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1/*
2 * NVidia injector
3 *
4 * Copyright (C) 2009 Jasmin Fazlic, iNDi
5 *
6 * NVidia injector is free software: you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation, either version 3 of the License, or
9 * (at your option) any later version.
10 *
11 * NVidia driver and injector is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with NVidia injector. If not, see <http://www.gnu.org/licenses/>.
18 */
19/*
20 * Alternatively you can choose to comply with APSL
21 */
22
23
24/*
25 * DCB-Table parsing is based on software (nouveau driver) originally distributed under following license:
26 *
27 *
28 * Copyright 2005-2006 Erik Waling
29 * Copyright 2006 Stephane Marchesin
30 * Copyright 2007-2009 Stuart Bennett
31 *
32 * Permission is hereby granted, free of charge, to any person obtaining a
33 * copy of this software and associated documentation files (the "Software"),
34 * to deal in the Software without restriction, including without limitation
35 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
36 * and/or sell copies of the Software, and to permit persons to whom the
37 * Software is furnished to do so, subject to the following conditions:
38 *
39 * The above copyright notice and this permission notice shall be included in
40 * all copies or substantial portions of the Software.
41 *
42 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
43 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
44 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
45 * THE AUTHORS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
46 * WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF
47 * OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
48 * SOFTWARE.
49 */
50
51#include "libsaio.h"
52#include "bootstruct.h"
53#include "pci.h"
54#include "platform.h"
55#include "device_inject.h"
56#include "nvidia.h"
57
58#ifndef DEBUG_NVIDIA
59#define DEBUG_NVIDIA 0
60#endif
61
62#if DEBUG_NVIDIA
63#define DBG(x...)printf(x)
64#else
65#define DBG(x...)
66#endif
67
68#define PATCH_ROM_SUCCESS 1
69#define PATCH_ROM_SUCCESS_HAS_LVDS 2
70#define PATCH_ROM_FAILED 0
71#define MAX_NUM_DCB_ENTRIES 16
72
73#define TYPE_GROUPED 0xff
74
75extern uint32_t devices_number;
76
77const char *nvidia_compatible_0[]={ "@0,compatible","NVDA,NVMac"};
78const char *nvidia_compatible_1[]={ "@1,compatible","NVDA,NVMac"};
79const char *nvidia_device_type_0[]={ "@0,device_type","display"};
80const char *nvidia_device_type_1[]={ "@1,device_type","display"};
81const char *nvidia_device_type[]={ "device_type","NVDA,Parent"};
82const char *nvidia_name_0[]={ "@0,name","NVDA,Display-A"};
83const char *nvidia_name_1[]={ "@1,name","NVDA,Display-B"};
84const char *nvidia_slot_name[]={ "AAPL,slot-name","Slot-1"};
85
86uint8_t default_NVCAP[]= {
870x04, 0x00, 0x00, 0x00,
880x00, 0x00, 0x0d, 0x00,
890x00, 0x00, 0x00, 0x00,
900x00, 0x00, 0x00, 0x0a,
