z2ram.c 8.8 KB

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  1. /*
  2. ** z2ram - Amiga pseudo-driver to access 16bit-RAM in ZorroII space
  3. ** as a block device, to be used as a RAM disk or swap space
  4. **
  5. ** Copyright (C) 1994 by Ingo Wilken (Ingo.Wilken@informatik.uni-oldenburg.de)
  6. **
  7. ** ++Geert: support for zorro_unused_z2ram, better range checking
  8. ** ++roman: translate accesses via an array
  9. ** ++Milan: support for ChipRAM usage
  10. ** ++yambo: converted to 2.0 kernel
  11. ** ++yambo: modularized and support added for 3 minor devices including:
  12. ** MAJOR MINOR DESCRIPTION
  13. ** ----- ----- ----------------------------------------------
  14. ** 37 0 Use Zorro II and Chip ram
  15. ** 37 1 Use only Zorro II ram
  16. ** 37 2 Use only Chip ram
  17. ** 37 4-7 Use memory list entry 1-4 (first is 0)
  18. ** ++jskov: support for 1-4th memory list entry.
  19. **
  20. ** Permission to use, copy, modify, and distribute this software and its
  21. ** documentation for any purpose and without fee is hereby granted, provided
  22. ** that the above copyright notice appear in all copies and that both that
  23. ** copyright notice and this permission notice appear in supporting
  24. ** documentation. This software is provided "as is" without express or
  25. ** implied warranty.
  26. */
  27. #define DEVICE_NAME "Z2RAM"
  28. #include <linux/major.h>
  29. #include <linux/vmalloc.h>
  30. #include <linux/init.h>
  31. #include <linux/module.h>
  32. #include <linux/blkdev.h>
  33. #include <linux/bitops.h>
  34. #include <asm/setup.h>
  35. #include <asm/amigahw.h>
  36. #include <asm/pgtable.h>
  37. #include <linux/zorro.h>
  38. extern int m68k_realnum_memory;
  39. extern struct mem_info m68k_memory[NUM_MEMINFO];
  40. #define Z2MINOR_COMBINED (0)
  41. #define Z2MINOR_Z2ONLY (1)
  42. #define Z2MINOR_CHIPONLY (2)
  43. #define Z2MINOR_MEMLIST1 (4)
  44. #define Z2MINOR_MEMLIST2 (5)
  45. #define Z2MINOR_MEMLIST3 (6)
  46. #define Z2MINOR_MEMLIST4 (7)
  47. #define Z2MINOR_COUNT (8) /* Move this down when adding a new minor */
  48. #define Z2RAM_CHUNK1024 ( Z2RAM_CHUNKSIZE >> 10 )
  49. static u_long *z2ram_map = NULL;
  50. static u_long z2ram_size = 0;
  51. static int z2_count = 0;
  52. static int chip_count = 0;
  53. static int list_count = 0;
  54. static int current_device = -1;
  55. static DEFINE_SPINLOCK(z2ram_lock);
  56. static struct block_device_operations z2_fops;
  57. static struct gendisk *z2ram_gendisk;
  58. static void do_z2_request(struct request_queue *q)
  59. {
  60. struct request *req;
  61. while ((req = elv_next_request(q)) != NULL) {
  62. unsigned long start = req->sector << 9;
  63. unsigned long len = req->current_nr_sectors << 9;
  64. if (start + len > z2ram_size) {
  65. printk( KERN_ERR DEVICE_NAME ": bad access: block=%lu, count=%u\n",
  66. req->sector, req->current_nr_sectors);
  67. end_request(req, 0);
  68. continue;
  69. }
  70. while (len) {
  71. unsigned long addr = start & Z2RAM_CHUNKMASK;
  72. unsigned long size = Z2RAM_CHUNKSIZE - addr;
  73. if (len < size)
  74. size = len;
  75. addr += z2ram_map[ start >> Z2RAM_CHUNKSHIFT ];
  76. if (rq_data_dir(req) == READ)
  77. memcpy(req->buffer, (char *)addr, size);
  78. else
  79. memcpy((char *)addr, req->buffer, size);
  80. start += size;
  81. len -= size;
  82. }
  83. end_request(req, 1);
  84. }
  85. }
  86. static void
