]> git.proxmox.com Git - mirror_ubuntu-bionic-kernel.git/blob - drivers/video/atafb.c
include cleanup: Update gfp.h and slab.h includes to prepare for breaking implicit...
[mirror_ubuntu-bionic-kernel.git] / drivers / video / atafb.c
1 /*
2 * linux/drivers/video/atafb.c -- Atari builtin chipset frame buffer device
3 *
4 * Copyright (C) 1994 Martin Schaller & Roman Hodek
5 *
6 * This file is subject to the terms and conditions of the GNU General Public
7 * License. See the file COPYING in the main directory of this archive
8 * for more details.
9 *
10 * History:
11 * - 03 Jan 95: Original version by Martin Schaller: The TT driver and
12 * all the device independent stuff
13 * - 09 Jan 95: Roman: I've added the hardware abstraction (hw_switch)
14 * and wrote the Falcon, ST(E), and External drivers
15 * based on the original TT driver.
16 * - 07 May 95: Martin: Added colormap operations for the external driver
17 * - 21 May 95: Martin: Added support for overscan
18 * Andreas: some bug fixes for this
19 * - Jul 95: Guenther Kelleter <guenther@pool.informatik.rwth-aachen.de>:
20 * Programmable Falcon video modes
21 * (thanks to Christian Cartus for documentation
22 * of VIDEL registers).
23 * - 27 Dec 95: Guenther: Implemented user definable video modes "user[0-7]"
24 * on minor 24...31. "user0" may be set on commandline by
25 * "R<x>;<y>;<depth>". (Makes sense only on Falcon)
26 * Video mode switch on Falcon now done at next VBL interrupt
27 * to avoid the annoying right shift of the screen.
28 * - 23 Sep 97: Juergen: added xres_virtual for cards like ProMST
29 * The external-part is legacy, therefore hardware-specific
30 * functions like panning/hardwarescrolling/blanking isn't
31 * supported.
32 * - 29 Sep 97: Juergen: added Romans suggestion for pan_display
33 * (var->xoffset was changed even if no set_screen_base avail.)
34 * - 05 Oct 97: Juergen: extfb (PACKED_PIXEL) is FB_PSEUDOCOLOR 'cause
35 * we know how to set the colors
36 * ext_*palette: read from ext_colors (former MV300_colors)
37 * write to ext_colors and RAMDAC
38 *
39 * To do:
40 * - For the Falcon it is not possible to set random video modes on
41 * SM124 and SC/TV, only the bootup resolution is supported.
42 *
43 */
44
45 #define ATAFB_TT
46 #define ATAFB_STE
47 #define ATAFB_EXT
48 #define ATAFB_FALCON
49
50 #include <linux/module.h>
51 #include <linux/kernel.h>
52 #include <linux/errno.h>
53 #include <linux/string.h>
54 #include <linux/mm.h>
55 #include <linux/delay.h>
56 #include <linux/init.h>
57 #include <linux/interrupt.h>
58
59 #include <asm/setup.h>
60 #include <linux/uaccess.h>
61 #include <asm/pgtable.h>
62 #include <asm/irq.h>
63 #include <asm/io.h>
64
65 #include <asm/atarihw.h>
66 #include <asm/atariints.h>
67 #include <asm/atari_stram.h>
68
69 #include <linux/fb.h>
70 #include <asm/atarikb.h>
71
72 #include "c2p.h"
73 #include "atafb.h"
74
75 #define SWITCH_ACIA 0x01 /* modes for switch on OverScan */
76 #define SWITCH_SND6 0x40
77 #define SWITCH_SND7 0x80
78 #define SWITCH_NONE 0x00
79
80
81 #define up(x, r) (((x) + (r) - 1) & ~((r)-1))
82
83 /*
84 * Interface to the world
85 */
86
87 static int atafb_check_var(struct fb_var_screeninfo *var, struct fb_info *info);
88 static int atafb_set_par(struct fb_info *info);
89 static int atafb_setcolreg(unsigned int regno, unsigned int red, unsigned int green,
90 unsigned int blue, unsigned int transp,
91 struct fb_info *info);
92 static int atafb_blank(int blank, struct fb_info *info);
93 static int atafb_pan_display(struct fb_var_screeninfo *var,
94 struct fb_info *info);
95 static void atafb_fillrect(struct fb_info *info,
96 const struct fb_fillrect *rect);
97 static void atafb_copyarea(struct fb_info *info,
98 const struct fb_copyarea *region);
99 static void atafb_imageblit(struct fb_info *info, const struct fb_image *image);
100 static int atafb_ioctl(struct fb_info *info, unsigned int cmd,
101 unsigned long arg);
102
103
104 static int default_par; /* default resolution (0=none) */
105
106 static unsigned long default_mem_req;
107
108 static int hwscroll = -1;
109
110 static int use_hwscroll = 1;
111
112 static int sttt_xres = 640, st_yres = 400, tt_yres = 480;
113 static int sttt_xres_virtual = 640, sttt_yres_virtual = 400;
114 static int ovsc_offset, ovsc_addlen;
115
116 /*
117 * Hardware parameters for current mode
118 */
119
120 static struct atafb_par {
121 void *screen_base;
122 int yres_virtual;
123 u_long next_line;
124 #if defined ATAFB_TT || defined ATAFB_STE
125 union {
126 struct {
127 int mode;
128 int sync;
129 } tt, st;
130 #endif
131 #ifdef ATAFB_FALCON
132 struct falcon_hw {
133 /* Here are fields for storing a video mode, as direct
134 * parameters for the hardware.
135 */
136 short sync;
137 short line_width;
138 short line_offset;
139 short st_shift;
140 short f_shift;
141 short vid_control;
142 short vid_mode;
143 short xoffset;
144 short hht, hbb, hbe, hdb, hde, hss;
145 short vft, vbb, vbe, vdb, vde, vss;
146 /* auxiliary information */
147 short mono;
148 short ste_mode;
149 short bpp;
150 u32 pseudo_palette[16];
151 } falcon;
152 #endif
153 /* Nothing needed for external mode */
154 } hw;
155 } current_par;
156
157 /* Don't calculate an own resolution, and thus don't change the one found when
158 * booting (currently used for the Falcon to keep settings for internal video
159 * hardware extensions (e.g. ScreenBlaster) */
160 static int DontCalcRes = 0;
161
162 #ifdef ATAFB_FALCON
163 #define HHT hw.falcon.hht
164 #define HBB hw.falcon.hbb
165 #define HBE hw.falcon.hbe
166 #define HDB hw.falcon.hdb
167 #define HDE hw.falcon.hde
168 #define HSS hw.falcon.hss
169 #define VFT hw.falcon.vft
170 #define VBB hw.falcon.vbb
171 #define VBE hw.falcon.vbe
172 #define VDB hw.falcon.vdb
173 #define VDE hw.falcon.vde
174 #define VSS hw.falcon.vss
175 #define VCO_CLOCK25 0x04
176 #define VCO_CSYPOS 0x10
177 #define VCO_VSYPOS 0x20
178 #define VCO_HSYPOS 0x40
179 #define VCO_SHORTOFFS 0x100
180 #define VMO_DOUBLE 0x01
181 #define VMO_INTER 0x02
182 #define VMO_PREMASK 0x0c
183 #endif
184
185 static struct fb_info fb_info = {
186 .fix = {
187 .id = "Atari ",
188 .visual = FB_VISUAL_PSEUDOCOLOR,
189 .accel = FB_ACCEL_NONE,
190 }
191 };
192
193 static void *screen_base; /* base address of screen */
194 static void *real_screen_base; /* (only for Overscan) */
195
196 static int screen_len;
197
198 static int current_par_valid;
199
200 static int mono_moni;
201
202
203 #ifdef ATAFB_EXT
204
205 /* external video handling */
206 static unsigned int external_xres;
207 static unsigned int external_xres_virtual;
208 static unsigned int external_yres;
209
210 /*
211 * not needed - atafb will never support panning/hardwarescroll with external
212 * static unsigned int external_yres_virtual;
213 */
214 static unsigned int external_depth;
215 static int external_pmode;
216 static void *external_addr;
217 static unsigned long external_len;
218 static unsigned long external_vgaiobase;
219 static unsigned int external_bitspercol = 6;
220
221 /*
222 * JOE <joe@amber.dinoco.de>:
223 * added card type for external driver, is only needed for
224 * colormap handling.
225 */
226 enum cardtype { IS_VGA, IS_MV300 };
227 static enum cardtype external_card_type = IS_VGA;
228
229 /*
230 * The MV300 mixes the color registers. So we need an array of munged
231 * indices in order to access the correct reg.
232 */
233 static int MV300_reg_1bit[2] = {
234 0, 1
235 };
236 static int MV300_reg_4bit[16] = {
237 0, 8, 4, 12, 2, 10, 6, 14, 1, 9, 5, 13, 3, 11, 7, 15
238 };
239 static int MV300_reg_8bit[256] = {
240 0, 128, 64, 192, 32, 160, 96, 224, 16, 144, 80, 208, 48, 176, 112, 240,
241 8, 136, 72, 200, 40, 168, 104, 232, 24, 152, 88, 216, 56, 184, 120, 248,
242 4, 132, 68, 196, 36, 164, 100, 228, 20, 148, 84, 212, 52, 180, 116, 244,
243 12, 140, 76, 204, 44, 172, 108, 236, 28, 156, 92, 220, 60, 188, 124, 252,
244 2, 130, 66, 194, 34, 162, 98, 226, 18, 146, 82, 210, 50, 178, 114, 242,
245 10, 138, 74, 202, 42, 170, 106, 234, 26, 154, 90, 218, 58, 186, 122, 250,
246 6, 134, 70, 198, 38, 166, 102, 230, 22, 150, 86, 214, 54, 182, 118, 246,
247 14, 142, 78, 206, 46, 174, 110, 238, 30, 158, 94, 222, 62, 190, 126, 254,
248 1, 129, 65, 193, 33, 161, 97, 225, 17, 145, 81, 209, 49, 177, 113, 241,
249 9, 137, 73, 201, 41, 169, 105, 233, 25, 153, 89, 217, 57, 185, 121, 249,
250 5, 133, 69, 197, 37, 165, 101, 229, 21, 149, 85, 213, 53, 181, 117, 245,
251 13, 141, 77, 205, 45, 173, 109, 237, 29, 157, 93, 221, 61, 189, 125, 253,
252 3, 131, 67, 195, 35, 163, 99, 227, 19, 147, 83, 211, 51, 179, 115, 243,
253 11, 139, 75, 203, 43, 171, 107, 235, 27, 155, 91, 219, 59, 187, 123, 251,
254 7, 135, 71, 199, 39, 167, 103, 231, 23, 151, 87, 215, 55, 183, 119, 247,
255 15, 143, 79, 207, 47, 175, 111, 239, 31, 159, 95, 223, 63, 191, 127, 255
256 };
257
258 static int *MV300_reg = MV300_reg_8bit;
259 #endif /* ATAFB_EXT */
260
261
262 static int inverse;
263
264 extern int fontheight_8x8;
265 extern int fontwidth_8x8;
266 extern unsigned char fontdata_8x8[];
267
268 extern int fontheight_8x16;
269 extern int fontwidth_8x16;
270 extern unsigned char fontdata_8x16[];
271
272 /*
273 * struct fb_ops {
274 * * open/release and usage marking
275 * struct module *owner;
276 * int (*fb_open)(struct fb_info *info, int user);
277 * int (*fb_release)(struct fb_info *info, int user);
278 *
279 * * For framebuffers with strange non linear layouts or that do not
280 * * work with normal memory mapped access
281 * ssize_t (*fb_read)(struct file *file, char __user *buf, size_t count, loff_t *ppos);
282 * ssize_t (*fb_write)(struct file *file, const char __user *buf, size_t count, loff_t *ppos);
283 *
284 * * checks var and eventually tweaks it to something supported,
285 * * DOES NOT MODIFY PAR *
286 * int (*fb_check_var)(struct fb_var_screeninfo *var, struct fb_info *info);
287 *
288 * * set the video mode according to info->var *
289 * int (*fb_set_par)(struct fb_info *info);
290 *
291 * * set color register *
292 * int (*fb_setcolreg)(unsigned int regno, unsigned int red, unsigned int green,
293 * unsigned int blue, unsigned int transp, struct fb_info *info);
294 *
295 * * set color registers in batch *
296 * int (*fb_setcmap)(struct fb_cmap *cmap, struct fb_info *info);
297 *
298 * * blank display *
299 * int (*fb_blank)(int blank, struct fb_info *info);
300 *
301 * * pan display *
302 * int (*fb_pan_display)(struct fb_var_screeninfo *var, struct fb_info *info);
303 *
304 * *** The meat of the drawing engine ***
305 * * Draws a rectangle *
306 * void (*fb_fillrect) (struct fb_info *info, const struct fb_fillrect *rect);
307 * * Copy data from area to another *
308 * void (*fb_copyarea) (struct fb_info *info, const struct fb_copyarea *region);
309 * * Draws a image to the display *
310 * void (*fb_imageblit) (struct fb_info *info, const struct fb_image *image);
311 *
312 * * Draws cursor *
313 * int (*fb_cursor) (struct fb_info *info, struct fb_cursor *cursor);
314 *
315 * * Rotates the display *
316 * void (*fb_rotate)(struct fb_info *info, int angle);
317 *
318 * * wait for blit idle, optional *
319 * int (*fb_sync)(struct fb_info *info);
320 *
321 * * perform fb specific ioctl (optional) *
322 * int (*fb_ioctl)(struct fb_info *info, unsigned int cmd,
323 * unsigned long arg);
324 *
325 * * Handle 32bit compat ioctl (optional) *
326 * int (*fb_compat_ioctl)(struct fb_info *info, unsigned int cmd,
327 * unsigned long arg);
328 *
329 * * perform fb specific mmap *
330 * int (*fb_mmap)(struct fb_info *info, struct vm_area_struct *vma);
331 * } ;
332 */
333
334
335 /* ++roman: This structure abstracts from the underlying hardware (ST(e),
336 * TT, or Falcon.
337 *
338 * int (*detect)(void)
339 * This function should detect the current video mode settings and
340 * store them in atafb_predefined[0] for later reference by the
341 * user. Return the index+1 of an equivalent predefined mode or 0
342 * if there is no such.
343 *
344 * int (*encode_fix)(struct fb_fix_screeninfo *fix,
345 * struct atafb_par *par)
346 * This function should fill in the 'fix' structure based on the
347 * values in the 'par' structure.
348 * !!! Obsolete, perhaps !!!
349 *
350 * int (*decode_var)(struct fb_var_screeninfo *var,
351 * struct atafb_par *par)
352 * Get the video params out of 'var'. If a value doesn't fit, round
353 * it up, if it's too big, return EINVAL.
354 * Round up in the following order: bits_per_pixel, xres, yres,
355 * xres_virtual, yres_virtual, xoffset, yoffset, grayscale, bitfields,
356 * horizontal timing, vertical timing.
357 *
358 * int (*encode_var)(struct fb_var_screeninfo *var,
359 * struct atafb_par *par);
360 * Fill the 'var' structure based on the values in 'par' and maybe
361 * other values read out of the hardware.
362 *
363 * void (*get_par)(struct atafb_par *par)
364 * Fill the hardware's 'par' structure.
365 * !!! Used only by detect() !!!
366 *
367 * void (*set_par)(struct atafb_par *par)
368 * Set the hardware according to 'par'.
369 *
370 * void (*set_screen_base)(void *s_base)
371 * Set the base address of the displayed frame buffer. Only called
372 * if yres_virtual > yres or xres_virtual > xres.
373 *
374 * int (*blank)(int blank_mode)
375 * Blank the screen if blank_mode != 0, else unblank. If blank == NULL then
376 * the caller blanks by setting the CLUT to all black. Return 0 if blanking
377 * succeeded, !=0 if un-/blanking failed due to e.g. a video mode which
378 * doesn't support it. Implements VESA suspend and powerdown modes on
379 * hardware that supports disabling hsync/vsync:
380 * blank_mode == 2: suspend vsync, 3:suspend hsync, 4: powerdown.
