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Magnus Damm6d9598e2010-11-17 10:59:31 +00001/*
2 * sh73a0 clock framework support
3 *
4 * Copyright (C) 2010 Magnus Damm
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
18 */
19#include <linux/init.h>
20#include <linux/kernel.h>
21#include <linux/io.h>
22#include <linux/sh_clk.h>
Paul Mundt6ef9f6f2011-01-07 11:49:49 +090023#include <linux/clkdev.h>
Guennadi Liakhovetski7653c312013-02-28 13:21:58 +010024#include <asm/processor.h>
Kuninori Morimoto891cab32013-03-27 00:56:14 -070025#include <mach/clock.h>
Magnus Damm6d9598e2010-11-17 10:59:31 +000026#include <mach/common.h>
Magnus Damm6d9598e2010-11-17 10:59:31 +000027
Arnd Bergmann0a4b04d2012-09-14 20:08:08 +000028#define FRQCRA IOMEM(0xe6150000)
29#define FRQCRB IOMEM(0xe6150004)
30#define FRQCRD IOMEM(0xe61500e4)
31#define VCLKCR1 IOMEM(0xe6150008)
32#define VCLKCR2 IOMEM(0xe615000C)
33#define VCLKCR3 IOMEM(0xe615001C)
34#define ZBCKCR IOMEM(0xe6150010)
35#define FLCKCR IOMEM(0xe6150014)
36#define SD0CKCR IOMEM(0xe6150074)
37#define SD1CKCR IOMEM(0xe6150078)
38#define SD2CKCR IOMEM(0xe615007C)
39#define FSIACKCR IOMEM(0xe6150018)
40#define FSIBCKCR IOMEM(0xe6150090)
41#define SUBCKCR IOMEM(0xe6150080)
42#define SPUACKCR IOMEM(0xe6150084)
43#define SPUVCKCR IOMEM(0xe6150094)
44#define MSUCKCR IOMEM(0xe6150088)
45#define HSICKCR IOMEM(0xe615008C)
46#define MFCK1CR IOMEM(0xe6150098)
47#define MFCK2CR IOMEM(0xe615009C)
48#define DSITCKCR IOMEM(0xe6150060)
49#define DSI0PCKCR IOMEM(0xe6150064)
50#define DSI1PCKCR IOMEM(0xe6150068)
Magnus Dammf6d84f42010-12-03 07:22:31 +000051#define DSI0PHYCR 0xe615006C
52#define DSI1PHYCR 0xe6150070
Arnd Bergmann0a4b04d2012-09-14 20:08:08 +000053#define PLLECR IOMEM(0xe61500d0)
54#define PLL0CR IOMEM(0xe61500d8)
55#define PLL1CR IOMEM(0xe6150028)
56#define PLL2CR IOMEM(0xe615002c)
57#define PLL3CR IOMEM(0xe61500dc)
58#define SMSTPCR0 IOMEM(0xe6150130)
59#define SMSTPCR1 IOMEM(0xe6150134)
60#define SMSTPCR2 IOMEM(0xe6150138)
61#define SMSTPCR3 IOMEM(0xe615013c)
62#define SMSTPCR4 IOMEM(0xe6150140)
63#define SMSTPCR5 IOMEM(0xe6150144)
64#define CKSCR IOMEM(0xe61500c0)
Magnus Damm6d9598e2010-11-17 10:59:31 +000065
66/* Fixed 32 KHz root clock from EXTALR pin */
67static struct clk r_clk = {
68 .rate = 32768,
69};
70
Magnus Dammf6d84f42010-12-03 07:22:31 +000071/*
72 * 26MHz default rate for the EXTAL1 root input clock.
73 * If needed, reset this with clk_set_rate() from the platform code.
74 */
75struct clk sh73a0_extal1_clk = {
76 .rate = 26000000,
Magnus Damm6d9598e2010-11-17 10:59:31 +000077};
78
Magnus Dammf6d84f42010-12-03 07:22:31 +000079/*
80 * 48MHz default rate for the EXTAL2 root input clock.
81 * If needed, reset this with clk_set_rate() from the platform code.
