matroxfb_base.c 76 KB

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  1. /*
  2. *
  3. * Hardware accelerated Matrox Millennium I, II, Mystique, G100, G200 and G400
  4. *
  5. * (c) 1998-2002 Petr Vandrovec <vandrove@vc.cvut.cz>
  6. *
  7. * Portions Copyright (c) 2001 Matrox Graphics Inc.
  8. *
  9. * Version: 1.65 2002/08/14
  10. *
  11. * MTRR stuff: 1998 Tom Rini <trini@kernel.crashing.org>
  12. *
  13. * Contributors: "menion?" <menion@mindless.com>
  14. * Betatesting, fixes, ideas
  15. *
  16. * "Kurt Garloff" <garloff@suse.de>
  17. * Betatesting, fixes, ideas, videomodes, videomodes timmings
  18. *
  19. * "Tom Rini" <trini@kernel.crashing.org>
  20. * MTRR stuff, PPC cleanups, betatesting, fixes, ideas
  21. *
  22. * "Bibek Sahu" <scorpio@dodds.net>
  23. * Access device through readb|w|l and write b|w|l
  24. * Extensive debugging stuff
  25. *
  26. * "Daniel Haun" <haund@usa.net>
  27. * Testing, hardware cursor fixes
  28. *
  29. * "Scott Wood" <sawst46+@pitt.edu>
  30. * Fixes
  31. *
  32. * "Gerd Knorr" <kraxel@goldbach.isdn.cs.tu-berlin.de>
  33. * Betatesting
  34. *
  35. * "Kelly French" <targon@hazmat.com>
  36. * "Fernando Herrera" <fherrera@eurielec.etsit.upm.es>
  37. * Betatesting, bug reporting
  38. *
  39. * "Pablo Bianucci" <pbian@pccp.com.ar>
  40. * Fixes, ideas, betatesting
  41. *
  42. * "Inaky Perez Gonzalez" <inaky@peloncho.fis.ucm.es>
  43. * Fixes, enhandcements, ideas, betatesting
  44. *
  45. * "Ryuichi Oikawa" <roikawa@rr.iiij4u.or.jp>
  46. * PPC betatesting, PPC support, backward compatibility
  47. *
  48. * "Paul Womar" <Paul@pwomar.demon.co.uk>
  49. * "Owen Waller" <O.Waller@ee.qub.ac.uk>
  50. * PPC betatesting
  51. *
  52. * "Thomas Pornin" <pornin@bolet.ens.fr>
  53. * Alpha betatesting
  54. *
  55. * "Pieter van Leuven" <pvl@iae.nl>
  56. * "Ulf Jaenicke-Roessler" <ujr@physik.phy.tu-dresden.de>
  57. * G100 testing
  58. *
  59. * "H. Peter Arvin" <hpa@transmeta.com>
  60. * Ideas
  61. *
  62. * "Cort Dougan" <cort@cs.nmt.edu>
  63. * CHRP fixes and PReP cleanup
  64. *
  65. * "Mark Vojkovich" <mvojkovi@ucsd.edu>
  66. * G400 support
  67. *
  68. * "Samuel Hocevar" <sam@via.ecp.fr>
  69. * Fixes
  70. *
  71. * "Anton Altaparmakov" <AntonA@bigfoot.com>
  72. * G400 MAX/non-MAX distinction
  73. *
  74. * "Ken Aaker" <kdaaker@rchland.vnet.ibm.com>
  75. * memtype extension (needed for GXT130P RS/6000 adapter)
  76. *
  77. * "Uns Lider" <unslider@miranda.org>
  78. * G100 PLNWT fixes
  79. *
  80. * "Denis Zaitsev" <zzz@cd-club.ru>
  81. * Fixes
  82. *
  83. * "Mike Pieper" <mike@pieper-family.de>
  84. * TVOut enhandcements, V4L2 control interface.
  85. *
  86. * "Diego Biurrun" <diego@biurrun.de>
  87. * DFP testing
  88. *
  89. * (following author is not in any relation with this code, but his code
  90. * is included in this driver)
  91. *
  92. * Based on framebuffer driver for VBE 2.0 compliant graphic boards
  93. * (c) 1998 Gerd Knorr <kraxel@cs.tu-berlin.de>
  94. *
  95. * (following author is not in any relation with this code, but his ideas
  96. * were used when writing this driver)
  97. *
  98. * FreeVBE/AF (Matrox), "Shawn Hargreaves" <shawn@talula.demon.co.uk>
  99. *
  100. */
  101. #include <linux/version.h>
  102. #define __OLD_VIDIOC_
  103. #include "matroxfb_base.h"
  104. #include "matroxfb_misc.h"
  105. #include "matroxfb_accel.h"
  106. #include "matroxfb_DAC1064.h"
  107. #include "matroxfb_Ti3026.h"
  108. #include "matroxfb_maven.h"
  109. #include "matroxfb_crtc2.h"
  110. #include "matroxfb_g450.h"
  111. #include <linux/matroxfb.h>
  112. #include <linux/interrupt.h>
  113. #include <linux/slab.h>
  114. #include <linux/uaccess.h>
  115. #ifdef CONFIG_PPC_PMAC
  116. #include <asm/machdep.h>
  117. unsigned char nvram_read_byte(int);
  118. static int default_vmode = VMODE_NVRAM;
  119. static int default_cmode = CMODE_NVRAM;
  120. #endif
  121. static void matroxfb_unregister_device(struct matrox_fb_info* minfo);
  122. /* --------------------------------------------------------------------- */
  123. /*
  124. * card parameters
  125. */
  126. /* --------------------------------------------------------------------- */
  127. static struct fb_var_screeninfo vesafb_defined = {
  128. 640,480,640,480,/* W,H, W, H (virtual) load xres,xres_virtual*/
  129. 0,0, /* virtual -> visible no offset */
  130. 8, /* depth -> load bits_per_pixel */
  131. 0, /* greyscale ? */
  132. {0,0,0}, /* R */
  133. {0,0,0}, /* G */
  134. {0,0,0}, /* B */
  135. {0,0,0}, /* transparency */
  136. 0, /* standard pixel format */
  137. FB_ACTIVATE_NOW,
  138. -1,-1,
  139. FB_ACCELF_TEXT, /* accel flags */
  140. 39721L,48L,16L,33L,10L,
  141. 96L,2L,~0, /* No sync info */
  142. FB_VMODE_NONINTERLACED,
  143. 0, {0,0,0,0,0}
  144. };
  145. /* --------------------------------------------------------------------- */
  146. static void update_crtc2(struct matrox_fb_info *minfo, unsigned int pos)
  147. {
  148. struct matroxfb_dh_fb_info *info = minfo->crtc2.info;
  149. /* Make sure that displays are compatible */
  150. if (info && (info->fbcon.var.bits_per_pixel == minfo->fbcon.var.bits_per_pixel)
  151. && (info->fbcon.var.xres_virtual == minfo->fbcon.var.xres_virtual)
  152. && (info->fbcon.var.green.length == minfo->fbcon.var.green.length)
  153. ) {
  154. switch (minfo->fbcon.var.bits_per_pixel) {
  155. case 16:
  156. case 32:
  157. pos = pos * 8;
  158. if (info->interlaced) {
  159. mga_outl(0x3C2C, pos);
  160. mga_outl(0x3C28, pos + minfo->fbcon.var.xres_virtual * minfo->fbcon.var.bits_per_pixel / 8);
  161. } else {
  162. mga_outl(0x3C28, pos);
  163. }
  164. break;
  165. }
  166. }
  167. }
  168. static void matroxfb_crtc1_panpos(struct matrox_fb_info *minfo)
  169. {
  170. if (minfo->crtc1.panpos >= 0) {
  171. unsigned long flags;
  172. int panpos;
  173. matroxfb_DAC_lock_irqsave(flags);
  174. panpos = minfo->crtc1.panpos;
  175. if (panpos >= 0) {
  176. unsigned int extvga_reg;
  177. minfo->crtc1.panpos = -1; /* No update pending anymore */
  178. extvga_reg = mga_inb(M_EXTVGA_INDEX);
  179. mga_setr(M_EXTVGA_INDEX, 0x00, panpos);
  180. if (extvga_reg != 0x00) {
  181. mga_outb(M_EXTVGA_INDEX, extvga_reg);
  182. }
  183. }
  184. matroxfb_DAC_unlock_irqrestore(flags);
  185. }
  186. }
  187. static irqreturn_t matrox_irq(int irq, void *dev_id)
  188. {
  189. u_int32_t status;
  190. int handled = 0;
  191. struct matrox_fb_info *minfo = dev_id;
  192. status = mga_inl(M_STATUS);
  193. if (status & 0x20) {
  194. mga_outl(M_ICLEAR, 0x20);
  195. minfo->crtc1.vsync.cnt++;
  196. matroxfb_crtc1_panpos(minfo);
  197. wake_up_interruptible(&minfo->crtc1.vsync.wait);
  198. handled = 1;
  199. }
  200. if (status & 0x200) {
  201. mga_outl(M_ICLEAR, 0x200);
  202. minfo->crtc2.vsync.cnt++;
  203. wake_up_interruptible(&minfo->crtc2.vsync.wait);
  204. handled = 1;
  205. }
  206. return IRQ_RETVAL(handled);
  207. }
  208. int matroxfb_enable_irq(struct matrox_fb_info *minfo, int reenable)
  209. {
  210. u_int32_t bm;
  211. if (minfo->devflags.accelerator == FB_ACCEL_MATROX_MGAG400)
  212. bm = 0x220;
  213. else
  214. bm = 0x020;
  215. if (!test_and_set_bit(0, &minfo->irq_flags)) {
  216. if (request_irq(minfo->pcidev->irq, matrox_irq,
  217. IRQF_SHARED, "matroxfb", minfo)) {
  218. clear_bit(0, &minfo->irq_flags);
  219. return -EINVAL;
  220. }
  221. /* Clear any pending field interrupts */
  222. mga_outl(M_ICLEAR, bm);
  223. mga_outl(M_IEN, mga_inl(M_IEN) | bm);
  224. } else if (reenable) {
  225. u_int32_t ien;
  226. ien = mga_inl(M_IEN);
  227. if ((ien & bm) != bm) {
  228. printk(KERN_DEBUG "matroxfb: someone disabled IRQ [%08X]\n", ien);
  229. mga_outl(M_IEN, ien | bm);
  230. }
  231. }
  232. return 0;
  233. }
  234. static void matroxfb_disable_irq(struct matrox_fb_info *minfo)
  235. {
  236. if (test_and_clear_bit(0, &minfo->irq_flags)) {
  237. /* Flush pending pan-at-vbl request... */
  238. matroxfb_crtc1_panpos(minfo);
  239. if (minfo->devflags.accelerator == FB_ACCEL_MATROX_MGAG400)
  240. mga_outl(M_IEN, mga_inl(M_IEN) & ~0x220);
  241. else
  242. mga_outl(M_IEN, mga_inl(M_IEN) & ~0x20);
  243. free_irq(minfo->pcidev->irq, minfo);
  244. }
  245. }
  246. int matroxfb_wait_for_sync(struct matrox_fb_info *minfo, u_int32_t crtc)
  247. {
  248. struct matrox_vsync *vs;
  249. unsigned int cnt;
  250. int ret;
  251. switch (crtc) {
  252. case 0:
  253. vs = &minfo->crtc1.vsync;
  254. break;
  255. case 1:
  256. if (minfo->devflags.accelerator != FB_ACCEL_MATROX_MGAG400) {
  257. return -ENODEV;
  258. }
  259. vs = &minfo->crtc2.vsync;
  260. break;
  261. default:
  262. return -ENODEV;
  263. }
  264. ret = matroxfb_enable_irq(minfo, 0);
  265. if (ret) {
  266. return ret;
  267. }
  268. cnt = vs->cnt;
  269. ret = wait_event_interruptible_timeout(vs->wait, cnt != vs->cnt, HZ/10);
  270. if (ret < 0) {
  271. return ret;
  272. }
  273. if (ret == 0) {
  274. matroxfb_enable_irq(minfo, 1);
  275. return -ETIMEDOUT;
  276. }
  277. return 0;
  278. }
  279. /* --------------------------------------------------------------------- */
  280. static void matrox_pan_var(struct matrox_fb_info *minfo,
  281. struct fb_var_screeninfo *var)
  282. {
  283. unsigned int pos;
  284. unsigned short p0, p1, p2;
  285. unsigned int p3;
  286. int vbl;
  287. unsigned long flags;
  288. CRITFLAGS
  289. DBG(__func__)
  290. if (minfo->dead)
  291. return;
  292. minfo->fbcon.var.xoffset = var->xoffset;
  293. minfo->fbcon.var.yoffset = var->yoffset;
  294. pos = (minfo->fbcon.var.yoffset * minfo->fbcon.var.xres_virtual + minfo->fbcon.var.xoffset) * minfo->curr.final_bppShift / 32;
  295. pos += minfo->curr.ydstorg.chunks;
  296. p0 = minfo->hw.CRTC[0x0D] = pos & 0xFF;
  297. p1 = minfo->hw.CRTC[0x0C] = (pos & 0xFF00) >> 8;
  298. p2 = minfo->hw.CRTCEXT[0] = (minfo->hw.CRTCEXT[0] & 0xB0) | ((pos >> 16) & 0x0F) | ((pos >> 14) & 0x40);
  299. p3 = minfo->hw.CRTCEXT[8] = pos >> 21;
  300. /* FB_ACTIVATE_VBL and we can acquire interrupts? Honor FB_ACTIVATE_VBL then... */
  301. vbl = (var->activate & FB_ACTIVATE_VBL) && (matroxfb_enable_irq(minfo, 0) == 0);
  302. CRITBEGIN
  303. matroxfb_DAC_lock_irqsave(flags);
  304. mga_setr(M_CRTC_INDEX, 0x0D, p0);
  305. mga_setr(M_CRTC_INDEX, 0x0C, p1);
  306. if (minfo->devflags.support32MB)
  307. mga_setr(M_EXTVGA_INDEX, 0x08, p3);
  308. if (vbl) {
  309. minfo->crtc1.panpos = p2;
  310. } else {
  311. /* Abort any pending change */
  312. minfo->crtc1.panpos = -1;
  313. mga_setr(M_EXTVGA_INDEX, 0x00, p2);
  314. }
  315. matroxfb_DAC_unlock_irqrestore(flags);
  316. update_crtc2(minfo, pos);
  317. CRITEND
  318. }
  319. static void matroxfb_remove(struct matrox_fb_info *minfo, int dummy)
  320. {
  321. /* Currently we are holding big kernel lock on all dead & usecount updates.
  322. * Destroy everything after all users release it. Especially do not unregister
  323. * framebuffer and iounmap memory, neither fbmem nor fbcon-cfb* does not check
  324. * for device unplugged when in use.
