1 // SPDX-License-Identifier: GPL-2.0
3 * CS2000 -- CIRRUS LOGIC Fractional-N Clock Synthesizer & Clock Multiplier
5 * Copyright (C) 2015 Renesas Electronics Corporation
6 * Kuninori Morimoto <kuninori.morimoto.gx@renesas.com>
8 #include <linux/clk-provider.h>
9 #include <linux/delay.h>
10 #include <linux/clk.h>
11 #include <linux/i2c.h>
12 #include <linux/of_device.h>
13 #include <linux/module.h>
16 #define RATIO_REG_SIZE 4
19 #define DEVICE_CTRL 0x2
20 #define DEVICE_CFG1 0x3
21 #define DEVICE_CFG2 0x4
22 #define GLOBAL_CFG 0x5
23 #define Ratio_Add(x, nth) (6 + (x * 4) + (nth))
24 #define Ratio_Val(x, nth) ((x >> (24 - (8 * nth))) & 0xFF)
25 #define Val_Ratio(x, nth) ((x & 0xFF) << (24 - (8 * nth)))
26 #define FUNC_CFG1 0x16
27 #define FUNC_CFG2 0x17
30 #define REVISION_MASK (0x7)
31 #define REVISION_B2_B3 (0x4)
32 #define REVISION_C1 (0x6)
35 #define PLL_UNLOCK (1 << 7)
36 #define AUXOUTDIS (1 << 1)
37 #define CLKOUTDIS (1 << 0)
40 #define RSEL(x) (((x) & 0x3) << 3)
41 #define RSEL_MASK RSEL(0x3)
45 #define AUTORMOD (1 << 3)
46 #define LOCKCLK(x) (((x) & 0x3) << 1)
47 #define LOCKCLK_MASK LOCKCLK(0x3)
48 #define FRACNSRC_MASK (1 << 0)
49 #define FRACNSRC_STATIC (0 << 0)
50 #define FRACNSRC_DYNAMIC (1 << 1)
56 #define CLKSKIPEN (1 << 7)
57 #define REFCLKDIV(x) (((x) & 0x3) << 3)
58 #define REFCLKDIV_MASK REFCLKDIV(0x3)
61 #define LFRATIO_MASK (1 << 3)
62 #define LFRATIO_20_12 (0 << 3)
63 #define LFRATIO_12_20 (1 << 3)
65 #define CH_SIZE_ERR(ch) ((ch < 0) || (ch >= CH_MAX))
66 #define hw_to_priv(_hw) container_of(_hw, struct cs2000_priv, hw)
67 #define priv_to_client(priv) (priv->client)
68 #define priv_to_dev(priv) (&(priv_to_client(priv)->dev))
76 struct i2c_client
*client
;
81 unsigned long saved_rate
;
82 unsigned long saved_parent_rate
;
85 static const struct of_device_id cs2000_of_match
[] = {
86 { .compatible
= "cirrus,cs2000-cp", },
89 MODULE_DEVICE_TABLE(of
, cs2000_of_match
);
91 static const struct i2c_device_id cs2000_id
[] = {
95 MODULE_DEVICE_TABLE(i2c
, cs2000_id
);
97 #define cs2000_read(priv, addr) \
98 i2c_smbus_read_byte_data(priv_to_client(priv), addr)
99 #define cs2000_write(priv, addr, val) \
100 i2c_smbus_write_byte_data(priv_to_client(priv), addr, val)
102 static int cs2000_bset(struct cs2000_priv
*priv
, u8 addr
, u8 mask
, u8 val
)
106 data
= cs2000_read(priv
, addr
);
111 data
|= (val
& mask
);
113 return cs2000_write(priv
, addr
, data
);
116 static int cs2000_enable_dev_config(struct cs2000_priv
*priv
, bool enable
)
120 ret
= cs2000_bset(priv
, DEVICE_CFG1
, ENDEV1
,
121 enable
? ENDEV1
: 0);
125 ret
= cs2000_bset(priv
, GLOBAL_CFG
, ENDEV2
,
126 enable
? ENDEV2
: 0);
130 ret
= cs2000_bset(priv
, FUNC_CFG1
, CLKSKIPEN
,
131 enable
? CLKSKIPEN
: 0);
135 /* FIXME: for Static ratio mode */
136 ret
= cs2000_bset(priv
, FUNC_CFG2
, LFRATIO_MASK
,
144 static int cs2000_clk_in_bound_rate(struct cs2000_priv
*priv
,
149 if (rate_in
>= 32000000 && rate_in
< 56000000)
151 else if (rate_in
>= 16000000 && rate_in
< 28000000)
153 else if (rate_in
>= 8000000 && rate_in
< 14000000)
158 return cs2000_bset(priv
, FUNC_CFG1
,
163 static int cs2000_wait_pll_lock(struct cs2000_priv
*priv
)
165 struct device
*dev
= priv_to_dev(priv
);
169 for (i
= 0; i
< 256; i
++) {
170 val
= cs2000_read(priv
, DEVICE_CTRL
);
173 if (!(val
& PLL_UNLOCK
))
178 dev_err(dev
, "pll lock failed\n");
183 static int cs2000_clk_out_enable(struct cs2000_priv
*priv
, bool enable
)
185 /* enable both AUX_OUT, CLK_OUT */
186 return cs2000_bset(priv
, DEVICE_CTRL
,
187 (AUXOUTDIS
| CLKOUTDIS
),
189 (AUXOUTDIS
| CLKOUTDIS
));
192 static u32
cs2000_rate_to_ratio(u32 rate_in
, u32 rate_out
)
197 * ratio = rate_out / rate_in * 2^20
199 * To avoid over flow, rate_out is u64.
