eficons.c revision 1.14 1 1.14 rin /* $NetBSD: eficons.c,v 1.14 2023/09/14 03:05:15 rin Exp $ */
2 1.1 nonaka
3 1.1 nonaka /*-
4 1.1 nonaka * Copyright (c) 2016 Kimihiro Nonaka <nonaka (at) netbsd.org>
5 1.1 nonaka * All rights reserved.
6 1.1 nonaka *
7 1.1 nonaka * Redistribution and use in source and binary forms, with or without
8 1.1 nonaka * modification, are permitted provided that the following conditions
9 1.1 nonaka * are met:
10 1.1 nonaka * 1. Redistributions of source code must retain the above copyright
11 1.1 nonaka * notice, this list of conditions and the following disclaimer.
12 1.1 nonaka * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 nonaka * notice, this list of conditions and the following disclaimer in the
14 1.1 nonaka * documentation and/or other materials provided with the distribution.
15 1.1 nonaka *
16 1.1 nonaka * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
17 1.1 nonaka * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18 1.1 nonaka * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19 1.1 nonaka * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
20 1.1 nonaka * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21 1.1 nonaka * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22 1.1 nonaka * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23 1.1 nonaka * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24 1.1 nonaka * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25 1.1 nonaka * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 1.1 nonaka * SUCH DAMAGE.
27 1.1 nonaka */
28 1.1 nonaka
29 1.14 rin #include <sys/param.h>
30 1.1 nonaka #include <sys/bitops.h>
31 1.1 nonaka #include <sys/stdint.h>
32 1.1 nonaka
33 1.13 rin #include <comio_direct.h>
34 1.13 rin
35 1.1 nonaka #include "efiboot.h"
36 1.1 nonaka
37 1.1 nonaka #include "bootinfo.h"
38 1.1 nonaka #include "vbe.h"
39 1.1 nonaka
40 1.8 jmcneill #ifndef DEFAULT_GOP_MODE
41 1.9 jmcneill #define DEFAULT_GOP_MODE "1024x768"
42 1.8 jmcneill #endif
43 1.10 jmcneill #define FALLBACK_GOP_MODE 0
44 1.8 jmcneill
45 1.4 nonaka extern struct x86_boot_params boot_params;
46 1.4 nonaka
47 1.1 nonaka struct btinfo_console btinfo_console;
48 1.1 nonaka
49 1.1 nonaka static EFI_GRAPHICS_OUTPUT_PROTOCOL *efi_gop;
50 1.1 nonaka static int efi_gop_mode = -1;
51 1.1 nonaka static CHAR16 keybuf[16];
52 1.1 nonaka static int keybuf_read = 0;
53 1.1 nonaka static int keybuf_write = 0;
54 1.1 nonaka
55 1.5 nonaka static SERIAL_IO_INTERFACE *serios[4];
56 1.5 nonaka static int default_comspeed =
57 1.5 nonaka #if defined(CONSPEED)
58 1.5 nonaka CONSPEED;
59 1.5 nonaka #else
60 1.5 nonaka 9600;
61 1.5 nonaka #endif
62 1.5 nonaka static u_char serbuf[16];
63 1.5 nonaka static int serbuf_read = 0;
64 1.5 nonaka static int serbuf_write = 0;
65 1.5 nonaka
66 1.13 rin static int raw_com_addr = 0;
67 1.13 rin
68 1.1 nonaka static void eficons_init_video(void);
69 1.1 nonaka static void efi_switch_video_to_text_mode(void);
70 1.1 nonaka
71 1.5 nonaka static int efi_cons_getc(void);
72 1.5 nonaka static int efi_cons_putc(int);
73 1.5 nonaka static int efi_cons_iskey(int);
74 1.5 nonaka static int efi_cons_waitforinputevent(uint64_t);
75 1.5 nonaka
76 1.5 nonaka static void efi_com_probe(void);
77 1.5 nonaka static bool efi_valid_com(int);
78 1.5 nonaka static int efi_com_init(int, int);
79 1.5 nonaka static int efi_com_getc(void);
80 1.5 nonaka static int efi_com_putc(int);
81 1.5 nonaka static int efi_com_status(int);
82 1.5 nonaka static int efi_com_waitforinputevent(uint64_t);
83 1.5 nonaka
84 1.13 rin static int raw_com_init(int, int);
85 1.13 rin static int raw_com_getc(void);
86 1.13 rin static int raw_com_putc(int);
87 1.13 rin static int raw_com_status(int);
88 1.13 rin static int raw_com_waitforinputevent(uint64_t);
89 1.13 rin
90 1.8 jmcneill static int efi_find_gop_mode(char *);
91 1.8 jmcneill
92 1.5 nonaka static int iodev;
93 1.5 nonaka static int (*internal_getchar)(void) = efi_cons_getc;
94 1.5 nonaka static int (*internal_putchar)(int) = efi_cons_putc;
95 1.5 nonaka static int (*internal_iskey)(int) = efi_cons_iskey;
96 1.5 nonaka static int (*internal_waitforinputevent)(uint64_t) = efi_cons_waitforinputevent;
97 1.5 nonaka
98 1.4 nonaka static int
99 1.4 nonaka getcomaddr(int idx)
100 1.4 nonaka {
101 1.4 nonaka static const short comioport[4] = { 0x3f8, 0x2f8, 0x3e8, 0x2e8 };
102 1.4 nonaka
103 1.4 nonaka if (idx < __arraycount(comioport))
104 1.4 nonaka return comioport[idx];
105 1.4 nonaka return 0;
106 1.4 nonaka }
107 1.4 nonaka
108 1.4 nonaka /*
109 1.4 nonaka * XXX only pass console parameters to kernel.
