xref: /linux/drivers/clk/qcom/clk-rpmh.c (revision 502d45774af09f1c681c754c4b7cdfb5d7f72fd9)
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * Copyright (c) 2018-2021, The Linux Foundation. All rights reserved.
4  */
5 
6 #include <linux/clk-provider.h>
7 #include <linux/err.h>
8 #include <linux/kernel.h>
9 #include <linux/module.h>
10 #include <linux/of.h>
11 #include <linux/platform_device.h>
12 #include <linux/string_choices.h>
13 #include <soc/qcom/cmd-db.h>
14 #include <soc/qcom/rpmh.h>
15 #include <soc/qcom/tcs.h>
16 
17 #include <dt-bindings/clock/qcom,rpmh.h>
18 
19 #define CLK_RPMH_ARC_EN_OFFSET		0
20 #define CLK_RPMH_VRM_EN_OFFSET		4
21 
22 /**
23  * struct bcm_db - Auxiliary data pertaining to each Bus Clock Manager(BCM)
24  * @unit: divisor used to convert Hz value to an RPMh msg
25  * @width: multiplier used to convert Hz value to an RPMh msg
26  * @vcd: virtual clock domain that this bcm belongs to
27  * @reserved: reserved to pad the struct
28  */
29 struct bcm_db {
30 	__le32 unit;
31 	__le16 width;
32 	u8 vcd;
33 	u8 reserved;
34 };
35 
36 /**
37  * struct clk_rpmh - individual rpmh clock data structure
38  * @hw:			handle between common and hardware-specific interfaces
39  * @res_name:		resource name for the rpmh clock
40  * @div:		clock divider to compute the clock rate
41  * @res_addr:		base address of the rpmh resource within the RPMh
42  * @res_on_val:		rpmh clock enable value
43  * @state:		rpmh clock requested state
44  * @aggr_state:		rpmh clock aggregated state
45  * @last_sent_aggr_state: rpmh clock last aggr state sent to RPMh
46  * @valid_state_mask:	mask to determine the state of the rpmh clock
47  * @unit:		divisor to convert rate to rpmh msg in magnitudes of Khz
48  * @dev:		device to which it is attached
49  * @peer:		pointer to the clock rpmh sibling
50  */
51 struct clk_rpmh {
52 	struct clk_hw hw;
53 	const char *res_name;
54 	u8 div;
55 	u32 res_addr;
56 	u32 res_on_val;
57 	u32 state;
58 	u32 aggr_state;
59 	u32 last_sent_aggr_state;
60 	u32 valid_state_mask;
61 	u32 unit;
62 	struct device *dev;
63 	struct clk_rpmh *peer;
64 };
65 
66 struct clk_rpmh_desc {
67 	struct clk_hw **clks;
68 	size_t num_clks;
69 };
70 
71 static DEFINE_MUTEX(rpmh_clk_lock);
72 
73 #define __DEFINE_CLK_RPMH(_name, _clk_name, _res_name,			\
74 			  _res_en_offset, _res_on, _div)		\
75 	static struct clk_rpmh clk_rpmh_##_clk_name##_ao;		\
76 	static struct clk_rpmh clk_rpmh_##_clk_name = {			\
77 		.res_name = _res_name,					\
78 		.res_addr = _res_en_offset,				\
79 		.res_on_val = _res_on,					\
80 		.div = _div,						\
81 		.peer = &clk_rpmh_##_clk_name##_ao,			\
82 		.valid_state_mask = (BIT(RPMH_WAKE_ONLY_STATE) |	\
83 				      BIT(RPMH_ACTIVE_ONLY_STATE) |	\
84 				      BIT(RPMH_SLEEP_STATE)),		\
85 		.hw.init = &(struct clk_init_data){			\
86 			.ops = &clk_rpmh_ops,				\
87 			.name = #_name,					\
88 			.parent_data = &(const struct clk_parent_data){ \
89 					.fw_name = "xo",		\
90 					.name = "xo_board",		\
91 			},						\
92 			.num_parents = 1,				\
93 		},							\
94 	};								\
95 	static struct clk_rpmh clk_rpmh_##_clk_name##_ao= {		\
96 		.res_name = _res_name,					\
97 		.res_addr = _res_en_offset,				\
98 		.res_on_val = _res_on,					\
99 		.div = _div,						\
100 		.peer = &clk_rpmh_##_clk_name,				\
101 		.valid_state_mask = (BIT(RPMH_WAKE_ONLY_STATE) |	\
102 					BIT(RPMH_ACTIVE_ONLY_STATE)),	\
103 		.hw.init = &(struct clk_init_data){			\
104 			.ops = &clk_rpmh_ops,				\
105 			.name = #_name "_ao",				\
106 			.parent_data = &(const struct clk_parent_data){ \
107 					.fw_name = "xo",		\
108 					.name = "xo_board",		\
109 			},						\
110 			.num_parents = 1,				\
111 		},							\
112 	}
113 
114 #define DEFINE_CLK_RPMH_ARC(_name, _res_name, _res_on, _div)		\
115 	__DEFINE_CLK_RPMH(_name, _name##_##div##_div, _res_name,	\
116 			  CLK_RPMH_ARC_EN_OFFSET, _res_on, _div)
117 
118 #define DEFINE_CLK_RPMH_VRM(_name, _suffix, _res_name, _div)		\
119 	__DEFINE_CLK_RPMH(_name, _name##_suffix, _res_name,		\
120 			  CLK_RPMH_VRM_EN_OFFSET, 1, _div)
121 
122 #define DEFINE_CLK_RPMH_BCM(_name, _res_name)				\
123 	static struct clk_rpmh clk_rpmh_##_name = {			\
124 		.res_name = _res_name,					\
125 		.valid_state_mask = BIT(RPMH_ACTIVE_ONLY_STATE),	\
126 		.div = 1,						\
127 		.hw.init = &(struct clk_init_data){			\
128 			.ops = &clk_rpmh_bcm_ops,			\
129 			.name = #_name,					\
