ARM: at91: PIT: Move the driver to drivers/clocksource
[cascardo/linux.git] / drivers / gpu / drm / radeon / r600.c
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 <linux/slab.h>
29 #include <linux/seq_file.h>
30 #include <linux/firmware.h>
31 #include <linux/module.h>
32 #include <drm/drmP.h>
33 #include <drm/radeon_drm.h>
34 #include "radeon.h"
35 #include "radeon_asic.h"
36 #include "radeon_mode.h"
37 #include "r600d.h"
38 #include "atom.h"
39 #include "avivod.h"
40 #include "radeon_ucode.h"
41
42 /* Firmware Names */
43 MODULE_FIRMWARE("radeon/R600_pfp.bin");
44 MODULE_FIRMWARE("radeon/R600_me.bin");
45 MODULE_FIRMWARE("radeon/RV610_pfp.bin");
46 MODULE_FIRMWARE("radeon/RV610_me.bin");
47 MODULE_FIRMWARE("radeon/RV630_pfp.bin");
48 MODULE_FIRMWARE("radeon/RV630_me.bin");
49 MODULE_FIRMWARE("radeon/RV620_pfp.bin");
50 MODULE_FIRMWARE("radeon/RV620_me.bin");
51 MODULE_FIRMWARE("radeon/RV635_pfp.bin");
52 MODULE_FIRMWARE("radeon/RV635_me.bin");
53 MODULE_FIRMWARE("radeon/RV670_pfp.bin");
54 MODULE_FIRMWARE("radeon/RV670_me.bin");
55 MODULE_FIRMWARE("radeon/RS780_pfp.bin");
56 MODULE_FIRMWARE("radeon/RS780_me.bin");
57 MODULE_FIRMWARE("radeon/RV770_pfp.bin");
58 MODULE_FIRMWARE("radeon/RV770_me.bin");
59 MODULE_FIRMWARE("radeon/RV770_smc.bin");
60 MODULE_FIRMWARE("radeon/RV730_pfp.bin");
61 MODULE_FIRMWARE("radeon/RV730_me.bin");
62 MODULE_FIRMWARE("radeon/RV730_smc.bin");
63 MODULE_FIRMWARE("radeon/RV740_smc.bin");
64 MODULE_FIRMWARE("radeon/RV710_pfp.bin");
65 MODULE_FIRMWARE("radeon/RV710_me.bin");
66 MODULE_FIRMWARE("radeon/RV710_smc.bin");
67 MODULE_FIRMWARE("radeon/R600_rlc.bin");
68 MODULE_FIRMWARE("radeon/R700_rlc.bin");
69 MODULE_FIRMWARE("radeon/CEDAR_pfp.bin");
70 MODULE_FIRMWARE("radeon/CEDAR_me.bin");
71 MODULE_FIRMWARE("radeon/CEDAR_rlc.bin");
72 MODULE_FIRMWARE("radeon/CEDAR_smc.bin");
73 MODULE_FIRMWARE("radeon/REDWOOD_pfp.bin");
74 MODULE_FIRMWARE("radeon/REDWOOD_me.bin");
75 MODULE_FIRMWARE("radeon/REDWOOD_rlc.bin");
76 MODULE_FIRMWARE("radeon/REDWOOD_smc.bin");
77 MODULE_FIRMWARE("radeon/JUNIPER_pfp.bin");
78 MODULE_FIRMWARE("radeon/JUNIPER_me.bin");
79 MODULE_FIRMWARE("radeon/JUNIPER_rlc.bin");
80 MODULE_FIRMWARE("radeon/JUNIPER_smc.bin");
81 MODULE_FIRMWARE("radeon/CYPRESS_pfp.bin");
82 MODULE_FIRMWARE("radeon/CYPRESS_me.bin");
83 MODULE_FIRMWARE("radeon/CYPRESS_rlc.bin");
84 MODULE_FIRMWARE("radeon/CYPRESS_smc.bin");
85 MODULE_FIRMWARE("radeon/PALM_pfp.bin");
86 MODULE_FIRMWARE("radeon/PALM_me.bin");
87 MODULE_FIRMWARE("radeon/SUMO_rlc.bin");
88 MODULE_FIRMWARE("radeon/SUMO_pfp.bin");
89 MODULE_FIRMWARE("radeon/SUMO_me.bin");
90 MODULE_FIRMWARE("radeon/SUMO2_pfp.bin");
91 MODULE_FIRMWARE("radeon/SUMO2_me.bin");
92
93 static const u32 crtc_offsets[2] =
94 {
95         0,
96         AVIVO_D2CRTC_H_TOTAL - AVIVO_D1CRTC_H_TOTAL
97 };
98
99 int r600_debugfs_mc_info_init(struct radeon_device *rdev);
100
101 /* r600,rv610,rv630,rv620,rv635,rv670 */
102 int r600_mc_wait_for_idle(struct radeon_device *rdev);
103 static void r600_gpu_init(struct radeon_device *rdev);
104 void r600_fini(struct radeon_device *rdev);
105 void r600_irq_disable(struct radeon_device *rdev);
106 static void r600_pcie_gen2_enable(struct radeon_device *rdev);
107 extern int evergreen_rlc_resume(struct radeon_device *rdev);
108 extern void rv770_set_clk_bypass_mode(struct radeon_device *rdev);
109
110 /**
111  * r600_get_xclk - get the xclk
112  *
113  * @rdev: radeon_device pointer
114  *
115  * Returns the reference clock used by the gfx engine
116  * (r6xx, IGPs, APUs).
117  */
118 u32 r600_get_xclk(struct radeon_device *rdev)
119 {
120         return rdev->clock.spll.reference_freq;
121 }
122
123 int r600_set_uvd_clocks(struct radeon_device *rdev, u32 vclk, u32 dclk)
124 {
125         return 0;
126 }
127
128 void dce3_program_fmt(struct drm_encoder *encoder)
129 {
130         struct drm_device *dev = encoder->dev;
131         struct radeon_device *rdev = dev->dev_private;
132         struct radeon_encoder *radeon_encoder = to_radeon_encoder(encoder);
133         struct radeon_crtc *radeon_crtc = to_radeon_crtc(encoder->crtc);
134         struct drm_connector *connector = radeon_get_connector_for_encoder(encoder);
135         int bpc = 0;
136         u32 tmp = 0;
137         enum radeon_connector_dither dither = RADEON_FMT_DITHER_DISABLE;
138
139         if (connector) {
140                 struct radeon_connector *radeon_connector = to_radeon_connector(connector);
141                 bpc = radeon_get_monitor_bpc(connector);
142                 dither = radeon_connector->dither;
143         }
144
145         /* LVDS FMT is set up by atom */
146         if (radeon_encoder->devices & ATOM_DEVICE_LCD_SUPPORT)
147                 return;
148
149         /* not needed for analog */
150         if ((radeon_encoder->encoder_id == ENCODER_OBJECT_ID_INTERNAL_KLDSCP_DAC1) ||
151             (radeon_encoder->encoder_id == ENCODER_OBJECT_ID_INTERNAL_KLDSCP_DAC2))
152                 return;
153
154         if (bpc == 0)
155                 return;
156
157         switch (bpc) {
158         case 6:
159                 if (dither == RADEON_FMT_DITHER_ENABLE)
160                         /* XXX sort out optimal dither settings */
161                         tmp |= FMT_SPATIAL_DITHER_EN;
162                 else
163                         tmp |= FMT_TRUNCATE_EN;
164                 break;
165         case 8:
166                 if (dither == RADEON_FMT_DITHER_ENABLE)
167                         /* XXX sort out optimal dither settings */
168                         tmp |= (FMT_SPATIAL_DITHER_EN | FMT_SPATIAL_DITHER_DEPTH);
169                 else
170                         tmp |= (FMT_TRUNCATE_EN | FMT_TRUNCATE_DEPTH);
171                 break;
172         case 10:
173         default:
174                 /* not needed */
175                 break;
176         }
177
178         WREG32(FMT_BIT_DEPTH_CONTROL + radeon_crtc->crtc_offset, tmp);
179 }
180
181 /* get temperature in millidegrees */
182 int rv6xx_get_temp(struct radeon_device *rdev)
183 {
184         u32 temp = (RREG32(CG_THERMAL_STATUS) & ASIC_T_MASK) >>
185                 ASIC_T_SHIFT;
186         int actual_temp = temp & 0xff;
187
188         if (temp & 0x100)
189                 actual_temp -= 256;
190
191         return actual_temp * 1000;
192 }
193
194 void r600_pm_get_dynpm_state(struct radeon_device *rdev)
195 {
196         int i;
197
198         rdev->pm.dynpm_can_upclock = true;
199         rdev->pm.dynpm_can_downclock = true;
200
201         /* power state array is low to high, default is first */
202         if ((rdev->flags & RADEON_IS_IGP) || (rdev->family == CHIP_R600)) {
203                 int min_power_state_index = 0;
204
205                 if (rdev->pm.num_power_states > 2)
206                         min_power_state_index = 1;
207
208                 switch (rdev->pm.dynpm_planned_action) {
209                 case DYNPM_ACTION_MINIMUM:
210                         rdev->pm.requested_power_state_index = min_power_state_index;
211                         rdev->pm.requested_clock_mode_index = 0;
212                         rdev->pm.dynpm_can_downclock = false;
213                         break;
214                 case DYNPM_ACTION_DOWNCLOCK:
215                         if (rdev->pm.current_power_state_index == min_power_state_index) {
216                                 rdev->pm.requested_power_state_index = rdev->pm.current_power_state_index;
217                                 rdev->pm.dynpm_can_downclock = false;
218                         } else {
219                                 if (rdev->pm.active_crtc_count > 1) {
220                                         for (i = 0; i < rdev->pm.num_power_states; i++) {
221                                                 if (rdev->pm.power_state[i].flags & RADEON_PM_STATE_SINGLE_DISPLAY_ONLY)
222                                                         continue;
223                                                 else if (i >= rdev->pm.current_power_state_index) {
224                                                         rdev->pm.requested_power_state_index =
225                                                                 rdev->pm.current_power_state_index;
226                                                         break;
227                                                 } else {
228                                                         rdev->pm.requested_power_state_index = i;
229                                                         break;
230                                                 }
231                                         }
232                                 } else {
233                                         if (rdev->pm.current_power_state_index == 0)
234                                                 rdev->pm.requested_power_state_index =
235                                                         rdev->pm.num_power_states - 1;
236                                         else
237                                                 rdev->pm.requested_power_state_index =
238                                                         rdev->pm.current_power_state_index - 1;
239                                 }
240                         }
241                         rdev->pm.requested_clock_mode_index = 0;
242                         /* don't use the power state if crtcs are active and no display flag is set */
243                         if ((rdev->pm.active_crtc_count > 0) &&
244                             (rdev->pm.power_state[rdev->pm.requested_power_state_index].
245                              clock_info[rdev->pm.requested_clock_mode_index].flags &
246                              RADEON_PM_MODE_NO_DISPLAY)) {
247                                 rdev->pm.requested_power_state_index++;
248                         }
249                         break;
250                 case DYNPM_ACTION_UPCLOCK:
251                         if (rdev->pm.current_power_state_index == (rdev->pm.num_power_states - 1)) {
252                                 rdev->pm.requested_power_state_index = rdev->pm.current_power_state_index;
253                                 rdev->pm.dynpm_can_upclock = false;
254                         } else {
255                                 if (rdev->pm.active_crtc_count > 1) {
256                                         for (i = (rdev->pm.num_power_states - 1); i >= 0; i--) {
257                                                 if (rdev->pm.power_state[i].flags & RADEON_PM_STATE_SINGLE_DISPLAY_ONLY)
258                                                         continue;
259                                                 else if (i <= rdev->pm.current_power_state_index) {
260                                                         rdev->pm.requested_power_state_index =
261                                                                 rdev->pm.current_power_state_index;
262                                                         break;
263                                                 } else {
264                                                         rdev->pm.requested_power_state_index = i;
265                                                         break;
266                                                 }
267                                         }
268                                 } else
269                                         rdev->pm.requested_power_state_index =
270                                                 rdev->pm.current_power_state_index + 1;
271                         }
272                         rdev->pm.requested_clock_mode_index = 0;
273                         break;
274                 case DYNPM_ACTION_DEFAULT:
275                         rdev->pm.requested_power_state_index = rdev->pm.default_power_state_index;
276                         rdev->pm.requested_clock_mode_index = 0;
277                         rdev->pm.dynpm_can_upclock = false;
278                         break;
279                 case DYNPM_ACTION_NONE:
280                 default:
281                         DRM_ERROR("Requested mode for not defined action\n");
282                         return;
283                 }
284         } else {
285                 /* XXX select a power state based on AC/DC, single/dualhead, etc. */
286                 /* for now just select the first power state and switch between clock modes */
287                 /* power state array is low to high, default is first (0) */
288                 if (rdev->pm.active_crtc_count > 1) {
289                         rdev->pm.requested_power_state_index = -1;
290                         /* start at 1 as we don't want the default mode */
291                         for (i = 1; i < rdev->pm.num_power_states; i++) {
292                                 if (rdev->pm.power_state[i].flags & RADEON_PM_STATE_SINGLE_DISPLAY_ONLY)
293                                         continue;
294                                 else if ((rdev->pm.power_state[i].type == POWER_STATE_TYPE_PERFORMANCE) ||
295                                          (rdev->pm.power_state[i].type == POWER_STATE_TYPE_BATTERY)) {
296                                         rdev->pm.requested_power_state_index = i;
297                                         break;
298                                 }
299                         }
300                         /* if nothing selected, grab the default state. */
301                         if (rdev->pm.requested_power_state_index == -1)
302                                 rdev->pm.requested_power_state_index = 0;
303                 } else
304                         rdev->pm.requested_power_state_index = 1;
305
306                 switch (rdev->pm.dynpm_planned_action) {
307                 case DYNPM_ACTION_MINIMUM:
308                         rdev->pm.requested_clock_mode_index = 0;
309                         rdev->pm.dynpm_can_downclock = false;
310                         break;
311                 case DYNPM_ACTION_DOWNCLOCK:
312                         if (rdev->pm.requested_power_state_index == rdev->pm.current_power_state_index) {
313                                 if (rdev->pm.current_clock_mode_index == 0) {
314                                         rdev->pm.requested_clock_mode_index = 0;
315                                         rdev->pm.dynpm_can_downclock = false;
316                                 } else
317                                         rdev->pm.requested_clock_mode_index =
318                                                 rdev->pm.current_clock_mode_index - 1;
319                         } else {
320                                 rdev->pm.requested_clock_mode_index = 0;
321                                 rdev->pm.dynpm_can_downclock = false;
322                         }
323                         /* don't use the power state if crtcs are active and no display flag is set */
324                         if ((rdev->pm.active_crtc_count > 0) &&
325                             (rdev->pm.power_state[rdev->pm.requested_power_state_index].
326                              clock_info[rdev->pm.requested_clock_mode_index].flags &
327                              RADEON_PM_MODE_NO_DISPLAY)) {
328                                 rdev->pm.requested_clock_mode_index++;
329                         }
330                         break;
331                 case DYNPM_ACTION_UPCLOCK:
332                         if (rdev->pm.requested_power_state_index == rdev->pm.current_power_state_index) {
333                                 if (rdev->pm.current_clock_mode_index ==
334                                     (rdev->pm.power_state[rdev->pm.requested_power_state_index].num_clock_modes - 1)) {
335                                         rdev->pm.requested_clock_mode_index = rdev->pm.current_clock_mode_index;
336                                         rdev->pm.dynpm_can_upclock = false;
337                                 } else
338                                         rdev->pm.requested_clock_mode_index =
339                                                 rdev->pm.current_clock_mode_index + 1;
340                         } else {
341                                 rdev->pm.requested_clock_mode_index =
342                                         rdev->pm.power_state[rdev->pm.requested_power_state_index].num_clock_modes - 1;
343                                 rdev->pm.dynpm_can_upclock = false;
344                         }
345                         break;
346                 case DYNPM_ACTION_DEFAULT:
347                         rdev->pm.requested_power_state_index = rdev->pm.default_power_state_index;
348                         rdev->pm.requested_clock_mode_index = 0;
349                         rdev->pm.dynpm_can_upclock = false;
350                         break;
351                 case DYNPM_ACTION_NONE:
352                 default:
353                         DRM_ERROR("Requested mode for not defined action\n");
354                         return;
355                 }
356         }
357
358         DRM_DEBUG_DRIVER("Requested: e: %d m: %d p: %d\n",
359                   rdev->pm.power_state[rdev->pm.requested_power_state_index].
360                   clock_info[rdev->pm.requested_clock_mode_index].sclk,
361                   rdev->pm.power_state[rdev->pm.requested_power_state_index].
362                   clock_info[rdev->pm.requested_clock_mode_index].mclk,
363                   rdev->pm.power_state[rdev->pm.requested_power_state_index].
364                   pcie_lanes);
365 }
366
367 void rs780_pm_init_profile(struct radeon_device *rdev)
368 {
369         if (rdev->pm.num_power_states == 2) {
370                 /* default */
371                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_off_ps_idx = rdev->pm.default_power_state_index;
372                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_on_ps_idx = rdev->pm.default_power_state_index;
373                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_off_cm_idx = 0;
374                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_on_cm_idx = 0;
375                 /* low sh */
376                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_off_ps_idx = 0;
377                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_on_ps_idx = 0;
378                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_off_cm_idx = 0;
379                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_on_cm_idx = 0;
380                 /* mid sh */
381                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_off_ps_idx = 0;
382                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_on_ps_idx = 0;
383                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_off_cm_idx = 0;
384                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_on_cm_idx = 0;
385                 /* high sh */
386                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_off_ps_idx = 0;
387                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_on_ps_idx = 1;
388                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_off_cm_idx = 0;
389                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_on_cm_idx = 0;
390                 /* low mh */
391                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_off_ps_idx = 0;
392                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_on_ps_idx = 0;
393                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_off_cm_idx = 0;
394                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_on_cm_idx = 0;
395                 /* mid mh */
396                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_off_ps_idx = 0;
397                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_on_ps_idx = 0;
398                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_off_cm_idx = 0;
399                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_on_cm_idx = 0;
400                 /* high mh */
401                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_off_ps_idx = 0;
402                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_on_ps_idx = 1;
403                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_off_cm_idx = 0;
404                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_on_cm_idx = 0;
405         } else if (rdev->pm.num_power_states == 3) {
406                 /* default */
407                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_off_ps_idx = rdev->pm.default_power_state_index;
408                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_on_ps_idx = rdev->pm.default_power_state_index;
409                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_off_cm_idx = 0;
410                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_on_cm_idx = 0;
411                 /* low sh */
412                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_off_ps_idx = 1;
413                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_on_ps_idx = 1;
414                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_off_cm_idx = 0;
415                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_on_cm_idx = 0;
416                 /* mid sh */
417                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_off_ps_idx = 1;
418                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_on_ps_idx = 1;
419                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_off_cm_idx = 0;
420                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_on_cm_idx = 0;
421                 /* high sh */
422                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_off_ps_idx = 1;
423                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_on_ps_idx = 2;
424                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_off_cm_idx = 0;
425                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_on_cm_idx = 0;
426                 /* low mh */
427                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_off_ps_idx = 1;
428                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_on_ps_idx = 1;
429                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_off_cm_idx = 0;
430                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_on_cm_idx = 0;
431                 /* mid mh */
432                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_off_ps_idx = 1;
433                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_on_ps_idx = 1;
434                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_off_cm_idx = 0;
435                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_on_cm_idx = 0;
436                 /* high mh */
437                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_off_ps_idx = 1;
438                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_on_ps_idx = 2;
439                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_off_cm_idx = 0;
440                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_on_cm_idx = 0;
441         } else {
442                 /* default */
443                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_off_ps_idx = rdev->pm.default_power_state_index;
444                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_on_ps_idx = rdev->pm.default_power_state_index;
445                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_off_cm_idx = 0;
446                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_on_cm_idx = 0;
447                 /* low sh */
448                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_off_ps_idx = 2;
449                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_on_ps_idx = 2;
450                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_off_cm_idx = 0;
451                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_on_cm_idx = 0;
452                 /* mid sh */
453                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_off_ps_idx = 2;
454                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_on_ps_idx = 2;
455                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_off_cm_idx = 0;
456                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_on_cm_idx = 0;
457                 /* high sh */
458                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_off_ps_idx = 2;
459                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_on_ps_idx = 3;
460                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_off_cm_idx = 0;
461                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_on_cm_idx = 0;
462                 /* low mh */
463                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_off_ps_idx = 2;
464                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_on_ps_idx = 0;
465                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_off_cm_idx = 0;
466                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_on_cm_idx = 0;
467                 /* mid mh */
468                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_off_ps_idx = 2;
469                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_on_ps_idx = 0;
470                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_off_cm_idx = 0;
471                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_on_cm_idx = 0;
472                 /* high mh */
473                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_off_ps_idx = 2;
474                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_on_ps_idx = 3;
475                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_off_cm_idx = 0;
476                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_on_cm_idx = 0;
477         }
478 }
479
480 void r600_pm_init_profile(struct radeon_device *rdev)
481 {
482         int idx;
483
484         if (rdev->family == CHIP_R600) {
485                 /* XXX */
486                 /* default */
487                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_off_ps_idx = rdev->pm.default_power_state_index;
488                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_on_ps_idx = rdev->pm.default_power_state_index;
489                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_off_cm_idx = 0;
490                 rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_on_cm_idx = 0;
491                 /* low sh */
492                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_off_ps_idx = rdev->pm.default_power_state_index;
493                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_on_ps_idx = rdev->pm.default_power_state_index;
494                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_off_cm_idx = 0;
495                 rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_on_cm_idx = 0;
496                 /* mid sh */
497                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_off_ps_idx = rdev->pm.default_power_state_index;
498                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_on_ps_idx = rdev->pm.default_power_state_index;
499                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_off_cm_idx = 0;
500                 rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_on_cm_idx = 0;
501                 /* high sh */
502                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_off_ps_idx = rdev->pm.default_power_state_index;
503                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_on_ps_idx = rdev->pm.default_power_state_index;
504                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_off_cm_idx = 0;
505                 rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_on_cm_idx = 0;
506                 /* low mh */
507                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_off_ps_idx = rdev->pm.default_power_state_index;
508                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_on_ps_idx = rdev->pm.default_power_state_index;
509                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_off_cm_idx = 0;
510                 rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_on_cm_idx = 0;
511                 /* mid mh */
512                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_off_ps_idx = rdev->pm.default_power_state_index;
513                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_on_ps_idx = rdev->pm.default_power_state_index;
514                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_off_cm_idx = 0;
515                 rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_on_cm_idx = 0;
516                 /* high mh */
517                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_off_ps_idx = rdev->pm.default_power_state_index;
518                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_on_ps_idx = rdev->pm.default_power_state_index;
519                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_off_cm_idx = 0;
520                 rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_on_cm_idx = 0;
521         } else {
522                 if (rdev->pm.num_power_states < 4) {
523                         /* default */
524                         rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_off_ps_idx = rdev->pm.default_power_state_index;
525                         rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_on_ps_idx = rdev->pm.default_power_state_index;
526                         rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_off_cm_idx = 0;
527                         rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_on_cm_idx = 2;
528                         /* low sh */
529                         rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_off_ps_idx = 1;
530                         rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_on_ps_idx = 1;
531                         rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_off_cm_idx = 0;
532                         rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_on_cm_idx = 0;
533                         /* mid sh */
534                         rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_off_ps_idx = 1;
535                         rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_on_ps_idx = 1;
536                         rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_off_cm_idx = 0;
537                         rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_on_cm_idx = 1;
538                         /* high sh */
539                         rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_off_ps_idx = 1;
540                         rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_on_ps_idx = 1;
541                         rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_off_cm_idx = 0;
542                         rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_on_cm_idx = 2;
543                         /* low mh */
544                         rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_off_ps_idx = 2;
545                         rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_on_ps_idx = 2;
546                         rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_off_cm_idx = 0;
547                         rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_on_cm_idx = 0;
548                         /* low mh */
549                         rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_off_ps_idx = 2;