110 1.4 nonaka */
111 1.4 nonaka void
112 1.7 manu efi_consinit(int dev, int ioport, int speed)
113 1.4 nonaka {
114 1.5 nonaka int i;
115 1.4 nonaka
116 1.5 nonaka btinfo_console.speed = default_comspeed;
117 1.4 nonaka
118 1.4 nonaka switch (dev) {
119 1.4 nonaka case CONSDEV_AUTO:
120 1.5 nonaka for (i = 0; i < __arraycount(serios); i++) {
121 1.5 nonaka iodev = CONSDEV_COM0 + i;
122 1.5 nonaka if (!efi_valid_com(iodev))
123 1.5 nonaka continue;
124 1.5 nonaka btinfo_console.addr = getcomaddr(i);
125 1.5 nonaka
126 1.5 nonaka efi_cons_putc('0' + i);
127 1.5 nonaka efi_com_init(btinfo_console.addr, btinfo_console.speed);
128 1.5 nonaka /* check for:
129 1.5 nonaka * 1. successful output
130 1.5 nonaka * 2. optionally, keypress within 7s
131 1.5 nonaka */
132 1.5 nonaka if (efi_com_putc(':') &&
133 1.5 nonaka efi_com_putc('-') &&
134 1.5 nonaka efi_com_putc('(') &&
135 1.5 nonaka awaitkey(7, 0))
136 1.5 nonaka goto ok;
137 1.5 nonaka }
138 1.4 nonaka goto nocom;
139 1.5 nonaka ok:
140 1.5 nonaka break;
141 1.4 nonaka
142 1.4 nonaka case CONSDEV_COM0:
143 1.4 nonaka case CONSDEV_COM1:
144 1.4 nonaka case CONSDEV_COM2:
145 1.4 nonaka case CONSDEV_COM3:
146 1.4 nonaka iodev = dev;
147 1.4 nonaka btinfo_console.addr = ioport;
148 1.13 rin if (btinfo_console.addr == 0)
149 1.4 nonaka btinfo_console.addr = getcomaddr(iodev - CONSDEV_COM0);
150 1.4 nonaka if (speed != 0)
151 1.4 nonaka btinfo_console.speed = speed;
152 1.5 nonaka efi_com_init(btinfo_console.addr, btinfo_console.speed);
153 1.4 nonaka break;
154 1.4 nonaka
155 1.4 nonaka case CONSDEV_COM0KBD:
156 1.4 nonaka case CONSDEV_COM1KBD:
157 1.4 nonaka case CONSDEV_COM2KBD:
158 1.4 nonaka case CONSDEV_COM3KBD:
159 1.4 nonaka iodev = dev - CONSDEV_COM0KBD + CONSDEV_COM0;
160 1.5 nonaka btinfo_console.addr = getcomaddr(iodev - CONSDEV_COM0);
161 1.5 nonaka
162 1.5 nonaka efi_cons_putc('0' + iodev - CONSDEV_COM0);
163 1.5 nonaka efi_com_init(btinfo_console.addr, btinfo_console.speed);
164 1.5 nonaka /* check for:
165 1.5 nonaka * 1. successful output
166 1.5 nonaka * 2. optionally, keypress within 7s
167 1.5 nonaka */
168 1.5 nonaka if (efi_com_putc(':') &&
169 1.5 nonaka efi_com_putc('-') &&
170 1.5 nonaka efi_com_putc('(') &&
171 1.5 nonaka awaitkey(7, 0))
172 1.5 nonaka goto kbd;
173 1.5 nonaka /*FALLTHROUGH*/
174 1.4 nonaka case CONSDEV_PC:
175 1.4 nonaka default:
176 1.4 nonaka nocom:
177 1.4 nonaka iodev = CONSDEV_PC;
178 1.5 nonaka internal_putchar = efi_cons_putc;
179 1.5 nonaka kbd:
180 1.5 nonaka internal_getchar = efi_cons_getc;
181 1.5 nonaka internal_iskey = efi_cons_iskey;
182 1.5 nonaka internal_waitforinputevent = efi_cons_waitforinputevent;
183 1.5 nonaka memset(keybuf, 0, sizeof(keybuf));
184 1.5 nonaka keybuf_read = keybuf_write = 0;
185 1.4 nonaka break;
186 1.4 nonaka }
187 1.4 nonaka
188 1.4 nonaka strlcpy(btinfo_console.devname, iodev == CONSDEV_PC ? "pc" : "com", 16);
189 1.4 nonaka }
190 1.4 nonaka
191 1.1 nonaka int
192 1.1 nonaka cninit(void)
193 1.1 nonaka {
194 1.1 nonaka
195 1.1 nonaka efi_switch_video_to_text_mode();
196 1.1 nonaka eficons_init_video();
197 1.5 nonaka efi_com_probe();
198 1.1 nonaka
199 1.7 manu efi_consinit(boot_params.bp_consdev, boot_params.bp_consaddr,
200 1.4 nonaka boot_params.bp_conspeed);
201 1.1 nonaka
202 1.1 nonaka return 0;
203 1.1 nonaka }
204 1.1 nonaka
205 1.5 nonaka void
206 1.5 nonaka efi_cons_show(void)
207 1.5 nonaka {
208 1.5 nonaka const bool pc_is_console = strcmp(btinfo_console.devname, "pc") == 0;
209 1.5 nonaka const bool com_is_console = strcmp(btinfo_console.devname, "com") == 0;
210 1.5 nonaka bool first = true;
211 1.5 nonaka bool found = false;
212 1.5 nonaka int i;
213 1.5 nonaka
214 1.5 nonaka if (efi_gop != NULL) {
215 1.5 nonaka printf("pc");
216 1.5 nonaka if (pc_is_console)
217 1.5 nonaka printf("*");
218 1.5 nonaka first = false;
219 1.5 nonaka }
220 1.5 nonaka
221 1.5 nonaka for (i = 0; i < __arraycount(serios); i++) {
222 1.5 nonaka if (serios[i] != NULL) {
223 1.5 nonaka if (!first)
224 1.5 nonaka printf(" ");
225 1.5 nonaka first = false;
226 1.5 nonaka
227 1.5 nonaka printf("com%d", i);
228 1.5 nonaka if (com_is_console &&
229 1.5 nonaka btinfo_console.addr == getcomaddr(i)) {
230 1.5 nonaka printf(",%d*", btinfo_console.speed);
231 1.5 nonaka found = true;
232 1.5 nonaka }
233 1.5 nonaka }
234 1.5 nonaka }
235 1.5 nonaka if (!found && com_is_console) {
236 1.5 nonaka if (!first)
237 1.5 nonaka printf(" ");
238 1.5 nonaka first = false;
239 1.5 nonaka
240 1.5 nonaka printf("com,0x%x,%d*", btinfo_console.addr,
241 1.5 nonaka btinfo_console.speed);
242 1.5 nonaka }
243 1.5 nonaka
244 1.5 nonaka printf("\n");
245 1.5 nonaka }
246 1.5 nonaka
247 1.5 nonaka static int
248 1.5 nonaka efi_cons_getc(void)
249 1.1 nonaka {
250 1.1 nonaka EFI_STATUS status;
