nvram.c 17 KB

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  1. /*
  2. * CMOS/NV-RAM driver for Linux
  3. *
  4. * Copyright (C) 1997 Roman Hodek <Roman.Hodek@informatik.uni-erlangen.de>
  5. * idea by and with help from Richard Jelinek <rj@suse.de>
  6. * Portions copyright (c) 2001,2002 Sun Microsystems (thockin@sun.com)
  7. *
  8. * This driver allows you to access the contents of the non-volatile memory in
  9. * the mc146818rtc.h real-time clock. This chip is built into all PCs and into
  10. * many Atari machines. In the former it's called "CMOS-RAM", in the latter
  11. * "NVRAM" (NV stands for non-volatile).
  12. *
  13. * The data are supplied as a (seekable) character device, /dev/nvram. The
  14. * size of this file is dependent on the controller. The usual size is 114,
  15. * the number of freely available bytes in the memory (i.e., not used by the
  16. * RTC itself).
  17. *
  18. * Checksums over the NVRAM contents are managed by this driver. In case of a
  19. * bad checksum, reads and writes return -EIO. The checksum can be initialized
  20. * to a sane state either by ioctl(NVRAM_INIT) (clear whole NVRAM) or
  21. * ioctl(NVRAM_SETCKS) (doesn't change contents, just makes checksum valid
  22. * again; use with care!)
  23. *
  24. * This file also provides some functions for other parts of the kernel that
  25. * want to access the NVRAM: nvram_{read,write,check_checksum,set_checksum}.
  26. * Obviously this can be used only if this driver is always configured into
  27. * the kernel and is not a module. Since the functions are used by some Atari
  28. * drivers, this is the case on the Atari.
  29. *
  30. *
  31. * 1.1 Cesar Barros: SMP locking fixes
  32. * added changelog
  33. * 1.2 Erik Gilling: Cobalt Networks support
  34. * Tim Hockin: general cleanup, Cobalt support
  35. */
  36. #define NVRAM_VERSION "1.2"
  37. #include <linux/module.h>
  38. #include <linux/smp_lock.h>
  39. #include <linux/nvram.h>
  40. #define PC 1
  41. #define ATARI 2
  42. /* select machine configuration */
  43. #if defined(CONFIG_ATARI)
  44. # define MACH ATARI
  45. #elif defined(__i386__) || defined(__x86_64__) || defined(__arm__) /* and ?? */
  46. # define MACH PC
  47. #else
  48. # error Cannot build nvram driver for this machine configuration.
  49. #endif
  50. #if MACH == PC
  51. /* RTC in a PC */
  52. #define CHECK_DRIVER_INIT() 1
  53. /* On PCs, the checksum is built only over bytes 2..31 */
  54. #define PC_CKS_RANGE_START 2
  55. #define PC_CKS_RANGE_END 31
  56. #define PC_CKS_LOC 32
  57. #define NVRAM_BYTES (128-NVRAM_FIRST_BYTE)
  58. #define mach_check_checksum pc_check_checksum
  59. #define mach_set_checksum pc_set_checksum
  60. #define mach_proc_infos pc_proc_infos
  61. #endif
  62. #if MACH == ATARI
  63. /* Special parameters for RTC in Atari machines */
  64. #include <asm/atarihw.h>
  65. #include <asm/atariints.h>
  66. #define RTC_PORT(x) (TT_RTC_BAS + 2*(x))
  67. #define CHECK_DRIVER_INIT() (MACH_IS_ATARI && ATARIHW_PRESENT(TT_CLK))
  68. #define NVRAM_BYTES 50
  69. /* On Ataris, the checksum is over all bytes except the checksum bytes
  70. * themselves; these are at the very end */
  71. #define ATARI_CKS_RANGE_START 0
  72. #define ATARI_CKS_RANGE_END 47
  73. #define ATARI_CKS_LOC 48
  74. #define mach_check_checksum atari_check_checksum
  75. #define mach_set_checksum atari_set_checksum
  76. #define mach_proc_infos atari_proc_infos
  77. #endif
  78. /* Note that *all* calls to CMOS_READ and CMOS_WRITE must be done with
  79. * rtc_lock held. Due to the index-port/data-port design of the RTC, we
  80. * don't want two different things trying to get to it at once. (e.g. the
  81. * periodic 11 min sync from time.c vs. this driver.)