910x00, 0x00, 0x00, 0x00
92};
93
94uint16_t swap16(uint16_t toswap) {
95return (((toswap & 0x00FF) << 8) | ((toswap & 0xFF00) >> 8));
96}
97
98// Known cards as of 2008/08/26
99static struct nv_chipsets_t NVKnownChipsets[] = {
100{ 0x00000000, "Unknown" },
101{ 0x10DE0301, "GeForce FX 5800 Ultra" },
102{ 0x10DE0302, "GeForce FX 5800" },
103{ 0x10DE0308, "Quadro FX 2000" },
104{ 0x10DE0309, "Quadro FX 1000" },
105{ 0x10DE0311, "GeForce FX 5600 Ultra" },
106{ 0x10DE0312, "GeForce FX 5600" },
107{ 0x10DE0314, "GeForce FX 5600XT" },
108{ 0x10DE031A, "GeForce FX Go5600" },
109{ 0x10DE031B, "GeForce FX Go5650" },
110{ 0x10DE031C, "Quadro FX Go700" },
111{ 0x10DE0324, "GeForce FX Go5200" },
112{ 0x10DE0325, "GeForce FX Go5250" },
113{ 0x10DE0326, "GeForce FX 5500" },
114{ 0x10DE0328, "GeForce FX Go5200 32M/64M" },
115{ 0x10DE032A, "Quadro NVS 55/280 PCI" },
116{ 0x10DE032B, "Quadro FX 500/600 PCI" },
117{ 0x10DE032C, "GeForce FX Go53xx Series" },
118{ 0x10DE032D, "GeForce FX Go5100" },
119{ 0x10DE0330, "GeForce FX 5900 Ultra" },
120{ 0x10DE0331, "GeForce FX 5900" },
121{ 0x10DE0332, "GeForce FX 5900XT" },
122{ 0x10DE0333, "GeForce FX 5950 Ultra" },
123{ 0x10DE0334, "GeForce FX 5900ZT" },
124{ 0x10DE0338, "Quadro FX 3000" },
125{ 0x10DE033F, "Quadro FX 700" },
126{ 0x10DE0341, "GeForce FX 5700 Ultra" },
127{ 0x10DE0342, "GeForce FX 5700" },
128{ 0x10DE0343, "GeForce FX 5700LE" },
129{ 0x10DE0344, "GeForce FX 5700VE" },
130{ 0x10DE0347, "GeForce FX Go5700" },
131{ 0x10DE0348, "GeForce FX Go5700" },
132{ 0x10DE034C, "Quadro FX Go1000" },
133{ 0x10DE034E, "Quadro FX 1100" },
134{ 0x10DE0040, "GeForce 6800 Ultra" },
135{ 0x10DE0041, "GeForce 6800" },
136{ 0x10DE0042, "GeForce 6800 LE" },
137{ 0x10DE0043, "GeForce 6800 XE" },
138{ 0x10DE0044, "GeForce 6800 XT" },
139{ 0x10DE0045, "GeForce 6800 GT" },
140{ 0x10DE0046, "GeForce 6800 GT" },
141{ 0x10DE0047, "GeForce 6800 GS" },
142{ 0x10DE0048, "GeForce 6800 XT" },
143{ 0x10DE004E, "Quadro FX 4000" },
144{ 0x10DE00C0, "GeForce 6800 GS" },
145{ 0x10DE00C1, "GeForce 6800" },
146{ 0x10DE00C2, "GeForce 6800 LE" },
147{ 0x10DE00C3, "GeForce 6800 XT" },
148{ 0x10DE00C8, "GeForce Go 6800" },
149{ 0x10DE00C9, "GeForce Go 6800 Ultra" },
150{ 0x10DE00CC, "Quadro FX Go1400" },
151{ 0x10DE00CD, "Quadro FX 3450/4000 SDI" },
152{ 0x10DE00CE, "Quadro FX 1400" },
153{ 0x10DE0140, "GeForce 6600 GT" },
154{ 0x10DE0141, "GeForce 6600" },
155{ 0x10DE0142, "GeForce 6600 LE" },
156{ 0x10DE0143, "GeForce 6600 VE" },
157{ 0x10DE0144, "GeForce Go 6600" },
158{ 0x10DE0145, "GeForce 6610 XL" },
159{ 0x10DE0146, "GeForce Go 6600 TE/6200 TE" },
160{ 0x10DE0147, "GeForce 6700 XL" },
161{ 0x10DE0148, "GeForce Go 6600" },
162{ 0x10DE0149, "GeForce Go 6600 GT" },
163{ 0x10DE014C, "Quadro FX 550" },
164{ 0x10DE014D, "Quadro FX 550" },
165{ 0x10DE014E, "Quadro FX 540" },
166{ 0x10DE014F, "GeForce 6200" },
167{ 0x10DE0160, "GeForce 6500" },
168{ 0x10DE0161, "GeForce 6200 TurboCache(TM)" },
