2 * Copyright (C) 2013 Boris BREZILLON <b.brezillon@overkiz.com>
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.
11 #include <linux/clk-provider.h>
12 #include <linux/clkdev.h>
13 #include <linux/clk/at91_pmc.h>
15 #include <linux/mfd/syscon.h>
16 #include <linux/regmap.h>
20 #define PLL_STATUS_MASK(id) (1 << (1 + (id)))
21 #define PLL_REG(id) (AT91_CKGR_PLLAR + ((id) * 4))
22 #define PLL_DIV_MASK 0xff
23 #define PLL_DIV_MAX PLL_DIV_MASK
24 #define PLL_DIV(reg) ((reg) & PLL_DIV_MASK)
25 #define PLL_MUL(reg, layout) (((reg) >> (layout)->mul_shift) & \
28 #define PLL_MUL_MASK(layout) ((layout)->mul_mask)
29 #define PLL_MUL_MAX(layout) (PLL_MUL_MASK(layout) + 1)
30 #define PLL_ICPR_SHIFT(id) ((id) * 16)
31 #define PLL_ICPR_MASK(id) (0xffff << PLL_ICPR_SHIFT(id))
32 #define PLL_MAX_COUNT 0x3f
33 #define PLL_COUNT_SHIFT 8
34 #define PLL_OUT_SHIFT 14
37 struct clk_pll_characteristics
{
38 struct clk_range input
;
40 struct clk_range
*output
;
45 struct clk_pll_layout
{
51 #define to_clk_pll(hw) container_of(hw, struct clk_pll, hw)
55 struct regmap
*regmap
;
60 const struct clk_pll_layout
*layout
;
61 const struct clk_pll_characteristics
*characteristics
;
64 static inline bool clk_pll_ready(struct regmap
*regmap
, int id
)
68 regmap_read(regmap
, AT91_PMC_SR
, &status
);
70 return status
& PLL_STATUS_MASK(id
) ? 1 : 0;
73 static int clk_pll_prepare(struct clk_hw
*hw
)
75 struct clk_pll
*pll
= to_clk_pll(hw
);
76 struct regmap
*regmap
= pll
->regmap
;
77 const struct clk_pll_layout
*layout
= pll
->layout
;
78 const struct clk_pll_characteristics
*characteristics
=
81 u32 mask
= PLL_STATUS_MASK(id
);
82 int offset
= PLL_REG(id
);
89 regmap_read(regmap
, offset
, &pllr
);
91 mul
= PLL_MUL(pllr
, layout
);
93 regmap_read(regmap
, AT91_PMC_SR
, &status
);
94 if ((status
& mask
) &&
95 (div
== pll
->div
&& mul
== pll
->mul
))
98 if (characteristics
->out
)
99 out
= characteristics
->out
[pll
->range
];
101 if (characteristics
->icpll
)
102 regmap_update_bits(regmap
, AT91_PMC_PLLICPR
, PLL_ICPR_MASK(id
),
103 characteristics
->icpll
[pll
->range
] << PLL_ICPR_SHIFT(id
));
105 regmap_update_bits(regmap
, offset
, layout
->pllr_mask
,
106 pll
->div
| (PLL_MAX_COUNT
<< PLL_COUNT_SHIFT
) |
107 (out
<< PLL_OUT_SHIFT
) |
108 ((pll
->mul
& layout
->mul_mask
) << layout
->mul_shift
));
110 while (!clk_pll_ready(regmap
, pll
->id
))
116 static int clk_pll_is_prepared(struct clk_hw
*hw
)
118 struct clk_pll
*pll
= to_clk_pll(hw
);
120 return clk_pll_ready(pll
->regmap
, pll
->id
);
123 static void clk_pll_unprepare(struct clk_hw
*hw
)
125 struct clk_pll
*pll
= to_clk_pll(hw
);
126 unsigned int mask
= pll
->layout
->pllr_mask
;
128 regmap_update_bits(pll
->regmap
, PLL_REG(pll
->id
), mask
, ~mask
);
131 static unsigned long clk_pll_recalc_rate(struct clk_hw
*hw
,
132 unsigned long parent_rate
)
134 struct clk_pll
*pll
= to_clk_pll(hw
);
136 if (!pll
->div
|| !pll
->mul
)
139 return (parent_rate
/ pll
->div
) * (pll
->mul
+ 1);
142 static long clk_pll_get_best_div_mul(struct clk_pll
*pll
, unsigned long rate
,
143 unsigned long parent_rate
,
146 const struct clk_pll_layout
*layout
= pll
->layout
;
147 const struct clk_pll_characteristics
*characteristics
=
148 pll
->characteristics
;
149 unsigned long bestremainder
= ULONG_MAX
;
150 unsigned long maxdiv
, mindiv
, tmpdiv
;
151 long bestrate
= -ERANGE
;
152 unsigned long bestdiv
;
153 unsigned long bestmul
;
156 /* Check if parent_rate is a valid input rate */
157 if (parent_rate
< characteristics
->input
.min
)
161 * Calculate minimum divider based on the minimum multiplier, the
162 * parent_rate and the requested rate.