200 * The result should be u32.
202 ratio
= (u64
)rate_out
<< 20;
203 do_div(ratio
, rate_in
);
208 static unsigned long cs2000_ratio_to_rate(u32 ratio
, u32 rate_in
)
213 * ratio = rate_out / rate_in * 2^20
215 * To avoid over flow, rate_out is u64.
216 * The result should be u32 or unsigned long.
219 rate_out
= (u64
)ratio
* rate_in
;
220 return rate_out
>> 20;
223 static int cs2000_ratio_set(struct cs2000_priv
*priv
,
224 int ch
, u32 rate_in
, u32 rate_out
)
233 val
= cs2000_rate_to_ratio(rate_in
, rate_out
);
234 for (i
= 0; i
< RATIO_REG_SIZE
; i
++) {
235 ret
= cs2000_write(priv
,
245 static u32
cs2000_ratio_get(struct cs2000_priv
*priv
, int ch
)
252 for (i
= 0; i
< RATIO_REG_SIZE
; i
++) {
253 tmp
= cs2000_read(priv
, Ratio_Add(ch
, i
));
257 val
|= Val_Ratio(tmp
, i
);
263 static int cs2000_ratio_select(struct cs2000_priv
*priv
, int ch
)
273 * this driver supports static ratio mode only at this point.
275 ret
= cs2000_bset(priv
, DEVICE_CFG1
, RSEL_MASK
, RSEL(ch
));
279 ret
= cs2000_bset(priv
, DEVICE_CFG2
,
280 (AUTORMOD
| LOCKCLK_MASK
| FRACNSRC_MASK
),
281 (LOCKCLK(ch
) | FRACNSRC_STATIC
));
288 static unsigned long cs2000_recalc_rate(struct clk_hw
*hw
,
289 unsigned long parent_rate
)
291 struct cs2000_priv
*priv
= hw_to_priv(hw
);
292 int ch
= 0; /* it uses ch0 only at this point */
295 ratio
= cs2000_ratio_get(priv
, ch
);
297 return cs2000_ratio_to_rate(ratio
, parent_rate
);
300 static long cs2000_round_rate(struct clk_hw
*hw
, unsigned long rate
,
301 unsigned long *parent_rate
)
305 ratio
= cs2000_rate_to_ratio(*parent_rate
, rate
);
307 return cs2000_ratio_to_rate(ratio
, *parent_rate
);
310 static int __cs2000_set_rate(struct cs2000_priv
*priv
, int ch
,
311 unsigned long rate
, unsigned long parent_rate
)
316 ret
= cs2000_clk_in_bound_rate(priv
, parent_rate
);
320 ret
= cs2000_ratio_set(priv
, ch
, parent_rate
, rate
);
324 ret
= cs2000_ratio_select(priv
, ch
);
328 priv
->saved_rate
= rate
;
329 priv
->saved_parent_rate
= parent_rate
;
334 static int cs2000_set_rate(struct clk_hw
*hw
,
335 unsigned long rate
, unsigned long parent_rate
)
337 struct cs2000_priv
*priv
= hw_to_priv(hw
);
338 int ch
= 0; /* it uses ch0 only at this point */
340 return __cs2000_set_rate(priv
, ch
, rate
, parent_rate
);
343 static int cs2000_set_saved_rate(struct cs2000_priv
*priv
)
345 int ch
= 0; /* it uses ch0 only at this point */
347 return __cs2000_set_rate(priv
, ch
,
349 priv
->saved_parent_rate
);
352 static int cs2000_enable(struct clk_hw
*hw
)
354 struct cs2000_priv
*priv
= hw_to_priv(hw
);
357 ret
= cs2000_enable_dev_config(priv
, true);
361 ret
= cs2000_clk_out_enable(priv
, true);
365 ret
= cs2000_wait_pll_lock(priv
);
372 static void cs2000_disable(struct clk_hw
*hw
)
374 struct cs2000_priv
*priv
= hw_to_priv(hw
);
376 cs2000_enable_dev_config(priv
, false);
378 cs2000_clk_out_enable(priv
, false);
381 static u8
cs2000_get_parent(struct clk_hw
*hw
)
383 /* always return REF_CLK */
387 static const struct clk_ops cs2000_ops
= {
388 .get_parent
= cs2000_get_parent
,
389 .recalc_rate
= cs2000_recalc_rate
,
390 .round_rate
= cs2000_round_rate
,
391 .set_rate
= cs2000_set_rate
,
392 .prepare
= cs2000_enable
,