82 */
83struct clk sh73a0_extal2_clk = {
84 .rate = 48000000,
85};
86
Magnus Damm7bcda502012-02-29 22:16:52 +090087static struct sh_clk_ops main_clk_ops = {
Magnus Dammf6d84f42010-12-03 07:22:31 +000088 .recalc = followparent_recalc,
89};
90
91/* Main clock */
92static struct clk main_clk = {
Kuninori Morimoto891cab32013-03-27 00:56:14 -070093 /* .parent wll be set on sh73a0_clock_init() */
Magnus Dammf6d84f42010-12-03 07:22:31 +000094 .ops = &main_clk_ops,
95};
96
97/* PLL0, PLL1, PLL2, PLL3 */
98static unsigned long pll_recalc(struct clk *clk)
99{
100 unsigned long mult = 1;
101
Magnus Damm71fc5092011-01-20 08:11:11 +0000102 if (__raw_readl(PLLECR) & (1 << clk->enable_bit)) {
Magnus Dammf6d84f42010-12-03 07:22:31 +0000103 mult = (((__raw_readl(clk->enable_reg) >> 24) & 0x3f) + 1);
Magnus Damm71fc5092011-01-20 08:11:11 +0000104 /* handle CFG bit for PLL1 and PLL2 */
105 switch (clk->enable_bit) {
106 case 1:
107 case 2:
108 if (__raw_readl(clk->enable_reg) & (1 << 20))
109 mult *= 2;
110 }
111 }
Magnus Dammf6d84f42010-12-03 07:22:31 +0000112
113 return clk->parent->rate * mult;
114}
115
Magnus Damm7bcda502012-02-29 22:16:52 +0900116static struct sh_clk_ops pll_clk_ops = {
Magnus Dammf6d84f42010-12-03 07:22:31 +0000117 .recalc = pll_recalc,
118};
119
120static struct clk pll0_clk = {
121 .ops = &pll_clk_ops,
122 .flags = CLK_ENABLE_ON_INIT,
123 .parent = &main_clk,
124 .enable_reg = (void __iomem *)PLL0CR,
125 .enable_bit = 0,
126};
127
128static struct clk pll1_clk = {
129 .ops = &pll_clk_ops,
130 .flags = CLK_ENABLE_ON_INIT,
131 .parent = &main_clk,
132 .enable_reg = (void __iomem *)PLL1CR,
133 .enable_bit = 1,
134};
135
136static struct clk pll2_clk = {
137 .ops = &pll_clk_ops,
138 .flags = CLK_ENABLE_ON_INIT,
139 .parent = &main_clk,
140 .enable_reg = (void __iomem *)PLL2CR,
141 .enable_bit = 2,
142};
143
144static struct clk pll3_clk = {
145 .ops = &pll_clk_ops,
146 .flags = CLK_ENABLE_ON_INIT,
147 .parent = &main_clk,
148 .enable_reg = (void __iomem *)PLL3CR,
149 .enable_bit = 3,
150};
151
Kuninori Morimoto891cab32013-03-27 00:56:14 -0700152/* A fixed divide block */
153SH_CLK_RATIO(div2, 1, 2);
154SH_CLK_RATIO(div7, 1, 7);
155SH_CLK_RATIO(div13, 1, 13);
Yoshii Takashib028f942010-11-19 13:20:45 +0000156
Kuninori Morimoto891cab32013-03-27 00:56:14 -0700157SH_FIXED_RATIO_CLK(extal1_div2_clk, sh73a0_extal1_clk, div2);
158SH_FIXED_RATIO_CLK(extal2_div2_clk, sh73a0_extal2_clk, div2);
159SH_FIXED_RATIO_CLK(main_div2_clk, main_clk, div2);
160SH_FIXED_RATIO_CLK(pll1_div2_clk, pll1_clk, div2);
161SH_FIXED_RATIO_CLK(pll1_div7_clk, pll1_clk, div7);
162SH_FIXED_RATIO_CLK(pll1_div13_clk, pll1_clk, div13);
Kuninori Morimotod4775352011-12-05 22:29:15 -0800163
164/* External input clock */
165struct clk sh73a0_extcki_clk = {
166};
167
168struct clk sh73a0_extalr_clk = {
169};
170
Magnus Damm6d9598e2010-11-17 10:59:31 +0000171static struct clk *main_clks[] = {
172 &r_clk,
Magnus Dammf6d84f42010-12-03 07:22:31 +0000173 &sh73a0_extal1_clk,
174 &sh73a0_extal2_clk,
175 &extal1_div2_clk,
176 &extal2_div2_clk,
177 &main_clk,
Kuninori Morimotod4775352011-12-05 22:29:15 -0800178 &main_div2_clk,
Magnus Dammf6d84f42010-12-03 07:22:31 +0000179 &pll0_clk,
180 &pll1_clk,
181 &pll2_clk,
182 &pll3_clk,
183 &pll1_div2_clk,
Kuninori Morimotod4775352011-12-05 22:29:15 -0800184 &pll1_div7_clk,
185 &pll1_div13_clk,
186 &sh73a0_extcki_clk,
187 &sh73a0_extalr_clk,
Magnus Damm6d9598e2010-11-17 10:59:31 +0000188};
189
Guennadi Liakhovetski7653c312013-02-28 13:21:58 +0100190static int frqcr_kick(void)
191{
