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//-------------------------------------------------------------- |
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//File name: apa.c |
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//-------------------------------------------------------------- |
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#include <thbase.h> |
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#include <sysclib.h> |
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#include <cdvdman.h> |
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#include <iomanX.h> |
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#include <sysmem.h> |
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|
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#include "ps2_hdd.h" |
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#include "hdd.h" |
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#include "hdl.h" |
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#include "apa.h" |
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|
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#define AUTO_DELETE_EMPTY |
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|
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#define _MB * (1024 * 1024) /* really ugly :-) */ |
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|
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typedef struct ps2_partition_run_type |
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{ |
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unsigned long sector; |
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u_long size_in_mb; |
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} ps2_partition_run_t; |
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|
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//Remove this line, and uncomment the next line, to reactivate 'apa_check' |
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//static int apa_check(const apa_partition_table_t *table); |
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|
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//-------------------------------------------------------------- |
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u_long apa_partition_checksum(const ps2_partition_header_t *part) |
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{ |
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const u_long *p = (const u_long*)part; |
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register u_long i; |
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u_long sum = 0; |
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for(i=1; i<256; ++i) |
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sum += get_u32(p + i); |
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return sum; |
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} |
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//------------------------------ |
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//endfunc apa_partition_checksum |
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//-------------------------------------------------------------- |
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static apa_partition_table_t* apa_ptable_alloc(void) |
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{ |
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apa_partition_table_t *table = AllocSysMemory(0, sizeof (apa_partition_table_t), NULL); |
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if(table != NULL) |
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memset(table, 0, sizeof (apa_partition_table_t)); |
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return table; |
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} |
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//------------------------------ |
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//endfunc apa_ptable_alloc |
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//-------------------------------------------------------------- |
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void apa_ptable_free(apa_partition_table_t *table) |
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{ |
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if (table != NULL){ |
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if (table->chunks_map != NULL) |
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FreeSysMemory(table->chunks_map); |
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if (table->parts != NULL) |
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FreeSysMemory(table->parts); |
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FreeSysMemory(table); |
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} |
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} |
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//------------------------------ |
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//endfunc apa_ptable_free |
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//-------------------------------------------------------------- |
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static int apa_part_add (apa_partition_table_t *table, const ps2_partition_header_t *part, int existing, int linked) |
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{ |
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if (table->part_count == table->part_alloc_){ /* grow buffer */ |
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u_long bytes = (table->part_alloc_ + 16) * sizeof (apa_partition_t); |
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apa_partition_t *tmp = AllocSysMemory(0, bytes, NULL); |
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if(tmp != NULL) |
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{ |
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memset(tmp, 0, bytes); |
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if (table->parts != NULL) /* copy existing */ |
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memcpy(tmp, table->parts, table->part_count * sizeof (apa_partition_t)); |
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FreeSysMemory(table->parts); |
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table->parts = tmp; |
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table->part_alloc_ += 16; |
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} |
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else return -2; |
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} |
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|
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memcpy(&table->parts[table->part_count].header, part, sizeof (ps2_partition_header_t)); |
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table->parts[table->part_count].existing = existing; |
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table->parts[table->part_count].modified = !existing; |
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table->parts[table->part_count].linked = linked; |
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++table->part_count; |
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|
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return 0; |
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} |
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//------------------------------ |
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//endfunc apa_part_add |
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//-------------------------------------------------------------- |
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/* //Remove this line and a similar one below to reactivate 'apa_setup_statistics' |
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static int apa_setup_statistics(apa_partition_table_t *table) |
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{ |
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u_long i; |
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char *map; |
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|
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table->total_chunks = table->device_size_in_mb / 128; |
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map = AllocSysMemory(0, table->total_chunks * sizeof (char), NULL); |
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if(map != NULL) |
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{ |
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for(i=0; i<table->total_chunks; ++i) |
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map [i] = MAP_AVAIL; |
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|
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// build occupided/available space map |
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table->allocated_chunks = 0; |
