pinctrl: intel: Prevent force threading of the interrupt handler
[deliverable/linux.git] / drivers / soc / tegra / pmc.c
CommitLineData
7232398a
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1/*
2 * drivers/soc/tegra/pmc.c
3 *
4 * Copyright (c) 2010 Google, Inc
5 *
6 * Author:
7 * Colin Cross <ccross@google.com>
8 *
9 * This software is licensed under the terms of the GNU General Public
10 * License version 2, as published by the Free Software Foundation, and
11 * may be copied, distributed, and modified under those terms.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 */
19
7d71e903
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20#define pr_fmt(fmt) "tegra-pmc: " fmt
21
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22#include <linux/kernel.h>
23#include <linux/clk.h>
24#include <linux/clk/tegra.h>
25#include <linux/debugfs.h>
26#include <linux/delay.h>
27#include <linux/err.h>
28#include <linux/export.h>
29#include <linux/init.h>
30#include <linux/io.h>
0a2d87e0 31#include <linux/iopoll.h>
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32#include <linux/of.h>
33#include <linux/of_address.h>
a3804512 34#include <linux/of_platform.h>
7232398a 35#include <linux/platform_device.h>
a3804512 36#include <linux/pm_domain.h>
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37#include <linux/reboot.h>
38#include <linux/reset.h>
39#include <linux/seq_file.h>
a3804512 40#include <linux/slab.h>
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41#include <linux/spinlock.h>
42
43#include <soc/tegra/common.h>
44#include <soc/tegra/fuse.h>
45#include <soc/tegra/pmc.h>
46
47#define PMC_CNTRL 0x0
48#define PMC_CNTRL_SYSCLK_POLARITY (1 << 10) /* sys clk polarity */
49#define PMC_CNTRL_SYSCLK_OE (1 << 11) /* system clock enable */
50#define PMC_CNTRL_SIDE_EFFECT_LP0 (1 << 14) /* LP0 when CPU pwr gated */
51#define PMC_CNTRL_CPU_PWRREQ_POLARITY (1 << 15) /* CPU pwr req polarity */
52#define PMC_CNTRL_CPU_PWRREQ_OE (1 << 16) /* CPU pwr req enable */
53#define PMC_CNTRL_INTR_POLARITY (1 << 17) /* inverts INTR polarity */
54
55#define DPD_SAMPLE 0x020
56#define DPD_SAMPLE_ENABLE (1 << 0)
57#define DPD_SAMPLE_DISABLE (0 << 0)
58
59#define PWRGATE_TOGGLE 0x30
60#define PWRGATE_TOGGLE_START (1 << 8)
61
62#define REMOVE_CLAMPING 0x34
63
64#define PWRGATE_STATUS 0x38
65
66#define PMC_SCRATCH0 0x50
67#define PMC_SCRATCH0_MODE_RECOVERY (1 << 31)
68#define PMC_SCRATCH0_MODE_BOOTLOADER (1 << 30)
69#define PMC_SCRATCH0_MODE_RCM (1 << 1)
70#define PMC_SCRATCH0_MODE_MASK (PMC_SCRATCH0_MODE_RECOVERY | \
71 PMC_SCRATCH0_MODE_BOOTLOADER | \
72 PMC_SCRATCH0_MODE_RCM)
73
74#define PMC_CPUPWRGOOD_TIMER 0xc8
75#define PMC_CPUPWROFF_TIMER 0xcc
76
77#define PMC_SCRATCH41 0x140
78
3568df3d
MP
79#define PMC_SENSOR_CTRL 0x1b0
80#define PMC_SENSOR_CTRL_SCRATCH_WRITE (1 << 2)
81#define PMC_SENSOR_CTRL_ENABLE_RST (1 << 1)
82
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83#define IO_DPD_REQ 0x1b8
84#define IO_DPD_REQ_CODE_IDLE (0 << 30)
85#define IO_DPD_REQ_CODE_OFF (1 << 30)
86#define IO_DPD_REQ_CODE_ON (2 << 30)
87#define IO_DPD_REQ_CODE_MASK (3 << 30)
88
89#define IO_DPD_STATUS 0x1bc
90#define IO_DPD2_REQ 0x1c0
91#define IO_DPD2_STATUS 0x1c4
92#define SEL_DPD_TIM 0x1c8
93
3568df3d
MP
94#define PMC_SCRATCH54 0x258
95#define PMC_SCRATCH54_DATA_SHIFT 8
96#define PMC_SCRATCH54_ADDR_SHIFT 0
97
98#define PMC_SCRATCH55 0x25c
99#define PMC_SCRATCH55_RESET_TEGRA (1 << 31)
100#define PMC_SCRATCH55_CNTRL_ID_SHIFT 27
101#define PMC_SCRATCH55_PINMUX_SHIFT 24
102#define PMC_SCRATCH55_16BITOP (1 << 15)
103#define PMC_SCRATCH55_CHECKSUM_SHIFT 16
104#define PMC_SCRATCH55_I2CSLV1_SHIFT 0
105
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106#define GPU_RG_CNTRL 0x2d4
107
a3804512
JH
108struct tegra_powergate {
109 struct generic_pm_domain genpd;
110 struct tegra_pmc *pmc;
111 unsigned int id;
112 struct clk **clks;
113 unsigned int num_clks;
114 struct reset_control **resets;
115 unsigned int num_resets;
116};
117
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118struct tegra_pmc_soc {
119 unsigned int num_powergates;
120 const char *const *powergates;
121 unsigned int num_cpu_powergates;
122 const u8 *cpu_powergates;
a9a40a4a 123
3568df3d 124 bool has_tsense_reset;
a9a40a4a 125 bool has_gpu_clamps;
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126};
127
128/**
129 * struct tegra_pmc - NVIDIA Tegra PMC
35b67291 130 * @dev: pointer to PMC device structure
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131 * @base: pointer to I/O remapped register region
132 * @clk: pointer to pclk clock
35b67291 133 * @soc: pointer to SoC data structure
3195ac6d 134 * @debugfs: pointer to debugfs entry
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135 * @rate: currently configured rate of pclk
136 * @suspend_mode: lowest suspend mode available
137 * @cpu_good_time: CPU power good time (in microseconds)
138 * @cpu_off_time: CPU power off time (in microsecends)
139 * @core_osc_time: core power good OSC time (in microseconds)
140 * @core_pmu_time: core power good PMU time (in microseconds)
141 * @core_off_time: core power off time (in microseconds)
142 * @corereq_high: core power request is active-high
143 * @sysclkreq_high: system clock request is active-high
144 * @combined_req: combined power request for CPU & core
145 * @cpu_pwr_good_en: CPU power good signal is enabled
146 * @lp0_vec_phys: physical base address of the LP0 warm boot code
147 * @lp0_vec_size: size of the LP0 warm boot code
a3804512 148 * @powergates_available: Bitmap of available power gates
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149 * @powergates_lock: mutex for power gate register access
150 */
151struct tegra_pmc {
3568df3d 152 struct device *dev;