130 		},							\
131 	}
132 
to_clk_rpmh(struct clk_hw * _hw)133 static inline struct clk_rpmh *to_clk_rpmh(struct clk_hw *_hw)
134 {
135 	return container_of(_hw, struct clk_rpmh, hw);
136 }
137 
has_state_changed(struct clk_rpmh * c,u32 state)138 static inline bool has_state_changed(struct clk_rpmh *c, u32 state)
139 {
140 	return (c->last_sent_aggr_state & BIT(state))
141 		!= (c->aggr_state & BIT(state));
142 }
143 
clk_rpmh_send(struct clk_rpmh * c,enum rpmh_state state,struct tcs_cmd * cmd,bool wait)144 static int clk_rpmh_send(struct clk_rpmh *c, enum rpmh_state state,
145 			 struct tcs_cmd *cmd, bool wait)
146 {
147 	if (wait)
148 		return rpmh_write(c->dev, state, cmd, 1);
149 
150 	return rpmh_write_async(c->dev, state, cmd, 1);
151 }
152 
clk_rpmh_send_aggregate_command(struct clk_rpmh * c)153 static int clk_rpmh_send_aggregate_command(struct clk_rpmh *c)
154 {
155 	struct tcs_cmd cmd = { 0 };
156 	u32 cmd_state, on_val;
157 	enum rpmh_state state = RPMH_SLEEP_STATE;
158 	int ret;
159 	bool wait;
160 
161 	cmd.addr = c->res_addr;
162 	cmd_state = c->aggr_state;
163 	on_val = c->res_on_val;
164 
165 	for (; state <= RPMH_ACTIVE_ONLY_STATE; state++) {
166 		if (has_state_changed(c, state)) {
167 			if (cmd_state & BIT(state))
168 				cmd.data = on_val;
169 
170 			wait = cmd_state && state == RPMH_ACTIVE_ONLY_STATE;
171 			ret = clk_rpmh_send(c, state, &cmd, wait);
172 			if (ret) {
173 				dev_err(c->dev, "set %s state of %s failed: (%d)\n",
174 					!state ? "sleep" :
175 					state == RPMH_WAKE_ONLY_STATE	?
176 					"wake" : "active", c->res_name, ret);
177 				return ret;
178 			}
179 		}
180 	}
181 
182 	c->last_sent_aggr_state = c->aggr_state;
183 	c->peer->last_sent_aggr_state = c->last_sent_aggr_state;
184 
185 	return 0;
186 }
187 
188 /*
189  * Update state and aggregate state values based on enable value.
190  */
clk_rpmh_aggregate_state_send_command(struct clk_rpmh * c,bool enable)191 static int clk_rpmh_aggregate_state_send_command(struct clk_rpmh *c,
192 						bool enable)
193 {
194 	int ret;
195 
196 	c->state = enable ? c->valid_state_mask : 0;
197 	c->aggr_state = c->state | c->peer->state;
198 	c->peer->aggr_state = c->aggr_state;
199 
200 	ret = clk_rpmh_send_aggregate_command(c);
201 	if (!ret)
202 		return 0;
203 
204 	if (ret && enable)
205 		c->state = 0;
206 	else if (ret)
207 		c->state = c->valid_state_mask;
208 
209 	WARN(1, "clk: %s failed to %s\n", c->res_name,
210 	     str_enable_disable(enable));
211 	return ret;
212 }
213 
clk_rpmh_prepare(struct clk_hw * hw)214 static int clk_rpmh_prepare(struct clk_hw *hw)
215 {
216 	struct clk_rpmh *c = to_clk_rpmh(hw);
217 	int ret = 0;
218 
219 	mutex_lock(&rpmh_clk_lock);
220 	ret = clk_rpmh_aggregate_state_send_command(c, true);
221 	mutex_unlock(&rpmh_clk_lock);
222 
223 	return ret;
224 }
225 
clk_rpmh_unprepare(struct clk_hw * hw)226 static void clk_rpmh_unprepare(struct clk_hw *hw)
227 {
228 	struct clk_rpmh *c = to_clk_rpmh(hw);
229 
230 	mutex_lock(&rpmh_clk_lock);
231 	clk_rpmh_aggregate_state_send_command(c, false);
232 	mutex_unlock(&rpmh_clk_lock);
233 };
234 
clk_rpmh_recalc_rate(struct clk_hw * hw,unsigned long prate)235 static unsigned long clk_rpmh_recalc_rate(struct clk_hw *hw,
236 					unsigned long prate)
237 {
238 	struct clk_rpmh *r = to_clk_rpmh(hw);
239 
240 	/*
241 	 * RPMh clocks have a fixed rate. Return static rate.
242 	 */
243 	return prate / r->div;
244 }
245 
246 static const struct clk_ops clk_rpmh_ops = {
247 	.prepare	= clk_rpmh_prepare,
248 	.unprepare	= clk_rpmh_unprepare,
249 	.recalc_rate	= clk_rpmh_recalc_rate,
250 };
251 
clk_rpmh_bcm_send_cmd(struct clk_rpmh * c,bool enable)252 static int clk_rpmh_bcm_send_cmd(struct clk_rpmh *c, bool enable)
253 {
254 	struct tcs_cmd cmd = { 0 };
255 	u32 cmd_state;
256 	int ret = 0;
257 
258 	mutex_lock(&rpmh_clk_lock);
259 	if (enable) {
260 		cmd_state = 1;
261 		if (c->aggr_state)
262 			cmd_state = c->aggr_state;
263 	} else {
264 		cmd_state = 0;
265 	}
266 
267 	cmd_state = min(cmd_state, BCM_TCS_CMD_VOTE_MASK);
268 
269 	if (c->last_sent_aggr_state != cmd_state) {
270 		cmd.addr = c->res_addr;
271 		cmd.data = BCM_TCS_CMD(1, enable, 0, cmd_state);
272 
273 		/*
274 		 * Send only an active only state request. RPMh continues to
275 		 * use the active state when we're in sleep/wake state as long
276 		 * as the sleep/wake state has never been set.
