1 // SPDX-License-Identifier: GPL-2.0 2 /* 3 * Copyright (C) 1991, 1992 Linus Torvalds 4 */ 5 6 /* 7 * Hopefully this will be a rather complete VT102 implementation. 8 * 9 * Beeping thanks to John T Kohl. 10 * 11 * Virtual Consoles, Screen Blanking, Screen Dumping, Color, Graphics 12 * Chars, and VT100 enhancements by Peter MacDonald. 13 * 14 * Copy and paste function by Andrew Haylett, 15 * some enhancements by Alessandro Rubini. 16 * 17 * Code to check for different video-cards mostly by Galen Hunt, 18 * <g-hunt@ee.utah.edu> 19 * 20 * Rudimentary ISO 10646/Unicode/UTF-8 character set support by 21 * Markus Kuhn, <mskuhn@immd4.informatik.uni-erlangen.de>. 22 * 23 * Dynamic allocation of consoles, aeb@cwi.nl, May 1994 24 * Resizing of consoles, aeb, 940926 25 * 26 * Code for xterm like mouse click reporting by Peter Orbaek 20-Jul-94 27 * <poe@daimi.aau.dk> 28 * 29 * User-defined bell sound, new setterm control sequences and printk 30 * redirection by Martin Mares <mj@k332.feld.cvut.cz> 19-Nov-95 31 * 32 * APM screenblank bug fixed Takashi Manabe <manabe@roy.dsl.tutics.tut.jp> 33 * 34 * Merge with the abstract console driver by Geert Uytterhoeven 35 * <geert@linux-m68k.org>, Jan 1997. 36 * 37 * Original m68k console driver modifications by 38 * 39 * - Arno Griffioen <arno@usn.nl> 40 * - David Carter <carter@cs.bris.ac.uk> 41 * 42 * The abstract console driver provides a generic interface for a text 43 * console. It supports VGA text mode, frame buffer based graphical consoles 44 * and special graphics processors that are only accessible through some 45 * registers (e.g. a TMS340x0 GSP). 46 * 47 * The interface to the hardware is specified using a special structure 48 * (struct consw) which contains function pointers to console operations 49 * (see <linux/console.h> for more information). 50 * 51 * Support for changeable cursor shape 52 * by Pavel Machek <pavel@atrey.karlin.mff.cuni.cz>, August 1997 53 * 54 * Ported to i386 and con_scrolldelta fixed 55 * by Emmanuel Marty <core@ggi-project.org>, April 1998 56 * 57 * Resurrected character buffers in videoram plus lots of other trickery 58 * by Martin Mares <mj@atrey.karlin.mff.cuni.cz>, July 1998 59 * 60 * Removed old-style timers, introduced console_timer, made timer 61 * deletion SMP-safe. 17Jun00, Andrew Morton 62 * 63 * Removed console_lock, enabled interrupts across all console operations 64 * 13 March 2001, Andrew Morton 65 * 66 * Fixed UTF-8 mode so alternate charset modes always work according 67 * to control sequences interpreted in do_con_trol function 68 * preserving backward VT100 semigraphics compatibility, 69 * malformed UTF sequences represented as sequences of replacement glyphs, 70 * original codes or '?' as a last resort if replacement glyph is undefined 71 * by Adam Tla/lka <atlka@pg.gda.pl>, Aug 2006 72 */ 73 74 #include <linux/module.h> 75 #include <linux/types.h> 76 #include <linux/sched/signal.h> 77 #include <linux/tty.h> 78 #include <linux/tty_flip.h> 79 #include <linux/kernel.h> 80 #include <linux/string.h> 81 #include <linux/errno.h> 82 #include <linux/hex.h> 83 #include <linux/kd.h> 84 #include <linux/slab.h> 85 #include <linux/vmalloc.h> 86 #include <linux/major.h> 87 #include <linux/mm.h> 88 #include <linux/console.h> 89 #include <linux/init.h> 90 #include <linux/mutex.h> 91 #include <linux/vt_kern.h> 92 #include <linux/selection.h> 93 #include <linux/tiocl.h> 94 #include <linux/kbd_kern.h> 95 #include <linux/consolemap.h> 96 #include <linux/timer.h> 97 #include <linux/interrupt.h> 98 #include <linux/workqueue.h> 99 #include <linux/pm.h> 100 #include <linux/font.h> 101 #include <linux/bitops.h> 102 #include <linux/notifier.h> 103 #include <linux/device.h> 104 #include <linux/io.h> 105 #include <linux/uaccess.h> 106 #include <linux/kdb.h> 107 #include <linux/ctype.h> 108 #include <linux/gcd.h> 109 110 #define MAX_NR_CON_DRIVER 16 111 112 #define CON_DRIVER_FLAG_MODULE 1 113 #define CON_DRIVER_FLAG_INIT 2 114 #define CON_DRIVER_FLAG_ATTR 4 115 #define CON_DRIVER_FLAG_ZOMBIE 8 116 117 struct con_driver { 118 const struct consw *con; 119 const char *desc; 120 struct device *dev; 121 int node; 122 int first; 123 int last; 124 int flag; 125 }; 126 127 static struct con_driver registered_con_driver[MAX_NR_CON_DRIVER]; 128 const struct consw *conswitchp; 129 130 /* 131 * Here is the default bell parameters: 750HZ, 1/8th of a second 132 */ 133 #define DEFAULT_BELL_PITCH 750 134 #define DEFAULT_BELL_DURATION (HZ/8) 135 #define DEFAULT_CURSOR_BLINK_MS 200 136 137 struct vc vc_cons [MAX_NR_CONSOLES]; 138 EXPORT_SYMBOL(vc_cons); 139 140 static const struct consw *con_driver_map[MAX_NR_CONSOLES]; 141 142 static int con_open(struct tty_struct *, struct file *); 143 static void vc_init(struct vc_data *vc, int do_clear); 144 static void gotoxy(struct vc_data *vc, int new_x, int new_y); 145 static void restore_cur(struct vc_data *vc); 146 static void save_cur(struct vc_data *vc); 147 static void reset_terminal(struct vc_data *vc, int do_clear); 148 static void con_flush_chars(struct tty_struct *tty); 149 static int set_vesa_blanking(u8 __user *mode); 150 static void set_cursor(struct vc_data *vc); 151 static void hide_cursor(struct vc_data *vc); 152 static void console_callback(struct work_struct *ignored); 153 static void con_driver_unregister_callback(struct work_struct *ignored); 154 static void blank_screen_t(struct timer_list *unused); 155 static void set_palette(struct vc_data *vc); 156 static void unblank_screen(void); 157 158 #define vt_get_kmsg_redirect() vt_kmsg_redirect(-1) 159 160 int default_utf8 = true; 161 module_param(default_utf8, int, S_IRUGO | S_IWUSR); 162 int global_cursor_default = -1; 163 module_param(global_cursor_default, int, S_IRUGO | S_IWUSR); 164 EXPORT_SYMBOL(global_cursor_default); 165 166 static int cur_default = CUR_UNDERLINE; 167 module_param(cur_default, int, S_IRUGO | S_IWUSR); 168 169 /* 170 * ignore_poke: don't unblank the screen when things are typed. This is 171 * mainly for the privacy of braille terminal users. 172 */ 173 static int ignore_poke; 174 175 int do_poke_blanked_console; 176 int console_blanked; 177 EXPORT_SYMBOL(console_blanked); 178 179 static enum vesa_blank_mode vesa_blank_mode; 180 static int vesa_off_interval; 181 static int blankinterval; 182 core_param(consoleblank, blankinterval, int, 0444); 183 184 static DECLARE_WORK(console_work, console_callback); 185 static DECLARE_WORK(con_driver_unregister_work, con_driver_unregister_callback); 186 187 /* 188 * fg_console is the current virtual console, 189 * last_console is the last used one, 190 * want_console is the console we want to switch to, 191 */ 192 int fg_console; 193 EXPORT_SYMBOL(fg_console); 194 int last_console; 195 int want_console = -1; 196 197 /* 198 * For each existing display, we have a pointer to console currently visible 199 * on that display, allowing consoles other than fg_console to be refreshed 200 * appropriately. Unless the low-level driver supplies its own display_fg 201 * variable, we use this one for the "master display". 202 */ 203 static struct vc_data *master_display_fg; 204 205 /* 206 * Unfortunately, we need to delay tty echo when we're currently writing to the 207 * console since the code is (and always was) not re-entrant, so we schedule 208 * all flip requests to process context with schedule-task() and run it from 209 * console_callback(). 210 */ 211 212 /* 213 * For the same reason, we defer scrollback to the console callback. 214 */ 215 static int scrollback_delta; 216 217 /* 218 * Hook so that the power management routines can (un)blank 219 * the console on our behalf. 220 */ 221 int (*console_blank_hook)(int); 222 EXPORT_SYMBOL(console_blank_hook); 223 224 static DEFINE_TIMER(console_timer, blank_screen_t); 225 static int blank_state; 226 static int blank_timer_expired; 227 enum { 228 blank_off = 0, 229 blank_normal_wait, 230 blank_vesa_wait, 231 }; 232 233 /* 234 * /sys/class/tty/tty0/ 235 * 236 * the attribute 'active' contains the name of the current vc 237 * console and it supports poll() to detect vc switches 238 */ 239 static struct device *tty0dev; 240 241 /* 242 * Notifier list for console events. 243 */ 244 static ATOMIC_NOTIFIER_HEAD(vt_notifier_list); 245 246 int register_vt_notifier(struct notifier_block *nb) 247 { 248 return atomic_notifier_chain_register(&vt_notifier_list, nb); 249 } 250 EXPORT_SYMBOL_GPL(register_vt_notifier); 251 252 int unregister_vt_notifier(struct notifier_block *nb) 253 { 254 return atomic_notifier_chain_unregister(&vt_notifier_list, nb); 255 } 256 EXPORT_SYMBOL_GPL(unregister_vt_notifier); 257 258 static void notify_write(struct vc_data *vc, unsigned int unicode) 259 { 260 struct vt_notifier_param param = { .vc = vc, .c = unicode }; 261 atomic_notifier_call_chain(&vt_notifier_list, VT_WRITE, ¶m); 262 } 263 264 static void notify_update(struct vc_data *vc) 265 { 266 struct vt_notifier_param param = { .vc = vc }; 267 atomic_notifier_call_chain(&vt_notifier_list, VT_UPDATE, ¶m); 268 } 269 /* 270 * Low-Level Functions 271 */ 272 273 static inline bool con_is_fg(const struct vc_data *vc) 274 { 275 return vc->vc_num == fg_console; 276 } 277 278 static inline bool con_should_update(const struct vc_data *vc) 279 { 280 return con_is_visible(vc) && !console_blanked; 281 } 282 283 static inline u16 *screenpos(const struct vc_data *vc, unsigned int offset, 284 bool viewed) 285 { 286 unsigned long origin = viewed ? vc->vc_visible_origin : vc->vc_origin; 287 288 return (u16 *)(origin + offset); 289 } 290 291 static void con_putc(struct vc_data *vc, u16 ca, unsigned int y, unsigned int x) 292 { 293 if (vc->vc_sw->con_putc) 294 vc->vc_sw->con_putc(vc, ca, y, x); 295 else 296 vc->vc_sw->con_putcs(vc, &ca, 1, y, x); 297 } 298 299 /* Called from the keyboard irq path.. */ 300 static inline void scrolldelta(int lines) 301 { 302 /* FIXME */ 303 /* scrolldelta needs some kind of consistency lock, but the BKL was 304 and still is not protecting versus the scheduled back end */ 305 scrollback_delta += lines; 306 schedule_console_callback(); 307 } 308 309 void schedule_console_callback(void) 310 { 311 schedule_work(&console_work); 312 } 313 314 /* 315 * Code to manage unicode-based screen buffers 316 */ 317 318 /* 319 * Our screen buffer is preceded by an array of line pointers so that 320 * scrolling only implies some pointer shuffling. 321 */ 322 323 static u32 **vc_uniscr_alloc(unsigned int cols, unsigned int rows) 324 { 325 u32 **uni_lines; 326 void *p; 327 unsigned int memsize, i, col_size = cols * sizeof(**uni_lines); 328 329 /* allocate everything in one go */ 330 memsize = col_size * rows; 331 memsize += rows * sizeof(*uni_lines); 332 uni_lines = vzalloc(memsize); 333 if (!uni_lines) 334 return NULL; 335 336 /* initial line pointers */ 337 p = uni_lines + rows; 338 for (i = 0; i < rows; i++) { 339 uni_lines[i] = p; 340 p += col_size; 341 } 342 343 return uni_lines; 344 } 345 346 static void vc_uniscr_free(u32 **uni_lines) 347 { 348 vfree(uni_lines); 349 } 350 351 static void vc_uniscr_set(struct vc_data *vc, u32 **new_uni_lines) 352 { 353 vc_uniscr_free(vc->vc_uni_lines); 354 vc->vc_uni_lines = new_uni_lines; 355 } 356 357 static void vc_uniscr_putc(struct vc_data *vc, u32 uc) 358 { 359 if (vc->vc_uni_lines) 360 vc->vc_uni_lines[vc->state.y][vc->state.x] = uc; 361 } 362 363 static void vc_uniscr_insert(struct vc_data *vc, unsigned int nr) 364 { 365 if (vc->vc_uni_lines) { 366 u32 *ln = vc->vc_uni_lines[vc->state.y]; 367 unsigned int x = vc->state.x, cols = vc->vc_cols; 368 369 memmove(&ln[x + nr], &ln[x], (cols - x - nr) * sizeof(*ln)); 370 memset32(&ln[x], ' ', nr); 371 } 372 } 373 374 static void vc_uniscr_delete(struct vc_data *vc, unsigned int nr) 375 { 376 if (vc->vc_uni_lines) { 377 u32 *ln = vc->vc_uni_lines[vc->state.y]; 378 unsigned int x = vc->state.x, cols = vc->vc_cols; 379 380 memmove(&ln[x], &ln[x + nr], (cols - x - nr) * sizeof(*ln)); 381 memset32(&ln[cols - nr], ' ', nr); 382 } 383 } 384 385 static void vc_uniscr_clear_line(struct vc_data *vc, unsigned int x, 386 unsigned int nr) 387 { 388 if (vc->vc_uni_lines) 389 memset32(&vc->vc_uni_lines[vc->state.y][x], ' ', nr); 390 } 391 392 static void vc_uniscr_clear_lines(struct vc_data *vc, unsigned int y, 393 unsigned int nr) 394 { 395 if (vc->vc_uni_lines) 396 while (nr--) 397 memset32(vc->vc_uni_lines[y++], ' ', vc->vc_cols); 398 } 399 400 /* juggling array rotation algorithm (complexity O(N), size complexity O(1)) */ 401 static void juggle_array(u32 **array, unsigned int size, unsigned int nr) 402 { 403 unsigned int gcd_idx; 404 405 for (gcd_idx = 0; gcd_idx < gcd(nr, size); gcd_idx++) { 406 u32 *gcd_idx_val = array[gcd_idx]; 407 unsigned int dst_idx = gcd_idx; 408 409 while (1) { 410 unsigned int src_idx = (dst_idx + nr) % size; 411 if (src_idx == gcd_idx) 412 break; 413 414 array[dst_idx] = array[src_idx]; 415 dst_idx = src_idx; 416 } 417 418 array[dst_idx] = gcd_idx_val; 419 } 420 } 421 422 static void vc_uniscr_scroll(struct vc_data *vc, unsigned int top, 423 unsigned int bottom, enum con_scroll dir, 424 unsigned int nr) 425 { 426 u32 **uni_lines = vc->vc_uni_lines; 427 unsigned int size = bottom - top; 428 429 if (!uni_lines) 430 return; 431 432 if (dir == SM_DOWN) { 433 juggle_array(&uni_lines[top], size, size - nr); 434 vc_uniscr_clear_lines(vc, top, nr); 435 } else { 436 juggle_array(&uni_lines[top], size, nr); 437 vc_uniscr_clear_lines(vc, bottom - nr, nr); 438 } 439 } 440 441 static u32 vc_uniscr_getc(struct vc_data *vc, int relative_pos) 442 { 443 int pos = vc->state.x + vc->vc_need_wrap + relative_pos; 444 445 if (vc->vc_uni_lines && in_range(pos, 0, vc->vc_cols)) 446 return vc->vc_uni_lines[vc->state.y][pos]; 447 return 0; 448 } 449 450 static void vc_uniscr_copy_area(u32 **dst_lines, 451 unsigned int dst_cols, 452 unsigned int dst_rows, 453 u32 **src_lines, 454 unsigned int src_cols, 455 unsigned int src_top_row, 456 unsigned int src_bot_row) 457 { 458 unsigned int dst_row = 0; 459 460 if (!dst_lines) 461 return; 462 463 while (src_top_row < src_bot_row) { 464 u32 *src_line = src_lines[src_top_row]; 465 u32 *dst_line = dst_lines[dst_row]; 466 467 memcpy(dst_line, src_line, src_cols * sizeof(*src_line)); 468 if (dst_cols - src_cols) 469 memset32(dst_line + src_cols, ' ', dst_cols - src_cols); 470 src_top_row++; 471 dst_row++; 472 } 473 while (dst_row < dst_rows) { 474 u32 *dst_line = dst_lines[dst_row]; 475 476 memset32(dst_line, ' ', dst_cols); 477 dst_row++; 478 } 479 } 480 481 /* 482 * Called from vcs_read() to make sure unicode screen retrieval is possible. 483 * This will initialize the unicode screen buffer if not already done. 484 * This returns 0 if OK, or a negative error code otherwise. 485 * In particular, -ENODATA is returned if the console is not in UTF-8 mode. 486 */ 487 int vc_uniscr_check(struct vc_data *vc) 488 { 489 u32 **uni_lines; 490 unsigned short *p; 491 int x, y, mask; 492 493 WARN_CONSOLE_UNLOCKED(); 494 495 if (!vc->vc_utf) 496 return -ENODATA; 497 498 if (vc->vc_uni_lines) 499 return 0; 500 501 uni_lines = vc_uniscr_alloc(vc->vc_cols, vc->vc_rows); 502 if (!uni_lines) 503 return -ENOMEM; 504 505 /* 506 * Let's populate it initially with (imperfect) reverse translation. 507 * This is the next best thing we can do short of having it enabled 508 * from the start even when no users rely on this functionality. True 509 * unicode content will be available after a complete screen refresh. 510 */ 511 p = (unsigned short *)vc->vc_origin; 512 mask = vc->vc_hi_font_mask | 0xff; 513 for (y = 0; y < vc->vc_rows; y++) { 514 u32 *line = uni_lines[y]; 515 for (x = 0; x < vc->vc_cols; x++) { 516 u16 glyph = scr_readw(p++) & mask; 517 line[x] = inverse_translate(vc, glyph, true); 518 } 519 } 520 521 vc->vc_uni_lines = uni_lines; 522 523 return 0; 524 } 525 526 /* 527 * Called from vcs_read() to get the unicode data from the screen. 528 * This must be preceded by a successful call to vc_uniscr_check() once 529 * the console lock has been taken. 530 */ 531 void vc_uniscr_copy_line(const struct vc_data *vc, void *dest, bool viewed, 532 unsigned int row, unsigned int col, unsigned int nr) 533 { 534 u32 **uni_lines = vc->vc_uni_lines; 535 int offset = row * vc->vc_size_row + col * 2; 536 unsigned long pos; 537 538 if (WARN_ON_ONCE(!uni_lines)) 539 return; 540 541 pos = (unsigned long)screenpos(vc, offset, viewed); 542 if (pos >= vc->vc_origin && pos < vc->vc_scr_end) { 543 /* 544 * Desired position falls in the main screen buffer. 545 * However the actual row/col might be different if 546 * scrollback is active. 