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1117 serge 1
/*
2
 * Copyright 2008 Advanced Micro Devices, Inc.
3
 * Copyright 2008 Red Hat Inc.
4
 * Copyright 2009 Jerome Glisse.
5
 *
6
 * Permission is hereby granted, free of charge, to any person obtaining a
7
 * copy of this software and associated documentation files (the "Software"),
8
 * to deal in the Software without restriction, including without limitation
9
 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
10
 * and/or sell copies of the Software, and to permit persons to whom the
11
 * Software is furnished to do so, subject to the following conditions:
12
 *
13
 * The above copyright notice and this permission notice shall be included in
14
 * all copies or substantial portions of the Software.
15
 *
16
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
19
 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
20
 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
21
 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
22
 * OTHER DEALINGS IN THE SOFTWARE.
23
 *
24
 * Authors: Dave Airlie
25
 *          Alex Deucher
26
 *          Jerome Glisse
27
 */
28
//#include 
1123 serge 29
 
1179 serge 30
#include 
31
#include 
1221 serge 32
#include 
1117 serge 33
#include "radeon_reg.h"
34
#include "radeon.h"
35
#include "radeon_asic.h"
36
#include "atom.h"
1428 serge 37
#include "display.h"
1117 serge 38
 
1221 serge 39
#include 
40
 
1117 serge 41
 
1430 serge 42
int radeon_no_wb;
43
int radeon_modeset = -1;
44
int radeon_dynclks = -1;
45
int radeon_r4xx_atom = 0;
46
int radeon_agpmode = 0;
47
int radeon_vram_limit = 0;
48
int radeon_gart_size = 512; /* default gart size */
49
int radeon_benchmarking = 0;
50
int radeon_testing = 0;
51
int radeon_connector_table = 0;
52
int radeon_tv = 1;
53
int radeon_new_pll = -1;
54
int radeon_dynpm = -1;
55
int radeon_audio = 1;
1117 serge 56
 
1430 serge 57
 
1428 serge 58
extern display_t *rdisplay;
1246 serge 59
 
1404 serge 60
void parse_cmdline(char *cmdline, videomode_t *mode, char *log, int *kms);
61
int init_display(struct radeon_device *rdev, videomode_t *mode);
62
int init_display_kms(struct radeon_device *rdev, videomode_t *mode);
1117 serge 63
 
1404 serge 64
int get_modes(videomode_t *mode, int *count);
65
int set_user_mode(videomode_t *mode);
1428 serge 66
int r100_2D_test(struct radeon_device *rdev);
1239 serge 67
 
1404 serge 68
 
1233 serge 69
 /* Legacy VGA regions */
70
#define VGA_RSRC_NONE          0x00
71
#define VGA_RSRC_LEGACY_IO     0x01
72
#define VGA_RSRC_LEGACY_MEM    0x02
73
#define VGA_RSRC_LEGACY_MASK   (VGA_RSRC_LEGACY_IO | VGA_RSRC_LEGACY_MEM)
74
/* Non-legacy access */
75
#define VGA_RSRC_NORMAL_IO     0x04
76
#define VGA_RSRC_NORMAL_MEM    0x08
77
 
78
 
79
 
1117 serge 80
/*
81
 * Clear GPU surface registers.
82
 */
1179 serge 83
void radeon_surface_init(struct radeon_device *rdev)
1117 serge 84
{
85
    /* FIXME: check this out */
86
    if (rdev->family < CHIP_R600) {
87
        int i;
88
 
1321 serge 89
		for (i = 0; i < RADEON_GEM_MAX_SURFACES; i++) {
1404 serge 90
           radeon_clear_surface_reg(rdev, i);
1117 serge 91
        }
1179 serge 92
		/* enable surfaces */
93
		WREG32(RADEON_SURFACE_CNTL, 0);
1117 serge 94
    }
95
}
96
 
97
/*
98
 * GPU scratch registers helpers function.
99
 */
1179 serge 100
void radeon_scratch_init(struct radeon_device *rdev)
1117 serge 101
{
102
    int i;
103
 
104
    /* FIXME: check this out */
105
    if (rdev->family < CHIP_R300) {
106
        rdev->scratch.num_reg = 5;
107
    } else {
108
        rdev->scratch.num_reg = 7;
109
    }
110
    for (i = 0; i < rdev->scratch.num_reg; i++) {
111
        rdev->scratch.free[i] = true;
112
        rdev->scratch.reg[i] = RADEON_SCRATCH_REG0 + (i * 4);
113
    }
114
}
115
 
116
int radeon_scratch_get(struct radeon_device *rdev, uint32_t *reg)
117
{
118
	int i;
119
 
120
	for (i = 0; i < rdev->scratch.num_reg; i++) {
121
		if (rdev->scratch.free[i]) {
122
			rdev->scratch.free[i] = false;
123
			*reg = rdev->scratch.reg[i];
124
			return 0;
125
		}
126
	}
127
	return -EINVAL;
128
}
129
 
130
void radeon_scratch_free(struct radeon_device *rdev, uint32_t reg)
131
{
132
	int i;
133
 
134
	for (i = 0; i < rdev->scratch.num_reg; i++) {
135
		if (rdev->scratch.reg[i] == reg) {
136
			rdev->scratch.free[i] = true;
137
			return;
138
		}
139
	}
140
}
141
 