  325. * In future we should point mmio.vbase & video.vbase somewhere where we can
  326. * write data without causing too much damage...
  327. */
  328. minfo->dead = 1;
  329. if (minfo->usecount) {
  330. /* destroy it later */
  331. return;
  332. }
  333. matroxfb_unregister_device(minfo);
  334. unregister_framebuffer(&minfo->fbcon);
  335. matroxfb_g450_shutdown(minfo);
  336. #ifdef CONFIG_MTRR
  337. if (minfo->mtrr.vram_valid)
  338. mtrr_del(minfo->mtrr.vram, minfo->video.base, minfo->video.len);
  339. #endif
  340. mga_iounmap(minfo->mmio.vbase);
  341. mga_iounmap(minfo->video.vbase);
  342. release_mem_region(minfo->video.base, minfo->video.len_maximum);
  343. release_mem_region(minfo->mmio.base, 16384);
  344. kfree(minfo);
  345. }
  346. /*
  347. * Open/Release the frame buffer device
  348. */
  349. static int matroxfb_open(struct fb_info *info, int user)
  350. {
  351. struct matrox_fb_info *minfo = info2minfo(info);
  352. DBG_LOOP(__func__)
  353. if (minfo->dead) {
  354. return -ENXIO;
  355. }
  356. minfo->usecount++;
  357. if (user) {
  358. minfo->userusecount++;
  359. }
  360. return(0);
  361. }
  362. static int matroxfb_release(struct fb_info *info, int user)
  363. {
  364. struct matrox_fb_info *minfo = info2minfo(info);
  365. DBG_LOOP(__func__)
  366. if (user) {
  367. if (0 == --minfo->userusecount) {
  368. matroxfb_disable_irq(minfo);
  369. }
  370. }
  371. if (!(--minfo->usecount) && minfo->dead) {
  372. matroxfb_remove(minfo, 0);
  373. }
  374. return(0);
  375. }
  376. static int matroxfb_pan_display(struct fb_var_screeninfo *var,
  377. struct fb_info* info) {
  378. struct matrox_fb_info *minfo = info2minfo(info);
  379. DBG(__func__)
  380. matrox_pan_var(minfo, var);
  381. return 0;
  382. }
  383. static int matroxfb_get_final_bppShift(const struct matrox_fb_info *minfo,
  384. int bpp)
  385. {
  386. int bppshft2;
  387. DBG(__func__)
  388. bppshft2 = bpp;
  389. if (!bppshft2) {
  390. return 8;
  391. }
  392. if (isInterleave(minfo))
  393. bppshft2 >>= 1;
  394. if (minfo->devflags.video64bits)
  395. bppshft2 >>= 1;
  396. return bppshft2;
  397. }
  398. static int matroxfb_test_and_set_rounding(const struct matrox_fb_info *minfo,
  399. int xres, int bpp)
  400. {
  401. int over;
  402. int rounding;
  403. DBG(__func__)
  404. switch (bpp) {
  405. case 0: return xres;
  406. case 4: rounding = 128;
  407. break;
  408. case 8: rounding = 64; /* doc says 64; 32 is OK for G400 */
  409. break;
  410. case 16: rounding = 32;
  411. break;
  412. case 24: rounding = 64; /* doc says 64; 32 is OK for G400 */
  413. break;
  414. default: rounding = 16;
  415. /* on G400, 16 really does not work */
  416. if (minfo->devflags.accelerator == FB_ACCEL_MATROX_MGAG400)
  417. rounding = 32;
  418. break;
  419. }
  420. if (isInterleave(minfo)) {
  421. rounding *= 2;
  422. }
  423. over = xres % rounding;
  424. if (over)
  425. xres += rounding-over;
  426. return xres;
  427. }
  428. static int matroxfb_pitch_adjust(const struct matrox_fb_info *minfo, int xres,
  429. int bpp)
  430. {
  431. const int* width;
  432. int xres_new;
  433. DBG(__func__)
  434. if (!bpp) return xres;
  435. width = minfo->capable.vxres;
  436. if (minfo->devflags.precise_width) {
  437. while (*width) {
  438. if ((*width >= xres) && (matroxfb_test_and_set_rounding(minfo, *width, bpp) == *width)) {
  439. break;
  440. }
  441. width++;
  442. }
  443. xres_new = *width;
  444. } else {
  445. xres_new = matroxfb_test_and_set_rounding(minfo, xres, bpp);
  446. }
  447. return xres_new;
  448. }
  449. static int matroxfb_get_cmap_len(struct fb_var_screeninfo *var) {
  450. DBG(__func__)
  451. switch (var->bits_per_pixel) {
  452. case 4:
  453. return 16; /* pseudocolor... 16 entries HW palette */
  454. case 8:
  455. return 256; /* pseudocolor... 256 entries HW palette */
  456. case 16:
  457. return 16; /* directcolor... 16 entries SW palette */
  458. /* Mystique: truecolor, 16 entries SW palette, HW palette hardwired into 1:1 mapping */
  459. case 24:
  460. return 16; /* directcolor... 16 entries SW palette */
  461. /* Mystique: truecolor, 16 entries SW palette, HW palette hardwired into 1:1 mapping */
  462. case 32:
  463. return 16; /* directcolor... 16 entries SW palette */
  464. /* Mystique: truecolor, 16 entries SW palette, HW palette hardwired into 1:1 mapping */
  465. }
  466. return 16; /* return something reasonable... or panic()? */
  467. }
  468. static int matroxfb_decode_var(const struct matrox_fb_info *minfo,
  469. struct fb_var_screeninfo *var, int *visual,
  470. int *video_cmap_len, unsigned int* ydstorg)
  471. {
  472. struct RGBT {
  473. unsigned char bpp;
  474. struct {
  475. unsigned char offset,
  476. length;
  477. } red,
  478. green,
  479. blue,
  480. transp;
  481. signed char visual;
  482. };
  483. static const struct RGBT table[]= {
  484. { 8,{ 0,8},{0,8},{0,8},{ 0,0},MX_VISUAL_PSEUDOCOLOR},
  485. {15,{10,5},{5,5},{0,5},{15,1},MX_VISUAL_DIRECTCOLOR},
  486. {16,{11,5},{5,6},{0,5},{ 0,0},MX_VISUAL_DIRECTCOLOR},
  487. {24,{16,8},{8,8},{0,8},{ 0,0},MX_VISUAL_DIRECTCOLOR},
  488. {32,{16,8},{8,8},{0,8},{24,8},MX_VISUAL_DIRECTCOLOR}
  489. };
  490. struct RGBT const *rgbt;
  491. unsigned int bpp = var->bits_per_pixel;
  492. unsigned int vramlen;
  493. unsigned int memlen;
  494. DBG(__func__)
  495. switch (bpp) {
  496. case 4: if (!minfo->capable.cfb4) return -EINVAL;
  497. break;
  498. case 8: break;
  499. case 16: break;
  500. case 24: break;
  501. case 32: break;
  502. default: return -EINVAL;
  503. }
  504. *ydstorg = 0;
  505. vramlen = minfo->video.len_usable;
  506. if (var->yres_virtual < var->yres)
  507. var->yres_virtual = var->yres;
  508. if (var->xres_virtual < var->xres)
  509. var->xres_virtual = var->xres;
  510. var->xres_virtual = matroxfb_pitch_adjust(minfo, var->xres_virtual, bpp);
  511. memlen = var->xres_virtual * bpp * var->yres_virtual / 8;
  512. if (memlen > vramlen) {
  513. var->yres_virtual = vramlen * 8 / (var->xres_virtual * bpp);
  514. memlen = var->xres_virtual * bpp * var->yres_virtual / 8;
  515. }
  516. /* There is hardware bug that no line can cross 4MB boundary */
  517. /* give up for CFB24, it is impossible to easy workaround it */
  518. /* for other try to do something */
  519. if (!minfo->capable.cross4MB && (memlen > 0x400000)) {
  520. if (bpp == 24) {
  521. /* sorry */
  522. } else {
  523. unsigned int linelen;
  524. unsigned int m1 = linelen = var->xres_virtual * bpp / 8;
  525. unsigned int m2 = PAGE_SIZE; /* or 128 if you do not need PAGE ALIGNED address */
  526. unsigned int max_yres;
  527. while (m1) {
  528. int t;
  529. while (m2 >= m1) m2 -= m1;
  530. t = m1;
  531. m1 = m2;
  532. m2 = t;
  533. }
  534. m2 = linelen * PAGE_SIZE / m2;
  535. *ydstorg = m2 = 0x400000 % m2;
  536. max_yres = (vramlen - m2) / linelen;
  537. if (var->yres_virtual > max_yres)
  538. var->yres_virtual = max_yres;
  539. }
  540. }
  541. /* YDSTLEN contains only signed 16bit value */
  542. if (var->yres_virtual > 32767)
  543. var->yres_virtual = 32767;
  544. /* we must round yres/xres down, we already rounded y/xres_virtual up
  545. if it was possible. We should return -EINVAL, but I disagree */
  546. if (var->yres_virtual < var->yres)
  547. var->yres = var->yres_virtual;
  548. if (var->xres_virtual < var->xres)
  549. var->xres = var->xres_virtual;
  550. if (var->xoffset + var->xres > var->xres_virtual)
  551. var->xoffset = var->xres_virtual - var->xres;
  552. if (var->yoffset + var->yres > var->yres_virtual)
  553. var->yoffset = var->yres_virtual - var->yres;
  554. if (bpp == 16 && var->green.length == 5) {
  555. bpp--; /* an artifical value - 15 */
  556. }
  557. for (rgbt = table; rgbt->bpp < bpp; rgbt++);
  558. #define SETCLR(clr)\
  559. var->clr.offset = rgbt->clr.offset;\
  560. var->clr.length = rgbt->clr.length
  561. SETCLR(red);
  562. SETCLR(green);
  563. SETCLR(blue);
  564. SETCLR(transp);
  565. #undef SETCLR
  566. *visual = rgbt->visual;
  567. if (bpp > 8)
  568. dprintk("matroxfb: truecolor: "
  569. "size=%d:%d:%d:%d, shift=%d:%d:%d:%d\n",
  570. var->transp.length, var->red.length, var->green.length, var->blue.length,
  571. var->transp.offset, var->red.offset, var->green.offset, var->blue.offset);
  572. *video_cmap_len = matroxfb_get_cmap_len(var);
  573. dprintk(KERN_INFO "requested %d*%d/%dbpp (%d*%d)\n", var->xres, var->yres, var->bits_per_pixel,
  574. var->xres_virtual, var->yres_virtual);
  575. return 0;
  576. }
  577. static int matroxfb_setcolreg(unsigned regno, unsigned red, unsigned green,
  578. unsigned blue, unsigned transp,
  579. struct fb_info *fb_info)
  580. {
  581. struct matrox_fb_info* minfo = container_of(fb_info, struct matrox_fb_info, fbcon);
  582. DBG(__func__)
  583. /*
  584. * Set a single color register. The values supplied are
  585. * already rounded down to the hardware's capabilities
  586. * (according to the entries in the `var' structure). Return
  587. * != 0 for invalid regno.