547 */ 548 row = (pos - vc->vc_origin) / vc->vc_size_row; 549 col = ((pos - vc->vc_origin) % vc->vc_size_row) / 2; 550 memcpy(dest, &uni_lines[row][col], nr * sizeof(u32)); 551 } else { 552 /* 553 * Scrollback is active. For now let's simply backtranslate 554 * the screen glyphs until the unicode screen buffer does 555 * synchronize with console display drivers for a scrollback 556 * buffer of its own. 557 */ 558 u16 *p = (u16 *)pos; 559 int mask = vc->vc_hi_font_mask | 0xff; 560 u32 *uni_buf = dest; 561 while (nr--) { 562 u16 glyph = scr_readw(p++) & mask; 563 *uni_buf++ = inverse_translate(vc, glyph, true); 564 } 565 } 566 } 567 568 static void con_scroll(struct vc_data *vc, unsigned int top, 569 unsigned int bottom, enum con_scroll dir, 570 unsigned int nr) 571 { 572 unsigned int rows = bottom - top; 573 u16 *clear, *dst, *src; 574 575 if (top + nr >= bottom) 576 nr = rows - 1; 577 if (bottom > vc->vc_rows || top >= bottom || nr < 1) 578 return; 579 580 vc_uniscr_scroll(vc, top, bottom, dir, nr); 581 if (con_is_visible(vc) && 582 vc->vc_sw->con_scroll(vc, top, bottom, dir, nr)) 583 return; 584 585 src = clear = (u16 *)(vc->vc_origin + vc->vc_size_row * top); 586 dst = (u16 *)(vc->vc_origin + vc->vc_size_row * (top + nr)); 587 588 if (dir == SM_UP) { 589 clear = src + (rows - nr) * vc->vc_cols; 590 swap(src, dst); 591 } 592 scr_memmovew(dst, src, (rows - nr) * vc->vc_size_row); 593 scr_memsetw(clear, vc->vc_video_erase_char, vc->vc_size_row * nr); 594 } 595 596 static void do_update_region(struct vc_data *vc, unsigned long start, int count) 597 { 598 unsigned int xx, yy, offset; 599 u16 *p = (u16 *)start; 600 601 offset = (start - vc->vc_origin) / 2; 602 xx = offset % vc->vc_cols; 603 yy = offset / vc->vc_cols; 604 605 for(;;) { 606 u16 attrib = scr_readw(p) & 0xff00; 607 int startx = xx; 608 u16 *q = p; 609 while (xx < vc->vc_cols && count) { 610 if (attrib != (scr_readw(p) & 0xff00)) { 611 if (p > q) 612 vc->vc_sw->con_putcs(vc, q, p-q, yy, startx); 613 startx = xx; 614 q = p; 615 attrib = scr_readw(p) & 0xff00; 616 } 617 p++; 618 xx++; 619 count--; 620 } 621 if (p > q) 622 vc->vc_sw->con_putcs(vc, q, p-q, yy, startx); 623 if (!count) 624 break; 625 xx = 0; 626 yy++; 627 } 628 } 629 630 void update_region(struct vc_data *vc, unsigned long start, int count) 631 { 632 WARN_CONSOLE_UNLOCKED(); 633 634 if (con_should_update(vc)) { 635 hide_cursor(vc); 636 do_update_region(vc, start, count); 637 set_cursor(vc); 638 } 639 } 640 EXPORT_SYMBOL(update_region); 641 642 /* Structure of attributes is hardware-dependent */ 643 644 static u8 build_attr(struct vc_data *vc, u8 _color, 645 enum vc_intensity _intensity, bool _blink, bool _underline, 646 bool _reverse, bool _italic) 647 { 648 if (vc->vc_sw->con_build_attr) 649 return vc->vc_sw->con_build_attr(vc, _color, _intensity, 650 _blink, _underline, _reverse, _italic); 651 652 /* 653 * ++roman: I completely changed the attribute format for monochrome 654 * mode (!can_do_color). The formerly used MDA (monochrome display 655 * adapter) format didn't allow the combination of certain effects. 656 * Now the attribute is just a bit vector: 657 * Bit 0..1: intensity (0..2) 658 * Bit 2 : underline 659 * Bit 3 : reverse 660 * Bit 7 : blink 661 */ 662 { 663 u8 a = _color; 664 if (!vc->vc_can_do_color) 665 return _intensity | 666 (_italic << 1) | 667 (_underline << 2) | 668 (_reverse << 3) | 669 (_blink << 7); 670 if (_italic) 671 a = (a & 0xF0) | vc->vc_itcolor; 672 else if (_underline) 673 a = (a & 0xf0) | vc->vc_ulcolor; 674 else if (_intensity == VCI_HALF_BRIGHT) 675 a = (a & 0xf0) | vc->vc_halfcolor; 676 if (_reverse) 677 a = (a & 0x88) | (((a >> 4) | (a << 4)) & 0x77); 678 if (_blink) 679 a ^= 0x80; 680 if (_intensity == VCI_BOLD) 681 a ^= 0x08; 682 if (vc->vc_hi_font_mask == 0x100) 683 a <<= 1; 684 return a; 685 } 686 } 687 688 static void update_attr(struct vc_data *vc) 689 { 690 vc->vc_attr = build_attr(vc, vc->state.color, vc->state.intensity, 691 vc->state.blink, vc->state.underline, 692 vc->state.reverse ^ vc->vc_decscnm, vc->state.italic); 693 vc->vc_video_erase_char = ' ' | (build_attr(vc, vc->state.color, 694 VCI_NORMAL, vc->state.blink, false, 695 vc->vc_decscnm, false) << 8); 696 } 697 698 /* Note: inverting the screen twice should revert to the original state */ 699 void invert_screen(struct vc_data *vc, int offset, int count, bool viewed) 700 { 701 u16 *p; 702 703 WARN_CONSOLE_UNLOCKED(); 704 705 count /= 2; 706 p = screenpos(vc, offset, viewed); 707 if (vc->vc_sw->con_invert_region) { 708 vc->vc_sw->con_invert_region(vc, p, count); 709 } else { 710 u16 *q = p; 711 int cnt = count; 712 u16 a; 713 714 if (!vc->vc_can_do_color) { 715 while (cnt--) { 716 a = scr_readw(q); 717 a ^= 0x0800; 718 scr_writew(a, q); 719 q++; 720 } 721 } else if (vc->vc_hi_font_mask == 0x100) { 722 while (cnt--) { 723 a = scr_readw(q); 724 a = (a & 0x11ff) | 725 ((a & 0xe000) >> 4) | 726 ((a & 0x0e00) << 4); 727 scr_writew(a, q); 728 q++; 729 } 730 } else { 731 while (cnt--) { 732 a = scr_readw(q); 733 a = (a & 0x88ff) | 734 ((a & 0x7000) >> 4) | 735 ((a & 0x0700) << 4); 736 scr_writew(a, q); 737 q++; 738 } 739 } 740 } 741 742 if (con_should_update(vc)) 743 do_update_region(vc, (unsigned long) p, count); 744 notify_update(vc); 745 } 746 747 /* used by selection: complement pointer position */ 748 void complement_pos(struct vc_data *vc, int offset) 749 { 750 static int old_offset = -1; 751 static unsigned short old; 752 static unsigned short oldx, oldy; 753 754 WARN_CONSOLE_UNLOCKED(); 755 756 if (old_offset != -1 && old_offset >= 0 && 757 old_offset < vc->vc_screenbuf_size) { 758 scr_writew(old, screenpos(vc, old_offset, true)); 759 if (con_should_update(vc)) 760 con_putc(vc, old, oldy, oldx); 761 notify_update(vc); 762 } 763 764 old_offset = offset; 765 766 if (offset != -1 && offset >= 0 && 767 offset < vc->vc_screenbuf_size) { 768 unsigned short new; 769 u16 *p = screenpos(vc, offset, true); 770 old = scr_readw(p); 771 new = old ^ vc->vc_complement_mask; 772 scr_writew(new, p); 773 if (con_should_update(vc)) { 774 oldx = (offset >> 1) % vc->vc_cols; 775 oldy = (offset >> 1) / vc->vc_cols; 776 con_putc(vc, new, oldy, oldx); 777 } 778 notify_update(vc); 779 } 780 } 781 782 static void insert_char(struct vc_data *vc, unsigned int nr) 783 { 784 unsigned short *p = (unsigned short *) vc->vc_pos; 785 786 vc_uniscr_insert(vc, nr); 787 scr_memmovew(p + nr, p, (vc->vc_cols - vc->state.x - nr) * 2); 788 scr_memsetw(p, vc->vc_video_erase_char, nr * 2); 789 vc->vc_need_wrap = 0; 790 if (con_should_update(vc)) 791 do_update_region(vc, (unsigned long) p, 792 vc->vc_cols - vc->state.x); 793 } 794 795 static void delete_char(struct vc_data *vc, unsigned int nr) 796 { 797 unsigned short *p = (unsigned short *) vc->vc_pos; 798 799 vc_uniscr_delete(vc, nr); 800 scr_memmovew(p, p + nr, (vc->vc_cols - vc->state.x - nr) * 2); 801 scr_memsetw(p + vc->vc_cols - vc->state.x - nr, vc->vc_video_erase_char, 802 nr * 2); 803 vc->vc_need_wrap = 0; 804 if (con_should_update(vc)) 805 do_update_region(vc, (unsigned long) p, 806 vc->vc_cols - vc->state.x); 807 } 808 809 static int softcursor_original = -1; 810 811 static void add_softcursor(struct vc_data *vc) 812 { 813 int i = scr_readw((u16 *) vc->vc_pos); 814 u32 type = vc->vc_cursor_type; 815 816 if (!(type & CUR_SW)) 817 return; 818 if (softcursor_original != -1) 819 return; 820 softcursor_original = i; 821 i |= CUR_SET(type); 822 i ^= CUR_CHANGE(type); 823 if ((type & CUR_ALWAYS_BG) && 824 (softcursor_original & CUR_BG) == (i & CUR_BG)) 825 i ^= CUR_BG; 826 if ((type & CUR_INVERT_FG_BG) && (i & CUR_FG) == ((i & CUR_BG) >> 4)) 827 i ^= CUR_FG; 828 scr_writew(i, (u16 *)vc->vc_pos); 829 if (con_should_update(vc)) 830 con_putc(vc, i, vc->state.y, vc->state.x); 831 } 832 833 static void hide_softcursor(struct vc_data *vc) 834 { 835 if (softcursor_original != -1) { 836 scr_writew(softcursor_original, (u16 *)vc->vc_pos); 837 if (con_should_update(vc)) 838 con_putc(vc, softcursor_original, vc->state.y, 839 vc->state.x); 840 softcursor_original = -1; 841 } 842 } 843 844 static void hide_cursor(struct vc_data *vc) 845 { 846 if (vc_is_sel(vc)) 847 clear_selection(); 848 849 vc->vc_sw->con_cursor(vc, false); 850 hide_softcursor(vc); 851 } 852 853 static void set_cursor(struct vc_data *vc) 854 { 855 if (!con_is_fg(vc) || console_blanked || vc->vc_mode == KD_GRAPHICS) 856 return; 857 if (vc->vc_deccm) { 858 if (vc_is_sel(vc)) 859 clear_selection(); 860 add_softcursor(vc); 861 if (CUR_SIZE(vc->vc_cursor_type) != CUR_NONE) 862 vc->vc_sw->con_cursor(vc, true); 863 } else 864 hide_cursor(vc); 865 } 866 867 static void set_origin(struct vc_data *vc) 868 { 869 WARN_CONSOLE_UNLOCKED(); 870 871 if (!con_is_visible(vc) || 872 !vc->vc_sw->con_set_origin || 873 !vc->vc_sw->con_set_origin(vc)) 874 vc->vc_origin = (unsigned long)vc->vc_screenbuf; 875 vc->vc_visible_origin = vc->vc_origin; 876 vc->vc_scr_end = vc->vc_origin + vc->vc_screenbuf_size; 877 vc->vc_pos = vc->vc_origin + vc->vc_size_row * vc->state.y + 878 2 * vc->state.x; 879 } 880 881 static void save_screen(struct vc_data *vc) 882 { 883 WARN_CONSOLE_UNLOCKED(); 884 885 if (vc->vc_sw->con_save_screen) 886 vc->vc_sw->con_save_screen(vc); 887 } 888 889 static void flush_scrollback(struct vc_data *vc) 890 { 891 WARN_CONSOLE_UNLOCKED(); 892 893 set_origin(vc); 894 if (!con_is_visible(vc)) 895 return; 896 897 /* 898 * The legacy way for flushing the scrollback buffer is to use a side 899 * effect of the con_switch method. We do it only on the foreground 900 * console as background consoles have no scrollback buffers in that 901 * case and we obviously don't want to switch to them. 902 */ 903 hide_cursor(vc); 904 vc->vc_sw->con_switch(vc); 905 set_cursor(vc); 906 } 907 908 /* 909 * Redrawing of screen 910 */ 911 912 void clear_buffer_attributes(struct vc_data *vc) 913 { 914 unsigned short *p = (unsigned short *)vc->vc_origin; 915 int count = vc->vc_screenbuf_size / 2; 916 int mask = vc->vc_hi_font_mask | 0xff; 917 918 for (; count > 0; count--, p++) { 919 scr_writew((scr_readw(p)&mask) | (vc->vc_video_erase_char & ~mask), p); 920 } 921 } 922 923 void redraw_screen(struct vc_data *vc, int is_switch) 924 { 925 int redraw = 0; 926 927 WARN_CONSOLE_UNLOCKED(); 928 929 if (!vc) { 930 /* strange ... */ 931 /* printk("redraw_screen: tty %d not allocated ??\n", new_console+1); */ 932 return; 933 } 934 935 if (is_switch) { 936 struct vc_data *old_vc = vc_cons[fg_console].d; 937 if (old_vc == vc) 938 return; 939 if (!con_is_visible(vc)) 940 redraw = 1; 941 *vc->vc_display_fg = vc; 942 fg_console = vc->vc_num; 943 hide_cursor(old_vc); 944 if (!con_is_visible(old_vc)) { 945 save_screen(old_vc); 946 set_origin(old_vc); 947 } 948 if (tty0dev) 949 sysfs_notify(&tty0dev->kobj, NULL, "active"); 950 } else { 951 hide_cursor(vc); 952 redraw = 1; 953 } 954 955 if (redraw) { 956 bool update; 957 int old_was_color = vc->vc_can_do_color; 958 959 set_origin(vc); 960 update = vc->vc_sw->con_switch(vc); 961 set_palette(vc); 962 /* 963 * If console changed from mono<->color, the best we can do 964 * is to clear the buffer attributes. As it currently stands, 965 * rebuilding new attributes from the old buffer is not doable 966 * without overly complex code. 967 */ 968 if (old_was_color != vc->vc_can_do_color) { 969 update_attr(vc); 970 clear_buffer_attributes(vc); 971 } 972 973 if (update && vc->vc_mode != KD_GRAPHICS) 974 do_update_region(vc, vc->vc_origin, vc->vc_screenbuf_size / 2); 975 } 976 set_cursor(vc); 977 if (is_switch) { 978 vt_set_leds_compute_shiftstate(); 979 notify_update(vc); 980 } 981 } 982 EXPORT_SYMBOL(redraw_screen); 983 984 /* 985 * Allocation, freeing and resizing of VTs. 986 */ 987 988 int vc_cons_allocated(unsigned int i) 989 { 990 return (i < MAX_NR_CONSOLES && vc_cons[i].d); 991 } 992 993 static void visual_init(struct vc_data *vc, int num, bool init) 994 { 995 /* ++Geert: vc->vc_sw->con_init determines console size */ 996 if (vc->vc_sw) 997 module_put(vc->vc_sw->owner); 998 vc->vc_sw = conswitchp; 999 1000 if (con_driver_map[num]) 1001 vc->vc_sw = con_driver_map[num]; 1002 1003 __module_get(vc->vc_sw->owner); 1004 vc->vc_num = num; 1005 vc->vc_display_fg = &master_display_fg; 1006 if (vc->uni_pagedict_loc) 1007 con_free_unimap(vc); 1008 vc->uni_pagedict_loc = &vc->uni_pagedict; 1009 vc->uni_pagedict = NULL; 1010 vc->vc_hi_font_mask = 0; 1011 vc->vc_complement_mask = 0; 1012 vc->vc_can_do_color = 0; 1013 vc->vc_cur_blink_ms = DEFAULT_CURSOR_BLINK_MS; 1014 vc->vc_sw->con_init(vc, init); 1015 if (!vc->vc_complement_mask) 1016 vc->vc_complement_mask = vc->vc_can_do_color ? 0x7700 : 0x0800; 1017 vc->vc_s_complement_mask = vc->vc_complement_mask; 1018 vc->vc_size_row = vc->vc_cols << 1; 1019 vc->vc_screenbuf_size = vc->vc_rows * vc->vc_size_row; 1020 } 1021 1022 1023 static void visual_deinit(struct vc_data *vc) 1024 { 1025 vc->vc_sw->con_deinit(vc); 1026 module_put(vc->vc_sw->owner); 1027 } 1028 1029 static void vc_port_destruct(struct tty_port *port) 1030 { 1031 struct vc_data *vc = container_of(port, struct vc_data, port); 1032 1033 kfree(vc); 1034 } 1035 1036 static const struct tty_port_operations vc_port_ops = { 1037 .destruct = vc_port_destruct, 1038 }; 1039 1040 /* 1041 * Change # of rows and columns (0 means unchanged/the size of fg_console) 1042 * [this is to be used together with some user program 1043 * like resize that changes the hardware videomode] 1044 */ 1045 #define VC_MAXCOL (32767) 1046 #define VC_MAXROW (32767) 1047 1048 int vc_allocate(unsigned int currcons) /* return 0 on success */ 1049 { 1050 struct vt_notifier_param param; 1051 struct vc_data *vc; 1052 int err; 1053 1054 WARN_CONSOLE_UNLOCKED(); 1055 1056 if (currcons >= MAX_NR_CONSOLES) 1057 return -ENXIO; 1058 1059 if (vc_cons[currcons].d) 1060 return 0; 1061 1062 /* due to the granularity of kmalloc, we waste some memory here */ 1063 /* the alloc is done in two steps, to optimize the common situation 1064 of a 25x80 console (structsize=216, screenbuf_size=4000) */ 1065 /* although the numbers above are not valid since long ago, the 1066 point is still up-to-date and the comment still has its value 1067 even if only as a historical artifact. --mj, July 1998 */ 1068 param.vc = vc = kzalloc(sizeof(struct vc_data), GFP_KERNEL); 1069 if (!vc) 1070 return -ENOMEM; 1071 1072 vc_cons[currcons].d = vc; 1073 tty_port_init(&vc->port); 1074 vc->port.ops = &vc_port_ops; 1075 INIT_WORK(&vc_cons[currcons].SAK_work, vc_SAK); 1076 1077 visual_init(vc, currcons, true); 1078 1079 if (!*vc->uni_pagedict_loc) 1080 con_set_default_unimap(vc); 1081 1082 err = -EINVAL; 1083 if (vc->vc_cols > VC_MAXCOL || vc->vc_rows > VC_MAXROW || 1084 vc->vc_screenbuf_size > KMALLOC_MAX_SIZE || !vc->vc_screenbuf_size) 1085 goto err_free; 1086 err = -ENOMEM; 1087 vc->vc_screenbuf = kzalloc(vc->vc_screenbuf_size, GFP_KERNEL); 1088 if (!vc->vc_screenbuf) 1089 goto err_free; 1090 1091 /* If no drivers have overridden us and the user didn't pass a 1092 boot option, default to displaying the cursor */ 1093 if (global_cursor_default == -1) 1094 global_cursor_default = 1; 1095 1096 vc_init(vc, 1); 1097 vcs_make_sysfs(currcons); 1098 atomic_notifier_call_chain(&vt_notifier_list, VT_ALLOCATE, ¶m); 1099 1100 return 0; 1101 err_free: 1102 visual_deinit(vc); 1103 kfree(vc); 1104 vc_cons[currcons].d = NULL; 1105 return err; 1106 } 1107 1108 static inline int resize_screen(struct vc_data *vc, int width, int height, 1109 bool from_user) 1110 { 1111 /* Resizes the resolution of the display adapater */ 1112 int err = 0; 1113 1114 if (vc->vc_sw->con_resize) 1115 err = vc->vc_sw->con_resize(vc, width, height, from_user); 1116 1117 return err; 1118 } 1119 1120 /** 1121 * vc_do_resize - resizing method for the tty 1122 * @tty: tty being resized 1123 * @vc: virtual console private data 1124 * @cols: columns 1125 * @lines: lines 1126 * @from_user: invoked by a user? 1127 * 1128 * Resize a virtual console, clipping according to the actual constraints. If 1129 * the caller passes a tty structure then update the termios winsize 1130 * information and perform any necessary signal handling. 1131 * 1132 * Locking: Caller must hold the console semaphore. Takes the termios rwsem and 1133 * ctrl.lock of the tty IFF a tty is passed. 1134 */ 1135 static int vc_do_resize(struct tty_struct *tty, struct vc_data *vc, 1136 unsigned int cols, unsigned int lines, bool from_user) 1137 { 1138 unsigned long old_origin, new_origin, new_scr_end, rlth, rrem, err = 0; 1139 unsigned long end; 1140 unsigned int old_rows, old_row_size, first_copied_row; 1141 unsigned int new_cols, new_rows, new_row_size, new_screen_size; 1142 unsigned short *oldscreen, *newscreen; 1143 u32 **new_uniscr = NULL; 1144 1145 WARN_CONSOLE_UNLOCKED(); 1146 1147 if (cols > VC_MAXCOL || lines > VC_MAXROW) 1148 return -EINVAL; 1149 1150 new_cols = (cols ? cols : vc->vc_cols); 1151 new_rows = (lines ? lines : vc->vc_rows); 1152 new_row_size = new_cols << 1; 1153 new_screen_size = new_row_size * new_rows; 1154 1155 if (new_cols == vc->vc_cols && new_rows == vc->vc_rows) { 1156 /* 1157 * This function is being called here to cover the case 1158 * where the userspace calls the FBIOPUT_VSCREENINFO twice, 1159 * passing the same fb_var_screeninfo containing the fields 1160 * yres/xres equal to a number non-multiple of vc_font.height 1161 * and yres_virtual/xres_virtual equal to number lesser than the 1162 * vc_font.height and yres/xres. 1163 * In the second call, the struct fb_var_screeninfo isn't 1164 * being modified by the underlying driver because of the 1165 * if above, and this causes the fbcon_display->vrows to become 1166 * negative and it eventually leads to out-of-bound 1167 * access by the imageblit function. 