slram.c 9.0 KB

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  1. /*======================================================================
  2. This driver provides a method to access memory not used by the kernel
  3. itself (i.e. if the kernel commandline mem=xxx is used). To actually
  4. use slram at least mtdblock or mtdchar is required (for block or
  5. character device access).
  6. Usage:
  7. if compiled as loadable module:
  8. modprobe slram map=<name>,<start>,<end/offset>
  9. if statically linked into the kernel use the following kernel cmd.line
  10. slram=<name>,<start>,<end/offset>
  11. <name>: name of the device that will be listed in /proc/mtd
  12. <start>: start of the memory region, decimal or hex (0xabcdef)
  13. <end/offset>: end of the memory region. It's possible to use +0x1234
  14. to specify the offset instead of the absolute address
  15. NOTE:
  16. With slram it's only possible to map a contigous memory region. Therfore
  17. if there's a device mapped somewhere in the region specified slram will
  18. fail to load (see kernel log if modprobe fails).
  19. -
  20. Jochen Schaeuble <psionic@psionic.de>
  21. ======================================================================*/
  22. #include <linux/module.h>
  23. #include <asm/uaccess.h>
  24. #include <linux/types.h>
  25. #include <linux/kernel.h>
  26. #include <linux/ptrace.h>
  27. #include <linux/slab.h>
  28. #include <linux/string.h>
  29. #include <linux/timer.h>
  30. #include <linux/major.h>
  31. #include <linux/fs.h>
  32. #include <linux/ioctl.h>
  33. #include <linux/init.h>
  34. #include <asm/io.h>
  35. #include <asm/system.h>
  36. #include <linux/mtd/mtd.h>
  37. #define SLRAM_MAX_DEVICES_PARAMS 6 /* 3 parameters / device */
  38. #define SLRAM_BLK_SZ 0x4000
  39. #define T(fmt, args...) printk(KERN_DEBUG fmt, ## args)
  40. #define E(fmt, args...) printk(KERN_NOTICE fmt, ## args)
  41. typedef struct slram_priv {
  42. u_char *start;
  43. u_char *end;
  44. } slram_priv_t;
  45. typedef struct slram_mtd_list {
  46. struct mtd_info *mtdinfo;
  47. struct slram_mtd_list *next;
  48. } slram_mtd_list_t;
  49. #ifdef MODULE
  50. static char *map[SLRAM_MAX_DEVICES_PARAMS];
  51. module_param_array(map, charp, NULL, 0);
  52. MODULE_PARM_DESC(map, "List of memory regions to map. \"map=<name>, <start>, <length / end>\"");
  53. #else
  54. static char *map;
  55. #endif
  56. static slram_mtd_list_t *slram_mtdlist = NULL;
  57. static int slram_erase(struct mtd_info *, struct erase_info *);
  58. static int slram_point(struct mtd_info *, loff_t, size_t, size_t *, void **,
  59. resource_size_t *);
  60. static void slram_unpoint(struct mtd_info *, loff_t, size_t);
  61. static int slram_read(struct mtd_info *, loff_t, size_t, size_t *, u_char *);
  62. static int slram_write(struct mtd_info *, loff_t, size_t, size_t *, const u_char *);
  63. static int slram_erase(struct mtd_info *mtd, struct erase_info *instr)
  64. {
  65. slram_priv_t *priv = mtd->priv;
  66. if (instr->addr + instr->len > mtd->size) {
  67. return(-EINVAL);
  68. }
  69. memset(priv->start + instr->addr, 0xff, instr->len);
  70. /* This'll catch a few races. Free the thing before returning :)
  71. * I don't feel at all ashamed. This kind of thing is possible anyway
  72. * with flash, but unlikely.