  82. */
  83. #include <linux/types.h>
  84. #include <linux/errno.h>
  85. #include <linux/miscdevice.h>
  86. #include <linux/slab.h>
  87. #include <linux/ioport.h>
  88. #include <linux/fcntl.h>
  89. #include <linux/mc146818rtc.h>
  90. #include <linux/init.h>
  91. #include <linux/proc_fs.h>
  92. #include <linux/spinlock.h>
  93. #include <linux/io.h>
  94. #include <linux/uaccess.h>
  95. #include <asm/system.h>
  96. static DEFINE_SPINLOCK(nvram_state_lock);
  97. static int nvram_open_cnt; /* #times opened */
  98. static int nvram_open_mode; /* special open modes */
  99. #define NVRAM_WRITE 1 /* opened for writing (exclusive) */
  100. #define NVRAM_EXCL 2 /* opened with O_EXCL */
  101. static int mach_check_checksum(void);
  102. static void mach_set_checksum(void);
  103. #ifdef CONFIG_PROC_FS
  104. static int mach_proc_infos(unsigned char *contents, char *buffer, int *len,
  105. off_t *begin, off_t offset, int size);
  106. #endif
  107. /*
  108. * These functions are provided to be called internally or by other parts of
  109. * the kernel. It's up to the caller to ensure correct checksum before reading
  110. * or after writing (needs to be done only once).
  111. *
  112. * It is worth noting that these functions all access bytes of general
  113. * purpose memory in the NVRAM - that is to say, they all add the
  114. * NVRAM_FIRST_BYTE offset. Pass them offsets into NVRAM as if you did not
  115. * know about the RTC cruft.
  116. */
  117. unsigned char __nvram_read_byte(int i)
  118. {
  119. return CMOS_READ(NVRAM_FIRST_BYTE + i);
  120. }
  121. EXPORT_SYMBOL(__nvram_read_byte);
  122. unsigned char nvram_read_byte(int i)
  123. {
  124. unsigned long flags;
  125. unsigned char c;
  126. spin_lock_irqsave(&rtc_lock, flags);
  127. c = __nvram_read_byte(i);
  128. spin_unlock_irqrestore(&rtc_lock, flags);
  129. return c;
  130. }
  131. EXPORT_SYMBOL(nvram_read_byte);
  132. /* This races nicely with trying to read with checksum checking (nvram_read) */
  133. void __nvram_write_byte(unsigned char c, int i)
  134. {
  135. CMOS_WRITE(c, NVRAM_FIRST_BYTE + i);
  136. }
  137. EXPORT_SYMBOL(__nvram_write_byte);
  138. void nvram_write_byte(unsigned char c, int i)
  139. {
  140. unsigned long flags;
  141. spin_lock_irqsave(&rtc_lock, flags);
  142. __nvram_write_byte(c, i);
  143. spin_unlock_irqrestore(&rtc_lock, flags);
  144. }
  145. EXPORT_SYMBOL(nvram_write_byte);
  146. int __nvram_check_checksum(void)
  147. {
  148. return mach_check_checksum();
  149. }
  150. EXPORT_SYMBOL(__nvram_check_checksum);
  151. int nvram_check_checksum(void)
  152. {
  153. unsigned long flags;
  154. int rv;
  155. spin_lock_irqsave(&rtc_lock, flags);
  156. rv = __nvram_check_checksum();
  157. spin_unlock_irqrestore(&rtc_lock, flags);
  158. return rv;
  159. }
  160. EXPORT_SYMBOL(nvram_check_checksum);
  161. static void __nvram_set_checksum(void)
  162. {
  163. mach_set_checksum();
  164. }
  165. #if 0
  166. void nvram_set_checksum(void)
  167. {
  168. unsigned long flags;
  169. spin_lock_irqsave(&rtc_lock, flags);
  170. __nvram_set_checksum();
  171. spin_unlock_irqrestore(&rtc_lock, flags);
  172. }
  173. #endif /* 0 */
  174. /*
  175. * The are the file operation function for user access to /dev/nvram
  176. */
  177. static loff_t nvram_llseek(struct file *file, loff_t offset, int origin)
  178. {
  179. lock_kernel();
  180. switch (origin) {
  181. case 0:
  182. /* nothing to do */
  183. break;
  184. case 1:
  185. offset += file->f_pos;
  186. break;
  187. case 2:
  188. offset += NVRAM_BYTES;
  189. break;