  588. */
  589. if (regno >= minfo->curr.cmap_len)
  590. return 1;
  591. if (minfo->fbcon.var.grayscale) {
  592. /* gray = 0.30*R + 0.59*G + 0.11*B */
  593. red = green = blue = (red * 77 + green * 151 + blue * 28) >> 8;
  594. }
  595. red = CNVT_TOHW(red, minfo->fbcon.var.red.length);
  596. green = CNVT_TOHW(green, minfo->fbcon.var.green.length);
  597. blue = CNVT_TOHW(blue, minfo->fbcon.var.blue.length);
  598. transp = CNVT_TOHW(transp, minfo->fbcon.var.transp.length);
  599. switch (minfo->fbcon.var.bits_per_pixel) {
  600. case 4:
  601. case 8:
  602. mga_outb(M_DAC_REG, regno);
  603. mga_outb(M_DAC_VAL, red);
  604. mga_outb(M_DAC_VAL, green);
  605. mga_outb(M_DAC_VAL, blue);
  606. break;
  607. case 16:
  608. if (regno >= 16)
  609. break;
  610. {
  611. u_int16_t col =
  612. (red << minfo->fbcon.var.red.offset) |
  613. (green << minfo->fbcon.var.green.offset) |
  614. (blue << minfo->fbcon.var.blue.offset) |
  615. (transp << minfo->fbcon.var.transp.offset); /* for 1:5:5:5 */
  616. minfo->cmap[regno] = col | (col << 16);
  617. }
  618. break;
  619. case 24:
  620. case 32:
  621. if (regno >= 16)
  622. break;
  623. minfo->cmap[regno] =
  624. (red << minfo->fbcon.var.red.offset) |
  625. (green << minfo->fbcon.var.green.offset) |
  626. (blue << minfo->fbcon.var.blue.offset) |
  627. (transp << minfo->fbcon.var.transp.offset); /* 8:8:8:8 */
  628. break;
  629. }
  630. return 0;
  631. }
  632. static void matroxfb_init_fix(struct matrox_fb_info *minfo)
  633. {
  634. struct fb_fix_screeninfo *fix = &minfo->fbcon.fix;
  635. DBG(__func__)
  636. strcpy(fix->id,"MATROX");
  637. fix->xpanstep = 8; /* 8 for 8bpp, 4 for 16bpp, 2 for 32bpp */
  638. fix->ypanstep = 1;
  639. fix->ywrapstep = 0;
  640. fix->mmio_start = minfo->mmio.base;
  641. fix->mmio_len = minfo->mmio.len;
  642. fix->accel = minfo->devflags.accelerator;
  643. }
  644. static void matroxfb_update_fix(struct matrox_fb_info *minfo)
  645. {
  646. struct fb_fix_screeninfo *fix = &minfo->fbcon.fix;
  647. DBG(__func__)
  648. mutex_lock(&minfo->fbcon.mm_lock);
  649. fix->smem_start = minfo->video.base + minfo->curr.ydstorg.bytes;
  650. fix->smem_len = minfo->video.len_usable - minfo->curr.ydstorg.bytes;
  651. mutex_unlock(&minfo->fbcon.mm_lock);
  652. }
  653. static int matroxfb_check_var(struct fb_var_screeninfo *var, struct fb_info *info)
  654. {
  655. int err;
  656. int visual;
  657. int cmap_len;
  658. unsigned int ydstorg;
  659. struct matrox_fb_info *minfo = info2minfo(info);
  660. if (minfo->dead) {
  661. return -ENXIO;
  662. }
  663. if ((err = matroxfb_decode_var(minfo, var, &visual, &cmap_len, &ydstorg)) != 0)
  664. return err;
  665. return 0;
  666. }
  667. static int matroxfb_set_par(struct fb_info *info)
  668. {
  669. int err;
  670. int visual;
  671. int cmap_len;
  672. unsigned int ydstorg;
  673. struct fb_var_screeninfo *var;
  674. struct matrox_fb_info *minfo = info2minfo(info);
  675. DBG(__func__)
  676. if (minfo->dead) {
  677. return -ENXIO;
  678. }
  679. var = &info->var;
  680. if ((err = matroxfb_decode_var(minfo, var, &visual, &cmap_len, &ydstorg)) != 0)
  681. return err;
  682. minfo->fbcon.screen_base = vaddr_va(minfo->video.vbase) + ydstorg;
  683. matroxfb_update_fix(minfo);
  684. minfo->fbcon.fix.visual = visual;
  685. minfo->fbcon.fix.type = FB_TYPE_PACKED_PIXELS;
  686. minfo->fbcon.fix.type_aux = 0;
  687. minfo->fbcon.fix.line_length = (var->xres_virtual * var->bits_per_pixel) >> 3;
  688. {
  689. unsigned int pos;
  690. minfo->curr.cmap_len = cmap_len;
  691. ydstorg += minfo->devflags.ydstorg;
  692. minfo->curr.ydstorg.bytes = ydstorg;
  693. minfo->curr.ydstorg.chunks = ydstorg >> (isInterleave(minfo) ? 3 : 2);
  694. if (var->bits_per_pixel == 4)
  695. minfo->curr.ydstorg.pixels = ydstorg;
  696. else
  697. minfo->curr.ydstorg.pixels = (ydstorg * 8) / var->bits_per_pixel;
  698. minfo->curr.final_bppShift = matroxfb_get_final_bppShift(minfo, var->bits_per_pixel);
  699. { struct my_timming mt;
  700. struct matrox_hw_state* hw;
  701. int out;
  702. matroxfb_var2my(var, &mt);
  703. mt.crtc = MATROXFB_SRC_CRTC1;
  704. /* CRTC1 delays */
  705. switch (var->bits_per_pixel) {
  706. case 0: mt.delay = 31 + 0; break;
  707. case 16: mt.delay = 21 + 8; break;
  708. case 24: mt.delay = 17 + 8; break;
  709. case 32: mt.delay = 16 + 8; break;
  710. default: mt.delay = 31 + 8; break;
  711. }
  712. hw = &minfo->hw;
  713. down_read(&minfo->altout.lock);
  714. for (out = 0; out < MATROXFB_MAX_OUTPUTS; out++) {
  715. if (minfo->outputs[out].src == MATROXFB_SRC_CRTC1 &&
  716. minfo->outputs[out].output->compute) {
  717. minfo->outputs[out].output->compute(minfo->outputs[out].data, &mt);
  718. }
  719. }
  720. up_read(&minfo->altout.lock);
  721. minfo->crtc1.pixclock = mt.pixclock;
  722. minfo->crtc1.mnp = mt.mnp;
  723. minfo->hw_switch->init(minfo, &mt);
  724. pos = (var->yoffset * var->xres_virtual + var->xoffset) * minfo->curr.final_bppShift / 32;
  725. pos += minfo->curr.ydstorg.chunks;
  726. hw->CRTC[0x0D] = pos & 0xFF;
  727. hw->CRTC[0x0C] = (pos & 0xFF00) >> 8;
  728. hw->CRTCEXT[0] = (hw->CRTCEXT[0] & 0xF0) | ((pos >> 16) & 0x0F) | ((pos >> 14) & 0x40);
  729. hw->CRTCEXT[8] = pos >> 21;
  730. minfo->hw_switch->restore(minfo);
  731. update_crtc2(minfo, pos);
  732. down_read(&minfo->altout.lock);
  733. for (out = 0; out < MATROXFB_MAX_OUTPUTS; out++) {
  734. if (minfo->outputs[out].src == MATROXFB_SRC_CRTC1 &&
  735. minfo->outputs[out].output->program) {
  736. minfo->outputs[out].output->program(minfo->outputs[out].data);
  737. }
  738. }
  739. for (out = 0; out < MATROXFB_MAX_OUTPUTS; out++) {
  740. if (minfo->outputs[out].src == MATROXFB_SRC_CRTC1 &&
  741. minfo->outputs[out].output->start) {
  742. minfo->outputs[out].output->start(minfo->outputs[out].data);
  743. }
  744. }
  745. up_read(&minfo->altout.lock);
  746. matrox_cfbX_init(minfo);
  747. }
  748. }
  749. minfo->initialized = 1;
  750. return 0;
  751. }
  752. static int matroxfb_get_vblank(struct matrox_fb_info *minfo,
  753. struct fb_vblank *vblank)
  754. {
  755. unsigned int sts1;
  756. matroxfb_enable_irq(minfo, 0);
  757. memset(vblank, 0, sizeof(*vblank));
  758. vblank->flags = FB_VBLANK_HAVE_VCOUNT | FB_VBLANK_HAVE_VSYNC |
  759. FB_VBLANK_HAVE_VBLANK | FB_VBLANK_HAVE_HBLANK;
  760. sts1 = mga_inb(M_INSTS1);
  761. vblank->vcount = mga_inl(M_VCOUNT);
  762. /* BTW, on my PIII/450 with G400, reading M_INSTS1
  763. byte makes this call about 12% slower (1.70 vs. 2.05 us
  764. per ioctl()) */
  765. if (sts1 & 1)
  766. vblank->flags |= FB_VBLANK_HBLANKING;
  767. if (sts1 & 8)
  768. vblank->flags |= FB_VBLANK_VSYNCING;
  769. if (vblank->vcount >= minfo->fbcon.var.yres)
  770. vblank->flags |= FB_VBLANK_VBLANKING;
  771. if (test_bit(0, &minfo->irq_flags)) {
  772. vblank->flags |= FB_VBLANK_HAVE_COUNT;
  773. /* Only one writer, aligned int value...
  774. it should work without lock and without atomic_t */
  775. vblank->count = minfo->crtc1.vsync.cnt;
  776. }
  777. return 0;
  778. }
  779. static struct matrox_altout panellink_output = {
  780. .name = "Panellink output",
  781. };
  782. static int matroxfb_ioctl(struct fb_info *info,
  783. unsigned int cmd, unsigned long arg)
  784. {
  785. void __user *argp = (void __user *)arg;
  786. struct matrox_fb_info *minfo = info2minfo(info);
  787. DBG(__func__)
  788. if (minfo->dead) {
  789. return -ENXIO;
  790. }
  791. switch (cmd) {
  792. case FBIOGET_VBLANK:
  793. {
  794. struct fb_vblank vblank;
  795. int err;
  796. err = matroxfb_get_vblank(minfo, &vblank);
  797. if (err)
  798. return err;
  799. if (copy_to_user(argp, &vblank, sizeof(vblank)))
  800. return -EFAULT;
  801. return 0;
  802. }
  803. case FBIO_WAITFORVSYNC:
  804. {
  805. u_int32_t crt;
  806. if (get_user(crt, (u_int32_t __user *)arg))
  807. return -EFAULT;
  808. return matroxfb_wait_for_sync(minfo, crt);
  809. }
  810. case MATROXFB_SET_OUTPUT_MODE:
  811. {
  812. struct matroxioc_output_mode mom;
  813. struct matrox_altout *oproc;
  814. int val;
  815. if (copy_from_user(&mom, argp, sizeof(mom)))
  816. return -EFAULT;
  817. if (mom.output >= MATROXFB_MAX_OUTPUTS)
  818. return -ENXIO;
  819. down_read(&minfo->altout.lock);
  820. oproc = minfo->outputs[mom.output].output;
  821. if (!oproc) {
  822. val = -ENXIO;
  823. } else if (!oproc->verifymode) {
  824. if (mom.mode == MATROXFB_OUTPUT_MODE_MONITOR) {
  825. val = 0;
  826. } else {
  827. val = -EINVAL;
  828. }
  829. } else {
  830. val = oproc->verifymode(minfo->outputs[mom.output].data, mom.mode);
  831. }
  832. if (!val) {
  833. if (minfo->outputs[mom.output].mode != mom.mode) {
  834. minfo->outputs[mom.output].mode = mom.mode;
  835. val = 1;
  836. }
  837. }
  838. up_read(&minfo->altout.lock);
  839. if (val != 1)
  840. return val;
  841. switch (minfo->outputs[mom.output].src) {
  842. case MATROXFB_SRC_CRTC1:
  843. matroxfb_set_par(info);
  844. break;
  845. case MATROXFB_SRC_CRTC2:
  846. {
  847. struct matroxfb_dh_fb_info* crtc2;
  848. down_read(&minfo->crtc2.lock);
  849. crtc2 = minfo->crtc2.info;
  850. if (crtc2)
  851. crtc2->fbcon.fbops->fb_set_par(&crtc2->fbcon);
  852. up_read(&minfo->crtc2.lock);
  853. }
  854. break;
  855. }
  856. return 0;
  857. }
  858. case MATROXFB_GET_OUTPUT_MODE:
  859. {
  860. struct matroxioc_output_mode mom;
  861. struct matrox_altout *oproc;
  862. int val;
  863. if (copy_from_user(&mom, argp, sizeof(mom)))
  864. return -EFAULT;
  865. if (mom.output >= MATROXFB_MAX_OUTPUTS)
  866. return -ENXIO;
  867. down_read(&minfo->altout.lock);
  868. oproc = minfo->outputs[mom.output].output;
  869. if (!oproc) {
  870. val = -ENXIO;
  871. } else {
  872. mom.mode = minfo->outputs[mom.output].mode;
  873. val = 0;
  874. }
  875. up_read(&minfo->altout.lock);
  876. if (val)
  877. return val;
  878. if (copy_to_user(argp, &mom, sizeof(mom)))
  879. return -EFAULT;
  880. return 0;
  881. }
  882. case MATROXFB_SET_OUTPUT_CONNECTION:
  883. {
  884. u_int32_t tmp;
  885. int i;
  886. int changes;
  887. if (copy_from_user(&tmp, argp, sizeof(tmp)))
  888. return -EFAULT;
  889. for (i = 0; i < 32; i++) {
  890. if (tmp & (1 << i)) {
  891. if (i >= MATROXFB_MAX_OUTPUTS)
  892. return -ENXIO;
  893. if (!minfo->outputs[i].output)
  894. return -ENXIO;
  895. switch (minfo->outputs[i].src) {
  896. case MATROXFB_SRC_NONE:
  897. case MATROXFB_SRC_CRTC1:
  898. break;
  899. default:
  900. return -EBUSY;
  901. }
  902. }
  903. }
  904. if (minfo->devflags.panellink) {
  905. if (tmp & MATROXFB_OUTPUT_CONN_DFP) {
  906. if (tmp & MATROXFB_OUTPUT_CONN_SECONDARY)
  907. return -EINVAL;
  908. for (i = 0; i < MATROXFB_MAX_OUTPUTS; i++) {
  909. if (minfo->outputs[i].src == MATROXFB_SRC_CRTC2) {
  910. return -EBUSY;
  911. }
  912. }
  913. }
  914. }
  915. changes = 0;
  916. for (i = 0; i < MATROXFB_MAX_OUTPUTS; i++) {
  917. if (tmp & (1 << i)) {
  918. if (minfo->outputs[i].src != MATROXFB_SRC_CRTC1) {
  919. changes = 1;
  920. minfo->outputs[i].src = MATROXFB_SRC_CRTC1;
  921. }
  922. } else if (minfo->outputs[i].src == MATROXFB_SRC_CRTC1) {
  923. changes = 1;
  924. minfo->outputs[i].src = MATROXFB_SRC_NONE;
  925. }
  926. }
  927. if (!changes)
  928. return 0;
  929. matroxfb_set_par(info);
  930. return 0;
  931. }
  932. case MATROXFB_GET_OUTPUT_CONNECTION:
  933. {
  934. u_int32_t conn = 0;
  935. int i;
  936. for (i = 0; i < MATROXFB_MAX_OUTPUTS; i++) {
  937. if (minfo->outputs[i].src == MATROXFB_SRC_CRTC1) {
  938. conn |= 1 << i;
  939. }
  940. }
  941. if (put_user(conn, (u_int32_t __user *)arg))
