1 | /* |
---|
2 | This file contains implementation of VESA library which is based on |
---|
3 | LRMI (Linux real-mode interface). |
---|
4 | So it's not an emulator - it calls real int 10h handler under Linux. |
---|
5 | Note: VESA is available only on x86 systems. |
---|
6 | You can redistribute this file under terms and conditions |
---|
7 | of GNU General Public licence v2. |
---|
8 | Written by Nick Kurshev <nickols_k@mail.ru> |
---|
9 | Neomagic TV out support by Rudolf Marek <r.marek et sh.cvut.cz> |
---|
10 | */ |
---|
11 | |
---|
12 | #include <stdlib.h> |
---|
13 | #include <string.h> |
---|
14 | #include <stdio.h> |
---|
15 | #include <sys/io.h> |
---|
16 | #include <sys/mman.h> |
---|
17 | #include <sys/types.h> |
---|
18 | #include <sys/stat.h> |
---|
19 | #include <ctype.h> |
---|
20 | #include <unistd.h> |
---|
21 | #include <fcntl.h> |
---|
22 | #include <sys/ioctl.h> |
---|
23 | #include <linux/kd.h> |
---|
24 | |
---|
25 | #include <lrmi.h> |
---|
26 | #include "vbe.h" |
---|
27 | |
---|
28 | int vbeVersion(void) |
---|
29 | { |
---|
30 | return 0x0002; // 0.2 |
---|
31 | } |
---|
32 | |
---|
33 | static struct VesaProtModeInterface vbe_pm_info; |
---|
34 | static struct VesaModeInfoBlock curr_mode_info; |
---|
35 | |
---|
36 | static inline int VERR(const void *p) |
---|
37 | { |
---|
38 | register int retval; |
---|
39 | __asm __volatile( |
---|
40 | "xorl %0, %0\n\t" |
---|
41 | "verr %1\n\t" |
---|
42 | "setnz %b0" |
---|
43 | :"=q"(retval) |
---|
44 | :"m"(*(unsigned char *)p) |
---|
45 | :"memory","cc"); |
---|
46 | return retval; |
---|
47 | } |
---|
48 | |
---|
49 | #if 0 |
---|
50 | static inline int VERW(const void *p) |
---|
51 | { |
---|
52 | register int retval; |
---|
53 | __asm __volatile( |
---|
54 | "xorl %0, %0\n\t" |
---|
55 | "verw %1\n\t" |
---|
56 | "setnz %b0" |
---|
57 | :"=q"(retval) |
---|
58 | :"m"(*(unsigned char *)p) |
---|
59 | :"memory","cc"); |
---|
60 | return retval; |
---|
61 | } |
---|
62 | #endif |
---|
63 | |
---|
64 | //#define HAVE_VERBOSE_VAR 1 |
---|
65 | |
---|
66 | #ifdef HAVE_VERBOSE_VAR |
---|
67 | extern int verbose; |
---|
68 | |
---|
69 | static void __dump_regs(struct LRMI_regs *r) |
---|
70 | { |
---|
71 | printf("vbelib: eax=%08lXh ebx=%08lXh ecx=%08lXh edx=%08lXh\n" |
---|
72 | "vbelib: edi=%08lXh esi=%08lXh ebp=%08lXh esp=%08lXh\n" |
---|
73 | "vbelib: ds=%04Xh es=%04Xh ss=%04Xh cs:ip=%04X:%04X\n" |
---|
74 | "vbelib: fs=%04Xh gs=%04Xh ss:sp=%04X:%04X flags=%04X\n" |
---|
75 | ,(unsigned long)r->eax,(unsigned long)r->ebx,(unsigned long)r->ecx,(unsigned long)r->edx |
---|
76 | ,(unsigned long)r->edi,(unsigned long)r->esi,(unsigned long)r->ebp,(unsigned long)r->reserved |
---|
77 | ,r->ds,r->es,r->ss,r->cs,r->ip |
---|
78 | ,r->fs,r->gs,r->ss,r->sp,r->flags); |
---|
79 | } |
---|
80 | |
---|
81 | static inline int VBE_LRMI_int(int int_no, struct LRMI_regs *r) |
---|
82 | { |
---|
83 | int retval; |
---|
84 | if(verbose > 1) |
---|
85 | { |
---|
86 | printf("vbelib: registers before int %02X\n",int_no); |
---|
87 | __dump_regs(r); |
---|
88 | } |
---|
89 | retval = LRMI_int(int_no,r); |
---|
90 | if(verbose > 1) |
---|
91 | { |
---|
92 | printf("vbelib: Interrupt handler returns: %X\n",retval); |
---|
93 | printf("vbelib: registers after int %02X\n",int_no); |
---|
94 | __dump_regs(r); |
---|
95 | } |
---|
96 | return retval; |
---|
97 | } |
---|
98 | #else |
---|
99 | #define VBE_LRMI_int(int_no,regs) (LRMI_int(int_no,regs)) |
---|
100 | #endif |
---|
101 | |
---|
102 | /** |
---|
103 | * Set console to graphics or text mode. |
---|
104 | * This is a clean way to enable/disable console text output |
---|
105 | * and cursor blinking. |
---|
106 | * |
---|
107 | * @param mode The new wanted mode. Can be either KD_GRAPHICS to switch |