169{ 0x10DE0162, "GeForce 6200SE TurboCache(TM)" },
170{ 0x10DE0163, "GeForce 6200 LE" },
171{ 0x10DE0164, "GeForce Go 6200" },
172{ 0x10DE0165, "Quadro NVS 285" },
173{ 0x10DE0166, "GeForce Go 6400" },
174{ 0x10DE0167, "GeForce Go 6200" },
175{ 0x10DE0168, "GeForce Go 6400" },
176{ 0x10DE0169, "GeForce 6250" },
177{ 0x10DE016A, "GeForce 7100 GS" },
178{ 0x10DE0211, "GeForce 6800" },
179{ 0x10DE0212, "GeForce 6800 LE" },
180{ 0x10DE0215, "GeForce 6800 GT" },
181{ 0x10DE0218, "GeForce 6800 XT" },
182{ 0x10DE0221, "GeForce 6200" },
183{ 0x10DE0222, "GeForce 6200 A-LE" },
184{ 0x10DE0090, "GeForce 7800 GTX" },
185{ 0x10DE0091, "GeForce 7800 GTX" },
186{ 0x10DE0092, "GeForce 7800 GT" },
187{ 0x10DE0093, "GeForce 7800 GS" },
188{ 0x10DE0095, "GeForce 7800 SLI" },
189{ 0x10DE0098, "GeForce Go 7800" },
190{ 0x10DE0099, "GeForce Go 7800 GTX" },
191{ 0x10DE009D, "Quadro FX 4500" },
192{ 0x10DE01D1, "GeForce 7300 LE" },
193{ 0x10DE01D3, "GeForce 7300 SE" },
194{ 0x10DE01D6, "GeForce Go 7200" },
195{ 0x10DE01D7, "GeForce Go 7300" },
196{ 0x10DE01D8, "GeForce Go 7400" },
197{ 0x10DE01D9, "GeForce Go 7400 GS" },
198{ 0x10DE01DA, "Quadro NVS 110M" },
199{ 0x10DE01DB, "Quadro NVS 120M" },
200{ 0x10DE01DC, "Quadro FX 350M" },
201{ 0x10DE01DD, "GeForce 7500 LE" },
202{ 0x10DE01DE, "Quadro FX 350" },
203{ 0x10DE01DF, "GeForce 7300 GS" },
204{ 0x10DE0391, "GeForce 7600 GT" },
205{ 0x10DE0392, "GeForce 7600 GS" },
206{ 0x10DE0393, "GeForce 7300 GT" },
207{ 0x10DE0394, "GeForce 7600 LE" },
208{ 0x10DE0395, "GeForce 7300 GT" },
209{ 0x10DE0397, "GeForce Go 7700" },
210{ 0x10DE0398, "GeForce Go 7600" },
211{ 0x10DE0399, "GeForce Go 7600 GT"},
212{ 0x10DE039A, "Quadro NVS 300M" },
213{ 0x10DE039B, "GeForce Go 7900 SE" },
214{ 0x10DE039C, "Quadro FX 550M" },
215{ 0x10DE039E, "Quadro FX 560" },
216{ 0x10DE0290, "GeForce 7900 GTX" },
217{ 0x10DE0291, "GeForce 7900 GT" },
218{ 0x10DE0292, "GeForce 7900 GS" },
219{ 0x10DE0298, "GeForce Go 7900 GS" },
220{ 0x10DE0299, "GeForce Go 7900 GTX" },
221{ 0x10DE029A, "Quadro FX 2500M" },
222{ 0x10DE029B, "Quadro FX 1500M" },
223{ 0x10DE029C, "Quadro FX 5500" },
224{ 0x10DE029D, "Quadro FX 3500" },
225{ 0x10DE029E, "Quadro FX 1500" },
226{ 0x10DE029F, "Quadro FX 4500 X2" },
227{ 0x10DE0240, "GeForce 6150" },
228{ 0x10DE0241, "GeForce 6150 LE" },
229//{ 0x10DE0242, "GeForce 6100" }, // We dont need support for these graphics card as they do not support OSX at all
230//{ 0x10DE0244, "GeForce Go 6150" }, // enabling this will only cause kernel panic therefore its safe to remove em
231//{ 0x10DE0247, "GeForce Go 6100" },
232
233/*************** G8x ***************/
234{ 0x10DE0191, "GeForce 8800 GTX" },
235{ 0x10DE0193, "GeForce 8800 GTS" },
236{ 0x10DE0194, "GeForce 8800 Ultra" },
237{ 0x10DE019D, "Quadro FX 5600" },
238{ 0x10DE019E, "Quadro FX 4600" },
239{ 0x10DE0400, "GeForce 8600 GTS" },
240{ 0x10DE0401, "GeForce 8600 GT" },
241{ 0x10DE0402, "GeForce 8600 GT" },
