Merge branch 'smp-hotplug-for-linus' of git://git.kernel.org/pub/scm/linux/kernel...
[deliverable/linux.git] / arch / arm / mach-omap2 / pm34xx.c
CommitLineData
8bd22949
KH
1/*
2 * OMAP3 Power Management Routines
3 *
4 * Copyright (C) 2006-2008 Nokia Corporation
5 * Tony Lindgren <tony@atomide.com>
6 * Jouni Hogander
7 *
2f5939c3
RN
8 * Copyright (C) 2007 Texas Instruments, Inc.
9 * Rajendra Nayak <rnayak@ti.com>
10 *
8bd22949
KH
11 * Copyright (C) 2005 Texas Instruments, Inc.
12 * Richard Woodruff <r-woodruff2@ti.com>
13 *
14 * Based on pm.c for omap1
15 *
16 * This program is free software; you can redistribute it and/or modify
17 * it under the terms of the GNU General Public License version 2 as
18 * published by the Free Software Foundation.
19 */
20
21#include <linux/pm.h>
22#include <linux/suspend.h>
23#include <linux/interrupt.h>
24#include <linux/module.h>
25#include <linux/list.h>
26#include <linux/err.h>
27#include <linux/gpio.h>
c40552bc 28#include <linux/clk.h>
dccaad89 29#include <linux/delay.h>
5a0e3ad6 30#include <linux/slab.h>
45c3eb7d 31#include <linux/omap-dma.h>
4b25408f
TL
32#include <linux/platform_data/gpio-omap.h>
33
5e7c58dc 34#include <trace/events/power.h>
8bd22949 35
bf027ca1 36#include <asm/fncpy.h>
2c74a0ce 37#include <asm/suspend.h>
9f97da78 38#include <asm/system_misc.h>
2c74a0ce 39
1540f214 40#include "clockdomain.h"
72e06d08 41#include "powerdomain.h"
e4c060db 42#include "soc.h"
4e65331c 43#include "common.h"
ff4ae5d9 44#include "cm3xxx.h"
8bd22949 45#include "cm-regbits-34xx.h"
99f0b8d6 46#include "gpmc.h"
8bd22949 47#include "prm-regbits-34xx.h"
139563ad 48#include "prm3xxx.h"
8bd22949 49#include "pm.h"
13a6fe0f 50#include "sdrc.h"
bf027ca1 51#include "sram.h"
4814ced5 52#include "control.h"
13a6fe0f 53
8cdfd834
NM
54/* pm34xx errata defined in pm.h */
55u16 pm34xx_errata;
56
8bd22949
KH
57struct power_state {
58 struct powerdomain *pwrdm;
59 u32 next_state;
10f90ed2 60#ifdef CONFIG_SUSPEND
8bd22949 61 u32 saved_state;
10f90ed2 62#endif
8bd22949
KH
63 struct list_head node;
64};
65
66static LIST_HEAD(pwrst_list);
67
27d59a4a 68static int (*_omap_save_secure_sram)(u32 *addr);
46e130d2 69void (*omap3_do_wfi_sram)(void);
27d59a4a 70
fa3c2a4f
RN
71static struct powerdomain *mpu_pwrdm, *neon_pwrdm;
72static struct powerdomain *core_pwrdm, *per_pwrdm;
3a7ec26b 73
2f5939c3
RN
74static void omap3_core_save_context(void)
75{
596efe47 76 omap3_ctrl_save_padconf();
dccaad89
TK
77
78 /*
79 * Force write last pad into memory, as this can fail in some
83521291 80 * cases according to errata 1.157, 1.185
dccaad89
TK
81 */
82 omap_ctrl_writel(omap_ctrl_readl(OMAP343X_PADCONF_ETK_D14),
83 OMAP343X_CONTROL_MEM_WKUP + 0x2a0);
84
2f5939c3
RN
85 /* Save the Interrupt controller context */
86 omap_intc_save_context();
87 /* Save the GPMC context */
88 omap3_gpmc_save_context();
89 /* Save the system control module context, padconf already save above*/
90 omap3_control_save_context();
f2d11858 91 omap_dma_global_context_save();
2f5939c3
RN
92}
93
94static void omap3_core_restore_context(void)
95{
96 /* Restore the control module context, padconf restored by h/w */
97 omap3_control_restore_context();
98 /* Restore the GPMC context */
99 omap3_gpmc_restore_context();
100 /* Restore the interrupt controller context */
101 omap_intc_restore_context();
f2d11858 102 omap_dma_global_context_restore();
2f5939c3
RN
103}
104
9d97140b
TK
105/*
106 * FIXME: This function should be called before entering off-mode after
107 * OMAP3 secure services have been accessed. Currently it is only called
108 * once during boot sequence, but this works as we are not using secure
109 * services.
110 */
617fcc98 111static void omap3_save_secure_ram_context(void)
27d59a4a
TK
112{
113 u32 ret;
617fcc98 114 int mpu_next_state = pwrdm_read_next_pwrst(mpu_pwrdm);
27d59a4a
TK
115
116 if (omap_type() != OMAP2_DEVICE_TYPE_GP) {
27d59a4a
TK
117 /*
118 * MPU next state must be set to POWER_ON temporarily,
119 * otherwise the WFI executed inside the ROM code
120 * will hang the system.
