blob: 54d82a4b4cf0f9505303835ddd63f6f94e0e5d51 [file] [log] [blame]
Shawn Guo30a75852010-12-18 21:39:33 +08001/*
2 * Copyright (C) 2009-2010 Freescale Semiconductor, Inc. All Rights Reserved.
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License as published by
6 * the Free Software Foundation; either version 2 of the License, or
7 * (at your option) any later version.
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
13 *
14 * You should have received a copy of the GNU General Public License along
15 * with this program; if not, write to the Free Software Foundation, Inc.,
16 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
17 */
18
19#include <linux/mm.h>
20#include <linux/delay.h>
21#include <linux/clk.h>
22#include <linux/io.h>
23#include <linux/jiffies.h>
Sascha Hauerb9214b92011-01-13 16:59:25 +010024#include <linux/clkdev.h>
Dong Aisheng4e1b4ec2011-11-22 23:54:23 +080025#include <linux/spinlock.h>
Shawn Guo30a75852010-12-18 21:39:33 +080026
27#include <asm/clkdev.h>
28#include <asm/div64.h>
29
30#include <mach/mx28.h>
31#include <mach/common.h>
32#include <mach/clock.h>
Dong Aisheng4e1b4ec2011-11-22 23:54:23 +080033#include <mach/digctl.h>
Shawn Guo30a75852010-12-18 21:39:33 +080034
35#include "regs-clkctrl-mx28.h"
36
37#define CLKCTRL_BASE_ADDR MX28_IO_ADDRESS(MX28_CLKCTRL_BASE_ADDR)
38#define DIGCTRL_BASE_ADDR MX28_IO_ADDRESS(MX28_DIGCTL_BASE_ADDR)
39
40#define PARENT_RATE_SHIFT 8
41
42static struct clk pll2_clk;
43static struct clk cpu_clk;
44static struct clk emi_clk;
45static struct clk saif0_clk;
46static struct clk saif1_clk;
47static struct clk clk32k_clk;
Dong Aisheng4e1b4ec2011-11-22 23:54:23 +080048static DEFINE_SPINLOCK(clkmux_lock);
49
50/*
51 * HW_SAIF_CLKMUX_SEL:
52 * DIRECT(0x0): SAIF0 clock pins selected for SAIF0 input clocks, and SAIF1
53 * clock pins selected for SAIF1 input clocks.
54 * CROSSINPUT(0x1): SAIF1 clock inputs selected for SAIF0 input clocks, and
55 * SAIF0 clock inputs selected for SAIF1 input clocks.
56 * EXTMSTR0(0x2): SAIF0 clock pin selected for both SAIF0 and SAIF1 input
57 * clocks.
58 * EXTMSTR1(0x3): SAIF1 clock pin selected for both SAIF0 and SAIF1 input
59 * clocks.
60 */
61int mxs_saif_clkmux_select(unsigned int clkmux)
62{
63 if (clkmux > 0x3)
64 return -EINVAL;
65
66 spin_lock(&clkmux_lock);
67 __raw_writel(BM_DIGCTL_CTRL_SAIF_CLKMUX,
68 DIGCTRL_BASE_ADDR + HW_DIGCTL_CTRL + MXS_CLR_ADDR);
69 __raw_writel(clkmux << BP_DIGCTL_CTRL_SAIF_CLKMUX,
70 DIGCTRL_BASE_ADDR + HW_DIGCTL_CTRL + MXS_SET_ADDR);
71 spin_unlock(&clkmux_lock);
72
73 return 0;
74}
Shawn Guo30a75852010-12-18 21:39:33 +080075
76static int _raw_clk_enable(struct clk *clk)
77{
78 u32 reg;
79
80 if (clk->enable_reg) {
81 reg = __raw_readl(clk->enable_reg);
82 reg &= ~(1 << clk->enable_shift);
83 __raw_writel(reg, clk->enable_reg);
84 }
85
86 return 0;
87}
88
89static void _raw_clk_disable(struct clk *clk)
90{
91 u32 reg;
92
93 if (clk->enable_reg) {
94 reg = __raw_readl(clk->enable_reg);
95 reg |= 1 << clk->enable_shift;
96 __raw_writel(reg, clk->enable_reg);
97 }
98}
99
100/*
101 * ref_xtal_clk
102 */
103static unsigned long ref_xtal_clk_get_rate(struct clk *clk)
104{
105 return 24000000;
106}
107
108static struct clk ref_xtal_clk = {
109 .get_rate = ref_xtal_clk_get_rate,
110};
111
112/*
113 * pll_clk
114 */
115static unsigned long pll0_clk_get_rate(struct clk *clk)
116{
117 return 480000000;
118}
119
120static unsigned long pll1_clk_get_rate(struct clk *clk)
121{
122 return 480000000;
123}
124
125static unsigned long pll2_clk_get_rate(struct clk *clk)
126{
127 return 50000000;