251 1.1 nonaka EFI_INPUT_KEY key;
252 1.1 nonaka int c;
253 1.1 nonaka
254 1.1 nonaka if (keybuf_read != keybuf_write) {
255 1.1 nonaka c = keybuf[keybuf_read];
256 1.1 nonaka keybuf_read = (keybuf_read + 1) % __arraycount(keybuf);
257 1.1 nonaka return c;
258 1.1 nonaka }
259 1.1 nonaka
260 1.1 nonaka status = uefi_call_wrapper(ST->ConIn->ReadKeyStroke, 2, ST->ConIn,
261 1.1 nonaka &key);
262 1.1 nonaka while (status == EFI_NOT_READY) {
263 1.1 nonaka WaitForSingleEvent(ST->ConIn->WaitForKey, 0);
264 1.1 nonaka status = uefi_call_wrapper(ST->ConIn->ReadKeyStroke, 2,
265 1.1 nonaka ST->ConIn, &key);
266 1.1 nonaka }
267 1.1 nonaka return key.UnicodeChar;
268 1.1 nonaka }
269 1.1 nonaka
270 1.5 nonaka static int
271 1.5 nonaka efi_cons_putc(int c)
272 1.1 nonaka {
273 1.1 nonaka CHAR16 buf[2];
274 1.1 nonaka
275 1.5 nonaka buf[0] = c;
276 1.1 nonaka buf[1] = 0;
277 1.1 nonaka Output(buf);
278 1.5 nonaka
279 1.5 nonaka return 1;
280 1.1 nonaka }
281 1.1 nonaka
282 1.1 nonaka /*ARGSUSED*/
283 1.5 nonaka static int
284 1.5 nonaka efi_cons_iskey(int intr)
285 1.1 nonaka {
286 1.1 nonaka EFI_STATUS status;
287 1.1 nonaka EFI_INPUT_KEY key;
288 1.1 nonaka
289 1.1 nonaka if (keybuf_read != keybuf_write)
290 1.1 nonaka return 1;
291 1.1 nonaka
292 1.1 nonaka status = uefi_call_wrapper(ST->ConIn->ReadKeyStroke, 2, ST->ConIn,
293 1.1 nonaka &key);
294 1.1 nonaka if (EFI_ERROR(status))
295 1.1 nonaka return 0;
296 1.1 nonaka
297 1.1 nonaka keybuf[keybuf_write] = key.UnicodeChar;
298 1.1 nonaka keybuf_write = (keybuf_write + 1) % __arraycount(keybuf);
299 1.1 nonaka return 1;
300 1.1 nonaka }
301 1.1 nonaka
302 1.5 nonaka static int
303 1.5 nonaka efi_cons_waitforinputevent(uint64_t timeout)
304 1.5 nonaka {
305 1.5 nonaka EFI_STATUS status;
306 1.5 nonaka
307 1.5 nonaka status = WaitForSingleEvent(ST->ConIn->WaitForKey, timeout);
308 1.5 nonaka if (!EFI_ERROR(status))
309 1.5 nonaka return 0;
310 1.5 nonaka if (status == EFI_TIMEOUT)
311 1.5 nonaka return ETIMEDOUT;
312 1.5 nonaka return EINVAL;
313 1.5 nonaka }
314 1.5 nonaka
315 1.5 nonaka int
316 1.5 nonaka getchar(void)
317 1.5 nonaka {
318 1.5 nonaka
319 1.5 nonaka return internal_getchar();
320 1.5 nonaka }
321 1.5 nonaka
322 1.5 nonaka void
323 1.5 nonaka putchar(int c)
324 1.5 nonaka {
325 1.5 nonaka
326 1.5 nonaka if (c == '\n')
327 1.5 nonaka internal_putchar('\r');
328 1.5 nonaka internal_putchar(c);
329 1.5 nonaka }
330 1.5 nonaka
331 1.5 nonaka int
332 1.5 nonaka iskey(int intr)
333 1.5 nonaka {
334 1.5 nonaka
335 1.5 nonaka return internal_iskey(intr);
336 1.5 nonaka }
337 1.5 nonaka
338 1.1 nonaka char
339 1.1 nonaka awaitkey(int timeout, int tell)
340 1.1 nonaka {
341 1.1 nonaka char c = 0;
342 1.1 nonaka
343 1.1 nonaka for (;;) {
344 1.6 jakllsch char numbuf[32];
345 1.6 jakllsch int len;
346 1.6 jakllsch
347 1.5 nonaka if (tell && timeout) {
348 1.1 nonaka len = snprintf(numbuf, sizeof(numbuf), "%d seconds. ",
349 1.1 nonaka timeout);
350 1.1 nonaka if (len > 0 && len < sizeof(numbuf)) {
351 1.1 nonaka char *p = numbuf;
352 1.1 nonaka
353 1.1 nonaka printf("%s", numbuf);
354 1.1 nonaka while (*p)
355 1.1 nonaka *p++ = '\b';
356 1.1 nonaka }
357 1.1 nonaka }
358 1.1 nonaka if (iskey(1)) {
359 1.1 nonaka /* flush input buffer */
360 1.1 nonaka while (iskey(0))
361 1.1 nonaka c = getchar();
362 1.1 nonaka if (c == 0)
363 1.1 nonaka c = -1;
364 1.12 kim if (tell && timeout)
365 1.12 kim printf("%s", numbuf);
366 1.12 kim break;
367 1.1 nonaka }
368 1.1 nonaka if (timeout--)
369 1.5 nonaka internal_waitforinputevent(10000000);
370 1.1 nonaka else
371 1.1 nonaka break;
372 1.6 jakllsch if (tell)
373 1.6 jakllsch printf("%s", numbuf);
374 1.1 nonaka }
375 1.1 nonaka
376 1.1 nonaka if (tell)
377 1.1 nonaka printf("0 seconds. \n");
378 1.1 nonaka
379 1.1 nonaka return c;
380 1.1 nonaka }
381 1.1 nonaka
382 1.1 nonaka void
383 1.1 nonaka clear_pc_screen(void)
384 1.1 nonaka {
385 1.1 nonaka
386 1.1 nonaka uefi_call_wrapper(ST->ConOut->ClearScreen, 1, ST->ConOut);
387 1.1 nonaka }
388 1.1 nonaka
389 1.1 nonaka static uint8_t
390 1.1 nonaka getdepth(const EFI_GRAPHICS_OUTPUT_MODE_INFORMATION *info)
391 1.1 nonaka {
392 1.1 nonaka
393 1.1 nonaka switch (info->PixelFormat) {
394 1.1 nonaka case PixelBlueGreenRedReserved8BitPerColor:
395 1.1 nonaka case PixelRedGreenBlueReserved8BitPerColor:
396 1.1 nonaka return 32;
397 1.1 nonaka
398 1.1 nonaka case PixelBitMask:
399 1.1 nonaka return fls32(info->PixelInformation.RedMask
400 1.1 nonaka | info->PixelInformation.GreenMask
401 1.1 nonaka | info->PixelInformation.BlueMask
402 1.1 nonaka | info->PixelInformation.ReservedMask);
403 1.1 nonaka
404 1.1 nonaka case PixelBltOnly:
405 1.1 nonaka case PixelFormatMax:
406 1.1 nonaka return 0;
407 1.1 nonaka }
408 1.1 nonaka return 0;
409 1.1 nonaka }
410 1.1 nonaka