277 		 */
278 		ret = clk_rpmh_send(c, RPMH_ACTIVE_ONLY_STATE, &cmd, enable);
279 		if (ret) {
280 			dev_err(c->dev, "set active state of %s failed: (%d)\n",
281 				c->res_name, ret);
282 		} else {
283 			c->last_sent_aggr_state = cmd_state;
284 		}
285 	}
286 
287 	mutex_unlock(&rpmh_clk_lock);
288 
289 	return ret;
290 }
291 
clk_rpmh_bcm_prepare(struct clk_hw * hw)292 static int clk_rpmh_bcm_prepare(struct clk_hw *hw)
293 {
294 	struct clk_rpmh *c = to_clk_rpmh(hw);
295 
296 	return clk_rpmh_bcm_send_cmd(c, true);
297 }
298 
clk_rpmh_bcm_unprepare(struct clk_hw * hw)299 static void clk_rpmh_bcm_unprepare(struct clk_hw *hw)
300 {
301 	struct clk_rpmh *c = to_clk_rpmh(hw);
302 
303 	clk_rpmh_bcm_send_cmd(c, false);
304 }
305 
clk_rpmh_bcm_set_rate(struct clk_hw * hw,unsigned long rate,unsigned long parent_rate)306 static int clk_rpmh_bcm_set_rate(struct clk_hw *hw, unsigned long rate,
307 				 unsigned long parent_rate)
308 {
309 	struct clk_rpmh *c = to_clk_rpmh(hw);
310 
311 	c->aggr_state = rate / c->unit;
312 	/*
313 	 * Since any non-zero value sent to hw would result in enabling the
314 	 * clock, only send the value if the clock has already been prepared.
315 	 */
316 	if (clk_hw_is_prepared(hw))
317 		clk_rpmh_bcm_send_cmd(c, true);
318 
319 	return 0;
320 }
321 
clk_rpmh_bcm_recalc_rate(struct clk_hw * hw,unsigned long prate)322 static unsigned long clk_rpmh_bcm_recalc_rate(struct clk_hw *hw,
323 					unsigned long prate)
324 {
325 	struct clk_rpmh *c = to_clk_rpmh(hw);
326 
327 	return (unsigned long)c->aggr_state * c->unit;
328 }
329 
330 static const struct clk_ops clk_rpmh_bcm_ops = {
331 	.prepare	= clk_rpmh_bcm_prepare,
332 	.unprepare	= clk_rpmh_bcm_unprepare,
333 	.set_rate	= clk_rpmh_bcm_set_rate,
334 	.determine_rate = clk_determine_rate_noop,
335 	.recalc_rate	= clk_rpmh_bcm_recalc_rate,
336 };
337 
338 /* Resource name must match resource id present in cmd-db */
339 DEFINE_CLK_RPMH_ARC(bi_tcxo, "xo.lvl", 0x3, 1);
340 DEFINE_CLK_RPMH_ARC(bi_tcxo, "xo.lvl", 0x3, 2);
341 DEFINE_CLK_RPMH_ARC(bi_tcxo, "xo.lvl", 0x3, 4);
342 DEFINE_CLK_RPMH_ARC(qlink, "qphy.lvl", 0x1, 4);
343 
344 DEFINE_CLK_RPMH_VRM(ln_bb_clk1, _a1, "lnbclka1", 1);
345 DEFINE_CLK_RPMH_VRM(ln_bb_clk2, _a1, "lnbclka2", 1);
346 DEFINE_CLK_RPMH_VRM(ln_bb_clk3, _a1, "lnbclka3", 1);
347 
348 DEFINE_CLK_RPMH_VRM(ln_bb_clk1, _a2, "lnbclka1", 2);
349 DEFINE_CLK_RPMH_VRM(ln_bb_clk2, _a2, "lnbclka2", 2);
350 DEFINE_CLK_RPMH_VRM(ln_bb_clk3, _a2, "lnbclka3", 2);
351 
352 DEFINE_CLK_RPMH_VRM(ln_bb_clk1, _a4, "lnbclka1", 4);
353 DEFINE_CLK_RPMH_VRM(ln_bb_clk2, _a4, "lnbclka2", 4);
354 DEFINE_CLK_RPMH_VRM(ln_bb_clk3, _a4, "lnbclka3", 4);
355 
356 DEFINE_CLK_RPMH_VRM(ln_bb_clk2, _g4, "lnbclkg2", 4);
357 DEFINE_CLK_RPMH_VRM(ln_bb_clk3, _g4, "lnbclkg3", 4);
358 
359 DEFINE_CLK_RPMH_VRM(rf_clk1, _a, "rfclka1", 1);
360 DEFINE_CLK_RPMH_VRM(rf_clk2, _a, "rfclka2", 1);
361 DEFINE_CLK_RPMH_VRM(rf_clk3, _a, "rfclka3", 1);
362 DEFINE_CLK_RPMH_VRM(rf_clk4, _a, "rfclka4", 1);
363 DEFINE_CLK_RPMH_VRM(rf_clk5, _a, "rfclka5", 1);
364 
365 DEFINE_CLK_RPMH_VRM(rf_clk1, _d, "rfclkd1", 1);
366 DEFINE_CLK_RPMH_VRM(rf_clk2, _d, "rfclkd2", 1);
367 DEFINE_CLK_RPMH_VRM(rf_clk3, _d, "rfclkd3", 1);
368 DEFINE_CLK_RPMH_VRM(rf_clk4, _d, "rfclkd4", 1);
369 
370 DEFINE_CLK_RPMH_VRM(rf_clk3, _a2, "rfclka3", 2);
371 DEFINE_CLK_RPMH_VRM(rf_clk4, _a2, "rfclka4", 2);
372 DEFINE_CLK_RPMH_VRM(rf_clk5, _a2, "rfclka5", 2);
373 
374 DEFINE_CLK_RPMH_VRM(clk1, _a1, "clka1", 1);
375 DEFINE_CLK_RPMH_VRM(clk2, _a1, "clka2", 1);
376 DEFINE_CLK_RPMH_VRM(clk3, _a1, "clka3", 1);
377 DEFINE_CLK_RPMH_VRM(clk4, _a1, "clka4", 1);
378 DEFINE_CLK_RPMH_VRM(clk5, _a1, "clka5", 1);
379 
380 DEFINE_CLK_RPMH_VRM(clk3, _a2, "clka3", 2);
381 DEFINE_CLK_RPMH_VRM(clk4, _a2, "clka4", 2);
382 DEFINE_CLK_RPMH_VRM(clk5, _a2, "clka5", 2);
383 DEFINE_CLK_RPMH_VRM(clk6, _a2, "clka6", 2);
384 DEFINE_CLK_RPMH_VRM(clk7, _a2, "clka7", 2);
385 DEFINE_CLK_RPMH_VRM(clk8, _a2, "clka8", 2);
386 
387 DEFINE_CLK_RPMH_VRM(clk7, _a4, "clka7", 4);
388 
389 DEFINE_CLK_RPMH_VRM(div_clk1, _div2, "divclka1", 2);
390 
391 DEFINE_CLK_RPMH_VRM(clk1, _a1_e0, "C1A_E0", 1);