  190. }
  191. unlock_kernel();
  192. return (offset >= 0) ? (file->f_pos = offset) : -EINVAL;
  193. }
  194. static ssize_t nvram_read(struct file *file, char __user *buf,
  195. size_t count, loff_t *ppos)
  196. {
  197. unsigned char contents[NVRAM_BYTES];
  198. unsigned i = *ppos;
  199. unsigned char *tmp;
  200. spin_lock_irq(&rtc_lock);
  201. if (!__nvram_check_checksum())
  202. goto checksum_err;
  203. for (tmp = contents; count-- > 0 && i < NVRAM_BYTES; ++i, ++tmp)
  204. *tmp = __nvram_read_byte(i);
  205. spin_unlock_irq(&rtc_lock);
  206. if (copy_to_user(buf, contents, tmp - contents))
  207. return -EFAULT;
  208. *ppos = i;
  209. return tmp - contents;
  210. checksum_err:
  211. spin_unlock_irq(&rtc_lock);
  212. return -EIO;
  213. }
  214. static ssize_t nvram_write(struct file *file, const char __user *buf,
  215. size_t count, loff_t *ppos)
  216. {
  217. unsigned char contents[NVRAM_BYTES];
  218. unsigned i = *ppos;
  219. unsigned char *tmp;
  220. int len;
  221. len = (NVRAM_BYTES - i) < count ? (NVRAM_BYTES - i) : count;
  222. if (copy_from_user(contents, buf, len))
  223. return -EFAULT;
  224. spin_lock_irq(&rtc_lock);
  225. if (!__nvram_check_checksum())
  226. goto checksum_err;
  227. for (tmp = contents; count-- > 0 && i < NVRAM_BYTES; ++i, ++tmp)
  228. __nvram_write_byte(*tmp, i);
  229. __nvram_set_checksum();
  230. spin_unlock_irq(&rtc_lock);
  231. *ppos = i;
  232. return tmp - contents;
  233. checksum_err:
  234. spin_unlock_irq(&rtc_lock);
  235. return -EIO;
  236. }
  237. static int nvram_ioctl(struct inode *inode, struct file *file,
  238. unsigned int cmd, unsigned long arg)
  239. {
  240. int i;
  241. switch (cmd) {
  242. case NVRAM_INIT:
  243. /* initialize NVRAM contents and checksum */
  244. if (!capable(CAP_SYS_ADMIN))
  245. return -EACCES;
  246. spin_lock_irq(&rtc_lock);
  247. for (i = 0; i < NVRAM_BYTES; ++i)
  248. __nvram_write_byte(0, i);
  249. __nvram_set_checksum();
  250. spin_unlock_irq(&rtc_lock);
  251. return 0;
  252. case NVRAM_SETCKS:
  253. /* just set checksum, contents unchanged (maybe useful after
  254. * checksum garbaged somehow...) */
  255. if (!capable(CAP_SYS_ADMIN))
  256. return -EACCES;
  257. spin_lock_irq(&rtc_lock);
  258. __nvram_set_checksum();
  259. spin_unlock_irq(&rtc_lock);
  260. return 0;
  261. default:
  262. return -ENOTTY;
  263. }
  264. }
  265. static int nvram_open(struct inode *inode, struct file *file)
  266. {
  267. lock_kernel();
  268. spin_lock(&nvram_state_lock);
  269. if ((nvram_open_cnt && (file->f_flags & O_EXCL)) ||
  270. (nvram_open_mode & NVRAM_EXCL) ||
  271. ((file->f_mode & FMODE_WRITE) && (nvram_open_mode & NVRAM_WRITE))) {
  272. spin_unlock(&nvram_state_lock);
  273. unlock_kernel();
  274. return -EBUSY;
  275. }
  276. if (file->f_flags & O_EXCL)
  277. nvram_open_mode |= NVRAM_EXCL;
  278. if (file->f_mode & FMODE_WRITE)
  279. nvram_open_mode |= NVRAM_WRITE;
  280. nvram_open_cnt++;
  281. spin_unlock(&nvram_state_lock);
  282. unlock_kernel();
  283. return 0;
  284. }
  285. static int nvram_release(struct inode *inode, struct file *file)
  286. {
  287. spin_lock(&nvram_state_lock);
  288. nvram_open_cnt--;
  289. /* if only one instance is open, clear the EXCL bit */
  290. if (nvram_open_mode & NVRAM_EXCL)
  291. nvram_open_mode &= ~NVRAM_EXCL;
  292. if (file->f_mode & FMODE_WRITE)
  293. nvram_open_mode &= ~NVRAM_WRITE;
  294. spin_unlock(&nvram_state_lock);
  295. return 0;
  296. }
  297. #ifndef CONFIG_PROC_FS
  298. static int nvram_read_proc(char *buffer, char **start, off_t offset,
