1 /*
2 * linux/drivers/video/fm2fb.c -- BSC FrameMaster II/Rainbow II frame buffer
3 * device
4 *
5 * Copyright (C) 1998 Steffen A. Mork (mork@ls7.cs.uni-dortmund.de)
6 * Copyright (C) 1999 Geert Uytterhoeven
7 *
8 * Written for 2.0.x by Steffen A. Mork
9 * Ported to 2.1.x by Geert Uytterhoeven
10 *
11 * This file is subject to the terms and conditions of the GNU General Public
12 * License. See the file COPYING in the main directory of this archive for
13 * more details.
14 */
15
16 #include <linux/module.h>
17 #include <linux/mm.h>
18 #include <linux/fb.h>
19 #include <linux/init.h>
20 #include <linux/zorro.h>
21
22 #include <asm/io.h>
23
24 #include <video/fbcon.h>
25 #include <video/fbcon-cfb32.h>
26
27
28 /*
29 * Some technical notes:
30 *
31 * The BSC FrameMaster II (or Rainbow II) is a simple very dumb
32 * frame buffer which allows to display 24 bit true color images.
33 * Each pixel is 32 bit width so it's very easy to maintain the
34 * frame buffer. One long word has the following layout:
35 * AARRGGBB which means: AA the alpha channel byte, RR the red
36 * channel, GG the green channel and BB the blue channel.
37 *
38 * The FrameMaster II supports the following video modes.
39 * - PAL/NTSC
40 * - interlaced/non interlaced
41 * - composite sync/sync/sync over green
42 *
43 * The resolution is to the following both ones:
44 * - 768x576 (PAL)
45 * - 768x480 (NTSC)
46 *
47 * This means that pixel access per line is fixed due to the
48 * fixed line width. In case of maximal resolution the frame
49 * buffer needs an amount of memory of 1.769.472 bytes which
50 * is near to 2 MByte (the allocated address space of Zorro2).
51 * The memory is channel interleaved. That means every channel
52 * owns four VRAMs. Unfortunatly most FrameMasters II are
53 * not assembled with memory for the alpha channel. In this
54 * case it could be possible to add the frame buffer into the
55 * normal memory pool.
56 *
57 * At relative address 0x1ffff8 of the frame buffers base address
58 * there exists a control register with the number of
59 * four control bits. They have the following meaning:
60 * bit value meaning
61 *
62 * 0 1 0=interlaced/1=non interlaced
63 * 1 2 0=video out disabled/1=video out enabled
64 * 2 4 0=normal mode as jumpered via JP8/1=complement mode
65 * 3 8 0=read onboard ROM/1 normal operation (required)
66 *
67 * As mentioned above there are several jumper. I think there
68 * is not very much information about the FrameMaster II in
69 * the world so I add these information for completeness.
70 *
71 * JP1 interlace selection (1-2 non interlaced/2-3 interlaced)
72 * JP2 wait state creation (leave as is!)
73 * JP3 wait state creation (leave as is!)
74 * JP4 modulate composite sync on green output (1-2 composite
75 * sync on green channel/2-3 normal composite sync)
76 * JP5 create test signal, shorting this jumper will create
77 * a white screen
78 * JP6 sync creation (1-2 composite sync/2-3 H-sync output)
79 * JP8 video mode (1-2 PAL/2-3 NTSC)
80 *
81 * With the following jumpering table you can connect the
82 * FrameMaster II to a normal TV via SCART connector:
83 * JP1: 2-3
84 * JP4: 2-3
85 * JP6: 2-3
86 * JP8: 1-2 (means PAL for Europe)
87 *
88 * NOTE:
89 * There is no other possibility to change the video timings
90 * except the interlaced/non interlaced, sync control and the
91 * video mode PAL (50 Hz)/NTSC (60 Hz). Inside this
92 * FrameMaster II driver are assumed values to avoid anomalies
93 * to a future X server. Except the pixel clock is really
94 * constant at 30 MHz.