381 */
382
383 static struct fb_hwswitch {
384 int (*detect)(void);
385 int (*encode_fix)(struct fb_fix_screeninfo *fix,
386 struct atafb_par *par);
387 int (*decode_var)(struct fb_var_screeninfo *var,
388 struct atafb_par *par);
389 int (*encode_var)(struct fb_var_screeninfo *var,
390 struct atafb_par *par);
391 void (*get_par)(struct atafb_par *par);
392 void (*set_par)(struct atafb_par *par);
393 void (*set_screen_base)(void *s_base);
394 int (*blank)(int blank_mode);
395 int (*pan_display)(struct fb_var_screeninfo *var,
396 struct fb_info *info);
397 } *fbhw;
398
399 static char *autodetect_names[] = { "autodetect", NULL };
400 static char *stlow_names[] = { "stlow", NULL };
401 static char *stmid_names[] = { "stmid", "default5", NULL };
402 static char *sthigh_names[] = { "sthigh", "default4", NULL };
403 static char *ttlow_names[] = { "ttlow", NULL };
404 static char *ttmid_names[] = { "ttmid", "default1", NULL };
405 static char *tthigh_names[] = { "tthigh", "default2", NULL };
406 static char *vga2_names[] = { "vga2", NULL };
407 static char *vga4_names[] = { "vga4", NULL };
408 static char *vga16_names[] = { "vga16", "default3", NULL };
409 static char *vga256_names[] = { "vga256", NULL };
410 static char *falh2_names[] = { "falh2", NULL };
411 static char *falh16_names[] = { "falh16", NULL };
412
413 static char **fb_var_names[] = {
414 autodetect_names,
415 stlow_names,
416 stmid_names,
417 sthigh_names,
418 ttlow_names,
419 ttmid_names,
420 tthigh_names,
421 vga2_names,
422 vga4_names,
423 vga16_names,
424 vga256_names,
425 falh2_names,
426 falh16_names,
427 NULL
428 };
429
430 static struct fb_var_screeninfo atafb_predefined[] = {
431 /*
432 * yres_virtual == 0 means use hw-scrolling if possible, else yres
433 */
434 { /* autodetect */
435 0, 0, 0, 0, 0, 0, 0, 0, /* xres-grayscale */
436 {0, 0, 0}, {0, 0, 0}, {0, 0, 0}, {0, 0, 0}, /* red green blue tran*/
437 0, 0, -1, -1, 0, 0, 0, 0, 0, 0, 0, 0 },
438 { /* st low */
439 320, 200, 320, 0, 0, 0, 4, 0,
440 {0, 4, 0}, {0, 4, 0}, {0, 4, 0}, {0, 0, 0},
441 0, 0, -1, -1, 0, 0, 0, 0, 0, 0, 0, 0 },
442 { /* st mid */
443 640, 200, 640, 0, 0, 0, 2, 0,
444 {0, 4, 0}, {0, 4, 0}, {0, 4, 0}, {0, 0, 0},
445 0, 0, -1, -1, 0, 0, 0, 0, 0, 0, 0, 0 },
446 { /* st high */
447 640, 400, 640, 0, 0, 0, 1, 0,
448 {0, 4, 0}, {0, 4, 0}, {0, 4, 0}, {0, 0, 0},
449 0, 0, -1, -1, 0, 0, 0, 0, 0, 0, 0, 0 },
450 { /* tt low */
451 320, 480, 320, 0, 0, 0, 8, 0,
452 {0, 4, 0}, {0, 4, 0}, {0, 4, 0}, {0, 0, 0},
453 0, 0, -1, -1, 0, 0, 0, 0, 0, 0, 0, 0 },
454 { /* tt mid */
455 640, 480, 640, 0, 0, 0, 4, 0,
456 {0, 4, 0}, {0, 4, 0}, {0, 4, 0}, {0, 0, 0},
457 0, 0, -1, -1, 0, 0, 0, 0, 0, 0, 0, 0 },
458 { /* tt high */
459 1280, 960, 1280, 0, 0, 0, 1, 0,
460 {0, 4, 0}, {0, 4, 0}, {0, 4, 0}, {0, 0, 0},
461 0, 0, -1, -1, 0, 0, 0, 0, 0, 0, 0, 0 },
462 { /* vga2 */
463 640, 480, 640, 0, 0, 0, 1, 0,
464 {0, 6, 0}, {0, 6, 0}, {0, 6, 0}, {0, 0, 0},
465 0, 0, -1, -1, 0, 0, 0, 0, 0, 0, 0, 0 },
466 { /* vga4 */
467 640, 480, 640, 0, 0, 0, 2, 0,
468 {0, 4, 0}, {0, 4, 0}, {0, 4, 0}, {0, 0, 0},
469 0, 0, -1, -1, 0, 0, 0, 0, 0, 0, 0, 0 },
470 { /* vga16 */
471 640, 480, 640, 0, 0, 0, 4, 0,
472 {0, 6, 0}, {0, 6, 0}, {0, 6, 0}, {0, 0, 0},
473 0, 0, -1, -1, 0, 0, 0, 0, 0, 0, 0, 0 },
474 { /* vga256 */
475 640, 480, 640, 0, 0, 0, 8, 0,
476 {0, 6, 0}, {0, 6, 0}, {0, 6, 0}, {0, 0, 0},
477 0, 0, -1, -1, 0, 0, 0, 0, 0, 0, 0, 0 },
478 { /* falh2 */
479 896, 608, 896, 0, 0, 0, 1, 0,
480 {0, 6, 0}, {0, 6, 0}, {0, 6, 0}, {0, 0, 0},
481 0, 0, -1, -1, 0, 0, 0, 0, 0, 0, 0, 0 },
482 { /* falh16 */
483 896, 608, 896, 0, 0, 0, 4, 0,
484 {0, 6, 0}, {0, 6, 0}, {0, 6, 0}, {0, 0, 0},
485 0, 0, -1, -1, 0, 0, 0, 0, 0, 0, 0, 0 },
486 };
487
488 static int num_atafb_predefined = ARRAY_SIZE(atafb_predefined);
489
490 static struct fb_videomode atafb_modedb[] __initdata = {
491 /*
492 * Atari Video Modes
493 *
494 * If you change these, make sure to update DEFMODE_* as well!
495 */
496
497 /*
498 * ST/TT Video Modes
499 */
500
501 {
502 /* 320x200, 15 kHz, 60 Hz (ST low) */
503 "st-low", 60, 320, 200, 32000, 32, 16, 31, 14, 96, 4,
504 0, FB_VMODE_NONINTERLACED | FB_VMODE_YWRAP
505 }, {
506 /* 640x200, 15 kHz, 60 Hz (ST medium) */
507 "st-mid", 60, 640, 200, 32000, 32, 16, 31, 14, 96, 4,
508 0, FB_VMODE_NONINTERLACED | FB_VMODE_YWRAP
509 }, {
510 /* 640x400, 30.25 kHz, 63.5 Hz (ST high) */
511 "st-high", 63, 640, 400, 32000, 128, 0, 40, 14, 128, 4,
512 0, FB_VMODE_NONINTERLACED | FB_VMODE_YWRAP
513 }, {
514 /* 320x480, 15 kHz, 60 Hz (TT low) */
515 "tt-low", 60, 320, 480, 31041, 120, 100, 8, 16, 140, 30,
516 0, FB_VMODE_NONINTERLACED | FB_VMODE_YWRAP
517 }, {
518 /* 640x480, 29 kHz, 57 Hz (TT medium) */
519 "tt-mid", 60, 640, 480, 31041, 120, 100, 8, 16, 140, 30,
520 0, FB_VMODE_NONINTERLACED | FB_VMODE_YWRAP
521 }, {
522 /* 1280x960, 29 kHz, 60 Hz (TT high) */
523 "tt-high", 57, 640, 960, 31041, 120, 100, 8, 16, 140, 30,
524 0, FB_VMODE_NONINTERLACED | FB_VMODE_YWRAP
525 },
526
527 /*
528 * VGA Video Modes
529 */
530
531 {
532 /* 640x480, 31 kHz, 60 Hz (VGA) */
533 "vga", 63.5, 640, 480, 32000, 18, 42, 31, 11, 96, 3,
534 0, FB_VMODE_NONINTERLACED | FB_VMODE_YWRAP
535 }, {
536 /* 640x400, 31 kHz, 70 Hz (VGA) */
537 "vga70", 70, 640, 400, 32000, 18, 42, 31, 11, 96, 3,
538 FB_SYNC_VERT_HIGH_ACT | FB_SYNC_COMP_HIGH_ACT, FB_VMODE_NONINTERLACED | FB_VMODE_YWRAP
539 },
540
541 /*
542 * Falcon HiRes Video Modes
543 */
544
545 {
546 /* 896x608, 31 kHz, 60 Hz (Falcon High) */
547 "falh", 60, 896, 608, 32000, 18, 42, 31, 1, 96,3,
548 0, FB_VMODE_NONINTERLACED | FB_VMODE_YWRAP
549 },
550 };
551
552 #define NUM_TOTAL_MODES ARRAY_SIZE(atafb_modedb)
553
554 static char *mode_option __initdata = NULL;
555
556 /* default modes */
557
558 #define DEFMODE_TT 5 /* "tt-high" for TT */
559 #define DEFMODE_F30 7 /* "vga70" for Falcon */
560 #define DEFMODE_STE 2 /* "st-high" for ST/E */
561 #define DEFMODE_EXT 6 /* "vga" for external */
562
563
564 static int get_video_mode(char *vname)
565 {
566 char ***name_list;
567 char **name;
568 int i;
569
570 name_list = fb_var_names;
571 for (i = 0; i < num_atafb_predefined; i++) {
572 name = *name_list++;
573 if (!name || !*name)
574 break;
575 while (*name) {
576 if (!strcmp(vname, *name))
577 return i + 1;
578 name++;
579 }
580 }
581 return 0;
582 }
583
584
585
586 /* ------------------- TT specific functions ---------------------- */
587
588 #ifdef ATAFB_TT
589
590 static int tt_encode_fix(struct fb_fix_screeninfo *fix, struct atafb_par *par)
591 {
592 int mode;
593
594 strcpy(fix->id, "Atari Builtin");
595 fix->smem_start = (unsigned long)real_screen_base;
596 fix->smem_len = screen_len;
597 fix->type = FB_TYPE_INTERLEAVED_PLANES;
598 fix->type_aux = 2;
599 fix->visual = FB_VISUAL_PSEUDOCOLOR;
600 mode = par->hw.tt.mode & TT_SHIFTER_MODEMASK;
601 if (mode == TT_SHIFTER_TTHIGH || mode == TT_SHIFTER_STHIGH) {
602 fix->type = FB_TYPE_PACKED_PIXELS;
603 fix->type_aux = 0;
604 if (mode == TT_SHIFTER_TTHIGH)
605 fix->visual = FB_VISUAL_MONO01;
606 }
607 fix->xpanstep = 0;
608 fix->ypanstep = 1;
609 fix->ywrapstep = 0;
610 fix->line_length = par->next_line;
611 fix->accel = FB_ACCEL_ATARIBLITT;
612 return 0;
613 }
614
615 static int tt_decode_var(struct fb_var_screeninfo *var, struct atafb_par *par)
616 {
617 int xres = var->xres;
618 int yres = var->yres;
619 int bpp = var->bits_per_pixel;
620 int linelen;
621 int yres_virtual = var->yres_virtual;
622
623 if (mono_moni) {
624 if (bpp > 1 || xres > sttt_xres * 2 || yres > tt_yres * 2)
625 return -EINVAL;
626 par->hw.tt.mode = TT_SHIFTER_TTHIGH;
627 xres = sttt_xres * 2;
628 yres = tt_yres * 2;
629 bpp = 1;
630 } else {
631 if (bpp > 8 || xres > sttt_xres || yres > tt_yres)
632 return -EINVAL;
633 if (bpp > 4) {
634 if (xres > sttt_xres / 2 || yres > tt_yres)
635 return -EINVAL;
636 par->hw.tt.mode = TT_SHIFTER_TTLOW;
637 xres = sttt_xres / 2;
638 yres = tt_yres;
639 bpp = 8;
640 } else if (bpp > 2) {
641 if (xres > sttt_xres || yres > tt_yres)
642 return -EINVAL;
643 if (xres > sttt_xres / 2 || yres > st_yres / 2) {
644 par->hw.tt.mode = TT_SHIFTER_TTMID;
645 xres = sttt_xres;
646 yres = tt_yres;
647 bpp = 4;
648 } else {
649 par->hw.tt.mode = TT_SHIFTER_STLOW;
650 xres = sttt_xres / 2;
651 yres = st_yres / 2;
652 bpp = 4;
653 }
654 } else if (bpp > 1) {
655 if (xres > sttt_xres || yres > st_yres / 2)
656 return -EINVAL;
657 par->hw.tt.mode = TT_SHIFTER_STMID;
658 xres = sttt_xres;
659 yres = st_yres / 2;
660 bpp = 2;
661 } else if (var->xres > sttt_xres || var->yres > st_yres) {
662 return -EINVAL;
663 } else {
664 par->hw.tt.mode = TT_SHIFTER_STHIGH;
665 xres = sttt_xres;
666 yres = st_yres;
667 bpp = 1;
668 }
669 }
670 if (yres_virtual <= 0)
671 yres_virtual = 0;
672 else if (yres_virtual < yres)
673 yres_virtual = yres;
674 if (var->sync & FB_SYNC_EXT)
675 par->hw.tt.sync = 0;
676 else
677 par->hw.tt.sync = 1;
678 linelen = xres * bpp / 8;
679 if (yres_virtual * linelen > screen_len && screen_len)
680 return -EINVAL;
681 if (yres * linelen > screen_len && screen_len)
682 return -EINVAL;
683 if (var->yoffset + yres > yres_virtual && yres_virtual)
684 return -EINVAL;
685 par->yres_virtual = yres_virtual;
686 par->screen_base = screen_base + var->yoffset * linelen;
687 par->next_line = linelen;
688 return 0;
689 }
690
691 static int tt_encode_var(struct fb_var_screeninfo *var, struct atafb_par *par)
692 {
693 int linelen;
694 memset(var, 0, sizeof(struct fb_var_screeninfo));
695 var->red.offset = 0;
696 var->red.length = 4;
697 var->red.msb_right = 0;
698 var->grayscale = 0;
699
700 var->pixclock = 31041;
701 var->left_margin = 120; /* these may be incorrect */
702 var->right_margin = 100;
703 var->upper_margin = 8;
704 var->lower_margin = 16;
705 var->hsync_len = 140;
706 var->vsync_len = 30;
707
708 var->height = -1;
709 var->width = -1;
710
711 if (par->hw.tt.sync & 1)
712 var->sync = 0;
713 else
714 var->sync = FB_SYNC_EXT;
715
716 switch (par->hw.tt.mode & TT_SHIFTER_MODEMASK) {
717 case TT_SHIFTER_STLOW:
718 var->xres = sttt_xres / 2;
719 var->xres_virtual = sttt_xres_virtual / 2;
720 var->yres = st_yres / 2;
721 var->bits_per_pixel = 4;
722 break;
723 case TT_SHIFTER_STMID:
724 var->xres = sttt_xres;
725 var->xres_virtual = sttt_xres_virtual;
726 var->yres = st_yres / 2;
727 var->bits_per_pixel = 2;
728 break;
729 case TT_SHIFTER_STHIGH:
730 var->xres = sttt_xres;
731 var->xres_virtual = sttt_xres_virtual;
732 var->yres = st_yres;
733 var->bits_per_pixel = 1;
734 break;
735 case TT_SHIFTER_TTLOW:
736 var->xres = sttt_xres / 2;
737 var->xres_virtual = sttt_xres_virtual / 2;
738 var->yres = tt_yres;
739 var->bits_per_pixel = 8;
740 break;
741 case TT_SHIFTER_TTMID:
742 var->xres = sttt_xres;
743 var->xres_virtual = sttt_xres_virtual;
744 var->yres = tt_yres;
745 var->bits_per_pixel = 4;
746 break;
747 case TT_SHIFTER_TTHIGH:
748 var->red.length = 0;
749 var->xres = sttt_xres * 2;
750 var->xres_virtual = sttt_xres_virtual * 2;
751 var->yres = tt_yres * 2;
752 var->bits_per_pixel = 1;
753 break;
754 }
755 var->blue = var->green = var->red;
756 var->transp.offset = 0;
757 var->transp.length = 0;
758 var->transp.msb_right = 0;
759 linelen = var->xres_virtual * var->bits_per_pixel / 8;
760 if (!use_hwscroll)
761 var->yres_virtual = var->yres;
762 else if (screen_len) {
763 if (par->yres_virtual)
764 var->yres_virtual = par->yres_virtual;
765 else
766 /* yres_virtual == 0 means use maximum */
767 var->yres_virtual = screen_len / linelen;
768 } else {
769 if (hwscroll < 0)
770 var->yres_virtual = 2 * var->yres;
771 else
772 var->yres_virtual = var->yres + hwscroll * 16;
773 }
774 var->xoffset = 0;
775 if (screen_base)
776 var->yoffset = (par->screen_base - screen_base) / linelen;
777 else
778 var->yoffset = 0;
779 var->nonstd = 0;
780 var->activate = 0;
781 var->vmode = FB_VMODE_NONINTERLACED;
782 return 0;
783 }
784
785 static void tt_get_par(struct atafb_par *par)
786 {
787 unsigned long addr;
788 par->hw.tt.mode = shifter_tt.tt_shiftmode;
789 par->hw.tt.sync = shifter.syncmode;
790 addr = ((shifter.bas_hi & 0xff) << 16) |
791 ((shifter.bas_md & 0xff) << 8) |
792 ((shifter.bas_lo & 0xff));
793 par->screen_base = phys_to_virt(addr);
794 }
795
796 static void tt_set_par(struct atafb_par *par)
797 {
798 shifter_tt.tt_shiftmode = par->hw.tt.mode;
799 shifter.syncmode = par->hw.tt.sync;
800 /* only set screen_base if really necessary */
801 if (current_par.screen_base != par->screen_base)
802 fbhw->set_screen_base(par->screen_base);
803 }
804
805 static int tt_setcolreg(unsigned int regno, unsigned int red,
806 unsigned int green, unsigned int blue,
807 unsigned int transp, struct fb_info *info)
808 {
809 if ((shifter_tt.tt_shiftmode & TT_SHIFTER_MODEMASK) == TT_SHIFTER_STHIGH)
810 regno += 254;
811 if (regno > 255)
812 return 1;
813 tt_palette[regno] = (((red >> 12) << 8) | ((green >> 12) << 4) |
814 (blue >> 12));
815 if ((shifter_tt.tt_shiftmode & TT_SHIFTER_MODEMASK) ==
816 TT_SHIFTER_STHIGH && regno == 254)
817 tt_palette[0] = 0;
818 return 0;
819 }
820
821 static int tt_detect(void)
822 {
823 struct atafb_par par;
824
825 /* Determine the connected monitor: The DMA sound must be
826 * disabled before reading the MFP GPIP, because the Sound
827 * Done Signal and the Monochrome Detect are XORed together!