192 int i;
193
194 /* set KICK bit in FRQCRB to update hardware setting, check success */
195 __raw_writel(__raw_readl(FRQCRB) | (1 << 31), FRQCRB);
196 for (i = 1000; i; i--)
197 if (__raw_readl(FRQCRB) & (1 << 31))
198 cpu_relax();
199 else
200 return i;
201
202 return -ETIMEDOUT;
203}
204
Magnus Dammf6d84f42010-12-03 07:22:31 +0000205static void div4_kick(struct clk *clk)
206{
Guennadi Liakhovetski7653c312013-02-28 13:21:58 +0100207 frqcr_kick();
Magnus Dammf6d84f42010-12-03 07:22:31 +0000208}
209
210static int divisors[] = { 2, 3, 4, 6, 8, 12, 16, 18,
Takashi YOSHIIc070c202010-12-22 14:15:08 +0000211 24, 0, 36, 48, 7 };
Magnus Dammf6d84f42010-12-03 07:22:31 +0000212
213static struct clk_div_mult_table div4_div_mult_table = {
214 .divisors = divisors,
215 .nr_divisors = ARRAY_SIZE(divisors),
216};
217
218static struct clk_div4_table div4_table = {
219 .div_mult_table = &div4_div_mult_table,
220 .kick = div4_kick,
221};
222
223enum { DIV4_I, DIV4_ZG, DIV4_M3, DIV4_B, DIV4_M1, DIV4_M2,
Kuninori Morimoto1f7ccd82013-03-27 00:55:07 -0700224 DIV4_Z, DIV4_ZX, DIV4_HP, DIV4_NR };
Magnus Dammf6d84f42010-12-03 07:22:31 +0000225
226#define DIV4(_reg, _bit, _mask, _flags) \
227 SH_CLK_DIV4(&pll1_clk, _reg, _bit, _mask, _flags)
228
229static struct clk div4_clks[DIV4_NR] = {
Kuninori Morimotobf519bfb2012-12-04 17:43:29 -0800230 [DIV4_I] = DIV4(FRQCRA, 20, 0xdff, CLK_ENABLE_ON_INIT),
Guennadi Liakhovetski8a444472013-02-22 18:17:51 +0100231 [DIV4_ZG] = SH_CLK_DIV4(&pll0_clk, FRQCRA, 16, 0xd7f, CLK_ENABLE_ON_INIT),
Kuninori Morimotobf519bfb2012-12-04 17:43:29 -0800232 [DIV4_M3] = DIV4(FRQCRA, 12, 0x1dff, CLK_ENABLE_ON_INIT),
233 [DIV4_B] = DIV4(FRQCRA, 8, 0xdff, CLK_ENABLE_ON_INIT),
234 [DIV4_M1] = DIV4(FRQCRA, 4, 0x1dff, 0),
235 [DIV4_M2] = DIV4(FRQCRA, 0, 0x1dff, 0),
Guennadi Liakhovetski8a444472013-02-22 18:17:51 +0100236 [DIV4_Z] = SH_CLK_DIV4(&pll0_clk, FRQCRB, 24, 0x97f, 0),
Kuninori Morimotobf519bfb2012-12-04 17:43:29 -0800237 [DIV4_ZX] = DIV4(FRQCRB, 12, 0xdff, 0),
238 [DIV4_HP] = DIV4(FRQCRB, 4, 0xdff, 0),
Magnus Dammf6d84f42010-12-03 07:22:31 +0000239};
240
Guennadi Liakhovetskife7aa822013-03-07 20:00:48 +0100241static unsigned long twd_recalc(struct clk *clk)
242{
243 return clk_get_rate(clk->parent) / 4;
244}
245
246static struct sh_clk_ops twd_clk_ops = {
247 .recalc = twd_recalc,
248};
249
250static struct clk twd_clk = {
251 .parent = &div4_clks[DIV4_Z],
252 .ops = &twd_clk_ops,
253};
254
Magnus Dammf6d84f42010-12-03 07:22:31 +0000255enum { DIV6_VCK1, DIV6_VCK2, DIV6_VCK3, DIV6_ZB1,
256 DIV6_FLCTL, DIV6_SDHI0, DIV6_SDHI1, DIV6_SDHI2,
257 DIV6_FSIA, DIV6_FSIB, DIV6_SUB,
258 DIV6_SPUA, DIV6_SPUV, DIV6_MSU,
259 DIV6_HSI, DIV6_MFG1, DIV6_MFG2,
260 DIV6_DSIT, DIV6_DSI0P, DIV6_DSI1P,
261 DIV6_NR };
262
Kuninori Morimotod4775352011-12-05 22:29:15 -0800263static struct clk *vck_parent[8] = {
264 [0] = &pll1_div2_clk,
265 [1] = &pll2_clk,
266 [2] = &sh73a0_extcki_clk,
267 [3] = &sh73a0_extal2_clk,
268 [4] = &main_div2_clk,
269 [5] = &sh73a0_extalr_clk,
270 [6] = &main_clk,
271};
272
273static struct clk *pll_parent[4] = {
274 [0] = &pll1_div2_clk,
275 [1] = &pll2_clk,
276 [2] = &pll1_div13_clk,
277};
278
279static struct clk *hsi_parent[4] = {
280 [0] = &pll1_div2_clk,
281 [1] = &pll2_clk,
282 [2] = &pll1_div7_clk,
283};
284
285static struct clk *pll_extal2_parent[] = {
286 [0] = &pll1_div2_clk,
287 [1] = &pll2_clk,
288 [2] = &sh73a0_extal2_clk,
289 [3] = &sh73a0_extal2_clk,
290};
291
292static struct clk *dsi_parent[8] = {
293 [0] = &pll1_div2_clk,
294 [1] = &pll2_clk,