---|
108 | * to graphics mode or anything else to switch back to the |
---|
109 | * original mode. |
---|
110 | */ |
---|
111 | static void kd_set_mode(int mode) |
---|
112 | { |
---|
113 | static int old_mode = KD_TEXT; |
---|
114 | int fd; |
---|
115 | |
---|
116 | if ((fd = open("/dev/tty0", O_RDWR)) < 0) |
---|
117 | return; |
---|
118 | if(mode == KD_GRAPHICS) |
---|
119 | old_mode = ioctl(fd, KDGETMODE); |
---|
120 | else |
---|
121 | mode = old_mode; |
---|
122 | ioctl(fd, KDSETMODE, mode); |
---|
123 | close(fd); |
---|
124 | } |
---|
125 | |
---|
126 | static unsigned hh_int_10_seg; |
---|
127 | static int fd_mem; |
---|
128 | /* |
---|
129 | the list of supported video modes is stored in the reserved portion of |
---|
130 | the SuperVGA information record by some implementations, and it may |
---|
131 | thus be necessary to either copy the mode list or use a different |
---|
132 | buffer for all subsequent VESA calls |
---|
133 | */ |
---|
134 | static void *controller_info; |
---|
135 | int vbeInit( void ) |
---|
136 | { |
---|
137 | unsigned short iopl_port; |
---|
138 | size_t i; |
---|
139 | if(!LRMI_init()) return VBE_VM86_FAIL; |
---|
140 | if(!(controller_info = LRMI_alloc_real(sizeof(struct VbeInfoBlock)))) return VBE_OUT_OF_DOS_MEM; |
---|
141 | /* |
---|
142 | Allow read/write to ALL io ports |
---|
143 | */ |
---|
144 | hh_int_10_seg = *(unsigned short *)PhysToVirtSO(0x0000,0x0042); |
---|
145 | /* Video BIOS should be at C000:0000 and above */ |
---|
146 | hh_int_10_seg >>= 12; |
---|
147 | if(hh_int_10_seg < 0xC) return VBE_BROKEN_BIOS; |
---|
148 | ioperm(0, 1024, 1); |
---|
149 | iopl(3); |
---|
150 | memset(&vbe_pm_info,0,sizeof(struct VesaProtModeInterface)); |
---|
151 | vbeGetProtModeInfo(&vbe_pm_info); |
---|
152 | i = 0; |
---|
153 | if(vbe_pm_info.iopl_ports) /* Can be NULL !!!*/ |
---|
154 | while((iopl_port=vbe_pm_info.iopl_ports[i]) != 0xFFFF |
---|
155 | && vbe_pm_info.iopl_ports[i++] > 1023) ioperm(iopl_port,1,1); |
---|
156 | iopl(3); |
---|
157 | fd_mem = open("/dev/mem",O_RDWR); |
---|
158 | kd_set_mode(KD_GRAPHICS); |
---|
159 | return VBE_OK; |
---|
160 | } |
---|
161 | |
---|
162 | int vbeDestroy( void ) |
---|
163 | { |
---|
164 | kd_set_mode(KD_TEXT); |
---|
165 | close(fd_mem); |
---|
166 | LRMI_free_real(controller_info); |
---|
167 | return VBE_OK; |
---|
168 | } |
---|
169 | |
---|
170 | /* Fixme!!! This code is compatible only with mplayer's version of lrmi*/ |
---|
171 | static inline int is_addr_valid(const void *p) |
---|
172 | { |
---|
173 | return (p < (const void *)0x502) || |
---|
174 | (p >= (const void *)0x10000 && p < (const void *)0x20000) || |
---|
175 | (p >= (const void *)0xa0000 && p < (const void *)0x100000); |
---|
176 | } |
---|
177 | |
---|
178 | static int check_str(const unsigned char *str) |
---|
179 | { |
---|
180 | size_t i; |
---|
181 | int null_found = 0; |
---|
182 | for(i = 0;i < 256;i++) |
---|
183 | { |
---|
184 | if(is_addr_valid(&str[i])) |
---|
185 | { |
---|
186 | if(VERR(&str[i])) |
---|
187 | { |
---|
188 | if(!str[i]) { null_found = 1; break; } |
---|
189 | } |
---|
190 | else break; |
---|
191 | } |
---|
192 | else break; |
---|
193 | } |
---|
194 | return null_found; |
---|
195 | } |
---|
196 | |
---|
197 | static int check_wrd(const unsigned short *str) |
---|
198 | { |
---|
199 | size_t i; |
---|
200 | int ffff_found = 0; |
---|
201 | for(i = 0;i < 1024;i++) |
---|
202 | { |
---|
203 | if(is_addr_valid(&str[i])) |
---|
204 | { |
---|
205 | if(VERR(&str[i])) |
---|
206 | { |
---|
207 | if(str[i] == 0xffff) { ffff_found = 1; break; } |
---|
208 | } |
---|
209 | else break; |
---|
210 | } |
---|
211 | else break; |
---|
212 | } |
---|
