1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * Driver for Silicon Labs Si570/Si571 Programmable XO/VCXO
5 * Copyright (C) 2010, 2011 Ericsson AB.
6 * Copyright (C) 2011 Guenter Roeck.
7 * Copyright (C) 2011 - 2021 Xilinx Inc.
9 * Author: Guenter Roeck <guenter.roeck@ericsson.com>
10 * Sören Brinkmann <soren.brinkmann@xilinx.com>
13 #include <linux/clk.h>
14 #include <linux/clk-provider.h>
15 #include <linux/delay.h>
16 #include <linux/module.h>
17 #include <linux/i2c.h>
18 #include <linux/regmap.h>
19 #include <linux/slab.h>
22 #define SI570_REG_HS_N1 7
23 #define SI570_REG_N1_RFREQ0 8
24 #define SI570_REG_RFREQ1 9
25 #define SI570_REG_RFREQ2 10
26 #define SI570_REG_RFREQ3 11
27 #define SI570_REG_RFREQ4 12
28 #define SI570_REG_CONTROL 135
29 #define SI570_REG_FREEZE_DCO 137
30 #define SI570_DIV_OFFSET_7PPM 6
32 #define HS_DIV_SHIFT 5
33 #define HS_DIV_MASK 0xe0
34 #define HS_DIV_OFFSET 4
35 #define N1_6_2_MASK 0x1f
36 #define N1_1_0_MASK 0xc0
37 #define RFREQ_37_32_MASK 0x3f
39 #define SI570_MIN_FREQ 10000000L
40 #define SI570_MAX_FREQ 1417500000L
41 #define SI598_MAX_FREQ 525000000L
43 #define FDCO_MIN 4850000000LL
44 #define FDCO_MAX 5670000000LL
46 #define SI570_CNTRL_RECALL (1 << 0)
47 #define SI570_CNTRL_FREEZE_M (1 << 5)
48 #define SI570_CNTRL_NEWFREQ (1 << 6)
50 #define SI570_FREEZE_DCO (1 << 4)
53 * struct clk_si570_info:
54 * @max_freq: Maximum frequency for this device
55 * @has_temperature_stability: Device support temperature stability
57 struct clk_si570_info
{
59 bool has_temperature_stability
;
64 * @hw: Clock hw struct
65 * @regmap: Device's regmap
66 * @div_offset: Rgister offset for dividers
68 * @fxtal: Factory xtal frequency
69 * @n1: Clock divider N1
70 * @hs_div: Clock divider HSDIV
71 * @rfreq: Clock multiplier RFREQ
72 * @frequency: Current output frequency
73 * @i2c_client: I2C client pointer
77 struct regmap
*regmap
;
78 unsigned int div_offset
;
79 const struct clk_si570_info
*info
;
85 struct i2c_client
*i2c_client
;
87 #define to_clk_si570(_hw) container_of(_hw, struct clk_si570, hw)
90 * si570_get_divs() - Read clock dividers from HW
91 * @data: Pointer to struct clk_si570
92 * @rfreq: Fractional multiplier (output)
93 * @n1: Divider N1 (output)
94 * @hs_div: Divider HSDIV (output)
95 * Returns 0 on success, negative errno otherwise.
97 * Retrieve clock dividers and multipliers from the HW.
99 static int si570_get_divs(struct clk_si570
*data
, u64
*rfreq
,
100 unsigned int *n1
, unsigned int *hs_div
)
106 err
= regmap_bulk_read(data
->regmap
, SI570_REG_HS_N1
+ data
->div_offset
,
107 reg
, ARRAY_SIZE(reg
));
111 *hs_div
= ((reg
[0] & HS_DIV_MASK
) >> HS_DIV_SHIFT
) + HS_DIV_OFFSET
;
112 *n1
= ((reg
[0] & N1_6_2_MASK
) << 2) + ((reg
[1] & N1_1_0_MASK
) >> 6) + 1;
113 /* Handle invalid cases */
117 tmp
= reg
[1] & RFREQ_37_32_MASK
;
118 tmp
= (tmp
<< 8) + reg
[2];
119 tmp
= (tmp
<< 8) + reg
[3];
120 tmp
= (tmp
<< 8) + reg
[4];
121 tmp
= (tmp
<< 8) + reg
[5];
128 * si570_get_defaults() - Get default values
129 * @data: Driver data structure
130 * @fout: Factory frequency output
131 * @skip_recall: If true, don't recall NVM into RAM
132 * Returns 0 on success, negative errno otherwise.