295 [2] = &main_clk,
296 [3] = &sh73a0_extal2_clk,
297 [4] = &sh73a0_extcki_clk,
298};
299
Magnus Dammf6d84f42010-12-03 07:22:31 +0000300static struct clk div6_clks[DIV6_NR] = {
Kuninori Morimotod4775352011-12-05 22:29:15 -0800301 [DIV6_VCK1] = SH_CLK_DIV6_EXT(VCLKCR1, 0,
302 vck_parent, ARRAY_SIZE(vck_parent), 12, 3),
303 [DIV6_VCK2] = SH_CLK_DIV6_EXT(VCLKCR2, 0,
304 vck_parent, ARRAY_SIZE(vck_parent), 12, 3),
305 [DIV6_VCK3] = SH_CLK_DIV6_EXT(VCLKCR3, 0,
306 vck_parent, ARRAY_SIZE(vck_parent), 12, 3),
Paul Mundtca371d22012-01-09 11:12:55 +0900307 [DIV6_ZB1] = SH_CLK_DIV6_EXT(ZBCKCR, CLK_ENABLE_ON_INIT,
Kuninori Morimotod4775352011-12-05 22:29:15 -0800308 pll_parent, ARRAY_SIZE(pll_parent), 7, 1),
309 [DIV6_FLCTL] = SH_CLK_DIV6_EXT(FLCKCR, 0,
310 pll_parent, ARRAY_SIZE(pll_parent), 7, 1),
311 [DIV6_SDHI0] = SH_CLK_DIV6_EXT(SD0CKCR, 0,
312 pll_parent, ARRAY_SIZE(pll_parent), 6, 2),
313 [DIV6_SDHI1] = SH_CLK_DIV6_EXT(SD1CKCR, 0,
314 pll_parent, ARRAY_SIZE(pll_parent), 6, 2),
315 [DIV6_SDHI2] = SH_CLK_DIV6_EXT(SD2CKCR, 0,
316 pll_parent, ARRAY_SIZE(pll_parent), 6, 2),
317 [DIV6_FSIA] = SH_CLK_DIV6_EXT(FSIACKCR, 0,
318 pll_parent, ARRAY_SIZE(pll_parent), 6, 1),
319 [DIV6_FSIB] = SH_CLK_DIV6_EXT(FSIBCKCR, 0,
320 pll_parent, ARRAY_SIZE(pll_parent), 6, 1),
321 [DIV6_SUB] = SH_CLK_DIV6_EXT(SUBCKCR, 0,
322 pll_extal2_parent, ARRAY_SIZE(pll_extal2_parent), 6, 2),
323 [DIV6_SPUA] = SH_CLK_DIV6_EXT(SPUACKCR, 0,
324 pll_extal2_parent, ARRAY_SIZE(pll_extal2_parent), 6, 2),
325 [DIV6_SPUV] = SH_CLK_DIV6_EXT(SPUVCKCR, 0,
326 pll_extal2_parent, ARRAY_SIZE(pll_extal2_parent), 6, 2),
327 [DIV6_MSU] = SH_CLK_DIV6_EXT(MSUCKCR, 0,
328 pll_parent, ARRAY_SIZE(pll_parent), 7, 1),
329 [DIV6_HSI] = SH_CLK_DIV6_EXT(HSICKCR, 0,
330 hsi_parent, ARRAY_SIZE(hsi_parent), 6, 2),
331 [DIV6_MFG1] = SH_CLK_DIV6_EXT(MFCK1CR, 0,
332 pll_parent, ARRAY_SIZE(pll_parent), 7, 1),
333 [DIV6_MFG2] = SH_CLK_DIV6_EXT(MFCK2CR, 0,
334 pll_parent, ARRAY_SIZE(pll_parent), 7, 1),
335 [DIV6_DSIT] = SH_CLK_DIV6_EXT(DSITCKCR, 0,
336 pll_parent, ARRAY_SIZE(pll_parent), 7, 1),
337 [DIV6_DSI0P] = SH_CLK_DIV6_EXT(DSI0PCKCR, 0,
338 dsi_parent, ARRAY_SIZE(dsi_parent), 12, 3),
339 [DIV6_DSI1P] = SH_CLK_DIV6_EXT(DSI1PCKCR, 0,
340 dsi_parent, ARRAY_SIZE(dsi_parent), 12, 3),
Magnus Dammf6d84f42010-12-03 07:22:31 +0000341};
342
Kuninori Morimotof5948ba2012-01-22 21:10:02 -0800343/* DSI DIV */
344static unsigned long dsiphy_recalc(struct clk *clk)
345{
346 u32 value;
347
348 value = __raw_readl(clk->mapping->base);
349
350 /* FIXME */
351 if (!(value & 0x000B8000))
352 return clk->parent->rate;
353
354 value &= 0x3f;
355 value += 1;
356
357 if ((value < 12) ||
358 (value > 33)) {
359 pr_err("DSIPHY has wrong value (%d)", value);
360 return 0;
361 }
362
363 return clk->parent->rate / value;
364}
365
366static long dsiphy_round_rate(struct clk *clk, unsigned long rate)
367{
368 return clk_rate_mult_range_round(clk, 12, 33, rate);
369}
370
371static void dsiphy_disable(struct clk *clk)
372{
373 u32 value;
374
375 value = __raw_readl(clk->mapping->base);
376 value &= ~0x000B8000;
377
378 __raw_writel(value , clk->mapping->base);
379}
380
381static int dsiphy_enable(struct clk *clk)
382{
383 u32 value;
384 int multi;
385
386 value = __raw_readl(clk->mapping->base);
387 multi = (value & 0x3f) + 1;
388
389 if ((multi < 12) || (multi > 33))
390 return -EIO;
391
392 __raw_writel(value | 0x000B8000, clk->mapping->base);
393
394 return 0;
395}
396
397static int dsiphy_set_rate(struct clk *clk, unsigned long rate)
398{
399 u32 value;
400 int idx;
401
