode (%lu)?",
(long unsigned int) track_mode);
free(footer_buf);
return false;
}
if (_len % blocksize != 0) {
cdio_warn ("length is not a multiple of blocksize "
cdio_log (log_level,
"length is not a multiple of blocksize "
"len %lu, size %d, rem %lu",
(long unsigned int) _len, blocksize,
(long unsigned int) _len % blocksize);
if (0 == _len % CDIO_CD_FRAMESIZE) {
cdio_warn("Adjusting blocksize to %d", CDIO_CD_FRAMESIZE);
cdio_log(log_level, "Adjusting blocksize to %d",
CDIO_CD_FRAMESIZE);
blocksize = CDIO_CD_FRAMESIZE;
} else if (0 == _len % M2RAW_SECTOR_SIZE) {
cdio_warn("Adjusting blocksize to %d", M2RAW_SECTOR_SIZE);
cdio_log(log_level,
"Adjusting blocksize to %d", M2RAW_SECTOR_SIZE);
blocksize = M2RAW_SECTOR_SIZE;
} else if (0 == _len % CDIO_CD_FRAMESIZE_RAW) {
cdio_warn("Adjusting blocksize to %d", CDIO_CD_FRAMESIZE_RAW);
cdio_log(log_level,
"Adjusting blocksize to %d", CDIO_CD_FRAMESIZE_RAW);
blocksize = CDIO_CD_FRAMESIZE_RAW;
}
}
@@ -670,23 +676,27 @@ PRAGMA_END_PACKED
_len /= blocksize;
if (_start * blocksize != _start2) {
cdio_warn ("%lu * %d != %lu",
cdio_log (log_level,
"%lu * %d != %lu",
(long unsigned int) _start, blocksize,
(long unsigned int) _start2);
if (_start * CDIO_CD_FRAMESIZE == _start2) {
cdio_warn("Adjusting blocksize to %d", CDIO_CD_FRAMESIZE);
cdio_log(log_level,
"Adjusting blocksize to %d", CDIO_CD_FRAMESIZE);
blocksize = CDIO_CD_FRAMESIZE;
} else if (_start * M2RAW_SECTOR_SIZE == _start2) {
cdio_warn("Adjusting blocksize to %d", M2RAW_SECTOR_SIZE);
cdio_log(log_level,
"Adjusting blocksize to %d", M2RAW_SECTOR_SIZE);
blocksize = M2RAW_SECTOR_SIZE;
} else if (0 == _start * CDIO_CD_FRAMESIZE_RAW == _start2) {
cdio_warn("Adjusting blocksize to %d", CDIO_CD_FRAMESIZE_RAW);
cdio_log(log_level,
"Adjusting blocksize to %d", CDIO_CD_FRAMESIZE_RAW);
blocksize = CDIO_CD_FRAMESIZE_RAW;
}
}
_start += idx * CDIO_PREGAP_SECTORS;
_register_mapping (_obj, _start, _len, _start2, blocksize,
_register_mapping (env, _start, _len, _start2, blocksize,
track_format, track_green);
}
}
@@ -714,15 +724,17 @@ PRAGMA_END_PACKED
(long unsigned int) UINT32_FROM_BE (*mtyp_p));
if (mtyp != MTYP_AUDIO_CD) {
cdio_warn ("Unknown MTYP value: %u", (unsigned int) mtyp);
cdio_log (log_level,
"Unknown MTYP value: %u", (unsigned int) mtyp);
}
_obj->mtyp = mtyp;
env->mtyp = mtyp;
}
break;
default:
cdio_warn ("unknown tag %8.8x seen",
(unsigned int) UINT32_FROM_BE (chunk->id));
cdio_log (log_level,
"unknown tag %8.8x seen",
(unsigned int) UINT32_FROM_BE (chunk->id));
break;
}
@@ -738,10 +750,10 @@ PRAGMA_END_PACKED
/* Don't use _stat_size_nrg since that will lead to recursion since
we haven't fully initialized things yet.