134 static int si570_get_defaults(struct clk_si570
*data
, u64 fout
,
141 regmap_write(data
->regmap
, SI570_REG_CONTROL
,
144 err
= si570_get_divs(data
, &data
->rfreq
, &data
->n1
, &data
->hs_div
);
149 * Accept optional precision loss to avoid arithmetic overflows.
150 * Acceptable per Silicon Labs Application Note AN334.
152 fdco
= fout
* data
->n1
* data
->hs_div
;
153 if (fdco
>= (1LL << 36))
154 data
->fxtal
= div64_u64(fdco
<< 24, data
->rfreq
>> 4);
156 data
->fxtal
= div64_u64(fdco
<< 28, data
->rfreq
);
158 data
->frequency
= fout
;
164 * si570_update_rfreq() - Update clock multiplier
165 * @data: Driver data structure
166 * Passes on regmap_bulk_write() return value.
168 static int si570_update_rfreq(struct clk_si570
*data
)
172 reg
[0] = ((data
->n1
- 1) << 6) |
173 ((data
->rfreq
>> 32) & RFREQ_37_32_MASK
);
174 reg
[1] = (data
->rfreq
>> 24) & 0xff;
175 reg
[2] = (data
->rfreq
>> 16) & 0xff;
176 reg
[3] = (data
->rfreq
>> 8) & 0xff;
177 reg
[4] = data
->rfreq
& 0xff;
179 return regmap_bulk_write(data
->regmap
, SI570_REG_N1_RFREQ0
+
180 data
->div_offset
, reg
, ARRAY_SIZE(reg
));
184 * si570_calc_divs() - Caluclate clock dividers
185 * @frequency: Target frequency
186 * @data: Driver data structure
187 * @out_rfreq: RFREG fractional multiplier (output)
188 * @out_n1: Clock divider N1 (output)
189 * @out_hs_div: Clock divider HSDIV (output)
190 * Returns 0 on success, negative errno otherwise.
192 * Calculate the clock dividers (@out_hs_div, @out_n1) and clock multiplier
193 * (@out_rfreq) for a given target @frequency.
195 static int si570_calc_divs(unsigned long frequency
, struct clk_si570
*data
,
196 u64
*out_rfreq
, unsigned int *out_n1
, unsigned int *out_hs_div
)
199 unsigned int n1
, hs_div
;
200 u64 fdco
, best_fdco
= ULLONG_MAX
;
201 static const uint8_t si570_hs_div_values
[] = { 11, 9, 7, 6, 5, 4 };
203 for (i
= 0; i
< ARRAY_SIZE(si570_hs_div_values
); i
++) {
204 hs_div
= si570_hs_div_values
[i
];
205 /* Calculate lowest possible value for n1 */
206 n1
= div_u64(div_u64(FDCO_MIN
, hs_div
), frequency
);
210 fdco
= (u64
)frequency
* (u64
)hs_div
* (u64
)n1
;
213 if (fdco
>= FDCO_MIN
&& fdco
< best_fdco
) {
215 *out_hs_div
= hs_div
;
216 *out_rfreq
= div64_u64(fdco
<< 28, data
->fxtal
);
219 n1
+= (n1
== 1 ? 1 : 2);
223 if (best_fdco
== ULLONG_MAX
)
229 static unsigned long si570_recalc_rate(struct clk_hw
*hw
,
230 unsigned long parent_rate
)
234 unsigned int n1
, hs_div
;
235 struct clk_si570
*data
= to_clk_si570(hw
);
237 err
= si570_get_divs(data
, &rfreq
, &n1
, &hs_div
);
239 dev_err(&data
->i2c_client
->dev
, "unable to recalc rate\n");
240 return data
->frequency
;
243 rfreq
= div_u64(rfreq
, hs_div
* n1
);
244 rate
= (data
->fxtal
* rfreq
) >> 28;
249 static long si570_round_rate(struct clk_hw
*hw
, unsigned long rate
,
250 unsigned long *parent_rate
)
254 unsigned int n1
, hs_div
;
255 struct clk_si570
*data
= to_clk_si570(hw
);
260 if (div64_u64(abs(rate
- data
->frequency
) * 10000LL,
261 data
->frequency
) < 35) {
262 rfreq
= div64_u64((data
->rfreq
* rate
) +
263 div64_u64(data
->frequency
, 2), data
->frequency
);
265 hs_div
= data
->hs_div
;
268 err
= si570_calc_divs(rate
, data
, &rfreq
, &n1
, &hs_div
);
270 dev_err(&data
->i2c_client
->dev
,
271 "unable to round rate\n");
280 * si570_set_frequency() - Adjust output frequency
281 * @data: Driver data structure
282 * @frequency: Target frequency
283 * Returns 0 on success.