392 DEFINE_CLK_RPMH_VRM(clk2, _a1_e0, "C2A_E0", 1);
393 DEFINE_CLK_RPMH_VRM(clk3, _a1_e0, "C3A_E0", 1);
394 DEFINE_CLK_RPMH_VRM(clk4, _a1_e0, "C4A_E0", 1);
395 DEFINE_CLK_RPMH_VRM(clk5, _a1_e0, "C5A_E0", 1);
396 DEFINE_CLK_RPMH_VRM(clk8, _a1_e0, "C8A_E0", 1);
397 
398 DEFINE_CLK_RPMH_VRM(clk3, _a2_e0, "C3A_E0", 2);
399 DEFINE_CLK_RPMH_VRM(clk4, _a2_e0, "C4A_E0", 2);
400 DEFINE_CLK_RPMH_VRM(clk5, _a2_e0, "C5A_E0", 2);
401 DEFINE_CLK_RPMH_VRM(clk6, _a2_e0, "C6A_E0", 2);
402 DEFINE_CLK_RPMH_VRM(clk7, _a2_e0, "C7A_E0", 2);
403 DEFINE_CLK_RPMH_VRM(clk8, _a2_e0, "C8A_E0", 2);
404 DEFINE_CLK_RPMH_VRM(clk9, _a2_e0, "C9A_E0", 2);
405 
406 DEFINE_CLK_RPMH_VRM(clk7, _a4_e0, "C7A_E0", 4);
407 DEFINE_CLK_RPMH_VRM(clk11, _a4_e0, "C11A_E0", 4);
408 
409 DEFINE_CLK_RPMH_BCM(ce, "CE0");
410 DEFINE_CLK_RPMH_BCM(hwkm, "HK0");
411 DEFINE_CLK_RPMH_BCM(ipa, "IP0");
412 DEFINE_CLK_RPMH_BCM(pka, "PKA0");
413 DEFINE_CLK_RPMH_BCM(qpic_clk, "QP0");
414 
415 static struct clk_hw *sar2130p_rpmh_clocks[] = {
416 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div1.hw,
417 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div1_ao.hw,
418 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_a.hw,
419 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_a_ao.hw,
420 };
421 
422 static const struct clk_rpmh_desc clk_rpmh_sar2130p = {
423 	.clks = sar2130p_rpmh_clocks,
424 	.num_clks = ARRAY_SIZE(sar2130p_rpmh_clocks),
425 };
426 
427 static struct clk_hw *sdm845_rpmh_clocks[] = {
428 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
429 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
430 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_ln_bb_clk2_a2.hw,
431 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_ln_bb_clk2_a2_ao.hw,
432 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_ln_bb_clk3_a2.hw,
433 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_ln_bb_clk3_a2_ao.hw,
434 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_a.hw,
435 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_a_ao.hw,
436 	[RPMH_RF_CLK2]		= &clk_rpmh_rf_clk2_a.hw,
437 	[RPMH_RF_CLK2_A]	= &clk_rpmh_rf_clk2_a_ao.hw,
438 	[RPMH_RF_CLK3]		= &clk_rpmh_rf_clk3_a.hw,
439 	[RPMH_RF_CLK3_A]	= &clk_rpmh_rf_clk3_a_ao.hw,
440 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
441 	[RPMH_CE_CLK]		= &clk_rpmh_ce.hw,
442 };
443 
444 static const struct clk_rpmh_desc clk_rpmh_sdm845 = {
445 	.clks = sdm845_rpmh_clocks,
446 	.num_clks = ARRAY_SIZE(sdm845_rpmh_clocks),
447 };
448 
449 static struct clk_hw *sa8775p_rpmh_clocks[] = {
450 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
451 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
452 	[RPMH_LN_BB_CLK1]	= &clk_rpmh_ln_bb_clk1_a2.hw,
453 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_ln_bb_clk2_a2.hw,
454 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_ln_bb_clk2_a4_ao.hw,
455 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
456 	[RPMH_PKA_CLK]		= &clk_rpmh_pka.hw,
457 	[RPMH_HWKM_CLK]		= &clk_rpmh_hwkm.hw,
458 };
459 
460 static const struct clk_rpmh_desc clk_rpmh_sa8775p = {
461 	.clks = sa8775p_rpmh_clocks,
462 	.num_clks = ARRAY_SIZE(sa8775p_rpmh_clocks),
463 };
464 
465 static struct clk_hw *sdm670_rpmh_clocks[] = {
466 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
467 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
468 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_ln_bb_clk2_a2.hw,
469 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_ln_bb_clk2_a2_ao.hw,
470 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_ln_bb_clk3_a2.hw,
471 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_ln_bb_clk3_a2_ao.hw,
472 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_a.hw,
473 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_a_ao.hw,
474 	[RPMH_RF_CLK2]		= &clk_rpmh_rf_clk2_a.hw,
475 	[RPMH_RF_CLK2_A]	= &clk_rpmh_rf_clk2_a_ao.hw,
476 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
477 	[RPMH_CE_CLK]		= &clk_rpmh_ce.hw,
478 };
479 
480 static const struct clk_rpmh_desc clk_rpmh_sdm670 = {
481 	.clks = sdm670_rpmh_clocks,
482 	.num_clks = ARRAY_SIZE(sdm670_rpmh_clocks),
483 };