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table->free_chunks = table->total_chunks; |
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for(i=0; i<table->part_count; ++i) |
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{ |
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const ps2_partition_header_t *part = &table->parts [i].header; |
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u_long part_no = get_u32(&part->start) / ((128 _MB) / 512); |
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u_long num_parts = get_u32(&part->length) / ((128 _MB) / 512); |
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|
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// "alloc" num_parts starting at part_no |
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while (num_parts) |
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{ |
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if(map[part_no] == MAP_AVAIL) |
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map[part_no] = get_u32(&part->main) == 0 ? MAP_MAIN : MAP_SUB; |
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else |
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map[part_no] = MAP_COLL; // collision |
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++part_no; |
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--num_parts; |
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++table->allocated_chunks; |
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--table->free_chunks; |
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} |
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} |
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|
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if(table->chunks_map != NULL) |
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FreeSysMemory(table->chunks_map); |
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table->chunks_map = map; |
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|
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return 0; |
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} |
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else return -2; |
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} |
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*/ //Remove this line and a similar one below to reactivate 'apa_setup_statistics' |
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//------------------------------ |
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//endfunc apa_setup_statistics |
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//-------------------------------------------------------------- |
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int apa_ptable_read_ex ( hio_t *hio, apa_partition_table_t **table) |
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{ |
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u_long size_in_kb; |
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int result = hio->stat(hio, &size_in_kb); |
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if(result == 0){ |
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u_long total_sectors; |
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// limit HDD size to 128GB - 1KB; that is: exclude the last 128MB chunk |
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//if (size_in_kb > 128 * 1024 * 1024 - 1) |
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// size_in_kb = 128 * 1024 * 1024 - 1; |
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|
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total_sectors = size_in_kb * 2; /* 1KB = 2 sectors of 512 bytes, each */ |
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|
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*table = apa_ptable_alloc(); |
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if(*table != NULL){ |
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u_long sector = 0; |
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do { |
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u_long bytes; |
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ps2_partition_header_t part; |
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result = hio->read(hio, sector, sizeof(part) / 512, &part, &bytes); |
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if(result == 0){ |
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if(bytes == sizeof(part) && |
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get_u32(&part.checksum) == apa_partition_checksum(&part) && |
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memcmp(part.magic, PS2_PARTITION_MAGIC, 4) == 0) |
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{ |
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if(get_u32(&part.start) < total_sectors && |
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get_u32(&part.start) + get_u32(&part.length) < total_sectors) |
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{ |
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if((get_u16(&part.flags)==0x0000) && (get_u16(&part.type) ==0x1337)) |
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result = apa_part_add(*table, &part, 1, 1); |
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if(result == 0) |
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sector = get_u32(&part.next); |
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} else { /* partition behind end-of-HDD */ |
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result = 7; /* data behind end-of-HDD */ |
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break; |
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} |
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} else |
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result = 1; |
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} |
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/* TODO: check whether next partition is not loaded already -- |
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* do not deadlock; that is a quick-and-dirty hack */ |
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if ((*table)->part_count > 10000) |
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result = 7; |
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} while (result == 0 && sector != 0); |
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|
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if (result == 0){ |
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(*table)->device_size_in_mb = size_in_kb / 1024; |
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//NB: uncommenting the next lines requires changes elsewhere too |
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//result = apa_setup_statistics (*table); |
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//if (result == 0) |
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//result = apa_check (*table); |
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} |
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|
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if (result != 0){ |
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result = 20000+(*table)->part_count; |
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apa_ptable_free (*table); |
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} |
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} |
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else result = -2; |
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} |
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return result; |
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} |
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//------------------------------ |
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//endfunc apa_ptable_read_ex |
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//-------------------------------------------------------------- |
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/* //Remove this line and a similar one below to reactivate 'apa_check' |
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static int apa_check (const apa_partition_table_t *table) { |
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|
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u_long i, j, k; |
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|
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const u_long total_sectors = table->device_size_in_mb * 1024 * 2; |
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|
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for (i=0; i<table->part_count; ++i) |
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{ |
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const ps2_partition_header_t *part = &table->parts [i].header; |
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if (get_u32 (&part->checksum) != apa_partition_checksum (part)) |