  73. */
  74. instr->state = MTD_ERASE_DONE;
  75. mtd_erase_callback(instr);
  76. return(0);
  77. }
  78. static int slram_point(struct mtd_info *mtd, loff_t from, size_t len,
  79. size_t *retlen, void **virt, resource_size_t *phys)
  80. {
  81. slram_priv_t *priv = mtd->priv;
  82. /* can we return a physical address with this driver? */
  83. if (phys)
  84. return -EINVAL;
  85. if (from + len > mtd->size)
  86. return -EINVAL;
  87. *virt = priv->start + from;
  88. *retlen = len;
  89. return(0);
  90. }
  91. static void slram_unpoint(struct mtd_info *mtd, loff_t from, size_t len)
  92. {
  93. }
  94. static int slram_read(struct mtd_info *mtd, loff_t from, size_t len,
  95. size_t *retlen, u_char *buf)
  96. {
  97. slram_priv_t *priv = mtd->priv;
  98. if (from > mtd->size)
  99. return -EINVAL;
  100. if (from + len > mtd->size)
  101. len = mtd->size - from;
  102. memcpy(buf, priv->start + from, len);
  103. *retlen = len;
  104. return(0);
  105. }
  106. static int slram_write(struct mtd_info *mtd, loff_t to, size_t len,
  107. size_t *retlen, const u_char *buf)
  108. {
  109. slram_priv_t *priv = mtd->priv;
  110. if (to + len > mtd->size)
  111. return -EINVAL;
  112. memcpy(priv->start + to, buf, len);
  113. *retlen = len;
  114. return(0);
  115. }
  116. /*====================================================================*/
  117. static int register_device(char *name, unsigned long start, unsigned long length)
  118. {
  119. slram_mtd_list_t **curmtd;
  120. curmtd = &slram_mtdlist;
  121. while (*curmtd) {
  122. curmtd = &(*curmtd)->next;
  123. }
  124. *curmtd = kmalloc(sizeof(slram_mtd_list_t), GFP_KERNEL);
  125. if (!(*curmtd)) {
  126. E("slram: Cannot allocate new MTD device.\n");
  127. return(-ENOMEM);
  128. }
  129. (*curmtd)->mtdinfo = kzalloc(sizeof(struct mtd_info), GFP_KERNEL);
  130. (*curmtd)->next = NULL;
  131. if ((*curmtd)->mtdinfo) {
  132. (*curmtd)->mtdinfo->priv =
  133. kzalloc(sizeof(slram_priv_t), GFP_KERNEL);
  134. if (!(*curmtd)->mtdinfo->priv) {
  135. kfree((*curmtd)->mtdinfo);
  136. (*curmtd)->mtdinfo = NULL;
  137. }
  138. }
  139. if (!(*curmtd)->mtdinfo) {
  140. E("slram: Cannot allocate new MTD device.\n");
  141. return(-ENOMEM);
  142. }
  143. if (!(((slram_priv_t *)(*curmtd)->mtdinfo->priv)->start =
  144. ioremap(start, length))) {
  145. E("slram: ioremap failed\n");
  146. return -EIO;
  147. }
  148. ((slram_priv_t *)(*curmtd)->mtdinfo->priv)->end =
  149. ((slram_priv_t *)(*curmtd)->mtdinfo->priv)->start + length;
  150. (*curmtd)->mtdinfo->name = name;
  151. (*curmtd)->mtdinfo->size = length;
  152. (*curmtd)->mtdinfo->flags = MTD_CAP_RAM;
  153. (*curmtd)->mtdinfo->erase = slram_erase;
  154. (*curmtd)->mtdinfo->point = slram_point;
  155. (*curmtd)->mtdinfo->unpoint = slram_unpoint;
  156. (*curmtd)->mtdinfo->read = slram_read;
  157. (*curmtd)->mtdinfo->write = slram_write;
  158. (*curmtd)->mtdinfo->owner = THIS_MODULE;
  159. (*curmtd)->mtdinfo->type = MTD_RAM;
  160. (*curmtd)->mtdinfo->erasesize = SLRAM_BLK_SZ;
  161. (*curmtd)->mtdinfo->writesize = 1;
  162. if (add_mtd_device((*curmtd)->mtdinfo)) {
  163. E("slram: Failed to register new device\n");
  164. iounmap(((slram_priv_t *)(*curmtd)->mtdinfo->priv)->start);
  165. kfree((*curmtd)->mtdinfo->priv);
  166. kfree((*curmtd)->mtdinfo);
  167. return(-EAGAIN);
  168. }
  169. T("slram: Registered device %s from %luKiB to %luKiB\n", name,
  170. (start / 1024), ((start + length) / 1024));
  171. T("slram: Mapped from 0x%p to 0x%p\n",
  172. ((slram_priv_t *)(*curmtd)->mtdinfo->priv)->start,
  173. ((slram_priv_t *)(*curmtd)->mtdinfo->priv)->end);
  174. return(0);
  175. }
  176. static void unregister_devices(void)
