retz3fb.c 39 KB

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  1. /*
  2. * Linux/drivers/video/retz3fb.c -- RetinaZ3 frame buffer device
  3. *
  4. * Copyright (C) 1997 Jes Sorensen
  5. *
  6. * This file is based on the CyberVision64 frame buffer device and
  7. * the generic Cirrus Logic driver.
  8. *
  9. * cyberfb.c: Copyright (C) 1996 Martin Apel,
  10. * Geert Uytterhoeven
  11. * clgen.c: Copyright (C) 1996 Frank Neumann
  12. *
  13. * History:
  14. * - 22 Jan 97: Initial work
  15. * - 14 Feb 97: Screen initialization works somewhat, still only
  16. * 8-bit packed pixel is supported.
  17. *
  18. * This file is subject to the terms and conditions of the GNU General Public
  19. * License. See the file COPYING in the main directory of this archive
  20. * for more details.
  21. */
  22. #include <linux/module.h>
  23. #include <linux/kernel.h>
  24. #include <linux/errno.h>
  25. #include <linux/string.h>
  26. #include <linux/mm.h>
  27. #include <linux/slab.h>
  28. #include <linux/delay.h>
  29. #include <linux/fb.h>
  30. #include <linux/zorro.h>
  31. #include <linux/init.h>
  32. #include <asm/uaccess.h>
  33. #include <asm/system.h>
  34. #include <asm/irq.h>
  35. #include <asm/pgtable.h>
  36. #include <asm/io.h>
  37. #include <video/fbcon.h>
  38. #include <video/fbcon-cfb8.h>
  39. #include <video/fbcon-cfb16.h>
  40. #include "retz3fb.h"
  41. /* #define DEBUG if(1) */
  42. #define DEBUG if(0)
  43. /*
  44. * Reserve space for one pattern line.
  45. *
  46. * For the time being we only support 4MB boards!
  47. */
  48. #define PAT_MEM_SIZE 16*3
  49. #define PAT_MEM_OFF (4*1024*1024 - PAT_MEM_SIZE)
  50. struct retz3fb_par {
  51. int xres;
  52. int yres;
  53. int xres_vir;
  54. int yres_vir;
  55. int xoffset;
  56. int yoffset;
  57. int bpp;
  58. struct fb_bitfield red;
  59. struct fb_bitfield green;
  60. struct fb_bitfield blue;
  61. struct fb_bitfield transp;
  62. int pixclock;
  63. int left_margin; /* time from sync to picture */
  64. int right_margin; /* time from picture to sync */
  65. int upper_margin; /* time from sync to picture */
  66. int lower_margin;
  67. int hsync_len; /* length of horizontal sync */
  68. int vsync_len; /* length of vertical sync */
  69. int vmode;
  70. int accel;
  71. };
  72. struct display_data {
  73. long h_total; /* Horizontal Total */
  74. long h_sstart; /* Horizontal Sync Start */
  75. long h_sstop; /* Horizontal Sync Stop */
  76. long h_bstart; /* Horizontal Blank Start */
  77. long h_bstop; /* Horizontal Blank Stop */
  78. long h_dispend; /* Horizontal Display End */
  79. long v_total; /* Vertical Total */
  80. long v_sstart; /* Vertical Sync Start */
  81. long v_sstop; /* Vertical Sync Stop */
  82. long v_bstart; /* Vertical Blank Start */
  83. long v_bstop; /* Vertical Blank Stop */
  84. long v_dispend; /* Horizontal Display End */
  85. };
  86. struct retz3_fb_info {
  87. struct fb_info info;
  88. unsigned char *base;
  89. unsigned char *fbmem;
  90. unsigned long fbsize;
  91. volatile unsigned char *regs;
  92. unsigned long physfbmem;
  93. unsigned long physregs;
  94. int current_par_valid; /* set to 0 by memset */
  95. int blitbusy;
  96. struct display disp;
  97. struct retz3fb_par current_par;
  98. unsigned char color_table [256][3];
  99. };
  100. static char fontname[40] __initdata = { 0 };
  101. #define retz3info(info) ((struct retz3_fb_info *)(info))
  102. #define fbinfo(info) ((struct fb_info *)(info))
  103. /*
  104. * Frame Buffer Name
  105. */
  106. static char retz3fb_name[16] = "RetinaZ3";
  107. /*
  108. * A small info on how to convert XFree86 timing values into fb
  109. * timings - by Frank Neumann:
  110. *
  111. An XFree86 mode line consists of the following fields:
  112. "800x600" 50 800 856 976 1040 600 637 643 666
  113. < name > DCF HR SH1 SH2 HFL VR SV1 SV2 VFL
  114. The fields in the fb_var_screeninfo structure are:
  115. unsigned long pixclock; * pixel clock in ps (pico seconds) *
  116. unsigned long left_margin; * time from sync to picture *
  117. unsigned long right_margin; * time from picture to sync *
  118. unsigned long upper_margin; * time from sync to picture *
  119. unsigned long lower_margin;
  120. unsigned long hsync_len; * length of horizontal sync *
  121. unsigned long vsync_len; * length of vertical sync *
  122. 1) Pixelclock:
  123. xfree: in MHz
  124. fb: In Picoseconds (ps)
  125. pixclock = 1000000 / DCF
  126. 2) horizontal timings:
  127. left_margin = HFL - SH2
  128. right_margin = SH1 - HR
  129. hsync_len = SH2 - SH1
  130. 3) vertical timings:
  131. upper_margin = VFL - SV2
  132. lower_margin = SV1 - VR
  133. vsync_len = SV2 - SV1
  134. Good examples for VESA timings can be found in the XFree86 source tree,
  135. under "programs/Xserver/hw/xfree86/doc/modeDB.txt".
  136. */
  137. /*
  138. * Predefined Video Modes
  139. */
  140. static struct {
  141. const char *name;
  142. struct fb_var_screeninfo var;
  143. } retz3fb_predefined[] __initdata = {
  144. /*
  145. * NB: it is very important to adjust the pixel-clock to the color-depth.