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return 7; // bad checksum |
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|
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if (get_u32 (&part->start) < total_sectors && |
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get_u32 (&part->start) + get_u32 (&part->length) <= total_sectors) |
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; |
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else |
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{ |
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return 7; // data behind end-of-HDD |
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} |
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|
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if ((get_u32 (&part->length) % ((128 _MB) / 512)) != 0) |
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return 7; // partition size not multiple to 128MB |
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|
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if ((get_u32 (&part->start) % get_u32 (&part->length)) != 0) |
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return 7; // partition start not multiple on partition size |
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|
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if (get_u32 (&part->main) == 0 && |
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get_u16 (&part->flags) == 0 && |
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get_u32 (&part->start) != 0) |
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{ // check sub-partitions |
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u_long count = 0; |
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for (j=0; j<table->part_count; ++j) |
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{ |
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const ps2_partition_header_t *part2 = &table->parts [j].header; |
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if (get_u32 (&part2->main) == get_u32 (&part->start)) |
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{ // sub-partition of current main partition |
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int found; |
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if (get_u16 (&part2->flags) != PS2_PART_FLAG_SUB) |
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return 7; |
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|
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found = 0; |
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for (k=0; k<get_u32 (&part->nsub); ++k) |
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if (get_u32 (&part->subs [k].start) == get_u32 (&part2->start)) |
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{ // in list |
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if (get_u32 (&part->subs [k].length) != get_u32 (&part2->length)) |
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return 7; |
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found = 1; |
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break; |
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} |
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if (!found) |
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return 7; // not found in the list |
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|
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++count; |
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} |
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} |
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if (count != get_u32 (&part->nsub)) |
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return 7; // wrong number of sub-partitions |
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} |
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} |
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|
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// verify double-linked list |
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for (i=0; i<table->part_count; ++i) |
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{ |
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apa_partition_t *prev = table->parts + (i > 0 ? i - 1 : table->part_count - 1); |
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apa_partition_t *curr = table->parts + i; |
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apa_partition_t *next = table->parts + (i + 1 < table->part_count ? i + 1 : 0); |
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if (get_u32 (&curr->header.prev) != get_u32 (&prev->header.start) || |
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get_u32 (&curr->header.next) != get_u32 (&next->header.start)) |
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return 7; // bad links |
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} |
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|
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return 0; |
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} |
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*/ //Remove this line and a similar one above to reactivate 'apa_check' |
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//------------------------------ |
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//endfunc apa_check |
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//-------------------------------------------------------------- |
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u_long get_u32 (const void *buffer) |
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{ |
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const u_char *p = buffer; |
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return ((((u_long) p[3]) << 24) | |
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(((u_long) p[2]) << 16) | |
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(((u_long) p[1]) << 8) | |
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(((u_long) p[0]) << 0)); |
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} |
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//------------------------------ |
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//endfunc get_u32 |
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//-------------------------------------------------------------- |
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void set_u32 (void *buffer, u_long val) |
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{ |
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u_char *p = buffer; |
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p [3] = (u_char) (val >> 24); |
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p [2] = (u_char) (val >> 16); |
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p [1] = (u_char) (val >> 8); |
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p [0] = (u_char) (val >> 0); |
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} |
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//------------------------------ |
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//endfunc set_u32 |
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//-------------------------------------------------------------- |
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u_short get_u16 (const void *buffer) |
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{ |
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const u_char *p = buffer; |
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return ((((u_short) p[1]) << 8) | |
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(((u_short) p[0]) << 0)); |
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} |
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//------------------------------ |
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//endfunc get_u16 |
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//-------------------------------------------------------------- |
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void set_u16 (void *buffer, u_short val) |
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{ |
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u_char *p = buffer; |
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p [1] = (u_char) (val >> 8); |
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p [0] = (u_char) (val >> 0); |
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} |
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//------------------------------ |
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//endfunc set_u16 |
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//-------------------------------------------------------------- |
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//End of file: apa.c |
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//-------------------------------------------------------------- |