  299. int size, int *eof, void *data)
  300. {
  301. return 0;
  302. }
  303. #else
  304. static int nvram_read_proc(char *buffer, char **start, off_t offset,
  305. int size, int *eof, void *data)
  306. {
  307. unsigned char contents[NVRAM_BYTES];
  308. int i, len = 0;
  309. off_t begin = 0;
  310. spin_lock_irq(&rtc_lock);
  311. for (i = 0; i < NVRAM_BYTES; ++i)
  312. contents[i] = __nvram_read_byte(i);
  313. spin_unlock_irq(&rtc_lock);
  314. *eof = mach_proc_infos(contents, buffer, &len, &begin, offset, size);
  315. if (offset >= begin + len)
  316. return 0;
  317. *start = buffer + (offset - begin);
  318. return (size < begin + len - offset) ? size : begin + len - offset;
  319. }
  320. /* This macro frees the machine specific function from bounds checking and
  321. * this like that... */
  322. #define PRINT_PROC(fmt,args...) \
  323. do { \
  324. *len += sprintf(buffer + *len, fmt, ##args); \
  325. if (*begin + *len > offset + size) \
  326. return 0; \
  327. if (*begin + *len < offset) { \
  328. *begin += *len; \
  329. *len = 0; \
  330. } \
  331. } while (0)
  332. #endif /* CONFIG_PROC_FS */
  333. static const struct file_operations nvram_fops = {
  334. .owner = THIS_MODULE,
  335. .llseek = nvram_llseek,
  336. .read = nvram_read,
  337. .write = nvram_write,
  338. .ioctl = nvram_ioctl,
  339. .open = nvram_open,
  340. .release = nvram_release,
  341. };
  342. static struct miscdevice nvram_dev = {
  343. NVRAM_MINOR,
  344. "nvram",
  345. &nvram_fops
  346. };
  347. static int __init nvram_init(void)
  348. {
  349. int ret;
  350. /* First test whether the driver should init at all */
  351. if (!CHECK_DRIVER_INIT())
  352. return -ENODEV;
  353. ret = misc_register(&nvram_dev);
  354. if (ret) {
  355. printk(KERN_ERR "nvram: can't misc_register on minor=%d\n",
  356. NVRAM_MINOR);
  357. goto out;
  358. }
  359. if (!create_proc_read_entry("driver/nvram", 0, NULL, nvram_read_proc,
  360. NULL)) {
  361. printk(KERN_ERR "nvram: can't create /proc/driver/nvram\n");
  362. ret = -ENOMEM;
  363. goto outmisc;
  364. }
  365. ret = 0;
  366. printk(KERN_INFO "Non-volatile memory driver v" NVRAM_VERSION "\n");
  367. out:
  368. return ret;
  369. outmisc:
  370. misc_deregister(&nvram_dev);
  371. goto out;
  372. }
  373. static void __exit nvram_cleanup_module(void)
  374. {
  375. remove_proc_entry("driver/nvram", NULL);
  376. misc_deregister(&nvram_dev);
  377. }
  378. module_init(nvram_init);
  379. module_exit(nvram_cleanup_module);
  380. /*
  381. * Machine specific functions
  382. */
  383. #if MACH == PC
  384. static int pc_check_checksum(void)
  385. {
  386. int i;
  387. unsigned short sum = 0;
  388. unsigned short expect;
  389. for (i = PC_CKS_RANGE_START; i <= PC_CKS_RANGE_END; ++i)
  390. sum += __nvram_read_byte(i);
  391. expect = __nvram_read_byte(PC_CKS_LOC)<<8 |
  392. __nvram_read_byte(PC_CKS_LOC+1);
  393. return (sum & 0xffff) == expect;
  394. }
  395. static void pc_set_checksum(void)
  396. {
  397. int i;
  398. unsigned short sum = 0;
  399. for (i = PC_CKS_RANGE_START; i <= PC_CKS_RANGE_END; ++i)
  400. sum += __nvram_read_byte(i);
  401. __nvram_write_byte(sum >> 8, PC_CKS_LOC);
  402. __nvram_write_byte(sum & 0xff, PC_CKS_LOC + 1);
  403. }
  404. #ifdef CONFIG_PROC_FS
  405. static char *floppy_types[] = {
  406. "none", "5.25'' 360k", "5.25'' 1.2M", "3.5'' 720k", "3.5'' 1.44M",
  407. "3.5'' 2.88M", "3.5'' 2.88M"
  408. };
  409. static char *gfx_types[] = {
  410. "EGA, VGA, ... (with BIOS)",
  411. "CGA (40 cols)",
  412. "CGA (80 cols)",
  413. "monochrome",