121 */
122 pwrdm_set_next_pwrst(mpu_pwrdm, PWRDM_POWER_ON);
123 ret = _omap_save_secure_sram((u32 *)
124 __pa(omap3_secure_ram_storage));
617fcc98 125 pwrdm_set_next_pwrst(mpu_pwrdm, mpu_next_state);
27d59a4a
TK
126 /* Following is for error tracking, it should not happen */
127 if (ret) {
98179856 128 pr_err("save_secure_sram() returns %08x\n", ret);
27d59a4a
TK
129 while (1)
130 ;
131 }
132 }
133}
134
77da2d91
JH
135/*
136 * PRCM Interrupt Handler Helper Function
137 *
138 * The purpose of this function is to clear any wake-up events latched
139 * in the PRCM PM_WKST_x registers. It is possible that a wake-up event
140 * may occur whilst attempting to clear a PM_WKST_x register and thus
141 * set another bit in this register. A while loop is used to ensure
142 * that any peripheral wake-up events occurring while attempting to
143 * clear the PM_WKST_x are detected and cleared.
144 */
22f51371 145static int prcm_clear_mod_irqs(s16 module, u8 regs, u32 ignore_bits)
8bd22949 146{
71a80775 147 u32 wkst, fclk, iclk, clken;
77da2d91
JH
148 u16 wkst_off = (regs == 3) ? OMAP3430ES2_PM_WKST3 : PM_WKST1;
149 u16 fclk_off = (regs == 3) ? OMAP3430ES2_CM_FCLKEN3 : CM_FCLKEN1;
150 u16 iclk_off = (regs == 3) ? CM_ICLKEN3 : CM_ICLKEN1;
5d805978
PW
151 u16 grpsel_off = (regs == 3) ?
152 OMAP3430ES2_PM_MPUGRPSEL3 : OMAP3430_PM_MPUGRPSEL;
8cb0ac99 153 int c = 0;
8bd22949 154
c4d7e58f
PW
155 wkst = omap2_prm_read_mod_reg(module, wkst_off);
156 wkst &= omap2_prm_read_mod_reg(module, grpsel_off);
22f51371 157 wkst &= ~ignore_bits;
8bd22949 158 if (wkst) {
c4d7e58f
PW
159 iclk = omap2_cm_read_mod_reg(module, iclk_off);
160 fclk = omap2_cm_read_mod_reg(module, fclk_off);
77da2d91 161 while (wkst) {
71a80775 162 clken = wkst;
c4d7e58f 163 omap2_cm_set_mod_reg_bits(clken, module, iclk_off);
71a80775
VP
164 /*
165 * For USBHOST, we don't know whether HOST1 or
166 * HOST2 woke us up, so enable both f-clocks
167 */
168 if (module == OMAP3430ES2_USBHOST_MOD)
169 clken |= 1 << OMAP3430ES2_EN_USBHOST2_SHIFT;
c4d7e58f
PW
170 omap2_cm_set_mod_reg_bits(clken, module, fclk_off);
171 omap2_prm_write_mod_reg(wkst, module, wkst_off);
172 wkst = omap2_prm_read_mod_reg(module, wkst_off);
22f51371 173 wkst &= ~ignore_bits;
8cb0ac99 174 c++;
77da2d91 175 }
c4d7e58f
PW
176 omap2_cm_write_mod_reg(iclk, module, iclk_off);
177 omap2_cm_write_mod_reg(fclk, module, fclk_off);
8bd22949 178 }
8cb0ac99
PW
179
180 return c;
181}
182
22f51371 183static irqreturn_t _prcm_int_handle_io(int irq, void *unused)
8cb0ac99
PW
184{
185 int c;
186
22f51371
TK
187 c = prcm_clear_mod_irqs(WKUP_MOD, 1,
188 ~(OMAP3430_ST_IO_MASK | OMAP3430_ST_IO_CHAIN_MASK));
8cb0ac99 189
22f51371 190 return c ? IRQ_HANDLED : IRQ_NONE;
77da2d91 191}
8bd22949 192
22f51371 193static irqreturn_t _prcm_int_handle_wakeup(int irq, void *unused)
77da2d91 194{
22f51371 195 int c;
d6290a3e 196
22f51371
TK
197 /*
198 * Clear all except ST_IO and ST_IO_CHAIN for wkup module,
199 * these are handled in a separate handler to avoid acking
200 * IO events before parsing in mux code
201 */
202 c = prcm_clear_mod_irqs(WKUP_MOD, 1,
203 OMAP3430_ST_IO_MASK | OMAP3430_ST_IO_CHAIN_MASK);
204 c += prcm_clear_mod_irqs(CORE_MOD, 1, 0);
205 c += prcm_clear_mod_irqs(OMAP3430_PER_MOD, 1, 0);
206 if (omap_rev() > OMAP3430_REV_ES1_0) {
207 c += prcm_clear_mod_irqs(CORE_MOD, 3, 0);
208 c += prcm_clear_mod_irqs(OMAP3430ES2_USBHOST_MOD, 1, 0);