  177. {
  178. slram_mtd_list_t *nextitem;
  179. while (slram_mtdlist) {
  180. nextitem = slram_mtdlist->next;
  181. del_mtd_device(slram_mtdlist->mtdinfo);
  182. iounmap(((slram_priv_t *)slram_mtdlist->mtdinfo->priv)->start);
  183. kfree(slram_mtdlist->mtdinfo->priv);
  184. kfree(slram_mtdlist->mtdinfo);
  185. kfree(slram_mtdlist);
  186. slram_mtdlist = nextitem;
  187. }
  188. }
  189. static unsigned long handle_unit(unsigned long value, char *unit)
  190. {
  191. if ((*unit == 'M') || (*unit == 'm')) {
  192. return(value * 1024 * 1024);
  193. } else if ((*unit == 'K') || (*unit == 'k')) {
  194. return(value * 1024);
  195. }
  196. return(value);
  197. }
  198. static int parse_cmdline(char *devname, char *szstart, char *szlength)
  199. {
  200. char *buffer;
  201. unsigned long devstart;
  202. unsigned long devlength;
  203. if ((!devname) || (!szstart) || (!szlength)) {
  204. unregister_devices();
  205. return(-EINVAL);
  206. }
  207. devstart = simple_strtoul(szstart, &buffer, 0);
  208. devstart = handle_unit(devstart, buffer);
  209. if (*(szlength) != '+') {
  210. devlength = simple_strtoul(szlength, &buffer, 0);
  211. devlength = handle_unit(devlength, buffer) - devstart;
  212. } else {
  213. devlength = simple_strtoul(szlength + 1, &buffer, 0);
  214. devlength = handle_unit(devlength, buffer);
  215. }
  216. T("slram: devname=%s, devstart=0x%lx, devlength=0x%lx\n",
  217. devname, devstart, devlength);
  218. if ((devstart < 0) || (devlength < 0) || (devlength % SLRAM_BLK_SZ != 0)) {
  219. E("slram: Illegal start / length parameter.\n");
  220. return(-EINVAL);
  221. }
  222. if ((devstart = register_device(devname, devstart, devlength))){
  223. unregister_devices();
  224. return((int)devstart);
  225. }
  226. return(0);
  227. }
  228. #ifndef MODULE
  229. static int __init mtd_slram_setup(char *str)
  230. {
  231. map = str;
  232. return(1);
  233. }
  234. __setup("slram=", mtd_slram_setup);
  235. #endif
  236. static int init_slram(void)
  237. {
  238. char *devname;
  239. int i;
  240. #ifndef MODULE
  241. char *devstart;
  242. char *devlength;
  243. i = 0;
  244. if (!map) {
  245. E("slram: not enough parameters.\n");
  246. return(-EINVAL);
  247. }
  248. while (map) {
  249. devname = devstart = devlength = NULL;
  250. if (!(devname = strsep(&map, ","))) {
  251. E("slram: No devicename specified.\n");
  252. break;
  253. }
  254. T("slram: devname = %s\n", devname);
  255. if ((!map) || (!(devstart = strsep(&map, ",")))) {
  256. E("slram: No devicestart specified.\n");
  257. }
  258. T("slram: devstart = %s\n", devstart);
  259. if ((!map) || (!(devlength = strsep(&map, ",")))) {
  260. E("slram: No devicelength / -end specified.\n");
  261. }
  262. T("slram: devlength = %s\n", devlength);
  263. if (parse_cmdline(devname, devstart, devlength) != 0) {
  264. return(-EINVAL);
  265. }
  266. }
  267. #else
  268. int count;
  269. for (count = 0; (map[count]) && (count < SLRAM_MAX_DEVICES_PARAMS);
  270. count++) {
  271. }
  272. if ((count % 3 != 0) || (count == 0)) {
  273. E("slram: not enough parameters.\n");
  274. return(-EINVAL);
  275. }
  276. for (i = 0; i < (count / 3); i++) {
  277. devname = map[i * 3];
  278. if (parse_cmdline(devname, map[i * 3 + 1], map[i * 3 + 2])!=0) {
  279. return(-EINVAL);
  280. }
  281. }
  282. #endif /* !MODULE */
  283. return(0);
  284. }
  285. static void __exit cleanup_slram(void)
  286. {
  287. unregister_devices();
  288. }
  289. module_init(init_slram);
  290. module_exit(cleanup_slram);
  291. MODULE_LICENSE("GPL");
  292. MODULE_AUTHOR("Jochen Schaeuble <psionic@psionic.de>");
  293. MODULE_DESCRIPTION("MTD driver for uncached system RAM");