  146. */
  147. {
  148. "640x480", { /* 640x480, 8 bpp */
  149. 640, 480, 640, 480, 0, 0, 8, 0,
  150. {0, 8, 0}, {0, 8, 0}, {0, 8, 0}, {0, 0, 0},
  151. 0, 0, -1, -1, FB_ACCEL_NONE, 39722, 48, 16, 33, 10, 96, 2,
  152. FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,FB_VMODE_NONINTERLACED
  153. }
  154. },
  155. /*
  156. ModeLine "800x600" 36 800 824 896 1024 600 601 603 625
  157. < name > DCF HR SH1 SH2 HFL VR SV1 SV2 VFL
  158. */
  159. {
  160. "800x600", { /* 800x600, 8 bpp */
  161. 800, 600, 800, 600, 0, 0, 8, 0,
  162. {0, 8, 0}, {0, 8, 0}, {0, 8, 0}, {0, 0, 0},
  163. 0, 0, -1, -1, FB_ACCELF_TEXT, 27778, 64, 24, 22, 1, 120, 2,
  164. FB_SYNC_COMP_HIGH_ACT|FB_SYNC_VERT_HIGH_ACT, FB_VMODE_NONINTERLACED
  165. }
  166. },
  167. {
  168. "800x600-60", { /* 800x600, 8 bpp */
  169. 800, 600, 800, 600, 0, 0, 8, 0,
  170. {0, 8, 0}, {0, 8, 0}, {0, 8, 0}, {0, 0, 0},
  171. 0, 0, -1, -1, FB_ACCELF_TEXT, 25000, 88, 40, 23, 1, 128, 4,
  172. FB_SYNC_COMP_HIGH_ACT|FB_SYNC_VERT_HIGH_ACT, FB_VMODE_NONINTERLACED
  173. }
  174. },
  175. {
  176. "800x600-70", { /* 800x600, 8 bpp */
  177. 800, 600, 800, 600, 0, 0, 8, 0,
  178. {0, 8, 0}, {0, 8, 0}, {0, 8, 0}, {0, 0, 0},
  179. 0, 0, -1, -1, FB_ACCELF_TEXT, 22272, 40, 24, 15, 9, 144, 12,
  180. FB_SYNC_COMP_HIGH_ACT, FB_VMODE_NONINTERLACED
  181. }
  182. },
  183. /*
  184. ModeLine "1024x768i" 45 1024 1064 1224 1264 768 777 785 817 interlace
  185. < name > DCF HR SH1 SH2 HFL VR SV1 SV2 VFL
  186. */
  187. {
  188. "1024x768i", { /* 1024x768, 8 bpp, interlaced */
  189. 1024, 768, 1024, 768, 0, 0, 8, 0,
  190. {0, 8, 0}, {0, 8, 0}, {0, 8, 0}, {0, 0, 0},
  191. 0, 0, -1, -1, FB_ACCELF_TEXT, 22222, 40, 40, 32, 9, 160, 8,
  192. FB_SYNC_COMP_HIGH_ACT|FB_SYNC_VERT_HIGH_ACT, FB_VMODE_INTERLACED
  193. }
  194. },
  195. {
  196. "1024x768", {
  197. 1024, 768, 1024, 768, 0, 0, 8, 0,
  198. {0, 8, 0}, {0, 8, 0}, {0, 8, 0}, {0, 0, 0},
  199. 0, 0, -1, -1, FB_ACCEL_NONE, 12500, 92, 112, 31, 2, 204, 4,
  200. FB_SYNC_HOR_HIGH_ACT|FB_SYNC_VERT_HIGH_ACT, FB_VMODE_NONINTERLACED
  201. }
  202. },
  203. {
  204. "640x480-16", { /* 640x480, 16 bpp */
  205. 640, 480, 640, 480, 0, 0, 16, 0,
  206. {11, 5, 0}, {5, 6, 0}, {0, 5, 0}, {0, 0, 0},
  207. 0, 0, -1, -1, 0, 38461/2, 28, 32, 12, 10, 96, 2,
  208. FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,FB_VMODE_NONINTERLACED
  209. }
  210. },
  211. {
  212. "640x480-24", { /* 640x480, 24 bpp */
  213. 640, 480, 640, 480, 0, 0, 24, 0,
  214. {8, 8, 8}, {8, 8, 8}, {8, 8, 8}, {0, 0, 0},
  215. 0, 0, -1, -1, 0, 38461/3, 28, 32, 12, 10, 96, 2,
  216. FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,FB_VMODE_NONINTERLACED
  217. }
  218. },
  219. };
  220. #define NUM_TOTAL_MODES ARRAY_SIZE(retz3fb_predefined)
  221. static struct fb_var_screeninfo retz3fb_default;
  222. static int z3fb_inverse = 0;
  223. static int z3fb_mode __initdata = 0;
  224. /*
  225. * Interface used by the world
  226. */
  227. int retz3fb_setup(char *options);
  228. static int retz3fb_get_fix(struct fb_fix_screeninfo *fix, int con,
  229. struct fb_info *info);
  230. static int retz3fb_get_var(struct fb_var_screeninfo *var, int con,
  231. struct fb_info *info);
  232. static int retz3fb_set_var(struct fb_var_screeninfo *var, int con,
  233. struct fb_info *info);
  234. static int retz3fb_get_cmap(struct fb_cmap *cmap, int kspc, int con,
  235. struct fb_info *info);
  236. static int retz3fb_setcolreg(unsigned int regno, unsigned int red,
  237. unsigned int green, unsigned int blue,
  238. unsigned int transp, struct fb_info *info);
  239. static int retz3fb_blank(int blank, struct fb_info *info);
  240. /*
  241. * Interface to the low level console driver
  242. */
  243. int retz3fb_init(void);
  244. static int z3fb_switch(int con, struct fb_info *info);
  245. static int z3fb_updatevar(int con, struct fb_info *info);
  246. /*
  247. * Text console acceleration
  248. */
  249. #ifdef FBCON_HAS_CFB8
  250. static struct display_switch fbcon_retz3_8;
  251. #endif
  252. /*
  253. * Accelerated Functions used by the low level console driver
  254. */
  255. static void retz3_bitblt(struct display *p,
  256. unsigned short curx, unsigned short cury, unsigned
  257. short destx, unsigned short desty, unsigned short
  258. width, unsigned short height, unsigned short cmd,
  259. unsigned short mask);
  260. /*
  261. * Hardware Specific Routines
  262. */
  263. static int retz3_encode_fix(struct fb_info *info,
  264. struct fb_fix_screeninfo *fix,
  265. struct retz3fb_par *par);
  266. static int retz3_decode_var(struct fb_var_screeninfo *var,
  267. struct retz3fb_par *par);
  268. static int retz3_encode_var(struct fb_var_screeninfo *var,
  269. struct retz3fb_par *par);
  270. static int retz3_getcolreg(unsigned int regno, unsigned int *red,
  271. unsigned int *green, unsigned int *blue,
  272. unsigned int *transp, struct fb_info *info);
  273. /*
  274. * Internal routines
  275. */
  276. static void retz3fb_get_par(struct fb_info *info, struct retz3fb_par *par);
  277. static void retz3fb_set_par(struct fb_info *info, struct retz3fb_par *par);
  278. static int do_fb_set_var(struct fb_info *info,
  279. struct fb_var_screeninfo *var, int isactive);
  280. static void retz3fb_set_disp(int con, struct fb_info *info);
  281. static int get_video_mode(const char *name);
  282. /* -------------------- Hardware specific routines ------------------------- */
  283. static unsigned short find_fq(unsigned int freq)
  284. {
  285. unsigned long f;
  286. long tmp;
  287. long prev = 0x7fffffff;