1168 * To give the correct values to the struct and to not have 1169 * to deal with possible errors from the code below, we call 1170 * the resize_screen here as well. 1171 */ 1172 return resize_screen(vc, new_cols, new_rows, from_user); 1173 } 1174 1175 if (new_screen_size > KMALLOC_MAX_SIZE || !new_screen_size) 1176 return -EINVAL; 1177 newscreen = kzalloc(new_screen_size, GFP_USER); 1178 if (!newscreen) 1179 return -ENOMEM; 1180 1181 if (vc->vc_uni_lines) { 1182 new_uniscr = vc_uniscr_alloc(new_cols, new_rows); 1183 if (!new_uniscr) { 1184 kfree(newscreen); 1185 return -ENOMEM; 1186 } 1187 } 1188 1189 if (vc_is_sel(vc)) 1190 clear_selection(); 1191 1192 old_rows = vc->vc_rows; 1193 old_row_size = vc->vc_size_row; 1194 1195 err = resize_screen(vc, new_cols, new_rows, from_user); 1196 if (err) { 1197 kfree(newscreen); 1198 vc_uniscr_free(new_uniscr); 1199 return err; 1200 } 1201 1202 vc->vc_rows = new_rows; 1203 vc->vc_cols = new_cols; 1204 vc->vc_size_row = new_row_size; 1205 vc->vc_screenbuf_size = new_screen_size; 1206 1207 rlth = min(old_row_size, new_row_size); 1208 rrem = new_row_size - rlth; 1209 old_origin = vc->vc_origin; 1210 new_origin = (long) newscreen; 1211 new_scr_end = new_origin + new_screen_size; 1212 1213 if (vc->state.y > new_rows) { 1214 if (old_rows - vc->state.y < new_rows) { 1215 /* 1216 * Cursor near the bottom, copy contents from the 1217 * bottom of buffer 1218 */ 1219 first_copied_row = (old_rows - new_rows); 1220 } else { 1221 /* 1222 * Cursor is in no man's land, copy 1/2 screenful 1223 * from the top and bottom of cursor position 1224 */ 1225 first_copied_row = (vc->state.y - new_rows/2); 1226 } 1227 old_origin += first_copied_row * old_row_size; 1228 } else 1229 first_copied_row = 0; 1230 end = old_origin + old_row_size * min(old_rows, new_rows); 1231 1232 vc_uniscr_copy_area(new_uniscr, new_cols, new_rows, 1233 vc->vc_uni_lines, rlth/2, first_copied_row, 1234 min(old_rows, new_rows)); 1235 vc_uniscr_set(vc, new_uniscr); 1236 1237 update_attr(vc); 1238 1239 while (old_origin < end) { 1240 scr_memcpyw((unsigned short *) new_origin, 1241 (unsigned short *) old_origin, rlth); 1242 if (rrem) 1243 scr_memsetw((void *)(new_origin + rlth), 1244 vc->vc_video_erase_char, rrem); 1245 old_origin += old_row_size; 1246 new_origin += new_row_size; 1247 } 1248 if (new_scr_end > new_origin) 1249 scr_memsetw((void *)new_origin, vc->vc_video_erase_char, 1250 new_scr_end - new_origin); 1251 oldscreen = vc->vc_screenbuf; 1252 vc->vc_screenbuf = newscreen; 1253 vc->vc_screenbuf_size = new_screen_size; 1254 set_origin(vc); 1255 kfree(oldscreen); 1256 1257 /* do part of a reset_terminal() */ 1258 vc->vc_top = 0; 1259 vc->vc_bottom = vc->vc_rows; 1260 gotoxy(vc, vc->state.x, vc->state.y); 1261 save_cur(vc); 1262 1263 if (tty) { 1264 /* Rewrite the requested winsize data with the actual 1265 resulting sizes */ 1266 struct winsize ws; 1267 memset(&ws, 0, sizeof(ws)); 1268 ws.ws_row = vc->vc_rows; 1269 ws.ws_col = vc->vc_cols; 1270 ws.ws_ypixel = vc->vc_scan_lines; 1271 tty_do_resize(tty, &ws); 1272 } 1273 1274 if (con_is_visible(vc)) 1275 update_screen(vc); 1276 vt_event_post(VT_EVENT_RESIZE, vc->vc_num, vc->vc_num); 1277 notify_update(vc); 1278 return err; 1279 } 1280 1281 /** 1282 * __vc_resize - resize a VT 1283 * @vc: virtual console 1284 * @cols: columns 1285 * @rows: rows 1286 * @from_user: invoked by a user? 1287 * 1288 * Resize a virtual console as seen from the console end of things. We use the 1289 * common vc_do_resize() method to update the structures. 1290 * 1291 * Locking: The caller must hold the console sem to protect console internals 1292 * and @vc->port.tty. 1293 */ 1294 int __vc_resize(struct vc_data *vc, unsigned int cols, unsigned int rows, 1295 bool from_user) 1296 { 1297 return vc_do_resize(vc->port.tty, vc, cols, rows, from_user); 1298 } 1299 EXPORT_SYMBOL(__vc_resize); 1300 1301 /** 1302 * vt_resize - resize a VT 1303 * @tty: tty to resize 1304 * @ws: winsize attributes 1305 * 1306 * Resize a virtual terminal. This is called by the tty layer as we register 1307 * our own handler for resizing. The mutual helper does all the actual work. 1308 * 1309 * Locking: Takes the console sem and the called methods then take the tty 1310 * termios_rwsem and the tty ctrl.lock in that order. 1311 */ 1312 static int vt_resize(struct tty_struct *tty, struct winsize *ws) 1313 { 1314 struct vc_data *vc = tty->driver_data; 1315 1316 guard(console_lock)(); 1317 return vc_do_resize(tty, vc, ws->ws_col, ws->ws_row, false); 1318 } 1319 1320 struct vc_data *vc_deallocate(unsigned int currcons) 1321 { 1322 struct vc_data *vc = NULL; 1323 1324 WARN_CONSOLE_UNLOCKED(); 1325 1326 if (vc_cons_allocated(currcons)) { 1327 struct vt_notifier_param param; 1328 1329 param.vc = vc = vc_cons[currcons].d; 1330 atomic_notifier_call_chain(&vt_notifier_list, VT_DEALLOCATE, ¶m); 1331 vcs_remove_sysfs(currcons); 1332 visual_deinit(vc); 1333 con_free_unimap(vc); 1334 put_pid(vc->vt_pid); 1335 vc_uniscr_set(vc, NULL); 1336 kfree(vc->vc_screenbuf); 1337 vc_cons[currcons].d = NULL; 1338 if (vc->vc_saved_screen != NULL) { 1339 kfree(vc->vc_saved_screen); 1340 vc->vc_saved_screen = NULL; 1341 } 1342 } 1343 return vc; 1344 } 1345 1346 /* 1347 * VT102 emulator 1348 */ 1349 1350 enum { EPecma = 0, EPdec, EPeq, EPgt, EPlt}; 1351 1352 #define set_kbd(vc, x) vt_set_kbd_mode_bit((vc)->vc_num, (x)) 1353 #define clr_kbd(vc, x) vt_clr_kbd_mode_bit((vc)->vc_num, (x)) 1354 #define is_kbd(vc, x) vt_get_kbd_mode_bit((vc)->vc_num, (x)) 1355 1356 #define decarm VC_REPEAT 1357 #define decckm VC_CKMODE 1358 #define kbdapplic VC_APPLIC 1359 #define lnm VC_CRLF 1360 1361 const unsigned char color_table[] = { 0, 4, 2, 6, 1, 5, 3, 7, 1362 8,12,10,14, 9,13,11,15 }; 1363 EXPORT_SYMBOL(color_table); 1364 1365 /* the default colour table, for VGA+ colour systems */ 1366 unsigned char default_red[] = { 1367 0x00, 0xaa, 0x00, 0xaa, 0x00, 0xaa, 0x00, 0xaa, 1368 0x55, 0xff, 0x55, 0xff, 0x55, 0xff, 0x55, 0xff 1369 }; 1370 module_param_array(default_red, byte, NULL, S_IRUGO | S_IWUSR); 1371 EXPORT_SYMBOL(default_red); 1372 1373 unsigned char default_grn[] = { 1374 0x00, 0x00, 0xaa, 0x55, 0x00, 0x00, 0xaa, 0xaa, 1375 0x55, 0x55, 0xff, 0xff, 0x55, 0x55, 0xff, 0xff 1376 }; 1377 module_param_array(default_grn, byte, NULL, S_IRUGO | S_IWUSR); 1378 EXPORT_SYMBOL(default_grn); 1379 1380 unsigned char default_blu[] = { 1381 0x00, 0x00, 0x00, 0x00, 0xaa, 0xaa, 0xaa, 0xaa, 1382 0x55, 0x55, 0x55, 0x55, 0xff, 0xff, 0xff, 0xff 1383 }; 1384 module_param_array(default_blu, byte, NULL, S_IRUGO | S_IWUSR); 1385 EXPORT_SYMBOL(default_blu); 1386 1387 /* 1388 * gotoxy() must verify all boundaries, because the arguments 1389 * might also be negative. If the given position is out of 1390 * bounds, the cursor is placed at the nearest margin. 1391 */ 1392 static void gotoxy(struct vc_data *vc, int new_x, int new_y) 1393 { 1394 int min_y, max_y; 1395 1396 if (new_x < 0) 1397 vc->state.x = 0; 1398 else { 1399 if (new_x >= vc->vc_cols) 1400 vc->state.x = vc->vc_cols - 1; 1401 else 1402 vc->state.x = new_x; 1403 } 1404 1405 if (vc->vc_decom) { 1406 min_y = vc->vc_top; 1407 max_y = vc->vc_bottom; 1408 } else { 1409 min_y = 0; 1410 max_y = vc->vc_rows; 1411 } 1412 if (new_y < min_y) 1413 vc->state.y = min_y; 1414 else if (new_y >= max_y) 1415 vc->state.y = max_y - 1; 1416 else 1417 vc->state.y = new_y; 1418 vc->vc_pos = vc->vc_origin + vc->state.y * vc->vc_size_row + 1419 (vc->state.x << 1); 1420 vc->vc_need_wrap = 0; 1421 } 1422 1423 /* for absolute user moves, when decom is set */ 1424 static void gotoxay(struct vc_data *vc, int new_x, int new_y) 1425 { 1426 gotoxy(vc, new_x, vc->vc_decom ? (vc->vc_top + new_y) : new_y); 1427 } 1428 1429 void scrollback(struct vc_data *vc) 1430 { 1431 scrolldelta(-(vc->vc_rows / 2)); 1432 } 1433 1434 void scrollfront(struct vc_data *vc, int lines) 1435 { 1436 if (!lines) 1437 lines = vc->vc_rows / 2; 1438 scrolldelta(lines); 1439 } 1440 1441 static void lf(struct vc_data *vc) 1442 { 1443 /* don't scroll if above bottom of scrolling region, or 1444 * if below scrolling region 1445 */ 1446 if (vc->state.y + 1 == vc->vc_bottom) 1447 con_scroll(vc, vc->vc_top, vc->vc_bottom, SM_UP, 1); 1448 else if (vc->state.y < vc->vc_rows - 1) { 1449 vc->state.y++; 1450 vc->vc_pos += vc->vc_size_row; 1451 } 1452 vc->vc_need_wrap = 0; 1453 notify_write(vc, '\n'); 1454 } 1455 1456 static void ri(struct vc_data *vc) 1457 { 1458 /* don't scroll if below top of scrolling region, or 1459 * if above scrolling region 1460 */ 1461 if (vc->state.y == vc->vc_top) 1462 con_scroll(vc, vc->vc_top, vc->vc_bottom, SM_DOWN, 1); 1463 else if (vc->state.y > 0) { 1464 vc->state.y--; 1465 vc->vc_pos -= vc->vc_size_row; 1466 } 1467 vc->vc_need_wrap = 0; 1468 } 1469 1470 static inline void cr(struct vc_data *vc) 1471 { 1472 vc->vc_pos -= vc->state.x << 1; 1473 vc->vc_need_wrap = vc->state.x = 0; 1474 notify_write(vc, '\r'); 1475 } 1476 1477 static inline void bs(struct vc_data *vc) 1478 { 1479 if (vc->state.x) { 1480 vc->vc_pos -= 2; 1481 vc->state.x--; 1482 vc->vc_need_wrap = 0; 1483 notify_write(vc, '\b'); 1484 } 1485 } 1486 1487 static inline void del(struct vc_data *vc) 1488 { 1489 /* ignored */ 1490 } 1491 1492 enum CSI_J { 1493 CSI_J_CURSOR_TO_END = 0, 1494 CSI_J_START_TO_CURSOR = 1, 1495 CSI_J_VISIBLE = 2, 1496 CSI_J_FULL = 3, 1497 }; 1498 1499 static void csi_J(struct vc_data *vc, enum CSI_J vpar) 1500 { 1501 unsigned short *start; 1502 unsigned int count; 1503 1504 switch (vpar) { 1505 case CSI_J_CURSOR_TO_END: 1506 vc_uniscr_clear_line(vc, vc->state.x, 1507 vc->vc_cols - vc->state.x); 1508 vc_uniscr_clear_lines(vc, vc->state.y + 1, 1509 vc->vc_rows - vc->state.y - 1); 1510 count = (vc->vc_scr_end - vc->vc_pos) >> 1; 1511 start = (unsigned short *)vc->vc_pos; 1512 break; 1513 case CSI_J_START_TO_CURSOR: 1514 vc_uniscr_clear_line(vc, 0, vc->state.x + 1); 1515 vc_uniscr_clear_lines(vc, 0, vc->state.y); 1516 count = ((vc->vc_pos - vc->vc_origin) >> 1) + 1; 1517 start = (unsigned short *)vc->vc_origin; 1518 break; 1519 case CSI_J_FULL: 1520 flush_scrollback(vc); 1521 fallthrough; 1522 case CSI_J_VISIBLE: 1523 vc_uniscr_clear_lines(vc, 0, vc->vc_rows); 1524 count = vc->vc_cols * vc->vc_rows; 1525 start = (unsigned short *)vc->vc_origin; 1526 break; 1527 default: 1528 return; 1529 } 1530 scr_memsetw(start, vc->vc_video_erase_char, 2 * count); 1531 if (con_should_update(vc)) 1532 do_update_region(vc, (unsigned long) start, count); 1533 vc->vc_need_wrap = 0; 1534 } 1535 1536 enum { 1537 CSI_K_CURSOR_TO_LINEEND = 0, 1538 CSI_K_LINESTART_TO_CURSOR = 1, 1539 CSI_K_LINE = 2, 1540 }; 1541 1542 static void csi_K(struct vc_data *vc) 1543 { 1544 unsigned int count; 1545 unsigned short *start = (unsigned short *)vc->vc_pos; 1546 int offset; 1547 1548 switch (vc->vc_par[0]) { 1549 case CSI_K_CURSOR_TO_LINEEND: 1550 offset = 0; 1551 count = vc->vc_cols - vc->state.x; 1552 break; 1553 case CSI_K_LINESTART_TO_CURSOR: 1554 offset = -vc->state.x; 1555 count = vc->state.x + 1; 1556 break; 1557 case CSI_K_LINE: 1558 offset = -vc->state.x; 1559 count = vc->vc_cols; 1560 break; 1561 default: 1562 return; 1563 } 1564 vc_uniscr_clear_line(vc, vc->state.x + offset, count); 1565 scr_memsetw(start + offset, vc->vc_video_erase_char, 2 * count); 1566 vc->vc_need_wrap = 0; 1567 if (con_should_update(vc)) 1568 do_update_region(vc, (unsigned long)(start + offset), count); 1569 } 1570 1571 /* erase the following count positions */ 1572 static void csi_X(struct vc_data *vc) 1573 { /* not vt100? */ 1574 unsigned int count = clamp(vc->vc_par[0], 1, vc->vc_cols - vc->state.x); 1575 1576 vc_uniscr_clear_line(vc, vc->state.x, count); 1577 scr_memsetw((unsigned short *)vc->vc_pos, vc->vc_video_erase_char, 2 * count); 1578 if (con_should_update(vc)) 1579 vc->vc_sw->con_clear(vc, vc->state.y, vc->state.x, count); 1580 vc->vc_need_wrap = 0; 1581 } 1582 1583 static void default_attr(struct vc_data *vc) 1584 { 1585 vc->state.intensity = VCI_NORMAL; 1586 vc->state.italic = false; 1587 vc->state.underline = false; 1588 vc->state.reverse = false; 1589 vc->state.blink = false; 1590 vc->state.color = vc->vc_def_color; 1591 } 1592 1593 struct rgb { u8 r; u8 g; u8 b; }; 1594 1595 static void rgb_from_256(unsigned int i, struct rgb *c) 1596 { 1597 if (i < 8) { /* Standard colours. */ 1598 c->r = i&1 ? 0xaa : 0x00; 1599 c->g = i&2 ? 0xaa : 0x00; 1600 c->b = i&4 ? 0xaa : 0x00; 1601 } else if (i < 16) { 1602 c->r = i&1 ? 0xff : 0x55; 1603 c->g = i&2 ? 0xff : 0x55; 1604 c->b = i&4 ? 0xff : 0x55; 1605 } else if (i < 232) { /* 6x6x6 colour cube. */ 1606 i -= 16; 1607 c->b = i % 6 * 255 / 6; 1608 i /= 6; 1609 c->g = i % 6 * 255 / 6; 1610 i /= 6; 1611 c->r = i * 255 / 6; 1612 } else /* Grayscale ramp. */ 1613 c->r = c->g = c->b = i * 10 - 2312; 1614 } 1615 1616 static void rgb_foreground(struct vc_data *vc, const struct rgb *c) 1617 { 1618 u8 hue = 0, max = max3(c->r, c->g, c->b); 1619 1620 if (c->r > max / 2) 1621 hue |= 4; 1622 if (c->g > max / 2) 1623 hue |= 2; 1624 if (c->b > max / 2) 1625 hue |= 1; 1626 1627 if (hue == 7 && max <= 0x55) { 1628 hue = 0; 1629 vc->state.intensity = VCI_BOLD; 1630 } else if (max > 0xaa) 1631 vc->state.intensity = VCI_BOLD; 1632 else 1633 vc->state.intensity = VCI_NORMAL; 1634 1635 vc->state.color = (vc->state.color & 0xf0) | hue; 1636 } 1637 1638 static void rgb_background(struct vc_data *vc, const struct rgb *c) 1639 { 1640 /* For backgrounds, err on the dark side. */ 1641 vc->state.color = (vc->state.color & 0x0f) 1642 | (c->r&0x80) >> 1 | (c->g&0x80) >> 2 | (c->b&0x80) >> 3; 1643 } 1644 1645 /* 1646 * ITU T.416 Higher colour modes. They break the usual properties of SGR codes 1647 * and thus need to be detected and ignored by hand. That standard also 1648 * wants : rather than ; as separators but sequences containing : are currently 1649 * completely ignored by the parser. 1650 * 1651 * Subcommands 3 (CMY) and 4 (CMYK) are so insane there's no point in 1652 * supporting them. 1653 */ 1654 static int vc_t416_color(struct vc_data *vc, int i, 1655 void(*set_color)(struct vc_data *vc, const struct rgb *c)) 1656 { 1657 struct rgb c; 1658 1659 i++; 1660 if (i > vc->vc_npar) 1661 return i; 1662 1663 if (vc->vc_par[i] == 5 && i + 1 <= vc->vc_npar) { 1664 /* 256 colours */ 1665 i++; 1666 rgb_from_256(vc->vc_par[i], &c); 1667 } else if (vc->vc_par[i] == 2 && i + 3 <= vc->vc_npar) { 1668 /* 24 bit */ 1669 c.r = vc->vc_par[i + 1]; 1670 c.g = vc->vc_par[i + 2]; 1671 c.b = vc->vc_par[i + 3]; 1672 i += 3; 1673 } else 1674 return i; 1675 1676 set_color(vc, &c); 1677 1678 return i; 1679 } 1680 1681 enum { 1682 CSI_m_DEFAULT = 0, 1683 CSI_m_BOLD = 1, 1684 CSI_m_HALF_BRIGHT = 2, 1685 CSI_m_ITALIC = 3, 1686 CSI_m_UNDERLINE = 4, 1687 CSI_m_BLINK = 5, 1688 CSI_m_REVERSE = 7, 1689 CSI_m_PRI_FONT = 10, 1690 CSI_m_ALT_FONT1 = 11, 1691 CSI_m_ALT_FONT2 = 12, 1692 CSI_m_DOUBLE_UNDERLINE = 21, 1693 CSI_m_NORMAL_INTENSITY = 22, 1694 CSI_m_NO_ITALIC = 23, 1695 CSI_m_NO_UNDERLINE = 24, 1696 CSI_m_NO_BLINK = 25, 1697 CSI_m_NO_REVERSE = 27, 1698 CSI_m_FG_COLOR_BEG = 30, 1699 CSI_m_FG_COLOR_END = 37, 1700 CSI_m_FG_COLOR = 38, 1701 CSI_m_DEFAULT_FG_COLOR = 39, 1702 CSI_m_BG_COLOR_BEG = 40, 1703 CSI_m_BG_COLOR_END = 47, 1704 CSI_m_BG_COLOR = 48, 1705 CSI_m_DEFAULT_BG_COLOR = 49, 1706 CSI_m_BRIGHT_FG_COLOR_BEG = 90, 1707 CSI_m_BRIGHT_FG_COLOR_END = 97, 1708 CSI_m_BRIGHT_FG_COLOR_OFF = CSI_m_BRIGHT_FG_COLOR_BEG - CSI_m_FG_COLOR_BEG, 1709 CSI_m_BRIGHT_BG_COLOR_BEG = 100, 1710 CSI_m_BRIGHT_BG_COLOR_END = 107, 1711 CSI_m_BRIGHT_BG_COLOR_OFF = CSI_m_BRIGHT_BG_COLOR_BEG - CSI_m_BG_COLOR_BEG, 1712 }; 1713 1714 /* console_lock is held */ 1715 static void csi_m(struct vc_data *vc) 1716 { 1717 int i; 1718 1719 for (i = 0; i <= vc->vc_npar; i++) 1720 switch (vc->vc_par[i]) { 1721 case CSI_m_DEFAULT: /* all attributes off */ 1722 default_attr(vc); 1723 break; 1724 case CSI_m_BOLD: 1725 vc->state.intensity = VCI_BOLD; 1726 break; 1727 case CSI_m_HALF_BRIGHT: 1728 vc->state.intensity = VCI_HALF_BRIGHT; 1729 break; 1730 case CSI_m_ITALIC: 1731 vc->state.italic = true; 1732 break; 1733 case CSI_m_DOUBLE_UNDERLINE: 1734 /* 1735 * No console drivers support double underline, so 1736 * convert it to a single underline. 1737 */ 1738 case CSI_m_UNDERLINE: 1739 vc->state.underline = true; 1740 break; 1741 case CSI_m_BLINK: 1742 vc->state.blink = true; 1743 break; 1744 case CSI_m_REVERSE: 1745 vc->state.reverse = true; 1746 break; 1747 case CSI_m_PRI_FONT: /* ANSI X3.64-1979 (SCO-ish?) 1748 * Select primary font, don't display control chars if 1749 * defined, don't set bit 8 on output. 1750 */ 1751 vc->vc_translate = set_translate(vc->state.Gx_charset[vc->state.charset], vc); 1752 vc->vc_disp_ctrl = 0; 1753 vc->vc_toggle_meta = 0; 1754 break; 1755 case CSI_m_ALT_FONT1: /* ANSI X3.64-1979 (SCO-ish?) 1756 * Select first alternate font, lets chars < 32 be 1757 * displayed as ROM chars. 