128}
129
130#define _CLK_ENABLE_PLL(name, r, g) \
131static int name##_enable(struct clk *clk) \
132{ \
133 __raw_writel(BM_CLKCTRL_##r##CTRL0_POWER, \
134 CLKCTRL_BASE_ADDR + HW_CLKCTRL_##r##CTRL0_SET); \
135 udelay(10); \
136 \
137 if (clk == &pll2_clk) \
138 __raw_writel(BM_CLKCTRL_##r##CTRL0_##g, \
139 CLKCTRL_BASE_ADDR + HW_CLKCTRL_##r##CTRL0_CLR); \
140 else \
141 __raw_writel(BM_CLKCTRL_##r##CTRL0_##g, \
142 CLKCTRL_BASE_ADDR + HW_CLKCTRL_##r##CTRL0_SET); \
143 \
144 return 0; \
145}
146
147_CLK_ENABLE_PLL(pll0_clk, PLL0, EN_USB_CLKS)
148_CLK_ENABLE_PLL(pll1_clk, PLL1, EN_USB_CLKS)
149_CLK_ENABLE_PLL(pll2_clk, PLL2, CLKGATE)
150
151#define _CLK_DISABLE_PLL(name, r, g) \
152static void name##_disable(struct clk *clk) \
153{ \
154 __raw_writel(BM_CLKCTRL_##r##CTRL0_POWER, \
155 CLKCTRL_BASE_ADDR + HW_CLKCTRL_##r##CTRL0_CLR); \
156 \
157 if (clk == &pll2_clk) \
158 __raw_writel(BM_CLKCTRL_##r##CTRL0_##g, \
159 CLKCTRL_BASE_ADDR + HW_CLKCTRL_##r##CTRL0_SET); \
160 else \
161 __raw_writel(BM_CLKCTRL_##r##CTRL0_##g, \
162 CLKCTRL_BASE_ADDR + HW_CLKCTRL_##r##CTRL0_CLR); \
163 \
164}
165
166_CLK_DISABLE_PLL(pll0_clk, PLL0, EN_USB_CLKS)
167_CLK_DISABLE_PLL(pll1_clk, PLL1, EN_USB_CLKS)
168_CLK_DISABLE_PLL(pll2_clk, PLL2, CLKGATE)
169
170#define _DEFINE_CLOCK_PLL(name) \
171 static struct clk name = { \
172 .get_rate = name##_get_rate, \
173 .enable = name##_enable, \
174 .disable = name##_disable, \
175 .parent = &ref_xtal_clk, \
176 }
177
178_DEFINE_CLOCK_PLL(pll0_clk);
179_DEFINE_CLOCK_PLL(pll1_clk);
180_DEFINE_CLOCK_PLL(pll2_clk);
181
182/*
183 * ref_clk
184 */
185#define _CLK_GET_RATE_REF(name, sr, ss) \
186static unsigned long name##_get_rate(struct clk *clk) \
187{ \
188 unsigned long parent_rate; \
189 u32 reg, div; \
190 \
191 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_##sr); \
192 div = (reg >> BP_CLKCTRL_##sr##_##ss##FRAC) & 0x3f; \
193 parent_rate = clk_get_rate(clk->parent); \
194 \
195 return SH_DIV((parent_rate >> PARENT_RATE_SHIFT) * 18, \
196 div, PARENT_RATE_SHIFT); \
197}
198
199_CLK_GET_RATE_REF(ref_cpu_clk, FRAC0, CPU)
200_CLK_GET_RATE_REF(ref_emi_clk, FRAC0, EMI)
201_CLK_GET_RATE_REF(ref_io0_clk, FRAC0, IO0)
202_CLK_GET_RATE_REF(ref_io1_clk, FRAC0, IO1)
203_CLK_GET_RATE_REF(ref_pix_clk, FRAC1, PIX)
204_CLK_GET_RATE_REF(ref_gpmi_clk, FRAC1, GPMI)
205
206#define _DEFINE_CLOCK_REF(name, er, es) \
207 static struct clk name = { \
208 .enable_reg = CLKCTRL_BASE_ADDR + HW_CLKCTRL_##er, \
209 .enable_shift = BP_CLKCTRL_##er##_CLKGATE##es, \
210 .get_rate = name##_get_rate, \
211 .enable = _raw_clk_enable, \
212 .disable = _raw_clk_disable, \
213 .parent = &pll0_clk, \
214 }
215
216_DEFINE_CLOCK_REF(ref_cpu_clk, FRAC0, CPU);
217_DEFINE_CLOCK_REF(ref_emi_clk, FRAC0, EMI);
218_DEFINE_CLOCK_REF(ref_io0_clk, FRAC0, IO0);
219_DEFINE_CLOCK_REF(ref_io1_clk, FRAC0, IO1);
220_DEFINE_CLOCK_REF(ref_pix_clk, FRAC1, PIX);
221_DEFINE_CLOCK_REF(ref_gpmi_clk, FRAC1, GPMI);
222
223/*
224 * General clocks
225 *
226 * clk_get_rate
227 */
228static unsigned long lradc_clk_get_rate(struct clk *clk)
229{
230 return clk_get_rate(clk->parent) / 16;
231}
232
233static unsigned long rtc_clk_get_rate(struct clk *clk)
234{
235 /* ref_xtal_clk is implemented as the only parent */
236 return clk_get_rate(clk->parent) / 768;
237}
238
239static unsigned long clk32k_clk_get_rate(struct clk *clk)
240{
241 return clk->parent->get_rate(clk->parent) / 750;
242}
243
244static unsigned long spdif_clk_get_rate(struct clk *clk)
245{
246 return clk_get_rate(clk->parent) / 4;
247}
248
249#define _CLK_GET_RATE(name, rs) \
