3 * mem.c is responsible for creating and maintaining the overall system memory
4 * map, as visible from the SH4 processor.
6 * Copyright (c) 2005 Nathan Keynes.
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
18 #define MODULE mem_module
20 #include <sys/types.h>
23 #include <glib/gstrfuncs.h>
36 #include "dreamcast.h"
38 sh4ptr_t *page_map = NULL;
40 int mem_load(FILE *f);
41 void mem_save(FILE *f);
42 struct dreamcast_module mem_module =
43 { "MEM", mem_init, mem_reset, NULL, NULL, NULL, mem_save, mem_load };
45 struct mem_region mem_rgn[MAX_MEM_REGIONS];
46 struct mmio_region *io_rgn[MAX_IO_REGIONS];
47 struct mmio_region *P4_io[4096];
49 uint32_t num_io_rgns = 0, num_mem_rgns = 0;
51 void *mem_alloc_pages( int n )
53 void *mem = mmap( NULL, n * 4096,
54 PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE, -1, 0 );
55 if( mem == MAP_FAILED ) {
56 ERROR( "Memory allocation failure! (%s)", strerror(errno) );
65 page_map = mmap( NULL, sizeof(sh4ptr_t) * LXDREAM_PAGE_TABLE_ENTRIES,
66 PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE, -1, 0 );
67 if( page_map == MAP_FAILED ) {
68 ERROR( "Unable to allocate page map! (%s)", strerror(errno) );
73 memset( page_map, 0, sizeof(sh4ptr_t) * LXDREAM_PAGE_TABLE_ENTRIES );
76 void mem_reset( void )
78 /* Restore all mmio registers to their initial settings */
80 for( i=1; i<num_io_rgns; i++ ) {
81 for( j=0; io_rgn[i]->ports[j].id != NULL; j++ ) {
82 if( io_rgn[i]->ports[j].def_val != UNDEFINED &&
83 io_rgn[i]->ports[j].def_val != *io_rgn[i]->ports[j].val ) {
84 io_rgn[i]->fn.write_long( io_rgn[i]->ports[j].offset,
85 io_rgn[i]->ports[j].def_val );
91 void mem_save( FILE *f )
96 /* All memory regions */
97 fwrite( &num_mem_rgns, sizeof(num_mem_rgns), 1, f );
98 for( i=0; i<num_mem_rgns; i++ ) {
99 fwrite_string( mem_rgn[i].name, f );
100 fwrite( &mem_rgn[i].base, sizeof(uint32_t), 1, f );
101 fwrite( &mem_rgn[i].flags, sizeof(uint32_t), 1, f );
102 fwrite( &mem_rgn[i].size, sizeof(uint32_t), 1, f );
103 if( mem_rgn[i].flags != MEM_FLAG_ROM )
104 fwrite_gzip( mem_rgn[i].mem, mem_rgn[i].size, 1, f );
107 /* All MMIO regions */
108 fwrite( &num_io_rgns, sizeof(num_io_rgns), 1, f );
109 for( i=0; i<num_io_rgns; i++ ) {
110 fwrite_string( io_rgn[i]->id, f );
111 fwrite( &io_rgn[i]->base, sizeof( uint32_t ), 1, f );
113 fwrite( &len, sizeof(len), 1, f );
114 fwrite_gzip( io_rgn[i]->mem, len, 1, f );
118 int mem_load( FILE *f )
126 /* All memory regions */
127 fread( &len, sizeof(len), 1, f );
128 if( len != num_mem_rgns )
130 for( i=0; i<len; i++ ) {
131 fread_string( tmp, sizeof(tmp), f );
132 fread( &base, sizeof(base), 1, f );
133 fread( &flags, sizeof(flags), 1, f );
134 fread( &size, sizeof(size), 1, f );
135 if( strcmp( mem_rgn[i].name, tmp ) != 0 ||
136 base != mem_rgn[i].base ||
137 flags != mem_rgn[i].flags ||
138 size != mem_rgn[i].size ) {
139 ERROR( "Bad memory region %d %s", i, tmp );
142 if( flags != MEM_FLAG_ROM )
143 fread_gzip( mem_rgn[i].mem, size, 1, f );
146 /* All MMIO regions */
147 fread( &len, sizeof(len), 1, f );
148 if( len != num_io_rgns )
150 for( i=0; i<len; i++ ) {