242{ 0x10DE0403, "GeForce 8600 GS" },
243{ 0x10DE0404, "GeForce 8400 GS" },
244{ 0x10DE0405, "GeForce 9500M GS" },
245{ 0x10DE0407, "GeForce 8600M GT" },
246{ 0x10DE0408, "GeForce 9650M GS" },
247{ 0x10DE0409, "GeForce 8700M GT" },
248{ 0x10DE040A, "Quadro FX 370" },
249{ 0x10DE040B, "Quadro NVS 320M" },
250{ 0x10DE040C, "Quadro FX 570M" },
251{ 0x10DE040D, "Quadro FX 1600M" },
252{ 0x10DE040E, "Quadro FX 570" },
253{ 0x10DE040F, "Quadro FX 1700" },
254{ 0x10DE0420, "GeForce 8400 SE" },
255{ 0x10DE0421, "GeForce 8500 GT" },
256{ 0x10DE0422, "GeForce 8400 GS" },
257{ 0x10DE0423, "GeForce 8300 GS" },
258{ 0x10DE0424, "GeForce 8400 GS" },
259{ 0x10DE0425, "GeForce 8600M GS" },
260{ 0x10DE0426, "GeForce 8400M GT" },
261{ 0x10DE0427, "GeForce 8400M GS" },
262{ 0x10DE0428, "GeForce 8400M G" },
263{ 0x10DE0429, "Quadro NVS 140M" },
264{ 0x10DE042A, "Quadro NVS 130M" },
265{ 0x10DE042B, "Quadro NVS 135M" },
266{ 0x10DE042C, "GeForce 9400 GT" },
267{ 0x10DE042D, "Quadro FX 360M" },
268{ 0x10DE042E, "GeForce 9300M G" },
269{ 0x10DE042F, "Quadro NVS 290" },
270{ 0x10DE05E1, "GeForce GTX 280" },
271{ 0x10DE05E2, "GeForce GTX 260" },
272{ 0x10DE0600, "GeForce 8800 GTS 512" },
273{ 0x10DE0602, "GeForce 8800 GT" },
274{ 0x10DE0604, "GeForce 9800 GX2" },
275{ 0x10DE0605, "GeForce 9800 GT" },
276{ 0x10DE0606, "GeForce 8800 GS" },
277{ 0x10DE0609, "GeForce 8800M GTS" },
278{ 0x10DE060C, "GeForce 8800M GTX" },
279{ 0x10DE060D, "GeForce 8800 GS" },
280{ 0x10DE0610, "GeForce 9600 GSO" },
281{ 0x10DE0611, "GeForce 8800 GT" },
282{ 0x10DE0612, "GeForce 9800 GTX" },
283{ 0x10DE0613, "GeForce 9800 GTX+" },
284{ 0x10DE0614, "GeForce 9800 GT" },
285{ 0x10DE061A, "Quadro FX 3700" },
286{ 0x10DE061C, "Quadro FX 3600M" },
287{ 0x10DE0622, "GeForce 9600 GT" },
288{ 0x10DE0623, "GeForce 9600 GS" },
289{ 0x10DE0628, "GeForce 9800M GTS" },
290{ 0x10DE062A, "GeForce 9700M GTS" },
291{ 0x10DE062C, "GeForce 9800M GTS" },
292{ 0x10DE0640, "GeForce 9500 GT" },
293{ 0x10DE0647, "GeForce 9600M GT" },
294{ 0x10DE0648, "GeForce 9600M GS" },
295{ 0x10DE0649, "GeForce 9600M GT" },
296{ 0x10DE064B, "GeForce 9500M G" },
297{ 0x10DE065B, "GeForce 9400 GT" },
298{ 0x10DE06E1, "GeForce 9300 GS" },
299{ 0x10DE06E4, "GeForce 8400 GS" },
300{ 0x10DE06E5, "GeForce 9300M GS" },
301{ 0x10DE06E8, "GeForce 9200M GS" },
302{ 0x10DE06E9, "GeForce 9300M GS" },
303{ 0x10DE06EA, "Quadro NVS 150M" },
304{ 0x10DE06EB, "Quadro NVS 160M" },
305
306/*************** GT2xx *************/
307{ 0x10DE05E0, "GeForce GTX 295" },
308{ 0x10DE05E1, "GeForce GTX 280" },
309{ 0x10DE05E2, "GeForce GTX 260" },
310{ 0x10DE05E3, "GeForce GTX 285" },
311{ 0x10DE05E6, "GeForce GTX 275" },
312};
313
314uint32_t swap32(uint32_t toswap) {
315return ((toswap & 0x000000FF) << 24) |
316((toswap & 0x0000FF00) << 8 ) |
317((toswap & 0x00FF0000) >> 8 ) |
318((toswap & 0xFF000000) >> 24);
319}
320
321uint8_t read8(uint8_t *ptr, uint16_t offset) {
322return ptr[offset];