828 *
829 * Even on a TT, we should look if there is a DMA sound. It was
830 * announced that the Eagle is TT compatible, but only the PCM is
831 * missing...
832 */
833 if (ATARIHW_PRESENT(PCM_8BIT)) {
834 tt_dmasnd.ctrl = DMASND_CTRL_OFF;
835 udelay(20); /* wait a while for things to settle down */
836 }
837 mono_moni = (st_mfp.par_dt_reg & 0x80) == 0;
838
839 tt_get_par(&par);
840 tt_encode_var(&atafb_predefined[0], &par);
841
842 return 1;
843 }
844
845 #endif /* ATAFB_TT */
846
847 /* ------------------- Falcon specific functions ---------------------- */
848
849 #ifdef ATAFB_FALCON
850
851 static int mon_type; /* Falcon connected monitor */
852 static int f030_bus_width; /* Falcon ram bus width (for vid_control) */
853 #define F_MON_SM 0
854 #define F_MON_SC 1
855 #define F_MON_VGA 2
856 #define F_MON_TV 3
857
858 static struct pixel_clock {
859 unsigned long f; /* f/[Hz] */
860 unsigned long t; /* t/[ps] (=1/f) */
861 int right, hsync, left; /* standard timing in clock cycles, not pixel */
862 /* hsync initialized in falcon_detect() */
863 int sync_mask; /* or-mask for hw.falcon.sync to set this clock */
864 int control_mask; /* ditto, for hw.falcon.vid_control */
865 } f25 = {
866 25175000, 39721, 18, 0, 42, 0x0, VCO_CLOCK25
867 }, f32 = {
868 32000000, 31250, 18, 0, 42, 0x0, 0
869 }, fext = {
870 0, 0, 18, 0, 42, 0x1, 0
871 };
872
873 /* VIDEL-prescale values [mon_type][pixel_length from VCO] */
874 static int vdl_prescale[4][3] = {
875 { 4,2,1 }, { 4,2,1 }, { 4,2,2 }, { 4,2,1 }
876 };
877
878 /* Default hsync timing [mon_type] in picoseconds */
879 static long h_syncs[4] = { 3000000, 4875000, 4000000, 4875000 };
880
881 static inline int hxx_prescale(struct falcon_hw *hw)
882 {
883 return hw->ste_mode ? 16
884 : vdl_prescale[mon_type][hw->vid_mode >> 2 & 0x3];
885 }
886
887 static int falcon_encode_fix(struct fb_fix_screeninfo *fix,
888 struct atafb_par *par)
889 {
890 strcpy(fix->id, "Atari Builtin");
891 fix->smem_start = (unsigned long)real_screen_base;
892 fix->smem_len = screen_len;
893 fix->type = FB_TYPE_INTERLEAVED_PLANES;
894 fix->type_aux = 2;
895 fix->visual = FB_VISUAL_PSEUDOCOLOR;
896 fix->xpanstep = 1;
897 fix->ypanstep = 1;
898 fix->ywrapstep = 0;
899 if (par->hw.falcon.mono) {
900 fix->type = FB_TYPE_PACKED_PIXELS;
901 fix->type_aux = 0;
902 /* no smooth scrolling with longword aligned video mem */
903 fix->xpanstep = 32;
904 } else if (par->hw.falcon.f_shift & 0x100) {
905 fix->type = FB_TYPE_PACKED_PIXELS;
906 fix->type_aux = 0;
907 /* Is this ok or should it be DIRECTCOLOR? */
908 fix->visual = FB_VISUAL_TRUECOLOR;
909 fix->xpanstep = 2;
910 }
911 fix->line_length = par->next_line;
912 fix->accel = FB_ACCEL_ATARIBLITT;
913 return 0;
914 }
915
916 static int falcon_decode_var(struct fb_var_screeninfo *var,
917 struct atafb_par *par)
918 {
919 int bpp = var->bits_per_pixel;
920 int xres = var->xres;
921 int yres = var->yres;
922 int xres_virtual = var->xres_virtual;
923 int yres_virtual = var->yres_virtual;
924 int left_margin, right_margin, hsync_len;
925 int upper_margin, lower_margin, vsync_len;
926 int linelen;
927 int interlace = 0, doubleline = 0;
928 struct pixel_clock *pclock;
929 int plen; /* width of pixel in clock cycles */
930 int xstretch;
931 int prescale;
932 int longoffset = 0;
933 int hfreq, vfreq;
934 int hdb_off, hde_off, base_off;
935 int gstart, gend1, gend2, align;
936
937 /*
938 Get the video params out of 'var'. If a value doesn't fit, round
939 it up, if it's too big, return EINVAL.
940 Round up in the following order: bits_per_pixel, xres, yres,
941 xres_virtual, yres_virtual, xoffset, yoffset, grayscale, bitfields,
942 horizontal timing, vertical timing.
943
944 There is a maximum of screen resolution determined by pixelclock
945 and minimum frame rate -- (X+hmarg.)*(Y+vmarg.)*vfmin <= pixelclock.
946 In interlace mode this is " * " *vfmin <= pixelclock.
947 Additional constraints: hfreq.
948 Frequency range for multisync monitors is given via command line.
949 For TV and SM124 both frequencies are fixed.
950
951 X % 16 == 0 to fit 8x?? font (except 1 bitplane modes must use X%32 == 0)
952 Y % 16 == 0 to fit 8x16 font
953 Y % 8 == 0 if Y<400
954
955 Currently interlace and doubleline mode in var are ignored.
956 On SM124 and TV only the standard resolutions can be used.
957 */
958
959 /* Reject uninitialized mode */
960 if (!xres || !yres || !bpp)
961 return -EINVAL;
962
963 if (mon_type == F_MON_SM && bpp != 1)
964 return -EINVAL;
965
966 if (bpp <= 1) {
967 bpp = 1;
968 par->hw.falcon.f_shift = 0x400;
969 par->hw.falcon.st_shift = 0x200;
970 } else if (bpp <= 2) {
971 bpp = 2;
972 par->hw.falcon.f_shift = 0x000;
973 par->hw.falcon.st_shift = 0x100;
974 } else if (bpp <= 4) {
975 bpp = 4;
976 par->hw.falcon.f_shift = 0x000;
977 par->hw.falcon.st_shift = 0x000;
978 } else if (bpp <= 8) {
979 bpp = 8;
980 par->hw.falcon.f_shift = 0x010;
981 } else if (bpp <= 16) {
982 bpp = 16; /* packed pixel mode */
983 par->hw.falcon.f_shift = 0x100; /* hicolor, no overlay */
984 } else
985 return -EINVAL;
986 par->hw.falcon.bpp = bpp;
987
988 if (mon_type == F_MON_SM || DontCalcRes) {
989 /* Skip all calculations. VGA/TV/SC1224 only supported. */
990 struct fb_var_screeninfo *myvar = &atafb_predefined[0];
991
992 if (bpp > myvar->bits_per_pixel ||
993 var->xres > myvar->xres ||
994 var->yres > myvar->yres)
995 return -EINVAL;
996 fbhw->get_par(par); /* Current par will be new par */
997 goto set_screen_base; /* Don't forget this */
998 }
999
1000 /* Only some fixed resolutions < 640x400 */
1001 if (xres <= 320)
1002 xres = 320;
1003 else if (xres <= 640 && bpp != 16)
1004 xres = 640;
1005 if (yres <= 200)
1006 yres = 200;
1007 else if (yres <= 240)
1008 yres = 240;
1009 else if (yres <= 400)
1010 yres = 400;
1011
1012 /* 2 planes must use STE compatibility mode */
1013 par->hw.falcon.ste_mode = bpp == 2;
1014 par->hw.falcon.mono = bpp == 1;
1015
1016 /* Total and visible scanline length must be a multiple of one longword,
1017 * this and the console fontwidth yields the alignment for xres and
1018 * xres_virtual.
1019 * TODO: this way "odd" fontheights are not supported
1020 *
1021 * Special case in STE mode: blank and graphic positions don't align,
1022 * avoid trash at right margin
1023 */
1024 if (par->hw.falcon.ste_mode)
1025 xres = (xres + 63) & ~63;
1026 else if (bpp == 1)
1027 xres = (xres + 31) & ~31;
1028 else
1029 xres = (xres + 15) & ~15;
1030 if (yres >= 400)
1031 yres = (yres + 15) & ~15;
1032 else
1033 yres = (yres + 7) & ~7;
1034
1035 if (xres_virtual < xres)
1036 xres_virtual = xres;
1037 else if (bpp == 1)
1038 xres_virtual = (xres_virtual + 31) & ~31;
1039 else
1040 xres_virtual = (xres_virtual + 15) & ~15;
1041
1042 if (yres_virtual <= 0)
1043 yres_virtual = 0;
1044 else if (yres_virtual < yres)
1045 yres_virtual = yres;
1046
1047 /* backward bug-compatibility */
1048 if (var->pixclock > 1)
1049 var->pixclock -= 1;
1050
1051 par->hw.falcon.line_width = bpp * xres / 16;
1052 par->hw.falcon.line_offset = bpp * (xres_virtual - xres) / 16;
1053
1054 /* single or double pixel width */
1055 xstretch = (xres < 640) ? 2 : 1;
1056
1057 #if 0 /* SM124 supports only 640x400, this is rejected above */
1058 if (mon_type == F_MON_SM) {
1059 if (xres != 640 && yres != 400)
1060 return -EINVAL;
1061 plen = 1;
1062 pclock = &f32;
1063 /* SM124-mode is special */
1064 par->hw.falcon.ste_mode = 1;
1065 par->hw.falcon.f_shift = 0x000;
1066 par->hw.falcon.st_shift = 0x200;
1067 left_margin = hsync_len = 128 / plen;
1068 right_margin = 0;
1069 /* TODO set all margins */
1070 } else
1071 #endif
1072 if (mon_type == F_MON_SC || mon_type == F_MON_TV) {
1073 plen = 2 * xstretch;
1074 if (var->pixclock > f32.t * plen)
1075 return -EINVAL;
1076 pclock = &f32;
1077 if (yres > 240)
1078 interlace = 1;
1079 if (var->pixclock == 0) {
1080 /* set some minimal margins which center the screen */
1081 left_margin = 32;
1082 right_margin = 18;
1083 hsync_len = pclock->hsync / plen;
1084 upper_margin = 31;
1085 lower_margin = 14;
1086 vsync_len = interlace ? 3 : 4;
1087 } else {
1088 left_margin = var->left_margin;
1089 right_margin = var->right_margin;
1090 hsync_len = var->hsync_len;
1091 upper_margin = var->upper_margin;
1092 lower_margin = var->lower_margin;
1093 vsync_len = var->vsync_len;
1094 if (var->vmode & FB_VMODE_INTERLACED) {
1095 upper_margin = (upper_margin + 1) / 2;
1096 lower_margin = (lower_margin + 1) / 2;
1097 vsync_len = (vsync_len + 1) / 2;
1098 } else if (var->vmode & FB_VMODE_DOUBLE) {
1099 upper_margin *= 2;
1100 lower_margin *= 2;
1101 vsync_len *= 2;
1102 }
1103 }
1104 } else { /* F_MON_VGA */
1105 if (bpp == 16)
1106 xstretch = 2; /* Double pixel width only for hicolor */
1107 /* Default values are used for vert./hor. timing if no pixelclock given. */
1108 if (var->pixclock == 0) {
1109 int linesize;
1110
1111 /* Choose master pixelclock depending on hor. timing */
1112 plen = 1 * xstretch;
1113 if ((plen * xres + f25.right + f25.hsync + f25.left) *
1114 fb_info.monspecs.hfmin < f25.f)
1115 pclock = &f25;
1116 else if ((plen * xres + f32.right + f32.hsync +
1117 f32.left) * fb_info.monspecs.hfmin < f32.f)
1118 pclock = &f32;
1119 else if ((plen * xres + fext.right + fext.hsync +
1120 fext.left) * fb_info.monspecs.hfmin < fext.f &&
1121 fext.f)
1122 pclock = &fext;
1123 else
1124 return -EINVAL;
1125
1126 left_margin = pclock->left / plen;
1127 right_margin = pclock->right / plen;
1128 hsync_len = pclock->hsync / plen;
1129 linesize = left_margin + xres + right_margin + hsync_len;
1130 upper_margin = 31;
1131 lower_margin = 11;
1132 vsync_len = 3;
1133 } else {
1134 /* Choose largest pixelclock <= wanted clock */
1135 int i;
1136 unsigned long pcl = ULONG_MAX;
1137 pclock = 0;
1138 for (i = 1; i <= 4; i *= 2) {
1139 if (f25.t * i >= var->pixclock &&
1140 f25.t * i < pcl) {
1141 pcl = f25.t * i;
1142 pclock = &f25;
1143 }
1144 if (f32.t * i >= var->pixclock &&
1145 f32.t * i < pcl) {
1146 pcl = f32.t * i;
1147 pclock = &f32;
1148 }
1149 if (fext.t && fext.t * i >= var->pixclock &&
1150 fext.t * i < pcl) {
1151 pcl = fext.t * i;
1152 pclock = &fext;
1153 }
1154 }
1155 if (!pclock)
1156 return -EINVAL;
1157 plen = pcl / pclock->t;
1158
1159 left_margin = var->left_margin;
1160 right_margin = var->right_margin;
1161 hsync_len = var->hsync_len;
1162 upper_margin = var->upper_margin;
1163 lower_margin = var->lower_margin;
1164 vsync_len = var->vsync_len;
1165 /* Internal unit is [single lines per (half-)frame] */
1166 if (var->vmode & FB_VMODE_INTERLACED) {
1167 /* # lines in half frame */
1168 /* External unit is [lines per full frame] */
1169 upper_margin = (upper_margin + 1) / 2;
1170 lower_margin = (lower_margin + 1) / 2;
1171 vsync_len = (vsync_len + 1) / 2;
1172 } else if (var->vmode & FB_VMODE_DOUBLE) {
1173 /* External unit is [double lines per frame] */
1174 upper_margin *= 2;
1175 lower_margin *= 2;
1176 vsync_len *= 2;
1177 }
1178 }
1179 if (pclock == &fext)
1180 longoffset = 1; /* VIDEL doesn't synchronize on short offset */
1181 }
1182 /* Is video bus bandwidth (32MB/s) too low for this resolution? */
1183 /* this is definitely wrong if bus clock != 32MHz */
1184 if (pclock->f / plen / 8 * bpp > 32000000L)
1185 return -EINVAL;
1186
1187 if (vsync_len < 1)
1188 vsync_len = 1;
1189
1190 /* include sync lengths in right/lower margin for all calculations */
1191 right_margin += hsync_len;
1192 lower_margin += vsync_len;
1193
1194 /* ! In all calculations of margins we use # of lines in half frame
1195 * (which is a full frame in non-interlace mode), so we can switch
1196 * between interlace and non-interlace without messing around
1197 * with these.