213 | return ffff_found; |
---|
214 | } |
---|
215 | |
---|
216 | static void print_str(unsigned char *str) |
---|
217 | { |
---|
218 | size_t i; |
---|
219 | fflush(stdout); |
---|
220 | printf("vbelib: "); |
---|
221 | for(i = 0;i < 256;i++) { printf("%02X(%c) ",str[i],isprint(str[i])?str[i]:'.'); if(!str[i]) break; } |
---|
222 | printf("\n"); |
---|
223 | fflush(stdout); |
---|
224 | } |
---|
225 | |
---|
226 | static void print_wrd(unsigned short *str) |
---|
227 | { |
---|
228 | size_t i; |
---|
229 | fflush(stdout); |
---|
230 | printf("vbelib: "); |
---|
231 | for(i = 0;i < 256;i++) { printf("%04X ",str[i]); if(str[i] == 0xffff) break; } |
---|
232 | printf("\n"); |
---|
233 | fflush(stdout); |
---|
234 | } |
---|
235 | |
---|
236 | int vbeGetControllerInfo(struct VbeInfoBlock *data) |
---|
237 | { |
---|
238 | struct LRMI_regs r; |
---|
239 | int retval; |
---|
240 | memcpy(controller_info,data,sizeof(struct VbeInfoBlock)); |
---|
241 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
242 | r.eax = 0x4f00; |
---|
243 | r.es = VirtToPhysSeg(controller_info); |
---|
244 | r.edi = VirtToPhysOff(controller_info); |
---|
245 | if(!VBE_LRMI_int(0x10,&r)) return VBE_VM86_FAIL; |
---|
246 | retval = r.eax & 0xffff; |
---|
247 | if(retval == 0x4f) |
---|
248 | { |
---|
249 | FarPtr fpdata; |
---|
250 | retval = VBE_OK; |
---|
251 | memcpy(data,controller_info,sizeof(struct VbeInfoBlock)); |
---|
252 | fpdata.seg = (unsigned long)(data->OemStringPtr) >> 16; |
---|
253 | fpdata.off = (unsigned long)(data->OemStringPtr) & 0xffff; |
---|
254 | data->OemStringPtr = PhysToVirt(fpdata); |
---|
255 | if(!check_str(data->OemStringPtr)) data->OemStringPtr = NULL; |
---|
256 | #ifdef HAVE_VERBOSE_VAR |
---|
257 | if(verbose > 1) |
---|
258 | { |
---|
259 | printf("vbelib: OemStringPtr=%04X:%04X => %p\n",fpdata.seg,fpdata.off,data->OemStringPtr); |
---|
260 | if(data->OemStringPtr) print_str(data->OemStringPtr); |
---|
261 | fflush(stdout); |
---|
262 | } |
---|
263 | #endif |
---|
264 | fpdata.seg = (unsigned long)(data->VideoModePtr) >> 16; |
---|
265 | fpdata.off = (unsigned long)(data->VideoModePtr) & 0xffff; |
---|
266 | data->VideoModePtr = PhysToVirt(fpdata); |
---|
267 | if(!check_wrd(data->VideoModePtr)) |
---|
268 | { |
---|
269 | data->VideoModePtr = NULL; |
---|
270 | retval = VBE_BROKEN_BIOS; |
---|
271 | } |
---|
272 | #ifdef HAVE_VERBOSE_VAR |
---|
273 | if(verbose > 1) |
---|
274 | { |
---|
275 | printf("vbelib: VideoModePtr=%04X:%04X => %p\n",fpdata.seg,fpdata.off,data->VideoModePtr); |
---|
276 | if(data->VideoModePtr) print_wrd(data->VideoModePtr); |
---|
277 | fflush(stdout); |
---|
278 | } |
---|
279 | #endif |
---|
280 | fpdata.seg = (unsigned long)(data->OemVendorNamePtr) >> 16; |
---|
281 | fpdata.off = (unsigned long)(data->OemVendorNamePtr) & 0xffff; |
---|
282 | data->OemVendorNamePtr = PhysToVirt(fpdata); |
---|
283 | if(!check_str(data->OemVendorNamePtr)) data->OemVendorNamePtr = NULL; |
---|
284 | #ifdef HAVE_VERBOSE_VAR |
---|
285 | if(verbose > 1) |
---|
286 | { |
---|
287 | printf("vbelib: OemVendorNamePtr=%04X:%04X => %p\n",fpdata.seg,fpdata.off,data->OemVendorNamePtr); |
---|
288 | if(data->OemVendorNamePtr) print_str(data->OemVendorNamePtr); |
---|
289 | fflush(stdout); |
---|
290 | } |
---|
291 | #endif |
---|
292 | fpdata.seg = (unsigned long)(data->OemProductNamePtr) >> 16; |
---|
293 | fpdata.off = (unsigned long)(data->OemProductNamePtr) & 0xffff; |
---|
294 | data->OemProductNamePtr = PhysToVirt(fpdata); |
---|
295 | if(!check_str(data->OemProductNamePtr)) data->OemProductNamePtr = NULL; |
---|
296 | #ifdef HAVE_VERBOSE_VAR |
---|
297 | if(verbose > 1) |
---|
298 | { |
---|
299 | printf("vbelib: OemProductNamePtr=%04X:%04X => %p\n",fpdata.seg,fpdata.off,data->OemProductNamePtr); |
