Merge git://git.kernel.org/pub/scm/linux/kernel/git/davem/net-2.6
[linux-2.6/btrfs-unstable.git] / arch / arm / mach-at91 / clock.c
blobe4345106ee57ea1da11416c1a6abbc9a1baed94a
1 /*
2 * linux/arch/arm/mach-at91/clock.c
4 * Copyright (C) 2005 David Brownell
5 * Copyright (C) 2005 Ivan Kokshaysky
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2 of the License, or
10 * (at your option) any later version.
13 #include <linux/module.h>
14 #include <linux/kernel.h>
15 #include <linux/init.h>
16 #include <linux/fs.h>
17 #include <linux/debugfs.h>
18 #include <linux/seq_file.h>
19 #include <linux/list.h>
20 #include <linux/errno.h>
21 #include <linux/err.h>
22 #include <linux/spinlock.h>
23 #include <linux/delay.h>
24 #include <linux/clk.h>
25 #include <linux/io.h>
27 #include <mach/hardware.h>
28 #include <mach/at91_pmc.h>
29 #include <mach/cpu.h>
31 #include "clock.h"
35 * There's a lot more which can be done with clocks, including cpufreq
36 * integration, slow clock mode support (for system suspend), letting
37 * PLLB be used at other rates (on boards that don't need USB), etc.
40 #define clk_is_primary(x) ((x)->type & CLK_TYPE_PRIMARY)
41 #define clk_is_programmable(x) ((x)->type & CLK_TYPE_PROGRAMMABLE)
42 #define clk_is_peripheral(x) ((x)->type & CLK_TYPE_PERIPHERAL)
43 #define clk_is_sys(x) ((x)->type & CLK_TYPE_SYSTEM)
46 static LIST_HEAD(clocks);
47 static DEFINE_SPINLOCK(clk_lock);
49 static u32 at91_pllb_usb_init;
52 * Four primary clock sources: two crystal oscillators (32K, main), and
53 * two PLLs. PLLA usually runs the master clock; and PLLB must run at
54 * 48 MHz (unless no USB function clocks are needed). The main clock and
55 * both PLLs are turned off to run in "slow clock mode" (system suspend).
57 static struct clk clk32k = {
58 .name = "clk32k",
59 .rate_hz = AT91_SLOW_CLOCK,
60 .users = 1, /* always on */
61 .id = 0,
62 .type = CLK_TYPE_PRIMARY,
64 static struct clk main_clk = {
65 .name = "main",
66 .pmc_mask = AT91_PMC_MOSCS, /* in PMC_SR */
67 .id = 1,
68 .type = CLK_TYPE_PRIMARY,
70 static struct clk plla = {
71 .name = "plla",
72 .parent = &main_clk,
73 .pmc_mask = AT91_PMC_LOCKA, /* in PMC_SR */
74 .id = 2,
75 .type = CLK_TYPE_PRIMARY | CLK_TYPE_PLL,
78 static void pllb_mode(struct clk *clk, int is_on)
80 u32 value;
82 if (is_on) {
83 is_on = AT91_PMC_LOCKB;
84 value = at91_pllb_usb_init;
85 } else
86 value = 0;
88 // REVISIT: Add work-around for AT91RM9200 Errata #26 ?