1430 serge 142
/**
143
 * radeon_vram_location - try to find VRAM location
144
 * @rdev: radeon device structure holding all necessary informations
145
 * @mc: memory controller structure holding memory informations
146
 * @base: base address at which to put VRAM
147
 *
148
 * Function will place try to place VRAM at base address provided
149
 * as parameter (which is so far either PCI aperture address or
150
 * for IGP TOM base address).
151
 *
152
 * If there is not enough space to fit the unvisible VRAM in the 32bits
153
 * address space then we limit the VRAM size to the aperture.
154
 *
155
 * If we are using AGP and if the AGP aperture doesn't allow us to have
156
 * room for all the VRAM than we restrict the VRAM to the PCI aperture
157
 * size and print a warning.
158
 *
159
 * This function will never fails, worst case are limiting VRAM.
160
 *
161
 * Note: GTT start, end, size should be initialized before calling this
162
 * function on AGP platform.
163
 *
164
 * Note: We don't explictly enforce VRAM start to be aligned on VRAM size,
165
 * this shouldn't be a problem as we are using the PCI aperture as a reference.
166
 * Otherwise this would be needed for rv280, all r3xx, and all r4xx, but
167
 * not IGP.
168
 *
169
 * Note: we use mc_vram_size as on some board we need to program the mc to
170
 * cover the whole aperture even if VRAM size is inferior to aperture size
171
 * Novell bug 204882 + along with lots of ubuntu ones
172
 *
173
 * Note: when limiting vram it's safe to overwritte real_vram_size because
174
 * we are not in case where real_vram_size is inferior to mc_vram_size (ie
175
 * note afected by bogus hw of Novell bug 204882 + along with lots of ubuntu
176
 * ones)
177
 *
178
 * Note: IGP TOM addr should be the same as the aperture addr, we don't
179
 * explicitly check for that thought.
180
 *
181
 * FIXME: when reducing VRAM size align new size on power of 2.
1117 serge 182
 */
1430 serge 183
void radeon_vram_location(struct radeon_device *rdev, struct radeon_mc *mc, u64 base)
1117 serge 184
{
1430 serge 185
	mc->vram_start = base;
186
	if (mc->mc_vram_size > (0xFFFFFFFF - base + 1)) {
187
		dev_warn(rdev->dev, "limiting VRAM to PCI aperture size\n");
188
		mc->real_vram_size = mc->aper_size;
189
		mc->mc_vram_size = mc->aper_size;
190
	}
191
	mc->vram_end = mc->vram_start + mc->mc_vram_size - 1;
192
	if (rdev->flags & RADEON_IS_AGP && mc->vram_end > mc->gtt_start && mc->vram_end <= mc->gtt_end) {
193
		dev_warn(rdev->dev, "limiting VRAM to PCI aperture size\n");
194
		mc->real_vram_size = mc->aper_size;
195
		mc->mc_vram_size = mc->aper_size;
196
		}
197
	mc->vram_end = mc->vram_start + mc->mc_vram_size - 1;
198
	dev_info(rdev->dev, "VRAM: %lluM 0x%08llX - 0x%08llX (%lluM used)\n",
199
			mc->mc_vram_size >> 20, mc->vram_start,
200
			mc->vram_end, mc->real_vram_size >> 20);
201
}
1117 serge 202
 
1430 serge 203
/**
204
 * radeon_gtt_location - try to find GTT location
205
 * @rdev: radeon device structure holding all necessary informations
206
 * @mc: memory controller structure holding memory informations
207
 *
208
 * Function will place try to place GTT before or after VRAM.
209
 *
210
 * If GTT size is bigger than space left then we ajust GTT size.
211
 * Thus function will never fails.
212
 *
213
 * FIXME: when reducing GTT size align new size on power of 2.
214
 */
215
void radeon_gtt_location(struct radeon_device *rdev, struct radeon_mc *mc)
216
{
217
	u64 size_af, size_bf;
218
 
219
	size_af = 0xFFFFFFFF - mc->vram_end;
220
	size_bf = mc->vram_start;
221
	if (size_bf > size_af) {
222
		if (mc->gtt_size > size_bf) {
223
			dev_warn(rdev->dev, "limiting GTT\n");
224
			mc->gtt_size = size_bf;
1117 serge 225
		}
1430 serge 226
		mc->gtt_start = mc->vram_start - mc->gtt_size;
227
	} else {
228
		if (mc->gtt_size > size_af) {
229
			dev_warn(rdev->dev, "limiting GTT\n");
230
			mc->gtt_size = size_af;
1117 serge 231
		}
1430 serge 232
		mc->gtt_start = mc->vram_end + 1;
1117 serge 233
	}
1430 serge 234
	mc->gtt_end = mc->gtt_start + mc->gtt_size - 1;
235
	dev_info(rdev->dev, "GTT: %lluM 0x%08llX - 0x%08llX\n",
236
			mc->gtt_size >> 20, mc->gtt_start, mc->gtt_end);
1117 serge 237
}
238
 
239
/*
240
 * GPU helpers function.
241
 */
1179 serge 242
bool radeon_card_posted(struct radeon_device *rdev)
1117 serge 243
{
244
	uint32_t reg;
245
 
