config.c 25 KB

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  1. /*
  2. * linux/arch/m68k/amiga/config.c
  3. *
  4. * Copyright (C) 1993 Hamish Macdonald
  5. *
  6. * This file is subject to the terms and conditions of the GNU General Public
  7. * License. See the file COPYING in the main directory of this archive
  8. * for more details.
  9. */
  10. /*
  11. * Miscellaneous Amiga stuff
  12. */
  13. #include <linux/types.h>
  14. #include <linux/kernel.h>
  15. #include <linux/mm.h>
  16. #include <linux/seq_file.h>
  17. #include <linux/tty.h>
  18. #include <linux/console.h>
  19. #include <linux/rtc.h>
  20. #include <linux/init.h>
  21. #include <linux/vt_kern.h>
  22. #include <linux/delay.h>
  23. #include <linux/interrupt.h>
  24. #include <linux/zorro.h>
  25. #include <linux/module.h>
  26. #include <linux/keyboard.h>
  27. #include <asm/bootinfo.h>
  28. #include <asm/setup.h>
  29. #include <asm/system.h>
  30. #include <asm/pgtable.h>
  31. #include <asm/amigahw.h>
  32. #include <asm/amigaints.h>
  33. #include <asm/irq.h>
  34. #include <asm/rtc.h>
  35. #include <asm/machdep.h>
  36. #include <asm/io.h>
  37. static unsigned long amiga_model;
  38. unsigned long amiga_eclock;
  39. EXPORT_SYMBOL(amiga_eclock);
  40. unsigned long amiga_colorclock;
  41. EXPORT_SYMBOL(amiga_colorclock);
  42. unsigned long amiga_chipset;
  43. EXPORT_SYMBOL(amiga_chipset);
  44. unsigned char amiga_vblank;
  45. EXPORT_SYMBOL(amiga_vblank);
  46. static unsigned char amiga_psfreq;
  47. struct amiga_hw_present amiga_hw_present;
  48. EXPORT_SYMBOL(amiga_hw_present);
  49. static char s_a500[] __initdata = "A500";
  50. static char s_a500p[] __initdata = "A500+";
  51. static char s_a600[] __initdata = "A600";
  52. static char s_a1000[] __initdata = "A1000";
  53. static char s_a1200[] __initdata = "A1200";
  54. static char s_a2000[] __initdata = "A2000";
  55. static char s_a2500[] __initdata = "A2500";
  56. static char s_a3000[] __initdata = "A3000";
  57. static char s_a3000t[] __initdata = "A3000T";
  58. static char s_a3000p[] __initdata = "A3000+";
  59. static char s_a4000[] __initdata = "A4000";
  60. static char s_a4000t[] __initdata = "A4000T";
  61. static char s_cdtv[] __initdata = "CDTV";
  62. static char s_cd32[] __initdata = "CD32";
  63. static char s_draco[] __initdata = "Draco";
  64. static char *amiga_models[] __initdata = {
  65. [AMI_500-AMI_500] = s_a500,
  66. [AMI_500PLUS-AMI_500] = s_a500p,
  67. [AMI_600-AMI_500] = s_a600,
  68. [AMI_1000-AMI_500] = s_a1000,
  69. [AMI_1200-AMI_500] = s_a1200,
  70. [AMI_2000-AMI_500] = s_a2000,
  71. [AMI_2500-AMI_500] = s_a2500,
  72. [AMI_3000-AMI_500] = s_a3000,
  73. [AMI_3000T-AMI_500] = s_a3000t,
  74. [AMI_3000PLUS-AMI_500] = s_a3000p,
  75. [AMI_4000-AMI_500] = s_a4000,
  76. [AMI_4000T-AMI_500] = s_a4000t,
  77. [AMI_CDTV-AMI_500] = s_cdtv,
  78. [AMI_CD32-AMI_500] = s_cd32,
  79. [AMI_DRACO-AMI_500] = s_draco,
  80. };
  81. static char amiga_model_name[13] = "Amiga ";
  82. static void amiga_sched_init(irq_handler_t handler);
  83. static void amiga_get_model(char *model);
  84. static void amiga_get_hardware_list(struct seq_file *m);
  85. /* amiga specific timer functions */
  86. static unsigned long amiga_gettimeoffset(void);
  87. static int a3000_hwclk(int, struct rtc_time *);
  88. static int a2000_hwclk(int, struct rtc_time *);
  89. static int amiga_set_clock_mmss(unsigned long);
  90. static unsigned int amiga_get_ss(void);
  91. extern void amiga_mksound(unsigned int count, unsigned int ticks);
  92. static void amiga_reset(void);
  93. extern void amiga_init_sound(void);
  94. static void amiga_mem_console_write(struct console *co, const char *b,