  942. return -EFAULT;
  943. return 0;
  944. }
  945. case MATROXFB_GET_AVAILABLE_OUTPUTS:
  946. {
  947. u_int32_t conn = 0;
  948. int i;
  949. for (i = 0; i < MATROXFB_MAX_OUTPUTS; i++) {
  950. if (minfo->outputs[i].output) {
  951. switch (minfo->outputs[i].src) {
  952. case MATROXFB_SRC_NONE:
  953. case MATROXFB_SRC_CRTC1:
  954. conn |= 1 << i;
  955. break;
  956. }
  957. }
  958. }
  959. if (minfo->devflags.panellink) {
  960. if (conn & MATROXFB_OUTPUT_CONN_DFP)
  961. conn &= ~MATROXFB_OUTPUT_CONN_SECONDARY;
  962. if (conn & MATROXFB_OUTPUT_CONN_SECONDARY)
  963. conn &= ~MATROXFB_OUTPUT_CONN_DFP;
  964. }
  965. if (put_user(conn, (u_int32_t __user *)arg))
  966. return -EFAULT;
  967. return 0;
  968. }
  969. case MATROXFB_GET_ALL_OUTPUTS:
  970. {
  971. u_int32_t conn = 0;
  972. int i;
  973. for (i = 0; i < MATROXFB_MAX_OUTPUTS; i++) {
  974. if (minfo->outputs[i].output) {
  975. conn |= 1 << i;
  976. }
  977. }
  978. if (put_user(conn, (u_int32_t __user *)arg))
  979. return -EFAULT;
  980. return 0;
  981. }
  982. case VIDIOC_QUERYCAP:
  983. {
  984. struct v4l2_capability r;
  985. memset(&r, 0, sizeof(r));
  986. strcpy(r.driver, "matroxfb");
  987. strcpy(r.card, "Matrox");
  988. sprintf(r.bus_info, "PCI:%s", pci_name(minfo->pcidev));
  989. r.version = KERNEL_VERSION(1,0,0);
  990. r.capabilities = V4L2_CAP_VIDEO_OUTPUT;
  991. if (copy_to_user(argp, &r, sizeof(r)))
  992. return -EFAULT;
  993. return 0;
  994. }
  995. case VIDIOC_QUERYCTRL:
  996. {
  997. struct v4l2_queryctrl qctrl;
  998. int err;
  999. if (copy_from_user(&qctrl, argp, sizeof(qctrl)))
  1000. return -EFAULT;
  1001. down_read(&minfo->altout.lock);
  1002. if (!minfo->outputs[1].output) {
  1003. err = -ENXIO;
  1004. } else if (minfo->outputs[1].output->getqueryctrl) {
  1005. err = minfo->outputs[1].output->getqueryctrl(minfo->outputs[1].data, &qctrl);
  1006. } else {
  1007. err = -EINVAL;
  1008. }
  1009. up_read(&minfo->altout.lock);
  1010. if (err >= 0 &&
  1011. copy_to_user(argp, &qctrl, sizeof(qctrl)))
  1012. return -EFAULT;
  1013. return err;
  1014. }
  1015. case VIDIOC_G_CTRL:
  1016. {
  1017. struct v4l2_control ctrl;
  1018. int err;
  1019. if (copy_from_user(&ctrl, argp, sizeof(ctrl)))
  1020. return -EFAULT;
  1021. down_read(&minfo->altout.lock);
  1022. if (!minfo->outputs[1].output) {
  1023. err = -ENXIO;
  1024. } else if (minfo->outputs[1].output->getctrl) {
  1025. err = minfo->outputs[1].output->getctrl(minfo->outputs[1].data, &ctrl);
  1026. } else {
  1027. err = -EINVAL;
  1028. }
  1029. up_read(&minfo->altout.lock);
  1030. if (err >= 0 &&
  1031. copy_to_user(argp, &ctrl, sizeof(ctrl)))
  1032. return -EFAULT;
  1033. return err;
  1034. }
  1035. case VIDIOC_S_CTRL_OLD:
  1036. case VIDIOC_S_CTRL:
  1037. {
  1038. struct v4l2_control ctrl;
  1039. int err;
  1040. if (copy_from_user(&ctrl, argp, sizeof(ctrl)))
  1041. return -EFAULT;
  1042. down_read(&minfo->altout.lock);
  1043. if (!minfo->outputs[1].output) {
  1044. err = -ENXIO;
  1045. } else if (minfo->outputs[1].output->setctrl) {
  1046. err = minfo->outputs[1].output->setctrl(minfo->outputs[1].data, &ctrl);
  1047. } else {
  1048. err = -EINVAL;
  1049. }
  1050. up_read(&minfo->altout.lock);
  1051. return err;
  1052. }
  1053. }
  1054. return -ENOTTY;
  1055. }
  1056. /* 0 unblank, 1 blank, 2 no vsync, 3 no hsync, 4 off */
  1057. static int matroxfb_blank(int blank, struct fb_info *info)
  1058. {
  1059. int seq;
  1060. int crtc;
  1061. CRITFLAGS
  1062. struct matrox_fb_info *minfo = info2minfo(info);
  1063. DBG(__func__)
  1064. if (minfo->dead)
  1065. return 1;
  1066. switch (blank) {
  1067. case FB_BLANK_NORMAL: seq = 0x20; crtc = 0x00; break; /* works ??? */
  1068. case FB_BLANK_VSYNC_SUSPEND: seq = 0x20; crtc = 0x10; break;
  1069. case FB_BLANK_HSYNC_SUSPEND: seq = 0x20; crtc = 0x20; break;
  1070. case FB_BLANK_POWERDOWN: seq = 0x20; crtc = 0x30; break;
  1071. default: seq = 0x00; crtc = 0x00; break;
  1072. }
  1073. CRITBEGIN
  1074. mga_outb(M_SEQ_INDEX, 1);
  1075. mga_outb(M_SEQ_DATA, (mga_inb(M_SEQ_DATA) & ~0x20) | seq);
  1076. mga_outb(M_EXTVGA_INDEX, 1);
  1077. mga_outb(M_EXTVGA_DATA, (mga_inb(M_EXTVGA_DATA) & ~0x30) | crtc);
  1078. CRITEND
  1079. return 0;
  1080. }
  1081. static struct fb_ops matroxfb_ops = {
  1082. .owner = THIS_MODULE,
  1083. .fb_open = matroxfb_open,
  1084. .fb_release = matroxfb_release,
  1085. .fb_check_var = matroxfb_check_var,
  1086. .fb_set_par = matroxfb_set_par,
  1087. .fb_setcolreg = matroxfb_setcolreg,
  1088. .fb_pan_display =matroxfb_pan_display,
  1089. .fb_blank = matroxfb_blank,
  1090. .fb_ioctl = matroxfb_ioctl,
  1091. /* .fb_fillrect = <set by matrox_cfbX_init>, */
  1092. /* .fb_copyarea = <set by matrox_cfbX_init>, */
  1093. /* .fb_imageblit = <set by matrox_cfbX_init>, */
  1094. /* .fb_cursor = <set by matrox_cfbX_init>, */
  1095. };
  1096. #define RSDepth(X) (((X) >> 8) & 0x0F)
  1097. #define RS8bpp 0x1
  1098. #define RS15bpp 0x2
  1099. #define RS16bpp 0x3
  1100. #define RS32bpp 0x4
  1101. #define RS4bpp 0x5
  1102. #define RS24bpp 0x6
  1103. #define RSText 0x7
  1104. #define RSText8 0x8
  1105. /* 9-F */
  1106. static struct { struct fb_bitfield red, green, blue, transp; int bits_per_pixel; } colors[] = {
  1107. { { 0, 8, 0}, { 0, 8, 0}, { 0, 8, 0}, { 0, 0, 0}, 8 },
  1108. { { 10, 5, 0}, { 5, 5, 0}, { 0, 5, 0}, { 15, 1, 0}, 16 },
  1109. { { 11, 5, 0}, { 5, 6, 0}, { 0, 5, 0}, { 0, 0, 0}, 16 },
  1110. { { 16, 8, 0}, { 8, 8, 0}, { 0, 8, 0}, { 24, 8, 0}, 32 },
  1111. { { 0, 8, 0}, { 0, 8, 0}, { 0, 8, 0}, { 0, 0, 0}, 4 },
  1112. { { 16, 8, 0}, { 8, 8, 0}, { 0, 8, 0}, { 0, 0, 0}, 24 },
  1113. { { 0, 6, 0}, { 0, 6, 0}, { 0, 6, 0}, { 0, 0, 0}, 0 }, /* textmode with (default) VGA8x16 */
  1114. { { 0, 6, 0}, { 0, 6, 0}, { 0, 6, 0}, { 0, 0, 0}, 0 }, /* textmode hardwired to VGA8x8 */
  1115. };
  1116. /* initialized by setup, see explanation at end of file (search for MODULE_PARM_DESC) */
  1117. static unsigned int mem; /* "matrox:mem:xxxxxM" */
  1118. static int option_precise_width = 1; /* cannot be changed, option_precise_width==0 must imply noaccel */
  1119. static int inv24; /* "matrox:inv24" */
  1120. static int cross4MB = -1; /* "matrox:cross4MB" */
  1121. static int disabled; /* "matrox:disabled" */
  1122. static int noaccel; /* "matrox:noaccel" */
  1123. static int nopan; /* "matrox:nopan" */
  1124. static int no_pci_retry; /* "matrox:nopciretry" */
  1125. static int novga; /* "matrox:novga" */
  1126. static int nobios; /* "matrox:nobios" */
  1127. static int noinit = 1; /* "matrox:init" */
  1128. static int inverse; /* "matrox:inverse" */
  1129. static int sgram; /* "matrox:sgram" */
  1130. #ifdef CONFIG_MTRR
  1131. static int mtrr = 1; /* "matrox:nomtrr" */
  1132. #endif
  1133. static int grayscale; /* "matrox:grayscale" */
  1134. static int dev = -1; /* "matrox:dev:xxxxx" */
  1135. static unsigned int vesa = ~0; /* "matrox:vesa:xxxxx" */
  1136. static int depth = -1; /* "matrox:depth:xxxxx" */
  1137. static unsigned int xres; /* "matrox:xres:xxxxx" */
  1138. static unsigned int yres; /* "matrox:yres:xxxxx" */
  1139. static unsigned int upper = ~0; /* "matrox:upper:xxxxx" */
  1140. static unsigned int lower = ~0; /* "matrox:lower:xxxxx" */
  1141. static unsigned int vslen; /* "matrox:vslen:xxxxx" */
  1142. static unsigned int left = ~0; /* "matrox:left:xxxxx" */
  1143. static unsigned int right = ~0; /* "matrox:right:xxxxx" */
  1144. static unsigned int hslen; /* "matrox:hslen:xxxxx" */
  1145. static unsigned int pixclock; /* "matrox:pixclock:xxxxx" */
  1146. static int sync = -1; /* "matrox:sync:xxxxx" */
  1147. static unsigned int fv; /* "matrox:fv:xxxxx" */
  1148. static unsigned int fh; /* "matrox:fh:xxxxxk" */
  1149. static unsigned int maxclk; /* "matrox:maxclk:xxxxM" */
  1150. static int dfp; /* "matrox:dfp */
  1151. static int dfp_type = -1; /* "matrox:dfp:xxx */
  1152. static int memtype = -1; /* "matrox:memtype:xxx" */
  1153. static char outputs[8]; /* "matrox:outputs:xxx" */
  1154. #ifndef MODULE
  1155. static char videomode[64]; /* "matrox:mode:xxxxx" or "matrox:xxxxx" */
  1156. #endif
  1157. static int matroxfb_getmemory(struct matrox_fb_info *minfo,
  1158. unsigned int maxSize, unsigned int *realSize)
  1159. {
  1160. vaddr_t vm;
  1161. unsigned int offs;
  1162. unsigned int offs2;
  1163. unsigned char orig;
  1164. unsigned char bytes[32];
  1165. unsigned char* tmp;
  1166. DBG(__func__)
  1167. vm = minfo->video.vbase;
  1168. maxSize &= ~0x1FFFFF; /* must be X*2MB (really it must be 2 or X*4MB) */
  1169. /* at least 2MB */
  1170. if (maxSize < 0x0200000) return 0;
  1171. if (maxSize > 0x2000000) maxSize = 0x2000000;
  1172. mga_outb(M_EXTVGA_INDEX, 0x03);
  1173. orig = mga_inb(M_EXTVGA_DATA);
  1174. mga_outb(M_EXTVGA_DATA, orig | 0x80);
  1175. tmp = bytes;
  1176. for (offs = 0x100000; offs < maxSize; offs += 0x200000)
  1177. *tmp++ = mga_readb(vm, offs);
  1178. for (offs = 0x100000; offs < maxSize; offs += 0x200000)
  1179. mga_writeb(vm, offs, 0x02);
  1180. mga_outb(M_CACHEFLUSH, 0x00);
  1181. for (offs = 0x100000; offs < maxSize; offs += 0x200000) {
  1182. if (mga_readb(vm, offs) != 0x02)
  1183. break;
  1184. mga_writeb(vm, offs, mga_readb(vm, offs) - 0x02);
  1185. if (mga_readb(vm, offs))
  1186. break;
  1187. }
  1188. tmp = bytes;
  1189. for (offs2 = 0x100000; offs2 < maxSize; offs2 += 0x200000)
  1190. mga_writeb(vm, offs2, *tmp++);
  1191. mga_outb(M_EXTVGA_INDEX, 0x03);
  1192. mga_outb(M_EXTVGA_DATA, orig);
  1193. *realSize = offs - 0x100000;
  1194. #ifdef CONFIG_FB_MATROX_MILLENIUM
  1195. minfo->interleave = !(!isMillenium(minfo) || ((offs - 0x100000) & 0x3FFFFF));
  1196. #endif
  1197. return 1;
  1198. }
  1199. struct video_board {
  1200. int maxvram;
  1201. int maxdisplayable;
  1202. int accelID;
  1203. struct matrox_switch* lowlevel;
  1204. };
  1205. #ifdef CONFIG_FB_MATROX_MILLENIUM
  1206. static struct video_board vbMillennium = {0x0800000, 0x0800000, FB_ACCEL_MATROX_MGA2064W, &matrox_millennium};
  1207. static struct video_board vbMillennium2 = {0x1000000, 0x0800000, FB_ACCEL_MATROX_MGA2164W, &matrox_millennium};
  1208. static struct video_board vbMillennium2A = {0x1000000, 0x0800000, FB_ACCEL_MATROX_MGA2164W_AGP, &matrox_millennium};
  1209. #endif /* CONFIG_FB_MATROX_MILLENIUM */
  1210. #ifdef CONFIG_FB_MATROX_MYSTIQUE
  1211. static struct video_board vbMystique = {0x0800000, 0x0800000, FB_ACCEL_MATROX_MGA1064SG, &matrox_mystique};
  1212. #endif /* CONFIG_FB_MATROX_MYSTIQUE */
  1213. #ifdef CONFIG_FB_MATROX_G
  1214. static struct video_board vbG100 = {0x0800000, 0x0800000, FB_ACCEL_MATROX_MGAG100, &matrox_G100};
  1215. static struct video_board vbG200 = {0x1000000, 0x1000000, FB_ACCEL_MATROX_MGAG200, &matrox_G100};
  1216. /* from doc it looks like that accelerator can draw only to low 16MB :-( Direct accesses & displaying are OK for
  1217. whole 32MB */
  1218. static struct video_board vbG400 = {0x2000000, 0x1000000, FB_ACCEL_MATROX_MGAG400, &matrox_G100};
  1219. #endif
  1220. #define DEVF_VIDEO64BIT 0x0001
  1221. #define DEVF_SWAPS 0x0002
  1222. #define DEVF_SRCORG 0x0004
  1223. #define DEVF_DUALHEAD 0x0008
  1224. #define DEVF_CROSS4MB 0x0010
  1225. #define DEVF_TEXT4B 0x0020
  1226. /* #define DEVF_recycled 0x0040 */
  1227. /* #define DEVF_recycled 0x0080 */
  1228. #define DEVF_SUPPORT32MB 0x0100
  1229. #define DEVF_ANY_VXRES 0x0200
  1230. #define DEVF_TEXT16B 0x0400
  1231. #define DEVF_CRTC2 0x0800
  1232. #define DEVF_MAVEN_CAPABLE 0x1000