89 at91_sys_write(AT91_CKGR_PLLBR, value);
91 do {
92 cpu_relax();
93 } while ((at91_sys_read(AT91_PMC_SR) & AT91_PMC_LOCKB) != is_on);
96 static struct clk pllb = {
97 .name = "pllb",
98 .parent = &main_clk,
99 .pmc_mask = AT91_PMC_LOCKB, /* in PMC_SR */
100 .mode = pllb_mode,
101 .id = 3,
102 .type = CLK_TYPE_PRIMARY | CLK_TYPE_PLL,
105 static void pmc_sys_mode(struct clk *clk, int is_on)
107 if (is_on)
108 at91_sys_write(AT91_PMC_SCER, clk->pmc_mask);
109 else
110 at91_sys_write(AT91_PMC_SCDR, clk->pmc_mask);
113 static void pmc_uckr_mode(struct clk *clk, int is_on)
115 unsigned int uckr = at91_sys_read(AT91_CKGR_UCKR);
117 if (is_on) {
118 is_on = AT91_PMC_LOCKU;
119 at91_sys_write(AT91_CKGR_UCKR, uckr | clk->pmc_mask);
120 } else
121 at91_sys_write(AT91_CKGR_UCKR, uckr & ~(clk->pmc_mask));
123 do {
124 cpu_relax();
125 } while ((at91_sys_read(AT91_PMC_SR) & AT91_PMC_LOCKU) != is_on);
128 /* USB function clocks (PLLB must be 48 MHz) */
129 static struct clk udpck = {
130 .name = "udpck",
131 .parent = &pllb,
132 .mode = pmc_sys_mode,
134 static struct clk utmi_clk = {
135 .name = "utmi_clk",
136 .parent = &main_clk,
137 .pmc_mask = AT91_PMC_UPLLEN, /* in CKGR_UCKR */
138 .mode = pmc_uckr_mode,
139 .type = CLK_TYPE_PLL,
141 static struct clk uhpck = {
142 .name = "uhpck",
143 .parent = &pllb,
144 .mode = pmc_sys_mode,
149 * The master clock is divided from the CPU clock (by 1-4). It's used for
150 * memory, interfaces to on-chip peripherals, the AIC, and sometimes more
151 * (e.g baud rate generation). It's sourced from one of the primary clocks.
153 static struct clk mck = {
154 .name = "mck",
155 .pmc_mask = AT91_PMC_MCKRDY, /* in PMC_SR */
158 static void pmc_periph_mode(struct clk *clk, int is_on)
160 if (is_on)
161 at91_sys_write(AT91_PMC_PCER, clk->pmc_mask);
162 else
163 at91_sys_write(AT91_PMC_PCDR, clk->pmc_mask);
166 static struct clk __init *at91_css_to_clk(unsigned long css)
168 switch (css) {
169 case AT91_PMC_CSS_SLOW:
170 return &clk32k;
171 case AT91_PMC_CSS_MAIN:
172 return &main_clk;
173 case AT91_PMC_CSS_PLLA:
174 return &plla;
175 case AT91_PMC_CSS_PLLB:
176 return &pllb;
179 return NULL;
183 * Associate a particular clock with a function (eg, "uart") and device.
184 * The drivers can then request the same 'function' with several different
185 * devices and not care about which clock name to use.
187 void __init at91_clock_associate(const char *id, struct device *dev, const char *func)
189 struct clk *clk = clk_get(NULL, id);
191 if (!dev || !clk || !IS_ERR(clk_get(dev, func)))
192 return;
194 clk->function = func;
195 clk->dev = dev;
198 /* clocks cannot be de-registered no refcounting necessary */
199 struct clk *clk_get(struct device *dev, const char *id)
201 struct clk *clk;
203 list_for_each_entry(clk, &clocks, node) {
204 if (strcmp(id, clk->name) == 0)
205 return clk;
206 if (clk->function && (dev == clk->dev) && strcmp(id, clk->function) == 0)
207 return clk;
210 return ERR_PTR(-ENOENT);
212 EXPORT_SYMBOL(clk_get);
214 void clk_put(struct clk *clk)
217 EXPORT_SYMBOL(clk_put);
219 static void __clk_enable(struct clk *clk)
221 if (clk->parent)
222 __clk_enable(clk->parent);
223 if (clk->users++ == 0 && clk->mode)
224 clk->mode(clk, 1);
227 int clk_enable(struct clk *clk)
229 unsigned long flags;
231 spin_lock_irqsave(&clk_lock, flags);
232 __clk_enable(clk);
233 spin_unlock_irqrestore(&clk_lock, flags);
234 return 0;
236 EXPORT_SYMBOL(clk_enable);
238 static void __clk_disable(struct clk *clk)
240 BUG_ON(clk->users == 0);
241 if (--clk->users == 0 && clk->mode)
242 clk->mode(clk, 0);
243 if (clk->parent)
244 __clk_disable(clk->parent);
247 void clk_disable(struct clk *clk)
249 unsigned long flags;
251 spin_lock_irqsave(&clk_lock, flags);
252 __clk_disable(clk);
253 spin_unlock_irqrestore(&clk_lock, flags);
255 EXPORT_SYMBOL(clk_disable);
257 unsigned long clk_get_rate(struct clk *clk)
259 unsigned long flags;
260 unsigned long rate;
262 spin_lock_irqsave(&clk_lock, flags);
263 for (;;) {
264 rate = clk->rate_hz;
265 if (rate || !clk->parent)
266 break;
267 clk = clk->parent;
269 spin_unlock_irqrestore(&clk_lock, flags);
270 return rate;
272 EXPORT_SYMBOL(clk_get_rate);
274 /*------------------------------------------------------------------------*/
276 #ifdef CONFIG_AT91_PROGRAMMABLE_CLOCKS
279 * For now, only the programmable clocks support reparenting (MCK could
280 * do this too, with care) or rate changing (the PLLs could do this too,
281 * ditto MCK but that's more for cpufreq). Drivers may reparent to get
282 * a better rate match; we don't.