550                         rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_on_ps_idx = 2;
551                         rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_off_cm_idx = 0;
552                         rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_on_cm_idx = 1;
553                         /* high mh */
554                         rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_off_ps_idx = 2;
555                         rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_on_ps_idx = 2;
556                         rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_off_cm_idx = 0;
557                         rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_on_cm_idx = 2;
558                 } else {
559                         /* default */
560                         rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_off_ps_idx = rdev->pm.default_power_state_index;
561                         rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_on_ps_idx = rdev->pm.default_power_state_index;
562                         rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_off_cm_idx = 0;
563                         rdev->pm.profiles[PM_PROFILE_DEFAULT_IDX].dpms_on_cm_idx = 2;
564                         /* low sh */
565                         if (rdev->flags & RADEON_IS_MOBILITY)
566                                 idx = radeon_pm_get_type_index(rdev, POWER_STATE_TYPE_BATTERY, 0);
567                         else
568                                 idx = radeon_pm_get_type_index(rdev, POWER_STATE_TYPE_PERFORMANCE, 0);
569                         rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_off_ps_idx = idx;
570                         rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_on_ps_idx = idx;
571                         rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_off_cm_idx = 0;
572                         rdev->pm.profiles[PM_PROFILE_LOW_SH_IDX].dpms_on_cm_idx = 0;
573                         /* mid sh */
574                         rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_off_ps_idx = idx;
575                         rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_on_ps_idx = idx;
576                         rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_off_cm_idx = 0;
577                         rdev->pm.profiles[PM_PROFILE_MID_SH_IDX].dpms_on_cm_idx = 1;
578                         /* high sh */
579                         idx = radeon_pm_get_type_index(rdev, POWER_STATE_TYPE_PERFORMANCE, 0);
580                         rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_off_ps_idx = idx;
581                         rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_on_ps_idx = idx;
582                         rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_off_cm_idx = 0;
583                         rdev->pm.profiles[PM_PROFILE_HIGH_SH_IDX].dpms_on_cm_idx = 2;
584                         /* low mh */
585                         if (rdev->flags & RADEON_IS_MOBILITY)
586                                 idx = radeon_pm_get_type_index(rdev, POWER_STATE_TYPE_BATTERY, 1);
587                         else
588                                 idx = radeon_pm_get_type_index(rdev, POWER_STATE_TYPE_PERFORMANCE, 1);
589                         rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_off_ps_idx = idx;
590                         rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_on_ps_idx = idx;
591                         rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_off_cm_idx = 0;
592                         rdev->pm.profiles[PM_PROFILE_LOW_MH_IDX].dpms_on_cm_idx = 0;
593                         /* mid mh */
594                         rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_off_ps_idx = idx;
595                         rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_on_ps_idx = idx;
596                         rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_off_cm_idx = 0;
597                         rdev->pm.profiles[PM_PROFILE_MID_MH_IDX].dpms_on_cm_idx = 1;
598                         /* high mh */
599                         idx = radeon_pm_get_type_index(rdev, POWER_STATE_TYPE_PERFORMANCE, 1);
600                         rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_off_ps_idx = idx;
601                         rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_on_ps_idx = idx;
602                         rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_off_cm_idx = 0;
603                         rdev->pm.profiles[PM_PROFILE_HIGH_MH_IDX].dpms_on_cm_idx = 2;
604                 }
605         }
606 }
607
608 void r600_pm_misc(struct radeon_device *rdev)
609 {
610         int req_ps_idx = rdev->pm.requested_power_state_index;
611         int req_cm_idx = rdev->pm.requested_clock_mode_index;
612         struct radeon_power_state *ps = &rdev->pm.power_state[req_ps_idx];
613         struct radeon_voltage *voltage = &ps->clock_info[req_cm_idx].voltage;
614
615         if ((voltage->type == VOLTAGE_SW) && voltage->voltage) {
616                 /* 0xff01 is a flag rather then an actual voltage */
617                 if (voltage->voltage == 0xff01)
618                         return;
619                 if (voltage->voltage != rdev->pm.current_vddc) {
620                         radeon_atom_set_voltage(rdev, voltage->voltage, SET_VOLTAGE_TYPE_ASIC_VDDC);
621                         rdev->pm.current_vddc = voltage->voltage;
622                         DRM_DEBUG_DRIVER("Setting: v: %d\n", voltage->voltage);
623                 }
624         }
625 }
626
627 bool r600_gui_idle(struct radeon_device *rdev)
628 {
629         if (RREG32(GRBM_STATUS) & GUI_ACTIVE)
630                 return false;
631         else
632                 return true;
633 }
634
635 /* hpd for digital panel detect/disconnect */
636 bool r600_hpd_sense(struct radeon_device *rdev, enum radeon_hpd_id hpd)
637 {
638         bool connected = false;
639
640         if (ASIC_IS_DCE3(rdev)) {
641                 switch (hpd) {
642                 case RADEON_HPD_1:
643                         if (RREG32(DC_HPD1_INT_STATUS) & DC_HPDx_SENSE)
644                                 connected = true;
645                         break;
646                 case RADEON_HPD_2:
647                         if (RREG32(DC_HPD2_INT_STATUS) & DC_HPDx_SENSE)
648                                 connected = true;
649                         break;
650                 case RADEON_HPD_3:
651                         if (RREG32(DC_HPD3_INT_STATUS) & DC_HPDx_SENSE)
652                                 connected = true;
653                         break;
654                 case RADEON_HPD_4:
655                         if (RREG32(DC_HPD4_INT_STATUS) & DC_HPDx_SENSE)
656                                 connected = true;
657                         break;
658                         /* DCE 3.2 */
659                 case RADEON_HPD_5:
660                         if (RREG32(DC_HPD5_INT_STATUS) & DC_HPDx_SENSE)
661                                 connected = true;
662                         break;
663                 case RADEON_HPD_6:
664                         if (RREG32(DC_HPD6_INT_STATUS) & DC_HPDx_SENSE)
665                                 connected = true;
666                         break;
667                 default:
668                         break;
669                 }
670         } else {
671                 switch (hpd) {
672                 case RADEON_HPD_1:
673                         if (RREG32(DC_HOT_PLUG_DETECT1_INT_STATUS) & DC_HOT_PLUG_DETECTx_SENSE)
674                                 connected = true;
675                         break;
676                 case RADEON_HPD_2:
677                         if (RREG32(DC_HOT_PLUG_DETECT2_INT_STATUS) & DC_HOT_PLUG_DETECTx_SENSE)
678                                 connected = true;
679                         break;
680                 case RADEON_HPD_3:
681                         if (RREG32(DC_HOT_PLUG_DETECT3_INT_STATUS) & DC_HOT_PLUG_DETECTx_SENSE)
682                                 connected = true;
683                         break;
684                 default:
685                         break;
686                 }
687         }
688         return connected;
689 }
690
691 void r600_hpd_set_polarity(struct radeon_device *rdev,
692                            enum radeon_hpd_id hpd)
693 {
694         u32 tmp;
695         bool connected = r600_hpd_sense(rdev, hpd);
696
697         if (ASIC_IS_DCE3(rdev)) {
698                 switch (hpd) {
699                 case RADEON_HPD_1:
700                         tmp = RREG32(DC_HPD1_INT_CONTROL);
701                         if (connected)
702                                 tmp &= ~DC_HPDx_INT_POLARITY;
703                         else
704                                 tmp |= DC_HPDx_INT_POLARITY;
705                         WREG32(DC_HPD1_INT_CONTROL, tmp);
706                         break;
707                 case RADEON_HPD_2:
708                         tmp = RREG32(DC_HPD2_INT_CONTROL);
709                         if (connected)
710                                 tmp &= ~DC_HPDx_INT_POLARITY;
711                         else
712                                 tmp |= DC_HPDx_INT_POLARITY;
713                         WREG32(DC_HPD2_INT_CONTROL, tmp);
714                         break;
715                 case RADEON_HPD_3:
716                         tmp = RREG32(DC_HPD3_INT_CONTROL);
717                         if (connected)
718                                 tmp &= ~DC_HPDx_INT_POLARITY;
719                         else
720                                 tmp |= DC_HPDx_INT_POLARITY;
721                         WREG32(DC_HPD3_INT_CONTROL, tmp);
722                         break;
723                 case RADEON_HPD_4:
724                         tmp = RREG32(DC_HPD4_INT_CONTROL);
725                         if (connected)
726                                 tmp &= ~DC_HPDx_INT_POLARITY;
727                         else
728                                 tmp |= DC_HPDx_INT_POLARITY;
729                         WREG32(DC_HPD4_INT_CONTROL, tmp);
730                         break;
731                 case RADEON_HPD_5:
732                         tmp = RREG32(DC_HPD5_INT_CONTROL);
733                         if (connected)
734                                 tmp &= ~DC_HPDx_INT_POLARITY;
735                         else
736                                 tmp |= DC_HPDx_INT_POLARITY;
737                         WREG32(DC_HPD5_INT_CONTROL, tmp);
738                         break;
739                         /* DCE 3.2 */
740                 case RADEON_HPD_6:
741                         tmp = RREG32(DC_HPD6_INT_CONTROL);
742                         if (connected)
743                                 tmp &= ~DC_HPDx_INT_POLARITY;
744                         else
745                                 tmp |= DC_HPDx_INT_POLARITY;
746                         WREG32(DC_HPD6_INT_CONTROL, tmp);
747                         break;
748                 default:
749                         break;
750                 }
751         } else {
752                 switch (hpd) {
753                 case RADEON_HPD_1:
754                         tmp = RREG32(DC_HOT_PLUG_DETECT1_INT_CONTROL);
755                         if (connected)
756                                 tmp &= ~DC_HOT_PLUG_DETECTx_INT_POLARITY;
757                         else
758                                 tmp |= DC_HOT_PLUG_DETECTx_INT_POLARITY;
759                         WREG32(DC_HOT_PLUG_DETECT1_INT_CONTROL, tmp);
760                         break;
761                 case RADEON_HPD_2:
762                         tmp = RREG32(DC_HOT_PLUG_DETECT2_INT_CONTROL);
763                         if (connected)
764                                 tmp &= ~DC_HOT_PLUG_DETECTx_INT_POLARITY;
765                         else
766                                 tmp |= DC_HOT_PLUG_DETECTx_INT_POLARITY;
767                         WREG32(DC_HOT_PLUG_DETECT2_INT_CONTROL, tmp);
768                         break;
769                 case RADEON_HPD_3:
770                         tmp = RREG32(DC_HOT_PLUG_DETECT3_INT_CONTROL);
771                         if (connected)
772                                 tmp &= ~DC_HOT_PLUG_DETECTx_INT_POLARITY;
773                         else
774                                 tmp |= DC_HOT_PLUG_DETECTx_INT_POLARITY;
775                         WREG32(DC_HOT_PLUG_DETECT3_INT_CONTROL, tmp);
776                         break;
777                 default:
778                         break;
779                 }
780         }
781 }
782
783 void r600_hpd_init(struct radeon_device *rdev)
784 {
785         struct drm_device *dev = rdev->ddev;
786         struct drm_connector *connector;
787         unsigned enable = 0;
788
789         list_for_each_entry(connector, &dev->mode_config.connector_list, head) {
790                 struct radeon_connector *radeon_connector = to_radeon_connector(connector);
791
792                 if (connector->connector_type == DRM_MODE_CONNECTOR_eDP ||
793                     connector->connector_type == DRM_MODE_CONNECTOR_LVDS) {
794                         /* don't try to enable hpd on eDP or LVDS avoid breaking the
795                          * aux dp channel on imac and help (but not completely fix)
796                          * https://bugzilla.redhat.com/show_bug.cgi?id=726143
797                          */
798                         continue;
799                 }
800                 if (ASIC_IS_DCE3(rdev)) {
801                         u32 tmp = DC_HPDx_CONNECTION_TIMER(0x9c4) | DC_HPDx_RX_INT_TIMER(0xfa);
802                         if (ASIC_IS_DCE32(rdev))
803                                 tmp |= DC_HPDx_EN;
804
805                         switch (radeon_connector->hpd.hpd) {
806                         case RADEON_HPD_1:
807                                 WREG32(DC_HPD1_CONTROL, tmp);
808                                 break;
809                         case RADEON_HPD_2:
810                                 WREG32(DC_HPD2_CONTROL, tmp);
811                                 break;
812                         case RADEON_HPD_3:
813                                 WREG32(DC_HPD3_CONTROL, tmp);
814                                 break;
815                         case RADEON_HPD_4:
816                                 WREG32(DC_HPD4_CONTROL, tmp);
817                                 break;
818                                 /* DCE 3.2 */
819                         case RADEON_HPD_5:
820                                 WREG32(DC_HPD5_CONTROL, tmp);
821                                 break;
822                         case RADEON_HPD_6:
823                                 WREG32(DC_HPD6_CONTROL, tmp);
824                                 break;
825                         default:
826                                 break;
827                         }
828                 } else {
829                         switch (radeon_connector->hpd.hpd) {
830                         case RADEON_HPD_1:
831                                 WREG32(DC_HOT_PLUG_DETECT1_CONTROL, DC_HOT_PLUG_DETECTx_EN);
832                                 break;
833                         case RADEON_HPD_2:
834                                 WREG32(DC_HOT_PLUG_DETECT2_CONTROL, DC_HOT_PLUG_DETECTx_EN);
835                                 break;
836                         case RADEON_HPD_3:
837                                 WREG32(DC_HOT_PLUG_DETECT3_CONTROL, DC_HOT_PLUG_DETECTx_EN);
838                                 break;
839                         default:
840                                 break;
841                         }
842                 }
843                 enable |= 1 << radeon_connector->hpd.hpd;
844                 radeon_hpd_set_polarity(rdev, radeon_connector->hpd.hpd);
845         }
846         radeon_irq_kms_enable_hpd(rdev, enable);
847 }
848
849 void r600_hpd_fini(struct radeon_device *rdev)
850 {
851         struct drm_device *dev = rdev->ddev;
852         struct drm_connector *connector;
853         unsigned disable = 0;
854
855         list_for_each_entry(connector, &dev->mode_config.connector_list, head) {
856                 struct radeon_connector *radeon_connector = to_radeon_connector(connector);
857                 if (ASIC_IS_DCE3(rdev)) {
858                         switch (radeon_connector->hpd.hpd) {
859                         case RADEON_HPD_1:
860                                 WREG32(DC_HPD1_CONTROL, 0);
861                                 break;
862                         case RADEON_HPD_2:
863                                 WREG32(DC_HPD2_CONTROL, 0);
864                                 break;
865                         case RADEON_HPD_3:
866                                 WREG32(DC_HPD3_CONTROL, 0);
867                                 break;
868                         case RADEON_HPD_4:
869                                 WREG32(DC_HPD4_CONTROL, 0);
870                                 break;
871                                 /* DCE 3.2 */
872                         case RADEON_HPD_5:
873                                 WREG32(DC_HPD5_CONTROL, 0);
874                                 break;
875                         case RADEON_HPD_6:
876                                 WREG32(DC_HPD6_CONTROL, 0);
877                                 break;
878                         default:
879                                 break;
880                         }
881                 } else {
882                         switch (radeon_connector->hpd.hpd) {
883                         case RADEON_HPD_1:
884                                 WREG32(DC_HOT_PLUG_DETECT1_CONTROL, 0);
885                                 break;
886                         case RADEON_HPD_2:
887                                 WREG32(DC_HOT_PLUG_DETECT2_CONTROL, 0);
888                                 break;
889                         case RADEON_HPD_3:
890                                 WREG32(DC_HOT_PLUG_DETECT3_CONTROL, 0);
891                                 break;
892                         default:
893                                 break;
894                         }
895                 }
896                 disable |= 1 << radeon_connector->hpd.hpd;
897         }
898         radeon_irq_kms_disable_hpd(rdev, disable);
899 }
900
901 /*
902  * R600 PCIE GART
903  */
904 void r600_pcie_gart_tlb_flush(struct radeon_device *rdev)
905 {
906         unsigned i;
907         u32 tmp;
908
909         /* flush hdp cache so updates hit vram */
910         if ((rdev->family >= CHIP_RV770) && (rdev->family <= CHIP_RV740) &&
911             !(rdev->flags & RADEON_IS_AGP)) {
912                 void __iomem *ptr = (void *)rdev->gart.ptr;
913                 u32 tmp;
914
915                 /* r7xx hw bug.  write to HDP_DEBUG1 followed by fb read
916                  * rather than write to HDP_REG_COHERENCY_FLUSH_CNTL
917                  * This seems to cause problems on some AGP cards. Just use the old
918                  * method for them.
919                  */
920                 WREG32(HDP_DEBUG1, 0);
921                 tmp = readl((void __iomem *)ptr);
922         } else
923                 WREG32(R_005480_HDP_MEM_COHERENCY_FLUSH_CNTL, 0x1);
924
925         WREG32(VM_CONTEXT0_INVALIDATION_LOW_ADDR, rdev->mc.gtt_start >> 12);
926         WREG32(VM_CONTEXT0_INVALIDATION_HIGH_ADDR, (rdev->mc.gtt_end - 1) >> 12);
927         WREG32(VM_CONTEXT0_REQUEST_RESPONSE, REQUEST_TYPE(1));
928         for (i = 0; i < rdev->usec_timeout; i++) {
929                 /* read MC_STATUS */
930                 tmp = RREG32(VM_CONTEXT0_REQUEST_RESPONSE);
931                 tmp = (tmp & RESPONSE_TYPE_MASK) >> RESPONSE_TYPE_SHIFT;
932                 if (tmp == 2) {
933                         printk(KERN_WARNING "[drm] r600 flush TLB failed\n");
934                         return;
935                 }
936                 if (tmp) {
937                         return;
938                 }
939                 udelay(1);
940         }
941 }
942
943 int r600_pcie_gart_init(struct radeon_device *rdev)
944 {
945         int r;
946
947         if (rdev->gart.robj) {
948                 WARN(1, "R600 PCIE GART already initialized\n");
949                 return 0;
950         }
951         /* Initialize common gart structure */
952         r = radeon_gart_init(rdev);
953         if (r)
954                 return r;
955         rdev->gart.table_size = rdev->gart.num_gpu_pages * 8;
956         return radeon_gart_table_vram_alloc(rdev);
957 }
958
959 static int r600_pcie_gart_enable(struct radeon_device *rdev)
960 {
961         u32 tmp;
962         int r, i;
963
964         if (rdev->gart.robj == NULL) {
965                 dev_err(rdev->dev, "No VRAM object for PCIE GART.\n");
966                 return -EINVAL;
967         }
968         r = radeon_gart_table_vram_pin(rdev);
969         if (r)
970                 return r;
971
972         /* Setup L2 cache */
973         WREG32(VM_L2_CNTL, ENABLE_L2_CACHE | ENABLE_L2_FRAGMENT_PROCESSING |
974                                 ENABLE_L2_PTE_CACHE_LRU_UPDATE_BY_WRITE |
975                                 EFFECTIVE_L2_QUEUE_SIZE(7));
976         WREG32(VM_L2_CNTL2, 0);
977         WREG32(VM_L2_CNTL3, BANK_SELECT_0(0) | BANK_SELECT_1(1));
978         /* Setup TLB control */
979         tmp = ENABLE_L1_TLB | ENABLE_L1_FRAGMENT_PROCESSING |
980                 SYSTEM_ACCESS_MODE_NOT_IN_SYS |
981                 EFFECTIVE_L1_TLB_SIZE(5) | EFFECTIVE_L1_QUEUE_SIZE(5) |
982                 ENABLE_WAIT_L2_QUERY;
983         WREG32(MC_VM_L1_TLB_MCB_RD_SYS_CNTL, tmp);
984         WREG32(MC_VM_L1_TLB_MCB_WR_SYS_CNTL, tmp);
985         WREG32(MC_VM_L1_TLB_MCB_RD_HDP_CNTL, tmp | ENABLE_L1_STRICT_ORDERING);
986         WREG32(MC_VM_L1_TLB_MCB_WR_HDP_CNTL, tmp);
987         WREG32(MC_VM_L1_TLB_MCD_RD_A_CNTL, tmp);
988         WREG32(MC_VM_L1_TLB_MCD_WR_A_CNTL, tmp);
989         WREG32(MC_VM_L1_TLB_MCD_RD_B_CNTL, tmp);
990         WREG32(MC_VM_L1_TLB_MCD_WR_B_CNTL, tmp);
991         WREG32(MC_VM_L1_TLB_MCB_RD_GFX_CNTL, tmp);
992         WREG32(MC_VM_L1_TLB_MCB_WR_GFX_CNTL, tmp);
993         WREG32(MC_VM_L1_TLB_MCB_RD_PDMA_CNTL, tmp);
994         WREG32(MC_VM_L1_TLB_MCB_WR_PDMA_CNTL, tmp);
995         WREG32(MC_VM_L1_TLB_MCB_RD_SEM_CNTL, tmp | ENABLE_SEMAPHORE_MODE);
996         WREG32(MC_VM_L1_TLB_MCB_WR_SEM_CNTL, tmp | ENABLE_SEMAPHORE_MODE);
997         WREG32(VM_CONTEXT0_PAGE_TABLE_START_ADDR, rdev->mc.gtt_start >> 12);
998         WREG32(VM_CONTEXT0_PAGE_TABLE_END_ADDR, rdev->mc.gtt_end >> 12);
999         WREG32(VM_CONTEXT0_PAGE_TABLE_BASE_ADDR, rdev->gart.table_addr >> 12);
1000         WREG32(VM_CONTEXT0_CNTL, ENABLE_CONTEXT | PAGE_TABLE_DEPTH(0) |
1001                                 RANGE_PROTECTION_FAULT_ENABLE_DEFAULT);
1002         WREG32(VM_CONTEXT0_PROTECTION_FAULT_DEFAULT_ADDR,
1003                         (u32)(rdev->dummy_page.addr >> 12));
1004         for (i = 1; i < 7; i++)
1005                 WREG32(VM_CONTEXT0_CNTL + (i * 4), 0);
1006
1007         r600_pcie_gart_tlb_flush(rdev);
1008         DRM_INFO("PCIE GART of %uM enabled (table at 0x%016llX).\n",
1009                  (unsigned)(rdev->mc.gtt_size >> 20),
1010                  (unsigned long long)rdev->gart.table_addr);
1011         rdev->gart.ready = true;
1012         return 0;
1013 }
1014
1015 static void r600_pcie_gart_disable(struct radeon_device *rdev)
1016 {
1017         u32 tmp;
1018         int i;
1019
1020         /* Disable all tables */
1021         for (i = 0; i < 7; i++)
1022                 WREG32(VM_CONTEXT0_CNTL + (i * 4), 0);
1023
1024         /* Disable L2 cache */
1025         WREG32(VM_L2_CNTL, ENABLE_L2_FRAGMENT_PROCESSING |
1026                                 EFFECTIVE_L2_QUEUE_SIZE(7));
1027         WREG32(VM_L2_CNTL3, BANK_SELECT_0(0) | BANK_SELECT_1(1));
1028         /* Setup L1 TLB control */
1029         tmp = EFFECTIVE_L1_TLB_SIZE(5) | EFFECTIVE_L1_QUEUE_SIZE(5) |
1030                 ENABLE_WAIT_L2_QUERY;
1031         WREG32(MC_VM_L1_TLB_MCD_RD_A_CNTL, tmp);
1032         WREG32(MC_VM_L1_TLB_MCD_WR_A_CNTL, tmp);
1033         WREG32(MC_VM_L1_TLB_MCD_RD_B_CNTL, tmp);
1034         WREG32(MC_VM_L1_TLB_MCD_WR_B_CNTL, tmp);
1035         WREG32(MC_VM_L1_TLB_MCB_RD_GFX_CNTL, tmp);
1036         WREG32(MC_VM_L1_TLB_MCB_WR_GFX_CNTL, tmp);
1037         WREG32(MC_VM_L1_TLB_MCB_RD_PDMA_CNTL, tmp);
1038         WREG32(MC_VM_L1_TLB_MCB_WR_PDMA_CNTL, tmp);
1039         WREG32(MC_VM_L1_TLB_MCB_RD_SEM_CNTL, tmp);
1040         WREG32(MC_VM_L1_TLB_MCB_WR_SEM_CNTL, tmp);
1041         WREG32(MC_VM_L1_TLB_MCB_RD_SYS_CNTL, tmp);
1042         WREG32(MC_VM_L1_TLB_MCB_WR_SYS_CNTL, tmp);
1043         WREG32(MC_VM_L1_TLB_MCB_RD_HDP_CNTL, tmp);
1044         WREG32(MC_VM_L1_TLB_MCB_WR_HDP_CNTL, tmp);
1045         radeon_gart_table_vram_unpin(rdev);
1046 }
1047
1048 static void r600_pcie_gart_fini(struct radeon_device *rdev)
1049 {
1050         radeon_gart_fini(rdev);
1051         r600_pcie_gart_disable(rdev);
1052         radeon_gart_table_vram_free(rdev);
1053 }
1054
1055 static void r600_agp_enable(struct radeon_device *rdev)
1056 {
1057         u32 tmp;
1058         int i;
1059
1060         /* Setup L2 cache */
1061         WREG32(VM_L2_CNTL, ENABLE_L2_CACHE | ENABLE_L2_FRAGMENT_PROCESSING |
1062                                 ENABLE_L2_PTE_CACHE_LRU_UPDATE_BY_WRITE |
1063                                 EFFECTIVE_L2_QUEUE_SIZE(7));
1064         WREG32(VM_L2_CNTL2, 0);
1065         WREG32(VM_L2_CNTL3, BANK_SELECT_0(0) | BANK_SELECT_1(1));
1066         /* Setup TLB control */
1067         tmp = ENABLE_L1_TLB | ENABLE_L1_FRAGMENT_PROCESSING |
1068                 SYSTEM_ACCESS_MODE_NOT_IN_SYS |
1069                 EFFECTIVE_L1_TLB_SIZE(5) | EFFECTIVE_L1_QUEUE_SIZE(5) |
1070                 ENABLE_WAIT_L2_QUERY;
1071         WREG32(MC_VM_L1_TLB_MCB_RD_SYS_CNTL, tmp);
1072         WREG32(MC_VM_L1_TLB_MCB_WR_SYS_CNTL, tmp);
1073         WREG32(MC_VM_L1_TLB_MCB_RD_HDP_CNTL, tmp | ENABLE_L1_STRICT_ORDERING);
1074         WREG32(MC_VM_L1_TLB_MCB_WR_HDP_CNTL, tmp);
1075         WREG32(MC_VM_L1_TLB_MCD_RD_A_CNTL, tmp);
1076         WREG32(MC_VM_L1_TLB_MCD_WR_A_CNTL, tmp);
1077         WREG32(MC_VM_L1_TLB_MCD_RD_B_CNTL, tmp);
1078         WREG32(MC_VM_L1_TLB_MCD_WR_B_CNTL, tmp);
1079         WREG32(MC_VM_L1_TLB_MCB_RD_GFX_CNTL, tmp);
1080         WREG32(MC_VM_L1_TLB_MCB_WR_GFX_CNTL, tmp);
1081         WREG32(MC_VM_L1_TLB_MCB_RD_PDMA_CNTL, tmp);
1082         WREG32(MC_VM_L1_TLB_MCB_WR_PDMA_CNTL, tmp);
1083         WREG32(MC_VM_L1_TLB_MCB_RD_SEM_CNTL, tmp | ENABLE_SEMAPHORE_MODE);
1084         WREG32(MC_VM_L1_TLB_MCB_WR_SEM_CNTL, tmp | ENABLE_SEMAPHORE_MODE);
1085         for (i = 0; i < 7; i++)
1086                 WREG32(VM_CONTEXT0_CNTL + (i * 4), 0);
1087 }
1088
1089 int r600_mc_wait_for_idle(struct radeon_device *rdev)
1090 {
1091         unsigned i;
1092         u32 tmp;
1093
1094         for (i = 0; i < rdev->usec_timeout; i++) {
1095                 /* read MC_STATUS */
1096                 tmp = RREG32(R_000E50_SRBM_STATUS) & 0x3F00;
1097                 if (!tmp)
1098                         return 0;
1099                 udelay(1);
1100         }
1101         return -1;
1102 }
1103
1104 uint32_t rs780_mc_rreg(struct radeon_device *rdev, uint32_t reg)
1105 {
1106         unsigned long flags;
1107         uint32_t r;
1108
1109         spin_lock_irqsave(&rdev->mc_idx_lock, flags);
1110         WREG32(R_0028F8_MC_INDEX, S_0028F8_MC_IND_ADDR(reg));
1111         r = RREG32(R_0028FC_MC_DATA);
1112         WREG32(R_0028F8_MC_INDEX, ~C_0028F8_MC_IND_ADDR);
1113         spin_unlock_irqrestore(&rdev->mc_idx_lock, flags);
1114         return r;
1115 }
1116
1117 void rs780_mc_wreg(struct radeon_device *rdev, uint32_t reg, uint32_t v)
1118 {
1119         unsigned long flags;
1120
1121         spin_lock_irqsave(&rdev->mc_idx_lock, flags);
1122         WREG32(R_0028F8_MC_INDEX, S_0028F8_MC_IND_ADDR(reg) |
1123                 S_0028F8_MC_IND_WR_EN(1));
1124         WREG32(R_0028FC_MC_DATA, v);
1125         WREG32(R_0028F8_MC_INDEX, 0x7F);
1126         spin_unlock_irqrestore(&rdev->mc_idx_lock, flags);
1127 }
1128
1129 static void r600_mc_program(struct radeon_device *rdev)
1130 {
1131         struct rv515_mc_save save;
1132         u32 tmp;
1133         int i, j;
1134
1135         /* Initialize HDP */
1136         for (i = 0, j = 0; i < 32; i++, j += 0x18) {
1137                 WREG32((0x2c14 + j), 0x00000000);
1138                 WREG32((0x2c18 + j), 0x00000000);
1139                 WREG32((0x2c1c + j), 0x00000000);
1140                 WREG32((0x2c20 + j), 0x00000000);
1141                 WREG32((0x2c24 + j), 0x00000000);
1142         }
1143         WREG32(HDP_REG_COHERENCY_FLUSH_CNTL, 0);
1144
1145         rv515_mc_stop(rdev, &save);
1146         if (r600_mc_wait_for_idle(rdev)) {
1147                 dev_warn(rdev->dev, "Wait for MC idle timedout !\n");
1148         }
1149         /* Lockout access through VGA aperture (doesn't exist before R600) */
1150         WREG32(VGA_HDP_CONTROL, VGA_MEMORY_DISABLE);
1151         /* Update configuration */
1152         if (rdev->flags & RADEON_IS_AGP) {
1153                 if (rdev->mc.vram_start < rdev->mc.gtt_start) {
1154                         /* VRAM before AGP */
1155                         WREG32(MC_VM_SYSTEM_APERTURE_LOW_ADDR,
1156                                 rdev->mc.vram_start >> 12);
1157                         WREG32(MC_VM_SYSTEM_APERTURE_HIGH_ADDR,
1158                                 rdev->mc.gtt_end >> 12);
1159                 } else {
1160                         /* VRAM after AGP */
1161                         WREG32(MC_VM_SYSTEM_APERTURE_LOW_ADDR,
1162                                 rdev->mc.gtt_start >> 12);
1163                         WREG32(MC_VM_SYSTEM_APERTURE_HIGH_ADDR,
1164                                 rdev->mc.vram_end >> 12);
1165                 }
1166         } else {
1167                 WREG32(MC_VM_SYSTEM_APERTURE_LOW_ADDR, rdev->mc.vram_start >> 12);
1168                 WREG32(MC_VM_SYSTEM_APERTURE_HIGH_ADDR, rdev->mc.vram_end >> 12);
1169         }
1170         WREG32(MC_VM_SYSTEM_APERTURE_DEFAULT_ADDR, rdev->vram_scratch.gpu_addr >> 12);
1171         tmp = ((rdev->mc.vram_end >> 24) & 0xFFFF) << 16;
1172         tmp |= ((rdev->mc.vram_start >> 24) & 0xFFFF);
1173         WREG32(MC_VM_FB_LOCATION, tmp);
1174         WREG32(HDP_NONSURFACE_BASE, (rdev->mc.vram_start >> 8));
1175         WREG32(HDP_NONSURFACE_INFO, (2 << 7));
1176         WREG32(HDP_NONSURFACE_SIZE, 0x3FFFFFFF);
1177         if (rdev->flags & RADEON_IS_AGP) {
1178                 WREG32(MC_VM_AGP_TOP, rdev->mc.gtt_end >> 22);
1179                 WREG32(MC_VM_AGP_BOT, rdev->mc.gtt_start >> 22);
1180                 WREG32(MC_VM_AGP_BASE, rdev->mc.agp_base >> 22);
1181         } else {
1182                 WREG32(MC_VM_AGP_BASE, 0);
1183                 WREG32(MC_VM_AGP_TOP, 0x0FFFFFFF);
1184                 WREG32(MC_VM_AGP_BOT, 0x0FFFFFFF);
1185         }
1186         if (r600_mc_wait_for_idle(rdev)) {
1187                 dev_warn(rdev->dev, "Wait for MC idle timedout !\n");
1188         }
1189         rv515_mc_resume(rdev, &save);
1190         /* we need to own VRAM, so turn off the VGA renderer here
1191          * to stop it overwriting our objects */
1192         rv515_vga_render_disable(rdev);
1193 }
1194
1195 /**
1196  * r600_vram_gtt_location - try to find VRAM & GTT location
1197  * @rdev: radeon device structure holding all necessary informations
1198  * @mc: memory controller structure holding memory informations
1199  *
1200  * Function will place try to place VRAM at same place as in CPU (PCI)
1201  * address space as some GPU seems to have issue when we reprogram at
1202  * different address space.