250static unsigned long name##_get_rate(struct clk *clk) \
251{ \
252 u32 reg, div; \
253 \
254 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_##rs); \
255 \
256 if (clk->parent == &ref_xtal_clk) \
257 div = (reg & BM_CLKCTRL_##rs##_DIV_XTAL) >> \
258 BP_CLKCTRL_##rs##_DIV_XTAL; \
259 else \
260 div = (reg & BM_CLKCTRL_##rs##_DIV_##rs) >> \
261 BP_CLKCTRL_##rs##_DIV_##rs; \
262 \
263 if (!div) \
264 return -EINVAL; \
265 \
266 return clk_get_rate(clk->parent) / div; \
267}
268
269_CLK_GET_RATE(cpu_clk, CPU)
270_CLK_GET_RATE(emi_clk, EMI)
271
272#define _CLK_GET_RATE1(name, rs) \
273static unsigned long name##_get_rate(struct clk *clk) \
274{ \
275 u32 reg, div; \
276 \
277 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_##rs); \
278 div = (reg & BM_CLKCTRL_##rs##_DIV) >> BP_CLKCTRL_##rs##_DIV; \
279 \
280 if (!div) \
281 return -EINVAL; \
282 \
283 if (clk == &saif0_clk || clk == &saif1_clk) \
284 return clk_get_rate(clk->parent) >> 16 * div; \
285 else \
286 return clk_get_rate(clk->parent) / div; \
287}
288
289_CLK_GET_RATE1(hbus_clk, HBUS)
290_CLK_GET_RATE1(xbus_clk, XBUS)
291_CLK_GET_RATE1(ssp0_clk, SSP0)
292_CLK_GET_RATE1(ssp1_clk, SSP1)
293_CLK_GET_RATE1(ssp2_clk, SSP2)
294_CLK_GET_RATE1(ssp3_clk, SSP3)
295_CLK_GET_RATE1(gpmi_clk, GPMI)
296_CLK_GET_RATE1(lcdif_clk, DIS_LCDIF)
297_CLK_GET_RATE1(saif0_clk, SAIF0)
298_CLK_GET_RATE1(saif1_clk, SAIF1)
299
300#define _CLK_GET_RATE_STUB(name) \
301static unsigned long name##_get_rate(struct clk *clk) \
302{ \
303 return clk_get_rate(clk->parent); \
304}
305
306_CLK_GET_RATE_STUB(uart_clk)
307_CLK_GET_RATE_STUB(pwm_clk)
308_CLK_GET_RATE_STUB(can0_clk)
309_CLK_GET_RATE_STUB(can1_clk)
310_CLK_GET_RATE_STUB(fec_clk)
311
312/*
313 * clk_set_rate
314 */
315/* fool compiler */
316#define BM_CLKCTRL_CPU_DIV 0
317#define BP_CLKCTRL_CPU_DIV 0
318#define BM_CLKCTRL_CPU_BUSY 0
319
320#define _CLK_SET_RATE(name, dr, fr, fs) \
321static int name##_set_rate(struct clk *clk, unsigned long rate) \
322{ \
323 u32 reg, bm_busy, div_max, d, f, div, frac; \
324 unsigned long diff, parent_rate, calc_rate; \
325 int i; \
326 \
Shawn Guo30a75852010-12-18 21:39:33 +0800327 div_max = BM_CLKCTRL_##dr##_DIV >> BP_CLKCTRL_##dr##_DIV; \
328 bm_busy = BM_CLKCTRL_##dr##_BUSY; \
329 \
330 if (clk->parent == &ref_xtal_clk) { \
Uwe Kleine-Königf61b9fc2011-04-04 16:06:12 +0200331 parent_rate = clk_get_rate(clk->parent); \
Shawn Guo30a75852010-12-18 21:39:33 +0800332 div = DIV_ROUND_UP(parent_rate, rate); \
333 if (clk == &cpu_clk) { \
334 div_max = BM_CLKCTRL_CPU_DIV_XTAL >> \
335 BP_CLKCTRL_CPU_DIV_XTAL; \
336 bm_busy = BM_CLKCTRL_CPU_BUSY_REF_XTAL; \
337 } \
338 if (div == 0 || div > div_max) \
339 return -EINVAL; \
340 } else { \
Uwe Kleine-Königf61b9fc2011-04-04 16:06:12 +0200341 /* \
342 * hack alert: this block modifies clk->parent, too, \
343 * so the base to use it the grand parent. \
344 */ \
345 parent_rate = clk_get_rate(clk->parent->parent); \
Shawn Guo30a75852010-12-18 21:39:33 +0800346 rate >>= PARENT_RATE_SHIFT; \
347 parent_rate >>= PARENT_RATE_SHIFT; \
348 diff = parent_rate; \
349 div = frac = 1; \
350 if (clk == &cpu_clk) { \
351 div_max = BM_CLKCTRL_CPU_DIV_CPU >> \
352 BP_CLKCTRL_CPU_DIV_CPU; \
353 bm_busy = BM_CLKCTRL_CPU_BUSY_REF_CPU; \
354 } \
355 for (d = 1; d <= div_max; d++) { \
356 f = parent_rate * 18 / d / rate; \
357 if ((parent_rate * 18 / d) % rate) \
358 f++; \
359 if (f < 18 || f > 35) \
360 continue; \
361 \
362 calc_rate = parent_rate * 18 / f / d; \
363 if (calc_rate > rate) \
364 continue; \
365 \
366 if (rate - calc_rate < diff) { \