285 long clk_round_rate(struct clk *clk, unsigned long rate)
287 unsigned long flags;
288 unsigned prescale;
289 unsigned long actual;
291 if (!clk_is_programmable(clk))
292 return -EINVAL;
293 spin_lock_irqsave(&clk_lock, flags);
295 actual = clk->parent->rate_hz;
296 for (prescale = 0; prescale < 7; prescale++) {
297 if (actual && actual <= rate)
298 break;
299 actual >>= 1;
302 spin_unlock_irqrestore(&clk_lock, flags);
303 return (prescale < 7) ? actual : -ENOENT;
305 EXPORT_SYMBOL(clk_round_rate);
307 int clk_set_rate(struct clk *clk, unsigned long rate)
309 unsigned long flags;
310 unsigned prescale;
311 unsigned long actual;
313 if (!clk_is_programmable(clk))
314 return -EINVAL;
315 if (clk->users)
316 return -EBUSY;
317 spin_lock_irqsave(&clk_lock, flags);
319 actual = clk->parent->rate_hz;
320 for (prescale = 0; prescale < 7; prescale++) {
321 if (actual && actual <= rate) {
322 u32 pckr;
324 pckr = at91_sys_read(AT91_PMC_PCKR(clk->id));
325 pckr &= AT91_PMC_CSS_PLLB; /* clock selection */
326 pckr |= prescale << 2;
327 at91_sys_write(AT91_PMC_PCKR(clk->id), pckr);
328 clk->rate_hz = actual;
329 break;
331 actual >>= 1;
334 spin_unlock_irqrestore(&clk_lock, flags);
335 return (prescale < 7) ? actual : -ENOENT;
337 EXPORT_SYMBOL(clk_set_rate);
339 struct clk *clk_get_parent(struct clk *clk)
341 return clk->parent;
343 EXPORT_SYMBOL(clk_get_parent);
345 int clk_set_parent(struct clk *clk, struct clk *parent)
347 unsigned long flags;
349 if (clk->users)
350 return -EBUSY;
351 if (!clk_is_primary(parent) || !clk_is_programmable(clk))
352 return -EINVAL;
353 spin_lock_irqsave(&clk_lock, flags);
355 clk->rate_hz = parent->rate_hz;
356 clk->parent = parent;
357 at91_sys_write(AT91_PMC_PCKR(clk->id), parent->id);
359 spin_unlock_irqrestore(&clk_lock, flags);
360 return 0;
362 EXPORT_SYMBOL(clk_set_parent);
364 /* establish PCK0..PCK3 parentage and rate */
365 static void __init init_programmable_clock(struct clk *clk)
367 struct clk *parent;
368 u32 pckr;
370 pckr = at91_sys_read(AT91_PMC_PCKR(clk->id));
371 parent = at91_css_to_clk(pckr & AT91_PMC_CSS);
372 clk->parent = parent;
373 clk->rate_hz = parent->rate_hz / (1 << ((pckr & AT91_PMC_PRES) >> 2));
376 #endif /* CONFIG_AT91_PROGRAMMABLE_CLOCKS */
378 /*------------------------------------------------------------------------*/
380 #ifdef CONFIG_DEBUG_FS
382 static int at91_clk_show(struct seq_file *s, void *unused)
384 u32 scsr, pcsr, uckr = 0, sr;
385 struct clk *clk;
387 seq_printf(s, "SCSR = %8x\n", scsr = at91_sys_read(AT91_PMC_SCSR));
388 seq_printf(s, "PCSR = %8x\n", pcsr = at91_sys_read(AT91_PMC_PCSR));
389 seq_printf(s, "MOR = %8x\n", at91_sys_read(AT91_CKGR_MOR));