  1233. #define DEVF_PANELLINK_CAPABLE 0x2000
  1234. #define DEVF_G450DAC 0x4000
  1235. #define DEVF_GCORE (DEVF_VIDEO64BIT | DEVF_SWAPS | DEVF_CROSS4MB)
  1236. #define DEVF_G2CORE (DEVF_GCORE | DEVF_ANY_VXRES | DEVF_MAVEN_CAPABLE | DEVF_PANELLINK_CAPABLE | DEVF_SRCORG | DEVF_DUALHEAD)
  1237. #define DEVF_G100 (DEVF_GCORE) /* no doc, no vxres... */
  1238. #define DEVF_G200 (DEVF_G2CORE)
  1239. #define DEVF_G400 (DEVF_G2CORE | DEVF_SUPPORT32MB | DEVF_TEXT16B | DEVF_CRTC2)
  1240. /* if you'll find how to drive DFP... */
  1241. #define DEVF_G450 (DEVF_GCORE | DEVF_ANY_VXRES | DEVF_SUPPORT32MB | DEVF_TEXT16B | DEVF_CRTC2 | DEVF_G450DAC | DEVF_SRCORG | DEVF_DUALHEAD)
  1242. #define DEVF_G550 (DEVF_G450)
  1243. static struct board {
  1244. unsigned short vendor, device, rev, svid, sid;
  1245. unsigned int flags;
  1246. unsigned int maxclk;
  1247. enum mga_chip chip;
  1248. struct video_board* base;
  1249. const char* name;
  1250. } dev_list[] = {
  1251. #ifdef CONFIG_FB_MATROX_MILLENIUM
  1252. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_MIL, 0xFF,
  1253. 0, 0,
  1254. DEVF_TEXT4B,
  1255. 230000,
  1256. MGA_2064,
  1257. &vbMillennium,
  1258. "Millennium (PCI)"},
  1259. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_MIL_2, 0xFF,
  1260. 0, 0,
  1261. DEVF_SWAPS,
  1262. 220000,
  1263. MGA_2164,
  1264. &vbMillennium2,
  1265. "Millennium II (PCI)"},
  1266. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_MIL_2_AGP, 0xFF,
  1267. 0, 0,
  1268. DEVF_SWAPS,
  1269. 250000,
  1270. MGA_2164,
  1271. &vbMillennium2A,
  1272. "Millennium II (AGP)"},
  1273. #endif
  1274. #ifdef CONFIG_FB_MATROX_MYSTIQUE
  1275. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_MYS, 0x02,
  1276. 0, 0,
  1277. DEVF_VIDEO64BIT | DEVF_CROSS4MB,
  1278. 180000,
  1279. MGA_1064,
  1280. &vbMystique,
  1281. "Mystique (PCI)"},
  1282. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_MYS, 0xFF,
  1283. 0, 0,
  1284. DEVF_VIDEO64BIT | DEVF_SWAPS | DEVF_CROSS4MB,
  1285. 220000,
  1286. MGA_1164,
  1287. &vbMystique,
  1288. "Mystique 220 (PCI)"},
  1289. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_MYS_AGP, 0x02,
  1290. 0, 0,
  1291. DEVF_VIDEO64BIT | DEVF_CROSS4MB,
  1292. 180000,
  1293. MGA_1064,
  1294. &vbMystique,
  1295. "Mystique (AGP)"},
  1296. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_MYS_AGP, 0xFF,
  1297. 0, 0,
  1298. DEVF_VIDEO64BIT | DEVF_SWAPS | DEVF_CROSS4MB,
  1299. 220000,
  1300. MGA_1164,
  1301. &vbMystique,
  1302. "Mystique 220 (AGP)"},
  1303. #endif
  1304. #ifdef CONFIG_FB_MATROX_G
  1305. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G100_MM, 0xFF,
  1306. 0, 0,
  1307. DEVF_G100,
  1308. 230000,
  1309. MGA_G100,
  1310. &vbG100,
  1311. "MGA-G100 (PCI)"},
  1312. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G100_AGP, 0xFF,
  1313. 0, 0,
  1314. DEVF_G100,
  1315. 230000,
  1316. MGA_G100,
  1317. &vbG100,
  1318. "MGA-G100 (AGP)"},
  1319. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G200EV_PCI, 0xFF,
  1320. 0, 0,
  1321. DEVF_G200,
  1322. 230000,
  1323. MGA_G200,
  1324. &vbG200,
  1325. "MGA-G200eV (PCI)"},
  1326. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G200_PCI, 0xFF,
  1327. 0, 0,
  1328. DEVF_G200,
  1329. 250000,
  1330. MGA_G200,
  1331. &vbG200,
  1332. "MGA-G200 (PCI)"},
  1333. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G200_AGP, 0xFF,
  1334. PCI_SS_VENDOR_ID_MATROX, PCI_SS_ID_MATROX_GENERIC,
  1335. DEVF_G200,
  1336. 220000,
  1337. MGA_G200,
  1338. &vbG200,
  1339. "MGA-G200 (AGP)"},
  1340. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G200_AGP, 0xFF,
  1341. PCI_SS_VENDOR_ID_MATROX, PCI_SS_ID_MATROX_MYSTIQUE_G200_AGP,
  1342. DEVF_G200,
  1343. 230000,
  1344. MGA_G200,
  1345. &vbG200,
  1346. "Mystique G200 (AGP)"},
  1347. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G200_AGP, 0xFF,
  1348. PCI_SS_VENDOR_ID_MATROX, PCI_SS_ID_MATROX_MILLENIUM_G200_AGP,
  1349. DEVF_G200,
  1350. 250000,
  1351. MGA_G200,
  1352. &vbG200,
  1353. "Millennium G200 (AGP)"},
  1354. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G200_AGP, 0xFF,
  1355. PCI_SS_VENDOR_ID_MATROX, PCI_SS_ID_MATROX_MARVEL_G200_AGP,
  1356. DEVF_G200,
  1357. 230000,
  1358. MGA_G200,
  1359. &vbG200,
  1360. "Marvel G200 (AGP)"},
  1361. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G200_AGP, 0xFF,
  1362. PCI_SS_VENDOR_ID_SIEMENS_NIXDORF, PCI_SS_ID_SIEMENS_MGA_G200_AGP,
  1363. DEVF_G200,
  1364. 230000,
  1365. MGA_G200,
  1366. &vbG200,
  1367. "MGA-G200 (AGP)"},
  1368. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G200_AGP, 0xFF,
  1369. 0, 0,
  1370. DEVF_G200,
  1371. 230000,
  1372. MGA_G200,
  1373. &vbG200,
  1374. "G200 (AGP)"},
  1375. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G400, 0x80,
  1376. PCI_SS_VENDOR_ID_MATROX, PCI_SS_ID_MATROX_MILLENNIUM_G400_MAX_AGP,
  1377. DEVF_G400,
  1378. 360000,
  1379. MGA_G400,
  1380. &vbG400,
  1381. "Millennium G400 MAX (AGP)"},
  1382. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G400, 0x80,
  1383. 0, 0,
  1384. DEVF_G400,
  1385. 300000,
  1386. MGA_G400,
  1387. &vbG400,
  1388. "G400 (AGP)"},
  1389. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G400, 0xFF,
  1390. 0, 0,
  1391. DEVF_G450,
  1392. 360000,
  1393. MGA_G450,
  1394. &vbG400,
  1395. "G450"},
  1396. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G550, 0xFF,
  1397. 0, 0,
  1398. DEVF_G550,
  1399. 360000,
  1400. MGA_G550,
  1401. &vbG400,
  1402. "G550"},
  1403. #endif
  1404. {0, 0, 0xFF,
  1405. 0, 0,
  1406. 0,
  1407. 0,
  1408. 0,
  1409. NULL,
  1410. NULL}};
  1411. #ifndef MODULE
  1412. static struct fb_videomode defaultmode = {
  1413. /* 640x480 @ 60Hz, 31.5 kHz */
  1414. NULL, 60, 640, 480, 39721, 40, 24, 32, 11, 96, 2,
  1415. 0, FB_VMODE_NONINTERLACED
  1416. };
  1417. #endif /* !MODULE */
  1418. static int hotplug = 0;
  1419. static void setDefaultOutputs(struct matrox_fb_info *minfo)
  1420. {
  1421. unsigned int i;
  1422. const char* ptr;
  1423. minfo->outputs[0].default_src = MATROXFB_SRC_CRTC1;
  1424. if (minfo->devflags.g450dac) {
  1425. minfo->outputs[1].default_src = MATROXFB_SRC_CRTC1;
  1426. minfo->outputs[2].default_src = MATROXFB_SRC_CRTC1;
  1427. } else if (dfp) {
  1428. minfo->outputs[2].default_src = MATROXFB_SRC_CRTC1;
  1429. }
  1430. ptr = outputs;
  1431. for (i = 0; i < MATROXFB_MAX_OUTPUTS; i++) {
  1432. char c = *ptr++;
  1433. if (c == 0) {
  1434. break;
  1435. }
  1436. if (c == '0') {
  1437. minfo->outputs[i].default_src = MATROXFB_SRC_NONE;
  1438. } else if (c == '1') {
  1439. minfo->outputs[i].default_src = MATROXFB_SRC_CRTC1;
  1440. } else if (c == '2' && minfo->devflags.crtc2) {
  1441. minfo->outputs[i].default_src = MATROXFB_SRC_CRTC2;
  1442. } else {
  1443. printk(KERN_ERR "matroxfb: Unknown outputs setting\n");
  1444. break;
  1445. }
  1446. }
  1447. /* Nullify this option for subsequent adapters */
  1448. outputs[0] = 0;
  1449. }
  1450. static int initMatrox2(struct matrox_fb_info *minfo, struct board *b)
  1451. {
  1452. unsigned long ctrlptr_phys = 0;
  1453. unsigned long video_base_phys = 0;
  1454. unsigned int memsize;
  1455. int err;
  1456. static struct pci_device_id intel_82437[] = {
  1457. { PCI_DEVICE(PCI_VENDOR_ID_INTEL, PCI_DEVICE_ID_INTEL_82437) },
  1458. { },
  1459. };
  1460. DBG(__func__)
  1461. /* set default values... */
  1462. vesafb_defined.accel_flags = FB_ACCELF_TEXT;
  1463. minfo->hw_switch = b->base->lowlevel;
  1464. minfo->devflags.accelerator = b->base->accelID;
  1465. minfo->max_pixel_clock = b->maxclk;
  1466. printk(KERN_INFO "matroxfb: Matrox %s detected\n", b->name);
  1467. minfo->capable.plnwt = 1;
  1468. minfo->chip = b->chip;
  1469. minfo->capable.srcorg = b->flags & DEVF_SRCORG;
  1470. minfo->devflags.video64bits = b->flags & DEVF_VIDEO64BIT;
  1471. if (b->flags & DEVF_TEXT4B) {
  1472. minfo->devflags.vgastep = 4;
  1473. minfo->devflags.textmode = 4;
  1474. minfo->devflags.text_type_aux = FB_AUX_TEXT_MGA_STEP16;
  1475. } else if (b->flags & DEVF_TEXT16B) {
  1476. minfo->devflags.vgastep = 16;
  1477. minfo->devflags.textmode = 1;
  1478. minfo->devflags.text_type_aux = FB_AUX_TEXT_MGA_STEP16;
  1479. } else {
  1480. minfo->devflags.vgastep = 8;
  1481. minfo->devflags.textmode = 1;
  1482. minfo->devflags.text_type_aux = FB_AUX_TEXT_MGA_STEP8;
  1483. }
  1484. minfo->devflags.support32MB = (b->flags & DEVF_SUPPORT32MB) != 0;
  1485. minfo->devflags.precise_width = !(b->flags & DEVF_ANY_VXRES);
  1486. minfo->devflags.crtc2 = (b->flags & DEVF_CRTC2) != 0;
  1487. minfo->devflags.maven_capable = (b->flags & DEVF_MAVEN_CAPABLE) != 0;
  1488. minfo->devflags.dualhead = (b->flags & DEVF_DUALHEAD) != 0;
  1489. minfo->devflags.dfp_type = dfp_type;
  1490. minfo->devflags.g450dac = (b->flags & DEVF_G450DAC) != 0;
  1491. minfo->devflags.textstep = minfo->devflags.vgastep * minfo->devflags.textmode;
  1492. minfo->devflags.textvram = 65536 / minfo->devflags.textmode;
  1493. setDefaultOutputs(minfo);
  1494. if (b->flags & DEVF_PANELLINK_CAPABLE) {
  1495. minfo->outputs[2].data = minfo;
  1496. minfo->outputs[2].output = &panellink_output;
  1497. minfo->outputs[2].src = minfo->outputs[2].default_src;
  1498. minfo->outputs[2].mode = MATROXFB_OUTPUT_MODE_MONITOR;
  1499. minfo->devflags.panellink = 1;
  1500. }
  1501. if (minfo->capable.cross4MB < 0)
  1502. minfo->capable.cross4MB = b->flags & DEVF_CROSS4MB;
  1503. if (b->flags & DEVF_SWAPS) {
  1504. ctrlptr_phys = pci_resource_start(minfo->pcidev, 1);
  1505. video_base_phys = pci_resource_start(minfo->pcidev, 0);
  1506. minfo->devflags.fbResource = PCI_BASE_ADDRESS_0;
  1507. } else {
  1508. ctrlptr_phys = pci_resource_start(minfo->pcidev, 0);
  1509. video_base_phys = pci_resource_start(minfo->pcidev, 1);
  1510. minfo->devflags.fbResource = PCI_BASE_ADDRESS_1;
  1511. }
  1512. err = -EINVAL;
  1513. if (!ctrlptr_phys) {
  1514. printk(KERN_ERR "matroxfb: control registers are not available, matroxfb disabled\n");
  1515. goto fail;
  1516. }
  1517. if (!video_base_phys) {
  1518. printk(KERN_ERR "matroxfb: video RAM is not available in PCI address space, matroxfb disabled\n");
  1519. goto fail;
  1520. }
  1521. memsize = b->base->maxvram;
  1522. if (!request_mem_region(ctrlptr_phys, 16384, "matroxfb MMIO")) {
  1523. goto fail;
  1524. }
  1525. if (!request_mem_region(video_base_phys, memsize, "matroxfb FB")) {
  1526. goto failCtrlMR;
  1527. }
  1528. minfo->video.len_maximum = memsize;
  1529. /* convert mem (autodetect k, M) */
  1530. if (mem < 1024) mem *= 1024;
  1531. if (mem < 0x00100000) mem *= 1024;
  1532. if (mem && (mem < memsize))
  1533. memsize = mem;
  1534. err = -ENOMEM;
  1535. if (mga_ioremap(ctrlptr_phys, 16384, MGA_IOREMAP_MMIO, &minfo->mmio.vbase)) {
  1536. printk(KERN_ERR "matroxfb: cannot ioremap(%lX, 16384), matroxfb disabled\n", ctrlptr_phys);
  1537. goto failVideoMR;
  1538. }
  1539. minfo->mmio.base = ctrlptr_phys;
  1540. minfo->mmio.len = 16384;
  1541. minfo->video.base = video_base_phys;
  1542. if (mga_ioremap(video_base_phys, memsize, MGA_IOREMAP_FB, &minfo->video.vbase)) {
  1543. printk(KERN_ERR "matroxfb: cannot ioremap(%lX, %d), matroxfb disabled\n",
  1544. video_base_phys, memsize);
  1545. goto failCtrlIO;
  1546. }
  1547. {
  1548. u_int32_t cmd;
  1549. u_int32_t mga_option;
  1550. pci_read_config_dword(minfo->pcidev, PCI_OPTION_REG, &mga_option);
  1551. pci_read_config_dword(minfo->pcidev, PCI_COMMAND, &cmd);
  1552. mga_option &= 0x7FFFFFFF; /* clear BIG_ENDIAN */
  1553. mga_option |= MX_OPTION_BSWAP;