246
	/* first check CRTCs */
1430 serge 247
	if (ASIC_IS_DCE4(rdev)) {
248
		reg = RREG32(EVERGREEN_CRTC_CONTROL + EVERGREEN_CRTC0_REGISTER_OFFSET) |
249
			RREG32(EVERGREEN_CRTC_CONTROL + EVERGREEN_CRTC1_REGISTER_OFFSET) |
250
			RREG32(EVERGREEN_CRTC_CONTROL + EVERGREEN_CRTC2_REGISTER_OFFSET) |
251
			RREG32(EVERGREEN_CRTC_CONTROL + EVERGREEN_CRTC3_REGISTER_OFFSET) |
252
			RREG32(EVERGREEN_CRTC_CONTROL + EVERGREEN_CRTC4_REGISTER_OFFSET) |
253
			RREG32(EVERGREEN_CRTC_CONTROL + EVERGREEN_CRTC5_REGISTER_OFFSET);
254
		if (reg & EVERGREEN_CRTC_MASTER_EN)
255
			return true;
256
	} else if (ASIC_IS_AVIVO(rdev)) {
1117 serge 257
		reg = RREG32(AVIVO_D1CRTC_CONTROL) |
258
		      RREG32(AVIVO_D2CRTC_CONTROL);
259
		if (reg & AVIVO_CRTC_EN) {
260
			return true;
261
		}
262
	} else {
263
		reg = RREG32(RADEON_CRTC_GEN_CNTL) |
264
		      RREG32(RADEON_CRTC2_GEN_CNTL);
265
		if (reg & RADEON_CRTC_EN) {
266
			return true;
267
		}
268
	}
269
 
270
	/* then check MEM_SIZE, in case the crtcs are off */
271
	if (rdev->family >= CHIP_R600)
272
		reg = RREG32(R600_CONFIG_MEMSIZE);
273
	else
274
		reg = RREG32(RADEON_CONFIG_MEMSIZE);
275
 
276
	if (reg)
277
		return true;
278
 
279
	return false;
280
 
281
}
282
 
1321 serge 283
bool radeon_boot_test_post_card(struct radeon_device *rdev)
284
{
285
	if (radeon_card_posted(rdev))
286
		return true;
287
 
288
	if (rdev->bios) {
289
		DRM_INFO("GPU not posted. posting now...\n");
290
		if (rdev->is_atom_bios)
291
			atom_asic_init(rdev->mode_info.atom_context);
292
		else
293
			radeon_combios_asic_init(rdev->ddev);
294
		return true;
295
	} else {
296
		dev_err(rdev->dev, "Card not posted and no BIOS - ignoring\n");
297
		return false;
298
	}
299
}
300
 
1233 serge 301
int radeon_dummy_page_init(struct radeon_device *rdev)
302
{
1430 serge 303
	if (rdev->dummy_page.page)
304
		return 0;
1233 serge 305
    rdev->dummy_page.page = AllocPage();
306
	if (rdev->dummy_page.page == NULL)
307
		return -ENOMEM;
308
    rdev->dummy_page.addr = MapIoMem(rdev->dummy_page.page, 4096, 5);
309
	if (!rdev->dummy_page.addr) {
310
//       __free_page(rdev->dummy_page.page);
311
		rdev->dummy_page.page = NULL;
312
		return -ENOMEM;
313
	}
314
	return 0;
315
}
1117 serge 316
 
1233 serge 317
void radeon_dummy_page_fini(struct radeon_device *rdev)
318
{
319
	if (rdev->dummy_page.page == NULL)
320
		return;
321
    KernelFree(rdev->dummy_page.addr);
322
	rdev->dummy_page.page = NULL;
323
}
324
 
325
 
1117 serge 326
/*
327
 * Registers accessors functions.
328
 */
329
uint32_t radeon_invalid_rreg(struct radeon_device *rdev, uint32_t reg)
330
{
331
    DRM_ERROR("Invalid callback to read register 0x%04X\n", reg);
332
    BUG_ON(1);
333
    return 0;
334
}
335
 
336
void radeon_invalid_wreg(struct radeon_device *rdev, uint32_t reg, uint32_t v)
337
{
338
    DRM_ERROR("Invalid callback to write register 0x%04X with 0x%08X\n",
339
          reg, v);
340
    BUG_ON(1);
341
}
342
 
343
void radeon_register_accessor_init(struct radeon_device *rdev)
344
{
345
    rdev->mc_rreg = &radeon_invalid_rreg;
346
    rdev->mc_wreg = &radeon_invalid_wreg;
347
    rdev->pll_rreg = &radeon_invalid_rreg;
348
    rdev->pll_wreg = &radeon_invalid_wreg;
349
    rdev->pciep_rreg = &radeon_invalid_rreg;
350
    rdev->pciep_wreg = &radeon_invalid_wreg;
351
 
352
    /* Don't change order as we are overridding accessor. */
353
    if (rdev->family < CHIP_RV515) {
1179 serge 354
		rdev->pcie_reg_mask = 0xff;
355
	} else {
356
		rdev->pcie_reg_mask = 0x7ff;
1117 serge 357
    }
358
    /* FIXME: not sure here */
359
    if (rdev->family <= CHIP_R580) {
1119 serge 360
        rdev->pll_rreg = &r100_pll_rreg;
361
        rdev->pll_wreg = &r100_pll_wreg;
1117 serge 362
    }
1179 serge 363
	if (rdev->family >= CHIP_R420) {
364
		rdev->mc_rreg = &r420_mc_rreg;
365
		rdev->mc_wreg = &r420_mc_wreg;
366
	}
1117 serge 367
    if (rdev->family >= CHIP_RV515) {
368
        rdev->mc_rreg = &rv515_mc_rreg;
369
        rdev->mc_wreg = &rv515_mc_wreg;
370
    }
371
    if (rdev->family == CHIP_RS400 || rdev->family == CHIP_RS480) {
1128 serge 372
        rdev->mc_rreg = &rs400_mc_rreg;
373
        rdev->mc_wreg = &rs400_mc_wreg;
1117 serge 374
    }
1221 serge 375
    if (rdev->family == CHIP_RS690 || rdev->family == CHIP_RS740) {
376
        rdev->mc_rreg = &rs690_mc_rreg;
377
        rdev->mc_wreg = &rs690_mc_wreg;
378
    }
379
    if (rdev->family == CHIP_RS600) {
380
        rdev->mc_rreg = &rs600_mc_rreg;
381
        rdev->mc_wreg = &rs600_mc_wreg;
382
    }
1430 serge 383
	if ((rdev->family >= CHIP_R600) && (rdev->family <= CHIP_RV740)) {
1233 serge 384
		rdev->pciep_rreg = &r600_pciep_rreg;
385
		rdev->pciep_wreg = &r600_pciep_wreg;
386
	}
1117 serge 387
}
388
 