411 1.1 nonaka static void
412 1.1 nonaka setpixelformat(UINT32 mask, uint8_t *num, uint8_t *pos)
413 1.1 nonaka {
414 1.1 nonaka uint8_t n, p;
415 1.1 nonaka
416 1.1 nonaka n = popcount32(mask);
417 1.1 nonaka p = ffs32(mask);
418 1.1 nonaka if (p > 0)
419 1.1 nonaka p--;
420 1.1 nonaka
421 1.1 nonaka *num = n;
422 1.1 nonaka *pos = p;
423 1.1 nonaka }
424 1.1 nonaka
425 1.1 nonaka static void
426 1.1 nonaka bi_framebuffer(void)
427 1.1 nonaka {
428 1.1 nonaka EFI_STATUS status;
429 1.1 nonaka EFI_GRAPHICS_OUTPUT_MODE_INFORMATION *info;
430 1.1 nonaka struct btinfo_framebuffer fb;
431 1.11 jmcneill INT32 bestmode;
432 1.8 jmcneill UINTN sz;
433 1.1 nonaka
434 1.8 jmcneill if (efi_gop == NULL)
435 1.8 jmcneill goto nofb;
436 1.1 nonaka
437 1.1 nonaka if (efi_gop_mode >= 0) {
438 1.1 nonaka bestmode = efi_gop_mode;
439 1.1 nonaka } else {
440 1.8 jmcneill /* If a mode has not been selected, choose a default */
441 1.8 jmcneill bestmode = efi_find_gop_mode(DEFAULT_GOP_MODE);
442 1.10 jmcneill if (bestmode == -1)
443 1.10 jmcneill bestmode = FALLBACK_GOP_MODE;
444 1.8 jmcneill }
445 1.2 nonaka
446 1.8 jmcneill status = uefi_call_wrapper(efi_gop->SetMode, 2, efi_gop,
447 1.8 jmcneill bestmode);
448 1.8 jmcneill if (EFI_ERROR(status) || efi_gop->Mode->Mode != bestmode) {
449 1.8 jmcneill printf("GOP setmode failed: %" PRIxMAX "\n",
450 1.8 jmcneill (uintmax_t)status);
451 1.8 jmcneill goto nofb;
452 1.8 jmcneill }
453 1.1 nonaka
454 1.8 jmcneill status = uefi_call_wrapper(efi_gop->QueryMode, 4,
455 1.8 jmcneill efi_gop, bestmode, &sz, &info);
456 1.8 jmcneill if (EFI_ERROR(status)) {
457 1.8 jmcneill printf("GOP querymode failed: %" PRIxMAX "\n",
458 1.8 jmcneill (uintmax_t)status);
459 1.8 jmcneill goto nofb;
460 1.1 nonaka }
461 1.1 nonaka
462 1.1 nonaka memset(&fb, 0, sizeof(fb));
463 1.1 nonaka fb.physaddr = efi_gop->Mode->FrameBufferBase;
464 1.1 nonaka fb.flags = 0;
465 1.1 nonaka fb.width = info->HorizontalResolution;
466 1.1 nonaka fb.height = info->VerticalResolution;
467 1.1 nonaka fb.depth = getdepth(info);
468 1.1 nonaka fb.stride = info->PixelsPerScanLine * ((fb.depth + 7) / 8);
469 1.1 nonaka fb.vbemode = 0; /* XXX */
470 1.1 nonaka
471 1.1 nonaka switch (info->PixelFormat) {
472 1.1 nonaka case PixelBlueGreenRedReserved8BitPerColor:
473 1.1 nonaka fb.rnum = 8;
474 1.1 nonaka fb.gnum = 8;
475 1.1 nonaka fb.bnum = 8;
476 1.1 nonaka fb.rpos = 16;
477 1.1 nonaka fb.gpos = 8;
478 1.1 nonaka fb.bpos = 0;
479 1.1 nonaka break;
480 1.1 nonaka
481 1.1 nonaka case PixelRedGreenBlueReserved8BitPerColor:
482 1.1 nonaka fb.rnum = 8;
483 1.1 nonaka fb.gnum = 8;
484 1.1 nonaka fb.bnum = 8;
485 1.1 nonaka fb.rpos = 0;
486 1.1 nonaka fb.gpos = 8;
487 1.1 nonaka fb.bpos = 16;
488 1.1 nonaka break;
489 1.1 nonaka
490 1.1 nonaka case PixelBitMask:
491 1.1 nonaka setpixelformat(info->PixelInformation.RedMask,
492 1.1 nonaka &fb.rnum, &fb.rpos);
493 1.1 nonaka setpixelformat(info->PixelInformation.GreenMask,
494 1.1 nonaka &fb.gnum, &fb.gpos);
495 1.1 nonaka setpixelformat(info->PixelInformation.BlueMask,
496 1.1 nonaka &fb.bnum, &fb.bpos);
497 1.1 nonaka break;
498 1.1 nonaka
499 1.1 nonaka case PixelBltOnly:
500 1.1 nonaka case PixelFormatMax:
501 1.5 nonaka panic("Error: invalid pixel format (%d)", info->PixelFormat);
502 1.1 nonaka break;
503 1.1 nonaka }
504 1.1 nonaka
505 1.1 nonaka framebuffer_configure(&fb);
506 1.8 jmcneill return;
507 1.8 jmcneill
508 1.8 jmcneill nofb:
509 1.8 jmcneill framebuffer_configure(NULL);
510 1.1 nonaka }
511 1.1 nonaka
512 1.1 nonaka int
513 1.1 nonaka vbe_commit(void)
514 1.1 nonaka {
515 1.1 nonaka
516 1.1 nonaka bi_framebuffer();
517 1.1 nonaka return 0;
518 1.1 nonaka }
519 1.1 nonaka
520 1.1 nonaka static void
521 1.1 nonaka print_text_modes(void)
522 1.1 nonaka {
523 1.1 nonaka EFI_STATUS status;
524 1.1 nonaka UINTN cols, rows;
525 1.1 nonaka INT32 i, curmode;
526 1.1 nonaka
527 1.1 nonaka curmode = ST->ConOut->Mode->Mode;
528 1.1 nonaka for (i = 0; i < ST->ConOut->Mode->MaxMode; i++) {
529 1.1 nonaka status = uefi_call_wrapper(ST->ConOut->QueryMode, 4,
530 1.1 nonaka ST->ConOut, i, &cols, &rows);
531 1.1 nonaka if (EFI_ERROR(status))
532 1.1 nonaka continue;
533 1.5 nonaka printf("%c%d: %" PRIxMAX "x%" PRIxMAX "\n",
534 1.5 nonaka i == curmode ? '*' : ' ', i, (uintmax_t)cols, (uintmax_t)rows);
535 1.1 nonaka }
536 1.1 nonaka }
537 1.1 nonaka
538 1.1 nonaka static int
539 1.1 nonaka efi_find_text_mode(char *arg)
540 1.1 nonaka {
541 1.1 nonaka EFI_STATUS status;
542 1.1 nonaka UINTN cols, rows;
543 1.1 nonaka INT32 i;
544 1.1 nonaka char mode[32];
545 1.1 nonaka
546 1.1 nonaka for (i = 0; i < ST->ConOut->Mode->MaxMode; i++) {
547 1.1 nonaka status = uefi_call_wrapper(ST->ConOut->QueryMode, 4,
548 1.1 nonaka ST->ConOut, i, &cols, &rows);