484 
485 static struct clk_hw *sdx55_rpmh_clocks[] = {
486 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
487 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
488 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_d.hw,
489 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_d_ao.hw,
490 	[RPMH_RF_CLK2]		= &clk_rpmh_rf_clk2_d.hw,
491 	[RPMH_RF_CLK2_A]	= &clk_rpmh_rf_clk2_d_ao.hw,
492 	[RPMH_QPIC_CLK]		= &clk_rpmh_qpic_clk.hw,
493 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
494 };
495 
496 static const struct clk_rpmh_desc clk_rpmh_sdx55 = {
497 	.clks = sdx55_rpmh_clocks,
498 	.num_clks = ARRAY_SIZE(sdx55_rpmh_clocks),
499 };
500 
501 static struct clk_hw *sm8150_rpmh_clocks[] = {
502 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
503 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
504 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_ln_bb_clk2_a2.hw,
505 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_ln_bb_clk2_a2_ao.hw,
506 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_ln_bb_clk3_a2.hw,
507 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_ln_bb_clk3_a2_ao.hw,
508 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_a.hw,
509 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_a_ao.hw,
510 	[RPMH_RF_CLK2]		= &clk_rpmh_rf_clk2_a.hw,
511 	[RPMH_RF_CLK2_A]	= &clk_rpmh_rf_clk2_a_ao.hw,
512 	[RPMH_RF_CLK3]		= &clk_rpmh_rf_clk3_a.hw,
513 	[RPMH_RF_CLK3_A]	= &clk_rpmh_rf_clk3_a_ao.hw,
514 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
515 };
516 
517 static const struct clk_rpmh_desc clk_rpmh_sm8150 = {
518 	.clks = sm8150_rpmh_clocks,
519 	.num_clks = ARRAY_SIZE(sm8150_rpmh_clocks),
520 };
521 
522 static struct clk_hw *sc7180_rpmh_clocks[] = {
523 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
524 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
525 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_ln_bb_clk2_a2.hw,
526 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_ln_bb_clk2_a2_ao.hw,
527 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_ln_bb_clk3_a2.hw,
528 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_ln_bb_clk3_a2_ao.hw,
529 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_a.hw,
530 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_a_ao.hw,
531 	[RPMH_RF_CLK2]		= &clk_rpmh_rf_clk2_a.hw,
532 	[RPMH_RF_CLK2_A]	= &clk_rpmh_rf_clk2_a_ao.hw,
533 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
534 };
535 
536 static const struct clk_rpmh_desc clk_rpmh_sc7180 = {
537 	.clks = sc7180_rpmh_clocks,
538 	.num_clks = ARRAY_SIZE(sc7180_rpmh_clocks),
539 };
540 
541 static struct clk_hw *sc8180x_rpmh_clocks[] = {
542 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
543 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
544 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_ln_bb_clk2_a2.hw,
545 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_ln_bb_clk2_a2_ao.hw,
546 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_ln_bb_clk3_a2.hw,
547 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_ln_bb_clk3_a2_ao.hw,
548 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_d.hw,
549 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_d_ao.hw,
550 	[RPMH_RF_CLK2]		= &clk_rpmh_rf_clk2_d.hw,
551 	[RPMH_RF_CLK2_A]	= &clk_rpmh_rf_clk2_d_ao.hw,
552 	[RPMH_RF_CLK3]		= &clk_rpmh_rf_clk3_d.hw,
553 	[RPMH_RF_CLK3_A]	= &clk_rpmh_rf_clk3_d_ao.hw,
554 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
555 };
556 
557 static const struct clk_rpmh_desc clk_rpmh_sc8180x = {
558 	.clks = sc8180x_rpmh_clocks,
559 	.num_clks = ARRAY_SIZE(sc8180x_rpmh_clocks),
560 };
561 
562 static struct clk_hw *milos_rpmh_clocks[] = {
563 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div4.hw,
564 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div4_ao.hw,
565 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_clk7_a4.hw,
566 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_clk7_a4_ao.hw,
567 	/*
568 	 * RPMH_LN_BB_CLK3(_A) and RPMH_LN_BB_CLK4(_A) are marked as optional
569 	 * downstream, but do not exist in cmd-db on SM7635, so skip them.