  288. long n2, n1 = 3;
  289. unsigned long m;
  290. unsigned short res = 0;
  291. if (freq <= 31250000)
  292. n2 = 3;
  293. else if (freq <= 62500000)
  294. n2 = 2;
  295. else if (freq <= 125000000)
  296. n2 = 1;
  297. else if (freq <= 250000000)
  298. n2 = 0;
  299. else
  300. return 0;
  301. do {
  302. f = freq >> (10 - n2);
  303. m = (f * n1) / (14318180/1024);
  304. if (m > 129)
  305. break;
  306. tmp = (((m * 14318180) >> n2) / n1) - freq;
  307. if (tmp < 0)
  308. tmp = -tmp;
  309. if (tmp < prev) {
  310. prev = tmp;
  311. res = (((n2 << 5) | (n1-2)) << 8) | (m-2);
  312. }
  313. } while ( (++n1) <= 21);
  314. return res;
  315. }
  316. static int retz3_set_video(struct fb_info *info,
  317. struct fb_var_screeninfo *var,
  318. struct retz3fb_par *par)
  319. {
  320. volatile unsigned char *regs = retz3info(info)->regs;
  321. unsigned int freq;
  322. int xres, hfront, hsync, hback;
  323. int yres, vfront, vsync, vback;
  324. unsigned char tmp;
  325. unsigned short best_freq;
  326. struct display_data data;
  327. short clocksel = 0; /* Apparantly this is always zero */
  328. int bpp = var->bits_per_pixel;
  329. /*
  330. * XXX
  331. */
  332. if (bpp == 24)
  333. return 0;
  334. if ((bpp != 8) && (bpp != 16) && (bpp != 24))
  335. return -EFAULT;
  336. par->xoffset = 0;
  337. par->yoffset = 0;
  338. xres = var->xres * bpp / 4;
  339. hfront = var->right_margin * bpp / 4;
  340. hsync = var->hsync_len * bpp / 4;
  341. hback = var->left_margin * bpp / 4;
  342. if (var->vmode & FB_VMODE_DOUBLE)
  343. {
  344. yres = var->yres * 2;
  345. vfront = var->lower_margin * 2;
  346. vsync = var->vsync_len * 2;
  347. vback = var->upper_margin * 2;
  348. }
  349. else if (var->vmode & FB_VMODE_INTERLACED)
  350. {
  351. yres = (var->yres + 1) / 2;
  352. vfront = (var->lower_margin + 1) / 2;
  353. vsync = (var->vsync_len + 1) / 2;
  354. vback = (var->upper_margin + 1) / 2;
  355. }
  356. else
  357. {
  358. yres = var->yres; /* -1 ? */
  359. vfront = var->lower_margin;
  360. vsync = var->vsync_len;
  361. vback = var->upper_margin;
  362. }
  363. data.h_total = (hback / 8) + (xres / 8)
  364. + (hfront / 8) + (hsync / 8) - 1 /* + 1 */;
  365. data.h_dispend = ((xres + bpp - 1)/ 8) - 1;
  366. data.h_bstart = xres / 8 - 1 /* + 1 */;
  367. data.h_bstop = data.h_total+1 + 2 + 1;
  368. data.h_sstart = (xres / 8) + (hfront / 8) + 1;
  369. data.h_sstop = (xres / 8) + (hfront / 8) + (hsync / 8) + 1;
  370. data.v_total = yres + vfront + vsync + vback - 1;
  371. data.v_dispend = yres - 1;
  372. data.v_bstart = yres - 1;
  373. data.v_bstop = data.v_total;
  374. data.v_sstart = yres + vfront - 1 - 2;
  375. data.v_sstop = yres + vfront + vsync - 1;
  376. #if 0 /* testing */
  377. printk("HBS: %i\n", data.h_bstart);
  378. printk("HSS: %i\n", data.h_sstart);
  379. printk("HSE: %i\n", data.h_sstop);
  380. printk("HBE: %i\n", data.h_bstop);
  381. printk("HT: %i\n", data.h_total);
  382. printk("hsync: %i\n", hsync);
  383. printk("hfront: %i\n", hfront);
  384. printk("hback: %i\n", hback);
  385. printk("VBS: %i\n", data.v_bstart);
  386. printk("VSS: %i\n", data.v_sstart);
  387. printk("VSE: %i\n", data.v_sstop);
  388. printk("VBE: %i\n", data.v_bstop);
  389. printk("VT: %i\n", data.v_total);
  390. printk("vsync: %i\n", vsync);
  391. printk("vfront: %i\n", vfront);
  392. printk("vback: %i\n", vback);
  393. #endif
  394. if (data.v_total >= 1024)
  395. printk(KERN_ERR "MAYDAY: v_total >= 1024; bailing out!\n");
  396. reg_w(regs, GREG_MISC_OUTPUT_W, 0xe3 | ((clocksel & 3) * 0x04));
  397. reg_w(regs, GREG_FEATURE_CONTROL_W, 0x00);
  398. seq_w(regs, SEQ_RESET, 0x00);
  399. seq_w(regs, SEQ_RESET, 0x03); /* reset sequencer logic */
  400. /*
  401. * CLOCKING_MODE bits:
  402. * 2: This one is only set for certain text-modes, wonder if
  403. * it may be for EGA-lines? (it was referred to as CLKDIV2)
  404. * (The CL drivers sets it to 0x21 with the comment:
  405. * FullBandwidth (video off) and 8/9 dot clock)
  406. */
  407. seq_w(regs, SEQ_CLOCKING_MODE, 0x01 | 0x00 /* 0x08 */);
  408. seq_w(regs, SEQ_MAP_MASK, 0x0f); /* enable writing to plane 0-3 */
  409. seq_w(regs, SEQ_CHAR_MAP_SELECT, 0x00); /* doesn't matter in gfx-mode */
  410. seq_w(regs, SEQ_MEMORY_MODE, 0x06); /* CL driver says 0x0e for 256 col mode*/
  411. seq_w(regs, SEQ_RESET, 0x01);
  412. seq_w(regs, SEQ_RESET, 0x03);
  413. seq_w(regs, SEQ_EXTENDED_ENABLE, 0x05);
  414. seq_w(regs, SEQ_CURSOR_CONTROL, 0x00); /* disable cursor */
  415. seq_w(regs, SEQ_PRIM_HOST_OFF_HI, 0x00);
  416. seq_w(regs, SEQ_PRIM_HOST_OFF_HI, 0x00);
  417. seq_w(regs, SEQ_LINEAR_0, 0x4a);
  418. seq_w(regs, SEQ_LINEAR_1, 0x00);
  419. seq_w(regs, SEQ_SEC_HOST_OFF_HI, 0x00);
  420. seq_w(regs, SEQ_SEC_HOST_OFF_LO, 0x00);
  421. seq_w(regs, SEQ_EXTENDED_MEM_ENA, 0x3 | 0x4 | 0x10 | 0x40);
  422. /*
  423. * The lower 4 bits (0-3) are used to set the font-width for
  424. * text-mode - DON'T try to set this for gfx-mode.
  425. */
  426. seq_w(regs, SEQ_EXT_CLOCK_MODE, 0x10);
  427. seq_w(regs, SEQ_EXT_VIDEO_ADDR, 0x03);
  428. /*
  429. * Extended Pixel Control:
  430. * bit 0: text-mode=0, gfx-mode=1 (Graphics Byte ?)
  431. * bit 1: (Packed/Nibble Pixel Format ?)
  432. * bit 4-5: depth, 0=1-8bpp, 1=9-16bpp, 2=17-24bpp
  433. */
  434. seq_w(regs, SEQ_EXT_PIXEL_CNTL, 0x01 | (((bpp / 8) - 1) << 4));
  435. seq_w(regs, SEQ_BUS_WIDTH_FEEDB, 0x04);
  436. seq_w(regs, SEQ_COLOR_EXP_WFG, 0x01);
  437. seq_w(regs, SEQ_COLOR_EXP_WBG, 0x00);
  438. seq_w(regs, SEQ_EXT_RW_CONTROL, 0x00);
