1 1.6 cegger /* $NetBSD: vga.c,v 1.6 2009/03/18 10:22:34 cegger Exp $ */ 2 1.1 nonaka 3 1.1 nonaka /*- 4 1.1 nonaka * Copyright (C) 1995-1997 Gary Thomas (gdt (at) linuxppc.org) 5 1.1 nonaka * All rights reserved. 6 1.1 nonaka * 7 1.1 nonaka * VGA 'glass TTY' emulator 8 1.1 nonaka * 9 1.1 nonaka * Redistribution and use in source and binary forms, with or without 10 1.1 nonaka * modification, are permitted provided that the following conditions 11 1.1 nonaka * are met: 12 1.1 nonaka * 1. Redistributions of source code must retain the above copyright 13 1.1 nonaka * notice, this list of conditions and the following disclaimer. 14 1.1 nonaka * 2. Redistributions in binary form must reproduce the above copyright 15 1.1 nonaka * notice, this list of conditions and the following disclaimer in the 16 1.1 nonaka * documentation and/or other materials provided with the distribution. 17 1.1 nonaka * 3. All advertising materials mentioning features or use of this software 18 1.1 nonaka * must display the following acknowledgement: 19 1.1 nonaka * This product includes software developed by Gary Thomas. 20 1.1 nonaka * 4. The name of the author may not be used to endorse or promote products 21 1.1 nonaka * derived from this software without specific prior written permission. 22 1.1 nonaka * 23 1.1 nonaka * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 24 1.1 nonaka * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 25 1.1 nonaka * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 26 1.1 nonaka * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 27 1.1 nonaka * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 28 1.1 nonaka * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 29 1.1 nonaka * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 30 1.1 nonaka * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 31 1.1 nonaka * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 32 1.1 nonaka * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 33 1.1 nonaka */ 34 1.1 nonaka 35 1.1 nonaka #ifdef CONS_VGA 36 1.1 nonaka #include <lib/libsa/stand.h> 37 1.3 he #include <lib/libkern/libkern.h> 38 1.1 nonaka #include "boot.h" 39 1.1 nonaka 40 1.1 nonaka #define COL 80 41 1.1 nonaka #define ROW 25 42 1.1 nonaka #define CHR 2 43 1.1 nonaka #define MONO_BASE 0x3B4 44 1.1 nonaka #define MONO_BUF 0xB0000 45 1.1 nonaka #define CGA_BASE 0x3D4 46 1.1 nonaka #define CGA_BUF 0xB8000 47 1.1 nonaka 48 1.1 nonaka u_char background = 0; /* Black */ 49 1.1 nonaka u_char foreground = 7; /* White */ 50 1.1 nonaka 51 1.1 nonaka u_int addr_6845; 52 1.1 nonaka u_short *Crtat; 53 1.1 nonaka int lastpos; 54 1.1 nonaka int scroll; 55 1.1 nonaka 56 1.1 nonaka /* 57 1.1 nonaka * The current state of virtual displays 58 1.1 nonaka */ 59 1.1 nonaka struct screen { 60 1.1 nonaka u_short *cp; /* the current character address */ 61 1.1 nonaka enum state { 62 1.1 nonaka NORMAL, /* no pending escape */ 63 1.1 nonaka ESC, /* saw ESC */ 64 1.1 nonaka EBRAC, /* saw ESC[ */ 65 1.1 nonaka EBRACEQ /* saw ESC[= */ 66 