95 *
96 * 9 pin female video connector:
97 *
98 * 1 analog red 0.7 Vss
99 * 2 analog green 0.7 Vss
100 * 3 analog blue 0.7 Vss
101 * 4 H-sync TTL
102 * 5 V-sync TTL
103 * 6 ground
104 * 7 ground
105 * 8 ground
106 * 9 ground
107 *
108 * Some performance notes:
109 * The FrameMaster II was not designed to display a console
110 * this driver would do! It was designed to display still true
111 * color images. Imagine: When scroll up a text line there
112 * must copied ca. 1.7 MBytes to another place inside this
113 * frame buffer. This means 1.7 MByte read and 1.7 MByte write
114 * over the slow 16 bit wide Zorro2 bus! A scroll of one
115 * line needs 1 second so do not expect to much from this
116 * driver - he is at the limit!
117 *
118 */
119
120
121 /*
122 * definitions
123 */
124
125 #define FRAMEMASTER_SIZE 0x200000
126 #define FRAMEMASTER_REG 0x1ffff8
127
128 #define FRAMEMASTER_NOLACE 1
129 #define FRAMEMASTER_ENABLE 2
130 #define FRAMEMASTER_COMPL 4
131 #define FRAMEMASTER_ROM 8
132
133
134 struct FrameMaster_fb_par
135 {
136 int xres;
137 int yres;
138 int bpp;
139 int pixclock;
140 };
141
142 static unsigned long fm2fb_mem_phys;
143 static void *fm2fb_mem;
144 static unsigned long fm2fb_reg_phys;
145 static volatile unsigned char *fm2fb_reg;
146
147 static int currcon = 0;
148 static struct display disp;
149 static struct fb_info fb_info;
150 static struct { u_char red, green, blue, pad; } palette[16];
151 #ifdef FBCON_HAS_CFB32
152 static u32 fbcon_cfb32_cmap[16];
153 #endif
154
155 static struct fb_fix_screeninfo fb_fix;
156 static struct fb_var_screeninfo fb_var;
157
158 static int fm2fb_mode __initdata = -1;
159
160 #define FM2FB_MODE_PAL 0
161 #define FM2FB_MODE_NTSC 1
162
163 static struct fb_var_screeninfo fb_var_modes[] __initdata = {
164 {
165 /* 768 x 576, 32 bpp (PAL) */
166 768, 576, 768, 576, 0, 0, 32, 0,
167 { 16, 8, 0 }, { 8, 8, 0 }, { 0, 8, 0 }, { 24, 8, 0 },
168 0, FB_ACTIVATE_NOW, -1, -1, FB_ACCEL_NONE,
169 33333, 10, 102, 10, 5, 80, 34, FB_SYNC_COMP_HIGH_ACT, 0
170 }, {
171 /* 768 x 480, 32 bpp (NTSC - not supported yet */
172 768, 480, 768, 480, 0, 0, 32, 0,
173 { 16, 8, 0 }, { 8, 8, 0 }, { 0, 8, 0 }, { 24, 8, 0 },
174 0, FB_ACTIVATE_NOW, -1, -1, FB_ACCEL_NONE,
175 33333, 10, 102, 10, 5, 80, 34, FB_SYNC_COMP_HIGH_ACT, 0
176 }
177 };
178
179
180 /*
181 * Interface used by the world
182 */
183
184 static int fm2fb_get_fix(struct fb_fix_screeninfo *fix, int con,
185 struct fb_info *info);
186 static int fm2fb_get_var(struct fb_var_screeninfo *var, int con,
187 struct fb_info *info);
188 static int fm2fb_set_var(struct fb_var_screeninfo *var, int con,
189 struct fb_info *info);
190 static int fm2fb_get_cmap(struct fb_cmap *cmap, int kspc, int con,
191 struct fb_info *info);
192 static int fm2fb_set_cmap(struct fb_cmap *cmap, int kspc, int con,
193 struct fb_info *info);
194
195
196 /*
197 * Interface to the low level console driver
198 */
199
200 int fm2fb_init(void);
201 static int fm2fbcon_switch(int con, struct fb_info *info);
202 static int fm2fbcon_updatevar(int con, struct fb_info *info);
203 static void fm2fbcon_blank(int blank, struct fb_info *info);
204
205
206 /*
207 * Internal routines
208 */