151 fread_string( tmp, sizeof(tmp), f );
152 fread( &base, sizeof(base), 1, f );
153 fread( &size, sizeof(size), 1, f );
154 if( strcmp( io_rgn[i]->id, tmp ) != 0 ||
155 base != io_rgn[i]->base ||
157 ERROR( "Bad MMIO region %d %s", i, tmp );
160 fread_gzip( io_rgn[i]->mem, size, 1, f );
165 int mem_save_block( const gchar *file, uint32_t start, uint32_t length )
168 int len = 4096, total = 0;
169 uint32_t addr = start;
170 FILE *f = fopen(file,"w");
175 while( total < length ) {
176 region = mem_get_region(addr);
177 len = 4096 - (addr & 0x0FFF);
178 if( len > (length-total) )
179 len = (length-total);
180 if( fwrite( region, len, 1, f ) != 1 ) {
181 ERROR( "Unexpected error writing blocks: %d (%s)", len, strerror(errno) );
189 INFO( "Saved %d of %d bytes to %08X", total, length, start );
193 int mem_load_block( const gchar *file, uint32_t start, uint32_t length )
196 int len = 4096, total = 0;
197 uint32_t addr = start;
199 FILE *f = fopen(file,"r");
202 WARN( "Unable to load file '%s': %s", file, strerror(errno) );
205 fstat( fileno(f), &st );
206 if( length == 0 || length == -1 || length > st.st_size )
209 while( total < length ) {
210 region = mem_get_region(addr);
211 len = 4096 - (addr & 0x0FFF);
212 if( len > (length-total) )
213 len = (length-total);
214 if( fread( region, len, 1, f ) != 1 ) {
215 ERROR( "Unexpected error reading: %d (%s)", len, strerror(errno) );
223 INFO( "Loaded %d of %d bytes to %08X", total, length, start );
227 struct mem_region *mem_map_region( void *mem, uint32_t base, uint32_t size,
228 const char *name, mem_region_fn_t fn, int flags, uint32_t repeat_offset,
229 uint32_t repeat_until )
232 mem_rgn[num_mem_rgns].base = base;
233 mem_rgn[num_mem_rgns].size = size;
234 mem_rgn[num_mem_rgns].flags = flags;
235 mem_rgn[num_mem_rgns].name = name;
236 mem_rgn[num_mem_rgns].mem = mem;
237 mem_rgn[num_mem_rgns].fn = fn;
241 for( i=0; i<size>>LXDREAM_PAGE_BITS; i++ )
242 page_map[(base>>LXDREAM_PAGE_BITS)+i] = mem + (i<<LXDREAM_PAGE_BITS);
243 base += repeat_offset;
244 } while( base <= repeat_until );
246 return &mem_rgn[num_mem_rgns-1];
249 void *mem_create_ram_region( uint32_t base, uint32_t size, const char *name, mem_region_fn_t fn )
251 return mem_create_repeating_ram_region( base, size, name, fn, size, base );
254 void *mem_create_repeating_ram_region( uint32_t base, uint32_t size, const char *name,
256 uint32_t repeat_offset, uint32_t repeat_until )
260 assert( (base&0xFFFFF000) == base ); /* must be page aligned */
261 assert( (size&0x00000FFF) == 0 );
262 assert( num_mem_rgns < MAX_MEM_REGIONS );
263 assert( page_map != NULL );
265 mem = mem_alloc_pages( size>>LXDREAM_PAGE_BITS );
267 mem_map_region( mem, base, size, name, fn, MEM_FLAG_RAM, repeat_offset, repeat_until );
272 gboolean mem_load_rom( const gchar *file, uint32_t base, uint32_t size, uint32_t crc,
273 const gchar *region_name, mem_region_fn_t fn )
279 mem = mem_get_region(base);
281 mem = mmap( NULL, size, PROT_WRITE|PROT_READ, MAP_ANON|MAP_PRIVATE, -1, 0 );
282 if( mem == MAP_FAILED ) {
283 ERROR( "Unable to allocate ROM memory: %s (%s)", file, strerror(errno) );