285 * Update output frequency for big frequency changes (> 3,500 ppm).
287 static int si570_set_frequency(struct clk_si570
*data
, unsigned long frequency
)
291 err
= si570_calc_divs(frequency
, data
, &data
->rfreq
, &data
->n1
,
297 * The DCO reg should be accessed with a read-modify-write operation
300 regmap_write(data
->regmap
, SI570_REG_FREEZE_DCO
, SI570_FREEZE_DCO
);
301 regmap_write(data
->regmap
, SI570_REG_HS_N1
+ data
->div_offset
,
302 ((data
->hs_div
- HS_DIV_OFFSET
) << HS_DIV_SHIFT
) |
303 (((data
->n1
- 1) >> 2) & N1_6_2_MASK
));
304 si570_update_rfreq(data
);
305 regmap_write(data
->regmap
, SI570_REG_FREEZE_DCO
, 0);
306 regmap_write(data
->regmap
, SI570_REG_CONTROL
, SI570_CNTRL_NEWFREQ
);
308 /* Applying a new frequency can take up to 10ms */
309 usleep_range(10000, 12000);
315 * si570_set_frequency_small() - Adjust output frequency
316 * @data: Driver data structure
317 * @frequency: Target frequency
318 * Returns 0 on success.
320 * Update output frequency for small frequency changes (< 3,500 ppm).
322 static int si570_set_frequency_small(struct clk_si570
*data
,
323 unsigned long frequency
)
326 * This is a re-implementation of DIV_ROUND_CLOSEST
327 * using the div64_u64 function lieu of letting the compiler
330 data
->rfreq
= div64_u64((data
->rfreq
* frequency
) +
331 div_u64(data
->frequency
, 2), data
->frequency
);
332 regmap_write(data
->regmap
, SI570_REG_CONTROL
, SI570_CNTRL_FREEZE_M
);
333 si570_update_rfreq(data
);
334 regmap_write(data
->regmap
, SI570_REG_CONTROL
, 0);
336 /* Applying a new frequency (small change) can take up to 100us */
337 usleep_range(100, 200);
342 static int si570_set_rate(struct clk_hw
*hw
, unsigned long rate
,
343 unsigned long parent_rate
)
345 struct clk_si570
*data
= to_clk_si570(hw
);
346 struct i2c_client
*client
= data
->i2c_client
;
349 if (rate
< SI570_MIN_FREQ
|| rate
> data
->info
->max_freq
) {
350 dev_err(&client
->dev
,
351 "requested frequency %lu Hz is out of range\n", rate
);
355 if (div64_u64(abs(rate
- data
->frequency
) * 10000LL,
356 data
->frequency
) < 35)
357 err
= si570_set_frequency_small(data
, rate
);
359 err
= si570_set_frequency(data
, rate
);
364 data
->frequency
= rate
;
369 static const struct clk_ops si570_clk_ops
= {
370 .recalc_rate
= si570_recalc_rate
,
371 .round_rate
= si570_round_rate
,
372 .set_rate
= si570_set_rate
,
375 static bool si570_regmap_is_volatile(struct device
*dev
, unsigned int reg
)
378 case SI570_REG_CONTROL
:
385 static bool si570_regmap_is_writeable(struct device
*dev
, unsigned int reg
)
388 case SI570_REG_HS_N1
... (SI570_REG_RFREQ4
+ SI570_DIV_OFFSET_7PPM
):
389 case SI570_REG_CONTROL
:
390 case SI570_REG_FREEZE_DCO
:
397 static const struct regmap_config si570_regmap_config
= {
400 .cache_type
= REGCACHE_MAPLE
,
402 .writeable_reg
= si570_regmap_is_writeable
,
403 .volatile_reg
= si570_regmap_is_volatile
,
406 static int si570_probe(struct i2c_client
*client
)
408 struct clk_si570
*data
;
409 struct clk_init_data init
;
410 u32 initial_fout
, factory_fout
, stability
;
414 data
= devm_kzalloc(&client