163 * Should always be 2 according to the input and output characteristics
166 mindiv
= (parent_rate
* PLL_MUL_MIN
) / rate
;
170 if (parent_rate
> characteristics
->input
.max
) {
171 tmpdiv
= DIV_ROUND_UP(parent_rate
, characteristics
->input
.max
);
172 if (tmpdiv
> PLL_DIV_MAX
)
180 * Calculate the maximum divider which is limited by PLL register
181 * layout (limited by the MUL or DIV field size).
183 maxdiv
= DIV_ROUND_UP(parent_rate
* PLL_MUL_MAX(layout
), rate
);
184 if (maxdiv
> PLL_DIV_MAX
)
185 maxdiv
= PLL_DIV_MAX
;
188 * Iterate over the acceptable divider values to find the best
189 * divider/multiplier pair (the one that generates the closest
190 * rate to the requested one).
192 for (tmpdiv
= mindiv
; tmpdiv
<= maxdiv
; tmpdiv
++) {
193 unsigned long remainder
;
194 unsigned long tmprate
;
195 unsigned long tmpmul
;
198 * Calculate the multiplier associated with the current
199 * divider that provide the closest rate to the requested one.
201 tmpmul
= DIV_ROUND_CLOSEST(rate
, parent_rate
/ tmpdiv
);
202 tmprate
= (parent_rate
/ tmpdiv
) * tmpmul
;
204 remainder
= tmprate
- rate
;
206 remainder
= rate
- tmprate
;
209 * Compare the remainder with the best remainder found until
210 * now and elect a new best multiplier/divider pair if the
211 * current remainder is smaller than the best one.
213 if (remainder
< bestremainder
) {
214 bestremainder
= remainder
;
221 * We've found a perfect match!
222 * Stop searching now and use this multiplier/divider pair.
228 /* We haven't found any multiplier/divider pair => return -ERANGE */
232 /* Check if bestrate is a valid output rate */
233 for (i
= 0; i
< characteristics
->num_output
; i
++) {
234 if (bestrate
>= characteristics
->output
[i
].min
&&
235 bestrate
<= characteristics
->output
[i
].max
)
239 if (i
>= characteristics
->num_output
)
252 static long clk_pll_round_rate(struct clk_hw
*hw
, unsigned long rate
,
253 unsigned long *parent_rate
)
255 struct clk_pll
*pll
= to_clk_pll(hw
);
257 return clk_pll_get_best_div_mul(pll
, rate
, *parent_rate
,
261 static int clk_pll_set_rate(struct clk_hw
*hw
, unsigned long rate
,
262 unsigned long parent_rate
)
264 struct clk_pll
*pll
= to_clk_pll(hw
);
270 ret
= clk_pll_get_best_div_mul(pll
, rate
, parent_rate
,
282 static const struct clk_ops pll_ops
= {
283 .prepare
= clk_pll_prepare
,
284 .unprepare
= clk_pll_unprepare
,
285 .is_prepared
= clk_pll_is_prepared
,
286 .recalc_rate
= clk_pll_recalc_rate
,
287 .round_rate
= clk_pll_round_rate
,
288 .set_rate
= clk_pll_set_rate
,
291 static struct clk_hw
* __init
292 at91_clk_register_pll(struct regmap
*regmap
, const char *name
,
293 const char *parent_name
, u8 id
,
294 const struct clk_pll_layout
*layout
,
295 const struct clk_pll_characteristics
*characteristics
)
299 struct clk_init_data init
;
300 int offset
= PLL_REG(id
);
305 return ERR_PTR(-EINVAL
);
307 pll
= kzalloc(sizeof(*pll
), GFP_KERNEL
);
309 return ERR_PTR(-ENOMEM
);
313 init
.parent_names
= &parent_name
;
314 init
.num_parents
= 1;
315 init
.flags
= CLK_SET_RATE_GATE
;
318 pll
->hw
.init
= &init
;
319 pll
->layout
= layout
;
320 pll
->characteristics
= characteristics
;
321 pll
->regmap
= regmap
;
322 regmap_read(regmap
, offset
, &pllr
);
323 pll
->div
= PLL_DIV(pllr
);
324 pll
->mul
= PLL_MUL(pllr
, layout
);
327 ret
= clk_hw_register(NULL
, &pll
->hw
);
337 static const struct clk_pll_layout at91rm9200_pll_layout
= {
338 .pllr_mask
= 0x7FFFFFF,
343 static const struct clk_pll_layout at91sam9g45_pll_layout
= {
344 .pllr_mask
= 0xFFFFFF,