1758 */ 1759 vc->vc_translate = set_translate(IBMPC_MAP, vc); 1760 vc->vc_disp_ctrl = 1; 1761 vc->vc_toggle_meta = 0; 1762 break; 1763 case CSI_m_ALT_FONT2: /* ANSI X3.64-1979 (SCO-ish?) 1764 * Select second alternate font, toggle high bit 1765 * before displaying as ROM char. 1766 */ 1767 vc->vc_translate = set_translate(IBMPC_MAP, vc); 1768 vc->vc_disp_ctrl = 1; 1769 vc->vc_toggle_meta = 1; 1770 break; 1771 case CSI_m_NORMAL_INTENSITY: 1772 vc->state.intensity = VCI_NORMAL; 1773 break; 1774 case CSI_m_NO_ITALIC: 1775 vc->state.italic = false; 1776 break; 1777 case CSI_m_NO_UNDERLINE: 1778 vc->state.underline = false; 1779 break; 1780 case CSI_m_NO_BLINK: 1781 vc->state.blink = false; 1782 break; 1783 case CSI_m_NO_REVERSE: 1784 vc->state.reverse = false; 1785 break; 1786 case CSI_m_FG_COLOR: 1787 i = vc_t416_color(vc, i, rgb_foreground); 1788 break; 1789 case CSI_m_BG_COLOR: 1790 i = vc_t416_color(vc, i, rgb_background); 1791 break; 1792 case CSI_m_DEFAULT_FG_COLOR: 1793 vc->state.color = (vc->vc_def_color & 0x0f) | 1794 (vc->state.color & 0xf0); 1795 break; 1796 case CSI_m_DEFAULT_BG_COLOR: 1797 vc->state.color = (vc->vc_def_color & 0xf0) | 1798 (vc->state.color & 0x0f); 1799 break; 1800 case CSI_m_BRIGHT_FG_COLOR_BEG ... CSI_m_BRIGHT_FG_COLOR_END: 1801 vc->state.intensity = VCI_BOLD; 1802 vc->vc_par[i] -= CSI_m_BRIGHT_FG_COLOR_OFF; 1803 fallthrough; 1804 case CSI_m_FG_COLOR_BEG ... CSI_m_FG_COLOR_END: 1805 vc->vc_par[i] -= CSI_m_FG_COLOR_BEG; 1806 vc->state.color = color_table[vc->vc_par[i]] | 1807 (vc->state.color & 0xf0); 1808 break; 1809 case CSI_m_BRIGHT_BG_COLOR_BEG ... CSI_m_BRIGHT_BG_COLOR_END: 1810 vc->vc_par[i] -= CSI_m_BRIGHT_BG_COLOR_OFF; 1811 fallthrough; 1812 case CSI_m_BG_COLOR_BEG ... CSI_m_BG_COLOR_END: 1813 vc->vc_par[i] -= CSI_m_BG_COLOR_BEG; 1814 vc->state.color = (color_table[vc->vc_par[i]] << 4) | 1815 (vc->state.color & 0x0f); 1816 break; 1817 } 1818 update_attr(vc); 1819 } 1820 1821 static void respond_string(const char *p, size_t len, struct tty_port *port) 1822 { 1823 tty_insert_flip_string(port, p, len); 1824 tty_flip_buffer_push(port); 1825 } 1826 1827 static void cursor_report(struct vc_data *vc, struct tty_struct *tty) 1828 { 1829 char buf[40]; 1830 int len; 1831 1832 len = sprintf(buf, "\033[%d;%dR", vc->state.y + 1833 (vc->vc_decom ? vc->vc_top + 1 : 1), 1834 vc->state.x + 1); 1835 respond_string(buf, len, tty->port); 1836 } 1837 1838 static inline void status_report(struct tty_struct *tty) 1839 { 1840 static const char teminal_ok[] = "\033[0n"; 1841 1842 respond_string(teminal_ok, strlen(teminal_ok), tty->port); 1843 } 1844 1845 static inline void respond_ID(struct tty_struct *tty) 1846 { 1847 /* terminal answer to an ESC-Z or csi0c query. */ 1848 static const char vt102_id[] = "\033[?6c"; 1849 1850 respond_string(vt102_id, strlen(vt102_id), tty->port); 1851 } 1852 1853 void mouse_report(struct tty_struct *tty, int butt, int mrx, int mry) 1854 { 1855 char buf[8]; 1856 int len; 1857 1858 len = sprintf(buf, "\033[M%c%c%c", (char)(' ' + butt), 1859 (char)('!' + mrx), (char)('!' + mry)); 1860 respond_string(buf, len, tty->port); 1861 } 1862 1863 /* invoked via ioctl(TIOCLINUX) and through set_selection_user */ 1864 int mouse_reporting(void) 1865 { 1866 return vc_cons[fg_console].d->vc_report_mouse; 1867 } 1868 1869 /* invoked via ioctl(TIOCLINUX) */ 1870 static int get_bracketed_paste(struct tty_struct *tty) 1871 { 1872 struct vc_data *vc = tty->driver_data; 1873 1874 return vc->vc_bracketed_paste; 1875 } 1876 1877 /* console_lock is held */ 1878 static void enter_alt_screen(struct vc_data *vc) 1879 { 1880 unsigned int size = vc->vc_rows * vc->vc_cols * 2; 1881 1882 if (vc->vc_saved_screen != NULL) 1883 return; /* Already inside an alt-screen */ 1884 vc->vc_saved_screen = kmemdup((u16 *)vc->vc_origin, size, GFP_KERNEL); 1885 if (vc->vc_saved_screen == NULL) 1886 return; 1887 vc->vc_saved_rows = vc->vc_rows; 1888 vc->vc_saved_cols = vc->vc_cols; 1889 save_cur(vc); 1890 /* clear entire screen */ 1891 csi_J(vc, CSI_J_FULL); 1892 } 1893 1894 /* console_lock is held */ 1895 static void leave_alt_screen(struct vc_data *vc) 1896 { 1897 unsigned int rows = min(vc->vc_saved_rows, vc->vc_rows); 1898 unsigned int cols = min(vc->vc_saved_cols, vc->vc_cols); 1899 u16 *src, *dest; 1900 1901 if (vc->vc_saved_screen == NULL) 1902 return; /* Not inside an alt-screen */ 1903 for (unsigned int r = 0; r < rows; r++) { 1904 src = vc->vc_saved_screen + r * vc->vc_saved_cols; 1905 dest = ((u16 *)vc->vc_origin) + r * vc->vc_cols; 1906 memcpy(dest, src, 2 * cols); 1907 } 1908 restore_cur(vc); 1909 /* Update the entire screen */ 1910 if (con_should_update(vc)) 1911 do_update_region(vc, vc->vc_origin, vc->vc_screenbuf_size / 2); 1912 kfree(vc->vc_saved_screen); 1913 vc->vc_saved_screen = NULL; 1914 } 1915 1916 enum { 1917 CSI_DEC_hl_CURSOR_KEYS = 1, /* CKM: cursor keys send ^[Ox/^[[x */ 1918 CSI_DEC_hl_132_COLUMNS = 3, /* COLM: 80/132 mode switch */ 1919 CSI_DEC_hl_REVERSE_VIDEO = 5, /* SCNM */ 1920 CSI_DEC_hl_ORIGIN_MODE = 6, /* OM: origin relative/absolute */ 1921 CSI_DEC_hl_AUTOWRAP = 7, /* AWM */ 1922 CSI_DEC_hl_AUTOREPEAT = 8, /* ARM */ 1923 CSI_DEC_hl_MOUSE_X10 = 9, 1924 CSI_DEC_hl_SHOW_CURSOR = 25, /* TCEM */ 1925 CSI_DEC_hl_MOUSE_VT200 = 1000, 1926 CSI_DEC_hl_ALT_SCREEN = 1049, 1927 CSI_DEC_hl_BRACKETED_PASTE = 2004, 1928 }; 1929 1930 /* console_lock is held */ 1931 static void csi_DEC_hl(struct vc_data *vc, bool on_off) 1932 { 1933 unsigned int i; 1934 1935 for (i = 0; i <= vc->vc_npar; i++) 1936 switch (vc->vc_par[i]) { 1937 case CSI_DEC_hl_CURSOR_KEYS: 1938 if (on_off) 1939 set_kbd(vc, decckm); 1940 else 1941 clr_kbd(vc, decckm); 1942 break; 1943 case CSI_DEC_hl_132_COLUMNS: /* unimplemented */ 1944 #if 0 1945 vc_resize(deccolm ? 132 : 80, vc->vc_rows); 1946 /* this alone does not suffice; some user mode 1947 utility has to change the hardware regs */ 1948 #endif 1949 break; 1950 case CSI_DEC_hl_REVERSE_VIDEO: 1951 if (vc->vc_decscnm != on_off) { 1952 vc->vc_decscnm = on_off; 1953 invert_screen(vc, 0, vc->vc_screenbuf_size, 1954 false); 1955 update_attr(vc); 1956 } 1957 break; 1958 case CSI_DEC_hl_ORIGIN_MODE: 1959 vc->vc_decom = on_off; 1960 gotoxay(vc, 0, 0); 1961 break; 1962 case CSI_DEC_hl_AUTOWRAP: 1963 vc->vc_decawm = on_off; 1964 break; 1965 case CSI_DEC_hl_AUTOREPEAT: 1966 if (on_off) 1967 set_kbd(vc, decarm); 1968 else 1969 clr_kbd(vc, decarm); 1970 break; 1971 case CSI_DEC_hl_MOUSE_X10: 1972 vc->vc_report_mouse = on_off ? 1 : 0; 1973 break; 1974 case CSI_DEC_hl_SHOW_CURSOR: 1975 vc->vc_deccm = on_off; 1976 break; 1977 case CSI_DEC_hl_MOUSE_VT200: 1978 vc->vc_report_mouse = on_off ? 2 : 0; 1979 break; 1980 case CSI_DEC_hl_BRACKETED_PASTE: 1981 vc->vc_bracketed_paste = on_off; 1982 break; 1983 case CSI_DEC_hl_ALT_SCREEN: 1984 if (on_off) 1985 enter_alt_screen(vc); 1986 else 1987 leave_alt_screen(vc); 1988 break; 1989 } 1990 } 1991 1992 enum { 1993 CSI_hl_DISPLAY_CTRL = 3, /* handle ansi control chars */ 1994 CSI_hl_INSERT = 4, /* IRM: insert/replace */ 1995 CSI_hl_AUTO_NL = 20, /* LNM: Enter == CrLf/Lf */ 1996 }; 1997 1998 /* console_lock is held */ 1999 static void csi_hl(struct vc_data *vc, bool on_off) 2000 { 2001 unsigned int i; 2002 2003 for (i = 0; i <= vc->vc_npar; i++) 2004 switch (vc->vc_par[i]) { /* ANSI modes set/reset */ 2005 case CSI_hl_DISPLAY_CTRL: 2006 vc->vc_disp_ctrl = on_off; 2007 break; 2008 case CSI_hl_INSERT: 2009 vc->vc_decim = on_off; 2010 break; 2011 case CSI_hl_AUTO_NL: 2012 if (on_off) 2013 set_kbd(vc, lnm); 2014 else 2015 clr_kbd(vc, lnm); 2016 break; 2017 } 2018 } 2019 2020 enum CSI_right_square_bracket { 2021 CSI_RSB_COLOR_FOR_UNDERLINE = 1, 2022 CSI_RSB_COLOR_FOR_HALF_BRIGHT = 2, 2023 CSI_RSB_MAKE_CUR_COLOR_DEFAULT = 8, 2024 CSI_RSB_BLANKING_INTERVAL = 9, 2025 CSI_RSB_BELL_FREQUENCY = 10, 2026 CSI_RSB_BELL_DURATION = 11, 2027 CSI_RSB_BRING_CONSOLE_TO_FRONT = 12, 2028 CSI_RSB_UNBLANK = 13, 2029 CSI_RSB_VESA_OFF_INTERVAL = 14, 2030 CSI_RSB_BRING_PREV_CONSOLE_TO_FRONT = 15, 2031 CSI_RSB_CURSOR_BLINK_INTERVAL = 16, 2032 }; 2033 2034 /* 2035 * csi_RSB - csi+] (Right Square Bracket) handler 2036 * 2037 * These are linux console private sequences. 2038 * 2039 * console_lock is held 2040 */ 2041 static void csi_RSB(struct vc_data *vc) 2042 { 2043 switch (vc->vc_par[0]) { 2044 case CSI_RSB_COLOR_FOR_UNDERLINE: 2045 if (vc->vc_can_do_color && vc->vc_par[1] < 16) { 2046 vc->vc_ulcolor = color_table[vc->vc_par[1]]; 2047 if (vc->state.underline) 2048 update_attr(vc); 2049 } 2050 break; 2051 case CSI_RSB_COLOR_FOR_HALF_BRIGHT: 2052 if (vc->vc_can_do_color && vc->vc_par[1] < 16) { 2053 vc->vc_halfcolor = color_table[vc->vc_par[1]]; 2054 if (vc->state.intensity == VCI_HALF_BRIGHT) 2055 update_attr(vc); 2056 } 2057 break; 2058 case CSI_RSB_MAKE_CUR_COLOR_DEFAULT: 2059 vc->vc_def_color = vc->vc_attr; 2060 if (vc->vc_hi_font_mask == 0x100) 2061 vc->vc_def_color >>= 1; 2062 default_attr(vc); 2063 update_attr(vc); 2064 break; 2065 case CSI_RSB_BLANKING_INTERVAL: 2066 blankinterval = min(vc->vc_par[1], 60U) * 60; 2067 poke_blanked_console(); 2068 break; 2069 case CSI_RSB_BELL_FREQUENCY: 2070 if (vc->vc_npar >= 1) 2071 vc->vc_bell_pitch = vc->vc_par[1]; 2072 else 2073 vc->vc_bell_pitch = DEFAULT_BELL_PITCH; 2074 break; 2075 case CSI_RSB_BELL_DURATION: 2076 if (vc->vc_npar >= 1) 2077 vc->vc_bell_duration = (vc->vc_par[1] < 2000) ? 2078 msecs_to_jiffies(vc->vc_par[1]) : 0; 2079 else 2080 vc->vc_bell_duration = DEFAULT_BELL_DURATION; 2081 break; 2082 case CSI_RSB_BRING_CONSOLE_TO_FRONT: 2083 if (vc->vc_par[1] >= 1 && vc_cons_allocated(vc->vc_par[1] - 1)) 2084 set_console(vc->vc_par[1] - 1); 2085 break; 2086 case CSI_RSB_UNBLANK: 2087 poke_blanked_console(); 2088 break; 2089 case CSI_RSB_VESA_OFF_INTERVAL: 2090 vesa_off_interval = min(vc->vc_par[1], 60U) * 60 * HZ; 2091 break; 2092 case CSI_RSB_BRING_PREV_CONSOLE_TO_FRONT: 2093 set_console(last_console); 2094 break; 2095 case CSI_RSB_CURSOR_BLINK_INTERVAL: 2096 if (vc->vc_npar >= 1 && vc->vc_par[1] >= 50 && 2097 vc->vc_par[1] <= USHRT_MAX) 2098 vc->vc_cur_blink_ms = vc->vc_par[1]; 2099 else 2100 vc->vc_cur_blink_ms = DEFAULT_CURSOR_BLINK_MS; 2101 break; 2102 } 2103 } 2104 2105 /* console_lock is held */ 2106 static void csi_at(struct vc_data *vc, unsigned int nr) 2107 { 2108 nr = clamp(nr, 1, vc->vc_cols - vc->state.x); 2109 insert_char(vc, nr); 2110 } 2111 2112 /* console_lock is held */ 2113 static void csi_L(struct vc_data *vc) 2114 { 2115 unsigned int nr = clamp(vc->vc_par[0], 1, vc->vc_rows - vc->state.y); 2116 2117 con_scroll(vc, vc->state.y, vc->vc_bottom, SM_DOWN, nr); 2118 vc->vc_need_wrap = 0; 2119 } 2120 2121 /* console_lock is held */ 2122 static void csi_P(struct vc_data *vc) 2123 { 2124 unsigned int nr = clamp(vc->vc_par[0], 1, vc->vc_cols - vc->state.x); 2125 2126 delete_char(vc, nr); 2127 } 2128 2129 /* console_lock is held */ 2130 static void csi_M(struct vc_data *vc) 2131 { 2132 unsigned int nr = clamp(vc->vc_par[0], 1, vc->vc_rows - vc->state.y); 2133 2134 con_scroll(vc, vc->state.y, vc->vc_bottom, SM_UP, nr); 2135 vc->vc_need_wrap = 0; 2136 } 2137 2138 /* console_lock is held (except via vc_init->reset_terminal */ 2139 static void save_cur(struct vc_data *vc) 2140 { 2141 memcpy(&vc->saved_state, &vc->state, sizeof(vc->state)); 2142 } 2143 2144 /* console_lock is held */ 2145 static void restore_cur(struct vc_data *vc) 2146 { 2147 memcpy(&vc->state, &vc->saved_state, sizeof(vc->state)); 2148 2149 gotoxy(vc, vc->state.x, vc->state.y); 2150 vc->vc_translate = set_translate(vc->state.Gx_charset[vc->state.charset], 2151 vc); 2152 update_attr(vc); 2153 vc->vc_need_wrap = 0; 2154 } 2155 2156 /** 2157 * enum vc_ctl_state - control characters state of a vt 2158 * 2159 * @ESnormal: initial state, no control characters parsed 2160 * @ESesc: ESC parsed 2161 * @ESsquare: CSI parsed -- modifiers/parameters/ctrl chars expected 2162 * @ESgetpars: CSI parsed -- parameters/ctrl chars expected 2163 * @ESfunckey: CSI [ parsed 2164 * @EShash: ESC # parsed 2165 * @ESsetG0: ESC ( parsed 2166 * @ESsetG1: ESC ) parsed 2167 * @ESpercent: ESC % parsed 2168 * @EScsiignore: CSI [0x20-0x3f] parsed 2169 * @ESnonstd: OSC parsed 2170 * @ESpalette: OSC P parsed 2171 * @ESosc: OSC [0-9] parsed 2172 * @ESANSI_first: first state for ignoring ansi control sequences 2173 * @ESapc: ESC _ parsed 2174 * @ESpm: ESC ^ parsed 2175 * @ESdcs: ESC P parsed 2176 * @ESANSI_last: last state for ignoring ansi control sequences 2177 */ 2178 enum vc_ctl_state { 2179 ESnormal, 2180 ESesc, 2181 ESsquare, 2182 ESgetpars, 2183 ESfunckey, 2184 EShash, 2185 ESsetG0, 2186 ESsetG1, 2187 ESpercent, 2188 EScsiignore, 2189 ESnonstd, 2190 ESpalette, 2191 ESosc, 2192 ESANSI_first = ESosc, 2193 ESapc, 2194 ESpm, 2195 ESdcs, 2196 ESANSI_last = ESdcs, 2197 }; 2198 2199 /* console_lock is held (except via vc_init()) */ 2200 static void reset_terminal(struct vc_data *vc, int do_clear) 2201 { 2202 unsigned int i; 2203 2204 vc->vc_top = 0; 2205 vc->vc_bottom = vc->vc_rows; 2206 vc->vc_state = ESnormal; 2207 vc->vc_priv = EPecma; 2208 vc->vc_translate = set_translate(LAT1_MAP, vc); 2209 vc->state.Gx_charset[0] = LAT1_MAP; 2210 vc->state.Gx_charset[1] = GRAF_MAP; 2211 vc->state.charset = 0; 2212 vc->vc_need_wrap = 0; 2213 vc->vc_report_mouse = 0; 2214 vc->vc_bracketed_paste = 0; 2215 vc->vc_utf = default_utf8; 2216 vc->vc_utf_count = 0; 2217 2218 vc->vc_disp_ctrl = 0; 2219 vc->vc_toggle_meta = 0; 2220 2221 vc->vc_decscnm = 0; 2222 vc->vc_decom = 0; 2223 vc->vc_decawm = 1; 2224 vc->vc_deccm = global_cursor_default; 2225 vc->vc_decim = 0; 2226 2227 if (vc->vc_saved_screen != NULL) { 2228 kfree(vc->vc_saved_screen); 2229 vc->vc_saved_screen = NULL; 2230 vc->vc_saved_rows = 0; 2231 vc->vc_saved_cols = 0; 2232 } 2233 2234 vt_reset_keyboard(vc->vc_num); 2235 2236 vc->vc_cursor_type = cur_default; 2237 vc->vc_complement_mask = vc->vc_s_complement_mask; 2238 2239 default_attr(vc); 2240 update_attr(vc); 2241 2242 bitmap_zero(vc->vc_tab_stop, VC_TABSTOPS_COUNT); 2243 for (i = 0; i < VC_TABSTOPS_COUNT; i += 8) 2244 set_bit(i, vc->vc_tab_stop); 2245 2246 vc->vc_bell_pitch = DEFAULT_BELL_PITCH; 2247 vc->vc_bell_duration = DEFAULT_BELL_DURATION; 2248 vc->vc_cur_blink_ms = DEFAULT_CURSOR_BLINK_MS; 2249 2250 gotoxy(vc, 0, 0); 2251 save_cur(vc); 2252 if (do_clear) 2253 csi_J(vc, CSI_J_VISIBLE); 2254 } 2255 2256 static void vc_setGx(struct vc_data *vc, unsigned int which, u8 c) 2257 { 2258 unsigned char *charset = &vc->state.Gx_charset[which]; 2259 2260 switch (c) { 2261 case '0': 2262 *charset = GRAF_MAP; 2263 break; 2264 case 'B': 2265 *charset = LAT1_MAP; 2266 break; 2267 case 'U': 2268 *charset = IBMPC_MAP; 2269 break; 2270 case 'K': 2271 *charset = USER_MAP; 2272 break; 2273 } 2274 2275 if (vc->state.charset == which) 2276 vc->vc_translate = set_translate(*charset, vc); 2277 } 2278 2279 static bool ansi_control_string(enum vc_ctl_state state) 2280 { 2281 return state >= ESANSI_first && state <= ESANSI_last; 2282 } 2283 2284 enum { 2285 ASCII_NULL = 0, 2286 ASCII_BELL = 7, 2287 ASCII_BACKSPACE = 8, 2288 ASCII_IGNORE_FIRST = ASCII_BACKSPACE, 2289 ASCII_HTAB = 9, 2290 ASCII_LINEFEED = 10, 2291 ASCII_VTAB = 11, 2292 ASCII_FORMFEED = 12, 2293 ASCII_CAR_RET = 13, 2294 ASCII_IGNORE_LAST = ASCII_CAR_RET, 2295 ASCII_SHIFTOUT = 14, 2296 ASCII_SHIFTIN = 15, 2297 ASCII_CANCEL = 24, 2298 ASCII_SUBSTITUTE = 26, 2299 ASCII_ESCAPE = 27, 2300 ASCII_CSI_IGNORE_FIRST = ' ', /* 0x2x, 0x3a and 0x3c - 0x3f */ 2301 ASCII_CSI_IGNORE_LAST = '?', 2302 ASCII_DEL = 127, 2303 ASCII_EXT_CSI = 128 + ASCII_ESCAPE, 2304 }; 2305 2306 /* 2307 * Handle ascii characters in control sequences and change states accordingly. 2308 * E.g. ESC sets the state of vc to ESesc. 2309 * 2310 * Returns: true if @c handled. 2311 */ 2312 static bool handle_ascii(struct tty_struct *tty, struct vc_data *vc, u8 c) 2313 { 2314 switch (c) { 2315 case ASCII_NULL: 2316 return true; 2317 case ASCII_BELL: 2318 if (ansi_control_string(vc->vc_state)) 2319 vc->vc_state = ESnormal; 2320 else if (vc->vc_bell_duration) 2321 kd_mksound(vc->vc_bell_pitch, vc->vc_bell_duration); 2322 return true; 2323 case ASCII_BACKSPACE: 2324 bs(vc); 2325 return true; 2326 case ASCII_HTAB: 2327 vc->vc_pos -= (vc->state.x << 1); 2328 2329 vc->state.x = find_next_bit(vc->vc_tab_stop, 2330 min(vc->vc_cols - 1, VC_TABSTOPS_COUNT), 2331 vc->state.x + 1); 2332 if (vc->state.x >= VC_TABSTOPS_COUNT) 2333 vc->state.x = vc->vc_cols - 1; 2334 2335 vc->vc_pos += (vc->state.x << 1); 2336 notify_write(vc, '\t'); 2337 return true; 2338 case ASCII_LINEFEED: 2339 case ASCII_VTAB: 2340 case ASCII_FORMFEED: 2341 lf(vc); 2342 if (!is_kbd(vc, lnm)) 2343 return true; 2344 fallthrough; 2345 case ASCII_CAR_RET: 2346 cr(vc); 2347 return true; 2348 case ASCII_SHIFTOUT: 2349 vc->state.charset = 1; 2350 vc->vc_translate = set_translate(vc->state.Gx_charset[1], vc); 2351 vc->vc_disp_ctrl = 1; 2352 return true; 2353 case ASCII_SHIFTIN: 2354 vc->state.charset = 0; 2355 vc->vc_translate = set_translate(vc->state.Gx_charset[0], vc); 2356 vc->vc_disp_ctrl = 0; 2357 return true; 2358 case ASCII_CANCEL: 2359 case ASCII_SUBSTITUTE: 2360 vc->vc_state = ESnormal; 2361 return true; 2362 case ASCII_ESCAPE: 2363 vc->vc_state = ESesc; 2364 return true; 2365 case ASCII_DEL: 2366 del(vc); 2367 return true; 2368 case ASCII_EXT_CSI: 2369 vc->vc_state = ESsquare; 2370 return true; 2371 } 2372 2373 return false; 2374 } 2375 2376 /* 2377 * Handle a character (@c) following an ESC (when @vc is in the ESesc state). 2378 * E.g. previous ESC with @c == '[' here yields the ESsquare state (that is: 2379 * CSI). 