  87. get_z2ram( void )
  88. {
  89. int i;
  90. for ( i = 0; i < Z2RAM_SIZE / Z2RAM_CHUNKSIZE; i++ )
  91. {
  92. if ( test_bit( i, zorro_unused_z2ram ) )
  93. {
  94. z2_count++;
  95. z2ram_map[ z2ram_size++ ] =
  96. ZTWO_VADDR( Z2RAM_START ) + ( i << Z2RAM_CHUNKSHIFT );
  97. clear_bit( i, zorro_unused_z2ram );
  98. }
  99. }
  100. return;
  101. }
  102. static void
  103. get_chipram( void )
  104. {
  105. while ( amiga_chip_avail() > ( Z2RAM_CHUNKSIZE * 4 ) )
  106. {
  107. chip_count++;
  108. z2ram_map[ z2ram_size ] =
  109. (u_long)amiga_chip_alloc( Z2RAM_CHUNKSIZE, "z2ram" );
  110. if ( z2ram_map[ z2ram_size ] == 0 )
  111. {
  112. break;
  113. }
  114. z2ram_size++;
  115. }
  116. return;
  117. }
  118. static int
  119. z2_open( struct inode *inode, struct file *filp )
  120. {
  121. int device;
  122. int max_z2_map = ( Z2RAM_SIZE / Z2RAM_CHUNKSIZE ) *
  123. sizeof( z2ram_map[0] );
  124. int max_chip_map = ( amiga_chip_size / Z2RAM_CHUNKSIZE ) *
  125. sizeof( z2ram_map[0] );
  126. int rc = -ENOMEM;
  127. device = iminor(inode);
  128. if ( current_device != -1 && current_device != device )
  129. {
  130. rc = -EBUSY;
  131. goto err_out;
  132. }
  133. if ( current_device == -1 )
  134. {
  135. z2_count = 0;
  136. chip_count = 0;
  137. list_count = 0;
  138. z2ram_size = 0;
  139. /* Use a specific list entry. */
  140. if (device >= Z2MINOR_MEMLIST1 && device <= Z2MINOR_MEMLIST4) {
  141. int index = device - Z2MINOR_MEMLIST1 + 1;
  142. unsigned long size, paddr, vaddr;
  143. if (index >= m68k_realnum_memory) {
  144. printk( KERN_ERR DEVICE_NAME
  145. ": no such entry in z2ram_map\n" );
  146. goto err_out;
  147. }
  148. paddr = m68k_memory[index].addr;
  149. size = m68k_memory[index].size & ~(Z2RAM_CHUNKSIZE-1);
  150. #ifdef __powerpc__
  151. /* FIXME: ioremap doesn't build correct memory tables. */
  152. {
  153. vfree(vmalloc (size));
  154. }
  155. vaddr = (unsigned long) __ioremap (paddr, size,
  156. _PAGE_WRITETHRU);
  157. #else
  158. vaddr = (unsigned long)z_remap_nocache_nonser(paddr, size);
  159. #endif
  160. z2ram_map =
  161. kmalloc((size/Z2RAM_CHUNKSIZE)*sizeof(z2ram_map[0]),
  162. GFP_KERNEL);
  163. if ( z2ram_map == NULL )
  164. {
  165. printk( KERN_ERR DEVICE_NAME
  166. ": cannot get mem for z2ram_map\n" );
  167. goto err_out;
  168. }
  169. while (size) {
  170. z2ram_map[ z2ram_size++ ] = vaddr;
  171. size -= Z2RAM_CHUNKSIZE;
  172. vaddr += Z2RAM_CHUNKSIZE;
  173. list_count++;
  174. }
  175. if ( z2ram_size != 0 )
  176. printk( KERN_INFO DEVICE_NAME
  177. ": using %iK List Entry %d Memory\n",
  178. list_count * Z2RAM_CHUNK1024, index );
  179. } else
  180. switch ( device )
  181. {
  182. case Z2MINOR_COMBINED:
  183. z2ram_map = kmalloc( max_z2_map + max_chip_map, GFP_KERNEL );
  184. if ( z2ram_map == NULL )
  185. {
  186. printk( KERN_ERR DEVICE_NAME
  187. ": cannot get mem for z2ram_map\n" );
  188. goto err_out;
  189. }
  190. get_z2ram();
  191. get_chipram();
  192. if ( z2ram_size != 0 )
  193. printk( KERN_INFO DEVICE_NAME
  194. ": using %iK Zorro II RAM and %iK Chip RAM (Total %dK)\n",
  195. z2_count * Z2RAM_CHUNK1024,
  196. chip_count * Z2RAM_CHUNK1024,
  197. ( z2_count + chip_count ) * Z2RAM_CHUNK1024 );
  198. break;
  199. case Z2MINOR_Z2ONLY:
  200. z2ram_map = kmalloc( max_z2_map, GFP_KERNEL );
  201. if ( z2ram_map == NULL )
  202. {
  203. printk( KERN_ERR DEVICE_NAME