390 seq_printf(s, "MCFR = %8x\n", at91_sys_read(AT91_CKGR_MCFR));
391 seq_printf(s, "PLLA = %8x\n", at91_sys_read(AT91_CKGR_PLLAR));
392 if (!cpu_is_at91sam9rl())
393 seq_printf(s, "PLLB = %8x\n", at91_sys_read(AT91_CKGR_PLLBR));
394 if (cpu_is_at91cap9() || cpu_is_at91sam9rl())
395 seq_printf(s, "UCKR = %8x\n", uckr = at91_sys_read(AT91_CKGR_UCKR));
396 seq_printf(s, "MCKR = %8x\n", at91_sys_read(AT91_PMC_MCKR));
397 seq_printf(s, "SR = %8x\n", sr = at91_sys_read(AT91_PMC_SR));
399 seq_printf(s, "\n");
401 list_for_each_entry(clk, &clocks, node) {
402 char *state;
404 if (clk->mode == pmc_sys_mode)
405 state = (scsr & clk->pmc_mask) ? "on" : "off";
406 else if (clk->mode == pmc_periph_mode)
407 state = (pcsr & clk->pmc_mask) ? "on" : "off";
408 else if (clk->mode == pmc_uckr_mode)
409 state = (uckr & clk->pmc_mask) ? "on" : "off";
410 else if (clk->pmc_mask)
411 state = (sr & clk->pmc_mask) ? "on" : "off";
412 else if (clk == &clk32k || clk == &main_clk)
413 state = "on";
414 else
415 state = "";
417 seq_printf(s, "%-10s users=%2d %-3s %9ld Hz %s\n",
418 clk->name, clk->users, state, clk_get_rate(clk),
419 clk->parent ? clk->parent->name : "");
421 return 0;
424 static int at91_clk_open(struct inode *inode, struct file *file)
426 return single_open(file, at91_clk_show, NULL);
429 static const struct file_operations at91_clk_operations = {
430 .open = at91_clk_open,
431 .read = seq_read,
432 .llseek = seq_lseek,
433 .release = single_release,
436 static int __init at91_clk_debugfs_init(void)
438 /* /sys/kernel/debug/at91_clk */
439 (void) debugfs_create_file("at91_clk", S_IFREG | S_IRUGO, NULL, NULL, &at91_clk_operations);
441 return 0;
443 postcore_initcall(at91_clk_debugfs_init);
445 #endif
447 /*------------------------------------------------------------------------*/
449 /* Register a new clock */
450 int __init clk_register(struct clk *clk)
452 if (clk_is_peripheral(clk)) {
453 clk->parent = &mck;
454 clk->mode = pmc_periph_mode;
455 list_add_tail(&clk->node, &clocks);
457 else if (clk_is_sys(clk)) {
458 clk->parent = &mck;
459 clk->mode = pmc_sys_mode;
461 list_add_tail(&clk->node, &clocks);
463 #ifdef CONFIG_AT91_PROGRAMMABLE_CLOCKS
464 else if (clk_is_programmable(clk)) {
465 clk->mode = pmc_sys_mode;
466 init_programmable_clock(clk);
467 list_add_tail(&clk->node, &clocks);
469 #endif
471 return 0;
475 /*------------------------------------------------------------------------*/
477 static u32 __init at91_pll_rate(struct clk *pll, u32 freq, u32 reg)
479 unsigned mul, div;
481 div = reg & 0xff;
482 mul = (reg >> 16) & 0x7ff;
483 if (div && mul) {
484 freq /= div;