  1554. /* disable palette snooping */
  1555. cmd &= ~PCI_COMMAND_VGA_PALETTE;
  1556. if (pci_dev_present(intel_82437)) {
  1557. if (!(mga_option & 0x20000000) && !minfo->devflags.nopciretry) {
  1558. printk(KERN_WARNING "matroxfb: Disabling PCI retries due to i82437 present\n");
  1559. }
  1560. mga_option |= 0x20000000;
  1561. minfo->devflags.nopciretry = 1;
  1562. }
  1563. pci_write_config_dword(minfo->pcidev, PCI_COMMAND, cmd);
  1564. pci_write_config_dword(minfo->pcidev, PCI_OPTION_REG, mga_option);
  1565. minfo->hw.MXoptionReg = mga_option;
  1566. /* select non-DMA memory for PCI_MGA_DATA, otherwise dump of PCI cfg space can lock PCI bus */
  1567. /* maybe preinit() candidate, but it is same... for all devices... at this time... */
  1568. pci_write_config_dword(minfo->pcidev, PCI_MGA_INDEX, 0x00003C00);
  1569. }
  1570. err = -ENXIO;
  1571. matroxfb_read_pins(minfo);
  1572. if (minfo->hw_switch->preinit(minfo)) {
  1573. goto failVideoIO;
  1574. }
  1575. err = -ENOMEM;
  1576. if (!matroxfb_getmemory(minfo, memsize, &minfo->video.len) || !minfo->video.len) {
  1577. printk(KERN_ERR "matroxfb: cannot determine memory size\n");
  1578. goto failVideoIO;
  1579. }
  1580. minfo->devflags.ydstorg = 0;
  1581. minfo->video.base = video_base_phys;
  1582. minfo->video.len_usable = minfo->video.len;
  1583. if (minfo->video.len_usable > b->base->maxdisplayable)
  1584. minfo->video.len_usable = b->base->maxdisplayable;
  1585. #ifdef CONFIG_MTRR
  1586. if (mtrr) {
  1587. minfo->mtrr.vram = mtrr_add(video_base_phys, minfo->video.len, MTRR_TYPE_WRCOMB, 1);
  1588. minfo->mtrr.vram_valid = 1;
  1589. printk(KERN_INFO "matroxfb: MTRR's turned on\n");
  1590. }
  1591. #endif /* CONFIG_MTRR */
  1592. if (!minfo->devflags.novga)
  1593. request_region(0x3C0, 32, "matrox");
  1594. matroxfb_g450_connect(minfo);
  1595. minfo->hw_switch->reset(minfo);
  1596. minfo->fbcon.monspecs.hfmin = 0;
  1597. minfo->fbcon.monspecs.hfmax = fh;
  1598. minfo->fbcon.monspecs.vfmin = 0;
  1599. minfo->fbcon.monspecs.vfmax = fv;
  1600. minfo->fbcon.monspecs.dpms = 0; /* TBD */
  1601. /* static settings */
  1602. vesafb_defined.red = colors[depth-1].red;
  1603. vesafb_defined.green = colors[depth-1].green;
  1604. vesafb_defined.blue = colors[depth-1].blue;
  1605. vesafb_defined.bits_per_pixel = colors[depth-1].bits_per_pixel;
  1606. vesafb_defined.grayscale = grayscale;
  1607. vesafb_defined.vmode = 0;
  1608. if (noaccel)
  1609. vesafb_defined.accel_flags &= ~FB_ACCELF_TEXT;
  1610. minfo->fbops = matroxfb_ops;
  1611. minfo->fbcon.fbops = &minfo->fbops;
  1612. minfo->fbcon.pseudo_palette = minfo->cmap;
  1613. /* after __init time we are like module... no logo */
  1614. minfo->fbcon.flags = hotplug ? FBINFO_FLAG_MODULE : FBINFO_FLAG_DEFAULT;
  1615. minfo->fbcon.flags |= FBINFO_PARTIAL_PAN_OK | /* Prefer panning for scroll under MC viewer/edit */
  1616. FBINFO_HWACCEL_COPYAREA | /* We have hw-assisted bmove */
  1617. FBINFO_HWACCEL_FILLRECT | /* And fillrect */
  1618. FBINFO_HWACCEL_IMAGEBLIT | /* And imageblit */
  1619. FBINFO_HWACCEL_XPAN | /* And we support both horizontal */
  1620. FBINFO_HWACCEL_YPAN; /* And vertical panning */
  1621. minfo->video.len_usable &= PAGE_MASK;
  1622. fb_alloc_cmap(&minfo->fbcon.cmap, 256, 1);
  1623. #ifndef MODULE
  1624. /* mode database is marked __init!!! */
  1625. if (!hotplug) {
  1626. fb_find_mode(&vesafb_defined, &minfo->fbcon, videomode[0] ? videomode : NULL,
  1627. NULL, 0, &defaultmode, vesafb_defined.bits_per_pixel);
  1628. }
  1629. #endif /* !MODULE */
  1630. /* mode modifiers */
  1631. if (hslen)
  1632. vesafb_defined.hsync_len = hslen;
  1633. if (vslen)
  1634. vesafb_defined.vsync_len = vslen;
  1635. if (left != ~0)
  1636. vesafb_defined.left_margin = left;
  1637. if (right != ~0)
  1638. vesafb_defined.right_margin = right;
  1639. if (upper != ~0)
  1640. vesafb_defined.upper_margin = upper;
  1641. if (lower != ~0)
  1642. vesafb_defined.lower_margin = lower;
  1643. if (xres)
  1644. vesafb_defined.xres = xres;
  1645. if (yres)
  1646. vesafb_defined.yres = yres;
  1647. if (sync != -1)
  1648. vesafb_defined.sync = sync;
  1649. else if (vesafb_defined.sync == ~0) {
  1650. vesafb_defined.sync = 0;
  1651. if (yres < 400)
  1652. vesafb_defined.sync |= FB_SYNC_HOR_HIGH_ACT;
  1653. else if (yres < 480)
  1654. vesafb_defined.sync |= FB_SYNC_VERT_HIGH_ACT;
  1655. }
  1656. /* fv, fh, maxclk limits was specified */
  1657. {
  1658. unsigned int tmp;
  1659. if (fv) {
  1660. tmp = fv * (vesafb_defined.upper_margin + vesafb_defined.yres
  1661. + vesafb_defined.lower_margin + vesafb_defined.vsync_len);
  1662. if ((tmp < fh) || (fh == 0)) fh = tmp;
  1663. }
  1664. if (fh) {
  1665. tmp = fh * (vesafb_defined.left_margin + vesafb_defined.xres
  1666. + vesafb_defined.right_margin + vesafb_defined.hsync_len);
  1667. if ((tmp < maxclk) || (maxclk == 0)) maxclk = tmp;
  1668. }
  1669. tmp = (maxclk + 499) / 500;
  1670. if (tmp) {
  1671. tmp = (2000000000 + tmp) / tmp;
  1672. if (tmp > pixclock) pixclock = tmp;
  1673. }
  1674. }
  1675. if (pixclock) {
  1676. if (pixclock < 2000) /* > 500MHz */
  1677. pixclock = 4000; /* 250MHz */
  1678. if (pixclock > 1000000)
  1679. pixclock = 1000000; /* 1MHz */
  1680. vesafb_defined.pixclock = pixclock;
  1681. }
  1682. /* FIXME: Where to move this?! */
  1683. #if defined(CONFIG_PPC_PMAC)
  1684. #ifndef MODULE
  1685. if (machine_is(powermac)) {
  1686. struct fb_var_screeninfo var;
  1687. if (default_vmode <= 0 || default_vmode > VMODE_MAX)
  1688. default_vmode = VMODE_640_480_60;
  1689. #ifdef CONFIG_NVRAM
  1690. if (default_cmode == CMODE_NVRAM)
  1691. default_cmode = nvram_read_byte(NV_CMODE);
  1692. #endif
  1693. if (default_cmode < CMODE_8 || default_cmode > CMODE_32)
  1694. default_cmode = CMODE_8;
  1695. if (!mac_vmode_to_var(default_vmode, default_cmode, &var)) {
  1696. var.accel_flags = vesafb_defined.accel_flags;
  1697. var.xoffset = var.yoffset = 0;
  1698. /* Note: mac_vmode_to_var() does not set all parameters */
  1699. vesafb_defined = var;
  1700. }
  1701. }
  1702. #endif /* !MODULE */
  1703. #endif /* CONFIG_PPC_PMAC */
  1704. vesafb_defined.xres_virtual = vesafb_defined.xres;
  1705. if (nopan) {
  1706. vesafb_defined.yres_virtual = vesafb_defined.yres;
  1707. } else {
  1708. vesafb_defined.yres_virtual = 65536; /* large enough to be INF, but small enough
  1709. to yres_virtual * xres_virtual < 2^32 */
  1710. }
  1711. matroxfb_init_fix(minfo);
  1712. minfo->fbcon.screen_base = vaddr_va(minfo->video.vbase);
  1713. /* Normalize values (namely yres_virtual) */
  1714. matroxfb_check_var(&vesafb_defined, &minfo->fbcon);
  1715. /* And put it into "current" var. Do NOT program hardware yet, or we'll not take over
  1716. * vgacon correctly. fbcon_startup will call fb_set_par for us, WITHOUT check_var,
  1717. * and unfortunately it will do it BEFORE vgacon contents is saved, so it won't work
  1718. * anyway. But we at least tried... */
  1719. minfo->fbcon.var = vesafb_defined;
  1720. err = -EINVAL;
  1721. printk(KERN_INFO "matroxfb: %dx%dx%dbpp (virtual: %dx%d)\n",
  1722. vesafb_defined.xres, vesafb_defined.yres, vesafb_defined.bits_per_pixel,
  1723. vesafb_defined.xres_virtual, vesafb_defined.yres_virtual);
  1724. printk(KERN_INFO "matroxfb: framebuffer at 0x%lX, mapped to 0x%p, size %d\n",
  1725. minfo->video.base, vaddr_va(minfo->video.vbase), minfo->video.len);
  1726. /* We do not have to set currcon to 0... register_framebuffer do it for us on first console
  1727. * and we do not want currcon == 0 for subsequent framebuffers */
  1728. minfo->fbcon.device = &minfo->pcidev->dev;
  1729. if (register_framebuffer(&minfo->fbcon) < 0) {
  1730. goto failVideoIO;
  1731. }
  1732. printk("fb%d: %s frame buffer device\n",
  1733. minfo->fbcon.node, minfo->fbcon.fix.id);
  1734. /* there is no console on this fb... but we have to initialize hardware
  1735. * until someone tells me what is proper thing to do */
  1736. if (!minfo->initialized) {
  1737. printk(KERN_INFO "fb%d: initializing hardware\n",
  1738. minfo->fbcon.node);
  1739. /* We have to use FB_ACTIVATE_FORCE, as we had to put vesafb_defined to the fbcon.var
  1740. * already before, so register_framebuffer works correctly. */
  1741. vesafb_defined.activate |= FB_ACTIVATE_FORCE;
  1742. fb_set_var(&minfo->fbcon, &vesafb_defined);
  1743. }
  1744. return 0;
  1745. failVideoIO:;
  1746. matroxfb_g450_shutdown(minfo);
  1747. mga_iounmap(minfo->video.vbase);
  1748. failCtrlIO:;
  1749. mga_iounmap(minfo->mmio.vbase);
  1750. failVideoMR:;
  1751. release_mem_region(video_base_phys, minfo->video.len_maximum);
  1752. failCtrlMR:;
  1753. release_mem_region(ctrlptr_phys, 16384);
  1754. fail:;
  1755. return err;
  1756. }
  1757. static LIST_HEAD(matroxfb_list);
  1758. static LIST_HEAD(matroxfb_driver_list);
  1759. #define matroxfb_l(x) list_entry(x, struct matrox_fb_info, next_fb)
  1760. #define matroxfb_driver_l(x) list_entry(x, struct matroxfb_driver, node)
  1761. int matroxfb_register_driver(struct matroxfb_driver* drv) {
  1762. struct matrox_fb_info* minfo;
  1763. list_add(&drv->node, &matroxfb_driver_list);
  1764. for (minfo = matroxfb_l(matroxfb_list.next);
  1765. minfo != matroxfb_l(&matroxfb_list);
  1766. minfo = matroxfb_l(minfo->next_fb.next)) {
  1767. void* p;
  1768. if (minfo->drivers_count == MATROXFB_MAX_FB_DRIVERS)
  1769. continue;
  1770. p = drv->probe(minfo);
  1771. if (p) {
  1772. minfo->drivers_data[minfo->drivers_count] = p;
  1773. minfo->drivers[minfo->drivers_count++] = drv;
  1774. }
  1775. }
  1776. return 0;
  1777. }
  1778. void matroxfb_unregister_driver(struct matroxfb_driver* drv) {
  1779. struct matrox_fb_info* minfo;
  1780. list_del(&drv->node);
  1781. for (minfo = matroxfb_l(matroxfb_list.next);
  1782. minfo != matroxfb_l(&matroxfb_list);
  1783. minfo = matroxfb_l(minfo->next_fb.next)) {
  1784. int i;
  1785. for (i = 0; i < minfo->drivers_count; ) {
  1786. if (minfo->drivers[i] == drv) {
  1787. if (drv && drv->remove)
  1788. drv->remove(minfo, minfo->drivers_data[i]);
  1789. minfo->drivers[i] = minfo->drivers[--minfo->drivers_count];
  1790. minfo->drivers_data[i] = minfo->drivers_data[minfo->drivers_count];
  1791. } else
  1792. i++;
  1793. }
  1794. }
  1795. }
  1796. static void matroxfb_register_device(struct matrox_fb_info* minfo) {
  1797. struct matroxfb_driver* drv;
  1798. int i = 0;
  1799. list_add(&minfo->next_fb, &matroxfb_list);
  1800. for (drv = matroxfb_driver_l(matroxfb_driver_list.next);
  1801. drv != matroxfb_driver_l(&matroxfb_driver_list);
  1802. drv = matroxfb_driver_l(drv->node.next)) {
  1803. if (drv && drv->probe) {
  1804. void *p = drv->probe(minfo);
  1805. if (p) {
  1806. minfo->drivers_data[i] = p;
  1807. minfo->drivers[i++] = drv;
  1808. if (i == MATROXFB_MAX_FB_DRIVERS)
  1809. break;
  1810. }
  1811. }
  1812. }
  1813. minfo->drivers_count = i;
  1814. }
  1815. static void matroxfb_unregister_device(struct matrox_fb_info* minfo) {
  1816. int i;
  1817. list_del(&minfo->next_fb);
  1818. for (i = 0; i < minfo->drivers_count; i++) {
  1819. struct matroxfb_driver* drv = minfo->drivers[i];
  1820. if (drv && drv->remove)
  1821. drv->remove(minfo, minfo->drivers_data[i]);
  1822. }
  1823. }
  1824. static int matroxfb_probe(struct pci_dev* pdev, const struct pci_device_id* dummy) {
  1825. struct board* b;
  1826. u_int16_t svid;
  1827. u_int16_t sid;
  1828. struct matrox_fb_info* minfo;
  1829. int err;
  1830. u_int32_t cmd;
  1831. DBG(__func__)
  1832. svid = pdev->subsystem_vendor;