1.1 nonaka } state; /* command parser state */ 67 1.1 nonaka int cx; /* the first escape seq argument */ 68 1.1 nonaka int cy; /* the second escap seq argument */ 69 1.1 nonaka int *accp; /* pointer to the current processed argument */ 70 1.1 nonaka int row; /* current column */ 71 1.1 nonaka int so; /* standout mode */ 72 1.1 nonaka u_short color; /* normal character color */ 73 1.1 nonaka u_short color_so; /* standout color */ 74 1.1 nonaka u_short save_color; /* saved normal color */ 75 1.1 nonaka u_short save_color_so; /* saved standout color */ 76 1.1 nonaka } screen; 77 1.1 nonaka 78 1.1 nonaka /* 79 1.1 nonaka * Color and attributes for normal, standout and kernel output 80 1.1 nonaka * are stored in the least-significant byte of a u_short 81 1.1 nonaka * so they don't have to be shifted for use. 82 1.1 nonaka * This is all byte-order dependent. 83 1.1 nonaka */ 84 1.1 nonaka #define CATTR(x) (x) /* store color/attributes un-shifted */ 85 1.1 nonaka #define ATTR_ADDR(which) (((u_char *)&(which))+1) /* address of attributes */ 86 1.1 nonaka 87 1.1 nonaka u_short pccolor; /* color/attributes for tty output */ 88 1.1 nonaka u_short pccolor_so; /* color/attributes, standout mode */ 89 1.1 nonaka 90 1.5 garbled static void cursor(void); 91 1.5 garbled static void initscreen(void); 92 1.5 garbled void fillw(u_short, u_short *, int); 93 1.5 garbled void video_on(void); 94 1.5 garbled void video_off(void); 95 1.1 nonaka 96 1.1 nonaka /* 97 1.1 nonaka * cursor() sets an offset (0-1999) into the 80x25 text area 98 1.1 nonaka */ 99 1.1 nonaka static void 100 1.6 cegger cursor(void) 101 1.1 nonaka { 102 1.1 nonaka int pos = screen.cp - Crtat; 103 1.1 nonaka 104 1.1 nonaka if (lastpos != pos) { 105 1.1 nonaka outb(addr_6845, 14); 106 1.1 nonaka outb(addr_6845+1, pos >> 8); 107 1.1 nonaka outb(addr_6845, 15); 108 1.1 nonaka outb(addr_6845+1, pos); 109 1.1 nonaka lastpos = pos; 110 1.1 nonaka } 111 1.1 nonaka } 112 1.1 nonaka 113 1.1 nonaka static void 114 1.6 cegger initscreen(void) 115 1.1 nonaka { 116 1.1 nonaka struct screen *d = &screen; 117 1.1 nonaka 118 1.1 nonaka pccolor = CATTR((background<<4)|foreground); 119 1.1 nonaka pccolor_so = CATTR((foreground<<4)|background); 120 1.1 nonaka d->color = pccolor; 121 1.1 nonaka d->save_color = pccolor; 122 1.1 nonaka d->color_so = pccolor_so; 123 1.1 nonaka d->save_color_so = pccolor_so; 124 1.1 nonaka } 125 1.1 nonaka 126 1.1 nonaka 127 1.1 nonaka #define wrtchar(c, d) { \ 128 1.1 nonaka *(d->cp) = c; \ 129 1.1 nonaka d->cp++; \ 130 1.1 nonaka d->row++; \ 131 1.1 nonaka } 132 1.1 nonaka 133 1.1 nonaka void 134 1.5 garbled fillw(u_short val, u_short *buf, int num) 135 1.1 nonaka { 136 1.1 nonaka /* Need to byte swap value */ 137 1.1 nonaka u_short tmp; 138 1.1 nonaka 139 1.1 nonaka tmp = val; 140 1.1 nonaka while (num-- > 0) 141 1.1 nonaka *buf++ = tmp; 142 1.1 nonaka } 143 1.1 nonaka 144 1.1 nonaka /* 145 1.1 nonaka * vga_putc (nee sput) has support for emulation of the 'ibmpc' termcap entry. 