389
 
390
/*
391
 * ASIC
392
 */
393
int radeon_asic_init(struct radeon_device *rdev)
394
{
395
    radeon_register_accessor_init(rdev);
396
	switch (rdev->family) {
397
	case CHIP_R100:
398
	case CHIP_RV100:
399
	case CHIP_RS100:
400
	case CHIP_RV200:
401
	case CHIP_RS200:
1430 serge 402
		rdev->asic = &r100_asic;
403
		break;
1117 serge 404
	case CHIP_R200:
405
	case CHIP_RV250:
406
	case CHIP_RS300:
407
	case CHIP_RV280:
1430 serge 408
		rdev->asic = &r200_asic;
1117 serge 409
		break;
410
	case CHIP_R300:
411
	case CHIP_R350:
412
	case CHIP_RV350:
413
	case CHIP_RV380:
1430 serge 414
		if (rdev->flags & RADEON_IS_PCIE)
415
			rdev->asic = &r300_asic_pcie;
416
		else
1128 serge 417
        rdev->asic = &r300_asic;
1117 serge 418
		break;
419
	case CHIP_R420:
420
	case CHIP_R423:
421
	case CHIP_RV410:
1128 serge 422
        rdev->asic = &r420_asic;
1117 serge 423
		break;
424
	case CHIP_RS400:
425
	case CHIP_RS480:
1128 serge 426
       rdev->asic = &rs400_asic;
1117 serge 427
		break;
428
	case CHIP_RS600:
1221 serge 429
        rdev->asic = &rs600_asic;
1117 serge 430
		break;
431
	case CHIP_RS690:
432
	case CHIP_RS740:
1221 serge 433
        rdev->asic = &rs690_asic;
1117 serge 434
		break;
435
	case CHIP_RV515:
1128 serge 436
        rdev->asic = &rv515_asic;
1117 serge 437
		break;
438
	case CHIP_R520:
439
	case CHIP_RV530:
440
	case CHIP_RV560:
441
	case CHIP_RV570:
442
	case CHIP_R580:
443
        rdev->asic = &r520_asic;
444
		break;
445
	case CHIP_R600:
446
	case CHIP_RV610:
447
	case CHIP_RV630:
448
	case CHIP_RV620:
449
	case CHIP_RV635:
450
	case CHIP_RV670:
451
	case CHIP_RS780:
1221 serge 452
	case CHIP_RS880:
1233 serge 453
		rdev->asic = &r600_asic;
1221 serge 454
		break;
1117 serge 455
	case CHIP_RV770:
456
	case CHIP_RV730:
457
	case CHIP_RV710:
1221 serge 458
	case CHIP_RV740:
1233 serge 459
		rdev->asic = &rv770_asic;
1221 serge 460
		break;
1430 serge 461
	case CHIP_CEDAR:
462
	case CHIP_REDWOOD:
463
	case CHIP_JUNIPER:
464
	case CHIP_CYPRESS:
465
	case CHIP_HEMLOCK:
466
		rdev->asic = &evergreen_asic;
467
		break;
1117 serge 468
	default:
469
		/* FIXME: not supported yet */
470
		return -EINVAL;
471
	}
1404 serge 472
 
473
	if (rdev->flags & RADEON_IS_IGP) {
474
		rdev->asic->get_memory_clock = NULL;
475
		rdev->asic->set_memory_clock = NULL;
476
	}
477
 
1117 serge 478
	return 0;
479
}
480
 
481
 
482
/*
483
 * Wrapper around modesetting bits.
484
 */
485
int radeon_clocks_init(struct radeon_device *rdev)
486
{
487
	int r;
488
 
489
    r = radeon_static_clocks_init(rdev->ddev);
490
	if (r) {
491
		return r;
492
	}
493
	DRM_INFO("Clocks initialized !\n");
494
	return 0;
495
}
496
 
497
void radeon_clocks_fini(struct radeon_device *rdev)
498
{
499
}
500
 
501
/* ATOM accessor methods */
502
static uint32_t cail_pll_read(struct card_info *info, uint32_t reg)
503
{
504
    struct radeon_device *rdev = info->dev->dev_private;
505
    uint32_t r;
506
 
507
    r = rdev->pll_rreg(rdev, reg);
508
    return r;
509
}
510
 
511
static void cail_pll_write(struct card_info *info, uint32_t reg, uint32_t val)
512
{
513
    struct radeon_device *rdev = info->dev->dev_private;
514
 
515
    rdev->pll_wreg(rdev, reg, val);
516
}
517
 
518
static uint32_t cail_mc_read(struct card_info *info, uint32_t reg)
519
{
520
    struct radeon_device *rdev = info->dev->dev_private;
521
    uint32_t r;
522
 