367 frac = f; \
368 div = d; \
369 diff = rate - calc_rate; \
370 } \
371 \
372 if (diff == 0) \
373 break; \
374 } \
375 \
376 if (diff == parent_rate) \
377 return -EINVAL; \
378 \
379 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_##fr); \
380 reg &= ~BM_CLKCTRL_##fr##_##fs##FRAC; \
Matt Burtch590842f2011-10-17 09:25:45 -0700381 reg |= frac << BP_CLKCTRL_##fr##_##fs##FRAC; \
Shawn Guo30a75852010-12-18 21:39:33 +0800382 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_##fr); \
383 } \
384 \
385 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_##dr); \
386 if (clk == &cpu_clk) { \
387 reg &= ~BM_CLKCTRL_CPU_DIV_CPU; \
388 reg |= div << BP_CLKCTRL_CPU_DIV_CPU; \
389 } else { \
390 reg &= ~BM_CLKCTRL_##dr##_DIV; \
391 reg |= div << BP_CLKCTRL_##dr##_DIV; \
Sascha Hauer13be9f02011-01-14 14:30:03 +0100392 if (reg & (1 << clk->enable_shift)) { \
Shawn Guo30a75852010-12-18 21:39:33 +0800393 pr_err("%s: clock is gated\n", __func__); \
394 return -EINVAL; \
395 } \
396 } \
Sascha Hauer34d80732011-01-14 15:23:12 +0100397 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_##dr); \
Shawn Guo30a75852010-12-18 21:39:33 +0800398 \
399 for (i = 10000; i; i--) \
400 if (!(__raw_readl(CLKCTRL_BASE_ADDR + \
401 HW_CLKCTRL_##dr) & bm_busy)) \
402 break; \
403 if (!i) { \
404 pr_err("%s: divider writing timeout\n", __func__); \
405 return -ETIMEDOUT; \
406 } \
407 \
408 return 0; \
409}
410
411_CLK_SET_RATE(cpu_clk, CPU, FRAC0, CPU)
412_CLK_SET_RATE(ssp0_clk, SSP0, FRAC0, IO0)
413_CLK_SET_RATE(ssp1_clk, SSP1, FRAC0, IO0)
414_CLK_SET_RATE(ssp2_clk, SSP2, FRAC0, IO1)
415_CLK_SET_RATE(ssp3_clk, SSP3, FRAC0, IO1)
416_CLK_SET_RATE(lcdif_clk, DIS_LCDIF, FRAC1, PIX)
417_CLK_SET_RATE(gpmi_clk, GPMI, FRAC1, GPMI)
418
419#define _CLK_SET_RATE1(name, dr) \
420static int name##_set_rate(struct clk *clk, unsigned long rate) \
421{ \
422 u32 reg, div_max, div; \
423 unsigned long parent_rate; \
424 int i; \
425 \
426 parent_rate = clk_get_rate(clk->parent); \
427 div_max = BM_CLKCTRL_##dr##_DIV >> BP_CLKCTRL_##dr##_DIV; \
428 \
429 div = DIV_ROUND_UP(parent_rate, rate); \
430 if (div == 0 || div > div_max) \
431 return -EINVAL; \
432 \
433 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_##dr); \
434 reg &= ~BM_CLKCTRL_##dr##_DIV; \
435 reg |= div << BP_CLKCTRL_##dr##_DIV; \
Wolfram Sangc2735392011-09-10 12:26:07 +0200436 if (reg & (1 << clk->enable_shift)) { \
Shawn Guo30a75852010-12-18 21:39:33 +0800437 pr_err("%s: clock is gated\n", __func__); \
438 return -EINVAL; \
439 } \
440 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_##dr); \
441 \
442 for (i = 10000; i; i--) \
443 if (!(__raw_readl(CLKCTRL_BASE_ADDR + \
444 HW_CLKCTRL_##dr) & BM_CLKCTRL_##dr##_BUSY)) \
445 break; \
446 if (!i) { \
447 pr_err("%s: divider writing timeout\n", __func__); \
448 return -ETIMEDOUT; \
449 } \
450 \
451 return 0; \
452}
453
454_CLK_SET_RATE1(xbus_clk, XBUS)
455
456/* saif clock uses 16 bits frac div */
457#define _CLK_SET_RATE_SAIF(name, rs) \
458static int name##_set_rate(struct clk *clk, unsigned long rate) \
459{ \
460 u16 div; \
461 u32 reg; \
462 u64 lrate; \
463 unsigned long parent_rate; \
464 int i; \
465 \
466 parent_rate = clk_get_rate(clk->parent); \
467 if (rate > parent_rate) \
468 return -EINVAL; \
469 \
470 lrate = (u64)rate << 16; \
471 do_div(lrate, parent_rate); \
472 div = (u16)lrate; \
473 \
474 if (!div) \
475 return -EINVAL; \
476 \
477 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_##rs); \
478 reg &= ~BM_CLKCTRL_##rs##_DIV; \
479 reg |= div << BP_CLKCTRL_##rs##_DIV; \