349 static const struct clk_pll_layout at91sam9g20_pllb_layout
= {
350 .pllr_mask
= 0x3FFFFF,
355 static const struct clk_pll_layout sama5d3_pll_layout
= {
356 .pllr_mask
= 0x1FFFFFF,
362 static struct clk_pll_characteristics
* __init
363 of_at91_clk_pll_get_characteristics(struct device_node
*np
)
370 struct clk_range input
;
371 struct clk_range
*output
;
374 struct clk_pll_characteristics
*characteristics
;
376 if (of_at91_get_clk_range(np
, "atmel,clk-input-range", &input
))
379 if (of_property_read_u32(np
, "#atmel,pll-clk-output-range-cells",
383 if (num_cells
< 2 || num_cells
> 4)
386 if (!of_get_property(np
, "atmel,pll-clk-output-ranges", &tmp
))
388 num_output
= tmp
/ (sizeof(u32
) * num_cells
);
390 characteristics
= kzalloc(sizeof(*characteristics
), GFP_KERNEL
);
391 if (!characteristics
)
394 output
= kcalloc(num_output
, sizeof(*output
), GFP_KERNEL
);
396 goto out_free_characteristics
;
399 out
= kcalloc(num_output
, sizeof(*out
), GFP_KERNEL
);
401 goto out_free_output
;
405 icpll
= kcalloc(num_output
, sizeof(*icpll
), GFP_KERNEL
);
407 goto out_free_output
;
410 for (i
= 0; i
< num_output
; i
++) {
411 offset
= i
* num_cells
;
412 if (of_property_read_u32_index(np
,
413 "atmel,pll-clk-output-ranges",
415 goto out_free_output
;
417 if (of_property_read_u32_index(np
,
418 "atmel,pll-clk-output-ranges",
420 goto out_free_output
;
426 if (of_property_read_u32_index(np
,
427 "atmel,pll-clk-output-ranges",
429 goto out_free_output
;
435 if (of_property_read_u32_index(np
,
436 "atmel,pll-clk-output-ranges",
438 goto out_free_output
;
442 characteristics
->input
= input
;
443 characteristics
->num_output
= num_output
;
444 characteristics
->output
= output
;
445 characteristics
->out
= out
;
446 characteristics
->icpll
= icpll
;
447 return characteristics
;
453 out_free_characteristics
:
454 kfree(characteristics
);
459 of_at91_clk_pll_setup(struct device_node
*np
,
460 const struct clk_pll_layout
*layout
)
464 struct regmap
*regmap
;
465 const char *parent_name
;
466 const char *name
= np
->name
;
467 struct clk_pll_characteristics
*characteristics
;
469 if (of_property_read_u32(np
, "reg", &id
))
472 parent_name
= of_clk_get_parent_name(np
, 0);
474 of_property_read_string(np
, "clock-output-names", &name
);
476 regmap
= syscon_node_to_regmap(of_get_parent(np
));
480 characteristics
= of_at91_clk_pll_get_characteristics(np
);
481 if (!characteristics
)
484 hw
= at91_clk_register_pll(regmap
, name
, parent_name
, id
, layout
,
487 goto out_free_characteristics
;
489 of_clk_add_hw_provider(np
, of_clk_hw_simple_get
, hw
);
492 out_free_characteristics
:
493 kfree(characteristics
);
496 static void __init
of_at91rm9200_clk_pll_setup(struct device_node
*np
)
498 of_at91_clk_pll_setup(np
, &at91rm9200_pll_layout
);
500 CLK_OF_DECLARE(at91rm9200_clk_pll
, "atmel,at91rm9200-clk-pll",
501 of_at91rm9200_clk_pll_setup
);
503 static void __init
of_at91sam9g45_clk_pll_setup(struct device_node
*np
)
505 of_at91_clk_pll_setup(np
, &at91sam9g45_pll_layout
);
507 CLK_OF_DECLARE(at91sam9g45_clk_pll
, "atmel,at91sam9g45-clk-pll",
508 of_at91sam9g45_clk_pll_setup
);
510 static void __init
of_at91sam9g20_clk_pllb_setup(struct device_node
*np
)
512 of_at91_clk_pll_setup(np
, &at91sam9g20_pllb_layout
);
514 CLK_OF_DECLARE(at91sam9g20_clk_pllb
, "atmel,at91sam9g20-clk-pllb",
515 of_at91sam9g20_clk_pllb_setup
);
517 static void __init
of_sama5d3_clk_pll_setup(struct device_node
*np
)
519 of_at91_clk_pll_setup(np
, &sama5d3_pll_layout
);
521 CLK_OF_DECLARE(sama5d3_clk_pll
, "atmel,sama5d3-clk-pll",
522 of_sama5d3_clk_pll_setup
);