*/
cdio_lsn_to_msf (_obj->size, &_obj->tocent[_obj->total_tracks].start_msf);
_obj->tocent[_obj->total_tracks].start_lba = cdio_lsn_to_lba(_obj->size);
_obj->tocent[_obj->total_tracks-1].sec_count =
cdio_lsn_to_lba(_obj->size - _obj->tocent[_obj->total_tracks-1].start_lba);
cdio_lsn_to_msf (env->size, &env->tocent[env->total_tracks].start_msf);
env->tocent[env->total_tracks].start_lba = cdio_lsn_to_lba(env->size);
env->tocent[env->total_tracks-1].sec_count =
cdio_lsn_to_lba(env->size - env->tocent[env->total_tracks-1].start_lba);
free(footer_buf);
return true;
@@ -751,20 +763,26 @@ PRAGMA_END_PACKED
Initialize image structures.
*/
static bool
_cdio_init (_img_private_t *_obj)
_init_nrg (_img_private_t *env)
{
if (_obj->gen.init) {
if (env->gen.init) {
cdio_error ("init called more than once");
return false;
}
if (!(_obj->gen.data_source = cdio_stdio_new (_obj->gen.source_name))) {
cdio_warn ("init failed");
if (!(env->gen.data_source = cdio_stdio_new (env->gen.source_name))) {
cdio_warn ("can't open nrg image file %s for reading",
env->gen.source_name);
return false;
}
_cdio_parse_nero_footer (_obj);
_obj->gen.init = true;
if ( !parse_nrg (env, env->gen.source_name) ) {
cdio_warn ("image file %s is not a Nero image",
env->gen.source_name);
return false;
}
env->gen.init = true;
return true;
}
@@ -776,40 +794,40 @@ _cdio_init (_img_private_t *_obj)
information in each sector.
*/
static off_t
_lseek_nrg (void *env, off_t offset, int whence)
_lseek_nrg (void *user_data, off_t offset, int whence)
{
_img_private_t *_obj = env;
_img_private_t *env = user_data;
/* real_offset is the real byte offset inside the disk image
The number below was determined empirically.
*/
off_t real_offset= _obj->is_dao ? 0x4b000 : 0;
off_t real_offset= env->is_dao ? 0x4b000 : 0;
unsigned int i;
for (i=0; i<_obj->total_tracks; i++) {
track_info_t *this_track=&(_obj->tocent[i]);
_obj->pos.index = i;
for (i=0; i<env->total_tracks; i++) {
track_info_t *this_track=&(env->tocent[i]);
env->pos.index = i;
if ( (this_track->sec_count*this_track->datasize) >= offset) {
int blocks = offset / this_track->datasize;
int rem = offset % this_track->datasize;
int block_offset = blocks * this_track->blocksize;
real_offset += block_offset + rem;
_obj->pos.buff_offset = rem;
_obj->pos.lba += blocks;
env->pos.buff_offset = rem;
env->pos.lba += blocks;
break;
}
real_offset += this_track->sec_count*this_track->blocksize;
offset -= this_track->sec_count*this_track->datasize;
_obj->pos.lba += this_track->sec_count;
env->pos.lba += this_track->sec_count;
}
if (i==_obj->total_tracks) {
if (i==env->total_tracks) {
cdio_warn ("seeking outside range of disk image");
return -1;
} else
real_offset += _obj->tocent[i].datastart;
return cdio_stream_seek(_obj->gen.data_source, real_offset, whence);
real_offset += env->tocent[i].datastart;
return cdio_stream_seek(env->gen.data_source, real_offset, whence);
}
/*!
@@ -820,18 +838,18 @@ _lseek_nrg (void *env, off_t offset, int whence)
boundaries.
*/
static ssize_t
_read_nrg (void *env, void *buf, size_t size)
_read_nrg (void *user_data, void *buf, size_t size)
{
_img_private_t *_obj = env;
return cdio_stream_read(_obj->gen.data_source, buf, size, 1);
_img_private_t *env = user_data;
return cdio_stream_read(env->gen.data_source, buf, size, 1);
}
static uint32_t
_stat_size_nrg (void *env)
_stat_size_nrg (void *user_data)
{
_img_private_t *_obj = env;
_img_private_t *env = user_data;
return _obj->size;
return env->size;
}
/*!