323}
324
325uint16_t read16(uint8_t *ptr, uint16_t offset) {
326uint8_t ret[2];
327ret[0] = ptr[offset+1];
328ret[1] = ptr[offset];
329return *((uint16_t*)&ret);
330}
331
332uint32_t read32(uint8_t *ptr, uint16_t offset) {
333uint8_t ret[4];
334ret[0] = ptr[offset+3];
335ret[1] = ptr[offset+2];
336ret[2] = ptr[offset+1];
337ret[3] = ptr[offset];
338return *((uint32_t*)&ret);
339}
340
341int patch_nvidia_rom(uint8_t *rom) {
342if(!rom || (rom[0] != 0x55 && rom[1] != 0xaa)) {
343printf("False ROM signature: 0x%02x%02x\n", rom[0], rom[1]);
344return PATCH_ROM_FAILED;
345}
346
347uint16_t dcbptr = swap16(read16(rom, 0x36));
348if(!dcbptr) {
349printf("no dcb table found\n");
350return PATCH_ROM_FAILED;
351}/* else
352 printf("dcb table at offset 0x%04x\n", dcbptr);
353 */
354uint8_t *dcbtable = &rom[dcbptr];
355uint8_t dcbtable_version = dcbtable[0];
356uint8_t headerlength = 0;
357uint8_t recordlength = 0;
358uint8_t numentries = 0;
359
360if(dcbtable_version >= 0x20) {
361uint32_t sig;
362
363if(dcbtable_version >= 0x30) {
364headerlength = dcbtable[1];
365numentries = dcbtable[2];
366recordlength = dcbtable[3];
367sig = *(uint32_t *)&dcbtable[6];
368} else {
369sig = *(uint32_t *)&dcbtable[4];
370headerlength = 8;
371}
372if (sig != 0x4edcbdcb) {
373printf("bad display config block signature (0x%8x)\n", sig);
374return PATCH_ROM_FAILED;
375}
376} else if (dcbtable_version >= 0x14) { /* some NV15/16, and NV11+ */
377char sig[8] = { 0 };
378
379strncpy(sig, (char *)&dcbtable[-7], 7);
380recordlength = 10;
381if (strcmp(sig, "DEV_REC")) {
382printf("Bad Display Configuration Block signature (%s)\n", sig);
383return PATCH_ROM_FAILED;
384}
385} else {
386return PATCH_ROM_FAILED;
387}
388
389if(numentries >= MAX_NUM_DCB_ENTRIES)
390numentries = MAX_NUM_DCB_ENTRIES;
391
392uint8_t num_outputs = 0, i=0;
393struct dcbentry {
394uint8_t type;
395uint8_t index;
396uint8_t *heads;
397} entries[numentries];
398
399for (i = 0; i < numentries; i++) {
400uint32_t connection;
401connection = *(uint32_t *)&dcbtable[headerlength + recordlength * i];
402/* Should we allow discontinuous DCBs? Certainly DCB I2C tables can be discontinuous */
403if ((connection & 0x0000000f) == 0x0000000f) /* end of records */
404continue;
405if (connection == 0x00000000) /* seen on an NV11 with DCB v1.5 */
406continue;
407if ((connection & 0xf) == 0x6) /* we skip type 6 as it doesnt appear on macbook nvcaps */
408continue;
409
410entries[num_outputs].type = connection & 0xf;
411entries[num_outputs].index = num_outputs;
412entries[num_outputs++].heads = (uint8_t*)&(dcbtable[(headerlength + recordlength * i) + 1]);
413
414}
415
416int has_lvds = false;
417uint8_t channel1 = 0, channel2 = 0;
418
419for(i=0; i<num_outputs; i++) {
420if(entries[i].type == 3) {
421has_lvds = true;
422//printf("found LVDS\n");
423channel1 |= ( 0x1 << entries[i].index);
424entries[i].type = TYPE_GROUPED;
425}
426}