1198 */
1199 again:
1200 /* Set base_offset 128 and video bus width */
1201 par->hw.falcon.vid_control = mon_type | f030_bus_width;
1202 if (!longoffset)
1203 par->hw.falcon.vid_control |= VCO_SHORTOFFS; /* base_offset 64 */
1204 if (var->sync & FB_SYNC_HOR_HIGH_ACT)
1205 par->hw.falcon.vid_control |= VCO_HSYPOS;
1206 if (var->sync & FB_SYNC_VERT_HIGH_ACT)
1207 par->hw.falcon.vid_control |= VCO_VSYPOS;
1208 /* Pixelclock */
1209 par->hw.falcon.vid_control |= pclock->control_mask;
1210 /* External or internal clock */
1211 par->hw.falcon.sync = pclock->sync_mask | 0x2;
1212 /* Pixellength and prescale */
1213 par->hw.falcon.vid_mode = (2 / plen) << 2;
1214 if (doubleline)
1215 par->hw.falcon.vid_mode |= VMO_DOUBLE;
1216 if (interlace)
1217 par->hw.falcon.vid_mode |= VMO_INTER;
1218
1219 /*********************
1220 * Horizontal timing: unit = [master clock cycles]
1221 * unit of hxx-registers: [master clock cycles * prescale]
1222 * Hxx-registers are 9 bit wide
1223 *
1224 * 1 line = ((hht + 2) * 2 * prescale) clock cycles
1225 *
1226 * graphic output = hdb & 0x200 ?
1227 * ((hht + 2) * 2 - hdb + hde) * prescale - hdboff + hdeoff:
1228 * (hht + 2 - hdb + hde) * prescale - hdboff + hdeoff
1229 * (this must be a multiple of plen*128/bpp, on VGA pixels
1230 * to the right may be cut off with a bigger right margin)
1231 *
1232 * start of graphics relative to start of 1st halfline = hdb & 0x200 ?
1233 * (hdb - hht - 2) * prescale + hdboff :
1234 * hdb * prescale + hdboff
1235 *
1236 * end of graphics relative to start of 1st halfline =
1237 * (hde + hht + 2) * prescale + hdeoff
1238 *********************/
1239 /* Calculate VIDEL registers */
1240 {
1241 prescale = hxx_prescale(&par->hw.falcon);
1242 base_off = par->hw.falcon.vid_control & VCO_SHORTOFFS ? 64 : 128;
1243
1244 /* Offsets depend on video mode */
1245 /* Offsets are in clock cycles, divide by prescale to
1246 * calculate hd[be]-registers
1247 */
1248 if (par->hw.falcon.f_shift & 0x100) {
1249 align = 1;
1250 hde_off = 0;
1251 hdb_off = (base_off + 16 * plen) + prescale;
1252 } else {
1253 align = 128 / bpp;
1254 hde_off = ((128 / bpp + 2) * plen);
1255 if (par->hw.falcon.ste_mode)
1256 hdb_off = (64 + base_off + (128 / bpp + 2) * plen) + prescale;
1257 else
1258 hdb_off = (base_off + (128 / bpp + 18) * plen) + prescale;
1259 }
1260
1261 gstart = (prescale / 2 + plen * left_margin) / prescale;
1262 /* gend1 is for hde (gend-gstart multiple of align), shifter's xres */
1263 gend1 = gstart + roundup(xres, align) * plen / prescale;
1264 /* gend2 is for hbb, visible xres (rest to gend1 is cut off by hblank) */
1265 gend2 = gstart + xres * plen / prescale;
1266 par->HHT = plen * (left_margin + xres + right_margin) /
1267 (2 * prescale) - 2;
1268 /* par->HHT = (gend2 + plen * right_margin / prescale) / 2 - 2;*/
1269
1270 par->HDB = gstart - hdb_off / prescale;
1271 par->HBE = gstart;
1272 if (par->HDB < 0)
1273 par->HDB += par->HHT + 2 + 0x200;
1274 par->HDE = gend1 - par->HHT - 2 - hde_off / prescale;
1275 par->HBB = gend2 - par->HHT - 2;
1276 #if 0
1277 /* One more Videl constraint: data fetch of two lines must not overlap */
1278 if ((par->HDB & 0x200) && (par->HDB & ~0x200) - par->HDE <= 5) {
1279 /* if this happens increase margins, decrease hfreq. */
1280 }
1281 #endif
1282 if (hde_off % prescale)
1283 par->HBB++; /* compensate for non matching hde and hbb */
1284 par->HSS = par->HHT + 2 - plen * hsync_len / prescale;
1285 if (par->HSS < par->HBB)
1286 par->HSS = par->HBB;
1287 }
1288
1289 /* check hor. frequency */
1290 hfreq = pclock->f / ((par->HHT + 2) * prescale * 2);
1291 if (hfreq > fb_info.monspecs.hfmax && mon_type != F_MON_VGA) {
1292 /* ++guenther: ^^^^^^^^^^^^^^^^^^^ can't remember why I did this */
1293 /* Too high -> enlarge margin */
1294 left_margin += 1;
1295 right_margin += 1;
1296 goto again;
1297 }
1298 if (hfreq > fb_info.monspecs.hfmax || hfreq < fb_info.monspecs.hfmin)
1299 return -EINVAL;
1300
1301 /* Vxx-registers */
1302 /* All Vxx must be odd in non-interlace, since frame starts in the middle
1303 * of the first displayed line!
1304 * One frame consists of VFT+1 half lines. VFT+1 must be even in
1305 * non-interlace, odd in interlace mode for synchronisation.
1306 * Vxx-registers are 11 bit wide
1307 */
1308 par->VBE = (upper_margin * 2 + 1); /* must begin on odd halfline */
1309 par->VDB = par->VBE;
1310 par->VDE = yres;
1311 if (!interlace)
1312 par->VDE <<= 1;
1313 if (doubleline)
1314 par->VDE <<= 1; /* VDE now half lines per (half-)frame */
1315 par->VDE += par->VDB;
1316 par->VBB = par->VDE;
1317 par->VFT = par->VBB + (lower_margin * 2 - 1) - 1;
1318 par->VSS = par->VFT + 1 - (vsync_len * 2 - 1);
1319 /* vbb,vss,vft must be even in interlace mode */
1320 if (interlace) {
1321 par->VBB++;
1322 par->VSS++;
1323 par->VFT++;
1324 }
1325
1326 /* V-frequency check, hope I didn't create any loop here. */
1327 /* Interlace and doubleline are mutually exclusive. */
1328 vfreq = (hfreq * 2) / (par->VFT + 1);
1329 if (vfreq > fb_info.monspecs.vfmax && !doubleline && !interlace) {
1330 /* Too high -> try again with doubleline */
1331 doubleline = 1;
1332 goto again;
1333 } else if (vfreq < fb_info.monspecs.vfmin && !interlace && !doubleline) {
1334 /* Too low -> try again with interlace */
1335 interlace = 1;
1336 goto again;
1337 } else if (vfreq < fb_info.monspecs.vfmin && doubleline) {
1338 /* Doubleline too low -> clear doubleline and enlarge margins */
1339 int lines;
1340 doubleline = 0;
1341 for (lines = 0;
1342 (hfreq * 2) / (par->VFT + 1 + 4 * lines - 2 * yres) >
1343 fb_info.monspecs.vfmax;
1344 lines++)
1345 ;
1346 upper_margin += lines;
1347 lower_margin += lines;
1348 goto again;
1349 } else if (vfreq > fb_info.monspecs.vfmax && doubleline) {
1350 /* Doubleline too high -> enlarge margins */
1351 int lines;
1352 for (lines = 0;
1353 (hfreq * 2) / (par->VFT + 1 + 4 * lines) >
1354 fb_info.monspecs.vfmax;
1355 lines += 2)
1356 ;
1357 upper_margin += lines;
1358 lower_margin += lines;
1359 goto again;
1360 } else if (vfreq > fb_info.monspecs.vfmax && interlace) {
1361 /* Interlace, too high -> enlarge margins */
1362 int lines;
1363 for (lines = 0;
1364 (hfreq * 2) / (par->VFT + 1 + 4 * lines) >
1365 fb_info.monspecs.vfmax;
1366 lines++)
1367 ;
1368 upper_margin += lines;
1369 lower_margin += lines;
1370 goto again;
1371 } else if (vfreq < fb_info.monspecs.vfmin ||
1372 vfreq > fb_info.monspecs.vfmax)
1373 return -EINVAL;
1374
1375 set_screen_base:
1376 linelen = xres_virtual * bpp / 8;
1377 if (yres_virtual * linelen > screen_len && screen_len)
1378 return -EINVAL;
1379 if (yres * linelen > screen_len && screen_len)
1380 return -EINVAL;
1381 if (var->yoffset + yres > yres_virtual && yres_virtual)
1382 return -EINVAL;
1383 par->yres_virtual = yres_virtual;
1384 par->screen_base = screen_base + var->yoffset * linelen;
1385 par->hw.falcon.xoffset = 0;
1386
1387 par->next_line = linelen;
1388
1389 return 0;
1390 }
1391
1392 static int falcon_encode_var(struct fb_var_screeninfo *var,
1393 struct atafb_par *par)
1394 {
1395 /* !!! only for VGA !!! */
1396 int linelen;
1397 int prescale, plen;
1398 int hdb_off, hde_off, base_off;
1399 struct falcon_hw *hw = &par->hw.falcon;
1400
1401 memset(var, 0, sizeof(struct fb_var_screeninfo));
1402 /* possible frequencies: 25.175 or 32MHz */
1403 var->pixclock = hw->sync & 0x1 ? fext.t :
1404 hw->vid_control & VCO_CLOCK25 ? f25.t : f32.t;
1405
1406 var->height = -1;
1407 var->width = -1;
1408
1409 var->sync = 0;
1410 if (hw->vid_control & VCO_HSYPOS)
1411 var->sync |= FB_SYNC_HOR_HIGH_ACT;
1412 if (hw->vid_control & VCO_VSYPOS)
1413 var->sync |= FB_SYNC_VERT_HIGH_ACT;
1414
1415 var->vmode = FB_VMODE_NONINTERLACED;
1416 if (hw->vid_mode & VMO_INTER)
1417 var->vmode |= FB_VMODE_INTERLACED;
1418 if (hw->vid_mode & VMO_DOUBLE)
1419 var->vmode |= FB_VMODE_DOUBLE;
1420
1421 /* visible y resolution:
1422 * Graphics display starts at line VDB and ends at line
1423 * VDE. If interlace mode off unit of VC-registers is
1424 * half lines, else lines.
1425 */
1426 var->yres = hw->vde - hw->vdb;
1427 if (!(var->vmode & FB_VMODE_INTERLACED))
1428 var->yres >>= 1;
1429 if (var->vmode & FB_VMODE_DOUBLE)
1430 var->yres >>= 1;
1431
1432 /*
1433 * to get bpp, we must examine f_shift and st_shift.
1434 * f_shift is valid if any of bits no. 10, 8 or 4
1435 * is set. Priority in f_shift is: 10 ">" 8 ">" 4, i.e.
1436 * if bit 10 set then bit 8 and bit 4 don't care...
1437 * If all these bits are 0 get display depth from st_shift
1438 * (as for ST and STE)
1439 */
1440 if (hw->f_shift & 0x400) /* 2 colors */
1441 var->bits_per_pixel = 1;
1442 else if (hw->f_shift & 0x100) /* hicolor */
1443 var->bits_per_pixel = 16;
1444 else if (hw->f_shift & 0x010) /* 8 bitplanes */
1445 var->bits_per_pixel = 8;
1446 else if (hw->st_shift == 0)
1447 var->bits_per_pixel = 4;
1448 else if (hw->st_shift == 0x100)
1449 var->bits_per_pixel = 2;
1450 else /* if (hw->st_shift == 0x200) */
1451 var->bits_per_pixel = 1;
1452
1453 var->xres = hw->line_width * 16 / var->bits_per_pixel;
1454 var->xres_virtual = var->xres + hw->line_offset * 16 / var->bits_per_pixel;
1455 if (hw->xoffset)
1456 var->xres_virtual += 16;
1457
1458 if (var->bits_per_pixel == 16) {
1459 var->red.offset = 11;
1460 var->red.length = 5;
1461 var->red.msb_right = 0;
1462 var->green.offset = 5;
1463 var->green.length = 6;
1464 var->green.msb_right = 0;
1465 var->blue.offset = 0;
1466 var->blue.length = 5;
1467 var->blue.msb_right = 0;
1468 } else {
1469 var->red.offset = 0;
1470 var->red.length = hw->ste_mode ? 4 : 6;
1471 if (var->red.length > var->bits_per_pixel)
1472 var->red.length = var->bits_per_pixel;
1473 var->red.msb_right = 0;
1474 var->grayscale = 0;
1475 var->blue = var->green = var->red;
1476 }
1477 var->transp.offset = 0;
1478 var->transp.length = 0;
1479 var->transp.msb_right = 0;
1480
1481 linelen = var->xres_virtual * var->bits_per_pixel / 8;
1482 if (screen_len) {
1483 if (par->yres_virtual)
1484 var->yres_virtual = par->yres_virtual;
1485 else
1486 /* yres_virtual == 0 means use maximum */
1487 var->yres_virtual = screen_len / linelen;
1488 } else {
1489 if (hwscroll < 0)
1490 var->yres_virtual = 2 * var->yres;
1491 else
1492 var->yres_virtual = var->yres + hwscroll * 16;
1493 }
1494 var->xoffset = 0; /* TODO change this */
1495
1496 /* hdX-offsets */
1497 prescale = hxx_prescale(hw);
1498 plen = 4 >> (hw->vid_mode >> 2 & 0x3);
1499 base_off = hw->vid_control & VCO_SHORTOFFS ? 64 : 128;
1500 if (hw->f_shift & 0x100) {
1501 hde_off = 0;
1502 hdb_off = (base_off + 16 * plen) + prescale;
1503 } else {
1504 hde_off = ((128 / var->bits_per_pixel + 2) * plen);
1505 if (hw->ste_mode)
1506 hdb_off = (64 + base_off + (128 / var->bits_per_pixel + 2) * plen)
1507 + prescale;
1508 else
1509 hdb_off = (base_off + (128 / var->bits_per_pixel + 18) * plen)
1510 + prescale;
1511 }
1512
1513 /* Right margin includes hsync */
1514 var->left_margin = hdb_off + prescale * ((hw->hdb & 0x1ff) -
1515 (hw->hdb & 0x200 ? 2 + hw->hht : 0));
1516 if (hw->ste_mode || mon_type != F_MON_VGA)
1517 var->right_margin = prescale * (hw->hht + 2 - hw->hde) - hde_off;
1518 else
1519 /* can't use this in ste_mode, because hbb is +1 off */
1520 var->right_margin = prescale * (hw->hht + 2 - hw->hbb);
1521 var->hsync_len = prescale * (hw->hht + 2 - hw->hss);
1522
1523 /* Lower margin includes vsync */
1524 var->upper_margin = hw->vdb / 2; /* round down to full lines */
1525 var->lower_margin = (hw->vft + 1 - hw->vde + 1) / 2; /* round up */
1526 var->vsync_len = (hw->vft + 1 - hw->vss + 1) / 2; /* round up */
1527 if (var->vmode & FB_VMODE_INTERLACED) {
1528 var->upper_margin *= 2;
1529 var->lower_margin *= 2;
1530 var->vsync_len *= 2;
1531 } else if (var->vmode & FB_VMODE_DOUBLE) {
1532 var->upper_margin = (var->upper_margin + 1) / 2;
1533 var->lower_margin = (var->lower_margin + 1) / 2;
1534 var->vsync_len = (var->vsync_len + 1) / 2;
1535 }
1536
1537 var->pixclock *= plen;
1538 var->left_margin /= plen;
1539 var->right_margin /= plen;
1540 var->hsync_len /= plen;
1541
1542 var->right_margin -= var->hsync_len;
1543 var->lower_margin -= var->vsync_len;
1544
1545 if (screen_base)
1546 var->yoffset = (par->screen_base - screen_base) / linelen;
1547 else
1548 var->yoffset = 0;
1549 var->nonstd = 0; /* what is this for? */
1550 var->activate = 0;
1551 return 0;
1552 }
1553
1554 static int f_change_mode;
1555 static struct falcon_hw f_new_mode;
1556 static int f_pan_display;
1557
1558 static void falcon_get_par(struct atafb_par *par)
1559 {
1560 unsigned long addr;
1561 struct falcon_hw *hw = &par->hw.falcon;
1562
1563 hw->line_width = shifter_f030.scn_width;
1564 hw->line_offset = shifter_f030.off_next;
1565 hw->st_shift = videl.st_shift & 0x300;
1566 hw->f_shift = videl.f_shift;
1567 hw->vid_control = videl.control;
1568 hw->vid_mode = videl.mode;
1569 hw->sync = shifter.syncmode & 0x1;
1570 hw->xoffset = videl.xoffset & 0xf;
1571 hw->hht = videl.hht;
1572 hw->hbb = videl.hbb;
1573 hw->hbe = videl.hbe;
1574 hw->hdb = videl.hdb;
1575 hw->hde = videl.hde;
1576 hw->hss = videl.hss;
1577 hw->vft = videl.vft;
1578 hw->vbb = videl.vbb;
1579 hw->vbe = videl.vbe;
1580 hw->vdb = videl.vdb;
1581 hw->vde = videl.vde;
1582 hw->vss = videl.vss;
1583
1584 addr = (shifter.bas_hi & 0xff) << 16 |
1585 (shifter.bas_md & 0xff) << 8 |
1586 (shifter.bas_lo & 0xff);
1587 par->screen_base = phys_to_virt(addr);
1588
1589 /* derived parameters */
1590 hw->ste_mode = (hw->f_shift & 0x510) == 0 && hw->st_shift == 0x100;
1591 hw->mono = (hw->f_shift & 0x400) ||
1592 ((hw->f_shift & 0x510) == 0 && hw->st_shift == 0x200);
1593 }
1594
1595 static void falcon_set_par(struct atafb_par *par)
1596 {
1597 f_change_mode = 0;
1598
1599 /* only set screen_base if really necessary */
1600 if (current_par.screen_base != par->screen_base)
1601 fbhw->set_screen_base(par->screen_base);
1602
1603 /* Don't touch any other registers if we keep the default resolution */
1604 if (DontCalcRes)
1605 return;
1606
1607 /* Tell vbl-handler to change video mode.