523
    r = rdev->mc_rreg(rdev, reg);
524
    return r;
525
}
526
 
527
static void cail_mc_write(struct card_info *info, uint32_t reg, uint32_t val)
528
{
529
    struct radeon_device *rdev = info->dev->dev_private;
530
 
531
    rdev->mc_wreg(rdev, reg, val);
532
}
533
 
534
static void cail_reg_write(struct card_info *info, uint32_t reg, uint32_t val)
535
{
536
    struct radeon_device *rdev = info->dev->dev_private;
537
 
538
    WREG32(reg*4, val);
539
}
540
 
541
static uint32_t cail_reg_read(struct card_info *info, uint32_t reg)
542
{
543
    struct radeon_device *rdev = info->dev->dev_private;
544
    uint32_t r;
545
 
546
    r = RREG32(reg*4);
547
    return r;
548
}
549
 
550
int radeon_atombios_init(struct radeon_device *rdev)
551
{
1268 serge 552
	struct card_info *atom_card_info =
553
	    kzalloc(sizeof(struct card_info), GFP_KERNEL);
1117 serge 554
 
1268 serge 555
	if (!atom_card_info)
556
		return -ENOMEM;
557
 
558
	rdev->mode_info.atom_card_info = atom_card_info;
559
	atom_card_info->dev = rdev->ddev;
560
	atom_card_info->reg_read = cail_reg_read;
561
	atom_card_info->reg_write = cail_reg_write;
562
	atom_card_info->mc_read = cail_mc_read;
563
	atom_card_info->mc_write = cail_mc_write;
564
	atom_card_info->pll_read = cail_pll_read;
565
	atom_card_info->pll_write = cail_pll_write;
566
 
567
	rdev->mode_info.atom_context = atom_parse(atom_card_info, rdev->bios);
1630 serge 568
	mutex_init(&rdev->mode_info.atom_context->mutex);
1117 serge 569
    radeon_atom_initialize_bios_scratch_regs(rdev->ddev);
1321 serge 570
	atom_allocate_fb_scratch(rdev->mode_info.atom_context);
1117 serge 571
    return 0;
572
}
573
 
574
void radeon_atombios_fini(struct radeon_device *rdev)
575
{
1321 serge 576
	if (rdev->mode_info.atom_context) {
577
		kfree(rdev->mode_info.atom_context->scratch);
1119 serge 578
	kfree(rdev->mode_info.atom_context);
1321 serge 579
	}
1268 serge 580
	kfree(rdev->mode_info.atom_card_info);
1117 serge 581
}
582
 
583
int radeon_combios_init(struct radeon_device *rdev)
584
{
1128 serge 585
	radeon_combios_initialize_bios_scratch_regs(rdev->ddev);
1117 serge 586
	return 0;
587
}
588
 
589
void radeon_combios_fini(struct radeon_device *rdev)
590
{
591
}
592
 
1233 serge 593
/* if we get transitioned to only one device, tak VGA back */
594
static unsigned int radeon_vga_set_decode(void *cookie, bool state)
595
{
596
	struct radeon_device *rdev = cookie;
597
	radeon_vga_set_state(rdev, state);
598
	if (state)
599
		return VGA_RSRC_LEGACY_IO | VGA_RSRC_LEGACY_MEM |
600
		       VGA_RSRC_NORMAL_IO | VGA_RSRC_NORMAL_MEM;
601
	else
602
		return VGA_RSRC_NORMAL_IO | VGA_RSRC_NORMAL_MEM;
603
}
1117 serge 604
 
1221 serge 605
void radeon_agp_disable(struct radeon_device *rdev)
606
{
607
	rdev->flags &= ~RADEON_IS_AGP;
608
	if (rdev->family >= CHIP_R600) {
609
		DRM_INFO("Forcing AGP to PCIE mode\n");
610
		rdev->flags |= RADEON_IS_PCIE;
611
	} else if (rdev->family >= CHIP_RV515 ||
612
			rdev->family == CHIP_RV380 ||
613
			rdev->family == CHIP_RV410 ||
614
			rdev->family == CHIP_R423) {
615
		DRM_INFO("Forcing AGP to PCIE mode\n");
616
		rdev->flags |= RADEON_IS_PCIE;
617
		rdev->asic->gart_tlb_flush = &rv370_pcie_gart_tlb_flush;
618
		rdev->asic->gart_set_page = &rv370_pcie_gart_set_page;
619
	} else {
620
		DRM_INFO("Forcing AGP to PCI mode\n");
621
		rdev->flags |= RADEON_IS_PCI;
622
		rdev->asic->gart_tlb_flush = &r100_pci_gart_tlb_flush;
623
		rdev->asic->gart_set_page = &r100_pci_gart_set_page;
624
	}
1404 serge 625
	rdev->mc.gtt_size = radeon_gart_size * 1024 * 1024;
1221 serge 626
}
1179 serge 627
 