---|
300 | if(data->OemVendorNamePtr) print_str(data->OemProductNamePtr); |
---|
301 | fflush(stdout); |
---|
302 | } |
---|
303 | #endif |
---|
304 | fpdata.seg = (unsigned long)(data->OemProductRevPtr) >> 16; |
---|
305 | fpdata.off = (unsigned long)(data->OemProductRevPtr) & 0xffff; |
---|
306 | data->OemProductRevPtr = PhysToVirt(fpdata); |
---|
307 | if(!check_str(data->OemProductRevPtr)) data->OemProductRevPtr = NULL; |
---|
308 | #ifdef HAVE_VERBOSE_VAR |
---|
309 | if(verbose > 1) |
---|
310 | { |
---|
311 | printf("vbelib: OemProductRevPtr=%04X:%04X => %p\n",fpdata.seg,fpdata.off,data->OemProductRevPtr); |
---|
312 | if(data->OemProductRevPtr) print_str(data->OemProductRevPtr); |
---|
313 | fflush(stdout); |
---|
314 | } |
---|
315 | #endif |
---|
316 | } |
---|
317 | return retval; |
---|
318 | } |
---|
319 | |
---|
320 | int vbeGetModeInfo(unsigned mode,struct VesaModeInfoBlock *data) |
---|
321 | { |
---|
322 | struct LRMI_regs r; |
---|
323 | void *rm_space; |
---|
324 | int retval; |
---|
325 | if(!(rm_space = LRMI_alloc_real(sizeof(struct VesaModeInfoBlock)))) return VBE_OUT_OF_DOS_MEM; |
---|
326 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
327 | r.eax = 0x4f01; |
---|
328 | r.ecx = mode; |
---|
329 | r.es = VirtToPhysSeg(rm_space); |
---|
330 | r.edi = VirtToPhysOff(rm_space); |
---|
331 | if(!VBE_LRMI_int(0x10,&r)) |
---|
332 | { |
---|
333 | LRMI_free_real(rm_space); |
---|
334 | return VBE_VM86_FAIL; |
---|
335 | } |
---|
336 | retval = r.eax & 0xffff; |
---|
337 | if(retval == 0x4f) |
---|
338 | { |
---|
339 | retval = VBE_OK; |
---|
340 | memcpy(data,rm_space,sizeof(struct VesaModeInfoBlock)); |
---|
341 | } |
---|
342 | LRMI_free_real(rm_space); |
---|
343 | return retval; |
---|
344 | } |
---|
345 | |
---|
346 | |
---|
347 | int vbeSetTV(unsigned int vesa_mode,unsigned int TV_mode) { |
---|
348 | |
---|
349 | #define NR_MODES 8 |
---|
350 | |
---|
351 | unsigned int mode_table[NR_MODES] = |
---|
352 | {0x101,0x103,0x111,0x114,0x120,0x121,0x122,0x123}; |
---|
353 | unsigned int tv_table[][NR_MODES] = { |
---|
354 | {0x201,0x202,0x211,0x212,0x221,0x231,0x222,0x232}, |
---|
355 | {0x200,0x203,0x210,0x213,0x220,0x230,0xFFFF,0xFFFF}}; |
---|
356 | |
---|
357 | /* |
---|
358 | |
---|
359 | Alternate mode map. If modes like 320x240 and 400x300 does not work, but |
---|
360 | 640x480 and 800x600 work, then try to replace above two lines with this |
---|
361 | lines and write email to me if it works. |
---|
362 | r.marek et sh.cvut.cz |
---|
363 | |
---|
364 | {0x201,0x202,0x211,0x212,0x222,0x223,0x224,0x225}, |
---|
365 | {0x200,0x203,0x210,0x213,0x220,0x221,0xFFFF,0xFFFF}}; |
---|
366 | |
---|
367 | */ |
---|
368 | int i,retval; |
---|
369 | struct LRMI_regs r; |
---|
370 | |
---|
371 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
372 | for (i=0;((mode_table[i]!=(vesa_mode&0x3FF))&&(i<NR_MODES));i++) ; |
---|
373 | |
---|
374 | if (i==NR_MODES) return 0; |
---|
375 | #ifdef HAVE_VERBOSE_VAR |
---|
376 | if(verbose > 1) printf("vbelib: Trying to set TV mode %x\n",tv_table[TV_mode][i]); |
---|
377 | #endif |
---|
378 | r.eax = 0x4f14; |
---|
379 | r.ebx = 0x20; |
---|
380 | r.edx = 0; |
---|
381 | r.edi = 0; |
---|
382 | r.ecx = tv_table[TV_mode][i]; |
---|
383 | retval = VBE_LRMI_int(0x10,&r); |
---|
384 | if(!retval) return VBE_VM86_FAIL; |
---|
385 | return r.eax & 0xffff; |
---|
386 | |
---|
387 | } |
---|
388 | int vbeSetMode(unsigned mode,struct VesaCRTCInfoBlock *data) |
---|
389 | { |
---|
390 | struct LRMI_regs r; |
---|
391 | void *rm_space = NULL; |
---|
392 | int retval; |
---|
393 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
394 | if(data) |
---|
395 | { |
---|