  439. seq_w(regs, SEQ_MISC_FEATURE_SEL, (0x51 | (clocksel & 8)));
  440. seq_w(regs, SEQ_COLOR_KEY_CNTL, 0x40);
  441. seq_w(regs, SEQ_COLOR_KEY_MATCH0, 0x00);
  442. seq_w(regs, SEQ_COLOR_KEY_MATCH1, 0x00);
  443. seq_w(regs, SEQ_COLOR_KEY_MATCH2, 0x00);
  444. seq_w(regs, SEQ_CRC_CONTROL, 0x00);
  445. seq_w(regs, SEQ_PERF_SELECT, 0x10);
  446. seq_w(regs, SEQ_ACM_APERTURE_1, 0x00);
  447. seq_w(regs, SEQ_ACM_APERTURE_2, 0x30);
  448. seq_w(regs, SEQ_ACM_APERTURE_3, 0x00);
  449. seq_w(regs, SEQ_MEMORY_MAP_CNTL, 0x03);
  450. /* unlock register CRT0..CRT7 */
  451. crt_w(regs, CRT_END_VER_RETR, (data.v_sstop & 0x0f) | 0x20);
  452. /* Zuerst zu schreibende Werte nur per printk ausgeben */
  453. DEBUG printk("CRT_HOR_TOTAL: %ld\n", data.h_total);
  454. crt_w(regs, CRT_HOR_TOTAL, data.h_total & 0xff);
  455. DEBUG printk("CRT_HOR_DISP_ENA_END: %ld\n", data.h_dispend);
  456. crt_w(regs, CRT_HOR_DISP_ENA_END, (data.h_dispend) & 0xff);
  457. DEBUG printk("CRT_START_HOR_BLANK: %ld\n", data.h_bstart);
  458. crt_w(regs, CRT_START_HOR_BLANK, data.h_bstart & 0xff);
  459. DEBUG printk("CRT_END_HOR_BLANK: 128+%ld\n", data.h_bstop % 32);
  460. crt_w(regs, CRT_END_HOR_BLANK, 0x80 | (data.h_bstop & 0x1f));
  461. DEBUG printk("CRT_START_HOR_RETR: %ld\n", data.h_sstart);
  462. crt_w(regs, CRT_START_HOR_RETR, data.h_sstart & 0xff);
  463. tmp = (data.h_sstop & 0x1f);
  464. if (data.h_bstop & 0x20)
  465. tmp |= 0x80;
  466. DEBUG printk("CRT_END_HOR_RETR: %d\n", tmp);
  467. crt_w(regs, CRT_END_HOR_RETR, tmp);
  468. DEBUG printk("CRT_VER_TOTAL: %ld\n", data.v_total & 0xff);
  469. crt_w(regs, CRT_VER_TOTAL, (data.v_total & 0xff));
  470. tmp = 0x10; /* LineCompare bit #9 */
  471. if (data.v_total & 256)
  472. tmp |= 0x01;
  473. if (data.v_dispend & 256)
  474. tmp |= 0x02;
  475. if (data.v_sstart & 256)
  476. tmp |= 0x04;
  477. if (data.v_bstart & 256)
  478. tmp |= 0x08;
  479. if (data.v_total & 512)
  480. tmp |= 0x20;
  481. if (data.v_dispend & 512)
  482. tmp |= 0x40;
  483. if (data.v_sstart & 512)
  484. tmp |= 0x80;
  485. DEBUG printk("CRT_OVERFLOW: %d\n", tmp);
  486. crt_w(regs, CRT_OVERFLOW, tmp);
  487. crt_w(regs, CRT_PRESET_ROW_SCAN, 0x00); /* not CL !!! */
  488. tmp = 0x40; /* LineCompare bit #8 */
  489. if (data.v_bstart & 512)
  490. tmp |= 0x20;
  491. if (var->vmode & FB_VMODE_DOUBLE)
  492. tmp |= 0x80;
  493. DEBUG printk("CRT_MAX_SCAN_LINE: %d\n", tmp);
  494. crt_w(regs, CRT_MAX_SCAN_LINE, tmp);
  495. crt_w(regs, CRT_CURSOR_START, 0x00);
  496. crt_w(regs, CRT_CURSOR_END, 8 & 0x1f); /* font height */
  497. crt_w(regs, CRT_START_ADDR_HIGH, 0x00);
  498. crt_w(regs, CRT_START_ADDR_LOW, 0x00);
  499. crt_w(regs, CRT_CURSOR_LOC_HIGH, 0x00);
  500. crt_w(regs, CRT_CURSOR_LOC_LOW, 0x00);
  501. DEBUG printk("CRT_START_VER_RETR: %ld\n", data.v_sstart & 0xff);
  502. crt_w(regs, CRT_START_VER_RETR, (data.v_sstart & 0xff));
  503. #if 1
  504. /* 5 refresh cycles per scanline */
  505. DEBUG printk("CRT_END_VER_RETR: 64+32+%ld\n", data.v_sstop % 16);
  506. crt_w(regs, CRT_END_VER_RETR, ((data.v_sstop & 0x0f) | 0x40 | 0x20));
  507. #else
  508. DEBUG printk("CRT_END_VER_RETR: 128+32+%ld\n", data.v_sstop % 16);
  509. crt_w(regs, CRT_END_VER_RETR, ((data.v_sstop & 0x0f) | 128 | 32));
  510. #endif
  511. DEBUG printk("CRT_VER_DISP_ENA_END: %ld\n", data.v_dispend & 0xff);
  512. crt_w(regs, CRT_VER_DISP_ENA_END, (data.v_dispend & 0xff));
  513. DEBUG printk("CRT_START_VER_BLANK: %ld\n", data.v_bstart & 0xff);
  514. crt_w(regs, CRT_START_VER_BLANK, (data.v_bstart & 0xff));
  515. DEBUG printk("CRT_END_VER_BLANK: %ld\n", data.v_bstop & 0xff);
  516. crt_w(regs, CRT_END_VER_BLANK, (data.v_bstop & 0xff));
  517. DEBUG printk("CRT_MODE_CONTROL: 0xe3\n");
  518. crt_w(regs, CRT_MODE_CONTROL, 0xe3);
  519. DEBUG printk("CRT_LINE_COMPARE: 0xff\n");
  520. crt_w(regs, CRT_LINE_COMPARE, 0xff);
  521. tmp = (var->xres_virtual / 8) * (bpp / 8);
  522. crt_w(regs, CRT_OFFSET, tmp);
  523. crt_w(regs, CRT_UNDERLINE_LOC, 0x07); /* probably font-height - 1 */
  524. tmp = 0x20; /* Enable extended end bits */
  525. if (data.h_total & 0x100)
  526. tmp |= 0x01;
  527. if ((data.h_dispend) & 0x100)
  528. tmp |= 0x02;
  529. if (data.h_bstart & 0x100)
  530. tmp |= 0x04;
  531. if (data.h_sstart & 0x100)
  532. tmp |= 0x08;
  533. if (var->vmode & FB_VMODE_INTERLACED)
  534. tmp |= 0x10;
  535. DEBUG printk("CRT_EXT_HOR_TIMING1: %d\n", tmp);
  536. crt_w(regs, CRT_EXT_HOR_TIMING1, tmp);
  537. tmp = 0x00;
  538. if (((var->xres_virtual / 8) * (bpp / 8)) & 0x100)
  539. tmp |= 0x10;
  540. crt_w(regs, CRT_EXT_START_ADDR, tmp);
  541. tmp = 0x00;
  542. if (data.h_total & 0x200)
  543. tmp |= 0x01;
  544. if ((data.h_dispend) & 0x200)
  545. tmp |= 0x02;
  546. if (data.h_bstart & 0x200)
  547. tmp |= 0x04;
  548. if (data.h_sstart & 0x200)
  549. tmp |= 0x08;
  550. tmp |= ((data.h_bstop & 0xc0) >> 2);
  551. tmp |= ((data.h_sstop & 0x60) << 1);
  552. crt_w(regs, CRT_EXT_HOR_TIMING2, tmp);
  553. DEBUG printk("CRT_EXT_HOR_TIMING2: %d\n", tmp);
  554. tmp = 0x10; /* Line compare bit 10 */
  555. if (data.v_total & 0x400)
  556. tmp |= 0x01;
  557. if ((data.v_dispend) & 0x400)
  558. tmp |= 0x02;
  559. if (data.v_bstart & 0x400)
  560. tmp |= 0x04;
  561. if (data.v_sstart & 0x400)
  562. tmp |= 0x08;
  563. tmp |= ((data.v_bstop & 0x300) >> 3);
  564. if (data.v_sstop & 0x10)
  565. tmp |= 0x80;
  566. crt_w(regs, CRT_EXT_VER_TIMING, tmp);
  567. DEBUG printk("CRT_EXT_VER_TIMING: %d\n", tmp);
  568. crt_w(regs, CRT_MONITOR_POWER, 0x00);
  569. /*
  570. * Convert from ps to Hz.