209
210 static int fm2fb_getcolreg(u_int regno, u_int *red, u_int *green, u_int *blue,
211 u_int *transp, struct fb_info *info);
212 static int fm2fb_setcolreg(u_int regno, u_int red, u_int green, u_int blue,
213 u_int transp, struct fb_info *info);
214 static void do_install_cmap(int con, struct fb_info *info);
215
216
217 static struct fb_ops fm2fb_ops = {
218 owner: THIS_MODULE,
219 fb_get_fix: fm2fb_get_fix,
220 fb_get_var: fm2fb_get_var,
221 fb_set_var: fm2fb_set_var,
222 fb_get_cmap: fm2fb_get_cmap,
223 fb_set_cmap: fm2fb_set_cmap,
224 };
225
226 /*
227 * Get the Fixed Part of the Display
228 */
229
fm2fb_get_fix(struct fb_fix_screeninfo * fix,int con,struct fb_info * info)230 static int fm2fb_get_fix(struct fb_fix_screeninfo *fix, int con,
231 struct fb_info *info)
232 {
233 memcpy(fix, &fb_fix, sizeof(fb_fix));
234 return 0;
235 }
236
237
238 /*
239 * Get the User Defined Part of the Display
240 */
241
fm2fb_get_var(struct fb_var_screeninfo * var,int con,struct fb_info * info)242 static int fm2fb_get_var(struct fb_var_screeninfo *var, int con,
243 struct fb_info *info)
244 {
245 memcpy(var, &fb_var, sizeof(fb_var));
246 return 0;
247 }
248
249
250 /*
251 * Set the User Defined Part of the Display
252 */
253
fm2fb_set_var(struct fb_var_screeninfo * var,int con,struct fb_info * info)254 static int fm2fb_set_var(struct fb_var_screeninfo *var, int con,
255 struct fb_info *info)
256 {
257 struct display *display;
258 int oldbpp = -1, err;
259
260 if (con >= 0)
261 display = &fb_display[con];
262 else
263 display = &disp; /* used during initialization */
264
265 if (var->xres > fb_var.xres || var->yres > fb_var.yres ||
266 var->xres_virtual > fb_var.xres_virtual ||
267 var->yres_virtual > fb_var.yres_virtual ||
268 var->bits_per_pixel > fb_var.bits_per_pixel ||
269 var->nonstd ||
270 (var->vmode & FB_VMODE_MASK) != FB_VMODE_NONINTERLACED)
271 return -EINVAL;
272 memcpy(var, &fb_var, sizeof(fb_var));
273
274 if ((var->activate & FB_ACTIVATE_MASK) == FB_ACTIVATE_NOW) {
275 oldbpp = display->var.bits_per_pixel;
276 display->var = *var;
277 }
278 if (oldbpp != var->bits_per_pixel) {
279 if ((err = fb_alloc_cmap(&display->cmap, 0, 0)))
280 return err;
281 do_install_cmap(con, info);
282 }
283 return 0;
284 }
285
286
287 /*
288 * Get the Colormap
289 */
290
fm2fb_get_cmap(struct fb_cmap * cmap,int kspc,int con,struct fb_info * info)291 static int fm2fb_get_cmap(struct fb_cmap *cmap, int kspc, int con,
292 struct fb_info *info)
293 {
294 if (con == currcon) /* current console? */
295 return fb_get_cmap(cmap, kspc, fm2fb_getcolreg, info);
296 else if (fb_display[con].cmap.len) /* non default colormap? */
297 fb_copy_cmap(&fb_display[con].cmap, cmap, kspc ? 0 : 2);
298 else
299 fb_copy_cmap(fb_default_cmap(256), cmap, kspc ? 0 : 2);
300 return 0;
301 }
302
303 /*
304 * Set the Colormap
305 */
306
fm2fb_set_cmap(struct fb_cmap * cmap,int kspc,int con,struct fb_info * info)307 static int fm2fb_set_cmap(struct fb_cmap *cmap, int kspc, int con,
308 struct fb_info *info)
309 {
310 int err;
311
312 if (!fb_display[con].cmap.len) { /* no colormap allocated? */
313 if ((err = fb_alloc_cmap(&fb_display[con].cmap, 256, 0)))
314 return err;