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153 void __iomem *base;
154 struct clk *clk;
3195ac6d 155 struct dentry *debugfs;
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156
157 const struct tegra_pmc_soc *soc;
158
159 unsigned long rate;
160
161 enum tegra_suspend_mode suspend_mode;
162 u32 cpu_good_time;
163 u32 cpu_off_time;
164 u32 core_osc_time;
165 u32 core_pmu_time;
166 u32 core_off_time;
167 bool corereq_high;
168 bool sysclkreq_high;
169 bool combined_req;
170 bool cpu_pwr_good_en;
171 u32 lp0_vec_phys;
172 u32 lp0_vec_size;
a3804512 173 DECLARE_BITMAP(powergates_available, TEGRA_POWERGATE_MAX);
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174
175 struct mutex powergates_lock;
176};
177
178static struct tegra_pmc *pmc = &(struct tegra_pmc) {
179 .base = NULL,
180 .suspend_mode = TEGRA_SUSPEND_NONE,
181};
182
a3804512
JH
183static inline struct tegra_powergate *
184to_powergate(struct generic_pm_domain *domain)
185{
186 return container_of(domain, struct tegra_powergate, genpd);
187}
188
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189static u32 tegra_pmc_readl(unsigned long offset)
190{
191 return readl(pmc->base + offset);
192}
193
194static void tegra_pmc_writel(u32 value, unsigned long offset)
195{
196 writel(value, pmc->base + offset);
197}
198
0ecf2d33
JH
199static inline bool tegra_powergate_state(int id)
200{
bc9af23d
JH
201 if (id == TEGRA_POWERGATE_3D && pmc->soc->has_gpu_clamps)
202 return (tegra_pmc_readl(GPU_RG_CNTRL) & 0x1) == 0;
203 else
204 return (tegra_pmc_readl(PWRGATE_STATUS) & BIT(id)) != 0;
0ecf2d33
JH
205}
206
0a243bd4
JH
207static inline bool tegra_powergate_is_valid(int id)
208{
209 return (pmc->soc && pmc->soc->powergates[id]);
210}
211
a3804512
JH
212static inline bool tegra_powergate_is_available(int id)
213{
214 return test_bit(id, pmc->powergates_available);
215}
216
217static int tegra_powergate_lookup(struct tegra_pmc *pmc, const char *name)
218{
219 unsigned int i;
220
221 if (!pmc || !pmc->soc || !name)
222 return -EINVAL;
223
224 for (i = 0; i < pmc->soc->num_powergates; i++) {
225 if (!tegra_powergate_is_valid(i))
226 continue;
227
228 if (!strcmp(name, pmc->soc->powergates[i]))
229 return i;
230 }
231
232 dev_err(pmc->dev, "powergate %s not found\n", name);
233
234 return -ENODEV;
235}
236
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237/**
238 * tegra_powergate_set() - set the state of a partition
239 * @id: partition ID
240 * @new_state: new state of the partition
241 */
70293ed0 242static int tegra_powergate_set(unsigned int id, bool new_state)
7232398a 243{
0a2d87e0
JH
244 bool status;
245 int err;
246
bc9af23d
JH
247 if (id == TEGRA_POWERGATE_3D && pmc->soc->has_gpu_clamps)
248 return -EINVAL;
249
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250 mutex_lock(&pmc->powergates_lock);
251
0ecf2d33 252 if (tegra_powergate_state(id) == new_state) {
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253 mutex_unlock(&pmc->powergates_lock);
254 return 0;
255 }
256
257 tegra_pmc_writel(PWRGATE_TOGGLE_START | id, PWRGATE_TOGGLE);
258
0a2d87e0
JH
259 err = readx_poll_timeout(tegra_powergate_state, id, status,
260 status == new_state, 10, 100000);
261
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262 mutex_unlock(&pmc->powergates_lock);
263
0a2d87e0 264 return err;
7232398a
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265}
266
a3804512
JH
267static int __tegra_powergate_remove_clamping(unsigned int id)
268{
269 u32 mask;
270
271 mutex_lock(&pmc->powergates_lock);
272
273 /*
274 * On Tegra124 and later, the clamps for the GPU are controlled by a
275 * separate register (with different semantics).
276 */
277 if (id == TEGRA_POWERGATE_3D) {
278 if (pmc->soc->has_gpu_clamps) {
279 tegra_pmc_writel(0, GPU_RG_CNTRL);
280 goto out;
281 }
282 }
283
284 /*
285 * Tegra 2 has a bug where PCIE and VDE clamping masks are
286 * swapped relatively to the partition ids
287 */
288 if (id == TEGRA_POWERGATE_VDEC)
289 mask = (1 << TEGRA_POWERGATE_PCIE);
290 else if (id == TEGRA_POWERGATE_PCIE)
291 mask = (1 << TEGRA_POWERGATE_VDEC);
292 else
293 mask = (1 << id);
294
295 tegra_pmc_writel(mask, REMOVE_CLAMPING);
296
297out:
298 mutex_unlock(&pmc->powergates_lock);
299
300 return 0;
301}
302
303static void tegra_powergate_disable_clocks(struct tegra_powergate *pg)
304{
305 unsigned int i;
306
307 for (i = 0; i < pg->num_clks; i++)
308 clk_disable_unprepare(pg->clks[i]);
309}
310
311static int tegra_powergate_enable_clocks(struct tegra_powergate *pg)
312{
313 unsigned int i;
314 int err;
315
316 for (i = 0; i < pg->num_clks; i++) {
317 err = clk_prepare_enable(pg->clks[i]);
318 if (err)
319 goto out;
320 }
321
322 return 0;
323
324out:
325 while (i--)
326 clk_disable_unprepare(pg->clks[i]);
327
328 return err;
329}
330
331static int tegra_powergate_reset_assert(struct tegra_powergate *pg)
332{
333 unsigned int i;
334 int err;
335
336 for (i = 0; i < pg->num_resets; i++) {
337 err = reset_control_assert(pg->resets[i]);
338 if (err)
339 return err;
340 }
341
342 return 0;
343}
344
345static int tegra_powergate_reset_deassert(struct tegra_powergate *pg)
346{
347 unsigned int i;
348 int err;
349
350 for (i = 0; i < pg->num_resets; i++) {
351 err = reset_control_deassert(pg->resets[i]);
352 if (err)
353 return err;
354 }
355
356 return 0;
357}
358
359static int tegra_powergate_power_up(struct tegra_powergate *pg,
360 bool disable_clocks)
361{
362 int err;
363
364 err = tegra_powergate_reset_assert(pg);
365 if (err)
366 return err;
367
368 usleep_range(10, 20);
369
370 err = tegra_powergate_set(pg->id, true);
371 if (err < 0)
372 return err;
373
374 usleep_range(10, 20);
375
376 err = tegra_powergate_enable_clocks(pg);
377 if (err)
378 goto disable_clks;
379
380 usleep_range(10, 20);
381