  571. */
  572. freq = 2000000000 / var->pixclock;
  573. freq = freq * 500;
  574. best_freq = find_fq(freq);
  575. pll_w(regs, 0x02, best_freq);
  576. best_freq = find_fq(61000000);
  577. pll_w(regs, 0x0a, best_freq);
  578. pll_w(regs, 0x0e, 0x22);
  579. gfx_w(regs, GFX_SET_RESET, 0x00);
  580. gfx_w(regs, GFX_ENABLE_SET_RESET, 0x00);
  581. gfx_w(regs, GFX_COLOR_COMPARE, 0x00);
  582. gfx_w(regs, GFX_DATA_ROTATE, 0x00);
  583. gfx_w(regs, GFX_READ_MAP_SELECT, 0x00);
  584. gfx_w(regs, GFX_GRAPHICS_MODE, 0x00);
  585. gfx_w(regs, GFX_MISC, 0x05);
  586. gfx_w(regs, GFX_COLOR_XCARE, 0x0f);
  587. gfx_w(regs, GFX_BITMASK, 0xff);
  588. reg_r(regs, ACT_ADDRESS_RESET);
  589. attr_w(regs, ACT_PALETTE0 , 0x00);
  590. attr_w(regs, ACT_PALETTE1 , 0x01);
  591. attr_w(regs, ACT_PALETTE2 , 0x02);
  592. attr_w(regs, ACT_PALETTE3 , 0x03);
  593. attr_w(regs, ACT_PALETTE4 , 0x04);
  594. attr_w(regs, ACT_PALETTE5 , 0x05);
  595. attr_w(regs, ACT_PALETTE6 , 0x06);
  596. attr_w(regs, ACT_PALETTE7 , 0x07);
  597. attr_w(regs, ACT_PALETTE8 , 0x08);
  598. attr_w(regs, ACT_PALETTE9 , 0x09);
  599. attr_w(regs, ACT_PALETTE10, 0x0a);
  600. attr_w(regs, ACT_PALETTE11, 0x0b);
  601. attr_w(regs, ACT_PALETTE12, 0x0c);
  602. attr_w(regs, ACT_PALETTE13, 0x0d);
  603. attr_w(regs, ACT_PALETTE14, 0x0e);
  604. attr_w(regs, ACT_PALETTE15, 0x0f);
  605. reg_r(regs, ACT_ADDRESS_RESET);
  606. attr_w(regs, ACT_ATTR_MODE_CNTL, 0x09); /* 0x01 for CL */
  607. attr_w(regs, ACT_OVERSCAN_COLOR, 0x00);
  608. attr_w(regs, ACT_COLOR_PLANE_ENA, 0x0f);
  609. attr_w(regs, ACT_HOR_PEL_PANNING, 0x00);
  610. attr_w(regs, ACT_COLOR_SELECT, 0x00);
  611. reg_r(regs, ACT_ADDRESS_RESET);
  612. reg_w(regs, ACT_DATA, 0x20);
  613. reg_w(regs, VDAC_MASK, 0xff);
  614. /*
  615. * Extended palette addressing ???
  616. */
  617. switch (bpp){
  618. case 8:
  619. reg_w(regs, 0x83c6, 0x00);
  620. break;
  621. case 16:
  622. reg_w(regs, 0x83c6, 0x60);
  623. break;
  624. case 24:
  625. reg_w(regs, 0x83c6, 0xe0);
  626. break;
  627. default:
  628. printk(KERN_INFO "Illegal color-depth: %i\n", bpp);
  629. }
  630. reg_w(regs, VDAC_ADDRESS, 0x00);
  631. seq_w(regs, SEQ_MAP_MASK, 0x0f );
  632. return 0;
  633. }
  634. /*
  635. * This function should fill in the `fix' structure based on the
  636. * values in the `par' structure.
  637. */
  638. static int retz3_encode_fix(struct fb_info *info,
  639. struct fb_fix_screeninfo *fix,
  640. struct retz3fb_par *par)
  641. {
  642. struct retz3_fb_info *zinfo = retz3info(info);
  643. memset(fix, 0, sizeof(struct fb_fix_screeninfo));
  644. strcpy(fix->id, retz3fb_name);
  645. fix->smem_start = zinfo->physfbmem;
  646. fix->smem_len = zinfo->fbsize;
  647. fix->mmio_start = zinfo->physregs;
  648. fix->mmio_len = 0x00c00000;
  649. fix->type = FB_TYPE_PACKED_PIXELS;
  650. fix->type_aux = 0;
  651. if (par->bpp == 8)
  652. fix->visual = FB_VISUAL_PSEUDOCOLOR;
  653. else
  654. fix->visual = FB_VISUAL_TRUECOLOR;
  655. fix->xpanstep = 0;
  656. fix->ypanstep = 0;
  657. fix->ywrapstep = 0;
  658. fix->line_length = 0;
  659. fix->accel = FB_ACCEL_NCR_77C32BLT;
  660. return 0;
  661. }
  662. /*
  663. * Get the video params out of `var'. If a value doesn't fit, round
  664. * it up, if it's too big, return -EINVAL.
  665. */
  666. static int retz3_decode_var(struct fb_var_screeninfo *var,
  667. struct retz3fb_par *par)
  668. {
  669. par->xres = var->xres;
  670. par->yres = var->yres;
  671. par->xres_vir = var->xres_virtual;
  672. par->yres_vir = var->yres_virtual;
  673. par->bpp = var->bits_per_pixel;
  674. par->pixclock = var->pixclock;
  675. par->vmode = var->vmode;
  676. par->red = var->red;
  677. par->green = var->green;
  678. par->blue = var->blue;
  679. par->transp = var->transp;
  680. par->left_margin = var->left_margin;
  681. par->right_margin = var->right_margin;
  682. par->upper_margin = var->upper_margin;
  683. par->lower_margin = var->lower_margin;
  684. par->hsync_len = var->hsync_len;
  685. par->vsync_len = var->vsync_len;
  686. if (var->accel_flags & FB_ACCELF_TEXT)
  687. par->accel = FB_ACCELF_TEXT;
  688. else
  689. par->accel = 0;
  690. return 0;
  691. }
  692. /*
  693. * Fill the `var' structure based on the values in `par' and maybe
  694. * other values read out of the hardware.
  695. */
  696. static int retz3_encode_var(struct fb_var_screeninfo *var,
  697. struct retz3fb_par *par)
  698. {
  699. memset(var, 0, sizeof(struct fb_var_screeninfo));
  700. var->xres = par->xres;
  701. var->yres = par->yres;
  702. var->xres_virtual = par->xres_vir;
  703. var->yres_virtual = par->yres_vir;
  704. var->xoffset = 0;
  705. var->yoffset = 0;
  706. var->bits_per_pixel = par->bpp;
  707. var->grayscale = 0;
  708. var->red = par->red;
  709. var->green = par->green;
  710. var->blue = par->blue;
  711. var->transp = par->transp;
  712. var->nonstd = 0;
  713. var->activate = 0;
  714. var->height = -1;
  715. var->width = -1;
  716. var->accel_flags = (par->accel && par->bpp == 8) ? FB_ACCELF_TEXT : 0;
  717. var->pixclock = par->pixclock;
  718. var->sync = 0; /* ??? */
  719. var->left_margin = par->left_margin;
  720. var->right_margin = par->right_margin;
  721. var->upper_margin = par->upper_margin;
  722. var->lower_margin = par->lower_margin;
  723. var->hsync_len = par->hsync_len;
  724. var->vsync_len = par->vsync_len;
  725. var->vmode = par->vmode;
  726. return 0;
  727. }
  728. /*
  729. * Set a single color register. Return != 0 for invalid regno.
  730. */
  731. static int retz3fb_setcolreg(unsigned int regno, unsigned int red,
  732. unsigned int green, unsigned int blue,
  733. unsigned int transp, struct fb_info *info)
  734. {
  735. struct retz3_fb_info *zinfo = retz3info(info);
  736. volatile unsigned char *regs = zinfo->regs;
  737. /* We'll get to this */
  738. if (regno > 255)
  739. return 1;
  740. red >>= 10;
  741. green >>= 10;
  742. blue >>= 10;
  743. zinfo->color_table[regno][0] = red;
  744. zinfo->color_table[regno][1] = green;
  745. zinfo->color_table[regno][2] = blue;
  746. reg_w(regs, VDAC_ADDRESS_W, regno);
  747. reg_w(regs, VDAC_DATA, red);
  748. reg_w(regs, VDAC_DATA, green);
  749. reg_w(regs, VDAC_DATA, blue);
  750. return 0;
  751. }
  752. /*
  753. * Read a single color register and split it into
  754. * colors/transparent. Return != 0 for invalid regno.