315 }
316 if (con == currcon) { /* current console? */
317 err = fb_set_cmap(cmap, kspc, fm2fb_setcolreg, info);
318 return err;
319 } else
320 fb_copy_cmap(cmap, &fb_display[con].cmap, kspc ? 0 : 1);
321 return 0;
322 }
323
324
325 /*
326 * Initialisation
327 */
328
fm2fb_init(void)329 int __init fm2fb_init(void)
330 {
331 int is_fm;
332 struct zorro_dev *z = NULL;
333 unsigned long *ptr;
334 int x, y;
335
336 while ((z = zorro_find_device(ZORRO_WILDCARD, z))) {
337 if (z->id == ZORRO_PROD_BSC_FRAMEMASTER_II)
338 is_fm = 1;
339 else if (z->id == ZORRO_PROD_HELFRICH_RAINBOW_II)
340 is_fm = 0;
341 else
342 continue;
343 if (!request_mem_region(z->resource.start, FRAMEMASTER_SIZE, "fm2fb"))
344 continue;
345
346 /* assigning memory to kernel space */
347 fm2fb_mem_phys = z->resource.start;
348 fm2fb_mem = ioremap(fm2fb_mem_phys, FRAMEMASTER_SIZE);
349 fm2fb_reg_phys = fm2fb_mem_phys+FRAMEMASTER_REG;
350 fm2fb_reg = (unsigned char *)(fm2fb_mem+FRAMEMASTER_REG);
351
352 /* make EBU color bars on display */
353 ptr = (unsigned long *)fm2fb_mem;
354 for (y = 0; y < 576; y++) {
355 for (x = 0; x < 96; x++) *ptr++ = 0xffffff; /* white */
356 for (x = 0; x < 96; x++) *ptr++ = 0xffff00; /* yellow */
357 for (x = 0; x < 96; x++) *ptr++ = 0x00ffff; /* cyan */
358 for (x = 0; x < 96; x++) *ptr++ = 0x00ff00; /* green */
359 for (x = 0; x < 96; x++) *ptr++ = 0xff00ff; /* magenta */
360 for (x = 0; x < 96; x++) *ptr++ = 0xff0000; /* red */
361 for (x = 0; x < 96; x++) *ptr++ = 0x0000ff; /* blue */
362 for (x = 0; x < 96; x++) *ptr++ = 0x000000; /* black */
363 }
364 fm2fbcon_blank(0, NULL);
365
366 if (fm2fb_mode == -1)
367 fm2fb_mode = FM2FB_MODE_PAL;
368
369 fb_var = fb_var_modes[fm2fb_mode];
370
371 strcpy(fb_fix.id, is_fm ? "FrameMaster II" : "Rainbow II");
372 fb_fix.smem_start = fm2fb_mem_phys;
373 fb_fix.smem_len = FRAMEMASTER_REG;
374 fb_fix.type = FB_TYPE_PACKED_PIXELS;
375 fb_fix.type_aux = 0;
376 fb_fix.visual = FB_VISUAL_TRUECOLOR;
377 fb_fix.line_length = 768<<2;
378 fb_fix.mmio_start = fm2fb_reg_phys;
379 fb_fix.mmio_len = 8;
380 fb_fix.accel = FB_ACCEL_NONE;
381
382 disp.var = fb_var;
383 disp.cmap.start = 0;
384 disp.cmap.len = 0;
385 disp.cmap.red = disp.cmap.green = disp.cmap.blue = disp.cmap.transp = NULL;
386 disp.screen_base = (char *)fm2fb_mem;
387 disp.visual = fb_fix.visual;
388 disp.type = fb_fix.type;
389 disp.type_aux = fb_fix.type_aux;
390 disp.ypanstep = 0;
391 disp.ywrapstep = 0;
392 disp.line_length = fb_fix.line_length;
393 disp.can_soft_blank = 1;
394 disp.inverse = 0;
395 #ifdef FBCON_HAS_CFB32
396 disp.dispsw = &fbcon_cfb32;
397 disp.dispsw_data = &fbcon_cfb32_cmap;
398 #else
399 disp.dispsw = &fbcon_dummy;
400 #endif
401 disp.scrollmode = SCROLL_YREDRAW;
402
403 strcpy(fb_info.modename, fb_fix.id);
404 fb_info.node = -1;
405 fb_info.fbops = &fm2fb_ops;
406 fb_info.disp = &disp;
407 fb_info.fontname[0] = '\0';
408 fb_info.changevar = NULL;
409 fb_info.switch_con = &fm2fbcon_switch;
410 fb_info.updatevar = &fm2fbcon_updatevar;
411 fb_info.blank = &fm2fbcon_blank;
412 fb_info.flags = FBINFO_FLAG_DEFAULT;
413
414 fm2fb_set_var(&fb_var, -1, &fb_info);
415
416 if (register_framebuffer(&fb_info) < 0)
417 return -EINVAL;