@@ -839,21 +857,21 @@ _stat_size_nrg (void *env)
from LSN. Returns 0 if no error.
*/
static int
_read_audio_sectors_nrg (void *env, void *data, lsn_t lsn,
_read_audio_sectors_nrg (void *user_data, void *data, lsn_t lsn,
unsigned int nblocks)
{
_img_private_t *_obj = env;
_img_private_t *env = user_data;
CdioListNode *node;
if (lsn >= _obj->size)
if (lsn >= env->size)
{
cdio_warn ("trying to read beyond image size (%lu >= %lu)",
(long unsigned int) lsn, (long unsigned int) _obj->size);
(long unsigned int) lsn, (long unsigned int) env->size);
return -1;
}
_CDIO_LIST_FOREACH (node, _obj->mapping) {
_CDIO_LIST_FOREACH (node, env->mapping) {
_mapping_t *_map = _cdio_list_node_data (node);
if (IN (lsn, _map->start_lsn, (_map->start_lsn + _map->sec_count - 1))) {
@@ -862,10 +880,10 @@ _read_audio_sectors_nrg (void *env, void *data, lsn_t lsn,
img_offset += (lsn - _map->start_lsn) * CDIO_CD_FRAMESIZE_RAW;
ret = cdio_stream_seek (_obj->gen.data_source, img_offset,
ret = cdio_stream_seek (env->gen.data_source, img_offset,
SEEK_SET);
if (ret!=0) return ret;
ret = cdio_stream_read (_obj->gen.data_source, data,
ret = cdio_stream_read (env->gen.data_source, data,
CDIO_CD_FRAMESIZE_RAW, nblocks);
if (ret==0) return ret;
break;
@@ -879,22 +897,22 @@ _read_audio_sectors_nrg (void *env, void *data, lsn_t lsn,
}
static int
_read_mode1_sector_nrg (void *env, void *data, lsn_t lsn,
_read_mode1_sector_nrg (void *user_data, void *data, lsn_t lsn,
bool b_form2)
{
_img_private_t *_obj = env;
_img_private_t *env = user_data;
char buf[CDIO_CD_FRAMESIZE_RAW] = { 0, };
CdioListNode *node;
if (lsn >= _obj->size)
if (lsn >= env->size)
{
cdio_warn ("trying to read beyond image size (%lu >= %lu)",
(long unsigned int) lsn, (long unsigned int) _obj->size);
(long unsigned int) lsn, (long unsigned int) env->size);
return -1;
}
_CDIO_LIST_FOREACH (node, _obj->mapping) {
_CDIO_LIST_FOREACH (node, env->mapping) {
_mapping_t *_map = _cdio_list_node_data (node);
if (IN (lsn, _map->start_lsn, (_map->start_lsn + _map->sec_count - 1))) {
@@ -903,12 +921,12 @@ _read_mode1_sector_nrg (void *env, void *data, lsn_t lsn,
img_offset += (lsn - _map->start_lsn) * _map->blocksize;
ret = cdio_stream_seek (_obj->gen.data_source, img_offset,
ret = cdio_stream_seek (env->gen.data_source, img_offset,
SEEK_SET);
if (ret!=0) return ret;
/* FIXME: Not completely sure the below is correct. */
ret = cdio_stream_read (_obj->gen.data_source,
ret = cdio_stream_read (env->gen.data_source,
(M2RAW_SECTOR_SIZE == _map->blocksize)
? (buf + CDIO_CD_SYNC_SIZE + CDIO_CD_HEADER_SIZE)
: buf,
@@ -933,16 +951,16 @@ _read_mode1_sector_nrg (void *env, void *data, lsn_t lsn,
Returns 0 if no error.