1608 * We change modes only on next VBL, to avoid desynchronisation
1609 * (a shift to the right and wrap around by a random number of pixels
1610 * in all monochrome modes).
1611 * This seems to work on my Falcon.
1612 */
1613 f_new_mode = par->hw.falcon;
1614 f_change_mode = 1;
1615 }
1616
1617 static irqreturn_t falcon_vbl_switcher(int irq, void *dummy)
1618 {
1619 struct falcon_hw *hw = &f_new_mode;
1620
1621 if (f_change_mode) {
1622 f_change_mode = 0;
1623
1624 if (hw->sync & 0x1) {
1625 /* Enable external pixelclock. This code only for ScreenWonder */
1626 *(volatile unsigned short *)0xffff9202 = 0xffbf;
1627 } else {
1628 /* Turn off external clocks. Read sets all output bits to 1. */
1629 *(volatile unsigned short *)0xffff9202;
1630 }
1631 shifter.syncmode = hw->sync;
1632
1633 videl.hht = hw->hht;
1634 videl.hbb = hw->hbb;
1635 videl.hbe = hw->hbe;
1636 videl.hdb = hw->hdb;
1637 videl.hde = hw->hde;
1638 videl.hss = hw->hss;
1639 videl.vft = hw->vft;
1640 videl.vbb = hw->vbb;
1641 videl.vbe = hw->vbe;
1642 videl.vdb = hw->vdb;
1643 videl.vde = hw->vde;
1644 videl.vss = hw->vss;
1645
1646 videl.f_shift = 0; /* write enables Falcon palette, 0: 4 planes */
1647 if (hw->ste_mode) {
1648 videl.st_shift = hw->st_shift; /* write enables STE palette */
1649 } else {
1650 /* IMPORTANT:
1651 * set st_shift 0, so we can tell the screen-depth if f_shift == 0.
1652 * Writing 0 to f_shift enables 4 plane Falcon mode but
1653 * doesn't set st_shift. st_shift != 0 (!= 4planes) is impossible
1654 * with Falcon palette.
1655 */
1656 videl.st_shift = 0;
1657 /* now back to Falcon palette mode */
1658 videl.f_shift = hw->f_shift;
1659 }
1660 /* writing to st_shift changed scn_width and vid_mode */
1661 videl.xoffset = hw->xoffset;
1662 shifter_f030.scn_width = hw->line_width;
1663 shifter_f030.off_next = hw->line_offset;
1664 videl.control = hw->vid_control;
1665 videl.mode = hw->vid_mode;
1666 }
1667 if (f_pan_display) {
1668 f_pan_display = 0;
1669 videl.xoffset = current_par.hw.falcon.xoffset;
1670 shifter_f030.off_next = current_par.hw.falcon.line_offset;
1671 }
1672 return IRQ_HANDLED;
1673 }
1674
1675 static int falcon_pan_display(struct fb_var_screeninfo *var,
1676 struct fb_info *info)
1677 {
1678 struct atafb_par *par = (struct atafb_par *)info->par;
1679
1680 int xoffset;
1681 int bpp = info->var.bits_per_pixel;
1682
1683 if (bpp == 1)
1684 var->xoffset = up(var->xoffset, 32);
1685 if (bpp != 16)
1686 par->hw.falcon.xoffset = var->xoffset & 15;
1687 else {
1688 par->hw.falcon.xoffset = 0;
1689 var->xoffset = up(var->xoffset, 2);
1690 }
1691 par->hw.falcon.line_offset = bpp *
1692 (info->var.xres_virtual - info->var.xres) / 16;
1693 if (par->hw.falcon.xoffset)
1694 par->hw.falcon.line_offset -= bpp;
1695 xoffset = var->xoffset - par->hw.falcon.xoffset;
1696
1697 par->screen_base = screen_base +
1698 (var->yoffset * info->var.xres_virtual + xoffset) * bpp / 8;
1699 if (fbhw->set_screen_base)
1700 fbhw->set_screen_base(par->screen_base);
1701 else
1702 return -EINVAL; /* shouldn't happen */
1703 f_pan_display = 1;
1704 return 0;
1705 }
1706
1707 static int falcon_setcolreg(unsigned int regno, unsigned int red,
1708 unsigned int green, unsigned int blue,
1709 unsigned int transp, struct fb_info *info)
1710 {
1711 if (regno > 255)
1712 return 1;
1713 f030_col[regno] = (((red & 0xfc00) << 16) |
1714 ((green & 0xfc00) << 8) |
1715 ((blue & 0xfc00) >> 8));
1716 if (regno < 16) {
1717 shifter_tt.color_reg[regno] =
1718 (((red & 0xe000) >> 13) | ((red & 0x1000) >> 12) << 8) |
1719 (((green & 0xe000) >> 13) | ((green & 0x1000) >> 12) << 4) |
1720 ((blue & 0xe000) >> 13) | ((blue & 0x1000) >> 12);
1721 #ifdef ATAFB_FALCON
1722 ((u32 *)info->pseudo_palette)[regno] = ((red & 0xf800) |
1723 ((green & 0xfc00) >> 5) |
1724 ((blue & 0xf800) >> 11));
1725 #endif
1726 }
1727 return 0;
1728 }
1729
1730 static int falcon_blank(int blank_mode)
1731 {
1732 /* ++guenther: we can switch off graphics by changing VDB and VDE,
1733 * so VIDEL doesn't hog the bus while saving.
1734 * (this may affect usleep()).
1735 */
1736 int vdb, vss, hbe, hss;
1737
1738 if (mon_type == F_MON_SM) /* this doesn't work on SM124 */
1739 return 1;
1740
1741 vdb = current_par.VDB;
1742 vss = current_par.VSS;
1743 hbe = current_par.HBE;
1744 hss = current_par.HSS;
1745
1746 if (blank_mode >= 1) {
1747 /* disable graphics output (this speeds up the CPU) ... */
1748 vdb = current_par.VFT + 1;
1749 /* ... and blank all lines */
1750 hbe = current_par.HHT + 2;
1751 }
1752 /* use VESA suspend modes on VGA monitors */
1753 if (mon_type == F_MON_VGA) {
1754 if (blank_mode == 2 || blank_mode == 4)
1755 vss = current_par.VFT + 1;
1756 if (blank_mode == 3 || blank_mode == 4)
1757 hss = current_par.HHT + 2;
1758 }
1759
1760 videl.vdb = vdb;
1761 videl.vss = vss;
1762 videl.hbe = hbe;
1763 videl.hss = hss;
1764
1765 return 0;
1766 }
1767
1768 static int falcon_detect(void)
1769 {
1770 struct atafb_par par;
1771 unsigned char fhw;
1772
1773 /* Determine connected monitor and set monitor parameters */
1774 fhw = *(unsigned char *)0xffff8006;
1775 mon_type = fhw >> 6 & 0x3;
1776 /* bit 1 of fhw: 1=32 bit ram bus, 0=16 bit */
1777 f030_bus_width = fhw << 6 & 0x80;
1778 switch (mon_type) {
1779 case F_MON_SM:
1780 fb_info.monspecs.vfmin = 70;
1781 fb_info.monspecs.vfmax = 72;
1782 fb_info.monspecs.hfmin = 35713;
1783 fb_info.monspecs.hfmax = 35715;
1784 break;
1785 case F_MON_SC:
1786 case F_MON_TV:
1787 /* PAL...NTSC */
1788 fb_info.monspecs.vfmin = 49; /* not 50, since TOS defaults to 49.9x Hz */
1789 fb_info.monspecs.vfmax = 60;
1790 fb_info.monspecs.hfmin = 15620;
1791 fb_info.monspecs.hfmax = 15755;
1792 break;
1793 }
1794 /* initialize hsync-len */
1795 f25.hsync = h_syncs[mon_type] / f25.t;
1796 f32.hsync = h_syncs[mon_type] / f32.t;
1797 if (fext.t)
1798 fext.hsync = h_syncs[mon_type] / fext.t;
1799
1800 falcon_get_par(&par);
1801 falcon_encode_var(&atafb_predefined[0], &par);
1802
1803 /* Detected mode is always the "autodetect" slot */
1804 return 1;
1805 }
1806
1807 #endif /* ATAFB_FALCON */
1808
1809 /* ------------------- ST(E) specific functions ---------------------- */
1810
1811 #ifdef ATAFB_STE
1812
1813 static int stste_encode_fix(struct fb_fix_screeninfo *fix,
1814 struct atafb_par *par)
1815 {
1816 int mode;
1817
1818 strcpy(fix->id, "Atari Builtin");
1819 fix->smem_start = (unsigned long)real_screen_base;
1820 fix->smem_len = screen_len;
1821 fix->type = FB_TYPE_INTERLEAVED_PLANES;
1822 fix->type_aux = 2;
1823 fix->visual = FB_VISUAL_PSEUDOCOLOR;
1824 mode = par->hw.st.mode & 3;
1825 if (mode == ST_HIGH) {
1826 fix->type = FB_TYPE_PACKED_PIXELS;
1827 fix->type_aux = 0;
1828 fix->visual = FB_VISUAL_MONO10;
1829 }
1830 if (ATARIHW_PRESENT(EXTD_SHIFTER)) {
1831 fix->xpanstep = 16;
1832 fix->ypanstep = 1;
1833 } else {
1834 fix->xpanstep = 0;
1835 fix->ypanstep = 0;
1836 }
1837 fix->ywrapstep = 0;
1838 fix->line_length = par->next_line;
1839 fix->accel = FB_ACCEL_ATARIBLITT;
1840 return 0;
1841 }
1842
1843 static int stste_decode_var(struct fb_var_screeninfo *var,
1844 struct atafb_par *par)
1845 {
1846 int xres = var->xres;
1847 int yres = var->yres;
1848 int bpp = var->bits_per_pixel;
1849 int linelen;
1850 int yres_virtual = var->yres_virtual;
1851
1852 if (mono_moni) {
1853 if (bpp > 1 || xres > sttt_xres || yres > st_yres)
1854 return -EINVAL;
1855 par->hw.st.mode = ST_HIGH;
1856 xres = sttt_xres;
1857 yres = st_yres;
1858 bpp = 1;
1859 } else {
1860 if (bpp > 4 || xres > sttt_xres || yres > st_yres)
1861 return -EINVAL;
1862 if (bpp > 2) {
1863 if (xres > sttt_xres / 2 || yres > st_yres / 2)
1864 return -EINVAL;
1865 par->hw.st.mode = ST_LOW;
1866 xres = sttt_xres / 2;
1867 yres = st_yres / 2;
1868 bpp = 4;
1869 } else if (bpp > 1) {
1870 if (xres > sttt_xres || yres > st_yres / 2)
1871 return -EINVAL;
1872 par->hw.st.mode = ST_MID;
1873 xres = sttt_xres;
1874 yres = st_yres / 2;
1875 bpp = 2;
1876 } else
1877 return -EINVAL;
1878 }
1879 if (yres_virtual <= 0)
1880 yres_virtual = 0;
1881 else if (yres_virtual < yres)
1882 yres_virtual = yres;
1883 if (var->sync & FB_SYNC_EXT)
1884 par->hw.st.sync = (par->hw.st.sync & ~1) | 1;
1885 else
1886 par->hw.st.sync = (par->hw.st.sync & ~1);
1887 linelen = xres * bpp / 8;
1888 if (yres_virtual * linelen > screen_len && screen_len)
1889 return -EINVAL;
1890 if (yres * linelen > screen_len && screen_len)
1891 return -EINVAL;
1892 if (var->yoffset + yres > yres_virtual && yres_virtual)
1893 return -EINVAL;
1894 par->yres_virtual = yres_virtual;
1895 par->screen_base = screen_base + var->yoffset * linelen;
1896 par->next_line = linelen;
1897 return 0;
1898 }
1899
1900 static int stste_encode_var(struct fb_var_screeninfo *var,
1901 struct atafb_par *par)
1902 {
1903 int linelen;
1904 memset(var, 0, sizeof(struct fb_var_screeninfo));
1905 var->red.offset = 0;
1906 var->red.length = ATARIHW_PRESENT(EXTD_SHIFTER) ? 4 : 3;
1907 var->red.msb_right = 0;
1908 var->grayscale = 0;
1909
1910 var->pixclock = 31041;
1911 var->left_margin = 120; /* these are incorrect */
1912 var->right_margin = 100;
1913 var->upper_margin = 8;
1914 var->lower_margin = 16;
1915 var->hsync_len = 140;
1916 var->vsync_len = 30;
1917
1918 var->height = -1;
1919 var->width = -1;
1920
1921 if (!(par->hw.st.sync & 1))
1922 var->sync = 0;
1923 else
1924 var->sync = FB_SYNC_EXT;
1925
1926 switch (par->hw.st.mode & 3) {
1927 case ST_LOW:
1928 var->xres = sttt_xres / 2;
1929 var->yres = st_yres / 2;
1930 var->bits_per_pixel = 4;
1931 break;
1932 case ST_MID:
1933 var->xres = sttt_xres;
1934 var->yres = st_yres / 2;
1935 var->bits_per_pixel = 2;
1936 break;
1937 case ST_HIGH:
1938 var->xres = sttt_xres;
1939 var->yres = st_yres;
1940 var->bits_per_pixel = 1;
1941 break;
1942 }
1943 var->blue = var->green = var->red;
1944 var->transp.offset = 0;
1945 var->transp.length = 0;
1946 var->transp.msb_right = 0;
1947 var->xres_virtual = sttt_xres_virtual;
1948 linelen = var->xres_virtual * var->bits_per_pixel / 8;
1949 ovsc_addlen = linelen * (sttt_yres_virtual - st_yres);
1950
1951 if (!use_hwscroll)
1952 var->yres_virtual = var->yres;
1953 else if (screen_len) {
1954 if (par->yres_virtual)
1955 var->yres_virtual = par->yres_virtual;
1956 else
1957 /* yres_virtual == 0 means use maximum */
1958 var->yres_virtual = screen_len / linelen;
1959 } else {
1960 if (hwscroll < 0)
1961 var->yres_virtual = 2 * var->yres;
1962 else
1963 var->yres_virtual = var->yres + hwscroll * 16;
1964 }
1965 var->xoffset = 0;
1966 if (screen_base)
1967 var->yoffset = (par->screen_base - screen_base) / linelen;
1968 else
1969 var->yoffset = 0;
1970 var->nonstd = 0;
1971 var->activate = 0;
1972 var->vmode = FB_VMODE_NONINTERLACED;
1973 return 0;
1974 }
1975
1976 static void stste_get_par(struct atafb_par *par)
1977 {
1978 unsigned long addr;
1979 par->hw.st.mode = shifter_tt.st_shiftmode;
1980 par->hw.st.sync = shifter.syncmode;
1981 addr = ((shifter.bas_hi & 0xff) << 16) |
1982 ((shifter.bas_md & 0xff) << 8);
1983 if (ATARIHW_PRESENT(EXTD_SHIFTER))
1984 addr |= (shifter.bas_lo & 0xff);
1985 par->screen_base = phys_to_virt(addr);
1986 }
1987
1988 static void stste_set_par(struct atafb_par *par)
1989 {
1990 shifter_tt.st_shiftmode = par->hw.st.mode;
1991 shifter.syncmode = par->hw.st.sync;
1992 /* only set screen_base if really necessary */
1993 if (current_par.screen_base != par->screen_base)
1994 fbhw->set_screen_base(par->screen_base);
1995 }
1996
1997 static int stste_setcolreg(unsigned int regno, unsigned int red,
1998 unsigned int green, unsigned int blue,
1999 unsigned int transp, struct fb_info *info)
2000 {
2001 if (regno > 15)
2002 return 1;
2003 red >>= 12;
2004 blue >>= 12;
2005 green >>= 12;
2006 if (ATARIHW_PRESENT(EXTD_SHIFTER))
2007 shifter_tt.color_reg[regno] =
2008 (((red & 0xe) >> 1) | ((red & 1) << 3) << 8) |
2009 (((green & 0xe) >> 1) | ((green & 1) << 3) << 4) |
2010 ((blue & 0xe) >> 1) | ((blue & 1) << 3);
2011 else
2012 shifter_tt.color_reg[regno] =
2013 ((red & 0xe) << 7) |
2014 ((green & 0xe) << 3) |
2015 ((blue & 0xe) >> 1);
2016 return 0;
2017 }
2018
2019 static int stste_detect(void)
2020 {
2021 struct atafb_par par;
2022
2023 /* Determine the connected monitor: The DMA sound must be
2024 * disabled before reading the MFP GPIP, because the Sound
2025 * Done Signal and the Monochrome Detect are XORed together!