2380 */ 2381 static void handle_esc(struct tty_struct *tty, struct vc_data *vc, u8 c) 2382 { 2383 vc->vc_state = ESnormal; 2384 switch (c) { 2385 case '[': 2386 vc->vc_state = ESsquare; 2387 break; 2388 case ']': 2389 vc->vc_state = ESnonstd; 2390 break; 2391 case '_': 2392 vc->vc_state = ESapc; 2393 break; 2394 case '^': 2395 vc->vc_state = ESpm; 2396 break; 2397 case '%': 2398 vc->vc_state = ESpercent; 2399 break; 2400 case 'E': 2401 cr(vc); 2402 lf(vc); 2403 break; 2404 case 'M': 2405 ri(vc); 2406 break; 2407 case 'D': 2408 lf(vc); 2409 break; 2410 case 'H': 2411 if (vc->state.x < VC_TABSTOPS_COUNT) 2412 set_bit(vc->state.x, vc->vc_tab_stop); 2413 break; 2414 case 'P': 2415 vc->vc_state = ESdcs; 2416 break; 2417 case 'Z': 2418 respond_ID(tty); 2419 break; 2420 case '7': 2421 save_cur(vc); 2422 break; 2423 case '8': 2424 restore_cur(vc); 2425 break; 2426 case '(': 2427 vc->vc_state = ESsetG0; 2428 break; 2429 case ')': 2430 vc->vc_state = ESsetG1; 2431 break; 2432 case '#': 2433 vc->vc_state = EShash; 2434 break; 2435 case 'c': 2436 reset_terminal(vc, 1); 2437 break; 2438 case '>': /* Numeric keypad */ 2439 clr_kbd(vc, kbdapplic); 2440 break; 2441 case '=': /* Appl. keypad */ 2442 set_kbd(vc, kbdapplic); 2443 break; 2444 } 2445 } 2446 2447 /* 2448 * Handle special DEC control sequences ("ESC [ ? parameters char"). Parameters 2449 * are in @vc->vc_par and the char is in @c here. 2450 */ 2451 static void csi_DEC(struct tty_struct *tty, struct vc_data *vc, u8 c) 2452 { 2453 switch (c) { 2454 case 'h': 2455 csi_DEC_hl(vc, true); 2456 break; 2457 case 'l': 2458 csi_DEC_hl(vc, false); 2459 break; 2460 case 'c': 2461 if (vc->vc_par[0]) 2462 vc->vc_cursor_type = CUR_MAKE(vc->vc_par[0], 2463 vc->vc_par[1], 2464 vc->vc_par[2]); 2465 else 2466 vc->vc_cursor_type = cur_default; 2467 break; 2468 case 'm': 2469 clear_selection(); 2470 if (vc->vc_par[0]) 2471 vc->vc_complement_mask = vc->vc_par[0] << 8 | vc->vc_par[1]; 2472 else 2473 vc->vc_complement_mask = vc->vc_s_complement_mask; 2474 break; 2475 case 'n': 2476 if (vc->vc_par[0] == 5) 2477 status_report(tty); 2478 else if (vc->vc_par[0] == 6) 2479 cursor_report(vc, tty); 2480 break; 2481 } 2482 } 2483 2484 /* 2485 * Handle Control Sequence Introducer control characters. That is 2486 * "ESC [ parameters char". Parameters are in @vc->vc_par and the char is in 2487 * @c here. 2488 */ 2489 static void csi_ECMA(struct tty_struct *tty, struct vc_data *vc, u8 c) 2490 { 2491 switch (c) { 2492 case 'G': 2493 case '`': 2494 if (vc->vc_par[0]) 2495 vc->vc_par[0]--; 2496 gotoxy(vc, vc->vc_par[0], vc->state.y); 2497 break; 2498 case 'A': 2499 if (!vc->vc_par[0]) 2500 vc->vc_par[0]++; 2501 gotoxy(vc, vc->state.x, vc->state.y - vc->vc_par[0]); 2502 break; 2503 case 'B': 2504 case 'e': 2505 if (!vc->vc_par[0]) 2506 vc->vc_par[0]++; 2507 gotoxy(vc, vc->state.x, vc->state.y + vc->vc_par[0]); 2508 break; 2509 case 'C': 2510 case 'a': 2511 if (!vc->vc_par[0]) 2512 vc->vc_par[0]++; 2513 gotoxy(vc, vc->state.x + vc->vc_par[0], vc->state.y); 2514 break; 2515 case 'D': 2516 if (!vc->vc_par[0]) 2517 vc->vc_par[0]++; 2518 gotoxy(vc, vc->state.x - vc->vc_par[0], vc->state.y); 2519 break; 2520 case 'E': 2521 if (!vc->vc_par[0]) 2522 vc->vc_par[0]++; 2523 gotoxy(vc, 0, vc->state.y + vc->vc_par[0]); 2524 break; 2525 case 'F': 2526 if (!vc->vc_par[0]) 2527 vc->vc_par[0]++; 2528 gotoxy(vc, 0, vc->state.y - vc->vc_par[0]); 2529 break; 2530 case 'd': 2531 if (vc->vc_par[0]) 2532 vc->vc_par[0]--; 2533 gotoxay(vc, vc->state.x ,vc->vc_par[0]); 2534 break; 2535 case 'H': 2536 case 'f': 2537 if (vc->vc_par[0]) 2538 vc->vc_par[0]--; 2539 if (vc->vc_par[1]) 2540 vc->vc_par[1]--; 2541 gotoxay(vc, vc->vc_par[1], vc->vc_par[0]); 2542 break; 2543 case 'J': 2544 csi_J(vc, vc->vc_par[0]); 2545 break; 2546 case 'K': 2547 csi_K(vc); 2548 break; 2549 case 'L': 2550 csi_L(vc); 2551 break; 2552 case 'M': 2553 csi_M(vc); 2554 break; 2555 case 'P': 2556 csi_P(vc); 2557 break; 2558 case 'c': 2559 if (!vc->vc_par[0]) 2560 respond_ID(tty); 2561 break; 2562 case 'g': 2563 if (!vc->vc_par[0] && vc->state.x < VC_TABSTOPS_COUNT) 2564 set_bit(vc->state.x, vc->vc_tab_stop); 2565 else if (vc->vc_par[0] == 3) 2566 bitmap_zero(vc->vc_tab_stop, VC_TABSTOPS_COUNT); 2567 break; 2568 case 'h': 2569 csi_hl(vc, true); 2570 break; 2571 case 'l': 2572 csi_hl(vc, false); 2573 break; 2574 case 'm': 2575 csi_m(vc); 2576 break; 2577 case 'n': 2578 if (vc->vc_par[0] == 5) 2579 status_report(tty); 2580 else if (vc->vc_par[0] == 6) 2581 cursor_report(vc, tty); 2582 break; 2583 case 'q': /* DECLL - but only 3 leds */ 2584 /* map 0,1,2,3 to 0,1,2,4 */ 2585 if (vc->vc_par[0] < 4) 2586 vt_set_led_state(vc->vc_num, 2587 (vc->vc_par[0] < 3) ? vc->vc_par[0] : 4); 2588 break; 2589 case 'r': 2590 if (!vc->vc_par[0]) 2591 vc->vc_par[0]++; 2592 if (!vc->vc_par[1]) 2593 vc->vc_par[1] = vc->vc_rows; 2594 /* Minimum allowed region is 2 lines */ 2595 if (vc->vc_par[0] < vc->vc_par[1] && 2596 vc->vc_par[1] <= vc->vc_rows) { 2597 vc->vc_top = vc->vc_par[0] - 1; 2598 vc->vc_bottom = vc->vc_par[1]; 2599 gotoxay(vc, 0, 0); 2600 } 2601 break; 2602 case 's': 2603 save_cur(vc); 2604 break; 2605 case 'u': 2606 restore_cur(vc); 2607 break; 2608 case 'X': 2609 csi_X(vc); 2610 break; 2611 case '@': 2612 csi_at(vc, vc->vc_par[0]); 2613 break; 2614 case ']': 2615 csi_RSB(vc); 2616 break; 2617 } 2618 2619 } 2620 2621 static void vc_reset_params(struct vc_data *vc) 2622 { 2623 memset(vc->vc_par, 0, sizeof(vc->vc_par)); 2624 vc->vc_npar = 0; 2625 } 2626 2627 /* console_lock is held */ 2628 static void do_con_trol(struct tty_struct *tty, struct vc_data *vc, u8 c) 2629 { 2630 /* 2631 * Control characters can be used in the _middle_ 2632 * of an escape sequence, aside from ANSI control strings. 2633 */ 2634 if (ansi_control_string(vc->vc_state) && c >= ASCII_IGNORE_FIRST && 2635 c <= ASCII_IGNORE_LAST) 2636 return; 2637 2638 if (handle_ascii(tty, vc, c)) 2639 return; 2640 2641 switch(vc->vc_state) { 2642 case ESesc: /* ESC */ 2643 handle_esc(tty, vc, c); 2644 return; 2645 case ESnonstd: /* ESC ] aka OSC */ 2646 switch (c) { 2647 case 'P': /* palette escape sequence */ 2648 vc_reset_params(vc); 2649 vc->vc_state = ESpalette; 2650 return; 2651 case 'R': /* reset palette */ 2652 reset_palette(vc); 2653 break; 2654 case '0' ... '9': 2655 vc->vc_state = ESosc; 2656 return; 2657 } 2658 vc->vc_state = ESnormal; 2659 return; 2660 case ESpalette: /* ESC ] P aka OSC P */ 2661 if (isxdigit(c)) { 2662 vc->vc_par[vc->vc_npar++] = hex_to_bin(c); 2663 if (vc->vc_npar == 7) { 2664 int i = vc->vc_par[0] * 3, j = 1; 2665 vc->vc_palette[i] = 16 * vc->vc_par[j++]; 2666 vc->vc_palette[i++] += vc->vc_par[j++]; 2667 vc->vc_palette[i] = 16 * vc->vc_par[j++]; 2668 vc->vc_palette[i++] += vc->vc_par[j++]; 2669 vc->vc_palette[i] = 16 * vc->vc_par[j++]; 2670 vc->vc_palette[i] += vc->vc_par[j]; 2671 set_palette(vc); 2672 vc->vc_state = ESnormal; 2673 } 2674 } else 2675 vc->vc_state = ESnormal; 2676 return; 2677 case ESsquare: /* ESC [ aka CSI, parameters or modifiers expected */ 2678 vc_reset_params(vc); 2679 2680 vc->vc_state = ESgetpars; 2681 switch (c) { 2682 case '[': /* Function key */ 2683 vc->vc_state = ESfunckey; 2684 return; 2685 case '?': 2686 vc->vc_priv = EPdec; 2687 return; 2688 case '>': 2689 vc->vc_priv = EPgt; 2690 return; 2691 case '=': 2692 vc->vc_priv = EPeq; 2693 return; 2694 case '<': 2695 vc->vc_priv = EPlt; 2696 return; 2697 } 2698 vc->vc_priv = EPecma; 2699 fallthrough; 2700 case ESgetpars: /* ESC [ aka CSI, parameters expected */ 2701 switch (c) { 2702 case ';': 2703 if (vc->vc_npar < NPAR - 1) { 2704 vc->vc_npar++; 2705 return; 2706 } 2707 break; 2708 case '0' ... '9': 2709 vc->vc_par[vc->vc_npar] *= 10; 2710 vc->vc_par[vc->vc_npar] += c - '0'; 2711 return; 2712 } 2713 if (c >= ASCII_CSI_IGNORE_FIRST && c <= ASCII_CSI_IGNORE_LAST) { 2714 vc->vc_state = EScsiignore; 2715 return; 2716 } 2717 2718 /* parameters done, handle the control char @c */ 2719 2720 vc->vc_state = ESnormal; 2721 2722 switch (vc->vc_priv) { 2723 case EPdec: 2724 csi_DEC(tty, vc, c); 2725 return; 2726 case EPecma: 2727 csi_ECMA(tty, vc, c); 2728 return; 2729 default: 2730 return; 2731 } 2732 case EScsiignore: 2733 if (c >= ASCII_CSI_IGNORE_FIRST && c <= ASCII_CSI_IGNORE_LAST) 2734 return; 2735 vc->vc_state = ESnormal; 2736 return; 2737 case ESpercent: /* ESC % */ 2738 vc->vc_state = ESnormal; 2739 switch (c) { 2740 case '@': /* defined in ISO 2022 */ 2741 vc->vc_utf = 0; 2742 return; 2743 case 'G': /* prelim official escape code */ 2744 case '8': /* retained for compatibility */ 2745 vc->vc_utf = 1; 2746 return; 2747 } 2748 return; 2749 case ESfunckey: /* ESC [ [ aka CSI [ */ 2750 vc->vc_state = ESnormal; 2751 return; 2752 case EShash: /* ESC # */ 2753 vc->vc_state = ESnormal; 2754 if (c == '8') { 2755 /* DEC screen alignment test. kludge :-) */ 2756 vc->vc_video_erase_char = 2757 (vc->vc_video_erase_char & 0xff00) | 'E'; 2758 csi_J(vc, CSI_J_VISIBLE); 2759 vc->vc_video_erase_char = 2760 (vc->vc_video_erase_char & 0xff00) | ' '; 2761 do_update_region(vc, vc->vc_origin, vc->vc_screenbuf_size / 2); 2762 } 2763 return; 2764 case ESsetG0: /* ESC ( */ 2765 vc_setGx(vc, 0, c); 2766 vc->vc_state = ESnormal; 2767 return; 2768 case ESsetG1: /* ESC ) */ 2769 vc_setGx(vc, 1, c); 2770 vc->vc_state = ESnormal; 2771 return; 2772 case ESapc: /* ESC _ */ 2773 return; 2774 case ESosc: /* ESC ] [0-9] aka OSC [0-9] */ 2775 return; 2776 case ESpm: /* ESC ^ */ 2777 return; 2778 case ESdcs: /* ESC P */ 2779 return; 2780 default: 2781 vc->vc_state = ESnormal; 2782 } 2783 } 2784 2785 struct vc_draw_region { 2786 unsigned long from, to; 2787 int x; 2788 }; 2789 2790 static void con_flush(struct vc_data *vc, struct vc_draw_region *draw) 2791 { 2792 if (draw->x < 0) 2793 return; 2794 2795 vc->vc_sw->con_putcs(vc, (u16 *)draw->from, 2796 (u16 *)draw->to - (u16 *)draw->from, vc->state.y, 2797 draw->x); 2798 draw->x = -1; 2799 } 2800 2801 static inline int vc_translate_ascii(const struct vc_data *vc, int c) 2802 { 2803 if (IS_ENABLED(CONFIG_CONSOLE_TRANSLATIONS)) { 2804 if (vc->vc_toggle_meta) 2805 c |= 0x80; 2806 2807 return vc->vc_translate[c]; 2808 } 2809 2810 return c; 2811 } 2812 2813 2814 /** 2815 * vc_sanitize_unicode - Replace invalid Unicode code points with ``U+FFFD`` 2816 * @c: the received code point 2817 */ 2818 static inline int vc_sanitize_unicode(const int c) 2819 { 2820 if (c >= 0xd800 && c <= 0xdfff) 2821 return 0xfffd; 2822 2823 return c; 2824 } 2825 2826 /** 2827 * vc_translate_unicode - Combine UTF-8 into Unicode in &vc_data.vc_utf_char 2828 * @vc: virtual console 2829 * @c: UTF-8 byte to translate 2830 * @rescan: set to true iff @c wasn't consumed here and needs to be re-processed 2831 * 2832 * * &vc_data.vc_utf_char is the being-constructed Unicode code point. 2833 * * &vc_data.vc_utf_count is the number of continuation bytes still expected to 2834 * arrive. 2835 * * &vc_data.vc_npar is the number of continuation bytes arrived so far. 2836 * 2837 * Return: 2838 * * %-1 - Input OK so far, @c consumed, further bytes expected. 2839 * * %0xFFFD - Possibility 1: input invalid, @c may have been consumed (see 2840 * desc. of @rescan). Possibility 2: input OK, @c consumed, 2841 * ``U+FFFD`` is the resulting code point. ``U+FFFD`` is valid, 2842 * ``REPLACEMENT CHARACTER``. 2843 * * otherwise - Input OK, @c consumed, resulting code point returned. 2844 */ 2845 static int vc_translate_unicode(struct vc_data *vc, int c, bool *rescan) 2846 { 2847 static const u32 utf8_length_changes[] = {0x7f, 0x7ff, 0xffff, 0x10ffff}; 2848 2849 /* Continuation byte received */ 2850 if ((c & 0xc0) == 0x80) { 2851 /* Unexpected continuation byte? */ 2852 if (!vc->vc_utf_count) 2853 goto bad_sequence; 2854 2855 vc->vc_utf_char = (vc->vc_utf_char << 6) | (c & 0x3f); 2856 vc->vc_npar++; 2857 if (--vc->vc_utf_count) 2858 goto need_more_bytes; 2859 2860 /* Got a whole character */ 2861 c = vc->vc_utf_char; 2862 /* Reject overlong sequences */ 2863 if (c <= utf8_length_changes[vc->vc_npar - 1] || 2864 c > utf8_length_changes[vc->vc_npar]) 2865 goto bad_sequence; 2866 2867 return vc_sanitize_unicode(c); 2868 } 2869 2870 /* Single ASCII byte or first byte of a sequence received */ 2871 if (vc->vc_utf_count) { 2872 /* A continuation byte was expected */ 2873 *rescan = true; 2874 vc->vc_utf_count = 0; 2875 goto bad_sequence; 2876 } 2877 2878 /* Nothing to do if an ASCII byte was received */ 2879 if (c <= 0x7f) 2880 return c; 2881 2882 /* First byte of a multibyte sequence received */ 2883 vc->vc_npar = 0; 2884 if ((c & 0xe0) == 0xc0) { 2885 vc->vc_utf_count = 1; 2886 vc->vc_utf_char = (c & 0x1f); 2887 } else if ((c & 0xf0) == 0xe0) { 2888 vc->vc_utf_count = 2; 2889 vc->vc_utf_char = (c & 0x0f); 2890 } else if ((c & 0xf8) == 0xf0) { 2891 vc->vc_utf_count = 3; 2892 vc->vc_utf_char = (c & 0x07); 2893 } else { 2894 goto bad_sequence; 2895 } 2896 2897 need_more_bytes: 2898 return -1; 2899 2900 bad_sequence: 2901 return 0xfffd; 2902 } 2903 2904 static int vc_translate(struct vc_data *vc, int *c, bool *rescan) 2905 { 2906 /* Do no translation at all in control states */ 2907 if (vc->vc_state != ESnormal) 2908 return *c; 2909 2910 if (vc->vc_utf && !vc->vc_disp_ctrl) 2911 return *c = vc_translate_unicode(vc, *c, rescan); 2912 2913 /* no utf or alternate charset mode */ 2914 return vc_translate_ascii(vc, *c); 2915 } 2916 2917 static inline unsigned char vc_invert_attr(const struct vc_data *vc) 2918 { 2919 if (!vc->vc_can_do_color) 2920 return vc->vc_attr ^ 0x08; 2921 2922 if (vc->vc_hi_font_mask == 0x100) 2923 return (vc->vc_attr & 0x11) | 2924 ((vc->vc_attr & 0xe0) >> 4) | 2925 ((vc->vc_attr & 0x0e) << 4); 2926 2927 return (vc->vc_attr & 0x88) | 2928 ((vc->vc_attr & 0x70) >> 4) | 2929 ((vc->vc_attr & 0x07) << 4); 2930 } 2931 2932 static bool vc_is_control(struct vc_data *vc, int tc, int c) 2933 { 2934 /* 2935 * A bitmap for codes <32. A bit of 1 indicates that the code 2936 * corresponding to that bit number invokes some special action (such 2937 * as cursor movement) and should not be displayed as a glyph unless 2938 * the disp_ctrl mode is explicitly enabled. 2939 */ 2940 static const u32 CTRL_ACTION = BIT(ASCII_NULL) | 2941 GENMASK(ASCII_SHIFTIN, ASCII_BELL) | BIT(ASCII_CANCEL) | 2942 BIT(ASCII_SUBSTITUTE) | BIT(ASCII_ESCAPE); 2943 /* Cannot be overridden by disp_ctrl */ 2944 static const u32 CTRL_ALWAYS = BIT(ASCII_NULL) | BIT(ASCII_BACKSPACE) | 2945 BIT(ASCII_LINEFEED) | BIT(ASCII_SHIFTIN) | BIT(ASCII_SHIFTOUT) | 2946 BIT(ASCII_CAR_RET) | BIT(ASCII_FORMFEED) | BIT(ASCII_ESCAPE); 2947 2948 if (vc->vc_state != ESnormal) 2949 return true; 2950 2951 if (!tc) 2952 return true; 2953 2954 /* 2955 * If the original code was a control character we only allow a glyph 2956 * to be displayed if the code is not normally used (such as for cursor 2957 * movement) or if the disp_ctrl mode has been explicitly enabled. 2958 * Certain characters (as given by the CTRL_ALWAYS bitmap) are always 2959 * displayed as control characters, as the console would be pretty 2960 * useless without them; to display an arbitrary font position use the 2961 * direct-to-font zone in UTF-8 mode. 2962 */ 2963 if (c < BITS_PER_TYPE(CTRL_ALWAYS)) { 2964 if (vc->vc_disp_ctrl) 2965 return CTRL_ALWAYS & BIT(c); 2966 else 2967 return vc->vc_utf || (CTRL_ACTION & BIT(c)); 2968 } 2969 2970 if (c == ASCII_DEL && !vc->vc_disp_ctrl) 2971 return true; 2972 2973 if (c == ASCII_EXT_CSI) 2974 return true; 2975 2976 return false; 2977 } 2978 2979 static void vc_con_rewind(struct vc_data *vc) 2980 { 2981 if (vc->state.x && !vc->vc_need_wrap) { 2982 vc->vc_pos -= 2; 2983 vc->state.x--; 2984 } 2985 vc->vc_need_wrap = 0; 2986 } 2987 2988 #define UCS_ZWS 0x200b /* Zero Width Space */ 2989 #define UCS_VS16 0xfe0f /* Variation Selector 16 */ 2990 #define UCS_REPLACEMENT 0xfffd /* Replacement Character */ 2991 2992 static int vc_process_ucs(struct vc_data *vc, int *c, int *tc) 2993 { 2994 u32 prev_c, curr_c = *c; 2995 2996 if (ucs_is_double_width(curr_c)) { 2997 /* 2998 * The Unicode screen memory is allocated only when 2999 * required. This is one such case as we need to remember 3000 * which displayed characters are double-width. 3001 */ 3002 vc_uniscr_check(vc); 3003 return 2; 3004 } 3005 3006 if (!ucs_is_zero_width(curr_c)) 3007 return 1; 3008 3009 /* From here curr_c is known to be zero-width. */ 3010 3011 if (ucs_is_double_width(vc_uniscr_getc(vc, -2))) { 3012 /* 3013 * Let's merge this zero-width code point with the preceding 3014 * double-width code point by replacing the existing 3015 * zero-width space padding. To do so we rewind one column 3016 * and pretend this has a width of 1. 3017 * We give the legacy display the same initial space padding. 3018 */ 3019 vc_con_rewind(vc); 3020 *tc = ' '; 3021 return 1; 3022 } 3023 3024 /* From here the preceding character, if any, must be single-width. */ 3025 prev_c = vc_uniscr_getc(vc, -1); 3026 3027 if (curr_c == UCS_VS16 && prev_c != 0) { 3028 /* 3029 * VS16 (U+FE0F) is special. It typically turns the preceding 3030 * single-width character into a double-width one. Let it 3031 * have a width of 1 effectively making the combination with 3032 * the preceding character double-width. 3033 */ 3034 *tc = ' '; 3035 return 1; 3036 } 3037 3038 /* try recomposition */ 3039 prev_c = ucs_recompose(prev_c, curr_c); 3040 if (prev_c != 0) { 3041 vc_con_rewind(vc); 3042 *tc = *c = prev_c; 3043 return 1; 3044 } 3045 3046 /* Otherwise zero-width code points are ignored. */ 3047 return 0; 3048 } 3049 3050 static int vc_get_glyph(struct vc_data *vc, int tc) 3051 { 3052 int glyph = conv_uni_to_pc(vc, tc); 3053 u16 charmask = vc->vc_hi_font_mask ? 0x1ff : 0xff; 3054 3055 if (!(glyph & ~charmask)) 3056 return glyph; 3057 3058 if (glyph == -1) 3059 return -1; /* nothing to display */ 3060 3061 /* Glyph not found */ 3062 if ((!vc->vc_utf || vc->vc_disp_ctrl || tc < 128) && !