1404 serge 628
void radeon_check_arguments(struct radeon_device *rdev)
629
{
630
	/* vramlimit must be a power of two */
631
	switch (radeon_vram_limit) {
632
	case 0:
633
	case 4:
634
	case 8:
635
	case 16:
636
	case 32:
637
	case 64:
638
	case 128:
639
	case 256:
640
	case 512:
641
	case 1024:
642
	case 2048:
643
	case 4096:
644
		break;
645
	default:
646
		dev_warn(rdev->dev, "vram limit (%d) must be a power of 2\n",
647
				radeon_vram_limit);
648
		radeon_vram_limit = 0;
649
		break;
650
	}
651
	radeon_vram_limit = radeon_vram_limit << 20;
652
	/* gtt size must be power of two and greater or equal to 32M */
653
	switch (radeon_gart_size) {
654
	case 4:
655
	case 8:
656
	case 16:
657
		dev_warn(rdev->dev, "gart size (%d) too small forcing to 512M\n",
658
				radeon_gart_size);
659
		radeon_gart_size = 512;
660
		break;
661
	case 32:
662
	case 64:
663
	case 128:
664
	case 256:
665
	case 512:
666
	case 1024:
667
	case 2048:
668
	case 4096:
669
		break;
670
	default:
671
		dev_warn(rdev->dev, "gart size (%d) must be a power of 2\n",
672
				radeon_gart_size);
673
		radeon_gart_size = 512;
674
		break;
675
	}
676
	rdev->mc.gtt_size = radeon_gart_size * 1024 * 1024;
677
	/* AGP mode can only be -1, 1, 2, 4, 8 */
678
	switch (radeon_agpmode) {
679
	case -1:
680
	case 0:
681
	case 1:
682
	case 2:
683
	case 4:
684
	case 8:
685
		break;
686
	default:
687
		dev_warn(rdev->dev, "invalid AGP mode %d (valid mode: "
688
				"-1, 0, 1, 2, 4, 8)\n", radeon_agpmode);
689
		radeon_agpmode = 0;
690
		break;
691
	}
692
}
693
 
1117 serge 694
int radeon_device_init(struct radeon_device *rdev,
695
               struct drm_device *ddev,
696
               struct pci_dev *pdev,
697
               uint32_t flags)
698
{
1221 serge 699
	int r;
1179 serge 700
	int dma_bits;
1117 serge 701
 
702
    DRM_INFO("radeon: Initializing kernel modesetting.\n");
703
    rdev->shutdown = false;
704
    rdev->ddev = ddev;
705
    rdev->pdev = pdev;
706
    rdev->flags = flags;
707
    rdev->family = flags & RADEON_FAMILY_MASK;
708
    rdev->is_atom_bios = false;
709
    rdev->usec_timeout = RADEON_MAX_USEC_TIMEOUT;
710
    rdev->mc.gtt_size = radeon_gart_size * 1024 * 1024;
711
    rdev->gpu_lockup = false;
1221 serge 712
	rdev->accel_working = false;
1117 serge 713
    /* mutex initialization are all done here so we
714
     * can recall function without having locking issues */
1630 serge 715
    mutex_init(&rdev->cs_mutex);
716
    mutex_init(&rdev->ib_pool.mutex);
717
    mutex_init(&rdev->cp.mutex);
718
	mutex_init(&rdev->dc_hw_i2c_mutex);
719
	mutex_init(&rdev->gem.mutex);
720
	mutex_init(&rdev->pm.mutex);
1117 serge 721
 //   rwlock_init(&rdev->fence_drv.lock);
722
 
1179 serge 723
	/* Set asic functions */
724
	r = radeon_asic_init(rdev);
1404 serge 725
	if (r)
1179 serge 726
		return r;
1404 serge 727
	radeon_check_arguments(rdev);
1179 serge 728
 
1321 serge 729
	if (rdev->flags & RADEON_IS_AGP && radeon_agpmode == -1) {
1221 serge 730
		radeon_agp_disable(rdev);
1117 serge 731
    }
732
 
1179 serge 733
	/* set DMA mask + need_dma32 flags.
734
	 * PCIE - can handle 40-bits.
735
	 * IGP - can handle 40-bits (in theory)
736
	 * AGP - generally dma32 is safest
737
	 * PCI - only dma32
738
	 */
739
	rdev->need_dma32 = false;
740
	if (rdev->flags & RADEON_IS_AGP)
741
		rdev->need_dma32 = true;
742
	if (rdev->flags & RADEON_IS_PCI)
743
		rdev->need_dma32 = true;
1117 serge 744
 
1179 serge 745
	dma_bits = rdev->need_dma32 ? 32 : 40;
746
	r = pci_set_dma_mask(rdev->pdev, DMA_BIT_MASK(dma_bits));
1117 serge 747
    if (r) {
1119 serge 748
        printk(KERN_WARNING "radeon: No suitable DMA available.\n");
749
    }
1117 serge 750
 
751
    /* Registers mapping */
752
    /* TODO: block userspace mapping of io register */
753
    rdev->rmmio_base = pci_resource_start(rdev->pdev, 2);
754
 
755
    rdev->rmmio_size = pci_resource_len(rdev->pdev, 2);
756
 
757
    rdev->rmmio =  (void*)MapIoMem(rdev->rmmio_base, rdev->rmmio_size,
758
                                   PG_SW+PG_NOCACHE);
759
 
760
    if (rdev->rmmio == NULL) {
761
        return -ENOMEM;
762
    }
763
    DRM_INFO("register mmio base: 0x%08X\n", (uint32_t)rdev->rmmio_base);
764
    DRM_INFO("register mmio size: %u\n", (unsigned)rdev->rmmio_size);
765
 
1179 serge 766
	r = radeon_init(rdev);
1221 serge 767
	if (r)
1117 serge 768
            return r;
769
 