  1833. sid = pdev->subsystem_device;
  1834. for (b = dev_list; b->vendor; b++) {
  1835. if ((b->vendor != pdev->vendor) || (b->device != pdev->device) || (b->rev < pdev->revision)) continue;
  1836. if (b->svid)
  1837. if ((b->svid != svid) || (b->sid != sid)) continue;
  1838. break;
  1839. }
  1840. /* not match... */
  1841. if (!b->vendor)
  1842. return -ENODEV;
  1843. if (dev > 0) {
  1844. /* not requested one... */
  1845. dev--;
  1846. return -ENODEV;
  1847. }
  1848. pci_read_config_dword(pdev, PCI_COMMAND, &cmd);
  1849. if (pci_enable_device(pdev)) {
  1850. return -1;
  1851. }
  1852. minfo = kmalloc(sizeof(*minfo), GFP_KERNEL);
  1853. if (!minfo)
  1854. return -1;
  1855. memset(minfo, 0, sizeof(*minfo));
  1856. minfo->pcidev = pdev;
  1857. minfo->dead = 0;
  1858. minfo->usecount = 0;
  1859. minfo->userusecount = 0;
  1860. pci_set_drvdata(pdev, minfo);
  1861. /* DEVFLAGS */
  1862. minfo->devflags.memtype = memtype;
  1863. if (memtype != -1)
  1864. noinit = 0;
  1865. if (cmd & PCI_COMMAND_MEMORY) {
  1866. minfo->devflags.novga = novga;
  1867. minfo->devflags.nobios = nobios;
  1868. minfo->devflags.noinit = noinit;
  1869. /* subsequent heads always needs initialization and must not enable BIOS */
  1870. novga = 1;
  1871. nobios = 1;
  1872. noinit = 0;
  1873. } else {
  1874. minfo->devflags.novga = 1;
  1875. minfo->devflags.nobios = 1;
  1876. minfo->devflags.noinit = 0;
  1877. }
  1878. minfo->devflags.nopciretry = no_pci_retry;
  1879. minfo->devflags.mga_24bpp_fix = inv24;
  1880. minfo->devflags.precise_width = option_precise_width;
  1881. minfo->devflags.sgram = sgram;
  1882. minfo->capable.cross4MB = cross4MB;
  1883. spin_lock_init(&minfo->lock.DAC);
  1884. spin_lock_init(&minfo->lock.accel);
  1885. init_rwsem(&minfo->crtc2.lock);
  1886. init_rwsem(&minfo->altout.lock);
  1887. mutex_init(&minfo->fbcon.mm_lock);
  1888. minfo->irq_flags = 0;
  1889. init_waitqueue_head(&minfo->crtc1.vsync.wait);
  1890. init_waitqueue_head(&minfo->crtc2.vsync.wait);
  1891. minfo->crtc1.panpos = -1;
  1892. err = initMatrox2(minfo, b);
  1893. if (!err) {
  1894. matroxfb_register_device(minfo);
  1895. return 0;
  1896. }
  1897. kfree(minfo);
  1898. return -1;
  1899. }
  1900. static void pci_remove_matrox(struct pci_dev* pdev) {
  1901. struct matrox_fb_info* minfo;
  1902. minfo = pci_get_drvdata(pdev);
  1903. matroxfb_remove(minfo, 1);
  1904. }
  1905. static struct pci_device_id matroxfb_devices[] = {
  1906. #ifdef CONFIG_FB_MATROX_MILLENIUM
  1907. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_MIL,
  1908. PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
  1909. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_MIL_2,
  1910. PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
  1911. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_MIL_2_AGP,
  1912. PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
  1913. #endif
  1914. #ifdef CONFIG_FB_MATROX_MYSTIQUE
  1915. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_MYS,
  1916. PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
  1917. #endif
  1918. #ifdef CONFIG_FB_MATROX_G
  1919. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G100_MM,
  1920. PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
  1921. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G100_AGP,
  1922. PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
  1923. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G200EV_PCI,
  1924. PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
  1925. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G200_PCI,
  1926. PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
  1927. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G200_AGP,
  1928. PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
  1929. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G400,
  1930. PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
  1931. {PCI_VENDOR_ID_MATROX, PCI_DEVICE_ID_MATROX_G550,
  1932. PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
  1933. #endif
  1934. {0, 0,
  1935. 0, 0, 0, 0, 0}
  1936. };
  1937. MODULE_DEVICE_TABLE(pci, matroxfb_devices);
  1938. static struct pci_driver matroxfb_driver = {
  1939. .name = "matroxfb",
  1940. .id_table = matroxfb_devices,
  1941. .probe = matroxfb_probe,
  1942. .remove = pci_remove_matrox,
  1943. };
  1944. /* **************************** init-time only **************************** */
  1945. #define RSResolution(X) ((X) & 0x0F)
  1946. #define RS640x400 1
  1947. #define RS640x480 2
  1948. #define RS800x600 3
  1949. #define RS1024x768 4
  1950. #define RS1280x1024 5
  1951. #define RS1600x1200 6
  1952. #define RS768x576 7
  1953. #define RS960x720 8
  1954. #define RS1152x864 9
  1955. #define RS1408x1056 10
  1956. #define RS640x350 11
  1957. #define RS1056x344 12 /* 132 x 43 text */
  1958. #define RS1056x400 13 /* 132 x 50 text */
  1959. #define RS1056x480 14 /* 132 x 60 text */
  1960. #define RSNoxNo 15
  1961. /* 10-FF */
  1962. static struct { int xres, yres, left, right, upper, lower, hslen, vslen, vfreq; } timmings[] __initdata = {
  1963. { 640, 400, 48, 16, 39, 8, 96, 2, 70 },
  1964. { 640, 480, 48, 16, 33, 10, 96, 2, 60 },
  1965. { 800, 600, 144, 24, 28, 8, 112, 6, 60 },
  1966. { 1024, 768, 160, 32, 30, 4, 128, 4, 60 },
  1967. { 1280, 1024, 224, 32, 32, 4, 136, 4, 60 },
  1968. { 1600, 1200, 272, 48, 32, 5, 152, 5, 60 },
  1969. { 768, 576, 144, 16, 28, 6, 112, 4, 60 },
  1970. { 960, 720, 144, 24, 28, 8, 112, 4, 60 },
  1971. { 1152, 864, 192, 32, 30, 4, 128, 4, 60 },
  1972. { 1408, 1056, 256, 40, 32, 5, 144, 5, 60 },
  1973. { 640, 350, 48, 16, 39, 8, 96, 2, 70 },
  1974. { 1056, 344, 96, 24, 59, 44, 160, 2, 70 },
  1975. { 1056, 400, 96, 24, 39, 8, 160, 2, 70 },
  1976. { 1056, 480, 96, 24, 36, 12, 160, 3, 60 },
  1977. { 0, 0, ~0, ~0, ~0, ~0, 0, 0, 0 }
  1978. };
  1979. #define RSCreate(X,Y) ((X) | ((Y) << 8))
  1980. static struct { unsigned int vesa; unsigned int info; } *RSptr, vesamap[] __initdata = {
  1981. /* default must be first */
  1982. { ~0, RSCreate(RSNoxNo, RS8bpp ) },
  1983. { 0x101, RSCreate(RS640x480, RS8bpp ) },
  1984. { 0x100, RSCreate(RS640x400, RS8bpp ) },
  1985. { 0x180, RSCreate(RS768x576, RS8bpp ) },
  1986. { 0x103, RSCreate(RS800x600, RS8bpp ) },
  1987. { 0x188, RSCreate(RS960x720, RS8bpp ) },
  1988. { 0x105, RSCreate(RS1024x768, RS8bpp ) },
  1989. { 0x190, RSCreate(RS1152x864, RS8bpp ) },
  1990. { 0x107, RSCreate(RS1280x1024, RS8bpp ) },
  1991. { 0x198, RSCreate(RS1408x1056, RS8bpp ) },
  1992. { 0x11C, RSCreate(RS1600x1200, RS8bpp ) },
  1993. { 0x110, RSCreate(RS640x480, RS15bpp) },
  1994. { 0x181, RSCreate(RS768x576, RS15bpp) },
  1995. { 0x113, RSCreate(RS800x600, RS15bpp) },
  1996. { 0x189, RSCreate(RS960x720, RS15bpp) },
  1997. { 0x116, RSCreate(RS1024x768, RS15bpp) },
  1998. { 0x191, RSCreate(RS1152x864, RS15bpp) },
  1999. { 0x119, RSCreate(RS1280x1024, RS15bpp) },
  2000. { 0x199, RSCreate(RS1408x1056, RS15bpp) },
  2001. { 0x11D, RSCreate(RS1600x1200, RS15bpp) },
  2002. { 0x111, RSCreate(RS640x480, RS16bpp) },
  2003. { 0x182, RSCreate(RS768x576, RS16bpp) },
  2004. { 0x114, RSCreate(RS800x600, RS16bpp) },
  2005. { 0x18A, RSCreate(RS960x720, RS16bpp) },
  2006. { 0x117, RSCreate(RS1024x768, RS16bpp) },
  2007. { 0x192, RSCreate(RS1152x864, RS16bpp) },
  2008. { 0x11A, RSCreate(RS1280x1024, RS16bpp) },
  2009. { 0x19A, RSCreate(RS1408x1056, RS16bpp) },
  2010. { 0x11E, RSCreate(RS1600x1200, RS16bpp) },
  2011. { 0x1B2, RSCreate(RS640x480, RS24bpp) },
  2012. { 0x184, RSCreate(RS768x576, RS24bpp) },
  2013. { 0x1B5, RSCreate(RS800x600, RS24bpp) },
  2014. { 0x18C, RSCreate(RS960x720, RS24bpp) },
  2015. { 0x1B8, RSCreate(RS1024x768, RS24bpp) },
  2016. { 0x194, RSCreate(RS1152x864, RS24bpp) },
  2017. { 0x1BB, RSCreate(RS1280x1024, RS24bpp) },
  2018. { 0x19C, RSCreate(RS1408x1056, RS24bpp) },
  2019. { 0x1BF, RSCreate(RS1600x1200, RS24bpp) },
  2020. { 0x112, RSCreate(RS640x480, RS32bpp) },
  2021. { 0x183, RSCreate(RS768x576, RS32bpp) },
  2022. { 0x115, RSCreate(RS800x600, RS32bpp) },
  2023. { 0x18B, RSCreate(RS960x720, RS32bpp) },
  2024. { 0x118, RSCreate(RS1024x768, RS32bpp) },
  2025. { 0x193, RSCreate(RS1152x864, RS32bpp) },
  2026. { 0x11B, RSCreate(RS1280x1024, RS32bpp) },
  2027. { 0x19B, RSCreate(RS1408x1056, RS32bpp) },
  2028. { 0x11F, RSCreate(RS1600x1200, RS32bpp) },
  2029. { 0x010, RSCreate(RS640x350, RS4bpp ) },
  2030. { 0x012, RSCreate(RS640x480, RS4bpp ) },
  2031. { 0x102, RSCreate(RS800x600, RS4bpp ) },
  2032. { 0x104, RSCreate(RS1024x768, RS4bpp ) },
  2033. { 0x106, RSCreate(RS1280x1024, RS4bpp ) },
  2034. { 0, 0 }};
  2035. static void __init matroxfb_init_params(void) {
  2036. /* fh from kHz to Hz */
  2037. if (fh < 1000)
  2038. fh *= 1000; /* 1kHz minimum */
  2039. /* maxclk */
  2040. if (maxclk < 1000) maxclk *= 1000; /* kHz -> Hz, MHz -> kHz */
  2041. if (maxclk < 1000000) maxclk *= 1000; /* kHz -> Hz, 1MHz minimum */
  2042. /* fix VESA number */
  2043. if (vesa != ~0)
  2044. vesa &= 0x1DFF; /* mask out clearscreen, acceleration and so on */
  2045. /* static settings */
  2046. for (RSptr = vesamap; RSptr->vesa; RSptr++) {
  2047. if (RSptr->vesa == vesa) break;
  2048. }
  2049. if (!RSptr->vesa) {
  2050. printk(KERN_ERR "Invalid vesa mode 0x%04X\n", vesa);
  2051. RSptr = vesamap;
  2052. }
  2053. {
  2054. int res = RSResolution(RSptr->info)-1;
  2055. if (left == ~0)
  2056. left = timmings[res].left;
  2057. if (!xres)
  2058. xres = timmings[res].xres;
  2059. if (right == ~0)
  2060. right = timmings[res].right;
  2061. if (!hslen)
  2062. hslen = timmings[res].hslen;
  2063. if (upper == ~0)
  2064. upper = timmings[res].upper;
  2065. if (!yres)
  2066. yres = timmings[res].yres;
  2067. if (lower == ~0)
  2068. lower = timmings[res].lower;
  2069. if (!vslen)
  2070. vslen = timmings[res].vslen;
  2071. if (!(fv||fh||maxclk||pixclock))
  2072. fv = timmings[res].vfreq;
  2073. if (depth == -1)
  2074. depth = RSDepth(RSptr->info);
  2075. }
  2076. }
  2077. static int __init matrox_init(void) {
  2078. int err;
  2079. matroxfb_init_params();
  2080. err = pci_register_driver(&matroxfb_driver);
  2081. dev = -1; /* accept all new devices... */
  2082. return err;
  2083. }
  2084. /* **************************** exit-time only **************************** */
  2085. static void __exit matrox_done(void) {
  2086. pci_unregister_driver(&matroxfb_driver);
  2087. }
  2088. #ifndef MODULE
  2089. /* ************************* init in-kernel code ************************** */
  2090. static int __init matroxfb_setup(char *options) {
  2091. char *this_opt;
  2092. DBG(__func__)
  2093. if (!options || !*options)
  2094. return 0;
  2095. while ((this_opt = strsep(&options, ",")) != NULL) {
  2096. if (!*this_opt) continue;
  2097. dprintk("matroxfb_setup: option %s\n", this_opt);
  2098. if (!strncmp(this_opt, "dev:", 4))
  2099. dev = simple_strtoul(this_opt+4, NULL, 0);
  2100. else if (!strncmp(this_opt, "depth:", 6)) {
  2101. switch (simple_strtoul(this_opt+6, NULL, 0)) {
  2102. case 0: depth = RSText; break;
  2103. case 4: depth = RS4bpp; break;
  2104. case 8: depth = RS8bpp; break;
  2105. case 15:depth = RS15bpp; break;
  2106. case 16:depth = RS16bpp; break;
  2107. case 24:depth = RS24bpp; break;
  2108. case 32:depth = RS32bpp; break;
  2109. default:
  2110. printk(KERN_ERR "matroxfb: unsupported color depth\n");
  2111. }
  2112. } else if (!strncmp(this_opt, "xres:", 5))
  2113. xres = simple_strtoul(this_opt+5, NULL, 0);
  2114. else if (!strncmp(this_opt, "yres:", 5))