1203  *
1204  * If there is not enough space to fit the unvisible VRAM after the
1205  * aperture then we limit the VRAM size to the aperture.
1206  *
1207  * If we are using AGP then place VRAM adjacent to AGP aperture are we need
1208  * them to be in one from GPU point of view so that we can program GPU to
1209  * catch access outside them (weird GPU policy see ??).
1210  *
1211  * This function will never fails, worst case are limiting VRAM or GTT.
1212  *
1213  * Note: GTT start, end, size should be initialized before calling this
1214  * function on AGP platform.
1215  */
1216 static void r600_vram_gtt_location(struct radeon_device *rdev, struct radeon_mc *mc)
1217 {
1218         u64 size_bf, size_af;
1219
1220         if (mc->mc_vram_size > 0xE0000000) {
1221                 /* leave room for at least 512M GTT */
1222                 dev_warn(rdev->dev, "limiting VRAM\n");
1223                 mc->real_vram_size = 0xE0000000;
1224                 mc->mc_vram_size = 0xE0000000;
1225         }
1226         if (rdev->flags & RADEON_IS_AGP) {
1227                 size_bf = mc->gtt_start;
1228                 size_af = mc->mc_mask - mc->gtt_end;
1229                 if (size_bf > size_af) {
1230                         if (mc->mc_vram_size > size_bf) {
1231                                 dev_warn(rdev->dev, "limiting VRAM\n");
1232                                 mc->real_vram_size = size_bf;
1233                                 mc->mc_vram_size = size_bf;
1234                         }
1235                         mc->vram_start = mc->gtt_start - mc->mc_vram_size;
1236                 } else {
1237                         if (mc->mc_vram_size > size_af) {
1238                                 dev_warn(rdev->dev, "limiting VRAM\n");
1239                                 mc->real_vram_size = size_af;
1240                                 mc->mc_vram_size = size_af;
1241                         }
1242                         mc->vram_start = mc->gtt_end + 1;
1243                 }
1244                 mc->vram_end = mc->vram_start + mc->mc_vram_size - 1;
1245                 dev_info(rdev->dev, "VRAM: %lluM 0x%08llX - 0x%08llX (%lluM used)\n",
1246                                 mc->mc_vram_size >> 20, mc->vram_start,
1247                                 mc->vram_end, mc->real_vram_size >> 20);
1248         } else {
1249                 u64 base = 0;
1250                 if (rdev->flags & RADEON_IS_IGP) {
1251                         base = RREG32(MC_VM_FB_LOCATION) & 0xFFFF;
1252                         base <<= 24;
1253                 }
1254                 radeon_vram_location(rdev, &rdev->mc, base);
1255                 rdev->mc.gtt_base_align = 0;
1256                 radeon_gtt_location(rdev, mc);
1257         }
1258 }
1259
1260 static int r600_mc_init(struct radeon_device *rdev)
1261 {
1262         u32 tmp;
1263         int chansize, numchan;
1264         uint32_t h_addr, l_addr;
1265         unsigned long long k8_addr;
1266
1267         /* Get VRAM informations */
1268         rdev->mc.vram_is_ddr = true;
1269         tmp = RREG32(RAMCFG);
1270         if (tmp & CHANSIZE_OVERRIDE) {
1271                 chansize = 16;
1272         } else if (tmp & CHANSIZE_MASK) {
1273                 chansize = 64;
1274         } else {
1275                 chansize = 32;
1276         }
1277         tmp = RREG32(CHMAP);
1278         switch ((tmp & NOOFCHAN_MASK) >> NOOFCHAN_SHIFT) {
1279         case 0:
1280         default:
1281                 numchan = 1;
1282                 break;
1283         case 1:
1284                 numchan = 2;
1285                 break;
1286         case 2:
1287                 numchan = 4;
1288                 break;
1289         case 3:
1290                 numchan = 8;
1291                 break;
1292         }
1293         rdev->mc.vram_width = numchan * chansize;
1294         /* Could aper size report 0 ? */
1295         rdev->mc.aper_base = pci_resource_start(rdev->pdev, 0);
1296         rdev->mc.aper_size = pci_resource_len(rdev->pdev, 0);
1297         /* Setup GPU memory space */
1298         rdev->mc.mc_vram_size = RREG32(CONFIG_MEMSIZE);
1299         rdev->mc.real_vram_size = RREG32(CONFIG_MEMSIZE);
1300         rdev->mc.visible_vram_size = rdev->mc.aper_size;
1301         r600_vram_gtt_location(rdev, &rdev->mc);
1302
1303         if (rdev->flags & RADEON_IS_IGP) {
1304                 rs690_pm_info(rdev);
1305                 rdev->mc.igp_sideport_enabled = radeon_atombios_sideport_present(rdev);
1306
1307                 if (rdev->family == CHIP_RS780 || rdev->family == CHIP_RS880) {
1308                         /* Use K8 direct mapping for fast fb access. */
1309                         rdev->fastfb_working = false;
1310                         h_addr = G_000012_K8_ADDR_EXT(RREG32_MC(R_000012_MC_MISC_UMA_CNTL));
1311                         l_addr = RREG32_MC(R_000011_K8_FB_LOCATION);
1312                         k8_addr = ((unsigned long long)h_addr) << 32 | l_addr;
1313 #if defined(CONFIG_X86_32) && !defined(CONFIG_X86_PAE)
1314                         if (k8_addr + rdev->mc.visible_vram_size < 0x100000000ULL)
1315 #endif
1316                         {
1317                                 /* FastFB shall be used with UMA memory. Here it is simply disabled when sideport
1318                                 * memory is present.
1319                                 */
1320                                 if (rdev->mc.igp_sideport_enabled == false && radeon_fastfb == 1) {
1321                                         DRM_INFO("Direct mapping: aper base at 0x%llx, replaced by direct mapping base 0x%llx.\n",
1322                                                 (unsigned long long)rdev->mc.aper_base, k8_addr);
1323                                         rdev->mc.aper_base = (resource_size_t)k8_addr;
1324                                         rdev->fastfb_working = true;
1325                                 }
1326                         }
1327                 }
1328         }
1329
1330         radeon_update_bandwidth_info(rdev);
1331         return 0;
1332 }
1333
1334 int r600_vram_scratch_init(struct radeon_device *rdev)
1335 {
1336         int r;
1337
1338         if (rdev->vram_scratch.robj == NULL) {
1339                 r = radeon_bo_create(rdev, RADEON_GPU_PAGE_SIZE,
1340                                      PAGE_SIZE, true, RADEON_GEM_DOMAIN_VRAM,
1341                                      0, NULL, &rdev->vram_scratch.robj);
1342                 if (r) {
1343                         return r;
1344                 }
1345         }
1346
1347         r = radeon_bo_reserve(rdev->vram_scratch.robj, false);
1348         if (unlikely(r != 0))
1349                 return r;
1350         r = radeon_bo_pin(rdev->vram_scratch.robj,
1351                           RADEON_GEM_DOMAIN_VRAM, &rdev->vram_scratch.gpu_addr);
1352         if (r) {
1353                 radeon_bo_unreserve(rdev->vram_scratch.robj);
1354                 return r;
1355         }
1356         r = radeon_bo_kmap(rdev->vram_scratch.robj,
1357                                 (void **)&rdev->vram_scratch.ptr);
1358         if (r)
1359                 radeon_bo_unpin(rdev->vram_scratch.robj);
1360         radeon_bo_unreserve(rdev->vram_scratch.robj);
1361
1362         return r;
1363 }
1364
1365 void r600_vram_scratch_fini(struct radeon_device *rdev)
1366 {
1367         int r;
1368
1369         if (rdev->vram_scratch.robj == NULL) {
1370                 return;
1371         }
1372         r = radeon_bo_reserve(rdev->vram_scratch.robj, false);
1373         if (likely(r == 0)) {
1374                 radeon_bo_kunmap(rdev->vram_scratch.robj);
1375                 radeon_bo_unpin(rdev->vram_scratch.robj);
1376                 radeon_bo_unreserve(rdev->vram_scratch.robj);
1377         }
1378         radeon_bo_unref(&rdev->vram_scratch.robj);
1379 }
1380
1381 void r600_set_bios_scratch_engine_hung(struct radeon_device *rdev, bool hung)
1382 {
1383         u32 tmp = RREG32(R600_BIOS_3_SCRATCH);
1384
1385         if (hung)
1386                 tmp |= ATOM_S3_ASIC_GUI_ENGINE_HUNG;
1387         else
1388                 tmp &= ~ATOM_S3_ASIC_GUI_ENGINE_HUNG;
1389
1390         WREG32(R600_BIOS_3_SCRATCH, tmp);
1391 }
1392
1393 static void r600_print_gpu_status_regs(struct radeon_device *rdev)
1394 {
1395         dev_info(rdev->dev, "  R_008010_GRBM_STATUS      = 0x%08X\n",
1396                  RREG32(R_008010_GRBM_STATUS));
1397         dev_info(rdev->dev, "  R_008014_GRBM_STATUS2     = 0x%08X\n",
1398                  RREG32(R_008014_GRBM_STATUS2));
1399         dev_info(rdev->dev, "  R_000E50_SRBM_STATUS      = 0x%08X\n",
1400                  RREG32(R_000E50_SRBM_STATUS));
1401         dev_info(rdev->dev, "  R_008674_CP_STALLED_STAT1 = 0x%08X\n",
1402                  RREG32(CP_STALLED_STAT1));
1403         dev_info(rdev->dev, "  R_008678_CP_STALLED_STAT2 = 0x%08X\n",
1404                  RREG32(CP_STALLED_STAT2));
1405         dev_info(rdev->dev, "  R_00867C_CP_BUSY_STAT     = 0x%08X\n",
1406                  RREG32(CP_BUSY_STAT));
1407         dev_info(rdev->dev, "  R_008680_CP_STAT          = 0x%08X\n",
1408                  RREG32(CP_STAT));
1409         dev_info(rdev->dev, "  R_00D034_DMA_STATUS_REG   = 0x%08X\n",
1410                 RREG32(DMA_STATUS_REG));
1411 }
1412
1413 static bool r600_is_display_hung(struct radeon_device *rdev)
1414 {
1415         u32 crtc_hung = 0;
1416         u32 crtc_status[2];
1417         u32 i, j, tmp;
1418
1419         for (i = 0; i < rdev->num_crtc; i++) {
1420                 if (RREG32(AVIVO_D1CRTC_CONTROL + crtc_offsets[i]) & AVIVO_CRTC_EN) {
1421                         crtc_status[i] = RREG32(AVIVO_D1CRTC_STATUS_HV_COUNT + crtc_offsets[i]);
1422                         crtc_hung |= (1 << i);
1423                 }
1424         }
1425
1426         for (j = 0; j < 10; j++) {
1427                 for (i = 0; i < rdev->num_crtc; i++) {
1428                         if (crtc_hung & (1 << i)) {
1429                                 tmp = RREG32(AVIVO_D1CRTC_STATUS_HV_COUNT + crtc_offsets[i]);
1430                                 if (tmp != crtc_status[i])
1431                                         crtc_hung &= ~(1 << i);
1432                         }
1433                 }
1434                 if (crtc_hung == 0)
1435                         return false;
1436                 udelay(100);
1437         }
1438
1439         return true;
1440 }
1441
1442 u32 r600_gpu_check_soft_reset(struct radeon_device *rdev)
1443 {
1444         u32 reset_mask = 0;
1445         u32 tmp;
1446
1447         /* GRBM_STATUS */
1448         tmp = RREG32(R_008010_GRBM_STATUS);
1449         if (rdev->family >= CHIP_RV770) {
1450                 if (G_008010_PA_BUSY(tmp) | G_008010_SC_BUSY(tmp) |
1451                     G_008010_SH_BUSY(tmp) | G_008010_SX_BUSY(tmp) |
1452                     G_008010_TA_BUSY(tmp) | G_008010_VGT_BUSY(tmp) |
1453                     G_008010_DB03_BUSY(tmp) | G_008010_CB03_BUSY(tmp) |
1454                     G_008010_SPI03_BUSY(tmp) | G_008010_VGT_BUSY_NO_DMA(tmp))
1455                         reset_mask |= RADEON_RESET_GFX;
1456         } else {
1457                 if (G_008010_PA_BUSY(tmp) | G_008010_SC_BUSY(tmp) |
1458                     G_008010_SH_BUSY(tmp) | G_008010_SX_BUSY(tmp) |
1459                     G_008010_TA03_BUSY(tmp) | G_008010_VGT_BUSY(tmp) |
1460                     G_008010_DB03_BUSY(tmp) | G_008010_CB03_BUSY(tmp) |
1461                     G_008010_SPI03_BUSY(tmp) | G_008010_VGT_BUSY_NO_DMA(tmp))
1462                         reset_mask |= RADEON_RESET_GFX;
1463         }
1464
1465         if (G_008010_CF_RQ_PENDING(tmp) | G_008010_PF_RQ_PENDING(tmp) |
1466             G_008010_CP_BUSY(tmp) | G_008010_CP_COHERENCY_BUSY(tmp))
1467                 reset_mask |= RADEON_RESET_CP;
1468
1469         if (G_008010_GRBM_EE_BUSY(tmp))
1470                 reset_mask |= RADEON_RESET_GRBM | RADEON_RESET_GFX | RADEON_RESET_CP;
1471
1472         /* DMA_STATUS_REG */
1473         tmp = RREG32(DMA_STATUS_REG);
1474         if (!(tmp & DMA_IDLE))
1475                 reset_mask |= RADEON_RESET_DMA;
1476
1477         /* SRBM_STATUS */
1478         tmp = RREG32(R_000E50_SRBM_STATUS);
1479         if (G_000E50_RLC_RQ_PENDING(tmp) | G_000E50_RLC_BUSY(tmp))
1480                 reset_mask |= RADEON_RESET_RLC;
1481
1482         if (G_000E50_IH_BUSY(tmp))
1483                 reset_mask |= RADEON_RESET_IH;
1484
1485         if (G_000E50_SEM_BUSY(tmp))
1486                 reset_mask |= RADEON_RESET_SEM;
1487
1488         if (G_000E50_GRBM_RQ_PENDING(tmp))
1489                 reset_mask |= RADEON_RESET_GRBM;
1490
1491         if (G_000E50_VMC_BUSY(tmp))
1492                 reset_mask |= RADEON_RESET_VMC;
1493
1494         if (G_000E50_MCB_BUSY(tmp) | G_000E50_MCDZ_BUSY(tmp) |
1495             G_000E50_MCDY_BUSY(tmp) | G_000E50_MCDX_BUSY(tmp) |
1496             G_000E50_MCDW_BUSY(tmp))
1497                 reset_mask |= RADEON_RESET_MC;
1498
1499         if (r600_is_display_hung(rdev))
1500                 reset_mask |= RADEON_RESET_DISPLAY;
1501
1502         /* Skip MC reset as it's mostly likely not hung, just busy */
1503         if (reset_mask & RADEON_RESET_MC) {
1504                 DRM_DEBUG("MC busy: 0x%08X, clearing.\n", reset_mask);
1505                 reset_mask &= ~RADEON_RESET_MC;
1506         }
1507
1508         return reset_mask;
1509 }
1510
1511 static void r600_gpu_soft_reset(struct radeon_device *rdev, u32 reset_mask)
1512 {
1513         struct rv515_mc_save save;
1514         u32 grbm_soft_reset = 0, srbm_soft_reset = 0;
1515         u32 tmp;
1516
1517         if (reset_mask == 0)
1518                 return;
1519
1520         dev_info(rdev->dev, "GPU softreset: 0x%08X\n", reset_mask);
1521
1522         r600_print_gpu_status_regs(rdev);
1523
1524         /* Disable CP parsing/prefetching */
1525         if (rdev->family >= CHIP_RV770)
1526                 WREG32(R_0086D8_CP_ME_CNTL, S_0086D8_CP_ME_HALT(1) | S_0086D8_CP_PFP_HALT(1));
1527         else
1528                 WREG32(R_0086D8_CP_ME_CNTL, S_0086D8_CP_ME_HALT(1));
1529
1530         /* disable the RLC */
1531         WREG32(RLC_CNTL, 0);
1532
1533         if (reset_mask & RADEON_RESET_DMA) {
1534                 /* Disable DMA */
1535                 tmp = RREG32(DMA_RB_CNTL);
1536                 tmp &= ~DMA_RB_ENABLE;
1537                 WREG32(DMA_RB_CNTL, tmp);
1538         }
1539
1540         mdelay(50);
1541
1542         rv515_mc_stop(rdev, &save);
1543         if (r600_mc_wait_for_idle(rdev)) {
1544                 dev_warn(rdev->dev, "Wait for MC idle timedout !\n");
1545         }
1546
1547         if (reset_mask & (RADEON_RESET_GFX | RADEON_RESET_COMPUTE)) {
1548                 if (rdev->family >= CHIP_RV770)
1549                         grbm_soft_reset |= S_008020_SOFT_RESET_DB(1) |
1550                                 S_008020_SOFT_RESET_CB(1) |
1551                                 S_008020_SOFT_RESET_PA(1) |
1552                                 S_008020_SOFT_RESET_SC(1) |
1553                                 S_008020_SOFT_RESET_SPI(1) |
1554                                 S_008020_SOFT_RESET_SX(1) |
1555                                 S_008020_SOFT_RESET_SH(1) |
1556                                 S_008020_SOFT_RESET_TC(1) |
1557                                 S_008020_SOFT_RESET_TA(1) |
1558                                 S_008020_SOFT_RESET_VC(1) |
1559                                 S_008020_SOFT_RESET_VGT(1);
1560                 else
1561                         grbm_soft_reset |= S_008020_SOFT_RESET_CR(1) |
1562                                 S_008020_SOFT_RESET_DB(1) |
1563                                 S_008020_SOFT_RESET_CB(1) |
1564                                 S_008020_SOFT_RESET_PA(1) |
1565                                 S_008020_SOFT_RESET_SC(1) |
1566                                 S_008020_SOFT_RESET_SMX(1) |
1567                                 S_008020_SOFT_RESET_SPI(1) |
1568                                 S_008020_SOFT_RESET_SX(1) |
1569                                 S_008020_SOFT_RESET_SH(1) |
1570                                 S_008020_SOFT_RESET_TC(1) |
1571                                 S_008020_SOFT_RESET_TA(1) |
1572                                 S_008020_SOFT_RESET_VC(1) |
1573                                 S_008020_SOFT_RESET_VGT(1);
1574         }
1575
1576         if (reset_mask & RADEON_RESET_CP) {
1577                 grbm_soft_reset |= S_008020_SOFT_RESET_CP(1) |
1578                         S_008020_SOFT_RESET_VGT(1);
1579
1580                 srbm_soft_reset |= S_000E60_SOFT_RESET_GRBM(1);
1581         }
1582
1583         if (reset_mask & RADEON_RESET_DMA) {
1584                 if (rdev->family >= CHIP_RV770)
1585                         srbm_soft_reset |= RV770_SOFT_RESET_DMA;
1586                 else
1587                         srbm_soft_reset |= SOFT_RESET_DMA;
1588         }
1589
1590         if (reset_mask & RADEON_RESET_RLC)
1591                 srbm_soft_reset |= S_000E60_SOFT_RESET_RLC(1);
1592
1593         if (reset_mask & RADEON_RESET_SEM)
1594                 srbm_soft_reset |= S_000E60_SOFT_RESET_SEM(1);
1595
1596         if (reset_mask & RADEON_RESET_IH)
1597                 srbm_soft_reset |= S_000E60_SOFT_RESET_IH(1);
1598
1599         if (reset_mask & RADEON_RESET_GRBM)
1600                 srbm_soft_reset |= S_000E60_SOFT_RESET_GRBM(1);
1601
1602         if (!(rdev->flags & RADEON_IS_IGP)) {
1603                 if (reset_mask & RADEON_RESET_MC)
1604                         srbm_soft_reset |= S_000E60_SOFT_RESET_MC(1);
1605         }
1606
1607         if (reset_mask & RADEON_RESET_VMC)
1608                 srbm_soft_reset |= S_000E60_SOFT_RESET_VMC(1);
1609
1610         if (grbm_soft_reset) {
1611                 tmp = RREG32(R_008020_GRBM_SOFT_RESET);
1612                 tmp |= grbm_soft_reset;
1613                 dev_info(rdev->dev, "R_008020_GRBM_SOFT_RESET=0x%08X\n", tmp);
1614                 WREG32(R_008020_GRBM_SOFT_RESET, tmp);
1615                 tmp = RREG32(R_008020_GRBM_SOFT_RESET);
1616
1617                 udelay(50);
1618
1619                 tmp &= ~grbm_soft_reset;
1620                 WREG32(R_008020_GRBM_SOFT_RESET, tmp);
1621                 tmp = RREG32(R_008020_GRBM_SOFT_RESET);
1622         }
1623
1624         if (srbm_soft_reset) {
1625                 tmp = RREG32(SRBM_SOFT_RESET);
1626                 tmp |= srbm_soft_reset;
1627                 dev_info(rdev->dev, "SRBM_SOFT_RESET=0x%08X\n", tmp);
1628                 WREG32(SRBM_SOFT_RESET, tmp);
1629                 tmp = RREG32(SRBM_SOFT_RESET);
1630
1631                 udelay(50);
1632
1633                 tmp &= ~srbm_soft_reset;
1634                 WREG32(SRBM_SOFT_RESET, tmp);
1635                 tmp = RREG32(SRBM_SOFT_RESET);
1636         }
1637
1638         /* Wait a little for things to settle down */
1639         mdelay(1);
1640
1641         rv515_mc_resume(rdev, &save);
1642         udelay(50);
1643
1644         r600_print_gpu_status_regs(rdev);
1645 }
1646
1647 static void r600_gpu_pci_config_reset(struct radeon_device *rdev)
1648 {
1649         struct rv515_mc_save save;
1650         u32 tmp, i;
1651
1652         dev_info(rdev->dev, "GPU pci config reset\n");
1653
1654         /* disable dpm? */
1655
1656         /* Disable CP parsing/prefetching */
1657         if (rdev->family >= CHIP_RV770)
1658                 WREG32(R_0086D8_CP_ME_CNTL, S_0086D8_CP_ME_HALT(1) | S_0086D8_CP_PFP_HALT(1));
1659         else
1660                 WREG32(R_0086D8_CP_ME_CNTL, S_0086D8_CP_ME_HALT(1));
1661
1662         /* disable the RLC */
1663         WREG32(RLC_CNTL, 0);
1664
1665         /* Disable DMA */
1666         tmp = RREG32(DMA_RB_CNTL);
1667         tmp &= ~DMA_RB_ENABLE;
1668         WREG32(DMA_RB_CNTL, tmp);
1669
1670         mdelay(50);
1671
1672         /* set mclk/sclk to bypass */
1673         if (rdev->family >= CHIP_RV770)
1674                 rv770_set_clk_bypass_mode(rdev);
1675         /* disable BM */
1676         pci_clear_master(rdev->pdev);
1677         /* disable mem access */
1678         rv515_mc_stop(rdev, &save);
1679         if (r600_mc_wait_for_idle(rdev)) {
1680                 dev_warn(rdev->dev, "Wait for MC idle timedout !\n");
1681         }
1682
1683         /* BIF reset workaround.  Not sure if this is needed on 6xx */
1684         tmp = RREG32(BUS_CNTL);
1685         tmp |= VGA_COHE_SPEC_TIMER_DIS;
1686         WREG32(BUS_CNTL, tmp);
1687
1688         tmp = RREG32(BIF_SCRATCH0);
1689
1690         /* reset */
1691         radeon_pci_config_reset(rdev);
1692         mdelay(1);
1693
1694         /* BIF reset workaround.  Not sure if this is needed on 6xx */
1695         tmp = SOFT_RESET_BIF;
1696         WREG32(SRBM_SOFT_RESET, tmp);
1697         mdelay(1);
1698         WREG32(SRBM_SOFT_RESET, 0);
1699
1700         /* wait for asic to come out of reset */
1701         for (i = 0; i < rdev->usec_timeout; i++) {
1702                 if (RREG32(CONFIG_MEMSIZE) != 0xffffffff)
1703                         break;
1704                 udelay(1);
1705         }
1706 }
1707
1708 int r600_asic_reset(struct radeon_device *rdev)
1709 {
1710         u32 reset_mask;
1711
1712         reset_mask = r600_gpu_check_soft_reset(rdev);
1713
1714         if (reset_mask)
1715                 r600_set_bios_scratch_engine_hung(rdev, true);
1716
1717         /* try soft reset */
1718         r600_gpu_soft_reset(rdev, reset_mask);
1719
1720         reset_mask = r600_gpu_check_soft_reset(rdev);
1721
1722         /* try pci config reset */
1723         if (reset_mask && radeon_hard_reset)
1724                 r600_gpu_pci_config_reset(rdev);
1725
1726         reset_mask = r600_gpu_check_soft_reset(rdev);
1727
1728         if (!reset_mask)
1729                 r600_set_bios_scratch_engine_hung(rdev, false);
1730
1731         return 0;
1732 }
1733
1734 /**
1735  * r600_gfx_is_lockup - Check if the GFX engine is locked up
1736  *
1737  * @rdev: radeon_device pointer
1738  * @ring: radeon_ring structure holding ring information
1739  *
1740  * Check if the GFX engine is locked up.