1221 serge 770
	if (rdev->flags & RADEON_IS_AGP && !rdev->accel_working) {
771
		/* Acceleration not working on AGP card try again
772
		 * with fallback to PCI or PCIE GART
773
		 */
774
		radeon_gpu_reset(rdev);
775
		radeon_fini(rdev);
776
		radeon_agp_disable(rdev);
777
		r = radeon_init(rdev);
778
		if (r)
1179 serge 779
		return r;
1126 serge 780
	}
1179 serge 781
//	if (radeon_testing) {
782
//		radeon_test_moves(rdev);
1125 serge 783
//    }
1179 serge 784
//	if (radeon_benchmarking) {
785
//		radeon_benchmark(rdev);
786
//    }
787
	return 0;
1117 serge 788
}
789
 
1179 serge 790
 
1117 serge 791
/*
792
 * Driver load/unload
793
 */
794
int radeon_driver_load_kms(struct drm_device *dev, unsigned long flags)
795
{
796
    struct radeon_device *rdev;
797
    int r;
798
 
1182 serge 799
    ENTER();
1117 serge 800
 
1120 serge 801
    rdev = kzalloc(sizeof(struct radeon_device), GFP_KERNEL);
1117 serge 802
    if (rdev == NULL) {
803
        return -ENOMEM;
804
    };
805
 
806
    dev->dev_private = (void *)rdev;
807
 
808
    /* update BUS flag */
1239 serge 809
    if (drm_device_is_agp(dev)) {
1117 serge 810
        flags |= RADEON_IS_AGP;
1239 serge 811
    } else if (drm_device_is_pcie(dev)) {
812
        flags |= RADEON_IS_PCIE;
813
    } else {
814
        flags |= RADEON_IS_PCI;
815
    }
1117 serge 816
 
1182 serge 817
    /* radeon_device_init should report only fatal error
818
     * like memory allocation failure or iomapping failure,
819
     * or memory manager initialization failure, it must
820
     * properly initialize the GPU MC controller and permit
821
     * VRAM allocation
822
     */
1117 serge 823
    r = radeon_device_init(rdev, dev, dev->pdev, flags);
824
    if (r) {
1182 serge 825
        DRM_ERROR("Fatal error while trying to initialize radeon.\n");
1117 serge 826
        return r;
827
    }
1182 serge 828
    /* Again modeset_init should fail only on fatal error
829
     * otherwise it should provide enough functionalities
830
     * for shadowfb to run
831
     */
1246 serge 832
    if( radeon_modeset )
833
    {
1268 serge 834
        r = radeon_modeset_init(rdev);
835
        if (r) {
836
            return r;
837
        }
1246 serge 838
    };
1117 serge 839
    return 0;
840
}
841
 
1404 serge 842
videomode_t usermode;
1230 serge 843
 
1239 serge 844
 
1117 serge 845
int drm_get_dev(struct pci_dev *pdev, const struct pci_device_id *ent)
846
{
1246 serge 847
    static struct drm_device *dev;
1117 serge 848
    int ret;
849
 
1221 serge 850
    ENTER();
1117 serge 851
 
1246 serge 852
    dev = kzalloc(sizeof(*dev), 0);
1117 serge 853
    if (!dev)
854
        return -ENOMEM;
855
 
856
 //   ret = pci_enable_device(pdev);
857
 //   if (ret)
858
 //       goto err_g1;
859
 
860
 //   pci_set_master(pdev);
861
 
862
 //   if ((ret = drm_fill_in_dev(dev, pdev, ent, driver))) {
863
 //       printk(KERN_ERR "DRM: Fill_in_dev failed.\n");
864
 //       goto err_g2;
865
 //   }
866
 
867
    dev->pdev = pdev;
868
    dev->pci_device = pdev->device;
869
    dev->pci_vendor = pdev->vendor;
870
 
1630 serge 871
    INIT_LIST_HEAD(&dev->filelist);
872
    INIT_LIST_HEAD(&dev->ctxlist);
873
    INIT_LIST_HEAD(&dev->vmalist);
874
    INIT_LIST_HEAD(&dev->maplist);
875
 
876
    spin_lock_init(&dev->count_lock);
877
    spin_lock_init(&dev->drw_lock);
878
    mutex_init(&dev->struct_mutex);
879
    mutex_init(&dev->ctxlist_mutex);
880
 
881
 
1221 serge 882
    ret = radeon_driver_load_kms(dev, ent->driver_data );
883
    if (ret)
1117 serge 884
        goto err_g4;
885
 
1246 serge 886
    if( radeon_modeset )
887
        init_display_kms(dev->dev_private, &usermode);
888
    else
1268 serge 889
        init_display(dev->dev_private, &usermode);
1126 serge 890
 
1221 serge 891
    LEAVE();
892
 
1117 serge 893
    return 0;
894
 
895
err_g4:
896
//    drm_put_minor(&dev->primary);
897
//err_g3:
898
//    if (drm_core_check_feature(dev, DRIVER_MODESET))
899
//        drm_put_minor(&dev->control);
900
//err_g2:
901
//    pci_disable_device(pdev);
902
//err_g1:
903
    free(dev);
904
 
1221 serge 905
    LEAVE();
906
 
1117 serge 907
    return ret;
908
}
909
 
910
resource_size_t drm_get_resource_start(struct drm_device *dev, unsigned int resource)
911
{
912
    return pci_resource_start(dev->pdev, resource);
913
}
914
 
915
resource_size_t drm_get_resource_len(struct drm_device *dev, unsigned int resource)
916
{
917
    return pci_resource_len(dev->pdev, resource);
918
}
919
 
1123 serge 920
 
921
uint32_t __div64_32(uint64_t *n, uint32_t base)
922
{
923
        uint64_t rem = *n;
924
        uint64_t b = base;
925
        uint64_t res, d = 1;
926
        uint32_t high = rem >> 32;
927
 