2026 */
2027 if (ATARIHW_PRESENT(PCM_8BIT)) {
2028 tt_dmasnd.ctrl = DMASND_CTRL_OFF;
2029 udelay(20); /* wait a while for things to settle down */
2030 }
2031 mono_moni = (st_mfp.par_dt_reg & 0x80) == 0;
2032
2033 stste_get_par(&par);
2034 stste_encode_var(&atafb_predefined[0], &par);
2035
2036 if (!ATARIHW_PRESENT(EXTD_SHIFTER))
2037 use_hwscroll = 0;
2038 return 1;
2039 }
2040
2041 static void stste_set_screen_base(void *s_base)
2042 {
2043 unsigned long addr;
2044 addr = virt_to_phys(s_base);
2045 /* Setup Screen Memory */
2046 shifter.bas_hi = (unsigned char)((addr & 0xff0000) >> 16);
2047 shifter.bas_md = (unsigned char)((addr & 0x00ff00) >> 8);
2048 if (ATARIHW_PRESENT(EXTD_SHIFTER))
2049 shifter.bas_lo = (unsigned char)(addr & 0x0000ff);
2050 }
2051
2052 #endif /* ATAFB_STE */
2053
2054 /* Switching the screen size should be done during vsync, otherwise
2055 * the margins may get messed up. This is a well known problem of
2056 * the ST's video system.
2057 *
2058 * Unfortunately there is hardly any way to find the vsync, as the
2059 * vertical blank interrupt is no longer in time on machines with
2060 * overscan type modifications.
2061 *
2062 * We can, however, use Timer B to safely detect the black shoulder,
2063 * but then we've got to guess an appropriate delay to find the vsync.
2064 * This might not work on every machine.
2065 *
2066 * martin_rogge @ ki.maus.de, 8th Aug 1995
2067 */
2068
2069 #define LINE_DELAY (mono_moni ? 30 : 70)
2070 #define SYNC_DELAY (mono_moni ? 1500 : 2000)
2071
2072 /* SWITCH_ACIA may be used for Falcon (ScreenBlaster III internal!) */
2073 static void st_ovsc_switch(void)
2074 {
2075 unsigned long flags;
2076 register unsigned char old, new;
2077
2078 if (!(atari_switches & ATARI_SWITCH_OVSC_MASK))
2079 return;
2080 local_irq_save(flags);
2081
2082 st_mfp.tim_ct_b = 0x10;
2083 st_mfp.active_edge |= 8;
2084 st_mfp.tim_ct_b = 0;
2085 st_mfp.tim_dt_b = 0xf0;
2086 st_mfp.tim_ct_b = 8;
2087 while (st_mfp.tim_dt_b > 1) /* TOS does it this way, don't ask why */
2088 ;
2089 new = st_mfp.tim_dt_b;
2090 do {
2091 udelay(LINE_DELAY);
2092 old = new;
2093 new = st_mfp.tim_dt_b;
2094 } while (old != new);
2095 st_mfp.tim_ct_b = 0x10;
2096 udelay(SYNC_DELAY);
2097
2098 if (atari_switches & ATARI_SWITCH_OVSC_IKBD)
2099 acia.key_ctrl = ACIA_DIV64 | ACIA_D8N1S | ACIA_RHTID | ACIA_RIE;
2100 if (atari_switches & ATARI_SWITCH_OVSC_MIDI)
2101 acia.mid_ctrl = ACIA_DIV16 | ACIA_D8N1S | ACIA_RHTID;
2102 if (atari_switches & (ATARI_SWITCH_OVSC_SND6|ATARI_SWITCH_OVSC_SND7)) {
2103 sound_ym.rd_data_reg_sel = 14;
2104 sound_ym.wd_data = sound_ym.rd_data_reg_sel |
2105 ((atari_switches & ATARI_SWITCH_OVSC_SND6) ? 0x40:0) |
2106 ((atari_switches & ATARI_SWITCH_OVSC_SND7) ? 0x80:0);
2107 }
2108 local_irq_restore(flags);
2109 }
2110
2111 /* ------------------- External Video ---------------------- */
2112
2113 #ifdef ATAFB_EXT
2114
2115 static int ext_encode_fix(struct fb_fix_screeninfo *fix, struct atafb_par *par)
2116 {
2117 strcpy(fix->id, "Unknown Extern");
2118 fix->smem_start = (unsigned long)external_addr;
2119 fix->smem_len = PAGE_ALIGN(external_len);
2120 if (external_depth == 1) {
2121 fix->type = FB_TYPE_PACKED_PIXELS;
2122 /* The letters 'n' and 'i' in the "atavideo=external:" stand
2123 * for "normal" and "inverted", rsp., in the monochrome case */
2124 fix->visual =
2125 (external_pmode == FB_TYPE_INTERLEAVED_PLANES ||
2126 external_pmode == FB_TYPE_PACKED_PIXELS) ?
2127 FB_VISUAL_MONO10 : FB_VISUAL_MONO01;
2128 } else {
2129 /* Use STATIC if we don't know how to access color registers */
2130 int visual = external_vgaiobase ?
2131 FB_VISUAL_PSEUDOCOLOR :
2132 FB_VISUAL_STATIC_PSEUDOCOLOR;
2133 switch (external_pmode) {
2134 case -1: /* truecolor */
2135 fix->type = FB_TYPE_PACKED_PIXELS;
2136 fix->visual = FB_VISUAL_TRUECOLOR;
2137 break;
2138 case FB_TYPE_PACKED_PIXELS:
2139 fix->type = FB_TYPE_PACKED_PIXELS;
2140 fix->visual = visual;
2141 break;
2142 case FB_TYPE_PLANES:
2143 fix->type = FB_TYPE_PLANES;
2144 fix->visual = visual;
2145 break;
2146 case FB_TYPE_INTERLEAVED_PLANES:
2147 fix->type = FB_TYPE_INTERLEAVED_PLANES;
2148 fix->type_aux = 2;
2149 fix->visual = visual;
2150 break;
2151 }
2152 }
2153 fix->xpanstep = 0;
2154 fix->ypanstep = 0;
2155 fix->ywrapstep = 0;
2156 fix->line_length = par->next_line;
2157 return 0;
2158 }
2159
2160 static int ext_decode_var(struct fb_var_screeninfo *var, struct atafb_par *par)
2161 {
2162 struct fb_var_screeninfo *myvar = &atafb_predefined[0];
2163
2164 if (var->bits_per_pixel > myvar->bits_per_pixel ||
2165 var->xres > myvar->xres ||
2166 var->xres_virtual > myvar->xres_virtual ||
2167 var->yres > myvar->yres ||
2168 var->xoffset > 0 ||
2169 var->yoffset > 0)
2170 return -EINVAL;
2171
2172 par->next_line = external_xres_virtual * external_depth / 8;
2173 return 0;
2174 }
2175
2176 static int ext_encode_var(struct fb_var_screeninfo *var, struct atafb_par *par)
2177 {
2178 memset(var, 0, sizeof(struct fb_var_screeninfo));
2179 var->red.offset = 0;
2180 var->red.length = (external_pmode == -1) ? external_depth / 3 :
2181 (external_vgaiobase ? external_bitspercol : 0);
2182 var->red.msb_right = 0;
2183 var->grayscale = 0;
2184
2185 var->pixclock = 31041;
2186 var->left_margin = 120; /* these are surely incorrect */
2187 var->right_margin = 100;
2188 var->upper_margin = 8;
2189 var->lower_margin = 16;
2190 var->hsync_len = 140;
2191 var->vsync_len = 30;
2192
2193 var->height = -1;
2194 var->width = -1;
2195
2196 var->sync = 0;
2197
2198 var->xres = external_xres;
2199 var->yres = external_yres;
2200 var->xres_virtual = external_xres_virtual;
2201 var->bits_per_pixel = external_depth;
2202
2203 var->blue = var->green = var->red;
2204 var->transp.offset = 0;
2205 var->transp.length = 0;
2206 var->transp.msb_right = 0;
2207 var->yres_virtual = var->yres;
2208 var->xoffset = 0;
2209 var->yoffset = 0;
2210 var->nonstd = 0;
2211 var->activate = 0;
2212 var->vmode = FB_VMODE_NONINTERLACED;
2213 return 0;
2214 }
2215
2216 static void ext_get_par(struct atafb_par *par)
2217 {
2218 par->screen_base = external_addr;
2219 }
2220
2221 static void ext_set_par(struct atafb_par *par)
2222 {
2223 }
2224
2225 #define OUTB(port,val) \
2226 *((unsigned volatile char *) ((port)+external_vgaiobase)) = (val)
2227 #define INB(port) \
2228 (*((unsigned volatile char *) ((port)+external_vgaiobase)))
2229 #define DACDelay \
2230 do { \
2231 unsigned char tmp = INB(0x3da); \
2232 tmp = INB(0x3da); \
2233 } while (0)
2234
2235 static int ext_setcolreg(unsigned int regno, unsigned int red,
2236 unsigned int green, unsigned int blue,
2237 unsigned int transp, struct fb_info *info)
2238 {
2239 unsigned char colmask = (1 << external_bitspercol) - 1;
2240
2241 if (!external_vgaiobase)
2242 return 1;
2243
2244 if (regno > 255)
2245 return 1;
2246
2247 switch (external_card_type) {
2248 case IS_VGA:
2249 OUTB(0x3c8, regno);
2250 DACDelay;
2251 OUTB(0x3c9, red & colmask);
2252 DACDelay;
2253 OUTB(0x3c9, green & colmask);
2254 DACDelay;
2255 OUTB(0x3c9, blue & colmask);
2256 DACDelay;
2257 return 0;
2258
2259 case IS_MV300:
2260 OUTB((MV300_reg[regno] << 2) + 1, red);
2261 OUTB((MV300_reg[regno] << 2) + 1, green);
2262 OUTB((MV300_reg[regno] << 2) + 1, blue);
2263 return 0;
2264
2265 default:
2266 return 1;
2267 }
2268 }
2269
2270 static int ext_detect(void)
2271 {
2272 struct fb_var_screeninfo *myvar = &atafb_predefined[0];
2273 struct atafb_par dummy_par;
2274
2275 myvar->xres = external_xres;
2276 myvar->xres_virtual = external_xres_virtual;
2277 myvar->yres = external_yres;
2278 myvar->bits_per_pixel = external_depth;
2279 ext_encode_var(myvar, &dummy_par);
2280 return 1;
2281 }
2282
2283 #endif /* ATAFB_EXT */
2284
2285 /* ------ This is the same for most hardware types -------- */
2286
2287 static void set_screen_base(void *s_base)
2288 {
2289 unsigned long addr;
2290
2291 addr = virt_to_phys(s_base);
2292 /* Setup Screen Memory */
2293 shifter.bas_hi = (unsigned char)((addr & 0xff0000) >> 16);
2294 shifter.bas_md = (unsigned char)((addr & 0x00ff00) >> 8);
2295 shifter.bas_lo = (unsigned char)(addr & 0x0000ff);
2296 }
2297
2298 static int pan_display(struct fb_var_screeninfo *var, struct fb_info *info)
2299 {
2300 struct atafb_par *par = (struct atafb_par *)info->par;
2301
2302 if (!fbhw->set_screen_base ||
2303 (!ATARIHW_PRESENT(EXTD_SHIFTER) && var->xoffset))
2304 return -EINVAL;
2305 var->xoffset = up(var->xoffset, 16);
2306 par->screen_base = screen_base +
2307 (var->yoffset * info->var.xres_virtual + var->xoffset)
2308 * info->var.bits_per_pixel / 8;
2309 fbhw->set_screen_base(par->screen_base);
2310 return 0;
2311 }
2312
2313 /* ------------ Interfaces to hardware functions ------------ */
2314
2315 #ifdef ATAFB_TT
2316 static struct fb_hwswitch tt_switch = {
2317 .detect = tt_detect,
2318 .encode_fix = tt_encode_fix,
2319 .decode_var = tt_decode_var,
2320 .encode_var = tt_encode_var,
2321 .get_par = tt_get_par,
2322 .set_par = tt_set_par,
2323 .set_screen_base = set_screen_base,
2324 .pan_display = pan_display,
2325 };
2326 #endif
2327
2328 #ifdef ATAFB_FALCON
2329 static struct fb_hwswitch falcon_switch = {
2330 .detect = falcon_detect,
2331 .encode_fix = falcon_encode_fix,
2332 .decode_var = falcon_decode_var,
2333 .encode_var = falcon_encode_var,
2334 .get_par = falcon_get_par,
2335 .set_par = falcon_set_par,
2336 .set_screen_base = set_screen_base,
2337 .blank = falcon_blank,
2338 .pan_display = falcon_pan_display,
2339 };
2340 #endif
2341
2342 #ifdef ATAFB_STE
2343 static struct fb_hwswitch st_switch = {
2344 .detect = stste_detect,
2345 .encode_fix = stste_encode_fix,
2346 .decode_var = stste_decode_var,
2347 .encode_var = stste_encode_var,
2348 .get_par = stste_get_par,
2349 .set_par = stste_set_par,
2350 .set_screen_base = stste_set_screen_base,
2351 .pan_display = pan_display
2352 };
2353 #endif
2354
2355 #ifdef ATAFB_EXT
2356 static struct fb_hwswitch ext_switch = {
2357 .detect = ext_detect,
2358 .encode_fix = ext_encode_fix,
2359 .decode_var = ext_decode_var,
2360 .encode_var = ext_encode_var,
2361 .get_par = ext_get_par,
2362 .set_par = ext_set_par,
2363 };
2364 #endif
2365
2366 static void ata_get_par(struct atafb_par *par)
2367 {
2368 if (current_par_valid)
2369 *par = current_par;
2370 else
2371 fbhw->get_par(par);
2372 }
2373
2374 static void ata_set_par(struct atafb_par *par)
2375 {
2376 fbhw->set_par(par);
2377 current_par = *par;
2378 current_par_valid = 1;
2379 }
2380
2381
2382 /* =========================================================== */
2383 /* ============== Hardware Independent Functions ============= */
2384 /* =========================================================== */
2385
2386 /* used for hardware scrolling */
2387
2388 static int do_fb_set_var(struct fb_var_screeninfo *var, int isactive)
2389 {
2390 int err, activate;
2391 struct atafb_par par;
2392
2393 err = fbhw->decode_var(var, &par);
2394 if (err)
2395 return err;
2396 activate = var->activate;
2397 if (((var->activate & FB_ACTIVATE_MASK) == FB_ACTIVATE_NOW) && isactive)
2398 ata_set_par(&par);
2399 fbhw->encode_var(var, &par);
2400 var->activate = activate;
2401 return 0;
2402 }
2403
2404 /* fbhw->encode_fix() must be called with fb_info->mm_lock held
2405 * if it is called after the register_framebuffer() - not a case here
2406 */
2407 static int atafb_get_fix(struct fb_fix_screeninfo *fix, struct fb_info *info)
2408 {
2409 struct atafb_par par;
2410 int err;
2411 // Get fix directly (case con == -1 before)??