570 	 */
571 	[RPMH_RF_CLK1]		= &clk_rpmh_clk1_a1.hw,
572 	[RPMH_RF_CLK1_A]	= &clk_rpmh_clk1_a1_ao.hw,
573 	[RPMH_RF_CLK2]		= &clk_rpmh_clk2_a1.hw,
574 	[RPMH_RF_CLK2_A]	= &clk_rpmh_clk2_a1_ao.hw,
575 	[RPMH_RF_CLK3]		= &clk_rpmh_clk3_a1.hw,
576 	[RPMH_RF_CLK3_A]	= &clk_rpmh_clk3_a1_ao.hw,
577 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
578 };
579 
580 static const struct clk_rpmh_desc clk_rpmh_milos = {
581 	.clks = milos_rpmh_clocks,
582 	.num_clks = ARRAY_SIZE(milos_rpmh_clocks),
583 };
584 
585 static struct clk_hw *sm8250_rpmh_clocks[] = {
586 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
587 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
588 	[RPMH_LN_BB_CLK1]	= &clk_rpmh_ln_bb_clk1_a2.hw,
589 	[RPMH_LN_BB_CLK1_A]	= &clk_rpmh_ln_bb_clk1_a2_ao.hw,
590 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_ln_bb_clk2_a2.hw,
591 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_ln_bb_clk2_a2_ao.hw,
592 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_ln_bb_clk3_a2.hw,
593 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_ln_bb_clk3_a2_ao.hw,
594 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_a.hw,
595 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_a_ao.hw,
596 	[RPMH_RF_CLK3]		= &clk_rpmh_rf_clk3_a.hw,
597 	[RPMH_RF_CLK3_A]	= &clk_rpmh_rf_clk3_a_ao.hw,
598 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
599 };
600 
601 static const struct clk_rpmh_desc clk_rpmh_sm8250 = {
602 	.clks = sm8250_rpmh_clocks,
603 	.num_clks = ARRAY_SIZE(sm8250_rpmh_clocks),
604 };
605 
606 static struct clk_hw *sm8350_rpmh_clocks[] = {
607 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
608 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
609 	[RPMH_DIV_CLK1]		= &clk_rpmh_div_clk1_div2.hw,
610 	[RPMH_DIV_CLK1_A]	= &clk_rpmh_div_clk1_div2_ao.hw,
611 	[RPMH_LN_BB_CLK1]	= &clk_rpmh_ln_bb_clk1_a2.hw,
612 	[RPMH_LN_BB_CLK1_A]	= &clk_rpmh_ln_bb_clk1_a2_ao.hw,
613 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_ln_bb_clk2_a2.hw,
614 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_ln_bb_clk2_a2_ao.hw,
615 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_a.hw,
616 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_a_ao.hw,
617 	[RPMH_RF_CLK3]		= &clk_rpmh_rf_clk3_a.hw,
618 	[RPMH_RF_CLK3_A]	= &clk_rpmh_rf_clk3_a_ao.hw,
619 	[RPMH_RF_CLK4]		= &clk_rpmh_rf_clk4_a.hw,
620 	[RPMH_RF_CLK4_A]	= &clk_rpmh_rf_clk4_a_ao.hw,
621 	[RPMH_RF_CLK5]		= &clk_rpmh_rf_clk5_a.hw,
622 	[RPMH_RF_CLK5_A]	= &clk_rpmh_rf_clk5_a_ao.hw,
623 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
624 	[RPMH_PKA_CLK]		= &clk_rpmh_pka.hw,
625 	[RPMH_HWKM_CLK]		= &clk_rpmh_hwkm.hw,
626 };
627 
628 static const struct clk_rpmh_desc clk_rpmh_sm8350 = {
629 	.clks = sm8350_rpmh_clocks,
630 	.num_clks = ARRAY_SIZE(sm8350_rpmh_clocks),
631 };
632 
633 static struct clk_hw *sc8280xp_rpmh_clocks[] = {
634 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
635 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
636 	[RPMH_LN_BB_CLK3]       = &clk_rpmh_ln_bb_clk3_a2.hw,
637 	[RPMH_LN_BB_CLK3_A]     = &clk_rpmh_ln_bb_clk3_a2_ao.hw,
638 	[RPMH_IPA_CLK]          = &clk_rpmh_ipa.hw,
639 	[RPMH_PKA_CLK]          = &clk_rpmh_pka.hw,
640 	[RPMH_HWKM_CLK]         = &clk_rpmh_hwkm.hw,
641 };
642 
643 static const struct clk_rpmh_desc clk_rpmh_sc8280xp = {
644 	.clks = sc8280xp_rpmh_clocks,
645 	.num_clks = ARRAY_SIZE(sc8280xp_rpmh_clocks),
646 };
647 
648 static struct clk_hw *sm8450_rpmh_clocks[] = {
649 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div4.hw,
650 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div4_ao.hw,
651 	[RPMH_LN_BB_CLK1]	= &clk_rpmh_ln_bb_clk1_a4.hw,
652 	[RPMH_LN_BB_CLK1_A]	= &clk_rpmh_ln_bb_clk1_a4_ao.hw,
653 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_ln_bb_clk2_a4.hw,
654 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_ln_bb_clk2_a4_ao.hw,
655 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_a.hw,
656 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_a_ao.hw,
657 	[RPMH_RF_CLK2]		= &clk_rpmh_rf_clk2_a.hw,
658 	[RPMH_RF_CLK2_A]	= &clk_rpmh_rf_clk2_a_ao.hw,
659 	[RPMH_RF_CLK3]		= &clk_rpmh_rf_clk3_a.hw,
660 	[RPMH_RF_CLK3_A]	= &clk_rpmh_rf_clk3_a_ao.hw,
661 	[RPMH_RF_CLK4]		= &clk_rpmh_rf_clk4_a.hw,
662 	[RPMH_RF_CLK4_A]	= &clk_rpmh_rf_clk4_a_ao.hw,
663 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
664 };
665 
666 static const struct clk_rpmh_desc clk_rpmh_sm8450 = {
667 	.clks = sm8450_rpmh_clocks,
668 	.num_clks = ARRAY_SIZE(sm8450_rpmh_clocks),
669 };
670 
671 static struct clk_hw *sm8550_rpmh_clocks[] = {
672 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
673 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
674 	[RPMH_LN_BB_CLK1]	= &clk_rpmh_clk6_a2.hw,
675 	[RPMH_LN_BB_CLK1_A]	= &clk_rpmh_clk6_a2_ao.hw,
676 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_clk7_a2.hw,
677 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_clk7_a2_ao.hw,
678 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_clk8_a2.hw,
679 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_clk8_a2_ao.hw,
680 	[RPMH_RF_CLK1]		= &clk_rpmh_clk1_a1.hw,
681 	[RPMH_RF_CLK1_A]	= &clk_rpmh_clk1_a1_ao.hw,
682 	[RPMH_RF_CLK2]		= &clk_rpmh_clk2_a1.hw,
683 	[RPMH_RF_CLK2_A]	= &clk_rpmh_clk2_a1_ao.hw,
684 	[RPMH_RF_CLK3]		= &clk_rpmh_clk3_a1.hw,
685 	[RPMH_RF_CLK3_A]	= &clk_rpmh_clk3_a1_ao.hw,
686 	[RPMH_RF_CLK4]		= &clk_rpmh_clk4_a1.hw,
687 	[RPMH_RF_CLK4_A]	= &clk_rpmh_clk4_a1_ao.hw,
688 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
689 };
690 
691 static const struct clk_rpmh_desc clk_rpmh_sm8550 = {
692 	.clks = sm8550_rpmh_clocks,
693 	.num_clks = ARRAY_SIZE(sm8550_rpmh_clocks),
694 };
695 
696 static struct clk_hw *sm8650_rpmh_clocks[] = {
697 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
698 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
699 	[RPMH_LN_BB_CLK1]	= &clk_rpmh_clk6_a2.hw,
700 	[RPMH_LN_BB_CLK1_A]	= &clk_rpmh_clk6_a2_ao.hw,
701 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_clk7_a2.hw,
702 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_clk7_a2_ao.hw,
703 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_clk8_a2.hw,
704 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_clk8_a2_ao.hw,
705 	[RPMH_RF_CLK1]		= &clk_rpmh_clk1_a1.hw,
706 	[RPMH_RF_CLK1_A]	= &clk_rpmh_clk1_a1_ao.hw,
707 	[RPMH_RF_CLK2]		= &clk_rpmh_clk2_a1.hw,
708 	[RPMH_RF_CLK2_A]	= &clk_rpmh_clk2_a1_ao.hw,
709 	/*
710 	 * The clka3 RPMh resource is missing in cmd-db
711 	 * for current platforms, while the clka3 exists
712 	 * on the PMK8550, the clock is unconnected and
713 	 * unused.