  204. ": cannot get mem for z2ram_map\n" );
  205. goto err_out;
  206. }
  207. get_z2ram();
  208. if ( z2ram_size != 0 )
  209. printk( KERN_INFO DEVICE_NAME
  210. ": using %iK of Zorro II RAM\n",
  211. z2_count * Z2RAM_CHUNK1024 );
  212. break;
  213. case Z2MINOR_CHIPONLY:
  214. z2ram_map = kmalloc( max_chip_map, GFP_KERNEL );
  215. if ( z2ram_map == NULL )
  216. {
  217. printk( KERN_ERR DEVICE_NAME
  218. ": cannot get mem for z2ram_map\n" );
  219. goto err_out;
  220. }
  221. get_chipram();
  222. if ( z2ram_size != 0 )
  223. printk( KERN_INFO DEVICE_NAME
  224. ": using %iK Chip RAM\n",
  225. chip_count * Z2RAM_CHUNK1024 );
  226. break;
  227. default:
  228. rc = -ENODEV;
  229. goto err_out;
  230. break;
  231. }
  232. if ( z2ram_size == 0 )
  233. {
  234. printk( KERN_NOTICE DEVICE_NAME
  235. ": no unused ZII/Chip RAM found\n" );
  236. goto err_out_kfree;
  237. }
  238. current_device = device;
  239. z2ram_size <<= Z2RAM_CHUNKSHIFT;
  240. set_capacity(z2ram_gendisk, z2ram_size >> 9);
  241. }
  242. return 0;
  243. err_out_kfree:
  244. kfree(z2ram_map);
  245. err_out:
  246. return rc;
  247. }
  248. static int
  249. z2_release( struct inode *inode, struct file *filp )
  250. {
  251. if ( current_device == -1 )
  252. return 0;
  253. /*
  254. * FIXME: unmap memory
  255. */
  256. return 0;
  257. }
  258. static struct block_device_operations z2_fops =
  259. {
  260. .owner = THIS_MODULE,
  261. .open = z2_open,
  262. .release = z2_release,
  263. };
  264. static struct kobject *z2_find(dev_t dev, int *part, void *data)
  265. {
  266. *part = 0;
  267. return get_disk(z2ram_gendisk);
  268. }
  269. static struct request_queue *z2_queue;
  270. static int __init
  271. z2_init(void)
  272. {
  273. int ret;
  274. if (!MACH_IS_AMIGA)
  275. return -ENODEV;
  276. ret = -EBUSY;
  277. if (register_blkdev(Z2RAM_MAJOR, DEVICE_NAME))
  278. goto err;
  279. ret = -ENOMEM;
  280. z2ram_gendisk = alloc_disk(1);
  281. if (!z2ram_gendisk)
  282. goto out_disk;
  283. z2_queue = blk_init_queue(do_z2_request, &z2ram_lock);
  284. if (!z2_queue)
  285. goto out_queue;
  286. z2ram_gendisk->major = Z2RAM_MAJOR;
  287. z2ram_gendisk->first_minor = 0;
  288. z2ram_gendisk->fops = &z2_fops;
  289. sprintf(z2ram_gendisk->disk_name, "z2ram");
  290. z2ram_gendisk->queue = z2_queue;
  291. add_disk(z2ram_gendisk);
  292. blk_register_region(MKDEV(Z2RAM_MAJOR, 0), Z2MINOR_COUNT, THIS_MODULE,
  293. z2_find, NULL, NULL);
  294. return 0;
  295. out_queue:
  296. put_disk(z2ram_gendisk);
  297. out_disk:
  298. unregister_blkdev(Z2RAM_MAJOR, DEVICE_NAME);
  299. err:
  300. return ret;
  301. }
  302. static void __exit z2_exit(void)
  303. {
  304. int i, j;
  305. blk_unregister_region(MKDEV(Z2RAM_MAJOR, 0), 256);
  306. unregister_blkdev(Z2RAM_MAJOR, DEVICE_NAME);
  307. del_gendisk(z2ram_gendisk);
  308. put_disk(z2ram_gendisk);
  309. blk_cleanup_queue(z2_queue);
  310. if ( current_device != -1 )
  311. {
  312. i = 0;
  313. for ( j = 0 ; j < z2_count; j++ )
  314. {
  315. set_bit( i++, zorro_unused_z2ram );
  316. }
  317. for ( j = 0 ; j < chip_count; j++ )
  318. {
  319. if ( z2ram_map[ i ] )
  320. {
  321. amiga_chip_free( (void *) z2ram_map[ i++ ] );
  322. }
  323. }
  324. if ( z2ram_map != NULL )
  325. {
  326. kfree( z2ram_map );
  327. }
  328. }
  329. return;
  330. }
  331. module_init(z2_init);
  332. module_exit(z2_exit);
  333. MODULE_LICENSE("GPL");