2412 err = fbhw->decode_var(&info->var, &par);
2413 if (err)
2414 return err;
2415 memset(fix, 0, sizeof(struct fb_fix_screeninfo));
2416 err = fbhw->encode_fix(fix, &par);
2417 return err;
2418 }
2419
2420 static int atafb_get_var(struct fb_var_screeninfo *var, struct fb_info *info)
2421 {
2422 struct atafb_par par;
2423
2424 ata_get_par(&par);
2425 fbhw->encode_var(var, &par);
2426
2427 return 0;
2428 }
2429
2430 // No longer called by fbcon!
2431 // Still called by set_var internally
2432
2433 static void atafb_set_disp(struct fb_info *info)
2434 {
2435 atafb_get_var(&info->var, info);
2436 atafb_get_fix(&info->fix, info);
2437
2438 info->screen_base = (void *)info->fix.smem_start;
2439 }
2440
2441 static int atafb_setcolreg(u_int regno, u_int red, u_int green, u_int blue,
2442 u_int transp, struct fb_info *info)
2443 {
2444 red >>= 8;
2445 green >>= 8;
2446 blue >>= 8;
2447
2448 return info->fbops->fb_setcolreg(regno, red, green, blue, transp, info);
2449 }
2450
2451 static int
2452 atafb_pan_display(struct fb_var_screeninfo *var, struct fb_info *info)
2453 {
2454 int xoffset = var->xoffset;
2455 int yoffset = var->yoffset;
2456 int err;
2457
2458 if (var->vmode & FB_VMODE_YWRAP) {
2459 if (yoffset < 0 || yoffset >= info->var.yres_virtual || xoffset)
2460 return -EINVAL;
2461 } else {
2462 if (xoffset + info->var.xres > info->var.xres_virtual ||
2463 yoffset + info->var.yres > info->var.yres_virtual)
2464 return -EINVAL;
2465 }
2466
2467 if (fbhw->pan_display) {
2468 err = fbhw->pan_display(var, info);
2469 if (err)
2470 return err;
2471 } else
2472 return -EINVAL;
2473
2474 info->var.xoffset = xoffset;
2475 info->var.yoffset = yoffset;
2476
2477 if (var->vmode & FB_VMODE_YWRAP)
2478 info->var.vmode |= FB_VMODE_YWRAP;
2479 else
2480 info->var.vmode &= ~FB_VMODE_YWRAP;
2481
2482 return 0;
2483 }
2484
2485 /*
2486 * generic drawing routines; imageblit needs updating for image depth > 1
2487 */
2488
2489 #if BITS_PER_LONG == 32
2490 #define BYTES_PER_LONG 4
2491 #define SHIFT_PER_LONG 5
2492 #elif BITS_PER_LONG == 64
2493 #define BYTES_PER_LONG 8
2494 #define SHIFT_PER_LONG 6
2495 #else
2496 #define Please update me
2497 #endif
2498
2499
2500 static void atafb_fillrect(struct fb_info *info, const struct fb_fillrect *rect)
2501 {
2502 struct atafb_par *par = (struct atafb_par *)info->par;
2503 int x2, y2;
2504 u32 width, height;
2505
2506 if (!rect->width || !rect->height)
2507 return;
2508
2509 #ifdef ATAFB_FALCON
2510 if (info->var.bits_per_pixel == 16) {
2511 cfb_fillrect(info, rect);
2512 return;
2513 }
2514 #endif
2515
2516 /*
2517 * We could use hardware clipping but on many cards you get around
2518 * hardware clipping by writing to framebuffer directly.
2519 * */
2520 x2 = rect->dx + rect->width;
2521 y2 = rect->dy + rect->height;
2522 x2 = x2 < info->var.xres_virtual ? x2 : info->var.xres_virtual;
2523 y2 = y2 < info->var.yres_virtual ? y2 : info->var.yres_virtual;
2524 width = x2 - rect->dx;
2525 height = y2 - rect->dy;
2526
2527 if (info->var.bits_per_pixel == 1)
2528 atafb_mfb_fillrect(info, par->next_line, rect->color,
2529 rect->dy, rect->dx, height, width);
2530 else if (info->var.bits_per_pixel == 2)
2531 atafb_iplan2p2_fillrect(info, par->next_line, rect->color,
2532 rect->dy, rect->dx, height, width);
2533 else if (info->var.bits_per_pixel == 4)
2534 atafb_iplan2p4_fillrect(info, par->next_line, rect->color,
2535 rect->dy, rect->dx, height, width);
2536 else
2537 atafb_iplan2p8_fillrect(info, par->next_line, rect->color,
2538 rect->dy, rect->dx, height, width);
2539
2540 return;
2541 }
2542
2543 static void atafb_copyarea(struct fb_info *info, const struct fb_copyarea *area)
2544 {
2545 struct atafb_par *par = (struct atafb_par *)info->par;
2546 int x2, y2;
2547 u32 dx, dy, sx, sy, width, height;
2548 int rev_copy = 0;
2549
2550 #ifdef ATAFB_FALCON
2551 if (info->var.bits_per_pixel == 16) {
2552 cfb_copyarea(info, area);
2553 return;
2554 }
2555 #endif
2556
2557 /* clip the destination */
2558 x2 = area->dx + area->width;
2559 y2 = area->dy + area->height;
2560 dx = area->dx > 0 ? area->dx : 0;
2561 dy = area->dy > 0 ? area->dy : 0;
2562 x2 = x2 < info->var.xres_virtual ? x2 : info->var.xres_virtual;
2563 y2 = y2 < info->var.yres_virtual ? y2 : info->var.yres_virtual;
2564 width = x2 - dx;
2565 height = y2 - dy;
2566
2567 if (area->sx + dx < area->dx || area->sy + dy < area->dy)
2568 return;
2569
2570 /* update sx,sy */
2571 sx = area->sx + (dx - area->dx);
2572 sy = area->sy + (dy - area->dy);
2573
2574 /* the source must be completely inside the virtual screen */
2575 if (sx + width > info->var.xres_virtual ||
2576 sy + height > info->var.yres_virtual)
2577 return;
2578
2579 if (dy > sy || (dy == sy && dx > sx)) {
2580 dy += height;
2581 sy += height;
2582 rev_copy = 1;
2583 }
2584
2585 if (info->var.bits_per_pixel == 1)
2586 atafb_mfb_copyarea(info, par->next_line, sy, sx, dy, dx, height, width);
2587 else if (info->var.bits_per_pixel == 2)
2588 atafb_iplan2p2_copyarea(info, par->next_line, sy, sx, dy, dx, height, width);
2589 else if (info->var.bits_per_pixel == 4)
2590 atafb_iplan2p4_copyarea(info, par->next_line, sy, sx, dy, dx, height, width);
2591 else
2592 atafb_iplan2p8_copyarea(info, par->next_line, sy, sx, dy, dx, height, width);
2593
2594 return;
2595 }
2596
2597 static void atafb_imageblit(struct fb_info *info, const struct fb_image *image)
2598 {
2599 struct atafb_par *par = (struct atafb_par *)info->par;
2600 int x2, y2;
2601 unsigned long *dst;
2602 int dst_idx;
2603 const char *src;
2604 u32 dx, dy, width, height, pitch;
2605
2606 #ifdef ATAFB_FALCON
2607 if (info->var.bits_per_pixel == 16) {
2608 cfb_imageblit(info, image);
2609 return;
2610 }
2611 #endif
2612
2613 /*
2614 * We could use hardware clipping but on many cards you get around
2615 * hardware clipping by writing to framebuffer directly like we are
2616 * doing here.
2617 */
2618 x2 = image->dx + image->width;
2619 y2 = image->dy + image->height;
2620 dx = image->dx;
2621 dy = image->dy;
2622 x2 = x2 < info->var.xres_virtual ? x2 : info->var.xres_virtual;
2623 y2 = y2 < info->var.yres_virtual ? y2 : info->var.yres_virtual;
2624 width = x2 - dx;
2625 height = y2 - dy;
2626
2627 if (image->depth == 1) {
2628 // used for font data
2629 dst = (unsigned long *)
2630 ((unsigned long)info->screen_base & ~(BYTES_PER_LONG - 1));
2631 dst_idx = ((unsigned long)info->screen_base & (BYTES_PER_LONG - 1)) * 8;
2632 dst_idx += dy * par->next_line * 8 + dx;
2633 src = image->data;
2634 pitch = (image->width + 7) / 8;
2635 while (height--) {
2636
2637 if (info->var.bits_per_pixel == 1)
2638 atafb_mfb_linefill(info, par->next_line,
2639 dy, dx, width, src,
2640 image->bg_color, image->fg_color);
2641 else if (info->var.bits_per_pixel == 2)
2642 atafb_iplan2p2_linefill(info, par->next_line,
2643 dy, dx, width, src,
2644 image->bg_color, image->fg_color);
2645 else if (info->var.bits_per_pixel == 4)
2646 atafb_iplan2p4_linefill(info, par->next_line,
2647 dy, dx, width, src,
2648 image->bg_color, image->fg_color);
2649 else
2650 atafb_iplan2p8_linefill(info, par->next_line,
2651 dy, dx, width, src,
2652 image->bg_color, image->fg_color);
2653 dy++;
2654 src += pitch;
2655 }
2656 } else {
2657 c2p_iplan2(info->screen_base, image->data, dx, dy, width,
2658 height, par->next_line, image->width,
2659 info->var.bits_per_pixel);
2660 }
2661 }
2662
2663 static int
2664 atafb_ioctl(struct fb_info *info, unsigned int cmd, unsigned long arg)
2665 {
2666 switch (cmd) {
2667 #ifdef FBCMD_GET_CURRENTPAR
2668 case FBCMD_GET_CURRENTPAR:
2669 if (copy_to_user((void *)arg, (void *)&current_par,
2670 sizeof(struct atafb_par)))
2671 return -EFAULT;
2672 return 0;
2673 #endif
2674 #ifdef FBCMD_SET_CURRENTPAR
2675 case FBCMD_SET_CURRENTPAR:
2676 if (copy_from_user((void *)&current_par, (void *)arg,
2677 sizeof(struct atafb_par)))
2678 return -EFAULT;
2679 ata_set_par(&current_par);
2680 return 0;
2681 #endif
2682 }
2683 return -EINVAL;
2684 }
2685
2686 /* (un)blank/poweroff
2687 * 0 = unblank
2688 * 1 = blank
2689 * 2 = suspend vsync
2690 * 3 = suspend hsync
2691 * 4 = off
2692 */
2693 static int atafb_blank(int blank, struct fb_info *info)
2694 {
2695 unsigned short black[16];
2696 struct fb_cmap cmap;
2697 if (fbhw->blank && !fbhw->blank(blank))
2698 return 1;
2699 if (blank) {
2700 memset(black, 0, 16 * sizeof(unsigned short));
2701 cmap.red = black;
2702 cmap.green = black;
2703 cmap.blue = black;
2704 cmap.transp = NULL;
2705 cmap.start = 0;
2706 cmap.len = 16;
2707 fb_set_cmap(&cmap, info);
2708 }
2709 #if 0
2710 else
2711 do_install_cmap(info);
2712 #endif
2713 return 0;
2714 }
2715
2716 /*
2717 * New fbcon interface ...
2718 */
2719
2720 /* check var by decoding var into hw par, rounding if necessary,
2721 * then encoding hw par back into new, validated var */
2722 static int atafb_check_var(struct fb_var_screeninfo *var, struct fb_info *info)
2723 {
2724 int err;
2725 struct atafb_par par;
2726
2727 /* Validate wanted screen parameters */
2728 // if ((err = ata_decode_var(var, &par)))
2729 err = fbhw->decode_var(var, &par);
2730 if (err)
2731 return err;
2732
2733 /* Encode (possibly rounded) screen parameters */
2734 fbhw->encode_var(var, &par);
2735 return 0;
2736 }
2737
2738 /* actually set hw par by decoding var, then setting hardware from
2739 * hw par just decoded */
2740 static int atafb_set_par(struct fb_info *info)
2741 {
2742 struct atafb_par *par = (struct atafb_par *)info->par;
2743
2744 /* Decode wanted screen parameters */
2745 fbhw->decode_var(&info->var, par);
2746 mutex_lock(&info->mm_lock);
2747 fbhw->encode_fix(&info->fix, par);
2748 mutex_unlock(&info->mm_lock);
2749
2750 /* Set new videomode */
2751 ata_set_par(par);
2752
2753 return 0;
2754 }
2755
2756
2757 static struct fb_ops atafb_ops = {
2758 .owner = THIS_MODULE,
2759 .fb_check_var = atafb_check_var,
2760 .fb_set_par = atafb_set_par,
2761 .fb_setcolreg = atafb_setcolreg,
2762 .fb_blank = atafb_blank,
2763 .fb_pan_display = atafb_pan_display,
2764 .fb_fillrect = atafb_fillrect,
2765 .fb_copyarea = atafb_copyarea,
2766 .fb_imageblit = atafb_imageblit,
2767 .fb_ioctl = atafb_ioctl,
2768 };
2769
2770 static void check_default_par(int detected_mode)
2771 {
2772 char default_name[10];
2773 int i;
2774 struct fb_var_screeninfo var;
2775 unsigned long min_mem;
2776
2777 /* First try the user supplied mode */
2778 if (default_par) {
2779 var = atafb_predefined[default_par - 1];
2780 var.activate = FB_ACTIVATE_TEST;
2781 if (do_fb_set_var(&var, 1))
2782 default_par = 0; /* failed */
2783 }
2784 /* Next is the autodetected one */
2785 if (!default_par) {
2786 var = atafb_predefined[detected_mode - 1]; /* autodetect */
2787 var.activate = FB_ACTIVATE_TEST;
2788 if (!do_fb_set_var(&var, 1))
2789 default_par = detected_mode;
2790 }
2791 /* If that also failed, try some default modes... */
2792 if (!default_par) {
2793 /* try default1, default2... */
2794 for (i = 1; i < 10; i++) {
2795 sprintf(default_name,"default%d", i);
2796 default_par = get_video_mode(default_name);
2797 if (!default_par)
2798 panic("can't set default video mode");
2799 var = atafb_predefined[default_par - 1];
2800 var.activate = FB_ACTIVATE_TEST;
2801 if (!do_fb_set_var(&var,1))
2802 break; /* ok */
2803 }
2804 }
2805 min_mem = var.xres_virtual * var.yres_virtual * var.bits_per_pixel / 8;
2806 if (default_mem_req < min_mem)
2807 default_mem_req = min_mem;
2808 }
2809
2810 #ifdef ATAFB_EXT
2811 static void __init atafb_setup_ext(char *spec)
2812 {
2813 int xres, xres_virtual, yres, depth, planes;
2814 unsigned long addr, len;
2815 char *p;
2816
2817 /* Format is: <xres>;<yres>;<depth>;<plane organ.>;
2818 * <screen mem addr>
2819 * [;<screen mem length>[;<vgaiobase>[;<bits-per-col>[;<colorreg-type>
2820 * [;<xres-virtual>]]]]]
2821 *
2822 * 09/23/97 Juergen
2823 * <xres_virtual>: hardware's x-resolution (f.e. ProMST)
2824 *
2825 * Even xres_virtual is available, we neither support panning nor hw-scrolling!