*/
static int
_read_mode1_sectors_nrg (void *env, void *data, lsn_t lsn,
_read_mode1_sectors_nrg (void *user_data, void *data, lsn_t lsn,
bool b_form2, unsigned nblocks)
{
_img_private_t *_obj = env;
_img_private_t *env = user_data;
int i;
int retval;
unsigned int blocksize = b_form2 ? M2RAW_SECTOR_SIZE : CDIO_CD_FRAMESIZE;
for (i = 0; i < nblocks; i++) {
if ( (retval = _read_mode1_sector_nrg (_obj,
if ( (retval = _read_mode1_sector_nrg (env,
((char *)data) + (blocksize * i),
lsn + i, b_form2)) )
return retval;
@@ -951,22 +969,22 @@ _read_mode1_sectors_nrg (void *env, void *data, lsn_t lsn,
}
static int
_read_mode2_sector_nrg (void *env, void *data, lsn_t lsn,
_read_mode2_sector_nrg (void *user_data, void *data, lsn_t lsn,
bool b_form2)
{
_img_private_t *_obj = env;
_img_private_t *env = user_data;
char buf[CDIO_CD_FRAMESIZE_RAW] = { 0, };
CdioListNode *node;
if (lsn >= _obj->size)
if (lsn >= env->size)
{
cdio_warn ("trying to read beyond image size (%lu >= %lu)",
(long unsigned int) lsn, (long unsigned int) _obj->size);
(long unsigned int) lsn, (long unsigned int) env->size);
return -1;
}
_CDIO_LIST_FOREACH (node, _obj->mapping) {
_CDIO_LIST_FOREACH (node, env->mapping) {
_mapping_t *_map = _cdio_list_node_data (node);
if (IN (lsn, _map->start_lsn, (_map->start_lsn + _map->sec_count - 1))) {
@@ -975,10 +993,10 @@ _read_mode2_sector_nrg (void *env, void *data, lsn_t lsn,
img_offset += (lsn - _map->start_lsn) * _map->blocksize;
ret = cdio_stream_seek (_obj->gen.data_source, img_offset,
ret = cdio_stream_seek (env->gen.data_source, img_offset,
SEEK_SET);
if (ret!=0) return ret;
ret = cdio_stream_read (_obj->gen.data_source,
ret = cdio_stream_read (env->gen.data_source,
(M2RAW_SECTOR_SIZE == _map->blocksize)
? (buf + CDIO_CD_SYNC_SIZE + CDIO_CD_HEADER_SIZE)
: buf,
@@ -1006,16 +1024,16 @@ _read_mode2_sector_nrg (void *env, void *data, lsn_t lsn,
Returns 0 if no error.
*/
static int
_read_mode2_sectors_nrg (void *env, void *data, lsn_t lsn,
_read_mode2_sectors_nrg (void *user_data, void *data, lsn_t lsn,
bool b_form2, unsigned nblocks)
{
_img_private_t *_obj = env;
_img_private_t *env = user_data;
int i;
int retval;
unsigned int blocksize = b_form2 ? M2RAW_SECTOR_SIZE : CDIO_CD_FRAMESIZE;
for (i = 0; i < nblocks; i++) {
if ( (retval = _read_mode2_sector_nrg (_obj,
if ( (retval = _read_mode2_sector_nrg (env,
((char *)data) + (blocksize * i),
lsn + i, b_form2)) )
return retval;
@@ -1027,9 +1045,9 @@ _read_mode2_sectors_nrg (void *env, void *data, lsn_t lsn,
Free memory resources associated with NRG object.
*/
static void
_free_nrg (void *obj)
_free_nrg (void *user_data)
{
_img_private_t *env = obj;
_img_private_t *env = user_data;
if (NULL == env) return;
if (NULL != env->mapping)
@@ -1053,18 +1071,18 @@ _eject_media_nrg(void *obj)
Set the device to use in I/O operations.