396 | if(!(rm_space = LRMI_alloc_real(sizeof(struct VesaCRTCInfoBlock)))) return VBE_OUT_OF_DOS_MEM; |
---|
397 | r.es = VirtToPhysSeg(rm_space); |
---|
398 | r.edi = VirtToPhysOff(rm_space); |
---|
399 | memcpy(rm_space,data,sizeof(struct VesaCRTCInfoBlock)); |
---|
400 | } |
---|
401 | r.eax = 0x4f02; |
---|
402 | r.ebx = mode; |
---|
403 | retval = VBE_LRMI_int(0x10,&r); |
---|
404 | LRMI_free_real(rm_space); |
---|
405 | if(!retval) return VBE_VM86_FAIL; |
---|
406 | retval = r.eax & 0xffff; |
---|
407 | if(retval == 0x4f) |
---|
408 | { |
---|
409 | /* Just info for internal use (currently in SetDiplayStart func). */ |
---|
410 | vbeGetModeInfo(mode,&curr_mode_info); |
---|
411 | retval = VBE_OK; |
---|
412 | } |
---|
413 | return retval; |
---|
414 | } |
---|
415 | |
---|
416 | int vbeGetMode(unsigned *mode) |
---|
417 | { |
---|
418 | struct LRMI_regs r; |
---|
419 | int retval; |
---|
420 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
421 | r.eax = 0x4f03; |
---|
422 | if(!VBE_LRMI_int(0x10,&r)) return VBE_VM86_FAIL; |
---|
423 | retval = r.eax & 0xffff; |
---|
424 | if(retval == 0x4f) |
---|
425 | { |
---|
426 | *mode = r.ebx; |
---|
427 | retval = VBE_OK; |
---|
428 | } |
---|
429 | return retval; |
---|
430 | } |
---|
431 | |
---|
432 | int vbeGetPixelClock(unsigned *mode,unsigned *pixel_clock) // in Hz |
---|
433 | { |
---|
434 | struct LRMI_regs r; |
---|
435 | int retval; |
---|
436 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
437 | r.eax = 0x4f0b; |
---|
438 | r.ebx = 0; |
---|
439 | r.edx = *mode; |
---|
440 | r.ecx = *pixel_clock; |
---|
441 | if(!VBE_LRMI_int(0x10,&r)) return VBE_VM86_FAIL; |
---|
442 | retval = r.eax & 0xffff; |
---|
443 | if(retval == 0x4f) |
---|
444 | { |
---|
445 | *pixel_clock = r.ecx; |
---|
446 | retval = VBE_OK; |
---|
447 | } |
---|
448 | return retval; |
---|
449 | } |
---|
450 | |
---|
451 | |
---|
452 | int vbeSaveState(void **data) |
---|
453 | { |
---|
454 | struct LRMI_regs r; |
---|
455 | int retval; |
---|
456 | void *rm_space; |
---|
457 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
458 | r.eax = 0x4f04; |
---|
459 | r.edx = 0x00; |
---|
460 | r.ecx = 0x0f; |
---|
461 | if(!VBE_LRMI_int(0x10,&r)) return VBE_VM86_FAIL; |
---|
462 | retval = r.eax & 0xffff; |
---|
463 | if(retval != 0x4f) return retval; |
---|
464 | if(!(rm_space = LRMI_alloc_real((r.ebx & 0xffff)*64))) return VBE_OUT_OF_DOS_MEM; |
---|
465 | r.eax = 0x4f04; |
---|
466 | r.edx = 0x01; |
---|
467 | r.ecx = 0x0f; |
---|
468 | r.es = VirtToPhysSeg(rm_space); |
---|
469 | r.ebx = VirtToPhysOff(rm_space); |
---|
470 | if(!VBE_LRMI_int(0x10,&r)) |
---|
471 | { |
---|
472 | LRMI_free_real(rm_space); |
---|
473 | return VBE_VM86_FAIL; |
---|
474 | } |
---|
475 | retval = r.eax & 0xffff; |
---|
476 | if(retval != 0x4f) |
---|
477 | { |
---|
478 | LRMI_free_real(rm_space); |
---|
479 | return retval; |
---|
480 | } |
---|
481 | *data = rm_space; |
---|
482 | return VBE_OK; |
---|
483 | } |
---|
484 | |
---|
485 | int vbeRestoreState(void *data) |
---|
486 | { |
---|
487 | struct LRMI_regs r; |
---|
488 | int retval; |
---|
489 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
490 | r.eax = 0x4f04; |
---|
491 | r.edx = 0x02; |
---|
492 | r.ecx = 0x0f; |
---|
493 | r.es = VirtToPhysSeg(data); |
---|
494 | r.ebx = VirtToPhysOff(data); |
---|
495 | retval = VBE_LRMI_int(0x10,&r); |
---|
496 | LRMI_free_real(data); |
---|
497 | if(!retval) return VBE_VM86_FAIL; |
---|
498 | retval = r.eax & 0xffff; |
---|
499 | if(retval == 0x4f) retval = VBE_OK; |
---|
500 | return retval; |
---|
501 | } |
---|
502 | |
---|
503 | int vbeGetWindow(unsigned *win_num) |
---|
504 | { |
---|
505 | struct LRMI_regs r; |
---|
506 | int retval; |
---|