146 1.1 nonaka * This is a bare-bones implementation of a bare-bones entry 147 1.1 nonaka * One modification: Change li#24 to li#25 to reflect 25 lines 148 1.1 nonaka * "ca" is the color/attributes value (left-shifted by 8) 149 1.1 nonaka * or 0 if the current regular color for that screen is to be used. 150 1.1 nonaka */ 151 1.1 nonaka void 152 1.1 nonaka vga_putc(int c) 153 1.1 nonaka { 154 1.1 nonaka struct screen *d = &screen; 155 1.1 nonaka u_short *base; 156 1.1 nonaka int i, j; 157 1.1 nonaka u_short *pp; 158 1.1 nonaka 159 1.1 nonaka base = Crtat; 160 1.1 nonaka 161 1.1 nonaka switch (d->state) { 162 1.1 nonaka case NORMAL: 163 1.1 nonaka switch (c) { 164 1.1 nonaka case 0x0: /* Ignore pad characters */ 165 1.1 nonaka return; 166 1.1 nonaka 167 1.1 nonaka case 0x1B: 168 1.1 nonaka d->state = ESC; 169 1.1 nonaka break; 170 1.1 nonaka 171 1.1 nonaka case '\t': 172 1.1 nonaka do { 173 1.1 nonaka wrtchar(d->color | ' ', d); 174 1.1 nonaka } while (d->row % 8); 175 1.1 nonaka break; 176 1.1 nonaka 177 1.1 nonaka case '\b': /* non-destructive backspace */ 178 1.1 nonaka if (d->cp > base) { 179 1.1 nonaka d->cp--; 180 1.1 nonaka d->row--; 181 1.1 nonaka if (d->row < 0) 182 1.1 nonaka d->row += COL; /* prev column */ 183 1.1 nonaka } 184 1.1 nonaka break; 185 1.1 nonaka 186 1.1 nonaka case '\n': 187 1.1 nonaka d->cp += COL; 188 1.1 nonaka case '\r': 189 1.1 nonaka d->cp -= d->row; 190 1.1 nonaka d->row = 0; 191 1.1 nonaka break; 192 1.1 nonaka 193 1.1 nonaka case '\007': 194 1.1 nonaka break; 195 1.1 nonaka 196 1.1 nonaka default: 197 1.1 nonaka if (d->so) { 198 1.1 nonaka wrtchar(d->color_so|(c<<8), d); 199 1.1 nonaka } else { 200 1.1 nonaka wrtchar(d->color | (c<<8), d); 201 1.1 nonaka } 202 1.1 nonaka if (d->row >= COL) 203 1.1 nonaka d->row = 0; 204 1.1 nonaka break; 205 1.1 nonaka } 206 1.1 nonaka break; 207 1.1 nonaka 208 1.1 nonaka case EBRAC: 209 1.1 nonaka /* 210 1.1 nonaka * In this state, the action at the end of the switch 211 1.1 nonaka * on the character type is to go to NORMAL state, 212 1.1 nonaka * and intermediate states do a return rather than break. 213 1.1 nonaka */ 214 1.1 nonaka switch (c) { 215 1.1 nonaka case 'm': 216 1.1 nonaka d->so = d->cx; 217 1.1 nonaka break; 218 1.1 nonaka 219 1.1 nonaka case 'A': /* back one row */ 220 1.1 nonaka if (d->cp >= base + COL) 221 1.1 nonaka d->cp -= COL; 222 1.1 nonaka break; 223 1.1 nonaka 224 1.1 nonaka case 'B': /* down one row */ 225 1.1 nonaka d->cp += COL; 226 1.1 nonaka break; 227 1.1 nonaka 228 1.1 nonaka case 'C': /* right cursor */ 229 1.1 nonaka d->cp++; 230 1.1 nonaka d->row++; 231 1.1 nonaka break; 232 1.1 nonaka 233 1.1 nonaka case 'D': /* left cursor */ 234 1.1 nonaka if (d->cp > base) { 235 1.1 nonaka d->cp--; 236 1.1 nonaka d->row--; 237 1.1 nonaka if (d->row < 0) 238 1.1 nonaka d->row += COL; /* prev column ??? */ 239 1.1 nonaka } 240 1.1 nonaka break; 241 1.1 nonaka 242 1.1 nonaka case 'J': /* Clear to end of display */ 243 1.1 nonaka fillw(d->color|(' '<<8), d->cp, base + COL * ROW - d->cp); 244 1.1 nonaka break; 245 1.1 nonaka 246 1.1 nonaka case 