  414. };
  415. static int pc_proc_infos(unsigned char *nvram, char *buffer, int *len,
  416. off_t *begin, off_t offset, int size)
  417. {
  418. int checksum;
  419. int type;
  420. spin_lock_irq(&rtc_lock);
  421. checksum = __nvram_check_checksum();
  422. spin_unlock_irq(&rtc_lock);
  423. PRINT_PROC("Checksum status: %svalid\n", checksum ? "" : "not ");
  424. PRINT_PROC("# floppies : %d\n",
  425. (nvram[6] & 1) ? (nvram[6] >> 6) + 1 : 0);
  426. PRINT_PROC("Floppy 0 type : ");
  427. type = nvram[2] >> 4;
  428. if (type < ARRAY_SIZE(floppy_types))
  429. PRINT_PROC("%s\n", floppy_types[type]);
  430. else
  431. PRINT_PROC("%d (unknown)\n", type);
  432. PRINT_PROC("Floppy 1 type : ");
  433. type = nvram[2] & 0x0f;
  434. if (type < ARRAY_SIZE(floppy_types))
  435. PRINT_PROC("%s\n", floppy_types[type]);
  436. else
  437. PRINT_PROC("%d (unknown)\n", type);
  438. PRINT_PROC("HD 0 type : ");
  439. type = nvram[4] >> 4;
  440. if (type)
  441. PRINT_PROC("%02x\n", type == 0x0f ? nvram[11] : type);
  442. else
  443. PRINT_PROC("none\n");
  444. PRINT_PROC("HD 1 type : ");
  445. type = nvram[4] & 0x0f;
  446. if (type)
  447. PRINT_PROC("%02x\n", type == 0x0f ? nvram[12] : type);
  448. else
  449. PRINT_PROC("none\n");
  450. PRINT_PROC("HD type 48 data: %d/%d/%d C/H/S, precomp %d, lz %d\n",
  451. nvram[18] | (nvram[19] << 8),
  452. nvram[20], nvram[25],
  453. nvram[21] | (nvram[22] << 8), nvram[23] | (nvram[24] << 8));
  454. PRINT_PROC("HD type 49 data: %d/%d/%d C/H/S, precomp %d, lz %d\n",
  455. nvram[39] | (nvram[40] << 8),
  456. nvram[41], nvram[46],
  457. nvram[42] | (nvram[43] << 8), nvram[44] | (nvram[45] << 8));
  458. PRINT_PROC("DOS base memory: %d kB\n", nvram[7] | (nvram[8] << 8));
  459. PRINT_PROC("Extended memory: %d kB (configured), %d kB (tested)\n",
  460. nvram[9] | (nvram[10] << 8), nvram[34] | (nvram[35] << 8));
  461. PRINT_PROC("Gfx adapter : %s\n", gfx_types[(nvram[6] >> 4) & 3]);
  462. PRINT_PROC("FPU : %sinstalled\n",
  463. (nvram[6] & 2) ? "" : "not ");
  464. return 1;
  465. }
  466. #endif
  467. #endif /* MACH == PC */
  468. #if MACH == ATARI
  469. static int atari_check_checksum(void)
  470. {
  471. int i;
  472. unsigned char sum = 0;
  473. for (i = ATARI_CKS_RANGE_START; i <= ATARI_CKS_RANGE_END; ++i)
  474. sum += __nvram_read_byte(i);
  475. return (__nvram_read_byte(ATARI_CKS_LOC) == (~sum & 0xff)) &&
  476. (__nvram_read_byte(ATARI_CKS_LOC + 1) == (sum & 0xff));
  477. }
  478. static void atari_set_checksum(void)
  479. {
  480. int i;
  481. unsigned char sum = 0;
  482. for (i = ATARI_CKS_RANGE_START; i <= ATARI_CKS_RANGE_END; ++i)
  483. sum += __nvram_read_byte(i);
  484. __nvram_write_byte(~sum, ATARI_CKS_LOC);
  485. __nvram_write_byte(sum, ATARI_CKS_LOC + 1);
  486. }
  487. #ifdef CONFIG_PROC_FS
  488. static struct {
  489. unsigned char val;
  490. char *name;
  491. } boot_prefs[] = {
  492. { 0x80, "TOS" },
  493. { 0x40, "ASV" },
  494. { 0x20, "NetBSD (?)" },
  495. { 0x10, "Linux" },
  496. { 0x00, "unspecified" }
  497. };
  498. static char *languages[] = {
  499. "English (US)",
  500. "German",
  501. "French",
  502. "English (UK)",
  503. "Spanish",
  504. "Italian",
  505. "6 (undefined)",
  506. "Swiss (French)",
  507. "Swiss (German)"
  508. };
  509. static char *dateformat[] = {
  510. "MM%cDD%cYY",
  511. "DD%cMM%cYY",
  512. "YY%cMM%cDD",
  513. "YY%cDD%cMM",
  514. "4 (undefined)",
  515. "5 (undefined)",
  516. "6 (undefined)",
  517. "7 (undefined)"
  518. };
  519. static char *colors[] = {
  520. "2", "4", "16", "256", "65536", "??", "??", "??"