209 }
8bd22949 210
22f51371 211 return c ? IRQ_HANDLED : IRQ_NONE;
8bd22949
KH
212}
213
cbe26349
RK
214static void omap34xx_save_context(u32 *save)
215{
216 u32 val;
217
218 /* Read Auxiliary Control Register */
219 asm("mrc p15, 0, %0, c1, c0, 1" : "=r" (val));
220 *save++ = 1;
221 *save++ = val;
222
223 /* Read L2 AUX ctrl register */
224 asm("mrc p15, 1, %0, c9, c0, 2" : "=r" (val));
225 *save++ = 1;
226 *save++ = val;
227}
228
29cb3cd2 229static int omap34xx_do_sram_idle(unsigned long save_state)
57f277b0 230{
cbe26349 231 omap34xx_cpu_suspend(save_state);
29cb3cd2 232 return 0;
57f277b0
RN
233}
234
99e6a4d2 235void omap_sram_idle(void)
8bd22949
KH
236{
237 /* Variable to tell what needs to be saved and restored
238 * in omap_sram_idle*/
239 /* save_state = 0 => Nothing to save and restored */
240 /* save_state = 1 => Only L1 and logic lost */
241 /* save_state = 2 => Only L2 lost */
242 /* save_state = 3 => L1, L2 and logic lost */
fa3c2a4f
RN
243 int save_state = 0;
244 int mpu_next_state = PWRDM_POWER_ON;
245 int per_next_state = PWRDM_POWER_ON;
246 int core_next_state = PWRDM_POWER_ON;
72e06d08 247 int per_going_off;
eeb3711b 248 int core_prev_state;
13a6fe0f 249 u32 sdrc_pwr = 0;
8bd22949 250
8bd22949
KH
251 mpu_next_state = pwrdm_read_next_pwrst(mpu_pwrdm);
252 switch (mpu_next_state) {
fa3c2a4f 253 case PWRDM_POWER_ON:
8bd22949
KH
254 case PWRDM_POWER_RET:
255 /* No need to save context */
256 save_state = 0;
257 break;
61255ab9
RN
258 case PWRDM_POWER_OFF:
259 save_state = 3;
260 break;
8bd22949
KH
261 default:
262 /* Invalid state */
98179856 263 pr_err("Invalid mpu state in sram_idle\n");
8bd22949
KH
264 return;
265 }
fe617af7 266
fa3c2a4f
RN
267 /* NEON control */
268 if (pwrdm_read_pwrst(neon_pwrdm) == PWRDM_POWER_ON)
7139178e 269 pwrdm_set_next_pwrst(neon_pwrdm, mpu_next_state);
fa3c2a4f 270
40742fa8 271 /* Enable IO-PAD and IO-CHAIN wakeups */
658ce97e 272 per_next_state = pwrdm_read_next_pwrst(per_pwrdm);
ecf157d0 273 core_next_state = pwrdm_read_next_pwrst(core_pwrdm);
40742fa8 274
e0e29fd7 275 pwrdm_pre_transition(NULL);
ff2f8e5f 276
40742fa8 277 /* PER */
658ce97e 278 if (per_next_state < PWRDM_POWER_ON) {
72e06d08 279 per_going_off = (per_next_state == PWRDM_POWER_OFF) ? 1 : 0;
72e06d08 280 omap2_gpio_prepare_for_idle(per_going_off);
658ce97e
KH
281 }
282
283 /* CORE */
fa3c2a4f 284 if (core_next_state < PWRDM_POWER_ON) {
2f5939c3
RN
285 if (core_next_state == PWRDM_POWER_OFF) {
286 omap3_core_save_context();
f0611a5c 287 omap3_cm_save_context();
2f5939c3 288 }
fa3c2a4f 289 }
40742fa8 290
f18cc2ff 291 omap3_intc_prepare_idle();
8bd22949 292
13a6fe0f 293 /*
30474544
PW
294 * On EMU/HS devices ROM code restores a SRDC value
295 * from scratchpad which has automatic self refresh on timeout
296 * of AUTO_CNT = 1 enabled. This takes care of erratum ID i443.
297 * Hence store/restore the SDRC_POWER register here.
298 */
299 if (cpu_is_omap3430() && omap_rev() >= OMAP3430_REV_ES3_0 &&
300 (omap_type() == OMAP2_DEVICE_TYPE_EMU ||
301 omap_type() == OMAP2_DEVICE_TYPE_SEC) &&
f265dc4c 302 core_next_state == PWRDM_POWER_OFF)
13a6fe0f 303 sdrc_pwr = sdrc_read_reg(SDRC_POWER);
13a6fe0f 304
61255ab9 305 /*
076f2cc4
RK
306 * omap3_arm_context is the location where some ARM context
307 * get saved. The rest is placed on the stack, and restored
308 * from there before resuming.