1741  * Returns true if the engine appears to be locked up, false if not.
1742  */
1743 bool r600_gfx_is_lockup(struct radeon_device *rdev, struct radeon_ring *ring)
1744 {
1745         u32 reset_mask = r600_gpu_check_soft_reset(rdev);
1746
1747         if (!(reset_mask & (RADEON_RESET_GFX |
1748                             RADEON_RESET_COMPUTE |
1749                             RADEON_RESET_CP))) {
1750                 radeon_ring_lockup_update(rdev, ring);
1751                 return false;
1752         }
1753         return radeon_ring_test_lockup(rdev, ring);
1754 }
1755
1756 u32 r6xx_remap_render_backend(struct radeon_device *rdev,
1757                               u32 tiling_pipe_num,
1758                               u32 max_rb_num,
1759                               u32 total_max_rb_num,
1760                               u32 disabled_rb_mask)
1761 {
1762         u32 rendering_pipe_num, rb_num_width, req_rb_num;
1763         u32 pipe_rb_ratio, pipe_rb_remain, tmp;
1764         u32 data = 0, mask = 1 << (max_rb_num - 1);
1765         unsigned i, j;
1766
1767         /* mask out the RBs that don't exist on that asic */
1768         tmp = disabled_rb_mask | ((0xff << max_rb_num) & 0xff);
1769         /* make sure at least one RB is available */
1770         if ((tmp & 0xff) != 0xff)
1771                 disabled_rb_mask = tmp;
1772
1773         rendering_pipe_num = 1 << tiling_pipe_num;
1774         req_rb_num = total_max_rb_num - r600_count_pipe_bits(disabled_rb_mask);
1775         BUG_ON(rendering_pipe_num < req_rb_num);
1776
1777         pipe_rb_ratio = rendering_pipe_num / req_rb_num;
1778         pipe_rb_remain = rendering_pipe_num - pipe_rb_ratio * req_rb_num;
1779
1780         if (rdev->family <= CHIP_RV740) {
1781                 /* r6xx/r7xx */
1782                 rb_num_width = 2;
1783         } else {
1784                 /* eg+ */
1785                 rb_num_width = 4;
1786         }
1787
1788         for (i = 0; i < max_rb_num; i++) {
1789                 if (!(mask & disabled_rb_mask)) {
1790                         for (j = 0; j < pipe_rb_ratio; j++) {
1791                                 data <<= rb_num_width;
1792                                 data |= max_rb_num - i - 1;
1793                         }
1794                         if (pipe_rb_remain) {
1795                                 data <<= rb_num_width;
1796                                 data |= max_rb_num - i - 1;
1797                                 pipe_rb_remain--;
1798                         }
1799                 }
1800                 mask >>= 1;
1801         }
1802
1803         return data;
1804 }
1805
1806 int r600_count_pipe_bits(uint32_t val)
1807 {
1808         return hweight32(val);
1809 }
1810
1811 static void r600_gpu_init(struct radeon_device *rdev)
1812 {
1813         u32 tiling_config;
1814         u32 ramcfg;
1815         u32 cc_rb_backend_disable;
1816         u32 cc_gc_shader_pipe_config;
1817         u32 tmp;
1818         int i, j;
1819         u32 sq_config;
1820         u32 sq_gpr_resource_mgmt_1 = 0;
1821         u32 sq_gpr_resource_mgmt_2 = 0;
1822         u32 sq_thread_resource_mgmt = 0;
1823         u32 sq_stack_resource_mgmt_1 = 0;
1824         u32 sq_stack_resource_mgmt_2 = 0;
1825         u32 disabled_rb_mask;
1826
1827         rdev->config.r600.tiling_group_size = 256;
1828         switch (rdev->family) {
1829         case CHIP_R600:
1830                 rdev->config.r600.max_pipes = 4;
1831                 rdev->config.r600.max_tile_pipes = 8;
1832                 rdev->config.r600.max_simds = 4;
1833                 rdev->config.r600.max_backends = 4;
1834                 rdev->config.r600.max_gprs = 256;
1835                 rdev->config.r600.max_threads = 192;
1836                 rdev->config.r600.max_stack_entries = 256;
1837                 rdev->config.r600.max_hw_contexts = 8;
1838                 rdev->config.r600.max_gs_threads = 16;
1839                 rdev->config.r600.sx_max_export_size = 128;
1840                 rdev->config.r600.sx_max_export_pos_size = 16;
1841                 rdev->config.r600.sx_max_export_smx_size = 128;
1842                 rdev->config.r600.sq_num_cf_insts = 2;
1843                 break;
1844         case CHIP_RV630:
1845         case CHIP_RV635:
1846                 rdev->config.r600.max_pipes = 2;
1847                 rdev->config.r600.max_tile_pipes = 2;
1848                 rdev->config.r600.max_simds = 3;
1849                 rdev->config.r600.max_backends = 1;
1850                 rdev->config.r600.max_gprs = 128;
1851                 rdev->config.r600.max_threads = 192;
1852                 rdev->config.r600.max_stack_entries = 128;
1853                 rdev->config.r600.max_hw_contexts = 8;
1854                 rdev->config.r600.max_gs_threads = 4;
1855                 rdev->config.r600.sx_max_export_size = 128;
1856                 rdev->config.r600.sx_max_export_pos_size = 16;
1857                 rdev->config.r600.sx_max_export_smx_size = 128;
1858                 rdev->config.r600.sq_num_cf_insts = 2;
1859                 break;
1860         case CHIP_RV610:
1861         case CHIP_RV620:
1862         case CHIP_RS780:
1863         case CHIP_RS880:
1864                 rdev->config.r600.max_pipes = 1;
1865                 rdev->config.r600.max_tile_pipes = 1;
1866                 rdev->config.r600.max_simds = 2;
1867                 rdev->config.r600.max_backends = 1;
1868                 rdev->config.r600.max_gprs = 128;
1869                 rdev->config.r600.max_threads = 192;
1870                 rdev->config.r600.max_stack_entries = 128;
1871                 rdev->config.r600.max_hw_contexts = 4;
1872                 rdev->config.r600.max_gs_threads = 4;
1873                 rdev->config.r600.sx_max_export_size = 128;
1874                 rdev->config.r600.sx_max_export_pos_size = 16;
1875                 rdev->config.r600.sx_max_export_smx_size = 128;
1876                 rdev->config.r600.sq_num_cf_insts = 1;
1877                 break;
1878         case CHIP_RV670:
1879                 rdev->config.r600.max_pipes = 4;
1880                 rdev->config.r600.max_tile_pipes = 4;
1881                 rdev->config.r600.max_simds = 4;
1882                 rdev->config.r600.max_backends = 4;
1883                 rdev->config.r600.max_gprs = 192;
1884                 rdev->config.r600.max_threads = 192;
1885                 rdev->config.r600.max_stack_entries = 256;
1886                 rdev->config.r600.max_hw_contexts = 8;
1887                 rdev->config.r600.max_gs_threads = 16;
1888                 rdev->config.r600.sx_max_export_size = 128;
1889                 rdev->config.r600.sx_max_export_pos_size = 16;
1890                 rdev->config.r600.sx_max_export_smx_size = 128;
1891                 rdev->config.r600.sq_num_cf_insts = 2;
1892                 break;
1893         default:
1894                 break;
1895         }
1896
1897         /* Initialize HDP */
1898         for (i = 0, j = 0; i < 32; i++, j += 0x18) {
1899                 WREG32((0x2c14 + j), 0x00000000);
1900                 WREG32((0x2c18 + j), 0x00000000);
1901                 WREG32((0x2c1c + j), 0x00000000);
1902                 WREG32((0x2c20 + j), 0x00000000);
1903                 WREG32((0x2c24 + j), 0x00000000);
1904         }
1905
1906         WREG32(GRBM_CNTL, GRBM_READ_TIMEOUT(0xff));
1907
1908         /* Setup tiling */
1909         tiling_config = 0;
1910         ramcfg = RREG32(RAMCFG);
1911         switch (rdev->config.r600.max_tile_pipes) {
1912         case 1:
1913                 tiling_config |= PIPE_TILING(0);
1914                 break;
1915         case 2:
1916                 tiling_config |= PIPE_TILING(1);
1917                 break;
1918         case 4:
1919                 tiling_config |= PIPE_TILING(2);
1920                 break;
1921         case 8:
1922                 tiling_config |= PIPE_TILING(3);
1923                 break;
1924         default:
1925                 break;
1926         }
1927         rdev->config.r600.tiling_npipes = rdev->config.r600.max_tile_pipes;
1928         rdev->config.r600.tiling_nbanks = 4 << ((ramcfg & NOOFBANK_MASK) >> NOOFBANK_SHIFT);
1929         tiling_config |= BANK_TILING((ramcfg & NOOFBANK_MASK) >> NOOFBANK_SHIFT);
1930         tiling_config |= GROUP_SIZE((ramcfg & BURSTLENGTH_MASK) >> BURSTLENGTH_SHIFT);
1931
1932         tmp = (ramcfg & NOOFROWS_MASK) >> NOOFROWS_SHIFT;
1933         if (tmp > 3) {
1934                 tiling_config |= ROW_TILING(3);
1935                 tiling_config |= SAMPLE_SPLIT(3);
1936         } else {
1937                 tiling_config |= ROW_TILING(tmp);
1938                 tiling_config |= SAMPLE_SPLIT(tmp);
1939         }
1940         tiling_config |= BANK_SWAPS(1);
1941
1942         cc_rb_backend_disable = RREG32(CC_RB_BACKEND_DISABLE) & 0x00ff0000;
1943         tmp = R6XX_MAX_BACKENDS -
1944                 r600_count_pipe_bits((cc_rb_backend_disable >> 16) & R6XX_MAX_BACKENDS_MASK);
1945         if (tmp < rdev->config.r600.max_backends) {
1946                 rdev->config.r600.max_backends = tmp;
1947         }
1948
1949         cc_gc_shader_pipe_config = RREG32(CC_GC_SHADER_PIPE_CONFIG) & 0x00ffff00;
1950         tmp = R6XX_MAX_PIPES -
1951                 r600_count_pipe_bits((cc_gc_shader_pipe_config >> 8) & R6XX_MAX_PIPES_MASK);
1952         if (tmp < rdev->config.r600.max_pipes) {
1953                 rdev->config.r600.max_pipes = tmp;
1954         }
1955         tmp = R6XX_MAX_SIMDS -
1956                 r600_count_pipe_bits((cc_gc_shader_pipe_config >> 16) & R6XX_MAX_SIMDS_MASK);
1957         if (tmp < rdev->config.r600.max_simds) {
1958                 rdev->config.r600.max_simds = tmp;
1959         }
1960         tmp = rdev->config.r600.max_simds -
1961                 r600_count_pipe_bits((cc_gc_shader_pipe_config >> 16) & R6XX_MAX_SIMDS_MASK);
1962         rdev->config.r600.active_simds = tmp;
1963
1964         disabled_rb_mask = (RREG32(CC_RB_BACKEND_DISABLE) >> 16) & R6XX_MAX_BACKENDS_MASK;
1965         tmp = (tiling_config & PIPE_TILING__MASK) >> PIPE_TILING__SHIFT;
1966         tmp = r6xx_remap_render_backend(rdev, tmp, rdev->config.r600.max_backends,
1967                                         R6XX_MAX_BACKENDS, disabled_rb_mask);
1968         tiling_config |= tmp << 16;
1969         rdev->config.r600.backend_map = tmp;
1970
1971         rdev->config.r600.tile_config = tiling_config;
1972         WREG32(GB_TILING_CONFIG, tiling_config);
1973         WREG32(DCP_TILING_CONFIG, tiling_config & 0xffff);
1974         WREG32(HDP_TILING_CONFIG, tiling_config & 0xffff);
1975         WREG32(DMA_TILING_CONFIG, tiling_config & 0xffff);
1976
1977         tmp = R6XX_MAX_PIPES - r600_count_pipe_bits((cc_gc_shader_pipe_config & INACTIVE_QD_PIPES_MASK) >> 8);
1978         WREG32(VGT_OUT_DEALLOC_CNTL, (tmp * 4) & DEALLOC_DIST_MASK);
1979         WREG32(VGT_VERTEX_REUSE_BLOCK_CNTL, ((tmp * 4) - 2) & VTX_REUSE_DEPTH_MASK);
1980
1981         /* Setup some CP states */
1982         WREG32(CP_QUEUE_THRESHOLDS, (ROQ_IB1_START(0x16) | ROQ_IB2_START(0x2b)));
1983         WREG32(CP_MEQ_THRESHOLDS, (MEQ_END(0x40) | ROQ_END(0x40)));
1984
1985         WREG32(TA_CNTL_AUX, (DISABLE_CUBE_ANISO | SYNC_GRADIENT |
1986                              SYNC_WALKER | SYNC_ALIGNER));
1987         /* Setup various GPU states */
1988         if (rdev->family == CHIP_RV670)
1989                 WREG32(ARB_GDEC_RD_CNTL, 0x00000021);
1990
1991         tmp = RREG32(SX_DEBUG_1);
1992         tmp |= SMX_EVENT_RELEASE;
1993         if ((rdev->family > CHIP_R600))
1994                 tmp |= ENABLE_NEW_SMX_ADDRESS;
1995         WREG32(SX_DEBUG_1, tmp);
1996
1997         if (((rdev->family) == CHIP_R600) ||
1998             ((rdev->family) == CHIP_RV630) ||
1999             ((rdev->family) == CHIP_RV610) ||
2000             ((rdev->family) == CHIP_RV620) ||
2001             ((rdev->family) == CHIP_RS780) ||
2002             ((rdev->family) == CHIP_RS880)) {
2003                 WREG32(DB_DEBUG, PREZ_MUST_WAIT_FOR_POSTZ_DONE);
2004         } else {
2005                 WREG32(DB_DEBUG, 0);
2006         }
2007         WREG32(DB_WATERMARKS, (DEPTH_FREE(4) | DEPTH_CACHELINE_FREE(16) |
2008                                DEPTH_FLUSH(16) | DEPTH_PENDING_FREE(4)));
2009
2010         WREG32(PA_SC_MULTI_CHIP_CNTL, 0);
2011         WREG32(VGT_NUM_INSTANCES, 0);
2012
2013         WREG32(SPI_CONFIG_CNTL, GPR_WRITE_PRIORITY(0));
2014         WREG32(SPI_CONFIG_CNTL_1, VTX_DONE_DELAY(0));
2015
2016         tmp = RREG32(SQ_MS_FIFO_SIZES);
2017         if (((rdev->family) == CHIP_RV610) ||
2018             ((rdev->family) == CHIP_RV620) ||
2019             ((rdev->family) == CHIP_RS780) ||
2020             ((rdev->family) == CHIP_RS880)) {
2021                 tmp = (CACHE_FIFO_SIZE(0xa) |
2022                        FETCH_FIFO_HIWATER(0xa) |
2023                        DONE_FIFO_HIWATER(0xe0) |
2024                        ALU_UPDATE_FIFO_HIWATER(0x8));
2025         } else if (((rdev->family) == CHIP_R600) ||
2026                    ((rdev->family) == CHIP_RV630)) {
2027                 tmp &= ~DONE_FIFO_HIWATER(0xff);
2028                 tmp |= DONE_FIFO_HIWATER(0x4);
2029         }
2030         WREG32(SQ_MS_FIFO_SIZES, tmp);
2031
2032         /* SQ_CONFIG, SQ_GPR_RESOURCE_MGMT, SQ_THREAD_RESOURCE_MGMT, SQ_STACK_RESOURCE_MGMT
2033          * should be adjusted as needed by the 2D/3D drivers.  This just sets default values
2034          */
2035         sq_config = RREG32(SQ_CONFIG);
2036         sq_config &= ~(PS_PRIO(3) |
2037                        VS_PRIO(3) |
2038                        GS_PRIO(3) |
2039                        ES_PRIO(3));
2040         sq_config |= (DX9_CONSTS |
2041                       VC_ENABLE |
2042                       PS_PRIO(0) |
2043                       VS_PRIO(1) |
2044                       GS_PRIO(2) |
2045                       ES_PRIO(3));
2046
2047         if ((rdev->family) == CHIP_R600) {
2048                 sq_gpr_resource_mgmt_1 = (NUM_PS_GPRS(124) |
2049                                           NUM_VS_GPRS(124) |
2050                                           NUM_CLAUSE_TEMP_GPRS(4));
2051                 sq_gpr_resource_mgmt_2 = (NUM_GS_GPRS(0) |
2052                                           NUM_ES_GPRS(0));
2053                 sq_thread_resource_mgmt = (NUM_PS_THREADS(136) |
2054                                            NUM_VS_THREADS(48) |
2055                                            NUM_GS_THREADS(4) |
2056                                            NUM_ES_THREADS(4));
2057                 sq_stack_resource_mgmt_1 = (NUM_PS_STACK_ENTRIES(128) |
2058                                             NUM_VS_STACK_ENTRIES(128));
2059                 sq_stack_resource_mgmt_2 = (NUM_GS_STACK_ENTRIES(0) |
2060                                             NUM_ES_STACK_ENTRIES(0));
2061         } else if (((rdev->family) == CHIP_RV610) ||
2062                    ((rdev->family) == CHIP_RV620) ||
2063                    ((rdev->family) == CHIP_RS780) ||
2064                    ((rdev->family) == CHIP_RS880)) {
2065                 /* no vertex cache */
2066                 sq_config &= ~VC_ENABLE;
2067
2068                 sq_gpr_resource_mgmt_1 = (NUM_PS_GPRS(44) |
2069                                           NUM_VS_GPRS(44) |
2070                                           NUM_CLAUSE_TEMP_GPRS(2));
2071                 sq_gpr_resource_mgmt_2 = (NUM_GS_GPRS(17) |
2072                                           NUM_ES_GPRS(17));
2073                 sq_thread_resource_mgmt = (NUM_PS_THREADS(79) |
2074                                            NUM_VS_THREADS(78) |
2075                                            NUM_GS_THREADS(4) |
2076                                            NUM_ES_THREADS(31));
2077                 sq_stack_resource_mgmt_1 = (NUM_PS_STACK_ENTRIES(40) |
2078                                             NUM_VS_STACK_ENTRIES(40));
2079                 sq_stack_resource_mgmt_2 = (NUM_GS_STACK_ENTRIES(32) |
2080                                             NUM_ES_STACK_ENTRIES(16));
2081         } else if (((rdev->family) == CHIP_RV630) ||
2082                    ((rdev->family) == CHIP_RV635)) {
2083                 sq_gpr_resource_mgmt_1 = (NUM_PS_GPRS(44) |
2084                                           NUM_VS_GPRS(44) |
2085                                           NUM_CLAUSE_TEMP_GPRS(2));
2086                 sq_gpr_resource_mgmt_2 = (NUM_GS_GPRS(18) |
2087                                           NUM_ES_GPRS(18));
2088                 sq_thread_resource_mgmt = (NUM_PS_THREADS(79) |
2089                                            NUM_VS_THREADS(78) |
2090                                            NUM_GS_THREADS(4) |
2091                                            NUM_ES_THREADS(31));
2092                 sq_stack_resource_mgmt_1 = (NUM_PS_STACK_ENTRIES(40) |
2093                                             NUM_VS_STACK_ENTRIES(40));
2094                 sq_stack_resource_mgmt_2 = (NUM_GS_STACK_ENTRIES(32) |
2095                                             NUM_ES_STACK_ENTRIES(16));
2096         } else if ((rdev->family) == CHIP_RV670) {
2097                 sq_gpr_resource_mgmt_1 = (NUM_PS_GPRS(44) |
2098                                           NUM_VS_GPRS(44) |
2099                                           NUM_CLAUSE_TEMP_GPRS(2));
2100                 sq_gpr_resource_mgmt_2 = (NUM_GS_GPRS(17) |
2101                                           NUM_ES_GPRS(17));
2102                 sq_thread_resource_mgmt = (NUM_PS_THREADS(79) |
2103                                            NUM_VS_THREADS(78) |
2104                                            NUM_GS_THREADS(4) |
2105                                            NUM_ES_THREADS(31));
2106                 sq_stack_resource_mgmt_1 = (NUM_PS_STACK_ENTRIES(64) |
2107                                             NUM_VS_STACK_ENTRIES(64));
2108                 sq_stack_resource_mgmt_2 = (NUM_GS_STACK_ENTRIES(64) |
2109                                             NUM_ES_STACK_ENTRIES(64));
2110         }
2111
2112         WREG32(SQ_CONFIG, sq_config);
2113         WREG32(SQ_GPR_RESOURCE_MGMT_1,  sq_gpr_resource_mgmt_1);
2114         WREG32(SQ_GPR_RESOURCE_MGMT_2,  sq_gpr_resource_mgmt_2);
2115         WREG32(SQ_THREAD_RESOURCE_MGMT, sq_thread_resource_mgmt);
2116         WREG32(SQ_STACK_RESOURCE_MGMT_1, sq_stack_resource_mgmt_1);
2117         WREG32(SQ_STACK_RESOURCE_MGMT_2, sq_stack_resource_mgmt_2);
2118
2119         if (((rdev->family) == CHIP_RV610) ||
2120             ((rdev->family) == CHIP_RV620) ||
2121             ((rdev->family) == CHIP_RS780) ||
2122             ((rdev->family) == CHIP_RS880)) {
2123                 WREG32(VGT_CACHE_INVALIDATION, CACHE_INVALIDATION(TC_ONLY));
2124         } else {
2125                 WREG32(VGT_CACHE_INVALIDATION, CACHE_INVALIDATION(VC_AND_TC));
2126         }
2127
2128         /* More default values. 2D/3D driver should adjust as needed */
2129         WREG32(PA_SC_AA_SAMPLE_LOCS_2S, (S0_X(0xc) | S0_Y(0x4) |
2130                                          S1_X(0x4) | S1_Y(0xc)));
2131         WREG32(PA_SC_AA_SAMPLE_LOCS_4S, (S0_X(0xe) | S0_Y(0xe) |
2132                                          S1_X(0x2) | S1_Y(0x2) |
2133                                          S2_X(0xa) | S2_Y(0x6) |
2134                                          S3_X(0x6) | S3_Y(0xa)));
2135         WREG32(PA_SC_AA_SAMPLE_LOCS_8S_WD0, (S0_X(0xe) | S0_Y(0xb) |
2136                                              S1_X(0x4) | S1_Y(0xc) |
2137                                              S2_X(0x1) | S2_Y(0x6) |
2138                                              S3_X(0xa) | S3_Y(0xe)));
2139         WREG32(PA_SC_AA_SAMPLE_LOCS_8S_WD1, (S4_X(0x6) | S4_Y(0x1) |
2140                                              S5_X(0x0) | S5_Y(0x0) |
2141                                              S6_X(0xb) | S6_Y(0x4) |
2142                                              S7_X(0x7) | S7_Y(0x8)));
2143
2144         WREG32(VGT_STRMOUT_EN, 0);
2145         tmp = rdev->config.r600.max_pipes * 16;
2146         switch (rdev->family) {
2147         case CHIP_RV610:
2148         case CHIP_RV620:
2149         case CHIP_RS780:
2150         case CHIP_RS880:
2151                 tmp += 32;
2152                 break;
2153         case CHIP_RV670:
2154                 tmp += 128;
2155                 break;
2156         default:
2157                 break;
2158         }
2159         if (tmp > 256) {
2160                 tmp = 256;
2161         }
2162         WREG32(VGT_ES_PER_GS, 128);
2163         WREG32(VGT_GS_PER_ES, tmp);
2164         WREG32(VGT_GS_PER_VS, 2);
2165         WREG32(VGT_GS_VERTEX_REUSE, 16);
2166
2167         /* more default values. 2D/3D driver should adjust as needed */
2168         WREG32(PA_SC_LINE_STIPPLE_STATE, 0);
2169         WREG32(VGT_STRMOUT_EN, 0);
2170         WREG32(SX_MISC, 0);
2171         WREG32(PA_SC_MODE_CNTL, 0);
2172         WREG32(PA_SC_AA_CONFIG, 0);
2173         WREG32(PA_SC_LINE_STIPPLE, 0);
2174         WREG32(SPI_INPUT_Z, 0);
2175         WREG32(SPI_PS_IN_CONTROL_0, NUM_INTERP(2));
2176         WREG32(CB_COLOR7_FRAG, 0);
2177
2178         /* Clear render buffer base addresses */
2179         WREG32(CB_COLOR0_BASE, 0);
2180         WREG32(CB_COLOR1_BASE, 0);
2181         WREG32(CB_COLOR2_BASE, 0);
2182         WREG32(CB_COLOR3_BASE, 0);
2183         WREG32(CB_COLOR4_BASE, 0);
2184         WREG32(CB_COLOR5_BASE, 0);
2185         WREG32(CB_COLOR6_BASE, 0);
2186         WREG32(CB_COLOR7_BASE, 0);
2187         WREG32(CB_COLOR7_FRAG, 0);
2188
2189         switch (rdev->family) {
2190         case CHIP_RV610:
2191         case CHIP_RV620:
2192         case CHIP_RS780:
2193         case CHIP_RS880:
2194                 tmp = TC_L2_SIZE(8);
2195                 break;
2196         case CHIP_RV630:
2197         case CHIP_RV635:
2198                 tmp = TC_L2_SIZE(4);
2199                 break;
2200         case CHIP_R600:
2201                 tmp = TC_L2_SIZE(0) | L2_DISABLE_LATE_HIT;
2202                 break;
2203         default:
2204                 tmp = TC_L2_SIZE(0);
2205                 break;
2206         }
2207         WREG32(TC_CNTL, tmp);
2208
2209         tmp = RREG32(HDP_HOST_PATH_CNTL);
2210         WREG32(HDP_HOST_PATH_CNTL, tmp);
2211
2212         tmp = RREG32(ARB_POP);
2213         tmp |= ENABLE_TC128;
2214         WREG32(ARB_POP, tmp);