  521. };
  522. static int atari_proc_infos(unsigned char *nvram, char *buffer, int *len,
  523. off_t *begin, off_t offset, int size)
  524. {
  525. int checksum = nvram_check_checksum();
  526. int i;
  527. unsigned vmode;
  528. PRINT_PROC("Checksum status : %svalid\n", checksum ? "" : "not ");
  529. PRINT_PROC("Boot preference : ");
  530. for (i = ARRAY_SIZE(boot_prefs) - 1; i >= 0; --i) {
  531. if (nvram[1] == boot_prefs[i].val) {
  532. PRINT_PROC("%s\n", boot_prefs[i].name);
  533. break;
  534. }
  535. }
  536. if (i < 0)
  537. PRINT_PROC("0x%02x (undefined)\n", nvram[1]);
  538. PRINT_PROC("SCSI arbitration : %s\n",
  539. (nvram[16] & 0x80) ? "on" : "off");
  540. PRINT_PROC("SCSI host ID : ");
  541. if (nvram[16] & 0x80)
  542. PRINT_PROC("%d\n", nvram[16] & 7);
  543. else
  544. PRINT_PROC("n/a\n");
  545. /* the following entries are defined only for the Falcon */
  546. if ((atari_mch_cookie >> 16) != ATARI_MCH_FALCON)
  547. return 1;
  548. PRINT_PROC("OS language : ");
  549. if (nvram[6] < ARRAY_SIZE(languages))
  550. PRINT_PROC("%s\n", languages[nvram[6]]);
  551. else
  552. PRINT_PROC("%u (undefined)\n", nvram[6]);
  553. PRINT_PROC("Keyboard language: ");
  554. if (nvram[7] < ARRAY_SIZE(languages))
  555. PRINT_PROC("%s\n", languages[nvram[7]]);
  556. else
  557. PRINT_PROC("%u (undefined)\n", nvram[7]);
  558. PRINT_PROC("Date format : ");
  559. PRINT_PROC(dateformat[nvram[8] & 7],
  560. nvram[9] ? nvram[9] : '/', nvram[9] ? nvram[9] : '/');
  561. PRINT_PROC(", %dh clock\n", nvram[8] & 16 ? 24 : 12);
  562. PRINT_PROC("Boot delay : ");
  563. if (nvram[10] == 0)
  564. PRINT_PROC("default");
  565. else
  566. PRINT_PROC("%ds%s\n", nvram[10],
  567. nvram[10] < 8 ? ", no memory test" : "");
  568. vmode = (nvram[14] << 8) || nvram[15];
  569. PRINT_PROC("Video mode : %s colors, %d columns, %s %s monitor\n",
  570. colors[vmode & 7],
  571. vmode & 8 ? 80 : 40,
  572. vmode & 16 ? "VGA" : "TV", vmode & 32 ? "PAL" : "NTSC");
  573. PRINT_PROC(" %soverscan, compat. mode %s%s\n",
  574. vmode & 64 ? "" : "no ",
  575. vmode & 128 ? "on" : "off",
  576. vmode & 256 ?
  577. (vmode & 16 ? ", line doubling" : ", half screen") : "");
  578. return 1;
  579. }
  580. #endif
  581. #endif /* MACH == ATARI */
  582. MODULE_LICENSE("GPL");
  583. MODULE_ALIAS_MISCDEV(NVRAM_MINOR);