507 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
508 | r.eax = 0x4f05; |
---|
509 | r.ebx = (*win_num & 0x0f) | 0x0100; |
---|
510 | if(!VBE_LRMI_int(0x10,&r)) return VBE_VM86_FAIL; |
---|
511 | retval = r.eax & 0xffff; |
---|
512 | if(retval == 0x4f) |
---|
513 | { |
---|
514 | *win_num = r.edx & 0xffff; |
---|
515 | retval = VBE_OK; |
---|
516 | } |
---|
517 | return retval; |
---|
518 | } |
---|
519 | |
---|
520 | int vbeSetWindow(unsigned win_num,unsigned win_gran) |
---|
521 | { |
---|
522 | int retval; |
---|
523 | if(vbe_pm_info.SetWindowCall) |
---|
524 | { |
---|
525 | /* Don't verbose this stuff from performance reasons */ |
---|
526 | /* 32-bit function call is much better of int 10h */ |
---|
527 | __asm __volatile( |
---|
528 | "pushl %%ebx\n" |
---|
529 | "movl %1, %%ebx\n" |
---|
530 | "call *%2\n" |
---|
531 | "popl %%ebx" |
---|
532 | ::"a"(0x4f05),"S"(win_num & 0x0f),"D"(vbe_pm_info.SetWindowCall), |
---|
533 | "d"(win_gran):"memory"); |
---|
534 | retval = VBE_OK; |
---|
535 | } |
---|
536 | else |
---|
537 | { |
---|
538 | struct LRMI_regs r; |
---|
539 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
540 | r.eax = 0x4f05; |
---|
541 | r.ebx = win_num & 0x0f; |
---|
542 | r.edx = win_gran; |
---|
543 | if(!VBE_LRMI_int(0x10,&r)) return VBE_VM86_FAIL; |
---|
544 | retval = r.eax & 0xffff; |
---|
545 | if(retval == 0x4f) retval = VBE_OK; |
---|
546 | } |
---|
547 | return retval; |
---|
548 | } |
---|
549 | |
---|
550 | int vbeGetScanLineLength(unsigned *num_pixels,unsigned *num_bytes) |
---|
551 | { |
---|
552 | struct LRMI_regs r; |
---|
553 | int retval; |
---|
554 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
555 | r.eax = 0x4f06; |
---|
556 | r.ebx = 1; |
---|
557 | if(!VBE_LRMI_int(0x10,&r)) return VBE_VM86_FAIL; |
---|
558 | retval = r.eax & 0xffff; |
---|
559 | if(retval == 0x4f) |
---|
560 | { |
---|
561 | if(num_bytes) *num_bytes = r.ebx & 0xffff; |
---|
562 | if(num_pixels) *num_pixels= r.ecx & 0xffff; |
---|
563 | retval = VBE_OK; |
---|
564 | } |
---|
565 | return retval; |
---|
566 | } |
---|
567 | |
---|
568 | int vbeGetMaxScanLines(unsigned *num_pixels,unsigned *num_bytes, unsigned *num_lines) |
---|
569 | { |
---|
570 | struct LRMI_regs r; |
---|
571 | int retval; |
---|
572 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
573 | r.eax = 0x4f06; |
---|
574 | r.ebx = 3; |
---|
575 | if(!VBE_LRMI_int(0x10,&r)) return VBE_VM86_FAIL; |
---|
576 | retval = r.eax & 0xffff; |
---|
577 | if(retval == 0x4f) |
---|
578 | { |
---|
579 | if(num_bytes) *num_bytes = r.ebx & 0xffff; |
---|
580 | if(num_pixels) *num_pixels= r.ecx & 0xffff; |
---|
581 | if(num_lines) *num_lines = r.edx & 0xffff; |
---|
582 | retval = VBE_OK; |
---|
583 | } |
---|
584 | return retval; |
---|
585 | } |
---|
586 | |
---|
587 | int vbeSetScanLineLength(unsigned num_pixels) |
---|
588 | { |
---|
589 | int retval; |
---|
590 | struct LRMI_regs r; |
---|
591 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
592 | r.eax = 0x4f06; |
---|
593 | r.ebx = 0; |
---|
594 | r.ecx = num_pixels; |
---|
595 | if(!VBE_LRMI_int(0x10,&r)) return VBE_VM86_FAIL; |
---|
596 | retval = r.eax & 0xffff; |
---|
597 | if(retval == 0x4f) retval = VBE_OK; |
---|
598 | return retval; |
---|
599 | } |
---|
600 | |
---|
601 | int vbeSetScanLineLengthB(unsigned num_bytes) |
---|
602 | { |
---|
603 | int retval; |
---|
604 | struct LRMI_regs r; |
---|
605 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
606 | r.eax = 0x4f06; |
---|
607 | r.ebx = 2; |
---|
608 | r.ecx = num_bytes; |
---|
609 | if(!VBE_LRMI_int(0x10,&r)) return VBE_VM86_FAIL; |
---|
610 | retval = r.eax & 0xffff; |
---|
611 | if(retval == 0x4f) retval = VBE_OK; |
---|
612 | return retval; |
---|
613 | } |
---|
614 | |