61255ab9 309 */
cbe26349
RK
310 if (save_state)
311 omap34xx_save_context(omap3_arm_context);
076f2cc4 312 if (save_state == 1 || save_state == 3)
2c74a0ce 313 cpu_suspend(save_state, omap34xx_do_sram_idle);
076f2cc4
RK
314 else
315 omap34xx_do_sram_idle(save_state);
8bd22949 316
f265dc4c 317 /* Restore normal SDRC POWER settings */
30474544
PW
318 if (cpu_is_omap3430() && omap_rev() >= OMAP3430_REV_ES3_0 &&
319 (omap_type() == OMAP2_DEVICE_TYPE_EMU ||
320 omap_type() == OMAP2_DEVICE_TYPE_SEC) &&
13a6fe0f
TK
321 core_next_state == PWRDM_POWER_OFF)
322 sdrc_write_reg(sdrc_pwr, SDRC_POWER);
323
658ce97e 324 /* CORE */
fa3c2a4f 325 if (core_next_state < PWRDM_POWER_ON) {
2f5939c3
RN
326 core_prev_state = pwrdm_read_prev_pwrst(core_pwrdm);
327 if (core_prev_state == PWRDM_POWER_OFF) {
328 omap3_core_restore_context();
f0611a5c 329 omap3_cm_restore_context();
2f5939c3 330 omap3_sram_restore_context();
8a917d2f 331 omap2_sms_restore_context();
2f5939c3 332 }
658ce97e 333 if (core_next_state == PWRDM_POWER_OFF)
c4d7e58f 334 omap2_prm_clear_mod_reg_bits(OMAP3430_AUTO_OFF_MASK,
658ce97e
KH
335 OMAP3430_GR_MOD,
336 OMAP3_PRM_VOLTCTRL_OFFSET);
337 }
f18cc2ff 338 omap3_intc_resume_idle();
658ce97e 339
e0e29fd7
KH
340 pwrdm_post_transition(NULL);
341
658ce97e 342 /* PER */
e0e29fd7 343 if (per_next_state < PWRDM_POWER_ON)
43ffcd9a 344 omap2_gpio_resume_after_idle();
8bd22949
KH
345}
346
8bd22949
KH
347static void omap3_pm_idle(void)
348{
8bd22949
KH
349 local_fiq_disable();
350
0bcd24b0 351 if (omap_irq_pending())
8bd22949
KH
352 goto out;
353
5e7c58dc
JP
354 trace_cpu_idle(1, smp_processor_id());
355
8bd22949
KH
356 omap_sram_idle();
357
5e7c58dc
JP
358 trace_cpu_idle(PWR_EVENT_EXIT, smp_processor_id());
359
8bd22949
KH
360out:
361 local_fiq_enable();
8bd22949
KH
362}
363
10f90ed2 364#ifdef CONFIG_SUSPEND
8bd22949
KH
365static int omap3_pm_suspend(void)
366{
367 struct power_state *pwrst;
368 int state, ret = 0;
369
370 /* Read current next_pwrsts */
371 list_for_each_entry(pwrst, &pwrst_list, node)
372 pwrst->saved_state = pwrdm_read_next_pwrst(pwrst->pwrdm);
373 /* Set ones wanted by suspend */
374 list_for_each_entry(pwrst, &pwrst_list, node) {
eb6a2c75 375 if (omap_set_pwrdm_state(pwrst->pwrdm, pwrst->next_state))
8bd22949
KH
376 goto restore;
377 if (pwrdm_clear_all_prev_pwrst(pwrst->pwrdm))
378 goto restore;
379 }
380
2bbe3af3
TK
381 omap3_intc_suspend();
382
8bd22949
KH
383 omap_sram_idle();
384
385restore:
386 /* Restore next_pwrsts */
387 list_for_each_entry(pwrst, &pwrst_list, node) {
8bd22949
KH
388 state = pwrdm_read_prev_pwrst(pwrst->pwrdm);
389 if (state > pwrst->next_state) {
7852ec05
PW
390 pr_info("Powerdomain (%s) didn't enter target state %d\n",
391 pwrst->pwrdm->name, pwrst->next_state);
8bd22949
KH
392 ret = -1;
393 }
eb6a2c75 394 omap_set_pwrdm_state(pwrst->pwrdm, pwrst->saved_state);
8bd22949
KH
395 }
396 if (ret)
98179856 397 pr_err("Could not enter target state in pm_suspend\n");
8bd22949 398 else
98179856 399 pr_info("Successfully put all powerdomains to target state\n");
8bd22949
KH
400
401 return ret;
402}
403
10f90ed2 404#endif /* CONFIG_SUSPEND */
8bd22949 405
1155e426
KH
406
407/**
408 * omap3_iva_idle(): ensure IVA is in idle so it can be put into
409 * retention
410 *
411 * In cases where IVA2 is activated by bootcode, it may prevent
412 * full-chip retention or off-mode because it is not idle. This
413 * function forces the IVA2 into idle state so it can go
414 * into retention/off and thus allow full-chip retention/off.