549 1.1 nonaka if (EFI_ERROR(status))
550 1.1 nonaka continue;
551 1.5 nonaka snprintf(mode, sizeof(mode), "%" PRIuMAX "x%" PRIuMAX,
552 1.5 nonaka (uintmax_t)cols, (uintmax_t)rows);
553 1.1 nonaka if (strcmp(arg, mode) == 0)
554 1.1 nonaka return i;
555 1.1 nonaka }
556 1.1 nonaka return -1;
557 1.1 nonaka }
558 1.1 nonaka
559 1.1 nonaka void
560 1.1 nonaka command_text(char *arg)
561 1.1 nonaka {
562 1.1 nonaka EFI_STATUS status;
563 1.1 nonaka INT32 modenum;
564 1.1 nonaka
565 1.1 nonaka if (*arg == '\0' || strcmp(arg, "list") == 0) {
566 1.1 nonaka print_text_modes();
567 1.1 nonaka return;
568 1.1 nonaka }
569 1.1 nonaka
570 1.1 nonaka if (strchr(arg, 'x') != NULL) {
571 1.1 nonaka modenum = efi_find_text_mode(arg);
572 1.1 nonaka if (modenum == -1) {
573 1.1 nonaka printf("mode %s not supported by firmware\n", arg);
574 1.1 nonaka return;
575 1.1 nonaka }
576 1.1 nonaka } else {
577 1.1 nonaka modenum = strtoul(arg, NULL, 0);
578 1.1 nonaka }
579 1.1 nonaka
580 1.1 nonaka status = uefi_call_wrapper(ST->ConOut->SetMode, 2, ST->ConOut, modenum);
581 1.1 nonaka if (!EFI_ERROR(status))
582 1.1 nonaka return;
583 1.1 nonaka
584 1.1 nonaka printf("invalid flag, must be 'list', a display mode, "
585 1.1 nonaka "or a mode number\n");
586 1.1 nonaka }
587 1.1 nonaka
588 1.1 nonaka static int
589 1.1 nonaka print_gop_modes(void)
590 1.1 nonaka {
591 1.1 nonaka EFI_STATUS status;
592 1.1 nonaka EFI_GRAPHICS_OUTPUT_MODE_INFORMATION *info;
593 1.1 nonaka UINTN sz;
594 1.1 nonaka UINT32 i;
595 1.1 nonaka uint8_t depth;
596 1.1 nonaka
597 1.1 nonaka if (efi_gop == NULL)
598 1.1 nonaka return 1;
599 1.1 nonaka
600 1.1 nonaka for (i = 0; i < efi_gop->Mode->MaxMode; i++) {
601 1.1 nonaka status = uefi_call_wrapper(efi_gop->QueryMode, 4, efi_gop, i,
602 1.1 nonaka &sz, &info);
603 1.1 nonaka if (EFI_ERROR(status) && status == EFI_NOT_STARTED) {
604 1.1 nonaka status = uefi_call_wrapper(efi_gop->SetMode, 2,
605 1.1 nonaka efi_gop, efi_gop->Mode->Mode);
606 1.1 nonaka status = uefi_call_wrapper(efi_gop->QueryMode, 4,
607 1.1 nonaka efi_gop, i, &sz, &info);
608 1.1 nonaka }
609 1.1 nonaka if (EFI_ERROR(status))
610 1.1 nonaka continue;
611 1.1 nonaka
612 1.5 nonaka printf("%c%d: %dx%d ",
613 1.1 nonaka memcmp(info, efi_gop->Mode->Info, sizeof(*info)) == 0 ?
614 1.1 nonaka '*' : ' ',
615 1.1 nonaka i, info->HorizontalResolution, info->VerticalResolution);
616 1.1 nonaka switch (info->PixelFormat) {
617 1.1 nonaka case PixelRedGreenBlueReserved8BitPerColor:
618 1.5 nonaka printf("RGBR");
619 1.1 nonaka break;
620 1.1 nonaka case PixelBlueGreenRedReserved8BitPerColor:
621 1.5 nonaka printf("BGRR");
622 1.1 nonaka break;
623 1.1 nonaka case PixelBitMask:
624 1.5 nonaka printf("R:%08x G:%08x B:%08x X:%08x",
625 1.1 nonaka info->PixelInformation.RedMask,
626 1.1 nonaka info->PixelInformation.GreenMask,
627 1.1 nonaka info->PixelInformation.BlueMask,
628 1.1 nonaka info->PixelInformation.ReservedMask);
629 1.1 nonaka break;
630 1.1 nonaka case PixelBltOnly:
631 1.5 nonaka printf("(blt only)");
632 1.1 nonaka break;
633 1.1 nonaka default:
634 1.5 nonaka printf("(Invalid pixel format)");
635 1.1 nonaka break;
636 1.1 nonaka }
637 1.5 nonaka printf(" pitch %d", info->PixelsPerScanLine);
638 1.1 nonaka depth = getdepth(info);
639 1.1 nonaka if (depth > 0)
640 1.5 nonaka printf(" bpp %d", depth);
641 1.5 nonaka printf("\n");
642 1.1 nonaka }
643 1.1 nonaka
644 1.1 nonaka return 0;
645 1.1 nonaka }
646 1.1 nonaka
647 1.1 nonaka static int
648 1.1 nonaka efi_find_gop_mode(char *arg)
649 1.1 nonaka {
650 1.1 nonaka EFI_STATUS status;
651 1.1 nonaka EFI_GRAPHICS_OUTPUT_MODE_INFORMATION *info;
652 1.1 nonaka UINTN sz;
653 1.1 nonaka UINT32 i;
654 1.1 nonaka char mode[32];
655 1.1 nonaka uint8_t depth;
656 1.1 nonaka
657 1.1 nonaka for (i = 0; i < efi_gop->Mode->MaxMode; i++) {
658 1.1 nonaka status = uefi_call_wrapper(efi_gop->QueryMode, 4, efi_gop, i,
659 1.1 nonaka &sz, &info);
660 1.1 nonaka if (EFI_ERROR(status))
661 1.1 nonaka continue;
662 1.1 nonaka
663 1.1 nonaka depth = getdepth(info);
664 1.1 nonaka if (depth == 0)
665 1.1 nonaka continue;
666 1.1 nonaka
667 1.1 nonaka snprintf(mode, sizeof(mode), "%lux%lux%u",
668 1.1 nonaka (long)info->HorizontalResolution,
669 1.8 jmcneill (long)info->VerticalResolution,
670 1.8 jmcneill depth);
671 1.8 jmcneill if (strcmp(arg, mode) == 0)
672 1.8 jmcneill return i;
673 1.8 jmcneill
674 1.8 jmcneill snprintf(mode, sizeof(mode), "%lux%lu",
675 1.1 nonaka (long)info->HorizontalResolution,
676 1.8 jmcneill (long)info->VerticalResolution);
677 1.1 nonaka if (strcmp(arg, mode) == 0)
678 1.1 nonaka return i;
679 1.1 nonaka }
680 1.1 nonaka return -1;
681 1.1 nonaka }
682 1.1 nonaka
683 1.1 nonaka void
684 1.1 nonaka command_gop(char *arg)
685 1.1 nonaka {
686 1.1 nonaka EFI_STATUS status;