485 freq *= mul + 1;
486 } else
487 freq = 0;
489 return freq;
492 static u32 __init at91_usb_rate(struct clk *pll, u32 freq, u32 reg)
494 if (pll == &pllb && (reg & AT91_PMC_USB96M))
495 return freq / 2;
496 else
497 return freq;
500 static unsigned __init at91_pll_calc(unsigned main_freq, unsigned out_freq)
502 unsigned i, div = 0, mul = 0, diff = 1 << 30;
503 unsigned ret = (out_freq > 155000000) ? 0xbe00 : 0x3e00;
505 /* PLL output max 240 MHz (or 180 MHz per errata) */
506 if (out_freq > 240000000)
507 goto fail;
509 for (i = 1; i < 256; i++) {
510 int diff1;
511 unsigned input, mul1;
514 * PLL input between 1MHz and 32MHz per spec, but lower
515 * frequences seem necessary in some cases so allow 100K.
516 * Warning: some newer products need 2MHz min.
518 input = main_freq / i;
519 if (cpu_is_at91sam9g20() && input < 2000000)
520 continue;
521 if (input < 100000)
522 continue;
523 if (input > 32000000)
524 continue;
526 mul1 = out_freq / input;
527 if (cpu_is_at91sam9g20() && mul > 63)
528 continue;
529 if (mul1 > 2048)
530 continue;
531 if (mul1 < 2)
532 goto fail;
534 diff1 = out_freq - input * mul1;
535 if (diff1 < 0)
536 diff1 = -diff1;
537 if (diff > diff1) {
538 diff = diff1;
539 div = i;
540 mul = mul1;
541 if (diff == 0)
542 break;
545 if (i == 256 && diff > (out_freq >> 5))
546 goto fail;
547 return ret | ((mul - 1) << 16) | div;
548 fail:
549 return 0;
552 static struct clk *const standard_pmc_clocks[] __initdata = {
553 /* four primary clocks */
554 &clk32k,
555 &main_clk,
556 &plla,
557 &pllb,
559 /* PLLB children (USB) */
560 &udpck,
561 &uhpck,
563 /* MCK */
564 &mck
567 int __init at91_clock_init(unsigned long main_clock)
569 unsigned tmp, freq, mckr;
570 int i;
573 * When the bootloader initialized the main oscillator correctly,
574 * there's no problem using the cycle counter. But if it didn't,
575 * or when using oscillator bypass mode, we must be told the speed
576 * of the main clock.
578 if (!main_clock) {
579 do {
580 tmp = at91_sys_read(AT91_CKGR_MCFR);
581 } while (!(tmp & AT91_PMC_MAINRDY));
582 main_clock = (tmp & AT91_PMC_MAINF) * (AT91_SLOW_CLOCK / 16);
584 main_clk.rate_hz = main_clock;
586 /* report if PLLA is more than mildly overclocked */
587 plla.rate_hz = at91_pll_rate(&plla, main_clock, at91_sys_read(AT91_CKGR_PLLAR));
588 if ((!cpu_is_at91sam9g20() && plla.rate_hz > 209000000)
589 || (cpu_is_at91sam9g20() && plla.rate_hz > 800000000))
590 pr_info("Clocks: PLLA overclocked, %ld MHz\n", plla.rate_hz / 1000000);
593 * USB clock init: choose 48 MHz PLLB value,
594 * disable 48MHz clock during usb peripheral suspend.
596 * REVISIT: assumes MCK doesn't derive from PLLB!