415 *
416 **/
417static void __init omap3_iva_idle(void)
418{
419 /* ensure IVA2 clock is disabled */
c4d7e58f 420 omap2_cm_write_mod_reg(0, OMAP3430_IVA2_MOD, CM_FCLKEN);
1155e426
KH
421
422 /* if no clock activity, nothing else to do */
c4d7e58f 423 if (!(omap2_cm_read_mod_reg(OMAP3430_IVA2_MOD, OMAP3430_CM_CLKSTST) &
1155e426
KH
424 OMAP3430_CLKACTIVITY_IVA2_MASK))
425 return;
426
427 /* Reset IVA2 */
c4d7e58f 428 omap2_prm_write_mod_reg(OMAP3430_RST1_IVA2_MASK |
2bc4ef71
PW
429 OMAP3430_RST2_IVA2_MASK |
430 OMAP3430_RST3_IVA2_MASK,
37903009 431 OMAP3430_IVA2_MOD, OMAP2_RM_RSTCTRL);
1155e426
KH
432
433 /* Enable IVA2 clock */
c4d7e58f 434 omap2_cm_write_mod_reg(OMAP3430_CM_FCLKEN_IVA2_EN_IVA2_MASK,
1155e426
KH
435 OMAP3430_IVA2_MOD, CM_FCLKEN);
436
437 /* Set IVA2 boot mode to 'idle' */
438 omap_ctrl_writel(OMAP3_IVA2_BOOTMOD_IDLE,
439 OMAP343X_CONTROL_IVA2_BOOTMOD);
440
441 /* Un-reset IVA2 */
c4d7e58f 442 omap2_prm_write_mod_reg(0, OMAP3430_IVA2_MOD, OMAP2_RM_RSTCTRL);
1155e426
KH
443
444 /* Disable IVA2 clock */
c4d7e58f 445 omap2_cm_write_mod_reg(0, OMAP3430_IVA2_MOD, CM_FCLKEN);
1155e426
KH
446
447 /* Reset IVA2 */
c4d7e58f 448 omap2_prm_write_mod_reg(OMAP3430_RST1_IVA2_MASK |
2bc4ef71
PW
449 OMAP3430_RST2_IVA2_MASK |
450 OMAP3430_RST3_IVA2_MASK,
37903009 451 OMAP3430_IVA2_MOD, OMAP2_RM_RSTCTRL);
1155e426
KH
452}
453
8111b221 454static void __init omap3_d2d_idle(void)
8bd22949 455{
8111b221
KH
456 u16 mask, padconf;
457
458 /* In a stand alone OMAP3430 where there is not a stacked
459 * modem for the D2D Idle Ack and D2D MStandby must be pulled
460 * high. S CONTROL_PADCONF_SAD2D_IDLEACK and
461 * CONTROL_PADCONF_SAD2D_MSTDBY to have a pull up. */
462 mask = (1 << 4) | (1 << 3); /* pull-up, enabled */
463 padconf = omap_ctrl_readw(OMAP3_PADCONF_SAD2D_MSTANDBY);
464 padconf |= mask;
465 omap_ctrl_writew(padconf, OMAP3_PADCONF_SAD2D_MSTANDBY);
466
467 padconf = omap_ctrl_readw(OMAP3_PADCONF_SAD2D_IDLEACK);
468 padconf |= mask;
469 omap_ctrl_writew(padconf, OMAP3_PADCONF_SAD2D_IDLEACK);
470
8bd22949 471 /* reset modem */
c4d7e58f 472 omap2_prm_write_mod_reg(OMAP3430_RM_RSTCTRL_CORE_MODEM_SW_RSTPWRON_MASK |
2bc4ef71 473 OMAP3430_RM_RSTCTRL_CORE_MODEM_SW_RST_MASK,
37903009 474 CORE_MOD, OMAP2_RM_RSTCTRL);
c4d7e58f 475 omap2_prm_write_mod_reg(0, CORE_MOD, OMAP2_RM_RSTCTRL);
8111b221 476}
8bd22949 477
8111b221
KH
478static void __init prcm_setup_regs(void)
479{
e5863689
G
480 u32 omap3630_en_uart4_mask = cpu_is_omap3630() ?
481 OMAP3630_EN_UART4_MASK : 0;
482 u32 omap3630_grpsel_uart4_mask = cpu_is_omap3630() ?
483 OMAP3630_GRPSEL_UART4_MASK : 0;
484
4ef70c06 485 /* XXX This should be handled by hwmod code or SCM init code */
2fd0f75c 486 omap_ctrl_writel(OMAP3430_AUTOIDLE_MASK, OMAP2_CONTROL_SYSCONFIG);
b296c811 487
8bd22949
KH
488 /*
489 * Enable control of expternal oscillator through
490 * sys_clkreq. In the long run clock framework should
491 * take care of this.