393 .unprepare
= cs2000_disable
,
396 static int cs2000_clk_get(struct cs2000_priv
*priv
)
398 struct device
*dev
= priv_to_dev(priv
);
399 struct clk
*clk_in
, *ref_clk
;
401 clk_in
= devm_clk_get(dev
, "clk_in");
402 /* not yet provided */
404 return -EPROBE_DEFER
;
406 ref_clk
= devm_clk_get(dev
, "ref_clk");
407 /* not yet provided */
409 return -EPROBE_DEFER
;
411 priv
->clk_in
= clk_in
;
412 priv
->ref_clk
= ref_clk
;
417 static int cs2000_clk_register(struct cs2000_priv
*priv
)
419 struct device
*dev
= priv_to_dev(priv
);
420 struct device_node
*np
= dev
->of_node
;
421 struct clk_init_data init
;
422 const char *name
= np
->name
;
423 static const char *parent_names
[CLK_MAX
];
424 int ch
= 0; /* it uses ch0 only at this point */
428 of_property_read_string(np
, "clock-output-names", &name
);
431 * set default rate as 1/1.
432 * otherwise .set_rate which setup ratio
433 * is never called if user requests 1/1 rate
435 rate
= clk_get_rate(priv
->ref_clk
);
436 ret
= __cs2000_set_rate(priv
, ch
, rate
, rate
);
440 parent_names
[CLK_IN
] = __clk_get_name(priv
->clk_in
);
441 parent_names
[REF_CLK
] = __clk_get_name(priv
->ref_clk
);
444 init
.ops
= &cs2000_ops
;
445 init
.flags
= CLK_SET_RATE_GATE
;
446 init
.parent_names
= parent_names
;
447 init
.num_parents
= ARRAY_SIZE(parent_names
);
449 priv
->hw
.init
= &init
;
451 ret
= clk_hw_register(dev
, &priv
->hw
);
455 ret
= of_clk_add_hw_provider(np
, of_clk_hw_simple_get
, &priv
->hw
);
457 clk_hw_unregister(&priv
->hw
);
464 static int cs2000_version_print(struct cs2000_priv
*priv
)
466 struct device
*dev
= priv_to_dev(priv
);
468 const char *revision
;
470 val
= cs2000_read(priv
, DEVICE_ID
);
474 /* CS2000 should be 0x0 */
478 switch (val
& REVISION_MASK
) {
480 revision
= "B2 / B3";
489 dev_info(dev
, "revision - %s\n", revision
);
494 static int cs2000_remove(struct i2c_client
*client
)
496 struct cs2000_priv
*priv
= i2c_get_clientdata(client
);
497 struct device
*dev
= priv_to_dev(priv
);
498 struct device_node
*np
= dev
->of_node
;
500 of_clk_del_provider(np
);
502 clk_hw_unregister(&priv
->hw
);
507 static int cs2000_probe(struct i2c_client
*client
,
508 const struct i2c_device_id
*id
)
510 struct cs2000_priv
*priv
;
511 struct device
*dev
= &client
->dev
;
514 priv
= devm_kzalloc(dev
, sizeof(*priv
), GFP_KERNEL
);
518 priv
->client
= client
;
519 i2c_set_clientdata(client
, priv
);
521 ret
= cs2000_clk_get(priv
);
525 ret
= cs2000_clk_register(priv
);
529 ret
= cs2000_version_print(priv
);
536 cs2000_remove(client
);
541 static int __maybe_unused
cs2000_resume(struct device
*dev
)
543 struct cs2000_priv
*priv
= dev_get_drvdata(dev
);
545 return cs2000_set_saved_rate(priv
);
548 static const struct dev_pm_ops cs2000_pm_ops
= {
549 SET_LATE_SYSTEM_SLEEP_PM_OPS(NULL
, cs2000_resume
)
552 static struct i2c_driver cs2000_driver
= {
555 .pm
= &cs2000_pm_ops
,
556 .of_match_table
= cs2000_of_match
,
558 .probe
= cs2000_probe
,
559 .remove
= cs2000_remove
,
560 .id_table
= cs2000_id
,
563 module_i2c_driver(cs2000_driver
);
565 MODULE_DESCRIPTION("CS2000-CP driver");
566 MODULE_AUTHOR("Kuninori Morimoto <kuninori.morimoto.gx@renesas.com>");
567 MODULE_LICENSE("GPL v2");