427// if we have a LVDS output, we group the rest to the second channel
428if(has_lvds) {
429for(i=0; i<num_outputs; i++) {
430if(entries[i].type == TYPE_GROUPED)
431continue;
432channel2 |= ( 0x1 << entries[i].index);
433entries[i].type = TYPE_GROUPED;
434}
435} else {
436//
437int x;
438// we loop twice as we need to generate two channels
439for(x=0; x<=1; x++) {
440for(i=0; i<num_outputs; i++) {
441if(entries[i].type == TYPE_GROUPED)
442continue;
443// if type is TMDS, the prior output is ANALOG
444// we always group ANALOG and TMDS
445// if there is a TV output after TMDS, we group it to that channel as well
446if(i && entries[i].type == 0x2) {
447switch (x) {
448case 0:
449//printf("group channel 1\n");
450channel1 |= ( 0x1 << entries[i].index);
451entries[i].type = TYPE_GROUPED;
452if((entries[i-1].type == 0x0)) {
453channel1 |= ( 0x1 << entries[i-1].index);
454entries[i-1].type = TYPE_GROUPED;
455}
456// group TV as well if there is one
457if( ((i+1) < num_outputs) && (entries[i+1].type == 0x1) ) {
458//printf("group tv1\n");
459channel1 |= ( 0x1 << entries[i+1].index);
460entries[i+1].type = TYPE_GROUPED;
461}
462break;
463case 1:
464//printf("group channel 2 : %d\n", i);
465channel2 |= ( 0x1 << entries[i].index);
466entries[i].type = TYPE_GROUPED;
467if((entries[i-1].type == 0x0)) {
468channel2 |= ( 0x1 << entries[i-1].index);
469entries[i-1].type = TYPE_GROUPED;
470}
471// group TV as well if there is one
472if( ((i+1) < num_outputs) && (entries[i+1].type == 0x1) ) {
473//printf("group tv2\n");
474channel2 |= ( 0x1 << entries[i+1].index);
475entries[i+1].type = TYPE_GROUPED;
476}
477break;
478
479}
480break;
481}
482}
483}
484}
485
486// if we have left ungrouped outputs merge them to the empty channel
487uint8_t *togroup;// = (channel1 ? (channel2 ? NULL : &channel2) : &channel1);
488togroup = &channel2;
489for(i=0; i<num_outputs;i++)
490if(entries[i].type != TYPE_GROUPED) {
491//printf("%d not grouped\n", i);
492if(togroup)
493*togroup |= ( 0x1 << entries[i].index);
494entries[i].type = TYPE_GROUPED;
495}
496
497if(channel1 > channel2) {
498uint8_t buff = channel1;
499channel1 = channel2;
500channel2 = buff;
501}
502
503default_NVCAP[6] = channel1;
504default_NVCAP[8] = channel2;
505
506// patching HEADS
507for(i=0; i<num_outputs;i++) {
508if(channel1 & (1 << i))
509*entries[i].heads = 1;
510else if(channel2 & (1 << i))
511*entries[i].heads = 2;
512}
513
514return (has_lvds ? PATCH_ROM_SUCCESS_HAS_LVDS : PATCH_ROM_SUCCESS);
515}
516
517char *get_nvidia_model(uint32_t id) {
518int i=0;
519for(i = 0; i < (sizeof(NVKnownChipsets) / sizeof(NVKnownChipsets[0])); i++) {
520if(NVKnownChipsets[i].device == id)
521return NVKnownChipsets[i].name;
522}
523return NVKnownChipsets[0].name;
524}
525
526uint32_t load_nvidia_bios_file(char *filename, char *buffer)
527{
528intfd, size;
529chardirspec[128];
530
531// Check booting partition
532sprintf(dirspec, "%s", filename);
533fd = open(dirspec, 0);