402 idx = rate / clk->parent->rate;
403 if ((idx < 12) || (idx > 33))
404 return -EINVAL;
405
406 idx += -1;
407
408 value = __raw_readl(clk->mapping->base);
409 value = (value & ~0x3f) + idx;
410
411 __raw_writel(value, clk->mapping->base);
412
413 return 0;
414}
415
Magnus Damm7bcda502012-02-29 22:16:52 +0900416static struct sh_clk_ops dsiphy_clk_ops = {
Kuninori Morimotof5948ba2012-01-22 21:10:02 -0800417 .recalc = dsiphy_recalc,
418 .round_rate = dsiphy_round_rate,
419 .set_rate = dsiphy_set_rate,
420 .enable = dsiphy_enable,
421 .disable = dsiphy_disable,
422};
423
424static struct clk_mapping dsi0phy_clk_mapping = {
425 .phys = DSI0PHYCR,
426 .len = 4,
427};
428
429static struct clk_mapping dsi1phy_clk_mapping = {
430 .phys = DSI1PHYCR,
431 .len = 4,
432};
433
434static struct clk dsi0phy_clk = {
435 .ops = &dsiphy_clk_ops,
436 .parent = &div6_clks[DIV6_DSI0P], /* late install */
437 .mapping = &dsi0phy_clk_mapping,
438};
439
440static struct clk dsi1phy_clk = {
441 .ops = &dsiphy_clk_ops,
442 .parent = &div6_clks[DIV6_DSI1P], /* late install */
443 .mapping = &dsi1phy_clk_mapping,
444};
445
446static struct clk *late_main_clks[] = {
447 &dsi0phy_clk,
448 &dsi1phy_clk,
Guennadi Liakhovetskife7aa822013-03-07 20:00:48 +0100449 &twd_clk,
Kuninori Morimotof5948ba2012-01-22 21:10:02 -0800450};
451
Magnus Dammf6d84f42010-12-03 07:22:31 +0000452enum { MSTP001,
Magnus Dammad054cb2011-01-28 10:04:25 +0000453 MSTP129, MSTP128, MSTP127, MSTP126, MSTP125, MSTP118, MSTP116, MSTP100,
Kuninori Morimoto832290b2012-06-25 03:39:20 -0700454 MSTP219, MSTP218, MSTP217,
Magnus Dammf6d84f42010-12-03 07:22:31 +0000455 MSTP207, MSTP206, MSTP204, MSTP203, MSTP202, MSTP201, MSTP200,
Kuninori Morimoto12a7cfe2012-06-25 03:34:49 -0700456 MSTP331, MSTP329, MSTP328, MSTP325, MSTP323, MSTP322,
Magnus Damm681e1b32011-05-24 10:37:16 +0000457 MSTP314, MSTP313, MSTP312, MSTP311,
Magnus Damm33661c92011-11-22 15:44:58 +0900458 MSTP303, MSTP302, MSTP301, MSTP300,
Kuninori Morimoto696d6e12010-11-24 07:41:14 +0000459 MSTP411, MSTP410, MSTP403,
Magnus Damm6d9598e2010-11-17 10:59:31 +0000460 MSTP_NR };
461
462#define MSTP(_parent, _reg, _bit, _flags) \
463 SH_CLK_MSTP32(_parent, _reg, _bit, _flags)
464
465static struct clk mstp_clks[MSTP_NR] = {
Magnus Dammf6d84f42010-12-03 07:22:31 +0000466 [MSTP001] = MSTP(&div4_clks[DIV4_HP], SMSTPCR0, 1, 0), /* IIC2 */
Magnus Dammad054cb2011-01-28 10:04:25 +0000467 [MSTP129] = MSTP(&div4_clks[DIV4_B], SMSTPCR1, 29, 0), /* CEU1 */
468 [MSTP128] = MSTP(&div4_clks[DIV4_B], SMSTPCR1, 28, 0), /* CSI2-RX1 */
469 [MSTP127] = MSTP(&div4_clks[DIV4_B], SMSTPCR1, 27, 0), /* CEU0 */
470 [MSTP126] = MSTP(&div4_clks[DIV4_B], SMSTPCR1, 26, 0), /* CSI2-RX0 */
Magnus Damm5010f3d2010-12-21 08:40:59 +0000471 [MSTP125] = MSTP(&div6_clks[DIV6_SUB], SMSTPCR1, 25, 0), /* TMU0 */
Magnus Damm170c7ab2011-01-20 08:41:03 +0000472 [MSTP118] = MSTP(&div4_clks[DIV4_B], SMSTPCR1, 18, 0), /* DSITX0 */
Magnus Dammf6d84f42010-12-03 07:22:31 +0000473 [MSTP116] = MSTP(&div4_clks[DIV4_HP], SMSTPCR1, 16, 0), /* IIC0 */
Magnus Damm170c7ab2011-01-20 08:41:03 +0000474 [MSTP100] = MSTP(&div4_clks[DIV4_B], SMSTPCR1, 0, 0), /* LCDC0 */
Magnus Dammf6d84f42010-12-03 07:22:31 +0000475 [MSTP219] = MSTP(&div6_clks[DIV6_SUB], SMSTPCR2, 19, 0), /* SCIFA7 */
Kuninori Morimoto32103c72012-06-20 11:30:25 +0200476 [MSTP218] = MSTP(&div4_clks[DIV4_HP], SMSTPCR2, 18, 0), /* SY-DMAC */
Kuninori Morimoto832290b2012-06-25 03:39:20 -0700477 [MSTP217] = MSTP(&div4_clks[DIV4_HP], SMSTPCR2, 17, 0), /* MP-DMAC */