2215
2216         WREG32(PA_SC_MULTI_CHIP_CNTL, 0);
2217         WREG32(PA_CL_ENHANCE, (CLIP_VTX_REORDER_ENA |
2218                                NUM_CLIP_SEQ(3)));
2219         WREG32(PA_SC_ENHANCE, FORCE_EOV_MAX_CLK_CNT(4095));
2220         WREG32(VC_ENHANCE, 0);
2221 }
2222
2223
2224 /*
2225  * Indirect registers accessor
2226  */
2227 u32 r600_pciep_rreg(struct radeon_device *rdev, u32 reg)
2228 {
2229         unsigned long flags;
2230         u32 r;
2231
2232         spin_lock_irqsave(&rdev->pciep_idx_lock, flags);
2233         WREG32(PCIE_PORT_INDEX, ((reg) & 0xff));
2234         (void)RREG32(PCIE_PORT_INDEX);
2235         r = RREG32(PCIE_PORT_DATA);
2236         spin_unlock_irqrestore(&rdev->pciep_idx_lock, flags);
2237         return r;
2238 }
2239
2240 void r600_pciep_wreg(struct radeon_device *rdev, u32 reg, u32 v)
2241 {
2242         unsigned long flags;
2243
2244         spin_lock_irqsave(&rdev->pciep_idx_lock, flags);
2245         WREG32(PCIE_PORT_INDEX, ((reg) & 0xff));
2246         (void)RREG32(PCIE_PORT_INDEX);
2247         WREG32(PCIE_PORT_DATA, (v));
2248         (void)RREG32(PCIE_PORT_DATA);
2249         spin_unlock_irqrestore(&rdev->pciep_idx_lock, flags);
2250 }
2251
2252 /*
2253  * CP & Ring
2254  */
2255 void r600_cp_stop(struct radeon_device *rdev)
2256 {
2257         if (rdev->asic->copy.copy_ring_index == RADEON_RING_TYPE_GFX_INDEX)
2258                 radeon_ttm_set_active_vram_size(rdev, rdev->mc.visible_vram_size);
2259         WREG32(R_0086D8_CP_ME_CNTL, S_0086D8_CP_ME_HALT(1));
2260         WREG32(SCRATCH_UMSK, 0);
2261         rdev->ring[RADEON_RING_TYPE_GFX_INDEX].ready = false;
2262 }
2263
2264 int r600_init_microcode(struct radeon_device *rdev)
2265 {
2266         const char *chip_name;
2267         const char *rlc_chip_name;
2268         const char *smc_chip_name = "RV770";
2269         size_t pfp_req_size, me_req_size, rlc_req_size, smc_req_size = 0;
2270         char fw_name[30];
2271         int err;
2272
2273         DRM_DEBUG("\n");
2274
2275         switch (rdev->family) {
2276         case CHIP_R600:
2277                 chip_name = "R600";
2278                 rlc_chip_name = "R600";
2279                 break;
2280         case CHIP_RV610:
2281                 chip_name = "RV610";
2282                 rlc_chip_name = "R600";
2283                 break;
2284         case CHIP_RV630:
2285                 chip_name = "RV630";
2286                 rlc_chip_name = "R600";
2287                 break;
2288         case CHIP_RV620:
2289                 chip_name = "RV620";
2290                 rlc_chip_name = "R600";
2291                 break;
2292         case CHIP_RV635:
2293                 chip_name = "RV635";
2294                 rlc_chip_name = "R600";
2295                 break;
2296         case CHIP_RV670:
2297                 chip_name = "RV670";
2298                 rlc_chip_name = "R600";
2299                 break;
2300         case CHIP_RS780:
2301         case CHIP_RS880:
2302                 chip_name = "RS780";
2303                 rlc_chip_name = "R600";
2304                 break;
2305         case CHIP_RV770:
2306                 chip_name = "RV770";
2307                 rlc_chip_name = "R700";
2308                 smc_chip_name = "RV770";
2309                 smc_req_size = ALIGN(RV770_SMC_UCODE_SIZE, 4);
2310                 break;
2311         case CHIP_RV730:
2312                 chip_name = "RV730";
2313                 rlc_chip_name = "R700";
2314                 smc_chip_name = "RV730";
2315                 smc_req_size = ALIGN(RV730_SMC_UCODE_SIZE, 4);
2316                 break;
2317         case CHIP_RV710:
2318                 chip_name = "RV710";
2319                 rlc_chip_name = "R700";
2320                 smc_chip_name = "RV710";
2321                 smc_req_size = ALIGN(RV710_SMC_UCODE_SIZE, 4);
2322                 break;
2323         case CHIP_RV740:
2324                 chip_name = "RV730";
2325                 rlc_chip_name = "R700";
2326                 smc_chip_name = "RV740";
2327                 smc_req_size = ALIGN(RV740_SMC_UCODE_SIZE, 4);
2328                 break;
2329         case CHIP_CEDAR:
2330                 chip_name = "CEDAR";
2331                 rlc_chip_name = "CEDAR";
2332                 smc_chip_name = "CEDAR";
2333                 smc_req_size = ALIGN(CEDAR_SMC_UCODE_SIZE, 4);
2334                 break;
2335         case CHIP_REDWOOD:
2336                 chip_name = "REDWOOD";
2337                 rlc_chip_name = "REDWOOD";
2338                 smc_chip_name = "REDWOOD";
2339                 smc_req_size = ALIGN(REDWOOD_SMC_UCODE_SIZE, 4);
2340                 break;
2341         case CHIP_JUNIPER:
2342                 chip_name = "JUNIPER";
2343                 rlc_chip_name = "JUNIPER";
2344                 smc_chip_name = "JUNIPER";
2345                 smc_req_size = ALIGN(JUNIPER_SMC_UCODE_SIZE, 4);
2346                 break;
2347         case CHIP_CYPRESS:
2348         case CHIP_HEMLOCK:
2349                 chip_name = "CYPRESS";
2350                 rlc_chip_name = "CYPRESS";
2351                 smc_chip_name = "CYPRESS";
2352                 smc_req_size = ALIGN(CYPRESS_SMC_UCODE_SIZE, 4);
2353                 break;
2354         case CHIP_PALM:
2355                 chip_name = "PALM";
2356                 rlc_chip_name = "SUMO";
2357                 break;
2358         case CHIP_SUMO:
2359                 chip_name = "SUMO";
2360                 rlc_chip_name = "SUMO";
2361                 break;
2362         case CHIP_SUMO2:
2363                 chip_name = "SUMO2";
2364                 rlc_chip_name = "SUMO";
2365                 break;
2366         default: BUG();
2367         }
2368
2369         if (rdev->family >= CHIP_CEDAR) {
2370                 pfp_req_size = EVERGREEN_PFP_UCODE_SIZE * 4;
2371                 me_req_size = EVERGREEN_PM4_UCODE_SIZE * 4;
2372                 rlc_req_size = EVERGREEN_RLC_UCODE_SIZE * 4;
2373         } else if (rdev->family >= CHIP_RV770) {
2374                 pfp_req_size = R700_PFP_UCODE_SIZE * 4;
2375                 me_req_size = R700_PM4_UCODE_SIZE * 4;
2376                 rlc_req_size = R700_RLC_UCODE_SIZE * 4;
2377         } else {
2378                 pfp_req_size = R600_PFP_UCODE_SIZE * 4;
2379                 me_req_size = R600_PM4_UCODE_SIZE * 12;
2380                 rlc_req_size = R600_RLC_UCODE_SIZE * 4;
2381         }
2382
2383         DRM_INFO("Loading %s Microcode\n", chip_name);
2384
2385         snprintf(fw_name, sizeof(fw_name), "radeon/%s_pfp.bin", chip_name);
2386         err = request_firmware(&rdev->pfp_fw, fw_name, rdev->dev);
2387         if (err)
2388                 goto out;
2389         if (rdev->pfp_fw->size != pfp_req_size) {
2390                 printk(KERN_ERR
2391                        "r600_cp: Bogus length %zu in firmware \"%s\"\n",
2392                        rdev->pfp_fw->size, fw_name);
2393                 err = -EINVAL;
2394                 goto out;
2395         }
2396
2397         snprintf(fw_name, sizeof(fw_name), "radeon/%s_me.bin", chip_name);
2398         err = request_firmware(&rdev->me_fw, fw_name, rdev->dev);
2399         if (err)
2400                 goto out;
2401         if (rdev->me_fw->size != me_req_size) {
2402                 printk(KERN_ERR
2403                        "r600_cp: Bogus length %zu in firmware \"%s\"\n",
2404                        rdev->me_fw->size, fw_name);
2405                 err = -EINVAL;
2406         }
2407
2408         snprintf(fw_name, sizeof(fw_name), "radeon/%s_rlc.bin", rlc_chip_name);
2409         err = request_firmware(&rdev->rlc_fw, fw_name, rdev->dev);
2410         if (err)
2411                 goto out;
2412         if (rdev->rlc_fw->size != rlc_req_size) {
2413                 printk(KERN_ERR
2414                        "r600_rlc: Bogus length %zu in firmware \"%s\"\n",
2415                        rdev->rlc_fw->size, fw_name);
2416                 err = -EINVAL;
2417         }
2418
2419         if ((rdev->family >= CHIP_RV770) && (rdev->family <= CHIP_HEMLOCK)) {
2420                 snprintf(fw_name, sizeof(fw_name), "radeon/%s_smc.bin", smc_chip_name);
2421                 err = request_firmware(&rdev->smc_fw, fw_name, rdev->dev);
2422                 if (err) {
2423                         printk(KERN_ERR
2424                                "smc: error loading firmware \"%s\"\n",
2425                                fw_name);
2426                         release_firmware(rdev->smc_fw);
2427                         rdev->smc_fw = NULL;
2428                         err = 0;
2429                 } else if (rdev->smc_fw->size != smc_req_size) {
2430                         printk(KERN_ERR
2431                                "smc: Bogus length %zu in firmware \"%s\"\n",
2432                                rdev->smc_fw->size, fw_name);
2433                         err = -EINVAL;
2434                 }
2435         }
2436
2437 out:
2438         if (err) {
2439                 if (err != -EINVAL)
2440                         printk(KERN_ERR
2441                                "r600_cp: Failed to load firmware \"%s\"\n",
2442                                fw_name);
2443                 release_firmware(rdev->pfp_fw);
2444                 rdev->pfp_fw = NULL;
2445                 release_firmware(rdev->me_fw);
2446                 rdev->me_fw = NULL;
2447                 release_firmware(rdev->rlc_fw);
2448                 rdev->rlc_fw = NULL;
2449                 release_firmware(rdev->smc_fw);
2450                 rdev->smc_fw = NULL;
2451         }
2452         return err;
2453 }
2454
2455 u32 r600_gfx_get_rptr(struct radeon_device *rdev,
2456                       struct radeon_ring *ring)
2457 {
2458         u32 rptr;
2459
2460         if (rdev->wb.enabled)
2461                 rptr = rdev->wb.wb[ring->rptr_offs/4];
2462         else
2463                 rptr = RREG32(R600_CP_RB_RPTR);
2464
2465         return rptr;
2466 }
2467
2468 u32 r600_gfx_get_wptr(struct radeon_device *rdev,
2469                       struct radeon_ring *ring)
2470 {
2471         u32 wptr;
2472
2473         wptr = RREG32(R600_CP_RB_WPTR);
2474
2475         return wptr;
2476 }
2477
2478 void r600_gfx_set_wptr(struct radeon_device *rdev,
2479                        struct radeon_ring *ring)
2480 {
2481         WREG32(R600_CP_RB_WPTR, ring->wptr);
2482         (void)RREG32(R600_CP_RB_WPTR);
2483 }
2484
2485 static int r600_cp_load_microcode(struct radeon_device *rdev)
2486 {
2487         const __be32 *fw_data;
2488         int i;
2489
2490         if (!rdev->me_fw || !rdev->pfp_fw)
2491                 return -EINVAL;
2492
2493         r600_cp_stop(rdev);
2494
2495         WREG32(CP_RB_CNTL,
2496 #ifdef __BIG_ENDIAN
2497                BUF_SWAP_32BIT |
2498 #endif
2499                RB_NO_UPDATE | RB_BLKSZ(15) | RB_BUFSZ(3));
2500
2501         /* Reset cp */
2502         WREG32(GRBM_SOFT_RESET, SOFT_RESET_CP);
2503         RREG32(GRBM_SOFT_RESET);
2504         mdelay(15);
2505         WREG32(GRBM_SOFT_RESET, 0);
2506
2507         WREG32(CP_ME_RAM_WADDR, 0);
2508
2509         fw_data = (const __be32 *)rdev->me_fw->data;
2510         WREG32(CP_ME_RAM_WADDR, 0);
2511         for (i = 0; i < R600_PM4_UCODE_SIZE * 3; i++)
2512                 WREG32(CP_ME_RAM_DATA,
2513                        be32_to_cpup(fw_data++));
2514
2515         fw_data = (const __be32 *)rdev->pfp_fw->data;
2516         WREG32(CP_PFP_UCODE_ADDR, 0);
2517         for (i = 0; i < R600_PFP_UCODE_SIZE; i++)
2518                 WREG32(CP_PFP_UCODE_DATA,
2519                        be32_to_cpup(fw_data++));
2520
2521         WREG32(CP_PFP_UCODE_ADDR, 0);
2522         WREG32(CP_ME_RAM_WADDR, 0);
2523         WREG32(CP_ME_RAM_RADDR, 0);
2524         return 0;
2525 }
2526
2527 int r600_cp_start(struct radeon_device *rdev)
2528 {
2529         struct radeon_ring *ring = &rdev->ring[RADEON_RING_TYPE_GFX_INDEX];
2530         int r;
2531         uint32_t cp_me;
2532
2533         r = radeon_ring_lock(rdev, ring, 7);
2534         if (r) {
2535                 DRM_ERROR("radeon: cp failed to lock ring (%d).\n", r);
2536                 return r;
2537         }
2538         radeon_ring_write(ring, PACKET3(PACKET3_ME_INITIALIZE, 5));
2539         radeon_ring_write(ring, 0x1);
2540         if (rdev->family >= CHIP_RV770) {
2541                 radeon_ring_write(ring, 0x0);
2542                 radeon_ring_write(ring, rdev->config.rv770.max_hw_contexts - 1);
2543         } else {
2544                 radeon_ring_write(ring, 0x3);
2545                 radeon_ring_write(ring, rdev->config.r600.max_hw_contexts - 1);
2546         }
2547         radeon_ring_write(ring, PACKET3_ME_INITIALIZE_DEVICE_ID(1));
2548         radeon_ring_write(ring, 0);
2549         radeon_ring_write(ring, 0);
2550         radeon_ring_unlock_commit(rdev, ring);
2551
2552         cp_me = 0xff;
2553         WREG32(R_0086D8_CP_ME_CNTL, cp_me);
2554         return 0;
2555 }
2556
2557 int r600_cp_resume(struct radeon_device *rdev)
2558 {
2559         struct radeon_ring *ring = &rdev->ring[RADEON_RING_TYPE_GFX_INDEX];
2560         u32 tmp;
2561         u32 rb_bufsz;
2562         int r;
2563
2564         /* Reset cp */
2565         WREG32(GRBM_SOFT_RESET, SOFT_RESET_CP);
2566         RREG32(GRBM_SOFT_RESET);
2567         mdelay(15);
2568         WREG32(GRBM_SOFT_RESET, 0);
2569
2570         /* Set ring buffer size */
2571         rb_bufsz = order_base_2(ring->ring_size / 8);
2572         tmp = (order_base_2(RADEON_GPU_PAGE_SIZE/8) << 8) | rb_bufsz;
2573 #ifdef __BIG_ENDIAN
2574         tmp |= BUF_SWAP_32BIT;
2575 #endif
2576         WREG32(CP_RB_CNTL, tmp);
2577         WREG32(CP_SEM_WAIT_TIMER, 0x0);
2578
2579         /* Set the write pointer delay */
2580         WREG32(CP_RB_WPTR_DELAY, 0);
2581
2582         /* Initialize the ring buffer's read and write pointers */
2583         WREG32(CP_RB_CNTL, tmp | RB_RPTR_WR_ENA);
2584         WREG32(CP_RB_RPTR_WR, 0);
2585         ring->wptr = 0;
2586         WREG32(CP_RB_WPTR, ring->wptr);
2587
2588         /* set the wb address whether it's enabled or not */
2589         WREG32(CP_RB_RPTR_ADDR,
2590                ((rdev->wb.gpu_addr + RADEON_WB_CP_RPTR_OFFSET) & 0xFFFFFFFC));
2591         WREG32(CP_RB_RPTR_ADDR_HI, upper_32_bits(rdev->wb.gpu_addr + RADEON_WB_CP_RPTR_OFFSET) & 0xFF);
2592         WREG32(SCRATCH_ADDR, ((rdev->wb.gpu_addr + RADEON_WB_SCRATCH_OFFSET) >> 8) & 0xFFFFFFFF);
2593
2594         if (rdev->wb.enabled)
2595                 WREG32(SCRATCH_UMSK, 0xff);
2596         else {
2597                 tmp |= RB_NO_UPDATE;
2598                 WREG32(SCRATCH_UMSK, 0);
2599         }
2600
2601         mdelay(1);
2602         WREG32(CP_RB_CNTL, tmp);
2603
2604         WREG32(CP_RB_BASE, ring->gpu_addr >> 8);
2605         WREG32(CP_DEBUG, (1 << 27) | (1 << 28));
2606
2607         r600_cp_start(rdev);
2608         ring->ready = true;
2609         r = radeon_ring_test(rdev, RADEON_RING_TYPE_GFX_INDEX, ring);
2610         if (r) {
2611                 ring->ready = false;
2612                 return r;
2613         }
2614
2615         if (rdev->asic->copy.copy_ring_index == RADEON_RING_TYPE_GFX_INDEX)
2616                 radeon_ttm_set_active_vram_size(rdev, rdev->mc.real_vram_size);
2617
2618         return 0;
2619 }
2620
2621 void r600_ring_init(struct radeon_device *rdev, struct radeon_ring *ring, unsigned ring_size)
2622 {
2623         u32 rb_bufsz;
2624         int r;
2625
2626         /* Align ring size */
2627         rb_bufsz = order_base_2(ring_size / 8);
2628         ring_size = (1 << (rb_bufsz + 1)) * 4;
2629         ring->ring_size = ring_size;
2630         ring->align_mask = 16 - 1;
2631
2632         if (radeon_ring_supports_scratch_reg(rdev, ring)) {
2633                 r = radeon_scratch_get(rdev, &ring->rptr_save_reg);
2634                 if (r) {
2635                         DRM_ERROR("failed to get scratch reg for rptr save (%d).\n", r);
2636                         ring->rptr_save_reg = 0;
2637                 }
2638         }
2639 }
2640
2641 void r600_cp_fini(struct radeon_device *rdev)
2642 {
2643         struct radeon_ring *ring = &rdev->ring[RADEON_RING_TYPE_GFX_INDEX];
2644         r600_cp_stop(rdev);
2645         radeon_ring_fini(rdev, ring);
2646         radeon_scratch_free(rdev, ring->rptr_save_reg);
2647 }
2648
2649 /*
2650  * GPU scratch registers helpers function.
2651  */
2652 void r600_scratch_init(struct radeon_device *rdev)
2653 {
2654         int i;
2655
2656         rdev->scratch.num_reg = 7;
2657         rdev->scratch.reg_base = SCRATCH_REG0;
2658         for (i = 0; i < rdev->scratch.num_reg; i++) {
2659                 rdev->scratch.free[i] = true;
2660                 rdev->scratch.reg[i] = rdev->scratch.reg_base + (i * 4);
2661         }
2662 }
2663
2664 int r600_ring_test(struct radeon_device *rdev, struct radeon_ring *ring)
2665 {
2666         uint32_t scratch;
2667         uint32_t tmp = 0;
2668         unsigned i;
2669         int r;
2670
2671         r = radeon_scratch_get(rdev, &scratch);
2672         if (r) {
2673                 DRM_ERROR("radeon: cp failed to get scratch reg (%d).\n", r);
2674                 return r;
2675         }
2676         WREG32(scratch, 0xCAFEDEAD);
2677         r = radeon_ring_lock(rdev, ring, 3);
2678         if (r) {
2679                 DRM_ERROR("radeon: cp failed to lock ring %d (%d).\n", ring->idx, r);
2680                 radeon_scratch_free(rdev, scratch);
2681                 return r;
2682         }
2683         radeon_ring_write(ring, PACKET3(PACKET3_SET_CONFIG_REG, 1));
2684         radeon_ring_write(ring, ((scratch - PACKET3_SET_CONFIG_REG_OFFSET) >> 2));
2685         radeon_ring_write(ring, 0xDEADBEEF);
2686         radeon_ring_unlock_commit(rdev, ring);
2687         for (i = 0; i < rdev->usec_timeout; i++) {
2688                 tmp = RREG32(scratch);
2689                 if (tmp == 0xDEADBEEF)
2690                         break;
2691                 DRM_UDELAY(1);
2692         }
2693         if (i < rdev->usec_timeout) {
2694                 DRM_INFO("ring test on %d succeeded in %d usecs\n", ring->idx, i);
2695         } else {
2696                 DRM_ERROR("radeon: ring %d test failed (scratch(0x%04X)=0x%08X)\n",
2697                           ring->idx, scratch, tmp);
2698                 r = -EINVAL;
2699         }
2700         radeon_scratch_free(rdev, scratch);
2701         return r;
2702 }
2703
2704 /*
2705  * CP fences/semaphores
2706  */
2707
2708 void r600_fence_ring_emit(struct radeon_device *rdev,
2709                           struct radeon_fence *fence)
2710 {
2711         struct radeon_ring *ring = &rdev->ring[fence->ring];
2712         u32 cp_coher_cntl = PACKET3_TC_ACTION_ENA | PACKET3_VC_ACTION_ENA |
2713                 PACKET3_SH_ACTION_ENA;
2714
2715         if (rdev->family >= CHIP_RV770)
2716                 cp_coher_cntl |= PACKET3_FULL_CACHE_ENA;
2717
2718         if (rdev->wb.use_event) {
2719                 u64 addr = rdev->fence_drv[fence->ring].gpu_addr;
2720                 /* flush read cache over gart */
2721                 radeon_ring_write(ring, PACKET3(PACKET3_SURFACE_SYNC, 3));
2722                 radeon_ring_write(ring, cp_coher_cntl);
2723                 radeon_ring_write(ring, 0xFFFFFFFF);
2724                 radeon_ring_write(ring, 0);
2725                 radeon_ring_write(ring, 10); /* poll interval */
2726                 /* EVENT_WRITE_EOP - flush caches, send int */
2727                 radeon_ring_write(ring, PACKET3(PACKET3_EVENT_WRITE_EOP, 4));
2728                 radeon_ring_write(ring, EVENT_TYPE(CACHE_FLUSH_AND_INV_EVENT_TS) | EVENT_INDEX(5));
2729                 radeon_ring_write(ring, lower_32_bits(addr));
2730                 radeon_ring_write(ring, (upper_32_bits(addr) & 0xff) | DATA_SEL(1) | INT_SEL(2));
2731                 radeon_ring_write(ring, fence->seq);
2732                 radeon_ring_write(ring, 0);
2733         } else {
2734                 /* flush read cache over gart */
2735                 radeon_ring_write(ring, PACKET3(PACKET3_SURFACE_SYNC, 3));
2736                 radeon_ring_write(ring, cp_coher_cntl);
2737                 radeon_ring_write(ring, 0xFFFFFFFF);
2738                 radeon_ring_write(ring, 0);
2739                 radeon_ring_write(ring, 10); /* poll interval */
2740                 radeon_ring_write(ring, PACKET3(PACKET3_EVENT_WRITE, 0));
2741                 radeon_ring_write(ring, EVENT_TYPE(CACHE_FLUSH_AND_INV_EVENT) | EVENT_INDEX(0));
2742                 /* wait for 3D idle clean */
2743                 radeon_ring_write(ring, PACKET3(PACKET3_SET_CONFIG_REG, 1));
2744                 radeon_ring_write(ring, (WAIT_UNTIL - PACKET3_SET_CONFIG_REG_OFFSET) >> 2);
2745                 radeon_ring_write(ring, WAIT_3D_IDLE_bit | WAIT_3D_IDLECLEAN_bit);
2746                 /* Emit fence sequence & fire IRQ */
2747                 radeon_ring_write(ring, PACKET3(PACKET3_SET_CONFIG_REG, 1));
2748                 radeon_ring_write(ring, ((rdev->fence_drv[fence->ring].scratch_reg - PACKET3_SET_CONFIG_REG_OFFSET) >> 2));
2749                 radeon_ring_write(ring, fence->seq);
2750                 /* CP_INTERRUPT packet 3 no longer exists, use packet 0 */
2751                 radeon_ring_write(ring, PACKET0(CP_INT_STATUS, 0));
2752                 radeon_ring_write(ring, RB_INT_STAT);
2753         }
2754 }
2755
2756 bool r600_semaphore_ring_emit(struct radeon_device *rdev,
2757                               struct radeon_ring *ring,
2758                               struct radeon_semaphore *semaphore,
2759                               bool emit_wait)
2760 {
2761         uint64_t addr = semaphore->gpu_addr;
2762         unsigned sel = emit_wait ? PACKET3_SEM_SEL_WAIT : PACKET3_SEM_SEL_SIGNAL;
2763
2764         if (rdev->family < CHIP_CAYMAN)
2765                 sel |= PACKET3_SEM_WAIT_ON_SIGNAL;
2766
2767         radeon_ring_write(ring, PACKET3(PACKET3_MEM_SEMAPHORE, 1));
2768         radeon_ring_write(ring, lower_32_bits(addr));
2769         radeon_ring_write(ring, (upper_32_bits(addr) & 0xff) | sel);
2770
2771         return true;
2772 }
2773
2774 /**
2775  * r600_copy_cpdma - copy pages using the CP DMA engine
2776  *
2777  * @rdev: radeon_device pointer
2778  * @src_offset: src GPU address
2779  * @dst_offset: dst GPU address
2780  * @num_gpu_pages: number of GPU pages to xfer
2781  * @fence: radeon fence object
2782  *
2783  * Copy GPU paging using the CP DMA engine (r6xx+).