928
        /* Reduce the thing a bit first */
929
        res = 0;
930
        if (high >= base) {
931
                high /= base;
932
                res = (uint64_t) high << 32;
933
                rem -= (uint64_t) (high*base) << 32;
934
        }
935
 
936
        while ((int64_t)b > 0 && b < rem) {
937
                b = b+b;
938
                d = d+d;
939
        }
940
 
941
        do {
942
                if (rem >= b) {
943
                        rem -= b;
944
                        res += d;
945
                }
946
                b >>= 1;
947
                d >>= 1;
948
        } while (d);
949
 
950
        *n = res;
951
        return rem;
952
}
953
 
1239 serge 954
 
955
static struct pci_device_id pciidlist[] = {
956
    radeon_PCI_IDS
957
};
958
 
959
 
960
#define API_VERSION     0x01000100
961
 
962
#define SRV_GETVERSION  0
963
#define SRV_ENUM_MODES  1
964
#define SRV_SET_MODE    2
965
 
966
int _stdcall display_handler(ioctl_t *io)
967
{
968
    int    retval = -1;
969
    u32_t *inp;
970
    u32_t *outp;
971
 
972
    inp = io->input;
973
    outp = io->output;
974
 
975
    switch(io->io_code)
976
    {
977
        case SRV_GETVERSION:
978
            if(io->out_size==4)
979
            {
980
                *outp  = API_VERSION;
981
                retval = 0;
982
            }
983
            break;
984
 
985
        case SRV_ENUM_MODES:
986
            dbgprintf("SRV_ENUM_MODES inp %x inp_size %x out_size %x\n",
987
                       inp, io->inp_size, io->out_size );
988
 
1246 serge 989
            if( radeon_modeset &&
990
                (outp != NULL) && (io->out_size == 4) &&
1404 serge 991
                (io->inp_size == *outp * sizeof(videomode_t)) )
1268 serge 992
            {
1404 serge 993
                retval = get_modes((videomode_t*)inp, outp);
1239 serge 994
            };
995
            break;
996
 
997
        case SRV_SET_MODE:
1246 serge 998
            dbgprintf("SRV_SET_MODE inp %x inp_size %x\n",
999
                       inp, io->inp_size);
1000
 
1001
            if(  radeon_modeset   &&
1002
                (inp != NULL) &&
1404 serge 1003
                (io->inp_size == sizeof(videomode_t)) )
1239 serge 1004
            {
1404 serge 1005
                retval = set_user_mode((videomode_t*)inp);
1239 serge 1006
            };
1007
            break;
1008
    };
1009
 
1010
    return retval;
1011
}
1012
 
1246 serge 1013
static char  log[256];
1404 serge 1014
static pci_dev_t device;
1246 serge 1015
 
1877 clevermous 1016
u32_t
1017
#if defined(__GNUC__) && __GNUC__ >= 4
1018
// has sense only if -fwhole-program is used, like Makefile.lto
1019
__attribute__((externally_visible))
1020
#endif
1021
drvEntry(int action, char *cmdline)
1239 serge 1022
{
1428 serge 1023
    struct radeon_device *rdev = NULL;
1024
 
1239 serge 1025
    struct pci_device_id  *ent;
1026
 
1027
    int     err;
1028
    u32_t   retval = 0;
1029
 
1030
    if(action != 1)
1031
        return 0;
1032
 
1033
    if( GetService("DISPLAY") != 0 )
1034
        return 0;
1035
 
1036
    if( cmdline && *cmdline )
1268 serge 1037
        parse_cmdline(cmdline, &usermode, log, &radeon_modeset);
1239 serge 1038
 
1039
    if(!dbg_open(log))
1040
    {
1041
        strcpy(log, "/rd/1/drivers/atikms.log");
1042
 
1043
        if(!dbg_open(log))
1044
        {
1045
            printf("Can't open %s\nExit\n", log);
1046
            return 0;
1047
        };
1048
    }
1430 serge 1049
    dbgprintf("Radeon RC10 cmdline %s\n", cmdline);
1239 serge 1050
 
1051
    enum_pci_devices();
1052
    ent = find_pci_device(&device, pciidlist);
1053
 
1054
    if( unlikely(ent == NULL) )
1055
    {
1056
        dbgprintf("device not found\n");
1057
        return 0;
1058
    };
1059
 
1060
    dbgprintf("device %x:%x\n", device.pci_dev.vendor,
1061
                                device.pci_dev.device);
1062
 
1063
    err = drm_get_dev(&device.pci_dev, ent);
1064
 
1428 serge 1065
    rdev = rdisplay->ddev->dev_private;
1066
 
1067
    if( (rdev->asic == &r600_asic) ||
1068
        (rdev->asic == &rv770_asic))
1069
        r600_2D_test(rdev);
1430 serge 1070
    else if (rdev->asic != &evergreen_asic)
1428 serge 1071
        r100_2D_test(rdev);
1072
 
1246 serge 1073
    err = RegService("DISPLAY", display_handler);
1239 serge 1074
 
1246 serge 1075
    if( err != 0)
1076
        dbgprintf("Set DISPLAY handler\n");
1077
 
1078
    return err;
1239 serge 1079
};
1430 serge 1080
 
1081
void drm_vblank_post_modeset(struct drm_device *dev, int crtc)
1082
{};
1083
 
1084
void drm_vblank_pre_modeset(struct drm_device *dev, int crtc)
1085
{};
1086