Wolfram Sanga6240722011-09-10 12:29:43 +0200480 if (reg & (1 << clk->enable_shift)) { \
481 pr_err("%s: clock is gated\n", __func__); \
482 return -EINVAL; \
483 } \
Shawn Guo30a75852010-12-18 21:39:33 +0800484 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_##rs); \
485 \
486 for (i = 10000; i; i--) \
487 if (!(__raw_readl(CLKCTRL_BASE_ADDR + \
488 HW_CLKCTRL_##rs) & BM_CLKCTRL_##rs##_BUSY)) \
489 break; \
490 if (!i) { \
491 pr_err("%s: divider writing timeout\n", __func__); \
492 return -ETIMEDOUT; \
493 } \
494 \
495 return 0; \
496}
497
498_CLK_SET_RATE_SAIF(saif0_clk, SAIF0)
499_CLK_SET_RATE_SAIF(saif1_clk, SAIF1)
500
501#define _CLK_SET_RATE_STUB(name) \
502static int name##_set_rate(struct clk *clk, unsigned long rate) \
503{ \
504 return -EINVAL; \
505}
506
507_CLK_SET_RATE_STUB(emi_clk)
508_CLK_SET_RATE_STUB(uart_clk)
509_CLK_SET_RATE_STUB(pwm_clk)
510_CLK_SET_RATE_STUB(spdif_clk)
511_CLK_SET_RATE_STUB(clk32k_clk)
512_CLK_SET_RATE_STUB(can0_clk)
513_CLK_SET_RATE_STUB(can1_clk)
514_CLK_SET_RATE_STUB(fec_clk)
515
516/*
517 * clk_set_parent
518 */
519#define _CLK_SET_PARENT(name, bit) \
520static int name##_set_parent(struct clk *clk, struct clk *parent) \
521{ \
522 if (parent != clk->parent) { \
523 __raw_writel(BM_CLKCTRL_CLKSEQ_BYPASS_##bit, \
Shawn Guo303783a2011-01-27 06:26:36 +0800524 CLKCTRL_BASE_ADDR + HW_CLKCTRL_CLKSEQ_TOG); \
Shawn Guo30a75852010-12-18 21:39:33 +0800525 clk->parent = parent; \
526 } \
527 \
528 return 0; \
529}
530
531_CLK_SET_PARENT(cpu_clk, CPU)
532_CLK_SET_PARENT(emi_clk, EMI)
533_CLK_SET_PARENT(ssp0_clk, SSP0)
534_CLK_SET_PARENT(ssp1_clk, SSP1)
535_CLK_SET_PARENT(ssp2_clk, SSP2)
536_CLK_SET_PARENT(ssp3_clk, SSP3)
537_CLK_SET_PARENT(lcdif_clk, DIS_LCDIF)
538_CLK_SET_PARENT(gpmi_clk, GPMI)
539_CLK_SET_PARENT(saif0_clk, SAIF0)
540_CLK_SET_PARENT(saif1_clk, SAIF1)
541
542#define _CLK_SET_PARENT_STUB(name) \
543static int name##_set_parent(struct clk *clk, struct clk *parent) \
544{ \
545 if (parent != clk->parent) \
546 return -EINVAL; \
547 else \
548 return 0; \
549}
550
551_CLK_SET_PARENT_STUB(pwm_clk)
552_CLK_SET_PARENT_STUB(uart_clk)
553_CLK_SET_PARENT_STUB(clk32k_clk)
554_CLK_SET_PARENT_STUB(spdif_clk)
555_CLK_SET_PARENT_STUB(fec_clk)
556_CLK_SET_PARENT_STUB(can0_clk)
557_CLK_SET_PARENT_STUB(can1_clk)
558
559/*
560 * clk definition
561 */
562static struct clk cpu_clk = {
563 .get_rate = cpu_clk_get_rate,
564 .set_rate = cpu_clk_set_rate,
565 .set_parent = cpu_clk_set_parent,
566 .parent = &ref_cpu_clk,
567};
568
569static struct clk hbus_clk = {
570 .get_rate = hbus_clk_get_rate,
571 .parent = &cpu_clk,
572};
573
574static struct clk xbus_clk = {
575 .get_rate = xbus_clk_get_rate,
576 .set_rate = xbus_clk_set_rate,
577 .parent = &ref_xtal_clk,
578};
579
580static struct clk lradc_clk = {
581 .get_rate = lradc_clk_get_rate,
582 .parent = &clk32k_clk,
583};
584
585static struct clk rtc_clk = {
586 .get_rate = rtc_clk_get_rate,
587 .parent = &ref_xtal_clk,
588};
589
590/* usb_clk gate is controlled in DIGCTRL other than CLKCTRL */
591static struct clk usb0_clk = {
592 .enable_reg = DIGCTRL_BASE_ADDR,
593 .enable_shift = 2,
594 .enable = _raw_clk_enable,
595 .disable = _raw_clk_disable,
596 .parent = &pll0_clk,
597};
598
599static struct clk usb1_clk = {
600 .enable_reg = DIGCTRL_BASE_ADDR,
601 .enable_shift = 16,
602 .enable = _raw_clk_enable,
603 .disable = _raw_clk_disable,
604 .parent = &pll1_clk,
605};
606
607#define _DEFINE_CLOCK(name, er, es, p) \
608 static struct clk name = { \
609 .enable_reg = CLKCTRL_BASE_ADDR + HW_CLKCTRL_##er, \
610 .enable_shift = BP_CLKCTRL_##er##_##es, \