2784  * Used by the radeon ttm implementation to move pages if
2785  * registered as the asic copy callback.
2786  */
2787 int r600_copy_cpdma(struct radeon_device *rdev,
2788                     uint64_t src_offset, uint64_t dst_offset,
2789                     unsigned num_gpu_pages,
2790                     struct radeon_fence **fence)
2791 {
2792         struct radeon_semaphore *sem = NULL;
2793         int ring_index = rdev->asic->copy.blit_ring_index;
2794         struct radeon_ring *ring = &rdev->ring[ring_index];
2795         u32 size_in_bytes, cur_size_in_bytes, tmp;
2796         int i, num_loops;
2797         int r = 0;
2798
2799         r = radeon_semaphore_create(rdev, &sem);
2800         if (r) {
2801                 DRM_ERROR("radeon: moving bo (%d).\n", r);
2802                 return r;
2803         }
2804
2805         size_in_bytes = (num_gpu_pages << RADEON_GPU_PAGE_SHIFT);
2806         num_loops = DIV_ROUND_UP(size_in_bytes, 0x1fffff);
2807         r = radeon_ring_lock(rdev, ring, num_loops * 6 + 24);
2808         if (r) {
2809                 DRM_ERROR("radeon: moving bo (%d).\n", r);
2810                 radeon_semaphore_free(rdev, &sem, NULL);
2811                 return r;
2812         }
2813
2814         radeon_semaphore_sync_to(sem, *fence);
2815         radeon_semaphore_sync_rings(rdev, sem, ring->idx);
2816
2817         radeon_ring_write(ring, PACKET3(PACKET3_SET_CONFIG_REG, 1));
2818         radeon_ring_write(ring, (WAIT_UNTIL - PACKET3_SET_CONFIG_REG_OFFSET) >> 2);
2819         radeon_ring_write(ring, WAIT_3D_IDLE_bit);
2820         for (i = 0; i < num_loops; i++) {
2821                 cur_size_in_bytes = size_in_bytes;
2822                 if (cur_size_in_bytes > 0x1fffff)
2823                         cur_size_in_bytes = 0x1fffff;
2824                 size_in_bytes -= cur_size_in_bytes;
2825                 tmp = upper_32_bits(src_offset) & 0xff;
2826                 if (size_in_bytes == 0)
2827                         tmp |= PACKET3_CP_DMA_CP_SYNC;
2828                 radeon_ring_write(ring, PACKET3(PACKET3_CP_DMA, 4));
2829                 radeon_ring_write(ring, lower_32_bits(src_offset));
2830                 radeon_ring_write(ring, tmp);
2831                 radeon_ring_write(ring, lower_32_bits(dst_offset));
2832                 radeon_ring_write(ring, upper_32_bits(dst_offset) & 0xff);
2833                 radeon_ring_write(ring, cur_size_in_bytes);
2834                 src_offset += cur_size_in_bytes;
2835                 dst_offset += cur_size_in_bytes;
2836         }
2837         radeon_ring_write(ring, PACKET3(PACKET3_SET_CONFIG_REG, 1));
2838         radeon_ring_write(ring, (WAIT_UNTIL - PACKET3_SET_CONFIG_REG_OFFSET) >> 2);
2839         radeon_ring_write(ring, WAIT_CP_DMA_IDLE_bit);
2840
2841         r = radeon_fence_emit(rdev, fence, ring->idx);
2842         if (r) {
2843                 radeon_ring_unlock_undo(rdev, ring);
2844                 radeon_semaphore_free(rdev, &sem, NULL);
2845                 return r;
2846         }
2847
2848         radeon_ring_unlock_commit(rdev, ring);
2849         radeon_semaphore_free(rdev, &sem, *fence);
2850
2851         return r;
2852 }
2853
2854 int r600_set_surface_reg(struct radeon_device *rdev, int reg,
2855                          uint32_t tiling_flags, uint32_t pitch,
2856                          uint32_t offset, uint32_t obj_size)
2857 {
2858         /* FIXME: implement */
2859         return 0;
2860 }
2861
2862 void r600_clear_surface_reg(struct radeon_device *rdev, int reg)
2863 {
2864         /* FIXME: implement */
2865 }
2866
2867 static int r600_startup(struct radeon_device *rdev)
2868 {
2869         struct radeon_ring *ring;
2870         int r;
2871
2872         /* enable pcie gen2 link */
2873         r600_pcie_gen2_enable(rdev);
2874
2875         /* scratch needs to be initialized before MC */
2876         r = r600_vram_scratch_init(rdev);
2877         if (r)
2878                 return r;
2879
2880         r600_mc_program(rdev);
2881
2882         if (rdev->flags & RADEON_IS_AGP) {
2883                 r600_agp_enable(rdev);
2884         } else {
2885                 r = r600_pcie_gart_enable(rdev);
2886                 if (r)
2887                         return r;
2888         }
2889         r600_gpu_init(rdev);
2890
2891         /* allocate wb buffer */
2892         r = radeon_wb_init(rdev);
2893         if (r)
2894                 return r;
2895
2896         r = radeon_fence_driver_start_ring(rdev, RADEON_RING_TYPE_GFX_INDEX);
2897         if (r) {
2898                 dev_err(rdev->dev, "failed initializing CP fences (%d).\n", r);
2899                 return r;
2900         }
2901
2902         /* Enable IRQ */
2903         if (!rdev->irq.installed) {
2904                 r = radeon_irq_kms_init(rdev);
2905                 if (r)
2906                         return r;
2907         }
2908
2909         r = r600_irq_init(rdev);
2910         if (r) {
2911                 DRM_ERROR("radeon: IH init failed (%d).\n", r);
2912                 radeon_irq_kms_fini(rdev);
2913                 return r;
2914         }
2915         r600_irq_set(rdev);
2916
2917         ring = &rdev->ring[RADEON_RING_TYPE_GFX_INDEX];
2918         r = radeon_ring_init(rdev, ring, ring->ring_size, RADEON_WB_CP_RPTR_OFFSET,
2919                              RADEON_CP_PACKET2);
2920         if (r)
2921                 return r;
2922
2923         r = r600_cp_load_microcode(rdev);
2924         if (r)
2925                 return r;
2926         r = r600_cp_resume(rdev);
2927         if (r)
2928                 return r;
2929
2930         r = radeon_ib_pool_init(rdev);
2931         if (r) {
2932                 dev_err(rdev->dev, "IB initialization failed (%d).\n", r);
2933                 return r;
2934         }
2935
2936         r = r600_audio_init(rdev);
2937         if (r) {
2938                 DRM_ERROR("radeon: audio init failed\n");
2939                 return r;
2940         }
2941
2942         return 0;
2943 }
2944
2945 void r600_vga_set_state(struct radeon_device *rdev, bool state)
2946 {
2947         uint32_t temp;
2948
2949         temp = RREG32(CONFIG_CNTL);
2950         if (state == false) {
2951                 temp &= ~(1<<0);
2952                 temp |= (1<<1);
2953         } else {
2954                 temp &= ~(1<<1);
2955         }
2956         WREG32(CONFIG_CNTL, temp);
2957 }
2958
2959 int r600_resume(struct radeon_device *rdev)
2960 {
2961         int r;
2962
2963         /* Do not reset GPU before posting, on r600 hw unlike on r500 hw,
2964          * posting will perform necessary task to bring back GPU into good
2965          * shape.
2966          */
2967         /* post card */
2968         atom_asic_init(rdev->mode_info.atom_context);
2969
2970         if (rdev->pm.pm_method == PM_METHOD_DPM)
2971                 radeon_pm_resume(rdev);
2972
2973         rdev->accel_working = true;
2974         r = r600_startup(rdev);
2975         if (r) {
2976                 DRM_ERROR("r600 startup failed on resume\n");
2977                 rdev->accel_working = false;
2978                 return r;
2979         }
2980
2981         return r;
2982 }
2983
2984 int r600_suspend(struct radeon_device *rdev)
2985 {
2986         radeon_pm_suspend(rdev);
2987         r600_audio_fini(rdev);
2988         r600_cp_stop(rdev);
2989         r600_irq_suspend(rdev);
2990         radeon_wb_disable(rdev);
2991         r600_pcie_gart_disable(rdev);
2992
2993         return 0;
2994 }
2995
2996 /* Plan is to move initialization in that function and use
2997  * helper function so that radeon_device_init pretty much
2998  * do nothing more than calling asic specific function. This
2999  * should also allow to remove a bunch of callback function
3000  * like vram_info.
3001  */
3002 int r600_init(struct radeon_device *rdev)
3003 {
3004         int r;
3005
3006         if (r600_debugfs_mc_info_init(rdev)) {
3007                 DRM_ERROR("Failed to register debugfs file for mc !\n");
3008         }
3009         /* Read BIOS */
3010         if (!radeon_get_bios(rdev)) {
3011                 if (ASIC_IS_AVIVO(rdev))
3012                         return -EINVAL;
3013         }
3014         /* Must be an ATOMBIOS */
3015         if (!rdev->is_atom_bios) {
3016                 dev_err(rdev->dev, "Expecting atombios for R600 GPU\n");
3017                 return -EINVAL;
3018         }
3019         r = radeon_atombios_init(rdev);
3020         if (r)
3021                 return r;
3022         /* Post card if necessary */
3023         if (!radeon_card_posted(rdev)) {
3024                 if (!rdev->bios) {
3025                         dev_err(rdev->dev, "Card not posted and no BIOS - ignoring\n");
3026                         return -EINVAL;
3027                 }
3028                 DRM_INFO("GPU not posted. posting now...\n");
3029                 atom_asic_init(rdev->mode_info.atom_context);
3030         }
3031         /* Initialize scratch registers */
3032         r600_scratch_init(rdev);
3033         /* Initialize surface registers */
3034         radeon_surface_init(rdev);
3035         /* Initialize clocks */
3036         radeon_get_clock_info(rdev->ddev);
3037         /* Fence driver */
3038         r = radeon_fence_driver_init(rdev);
3039         if (r)
3040                 return r;
3041         if (rdev->flags & RADEON_IS_AGP) {
3042                 r = radeon_agp_init(rdev);
3043                 if (r)
3044                         radeon_agp_disable(rdev);
3045         }
3046         r = r600_mc_init(rdev);
3047         if (r)
3048                 return r;
3049         /* Memory manager */
3050         r = radeon_bo_init(rdev);
3051         if (r)
3052                 return r;
3053
3054         if (!rdev->me_fw || !rdev->pfp_fw || !rdev->rlc_fw) {
3055                 r = r600_init_microcode(rdev);
3056                 if (r) {
3057                         DRM_ERROR("Failed to load firmware!\n");
3058                         return r;
3059                 }
3060         }
3061
3062         /* Initialize power management */
3063         radeon_pm_init(rdev);
3064
3065         rdev->ring[RADEON_RING_TYPE_GFX_INDEX].ring_obj = NULL;
3066         r600_ring_init(rdev, &rdev->ring[RADEON_RING_TYPE_GFX_INDEX], 1024 * 1024);
3067
3068         rdev->ih.ring_obj = NULL;
3069         r600_ih_ring_init(rdev, 64 * 1024);
3070
3071         r = r600_pcie_gart_init(rdev);
3072         if (r)
3073                 return r;
3074
3075         rdev->accel_working = true;
3076         r = r600_startup(rdev);
3077         if (r) {
3078                 dev_err(rdev->dev, "disabling GPU acceleration\n");
3079                 r600_cp_fini(rdev);
3080                 r600_irq_fini(rdev);
3081                 radeon_wb_fini(rdev);
3082                 radeon_ib_pool_fini(rdev);
3083                 radeon_irq_kms_fini(rdev);
3084                 r600_pcie_gart_fini(rdev);
3085                 rdev->accel_working = false;
3086         }
3087
3088         return 0;
3089 }
3090
3091 void r600_fini(struct radeon_device *rdev)
3092 {
3093         radeon_pm_fini(rdev);
3094         r600_audio_fini(rdev);
3095         r600_cp_fini(rdev);
3096         r600_irq_fini(rdev);
3097         radeon_wb_fini(rdev);
3098         radeon_ib_pool_fini(rdev);
3099         radeon_irq_kms_fini(rdev);
3100         r600_pcie_gart_fini(rdev);
3101         r600_vram_scratch_fini(rdev);
3102         radeon_agp_fini(rdev);
3103         radeon_gem_fini(rdev);
3104         radeon_fence_driver_fini(rdev);
3105         radeon_bo_fini(rdev);
3106         radeon_atombios_fini(rdev);
3107         kfree(rdev->bios);
3108         rdev->bios = NULL;
3109 }
3110
3111
3112 /*
3113  * CS stuff
3114  */
3115 void r600_ring_ib_execute(struct radeon_device *rdev, struct radeon_ib *ib)
3116 {
3117         struct radeon_ring *ring = &rdev->ring[ib->ring];
3118         u32 next_rptr;
3119
3120         if (ring->rptr_save_reg) {
3121                 next_rptr = ring->wptr + 3 + 4;
3122                 radeon_ring_write(ring, PACKET3(PACKET3_SET_CONFIG_REG, 1));
3123                 radeon_ring_write(ring, ((ring->rptr_save_reg -
3124                                          PACKET3_SET_CONFIG_REG_OFFSET) >> 2));
3125                 radeon_ring_write(ring, next_rptr);
3126         } else if (rdev->wb.enabled) {
3127                 next_rptr = ring->wptr + 5 + 4;
3128                 radeon_ring_write(ring, PACKET3(PACKET3_MEM_WRITE, 3));
3129                 radeon_ring_write(ring, ring->next_rptr_gpu_addr & 0xfffffffc);
3130                 radeon_ring_write(ring, (upper_32_bits(ring->next_rptr_gpu_addr) & 0xff) | (1 << 18));
3131                 radeon_ring_write(ring, next_rptr);
3132                 radeon_ring_write(ring, 0);
3133         }
3134
3135         radeon_ring_write(ring, PACKET3(PACKET3_INDIRECT_BUFFER, 2));
3136         radeon_ring_write(ring,
3137 #ifdef __BIG_ENDIAN
3138                           (2 << 0) |
3139 #endif
3140                           (ib->gpu_addr & 0xFFFFFFFC));
3141         radeon_ring_write(ring, upper_32_bits(ib->gpu_addr) & 0xFF);
3142         radeon_ring_write(ring, ib->length_dw);
3143 }
3144
3145 int r600_ib_test(struct radeon_device *rdev, struct radeon_ring *ring)
3146 {
3147         struct radeon_ib ib;
3148         uint32_t scratch;
3149         uint32_t tmp = 0;
3150         unsigned i;
3151         int r;
3152
3153         r = radeon_scratch_get(rdev, &scratch);
3154         if (r) {
3155                 DRM_ERROR("radeon: failed to get scratch reg (%d).\n", r);
3156                 return r;
3157         }
3158         WREG32(scratch, 0xCAFEDEAD);
3159         r = radeon_ib_get(rdev, ring->idx, &ib, NULL, 256);
3160         if (r) {
3161                 DRM_ERROR("radeon: failed to get ib (%d).\n", r);
3162                 goto free_scratch;
3163         }
3164         ib.ptr[0] = PACKET3(PACKET3_SET_CONFIG_REG, 1);
3165         ib.ptr[1] = ((scratch - PACKET3_SET_CONFIG_REG_OFFSET) >> 2);
3166         ib.ptr[2] = 0xDEADBEEF;
3167         ib.length_dw = 3;
3168         r = radeon_ib_schedule(rdev, &ib, NULL);
3169         if (r) {
3170                 DRM_ERROR("radeon: failed to schedule ib (%d).\n", r);
3171                 goto free_ib;
3172         }
3173         r = radeon_fence_wait(ib.fence, false);
3174         if (r) {
3175                 DRM_ERROR("radeon: fence wait failed (%d).\n", r);
3176                 goto free_ib;
3177         }
3178         for (i = 0; i < rdev->usec_timeout; i++) {
3179                 tmp = RREG32(scratch);
3180                 if (tmp == 0xDEADBEEF)
3181                         break;
3182                 DRM_UDELAY(1);
3183         }
3184         if (i < rdev->usec_timeout) {
3185                 DRM_INFO("ib test on ring %d succeeded in %u usecs\n", ib.fence->ring, i);
3186         } else {
3187                 DRM_ERROR("radeon: ib test failed (scratch(0x%04X)=0x%08X)\n",
3188                           scratch, tmp);
3189                 r = -EINVAL;
3190         }
3191 free_ib:
3192         radeon_ib_free(rdev, &ib);
3193 free_scratch:
3194         radeon_scratch_free(rdev, scratch);
3195         return r;
3196 }
3197
3198 /*
3199  * Interrupts
3200  *
3201  * Interrupts use a ring buffer on r6xx/r7xx hardware.  It works pretty
3202  * the same as the CP ring buffer, but in reverse.  Rather than the CPU
3203  * writing to the ring and the GPU consuming, the GPU writes to the ring
3204  * and host consumes.  As the host irq handler processes interrupts, it
3205  * increments the rptr.  When the rptr catches up with the wptr, all the
3206  * current interrupts have been processed.
3207  */
3208
3209 void r600_ih_ring_init(struct radeon_device *rdev, unsigned ring_size)
3210 {
3211         u32 rb_bufsz;
3212
3213         /* Align ring size */
3214         rb_bufsz = order_base_2(ring_size / 4);
3215         ring_size = (1 << rb_bufsz) * 4;
3216         rdev->ih.ring_size = ring_size;
3217         rdev->ih.ptr_mask = rdev->ih.ring_size - 1;
3218         rdev->ih.rptr = 0;
3219 }
3220
3221 int r600_ih_ring_alloc(struct radeon_device *rdev)
3222 {
3223         int r;
3224
3225         /* Allocate ring buffer */
3226         if (rdev->ih.ring_obj == NULL) {
3227                 r = radeon_bo_create(rdev, rdev->ih.ring_size,
3228                                      PAGE_SIZE, true,
3229                                      RADEON_GEM_DOMAIN_GTT, 0,
3230                                      NULL, &rdev->ih.ring_obj);
3231                 if (r) {
3232                         DRM_ERROR("radeon: failed to create ih ring buffer (%d).\n", r);
3233                         return r;
3234                 }
3235                 r = radeon_bo_reserve(rdev->ih.ring_obj, false);
3236                 if (unlikely(r != 0))
3237                         return r;
3238                 r = radeon_bo_pin(rdev->ih.ring_obj,
3239                                   RADEON_GEM_DOMAIN_GTT,
3240                                   &rdev->ih.gpu_addr);
3241                 if (r) {
3242                         radeon_bo_unreserve(rdev->ih.ring_obj);
3243                         DRM_ERROR("radeon: failed to pin ih ring buffer (%d).\n", r);
3244                         return r;
3245                 }
3246                 r = radeon_bo_kmap(rdev->ih.ring_obj,
3247                                    (void **)&rdev->ih.ring);
3248                 radeon_bo_unreserve(rdev->ih.ring_obj);
3249                 if (r) {
3250                         DRM_ERROR("radeon: failed to map ih ring buffer (%d).\n", r);
3251                         return r;
3252                 }
3253         }
3254         return 0;
3255 }
3256
3257 void r600_ih_ring_fini(struct radeon_device *rdev)
3258 {
3259         int r;
3260         if (rdev->ih.ring_obj) {
3261                 r = radeon_bo_reserve(rdev->ih.ring_obj, false);
3262                 if (likely(r == 0)) {
3263                         radeon_bo_kunmap(rdev->ih.ring_obj);
3264                         radeon_bo_unpin(rdev->ih.ring_obj);
3265                         radeon_bo_unreserve(rdev->ih.ring_obj);
3266                 }
3267                 radeon_bo_unref(&rdev->ih.ring_obj);
3268                 rdev->ih.ring = NULL;
3269                 rdev->ih.ring_obj = NULL;
3270         }
3271 }
3272
3273 void r600_rlc_stop(struct radeon_device *rdev)
3274 {
3275
3276         if ((rdev->family >= CHIP_RV770) &&
3277             (rdev->family <= CHIP_RV740)) {
3278                 /* r7xx asics need to soft reset RLC before halting */
3279                 WREG32(SRBM_SOFT_RESET, SOFT_RESET_RLC);
3280                 RREG32(SRBM_SOFT_RESET);
3281                 mdelay(15);
3282                 WREG32(SRBM_SOFT_RESET, 0);
3283                 RREG32(SRBM_SOFT_RESET);
3284         }
3285
3286         WREG32(RLC_CNTL, 0);
3287 }
3288
3289 static void r600_rlc_start(struct radeon_device *rdev)
3290 {
3291         WREG32(RLC_CNTL, RLC_ENABLE);
3292 }
3293
3294 static int r600_rlc_resume(struct radeon_device *rdev)
3295 {
3296         u32 i;
3297         const __be32 *fw_data;
3298
3299         if (!rdev->rlc_fw)
3300                 return -EINVAL;
3301
3302         r600_rlc_stop(rdev);
3303
3304         WREG32(RLC_HB_CNTL, 0);
3305
3306         WREG32(RLC_HB_BASE, 0);
3307         WREG32(RLC_HB_RPTR, 0);
3308         WREG32(RLC_HB_WPTR, 0);
3309         WREG32(RLC_HB_WPTR_LSB_ADDR, 0);
3310         WREG32(RLC_HB_WPTR_MSB_ADDR, 0);
3311         WREG32(RLC_MC_CNTL, 0);
3312         WREG32(RLC_UCODE_CNTL, 0);
3313
3314         fw_data = (const __be32 *)rdev->rlc_fw->data;
3315         if (rdev->family >= CHIP_RV770) {
3316                 for (i = 0; i < R700_RLC_UCODE_SIZE; i++) {
3317                         WREG32(RLC_UCODE_ADDR, i);
3318                         WREG32(RLC_UCODE_DATA, be32_to_cpup(fw_data++));
3319                 }
3320         } else {
3321                 for (i = 0; i < R600_RLC_UCODE_SIZE; i++) {
3322                         WREG32(RLC_UCODE_ADDR, i);
3323                         WREG32(RLC_UCODE_DATA, be32_to_cpup(fw_data++));
3324                 }
3325         }
3326         WREG32(RLC_UCODE_ADDR, 0);
3327
3328         r600_rlc_start(rdev);
3329
3330         return 0;
3331 }
3332
3333 static void r600_enable_interrupts(struct radeon_device *rdev)
3334 {
3335         u32 ih_cntl = RREG32(IH_CNTL);
3336         u32 ih_rb_cntl = RREG32(IH_RB_CNTL);
3337
3338         ih_cntl |= ENABLE_INTR;
3339         ih_rb_cntl |= IH_RB_ENABLE;
3340         WREG32(IH_CNTL, ih_cntl);
3341         WREG32(IH_RB_CNTL, ih_rb_cntl);
3342         rdev->ih.enabled = true;
3343 }
3344
3345 void r600_disable_interrupts(struct radeon_device *rdev)
3346 {
3347         u32 ih_rb_cntl = RREG32(IH_RB_CNTL);
3348         u32 ih_cntl = RREG32(IH_CNTL);
3349
3350         ih_rb_cntl &= ~IH_RB_ENABLE;
3351         ih_cntl &= ~ENABLE_INTR;
3352         WREG32(IH_RB_CNTL, ih_rb_cntl);
3353         WREG32(IH_CNTL, ih_cntl);
3354         /* set rptr, wptr to 0 */
3355         WREG32(IH_RB_RPTR, 0);
3356         WREG32(IH_RB_WPTR, 0);
3357         rdev->ih.enabled = false;
3358         rdev->ih.rptr = 0;
3359 }
3360
3361 static void r600_disable_interrupt_state(struct radeon_device *rdev)
3362 {
3363         u32 tmp;
3364