(tc & ~charmask)) { 3063 /* 3064 * In legacy mode use the glyph we get by a 1:1 mapping. 3065 * This would make absolutely no sense with Unicode in mind, but do this for 3066 * ASCII characters since a font may lack Unicode mapping info and we don't 3067 * want to end up with having question marks only. 3068 */ 3069 return tc; 3070 } 3071 3072 /* 3073 * The Unicode screen memory is allocated only when required. 3074 * This is one such case: we're about to "cheat" with the displayed 3075 * character meaning the simple screen buffer won't hold the original 3076 * information, whereas the Unicode screen buffer always does. 3077 */ 3078 vc_uniscr_check(vc); 3079 3080 /* Try getting a simpler fallback character. */ 3081 tc = ucs_get_fallback(tc); 3082 if (tc) 3083 return vc_get_glyph(vc, tc); 3084 3085 /* Display U+FFFD (Unicode Replacement Character). */ 3086 return conv_uni_to_pc(vc, UCS_REPLACEMENT); 3087 } 3088 3089 static int vc_con_write_normal(struct vc_data *vc, int tc, int c, 3090 struct vc_draw_region *draw) 3091 { 3092 int next_c; 3093 unsigned char vc_attr = vc->vc_attr; 3094 u16 himask = vc->vc_hi_font_mask; 3095 u8 width = 1; 3096 bool inverse = false; 3097 3098 if (vc->vc_utf && !vc->vc_disp_ctrl) { 3099 width = vc_process_ucs(vc, &c, &tc); 3100 if (!width) 3101 goto out; 3102 } 3103 3104 /* Now try to find out how to display it */ 3105 tc = vc_get_glyph(vc, tc); 3106 if (tc == -1) 3107 return -1; /* nothing to display */ 3108 if (tc < 0) { 3109 inverse = true; 3110 tc = conv_uni_to_pc(vc, '?'); 3111 if (tc < 0) 3112 tc = '?'; 3113 3114 vc_attr = vc_invert_attr(vc); 3115 con_flush(vc, draw); 3116 } 3117 3118 next_c = c; 3119 while (1) { 3120 if (vc->vc_need_wrap || vc->vc_decim) 3121 con_flush(vc, draw); 3122 if (vc->vc_need_wrap) { 3123 cr(vc); 3124 lf(vc); 3125 } 3126 if (vc->vc_decim) 3127 insert_char(vc, 1); 3128 vc_uniscr_putc(vc, next_c); 3129 3130 if (himask) 3131 tc = ((tc & 0x100) ? himask : 0) | 3132 (tc & 0xff); 3133 tc |= (vc_attr << 8) & ~himask; 3134 3135 scr_writew(tc, (u16 *)vc->vc_pos); 3136 3137 if (con_should_update(vc) && draw->x < 0) { 3138 draw->x = vc->state.x; 3139 draw->from = vc->vc_pos; 3140 } 3141 if (vc->state.x == vc->vc_cols - 1) { 3142 vc->vc_need_wrap = vc->vc_decawm; 3143 draw->to = vc->vc_pos + 2; 3144 } else { 3145 vc->state.x++; 3146 draw->to = (vc->vc_pos += 2); 3147 } 3148 3149 if (!--width) 3150 break; 3151 3152 /* A space is printed in the second column */ 3153 tc = conv_uni_to_pc(vc, ' '); 3154 if (tc < 0) 3155 tc = ' '; 3156 /* 3157 * Store a zero-width space in the Unicode screen given that 3158 * the previous code point is semantically double width. 3159 */ 3160 next_c = UCS_ZWS; 3161 } 3162 3163 out: 3164 notify_write(vc, c); 3165 3166 if (inverse) 3167 con_flush(vc, draw); 3168 3169 return 0; 3170 } 3171 3172 /* acquires console_lock */ 3173 static int do_con_write(struct tty_struct *tty, const u8 *buf, int count) 3174 { 3175 struct vc_draw_region draw = { 3176 .x = -1, 3177 }; 3178 int c, tc, n = 0; 3179 unsigned int currcons; 3180 struct vc_data *vc = tty->driver_data; 3181 struct vt_notifier_param param; 3182 bool rescan; 3183 3184 if (in_interrupt()) 3185 return count; 3186 3187 guard(console_lock)(); 3188 currcons = vc->vc_num; 3189 if (!vc_cons_allocated(currcons)) { 3190 /* could this happen? */ 3191 pr_warn_once("con_write: tty %d not allocated\n", currcons+1); 3192 return 0; 3193 } 3194 3195 3196 /* undraw cursor first */ 3197 if (con_is_fg(vc)) 3198 hide_cursor(vc); 3199 3200 param.vc = vc; 3201 3202 while (!tty->flow.stopped && count) { 3203 u8 orig = *buf; 3204 buf++; 3205 n++; 3206 count--; 3207 rescan_last_byte: 3208 c = orig; 3209 rescan = false; 3210 3211 tc = vc_translate(vc, &c, &rescan); 3212 if (tc == -1) 3213 continue; 3214 3215 param.c = tc; 3216 if (atomic_notifier_call_chain(&vt_notifier_list, VT_PREWRITE, 3217 ¶m) == NOTIFY_STOP) 3218 continue; 3219 3220 if (vc_is_control(vc, tc, c)) { 3221 con_flush(vc, &draw); 3222 do_con_trol(tty, vc, orig); 3223 continue; 3224 } 3225 3226 if (vc_con_write_normal(vc, tc, c, &draw) < 0) 3227 continue; 3228 3229 if (rescan) 3230 goto rescan_last_byte; 3231 } 3232 con_flush(vc, &draw); 3233 notify_update(vc); 3234 3235 return n; 3236 } 3237 3238 /* 3239 * This is the console switching callback. 3240 * 3241 * Doing console switching in a process context allows 3242 * us to do the switches asynchronously (needed when we want 3243 * to switch due to a keyboard interrupt). Synchronization 3244 * with other console code and prevention of re-entrancy is 3245 * ensured with console_lock. 3246 */ 3247 static void console_callback(struct work_struct *ignored) 3248 { 3249 guard(console_lock)(); 3250 3251 if (want_console >= 0) { 3252 if (want_console != fg_console && 3253 vc_cons_allocated(want_console)) { 3254 hide_cursor(vc_cons[fg_console].d); 3255 change_console(vc_cons[want_console].d); 3256 /* we only changed when the console had already 3257 been allocated - a new console is not created 3258 in an interrupt routine */ 3259 } 3260 want_console = -1; 3261 } 3262 if (do_poke_blanked_console) { /* do not unblank for a LED change */ 3263 do_poke_blanked_console = 0; 3264 poke_blanked_console(); 3265 } 3266 if (scrollback_delta) { 3267 struct vc_data *vc = vc_cons[fg_console].d; 3268 clear_selection(); 3269 if (vc->vc_mode == KD_TEXT && vc->vc_sw->con_scrolldelta) 3270 vc->vc_sw->con_scrolldelta(vc, scrollback_delta); 3271 scrollback_delta = 0; 3272 } 3273 if (blank_timer_expired) { 3274 do_blank_screen(0); 3275 blank_timer_expired = 0; 3276 } 3277 notify_update(vc_cons[fg_console].d); 3278 } 3279 3280 int set_console(int nr) 3281 { 3282 struct vc_data *vc = vc_cons[fg_console].d; 3283 3284 if (!vc_cons_allocated(nr) || vt_dont_switch || 3285 (vc->vt_mode.mode == VT_AUTO && vc->vc_mode == KD_GRAPHICS)) { 3286 3287 /* 3288 * Console switch will fail in console_callback() or 3289 * change_console() so there is no point scheduling 3290 * the callback 3291 * 3292 * Existing set_console() users don't check the return 3293 * value so this shouldn't break anything 3294 */ 3295 return -EINVAL; 3296 } 3297 3298 want_console = nr; 3299 schedule_console_callback(); 3300 3301 return 0; 3302 } 3303 3304 struct tty_driver *console_driver; 3305 3306 #ifdef CONFIG_VT_CONSOLE 3307 3308 /** 3309 * vt_kmsg_redirect() - sets/gets the kernel message console 3310 * @new: the new virtual terminal number or -1 if the console should stay 3311 * unchanged 3312 * 3313 * By default, the kernel messages are always printed on the current virtual 3314 * console. However, the user may modify that default with the 3315 * %TIOCL_SETKMSGREDIRECT ioctl call. 3316 * 3317 * This function sets the kernel message console to be @new. It returns the old 3318 * virtual console number. The virtual terminal number %0 (both as parameter and 3319 * return value) means no redirection (i.e. always printed on the currently 3320 * active console). 3321 * 3322 * The parameter -1 means that only the current console is returned, but the 3323 * value is not modified. You may use the macro vt_get_kmsg_redirect() in that 3324 * case to make the code more understandable. 3325 * 3326 * When the kernel is compiled without %CONFIG_VT_CONSOLE, this function ignores 3327 * the parameter and always returns %0. 3328 */ 3329 int vt_kmsg_redirect(int new) 3330 { 3331 static int kmsg_con; 3332 3333 if (new != -1) 3334 return xchg(&kmsg_con, new); 3335 else 3336 return kmsg_con; 3337 } 3338 3339 /* 3340 * Console on virtual terminal 3341 * 3342 * The console must be locked when we get here. 3343 */ 3344 3345 static void vt_console_print(struct console *co, const char *b, unsigned count) 3346 { 3347 struct vc_data *vc = vc_cons[fg_console].d; 3348 unsigned char c; 3349 static DEFINE_SPINLOCK(printing_lock); 3350 const ushort *start; 3351 ushort start_x, cnt; 3352 int kmsg_console; 3353 3354 WARN_CONSOLE_UNLOCKED(); 3355 3356 /* this protects against concurrent oops only */ 3357 if (!spin_trylock(&printing_lock)) 3358 return; 3359 3360 kmsg_console = vt_get_kmsg_redirect(); 3361 if (kmsg_console && vc_cons_allocated(kmsg_console - 1)) 3362 vc = vc_cons[kmsg_console - 1].d; 3363 3364 if (!vc_cons_allocated(fg_console)) { 3365 /* impossible */ 3366 /* printk("vt_console_print: tty %d not allocated ??\n", currcons+1); */ 3367 goto quit; 3368 } 3369 3370 if (vc->vc_mode != KD_TEXT) 3371 goto quit; 3372 3373 /* undraw cursor first */ 3374 if (con_is_fg(vc)) 3375 hide_cursor(vc); 3376 3377 start = (ushort *)vc->vc_pos; 3378 start_x = vc->state.x; 3379 cnt = 0; 3380 while (count--) { 3381 c = *b++; 3382 if (c == ASCII_LINEFEED || c == ASCII_CAR_RET || 3383 c == ASCII_BACKSPACE || vc->vc_need_wrap) { 3384 if (cnt && con_is_visible(vc)) 3385 vc->vc_sw->con_putcs(vc, start, cnt, vc->state.y, start_x); 3386 cnt = 0; 3387 if (c == ASCII_BACKSPACE) { 3388 bs(vc); 3389 start = (ushort *)vc->vc_pos; 3390 start_x = vc->state.x; 3391 continue; 3392 } 3393 if (c != ASCII_CAR_RET) 3394 lf(vc); 3395 cr(vc); 3396 start = (ushort *)vc->vc_pos; 3397 start_x = vc->state.x; 3398 if (c == ASCII_LINEFEED || c == ASCII_CAR_RET) 3399 continue; 3400 } 3401 vc_uniscr_putc(vc, c); 3402 scr_writew((vc->vc_attr << 8) + c, (unsigned short *)vc->vc_pos); 3403 notify_write(vc, c); 3404 cnt++; 3405 if (vc->state.x == vc->vc_cols - 1) { 3406 vc->vc_need_wrap = 1; 3407 } else { 3408 vc->vc_pos += 2; 3409 vc->state.x++; 3410 } 3411 } 3412 if (cnt && con_is_visible(vc)) 3413 vc->vc_sw->con_putcs(vc, start, cnt, vc->state.y, start_x); 3414 set_cursor(vc); 3415 notify_update(vc); 3416 3417 quit: 3418 spin_unlock(&printing_lock); 3419 } 3420 3421 static struct tty_driver *vt_console_device(struct console *c, int *index) 3422 { 3423 *index = c->index ? c->index-1 : fg_console; 3424 return console_driver; 3425 } 3426 3427 static int vt_console_setup(struct console *co, char *options) 3428 { 3429 return co->index >= MAX_NR_CONSOLES ? -EINVAL : 0; 3430 } 3431 3432 static struct console vt_console_driver = { 3433 .name = "tty", 3434 .setup = vt_console_setup, 3435 .write = vt_console_print, 3436 .device = vt_console_device, 3437 .unblank = unblank_screen, 3438 .flags = CON_PRINTBUFFER, 3439 .index = -1, 3440 }; 3441 #endif 3442 3443 /* 3444 * Handling of Linux-specific VC ioctls 3445 */ 3446 3447 /* 3448 * Generally a bit racy with respect to console_lock();. 3449 * 3450 * There are some functions which don't need it. 3451 * 3452 * There are some functions which can sleep for arbitrary periods 3453 * (paste_selection) but we don't need the lock there anyway. 3454 * 3455 * set_selection_user has locking, and definitely needs it 3456 */ 3457 3458 int tioclinux(struct tty_struct *tty, unsigned long arg) 3459 { 3460 char type, data; 3461 char __user *p = (char __user *)arg; 3462 void __user *param_aligned32 = (u32 __user *)arg + 1; 3463 void __user *param = (void __user *)arg + 1; 3464 int lines; 3465 int ret; 3466 3467 if (current->signal->tty != tty && !capable(CAP_SYS_ADMIN)) 3468 return -EPERM; 3469 if (get_user(type, p)) 3470 return -EFAULT; 3471 ret = 0; 3472 3473 switch (type) { 3474 case TIOCL_SETSEL: 3475 return set_selection_user(param, tty); 3476 case TIOCL_PASTESEL: 3477 if (!capable(CAP_SYS_ADMIN)) 3478 return -EPERM; 3479 return paste_selection(tty); 3480 case TIOCL_UNBLANKSCREEN: 3481 scoped_guard(console_lock) 3482 unblank_screen(); 3483 break; 3484 case TIOCL_SELLOADLUT: 3485 if (!capable(CAP_SYS_ADMIN)) 3486 return -EPERM; 3487 return sel_loadlut(param_aligned32); 3488 case TIOCL_GETSHIFTSTATE: 3489 /* 3490 * Make it possible to react to Shift+Mousebutton. Note that 3491 * 'shift_state' is an undocumented kernel-internal variable; 3492 * programs not closely related to the kernel should not use 3493 * this. 3494 */ 3495 data = vt_get_shift_state(); 3496 return put_user(data, p); 3497 case TIOCL_GETMOUSEREPORTING: 3498 scoped_guard(console_lock) /* May be overkill */ 3499 data = mouse_reporting(); 3500 return put_user(data, p); 3501 case TIOCL_SETVESABLANK: 3502 return set_vesa_blanking(param); 3503 case TIOCL_GETKMSGREDIRECT: 3504 data = vt_get_kmsg_redirect(); 3505 return put_user(data, p); 3506 case TIOCL_SETKMSGREDIRECT: 3507 if (!capable(CAP_SYS_ADMIN)) 3508 return -EPERM; 3509 3510 if (get_user(data, p+1)) 3511 return -EFAULT; 3512 3513 vt_kmsg_redirect(data); 3514 3515 break; 3516 case TIOCL_GETFGCONSOLE: 3517 /* 3518 * No locking needed as this is a transiently correct return 3519 * anyway if the caller hasn't disabled switching. 3520 */ 3521 return fg_console; 3522 case TIOCL_SCROLLCONSOLE: 3523 if (get_user(lines, (s32 __user *)param_aligned32)) 3524 return -EFAULT; 3525 3526 /* 3527 * Needs the console lock here. Note that lots of other calls 3528 * need fixing before the lock is actually useful! 3529 */ 3530 scoped_guard(console_lock) 3531 scrollfront(vc_cons[fg_console].d, lines); 3532 break; 3533 case TIOCL_BLANKSCREEN: /* until explicitly unblanked, not only poked */ 3534 scoped_guard(console_lock) { 3535 ignore_poke = 1; 3536 do_blank_screen(0); 3537 } 3538 break; 3539 case TIOCL_BLANKEDSCREEN: 3540 return console_blanked; 3541 case TIOCL_GETBRACKETEDPASTE: 3542 return get_bracketed_paste(tty); 3543 default: 3544 return -EINVAL; 3545 } 3546 3547 return ret; 3548 } 3549 3550 /* 3551 * /dev/ttyN handling 3552 */ 3553 3554 static ssize_t con_write(struct tty_struct *tty, const u8 *buf, size_t count) 3555 { 3556 int retval; 3557 3558 retval = do_con_write(tty, buf, count); 3559 con_flush_chars(tty); 3560 3561 return retval; 3562 } 3563 3564 static int con_put_char(struct tty_struct *tty, u8 ch) 3565 { 3566 return do_con_write(tty, &ch, 1); 3567 } 3568 3569 static unsigned int con_write_room(struct tty_struct *tty) 3570 { 3571 if (tty->flow.stopped) 3572 return 0; 3573 return 32768; /* No limit, really; we're not buffering */ 3574 } 3575 3576 /* 3577 * con_throttle and con_unthrottle are only used for 3578 * paste_selection(), which has to stuff in a large number of 3579 * characters... 3580 */ 3581 static void con_throttle(struct tty_struct *tty) 3582 { 3583 } 3584 3585 static void con_unthrottle(struct tty_struct *tty) 3586 { 3587 struct vc_data *vc = tty->driver_data; 3588 3589 wake_up_interruptible(&vc->paste_wait); 3590 } 3591 3592 /* 3593 * Turn the Scroll-Lock LED on when the tty is stopped 3594 */ 3595 static void con_stop(struct tty_struct *tty) 3596 { 3597 int console_num; 3598 if (!tty) 3599 return; 3600 console_num = tty->index; 3601 if (!vc_cons_allocated(console_num)) 3602 return; 3603 vt_kbd_con_stop(console_num); 3604 } 3605 3606 /* 3607 * Turn the Scroll-Lock LED off when the console is started 3608 */ 3609 static void con_start(struct tty_struct *tty) 3610 { 3611 int console_num; 3612 if (!tty) 3613 return; 3614 console_num = tty->index; 3615 if (!vc_cons_allocated(console_num)) 3616 return; 3617 vt_kbd_con_start(console_num); 3618 } 3619 3620 static void con_flush_chars(struct tty_struct *tty) 3621 { 3622 struct vc_data *vc = tty->driver_data; 3623 3624 if (in_interrupt()) /* from flush_to_ldisc */ 3625 return; 3626 3627 guard(console_lock)(); 3628 set_cursor(vc); 3629 } 3630 3631 /* 3632 * Allocate the console screen memory. 3633 */ 3634 static int con_install(struct tty_driver *driver, struct tty_struct *tty) 3635 { 3636 unsigned int currcons = tty->index; 3637 struct vc_data *vc; 3638 int ret; 3639 3640 guard(console_lock)(); 3641 ret = vc_allocate(currcons); 3642 if (ret) 3643 return ret; 3644 3645 vc = vc_cons[currcons].d; 3646 3647 /* Still being freed */ 3648 if (vc->port.tty) 3649 return -ERESTARTSYS; 3650 3651 ret = tty_port_install(&vc->port, driver, tty); 3652 if (ret) 3653 return ret; 3654 3655 tty->driver_data = vc; 3656 vc->port.tty = tty; 3657 tty_port_get(&vc->port); 3658 3659 if (!tty->winsize.ws_row && !tty->winsize.ws_col) { 3660 tty->winsize.ws_row = vc_cons[currcons].d->vc_rows; 3661 tty->winsize.ws_col = vc_cons[currcons].d->vc_cols; 3662 } 3663 if (vc->vc_utf) 3664 tty->termios.c_iflag |= IUTF8; 3665 else 3666 tty->termios.c_iflag &= ~IUTF8; 3667 3668 return 0; 3669 } 3670 3671 static int con_open(struct tty_struct *tty, struct file *filp) 3672 { 3673 /* everything done in install */ 3674 return 0; 3675 } 3676 3677 3678 static void con_close(struct tty_struct *tty, struct file *filp) 3679 { 3680 /* Nothing to do - we defer to shutdown */ 3681 } 3682 3683 static void con_shutdown(struct tty_struct *tty) 3684 { 3685 struct vc_data *vc = tty->driver_data; 3686 BUG_ON(vc == NULL); 3687 3688 guard(console_lock)(); 3689 vc->port.tty = NULL; 3690 } 3691 3692 static void con_cleanup(struct tty_struct *tty) 3693 { 3694 struct vc_data *vc = tty->driver_data; 3695 3696 tty_port_put(&vc->port); 3697 } 3698 3699 /* 3700 * We can't deal with anything but the N_TTY ldisc, 3701 * because we can sleep in our write() routine. 3702 */ 3703 static int con_ldisc_ok(struct tty_struct *tty, int ldisc) 3704 { 3705 return ldisc == N_TTY ? 