611 .get_rate = name##_get_rate, \
612 .set_rate = name##_set_rate, \
613 .set_parent = name##_set_parent, \
614 .enable = _raw_clk_enable, \
615 .disable = _raw_clk_disable, \
616 .parent = p, \
617 }
618
619_DEFINE_CLOCK(emi_clk, EMI, CLKGATE, &ref_xtal_clk);
620_DEFINE_CLOCK(ssp0_clk, SSP0, CLKGATE, &ref_xtal_clk);
621_DEFINE_CLOCK(ssp1_clk, SSP1, CLKGATE, &ref_xtal_clk);
622_DEFINE_CLOCK(ssp2_clk, SSP2, CLKGATE, &ref_xtal_clk);
623_DEFINE_CLOCK(ssp3_clk, SSP3, CLKGATE, &ref_xtal_clk);
624_DEFINE_CLOCK(lcdif_clk, DIS_LCDIF, CLKGATE, &ref_xtal_clk);
625_DEFINE_CLOCK(gpmi_clk, GPMI, CLKGATE, &ref_xtal_clk);
626_DEFINE_CLOCK(saif0_clk, SAIF0, CLKGATE, &ref_xtal_clk);
627_DEFINE_CLOCK(saif1_clk, SAIF1, CLKGATE, &ref_xtal_clk);
628_DEFINE_CLOCK(can0_clk, FLEXCAN, STOP_CAN0, &ref_xtal_clk);
629_DEFINE_CLOCK(can1_clk, FLEXCAN, STOP_CAN1, &ref_xtal_clk);
630_DEFINE_CLOCK(pwm_clk, XTAL, PWM_CLK24M_GATE, &ref_xtal_clk);
631_DEFINE_CLOCK(uart_clk, XTAL, UART_CLK_GATE, &ref_xtal_clk);
632_DEFINE_CLOCK(clk32k_clk, XTAL, TIMROT_CLK32K_GATE, &ref_xtal_clk);
633_DEFINE_CLOCK(spdif_clk, SPDIF, CLKGATE, &pll0_clk);
634_DEFINE_CLOCK(fec_clk, ENET, DISABLE, &hbus_clk);
635
636#define _REGISTER_CLOCK(d, n, c) \
637 { \
638 .dev_id = d, \
639 .con_id = n, \
640 .clk = &c, \
641 },
642
643static struct clk_lookup lookups[] = {
Shawn Guodbc42452011-01-04 14:20:52 +0800644 /* for amba bus driver */
645 _REGISTER_CLOCK("duart", "apb_pclk", xbus_clk)
646 /* for amba-pl011 driver */
647 _REGISTER_CLOCK("duart", NULL, uart_clk)
Shawn Guob2878fa2011-01-06 15:13:14 +0800648 _REGISTER_CLOCK("imx28-fec.0", NULL, fec_clk)
649 _REGISTER_CLOCK("imx28-fec.1", NULL, fec_clk)
Sascha Hauercf3567a2011-01-11 15:56:40 +0100650 _REGISTER_CLOCK("mxs-auart.0", NULL, uart_clk)
651 _REGISTER_CLOCK("mxs-auart.1", NULL, uart_clk)
652 _REGISTER_CLOCK("mxs-auart.2", NULL, uart_clk)
653 _REGISTER_CLOCK("mxs-auart.3", NULL, uart_clk)
654 _REGISTER_CLOCK("mxs-auart.4", NULL, uart_clk)
Shawn Guo30a75852010-12-18 21:39:33 +0800655 _REGISTER_CLOCK("rtc", NULL, rtc_clk)
656 _REGISTER_CLOCK("pll2", NULL, pll2_clk)
Shawn Guo3baa4fe2011-02-22 21:36:27 +0800657 _REGISTER_CLOCK("mxs-dma-apbh", NULL, hbus_clk)
658 _REGISTER_CLOCK("mxs-dma-apbx", NULL, xbus_clk)
Shawn Guo47babe62011-03-16 11:31:06 +0100659 _REGISTER_CLOCK("mxs-mmc.0", NULL, ssp0_clk)
660 _REGISTER_CLOCK("mxs-mmc.1", NULL, ssp1_clk)
Lothar Waßmannbfc0b9c2011-12-06 14:41:28 +0100661 _REGISTER_CLOCK("mxs-mmc.2", NULL, ssp2_clk)
662 _REGISTER_CLOCK("mxs-mmc.3", NULL, ssp3_clk)
Marc Kleine-Budde6ea038a2011-02-02 13:50:29 +0100663 _REGISTER_CLOCK("flexcan.0", NULL, can0_clk)
664 _REGISTER_CLOCK("flexcan.1", NULL, can1_clk)
Shawn Guo30a75852010-12-18 21:39:33 +0800665 _REGISTER_CLOCK(NULL, "usb0", usb0_clk)
666 _REGISTER_CLOCK(NULL, "usb1", usb1_clk)
Sascha Hauer2301dfa2011-01-25 11:58:15 +0100667 _REGISTER_CLOCK("mxs-pwm.0", NULL, pwm_clk)
668 _REGISTER_CLOCK("mxs-pwm.1", NULL, pwm_clk)
669 _REGISTER_CLOCK("mxs-pwm.2", NULL, pwm_clk)
670 _REGISTER_CLOCK("mxs-pwm.3", NULL, pwm_clk)
671 _REGISTER_CLOCK("mxs-pwm.4", NULL, pwm_clk)
672 _REGISTER_CLOCK("mxs-pwm.5", NULL, pwm_clk)
673 _REGISTER_CLOCK("mxs-pwm.6", NULL, pwm_clk)
674 _REGISTER_CLOCK("mxs-pwm.7", NULL, pwm_clk)
Shawn Guo30a75852010-12-18 21:39:33 +0800675 _REGISTER_CLOCK(NULL, "lradc", lradc_clk)
676 _REGISTER_CLOCK(NULL, "spdif", spdif_clk)
Sascha Hauer2e8fd692011-01-14 15:32:49 +0100677 _REGISTER_CLOCK("imx28-fb", NULL, lcdif_clk)
Dong Aishengcf66ea82011-07-20 11:41:41 +0800678 _REGISTER_CLOCK("mxs-saif.0", NULL, saif0_clk)