598 at91_pllb_usb_init = at91_pll_calc(main_clock, 48000000 * 2) | AT91_PMC_USB96M;
599 pllb.rate_hz = at91_pll_rate(&pllb, main_clock, at91_pllb_usb_init);
600 if (cpu_is_at91rm9200()) {
601 uhpck.pmc_mask = AT91RM9200_PMC_UHP;
602 udpck.pmc_mask = AT91RM9200_PMC_UDP;
603 at91_sys_write(AT91_PMC_SCER, AT91RM9200_PMC_MCKUDP);
604 } else if (cpu_is_at91sam9260() || cpu_is_at91sam9261() || cpu_is_at91sam9263() || cpu_is_at91sam9g20()) {
605 uhpck.pmc_mask = AT91SAM926x_PMC_UHP;
606 udpck.pmc_mask = AT91SAM926x_PMC_UDP;
607 } else if (cpu_is_at91cap9()) {
608 uhpck.pmc_mask = AT91CAP9_PMC_UHP;
610 at91_sys_write(AT91_CKGR_PLLBR, 0);
612 udpck.rate_hz = at91_usb_rate(&pllb, pllb.rate_hz, at91_pllb_usb_init);
613 uhpck.rate_hz = at91_usb_rate(&pllb, pllb.rate_hz, at91_pllb_usb_init);
616 * USB HS clock init
618 if (cpu_is_at91cap9() || cpu_is_at91sam9rl()) {
620 * multiplier is hard-wired to 40
621 * (obtain the USB High Speed 480 MHz when input is 12 MHz)
623 utmi_clk.rate_hz = 40 * utmi_clk.parent->rate_hz;
627 * MCK and CPU derive from one of those primary clocks.
628 * For now, assume this parentage won't change.
630 mckr = at91_sys_read(AT91_PMC_MCKR);
631 mck.parent = at91_css_to_clk(mckr & AT91_PMC_CSS);
632 freq = mck.parent->rate_hz;
633 freq /= (1 << ((mckr & AT91_PMC_PRES) >> 2)); /* prescale */
634 if (cpu_is_at91rm9200())
635 mck.rate_hz = freq / (1 + ((mckr & AT91_PMC_MDIV) >> 8)); /* mdiv */
636 else if (cpu_is_at91sam9g20()) {
637 mck.rate_hz = (mckr & AT91_PMC_MDIV) ?
638 freq / ((mckr & AT91_PMC_MDIV) >> 7) : freq; /* mdiv ; (x >> 7) = ((x >> 8) * 2) */
639 if (mckr & AT91_PMC_PDIV)
640 freq /= 2; /* processor clock division */
641 } else
642 mck.rate_hz = freq / (1 << ((mckr & AT91_PMC_MDIV) >> 8)); /* mdiv */
644 /* Register the PMC's standard clocks */
645 for (i = 0; i < ARRAY_SIZE(standard_pmc_clocks); i++)
646 list_add_tail(&standard_pmc_clocks[i]->node, &clocks);
648 if (cpu_is_at91cap9() || cpu_is_at91sam9rl())
649 list_add_tail(&utmi_clk.node, &clocks);
651 /* MCK and CPU clock are "always on" */
652 clk_enable(&mck);
654 printk("Clocks: CPU %u MHz, master %u MHz, main %u.%03u MHz\n",
655 freq / 1000000, (unsigned) mck.rate_hz / 1000000,
656 (unsigned) main_clock / 1000000,
657 ((unsigned) main_clock % 1000000) / 1000);
659 return 0;
663 * Several unused clocks may be active. Turn them off.
665 static int __init at91_clock_reset(void)
667 unsigned long pcdr = 0;
668 unsigned long scdr = 0;
669 struct clk *clk;
671 list_for_each_entry(clk, &clocks, node) {
672 if (clk->users > 0)
673 continue;
675 if (clk->mode == pmc_periph_mode)
676 pcdr |= clk->pmc_mask;
678 if (clk->mode == pmc_sys_mode)
679 scdr |= clk->pmc_mask;
681 pr_debug("Clocks: disable unused %s\n", clk->name);
684 at91_sys_write(AT91_PMC_PCDR, pcdr);
685 at91_sys_write(AT91_PMC_SCDR, scdr);
687 return 0;
689 late_initcall(at91_clock_reset);