Magnus Dammf6d84f42010-12-03 07:22:31 +0000478 [MSTP207] = MSTP(&div6_clks[DIV6_SUB], SMSTPCR2, 7, 0), /* SCIFA5 */
479 [MSTP206] = MSTP(&div6_clks[DIV6_SUB], SMSTPCR2, 6, 0), /* SCIFB */
480 [MSTP204] = MSTP(&div6_clks[DIV6_SUB], SMSTPCR2, 4, 0), /* SCIFA0 */
481 [MSTP203] = MSTP(&div6_clks[DIV6_SUB], SMSTPCR2, 3, 0), /* SCIFA1 */
482 [MSTP202] = MSTP(&div6_clks[DIV6_SUB], SMSTPCR2, 2, 0), /* SCIFA2 */
483 [MSTP201] = MSTP(&div6_clks[DIV6_SUB], SMSTPCR2, 1, 0), /* SCIFA3 */
484 [MSTP200] = MSTP(&div6_clks[DIV6_SUB], SMSTPCR2, 0, 0), /* SCIFA4 */
485 [MSTP331] = MSTP(&div6_clks[DIV6_SUB], SMSTPCR3, 31, 0), /* SCIFA6 */
Magnus Damm6d9598e2010-11-17 10:59:31 +0000486 [MSTP329] = MSTP(&r_clk, SMSTPCR3, 29, 0), /* CMT10 */
Kuninori Morimotoea7e1a52012-06-12 02:43:40 -0700487 [MSTP328] = MSTP(&div4_clks[DIV4_HP], SMSTPCR3, 28, 0), /*FSI*/
Magnus Damm5a1b70a2011-01-18 08:48:17 +0000488 [MSTP325] = MSTP(&div6_clks[DIV6_SUB], SMSTPCR3, 25, 0), /* IrDA */
Magnus Dammf6d84f42010-12-03 07:22:31 +0000489 [MSTP323] = MSTP(&div4_clks[DIV4_HP], SMSTPCR3, 23, 0), /* IIC1 */
Kuninori Morimoto12a7cfe2012-06-25 03:34:49 -0700490 [MSTP322] = MSTP(&div4_clks[DIV4_HP], SMSTPCR3, 22, 0), /* USB */
Magnus Dammfb66c522011-05-23 05:10:36 +0000491 [MSTP314] = MSTP(&div6_clks[DIV6_SDHI0], SMSTPCR3, 14, 0), /* SDHI0 */
492 [MSTP313] = MSTP(&div6_clks[DIV6_SDHI1], SMSTPCR3, 13, 0), /* SDHI1 */
Takashi YOSHII6bf45a12010-12-22 06:35:30 +0000493 [MSTP312] = MSTP(&div4_clks[DIV4_HP], SMSTPCR3, 12, 0), /* MMCIF0 */
Magnus Dammfb66c522011-05-23 05:10:36 +0000494 [MSTP311] = MSTP(&div6_clks[DIV6_SDHI2], SMSTPCR3, 11, 0), /* SDHI2 */
Magnus Damm33661c92011-11-22 15:44:58 +0900495 [MSTP303] = MSTP(&main_div2_clk, SMSTPCR3, 3, 0), /* TPU1 */
496 [MSTP302] = MSTP(&main_div2_clk, SMSTPCR3, 2, 0), /* TPU2 */
497 [MSTP301] = MSTP(&main_div2_clk, SMSTPCR3, 1, 0), /* TPU3 */
498 [MSTP300] = MSTP(&main_div2_clk, SMSTPCR3, 0, 0), /* TPU4 */
Magnus Dammf6d84f42010-12-03 07:22:31 +0000499 [MSTP411] = MSTP(&div4_clks[DIV4_HP], SMSTPCR4, 11, 0), /* IIC3 */
500 [MSTP410] = MSTP(&div4_clks[DIV4_HP], SMSTPCR4, 10, 0), /* IIC4 */
Magnus Damm019c4ae2010-12-22 06:14:05 +0000501 [MSTP403] = MSTP(&r_clk, SMSTPCR4, 3, 0), /* KEYSC */
Magnus Damm6d9598e2010-11-17 10:59:31 +0000502};
503
Simon Horman48609532012-11-21 22:00:15 +0900504/* The lookups structure below includes duplicate entries for some clocks
505 * with alternate names.
506 * - The traditional name used when a device is initialised with platform data
507 * - The name used when a device is initialised using device tree
508 * The longer-term aim is to remove these duplicates, and indeed the
509 * lookups table entirely, by describing clocks using device tree.
510 */
Magnus Damm6d9598e2010-11-17 10:59:31 +0000511static struct clk_lookup lookups[] = {
Magnus Dammf6d84f42010-12-03 07:22:31 +0000512 /* main clocks */
513 CLKDEV_CON_ID("r_clk", &r_clk),
Guennadi Liakhovetskife7aa822013-03-07 20:00:48 +0100514 CLKDEV_DEV_ID("smp_twd", &twd_clk), /* smp_twd */
Magnus Dammf6d84f42010-12-03 07:22:31 +0000515
Magnus Damm170c7ab2011-01-20 08:41:03 +0000516 /* DIV6 clocks */
Magnus Dammad054cb2011-01-28 10:04:25 +0000517 CLKDEV_CON_ID("vck1_clk", &div6_clks[DIV6_VCK1]),
518 CLKDEV_CON_ID("vck2_clk", &div6_clks[DIV6_VCK2]),
519 CLKDEV_CON_ID("vck3_clk", &div6_clks[DIV6_VCK3]),
Magnus Dammfb66c522011-05-23 05:10:36 +0000520 CLKDEV_CON_ID("sdhi0_clk", &div6_clks[DIV6_SDHI0]),
521 CLKDEV_CON_ID("sdhi1_clk", &div6_clks[DIV6_SDHI1]),
522 CLKDEV_CON_ID("sdhi2_clk", &div6_clks[DIV6_SDHI2]),