534if (fd < 0)
535{
536// Check Extra on booting partition
537sprintf(dirspec, "/Extra/%s", filename);
538fd = open(dirspec, 0);
539if (fd < 0)
540{
541// Fall back to booter partition
542sprintf(dirspec, "bt(0,0)/Extra/%s", filename);
543fd=open (dirspec, 0);
544if (fd < 0)
545return 0;
546}
547}
548
549size = read(fd, buffer, file_size (fd));
550close (fd);
551return size;
552}
553
554int devprop_add_nvidia_template(struct DevPropDevice *device)
555{
556if(!device)
557return 0;
558
559if(!DP_ADD_TEMP_VAL(device, nvidia_compatible_0))
560return 0;
561if(!DP_ADD_TEMP_VAL(device, nvidia_device_type_0))
562return 0;
563if(!DP_ADD_TEMP_VAL(device, nvidia_name_0))
564return 0;
565if(!DP_ADD_TEMP_VAL(device, nvidia_compatible_1))
566return 0;
567if(!DP_ADD_TEMP_VAL(device, nvidia_device_type_1))
568return 0;
569if(!DP_ADD_TEMP_VAL(device, nvidia_name_1))
570return 0;
571if(!DP_ADD_TEMP_VAL(device, nvidia_device_type))
572return 0;
573
574char tmp[10];
575sprintf(tmp, "Slot-%x",devices_number);
576devprop_add_value(device, "AAPL,slot-name", tmp, strlen(tmp));
577devices_number++;
578
579return 1;
580}
581
582
583bool setup_nvidia_devprop(pci_dt_t *nvda_dev)
584{
585intlen;
586char*devicepath;
587uint8_t*nvRom, *rom;
588volatile uint8_t *regs;
589uint32_tvideoRam, nvBiosOveride, nvBiosSize;
590uint32_tbar[7];
591uint8_tnvPatch = 0;
592
593charbiosVersion[32];
594char*model;
595const char*nvFilename;
596
597devicepath = get_pci_dev_path(nvda_dev);
598
599bar[0] = pci_config_read32(nvda_dev->dev.addr, 0x10 );
600regs = (uint8_t *) (bar[0] & ~0x0f);
601
602// Amount of VRAM in kilobytes
603videoRam = (REG32(0x10020c) & 0xfff00000) >> 10;
604
605model = get_nvidia_model((nvda_dev->vendor_id << 16) | nvda_dev->device_id);
606
607verbose("nVidia %s %dMB NV%02x [%04x:%04x] :: %s\n",
608model, (videoRam / 1024),
609(REG32(0) >> 20) & 0x1ff, nvda_dev->vendor_id, nvda_dev->device_id,
610devicepath);
611
612rom = malloc(0x10000);
613
614if(!rom)
615{
616verbose(" ROM malloc failed.\n");
617return 0;
618}
619
620if (!getValueForKey("VideoROM", &nvFilename, &len, &bootInfo->bootConfig))
621nvFilename="NVIDIA.ROM";
622
623// Load video bios overide
624nvBiosOveride = nvBiosSize = load_nvidia_bios_file((char *)nvFilename, (char *)rom);
625
626// Otherwise read bios from card
627if (nvBiosOveride == 0)
628{
629// TODO: we should really check for the signature
630// before copying the rom, i think.
631
632// PRAMIN first
633nvRom = (uint8_t*)&regs[NV_PRAMIN_OFFSET];
634bcopy((uint32_t *)nvRom, rom, 0x10000);
635
636// Valid Signature ?
637if(rom[0] != 0x55 && rom[1] != 0xaa)
638{
639// PROM next
640// Enable PROM access
641(REG32(NV_PBUS_PCI_NV_20)) = NV_PBUS_PCI_NV_20_ROM_SHADOW_DISABLED;
642
643nvRom = (uint8_t*)&regs[NV_PROM_OFFSET];
644bcopy((uint8_t *)nvRom, rom, 0x10000);
645
646// disable PROM access
647(REG32(NV_PBUS_PCI_NV_20)) = NV_PBUS_PCI_NV_20_ROM_SHADOW_ENABLED;
648
649// Valid Signature ?