382 err = __tegra_powergate_remove_clamping(pg->id);
383 if (err)
384 goto disable_clks;
385
386 usleep_range(10, 20);
387
388 err = tegra_powergate_reset_deassert(pg);
389 if (err)
390 goto powergate_off;
391
392 usleep_range(10, 20);
393
394 if (disable_clocks)
395 tegra_powergate_disable_clocks(pg);
396
397 return 0;
398
399disable_clks:
400 tegra_powergate_disable_clocks(pg);
401 usleep_range(10, 20);
402powergate_off:
403 tegra_powergate_set(pg->id, false);
404
405 return err;
406}
407
408static int tegra_powergate_power_down(struct tegra_powergate *pg)
409{
410 int err;
411
412 err = tegra_powergate_enable_clocks(pg);
413 if (err)
414 return err;
415
416 usleep_range(10, 20);
417
418 err = tegra_powergate_reset_assert(pg);
419 if (err)
420 goto disable_clks;
421
422 usleep_range(10, 20);
423
424 tegra_powergate_disable_clocks(pg);
425
426 usleep_range(10, 20);
427
428 err = tegra_powergate_set(pg->id, false);
429 if (err)
430 goto assert_resets;
431
432 return 0;
433
434assert_resets:
435 tegra_powergate_enable_clocks(pg);
436 usleep_range(10, 20);
437 tegra_powergate_reset_deassert(pg);
438 usleep_range(10, 20);
439disable_clks:
440 tegra_powergate_disable_clocks(pg);
441
442 return err;
443}
444
445static int tegra_genpd_power_on(struct generic_pm_domain *domain)
446{
447 struct tegra_powergate *pg = to_powergate(domain);
448 struct tegra_pmc *pmc = pg->pmc;
449 int err;
450
451 err = tegra_powergate_power_up(pg, true);
452 if (err)
453 dev_err(pmc->dev, "failed to turn on PM domain %s: %d\n",
454 pg->genpd.name, err);
455
456 return err;
457}
458
459static int tegra_genpd_power_off(struct generic_pm_domain *domain)
460{
461 struct tegra_powergate *pg = to_powergate(domain);
462 struct tegra_pmc *pmc = pg->pmc;
463 int err;
464
465 err = tegra_powergate_power_down(pg);
466 if (err)
467 dev_err(pmc->dev, "failed to turn off PM domain %s: %d\n",
468 pg->genpd.name, err);
469
470 return err;
471}
472
7232398a
TR
473/**
474 * tegra_powergate_power_on() - power on partition
475 * @id: partition ID
476 */
70293ed0 477int tegra_powergate_power_on(unsigned int id)
7232398a 478{
a3804512 479 if (!tegra_powergate_is_available(id))
7232398a
TR
480 return -EINVAL;
481
482 return tegra_powergate_set(id, true);
483}
484
485/**
486 * tegra_powergate_power_off() - power off partition
487 * @id: partition ID
488 */
70293ed0 489int tegra_powergate_power_off(unsigned int id)
7232398a 490{
a3804512 491 if (!tegra_powergate_is_available(id))
7232398a
TR
492 return -EINVAL;
493
494 return tegra_powergate_set(id, false);
495}
496EXPORT_SYMBOL(tegra_powergate_power_off);
497
498/**
499 * tegra_powergate_is_powered() - check if partition is powered
500 * @id: partition ID
501 */
70293ed0 502int tegra_powergate_is_powered(unsigned int id)
7232398a 503{
0ecf2d33 504 int status;
7232398a 505
0a243bd4 506 if (!tegra_powergate_is_valid(id))
7232398a
TR
507 return -EINVAL;
508
e8cf6616 509 mutex_lock(&pmc->powergates_lock);
0ecf2d33 510 status = tegra_powergate_state(id);
e8cf6616
JH
511 mutex_unlock(&pmc->powergates_lock);
512
0ecf2d33 513 return status;
7232398a
TR
514}
515
516/**
517 * tegra_powergate_remove_clamping() - remove power clamps for partition
518 * @id: partition ID
519 */
70293ed0 520int tegra_powergate_remove_clamping(unsigned int id)
7232398a 521{
a3804512 522 if (!tegra_powergate_is_available(id))
7232398a
TR
523 return -EINVAL;
524
a3804512 525 return __tegra_powergate_remove_clamping(id);
7232398a
TR
526}
527EXPORT_SYMBOL(tegra_powergate_remove_clamping);
528
529/**
530 * tegra_powergate_sequence_power_up() - power up partition
531 * @id: partition ID
532 * @clk: clock for partition
533 * @rst: reset for partition
534 *
535 * Must be called with clk disabled, and returns with clk enabled.
536 */
70293ed0 537int tegra_powergate_sequence_power_up(unsigned int id, struct clk *clk,
7232398a
TR
538 struct reset_control *rst)
539{
a3804512
JH
540 struct tegra_powergate pg;
541 int err;
7232398a 542
a3804512
JH
543 pg.id = id;
544 pg.clks = &clk;
545 pg.num_clks = 1;
546 pg.resets = &rst;
547 pg.num_resets = 1;
7232398a 548
a3804512
JH
549 err = tegra_powergate_power_up(&pg, false);
550 if (err)
551 pr_err("failed to turn on partition %d: %d\n", id, err);
7232398a 552
a3804512 553 return err;
7232398a
TR
554}
555EXPORT_SYMBOL(tegra_powergate_sequence_power_up);
556
557#ifdef CONFIG_SMP
558/**
559 * tegra_get_cpu_powergate_id() - convert from CPU ID to partition ID
560 * @cpuid: CPU partition ID
561 *
562 * Returns the partition ID corresponding to the CPU partition ID or a
563 * negative error code on failure.
564 */
70293ed0 565static int tegra_get_cpu_powergate_id(unsigned int cpuid)
7232398a 566{
70293ed0 567 if (pmc->soc && cpuid < pmc->soc->num_cpu_powergates)
7232398a
TR
568 return pmc->soc->cpu_powergates[cpuid];
569
570 return -EINVAL;
571}
572
573/**
574 * tegra_pmc_cpu_is_powered() - check if CPU partition is powered
575 * @cpuid: CPU partition ID
576 */
70293ed0 577bool tegra_pmc_cpu_is_powered(unsigned int cpuid)
7232398a
TR
578{
579 int id;
580
581 id = tegra_get_cpu_powergate_id(cpuid);
582 if (id < 0)
583 return false;
584
585 return tegra_powergate_is_powered(id);
586}
587
588/**
589 * tegra_pmc_cpu_power_on() - power on CPU partition
590 * @cpuid: CPU partition ID
591 */
70293ed0 592int tegra_pmc_cpu_power_on(unsigned int cpuid)
7232398a
TR
593{
594 int id;
595
596 id = tegra_get_cpu_powergate_id(cpuid);
597 if (id < 0)
598 return id;
599
600 return tegra_powergate_set(id, true);
601}
602
603/**
604 * tegra_pmc_cpu_remove_clamping() - remove power clamps for CPU partition
605 * @cpuid: CPU partition ID
606 */
70293ed0 607int tegra_pmc_cpu_remove_clamping(unsigned int cpuid)
7232398a
TR
608{
609 int id;
610
611 id = tegra_get_cpu_powergate_id(cpuid);
612 if (id < 0)