714 	 */
715 	[RPMH_RF_CLK4]		= &clk_rpmh_clk4_a2.hw,
716 	[RPMH_RF_CLK4_A]	= &clk_rpmh_clk4_a2_ao.hw,
717 	[RPMH_RF_CLK5]		= &clk_rpmh_clk5_a2.hw,
718 	[RPMH_RF_CLK5_A]	= &clk_rpmh_clk5_a2_ao.hw,
719 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
720 };
721 
722 static const struct clk_rpmh_desc clk_rpmh_sm8650 = {
723 	.clks = sm8650_rpmh_clocks,
724 	.num_clks = ARRAY_SIZE(sm8650_rpmh_clocks),
725 };
726 
727 static struct clk_hw *sc7280_rpmh_clocks[] = {
728 	[RPMH_CXO_CLK]      = &clk_rpmh_bi_tcxo_div4.hw,
729 	[RPMH_CXO_CLK_A]    = &clk_rpmh_bi_tcxo_div4_ao.hw,
730 	[RPMH_LN_BB_CLK2]   = &clk_rpmh_ln_bb_clk2_a2.hw,
731 	[RPMH_LN_BB_CLK2_A] = &clk_rpmh_ln_bb_clk2_a2_ao.hw,
732 	[RPMH_RF_CLK1]      = &clk_rpmh_rf_clk1_a.hw,
733 	[RPMH_RF_CLK1_A]    = &clk_rpmh_rf_clk1_a_ao.hw,
734 	[RPMH_RF_CLK3]      = &clk_rpmh_rf_clk3_a.hw,
735 	[RPMH_RF_CLK3_A]    = &clk_rpmh_rf_clk3_a_ao.hw,
736 	[RPMH_RF_CLK4]      = &clk_rpmh_rf_clk4_a.hw,
737 	[RPMH_RF_CLK4_A]    = &clk_rpmh_rf_clk4_a_ao.hw,
738 	[RPMH_IPA_CLK]      = &clk_rpmh_ipa.hw,
739 	[RPMH_PKA_CLK]      = &clk_rpmh_pka.hw,
740 	[RPMH_HWKM_CLK]     = &clk_rpmh_hwkm.hw,
741 };
742 
743 static const struct clk_rpmh_desc clk_rpmh_sc7280 = {
744 	.clks = sc7280_rpmh_clocks,
745 	.num_clks = ARRAY_SIZE(sc7280_rpmh_clocks),
746 };
747 
748 static struct clk_hw *sm6350_rpmh_clocks[] = {
749 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div4.hw,
750 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div4_ao.hw,
751 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_ln_bb_clk2_g4.hw,
752 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_ln_bb_clk2_g4_ao.hw,
753 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_ln_bb_clk3_g4.hw,
754 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_ln_bb_clk3_g4_ao.hw,
755 	[RPMH_QLINK_CLK]	= &clk_rpmh_qlink_div4.hw,
756 	[RPMH_QLINK_CLK_A]	= &clk_rpmh_qlink_div4_ao.hw,
757 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
758 };
759 
760 static const struct clk_rpmh_desc clk_rpmh_sm6350 = {
761 	.clks = sm6350_rpmh_clocks,
762 	.num_clks = ARRAY_SIZE(sm6350_rpmh_clocks),
763 };
764 
765 static struct clk_hw *sdx65_rpmh_clocks[] = {
766 	[RPMH_CXO_CLK]          = &clk_rpmh_bi_tcxo_div4.hw,
767 	[RPMH_CXO_CLK_A]        = &clk_rpmh_bi_tcxo_div4_ao.hw,
768 	[RPMH_LN_BB_CLK1]       = &clk_rpmh_ln_bb_clk1_a4.hw,
769 	[RPMH_LN_BB_CLK1_A]     = &clk_rpmh_ln_bb_clk1_a4_ao.hw,
770 	[RPMH_RF_CLK1]          = &clk_rpmh_rf_clk1_a.hw,
771 	[RPMH_RF_CLK1_A]        = &clk_rpmh_rf_clk1_a_ao.hw,
772 	[RPMH_RF_CLK2]          = &clk_rpmh_rf_clk2_a.hw,
773 	[RPMH_RF_CLK2_A]        = &clk_rpmh_rf_clk2_a_ao.hw,
774 	[RPMH_RF_CLK3]          = &clk_rpmh_rf_clk3_a.hw,
775 	[RPMH_RF_CLK3_A]        = &clk_rpmh_rf_clk3_a_ao.hw,
776 	[RPMH_RF_CLK4]          = &clk_rpmh_rf_clk4_a.hw,
777 	[RPMH_RF_CLK4_A]        = &clk_rpmh_rf_clk4_a_ao.hw,
778 	[RPMH_IPA_CLK]          = &clk_rpmh_ipa.hw,
779 	[RPMH_QPIC_CLK]         = &clk_rpmh_qpic_clk.hw,
780 };
781 
782 static const struct clk_rpmh_desc clk_rpmh_sdx65 = {
783 	.clks = sdx65_rpmh_clocks,
784 	.num_clks = ARRAY_SIZE(sdx65_rpmh_clocks),
785 };
786 
787 static struct clk_hw *qdu1000_rpmh_clocks[] = {
788 	[RPMH_CXO_CLK]      = &clk_rpmh_bi_tcxo_div1.hw,
789 	[RPMH_CXO_CLK_A]    = &clk_rpmh_bi_tcxo_div1_ao.hw,
790 };
791 
792 static const struct clk_rpmh_desc clk_rpmh_qdu1000 = {
793 	.clks = qdu1000_rpmh_clocks,
794 	.num_clks = ARRAY_SIZE(qdu1000_rpmh_clocks),
795 };
796 
797 static struct clk_hw *sdx75_rpmh_clocks[] = {
798 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div4.hw,
799 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div4_ao.hw,
800 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_a.hw,
801 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_a_ao.hw,
802 	[RPMH_RF_CLK2]		= &clk_rpmh_rf_clk2_a.hw,
803 	[RPMH_RF_CLK2_A]	= &clk_rpmh_rf_clk2_a_ao.hw,
804 	[RPMH_RF_CLK3]		= &clk_rpmh_rf_clk3_a.hw,
805 	[RPMH_RF_CLK3_A]	= &clk_rpmh_rf_clk3_a_ao.hw,
806 	[RPMH_QPIC_CLK]		= &clk_rpmh_qpic_clk.hw,
807 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