  95. unsigned int count);
  96. #ifdef CONFIG_HEARTBEAT
  97. static void amiga_heartbeat(int on);
  98. #endif
  99. static struct console amiga_console_driver = {
  100. .name = "debug",
  101. .flags = CON_PRINTBUFFER,
  102. .index = -1,
  103. };
  104. /*
  105. * Motherboard Resources present in all Amiga models
  106. */
  107. static struct {
  108. struct resource _ciab, _ciaa, _custom, _kickstart;
  109. } mb_resources = {
  110. ._ciab = {
  111. .name = "CIA B", .start = 0x00bfd000, .end = 0x00bfdfff
  112. },
  113. ._ciaa = {
  114. .name = "CIA A", .start = 0x00bfe000, .end = 0x00bfefff
  115. },
  116. ._custom = {
  117. .name = "Custom I/O", .start = 0x00dff000, .end = 0x00dfffff
  118. },
  119. ._kickstart = {
  120. .name = "Kickstart ROM", .start = 0x00f80000, .end = 0x00ffffff
  121. }
  122. };
  123. static struct resource rtc_resource = {
  124. .start = 0x00dc0000, .end = 0x00dcffff
  125. };
  126. static struct resource ram_resource[NUM_MEMINFO];
  127. /*
  128. * Parse an Amiga-specific record in the bootinfo
  129. */
  130. int amiga_parse_bootinfo(const struct bi_record *record)
  131. {
  132. int unknown = 0;
  133. const unsigned long *data = record->data;
  134. switch (record->tag) {
  135. case BI_AMIGA_MODEL:
  136. amiga_model = *data;
  137. break;
  138. case BI_AMIGA_ECLOCK:
  139. amiga_eclock = *data;
  140. break;
  141. case BI_AMIGA_CHIPSET:
  142. amiga_chipset = *data;
  143. break;
  144. case BI_AMIGA_CHIP_SIZE:
  145. amiga_chip_size = *(const int *)data;
  146. break;
  147. case BI_AMIGA_VBLANK:
  148. amiga_vblank = *(const unsigned char *)data;
  149. break;
  150. case BI_AMIGA_PSFREQ:
  151. amiga_psfreq = *(const unsigned char *)data;
  152. break;
  153. case BI_AMIGA_AUTOCON:
  154. #ifdef CONFIG_ZORRO
  155. if (zorro_num_autocon < ZORRO_NUM_AUTO) {
  156. const struct ConfigDev *cd = (struct ConfigDev *)data;
  157. struct zorro_dev *dev = &zorro_autocon[zorro_num_autocon++];
  158. dev->rom = cd->cd_Rom;
  159. dev->slotaddr = cd->cd_SlotAddr;
  160. dev->slotsize = cd->cd_SlotSize;
  161. dev->resource.start = (unsigned long)cd->cd_BoardAddr;
  162. dev->resource.end = dev->resource.start + cd->cd_BoardSize - 1;
  163. } else
  164. printk("amiga_parse_bootinfo: too many AutoConfig devices\n");
  165. #endif /* CONFIG_ZORRO */
  166. break;
  167. case BI_AMIGA_SERPER:
  168. /* serial port period: ignored here */
  169. break;
  170. default:
  171. unknown = 1;
  172. }
  173. return unknown;
  174. }
  175. /*
  176. * Identify builtin hardware
  177. */
  178. static void __init amiga_identify(void)
  179. {
  180. /* Fill in some default values, if necessary */
  181. if (amiga_eclock == 0)
  182. amiga_eclock = 709379;
  183. memset(&amiga_hw_present, 0, sizeof(amiga_hw_present));
  184. printk("Amiga hardware found: ");
  185. if (amiga_model >= AMI_500 && amiga_model <= AMI_DRACO) {
  186. printk("[%s] ", amiga_models[amiga_model-AMI_500]);
  187. strcat(amiga_model_name, amiga_models[amiga_model-AMI_500]);
  188. }
  189. switch (amiga_model) {
  190. case AMI_UNKNOWN:
  191. goto Generic;
  192. case AMI_600:
  193. case AMI_1200:
  194. AMIGAHW_SET(A1200_IDE);
  195. AMIGAHW_SET(PCMCIA);
  196. case AMI_500:
  197. case AMI_500PLUS:
  198. case AMI_1000:
  199. case AMI_2000:
  200. case AMI_2500:
  201. AMIGAHW_SET(A2000_CLK); /* Is this correct for all models? */
  202. goto Generic;
  203. case AMI_3000:
  204. case AMI_3000T:
  205. AMIGAHW_SET(AMBER_FF);
  206. AMIGAHW_SET(MAGIC_REKICK);
  207. /* fall through */
  208. case AMI_3000PLUS:
  209. AMIGAHW_SET(A3000_SCSI);
  210. AMIGAHW_SET(A3000_CLK);
  211. AMIGAHW_SET(ZORRO3);
  212. goto Generic;
  213. case AMI_4000T:
  214. AMIGAHW_SET(A4000_SCSI);
  215. /* fall through */
  216. case AMI_4000:
  217. AMIGAHW_SET(A4000_IDE);
  218. AMIGAHW_SET(A3000_CLK);
  219. AMIGAHW_SET(ZORRO3);
  220. goto Generic;
  221. case AMI_CDTV:
  222. case AMI_CD32:
  223. AMIGAHW_SET(CD_ROM);
  224. AMIGAHW_SET(A2000_CLK); /* Is this correct? */
  225. goto Generic;
  226. Generic:
  227. AMIGAHW_SET(AMI_VIDEO);
  228. AMIGAHW_SET(AMI_BLITTER);
  229. AMIGAHW_SET(AMI_AUDIO);
  230. AMIGAHW_SET(AMI_FLOPPY);
  231. AMIGAHW_SET(AMI_KEYBOARD);
  232. AMIGAHW_SET(AMI_MOUSE);
  233. AMIGAHW_SET(AMI_SERIAL);
  234. AMIGAHW_SET(AMI_PARALLEL);
  235. AMIGAHW_SET(CHIP_RAM);
  236. AMIGAHW_SET(PAULA);
  237. switch (amiga_chipset) {
  238. case CS_OCS:
  239. case CS_ECS:
  240. case CS_AGA:
  241. switch (amiga_custom.deniseid & 0xf) {
  242. case 0x0c:
  243. AMIGAHW_SET(DENISE_HR);
  244. break;
  245. case 0x08:
  246. AMIGAHW_SET(LISA);
  247. break;
  248. }
  249. break;
  250. default:
  251. AMIGAHW_SET(DENISE);
  252. break;
  253. }
  254. switch ((amiga_custom.vposr>>8) & 0x7f) {
  255. case 0x00:
  256. AMIGAHW_SET(AGNUS_PAL);
  257. break;
  258. case 0x10:
  259. AMIGAHW_SET(AGNUS_NTSC);
  260. break;
  261. case 0x20:
  262. case 0x21:
  263. AMIGAHW_SET(AGNUS_HR_PAL);
  264. break;
  265. case 0x30:
  266. case 0x31:
  267. AMIGAHW_SET(AGNUS_HR_NTSC);
  268. break;
  269. case 0x22:
  270. case 0x23:
  271. AMIGAHW_SET(ALICE_PAL);
  272. break;
  273. case 0x32:
  274. case 0x33:
  275. AMIGAHW_SET(ALICE_NTSC);
  276. break;
  277. }
  278. AMIGAHW_SET(ZORRO);
  279. break;
  280. case AMI_DRACO:
  281. panic("No support for Draco yet");
  282. default:
  283. panic("Unknown Amiga Model");
  284. }
  285. #define AMIGAHW_ANNOUNCE(name, str) \
  286. if (AMIGAHW_PRESENT(name)) \
  287. printk(str)
  288. AMIGAHW_ANNOUNCE(AMI_VIDEO, "VIDEO ");
  289. AMIGAHW_ANNOUNCE(AMI_BLITTER, "BLITTER ");
  290. AMIGAHW_ANNOUNCE(AMBER_FF, "AMBER_FF ");
  291. AMIGAHW_ANNOUNCE(AMI_AUDIO, "AUDIO ");
  292. AMIGAHW_ANNOUNCE(AMI_FLOPPY, "FLOPPY ");
  293. AMIGAHW_ANNOUNCE(A3000_SCSI, "A3000_SCSI ");
  294. AMIGAHW_ANNOUNCE(A4000_SCSI, "A4000_SCSI ");
  295. AMIGAHW_ANNOUNCE(A1200_IDE, "A1200_IDE ");
  296. AMIGAHW_ANNOUNCE(A4000_IDE, "A4000_IDE ");
  297. AMIGAHW_ANNOUNCE(CD_ROM, "CD_ROM ");
  298. AMIGAHW_ANNOUNCE(AMI_KEYBOARD, "KEYBOARD ");
  299. AMIGAHW_ANNOUNCE(AMI_MOUSE, "MOUSE ");
  300. AMIGAHW_ANNOUNCE(AMI_SERIAL, "SERIAL ");
  301. AMIGAHW_ANNOUNCE(AMI_PARALLEL, "PARALLEL ");
  302. AMIGAHW_ANNOUNCE(A2000_CLK, "A2000_CLK ");
  303. AMIGAHW_ANNOUNCE(A3000_CLK, "A3000_CLK ");
  304. AMIGAHW_ANNOUNCE(CHIP_RAM, "CHIP_RAM ");
  305. AMIGAHW_ANNOUNCE(PAULA, "PAULA ");
  306. AMIGAHW_ANNOUNCE(DENISE, "DENISE ");
  307. AMIGAHW_ANNOUNCE(DENISE_HR, "DENISE_HR ");
  308. AMIGAHW_ANNOUNCE(LISA, "LISA ");
  309. AMIGAHW_ANNOUNCE(AGNUS_PAL, "AGNUS_PAL ");
  310. AMIGAHW_ANNOUNCE(AGNUS_NTSC, "AGNUS_NTSC ");
  311. AMIGAHW_ANNOUNCE(AGNUS_HR_PAL, "AGNUS_HR_PAL ");
  312. AMIGAHW_ANNOUNCE(AGNUS_HR_NTSC, "AGNUS_HR_NTSC ");
  313. AMIGAHW_ANNOUNCE(ALICE_PAL, "ALICE_PAL ");
  314. AMIGAHW_ANNOUNCE(ALICE_NTSC, "ALICE_NTSC ");
  315. AMIGAHW_ANNOUNCE(MAGIC_REKICK, "MAGIC_REKICK ");
  316. AMIGAHW_ANNOUNCE(PCMCIA, "PCMCIA ");
  317. if (AMIGAHW_PRESENT(ZORRO))
  318. printk("ZORRO%s ", AMIGAHW_PRESENT(ZORRO3) ? "3" : "");
  319. printk("\n");
  320. #undef AMIGAHW_ANNOUNCE
  321. }
  322. /*
  323. * Setup the Amiga configuration info
  324. */
  325. void __init config_amiga(void)
  326. {
  327. int i;
  328. amiga_identify();
  329. /* Yuk, we don't have PCI memory */
  330. iomem_resource.name = "Memory";
  331. for (i = 0; i < 4; i++)
  332. request_resource(&iomem_resource, &((struct resource *)&mb_resources)[i]);