650if(rom[0] != 0x55 && rom[1] != 0xaa)
651{
652// 0xC0000 last
653bcopy((char *)0xc0000, rom, 0x10000);
654
655// Valid Signature ?
656if(rom[0] != 0x55 && rom[1] != 0xaa)
657{
658verbose(" Unable to locate video bios.\n");
659return 0;
660}
661else
662DBG(" ROM Address 0x%x Signature 0x%02x%02x\n",
663nvRom, (uint8_t)rom[0], (uint8_t)rom[1]);
664}
665else
666DBG(" PROM Address 0x%x Signature 0x%02x%02x\n",
667nvRom, (uint8_t)rom[0], (uint8_t)rom[1]);
668}
669else
670DBG(" PRAM Address 0x%x Signature 0x%02x%02x\n",
671nvRom, (uint8_t)rom[0], (uint8_t)rom[1]);
672}
673else
674DBG(" %s Signature 0x%02x%02x %d bytes\n",
675nvFilename, (uint8_t)rom[0], (uint8_t)rom[1], nvBiosOveride);
676
677nvPatch = patch_nvidia_rom(rom);
678
679if(nvPatch == PATCH_ROM_FAILED)
680{
681printf(" ROM Patching Failed.\n");
682return false;
683}
684
685structpci_rom_pci_header_t *rom_pci_header;
686rom_pci_header = (struct pci_rom_pci_header_t*)(rom + *(uint16_t *)&rom[24]);
687
688// check for 'PCIR' sig
689if (rom_pci_header->signature == 0x50434952)
690if (rom_pci_header->device != nvda_dev->device_id)
691// Get Model from the OpROM
692model = get_nvidia_model((rom_pci_header->vendor << 16) | rom_pci_header->device);
693else
694printf("incorrect PCI ROM sig: 0x%x\n", rom_pci_header->signature);
695
696if (!string)
697string = devprop_create_string();
698
699struct DevPropDevice *device = malloc(sizeof(struct DevPropDevice));
700device = devprop_add_device(string, devicepath);
701
702if(!device)
703{
704printf("Failed initializing dev-prop string dev-entry, press any key...\n");
705free(rom);
706getc();
707return false;
708}
709
710/* FIXME: for primary graphics card only */
711uint32_t boot_display = 0x00000001;
712devprop_add_value(device, "@0,AAPL,boot-display", (uint8_t*)&boot_display, 4);
713
714if(nvPatch == PATCH_ROM_SUCCESS_HAS_LVDS)
715{
716uint8_t built_in = 0x01;
717devprop_add_value(device, "@0,built-in", (uint8_t*)&built_in, 1);
718}
719
720videoRam *= 1024;
721
722sprintf(biosVersion, "xx.xx.xx - %s", (nvBiosOveride > 0) ? nvFilename : "internal");
723
724devprop_add_nvidia_template(device);
725devprop_add_value(device, "NVCAP", default_NVCAP, 20);
726devprop_add_value(device, "VRAM,totalsize", (uint8_t*)&videoRam, 4);
727devprop_add_value(device, "model", (uint8_t*)model, (strlen(model) + 1));
728devprop_add_value(device, "rom-revision", (uint8_t*)biosVersion, (strlen(biosVersion) + 1));
729
730BOOL set_vbios_prop = false;
731getBoolForKey("VBIOS", &set_vbios_prop, &bootInfo->bootConfig);
732if (set_vbios_prop)
733devprop_add_value(device, "vbios", rom, (nvBiosOveride > 0) ? nvBiosOveride : (rom[2] * 512));
734
735stringdata = malloc(sizeof(uint8_t) * string->length);
736if(!stringdata)
737{
738printf("no stringdata press a key...\n");
739getc();
740return false;
741}
742
743memcpy(stringdata, (uint8_t*)devprop_generate_string(string), string->length);
744stringlength = string->length;
745
746return true;
747}
748

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