687 1.1 nonaka INT32 modenum;
688 1.1 nonaka
689 1.1 nonaka if (efi_gop == NULL) {
690 1.1 nonaka printf("GOP not supported by firmware\n");
691 1.1 nonaka return;
692 1.1 nonaka }
693 1.1 nonaka
694 1.1 nonaka if (*arg == '\0' || strcmp(arg, "list") == 0) {
695 1.1 nonaka print_gop_modes();
696 1.1 nonaka return;
697 1.1 nonaka }
698 1.1 nonaka
699 1.1 nonaka if (strchr(arg, 'x') != NULL) {
700 1.1 nonaka modenum = efi_find_gop_mode(arg);
701 1.1 nonaka if (modenum == -1) {
702 1.1 nonaka printf("mode %s not supported by firmware\n", arg);
703 1.1 nonaka return;
704 1.1 nonaka }
705 1.1 nonaka } else {
706 1.1 nonaka modenum = strtoul(arg, NULL, 0);
707 1.1 nonaka }
708 1.1 nonaka
709 1.1 nonaka status = uefi_call_wrapper(efi_gop->SetMode, 2, efi_gop, modenum);
710 1.1 nonaka if (!EFI_ERROR(status) && efi_gop->Mode->Mode == modenum) {
711 1.1 nonaka efi_gop_mode = modenum;
712 1.1 nonaka return;
713 1.1 nonaka }
714 1.1 nonaka
715 1.1 nonaka printf("invalid flag, must be 'list', a display mode, "
716 1.1 nonaka "or a mode number\n");
717 1.1 nonaka }
718 1.1 nonaka
719 1.1 nonaka static void
720 1.1 nonaka eficons_init_video(void)
721 1.1 nonaka {
722 1.1 nonaka EFI_STATUS status;
723 1.3 nonaka UINTN cols, rows;
724 1.3 nonaka INT32 i, best, mode80x25, mode100x31;
725 1.1 nonaka
726 1.1 nonaka /*
727 1.1 nonaka * Setup text mode
728 1.1 nonaka */
729 1.1 nonaka uefi_call_wrapper(ST->ConOut->Reset, 2, ST->ConOut, TRUE);
730 1.1 nonaka
731 1.3 nonaka mode80x25 = mode100x31 = -1;
732 1.1 nonaka for (i = 0; i < ST->ConOut->Mode->MaxMode; i++) {
733 1.1 nonaka status = uefi_call_wrapper(ST->ConOut->QueryMode, 4,
734 1.1 nonaka ST->ConOut, i, &cols, &rows);
735 1.1 nonaka if (EFI_ERROR(status))
736 1.1 nonaka continue;
737 1.3 nonaka
738 1.3 nonaka if (mode80x25 < 0 && cols == 80 && rows == 25)
739 1.3 nonaka mode80x25 = i;
740 1.3 nonaka else if (mode100x31 < 0 && cols == 100 && rows == 31)
741 1.3 nonaka mode100x31 = i;
742 1.1 nonaka }
743 1.3 nonaka best = mode100x31 >= 0 ? mode100x31 : mode80x25 >= 0 ? mode80x25 : -1;
744 1.1 nonaka if (best >= 0)
745 1.1 nonaka uefi_call_wrapper(ST->ConOut->SetMode, 2, ST->ConOut, best);
746 1.1 nonaka uefi_call_wrapper(ST->ConOut->EnableCursor, 2, ST->ConOut, TRUE);
747 1.1 nonaka uefi_call_wrapper(ST->ConOut->ClearScreen, 1, ST->ConOut);
748 1.1 nonaka
749 1.1 nonaka LibLocateProtocol(&GraphicsOutputProtocol, (void **)&efi_gop);
750 1.1 nonaka }
751 1.1 nonaka
752 1.1 nonaka /*
753 1.1 nonaka * for Apple EFI
754 1.1 nonaka */
755 1.1 nonaka #define CONSOLE_CONTROL_PROTOCOL \
756 1.1 nonaka {0xf42f7782, 0x12e, 0x4c12, {0x99, 0x56, 0x49, 0xf9, 0x43, 0x4, 0xf7, 0x21}}
757 1.1 nonaka static EFI_GUID ConsoleControlProtocol = CONSOLE_CONTROL_PROTOCOL;
758 1.1 nonaka
759 1.1 nonaka struct _EFI_CONSOLE_CONTROL_INTERFACE;
760 1.1 nonaka typedef struct _EFI_CONSOLE_CONTROL_INTERFACE EFI_CONSOLE_CONTROL_INTERFACE;
761 1.1 nonaka typedef enum { EfiConsoleControlScreenText } EFI_CONSOLE_CONTROL_SCREEN_MODE;
762 1.1 nonaka typedef EFI_STATUS (EFIAPI *EFI_CONSOLE_CONTROL_PROTOCOL_SET_MODE) (
763 1.1 nonaka IN EFI_CONSOLE_CONTROL_INTERFACE *This,
764 1.1 nonaka IN EFI_CONSOLE_CONTROL_SCREEN_MODE Mode
765 1.1 nonaka );
766 1.1 nonaka struct _EFI_CONSOLE_CONTROL_INTERFACE {
767 1.1 nonaka VOID *GetMode;
768 1.1 nonaka EFI_CONSOLE_CONTROL_PROTOCOL_SET_MODE SetMode;
769 1.1 nonaka VOID *LockStdIn;
770 1.1 nonaka };
771 1.1 nonaka
772 1.1 nonaka static void
773 1.1 nonaka efi_switch_video_to_text_mode(void)
774 1.1 nonaka {
775 1.1 nonaka EFI_STATUS status;
776 1.1 nonaka EFI_CONSOLE_CONTROL_INTERFACE *cci;
777 1.1 nonaka
778 1.1 nonaka /* Set up the console, so printf works. */
779 1.1 nonaka status = LibLocateProtocol(&ConsoleControlProtocol, (void **)&cci);
780 1.1 nonaka if (!EFI_ERROR(status)) {
781 1.1 nonaka uefi_call_wrapper(cci->SetMode, 2, cci,
782 1.1 nonaka EfiConsoleControlScreenText);
783 1.1 nonaka }
784 1.1 nonaka }
785 1.5 nonaka
786 1.5 nonaka /*
787 1.5 nonaka * serial port
788 1.5 nonaka */
789 1.5 nonaka static void
790 1.5 nonaka efi_com_probe(void)
791 1.5 nonaka {
792 1.5 nonaka EFI_STATUS status;
793 1.5 nonaka UINTN i, nhandles;
794 1.5 nonaka EFI_HANDLE *handles;
795 1.5 nonaka EFI_DEVICE_PATH *dp, *dp0;
796 1.5 nonaka EFI_DEV_PATH_PTR dpp;
797 1.5 nonaka SERIAL_IO_INTERFACE *serio;
798 1.5 nonaka int uid = -1;
799 1.5 nonaka
800 1.5 nonaka status = LibLocateHandle(ByProtocol, &SerialIoProtocol, NULL,
801 1.5 nonaka &nhandles, &handles);
802 1.5 nonaka if (EFI_ERROR(status))
803 1.5 nonaka return;
804 1.5 nonaka
805 1.5 nonaka for (i = 0; i < nhandles; i++) {
806 1.5 nonaka /*
807 1.5 nonaka * Identify port number of the handle. This assumes ACPI
808 1.5 nonaka * UID 0-3 map to legacy COM[1-4] and they use the legacy
809 1.5 nonaka * port address.