  333. mach_sched_init = amiga_sched_init;
  334. mach_init_IRQ = amiga_init_IRQ;
  335. mach_get_model = amiga_get_model;
  336. mach_get_hardware_list = amiga_get_hardware_list;
  337. mach_gettimeoffset = amiga_gettimeoffset;
  338. if (AMIGAHW_PRESENT(A3000_CLK)) {
  339. mach_hwclk = a3000_hwclk;
  340. rtc_resource.name = "A3000 RTC";
  341. request_resource(&iomem_resource, &rtc_resource);
  342. } else /* if (AMIGAHW_PRESENT(A2000_CLK)) */ {
  343. mach_hwclk = a2000_hwclk;
  344. rtc_resource.name = "A2000 RTC";
  345. request_resource(&iomem_resource, &rtc_resource);
  346. }
  347. /*
  348. * default MAX_DMA=0xffffffff on all machines. If we don't do so, the SCSI
  349. * code will not be able to allocate any mem for transfers, unless we are
  350. * dealing with a Z2 mem only system. /Jes
  351. */
  352. mach_max_dma_address = 0xffffffff;
  353. mach_set_clock_mmss = amiga_set_clock_mmss;
  354. mach_get_ss = amiga_get_ss;
  355. mach_reset = amiga_reset;
  356. #if defined(CONFIG_INPUT_M68K_BEEP) || defined(CONFIG_INPUT_M68K_BEEP_MODULE)
  357. mach_beep = amiga_mksound;
  358. #endif
  359. #ifdef CONFIG_HEARTBEAT
  360. mach_heartbeat = amiga_heartbeat;
  361. #endif
  362. /* Fill in the clock value (based on the 700 kHz E-Clock) */
  363. amiga_colorclock = 5*amiga_eclock; /* 3.5 MHz */
  364. /* clear all DMA bits */
  365. amiga_custom.dmacon = DMAF_ALL;
  366. /* ensure that the DMA master bit is set */
  367. amiga_custom.dmacon = DMAF_SETCLR | DMAF_MASTER;
  368. /* don't use Z2 RAM as system memory on Z3 capable machines */
  369. if (AMIGAHW_PRESENT(ZORRO3)) {
  370. int i, j;
  371. u32 disabled_z2mem = 0;
  372. for (i = 0; i < m68k_num_memory; i++) {
  373. if (m68k_memory[i].addr < 16*1024*1024) {
  374. if (i == 0) {
  375. /* don't cut off the branch we're sitting on */
  376. printk("Warning: kernel runs in Zorro II memory\n");
  377. continue;
  378. }
  379. disabled_z2mem += m68k_memory[i].size;
  380. m68k_num_memory--;
  381. for (j = i; j < m68k_num_memory; j++)
  382. m68k_memory[j] = m68k_memory[j+1];
  383. i--;
  384. }
  385. }
  386. if (disabled_z2mem)
  387. printk("%dK of Zorro II memory will not be used as system memory\n",
  388. disabled_z2mem>>10);
  389. }
  390. /* request all RAM */
  391. for (i = 0; i < m68k_num_memory; i++) {
  392. ram_resource[i].name =
  393. (m68k_memory[i].addr >= 0x01000000) ? "32-bit Fast RAM" :
  394. (m68k_memory[i].addr < 0x00c00000) ? "16-bit Fast RAM" :
  395. "16-bit Slow RAM";
  396. ram_resource[i].start = m68k_memory[i].addr;
  397. ram_resource[i].end = m68k_memory[i].addr+m68k_memory[i].size-1;
  398. request_resource(&iomem_resource, &ram_resource[i]);
  399. }
  400. /* initialize chipram allocator */
  401. amiga_chip_init();
  402. /* our beloved beeper */
  403. if (AMIGAHW_PRESENT(AMI_AUDIO))
  404. amiga_init_sound();
  405. /*
  406. * if it is an A3000, set the magic bit that forces
  407. * a hard rekick
  408. */
  409. if (AMIGAHW_PRESENT(MAGIC_REKICK))
  410. *(unsigned char *)ZTWO_VADDR(0xde0002) |= 0x80;
  411. }
  412. static unsigned short jiffy_ticks;
  413. static void __init amiga_sched_init(irq_handler_t timer_routine)
  414. {
  415. static struct resource sched_res = {
  416. .name = "timer", .start = 0x00bfd400, .end = 0x00bfd5ff,
  417. };
  418. jiffy_ticks = (amiga_eclock+HZ/2)/HZ;
  419. if (request_resource(&mb_resources._ciab, &sched_res))
  420. printk("Cannot allocate ciab.ta{lo,hi}\n");
  421. ciab.cra &= 0xC0; /* turn off timer A, continuous mode, from Eclk */
  422. ciab.talo = jiffy_ticks % 256;
  423. ciab.tahi = jiffy_ticks / 256;
  424. /* install interrupt service routine for CIAB Timer A
  425. *