  755. */
  756. static int retz3_getcolreg(unsigned int regno, unsigned int *red,
  757. unsigned int *green, unsigned int *blue,
  758. unsigned int *transp, struct fb_info *info)
  759. {
  760. struct retz3_fb_info *zinfo = retz3info(info);
  761. int t;
  762. if (regno > 255)
  763. return 1;
  764. t = zinfo->color_table[regno][0];
  765. *red = (t<<10) | (t<<4) | (t>>2);
  766. t = zinfo->color_table[regno][1];
  767. *green = (t<<10) | (t<<4) | (t>>2);
  768. t = zinfo->color_table[regno][2];
  769. *blue = (t<<10) | (t<<4) | (t>>2);
  770. *transp = 0;
  771. return 0;
  772. }
  773. static inline void retz3_busy(struct display *p)
  774. {
  775. struct retz3_fb_info *zinfo = retz3info(p->fb_info);
  776. volatile unsigned char *acm = zinfo->base + ACM_OFFSET;
  777. unsigned char blt_status;
  778. if (zinfo->blitbusy) {
  779. do{
  780. blt_status = *((acm) + (ACM_START_STATUS + 2));
  781. }while ((blt_status & 1) == 0);
  782. zinfo->blitbusy = 0;
  783. }
  784. }
  785. static void retz3_bitblt (struct display *p,
  786. unsigned short srcx, unsigned short srcy,
  787. unsigned short destx, unsigned short desty,
  788. unsigned short width, unsigned short height,
  789. unsigned short cmd, unsigned short mask)
  790. {
  791. struct fb_var_screeninfo *var = &p->var;
  792. struct retz3_fb_info *zinfo = retz3info(p->fb_info);
  793. volatile unsigned long *acm = (unsigned long *)(zinfo->base + ACM_OFFSET);
  794. unsigned long *pattern = (unsigned long *)(zinfo->fbmem + PAT_MEM_OFF);
  795. unsigned short mod;
  796. unsigned long tmp;
  797. unsigned long pat, src, dst;
  798. int i, xres_virtual = var->xres_virtual;
  799. short bpp = (var->bits_per_pixel & 0xff);
  800. if (bpp < 8)
  801. bpp = 8;
  802. tmp = mask | (mask << 16);
  803. retz3_busy(p);
  804. i = 0;
  805. do{
  806. *pattern++ = tmp;
  807. }while(i++ < bpp/4);
  808. tmp = cmd << 8;
  809. *(acm + ACM_RASTEROP_ROTATION/4) = tmp;
  810. mod = 0xc0c2;
  811. pat = 8 * PAT_MEM_OFF;
  812. dst = bpp * (destx + desty * xres_virtual);
  813. /*
  814. * Source is not set for clear.
  815. */
  816. if ((cmd != Z3BLTclear) && (cmd != Z3BLTset)) {
  817. src = bpp * (srcx + srcy * xres_virtual);
  818. if (destx > srcx) {
  819. mod &= ~0x8000;
  820. src += bpp * (width - 1);
  821. dst += bpp * (width - 1);
  822. pat += bpp * 2;
  823. }
  824. if (desty > srcy) {
  825. mod &= ~0x4000;
  826. src += bpp * (height - 1) * xres_virtual;
  827. dst += bpp * (height - 1) * xres_virtual;
  828. pat += bpp * 4;
  829. }
  830. *(acm + ACM_SOURCE/4) = cpu_to_le32(src);
  831. }
  832. *(acm + ACM_PATTERN/4) = cpu_to_le32(pat);
  833. *(acm + ACM_DESTINATION/4) = cpu_to_le32(dst);
  834. tmp = mod << 16;
  835. *(acm + ACM_CONTROL/4) = tmp;
  836. tmp = width | (height << 16);
  837. *(acm + ACM_BITMAP_DIMENSION/4) = cpu_to_le32(tmp);
  838. *(((volatile unsigned char *)acm) + ACM_START_STATUS) = 0x00;
  839. *(((volatile unsigned char *)acm) + ACM_START_STATUS) = 0x01;
  840. zinfo->blitbusy = 1;
  841. }
  842. #if 0
  843. /*
  844. * Move cursor to x, y
  845. */
  846. static void retz3_MoveCursor (unsigned short x, unsigned short y)
  847. {
  848. /* Guess we gotta deal with the cursor at some point */
  849. }
  850. #endif
  851. /*
  852. * Fill the hardware's `par' structure.
  853. */
  854. static void retz3fb_get_par(struct fb_info *info, struct retz3fb_par *par)
  855. {
  856. struct retz3_fb_info *zinfo = retz3info(info);
  857. if (zinfo->current_par_valid)
  858. *par = zinfo->current_par;
  859. else
  860. retz3_decode_var(&retz3fb_default, par);
  861. }
  862. static void retz3fb_set_par(struct fb_info *info, struct retz3fb_par *par)
  863. {
  864. struct retz3_fb_info *zinfo = retz3info(info);
  865. zinfo->current_par = *par;
  866. zinfo->current_par_valid = 1;
  867. }
  868. static int do_fb_set_var(struct fb_info *info,
  869. struct fb_var_screeninfo *var, int isactive)
  870. {
  871. int err, activate;
  872. struct retz3fb_par par;
  873. struct retz3_fb_info *zinfo = retz3info(info);
  874. if ((err = retz3_decode_var(var, &par)))
  875. return err;
  876. activate = var->activate;
  877. /* XXX ... what to do about isactive ? */
  878. if ((var->activate & FB_ACTIVATE_MASK) == FB_ACTIVATE_NOW && isactive)
  879. retz3fb_set_par(info, &par);
  880. retz3_encode_var(var, &par);
  881. var->activate = activate;
  882. retz3_set_video(info, var, &zinfo->current_par);
  883. return 0;
  884. }
  885. /*
  886. * Get the Fixed Part of the Display
  887. */
  888. static int retz3fb_get_fix(struct fb_fix_screeninfo *fix, int con,
  889. struct fb_info *info)
  890. {
  891. struct retz3fb_par par;
  892. int error = 0;
  893. if (con == -1)
  894. retz3fb_get_par(info, &par);
  895. else
  896. error = retz3_decode_var(&fb_display[con].var, &par);
  897. return(error ? error : retz3_encode_fix(info, fix, &par));
  898. }
  899. /*
  900. * Get the User Defined Part of the Display
  901. */
  902. static int retz3fb_get_var(struct fb_var_screeninfo *var, int con,
  903. struct fb_info *info)
  904. {
  905. struct retz3fb_par par;
  906. int error = 0;
  907. if (con == -1) {
  908. retz3fb_get_par(info, &par);
  909. error = retz3_encode_var(var, &par);
  910. } else
  911. *var = fb_display[con].var;
  912. return error;
  913. }
  914. static void retz3fb_set_disp(int con, struct fb_info *info)
  915. {
  916. struct fb_fix_screeninfo fix;
  917. struct display *display;
  918. struct retz3_fb_info *zinfo = retz3info(info);
  919. if (con >= 0)
  920. display = &fb_display[con];
  921. else
  922. display = &zinfo->disp; /* used during initialization */
  923. retz3fb_get_fix(&fix, con, info);
  924. if (con == -1)
  925. con = 0;
  926. display->visual = fix.visual;
  927. display->type = fix.type;
  928. display->type_aux = fix.type_aux;
  929. display->ypanstep = fix.ypanstep;
  930. display->ywrapstep = fix.ywrapstep;
  931. display->can_soft_blank = 1;
  932. display->inverse = z3fb_inverse;
  933. /*
  934. * This seems to be about 20% faster.