->dev
, sizeof(*data
), GFP_KERNEL
);
418 init
.ops
= &si570_clk_ops
;
420 init
.num_parents
= 0;
421 data
->hw
.init
= &init
;
422 data
->i2c_client
= client
;
424 data
->info
= i2c_get_match_data(client
);
425 if (data
->info
->has_temperature_stability
) {
426 err
= of_property_read_u32(client
->dev
.of_node
,
427 "temperature-stability", &stability
);
429 dev_err(&client
->dev
,
430 "'temperature-stability' property missing\n");
433 /* adjust register offsets for 7ppm devices */
435 data
->div_offset
= SI570_DIV_OFFSET_7PPM
;
438 if (of_property_read_string(client
->dev
.of_node
, "clock-output-names",
440 init
.name
= client
->dev
.of_node
->name
;
442 err
= of_property_read_u32(client
->dev
.of_node
, "factory-fout",
445 dev_err(&client
->dev
, "'factory-fout' property missing\n");
449 skip_recall
= of_property_read_bool(client
->dev
.of_node
,
450 "silabs,skip-recall");
452 data
->regmap
= devm_regmap_init_i2c(client
, &si570_regmap_config
);
453 if (IS_ERR(data
->regmap
)) {
454 dev_err(&client
->dev
, "failed to allocate register map\n");
455 return PTR_ERR(data
->regmap
);
458 i2c_set_clientdata(client
, data
);
459 err
= si570_get_defaults(data
, factory_fout
, skip_recall
);
463 err
= devm_clk_hw_register(&client
->dev
, &data
->hw
);
465 dev_err(&client
->dev
, "clock registration failed\n");
468 err
= devm_of_clk_add_hw_provider(&client
->dev
, of_clk_hw_simple_get
,
471 dev_err(&client
->dev
, "unable to add clk provider\n");
475 /* Read the requested initial output frequency from device tree */
476 if (!of_property_read_u32(client
->dev
.of_node
, "clock-frequency",
478 err
= clk_set_rate(data
->hw
.clk
, initial_fout
);
483 /* Display a message indicating that we've successfully registered */
484 dev_info(&client
->dev
, "registered, current frequency %llu Hz\n",
490 static const struct clk_si570_info clk_si570_info
= {
491 .max_freq
= SI570_MAX_FREQ
,
492 .has_temperature_stability
= true,
495 static const struct clk_si570_info clk_si590_info
= {
496 .max_freq
= SI598_MAX_FREQ
,
499 static const struct i2c_device_id si570_id
[] = {
500 { "si570", (kernel_ulong_t
)&clk_si570_info
},
501 { "si571", (kernel_ulong_t
)&clk_si570_info
},
502 { "si598", (kernel_ulong_t
)&clk_si590_info
},
503 { "si599", (kernel_ulong_t
)&clk_si590_info
},
506 MODULE_DEVICE_TABLE(i2c
, si570_id
);
508 static const struct of_device_id clk_si570_of_match
[] = {
509 { .compatible
= "silabs,si570", .data
= &clk_si570_info
},
510 { .compatible
= "silabs,si571", .data
= &clk_si570_info
},
511 { .compatible
= "silabs,si598", .data
= &clk_si590_info
},
512 { .compatible
= "silabs,si599", .data
= &clk_si590_info
},
515 MODULE_DEVICE_TABLE(of
, clk_si570_of_match
);
517 static struct i2c_driver si570_driver
= {
520 .of_match_table
= clk_si570_of_match
,
522 .probe
= si570_probe
,
523 .id_table
= si570_id
,
525 module_i2c_driver(si570_driver
);
527 MODULE_AUTHOR("Guenter Roeck <guenter.roeck@ericsson.com>");
528 MODULE_AUTHOR("Soeren Brinkmann <soren.brinkmann@xilinx.com>");
529 MODULE_DESCRIPTION("Si570 driver");
530 MODULE_LICENSE("GPL");