492 */
c4d7e58f 493 omap2_prm_rmw_mod_reg_bits(OMAP_AUTOEXTCLKMODE_MASK,
8bd22949
KH
494 1 << OMAP_AUTOEXTCLKMODE_SHIFT,
495 OMAP3430_GR_MOD,
496 OMAP3_PRM_CLKSRC_CTRL_OFFSET);
497
498 /* setup wakup source */
c4d7e58f 499 omap2_prm_write_mod_reg(OMAP3430_EN_IO_MASK | OMAP3430_EN_GPIO1_MASK |
2fd0f75c 500 OMAP3430_EN_GPT1_MASK | OMAP3430_EN_GPT12_MASK,
8bd22949
KH
501 WKUP_MOD, PM_WKEN);
502 /* No need to write EN_IO, that is always enabled */
c4d7e58f 503 omap2_prm_write_mod_reg(OMAP3430_GRPSEL_GPIO1_MASK |
275f675c
PW
504 OMAP3430_GRPSEL_GPT1_MASK |
505 OMAP3430_GRPSEL_GPT12_MASK,
8bd22949 506 WKUP_MOD, OMAP3430_PM_MPUGRPSEL);
1155e426 507
b92c5721 508 /* Enable PM_WKEN to support DSS LPR */
c4d7e58f 509 omap2_prm_write_mod_reg(OMAP3430_PM_WKEN_DSS_EN_DSS_MASK,
b92c5721
SV
510 OMAP3430_DSS_MOD, PM_WKEN);
511
b427f92f 512 /* Enable wakeups in PER */
c4d7e58f 513 omap2_prm_write_mod_reg(omap3630_en_uart4_mask |
e5863689 514 OMAP3430_EN_GPIO2_MASK | OMAP3430_EN_GPIO3_MASK |
2fd0f75c
PW
515 OMAP3430_EN_GPIO4_MASK | OMAP3430_EN_GPIO5_MASK |
516 OMAP3430_EN_GPIO6_MASK | OMAP3430_EN_UART3_MASK |
517 OMAP3430_EN_MCBSP2_MASK | OMAP3430_EN_MCBSP3_MASK |
518 OMAP3430_EN_MCBSP4_MASK,
b427f92f 519 OMAP3430_PER_MOD, PM_WKEN);
eb350f74 520 /* and allow them to wake up MPU */
c4d7e58f 521 omap2_prm_write_mod_reg(omap3630_grpsel_uart4_mask |
e5863689 522 OMAP3430_GRPSEL_GPIO2_MASK |
275f675c
PW
523 OMAP3430_GRPSEL_GPIO3_MASK |
524 OMAP3430_GRPSEL_GPIO4_MASK |
525 OMAP3430_GRPSEL_GPIO5_MASK |
526 OMAP3430_GRPSEL_GPIO6_MASK |
527 OMAP3430_GRPSEL_UART3_MASK |
528 OMAP3430_GRPSEL_MCBSP2_MASK |
529 OMAP3430_GRPSEL_MCBSP3_MASK |
530 OMAP3430_GRPSEL_MCBSP4_MASK,
eb350f74
KH
531 OMAP3430_PER_MOD, OMAP3430_PM_MPUGRPSEL);
532
d3fd3290 533 /* Don't attach IVA interrupts */
a819c4f1
MG
534 if (omap3_has_iva()) {
535 omap2_prm_write_mod_reg(0, WKUP_MOD, OMAP3430_PM_IVAGRPSEL);
536 omap2_prm_write_mod_reg(0, CORE_MOD, OMAP3430_PM_IVAGRPSEL1);
537 omap2_prm_write_mod_reg(0, CORE_MOD, OMAP3430ES2_PM_IVAGRPSEL3);
538 omap2_prm_write_mod_reg(0, OMAP3430_PER_MOD,
539 OMAP3430_PM_IVAGRPSEL);
540 }
d3fd3290 541
b1340d17 542 /* Clear any pending 'reset' flags */
c4d7e58f
PW
543 omap2_prm_write_mod_reg(0xffffffff, MPU_MOD, OMAP2_RM_RSTST);
544 omap2_prm_write_mod_reg(0xffffffff, CORE_MOD, OMAP2_RM_RSTST);
545 omap2_prm_write_mod_reg(0xffffffff, OMAP3430_PER_MOD, OMAP2_RM_RSTST);
546 omap2_prm_write_mod_reg(0xffffffff, OMAP3430_EMU_MOD, OMAP2_RM_RSTST);
547 omap2_prm_write_mod_reg(0xffffffff, OMAP3430_NEON_MOD, OMAP2_RM_RSTST);
548 omap2_prm_write_mod_reg(0xffffffff, OMAP3430_DSS_MOD, OMAP2_RM_RSTST);
549 omap2_prm_write_mod_reg(0xffffffff, OMAP3430ES2_USBHOST_MOD, OMAP2_RM_RSTST);
b1340d17 550
014c46db 551 /* Clear any pending PRCM interrupts */
c4d7e58f 552 omap2_prm_write_mod_reg(0, OCP_MOD, OMAP3_PRM_IRQSTATUS_MPU_OFFSET);
014c46db 553
a819c4f1
MG
554 if (omap3_has_iva())
555 omap3_iva_idle();
556
8111b221 557 omap3_d2d_idle();
8bd22949
KH
558}
559
c40552bc
KH
560void omap3_pm_off_mode_enable(int enable)
561{
562 struct power_state *pwrst;
563 u32 state;
564
565 if (enable)
566 state = PWRDM_POWER_OFF;
567 else
568 state = PWRDM_POWER_RET;
569
570 list_for_each_entry(pwrst, &pwrst_list, node) {
cc1b6028
EV
571 if (IS_PM34XX_ERRATUM(PM_SDRC_WAKEUP_ERRATUM_i583) &&
572 pwrst->pwrdm == core_pwrdm &&
573 state == PWRDM_POWER_OFF) {
574 pwrst->next_state = PWRDM_POWER_RET;
e16b41bf 575 pr_warn("%s: Core OFF disabled due to errata i583\n",