810 1.5 nonaka */
811 1.5 nonaka status = uefi_call_wrapper(BS->HandleProtocol, 3, handles[i],
812 1.5 nonaka &DevicePathProtocol, (void **)&dp0);
813 1.5 nonaka if (EFI_ERROR(status))
814 1.5 nonaka continue;
815 1.5 nonaka
816 1.5 nonaka for (uid = -1, dp = dp0;
817 1.5 nonaka !IsDevicePathEnd(dp);
818 1.5 nonaka dp = NextDevicePathNode(dp)) {
819 1.5 nonaka
820 1.5 nonaka if (DevicePathType(dp) == ACPI_DEVICE_PATH &&
821 1.5 nonaka DevicePathSubType(dp) == ACPI_DP) {
822 1.5 nonaka dpp = (EFI_DEV_PATH_PTR)dp;
823 1.5 nonaka if (dpp.Acpi->HID == EISA_PNP_ID(0x0501)) {
824 1.5 nonaka uid = dpp.Acpi->UID;
825 1.5 nonaka break;
826 1.5 nonaka }
827 1.5 nonaka }
828 1.5 nonaka }
829 1.5 nonaka if (uid < 0 || __arraycount(serios) <= uid)
830 1.5 nonaka continue;
831 1.5 nonaka
832 1.5 nonaka /* Prepare SERIAL_IO_INTERFACE */
833 1.5 nonaka status = uefi_call_wrapper(BS->HandleProtocol, 3, handles[i],
834 1.5 nonaka &SerialIoProtocol, (void **)&serio);
835 1.5 nonaka if (EFI_ERROR(status))
836 1.5 nonaka continue;
837 1.5 nonaka
838 1.5 nonaka serios[uid] = serio;
839 1.5 nonaka }
840 1.5 nonaka
841 1.5 nonaka FreePool(handles);
842 1.5 nonaka
843 1.5 nonaka }
844 1.5 nonaka
845 1.5 nonaka static bool
846 1.5 nonaka efi_valid_com(int dev)
847 1.5 nonaka {
848 1.5 nonaka int idx;
849 1.5 nonaka
850 1.5 nonaka switch (dev) {
851 1.5 nonaka default:
852 1.5 nonaka case CONSDEV_PC:
853 1.5 nonaka return false;
854 1.5 nonaka
855 1.5 nonaka case CONSDEV_COM0:
856 1.5 nonaka case CONSDEV_COM1:
857 1.5 nonaka case CONSDEV_COM2:
858 1.5 nonaka case CONSDEV_COM3:
859 1.5 nonaka idx = dev - CONSDEV_COM0;
860 1.5 nonaka break;
861 1.5 nonaka }
862 1.5 nonaka
863 1.5 nonaka return idx < __arraycount(serios) &&
864 1.5 nonaka serios[idx] != NULL &&
865 1.5 nonaka getcomaddr(idx) != 0;
866 1.5 nonaka }
867 1.5 nonaka
868 1.5 nonaka static int
869 1.5 nonaka efi_com_init(int addr, int speed)
870 1.5 nonaka {
871 1.5 nonaka EFI_STATUS status;
872 1.5 nonaka SERIAL_IO_INTERFACE *serio;
873 1.5 nonaka
874 1.5 nonaka if (speed <= 0)
875 1.5 nonaka return 0;
876 1.5 nonaka
877 1.5 nonaka if (!efi_valid_com(iodev))
878 1.13 rin return raw_com_init(addr, speed);
879 1.5 nonaka
880 1.5 nonaka serio = serios[iodev - CONSDEV_COM0];
881 1.5 nonaka
882 1.5 nonaka if (serio->Mode->BaudRate != btinfo_console.speed) {
883 1.5 nonaka status = uefi_call_wrapper(serio->SetAttributes, 7, serio,
884 1.5 nonaka speed, serio->Mode->ReceiveFifoDepth,
885 1.5 nonaka serio->Mode->Timeout, serio->Mode->Parity,
886 1.5 nonaka serio->Mode->DataBits, serio->Mode->StopBits);
887 1.5 nonaka if (EFI_ERROR(status)) {
888 1.5 nonaka printf("com%d: SetAttribute() failed with status=%" PRIxMAX
889 1.5 nonaka "\n", iodev - CONSDEV_COM0, (uintmax_t)status);
890 1.5 nonaka return 0;
891 1.5 nonaka }
892 1.5 nonaka }
893 1.5 nonaka
894 1.13 rin raw_com_addr = 0;
895 1.5 nonaka default_comspeed = speed;
896 1.5 nonaka internal_getchar = efi_com_getc;
897 1.5 nonaka internal_putchar = efi_com_putc;
898 1.5 nonaka internal_iskey = efi_com_status;
899 1.5 nonaka internal_waitforinputevent = efi_com_waitforinputevent;
900 1.5 nonaka memset(serbuf, 0, sizeof(serbuf));
901 1.5 nonaka serbuf_read = serbuf_write = 0;
902 1.5 nonaka
903 1.5 nonaka return speed;
904 1.5 nonaka }
905 1.5 nonaka
906 1.5 nonaka static int
907 1.5 nonaka efi_com_getc(void)
908 1.5 nonaka {
909 1.5 nonaka EFI_STATUS status;
910 1.5 nonaka SERIAL_IO_INTERFACE *serio;
911 1.5 nonaka UINTN sz;
912 1.5 nonaka u_char c;
913 1.5 nonaka
914 1.5 nonaka if (!efi_valid_com(iodev))
915 1.5 nonaka panic("Invalid serial port: iodev=%d", iodev);
916 1.5 nonaka
917 1.5 nonaka if (serbuf_read != serbuf_write) {
918 1.5 nonaka c = serbuf[serbuf_read];
919 1.5 nonaka serbuf_read = (serbuf_read + 1) % __arraycount(serbuf);
920 1.5 nonaka return c;
921 1.5 nonaka }
922 1.5 nonaka
923 1.5 nonaka serio = serios[iodev - CONSDEV_COM0];
924 1.5 nonaka
925 1.5 nonaka for (;;) {
926 1.5 nonaka sz = 1;
927 1.5 nonaka status = uefi_call_wrapper(serio->Read, 3, serio, &sz, &c);
928 1.5 nonaka if (!EFI_ERROR(status) && sz > 0)
929 1.5 nonaka break;
930 1.5 nonaka if (status != EFI_TIMEOUT && EFI_ERROR(status))
931 1.5 nonaka panic("Error reading from serial status=%"PRIxMAX,
932 1.5 nonaka (uintmax_t)status);
933 1.5 nonaka }
934 1.5 nonaka return c;
935 1.5 nonaka }
936 1.5 nonaka
937 1.5 nonaka static int
938 1.5 nonaka efi_com_putc(int c)
939 1.5 nonaka {
940 1.5 nonaka EFI_STATUS status;
941 1.5 nonaka SERIAL_IO_INTERFACE *serio;
942 1.5 nonaka UINTN sz = 1;
943 1.5 nonaka u_char buf;
944 1.5 nonaka
945 1.5 nonaka if (!efi_valid_com(iodev))
946 1.5 nonaka return 0;
947 1.5 nonaka
948 1.5 nonaka serio = serios[iodev - CONSDEV_COM0];
949 1.5 nonaka buf = c;
950 1.5 nonaka status = uefi_call_wrapper(serio->Write, 3, serio, &sz, &buf);