679 _REGISTER_CLOCK("mxs-saif.1", NULL, saif1_clk)
Shawn Guo30a75852010-12-18 21:39:33 +0800680};
681
682static int clk_misc_init(void)
683{
684 u32 reg;
685 int i;
686
687 /* Fix up parent per register setting */
688 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_CLKSEQ);
689 cpu_clk.parent = (reg & BM_CLKCTRL_CLKSEQ_BYPASS_CPU) ?
690 &ref_xtal_clk : &ref_cpu_clk;
691 emi_clk.parent = (reg & BM_CLKCTRL_CLKSEQ_BYPASS_EMI) ?
692 &ref_xtal_clk : &ref_emi_clk;
693 ssp0_clk.parent = (reg & BM_CLKCTRL_CLKSEQ_BYPASS_SSP0) ?
694 &ref_xtal_clk : &ref_io0_clk;
695 ssp1_clk.parent = (reg & BM_CLKCTRL_CLKSEQ_BYPASS_SSP1) ?
696 &ref_xtal_clk : &ref_io0_clk;
697 ssp2_clk.parent = (reg & BM_CLKCTRL_CLKSEQ_BYPASS_SSP2) ?
698 &ref_xtal_clk : &ref_io1_clk;
699 ssp3_clk.parent = (reg & BM_CLKCTRL_CLKSEQ_BYPASS_SSP3) ?
700 &ref_xtal_clk : &ref_io1_clk;
701 lcdif_clk.parent = (reg & BM_CLKCTRL_CLKSEQ_BYPASS_DIS_LCDIF) ?
702 &ref_xtal_clk : &ref_pix_clk;
703 gpmi_clk.parent = (reg & BM_CLKCTRL_CLKSEQ_BYPASS_GPMI) ?
704 &ref_xtal_clk : &ref_gpmi_clk;
705 saif0_clk.parent = (reg & BM_CLKCTRL_CLKSEQ_BYPASS_SAIF0) ?
706 &ref_xtal_clk : &pll0_clk;
707 saif1_clk.parent = (reg & BM_CLKCTRL_CLKSEQ_BYPASS_SAIF1) ?
708 &ref_xtal_clk : &pll0_clk;
709
710 /* Use int div over frac when both are available */
711 __raw_writel(BM_CLKCTRL_CPU_DIV_XTAL_FRAC_EN,
712 CLKCTRL_BASE_ADDR + HW_CLKCTRL_CPU_CLR);
713 __raw_writel(BM_CLKCTRL_CPU_DIV_CPU_FRAC_EN,
714 CLKCTRL_BASE_ADDR + HW_CLKCTRL_CPU_CLR);
715 __raw_writel(BM_CLKCTRL_HBUS_DIV_FRAC_EN,
716 CLKCTRL_BASE_ADDR + HW_CLKCTRL_HBUS_CLR);
717
718 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_XBUS);
719 reg &= ~BM_CLKCTRL_XBUS_DIV_FRAC_EN;
720 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_XBUS);
721
722 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_SSP0);
723 reg &= ~BM_CLKCTRL_SSP0_DIV_FRAC_EN;
724 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_SSP0);
725
726 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_SSP1);
727 reg &= ~BM_CLKCTRL_SSP1_DIV_FRAC_EN;
728 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_SSP1);
729
730 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_SSP2);
731 reg &= ~BM_CLKCTRL_SSP2_DIV_FRAC_EN;
732 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_SSP2);
733
734 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_SSP3);
735 reg &= ~BM_CLKCTRL_SSP3_DIV_FRAC_EN;
736 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_SSP3);
737
738 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_GPMI);
739 reg &= ~BM_CLKCTRL_GPMI_DIV_FRAC_EN;
740 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_GPMI);
741
742 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_DIS_LCDIF);
743 reg &= ~BM_CLKCTRL_DIS_LCDIF_DIV_FRAC_EN;
744 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_DIS_LCDIF);
745
746 /* SAIF has to use frac div for functional operation */
747 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_SAIF0);
Dong Aishengb00d5332011-07-20 11:41:45 +0800748 reg |= BM_CLKCTRL_SAIF0_DIV_FRAC_EN;
Shawn Guo30a75852010-12-18 21:39:33 +0800749 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_SAIF0);
750
751 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_SAIF1);
Dong Aishengb00d5332011-07-20 11:41:45 +0800752 reg |= BM_CLKCTRL_SAIF1_DIV_FRAC_EN;
Shawn Guo30a75852010-12-18 21:39:33 +0800753 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_SAIF1);
754
755 /*
756 * Set safe hbus clock divider. A divider of 3 ensure that
757 * the Vddd voltage required for the cpu clock is sufficiently
758 * high for the hbus clock.