cc1b6028
EV
576 __func__);
577 } else {
578 pwrst->next_state = state;
579 }
580 omap_set_pwrdm_state(pwrst->pwrdm, pwrst->next_state);
c40552bc
KH
581 }
582}
583
68d4778c
TK
584int omap3_pm_get_suspend_state(struct powerdomain *pwrdm)
585{
586 struct power_state *pwrst;
587
588 list_for_each_entry(pwrst, &pwrst_list, node) {
589 if (pwrst->pwrdm == pwrdm)
590 return pwrst->next_state;
591 }
592 return -EINVAL;
593}
594
595int omap3_pm_set_suspend_state(struct powerdomain *pwrdm, int state)
596{
597 struct power_state *pwrst;
598
599 list_for_each_entry(pwrst, &pwrst_list, node) {
600 if (pwrst->pwrdm == pwrdm) {
601 pwrst->next_state = state;
602 return 0;
603 }
604 }
605 return -EINVAL;
606}
607
a23456e9 608static int __init pwrdms_setup(struct powerdomain *pwrdm, void *unused)
8bd22949
KH
609{
610 struct power_state *pwrst;
611
612 if (!pwrdm->pwrsts)
613 return 0;
614
d3d381c6 615 pwrst = kmalloc(sizeof(struct power_state), GFP_ATOMIC);
8bd22949
KH
616 if (!pwrst)
617 return -ENOMEM;
618 pwrst->pwrdm = pwrdm;
619 pwrst->next_state = PWRDM_POWER_RET;
620 list_add(&pwrst->node, &pwrst_list);
621
622 if (pwrdm_has_hdwr_sar(pwrdm))
623 pwrdm_enable_hdwr_sar(pwrdm);
624
eb6a2c75 625 return omap_set_pwrdm_state(pwrst->pwrdm, pwrst->next_state);
8bd22949
KH
626}
627
46e130d2
JP
628/*
629 * Push functions to SRAM
630 *
631 * The minimum set of functions is pushed to SRAM for execution:
632 * - omap3_do_wfi for erratum i581 WA,
633 * - save_secure_ram_context for security extensions.
634 */
3231fc88
RN
635void omap_push_sram_idle(void)
636{
46e130d2
JP
637 omap3_do_wfi_sram = omap_sram_push(omap3_do_wfi, omap3_do_wfi_sz);
638
27d59a4a
TK
639 if (omap_type() != OMAP2_DEVICE_TYPE_GP)
640 _omap_save_secure_sram = omap_sram_push(save_secure_ram_context,
641 save_secure_ram_context_sz);
3231fc88
RN
642}
643
8cdfd834
NM
644static void __init pm_errata_configure(void)
645{
c4236d2e 646 if (cpu_is_omap3630()) {
458e999e 647 pm34xx_errata |= PM_RTA_ERRATUM_i608;
c4236d2e
PDS
648 /* Enable the l2 cache toggling in sleep logic */
649 enable_omap3630_toggle_l2_on_restore();
cc1b6028 650 if (omap_rev() < OMAP3630_REV_ES1_2)
856c3c5b
PW
651 pm34xx_errata |= (PM_SDRC_WAKEUP_ERRATUM_i583 |
652 PM_PER_MEMORIES_ERRATUM_i582);
653 } else if (cpu_is_omap34xx()) {
654 pm34xx_errata |= PM_PER_MEMORIES_ERRATUM_i582;
c4236d2e 655 }
8cdfd834
NM
656}
657
bbd707ac 658int __init omap3_pm_init(void)
8bd22949
KH
659{
660 struct power_state *pwrst, *tmp;
856c3c5b 661 struct clockdomain *neon_clkdm, *mpu_clkdm, *per_clkdm, *wkup_clkdm;
8bd22949
KH
662 int ret;
663
b02b9172
PW
664 if (!omap3_has_io_chain_ctrl())
665 pr_warning("PM: no software I/O chain control; some wakeups may be lost\n");
666
8cdfd834
NM
667 pm_errata_configure();
668
8bd22949
KH
669 /* XXX prcm_setup_regs needs to be before enabling hw
670 * supervised mode for powerdomains */
671 prcm_setup_regs();
672
22f51371
TK
673 ret = request_irq(omap_prcm_event_to_irq("wkup"),
674 _prcm_int_handle_wakeup, IRQF_NO_SUSPEND, "pm_wkup", NULL);
675
676 if (ret) {
677 pr_err("pm: Failed to request pm_wkup irq\n");
678 goto err1;
679 }
680
681 /* IO interrupt is shared with mux code */
682 ret = request_irq(omap_prcm_event_to_irq("io"),
683 _prcm_int_handle_io, IRQF_SHARED | IRQF_NO_SUSPEND, "pm_io",
684 omap3_pm_init);
99b59df0 685 enable_irq(omap_prcm_event_to_irq("io"));
22f51371 686
8bd22949 687 if (ret) {
22f51371 688 pr_err("pm: Failed to request pm_io irq\n");