613 return id;
614
615 return tegra_powergate_remove_clamping(id);
616}
617#endif /* CONFIG_SMP */
618
7892158a
DR
619static int tegra_pmc_restart_notify(struct notifier_block *this,
620 unsigned long action, void *data)
7232398a 621{
7892158a 622 const char *cmd = data;
7232398a
TR
623 u32 value;
624
625 value = tegra_pmc_readl(PMC_SCRATCH0);
626 value &= ~PMC_SCRATCH0_MODE_MASK;
627
628 if (cmd) {
629 if (strcmp(cmd, "recovery") == 0)
630 value |= PMC_SCRATCH0_MODE_RECOVERY;
631
632 if (strcmp(cmd, "bootloader") == 0)
633 value |= PMC_SCRATCH0_MODE_BOOTLOADER;
634
635 if (strcmp(cmd, "forced-recovery") == 0)
636 value |= PMC_SCRATCH0_MODE_RCM;
637 }
638
639 tegra_pmc_writel(value, PMC_SCRATCH0);
640
641 value = tegra_pmc_readl(0);
642 value |= 0x10;
643 tegra_pmc_writel(value, 0);
7892158a
DR
644
645 return NOTIFY_DONE;
7232398a
TR
646}
647
7892158a
DR
648static struct notifier_block tegra_pmc_restart_handler = {
649 .notifier_call = tegra_pmc_restart_notify,
650 .priority = 128,
651};
652
7232398a
TR
653static int powergate_show(struct seq_file *s, void *data)
654{
655 unsigned int i;
c3ea2972 656 int status;
7232398a
TR
657
658 seq_printf(s, " powergate powered\n");
659 seq_printf(s, "------------------\n");
660
661 for (i = 0; i < pmc->soc->num_powergates; i++) {
c3ea2972
JH
662 status = tegra_powergate_is_powered(i);
663 if (status < 0)
7232398a
TR
664 continue;
665
666 seq_printf(s, " %9s %7s\n", pmc->soc->powergates[i],
c3ea2972 667 status ? "yes" : "no");
7232398a
TR
668 }
669
670 return 0;
671}
672
673static int powergate_open(struct inode *inode, struct file *file)
674{
675 return single_open(file, powergate_show, inode->i_private);
676}
677
678static const struct file_operations powergate_fops = {
679 .open = powergate_open,
680 .read = seq_read,
681 .llseek = seq_lseek,
682 .release = single_release,
683};
684
685static int tegra_powergate_debugfs_init(void)
686{
3195ac6d
JH
687 pmc->debugfs = debugfs_create_file("powergate", S_IRUGO, NULL, NULL,
688 &powergate_fops);
689 if (!pmc->debugfs)
7232398a
TR
690 return -ENOMEM;
691
692 return 0;
693}
694
a3804512
JH
695static int tegra_powergate_of_get_clks(struct tegra_powergate *pg,
696 struct device_node *np)
697{
698 struct clk *clk;
699 unsigned int i, count;
700 int err;
701
702 count = of_count_phandle_with_args(np, "clocks", "#clock-cells");
703 if (count == 0)
704 return -ENODEV;
705
706 pg->clks = kcalloc(count, sizeof(clk), GFP_KERNEL);
707 if (!pg->clks)
708 return -ENOMEM;
709
710 for (i = 0; i < count; i++) {
711 pg->clks[i] = of_clk_get(np, i);
712 if (IS_ERR(pg->clks[i])) {
713 err = PTR_ERR(pg->clks[i]);
714 goto err;
715 }
716 }
717
718 pg->num_clks = count;
719
720 return 0;
721
722err:
723 while (i--)
724 clk_put(pg->clks[i]);
725 kfree(pg->clks);
726
727 return err;
728}
729
730static int tegra_powergate_of_get_resets(struct tegra_powergate *pg,
731 struct device_node *np)
732{
733 struct reset_control *rst;
734 unsigned int i, count;
735 int err;
736
737 count = of_count_phandle_with_args(np, "resets", "#reset-cells");
738 if (count == 0)
739 return -ENODEV;
740
741 pg->resets = kcalloc(count, sizeof(rst), GFP_KERNEL);
742 if (!pg->resets)
743 return -ENOMEM;
744
745 for (i = 0; i < count; i++) {
746 pg->resets[i] = of_reset_control_get_by_index(np, i);
747 if (IS_ERR(pg->resets[i])) {
748 err = PTR_ERR(pg->resets[i]);
749 goto error;
750 }
751 }
752
753 pg->num_resets = count;
754
755 return 0;
756
757error:
758 while (i--)
759 reset_control_put(pg->resets[i]);
760 kfree(pg->resets);
761
762 return err;
763}
764
765static void tegra_powergate_add(struct tegra_pmc *pmc, struct device_node *np)
766{
767 struct tegra_powergate *pg;
768 bool off;
769 int id;
770
771 pg = kzalloc(sizeof(*pg), GFP_KERNEL);
772 if (!pg)
773 goto error;
774
775 id = tegra_powergate_lookup(pmc, np->name);
776 if (id < 0)
777 goto free_mem;
778
779 /*
780 * Clear the bit for this powergate so it cannot be managed
781 * directly via the legacy APIs for controlling powergates.
782 */
783 clear_bit(id, pmc->powergates_available);
784
785 pg->id = id;
786 pg->genpd.name = np->name;
787 pg->genpd.power_off = tegra_genpd_power_off;
788 pg->genpd.power_on = tegra_genpd_power_on;
789 pg->pmc = pmc;
790
791 if (tegra_powergate_of_get_clks(pg, np))
792 goto set_available;
793
794 if (tegra_powergate_of_get_resets(pg, np))
795 goto remove_clks;
796
797 off = !tegra_powergate_is_powered(pg->id);
798
799 pm_genpd_init(&pg->genpd, NULL, off);
800
801 if (of_genpd_add_provider_simple(np, &pg->genpd))
802 goto remove_resets;
803
804 dev_dbg(pmc->dev, "added power domain %s\n", pg->genpd.name);
805
806 return;
807
808remove_resets:
809 while (pg->num_resets--)
810 reset_control_put(pg->resets[pg->num_resets]);
811 kfree(pg->resets);
812
813remove_clks:
814 while (pg->num_clks--)
815 clk_put(pg->clks[pg->num_clks]);
816 kfree(pg->clks);
817
818set_available:
819 set_bit(id, pmc->powergates_available);
820
821free_mem:
822 kfree(pg);
823
824error:
825 dev_err(pmc->dev, "failed to create power domain for %s\n", np->name);
826}
827
828static void tegra_powergate_init(struct tegra_pmc *pmc)
829{
830 struct device_node *np, *child;
831
832 np = of_get_child_by_name(pmc->dev->of_node, "powergates");
833 if (!np)
834 return;
835
836 for_each_child_of_node(np, child) {
837 tegra_powergate_add(pmc, child);
838 of_node_put(child);
839 }
840
841 of_node_put(np);
842}
843
70293ed0 844static int tegra_io_rail_prepare(unsigned int id, unsigned long *request,
7232398a
TR
845 unsigned long *status, unsigned int *bit)
846{
847 unsigned long rate, value;
7232398a
TR
848
849 *bit = id % 32;
850
851 /*
852 * There are two sets of 30 bits to select IO rails, but bits 30 and
853 * 31 are control bits rather than IO rail selection bits.