3365         WREG32(CP_INT_CNTL, CNTX_BUSY_INT_ENABLE | CNTX_EMPTY_INT_ENABLE);
3366         tmp = RREG32(DMA_CNTL) & ~TRAP_ENABLE;
3367         WREG32(DMA_CNTL, tmp);
3368         WREG32(GRBM_INT_CNTL, 0);
3369         WREG32(DxMODE_INT_MASK, 0);
3370         WREG32(D1GRPH_INTERRUPT_CONTROL, 0);
3371         WREG32(D2GRPH_INTERRUPT_CONTROL, 0);
3372         if (ASIC_IS_DCE3(rdev)) {
3373                 WREG32(DCE3_DACA_AUTODETECT_INT_CONTROL, 0);
3374                 WREG32(DCE3_DACB_AUTODETECT_INT_CONTROL, 0);
3375                 tmp = RREG32(DC_HPD1_INT_CONTROL) & DC_HPDx_INT_POLARITY;
3376                 WREG32(DC_HPD1_INT_CONTROL, tmp);
3377                 tmp = RREG32(DC_HPD2_INT_CONTROL) & DC_HPDx_INT_POLARITY;
3378                 WREG32(DC_HPD2_INT_CONTROL, tmp);
3379                 tmp = RREG32(DC_HPD3_INT_CONTROL) & DC_HPDx_INT_POLARITY;
3380                 WREG32(DC_HPD3_INT_CONTROL, tmp);
3381                 tmp = RREG32(DC_HPD4_INT_CONTROL) & DC_HPDx_INT_POLARITY;
3382                 WREG32(DC_HPD4_INT_CONTROL, tmp);
3383                 if (ASIC_IS_DCE32(rdev)) {
3384                         tmp = RREG32(DC_HPD5_INT_CONTROL) & DC_HPDx_INT_POLARITY;
3385                         WREG32(DC_HPD5_INT_CONTROL, tmp);
3386                         tmp = RREG32(DC_HPD6_INT_CONTROL) & DC_HPDx_INT_POLARITY;
3387                         WREG32(DC_HPD6_INT_CONTROL, tmp);
3388                         tmp = RREG32(AFMT_AUDIO_PACKET_CONTROL + DCE3_HDMI_OFFSET0) & ~HDMI0_AZ_FORMAT_WTRIG_MASK;
3389                         WREG32(AFMT_AUDIO_PACKET_CONTROL + DCE3_HDMI_OFFSET0, tmp);
3390                         tmp = RREG32(AFMT_AUDIO_PACKET_CONTROL + DCE3_HDMI_OFFSET1) & ~HDMI0_AZ_FORMAT_WTRIG_MASK;
3391                         WREG32(AFMT_AUDIO_PACKET_CONTROL + DCE3_HDMI_OFFSET1, tmp);
3392                 } else {
3393                         tmp = RREG32(HDMI0_AUDIO_PACKET_CONTROL) & ~HDMI0_AZ_FORMAT_WTRIG_MASK;
3394                         WREG32(HDMI0_AUDIO_PACKET_CONTROL, tmp);
3395                         tmp = RREG32(DCE3_HDMI1_AUDIO_PACKET_CONTROL) & ~HDMI0_AZ_FORMAT_WTRIG_MASK;
3396                         WREG32(DCE3_HDMI1_AUDIO_PACKET_CONTROL, tmp);
3397                 }
3398         } else {
3399                 WREG32(DACA_AUTODETECT_INT_CONTROL, 0);
3400                 WREG32(DACB_AUTODETECT_INT_CONTROL, 0);
3401                 tmp = RREG32(DC_HOT_PLUG_DETECT1_INT_CONTROL) & DC_HOT_PLUG_DETECTx_INT_POLARITY;
3402                 WREG32(DC_HOT_PLUG_DETECT1_INT_CONTROL, tmp);
3403                 tmp = RREG32(DC_HOT_PLUG_DETECT2_INT_CONTROL) & DC_HOT_PLUG_DETECTx_INT_POLARITY;
3404                 WREG32(DC_HOT_PLUG_DETECT2_INT_CONTROL, tmp);
3405                 tmp = RREG32(DC_HOT_PLUG_DETECT3_INT_CONTROL) & DC_HOT_PLUG_DETECTx_INT_POLARITY;
3406                 WREG32(DC_HOT_PLUG_DETECT3_INT_CONTROL, tmp);
3407                 tmp = RREG32(HDMI0_AUDIO_PACKET_CONTROL) & ~HDMI0_AZ_FORMAT_WTRIG_MASK;
3408                 WREG32(HDMI0_AUDIO_PACKET_CONTROL, tmp);
3409                 tmp = RREG32(HDMI1_AUDIO_PACKET_CONTROL) & ~HDMI0_AZ_FORMAT_WTRIG_MASK;
3410                 WREG32(HDMI1_AUDIO_PACKET_CONTROL, tmp);
3411         }
3412 }
3413
3414 int r600_irq_init(struct radeon_device *rdev)
3415 {
3416         int ret = 0;
3417         int rb_bufsz;
3418         u32 interrupt_cntl, ih_cntl, ih_rb_cntl;
3419
3420         /* allocate ring */
3421         ret = r600_ih_ring_alloc(rdev);
3422         if (ret)
3423                 return ret;
3424
3425         /* disable irqs */
3426         r600_disable_interrupts(rdev);
3427
3428         /* init rlc */
3429         if (rdev->family >= CHIP_CEDAR)
3430                 ret = evergreen_rlc_resume(rdev);
3431         else
3432                 ret = r600_rlc_resume(rdev);
3433         if (ret) {
3434                 r600_ih_ring_fini(rdev);
3435                 return ret;
3436         }
3437
3438         /* setup interrupt control */
3439         /* set dummy read address to ring address */
3440         WREG32(INTERRUPT_CNTL2, rdev->ih.gpu_addr >> 8);
3441         interrupt_cntl = RREG32(INTERRUPT_CNTL);
3442         /* IH_DUMMY_RD_OVERRIDE=0 - dummy read disabled with msi, enabled without msi
3443          * IH_DUMMY_RD_OVERRIDE=1 - dummy read controlled by IH_DUMMY_RD_EN
3444          */
3445         interrupt_cntl &= ~IH_DUMMY_RD_OVERRIDE;
3446         /* IH_REQ_NONSNOOP_EN=1 if ring is in non-cacheable memory, e.g., vram */
3447         interrupt_cntl &= ~IH_REQ_NONSNOOP_EN;
3448         WREG32(INTERRUPT_CNTL, interrupt_cntl);
3449
3450         WREG32(IH_RB_BASE, rdev->ih.gpu_addr >> 8);
3451         rb_bufsz = order_base_2(rdev->ih.ring_size / 4);
3452
3453         ih_rb_cntl = (IH_WPTR_OVERFLOW_ENABLE |
3454                       IH_WPTR_OVERFLOW_CLEAR |
3455                       (rb_bufsz << 1));
3456
3457         if (rdev->wb.enabled)
3458                 ih_rb_cntl |= IH_WPTR_WRITEBACK_ENABLE;
3459
3460         /* set the writeback address whether it's enabled or not */
3461         WREG32(IH_RB_WPTR_ADDR_LO, (rdev->wb.gpu_addr + R600_WB_IH_WPTR_OFFSET) & 0xFFFFFFFC);
3462         WREG32(IH_RB_WPTR_ADDR_HI, upper_32_bits(rdev->wb.gpu_addr + R600_WB_IH_WPTR_OFFSET) & 0xFF);
3463
3464         WREG32(IH_RB_CNTL, ih_rb_cntl);
3465
3466         /* set rptr, wptr to 0 */
3467         WREG32(IH_RB_RPTR, 0);
3468         WREG32(IH_RB_WPTR, 0);
3469
3470         /* Default settings for IH_CNTL (disabled at first) */
3471         ih_cntl = MC_WRREQ_CREDIT(0x10) | MC_WR_CLEAN_CNT(0x10);
3472         /* RPTR_REARM only works if msi's are enabled */
3473         if (rdev->msi_enabled)
3474                 ih_cntl |= RPTR_REARM;
3475         WREG32(IH_CNTL, ih_cntl);
3476
3477         /* force the active interrupt state to all disabled */
3478         if (rdev->family >= CHIP_CEDAR)
3479                 evergreen_disable_interrupt_state(rdev);
3480         else
3481                 r600_disable_interrupt_state(rdev);
3482
3483         /* at this point everything should be setup correctly to enable master */
3484         pci_set_master(rdev->pdev);
3485
3486         /* enable irqs */
3487         r600_enable_interrupts(rdev);
3488
3489         return ret;
3490 }
3491
3492 void r600_irq_suspend(struct radeon_device *rdev)
3493 {
3494         r600_irq_disable(rdev);
3495         r600_rlc_stop(rdev);
3496 }
3497
3498 void r600_irq_fini(struct radeon_device *rdev)
3499 {
3500         r600_irq_suspend(rdev);
3501         r600_ih_ring_fini(rdev);
3502 }
3503
3504 int r600_irq_set(struct radeon_device *rdev)
3505 {
3506         u32 cp_int_cntl = CNTX_BUSY_INT_ENABLE | CNTX_EMPTY_INT_ENABLE;
3507         u32 mode_int = 0;
3508         u32 hpd1, hpd2, hpd3, hpd4 = 0, hpd5 = 0, hpd6 = 0;
3509         u32 grbm_int_cntl = 0;
3510         u32 hdmi0, hdmi1;
3511         u32 dma_cntl;
3512         u32 thermal_int = 0;
3513
3514         if (!rdev->irq.installed) {
3515                 WARN(1, "Can't enable IRQ/MSI because no handler is installed\n");
3516                 return -EINVAL;
3517         }
3518         /* don't enable anything if the ih is disabled */
3519         if (!rdev->ih.enabled) {
3520                 r600_disable_interrupts(rdev);
3521                 /* force the active interrupt state to all disabled */
3522                 r600_disable_interrupt_state(rdev);
3523                 return 0;
3524         }
3525
3526         if (ASIC_IS_DCE3(rdev)) {
3527                 hpd1 = RREG32(DC_HPD1_INT_CONTROL) & ~DC_HPDx_INT_EN;
3528                 hpd2 = RREG32(DC_HPD2_INT_CONTROL) & ~DC_HPDx_INT_EN;
3529                 hpd3 = RREG32(DC_HPD3_INT_CONTROL) & ~DC_HPDx_INT_EN;
3530                 hpd4 = RREG32(DC_HPD4_INT_CONTROL) & ~DC_HPDx_INT_EN;
3531                 if (ASIC_IS_DCE32(rdev)) {
3532                         hpd5 = RREG32(DC_HPD5_INT_CONTROL) & ~DC_HPDx_INT_EN;
3533                         hpd6 = RREG32(DC_HPD6_INT_CONTROL) & ~DC_HPDx_INT_EN;
3534                         hdmi0 = RREG32(AFMT_AUDIO_PACKET_CONTROL + DCE3_HDMI_OFFSET0) & ~AFMT_AZ_FORMAT_WTRIG_MASK;
3535                         hdmi1 = RREG32(AFMT_AUDIO_PACKET_CONTROL + DCE3_HDMI_OFFSET1) & ~AFMT_AZ_FORMAT_WTRIG_MASK;
3536                 } else {
3537                         hdmi0 = RREG32(HDMI0_AUDIO_PACKET_CONTROL) & ~HDMI0_AZ_FORMAT_WTRIG_MASK;
3538                         hdmi1 = RREG32(DCE3_HDMI1_AUDIO_PACKET_CONTROL) & ~HDMI0_AZ_FORMAT_WTRIG_MASK;
3539                 }
3540         } else {
3541                 hpd1 = RREG32(DC_HOT_PLUG_DETECT1_INT_CONTROL) & ~DC_HPDx_INT_EN;
3542                 hpd2 = RREG32(DC_HOT_PLUG_DETECT2_INT_CONTROL) & ~DC_HPDx_INT_EN;
3543                 hpd3 = RREG32(DC_HOT_PLUG_DETECT3_INT_CONTROL) & ~DC_HPDx_INT_EN;
3544                 hdmi0 = RREG32(HDMI0_AUDIO_PACKET_CONTROL) & ~HDMI0_AZ_FORMAT_WTRIG_MASK;
3545                 hdmi1 = RREG32(HDMI1_AUDIO_PACKET_CONTROL) & ~HDMI0_AZ_FORMAT_WTRIG_MASK;
3546         }
3547
3548         dma_cntl = RREG32(DMA_CNTL) & ~TRAP_ENABLE;
3549
3550         if ((rdev->family > CHIP_R600) && (rdev->family < CHIP_RV770)) {
3551                 thermal_int = RREG32(CG_THERMAL_INT) &
3552                         ~(THERM_INT_MASK_HIGH | THERM_INT_MASK_LOW);
3553         } else if (rdev->family >= CHIP_RV770) {
3554                 thermal_int = RREG32(RV770_CG_THERMAL_INT) &
3555                         ~(THERM_INT_MASK_HIGH | THERM_INT_MASK_LOW);
3556         }
3557         if (rdev->irq.dpm_thermal) {
3558                 DRM_DEBUG("dpm thermal\n");
3559                 thermal_int |= THERM_INT_MASK_HIGH | THERM_INT_MASK_LOW;
3560         }
3561
3562         if (atomic_read(&rdev->irq.ring_int[RADEON_RING_TYPE_GFX_INDEX])) {
3563                 DRM_DEBUG("r600_irq_set: sw int\n");
3564                 cp_int_cntl |= RB_INT_ENABLE;
3565                 cp_int_cntl |= TIME_STAMP_INT_ENABLE;
3566         }
3567
3568         if (atomic_read(&rdev->irq.ring_int[R600_RING_TYPE_DMA_INDEX])) {
3569                 DRM_DEBUG("r600_irq_set: sw int dma\n");
3570                 dma_cntl |= TRAP_ENABLE;
3571         }
3572
3573         if (rdev->irq.crtc_vblank_int[0] ||
3574             atomic_read(&rdev->irq.pflip[0])) {
3575                 DRM_DEBUG("r600_irq_set: vblank 0\n");
3576                 mode_int |= D1MODE_VBLANK_INT_MASK;
3577         }
3578         if (rdev->irq.crtc_vblank_int[1] ||
3579             atomic_read(&rdev->irq.pflip[1])) {
3580                 DRM_DEBUG("r600_irq_set: vblank 1\n");
3581                 mode_int |= D2MODE_VBLANK_INT_MASK;
3582         }
3583         if (rdev->irq.hpd[0]) {
3584                 DRM_DEBUG("r600_irq_set: hpd 1\n");
3585                 hpd1 |= DC_HPDx_INT_EN;
3586         }
3587         if (rdev->irq.hpd[1]) {
3588                 DRM_DEBUG("r600_irq_set: hpd 2\n");
3589                 hpd2 |= DC_HPDx_INT_EN;
3590         }
3591         if (rdev->irq.hpd[2]) {
3592                 DRM_DEBUG("r600_irq_set: hpd 3\n");
3593                 hpd3 |= DC_HPDx_INT_EN;
3594         }
3595         if (rdev->irq.hpd[3]) {
3596                 DRM_DEBUG("r600_irq_set: hpd 4\n");
3597                 hpd4 |= DC_HPDx_INT_EN;
3598         }
3599         if (rdev->irq.hpd[4]) {
3600                 DRM_DEBUG("r600_irq_set: hpd 5\n");
3601                 hpd5 |= DC_HPDx_INT_EN;
3602         }
3603         if (rdev->irq.hpd[5]) {
3604                 DRM_DEBUG("r600_irq_set: hpd 6\n");
3605                 hpd6 |= DC_HPDx_INT_EN;
3606         }
3607         if (rdev->irq.afmt[0]) {
3608                 DRM_DEBUG("r600_irq_set: hdmi 0\n");
3609                 hdmi0 |= HDMI0_AZ_FORMAT_WTRIG_MASK;
3610         }
3611         if (rdev->irq.afmt[1]) {
3612                 DRM_DEBUG("r600_irq_set: hdmi 0\n");
3613                 hdmi1 |= HDMI0_AZ_FORMAT_WTRIG_MASK;
3614         }
3615
3616         WREG32(CP_INT_CNTL, cp_int_cntl);
3617         WREG32(DMA_CNTL, dma_cntl);
3618         WREG32(DxMODE_INT_MASK, mode_int);
3619         WREG32(D1GRPH_INTERRUPT_CONTROL, DxGRPH_PFLIP_INT_MASK);
3620         WREG32(D2GRPH_INTERRUPT_CONTROL, DxGRPH_PFLIP_INT_MASK);
3621         WREG32(GRBM_INT_CNTL, grbm_int_cntl);
3622         if (ASIC_IS_DCE3(rdev)) {
3623                 WREG32(DC_HPD1_INT_CONTROL, hpd1);
3624                 WREG32(DC_HPD2_INT_CONTROL, hpd2);
3625                 WREG32(DC_HPD3_INT_CONTROL, hpd3);
3626                 WREG32(DC_HPD4_INT_CONTROL, hpd4);
3627                 if (ASIC_IS_DCE32(rdev)) {
3628                         WREG32(DC_HPD5_INT_CONTROL, hpd5);
3629                         WREG32(DC_HPD6_INT_CONTROL, hpd6);
3630                         WREG32(AFMT_AUDIO_PACKET_CONTROL + DCE3_HDMI_OFFSET0, hdmi0);
3631                         WREG32(AFMT_AUDIO_PACKET_CONTROL + DCE3_HDMI_OFFSET1, hdmi1);
3632                 } else {
3633                         WREG32(HDMI0_AUDIO_PACKET_CONTROL, hdmi0);
3634                         WREG32(DCE3_HDMI1_AUDIO_PACKET_CONTROL, hdmi1);
3635                 }
3636         } else {
3637                 WREG32(DC_HOT_PLUG_DETECT1_INT_CONTROL, hpd1);
3638                 WREG32(DC_HOT_PLUG_DETECT2_INT_CONTROL, hpd2);
3639                 WREG32(DC_HOT_PLUG_DETECT3_INT_CONTROL, hpd3);
3640                 WREG32(HDMI0_AUDIO_PACKET_CONTROL, hdmi0);
3641                 WREG32(HDMI1_AUDIO_PACKET_CONTROL, hdmi1);
3642         }
3643         if ((rdev->family > CHIP_R600) && (rdev->family < CHIP_RV770)) {
3644                 WREG32(CG_THERMAL_INT, thermal_int);
3645         } else if (rdev->family >= CHIP_RV770) {
3646                 WREG32(RV770_CG_THERMAL_INT, thermal_int);
3647         }
3648
3649         return 0;
3650 }
3651
3652 static void r600_irq_ack(struct radeon_device *rdev)
3653 {
3654         u32 tmp;
3655
3656         if (ASIC_IS_DCE3(rdev)) {
3657                 rdev->irq.stat_regs.r600.disp_int = RREG32(DCE3_DISP_INTERRUPT_STATUS);
3658                 rdev->irq.stat_regs.r600.disp_int_cont = RREG32(DCE3_DISP_INTERRUPT_STATUS_CONTINUE);
3659                 rdev->irq.stat_regs.r600.disp_int_cont2 = RREG32(DCE3_DISP_INTERRUPT_STATUS_CONTINUE2);
3660                 if (ASIC_IS_DCE32(rdev)) {
3661                         rdev->irq.stat_regs.r600.hdmi0_status = RREG32(AFMT_STATUS + DCE3_HDMI_OFFSET0);
3662                         rdev->irq.stat_regs.r600.hdmi1_status = RREG32(AFMT_STATUS + DCE3_HDMI_OFFSET1);
3663                 } else {
3664                         rdev->irq.stat_regs.r600.hdmi0_status = RREG32(HDMI0_STATUS);
3665                         rdev->irq.stat_regs.r600.hdmi1_status = RREG32(DCE3_HDMI1_STATUS);
3666                 }
3667         } else {
3668                 rdev->irq.stat_regs.r600.disp_int = RREG32(DISP_INTERRUPT_STATUS);
3669                 rdev->irq.stat_regs.r600.disp_int_cont = RREG32(DISP_INTERRUPT_STATUS_CONTINUE);
3670                 rdev->irq.stat_regs.r600.disp_int_cont2 = 0;
3671                 rdev->irq.stat_regs.r600.hdmi0_status = RREG32(HDMI0_STATUS);
3672                 rdev->irq.stat_regs.r600.hdmi1_status = RREG32(HDMI1_STATUS);
3673         }
3674         rdev->irq.stat_regs.r600.d1grph_int = RREG32(D1GRPH_INTERRUPT_STATUS);
3675         rdev->irq.stat_regs.r600.d2grph_int = RREG32(D2GRPH_INTERRUPT_STATUS);
3676
3677         if (rdev->irq.stat_regs.r600.d1grph_int & DxGRPH_PFLIP_INT_OCCURRED)
3678                 WREG32(D1GRPH_INTERRUPT_STATUS, DxGRPH_PFLIP_INT_CLEAR);
3679         if (rdev->irq.stat_regs.r600.d2grph_int & DxGRPH_PFLIP_INT_OCCURRED)
3680                 WREG32(D2GRPH_INTERRUPT_STATUS, DxGRPH_PFLIP_INT_CLEAR);
3681         if (rdev->irq.stat_regs.r600.disp_int & LB_D1_VBLANK_INTERRUPT)
3682                 WREG32(D1MODE_VBLANK_STATUS, DxMODE_VBLANK_ACK);
3683         if (rdev->irq.stat_regs.r600.disp_int & LB_D1_VLINE_INTERRUPT)
3684                 WREG32(D1MODE_VLINE_STATUS, DxMODE_VLINE_ACK);
3685         if (rdev->irq.stat_regs.r600.disp_int & LB_D2_VBLANK_INTERRUPT)
3686                 WREG32(D2MODE_VBLANK_STATUS, DxMODE_VBLANK_ACK);
3687         if (rdev->irq.stat_regs.r600.disp_int & LB_D2_VLINE_INTERRUPT)
3688                 WREG32(D2MODE_VLINE_STATUS, DxMODE_VLINE_ACK);
3689         if (rdev->irq.stat_regs.r600.disp_int & DC_HPD1_INTERRUPT) {
3690                 if (ASIC_IS_DCE3(rdev)) {
3691                         tmp = RREG32(DC_HPD1_INT_CONTROL);
3692                         tmp |= DC_HPDx_INT_ACK;
3693                         WREG32(DC_HPD1_INT_CONTROL, tmp);
3694                 } else {
3695                         tmp = RREG32(DC_HOT_PLUG_DETECT1_INT_CONTROL);
3696                         tmp |= DC_HPDx_INT_ACK;
3697                         WREG32(DC_HOT_PLUG_DETECT1_INT_CONTROL, tmp);
3698                 }
3699         }
3700         if (rdev->irq.stat_regs.r600.disp_int & DC_HPD2_INTERRUPT) {
3701                 if (ASIC_IS_DCE3(rdev)) {
3702                         tmp = RREG32(DC_HPD2_INT_CONTROL);
3703                         tmp |= DC_HPDx_INT_ACK;
3704                         WREG32(DC_HPD2_INT_CONTROL, tmp);
3705                 } else {
3706                         tmp = RREG32(DC_HOT_PLUG_DETECT2_INT_CONTROL);
3707                         tmp |= DC_HPDx_INT_ACK;
3708                         WREG32(DC_HOT_PLUG_DETECT2_INT_CONTROL, tmp);
3709                 }
3710         }
3711         if (rdev->irq.stat_regs.r600.disp_int_cont & DC_HPD3_INTERRUPT) {
3712                 if (ASIC_IS_DCE3(rdev)) {
3713                         tmp = RREG32(DC_HPD3_INT_CONTROL);
3714                         tmp |= DC_HPDx_INT_ACK;
3715                         WREG32(DC_HPD3_INT_CONTROL, tmp);
3716                 } else {
3717                         tmp = RREG32(DC_HOT_PLUG_DETECT3_INT_CONTROL);
3718                         tmp |= DC_HPDx_INT_ACK;
3719                         WREG32(DC_HOT_PLUG_DETECT3_INT_CONTROL, tmp);
3720                 }
3721         }
3722         if (rdev->irq.stat_regs.r600.disp_int_cont & DC_HPD4_INTERRUPT) {
3723                 tmp = RREG32(DC_HPD4_INT_CONTROL);
3724                 tmp |= DC_HPDx_INT_ACK;
3725                 WREG32(DC_HPD4_INT_CONTROL, tmp);
3726         }
3727         if (ASIC_IS_DCE32(rdev)) {
3728                 if (rdev->irq.stat_regs.r600.disp_int_cont2 & DC_HPD5_INTERRUPT) {
3729                         tmp = RREG32(DC_HPD5_INT_CONTROL);
3730                         tmp |= DC_HPDx_INT_ACK;
3731                         WREG32(DC_HPD5_INT_CONTROL, tmp);
3732                 }
3733                 if (rdev->irq.stat_regs.r600.disp_int_cont2 & DC_HPD6_INTERRUPT) {
3734                         tmp = RREG32(DC_HPD5_INT_CONTROL);
3735                         tmp |= DC_HPDx_INT_ACK;
3736                         WREG32(DC_HPD6_INT_CONTROL, tmp);
3737                 }
3738                 if (rdev->irq.stat_regs.r600.hdmi0_status & AFMT_AZ_FORMAT_WTRIG) {
3739                         tmp = RREG32(AFMT_AUDIO_PACKET_CONTROL + DCE3_HDMI_OFFSET0);
3740                         tmp |= AFMT_AZ_FORMAT_WTRIG_ACK;
3741                         WREG32(AFMT_AUDIO_PACKET_CONTROL + DCE3_HDMI_OFFSET0, tmp);
3742                 }
3743                 if (rdev->irq.stat_regs.r600.hdmi1_status & AFMT_AZ_FORMAT_WTRIG) {
3744                         tmp = RREG32(AFMT_AUDIO_PACKET_CONTROL + DCE3_HDMI_OFFSET1);
3745                         tmp |= AFMT_AZ_FORMAT_WTRIG_ACK;
3746                         WREG32(AFMT_AUDIO_PACKET_CONTROL + DCE3_HDMI_OFFSET1, tmp);
3747                 }
3748         } else {
3749                 if (rdev->irq.stat_regs.r600.hdmi0_status & HDMI0_AZ_FORMAT_WTRIG) {
3750                         tmp = RREG32(HDMI0_AUDIO_PACKET_CONTROL);
3751                         tmp |= HDMI0_AZ_FORMAT_WTRIG_ACK;
3752                         WREG32(HDMI0_AUDIO_PACKET_CONTROL, tmp);
3753                 }
3754                 if (rdev->irq.stat_regs.r600.hdmi1_status & HDMI0_AZ_FORMAT_WTRIG) {
3755                         if (ASIC_IS_DCE3(rdev)) {
3756                                 tmp = RREG32(DCE3_HDMI1_AUDIO_PACKET_CONTROL);
3757                                 tmp |= HDMI0_AZ_FORMAT_WTRIG_ACK;
3758                                 WREG32(DCE3_HDMI1_AUDIO_PACKET_CONTROL, tmp);
3759                         } else {
3760                                 tmp = RREG32(HDMI1_AUDIO_PACKET_CONTROL);
3761                                 tmp |= HDMI0_AZ_FORMAT_WTRIG_ACK;
3762                                 WREG32(HDMI1_AUDIO_PACKET_CONTROL, tmp);
3763                         }
3764                 }
3765         }
3766 }
3767
3768 void r600_irq_disable(struct radeon_device *rdev)
3769 {
3770         r600_disable_interrupts(rdev);
3771         /* Wait and acknowledge irq */
3772         mdelay(1);
3773         r600_irq_ack(rdev);
3774         r600_disable_interrupt_state(rdev);
3775 }
3776
3777 static u32 r600_get_ih_wptr(struct radeon_device *rdev)
3778 {
3779         u32 wptr, tmp;
3780
3781         if (rdev->wb.enabled)
3782                 wptr = le32_to_cpu(rdev->wb.wb[R600_WB_IH_WPTR_OFFSET/4]);
3783         else
3784                 wptr = RREG32(IH_RB_WPTR);
3785
3786         if (wptr & RB_OVERFLOW) {
3787                 /* When a ring buffer overflow happen start parsing interrupt
3788                  * from the last not overwritten vector (wptr + 16). Hopefully
3789                  * this should allow us to catchup.