---|
615 | int vbeGetDisplayStart(unsigned *pixel_num,unsigned *scan_line) |
---|
616 | { |
---|
617 | struct LRMI_regs r; |
---|
618 | int retval; |
---|
619 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
620 | r.eax = 0x4f07; |
---|
621 | r.ebx = 1; |
---|
622 | if(!VBE_LRMI_int(0x10,&r)) return VBE_VM86_FAIL; |
---|
623 | retval = r.eax & 0xffff; |
---|
624 | if(retval == 0x4f) |
---|
625 | { |
---|
626 | if(pixel_num) *pixel_num = r.ecx & 0xffff; |
---|
627 | if(scan_line) *scan_line = r.edx & 0xffff; |
---|
628 | retval = VBE_OK; |
---|
629 | } |
---|
630 | return retval; |
---|
631 | } |
---|
632 | |
---|
633 | int vbeSetDisplayStart(unsigned long offset, int vsync) |
---|
634 | { |
---|
635 | int retval; |
---|
636 | if(vbe_pm_info.SetDisplayStart) |
---|
637 | { |
---|
638 | /* Don't verbose this stuff from performance reasons */ |
---|
639 | /* 32-bit function call is much better of int 10h */ |
---|
640 | __asm __volatile( |
---|
641 | "pushl %%ebx\n" |
---|
642 | "movl %1, %%ebx\n" |
---|
643 | "call *%2\n" |
---|
644 | "popl %%ebx\n" |
---|
645 | ::"a"(0x4f07),"S"(vsync ? 0x80 : 0),"D"(vbe_pm_info.SetDisplayStart), |
---|
646 | "c"((offset>>2) & 0xffff),"d"((offset>>18)&0xffff):"memory"); |
---|
647 | retval = VBE_OK; |
---|
648 | } |
---|
649 | else |
---|
650 | { |
---|
651 | struct LRMI_regs r; |
---|
652 | unsigned long pixel_num; |
---|
653 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
654 | pixel_num = offset%(unsigned long)curr_mode_info.BytesPerScanLine; |
---|
655 | if(pixel_num*(unsigned long)curr_mode_info.BytesPerScanLine!=offset) pixel_num++; |
---|
656 | r.eax = 0x4f07; |
---|
657 | r.ebx = vsync ? 0x82 : 2; |
---|
658 | r.ecx = pixel_num; |
---|
659 | r.edx = offset/(unsigned long)curr_mode_info.BytesPerScanLine; |
---|
660 | if(!VBE_LRMI_int(0x10,&r)) return VBE_VM86_FAIL; |
---|
661 | retval = r.eax & 0xffff; |
---|
662 | if(retval == 0x4f) retval = VBE_OK; |
---|
663 | else retval = VBE_BROKEN_BIOS; |
---|
664 | } |
---|
665 | return retval; |
---|
666 | } |
---|
667 | |
---|
668 | int vbeSetScheduledDisplayStart(unsigned long offset, int vsync) |
---|
669 | { |
---|
670 | int retval; |
---|
671 | struct LRMI_regs r; |
---|
672 | unsigned long pixel_num; |
---|
673 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
674 | pixel_num = offset%(unsigned long)curr_mode_info.BytesPerScanLine; |
---|
675 | if(pixel_num*(unsigned long)curr_mode_info.BytesPerScanLine!=offset) pixel_num++; |
---|
676 | r.eax = 0x4f07; |
---|
677 | r.ebx = vsync ? 0x82 : 2; |
---|
678 | r.ecx = offset; |
---|
679 | if(!VBE_LRMI_int(0x10,&r)) return VBE_VM86_FAIL; |
---|
680 | retval = r.eax & 0xffff; |
---|
681 | if(retval == 0x4f) retval = VBE_OK; |
---|
682 | return retval; |
---|
683 | } |
---|
684 | |
---|
685 | struct realVesaProtModeInterface |
---|
686 | { |
---|
687 | unsigned short SetWindowCall; |
---|
688 | unsigned short SetDisplayStart; |
---|
689 | unsigned short SetPaletteData; |
---|
690 | unsigned short iopl_ports; |
---|
691 | }__attribute__((packed)); |
---|
692 | |
---|
693 | int vbeGetProtModeInfo(struct VesaProtModeInterface *pm_info) |
---|
694 | { |
---|
695 | struct LRMI_regs r; |
---|
696 | int retval; |
---|
697 | unsigned info_offset; |
---|
698 | struct realVesaProtModeInterface *rm_info; |
---|
699 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
700 | r.eax = 0x4f0a; |
---|
701 | r.ebx = 0; |
---|
702 | if(!VBE_LRMI_int(0x10,&r)) return VBE_VM86_FAIL; |
---|
703 | retval = r.eax & 0xffff; |
---|
704 | if(retval == 0x4f) |
---|
705 | { |
---|
706 | retval = VBE_OK; |
---|
707 | info_offset = r.edi&0xffff; |
---|
708 | if((r.es >> 12) != hh_int_10_seg) retval = VBE_BROKEN_BIOS; |
---|
709 | rm_info = PhysToVirtSO(r.es,info_offset); |