Magnus Damm170c7ab2011-01-20 08:41:03 +0000523 CLKDEV_ICK_ID("dsit_clk", "sh-mipi-dsi.0", &div6_clks[DIV6_DSIT]),
524 CLKDEV_ICK_ID("dsit_clk", "sh-mipi-dsi.1", &div6_clks[DIV6_DSIT]),
Kuninori Morimoto92507412011-11-08 20:33:47 -0800525 CLKDEV_ICK_ID("dsip_clk", "sh-mipi-dsi.0", &div6_clks[DIV6_DSI0P]),
526 CLKDEV_ICK_ID("dsip_clk", "sh-mipi-dsi.1", &div6_clks[DIV6_DSI1P]),
Kuninori Morimotof5948ba2012-01-22 21:10:02 -0800527 CLKDEV_ICK_ID("dsiphy_clk", "sh-mipi-dsi.0", &dsi0phy_clk),
528 CLKDEV_ICK_ID("dsiphy_clk", "sh-mipi-dsi.1", &dsi1phy_clk),
Magnus Damm170c7ab2011-01-20 08:41:03 +0000529
Magnus Damm6d9598e2010-11-17 10:59:31 +0000530 /* MSTP32 clocks */
Kuninori Morimoto696d6e12010-11-24 07:41:14 +0000531 CLKDEV_DEV_ID("i2c-sh_mobile.2", &mstp_clks[MSTP001]), /* I2C2 */
Simon Horman48609532012-11-21 22:00:15 +0900532 CLKDEV_DEV_ID("e6824000.i2c", &mstp_clks[MSTP001]), /* I2C2 */
Magnus Dammad054cb2011-01-28 10:04:25 +0000533 CLKDEV_DEV_ID("sh_mobile_ceu.1", &mstp_clks[MSTP129]), /* CEU1 */
534 CLKDEV_DEV_ID("sh-mobile-csi2.1", &mstp_clks[MSTP128]), /* CSI2-RX1 */
535 CLKDEV_DEV_ID("sh_mobile_ceu.0", &mstp_clks[MSTP127]), /* CEU0 */
536 CLKDEV_DEV_ID("sh-mobile-csi2.0", &mstp_clks[MSTP126]), /* CSI2-RX0 */
Magnus Damm5010f3d2010-12-21 08:40:59 +0000537 CLKDEV_DEV_ID("sh_tmu.0", &mstp_clks[MSTP125]), /* TMU00 */
538 CLKDEV_DEV_ID("sh_tmu.1", &mstp_clks[MSTP125]), /* TMU01 */
Magnus Damm170c7ab2011-01-20 08:41:03 +0000539 CLKDEV_DEV_ID("sh-mipi-dsi.0", &mstp_clks[MSTP118]), /* DSITX */
Magnus Dammad054cb2011-01-28 10:04:25 +0000540 CLKDEV_DEV_ID("i2c-sh_mobile.0", &mstp_clks[MSTP116]), /* I2C0 */
Simon Horman48609532012-11-21 22:00:15 +0900541 CLKDEV_DEV_ID("e6820000.i2c", &mstp_clks[MSTP116]), /* I2C0 */
Magnus Dammad054cb2011-01-28 10:04:25 +0000542 CLKDEV_DEV_ID("sh_mobile_lcdc_fb.0", &mstp_clks[MSTP100]), /* LCDC0 */
Magnus Damm6d9598e2010-11-17 10:59:31 +0000543 CLKDEV_DEV_ID("sh-sci.7", &mstp_clks[MSTP219]), /* SCIFA7 */
Kuninori Morimoto32103c72012-06-20 11:30:25 +0200544 CLKDEV_DEV_ID("sh-dma-engine.0", &mstp_clks[MSTP218]), /* SY-DMAC */
Kuninori Morimoto832290b2012-06-25 03:39:20 -0700545 CLKDEV_DEV_ID("sh-dma-engine.1", &mstp_clks[MSTP217]), /* MP-DMAC */
Magnus Damm6d9598e2010-11-17 10:59:31 +0000546 CLKDEV_DEV_ID("sh-sci.5", &mstp_clks[MSTP207]), /* SCIFA5 */
547 CLKDEV_DEV_ID("sh-sci.8", &mstp_clks[MSTP206]), /* SCIFB */
548 CLKDEV_DEV_ID("sh-sci.0", &mstp_clks[MSTP204]), /* SCIFA0 */
549 CLKDEV_DEV_ID("sh-sci.1", &mstp_clks[MSTP203]), /* SCIFA1 */
550 CLKDEV_DEV_ID("sh-sci.2", &mstp_clks[MSTP202]), /* SCIFA2 */
551 CLKDEV_DEV_ID("sh-sci.3", &mstp_clks[MSTP201]), /* SCIFA3 */
552 CLKDEV_DEV_ID("sh-sci.4", &mstp_clks[MSTP200]), /* SCIFA4 */
553 CLKDEV_DEV_ID("sh-sci.6", &mstp_clks[MSTP331]), /* SCIFA6 */
554 CLKDEV_DEV_ID("sh_cmt.10", &mstp_clks[MSTP329]), /* CMT10 */
Kuninori Morimotoea7e1a52012-06-12 02:43:40 -0700555 CLKDEV_DEV_ID("sh_fsi2", &mstp_clks[MSTP328]), /* FSI */
Kuninori Morimotoa33bb8a2011-01-14 11:00:41 +0000556 CLKDEV_DEV_ID("sh_irda.0", &mstp_clks[MSTP325]), /* IrDA */
Yoshii Takashib028f942010-11-19 13:20:45 +0000557 CLKDEV_DEV_ID("i2c-sh_mobile.1", &mstp_clks[MSTP323]), /* I2C1 */
Simon Horman48609532012-11-21 22:00:15 +0900558 CLKDEV_DEV_ID("e6822000.i2c", &mstp_clks[MSTP323]), /* I2C1 */
Kuninori Morimoto12a7cfe2012-06-25 03:34:49 -0700559 CLKDEV_DEV_ID("renesas_usbhs", &mstp_clks[MSTP322]), /* USB */
Magnus Dammfb66c522011-05-23 05:10:36 +0000560 CLKDEV_DEV_ID("sh_mobile_sdhi.0", &mstp_clks[MSTP314]), /* SDHI0 */