'K': /* Clear to EOL */ 247 1.1 nonaka fillw(d->color|(' '<<8), d->cp, COL - (d->cp - base) % COL); 248 1.1 nonaka break; 249 1.1 nonaka 250 1.1 nonaka case 'H': /* Cursor move */ 251 1.1 nonaka if (d->cx > ROW) 252 1.1 nonaka d->cx = ROW; 253 1.1 nonaka if (d->cy > COL) 254 1.1 nonaka d->cy = COL; 255 1.1 nonaka if (d->cx == 0 || d->cy == 0) { 256 1.1 nonaka d->cp = base; 257 1.1 nonaka d->row = 0; 258 1.1 nonaka } else { 259 1.1 nonaka d->cp = base + (d->cx - 1) * COL + d->cy - 1; 260 1.1 nonaka d->row = d->cy - 1; 261 1.1 nonaka } 262 1.1 nonaka break; 263 1.1 nonaka 264 1.1 nonaka case '_': /* set cursor */ 265 1.1 nonaka if (d->cx) 266 1.1 nonaka d->cx = 1; /* block */ 267 1.1 nonaka else 268 1.1 nonaka d->cx = 12; /* underline */ 269 1.1 nonaka outb(addr_6845, 10); 270 1.1 nonaka outb(addr_6845+1, d->cx); 271 1.1 nonaka outb(addr_6845, 11); 272 1.1 nonaka outb(addr_6845+1, 13); 273 1.1 nonaka break; 274 1.1 nonaka 275 1.1 nonaka case ';': /* Switch params in cursor def */ 276 1.1 nonaka d->accp = &d->cy; 277 1.1 nonaka return; 278 1.1 nonaka 279 1.1 nonaka case '=': /* ESC[= color change */ 280 1.1 nonaka d->state = EBRACEQ; 281 1.1 nonaka return; 282 1.1 nonaka 283 1.1 nonaka case 'L': /* Insert line */ 284 1.1 nonaka i = (d->cp - base) / COL; 285 1.1 nonaka /* avoid deficiency of bcopy implementation */ 286 1.2 wiz /* XXX: comment and hack relevant? */ 287 1.1 nonaka pp = base + COL * (ROW-2); 288 1.1 nonaka for (j = ROW - 1 - i; j--; pp -= COL) 289 1.2 wiz memmove(pp + COL, pp, COL * CHR); 290 1.1 nonaka fillw(d->color|(' '<<8), base + i * COL, COL); 291 1.1 nonaka break; 292 1.1 nonaka 293 1.1 nonaka case 'M': /* Delete line */ 294 1.1 nonaka i = (d->cp - base) / COL; 295 1.1 nonaka pp = base + i * COL; 296 1.2 wiz memmove(pp, pp + COL, (ROW-1 - i)*COL*CHR); 297 1.1 nonaka fillw(d->color|(' '<<8), base + COL * (ROW - 1), COL); 298 1.1 nonaka break; 299 1.1 nonaka 300 1.1 nonaka default: /* Only numbers valid here */ 301 1.1 nonaka if ((c >= '0') && (c <= '9')) { 302 1.1 nonaka *(d->accp) *= 10; 303 1.1 nonaka *(d->accp) += c - '0'; 304 1.1 nonaka return; 305 1.1 nonaka } else 306 1.1 nonaka break; 307 1.1 nonaka } 308 1.1 nonaka d->state = NORMAL; 309 1.1 nonaka break; 310 1.1 nonaka 311 1.1 nonaka case EBRACEQ: { 312 1.1 nonaka /* 313 1.1 nonaka * In this state, the action at the end of the switch 314 1.1 nonaka * on the character type is to go to NORMAL state, 315 1.1 nonaka * and intermediate states do a return rather than break. 316 1.1 nonaka */ 317 1.1 nonaka u_char *colp; 318 1.1 nonaka 319 1.1 nonaka /* 320 1.1 nonaka * Set foreground/background color 321 1.1 nonaka * for normal mode, standout mode 322 1.1 nonaka * or kernel output. 323 1.1 nonaka * Based on code from kentp@svmp03. 