759 */
760 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_HBUS);
761 reg &= BM_CLKCTRL_HBUS_DIV;
762 reg |= 3 << BP_CLKCTRL_HBUS_DIV;
763 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_HBUS);
764
765 for (i = 10000; i; i--)
766 if (!(__raw_readl(CLKCTRL_BASE_ADDR +
767 HW_CLKCTRL_HBUS) & BM_CLKCTRL_HBUS_ASM_BUSY))
768 break;
769 if (!i) {
770 pr_err("%s: divider writing timeout\n", __func__);
771 return -ETIMEDOUT;
772 }
773
774 /* Gate off cpu clock in WFI for power saving */
775 __raw_writel(BM_CLKCTRL_CPU_INTERRUPT_WAIT,
776 CLKCTRL_BASE_ADDR + HW_CLKCTRL_CPU_SET);
777
Stefano Babicea42a0d2011-09-07 08:45:31 +0200778 /*
779 * Extra fec clock setting
780 * The DENX M28 uses an external clock source
781 * and the clock output must not be enabled
782 */
783 if (!machine_is_m28evk()) {
784 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_ENET);
785 reg &= ~BM_CLKCTRL_ENET_SLEEP;
786 reg |= BM_CLKCTRL_ENET_CLK_OUT_EN;
787 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_ENET);
788 }
Shawn Guo30a75852010-12-18 21:39:33 +0800789
Shawn Guo47babe62011-03-16 11:31:06 +0100790 /*
791 * 480 MHz seems too high to be ssp clock source directly,
792 * so set frac0 to get a 288 MHz ref_io0.
793 */
794 reg = __raw_readl(CLKCTRL_BASE_ADDR + HW_CLKCTRL_FRAC0);
795 reg &= ~BM_CLKCTRL_FRAC0_IO0FRAC;
796 reg |= 30 << BP_CLKCTRL_FRAC0_IO0FRAC;
797 __raw_writel(reg, CLKCTRL_BASE_ADDR + HW_CLKCTRL_FRAC0);
798
Shawn Guo30a75852010-12-18 21:39:33 +0800799 return 0;
800}
801
802int __init mx28_clocks_init(void)
803{
804 clk_misc_init();
805
Shawn Guo47babe62011-03-16 11:31:06 +0100806 /*
807 * source ssp clock from ref_io0 than ref_xtal,
808 * as ref_xtal only provides 24 MHz as maximum.
809 */
810 clk_set_parent(&ssp0_clk, &ref_io0_clk);
811 clk_set_parent(&ssp1_clk, &ref_io0_clk);
Lothar Waßmannbfc0b9c2011-12-06 14:41:28 +0100812 clk_set_parent(&ssp2_clk, &ref_io1_clk);
813 clk_set_parent(&ssp3_clk, &ref_io1_clk);
Shawn Guo47babe62011-03-16 11:31:06 +0100814
Shawn Guoae68f7a2011-12-20 13:50:11 +0800815 clk_prepare_enable(&cpu_clk);
816 clk_prepare_enable(&hbus_clk);
817 clk_prepare_enable(&xbus_clk);
818 clk_prepare_enable(&emi_clk);
819 clk_prepare_enable(&uart_clk);
Shawn Guodbc42452011-01-04 14:20:52 +0800820
Shawn Guo12b90f82011-03-08 18:51:09 +0800821 clk_set_parent(&lcdif_clk, &ref_pix_clk);
Dong Aishengcf66ea82011-07-20 11:41:41 +0800822 clk_set_parent(&saif0_clk, &pll0_clk);
823 clk_set_parent(&saif1_clk, &pll0_clk);
Shawn Guo12b90f82011-03-08 18:51:09 +0800824
Dong Aishengb07fed42011-11-22 23:54:25 +0800825 /*
826 * Set an initial clock rate for the saif internal logic to work
827 * properly. This is important when working in EXTMASTER mode that
828 * uses the other saif's BITCLK&LRCLK but it still needs a basic
829 * clock which should be fast enough for the internal logic.
830 */
831 clk_set_rate(&saif0_clk, 24000000);
832 clk_set_rate(&saif1_clk, 24000000);
833
Shawn Guo30a75852010-12-18 21:39:33 +0800834 clkdev_add_table(lookups, ARRAY_SIZE(lookups));
835
836 mxs_timer_init(&clk32k_clk, MX28_INT_TIMER0);
837
838 return 0;
839}