---|
710 | pm_info->SetWindowCall = PhysToVirtSO(r.es,info_offset+rm_info->SetWindowCall); |
---|
711 | if(!is_addr_valid(pm_info->SetWindowCall)) retval = VBE_BROKEN_BIOS; |
---|
712 | #ifdef HAVE_VERBOSE_VAR |
---|
713 | if(verbose > 1) printf("vbelib: SetWindowCall=%04X:%04X => %p\n",r.es,info_offset+rm_info->SetWindowCall,pm_info->SetWindowCall); |
---|
714 | #endif |
---|
715 | pm_info->SetDisplayStart = PhysToVirtSO(r.es,info_offset+rm_info->SetDisplayStart); |
---|
716 | if(!is_addr_valid(pm_info->SetDisplayStart)) retval = VBE_BROKEN_BIOS; |
---|
717 | #ifdef HAVE_VERBOSE_VAR |
---|
718 | if(verbose > 1) printf("vbelib: SetDisplayStart=%04X:%04X => %p\n",r.es,info_offset+rm_info->SetDisplayStart,pm_info->SetDisplayStart); |
---|
719 | #endif |
---|
720 | pm_info->SetPaletteData = PhysToVirtSO(r.es,info_offset+rm_info->SetPaletteData); |
---|
721 | if(!is_addr_valid(pm_info->SetPaletteData)) retval = VBE_BROKEN_BIOS; |
---|
722 | #ifdef HAVE_VERBOSE_VAR |
---|
723 | if(verbose > 1) printf("vbelib: SetPaletteData=%04X:%04X => %p\n",r.es,info_offset+rm_info->SetPaletteData,pm_info->SetPaletteData); |
---|
724 | #endif |
---|
725 | pm_info->iopl_ports = PhysToVirtSO(r.es,info_offset+rm_info->iopl_ports); |
---|
726 | if(!rm_info->iopl_ports) pm_info->iopl_ports = NULL; |
---|
727 | else |
---|
728 | if(!check_wrd(pm_info->iopl_ports)) |
---|
729 | { |
---|
730 | pm_info->iopl_ports = NULL; |
---|
731 | /* retval = VBE_BROKEN_BIOS; <- It's for broken BIOSes only */ |
---|
732 | } |
---|
733 | #ifdef HAVE_VERBOSE_VAR |
---|
734 | if(verbose > 1) |
---|
735 | { |
---|
736 | printf("vbelib: iopl_ports=%04X:%04X => %p\n",r.es,info_offset+rm_info->iopl_ports,pm_info->iopl_ports); |
---|
737 | if(pm_info->iopl_ports) print_wrd(pm_info->iopl_ports); |
---|
738 | fflush(stdout); |
---|
739 | } |
---|
740 | #endif |
---|
741 | } |
---|
742 | return retval; |
---|
743 | } |
---|
744 | /* --------- Standard VGA stuff -------------- */ |
---|
745 | int vbeWriteString(int x, int y, int attr, char *str) |
---|
746 | { |
---|
747 | struct LRMI_regs r; |
---|
748 | void *rm_space = NULL; |
---|
749 | int retval; |
---|
750 | memset(&r,0,sizeof(struct LRMI_regs)); |
---|
751 | r.ecx = strlen(str); |
---|
752 | r.edx = ((y<<8)&0xff00)|(x&0xff); |
---|
753 | r.ebx = attr; |
---|
754 | if(!(rm_space = LRMI_alloc_real(r.ecx))) return VBE_OUT_OF_DOS_MEM; |
---|
755 | r.es = VirtToPhysSeg(rm_space); |
---|
756 | r.ebp = VirtToPhysOff(rm_space); |
---|
757 | memcpy(rm_space,str,r.ecx); |
---|
758 | r.eax = 0x1300; |
---|
759 | retval = VBE_LRMI_int(0x10,&r); |
---|
760 | LRMI_free_real(rm_space); |
---|
761 | if(!retval) return VBE_VM86_FAIL; |
---|
762 | retval = r.eax & 0xffff; |
---|
763 | if(retval == 0x4f) retval = VBE_OK; |
---|
764 | return retval; |
---|
765 | } |
---|
766 | |
---|
767 | void * vbeMapVideoBuffer(unsigned long phys_addr,unsigned long size) |
---|
768 | { |
---|
769 | void *lfb; |
---|
770 | if(fd_mem == -1) return NULL; |
---|
771 | #ifdef HAVE_VERBOSE_VAR |
---|
772 | if(verbose > 1) printf("vbelib: vbeMapVideoBuffer(%08lX,%08lX)\n",phys_addr,size); |
---|
773 | #endif |
---|
774 | /* Here we don't need with MAP_FIXED and prefered address (first argument) */ |
---|
775 | lfb = mmap((void *)0,size,PROT_READ | PROT_WRITE,MAP_SHARED,fd_mem,phys_addr); |
---|
776 | return lfb == (void *)-1 ? 0 : lfb; |
---|
777 | } |
---|
778 | |
---|
779 | void vbeUnmapVideoBuffer(unsigned long linear_addr,unsigned long size) |
---|
780 | { |
---|
781 | #ifdef HAVE_VERBOSE_VAR |
---|
782 | if(verbose > 1) printf("vbelib: vbeUnmapVideoBuffer(%08lX,%08lX)\n",linear_addr,size); |
---|
783 | #endif |
---|
784 | munmap((void *)linear_addr,size); |
---|
785 | } |
---|