  426. * Please don't change this to use ciaa, as it interferes with the
  427. * SCSI code. We'll have to take a look at this later
  428. */
  429. if (request_irq(IRQ_AMIGA_CIAB_TA, timer_routine, 0, "timer", NULL))
  430. pr_err("Couldn't register timer interrupt\n");
  431. /* start timer */
  432. ciab.cra |= 0x11;
  433. }
  434. #define TICK_SIZE 10000
  435. /* This is always executed with interrupts disabled. */
  436. static unsigned long amiga_gettimeoffset(void)
  437. {
  438. unsigned short hi, lo, hi2;
  439. unsigned long ticks, offset = 0;
  440. /* read CIA B timer A current value */
  441. hi = ciab.tahi;
  442. lo = ciab.talo;
  443. hi2 = ciab.tahi;
  444. if (hi != hi2) {
  445. lo = ciab.talo;
  446. hi = hi2;
  447. }
  448. ticks = hi << 8 | lo;
  449. if (ticks > jiffy_ticks / 2)
  450. /* check for pending interrupt */
  451. if (cia_set_irq(&ciab_base, 0) & CIA_ICR_TA)
  452. offset = 10000;
  453. ticks = jiffy_ticks - ticks;
  454. ticks = (10000 * ticks) / jiffy_ticks;
  455. return ticks + offset;
  456. }
  457. static int a3000_hwclk(int op, struct rtc_time *t)
  458. {
  459. tod_3000.cntrl1 = TOD3000_CNTRL1_HOLD;
  460. if (!op) { /* read */
  461. t->tm_sec = tod_3000.second1 * 10 + tod_3000.second2;
  462. t->tm_min = tod_3000.minute1 * 10 + tod_3000.minute2;
  463. t->tm_hour = tod_3000.hour1 * 10 + tod_3000.hour2;
  464. t->tm_mday = tod_3000.day1 * 10 + tod_3000.day2;
  465. t->tm_wday = tod_3000.weekday;
  466. t->tm_mon = tod_3000.month1 * 10 + tod_3000.month2 - 1;
  467. t->tm_year = tod_3000.year1 * 10 + tod_3000.year2;
  468. if (t->tm_year <= 69)
  469. t->tm_year += 100;
  470. } else {
  471. tod_3000.second1 = t->tm_sec / 10;
  472. tod_3000.second2 = t->tm_sec % 10;
  473. tod_3000.minute1 = t->tm_min / 10;
  474. tod_3000.minute2 = t->tm_min % 10;
  475. tod_3000.hour1 = t->tm_hour / 10;
  476. tod_3000.hour2 = t->tm_hour % 10;
  477. tod_3000.day1 = t->tm_mday / 10;
  478. tod_3000.day2 = t->tm_mday % 10;
  479. if (t->tm_wday != -1)
  480. tod_3000.weekday = t->tm_wday;
  481. tod_3000.month1 = (t->tm_mon + 1) / 10;
  482. tod_3000.month2 = (t->tm_mon + 1) % 10;
  483. if (t->tm_year >= 100)
  484. t->tm_year -= 100;
  485. tod_3000.year1 = t->tm_year / 10;
  486. tod_3000.year2 = t->tm_year % 10;
  487. }
  488. tod_3000.cntrl1 = TOD3000_CNTRL1_FREE;
  489. return 0;
  490. }
  491. static int a2000_hwclk(int op, struct rtc_time *t)
  492. {
  493. int cnt = 5;
  494. tod_2000.cntrl1 = TOD2000_CNTRL1_HOLD;
  495. while ((tod_2000.cntrl1 & TOD2000_CNTRL1_BUSY) && cnt--) {
  496. tod_2000.cntrl1 &= ~TOD2000_CNTRL1_HOLD;
  497. udelay(70);
  498. tod_2000.cntrl1 |= TOD2000_CNTRL1_HOLD;
  499. }
  500. if (!cnt)
  501. printk(KERN_INFO "hwclk: timed out waiting for RTC (0x%x)\n",
  502. tod_2000.cntrl1);
  503. if (!op) { /* read */
  504. t->tm_sec = tod_2000.second1 * 10 + tod_2000.second2;
  505. t->tm_min = tod_2000.minute1 * 10 + tod_2000.minute2;
  506. t->tm_hour = (tod_2000.hour1 & 3) * 10 + tod_2000.hour2;
  507. t->tm_mday = tod_2000.day1 * 10 + tod_2000.day2;
  508. t->tm_wday = tod_2000.weekday;
  509. t->tm_mon = tod_2000.month1 * 10 + tod_2000.month2 - 1;
  510. t->tm_year = tod_2000.year1 * 10 + tod_2000.year2;
  511. if (t->tm_year <= 69)
  512. t->tm_year += 100;
  513. if (!(tod_2000.cntrl3 & TOD2000_CNTRL3_24HMODE)) {
  514. if (!(tod_2000.hour1 & TOD2000_HOUR1_PM) && t->tm_hour == 12)
  515. t->tm_hour = 0;
  516. else if ((tod_2000.hour1 & TOD2000_HOUR1_PM) && t->tm_hour != 12)
  517. t->tm_hour += 12;
  518. }
  519. } else {
  520. tod_2000.second1 = t->tm_sec / 10;
  521. tod_2000.second2 = t->tm_sec % 10;
  522. tod_2000.minute1 = t->tm_min / 10;
  523. tod_2000.minute2 = t->tm_min % 10;