418
419 printk("fb%d: %s frame buffer device\n", GET_FB_IDX(fb_info.node),
420 fb_fix.id);
421 return 0;
422 }
423 return -ENXIO;
424 }
425
fm2fb_setup(char * options)426 int __init fm2fb_setup(char *options)
427 {
428 char *this_opt;
429
430 if (!options || !*options)
431 return 0;
432
433 while ((this_opt = strsep(&options, ",")) != NULL) {
434 if (!strncmp(this_opt, "pal", 3))
435 fm2fb_mode = FM2FB_MODE_PAL;
436 else if (!strncmp(this_opt, "ntsc", 4))
437 fm2fb_mode = FM2FB_MODE_NTSC;
438 }
439 return 0;
440 }
441
442
fm2fbcon_switch(int con,struct fb_info * info)443 static int fm2fbcon_switch(int con, struct fb_info *info)
444 {
445 /* Do we have to save the colormap? */
446 if (fb_display[currcon].cmap.len)
447 fb_get_cmap(&fb_display[currcon].cmap, 1, fm2fb_getcolreg, info);
448
449 currcon = con;
450 /* Install new colormap */
451 do_install_cmap(con, info);
452 return 0;
453 }
454
455 /*
456 * Update the `var' structure (called by fbcon.c)
457 */
458
fm2fbcon_updatevar(int con,struct fb_info * info)459 static int fm2fbcon_updatevar(int con, struct fb_info *info)
460 {
461 /* Nothing */
462 return 0;
463 }
464
465 /*
466 * Blank the display.
467 */
468
fm2fbcon_blank(int blank,struct fb_info * info)469 static void fm2fbcon_blank(int blank, struct fb_info *info)
470 {
471 unsigned char t = FRAMEMASTER_ROM;
472
473 if (!blank)
474 t |= FRAMEMASTER_ENABLE | FRAMEMASTER_NOLACE;
475 fm2fb_reg[0] = t;
476 }
477
478 /*
479 * Read a single color register and split it into
480 * colors/transparent. Return != 0 for invalid regno.
481 */
482
fm2fb_getcolreg(u_int regno,u_int * red,u_int * green,u_int * blue,u_int * transp,struct fb_info * info)483 static int fm2fb_getcolreg(u_int regno, u_int *red, u_int *green, u_int *blue,
484 u_int *transp, struct fb_info *info)
485 {
486 if (regno > 15)
487 return 1;
488 *red = (palette[regno].red<<8) | palette[regno].red;
489 *green = (palette[regno].green<<8) | palette[regno].green;
490 *blue = (palette[regno].blue<<8) | palette[regno].blue;
491 *transp = 0;
492 return 0;
493 }
494
495
496 /*
497 * Set a single color register. The values supplied are already
498 * rounded down to the hardware's capabilities (according to the
499 * entries in the var structure). Return != 0 for invalid regno.
500 */
501
fm2fb_setcolreg(u_int regno,u_int red,u_int green,u_int blue,u_int transp,struct fb_info * info)502 static int fm2fb_setcolreg(u_int regno, u_int red, u_int green, u_int blue,
503 u_int transp, struct fb_info *info)
504 {
505 if (regno > 15)
506 return 1;
507 red >>= 8;
508 green >>= 8;
509 blue >>= 8;
510 palette[regno].red = red;
511 palette[regno].green = green;
512 palette[regno].blue = blue;
513
514 #ifdef FBCON_HAS_CFB32
515 fbcon_cfb32_cmap[regno] = (red << 16) | (green << 8) | blue;
516 #endif
517 return 0;
518 }
519
520
do_install_cmap(int con,struct fb_info * info)521 static void do_install_cmap(int con, struct fb_info *info)
522 {
523 if (con != currcon)
524 return;
525 if (fb_display[con].cmap.len)
526 fb_set_cmap(&fb_display[con].cmap, 1, fm2fb_setcolreg, info);
527 else
528 fb_set_cmap(fb_default_cmap(256), 1, fm2fb_setcolreg, info);
529 }
530
531 MODULE_LICENSE("GPL");
532