ce229c5d 689 goto err2;
8bd22949
KH
690 }
691
a23456e9 692 ret = pwrdm_for_each(pwrdms_setup, NULL);
8bd22949 693 if (ret) {
98179856 694 pr_err("Failed to setup powerdomains\n");
ce229c5d 695 goto err3;
8bd22949
KH
696 }
697
92206fd2 698 (void) clkdm_for_each(omap_pm_clkdms_setup, NULL);
8bd22949
KH
699
700 mpu_pwrdm = pwrdm_lookup("mpu_pwrdm");
701 if (mpu_pwrdm == NULL) {
98179856 702 pr_err("Failed to get mpu_pwrdm\n");
ce229c5d
MG
703 ret = -EINVAL;
704 goto err3;
8bd22949
KH
705 }
706
fa3c2a4f
RN
707 neon_pwrdm = pwrdm_lookup("neon_pwrdm");
708 per_pwrdm = pwrdm_lookup("per_pwrdm");
709 core_pwrdm = pwrdm_lookup("core_pwrdm");
710
55ed9694
PW
711 neon_clkdm = clkdm_lookup("neon_clkdm");
712 mpu_clkdm = clkdm_lookup("mpu_clkdm");
856c3c5b
PW
713 per_clkdm = clkdm_lookup("per_clkdm");
714 wkup_clkdm = clkdm_lookup("wkup_clkdm");
55ed9694 715
10f90ed2 716#ifdef CONFIG_SUSPEND
1416408d
PW
717 omap_pm_suspend = omap3_pm_suspend;
718#endif
8bd22949 719
0bcd24b0 720 arm_pm_idle = omap3_pm_idle;
0343371e 721 omap3_idle_init();
8bd22949 722
458e999e
NM
723 /*
724 * RTA is disabled during initialization as per erratum i608
725 * it is safer to disable RTA by the bootloader, but we would like
726 * to be doubly sure here and prevent any mishaps.
727 */
728 if (IS_PM34XX_ERRATUM(PM_RTA_ERRATUM_i608))
729 omap3630_ctrl_disable_rta();
730
856c3c5b
PW
731 /*
732 * The UART3/4 FIFO and the sidetone memory in McBSP2/3 are
733 * not correctly reset when the PER powerdomain comes back
734 * from OFF or OSWR when the CORE powerdomain is kept active.
735 * See OMAP36xx Erratum i582 "PER Domain reset issue after
736 * Domain-OFF/OSWR Wakeup". This wakeup dependency is not a
737 * complete workaround. The kernel must also prevent the PER
738 * powerdomain from going to OSWR/OFF while the CORE
739 * powerdomain is not going to OSWR/OFF. And if PER last
740 * power state was off while CORE last power state was ON, the
741 * UART3/4 and McBSP2/3 SIDETONE devices need to run a
742 * self-test using their loopback tests; if that fails, those
743 * devices are unusable until the PER/CORE can complete a transition
744 * from ON to OSWR/OFF and then back to ON.
745 *
746 * XXX Technically this workaround is only needed if off-mode
747 * or OSWR is enabled.
748 */
749 if (IS_PM34XX_ERRATUM(PM_PER_MEMORIES_ERRATUM_i582))
750 clkdm_add_wkdep(per_clkdm, wkup_clkdm);
751
55ed9694 752 clkdm_add_wkdep(neon_clkdm, mpu_clkdm);
27d59a4a
TK
753 if (omap_type() != OMAP2_DEVICE_TYPE_GP) {
754 omap3_secure_ram_storage =
755 kmalloc(0x803F, GFP_KERNEL);
756 if (!omap3_secure_ram_storage)
7852ec05 757 pr_err("Memory allocation failed when allocating for secure sram context\n");
9d97140b
TK
758
759 local_irq_disable();
760 local_fiq_disable();
761
762 omap_dma_global_context_save();
617fcc98 763 omap3_save_secure_ram_context();
9d97140b
TK
764 omap_dma_global_context_restore();
765
766 local_irq_enable();
767 local_fiq_enable();
27d59a4a 768 }
27d59a4a 769
9d97140b 770 omap3_save_scratchpad_contents();
8bd22949 771 return ret;
ce229c5d
MG
772
773err3:
8bd22949
KH
774 list_for_each_entry_safe(pwrst, tmp, &pwrst_list, node) {
775 list_del(&pwrst->node);
776 kfree(pwrst);
777 }
ce229c5d
MG
778 free_irq(omap_prcm_event_to_irq("io"), omap3_pm_init);
779err2:
780 free_irq(omap_prcm_event_to_irq("wkup"), NULL);
781err1:
8bd22949
KH
782 return ret;
783}
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