  524. if (tod_2000.cntrl3 & TOD2000_CNTRL3_24HMODE)
  525. tod_2000.hour1 = t->tm_hour / 10;
  526. else if (t->tm_hour >= 12)
  527. tod_2000.hour1 = TOD2000_HOUR1_PM +
  528. (t->tm_hour - 12) / 10;
  529. else
  530. tod_2000.hour1 = t->tm_hour / 10;
  531. tod_2000.hour2 = t->tm_hour % 10;
  532. tod_2000.day1 = t->tm_mday / 10;
  533. tod_2000.day2 = t->tm_mday % 10;
  534. if (t->tm_wday != -1)
  535. tod_2000.weekday = t->tm_wday;
  536. tod_2000.month1 = (t->tm_mon + 1) / 10;
  537. tod_2000.month2 = (t->tm_mon + 1) % 10;
  538. if (t->tm_year >= 100)
  539. t->tm_year -= 100;
  540. tod_2000.year1 = t->tm_year / 10;
  541. tod_2000.year2 = t->tm_year % 10;
  542. }
  543. tod_2000.cntrl1 &= ~TOD2000_CNTRL1_HOLD;
  544. return 0;
  545. }
  546. static int amiga_set_clock_mmss(unsigned long nowtime)
  547. {
  548. short real_seconds = nowtime % 60, real_minutes = (nowtime / 60) % 60;
  549. if (AMIGAHW_PRESENT(A3000_CLK)) {
  550. tod_3000.cntrl1 = TOD3000_CNTRL1_HOLD;
  551. tod_3000.second1 = real_seconds / 10;
  552. tod_3000.second2 = real_seconds % 10;
  553. tod_3000.minute1 = real_minutes / 10;
  554. tod_3000.minute2 = real_minutes % 10;
  555. tod_3000.cntrl1 = TOD3000_CNTRL1_FREE;
  556. } else /* if (AMIGAHW_PRESENT(A2000_CLK)) */ {
  557. int cnt = 5;
  558. tod_2000.cntrl1 |= TOD2000_CNTRL1_HOLD;
  559. while ((tod_2000.cntrl1 & TOD2000_CNTRL1_BUSY) && cnt--) {
  560. tod_2000.cntrl1 &= ~TOD2000_CNTRL1_HOLD;
  561. udelay(70);
  562. tod_2000.cntrl1 |= TOD2000_CNTRL1_HOLD;
  563. }
  564. if (!cnt)
  565. printk(KERN_INFO "set_clock_mmss: timed out waiting for RTC (0x%x)\n", tod_2000.cntrl1);
  566. tod_2000.second1 = real_seconds / 10;
  567. tod_2000.second2 = real_seconds % 10;
  568. tod_2000.minute1 = real_minutes / 10;
  569. tod_2000.minute2 = real_minutes % 10;
  570. tod_2000.cntrl1 &= ~TOD2000_CNTRL1_HOLD;
  571. }
  572. return 0;
  573. }
  574. static unsigned int amiga_get_ss(void)
  575. {
  576. unsigned int s;
  577. if (AMIGAHW_PRESENT(A3000_CLK)) {
  578. tod_3000.cntrl1 = TOD3000_CNTRL1_HOLD;
  579. s = tod_3000.second1 * 10 + tod_3000.second2;
  580. tod_3000.cntrl1 = TOD3000_CNTRL1_FREE;
  581. } else /* if (AMIGAHW_PRESENT(A2000_CLK)) */ {
  582. s = tod_2000.second1 * 10 + tod_2000.second2;
  583. }
  584. return s;
  585. }
  586. static NORET_TYPE void amiga_reset(void)
  587. ATTRIB_NORET;
  588. static void amiga_reset(void)
  589. {
  590. unsigned long jmp_addr040 = virt_to_phys(&&jmp_addr_label040);
  591. unsigned long jmp_addr = virt_to_phys(&&jmp_addr_label);
  592. local_irq_disable();
  593. if (CPU_IS_040_OR_060)
  594. /* Setup transparent translation registers for mapping
  595. * of 16 MB kernel segment before disabling translation
  596. */
  597. asm volatile ("\n"
  598. " move.l %0,%%d0\n"
  599. " and.l #0xff000000,%%d0\n"
  600. " or.w #0xe020,%%d0\n" /* map 16 MB, enable, cacheable */
  601. " .chip 68040\n"
  602. " movec %%d0,%%itt0\n"
  603. " movec %%d0,%%dtt0\n"
  604. " .chip 68k\n"
  605. " jmp %0@\n"
  606. : /* no outputs */
  607. : "a" (jmp_addr040)
  608. : "d0");
  609. else
  610. /* for 680[23]0, just disable translation and jump to the physical
  611. * address of the label
  612. */
  613. asm volatile ("\n"
  614. " pmove %%tc,%@\n"
  615. " bclr #7,%@\n"
  616. " pmove %@,%%tc\n"
  617. " jmp %0@\n"
  618. : /* no outputs */
  619. : "a" (jmp_addr));
  620. jmp_addr_label040:
  621. /* disable translation on '040 now */
  622. asm volatile ("\n"
  623. " moveq #0,%%d0\n"
  624. " .chip 68040\n"
  625. " movec %%d0,%%tc\n" /* disable MMU */
  626. " .chip 68k\n"
  627. : /* no outputs */
  628. : /* no inputs */
  629. : "d0");
  630. jmp_addr_label:
  631. /* pickup reset address from AmigaOS ROM, reset devices and jump
  632. * to reset address
  633. */
  634. asm volatile ("\n"
  635. " move.w #0x2700,%sr\n"
  636. " lea 0x01000000,%a0\n"
  637. " sub.l %a0@(-0x14),%a0\n"
  638. " move.l %a0@(4),%a0\n"
  639. " subq.l #2,%a0\n"
  640. " jra 1f\n"
  641. /* align on a longword boundary */
  642. " " __ALIGN_STR "\n"
  643. "1:\n"
  644. " reset\n"
  645. " jmp %a0@");
  646. for (;;)
  647. ;
  648. }
  649. /*
  650. * Debugging
  651. */
  652. #define SAVEKMSG_MAXMEM 128*1024
  653. #define SAVEKMSG_MAGIC1 0x53415645 /* 'SAVE' */
  654. #define SAVEKMSG_MAGIC2 0x4B4D5347 /* 'KMSG' */
  655. struct savekmsg {
  656. unsigned long magic1; /* SAVEKMSG_MAGIC1 */
  657. unsigned long magic2; /* SAVEKMSG_MAGIC2 */
  658. unsigned long magicptr; /* address of magic1 */
  659. unsigned long size;
  660. char data[0];
  661. };
  662. static struct savekmsg *savekmsg;
  663. static void amiga_mem_console_write(struct console *co, const char *s,
  664. unsigned int count)
  665. {
  666. if (savekmsg->size + count <= SAVEKMSG_MAXMEM-sizeof(struct savekmsg)) {
  667. memcpy(savekmsg->data + savekmsg->size, s, count);
  668. savekmsg->size += count;
  669. }
  670. }
  671. static int __init amiga_savekmsg_setup(char *arg)
  672. {
  673. static struct resource debug_res = { .name = "Debug" };
  674. if (!MACH_IS_AMIGA || strcmp(arg, "mem"))
  675. goto done;
  676. if (!AMIGAHW_PRESENT(CHIP_RAM)) {
  677. printk("Warning: no chipram present for debugging\n");
  678. goto done;
  679. }
  680. savekmsg = amiga_chip_alloc_res(SAVEKMSG_MAXMEM, &debug_res);
  681. savekmsg->magic1 = SAVEKMSG_MAGIC1;
  682. savekmsg->magic2 = SAVEKMSG_MAGIC2;
  683. savekmsg->magicptr = ZTWO_PADDR(savekmsg);
  684. savekmsg->size = 0;
  685. amiga_console_driver.write = amiga_mem_console_write;
  686. register_console(&amiga_console_driver);
  687. done:
  688. return 0;
  689. }
  690. early_param("debug", amiga_savekmsg_setup);
  691. static void amiga_serial_putc(char c)
  692. {
  693. amiga_custom.serdat = (unsigned char)c | 0x100;
  694. while (!(amiga_custom.serdatr & 0x2000))
  695. ;
  696. }
  697. static void amiga_serial_console_write(struct console *co, const char *s,
  698. unsigned int count)
  699. {
  700. while (count--) {
  701. if (*s == '\n')
  702. amiga_serial_putc('\r');
  703. amiga_serial_putc(*s++);
  704. }
  705. }
  706. #if 0
  707. void amiga_serial_puts(const char *s)
  708. {
  709. amiga_serial_console_write(NULL, s, strlen(s));
  710. }
  711. int amiga_serial_console_wait_key(struct console *co)
  712. {
  713. int ch;
  714. while (!(amiga_custom.intreqr & IF_RBF))
  715. barrier();
  716. ch = amiga_custom.serdatr & 0xff;
  717. /* clear the interrupt, so that another character can be read */
  718. amiga_custom.intreq = IF_RBF;
  719. return ch;
  720. }
  721. void amiga_serial_gets(struct console *co, char *s, int len)
  722. {
  723. int ch, cnt = 0;
  724. while (1) {
  725. ch = amiga_serial_console_wait_key(co);
  726. /* Check for backspace. */
  727. if (ch == 8 || ch == 127) {
  728. if (cnt == 0) {
  729. amiga_serial_putc('\007');
  730. continue;
  731. }
  732. cnt--;
  733. amiga_serial_puts("\010 \010");
  734. continue;
  735. }
  736. /* Check for enter. */
  737. if (ch == 10 || ch == 13)
  738. break;
  739. /* See if line is too long. */
  740. if (cnt >= len + 1) {
  741. amiga_serial_putc(7);
  742. cnt--;
  743. continue;
  744. }
  745. /* Store and echo character. */
  746. s[cnt++] = ch;
  747. amiga_serial_putc(ch);
  748. }
  749. /* Print enter. */
  750. amiga_serial_puts("\r\n");
  751. s[cnt] = 0;
  752. }
  753. #endif
  754. static int __init amiga_debug_setup(char *arg)