854 */
855 if (id > 63 || *bit == 30 || *bit == 31)
856 return -EINVAL;
857
858 if (id < 32) {
859 *status = IO_DPD_STATUS;
860 *request = IO_DPD_REQ;
861 } else {
862 *status = IO_DPD2_STATUS;
863 *request = IO_DPD2_REQ;
864 }
865
592431b0 866 rate = clk_get_rate(pmc->clk);
7232398a
TR
867
868 tegra_pmc_writel(DPD_SAMPLE_ENABLE, DPD_SAMPLE);
869
870 /* must be at least 200 ns, in APB (PCLK) clock cycles */
871 value = DIV_ROUND_UP(1000000000, rate);
872 value = DIV_ROUND_UP(200, value);
873 tegra_pmc_writel(value, SEL_DPD_TIM);
874
875 return 0;
876}
877
878static int tegra_io_rail_poll(unsigned long offset, unsigned long mask,
879 unsigned long val, unsigned long timeout)
880{
881 unsigned long value;
882
883 timeout = jiffies + msecs_to_jiffies(timeout);
884
885 while (time_after(timeout, jiffies)) {
886 value = tegra_pmc_readl(offset);
887 if ((value & mask) == val)
888 return 0;
889
890 usleep_range(250, 1000);
891 }
892
893 return -ETIMEDOUT;
894}
895
896static void tegra_io_rail_unprepare(void)
897{
898 tegra_pmc_writel(DPD_SAMPLE_DISABLE, DPD_SAMPLE);
899}
900
70293ed0 901int tegra_io_rail_power_on(unsigned int id)
7232398a
TR
902{
903 unsigned long request, status, value;
904 unsigned int bit, mask;
905 int err;
906
e8cf6616
JH
907 mutex_lock(&pmc->powergates_lock);
908
7232398a 909 err = tegra_io_rail_prepare(id, &request, &status, &bit);
e8cf6616
JH
910 if (err)
911 goto error;
7232398a
TR
912
913 mask = 1 << bit;
914
915 value = tegra_pmc_readl(request);
916 value |= mask;
917 value &= ~IO_DPD_REQ_CODE_MASK;
918 value |= IO_DPD_REQ_CODE_OFF;
919 tegra_pmc_writel(value, request);
920
921 err = tegra_io_rail_poll(status, mask, 0, 250);
e8cf6616 922 if (err) {
592431b0 923 pr_info("tegra_io_rail_poll() failed: %d\n", err);
e8cf6616 924 goto error;
592431b0 925 }
7232398a
TR
926
927 tegra_io_rail_unprepare();
928
e8cf6616
JH
929error:
930 mutex_unlock(&pmc->powergates_lock);
931
932 return err;
7232398a
TR
933}
934EXPORT_SYMBOL(tegra_io_rail_power_on);
935
70293ed0 936int tegra_io_rail_power_off(unsigned int id)
7232398a
TR
937{
938 unsigned long request, status, value;
939 unsigned int bit, mask;
940 int err;
941
e8cf6616
JH
942 mutex_lock(&pmc->powergates_lock);
943
7232398a 944 err = tegra_io_rail_prepare(id, &request, &status, &bit);
e8cf6616 945 if (err) {
592431b0 946 pr_info("tegra_io_rail_prepare() failed: %d\n", err);
e8cf6616 947 goto error;
592431b0 948 }
7232398a
TR
949
950 mask = 1 << bit;
951
952 value = tegra_pmc_readl(request);
953 value |= mask;
954 value &= ~IO_DPD_REQ_CODE_MASK;
955 value |= IO_DPD_REQ_CODE_ON;
956 tegra_pmc_writel(value, request);
957
958 err = tegra_io_rail_poll(status, mask, mask, 250);
e8cf6616
JH
959 if (err)
960 goto error;
7232398a
TR
961
962 tegra_io_rail_unprepare();
963
e8cf6616
JH
964error:
965 mutex_unlock(&pmc->powergates_lock);
966
967 return err;
7232398a
TR
968}
969EXPORT_SYMBOL(tegra_io_rail_power_off);
970
971#ifdef CONFIG_PM_SLEEP
972enum tegra_suspend_mode tegra_pmc_get_suspend_mode(void)
973{
974 return pmc->suspend_mode;
975}
976
977void tegra_pmc_set_suspend_mode(enum tegra_suspend_mode mode)
978{
979 if (mode < TEGRA_SUSPEND_NONE || mode >= TEGRA_MAX_SUSPEND_MODE)
980 return;
981
982 pmc->suspend_mode = mode;
983}
984
985void tegra_pmc_enter_suspend_mode(enum tegra_suspend_mode mode)
986{
987 unsigned long long rate = 0;
988 u32 value;
989
990 switch (mode) {
991 case TEGRA_SUSPEND_LP1:
992 rate = 32768;
993 break;
994
995 case TEGRA_SUSPEND_LP2:
996 rate = clk_get_rate(pmc->clk);
997 break;
998
999 default:
1000 break;
1001 }
1002
1003 if (WARN_ON_ONCE(rate == 0))
1004 rate = 100000000;
1005
1006 if (rate != pmc->rate) {
1007 u64 ticks;
1008
1009 ticks = pmc->cpu_good_time * rate + USEC_PER_SEC - 1;
1010 do_div(ticks, USEC_PER_SEC);
1011 tegra_pmc_writel(ticks, PMC_CPUPWRGOOD_TIMER);
1012
1013 ticks = pmc->cpu_off_time * rate + USEC_PER_SEC - 1;
1014 do_div(ticks, USEC_PER_SEC);
1015 tegra_pmc_writel(ticks, PMC_CPUPWROFF_TIMER);
1016
1017 wmb();
1018
1019 pmc->rate = rate;
1020 }
1021
1022 value = tegra_pmc_readl(PMC_CNTRL);
1023 value &= ~PMC_CNTRL_SIDE_EFFECT_LP0;
1024 value |= PMC_CNTRL_CPU_PWRREQ_OE;
1025 tegra_pmc_writel(value, PMC_CNTRL);
1026}
1027#endif
1028
1029static int tegra_pmc_parse_dt(struct tegra_pmc *pmc, struct device_node *np)
1030{
1031 u32 value, values[2];
1032
1033 if (of_property_read_u32(np, "nvidia,suspend-mode", &value)) {
1034 } else {
1035 switch (value) {
1036 case 0:
1037 pmc->suspend_mode = TEGRA_SUSPEND_LP0;
1038 break;
1039
1040 case 1:
1041 pmc->suspend_mode = TEGRA_SUSPEND_LP1;
1042 break;
1043
1044 case 2:
1045 pmc->suspend_mode = TEGRA_SUSPEND_LP2;
1046 break;
1047
1048 default:
1049 pmc->suspend_mode = TEGRA_SUSPEND_NONE;
1050 break;
1051 }
1052 }
1053
1054 pmc->suspend_mode = tegra_pm_validate_suspend_mode(pmc->suspend_mode);
1055
1056 if (of_property_read_u32(np, "nvidia,cpu-pwr-good-time", &value))
1057 pmc->suspend_mode = TEGRA_SUSPEND_NONE;
1058
1059 pmc->cpu_good_time = value;
1060
1061 if (of_property_read_u32(np, "nvidia,cpu-pwr-off-time", &value))
1062 pmc->suspend_mode = TEGRA_SUSPEND_NONE;
1063
1064 pmc->cpu_off_time = value;
1065
1066 if (of_property_read_u32_array(np, "nvidia,core-pwr-good-time",
1067 values, ARRAY_SIZE(values)))
1068 pmc->suspend_mode = TEGRA_SUSPEND_NONE;
1069
1070 pmc->core_osc_time = values[0];
1071 pmc->core_pmu_time = values[1];
1072
1073 if (of_property_read_u32(np, "nvidia,core-pwr-off-time", &value))
1074 pmc->suspend_mode = TEGRA_SUSPEND_NONE;