  935. */
  936. display->scrollmode = SCROLL_YREDRAW;
  937. switch (display->var.bits_per_pixel) {
  938. #ifdef FBCON_HAS_CFB8
  939. case 8:
  940. if (display->var.accel_flags & FB_ACCELF_TEXT) {
  941. display->dispsw = &fbcon_retz3_8;
  942. retz3_set_video(info, &display->var, &zinfo->current_par);
  943. } else
  944. display->dispsw = &fbcon_cfb8;
  945. break;
  946. #endif
  947. #ifdef FBCON_HAS_CFB16
  948. case 16:
  949. display->dispsw = &fbcon_cfb16;
  950. break;
  951. #endif
  952. default:
  953. display->dispsw = &fbcon_dummy;
  954. break;
  955. }
  956. }
  957. /*
  958. * Set the User Defined Part of the Display
  959. */
  960. static int retz3fb_set_var(struct fb_var_screeninfo *var, int con,
  961. struct fb_info *info)
  962. {
  963. int err, oldxres, oldyres, oldvxres, oldvyres, oldbpp, oldaccel;
  964. struct display *display;
  965. struct retz3_fb_info *zinfo = retz3info(info);
  966. if (con >= 0)
  967. display = &fb_display[con];
  968. else
  969. display = &zinfo->disp; /* used during initialization */
  970. if ((err = do_fb_set_var(info, var, con == info->currcon)))
  971. return err;
  972. if ((var->activate & FB_ACTIVATE_MASK) == FB_ACTIVATE_NOW) {
  973. oldxres = display->var.xres;
  974. oldyres = display->var.yres;
  975. oldvxres = display->var.xres_virtual;
  976. oldvyres = display->var.yres_virtual;
  977. oldbpp = display->var.bits_per_pixel;
  978. oldaccel = display->var.accel_flags;
  979. display->var = *var;
  980. if (oldxres != var->xres || oldyres != var->yres ||
  981. oldvxres != var->xres_virtual ||
  982. oldvyres != var->yres_virtual ||
  983. oldbpp != var->bits_per_pixel ||
  984. oldaccel != var->accel_flags) {
  985. struct fb_fix_screeninfo fix;
  986. retz3fb_get_fix(&fix, con, info);
  987. display->visual = fix.visual;
  988. display->type = fix.type;
  989. display->type_aux = fix.type_aux;
  990. display->ypanstep = fix.ypanstep;
  991. display->ywrapstep = fix.ywrapstep;
  992. display->line_length = fix.line_length;
  993. display->can_soft_blank = 1;
  994. display->inverse = z3fb_inverse;
  995. switch (display->var.bits_per_pixel) {
  996. #ifdef FBCON_HAS_CFB8
  997. case 8:
  998. if (var->accel_flags & FB_ACCELF_TEXT) {
  999. display->dispsw = &fbcon_retz3_8;
  1000. } else
  1001. display->dispsw = &fbcon_cfb8;
  1002. break;
  1003. #endif
  1004. #ifdef FBCON_HAS_CFB16
  1005. case 16:
  1006. display->dispsw = &fbcon_cfb16;
  1007. break;
  1008. #endif
  1009. default:
  1010. display->dispsw = &fbcon_dummy;
  1011. break;
  1012. }
  1013. /*
  1014. * We still need to find a way to tell the X
  1015. * server that the video mem has been fiddled with
  1016. * so it redraws the entire screen when switching
  1017. * between X and a text console.
  1018. */
  1019. retz3_set_video(info, var, &zinfo->current_par);
  1020. if (info->changevar)
  1021. (*info->changevar)(con);
  1022. }
  1023. if (oldbpp != var->bits_per_pixel) {
  1024. if ((err = fb_alloc_cmap(&display->cmap, 0, 0)))
  1025. return err;
  1026. do_install_cmap(con, info);
  1027. }
  1028. }
  1029. return 0;
  1030. }
  1031. /*
  1032. * Get the Colormap
  1033. */
  1034. static int retz3fb_get_cmap(struct fb_cmap *cmap, int kspc, int con,
  1035. struct fb_info *info)
  1036. {
  1037. if (con == info->currcon) /* current console? */
  1038. return(fb_get_cmap(cmap, kspc, retz3_getcolreg, info));
  1039. else if (fb_display[con].cmap.len) /* non default colormap? */
  1040. fb_copy_cmap(&fb_display[con].cmap, cmap, kspc ? 0 : 2);
  1041. else
  1042. fb_copy_cmap(fb_default_cmap(1<<fb_display[con].var.bits_per_pixel),
  1043. cmap, kspc ? 0 : 2);
  1044. return 0;
  1045. }
  1046. /*
  1047. * Blank the display.
  1048. */
  1049. static int retz3fb_blank(int blank, struct fb_info *info)
  1050. {
  1051. struct retz3_fb_info *zinfo = retz3info(info);
  1052. volatile unsigned char *regs = retz3info(info)->regs;
  1053. short i;
  1054. if (blank)
  1055. for (i = 0; i < 256; i++){
  1056. reg_w(regs, VDAC_ADDRESS_W, i);
  1057. reg_w(regs, VDAC_DATA, 0);
  1058. reg_w(regs, VDAC_DATA, 0);
  1059. reg_w(regs, VDAC_DATA, 0);
  1060. }
  1061. else
  1062. for (i = 0; i < 256; i++){
  1063. reg_w(regs, VDAC_ADDRESS_W, i);
  1064. reg_w(regs, VDAC_DATA, zinfo->color_table[i][0]);
  1065. reg_w(regs, VDAC_DATA, zinfo->color_table[i][1]);
  1066. reg_w(regs, VDAC_DATA, zinfo->color_table[i][2]);
  1067. }
  1068. return 0;
  1069. }
  1070. static struct fb_ops retz3fb_ops = {
  1071. .owner = THIS_MODULE,
  1072. .fb_get_fix = retz3fb_get_fix,
  1073. .fb_get_var = retz3fb_get_var,
  1074. .fb_set_var = retz3fb_set_var,
  1075. .fb_get_cmap = retz3fb_get_cmap,
  1076. .fb_set_cmap = gen_set_cmap,
  1077. .fb_setcolreg = retz3fb_setcolreg,
  1078. .fb_blank = retz3fb_blank,
  1079. };
  1080. int __init retz3fb_setup(char *options)
  1081. {
  1082. char *this_opt;
  1083. if (!options || !*options)
  1084. return 0;
  1085. while ((this_opt = strsep(&options, ",")) != NULL) {
  1086. if (!*this_opt)
  1087. continue;
  1088. if (!strcmp(this_opt, "inverse")) {
  1089. z3fb_inverse = 1;
  1090. fb_invert_cmaps();
  1091. } else if (!strncmp(this_opt, "font:", 5)) {
  1092. strlcpy(fontname, this_opt+5, sizeof(fontname));
  1093. } else
  1094. z3fb_mode = get_video_mode(this_opt);
  1095. }
  1096. return 0;
  1097. }
  1098. /*
  1099. * Initialization
  1100. */
  1101. int __init retz3fb_init(void)
  1102. {
  1103. unsigned long board_addr, board_size;
  1104. struct zorro_dev *z = NULL;
  1105. volatile unsigned char *regs;
  1106. struct retz3fb_par par;
  1107. struct retz3_fb_info *zinfo;
  1108. struct fb_info *fb_info;
  1109. short i;
  1110. int res = -ENXIO;
  1111. while ((z = zorro_find_device(ZORRO_PROD_MACROSYSTEMS_RETINA_Z3, z))) {
  1112. board_addr = z->resource.start;
  1113. board_size = z->resource.end-z->resource.start+1;
  1114. if (!request_mem_region(board_addr, 0x0c00000,
  1115. "ncr77c32blt")) {
  1116. continue;