  755. {
  756. if (MACH_IS_AMIGA && !strcmp(arg, "ser")) {
  757. /* no initialization required (?) */
  758. amiga_console_driver.write = amiga_serial_console_write;
  759. register_console(&amiga_console_driver);
  760. }
  761. return 0;
  762. }
  763. early_param("debug", amiga_debug_setup);
  764. #ifdef CONFIG_HEARTBEAT
  765. static void amiga_heartbeat(int on)
  766. {
  767. if (on)
  768. ciaa.pra &= ~2;
  769. else
  770. ciaa.pra |= 2;
  771. }
  772. #endif
  773. /*
  774. * Amiga specific parts of /proc
  775. */
  776. static void amiga_get_model(char *model)
  777. {
  778. strcpy(model, amiga_model_name);
  779. }
  780. static void amiga_get_hardware_list(struct seq_file *m)
  781. {
  782. if (AMIGAHW_PRESENT(CHIP_RAM))
  783. seq_printf(m, "Chip RAM:\t%ldK\n", amiga_chip_size>>10);
  784. seq_printf(m, "PS Freq:\t%dHz\nEClock Freq:\t%ldHz\n",
  785. amiga_psfreq, amiga_eclock);
  786. if (AMIGAHW_PRESENT(AMI_VIDEO)) {
  787. char *type;
  788. switch (amiga_chipset) {
  789. case CS_OCS:
  790. type = "OCS";
  791. break;
  792. case CS_ECS:
  793. type = "ECS";
  794. break;
  795. case CS_AGA:
  796. type = "AGA";
  797. break;
  798. default:
  799. type = "Old or Unknown";
  800. break;
  801. }
  802. seq_printf(m, "Graphics:\t%s\n", type);
  803. }
  804. #define AMIGAHW_ANNOUNCE(name, str) \
  805. if (AMIGAHW_PRESENT(name)) \
  806. seq_printf (m, "\t%s\n", str)
  807. seq_printf (m, "Detected hardware:\n");
  808. AMIGAHW_ANNOUNCE(AMI_VIDEO, "Amiga Video");
  809. AMIGAHW_ANNOUNCE(AMI_BLITTER, "Blitter");
  810. AMIGAHW_ANNOUNCE(AMBER_FF, "Amber Flicker Fixer");
  811. AMIGAHW_ANNOUNCE(AMI_AUDIO, "Amiga Audio");
  812. AMIGAHW_ANNOUNCE(AMI_FLOPPY, "Floppy Controller");
  813. AMIGAHW_ANNOUNCE(A3000_SCSI, "SCSI Controller WD33C93 (A3000 style)");
  814. AMIGAHW_ANNOUNCE(A4000_SCSI, "SCSI Controller NCR53C710 (A4000T style)");
  815. AMIGAHW_ANNOUNCE(A1200_IDE, "IDE Interface (A1200 style)");
  816. AMIGAHW_ANNOUNCE(A4000_IDE, "IDE Interface (A4000 style)");
  817. AMIGAHW_ANNOUNCE(CD_ROM, "Internal CD ROM drive");
  818. AMIGAHW_ANNOUNCE(AMI_KEYBOARD, "Keyboard");
  819. AMIGAHW_ANNOUNCE(AMI_MOUSE, "Mouse Port");
  820. AMIGAHW_ANNOUNCE(AMI_SERIAL, "Serial Port");
  821. AMIGAHW_ANNOUNCE(AMI_PARALLEL, "Parallel Port");
  822. AMIGAHW_ANNOUNCE(A2000_CLK, "Hardware Clock (A2000 style)");
  823. AMIGAHW_ANNOUNCE(A3000_CLK, "Hardware Clock (A3000 style)");
  824. AMIGAHW_ANNOUNCE(CHIP_RAM, "Chip RAM");
  825. AMIGAHW_ANNOUNCE(PAULA, "Paula 8364");
  826. AMIGAHW_ANNOUNCE(DENISE, "Denise 8362");
  827. AMIGAHW_ANNOUNCE(DENISE_HR, "Denise 8373");
  828. AMIGAHW_ANNOUNCE(LISA, "Lisa 8375");
  829. AMIGAHW_ANNOUNCE(AGNUS_PAL, "Normal/Fat PAL Agnus 8367/8371");
  830. AMIGAHW_ANNOUNCE(AGNUS_NTSC, "Normal/Fat NTSC Agnus 8361/8370");
  831. AMIGAHW_ANNOUNCE(AGNUS_HR_PAL, "Fat Hires PAL Agnus 8372");
  832. AMIGAHW_ANNOUNCE(AGNUS_HR_NTSC, "Fat Hires NTSC Agnus 8372");
  833. AMIGAHW_ANNOUNCE(ALICE_PAL, "PAL Alice 8374");
  834. AMIGAHW_ANNOUNCE(ALICE_NTSC, "NTSC Alice 8374");
  835. AMIGAHW_ANNOUNCE(MAGIC_REKICK, "Magic Hard Rekick");
  836. AMIGAHW_ANNOUNCE(PCMCIA, "PCMCIA Slot");
  837. #ifdef CONFIG_ZORRO
  838. if (AMIGAHW_PRESENT(ZORRO))
  839. seq_printf(m, "\tZorro II%s AutoConfig: %d Expansion "
  840. "Device%s\n",
  841. AMIGAHW_PRESENT(ZORRO3) ? "I" : "",
  842. zorro_num_autocon, zorro_num_autocon == 1 ? "" : "s");
  843. #endif /* CONFIG_ZORRO */
  844. #undef AMIGAHW_ANNOUNCE
  845. }
  846. /*
  847. * The Amiga keyboard driver needs key_maps, but we cannot export it in
  848. * drivers/char/defkeymap.c, as it is autogenerated
  849. */
  850. #ifdef CONFIG_HW_CONSOLE
  851. EXPORT_SYMBOL_GPL(key_maps);
  852. #endif