2826 */
2827 p = strsep(&spec, ";");
2828 if (!p || !*p)
2829 return;
2830 xres_virtual = xres = simple_strtoul(p, NULL, 10);
2831 if (xres <= 0)
2832 return;
2833
2834 p = strsep(&spec, ";");
2835 if (!p || !*p)
2836 return;
2837 yres = simple_strtoul(p, NULL, 10);
2838 if (yres <= 0)
2839 return;
2840
2841 p = strsep(&spec, ";");
2842 if (!p || !*p)
2843 return;
2844 depth = simple_strtoul(p, NULL, 10);
2845 if (depth != 1 && depth != 2 && depth != 4 && depth != 8 &&
2846 depth != 16 && depth != 24)
2847 return;
2848
2849 p = strsep(&spec, ";");
2850 if (!p || !*p)
2851 return;
2852 if (*p == 'i')
2853 planes = FB_TYPE_INTERLEAVED_PLANES;
2854 else if (*p == 'p')
2855 planes = FB_TYPE_PACKED_PIXELS;
2856 else if (*p == 'n')
2857 planes = FB_TYPE_PLANES;
2858 else if (*p == 't')
2859 planes = -1; /* true color */
2860 else
2861 return;
2862
2863 p = strsep(&spec, ";");
2864 if (!p || !*p)
2865 return;
2866 addr = simple_strtoul(p, NULL, 0);
2867
2868 p = strsep(&spec, ";");
2869 if (!p || !*p)
2870 len = xres * yres * depth / 8;
2871 else
2872 len = simple_strtoul(p, NULL, 0);
2873
2874 p = strsep(&spec, ";");
2875 if (p && *p)
2876 external_vgaiobase = simple_strtoul(p, NULL, 0);
2877
2878 p = strsep(&spec, ";");
2879 if (p && *p) {
2880 external_bitspercol = simple_strtoul(p, NULL, 0);
2881 if (external_bitspercol > 8)
2882 external_bitspercol = 8;
2883 else if (external_bitspercol < 1)
2884 external_bitspercol = 1;
2885 }
2886
2887 p = strsep(&spec, ";");
2888 if (p && *p) {
2889 if (!strcmp(p, "vga"))
2890 external_card_type = IS_VGA;
2891 if (!strcmp(p, "mv300"))
2892 external_card_type = IS_MV300;
2893 }
2894
2895 p = strsep(&spec, ";");
2896 if (p && *p) {
2897 xres_virtual = simple_strtoul(p, NULL, 10);
2898 if (xres_virtual < xres)
2899 xres_virtual = xres;
2900 if (xres_virtual * yres * depth / 8 > len)
2901 len = xres_virtual * yres * depth / 8;
2902 }
2903
2904 external_xres = xres;
2905 external_xres_virtual = xres_virtual;
2906 external_yres = yres;
2907 external_depth = depth;
2908 external_pmode = planes;
2909 external_addr = (void *)addr;
2910 external_len = len;
2911
2912 if (external_card_type == IS_MV300) {
2913 switch (external_depth) {
2914 case 1:
2915 MV300_reg = MV300_reg_1bit;
2916 break;
2917 case 4:
2918 MV300_reg = MV300_reg_4bit;
2919 break;
2920 case 8:
2921 MV300_reg = MV300_reg_8bit;
2922 break;
2923 }
2924 }
2925 }
2926 #endif /* ATAFB_EXT */
2927
2928 static void __init atafb_setup_int(char *spec)
2929 {
2930 /* Format to config extended internal video hardware like OverScan:
2931 * "internal:<xres>;<yres>;<xres_max>;<yres_max>;<offset>"
2932 * Explanation:
2933 * <xres>: x-resolution
2934 * <yres>: y-resolution
2935 * The following are only needed if you have an overscan which
2936 * needs a black border:
2937 * <xres_max>: max. length of a line in pixels your OverScan hardware would allow
2938 * <yres_max>: max. number of lines your OverScan hardware would allow
2939 * <offset>: Offset from physical beginning to visible beginning
2940 * of screen in bytes
2941 */
2942 int xres;
2943 char *p;
2944
2945 if (!(p = strsep(&spec, ";")) || !*p)
2946 return;
2947 xres = simple_strtoul(p, NULL, 10);
2948 if (!(p = strsep(&spec, ";")) || !*p)
2949 return;
2950 sttt_xres = xres;
2951 tt_yres = st_yres = simple_strtoul(p, NULL, 10);
2952 if ((p = strsep(&spec, ";")) && *p)
2953 sttt_xres_virtual = simple_strtoul(p, NULL, 10);
2954 if ((p = strsep(&spec, ";")) && *p)
2955 sttt_yres_virtual = simple_strtoul(p, NULL, 0);
2956 if ((p = strsep(&spec, ";")) && *p)
2957 ovsc_offset = simple_strtoul(p, NULL, 0);
2958
2959 if (ovsc_offset || (sttt_yres_virtual != st_yres))
2960 use_hwscroll = 0;
2961 }
2962
2963 #ifdef ATAFB_FALCON
2964 static void __init atafb_setup_mcap(char *spec)
2965 {
2966 char *p;
2967 int vmin, vmax, hmin, hmax;
2968
2969 /* Format for monitor capabilities is: <Vmin>;<Vmax>;<Hmin>;<Hmax>
2970 * <V*> vertical freq. in Hz
2971 * <H*> horizontal freq. in kHz
2972 */
2973 if (!(p = strsep(&spec, ";")) || !*p)
2974 return;
2975 vmin = simple_strtoul(p, NULL, 10);
2976 if (vmin <= 0)
2977 return;
2978 if (!(p = strsep(&spec, ";")) || !*p)
2979 return;
2980 vmax = simple_strtoul(p, NULL, 10);
2981 if (vmax <= 0 || vmax <= vmin)
2982 return;
2983 if (!(p = strsep(&spec, ";")) || !*p)
2984 return;
2985 hmin = 1000 * simple_strtoul(p, NULL, 10);
2986 if (hmin <= 0)
2987 return;
2988 if (!(p = strsep(&spec, "")) || !*p)
2989 return;
2990 hmax = 1000 * simple_strtoul(p, NULL, 10);
2991 if (hmax <= 0 || hmax <= hmin)
2992 return;
2993
2994 fb_info.monspecs.vfmin = vmin;
2995 fb_info.monspecs.vfmax = vmax;
2996 fb_info.monspecs.hfmin = hmin;
2997 fb_info.monspecs.hfmax = hmax;
2998 }
2999 #endif /* ATAFB_FALCON */
3000
3001 static void __init atafb_setup_user(char *spec)
3002 {
3003 /* Format of user defined video mode is: <xres>;<yres>;<depth>
3004 */
3005 char *p;
3006 int xres, yres, depth, temp;
3007
3008 p = strsep(&spec, ";");
3009 if (!p || !*p)
3010 return;
3011 xres = simple_strtoul(p, NULL, 10);
3012 p = strsep(&spec, ";");
3013 if (!p || !*p)
3014 return;
3015 yres = simple_strtoul(p, NULL, 10);
3016 p = strsep(&spec, "");
3017 if (!p || !*p)
3018 return;
3019 depth = simple_strtoul(p, NULL, 10);
3020 temp = get_video_mode("user0");
3021 if (temp) {
3022 default_par = temp;
3023 atafb_predefined[default_par - 1].xres = xres;
3024 atafb_predefined[default_par - 1].yres = yres;
3025 atafb_predefined[default_par - 1].bits_per_pixel = depth;
3026 }
3027 }
3028
3029 int __init atafb_setup(char *options)
3030 {
3031 char *this_opt;
3032 int temp;
3033
3034 if (!options || !*options)
3035 return 0;
3036
3037 while ((this_opt = strsep(&options, ",")) != NULL) {
3038 if (!*this_opt)
3039 continue;
3040 if ((temp = get_video_mode(this_opt))) {
3041 default_par = temp;
3042 mode_option = this_opt;
3043 } else if (!strcmp(this_opt, "inverse"))
3044 inverse = 1;
3045 else if (!strncmp(this_opt, "hwscroll_", 9)) {
3046 hwscroll = simple_strtoul(this_opt + 9, NULL, 10);
3047 if (hwscroll < 0)
3048 hwscroll = 0;
3049 if (hwscroll > 200)
3050 hwscroll = 200;
3051 }
3052 #ifdef ATAFB_EXT
3053 else if (!strcmp(this_opt, "mv300")) {
3054 external_bitspercol = 8;
3055 external_card_type = IS_MV300;
3056 } else if (!strncmp(this_opt, "external:", 9))
3057 atafb_setup_ext(this_opt + 9);
3058 #endif
3059 else if (!strncmp(this_opt, "internal:", 9))
3060 atafb_setup_int(this_opt + 9);
3061 #ifdef ATAFB_FALCON
3062 else if (!strncmp(this_opt, "eclock:", 7)) {
3063 fext.f = simple_strtoul(this_opt + 7, NULL, 10);
3064 /* external pixelclock in kHz --> ps */
3065 fext.t = 1000000000 / fext.f;
3066 fext.f *= 1000;
3067 } else if (!strncmp(this_opt, "monitorcap:", 11))
3068 atafb_setup_mcap(this_opt + 11);
3069 #endif
3070 else if (!strcmp(this_opt, "keep"))
3071 DontCalcRes = 1;
3072 else if (!strncmp(this_opt, "R", 1))
3073 atafb_setup_user(this_opt + 1);
3074 }
3075 return 0;
3076 }
3077
3078 int __init atafb_init(void)
3079 {
3080 int pad, detected_mode, error;
3081 unsigned int defmode = 0;
3082 unsigned long mem_req;
3083
3084 #ifndef MODULE
3085 char *option = NULL;
3086
3087 if (fb_get_options("atafb", &option))
3088 return -ENODEV;
3089 atafb_setup(option);
3090 #endif
3091 printk("atafb_init: start\n");
3092
3093 if (!MACH_IS_ATARI)
3094 return -ENODEV;
3095
3096 do {
3097 #ifdef ATAFB_EXT
3098 if (external_addr) {
3099 printk("atafb_init: initializing external hw\n");
3100 fbhw = &ext_switch;
3101 atafb_ops.fb_setcolreg = &ext_setcolreg;
3102 defmode = DEFMODE_EXT;
3103 break;
3104 }
3105 #endif
3106 #ifdef ATAFB_TT
3107 if (ATARIHW_PRESENT(TT_SHIFTER)) {
3108 printk("atafb_init: initializing TT hw\n");
3109 fbhw = &tt_switch;
3110 atafb_ops.fb_setcolreg = &tt_setcolreg;
3111 defmode = DEFMODE_TT;
3112 break;
3113 }
3114 #endif
3115 #ifdef ATAFB_FALCON
3116 if (ATARIHW_PRESENT(VIDEL_SHIFTER)) {
3117 printk("atafb_init: initializing Falcon hw\n");
3118 fbhw = &falcon_switch;
3119 atafb_ops.fb_setcolreg = &falcon_setcolreg;
3120 error = request_irq(IRQ_AUTO_4, falcon_vbl_switcher,
3121 IRQ_TYPE_PRIO,
3122 "framebuffer/modeswitch",
3123 falcon_vbl_switcher);
3124 if (error)
3125 return error;
3126 defmode = DEFMODE_F30;
3127 break;
3128 }
3129 #endif
3130 #ifdef ATAFB_STE
3131 if (ATARIHW_PRESENT(STND_SHIFTER) ||
3132 ATARIHW_PRESENT(EXTD_SHIFTER)) {
3133 printk("atafb_init: initializing ST/E hw\n");
3134 fbhw = &st_switch;
3135 atafb_ops.fb_setcolreg = &stste_setcolreg;
3136 defmode = DEFMODE_STE;
3137 break;
3138 }
3139 fbhw = &st_switch;
3140 atafb_ops.fb_setcolreg = &stste_setcolreg;
3141 printk("Cannot determine video hardware; defaulting to ST(e)\n");
3142 #else /* ATAFB_STE */
3143 /* no default driver included */
3144 /* Nobody will ever see this message :-) */
3145 panic("Cannot initialize video hardware");
3146 #endif
3147 } while (0);
3148
3149 /* Multisync monitor capabilities */
3150 /* Atari-TOS defaults if no boot option present */
3151 if (fb_info.monspecs.hfmin == 0) {
3152 fb_info.monspecs.hfmin = 31000;
3153 fb_info.monspecs.hfmax = 32000;
3154 fb_info.monspecs.vfmin = 58;
3155 fb_info.monspecs.vfmax = 62;
3156 }
3157
3158 detected_mode = fbhw->detect();
3159 check_default_par(detected_mode);
3160 #ifdef ATAFB_EXT
3161 if (!external_addr) {
3162 #endif /* ATAFB_EXT */
3163 mem_req = default_mem_req + ovsc_offset + ovsc_addlen;
3164 mem_req = PAGE_ALIGN(mem_req) + PAGE_SIZE;
3165 screen_base = atari_stram_alloc(mem_req, "atafb");
3166 if (!screen_base)
3167 panic("Cannot allocate screen memory");
3168 memset(screen_base, 0, mem_req);
3169 pad = -(unsigned long)screen_base & (PAGE_SIZE - 1);
3170 screen_base += pad;
3171 real_screen_base = screen_base + ovsc_offset;
3172 screen_len = (mem_req - pad - ovsc_offset) & PAGE_MASK;
3173 st_ovsc_switch();
3174 if (CPU_IS_040_OR_060) {
3175 /* On a '040+, the cache mode of video RAM must be set to
3176 * write-through also for internal video hardware! */
3177 cache_push(virt_to_phys(screen_base), screen_len);
3178 kernel_set_cachemode(screen_base, screen_len,
3179 IOMAP_WRITETHROUGH);
3180 }
3181 printk("atafb: screen_base %p real_screen_base %p screen_len %d\n",
3182 screen_base, real_screen_base, screen_len);
3183 #ifdef ATAFB_EXT
3184 } else {
3185 /* Map the video memory (physical address given) to somewhere
3186 * in the kernel address space.
3187 */
3188 external_addr = ioremap_writethrough((unsigned long)external_addr,
3189 external_len);
3190 if (external_vgaiobase)
3191 external_vgaiobase =
3192 (unsigned long)ioremap(external_vgaiobase, 0x10000);
3193 screen_base =
3194 real_screen_base = external_addr;
3195 screen_len = external_len & PAGE_MASK;
3196 memset (screen_base, 0, external_len);
3197 }
3198 #endif /* ATAFB_EXT */
3199
3200 // strcpy(fb_info.mode->name, "Atari Builtin ");
3201 fb_info.fbops = &atafb_ops;
3202 // try to set default (detected; requested) var
3203 do_fb_set_var(&atafb_predefined[default_par - 1], 1);
3204 // reads hw state into current par, which may not be sane yet
3205 ata_get_par(&current_par);
3206 fb_info.par = &current_par;
3207 // tries to read from HW which may not be initialized yet
3208 // so set sane var first, then call atafb_set_par
3209 atafb_get_var(&fb_info.var, &fb_info);
3210
3211 #ifdef ATAFB_FALCON
3212 fb_info.pseudo_palette = current_par.hw.falcon.pseudo_palette;
3213 #endif
3214 fb_info.flags = FBINFO_FLAG_DEFAULT;
3215
3216 if (!fb_find_mode(&fb_info.var, &fb_info, mode_option, atafb_modedb,
3217 NUM_TOTAL_MODES, &atafb_modedb[defmode],
3218 fb_info.var.bits_per_pixel)) {
3219 return -EINVAL;
3220 }
3221
3222 fb_videomode_to_modelist(atafb_modedb, NUM_TOTAL_MODES,
3223 &fb_info.modelist);
3224
3225 atafb_set_disp(&fb_info);
3226
3227 fb_alloc_cmap(&(fb_info.cmap), 1 << fb_info.var.bits_per_pixel, 0);
3228
3229
3230 printk("Determined %dx%d, depth %d\n",
3231 fb_info.var.xres, fb_info.var.yres, fb_info.var.bits_per_pixel);
3232 if ((fb_info.var.xres != fb_info.var.xres_virtual) ||
3233 (fb_info.var.yres != fb_info.var.yres_virtual))
3234 printk(" virtual %dx%d\n", fb_info.var.xres_virtual,
3235 fb_info.var.yres_virtual);
3236
3237 if (register_framebuffer(&fb_info) < 0) {
3238 #ifdef ATAFB_EXT
3239 if (external_addr) {
3240 iounmap(external_addr);
3241 external_addr = NULL;
3242 }
3243 if (external_vgaiobase) {
3244 iounmap((void*)external_vgaiobase);
3245 external_vgaiobase = 0;
3246 }
3247 #endif
3248 return -EINVAL;
3249 }
3250
3251 // FIXME: mode needs setting!
3252 //printk("fb%d: %s frame buffer device, using %dK of video memory\n",
3253 // fb_info.node, fb_info.mode->name, screen_len>>10);
3254 printk("fb%d: frame buffer device, using %dK of video memory\n",
3255 fb_info.node, screen_len >> 10);
3256
3257 /* TODO: This driver cannot be unloaded yet */
3258 return 0;
3259 }
3260
3261 module_init(atafb_init);
3262
3263 #ifdef MODULE
3264 MODULE_LICENSE("GPL");
3265
3266 int cleanup_module(void)
3267 {
3268 unregister_framebuffer(&fb_info);
3269 return atafb_deinit();
3270 }
3271 #endif /* MODULE */