  1117. if (!request_mem_region(board_addr+VIDEO_MEM_OFFSET,
  1118. 0x00400000, "RAM"))
  1119. release_mem_region(board_addr, 0x00c00000);
  1120. continue;
  1121. }
  1122. if (!(zinfo = kmalloc(sizeof(struct retz3_fb_info),
  1123. GFP_KERNEL)))
  1124. return -ENOMEM;
  1125. memset(zinfo, 0, sizeof(struct retz3_fb_info));
  1126. zinfo->base = ioremap(board_addr, board_size);
  1127. zinfo->regs = zinfo->base;
  1128. zinfo->fbmem = zinfo->base + VIDEO_MEM_OFFSET;
  1129. /* Get memory size - for now we asume it's a 4MB board */
  1130. zinfo->fbsize = 0x00400000; /* 4 MB */
  1131. zinfo->physregs = board_addr;
  1132. zinfo->physfbmem = board_addr + VIDEO_MEM_OFFSET;
  1133. fb_info = fbinfo(zinfo);
  1134. for (i = 0; i < 256; i++){
  1135. for (i = 0; i < 256; i++){
  1136. zinfo->color_table[i][0] = i;
  1137. zinfo->color_table[i][1] = i;
  1138. zinfo->color_table[i][2] = i;
  1139. }
  1140. }
  1141. regs = zinfo->regs;
  1142. /* Disable hardware cursor */
  1143. seq_w(regs, SEQ_CURSOR_Y_INDEX, 0x00);
  1144. retz3fb_setcolreg (255, 56<<8, 100<<8, 160<<8, 0, fb_info);
  1145. retz3fb_setcolreg (254, 0, 0, 0, 0, fb_info);
  1146. strcpy(fb_info->modename, retz3fb_name);
  1147. fb_info->changevar = NULL;
  1148. fb_info->fbops = &retz3fb_ops;
  1149. fb_info->screen_base = zinfo->fbmem;
  1150. fb_info->disp = &zinfo->disp;
  1151. fb_info->currcon = -1;
  1152. fb_info->switch_con = &z3fb_switch;
  1153. fb_info->updatevar = &z3fb_updatevar;
  1154. fb_info->flags = FBINFO_FLAG_DEFAULT;
  1155. strlcpy(fb_info->fontname, fontname, sizeof(fb_info->fontname));
  1156. if (z3fb_mode == -1)
  1157. retz3fb_default = retz3fb_predefined[0].var;
  1158. retz3_decode_var(&retz3fb_default, &par);
  1159. retz3_encode_var(&retz3fb_default, &par);
  1160. do_fb_set_var(fb_info, &retz3fb_default, 0);
  1161. retz3fb_get_var(&zinfo->disp.var, -1, fb_info);
  1162. retz3fb_set_disp(-1, fb_info);
  1163. do_install_cmap(0, fb_info);
  1164. if (register_framebuffer(fb_info) < 0) {
  1165. iounmap(zinfo->base);
  1166. return -EINVAL;
  1167. }
  1168. printk(KERN_INFO "fb%d: %s frame buffer device, using %ldK of "
  1169. "video memory\n", fb_info->node,
  1170. fb_info->modename, zinfo->fbsize>>10);
  1171. /* FIXME: This driver cannot be unloaded yet */
  1172. res = 0;
  1173. }
  1174. return res;
  1175. }
  1176. static int z3fb_switch(int con, struct fb_info *info)
  1177. {
  1178. /* Do we have to save the colormap? */
  1179. if (fb_display[info->currcon].cmap.len)
  1180. fb_get_cmap(&fb_display[info->currcon].cmap, 1,
  1181. retz3_getcolreg, info);
  1182. do_fb_set_var(info, &fb_display[con].var, 1);
  1183. info->currcon = con;
  1184. /* Install new colormap */
  1185. do_install_cmap(con, info);
  1186. return 0;
  1187. }
  1188. /*
  1189. * Update the `var' structure (called by fbcon.c)
  1190. *
  1191. * This call looks only at yoffset and the FB_VMODE_YWRAP flag in `var'.
  1192. * Since it's called by a kernel driver, no range checking is done.
  1193. */
  1194. static int z3fb_updatevar(int con, struct fb_info *info)
  1195. {
  1196. return 0;
  1197. }
  1198. /*
  1199. * Get a Video Mode
  1200. */
  1201. static int __init get_video_mode(const char *name)
  1202. {
  1203. short i;
  1204. for (i = 0; i < NUM_TOTAL_MODES; i++)
  1205. if (!strcmp(name, retz3fb_predefined[i].name)){
  1206. retz3fb_default = retz3fb_predefined[i].var;
  1207. return i;
  1208. }
  1209. return -1;
  1210. }
  1211. #ifdef MODULE
  1212. MODULE_LICENSE("GPL");
  1213. int init_module(void)
  1214. {
  1215. return retz3fb_init();
  1216. }
  1217. #endif
  1218. /*
  1219. * Text console acceleration
  1220. */
  1221. #ifdef FBCON_HAS_CFB8
  1222. static void retz3_8_bmove(struct display *p, int sy, int sx,
  1223. int dy, int dx, int height, int width)
  1224. {
  1225. int fontwidth = fontwidth(p);
  1226. sx *= fontwidth;
  1227. dx *= fontwidth;
  1228. width *= fontwidth;
  1229. retz3_bitblt(p,
  1230. (unsigned short)sx,
  1231. (unsigned short)(sy*fontheight(p)),
  1232. (unsigned short)dx,
  1233. (unsigned short)(dy*fontheight(p)),
  1234. (unsigned short)width,
  1235. (unsigned short)(height*fontheight(p)),
  1236. Z3BLTcopy,
  1237. 0xffff);
  1238. }
  1239. static void retz3_8_clear(struct vc_data *conp, struct display *p,
  1240. int sy, int sx, int height, int width)
  1241. {
  1242. unsigned short col;
  1243. int fontwidth = fontwidth(p);
  1244. sx *= fontwidth;
  1245. width *= fontwidth;
  1246. col = attr_bgcol_ec(p, conp);
  1247. col &= 0xff;
  1248. col |= (col << 8);
  1249. retz3_bitblt(p,
  1250. (unsigned short)sx,
  1251. (unsigned short)(sy*fontheight(p)),
  1252. (unsigned short)sx,
  1253. (unsigned short)(sy*fontheight(p)),
  1254. (unsigned short)width,
  1255. (unsigned short)(height*fontheight(p)),
  1256. Z3BLTset,
  1257. col);
  1258. }
  1259. static void retz3_putc(struct vc_data *conp, struct display *p, int c,
  1260. int yy, int xx)
  1261. {
  1262. retz3_busy(p);
  1263. fbcon_cfb8_putc(conp, p, c, yy, xx);
  1264. }
  1265. static void retz3_putcs(struct vc_data *conp, struct display *p,
  1266. const unsigned short *s, int count,
  1267. int yy, int xx)
  1268. {
  1269. retz3_busy(p);
  1270. fbcon_cfb8_putcs(conp, p, s, count, yy, xx);
  1271. }
  1272. static void retz3_revc(struct display *p, int xx, int yy)
  1273. {
  1274. retz3_busy(p);
  1275. fbcon_cfb8_revc(p, xx, yy);
  1276. }
  1277. static void retz3_clear_margins(struct vc_data* conp, struct display* p,
  1278. int bottom_only)
  1279. {
  1280. retz3_busy(p);
  1281. fbcon_cfb8_clear_margins(conp, p, bottom_only);
  1282. }
  1283. static struct display_switch fbcon_retz3_8 = {
  1284. .setup = fbcon_cfb8_setup,
  1285. .bmove = retz3_8_bmove,
  1286. .clear = retz3_8_clear,
  1287. .putc = retz3_putc,
  1288. .putcs = retz3_putcs,
  1289. .revc = retz3_revc,
  1290. .clear_margins = retz3_clear_margins,
  1291. .fontwidthmask = FONTWIDTH(8)
  1292. };
  1293. #endif