0 : -EINVAL; 3706 } 3707 3708 static int default_color = 7; /* white */ 3709 static int default_italic_color = 2; // green (ASCII) 3710 static int default_underline_color = 3; // cyan (ASCII) 3711 module_param_named(color, default_color, int, S_IRUGO | S_IWUSR); 3712 module_param_named(italic, default_italic_color, int, S_IRUGO | S_IWUSR); 3713 module_param_named(underline, default_underline_color, int, S_IRUGO | S_IWUSR); 3714 3715 static void vc_init(struct vc_data *vc, int do_clear) 3716 { 3717 int j, k ; 3718 3719 set_origin(vc); 3720 vc->vc_pos = vc->vc_origin; 3721 reset_vc(vc); 3722 for (j=k=0; j<16; j++) { 3723 vc->vc_palette[k++] = default_red[j] ; 3724 vc->vc_palette[k++] = default_grn[j] ; 3725 vc->vc_palette[k++] = default_blu[j] ; 3726 } 3727 vc->vc_def_color = default_color; 3728 vc->vc_ulcolor = default_underline_color; 3729 vc->vc_itcolor = default_italic_color; 3730 vc->vc_halfcolor = 0x08; /* grey */ 3731 init_waitqueue_head(&vc->paste_wait); 3732 reset_terminal(vc, do_clear); 3733 } 3734 3735 /* 3736 * This routine initializes console interrupts, and does nothing 3737 * else. If you want the screen to clear, call tty_write with 3738 * the appropriate escape-sequence. 3739 */ 3740 3741 static int __init con_init(void) 3742 { 3743 const char *display_desc = NULL; 3744 struct vc_data *vc; 3745 unsigned int currcons = 0, i; 3746 3747 console_lock(); 3748 3749 if (!conswitchp) 3750 conswitchp = &dummy_con; 3751 display_desc = conswitchp->con_startup(); 3752 if (!display_desc) { 3753 fg_console = 0; 3754 console_unlock(); 3755 return 0; 3756 } 3757 3758 for (i = 0; i < MAX_NR_CON_DRIVER; i++) { 3759 struct con_driver *con_driver = ®istered_con_driver[i]; 3760 3761 if (con_driver->con == NULL) { 3762 con_driver->con = conswitchp; 3763 con_driver->desc = display_desc; 3764 con_driver->flag = CON_DRIVER_FLAG_INIT; 3765 con_driver->first = 0; 3766 con_driver->last = MAX_NR_CONSOLES - 1; 3767 break; 3768 } 3769 } 3770 3771 for (i = 0; i < MAX_NR_CONSOLES; i++) 3772 con_driver_map[i] = conswitchp; 3773 3774 if (blankinterval) { 3775 blank_state = blank_normal_wait; 3776 mod_timer(&console_timer, jiffies + (blankinterval * HZ)); 3777 } 3778 3779 for (currcons = 0; currcons < MIN_NR_CONSOLES; currcons++) { 3780 vc_cons[currcons].d = vc = kzalloc(sizeof(struct vc_data), GFP_NOWAIT); 3781 INIT_WORK(&vc_cons[currcons].SAK_work, vc_SAK); 3782 tty_port_init(&vc->port); 3783 visual_init(vc, currcons, true); 3784 /* Assuming vc->vc_{cols,rows,screenbuf_size} are sane here. */ 3785 vc->vc_screenbuf = kzalloc(vc->vc_screenbuf_size, GFP_NOWAIT); 3786 vc_init(vc, currcons || !vc->vc_sw->con_save_screen); 3787 } 3788 currcons = fg_console = 0; 3789 master_display_fg = vc = vc_cons[currcons].d; 3790 set_origin(vc); 3791 save_screen(vc); 3792 gotoxy(vc, vc->state.x, vc->state.y); 3793 csi_J(vc, CSI_J_CURSOR_TO_END); 3794 update_screen(vc); 3795 pr_info("Console: %s %s %dx%d\n", 3796 vc->vc_can_do_color ? "colour" : "mono", 3797 display_desc, vc->vc_cols, vc->vc_rows); 3798 3799 console_unlock(); 3800 3801 #ifdef CONFIG_VT_CONSOLE 3802 register_console(&vt_console_driver); 3803 #endif 3804 return 0; 3805 } 3806 console_initcall(con_init); 3807 3808 static const struct tty_operations con_ops = { 3809 .install = con_install, 3810 .open = con_open, 3811 .close = con_close, 3812 .write = con_write, 3813 .write_room = con_write_room, 3814 .put_char = con_put_char, 3815 .flush_chars = con_flush_chars, 3816 .ioctl = vt_ioctl, 3817 #ifdef CONFIG_COMPAT 3818 .compat_ioctl = vt_compat_ioctl, 3819 #endif 3820 .stop = con_stop, 3821 .start = con_start, 3822 .throttle = con_throttle, 3823 .unthrottle = con_unthrottle, 3824 .resize = vt_resize, 3825 .shutdown = con_shutdown, 3826 .cleanup = con_cleanup, 3827 .ldisc_ok = con_ldisc_ok, 3828 }; 3829 3830 static struct cdev vc0_cdev; 3831 3832 static ssize_t show_tty_active(struct device *dev, 3833 struct device_attribute *attr, char *buf) 3834 { 3835 return sprintf(buf, "tty%d\n", fg_console + 1); 3836 } 3837 static DEVICE_ATTR(active, S_IRUGO, show_tty_active, NULL); 3838 3839 static struct attribute *vt_dev_attrs[] = { 3840 &dev_attr_active.attr, 3841 NULL 3842 }; 3843 3844 ATTRIBUTE_GROUPS(vt_dev); 3845 3846 int __init vty_init(const struct file_operations *console_fops) 3847 { 3848 cdev_init(&vc0_cdev, console_fops); 3849 if (cdev_add(&vc0_cdev, MKDEV(TTY_MAJOR, 0), 1) || 3850 register_chrdev_region(MKDEV(TTY_MAJOR, 0), 1, "/dev/vc/0") < 0) 3851 panic("Couldn't register /dev/tty0 driver\n"); 3852 tty0dev = device_create_with_groups(&tty_class, NULL, 3853 MKDEV(TTY_MAJOR, 0), NULL, 3854 vt_dev_groups, "tty0"); 3855 if (IS_ERR(tty0dev)) 3856 tty0dev = NULL; 3857 3858 vcs_init(); 3859 3860 console_driver = tty_alloc_driver(MAX_NR_CONSOLES, TTY_DRIVER_REAL_RAW | 3861 TTY_DRIVER_RESET_TERMIOS); 3862 if (IS_ERR(console_driver)) 3863 panic("Couldn't allocate console driver\n"); 3864 3865 console_driver->name = "tty"; 3866 console_driver->name_base = 1; 3867 console_driver->major = TTY_MAJOR; 3868 console_driver->minor_start = 1; 3869 console_driver->type = TTY_DRIVER_TYPE_CONSOLE; 3870 console_driver->init_termios = tty_std_termios; 3871 if (default_utf8) 3872 console_driver->init_termios.c_iflag |= IUTF8; 3873 tty_set_operations(console_driver, &con_ops); 3874 if (tty_register_driver(console_driver)) 3875 panic("Couldn't register console driver\n"); 3876 kbd_init(); 3877 console_map_init(); 3878 #ifdef CONFIG_MDA_CONSOLE 3879 mda_console_init(); 3880 #endif 3881 return 0; 3882 } 3883 3884 static const struct class vtconsole_class = { 3885 .name = "vtconsole", 3886 }; 3887 3888 static int do_bind_con_driver(const struct consw *csw, int first, int last, 3889 int deflt) 3890 { 3891 struct module *owner = csw->owner; 3892 const char *desc = NULL; 3893 struct con_driver *con_driver; 3894 int i, j = -1, k = -1, retval = -ENODEV; 3895 3896 if (!try_module_get(owner)) 3897 return -ENODEV; 3898 3899 WARN_CONSOLE_UNLOCKED(); 3900 3901 /* check if driver is registered */ 3902 for (i = 0; i < MAX_NR_CON_DRIVER; i++) { 3903 con_driver = ®istered_con_driver[i]; 3904 3905 if (con_driver->con == csw) { 3906 desc = con_driver->desc; 3907 retval = 0; 3908 break; 3909 } 3910 } 3911 3912 if (retval) 3913 goto err; 3914 3915 if (!(con_driver->flag & CON_DRIVER_FLAG_INIT)) { 3916 csw->con_startup(); 3917 con_driver->flag |= CON_DRIVER_FLAG_INIT; 3918 } 3919 3920 if (deflt) { 3921 if (conswitchp) 3922 module_put(conswitchp->owner); 3923 3924 __module_get(owner); 3925 conswitchp = csw; 3926 } 3927 3928 first = max(first, con_driver->first); 3929 last = min(last, con_driver->last); 3930 3931 for (i = first; i <= last; i++) { 3932 int old_was_color; 3933 struct vc_data *vc = vc_cons[i].d; 3934 3935 if (con_driver_map[i]) 3936 module_put(con_driver_map[i]->owner); 3937 __module_get(owner); 3938 con_driver_map[i] = csw; 3939 3940 if (!vc || !vc->vc_sw) 3941 continue; 3942 3943 j = i; 3944 3945 if (con_is_visible(vc)) { 3946 k = i; 3947 save_screen(vc); 3948 } 3949 3950 old_was_color = vc->vc_can_do_color; 3951 vc->vc_sw->con_deinit(vc); 3952 vc->vc_origin = (unsigned long)vc->vc_screenbuf; 3953 visual_init(vc, i, false); 3954 set_origin(vc); 3955 update_attr(vc); 3956 3957 /* If the console changed between mono <-> color, then 3958 * the attributes in the screenbuf will be wrong. The 3959 * following resets all attributes to something sane. 3960 */ 3961 if (old_was_color != vc->vc_can_do_color) 3962 clear_buffer_attributes(vc); 3963 } 3964 3965 pr_info("Console: switching "); 3966 if (!deflt) 3967 pr_cont("consoles %d-%d ", first + 1, last + 1); 3968 if (j >= 0) { 3969 struct vc_data *vc = vc_cons[j].d; 3970 3971 pr_cont("to %s %s %dx%d\n", 3972 vc->vc_can_do_color ? "colour" : "mono", 3973 desc, vc->vc_cols, vc->vc_rows); 3974 3975 if (k >= 0) { 3976 vc = vc_cons[k].d; 3977 update_screen(vc); 3978 } 3979 } else { 3980 pr_cont("to %s\n", desc); 3981 } 3982 3983 retval = 0; 3984 err: 3985 module_put(owner); 3986 return retval; 3987 }; 3988 3989 3990 #ifdef CONFIG_VT_HW_CONSOLE_BINDING 3991 int do_unbind_con_driver(const struct consw *csw, int first, int last, int deflt) 3992 { 3993 struct module *owner = csw->owner; 3994 const struct consw *defcsw = NULL; 3995 struct con_driver *con_driver = NULL, *con_back = NULL; 3996 int i, retval = -ENODEV; 3997 3998 if (!try_module_get(owner)) 3999 return -ENODEV; 4000 4001 WARN_CONSOLE_UNLOCKED(); 4002 4003 /* check if driver is registered and if it is unbindable */ 4004 for (i = 0; i < MAX_NR_CON_DRIVER; i++) { 4005 con_driver = ®istered_con_driver[i]; 4006 4007 if (con_driver->con == csw && 4008 con_driver->flag & CON_DRIVER_FLAG_MODULE) { 4009 retval = 0; 4010 break; 4011 } 4012 } 4013 4014 if (retval) 4015 goto err; 4016 4017 retval = -ENODEV; 4018 4019 /* check if backup driver exists */ 4020 for (i = 0; i < MAX_NR_CON_DRIVER; i++) { 4021 con_back = ®istered_con_driver[i]; 4022 4023 if (con_back->con && con_back->con != csw) { 4024 defcsw = con_back->con; 4025 retval = 0; 4026 break; 4027 } 4028 } 4029 4030 if (retval) 4031 goto err; 4032 4033 if (!con_is_bound(csw)) 4034 goto err; 4035 4036 first = max(first, con_driver->first); 4037 last = min(last, con_driver->last); 4038 4039 for (i = first; i <= last; i++) { 4040 if (con_driver_map[i] == csw) { 4041 module_put(csw->owner); 4042 con_driver_map[i] = NULL; 4043 } 4044 } 4045 4046 if (!con_is_bound(defcsw)) { 4047 const struct consw *defconsw = conswitchp; 4048 4049 defcsw->con_startup(); 4050 con_back->flag |= CON_DRIVER_FLAG_INIT; 4051 /* 4052 * vgacon may change the default driver to point 4053 * to dummycon, we restore it here... 4054 */ 4055 conswitchp = defconsw; 4056 } 4057 4058 if (!con_is_bound(csw)) 4059 con_driver->flag &= ~CON_DRIVER_FLAG_INIT; 4060 4061 /* ignore return value, binding should not fail */ 4062 do_bind_con_driver(defcsw, first, last, deflt); 4063 err: 4064 module_put(owner); 4065 return retval; 4066 4067 } 4068 EXPORT_SYMBOL_GPL(do_unbind_con_driver); 4069 4070 static int vt_bind(struct con_driver *con) 4071 { 4072 const struct consw *defcsw = NULL, *csw = NULL; 4073 int i, more = 1, first = -1, last = -1, deflt = 0; 4074 4075 if (!con->con || !(con->flag & CON_DRIVER_FLAG_MODULE)) 4076 goto err; 4077 4078 csw = con->con; 4079 4080 for (i = 0; i < MAX_NR_CON_DRIVER; i++) { 4081 struct con_driver *con = ®istered_con_driver[i]; 4082 4083 if (con->con && !(con->flag & CON_DRIVER_FLAG_MODULE)) { 4084 defcsw = con->con; 4085 break; 4086 } 4087 } 4088 4089 if (!defcsw) 4090 goto err; 4091 4092 while (more) { 4093 more = 0; 4094 4095 for (i = con->first; i <= con->last; i++) { 4096 if (con_driver_map[i] == defcsw) { 4097 if (first == -1) 4098 first = i; 4099 last = i; 4100 more = 1; 4101 } else if (first != -1) 4102 break; 4103 } 4104 4105 if (first == 0 && last == MAX_NR_CONSOLES -1) 4106 deflt = 1; 4107 4108 if (first != -1) 4109 do_bind_con_driver(csw, first, last, deflt); 4110 4111 first = -1; 4112 last = -1; 4113 deflt = 0; 4114 } 4115 4116 err: 4117 return 0; 4118 } 4119 4120 static int vt_unbind(struct con_driver *con) 4121 { 4122 const struct consw *csw = NULL; 4123 int i, more = 1, first = -1, last = -1, deflt = 0; 4124 int ret; 4125 4126 if (!con->con || !(con->flag & CON_DRIVER_FLAG_MODULE)) 4127 goto err; 4128 4129 csw = con->con; 4130 4131 while (more) { 4132 more = 0; 4133 4134 for (i = con->first; i <= con->last; i++) { 4135 if (con_driver_map[i] == csw) { 4136 if (first == -1) 4137 first = i; 4138 last = i; 4139 more = 1; 4140 } else if (first != -1) 4141 break; 4142 } 4143 4144 if (first == 0 && last == MAX_NR_CONSOLES -1) 4145 deflt = 1; 4146 4147 if (first != -1) { 4148 ret = do_unbind_con_driver(csw, first, last, deflt); 4149 if (ret != 0) 4150 return ret; 4151 } 4152 4153 first = -1; 4154 last = -1; 4155 deflt = 0; 4156 } 4157 4158 err: 4159 return 0; 4160 } 4161 #else 4162 static inline int vt_bind(struct con_driver *con) 4163 { 4164 return 0; 4165 } 4166 static inline int vt_unbind(struct con_driver *con) 4167 { 4168 return 0; 4169 } 4170 #endif /* CONFIG_VT_HW_CONSOLE_BINDING */ 4171 4172 static ssize_t store_bind(struct device *dev, struct device_attribute *attr, 4173 const char *buf, size_t count) 4174 { 4175 struct con_driver *con = dev_get_drvdata(dev); 4176 int bind = simple_strtoul(buf, NULL, 0); 4177 4178 guard(console_lock)(); 4179 4180 if (bind) 4181 vt_bind(con); 4182 else 4183 vt_unbind(con); 4184 4185 return count; 4186 } 4187 4188 static ssize_t show_bind(struct device *dev, struct device_attribute *attr, 4189 char *buf) 4190 { 4191 struct con_driver *con = dev_get_drvdata(dev); 4192 int bind; 4193 4194 scoped_guard(console_lock) 4195 bind = con_is_bound(con->con); 4196 4197 return sysfs_emit(buf, "%i\n", bind); 4198 } 4199 4200 static ssize_t show_name(struct device *dev, struct device_attribute *attr, 4201 char *buf) 4202 { 4203 struct con_driver *con = dev_get_drvdata(dev); 4204 4205 return sysfs_emit(buf, "%s %s\n", 4206 (con->flag & CON_DRIVER_FLAG_MODULE) ? "(M)" : "(S)", 4207 con->desc); 4208 4209 } 4210 4211 static DEVICE_ATTR(bind, S_IRUGO|S_IWUSR, show_bind, store_bind); 4212 static DEVICE_ATTR(name, S_IRUGO, show_name, NULL); 4213 4214 static struct attribute *con_dev_attrs[] = { 4215 &dev_attr_bind.attr, 4216 &dev_attr_name.attr, 4217 NULL 4218 }; 4219 4220 ATTRIBUTE_GROUPS(con_dev); 4221 4222 static int vtconsole_init_device(struct con_driver *con) 4223 { 4224 con->flag |= CON_DRIVER_FLAG_ATTR; 4225 return 0; 4226 } 4227 4228 static void vtconsole_deinit_device(struct con_driver *con) 4229 { 4230 con->flag &= ~CON_DRIVER_FLAG_ATTR; 4231 } 4232 4233 /** 4234 * con_is_bound - checks if driver is bound to the console 4235 * @csw: console driver 4236 * 4237 * RETURNS: zero if unbound, nonzero if bound 4238 * 4239 * Drivers can call this and if zero, they should release 4240 * all resources allocated on &consw.con_startup() 4241 */ 4242 int con_is_bound(const struct consw *csw) 4243 { 4244 int i, bound = 0; 4245 4246 WARN_CONSOLE_UNLOCKED(); 4247 4248 for (i = 0; i < MAX_NR_CONSOLES; i++) { 4249 if (con_driver_map[i] == csw) { 4250 bound = 1; 4251 break; 4252 } 4253 } 4254 4255 return bound; 4256 } 4257 EXPORT_SYMBOL(con_is_bound); 4258 4259 /** 4260 * con_is_visible - checks whether the current console is visible 4261 * @vc: virtual console 4262 * 4263 * RETURNS: zero if not visible, nonzero if visible 4264 */ 4265 bool con_is_visible(const struct vc_data *vc) 4266 { 4267 WARN_CONSOLE_UNLOCKED(); 4268 4269 return *vc->vc_display_fg == vc; 4270 } 4271 EXPORT_SYMBOL(con_is_visible); 4272 4273 /** 4274 * con_debug_enter - prepare the console for the kernel debugger 4275 * @vc: virtual console 4276 * 4277 * Called when the console is taken over by the kernel debugger, this 4278 * function needs to save the current console state, then put the console 4279 * into a state suitable for the kernel debugger. 4280 */ 4281 void con_debug_enter(struct vc_data *vc) 4282 { 4283 #ifdef CONFIG_KGDB_KDB 4284 /* Set the initial LINES variable if it is not already set */ 4285 if (vc->vc_rows < 999) { 4286 int linecount; 4287 char lns[4]; 4288 const char *setargs[3] = { 4289 "set", 4290 "LINES", 4291 lns, 4292 }; 4293 if (kdbgetintenv(setargs[0], &linecount)) { 4294 snprintf(lns, 4, "%i", vc->vc_rows); 4295 kdb_set(2, setargs); 4296 } 4297 } 4298 if (vc->vc_cols < 999) { 4299 int colcount; 4300 char cols[4]; 4301 const char *setargs[3] = { 4302 "set", 4303 "COLUMNS", 4304 cols, 4305 }; 4306 if (kdbgetintenv(setargs[0], &colcount)) { 4307 snprintf(cols, 4, "%i", vc->vc_cols); 4308 kdb_set(2, setargs); 4309 } 4310 } 4311 #endif /* CONFIG_KGDB_KDB */ 4312 } 4313 EXPORT_SYMBOL_GPL(con_debug_enter); 4314 4315 /** 4316 * con_debug_leave - restore console state 4317 * 4318 * Restore the console state to what it was before the kernel debugger 4319 * was invoked. 4320 */ 4321 void con_debug_leave(void) 4322 { } 4323 EXPORT_SYMBOL_GPL(con_debug_leave); 4324 4325 static int do_register_con_driver(const struct consw *csw, int first, int last) 4326 { 4327 struct module *owner = csw->owner; 4328 struct con_driver *con_driver; 4329 const char *desc; 4330 int i, retval; 4331 4332 WARN_CONSOLE_UNLOCKED(); 4333 4334 if (!try_module_get(owner)) 4335 return -ENODEV; 4336 4337 for (i = 0; i < MAX_NR_CON_DRIVER; i++) { 4338 con_driver = ®istered_con_driver[i]; 4339 4340 /* already registered */ 4341 if (con_driver->con == csw) { 4342 retval = -EBUSY; 4343 goto err; 4344 } 4345 } 4346 4347 desc = csw->con_startup(); 4348 if (!desc) { 4349 retval = -ENODEV; 4350 goto err; 4351 } 4352 4353 retval = -EINVAL; 4354 4355 for (i = 0; i < MAX_NR_CON_DRIVER; i++) { 4356 con_driver = ®istered_con_driver[i]; 4357 4358 if (con_driver->con == NULL && 4359 !(con_driver->flag & CON_DRIVER_FLAG_ZOMBIE)) { 4360 con_driver->con = csw; 4361 con_driver->desc = desc; 4362 con_driver->node = i; 4363 con_driver->flag = CON_DRIVER_FLAG_MODULE | 4364 CON_DRIVER_FLAG_INIT; 4365 con_driver->first = first; 4366 con_driver->last = last; 4367 retval = 0; 4368 break; 4369 } 4370 } 4371 4372 if (retval) 4373 goto err; 4374 4375 con_driver->dev = 4376 device_create_with_groups(&vtconsole_class, NULL, 4377 MKDEV(0, con_driver->node), 4378 con_driver, con_dev_groups, 4379 "vtcon%i", con_driver->node); 4380 if (IS_ERR(con_driver->dev)) { 4381 pr_warn("Unable to create device for %s; errno = %ld\n", 4382 con_driver->desc, PTR_ERR(con_driver->dev)); 4383 con_driver->dev = NULL; 4384 } else { 4385 vtconsole_init_device(con_driver); 4386 } 4387 4388 err: 4389 module_put(owner); 4390 return retval; 4391 } 4392 4393 4394 /** 4395 * do_unregister_con_driver - unregister console driver from console layer 4396 * @csw: console driver 4397 * 4398 * DESCRIPTION: All drivers that registers to the console layer must 4399 * call this function upon exit, or if the console driver is in a state 4400 * where it won't be able to handle console services, such as the 4401 * framebuffer console without loaded framebuffer drivers. 