1075
1076 pmc->core_off_time = value;
1077
1078 pmc->corereq_high = of_property_read_bool(np,
1079 "nvidia,core-power-req-active-high");
1080
1081 pmc->sysclkreq_high = of_property_read_bool(np,
1082 "nvidia,sys-clock-req-active-high");
1083
1084 pmc->combined_req = of_property_read_bool(np,
1085 "nvidia,combined-power-req");
1086
1087 pmc->cpu_pwr_good_en = of_property_read_bool(np,
1088 "nvidia,cpu-pwr-good-en");
1089
1090 if (of_property_read_u32_array(np, "nvidia,lp0-vec", values,
1091 ARRAY_SIZE(values)))
1092 if (pmc->suspend_mode == TEGRA_SUSPEND_LP0)
1093 pmc->suspend_mode = TEGRA_SUSPEND_LP1;
1094
1095 pmc->lp0_vec_phys = values[0];
1096 pmc->lp0_vec_size = values[1];
1097
1098 return 0;
1099}
1100
1101static void tegra_pmc_init(struct tegra_pmc *pmc)
1102{
1103 u32 value;
1104
1105 /* Always enable CPU power request */
1106 value = tegra_pmc_readl(PMC_CNTRL);
1107 value |= PMC_CNTRL_CPU_PWRREQ_OE;
1108 tegra_pmc_writel(value, PMC_CNTRL);
1109
1110 value = tegra_pmc_readl(PMC_CNTRL);
1111
1112 if (pmc->sysclkreq_high)
1113 value &= ~PMC_CNTRL_SYSCLK_POLARITY;
1114 else
1115 value |= PMC_CNTRL_SYSCLK_POLARITY;
1116
1117 /* configure the output polarity while the request is tristated */
1118 tegra_pmc_writel(value, PMC_CNTRL);
1119
1120 /* now enable the request */
1121 value = tegra_pmc_readl(PMC_CNTRL);
1122 value |= PMC_CNTRL_SYSCLK_OE;
1123 tegra_pmc_writel(value, PMC_CNTRL);
1124}
1125
1e52efdf 1126static void tegra_pmc_init_tsense_reset(struct tegra_pmc *pmc)
3568df3d
MP
1127{
1128 static const char disabled[] = "emergency thermal reset disabled";
1129 u32 pmu_addr, ctrl_id, reg_addr, reg_data, pinmux;
1130 struct device *dev = pmc->dev;
1131 struct device_node *np;
1132 u32 value, checksum;
1133
1134 if (!pmc->soc->has_tsense_reset)
95169cd2 1135 return;
3568df3d
MP
1136
1137 np = of_find_node_by_name(pmc->dev->of_node, "i2c-thermtrip");
1138 if (!np) {
1139 dev_warn(dev, "i2c-thermtrip node not found, %s.\n", disabled);
95169cd2 1140 return;
3568df3d
MP
1141 }
1142
1143 if (of_property_read_u32(np, "nvidia,i2c-controller-id", &ctrl_id)) {
1144 dev_err(dev, "I2C controller ID missing, %s.\n", disabled);
1145 goto out;
1146 }
1147
1148 if (of_property_read_u32(np, "nvidia,bus-addr", &pmu_addr)) {
1149 dev_err(dev, "nvidia,bus-addr missing, %s.\n", disabled);
1150 goto out;
1151 }
1152
1153 if (of_property_read_u32(np, "nvidia,reg-addr", &reg_addr)) {
1154 dev_err(dev, "nvidia,reg-addr missing, %s.\n", disabled);
1155 goto out;
1156 }
1157
1158 if (of_property_read_u32(np, "nvidia,reg-data", &reg_data)) {
1159 dev_err(dev, "nvidia,reg-data missing, %s.\n", disabled);
1160 goto out;
1161 }
1162
1163 if (of_property_read_u32(np, "nvidia,pinmux-id", &pinmux))
1164 pinmux = 0;
1165
1166 value = tegra_pmc_readl(PMC_SENSOR_CTRL);
1167 value |= PMC_SENSOR_CTRL_SCRATCH_WRITE;
1168 tegra_pmc_writel(value, PMC_SENSOR_CTRL);
1169
1170 value = (reg_data << PMC_SCRATCH54_DATA_SHIFT) |
1171 (reg_addr << PMC_SCRATCH54_ADDR_SHIFT);
1172 tegra_pmc_writel(value, PMC_SCRATCH54);
1173
1174 value = PMC_SCRATCH55_RESET_TEGRA;
1175 value |= ctrl_id << PMC_SCRATCH55_CNTRL_ID_SHIFT;
1176 value |= pinmux << PMC_SCRATCH55_PINMUX_SHIFT;
1177 value |= pmu_addr << PMC_SCRATCH55_I2CSLV1_SHIFT;
1178
1179 /*
1180 * Calculate checksum of SCRATCH54, SCRATCH55 fields. Bits 23:16 will
1181 * contain the checksum and are currently zero, so they are not added.
1182 */
1183 checksum = reg_addr + reg_data + (value & 0xff) + ((value >> 8) & 0xff)
1184 + ((value >> 24) & 0xff);
1185 checksum &= 0xff;
1186 checksum = 0x100 - checksum;
1187
1188 value |= checksum << PMC_SCRATCH55_CHECKSUM_SHIFT;
1189
1190 tegra_pmc_writel(value, PMC_SCRATCH55);
1191
1192 value = tegra_pmc_readl(PMC_SENSOR_CTRL);
1193 value |= PMC_SENSOR_CTRL_ENABLE_RST;
1194 tegra_pmc_writel(value, PMC_SENSOR_CTRL);
1195
1196 dev_info(pmc->dev, "emergency thermal reset enabled\n");
1197
1198out:
1199 of_node_put(np);
3568df3d
MP
1200}
1201
7232398a
TR
1202static int tegra_pmc_probe(struct platform_device *pdev)
1203{
e8cf6616 1204 void __iomem *base;
7232398a
TR
1205 struct resource *res;
1206 int err;
1207
1208 err = tegra_pmc_parse_dt(pmc, pdev->dev.of_node);
1209 if (err < 0)
1210 return err;
1211
1212 /* take over the memory region from the early initialization */
1213 res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
0259f522
JH
1214 base = devm_ioremap_resource(&pdev->dev, res);
1215 if (IS_ERR(base))
1216 return PTR_ERR(base);
7232398a
TR
1217
1218 pmc->clk = devm_clk_get(&pdev->dev, "pclk");
1219 if (IS_ERR(pmc->clk)) {
1220 err = PTR_ERR(pmc->clk);
1221 dev_err(&pdev->dev, "failed to get pclk: %d\n", err);
1222 return err;
1223 }
1224
3568df3d
MP
1225 pmc->dev = &pdev->dev;
1226
7232398a
TR
1227 tegra_pmc_init(pmc);
1228
3568df3d
MP
1229 tegra_pmc_init_tsense_reset(pmc);
1230
7232398a
TR
1231 if (IS_ENABLED(CONFIG_DEBUG_FS)) {
1232 err = tegra_powergate_debugfs_init();
1233 if (err < 0)
1234 return err;
7892158a
DR
1235 }
1236
1237 err = register_restart_handler(&tegra_pmc_restart_handler);
1238 if (err) {
3195ac6d 1239 debugfs_remove(pmc->debugfs);
7892158a
DR
1240 dev_err(&pdev->dev, "unable to register restart handler, %d\n",
1241 err);
1242 return err;
7232398a
TR
1243 }
1244
a3804512
JH
1245 tegra_powergate_init(pmc);
1246
e8cf6616
JH
1247 mutex_lock(&pmc->powergates_lock);
1248 iounmap(pmc->base);
0259f522 1249 pmc->base = base;
e8cf6616 1250 mutex_unlock(&pmc->powergates_lock);
0259f522 1251
7232398a
TR
1252 return 0;
1253}