*/
static int
_set_arg_nrg (void *env, const char key[], const char value[])
_set_arg_nrg (void *user_data, const char key[], const char value[])
{
_img_private_t *_obj = env;
_img_private_t *env = user_data;
if (!strcmp (key, "source"))
{
free (_obj->gen.source_name);
free (env->gen.source_name);
if (!value)
return -2;
_obj->gen.source_name = strdup (value);
env->gen.source_name = strdup (value);
}
else
return -1;
@@ -1076,12 +1094,12 @@ _set_arg_nrg (void *env, const char key[], const char value[])
Return the value associated with the key "arg".
*/
static const char *
_get_arg_nrg (void *env, const char key[])
_get_arg_nrg (void *user_data, const char key[])
{
_img_private_t *_obj = env;
_img_private_t *env = user_data;
if (!strcmp (key, "source")) {
return _obj->gen.source_name;
return env->gen.source_name;
} else if (!strcmp(key, "access-mode")) {
return "image";
}
@@ -1132,7 +1150,7 @@ cdio_get_default_device_nrg(void)
*/
static cdio_drive_cap_t
_get_drive_cap_nrg (const void *env) {
_get_drive_cap_nrg (const void *user_data) {
/* There may be more in the future but these we can handle now.
Also, we know we can't handle
@@ -1146,15 +1164,15 @@ _get_drive_cap_nrg (const void *env) {
CDIO_INVALID_TRACK is returned on error.
*/
static track_format_t
_get_track_format_nrg(void *env, track_t track_num)
_get_track_format_nrg(void *user_data, track_t track_num)
{
_img_private_t *_obj = env;
_img_private_t *env = user_data;
if (track_num > _obj->total_tracks || track_num == 0)
if (track_num > env->total_tracks || track_num == 0)
return TRACK_FORMAT_ERROR;
if ( _obj->dtyp != DTYP_INVALID) {
switch (_obj->dtyp) {
if ( env->dtyp != DTYP_INVALID) {
switch (env->dtyp) {
case DTYP_MODE2_XA:
return TRACK_FORMAT_XA;
case DTYP_MODE1:
@@ -1163,8 +1181,8 @@ _get_track_format_nrg(void *env, track_t track_num)
}
}
/*if ( MTYP_AUDIO_CD == _obj->mtyp) return TRACK_FORMAT_AUDIO; */
return _obj->tocent[track_num-1].track_format;
/*if ( MTYP_AUDIO_CD == env->mtyp) return TRACK_FORMAT_AUDIO; */
return env->tocent[track_num-1].track_format;
}
/*!
@@ -1176,15 +1194,15 @@ _get_track_format_nrg(void *env, track_t track_num)
FIXME: there's gotta be a better design for this and get_track_format?
*/
static bool
_get_track_green_nrg(void *env, track_t track_num)
_get_track_green_nrg(void *user_data, track_t track_num)
{
_img_private_t *_obj = env;
_img_private_t *env = user_data;
if (track_num > _obj->total_tracks || track_num == 0)
if (track_num > env->total_tracks || track_num == 0)
return false;
if ( MTYP_AUDIO_CD == _obj->mtyp) return false;
return _obj->tocent[track_num-1].track_green;
if ( MTYP_AUDIO_CD == env->mtyp) return false;
return env->tocent[track_num-1].track_green;
}
/*!
@@ -1197,7 +1215,7 @@ _get_track_green_nrg(void *env, track_t track_num)
bool
cdio_is_nrg(const char *psz_nrg)
{
int i;
unsigned int i;
if (psz_nrg == NULL) return false;
@@ -1270,7 +1288,6 @@ cdio_open_nrg (const char *psz_source)
_data->is_dao = false;
_data->is_cues = false; /* FIXME: remove is_cues. */
_set_arg_nrg(_data, "source", (NULL == psz_source)
? DEFAULT_CDIO_DEVICE: psz_source);
@@ -1284,11 +1301,10 @@ cdio_open_nrg (const char *psz_source)
return NULL;
}
if (_cdio_init(_data))
if (_init_nrg(_data))
return ret;
else {
cdio_generic_stdio_free (_data);
free(_data);
_free_nrg(_data);
return NULL;
}