4402 * 4403 * The driver must unbind first prior to unregistration. 4404 */ 4405 int do_unregister_con_driver(const struct consw *csw) 4406 { 4407 int i; 4408 4409 /* cannot unregister a bound driver */ 4410 if (con_is_bound(csw)) 4411 return -EBUSY; 4412 4413 if (csw == conswitchp) 4414 return -EINVAL; 4415 4416 for (i = 0; i < MAX_NR_CON_DRIVER; i++) { 4417 struct con_driver *con_driver = ®istered_con_driver[i]; 4418 4419 if (con_driver->con == csw) { 4420 /* 4421 * Defer the removal of the sysfs entries since that 4422 * will acquire the kernfs s_active lock and we can't 4423 * acquire this lock while holding the console lock: 4424 * the unbind sysfs entry imposes already the opposite 4425 * order. Reset con already here to prevent any later 4426 * lookup to succeed and mark this slot as zombie, so 4427 * it won't get reused until we complete the removal 4428 * in the deferred work. 4429 */ 4430 con_driver->con = NULL; 4431 con_driver->flag = CON_DRIVER_FLAG_ZOMBIE; 4432 schedule_work(&con_driver_unregister_work); 4433 4434 return 0; 4435 } 4436 } 4437 4438 return -ENODEV; 4439 } 4440 EXPORT_SYMBOL_GPL(do_unregister_con_driver); 4441 4442 static void con_driver_unregister_callback(struct work_struct *ignored) 4443 { 4444 int i; 4445 4446 guard(console_lock)(); 4447 4448 for (i = 0; i < MAX_NR_CON_DRIVER; i++) { 4449 struct con_driver *con_driver = ®istered_con_driver[i]; 4450 4451 if (!(con_driver->flag & CON_DRIVER_FLAG_ZOMBIE)) 4452 continue; 4453 4454 console_unlock(); 4455 4456 vtconsole_deinit_device(con_driver); 4457 device_destroy(&vtconsole_class, MKDEV(0, con_driver->node)); 4458 4459 console_lock(); 4460 4461 if (WARN_ON_ONCE(con_driver->con)) 4462 con_driver->con = NULL; 4463 con_driver->desc = NULL; 4464 con_driver->dev = NULL; 4465 con_driver->node = 0; 4466 WARN_ON_ONCE(con_driver->flag != CON_DRIVER_FLAG_ZOMBIE); 4467 con_driver->flag = 0; 4468 con_driver->first = 0; 4469 con_driver->last = 0; 4470 } 4471 } 4472 4473 /* 4474 * If we support more console drivers, this function is used 4475 * when a driver wants to take over some existing consoles 4476 * and become default driver for newly opened ones. 4477 * 4478 * do_take_over_console is basically a register followed by bind 4479 */ 4480 int do_take_over_console(const struct consw *csw, int first, int last, int deflt) 4481 { 4482 int err; 4483 4484 err = do_register_con_driver(csw, first, last); 4485 /* 4486 * If we get an busy error we still want to bind the console driver 4487 * and return success, as we may have unbound the console driver 4488 * but not unregistered it. 4489 */ 4490 if (err == -EBUSY) 4491 err = 0; 4492 if (!err) 4493 do_bind_con_driver(csw, first, last, deflt); 4494 4495 return err; 4496 } 4497 EXPORT_SYMBOL_GPL(do_take_over_console); 4498 4499 4500 /* 4501 * give_up_console is a wrapper to unregister_con_driver. It will only 4502 * work if driver is fully unbound. 4503 */ 4504 void give_up_console(const struct consw *csw) 4505 { 4506 guard(console_lock)(); 4507 do_unregister_con_driver(csw); 4508 } 4509 EXPORT_SYMBOL(give_up_console); 4510 4511 static int __init vtconsole_class_init(void) 4512 { 4513 int i; 4514 4515 i = class_register(&vtconsole_class); 4516 if (i) 4517 pr_warn("Unable to create vt console class; errno = %d\n", i); 4518 4519 /* Add system drivers to sysfs */ 4520 for (i = 0; i < MAX_NR_CON_DRIVER; i++) { 4521 struct con_driver *con = ®istered_con_driver[i]; 4522 4523 if (con->con && !con->dev) { 4524 con->dev = 4525 device_create_with_groups(&vtconsole_class, NULL, 4526 MKDEV(0, con->node), 4527 con, con_dev_groups, 4528 "vtcon%i", con->node); 4529 4530 if (IS_ERR(con->dev)) { 4531 pr_warn("Unable to create device for %s; errno = %ld\n", 4532 con->desc, PTR_ERR(con->dev)); 4533 con->dev = NULL; 4534 } else { 4535 vtconsole_init_device(con); 4536 } 4537 } 4538 } 4539 4540 return 0; 4541 } 4542 postcore_initcall(vtconsole_class_init); 4543 4544 /* 4545 * Screen blanking 4546 */ 4547 4548 static int set_vesa_blanking(u8 __user *mode_user) 4549 { 4550 u8 mode; 4551 4552 if (get_user(mode, mode_user)) 4553 return -EFAULT; 4554 4555 guard(console_lock)(); 4556 vesa_blank_mode = (mode <= VESA_BLANK_MAX) ? mode : VESA_NO_BLANKING; 4557 4558 return 0; 4559 } 4560 4561 void do_blank_screen(int entering_gfx) 4562 { 4563 struct vc_data *vc = vc_cons[fg_console].d; 4564 int i; 4565 4566 might_sleep(); 4567 4568 WARN_CONSOLE_UNLOCKED(); 4569 4570 if (console_blanked) { 4571 if (blank_state == blank_vesa_wait) { 4572 blank_state = blank_off; 4573 vc->vc_sw->con_blank(vc, vesa_blank_mode + 1, 0); 4574 } 4575 return; 4576 } 4577 4578 /* entering graphics mode? */ 4579 if (entering_gfx) { 4580 hide_cursor(vc); 4581 save_screen(vc); 4582 vc->vc_sw->con_blank(vc, VESA_VSYNC_SUSPEND, 1); 4583 console_blanked = fg_console + 1; 4584 blank_state = blank_off; 4585 set_origin(vc); 4586 return; 4587 } 4588 4589 blank_state = blank_off; 4590 4591 /* don't blank graphics */ 4592 if (vc->vc_mode != KD_TEXT) { 4593 console_blanked = fg_console + 1; 4594 return; 4595 } 4596 4597 hide_cursor(vc); 4598 timer_delete_sync(&console_timer); 4599 blank_timer_expired = 0; 4600 4601 save_screen(vc); 4602 /* In case we need to reset origin, blanking hook returns 1 */ 4603 i = vc->vc_sw->con_blank(vc, vesa_off_interval ? VESA_VSYNC_SUSPEND : 4604 (vesa_blank_mode + 1), 0); 4605 console_blanked = fg_console + 1; 4606 if (i) 4607 set_origin(vc); 4608 4609 if (console_blank_hook && console_blank_hook(1)) 4610 return; 4611 4612 if (vesa_off_interval && vesa_blank_mode) { 4613 blank_state = blank_vesa_wait; 4614 mod_timer(&console_timer, jiffies + vesa_off_interval); 4615 } 4616 vt_event_post(VT_EVENT_BLANK, vc->vc_num, vc->vc_num); 4617 } 4618 EXPORT_SYMBOL(do_blank_screen); 4619 4620 /* 4621 * Called by timer as well as from vt_console_driver 4622 */ 4623 void do_unblank_screen(int leaving_gfx) 4624 { 4625 struct vc_data *vc; 4626 4627 /* This should now always be called from a "sane" (read: can schedule) 4628 * context for the sake of the low level drivers, except in the special 4629 * case of oops_in_progress 4630 */ 4631 if (!oops_in_progress) 4632 might_sleep(); 4633 4634 WARN_CONSOLE_UNLOCKED(); 4635 4636 ignore_poke = 0; 4637 if (!console_blanked) 4638 return; 4639 if (!vc_cons_allocated(fg_console)) { 4640 /* impossible */ 4641 pr_warn("unblank_screen: tty %d not allocated ??\n", 4642 fg_console + 1); 4643 return; 4644 } 4645 vc = vc_cons[fg_console].d; 4646 if (vc->vc_mode != KD_TEXT) 4647 return; /* but leave console_blanked != 0 */ 4648 4649 if (blankinterval) { 4650 mod_timer(&console_timer, jiffies + (blankinterval * HZ)); 4651 blank_state = blank_normal_wait; 4652 } 4653 4654 console_blanked = 0; 4655 if (vc->vc_sw->con_blank(vc, VESA_NO_BLANKING, leaving_gfx)) 4656 /* Low-level driver cannot restore -> do it ourselves */ 4657 update_screen(vc); 4658 if (console_blank_hook) 4659 console_blank_hook(0); 4660 set_palette(vc); 4661 set_cursor(vc); 4662 vt_event_post(VT_EVENT_UNBLANK, vc->vc_num, vc->vc_num); 4663 notify_update(vc); 4664 } 4665 EXPORT_SYMBOL(do_unblank_screen); 4666 4667 /* 4668 * This is called by the outside world to cause a forced unblank, mostly for 4669 * oopses. Currently, I just call do_unblank_screen(0), but we could eventually 4670 * call it with 1 as an argument and so force a mode restore... that may kill 4671 * X or at least garbage the screen but would also make the Oops visible... 4672 */ 4673 static void unblank_screen(void) 4674 { 4675 do_unblank_screen(0); 4676 } 4677 4678 /* 4679 * We defer the timer blanking to work queue so it can take the console mutex 4680 * (console operations can still happen at irq time, but only from printk which 4681 * has the console mutex. Not perfect yet, but better than no locking 4682 */ 4683 static void blank_screen_t(struct timer_list *unused) 4684 { 4685 blank_timer_expired = 1; 4686 schedule_work(&console_work); 4687 } 4688 4689 void poke_blanked_console(void) 4690 { 4691 WARN_CONSOLE_UNLOCKED(); 4692 4693 /* Add this so we quickly catch whoever might call us in a non 4694 * safe context. Nowadays, unblank_screen() isn't to be called in 4695 * atomic contexts and is allowed to schedule (with the special case 4696 * of oops_in_progress, but that isn't of any concern for this 4697 * function. --BenH. 4698 */ 4699 might_sleep(); 4700 4701 /* This isn't perfectly race free, but a race here would be mostly harmless, 4702 * at worst, we'll do a spurious blank and it's unlikely 4703 */ 4704 timer_delete(&console_timer); 4705 blank_timer_expired = 0; 4706 4707 if (ignore_poke || !vc_cons[fg_console].d || vc_cons[fg_console].d->vc_mode == KD_GRAPHICS) 4708 return; 4709 if (console_blanked) 4710 unblank_screen(); 4711 else if (blankinterval) { 4712 mod_timer(&console_timer, jiffies + (blankinterval * HZ)); 4713 blank_state = blank_normal_wait; 4714 } 4715 } 4716 4717 /* 4718 * Palettes 4719 */ 4720 4721 static void set_palette(struct vc_data *vc) 4722 { 4723 WARN_CONSOLE_UNLOCKED(); 4724 4725 if (vc->vc_mode != KD_GRAPHICS && vc->vc_sw->con_set_palette) 4726 vc->vc_sw->con_set_palette(vc, color_table); 4727 } 4728 4729 /* 4730 * Load palette into the DAC registers. arg points to a colour 4731 * map, 3 bytes per colour, 16 colours, range from 0 to 255. 4732 */ 4733 4734 int con_set_cmap(unsigned char __user *arg) 4735 { 4736 int i, j, k; 4737 unsigned char colormap[3*16]; 4738 4739 if (copy_from_user(colormap, arg, sizeof(colormap))) 4740 return -EFAULT; 4741 4742 guard(console_lock)(); 4743 for (i = k = 0; i < 16; i++) { 4744 default_red[i] = colormap[k++]; 4745 default_grn[i] = colormap[k++]; 4746 default_blu[i] = colormap[k++]; 4747 } 4748 for (i = 0; i < MAX_NR_CONSOLES; i++) { 4749 if (!vc_cons_allocated(i)) 4750 continue; 4751 for (j = k = 0; j < 16; j++) { 4752 vc_cons[i].d->vc_palette[k++] = default_red[j]; 4753 vc_cons[i].d->vc_palette[k++] = default_grn[j]; 4754 vc_cons[i].d->vc_palette[k++] = default_blu[j]; 4755 } 4756 set_palette(vc_cons[i].d); 4757 } 4758 4759 return 0; 4760 } 4761 4762 int con_get_cmap(unsigned char __user *arg) 4763 { 4764 int i, k; 4765 unsigned char colormap[3*16]; 4766 4767 scoped_guard(console_lock) 4768 for (i = k = 0; i < 16; i++) { 4769 colormap[k++] = default_red[i]; 4770 colormap[k++] = default_grn[i]; 4771 colormap[k++] = default_blu[i]; 4772 } 4773 4774 if (copy_to_user(arg, colormap, sizeof(colormap))) 4775 return -EFAULT; 4776 4777 return 0; 4778 } 4779 4780 void reset_palette(struct vc_data *vc) 4781 { 4782 int j, k; 4783 for (j=k=0; j<16; j++) { 4784 vc->vc_palette[k++] = default_red[j]; 4785 vc->vc_palette[k++] = default_grn[j]; 4786 vc->vc_palette[k++] = default_blu[j]; 4787 } 4788 set_palette(vc); 4789 } 4790 4791 /* 4792 * Font switching 4793 * 4794 * Currently we only support fonts up to 128 pixels wide, at a maximum height 4795 * of 128 pixels. Userspace fontdata may have to be stored with 32 bytes 4796 * (shorts/ints, depending on width) reserved for each character which is 4797 * kinda wasty, but this is done in order to maintain compatibility with the 4798 * EGA/VGA fonts. It is up to the actual low-level console-driver convert data 4799 * into its favorite format (maybe we should add a `fontoffset' field to the 4800 * `display' structure so we won't have to convert the fontdata all the time. 4801 * /Jes 4802 */ 4803 4804 #define max_font_width 64 4805 #define max_font_height 128 4806 #define max_font_glyphs 512 4807 #define max_font_size (max_font_glyphs*max_font_width*max_font_height) 4808 4809 static int con_font_get(struct vc_data *vc, struct console_font_op *op) 4810 { 4811 struct console_font font; 4812 int c; 4813 unsigned int vpitch = op->op == KD_FONT_OP_GET_TALL ? op->height : 32; 4814 4815 if (vpitch > max_font_height) 4816 return -EINVAL; 4817 4818 void *font_data __free(kvfree) = NULL; 4819 if (op->data) { 4820 font.data = font_data = kvzalloc(max_font_size, GFP_KERNEL); 4821 if (!font.data) 4822 return -ENOMEM; 4823 } else 4824 font.data = NULL; 4825 4826 scoped_guard(console_lock) { 4827 if (vc->vc_mode != KD_TEXT) 4828 return -EINVAL; 4829 if (!vc->vc_sw->con_font_get) 4830 return -ENOSYS; 4831 4832 int ret = vc->vc_sw->con_font_get(vc, &font, vpitch); 4833 if (ret) 4834 return ret; 4835 } 4836 4837 c = DIV_ROUND_UP(font.width, 8) * vpitch * font.charcount; 4838 4839 if (op->data && font.charcount > op->charcount) 4840 return -ENOSPC; 4841 if (font.width > op->width || font.height > op->height) 4842 return -ENOSPC; 4843 4844 op->height = font.height; 4845 op->width = font.width; 4846 op->charcount = font.charcount; 4847 4848 if (op->data && copy_to_user(op->data, font.data, c)) 4849 return -EFAULT; 4850 4851 return 0; 4852 } 4853 4854 static int con_font_set(struct vc_data *vc, const struct console_font_op *op) 4855 { 4856 struct console_font font; 4857 int size; 4858 unsigned int vpitch = op->op == KD_FONT_OP_SET_TALL ? op->height : 32; 4859 4860 if (!op->data) 4861 return -EINVAL; 4862 if (op->charcount > max_font_glyphs) 4863 return -EINVAL; 4864 if (op->width <= 0 || op->width > max_font_width || !op->height || 4865 op->height > max_font_height) 4866 return -EINVAL; 4867 if (vpitch < op->height) 4868 return -EINVAL; 4869 size = DIV_ROUND_UP(op->width, 8) * vpitch * op->charcount; 4870 if (size > max_font_size) 4871 return -ENOSPC; 4872 4873 void *font_data __free(kfree) = font.data = memdup_user(op->data, size); 4874 if (IS_ERR(font.data)) 4875 return PTR_ERR(font.data); 4876 4877 font.charcount = op->charcount; 4878 font.width = op->width; 4879 font.height = op->height; 4880 4881 guard(console_lock)(); 4882 4883 if (vc->vc_mode != KD_TEXT) 4884 return -EINVAL; 4885 if (!vc->vc_sw->con_font_set) 4886 return -ENOSYS; 4887 4888 if (vc_is_sel(vc)) 4889 clear_selection(); 4890 4891 return vc->vc_sw->con_font_set(vc, &font, vpitch, op->flags); 4892 } 4893 4894 static int con_font_default(struct vc_data *vc, struct console_font_op *op) 4895 { 4896 struct console_font font = {.width = op->width, .height = op->height}; 4897 char name[MAX_FONT_NAME]; 4898 char *s = name; 4899 4900 if (!op->data) 4901 s = NULL; 4902 else if (strncpy_from_user(name, op->data, MAX_FONT_NAME - 1) < 0) 4903 return -EFAULT; 4904 else 4905 name[MAX_FONT_NAME - 1] = 0; 4906 4907 scoped_guard(console_lock) { 4908 if (vc->vc_mode != KD_TEXT) 4909 return -EINVAL; 4910 if (!vc->vc_sw->con_font_default) 4911 return -ENOSYS; 4912 4913 if (vc_is_sel(vc)) 4914 clear_selection(); 4915 int ret = vc->vc_sw->con_font_default(vc, &font, s); 4916 if (ret) 4917 return ret; 4918 } 4919 4920 op->width = font.width; 4921 op->height = font.height; 4922 4923 return 0; 4924 } 4925 4926 int con_font_op(struct vc_data *vc, struct console_font_op *op) 4927 { 4928 switch (op->op) { 4929 case KD_FONT_OP_SET: 4930 case KD_FONT_OP_SET_TALL: 4931 return con_font_set(vc, op); 4932 case KD_FONT_OP_GET: 4933 case KD_FONT_OP_GET_TALL: 4934 return con_font_get(vc, op); 4935 case KD_FONT_OP_SET_DEFAULT: 4936 return con_font_default(vc, op); 4937 case KD_FONT_OP_COPY: 4938 /* was buggy and never really used */ 4939 return -EINVAL; 4940 } 4941 return -ENOSYS; 4942 } 4943 4944 /* 4945 * Interface exported to selection and vcs. 4946 */ 4947 4948 /* used by selection */ 4949 u16 screen_glyph(const struct vc_data *vc, int offset) 4950 { 4951 u16 w = scr_readw(screenpos(vc, offset, true)); 4952 u16 c = w & 0xff; 4953 4954 if (w & vc->vc_hi_font_mask) 4955 c |= 0x100; 4956 return c; 4957 } 4958 EXPORT_SYMBOL_GPL(screen_glyph); 4959 4960 u32 screen_glyph_unicode(const struct vc_data *vc, int n) 4961 { 4962 u32 **uni_lines = vc->vc_uni_lines; 4963 4964 if (uni_lines) 4965 return uni_lines[n / vc->vc_cols][n % vc->vc_cols]; 4966 4967 return inverse_translate(vc, screen_glyph(vc, n * 2), true); 4968 } 4969 EXPORT_SYMBOL_GPL(screen_glyph_unicode); 4970 4971 /* used by vcs - note the word offset */ 4972 unsigned short *screen_pos(const struct vc_data *vc, int w_offset, bool viewed) 4973 { 4974 return screenpos(vc, 2 * w_offset, viewed); 4975 } 4976 EXPORT_SYMBOL_GPL(screen_pos); 4977 4978 void getconsxy(const struct vc_data *vc, unsigned char xy[static 2]) 4979 { 4980 /* clamp values if they don't fit */ 4981 xy[0] = min(vc->state.x, 0xFFu); 4982 xy[1] = min(vc->state.y, 0xFFu); 4983 } 4984 4985 void putconsxy(struct vc_data *vc, unsigned char xy[static const 2]) 4986 { 4987 hide_cursor(vc); 4988 gotoxy(vc, xy[0], xy[1]); 4989 set_cursor(vc); 4990 } 4991 4992 u16 vcs_scr_readw(const struct vc_data *vc, const u16 *org) 4993 { 4994 if ((unsigned long)org == vc->vc_pos && softcursor_original != -1) 4995 return softcursor_original; 4996 return scr_readw(org); 4997 } 4998 4999 void vcs_scr_writew(struct vc_data *vc, u16 val, u16 *org) 5000 { 5001 scr_writew(val, org); 5002 if ((unsigned long)org == vc->vc_pos) { 5003 softcursor_original = -1; 5004 add_softcursor(vc); 5005 } 5006 } 5007 5008 void vcs_scr_updated(struct vc_data *vc) 5009 { 5010 notify_update(vc); 5011 } 5012