3790                  */
3791                 dev_warn(rdev->dev, "IH ring buffer overflow (0x%08X, %d, %d)\n",
3792                         wptr, rdev->ih.rptr, (wptr + 16) + rdev->ih.ptr_mask);
3793                 rdev->ih.rptr = (wptr + 16) & rdev->ih.ptr_mask;
3794                 tmp = RREG32(IH_RB_CNTL);
3795                 tmp |= IH_WPTR_OVERFLOW_CLEAR;
3796                 WREG32(IH_RB_CNTL, tmp);
3797                 wptr &= ~RB_OVERFLOW;
3798         }
3799         return (wptr & rdev->ih.ptr_mask);
3800 }
3801
3802 /*        r600 IV Ring
3803  * Each IV ring entry is 128 bits:
3804  * [7:0]    - interrupt source id
3805  * [31:8]   - reserved
3806  * [59:32]  - interrupt source data
3807  * [127:60]  - reserved
3808  *
3809  * The basic interrupt vector entries
3810  * are decoded as follows:
3811  * src_id  src_data  description
3812  *      1         0  D1 Vblank
3813  *      1         1  D1 Vline
3814  *      5         0  D2 Vblank
3815  *      5         1  D2 Vline
3816  *     19         0  FP Hot plug detection A
3817  *     19         1  FP Hot plug detection B
3818  *     19         2  DAC A auto-detection
3819  *     19         3  DAC B auto-detection
3820  *     21         4  HDMI block A
3821  *     21         5  HDMI block B
3822  *    176         -  CP_INT RB
3823  *    177         -  CP_INT IB1
3824  *    178         -  CP_INT IB2
3825  *    181         -  EOP Interrupt
3826  *    233         -  GUI Idle
3827  *
3828  * Note, these are based on r600 and may need to be
3829  * adjusted or added to on newer asics
3830  */
3831
3832 int r600_irq_process(struct radeon_device *rdev)
3833 {
3834         u32 wptr;
3835         u32 rptr;
3836         u32 src_id, src_data;
3837         u32 ring_index;
3838         bool queue_hotplug = false;
3839         bool queue_hdmi = false;
3840         bool queue_thermal = false;
3841
3842         if (!rdev->ih.enabled || rdev->shutdown)
3843                 return IRQ_NONE;
3844
3845         /* No MSIs, need a dummy read to flush PCI DMAs */
3846         if (!rdev->msi_enabled)
3847                 RREG32(IH_RB_WPTR);
3848
3849         wptr = r600_get_ih_wptr(rdev);
3850
3851 restart_ih:
3852         /* is somebody else already processing irqs? */
3853         if (atomic_xchg(&rdev->ih.lock, 1))
3854                 return IRQ_NONE;
3855
3856         rptr = rdev->ih.rptr;
3857         DRM_DEBUG("r600_irq_process start: rptr %d, wptr %d\n", rptr, wptr);
3858
3859         /* Order reading of wptr vs. reading of IH ring data */
3860         rmb();
3861
3862         /* display interrupts */
3863         r600_irq_ack(rdev);
3864
3865         while (rptr != wptr) {
3866                 /* wptr/rptr are in bytes! */
3867                 ring_index = rptr / 4;
3868                 src_id = le32_to_cpu(rdev->ih.ring[ring_index]) & 0xff;
3869                 src_data = le32_to_cpu(rdev->ih.ring[ring_index + 1]) & 0xfffffff;
3870
3871                 switch (src_id) {
3872                 case 1: /* D1 vblank/vline */
3873                         switch (src_data) {
3874                         case 0: /* D1 vblank */
3875                                 if (rdev->irq.stat_regs.r600.disp_int & LB_D1_VBLANK_INTERRUPT) {
3876                                         if (rdev->irq.crtc_vblank_int[0]) {
3877                                                 drm_handle_vblank(rdev->ddev, 0);
3878                                                 rdev->pm.vblank_sync = true;
3879                                                 wake_up(&rdev->irq.vblank_queue);
3880                                         }
3881                                         if (atomic_read(&rdev->irq.pflip[0]))
3882                                                 radeon_crtc_handle_vblank(rdev, 0);
3883                                         rdev->irq.stat_regs.r600.disp_int &= ~LB_D1_VBLANK_INTERRUPT;
3884                                         DRM_DEBUG("IH: D1 vblank\n");
3885                                 }
3886                                 break;
3887                         case 1: /* D1 vline */
3888                                 if (rdev->irq.stat_regs.r600.disp_int & LB_D1_VLINE_INTERRUPT) {
3889                                         rdev->irq.stat_regs.r600.disp_int &= ~LB_D1_VLINE_INTERRUPT;
3890                                         DRM_DEBUG("IH: D1 vline\n");
3891                                 }
3892                                 break;
3893                         default:
3894                                 DRM_DEBUG("Unhandled interrupt: %d %d\n", src_id, src_data);
3895                                 break;
3896                         }
3897                         break;
3898                 case 5: /* D2 vblank/vline */
3899                         switch (src_data) {
3900                         case 0: /* D2 vblank */
3901                                 if (rdev->irq.stat_regs.r600.disp_int & LB_D2_VBLANK_INTERRUPT) {
3902                                         if (rdev->irq.crtc_vblank_int[1]) {
3903                                                 drm_handle_vblank(rdev->ddev, 1);
3904                                                 rdev->pm.vblank_sync = true;
3905                                                 wake_up(&rdev->irq.vblank_queue);
3906                                         }
3907                                         if (atomic_read(&rdev->irq.pflip[1]))
3908                                                 radeon_crtc_handle_vblank(rdev, 1);
3909                                         rdev->irq.stat_regs.r600.disp_int &= ~LB_D2_VBLANK_INTERRUPT;
3910                                         DRM_DEBUG("IH: D2 vblank\n");
3911                                 }
3912                                 break;
3913                         case 1: /* D1 vline */
3914                                 if (rdev->irq.stat_regs.r600.disp_int & LB_D2_VLINE_INTERRUPT) {
3915                                         rdev->irq.stat_regs.r600.disp_int &= ~LB_D2_VLINE_INTERRUPT;
3916                                         DRM_DEBUG("IH: D2 vline\n");
3917                                 }
3918                                 break;
3919                         default:
3920                                 DRM_DEBUG("Unhandled interrupt: %d %d\n", src_id, src_data);
3921                                 break;
3922                         }
3923                         break;
3924                 case 9: /* D1 pflip */
3925                         DRM_DEBUG("IH: D1 flip\n");
3926                         if (radeon_use_pflipirq > 0)
3927                                 radeon_crtc_handle_flip(rdev, 0);
3928                         break;
3929                 case 11: /* D2 pflip */
3930                         DRM_DEBUG("IH: D2 flip\n");
3931                         if (radeon_use_pflipirq > 0)
3932                                 radeon_crtc_handle_flip(rdev, 1);
3933                         break;
3934                 case 19: /* HPD/DAC hotplug */
3935                         switch (src_data) {
3936                         case 0:
3937                                 if (rdev->irq.stat_regs.r600.disp_int & DC_HPD1_INTERRUPT) {
3938                                         rdev->irq.stat_regs.r600.disp_int &= ~DC_HPD1_INTERRUPT;
3939                                         queue_hotplug = true;
3940                                         DRM_DEBUG("IH: HPD1\n");
3941                                 }
3942                                 break;
3943                         case 1:
3944                                 if (rdev->irq.stat_regs.r600.disp_int & DC_HPD2_INTERRUPT) {
3945                                         rdev->irq.stat_regs.r600.disp_int &= ~DC_HPD2_INTERRUPT;
3946                                         queue_hotplug = true;
3947                                         DRM_DEBUG("IH: HPD2\n");
3948                                 }
3949                                 break;
3950                         case 4:
3951                                 if (rdev->irq.stat_regs.r600.disp_int_cont & DC_HPD3_INTERRUPT) {
3952                                         rdev->irq.stat_regs.r600.disp_int_cont &= ~DC_HPD3_INTERRUPT;
3953                                         queue_hotplug = true;
3954                                         DRM_DEBUG("IH: HPD3\n");
3955                                 }
3956                                 break;
3957                         case 5:
3958                                 if (rdev->irq.stat_regs.r600.disp_int_cont & DC_HPD4_INTERRUPT) {
3959                                         rdev->irq.stat_regs.r600.disp_int_cont &= ~DC_HPD4_INTERRUPT;
3960                                         queue_hotplug = true;
3961                                         DRM_DEBUG("IH: HPD4\n");
3962                                 }
3963                                 break;
3964                         case 10:
3965                                 if (rdev->irq.stat_regs.r600.disp_int_cont2 & DC_HPD5_INTERRUPT) {
3966                                         rdev->irq.stat_regs.r600.disp_int_cont2 &= ~DC_HPD5_INTERRUPT;
3967                                         queue_hotplug = true;
3968                                         DRM_DEBUG("IH: HPD5\n");
3969                                 }
3970                                 break;
3971                         case 12:
3972                                 if (rdev->irq.stat_regs.r600.disp_int_cont2 & DC_HPD6_INTERRUPT) {
3973                                         rdev->irq.stat_regs.r600.disp_int_cont2 &= ~DC_HPD6_INTERRUPT;
3974                                         queue_hotplug = true;
3975                                         DRM_DEBUG("IH: HPD6\n");
3976                                 }
3977                                 break;
3978                         default:
3979                                 DRM_DEBUG("Unhandled interrupt: %d %d\n", src_id, src_data);
3980                                 break;
3981                         }
3982                         break;
3983                 case 21: /* hdmi */
3984                         switch (src_data) {
3985                         case 4:
3986                                 if (rdev->irq.stat_regs.r600.hdmi0_status & HDMI0_AZ_FORMAT_WTRIG) {
3987                                         rdev->irq.stat_regs.r600.hdmi0_status &= ~HDMI0_AZ_FORMAT_WTRIG;
3988                                         queue_hdmi = true;
3989                                         DRM_DEBUG("IH: HDMI0\n");
3990                                 }
3991                                 break;
3992                         case 5:
3993                                 if (rdev->irq.stat_regs.r600.hdmi1_status & HDMI0_AZ_FORMAT_WTRIG) {
3994                                         rdev->irq.stat_regs.r600.hdmi1_status &= ~HDMI0_AZ_FORMAT_WTRIG;
3995                                         queue_hdmi = true;
3996                                         DRM_DEBUG("IH: HDMI1\n");
3997                                 }
3998                                 break;
3999                         default:
4000                                 DRM_ERROR("Unhandled interrupt: %d %d\n", src_id, src_data);
4001                                 break;
4002                         }
4003                         break;
4004                 case 124: /* UVD */
4005                         DRM_DEBUG("IH: UVD int: 0x%08x\n", src_data);
4006                         radeon_fence_process(rdev, R600_RING_TYPE_UVD_INDEX);
4007                         break;
4008                 case 176: /* CP_INT in ring buffer */
4009                 case 177: /* CP_INT in IB1 */
4010                 case 178: /* CP_INT in IB2 */
4011                         DRM_DEBUG("IH: CP int: 0x%08x\n", src_data);
4012                         radeon_fence_process(rdev, RADEON_RING_TYPE_GFX_INDEX);
4013                         break;
4014                 case 181: /* CP EOP event */
4015                         DRM_DEBUG("IH: CP EOP\n");
4016                         radeon_fence_process(rdev, RADEON_RING_TYPE_GFX_INDEX);
4017                         break;
4018                 case 224: /* DMA trap event */
4019                         DRM_DEBUG("IH: DMA trap\n");
4020                         radeon_fence_process(rdev, R600_RING_TYPE_DMA_INDEX);
4021                         break;
4022                 case 230: /* thermal low to high */
4023                         DRM_DEBUG("IH: thermal low to high\n");
4024                         rdev->pm.dpm.thermal.high_to_low = false;
4025                         queue_thermal = true;
4026                         break;
4027                 case 231: /* thermal high to low */
4028                         DRM_DEBUG("IH: thermal high to low\n");
4029                         rdev->pm.dpm.thermal.high_to_low = true;
4030                         queue_thermal = true;
4031                         break;
4032                 case 233: /* GUI IDLE */
4033                         DRM_DEBUG("IH: GUI idle\n");
4034                         break;
4035                 default:
4036                         DRM_DEBUG("Unhandled interrupt: %d %d\n", src_id, src_data);
4037                         break;
4038                 }
4039
4040                 /* wptr/rptr are in bytes! */
4041                 rptr += 16;
4042                 rptr &= rdev->ih.ptr_mask;
4043         }
4044         if (queue_hotplug)
4045                 schedule_work(&rdev->hotplug_work);
4046         if (queue_hdmi)
4047                 schedule_work(&rdev->audio_work);
4048         if (queue_thermal && rdev->pm.dpm_enabled)
4049                 schedule_work(&rdev->pm.dpm.thermal.work);
4050         rdev->ih.rptr = rptr;
4051         WREG32(IH_RB_RPTR, rdev->ih.rptr);
4052         atomic_set(&rdev->ih.lock, 0);
4053
4054         /* make sure wptr hasn't changed while processing */
4055         wptr = r600_get_ih_wptr(rdev);
4056         if (wptr != rptr)
4057                 goto restart_ih;
4058
4059         return IRQ_HANDLED;
4060 }
4061
4062 /*
4063  * Debugfs info
4064  */
4065 #if defined(CONFIG_DEBUG_FS)
4066
4067 static int r600_debugfs_mc_info(struct seq_file *m, void *data)
4068 {
4069         struct drm_info_node *node = (struct drm_info_node *) m->private;
4070         struct drm_device *dev = node->minor->dev;
4071         struct radeon_device *rdev = dev->dev_private;
4072
4073         DREG32_SYS(m, rdev, R_000E50_SRBM_STATUS);
4074         DREG32_SYS(m, rdev, VM_L2_STATUS);
4075         return 0;
4076 }
4077
4078 static struct drm_info_list r600_mc_info_list[] = {
4079         {"r600_mc_info", r600_debugfs_mc_info, 0, NULL},
4080 };
4081 #endif
4082
4083 int r600_debugfs_mc_info_init(struct radeon_device *rdev)
4084 {
4085 #if defined(CONFIG_DEBUG_FS)
4086         return radeon_debugfs_add_files(rdev, r600_mc_info_list, ARRAY_SIZE(r600_mc_info_list));
4087 #else
4088         return 0;
4089 #endif
4090 }
4091
4092 /**
4093  * r600_mmio_hdp_flush - flush Host Data Path cache via MMIO
4094  * rdev: radeon device structure
4095  *
4096  * Some R6XX/R7XX don't seem to take into account HDP flushes performed
4097  * through the ring buffer. This leads to corruption in rendering, see
4098  * http://bugzilla.kernel.org/show_bug.cgi?id=15186 . To avoid this, we
4099  * directly perform the HDP flush by writing the register through MMIO.
4100  */
4101 void r600_mmio_hdp_flush(struct radeon_device *rdev)
4102 {
4103         /* r7xx hw bug.  write to HDP_DEBUG1 followed by fb read
4104          * rather than write to HDP_REG_COHERENCY_FLUSH_CNTL.
4105          * This seems to cause problems on some AGP cards. Just use the old
4106          * method for them.
4107          */
4108         if ((rdev->family >= CHIP_RV770) && (rdev->family <= CHIP_RV740) &&
4109             rdev->vram_scratch.ptr && !(rdev->flags & RADEON_IS_AGP)) {
4110                 void __iomem *ptr = (void *)rdev->vram_scratch.ptr;
4111                 u32 tmp;
4112
4113                 WREG32(HDP_DEBUG1, 0);
4114                 tmp = readl((void __iomem *)ptr);
4115         } else
4116                 WREG32(R_005480_HDP_MEM_COHERENCY_FLUSH_CNTL, 0x1);
4117 }
4118
4119 void r600_set_pcie_lanes(struct radeon_device *rdev, int lanes)
4120 {
4121         u32 link_width_cntl, mask;
4122
4123         if (rdev->flags & RADEON_IS_IGP)
4124                 return;
4125
4126         if (!(rdev->flags & RADEON_IS_PCIE))
4127                 return;
4128
4129         /* x2 cards have a special sequence */
4130         if (ASIC_IS_X2(rdev))
4131                 return;
4132
4133         radeon_gui_idle(rdev);
4134
4135         switch (lanes) {
4136         case 0:
4137                 mask = RADEON_PCIE_LC_LINK_WIDTH_X0;
4138                 break;
4139         case 1:
4140                 mask = RADEON_PCIE_LC_LINK_WIDTH_X1;
4141                 break;
4142         case 2:
4143                 mask = RADEON_PCIE_LC_LINK_WIDTH_X2;
4144                 break;
4145         case 4:
4146                 mask = RADEON_PCIE_LC_LINK_WIDTH_X4;
4147                 break;
4148         case 8:
4149                 mask = RADEON_PCIE_LC_LINK_WIDTH_X8;
4150                 break;
4151         case 12:
4152                 /* not actually supported */
4153                 mask = RADEON_PCIE_LC_LINK_WIDTH_X12;
4154                 break;
4155         case 16:
4156                 mask = RADEON_PCIE_LC_LINK_WIDTH_X16;
4157                 break;
4158         default:
4159                 DRM_ERROR("invalid pcie lane request: %d\n", lanes);
4160                 return;
4161         }
4162
4163         link_width_cntl = RREG32_PCIE_PORT(RADEON_PCIE_LC_LINK_WIDTH_CNTL);
4164         link_width_cntl &= ~RADEON_PCIE_LC_LINK_WIDTH_MASK;
4165         link_width_cntl |= mask << RADEON_PCIE_LC_LINK_WIDTH_SHIFT;
4166         link_width_cntl |= (RADEON_PCIE_LC_RECONFIG_NOW |
4167                             R600_PCIE_LC_RECONFIG_ARC_MISSING_ESCAPE);
4168
4169         WREG32_PCIE_PORT(RADEON_PCIE_LC_LINK_WIDTH_CNTL, link_width_cntl);
4170 }
4171
4172 int r600_get_pcie_lanes(struct radeon_device *rdev)
4173 {
4174         u32 link_width_cntl;
4175
4176         if (rdev->flags & RADEON_IS_IGP)
4177                 return 0;
4178
4179         if (!(rdev->flags & RADEON_IS_PCIE))
4180                 return 0;
4181
4182         /* x2 cards have a special sequence */
4183         if (ASIC_IS_X2(rdev))
4184                 return 0;
4185
4186         radeon_gui_idle(rdev);
4187
4188         link_width_cntl = RREG32_PCIE_PORT(RADEON_PCIE_LC_LINK_WIDTH_CNTL);
4189
4190         switch ((link_width_cntl & RADEON_PCIE_LC_LINK_WIDTH_RD_MASK) >> RADEON_PCIE_LC_LINK_WIDTH_RD_SHIFT) {
4191         case RADEON_PCIE_LC_LINK_WIDTH_X1:
4192                 return 1;
4193         case RADEON_PCIE_LC_LINK_WIDTH_X2:
4194                 return 2;
4195         case RADEON_PCIE_LC_LINK_WIDTH_X4:
4196                 return 4;
4197         case RADEON_PCIE_LC_LINK_WIDTH_X8:
4198                 return 8;
4199         case RADEON_PCIE_LC_LINK_WIDTH_X12:
4200                 /* not actually supported */
4201                 return 12;
4202         case RADEON_PCIE_LC_LINK_WIDTH_X0:
4203         case RADEON_PCIE_LC_LINK_WIDTH_X16:
4204         default:
4205                 return 16;
4206         }
4207 }
4208
4209 static void r600_pcie_gen2_enable(struct radeon_device *rdev)
4210 {
4211         u32 link_width_cntl, lanes, speed_cntl, training_cntl, tmp;
4212         u16 link_cntl2;
4213
4214         if (radeon_pcie_gen2 == 0)
4215                 return;
4216
4217         if (rdev->flags & RADEON_IS_IGP)
4218                 return;
4219
4220         if (!(rdev->flags & RADEON_IS_PCIE))
4221                 return;
4222
4223         /* x2 cards have a special sequence */
4224         if (ASIC_IS_X2(rdev))
4225                 return;
4226
4227         /* only RV6xx+ chips are supported */
4228         if (rdev->family <= CHIP_R600)
4229                 return;
4230
4231         if ((rdev->pdev->bus->max_bus_speed != PCIE_SPEED_5_0GT) &&
4232                 (rdev->pdev->bus->max_bus_speed != PCIE_SPEED_8_0GT))
4233                 return;
4234
4235         speed_cntl = RREG32_PCIE_PORT(PCIE_LC_SPEED_CNTL);
4236         if (speed_cntl & LC_CURRENT_DATA_RATE) {
4237                 DRM_INFO("PCIE gen 2 link speeds already enabled\n");
4238                 return;
4239         }
4240
4241         DRM_INFO("enabling PCIE gen 2 link speeds, disable with radeon.pcie_gen2=0\n");
4242
4243         /* 55 nm r6xx asics */
4244         if ((rdev->family == CHIP_RV670) ||
4245             (rdev->family == CHIP_RV620) ||
4246             (rdev->family == CHIP_RV635)) {
4247                 /* advertise upconfig capability */
4248                 link_width_cntl = RREG32_PCIE_PORT(PCIE_LC_LINK_WIDTH_CNTL);
4249                 link_width_cntl &= ~LC_UPCONFIGURE_DIS;
4250                 WREG32_PCIE_PORT(PCIE_LC_LINK_WIDTH_CNTL, link_width_cntl);
4251                 link_width_cntl = RREG32_PCIE_PORT(PCIE_LC_LINK_WIDTH_CNTL);
4252                 if (link_width_cntl & LC_RENEGOTIATION_SUPPORT) {
4253                         lanes = (link_width_cntl & LC_LINK_WIDTH_RD_MASK) >> LC_LINK_WIDTH_RD_SHIFT;
4254                         link_width_cntl &= ~(LC_LINK_WIDTH_MASK |
4255                                              LC_RECONFIG_ARC_MISSING_ESCAPE);
4256                         link_width_cntl |= lanes | LC_RECONFIG_NOW | LC_RENEGOTIATE_EN;
4257                         WREG32_PCIE_PORT(PCIE_LC_LINK_WIDTH_CNTL, link_width_cntl);
4258                 } else {
4259                         link_width_cntl |= LC_UPCONFIGURE_DIS;
4260                         WREG32_PCIE_PORT(PCIE_LC_LINK_WIDTH_CNTL, link_width_cntl);
4261                 }
4262         }
4263
4264         speed_cntl = RREG32_PCIE_PORT(PCIE_LC_SPEED_CNTL);
4265         if ((speed_cntl & LC_OTHER_SIDE_EVER_SENT_GEN2) &&
4266             (speed_cntl & LC_OTHER_SIDE_SUPPORTS_GEN2)) {
4267
4268                 /* 55 nm r6xx asics */
4269                 if ((rdev->family == CHIP_RV670) ||
4270                     (rdev->family == CHIP_RV620) ||
4271                     (rdev->family == CHIP_RV635)) {
4272                         WREG32(MM_CFGREGS_CNTL, 0x8);
4273                         link_cntl2 = RREG32(0x4088);
4274                         WREG32(MM_CFGREGS_CNTL, 0);
4275                         /* not supported yet */
4276                         if (link_cntl2 & SELECTABLE_DEEMPHASIS)
4277                                 return;
4278                 }
4279
4280                 speed_cntl &= ~LC_SPEED_CHANGE_ATTEMPTS_ALLOWED_MASK;
4281                 speed_cntl |= (0x3 << LC_SPEED_CHANGE_ATTEMPTS_ALLOWED_SHIFT);
4282                 speed_cntl &= ~LC_VOLTAGE_TIMER_SEL_MASK;
4283                 speed_cntl &= ~LC_FORCE_DIS_HW_SPEED_CHANGE;
4284                 speed_cntl |= LC_FORCE_EN_HW_SPEED_CHANGE;
4285                 WREG32_PCIE_PORT(PCIE_LC_SPEED_CNTL, speed_cntl);
4286
4287                 tmp = RREG32(0x541c);
4288                 WREG32(0x541c, tmp | 0x8);
4289                 WREG32(MM_CFGREGS_CNTL, MM_WR_TO_CFG_EN);
4290                 link_cntl2 = RREG16(0x4088);
4291                 link_cntl2 &= ~TARGET_LINK_SPEED_MASK;
4292                 link_cntl2 |= 0x2;
4293                 WREG16(0x4088, link_cntl2);
4294                 WREG32(MM_CFGREGS_CNTL, 0);
4295
4296                 if ((rdev->family == CHIP_RV670) ||
4297                     (rdev->family == CHIP_RV620) ||
4298                     (rdev->family == CHIP_RV635)) {
4299                         training_cntl = RREG32_PCIE_PORT(PCIE_LC_TRAINING_CNTL);
4300                         training_cntl &= ~LC_POINT_7_PLUS_EN;
4301                         WREG32_PCIE_PORT(PCIE_LC_TRAINING_CNTL, training_cntl);
4302                 } else {
4303                         speed_cntl = RREG32_PCIE_PORT(PCIE_LC_SPEED_CNTL);
4304                         speed_cntl &= ~LC_TARGET_LINK_SPEED_OVERRIDE_EN;
4305                         WREG32_PCIE_PORT(PCIE_LC_SPEED_CNTL, speed_cntl);
4306                 }
4307
4308                 speed_cntl = RREG32_PCIE_PORT(PCIE_LC_SPEED_CNTL);
4309                 speed_cntl |= LC_GEN2_EN_STRAP;
4310                 WREG32_PCIE_PORT(PCIE_LC_SPEED_CNTL, speed_cntl);
4311
4312         } else {
4313                 link_width_cntl = RREG32_PCIE_PORT(PCIE_LC_LINK_WIDTH_CNTL);
4314                 /* XXX: only disable it if gen1 bridge vendor == 0x111d or 0x1106 */
4315                 if (1)
4316                         link_width_cntl |= LC_UPCONFIGURE_DIS;
4317                 else
4318                         link_width_cntl &= ~LC_UPCONFIGURE_DIS;
4319                 WREG32_PCIE_PORT(PCIE_LC_LINK_WIDTH_CNTL, link_width_cntl);
4320         }
4321 }
4322
4323 /**
4324  * r600_get_gpu_clock_counter - return GPU clock counter snapshot
4325  *
4326  * @rdev: radeon_device pointer
4327  *
4328  * Fetches a GPU clock counter snapshot (R6xx-cayman).
4329  * Returns the 64 bit clock counter snapshot.
4330  */
4331 uint64_t r600_get_gpu_clock_counter(struct radeon_device *rdev)
4332 {
4333         uint64_t clock;
4334
4335         mutex_lock(&rdev->gpu_clock_mutex);
4336         WREG32(RLC_CAPTURE_GPU_CLOCK_COUNT, 1);
4337         clock = (uint64_t)RREG32(RLC_GPU_CLOCK_COUNT_LSB) |
4338                 ((uint64_t)RREG32(RLC_GPU_CLOCK_COUNT_MSB) << 32ULL);
4339         mutex_unlock(&rdev->gpu_clock_mutex);
4340         return clock;
4341 }