Guennadi Liakhovetskidf2ddd72013-02-08 19:38:25 +0100561 CLKDEV_DEV_ID("ee100000.sdhi", &mstp_clks[MSTP314]), /* SDHI0 */
Magnus Dammfb66c522011-05-23 05:10:36 +0000562 CLKDEV_DEV_ID("sh_mobile_sdhi.1", &mstp_clks[MSTP313]), /* SDHI1 */
Guennadi Liakhovetskidf2ddd72013-02-08 19:38:25 +0100563 CLKDEV_DEV_ID("ee120000.sdhi", &mstp_clks[MSTP313]), /* SDHI1 */
Takashi YOSHII6bf45a12010-12-22 06:35:30 +0000564 CLKDEV_DEV_ID("sh_mmcif.0", &mstp_clks[MSTP312]), /* MMCIF0 */
Simon Horman93301f52012-11-26 18:26:17 +0900565 CLKDEV_DEV_ID("e6bd0000.mmcif", &mstp_clks[MSTP312]), /* MMCIF0 */
Magnus Dammfb66c522011-05-23 05:10:36 +0000566 CLKDEV_DEV_ID("sh_mobile_sdhi.2", &mstp_clks[MSTP311]), /* SDHI2 */
Guennadi Liakhovetskidf2ddd72013-02-08 19:38:25 +0100567 CLKDEV_DEV_ID("ee140000.sdhi", &mstp_clks[MSTP311]), /* SDHI2 */
Magnus Damm33661c92011-11-22 15:44:58 +0900568 CLKDEV_DEV_ID("leds-renesas-tpu.12", &mstp_clks[MSTP303]), /* TPU1 */
569 CLKDEV_DEV_ID("leds-renesas-tpu.21", &mstp_clks[MSTP302]), /* TPU2 */
570 CLKDEV_DEV_ID("leds-renesas-tpu.30", &mstp_clks[MSTP301]), /* TPU3 */
571 CLKDEV_DEV_ID("leds-renesas-tpu.41", &mstp_clks[MSTP300]), /* TPU4 */
Yoshii Takashib028f942010-11-19 13:20:45 +0000572 CLKDEV_DEV_ID("i2c-sh_mobile.3", &mstp_clks[MSTP411]), /* I2C3 */
Simon Horman48609532012-11-21 22:00:15 +0900573 CLKDEV_DEV_ID("e6826000.i2c", &mstp_clks[MSTP411]), /* I2C3 */
Yoshii Takashib028f942010-11-19 13:20:45 +0000574 CLKDEV_DEV_ID("i2c-sh_mobile.4", &mstp_clks[MSTP410]), /* I2C4 */
Simon Horman48609532012-11-21 22:00:15 +0900575 CLKDEV_DEV_ID("e6828000.i2c", &mstp_clks[MSTP410]), /* I2C4 */
Magnus Damm019c4ae2010-12-22 06:14:05 +0000576 CLKDEV_DEV_ID("sh_keysc.0", &mstp_clks[MSTP403]), /* KEYSC */
Magnus Damm6d9598e2010-11-17 10:59:31 +0000577};
578
579void __init sh73a0_clock_init(void)
580{
581 int k, ret = 0;
582
Magnus Dammfb66c522011-05-23 05:10:36 +0000583 /* Set SDHI clocks to a known state */
584 __raw_writel(0x108, SD0CKCR);
585 __raw_writel(0x108, SD1CKCR);
586 __raw_writel(0x108, SD2CKCR);
587
Magnus Dammf6d84f42010-12-03 07:22:31 +0000588 /* detect main clock parent */
Kuninori Morimoto86d84082011-08-26 07:27:45 +0000589 switch ((__raw_readl(CKSCR) >> 28) & 0x03) {
Magnus Dammf6d84f42010-12-03 07:22:31 +0000590 case 0:
591 main_clk.parent = &sh73a0_extal1_clk;
592 break;
593 case 1:
594 main_clk.parent = &extal1_div2_clk;
595 break;
596 case 2:
597 main_clk.parent = &sh73a0_extal2_clk;
598 break;
599 case 3:
600 main_clk.parent = &extal2_div2_clk;
601 break;
602 }
603
Magnus Damm6d9598e2010-11-17 10:59:31 +0000604 for (k = 0; !ret && (k < ARRAY_SIZE(main_clks)); k++)
605 ret = clk_register(main_clks[k]);
606
607 if (!ret)
Magnus Dammf6d84f42010-12-03 07:22:31 +0000608 ret = sh_clk_div4_register(div4_clks, DIV4_NR, &div4_table);
609
610 if (!ret)
Kuninori Morimotod4775352011-12-05 22:29:15 -0800611 ret = sh_clk_div6_reparent_register(div6_clks, DIV6_NR);
Magnus Dammf6d84f42010-12-03 07:22:31 +0000612
613 if (!ret)
Nobuhiro Iwamatsu64e9de22012-06-27 09:59:00 +0900614 ret = sh_clk_mstp_register(mstp_clks, MSTP_NR);
Magnus Damm6d9598e2010-11-17 10:59:31 +0000615
Kuninori Morimotof5948ba2012-01-22 21:10:02 -0800616 for (k = 0; !ret && (k < ARRAY_SIZE(late_main_clks)); k++)
617 ret = clk_register(late_main_clks[k]);
618
Magnus Damm6d9598e2010-11-17 10:59:31 +0000619 clkdev_add_table(lookups, ARRAY_SIZE(lookups));
620
621 if (!ret)
Magnus Damm6b6a4c02012-02-29 21:41:30 +0900622 shmobile_clk_init();
Magnus Damm6d9598e2010-11-17 10:59:31 +0000623 else
624 panic("failed to setup sh73a0 clocks\n");
625}