1254
2b20b616 1255#if defined(CONFIG_PM_SLEEP) && defined(CONFIG_ARM)
7232398a
TR
1256static int tegra_pmc_suspend(struct device *dev)
1257{
1258 tegra_pmc_writel(virt_to_phys(tegra_resume), PMC_SCRATCH41);
1259
1260 return 0;
1261}
1262
1263static int tegra_pmc_resume(struct device *dev)
1264{
1265 tegra_pmc_writel(0x0, PMC_SCRATCH41);
1266
1267 return 0;
1268}
7232398a
TR
1269
1270static SIMPLE_DEV_PM_OPS(tegra_pmc_pm_ops, tegra_pmc_suspend, tegra_pmc_resume);
1271
2b20b616
PW
1272#endif
1273
7232398a
TR
1274static const char * const tegra20_powergates[] = {
1275 [TEGRA_POWERGATE_CPU] = "cpu",
1276 [TEGRA_POWERGATE_3D] = "3d",
1277 [TEGRA_POWERGATE_VENC] = "venc",
1278 [TEGRA_POWERGATE_VDEC] = "vdec",
1279 [TEGRA_POWERGATE_PCIE] = "pcie",
1280 [TEGRA_POWERGATE_L2] = "l2",
1281 [TEGRA_POWERGATE_MPE] = "mpe",
1282};
1283
1284static const struct tegra_pmc_soc tegra20_pmc_soc = {
1285 .num_powergates = ARRAY_SIZE(tegra20_powergates),
1286 .powergates = tegra20_powergates,
1287 .num_cpu_powergates = 0,
1288 .cpu_powergates = NULL,
3568df3d 1289 .has_tsense_reset = false,
a9a40a4a 1290 .has_gpu_clamps = false,
7232398a
TR
1291};
1292
1293static const char * const tegra30_powergates[] = {
1294 [TEGRA_POWERGATE_CPU] = "cpu0",
1295 [TEGRA_POWERGATE_3D] = "3d0",
1296 [TEGRA_POWERGATE_VENC] = "venc",
1297 [TEGRA_POWERGATE_VDEC] = "vdec",
1298 [TEGRA_POWERGATE_PCIE] = "pcie",
1299 [TEGRA_POWERGATE_L2] = "l2",
1300 [TEGRA_POWERGATE_MPE] = "mpe",
1301 [TEGRA_POWERGATE_HEG] = "heg",
1302 [TEGRA_POWERGATE_SATA] = "sata",
1303 [TEGRA_POWERGATE_CPU1] = "cpu1",
1304 [TEGRA_POWERGATE_CPU2] = "cpu2",
1305 [TEGRA_POWERGATE_CPU3] = "cpu3",
1306 [TEGRA_POWERGATE_CELP] = "celp",
1307 [TEGRA_POWERGATE_3D1] = "3d1",
1308};
1309
1310static const u8 tegra30_cpu_powergates[] = {
1311 TEGRA_POWERGATE_CPU,
1312 TEGRA_POWERGATE_CPU1,
1313 TEGRA_POWERGATE_CPU2,
1314 TEGRA_POWERGATE_CPU3,
1315};
1316
1317static const struct tegra_pmc_soc tegra30_pmc_soc = {
1318 .num_powergates = ARRAY_SIZE(tegra30_powergates),
1319 .powergates = tegra30_powergates,
1320 .num_cpu_powergates = ARRAY_SIZE(tegra30_cpu_powergates),
1321 .cpu_powergates = tegra30_cpu_powergates,
3568df3d 1322 .has_tsense_reset = true,
a9a40a4a 1323 .has_gpu_clamps = false,
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1324};
1325
1326static const char * const tegra114_powergates[] = {
1327 [TEGRA_POWERGATE_CPU] = "crail",
1328 [TEGRA_POWERGATE_3D] = "3d",
1329 [TEGRA_POWERGATE_VENC] = "venc",
1330 [TEGRA_POWERGATE_VDEC] = "vdec",
1331 [TEGRA_POWERGATE_MPE] = "mpe",
1332 [TEGRA_POWERGATE_HEG] = "heg",
1333 [TEGRA_POWERGATE_CPU1] = "cpu1",
1334 [TEGRA_POWERGATE_CPU2] = "cpu2",
1335 [TEGRA_POWERGATE_CPU3] = "cpu3",
1336 [TEGRA_POWERGATE_CELP] = "celp",
1337 [TEGRA_POWERGATE_CPU0] = "cpu0",
1338 [TEGRA_POWERGATE_C0NC] = "c0nc",
1339 [TEGRA_POWERGATE_C1NC] = "c1nc",
1340 [TEGRA_POWERGATE_DIS] = "dis",
1341 [TEGRA_POWERGATE_DISB] = "disb",
1342 [TEGRA_POWERGATE_XUSBA] = "xusba",
1343 [TEGRA_POWERGATE_XUSBB] = "xusbb",
1344 [TEGRA_POWERGATE_XUSBC] = "xusbc",
1345};
1346
1347static const u8 tegra114_cpu_powergates[] = {
1348 TEGRA_POWERGATE_CPU0,
1349 TEGRA_POWERGATE_CPU1,
1350 TEGRA_POWERGATE_CPU2,
1351 TEGRA_POWERGATE_CPU3,
1352};
1353
1354static const struct tegra_pmc_soc tegra114_pmc_soc = {
1355 .num_powergates = ARRAY_SIZE(tegra114_powergates),
1356 .powergates = tegra114_powergates,
1357 .num_cpu_powergates = ARRAY_SIZE(tegra114_cpu_powergates),
1358 .cpu_powergates = tegra114_cpu_powergates,
3568df3d 1359 .has_tsense_reset = true,
a9a40a4a 1360 .has_gpu_clamps = false,
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1361};
1362
1363static const char * const tegra124_powergates[] = {
1364 [TEGRA_POWERGATE_CPU] = "crail",
1365 [TEGRA_POWERGATE_3D] = "3d",
1366 [TEGRA_POWERGATE_VENC] = "venc",
1367 [TEGRA_POWERGATE_PCIE] = "pcie",
1368 [TEGRA_POWERGATE_VDEC] = "vdec",
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1369 [TEGRA_POWERGATE_MPE] = "mpe",
1370 [TEGRA_POWERGATE_HEG] = "heg",
1371 [TEGRA_POWERGATE_SATA] = "sata",
1372 [TEGRA_POWERGATE_CPU1] = "cpu1",
1373 [TEGRA_POWERGATE_CPU2] = "cpu2",
1374 [TEGRA_POWERGATE_CPU3] = "cpu3",
1375 [TEGRA_POWERGATE_CELP] = "celp",
1376 [TEGRA_POWERGATE_CPU0] = "cpu0",
1377 [TEGRA_POWERGATE_C0NC] = "c0nc",
1378 [TEGRA_POWERGATE_C1NC] = "c1nc",
1379 [TEGRA_POWERGATE_SOR] = "sor",
1380 [TEGRA_POWERGATE_DIS] = "dis",
1381 [TEGRA_POWERGATE_DISB] = "disb",
1382 [TEGRA_POWERGATE_XUSBA] = "xusba",
1383 [TEGRA_POWERGATE_XUSBB] = "xusbb",
1384 [TEGRA_POWERGATE_XUSBC] = "xusbc",
1385 [TEGRA_POWERGATE_VIC] = "vic",
1386 [TEGRA_POWERGATE_IRAM] = "iram",
1387};
1388
1389static const u8 tegra124_cpu_powergates[] = {
1390 TEGRA_POWERGATE_CPU0,
1391 TEGRA_POWERGATE_CPU1,
1392 TEGRA_POWERGATE_CPU2,
1393 TEGRA_POWERGATE_CPU3,
1394};
1395
1396static const struct tegra_pmc_soc tegra124_pmc_soc = {
1397 .num_powergates = ARRAY_SIZE(tegra124_powergates),
1398 .powergates = tegra124_powergates,
1399 .num_cpu_powergates = ARRAY_SIZE(tegra124_cpu_powergates),
1400 .cpu_powergates = tegra124_cpu_powergates,
3568df3d 1401 .has_tsense_reset = true,
a9a40a4a 1402 .has_gpu_clamps = true,
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1403};
1404
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1405static const char * const tegra210_powergates[] = {
1406 [TEGRA_POWERGATE_CPU] = "crail",
1407 [TEGRA_POWERGATE_3D] = "3d",
1408 [TEGRA_POWERGATE_VENC] = "venc",
1409 [TEGRA_POWERGATE_PCIE] = "pcie",
c2fe4694 1410 [TEGRA_POWERGATE_MPE] = "mpe",