324 1.1 nonaka */ 325 1.1 nonaka switch (c) { 326 1.1 nonaka case 'F': 327 1.1 nonaka colp = ATTR_ADDR(d->color); 328 1.1 nonaka do_fg: 329 1.1 nonaka *colp = (*colp & 0xf0) | (d->cx); 330 1.1 nonaka break; 331 1.1 nonaka 332 1.1 nonaka case 'G': 333 1.1 nonaka colp = ATTR_ADDR(d->color); 334 1.1 nonaka do_bg: 335 1.1 nonaka *colp = (*colp & 0xf) | (d->cx << 4); 336 1.1 nonaka break; 337 1.1 nonaka 338 1.1 nonaka case 'H': 339 1.1 nonaka colp = ATTR_ADDR(d->color_so); 340 1.1 nonaka goto do_fg; 341 1.1 nonaka 342 1.1 nonaka case 'I': 343 1.1 nonaka colp = ATTR_ADDR(d->color_so); 344 1.1 nonaka goto do_bg; 345 1.1 nonaka 346 1.1 nonaka case 'S': 347 1.1 nonaka d->save_color = d->color; 348 1.1 nonaka d->save_color_so = d->color_so; 349 1.1 nonaka break; 350 1.1 nonaka 351 1.1 nonaka case 'R': 352 1.1 nonaka d->color = d->save_color; 353 1.1 nonaka d->color_so = d->save_color_so; 354 1.1 nonaka break; 355 1.1 nonaka 356 1.1 nonaka default: /* Only numbers valid here */ 357 1.1 nonaka if ((c >= '0') && (c <= '9')) { 358 1.1 nonaka d->cx *= 10; 359 1.1 nonaka d->cx += c - '0'; 360 1.1 nonaka return; 361 1.1 nonaka } else 362 1.1 nonaka break; 363 1.1 nonaka } 364 1.1 nonaka d->state = NORMAL; 365 1.1 nonaka } 366 1.1 nonaka break; 367 1.1 nonaka 368 1.1 nonaka case ESC: 369 1.1 nonaka switch (c) { 370 1.1 nonaka case 'c': /* Clear screen & home */ 371 1.1 nonaka fillw(d->color|(' '<<8), base, COL * ROW); 372 1.1 nonaka d->cp = base; 373 1.1 nonaka d->row = 0; 374 1.1 nonaka d->state = NORMAL; 375 1.1 nonaka break; 376 1.1 nonaka case '[': /* Start ESC [ sequence */ 377 1.1 nonaka d->state = EBRAC; 378 1.1 nonaka d->cx = 0; 379 1.1 nonaka d->cy = 0; 380 1.1 nonaka d->accp = &d->cx; 381 1.1 nonaka break; 382 1.1 nonaka default: /* Invalid, clear state */ 383 1.1 nonaka d->state = NORMAL; 384 1.1 nonaka break; 385 1.1 nonaka } 386 1.1 nonaka break; 387 1.1 nonaka } 388 1.1 nonaka if (d->cp >= base + (COL * ROW)) { /* scroll check */ 389 1.2 wiz memmove(base, base + COL, COL * (ROW - 1) * CHR); 390 1.1 nonaka fillw(d->color|(' '<<8), base + COL * (ROW - 1), COL); 391 1.1 nonaka d->cp -= COL; 392 1.1 nonaka } 393 1.1 nonaka cursor(); 394 1.1 nonaka } 395 1.1 nonaka 396 1.1 nonaka void 397 1.5 garbled vga_puts(char *s) 398 1.1 nonaka { 399 1.1 nonaka char c; 400 1.1 nonaka while ((c = *s++)) { 401 1.1 nonaka vga_putc(c); 402 1.1 nonaka } 403 1.1 nonaka } 404 1.1 nonaka 405 1.1 nonaka void 406 1.5 garbled video_on(void) 407 1.1 nonaka { 408 1.1 nonaka 409 1.1 nonaka /* Enable video */ 410 1.1 nonaka outb(0x3C4, 0x01); 411 1.1 nonaka outb(0x3C5, inb(0x3C5) & ~0x20); 412 1.1 nonaka } 413 1.1 nonaka 414 1.1 nonaka void 415 1.5 garbled video_off(void) 416 1.1 nonaka { 417 1.1 nonaka 418 1.1 nonaka /* Disable video */ 419 1.1 nonaka outb(0x3C4, 0x01); 420 1.1 nonaka outb(0x3C5, inb(0x3C5) | 0x20); 421 1.1 nonaka } 422 1.1 nonaka 423 1.1 nonaka void 424 1.5 garbled vga_init(u_char *ISA_mem) 425 1.1 nonaka { 426 1.1 nonaka struct screen *d = &screen; 427 1.1 nonaka 428 1.1 nonaka memset(d, 0, sizeof (screen)); 429 1.1 nonaka video_on(); 430 1.1 nonaka 431 1.1 nonaka d->cp = Crtat = (u_short *)&ISA_mem[0x0B8000]; 432 1.1 nonaka addr_6845 = CGA_BASE; 433 1.1 nonaka initscreen(); 434 1.1 nonaka fillw(pccolor|(' '<<8), d->cp, COL * ROW); 435 1.1 nonaka } 436 1.1 nonaka #endif /* CONS_VGA */ 437