286 mem_map_region( mem, base, size, region_name, fn, MEM_FLAG_ROM, size, base );
288 mprotect( mem, size, PROT_READ|PROT_WRITE );
291 if( file != NULL && file[0] != '\0' ) {
292 status = mem_load_block( file, base, size );
293 mprotect( mem, size, PROT_READ );
296 /* CRC check only if we loaded something */
297 calc_crc = crc32(0L, (sh4ptr_t)mem, size);
298 if( calc_crc != crc ) {
299 WARN( "Bios CRC Mismatch in %s: %08X (expected %08X)",
300 file, calc_crc, crc);
308 sh4ptr_t mem_get_region_by_name( const char *name )
311 for( i=0; i<num_mem_rgns; i++ ) {
312 if( strcmp( mem_rgn[i].name, name ) == 0 )
313 return mem_rgn[i].mem;
318 void register_io_region( struct mmio_region *io )
323 io->mem = mem_alloc_pages(2);
324 io->save_mem = io->mem + LXDREAM_PAGE_SIZE;
325 io->index = (struct mmio_port **)malloc(1024*sizeof(struct mmio_port *));
327 memset( io->index, 0, 1024*sizeof(struct mmio_port *) );
328 for( i=0; io->ports[i].id != NULL; i++ ) {
329 io->ports[i].val = (uint32_t *)(io->mem + io->ports[i].offset);
330 *io->ports[i].val = io->ports[i].def_val;
331 io->index[io->ports[i].offset>>2] = &io->ports[i];
333 memcpy( io->save_mem, io->mem, LXDREAM_PAGE_SIZE );
334 if( (io->base & 0xFF000000) == 0xFF000000 ) {
335 /* P4 area (on-chip I/O channels */
336 P4_io[(io->base&0x1FFFFFFF)>>19] = io;
338 page_map[io->base>>12] = (sh4ptr_t)(uintptr_t)num_io_rgns;
340 io_rgn[num_io_rgns] = io;
344 void register_io_regions( struct mmio_region **io )
346 while( *io ) register_io_region( *io++ );
349 int mem_has_page( uint32_t addr )
351 sh4ptr_t page = page_map[ (addr & 0x1FFFFFFF) >> 12 ];
355 sh4ptr_t mem_get_page( uint32_t addr )
357 sh4ptr_t page = page_map[ (addr & 0x1FFFFFFF) >> 12 ];
361 sh4ptr_t mem_get_region( uint32_t addr )
363 sh4ptr_t page = page_map[ (addr & 0x1FFFFFFF) >> 12 ];
364 if( ((uintptr_t)page) < MAX_IO_REGIONS ) { /* IO Region */
367 return page+(addr&0xFFF);
371 void mem_write_long( sh4addr_t addr, uint32_t value )
373 sh4ptr_t ptr = mem_get_region(addr);
375 *((uint32_t *)ptr) = value;
378 struct mmio_region *mem_get_io_region( uint32_t addr )
380 if( addr > 0xFF000000 ) {
381 return P4_io[(addr&0x00FFFFFF)>>12];
383 sh4ptr_t page = page_map[(addr&0x1FFFFFFF)>>12];
384 if( ((uintptr_t)page) < MAX_IO_REGIONS ) {
385 return io_rgn[(uintptr_t)page];
391 struct mmio_region *mem_get_io_region_by_name( const gchar *name )
394 for( i=0; i<num_io_rgns; i++ ) {
395 if( strcasecmp(io_rgn[i]->id, name) == 0 ) {
402 void mem_set_trace( const gchar *tracelist, gboolean flag )
404 if( tracelist != NULL ) {
405 gchar ** tracev = g_strsplit_set( tracelist, ",:; \t\r\n", 0 );
407 for( i=0; tracev[i] != NULL; i++ ) {
408 // Special case "all" - trace everything
409 if( strcasecmp(tracev[i], "all") == 0 ) {
411 for( j=0; j<num_io_rgns; j++ ) {
412 io_rgn[j]->trace_flag = flag ? 1 : 0;
416 struct mmio_region *region = mem_get_io_region_by_name( tracev[i] );
417 if( region == NULL ) {
418 WARN( "Unknown IO region '%s'", tracev[i] );
420 region->trace_flag = flag ? 1 : 0;
423 g_strfreev( tracev );
.