951 1.5 nonaka if (EFI_ERROR(status) || sz < 1)
952 1.5 nonaka return 0;
953 1.5 nonaka return 1;
954 1.5 nonaka }
955 1.5 nonaka
956 1.5 nonaka /*ARGSUSED*/
957 1.5 nonaka static int
958 1.5 nonaka efi_com_status(int intr)
959 1.5 nonaka {
960 1.5 nonaka EFI_STATUS status;
961 1.5 nonaka SERIAL_IO_INTERFACE *serio;
962 1.5 nonaka UINTN sz;
963 1.5 nonaka u_char c;
964 1.5 nonaka
965 1.5 nonaka if (!efi_valid_com(iodev))
966 1.5 nonaka panic("Invalid serial port: iodev=%d", iodev);
967 1.5 nonaka
968 1.5 nonaka if (serbuf_read != serbuf_write)
969 1.5 nonaka return 1;
970 1.5 nonaka
971 1.5 nonaka serio = serios[iodev - CONSDEV_COM0];
972 1.5 nonaka sz = 1;
973 1.5 nonaka status = uefi_call_wrapper(serio->Read, 3, serio, &sz, &c);
974 1.5 nonaka if (EFI_ERROR(status) || sz < 1)
975 1.5 nonaka return 0;
976 1.5 nonaka
977 1.5 nonaka serbuf[serbuf_write] = c;
978 1.5 nonaka serbuf_write = (serbuf_write + 1) % __arraycount(serbuf);
979 1.5 nonaka return 1;
980 1.5 nonaka }
981 1.5 nonaka
982 1.5 nonaka static void
983 1.5 nonaka efi_com_periodic_event(EFI_EVENT event, void *ctx)
984 1.5 nonaka {
985 1.5 nonaka EFI_EVENT timer = ctx;
986 1.5 nonaka
987 1.5 nonaka if (efi_com_status(0)) {
988 1.5 nonaka uefi_call_wrapper(BS->SetTimer, 3, event, TimerCancel, 0);
989 1.5 nonaka uefi_call_wrapper(BS->SignalEvent, 1, timer);
990 1.5 nonaka }
991 1.5 nonaka }
992 1.5 nonaka
993 1.5 nonaka static int
994 1.5 nonaka efi_com_waitforinputevent(uint64_t timeout)
995 1.5 nonaka {
996 1.5 nonaka EFI_STATUS status;
997 1.5 nonaka EFI_EVENT timer, periodic;
998 1.5 nonaka
999 1.5 nonaka status = uefi_call_wrapper(BS->CreateEvent, 5, EVT_TIMER, 0, NULL, NULL,
1000 1.5 nonaka &timer);
1001 1.5 nonaka if (EFI_ERROR(status))
1002 1.5 nonaka return EINVAL;
1003 1.5 nonaka
1004 1.5 nonaka status = uefi_call_wrapper(BS->CreateEvent, 5,
1005 1.5 nonaka EVT_TIMER | EVT_NOTIFY_SIGNAL, TPL_CALLBACK, efi_com_periodic_event,
1006 1.5 nonaka timer, &periodic);
1007 1.5 nonaka if (EFI_ERROR(status)) {
1008 1.5 nonaka uefi_call_wrapper(BS->CloseEvent, 1, timer);
1009 1.5 nonaka return EINVAL;
1010 1.5 nonaka }
1011 1.5 nonaka
1012 1.5 nonaka status = uefi_call_wrapper(BS->SetTimer, 3, periodic, TimerPeriodic,
1013 1.5 nonaka 1000000); /* 100ms */
1014 1.5 nonaka if (EFI_ERROR(status)) {
1015 1.5 nonaka uefi_call_wrapper(BS->CloseEvent, 1, periodic);
1016 1.5 nonaka uefi_call_wrapper(BS->CloseEvent, 1, timer);
1017 1.5 nonaka return EINVAL;
1018 1.5 nonaka }
1019 1.5 nonaka status = WaitForSingleEvent(&timer, timeout);
1020 1.5 nonaka uefi_call_wrapper(BS->SetTimer, 3, periodic, TimerCancel, 0);
1021 1.5 nonaka uefi_call_wrapper(BS->CloseEvent, 1, periodic);
1022 1.5 nonaka uefi_call_wrapper(BS->CloseEvent, 1, timer);
1023 1.5 nonaka if (!EFI_ERROR(status))
1024 1.5 nonaka return 0;
1025 1.5 nonaka if (status == EFI_TIMEOUT)
1026 1.5 nonaka return ETIMEDOUT;
1027 1.5 nonaka return EINVAL;
1028 1.5 nonaka }
1029 1.13 rin
1030 1.13 rin static int
1031 1.13 rin raw_com_init(int addr, int speed)
1032 1.13 rin {
1033 1.13 rin
1034 1.13 rin if (addr == 0 || speed <= 0)
1035 1.13 rin return 0;
1036 1.13 rin
1037 1.13 rin speed = cominit_d(addr, speed);
1038 1.13 rin
1039 1.13 rin raw_com_addr = addr;
1040 1.13 rin default_comspeed = speed;
1041 1.13 rin internal_getchar = raw_com_getc;
1042 1.13 rin internal_putchar = raw_com_putc;
1043 1.13 rin internal_iskey = raw_com_status;
1044 1.13 rin internal_waitforinputevent = raw_com_waitforinputevent;
1045 1.13 rin
1046 1.13 rin return speed;
1047 1.13 rin }
1048 1.13 rin
1049 1.13 rin static int
1050 1.13 rin raw_com_getc(void)
1051 1.13 rin {
1052 1.13 rin
1053 1.13 rin if (raw_com_addr == 0)
1054 1.13 rin panic("%s: Invalid serial port", __func__);
1055 1.13 rin return comgetc_d(raw_com_addr);
1056 1.13 rin }
1057 1.13 rin
1058 1.13 rin static int
1059 1.13 rin raw_com_putc(int c)
1060 1.13 rin {
1061 1.13 rin
1062 1.13 rin if (raw_com_addr == 0)
1063 1.13 rin panic("%s: Invalid serial port", __func__);
1064 1.13 rin return computc_d(c, raw_com_addr);
1065 1.13 rin }
1066 1.13 rin
1067 1.13 rin static int
1068 1.13 rin raw_com_status(int intr)
1069 1.13 rin {
1070 1.13 rin
1071 1.13 rin if (raw_com_addr == 0)
1072 1.13 rin panic("%s: Invalid serial port", __func__);
1073 1.13 rin return comstatus_d(raw_com_addr);
1074 1.13 rin }
1075 1.13 rin
1076 1.13 rin static int
1077 1.13 rin raw_com_waitforinputevent(uint64_t timeout /* in 0.1 usec */)
1078 1.13 rin {
1079 1.13 rin uint64_t ms;
1080 1.13 rin
1081 1.13 rin if (raw_com_addr == 0)
1082 1.13 rin panic("%s: Invalid serial port", __func__);
1083 1.13 rin
1084 1.13 rin for (ms = howmany(timeout, 10 * 1000); ms != 0; ms--) {
1085 1.13 rin if (raw_com_status(0))
1086 1.13 rin return 0;
1087 1.13 rin uefi_call_wrapper(BS->Stall, 1, 1000);
1088 1.13 rin }
1089 1.13 rin return ETIMEDOUT;
1090 1.13 rin }
1091