  2115. yres = simple_strtoul(this_opt+5, NULL, 0);
  2116. else if (!strncmp(this_opt, "vslen:", 6))
  2117. vslen = simple_strtoul(this_opt+6, NULL, 0);
  2118. else if (!strncmp(this_opt, "hslen:", 6))
  2119. hslen = simple_strtoul(this_opt+6, NULL, 0);
  2120. else if (!strncmp(this_opt, "left:", 5))
  2121. left = simple_strtoul(this_opt+5, NULL, 0);
  2122. else if (!strncmp(this_opt, "right:", 6))
  2123. right = simple_strtoul(this_opt+6, NULL, 0);
  2124. else if (!strncmp(this_opt, "upper:", 6))
  2125. upper = simple_strtoul(this_opt+6, NULL, 0);
  2126. else if (!strncmp(this_opt, "lower:", 6))
  2127. lower = simple_strtoul(this_opt+6, NULL, 0);
  2128. else if (!strncmp(this_opt, "pixclock:", 9))
  2129. pixclock = simple_strtoul(this_opt+9, NULL, 0);
  2130. else if (!strncmp(this_opt, "sync:", 5))
  2131. sync = simple_strtoul(this_opt+5, NULL, 0);
  2132. else if (!strncmp(this_opt, "vesa:", 5))
  2133. vesa = simple_strtoul(this_opt+5, NULL, 0);
  2134. else if (!strncmp(this_opt, "maxclk:", 7))
  2135. maxclk = simple_strtoul(this_opt+7, NULL, 0);
  2136. else if (!strncmp(this_opt, "fh:", 3))
  2137. fh = simple_strtoul(this_opt+3, NULL, 0);
  2138. else if (!strncmp(this_opt, "fv:", 3))
  2139. fv = simple_strtoul(this_opt+3, NULL, 0);
  2140. else if (!strncmp(this_opt, "mem:", 4))
  2141. mem = simple_strtoul(this_opt+4, NULL, 0);
  2142. else if (!strncmp(this_opt, "mode:", 5))
  2143. strlcpy(videomode, this_opt+5, sizeof(videomode));
  2144. else if (!strncmp(this_opt, "outputs:", 8))
  2145. strlcpy(outputs, this_opt+8, sizeof(outputs));
  2146. else if (!strncmp(this_opt, "dfp:", 4)) {
  2147. dfp_type = simple_strtoul(this_opt+4, NULL, 0);
  2148. dfp = 1;
  2149. }
  2150. #ifdef CONFIG_PPC_PMAC
  2151. else if (!strncmp(this_opt, "vmode:", 6)) {
  2152. unsigned int vmode = simple_strtoul(this_opt+6, NULL, 0);
  2153. if (vmode > 0 && vmode <= VMODE_MAX)
  2154. default_vmode = vmode;
  2155. } else if (!strncmp(this_opt, "cmode:", 6)) {
  2156. unsigned int cmode = simple_strtoul(this_opt+6, NULL, 0);
  2157. switch (cmode) {
  2158. case 0:
  2159. case 8:
  2160. default_cmode = CMODE_8;
  2161. break;
  2162. case 15:
  2163. case 16:
  2164. default_cmode = CMODE_16;
  2165. break;
  2166. case 24:
  2167. case 32:
  2168. default_cmode = CMODE_32;
  2169. break;
  2170. }
  2171. }
  2172. #endif
  2173. else if (!strcmp(this_opt, "disabled")) /* nodisabled does not exist */
  2174. disabled = 1;
  2175. else if (!strcmp(this_opt, "enabled")) /* noenabled does not exist */
  2176. disabled = 0;
  2177. else if (!strcmp(this_opt, "sgram")) /* nosgram == sdram */
  2178. sgram = 1;
  2179. else if (!strcmp(this_opt, "sdram"))
  2180. sgram = 0;
  2181. else if (!strncmp(this_opt, "memtype:", 8))
  2182. memtype = simple_strtoul(this_opt+8, NULL, 0);
  2183. else {
  2184. int value = 1;
  2185. if (!strncmp(this_opt, "no", 2)) {
  2186. value = 0;
  2187. this_opt += 2;
  2188. }
  2189. if (! strcmp(this_opt, "inverse"))
  2190. inverse = value;
  2191. else if (!strcmp(this_opt, "accel"))
  2192. noaccel = !value;
  2193. else if (!strcmp(this_opt, "pan"))
  2194. nopan = !value;
  2195. else if (!strcmp(this_opt, "pciretry"))
  2196. no_pci_retry = !value;
  2197. else if (!strcmp(this_opt, "vga"))
  2198. novga = !value;
  2199. else if (!strcmp(this_opt, "bios"))
  2200. nobios = !value;
  2201. else if (!strcmp(this_opt, "init"))
  2202. noinit = !value;
  2203. #ifdef CONFIG_MTRR
  2204. else if (!strcmp(this_opt, "mtrr"))
  2205. mtrr = value;
  2206. #endif
  2207. else if (!strcmp(this_opt, "inv24"))
  2208. inv24 = value;
  2209. else if (!strcmp(this_opt, "cross4MB"))
  2210. cross4MB = value;
  2211. else if (!strcmp(this_opt, "grayscale"))
  2212. grayscale = value;
  2213. else if (!strcmp(this_opt, "dfp"))
  2214. dfp = value;
  2215. else {
  2216. strlcpy(videomode, this_opt, sizeof(videomode));
  2217. }
  2218. }
  2219. }
  2220. return 0;
  2221. }
  2222. static int __initdata initialized = 0;
  2223. static int __init matroxfb_init(void)
  2224. {
  2225. char *option = NULL;
  2226. int err = 0;
  2227. DBG(__func__)
  2228. if (fb_get_options("matroxfb", &option))
  2229. return -ENODEV;
  2230. matroxfb_setup(option);
  2231. if (disabled)
  2232. return -ENXIO;
  2233. if (!initialized) {
  2234. initialized = 1;
  2235. err = matrox_init();
  2236. }
  2237. hotplug = 1;
  2238. /* never return failure, user can hotplug matrox later... */
  2239. return err;
  2240. }
  2241. module_init(matroxfb_init);
  2242. #else
  2243. /* *************************** init module code **************************** */
  2244. MODULE_AUTHOR("(c) 1998-2002 Petr Vandrovec <vandrove@vc.cvut.cz>");
  2245. MODULE_DESCRIPTION("Accelerated FBDev driver for Matrox Millennium/Mystique/G100/G200/G400/G450/G550");
  2246. MODULE_LICENSE("GPL");
  2247. module_param(mem, int, 0);
  2248. MODULE_PARM_DESC(mem, "Size of available memory in MB, KB or B (2,4,8,12,16MB, default=autodetect)");
  2249. module_param(disabled, int, 0);
  2250. MODULE_PARM_DESC(disabled, "Disabled (0 or 1=disabled) (default=0)");
  2251. module_param(noaccel, int, 0);
  2252. MODULE_PARM_DESC(noaccel, "Do not use accelerating engine (0 or 1=disabled) (default=0)");
  2253. module_param(nopan, int, 0);
  2254. MODULE_PARM_DESC(nopan, "Disable pan on startup (0 or 1=disabled) (default=0)");
  2255. module_param(no_pci_retry, int, 0);
  2256. MODULE_PARM_DESC(no_pci_retry, "PCI retries enabled (0 or 1=disabled) (default=0)");
  2257. module_param(novga, int, 0);
  2258. MODULE_PARM_DESC(novga, "VGA I/O (0x3C0-0x3DF) disabled (0 or 1=disabled) (default=0)");
  2259. module_param(nobios, int, 0);
  2260. MODULE_PARM_DESC(nobios, "Disables ROM BIOS (0 or 1=disabled) (default=do not change BIOS state)");
  2261. module_param(noinit, int, 0);
  2262. MODULE_PARM_DESC(noinit, "Disables W/SG/SD-RAM and bus interface initialization (0 or 1=do not initialize) (default=0)");
  2263. module_param(memtype, int, 0);
  2264. MODULE_PARM_DESC(memtype, "Memory type for G200/G400 (see Documentation/fb/matroxfb.txt for explanation) (default=3 for G200, 0 for G400)");
  2265. #ifdef CONFIG_MTRR
  2266. module_param(mtrr, int, 0);
  2267. MODULE_PARM_DESC(mtrr, "This speeds up video memory accesses (0=disabled or 1) (default=1)");
  2268. #endif
  2269. module_param(sgram, int, 0);
  2270. MODULE_PARM_DESC(sgram, "Indicates that G100/G200/G400 has SGRAM memory (0=SDRAM, 1=SGRAM) (default=0)");
  2271. module_param(inv24, int, 0);
  2272. MODULE_PARM_DESC(inv24, "Inverts clock polarity for 24bpp and loop frequency > 100MHz (default=do not invert polarity)");
  2273. module_param(inverse, int, 0);
  2274. MODULE_PARM_DESC(inverse, "Inverse (0 or 1) (default=0)");
  2275. module_param(dev, int, 0);
  2276. MODULE_PARM_DESC(dev, "Multihead support, attach to device ID (0..N) (default=all working)");
  2277. module_param(vesa, int, 0);
  2278. MODULE_PARM_DESC(vesa, "Startup videomode (0x000-0x1FF) (default=0x101)");
  2279. module_param(xres, int, 0);
  2280. MODULE_PARM_DESC(xres, "Horizontal resolution (px), overrides xres from vesa (default=vesa)");
  2281. module_param(yres, int, 0);
  2282. MODULE_PARM_DESC(yres, "Vertical resolution (scans), overrides yres from vesa (default=vesa)");
  2283. module_param(upper, int, 0);
  2284. MODULE_PARM_DESC(upper, "Upper blank space (scans), overrides upper from vesa (default=vesa)");
  2285. module_param(lower, int, 0);
  2286. MODULE_PARM_DESC(lower, "Lower blank space (scans), overrides lower from vesa (default=vesa)");
  2287. module_param(vslen, int, 0);
  2288. MODULE_PARM_DESC(vslen, "Vertical sync length (scans), overrides lower from vesa (default=vesa)");
  2289. module_param(left, int, 0);
  2290. MODULE_PARM_DESC(left, "Left blank space (px), overrides left from vesa (default=vesa)");
  2291. module_param(right, int, 0);
  2292. MODULE_PARM_DESC(right, "Right blank space (px), overrides right from vesa (default=vesa)");
  2293. module_param(hslen, int, 0);
  2294. MODULE_PARM_DESC(hslen, "Horizontal sync length (px), overrides hslen from vesa (default=vesa)");
  2295. module_param(pixclock, int, 0);
  2296. MODULE_PARM_DESC(pixclock, "Pixelclock (ns), overrides pixclock from vesa (default=vesa)");
  2297. module_param(sync, int, 0);
  2298. MODULE_PARM_DESC(sync, "Sync polarity, overrides sync from vesa (default=vesa)");
  2299. module_param(depth, int, 0);
  2300. MODULE_PARM_DESC(depth, "Color depth (0=text,8,15,16,24,32) (default=vesa)");
  2301. module_param(maxclk, int, 0);
  2302. MODULE_PARM_DESC(maxclk, "Startup maximal clock, 0-999MHz, 1000-999999kHz, 1000000-INF Hz");
  2303. module_param(fh, int, 0);
  2304. MODULE_PARM_DESC(fh, "Startup horizontal frequency, 0-999kHz, 1000-INF Hz");
  2305. module_param(fv, int, 0);
  2306. MODULE_PARM_DESC(fv, "Startup vertical frequency, 0-INF Hz\n"
  2307. "You should specify \"fv:max_monitor_vsync,fh:max_monitor_hsync,maxclk:max_monitor_dotclock\"");
  2308. module_param(grayscale, int, 0);
  2309. MODULE_PARM_DESC(grayscale, "Sets display into grayscale. Works perfectly with paletized videomode (4, 8bpp), some limitations apply to 16, 24 and 32bpp videomodes (default=nograyscale)");
  2310. module_param(cross4MB, int, 0);
  2311. MODULE_PARM_DESC(cross4MB, "Specifies that 4MB boundary can be in middle of line. (default=autodetected)");
  2312. module_param(dfp, int, 0);
  2313. MODULE_PARM_DESC(dfp, "Specifies whether to use digital flat panel interface of G200/G400 (0 or 1) (default=0)");
  2314. module_param(dfp_type, int, 0);
  2315. MODULE_PARM_DESC(dfp_type, "Specifies DFP interface type (0 to 255) (default=read from hardware)");
  2316. module_param_string(outputs, outputs, sizeof(outputs), 0);
  2317. MODULE_PARM_DESC(outputs, "Specifies which CRTC is mapped to which output (string of up to three letters, consisting of 0 (disabled), 1 (CRTC1), 2 (CRTC2)) (default=111 for Gx50, 101 for G200/G400 with DFP, and 100 for all other devices)");
  2318. #ifdef CONFIG_PPC_PMAC
  2319. module_param_named(vmode, default_vmode, int, 0);
  2320. MODULE_PARM_DESC(vmode, "Specify the vmode mode number that should be used (640x480 default)");
  2321. module_param_named(cmode, default_cmode, int, 0);
  2322. MODULE_PARM_DESC(cmode, "Specify the video depth that should be used (8bit default)");
  2323. #endif
  2324. int __init init_module(void){
  2325. DBG(__func__)
  2326. if (disabled)
  2327. return -ENXIO;
  2328. if (depth == 0)
  2329. depth = RSText;
  2330. else if (depth == 4)
  2331. depth = RS4bpp;
  2332. else if (depth == 8)
  2333. depth = RS8bpp;
  2334. else if (depth == 15)
  2335. depth = RS15bpp;
  2336. else if (depth == 16)
  2337. depth = RS16bpp;
  2338. else if (depth == 24)
  2339. depth = RS24bpp;
  2340. else if (depth == 32)
  2341. depth = RS32bpp;
  2342. else if (depth != -1) {
  2343. printk(KERN_ERR "matroxfb: depth %d is not supported, using default\n", depth);
  2344. depth = -1;
  2345. }
  2346. matrox_init();
  2347. /* never return failure; user can hotplug matrox later... */
  2348. return 0;
  2349. }
  2350. #endif /* MODULE */
  2351. module_exit(matrox_done);
  2352. EXPORT_SYMBOL(matroxfb_register_driver);
  2353. EXPORT_SYMBOL(matroxfb_unregister_driver);
  2354. EXPORT_SYMBOL(matroxfb_wait_for_sync);
  2355. EXPORT_SYMBOL(matroxfb_enable_irq);
  2356. /*
  2357. * Overrides for Emacs so that we follow Linus's tabbing style.
  2358. * ---------------------------------------------------------------------------
  2359. * Local variables:
  2360. * c-basic-offset: 8
  2361. * End:
  2362. */