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1411 [TEGRA_POWERGATE_SATA] = "sata",
1412 [TEGRA_POWERGATE_CPU1] = "cpu1",
1413 [TEGRA_POWERGATE_CPU2] = "cpu2",
1414 [TEGRA_POWERGATE_CPU3] = "cpu3",
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1415 [TEGRA_POWERGATE_CPU0] = "cpu0",
1416 [TEGRA_POWERGATE_C0NC] = "c0nc",
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1417 [TEGRA_POWERGATE_SOR] = "sor",
1418 [TEGRA_POWERGATE_DIS] = "dis",
1419 [TEGRA_POWERGATE_DISB] = "disb",
1420 [TEGRA_POWERGATE_XUSBA] = "xusba",
1421 [TEGRA_POWERGATE_XUSBB] = "xusbb",
1422 [TEGRA_POWERGATE_XUSBC] = "xusbc",
1423 [TEGRA_POWERGATE_VIC] = "vic",
1424 [TEGRA_POWERGATE_IRAM] = "iram",
1425 [TEGRA_POWERGATE_NVDEC] = "nvdec",
1426 [TEGRA_POWERGATE_NVJPG] = "nvjpg",
1427 [TEGRA_POWERGATE_AUD] = "aud",
1428 [TEGRA_POWERGATE_DFD] = "dfd",
1429 [TEGRA_POWERGATE_VE2] = "ve2",
1430};
1431
1432static const u8 tegra210_cpu_powergates[] = {
1433 TEGRA_POWERGATE_CPU0,
1434 TEGRA_POWERGATE_CPU1,
1435 TEGRA_POWERGATE_CPU2,
1436 TEGRA_POWERGATE_CPU3,
1437};
1438
1439static const struct tegra_pmc_soc tegra210_pmc_soc = {
1440 .num_powergates = ARRAY_SIZE(tegra210_powergates),
1441 .powergates = tegra210_powergates,
1442 .num_cpu_powergates = ARRAY_SIZE(tegra210_cpu_powergates),
1443 .cpu_powergates = tegra210_cpu_powergates,
1444 .has_tsense_reset = true,
1445 .has_gpu_clamps = true,
1446};
1447
7232398a 1448static const struct of_device_id tegra_pmc_match[] = {
c2fe4694 1449 { .compatible = "nvidia,tegra210-pmc", .data = &tegra210_pmc_soc },
7d71e903 1450 { .compatible = "nvidia,tegra132-pmc", .data = &tegra124_pmc_soc },
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1451 { .compatible = "nvidia,tegra124-pmc", .data = &tegra124_pmc_soc },
1452 { .compatible = "nvidia,tegra114-pmc", .data = &tegra114_pmc_soc },
1453 { .compatible = "nvidia,tegra30-pmc", .data = &tegra30_pmc_soc },
1454 { .compatible = "nvidia,tegra20-pmc", .data = &tegra20_pmc_soc },
1455 { }
1456};
1457
1458static struct platform_driver tegra_pmc_driver = {
1459 .driver = {
1460 .name = "tegra-pmc",
1461 .suppress_bind_attrs = true,
1462 .of_match_table = tegra_pmc_match,
2b20b616 1463#if defined(CONFIG_PM_SLEEP) && defined(CONFIG_ARM)
7232398a 1464 .pm = &tegra_pmc_pm_ops,
2b20b616 1465#endif
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1466 },
1467 .probe = tegra_pmc_probe,
1468};
7d4d9ed6 1469builtin_platform_driver(tegra_pmc_driver);
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1470
1471/*
1472 * Early initialization to allow access to registers in the very early boot
1473 * process.
1474 */
1475static int __init tegra_pmc_early_init(void)
1476{
1477 const struct of_device_id *match;
1478 struct device_node *np;
1479 struct resource regs;
a3804512 1480 unsigned int i;
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1481 bool invert;
1482 u32 value;
1483
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1484 np = of_find_matching_node_and_match(NULL, tegra_pmc_match, &match);
1485 if (!np) {
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1486 /*
1487 * Fall back to legacy initialization for 32-bit ARM only. All
1488 * 64-bit ARM device tree files for Tegra are required to have
1489 * a PMC node.
1490 *
1491 * This is for backwards-compatibility with old device trees
1492 * that didn't contain a PMC node. Note that in this case the
1493 * SoC data can't be matched and therefore powergating is
1494 * disabled.
1495 */
1496 if (IS_ENABLED(CONFIG_ARM) && soc_is_tegra()) {
1497 pr_warn("DT node not found, powergating disabled\n");
1498
1499 regs.start = 0x7000e400;
1500 regs.end = 0x7000e7ff;
1501 regs.flags = IORESOURCE_MEM;
1502
1503 pr_warn("Using memory region %pR\n", &regs);
1504 } else {
1505 /*
1506 * At this point we're not running on Tegra, so play
1507 * nice with multi-platform kernels.
1508 */
1509 return 0;
1510 }
7232398a 1511 } else {
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1512 /*
1513 * Extract information from the device tree if we've found a
1514 * matching node.
1515 */
1516 if (of_address_to_resource(np, 0, &regs) < 0) {
1517 pr_err("failed to get PMC registers\n");
1518 return -ENXIO;
1519 }
7232398a 1520
7d71e903 1521 pmc->soc = match->data;
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1522 }
1523
1524 pmc->base = ioremap_nocache(regs.start, resource_size(&regs));
1525 if (!pmc->base) {
1526 pr_err("failed to map PMC registers\n");
1527 return -ENXIO;
1528 }
1529
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1530 /* Create a bit-map of the available and valid partitions */
1531 for (i = 0; i < pmc->soc->num_powergates; i++)
1532 if (pmc->soc->powergates[i])
1533 set_bit(i, pmc->powergates_available);
1534
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1535 mutex_init(&pmc->powergates_lock);
1536
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1537 /*
1538 * Invert the interrupt polarity if a PMC device tree node exists and
1539 * contains the nvidia,invert-interrupt property.
1540 */
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1541 invert = of_property_read_bool(np, "nvidia,invert-interrupt");
1542
1543 value = tegra_pmc_readl(PMC_CNTRL);
1544
1545 if (invert)
1546 value |= PMC_CNTRL_INTR_POLARITY;
1547 else
1548 value &= ~PMC_CNTRL_INTR_POLARITY;
1549
1550 tegra_pmc_writel(value, PMC_CNTRL);
1551
1552 return 0;
1553}
1554early_initcall(tegra_pmc_early_init);
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