808 };
809 
810 static const struct clk_rpmh_desc clk_rpmh_sdx75 = {
811 	.clks = sdx75_rpmh_clocks,
812 	.num_clks = ARRAY_SIZE(sdx75_rpmh_clocks),
813 };
814 
815 static struct clk_hw *sm4450_rpmh_clocks[] = {
816 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div4.hw,
817 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div4_ao.hw,
818 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_ln_bb_clk2_a4.hw,
819 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_ln_bb_clk2_a4_ao.hw,
820 	[RPMH_LN_BB_CLK3]       = &clk_rpmh_ln_bb_clk3_a4.hw,
821 	[RPMH_LN_BB_CLK3_A]     = &clk_rpmh_ln_bb_clk3_a4_ao.hw,
822 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_a.hw,
823 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_a_ao.hw,
824 	[RPMH_RF_CLK5]		= &clk_rpmh_rf_clk5_a.hw,
825 	[RPMH_RF_CLK5_A]	= &clk_rpmh_rf_clk5_a_ao.hw,
826 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
827 };
828 
829 static const struct clk_rpmh_desc clk_rpmh_sm4450 = {
830 	.clks = sm4450_rpmh_clocks,
831 	.num_clks = ARRAY_SIZE(sm4450_rpmh_clocks),
832 };
833 
834 static struct clk_hw *x1e80100_rpmh_clocks[] = {
835 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
836 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
837 	[RPMH_LN_BB_CLK1]	= &clk_rpmh_clk6_a2.hw,
838 	[RPMH_LN_BB_CLK1_A]	= &clk_rpmh_clk6_a2_ao.hw,
839 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_clk7_a2.hw,
840 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_clk7_a2_ao.hw,
841 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_clk8_a2.hw,
842 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_clk8_a2_ao.hw,
843 	[RPMH_RF_CLK3]		= &clk_rpmh_clk3_a2.hw,
844 	[RPMH_RF_CLK3_A]	= &clk_rpmh_clk3_a2_ao.hw,
845 	[RPMH_RF_CLK4]		= &clk_rpmh_clk4_a2.hw,
846 	[RPMH_RF_CLK4_A]	= &clk_rpmh_clk4_a2_ao.hw,
847 	[RPMH_RF_CLK5]		= &clk_rpmh_clk5_a2.hw,
848 	[RPMH_RF_CLK5_A]	= &clk_rpmh_clk5_a2_ao.hw,
849 };
850 
851 static const struct clk_rpmh_desc clk_rpmh_x1e80100 = {
852 	.clks = x1e80100_rpmh_clocks,
853 	.num_clks = ARRAY_SIZE(x1e80100_rpmh_clocks),
854 };
855 
856 static struct clk_hw *qcs615_rpmh_clocks[] = {
857 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
858 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
859 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_ln_bb_clk2_a2.hw,
860 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_ln_bb_clk2_a2_ao.hw,
861 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_ln_bb_clk3_a2.hw,
862 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_ln_bb_clk3_a2_ao.hw,
863 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_a.hw,
864 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_a_ao.hw,
865 	[RPMH_RF_CLK2]		= &clk_rpmh_rf_clk2_a.hw,
866 	[RPMH_RF_CLK2_A]	= &clk_rpmh_rf_clk2_a_ao.hw,
867 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
868 };
869 
870 static const struct clk_rpmh_desc clk_rpmh_qcs615 = {
871 	.clks = qcs615_rpmh_clocks,
872 	.num_clks = ARRAY_SIZE(qcs615_rpmh_clocks),
873 };
874 
875 static struct clk_hw *sm8750_rpmh_clocks[] = {
876 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
877 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
878 	[RPMH_LN_BB_CLK1]	= &clk_rpmh_clk6_a2.hw,
879 	[RPMH_LN_BB_CLK1_A]	= &clk_rpmh_clk6_a2_ao.hw,
880 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_clk8_a2.hw,
881 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_clk8_a2_ao.hw,
882 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_a.hw,
883 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_a_ao.hw,
884 	[RPMH_RF_CLK2]		= &clk_rpmh_rf_clk2_a.hw,
885 	[RPMH_RF_CLK2_A]	= &clk_rpmh_rf_clk2_a_ao.hw,
886 	[RPMH_RF_CLK3]		= &clk_rpmh_rf_clk3_a2.hw,
887 	[RPMH_RF_CLK3_A]	= &clk_rpmh_rf_clk3_a2_ao.hw,
888 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
889 };
890 
891 static const struct clk_rpmh_desc clk_rpmh_sm8750 = {
892 	.clks = sm8750_rpmh_clocks,
893 	.num_clks = ARRAY_SIZE(sm8750_rpmh_clocks),
894 };
895 
896 static struct clk_hw *glymur_rpmh_clocks[] = {
897 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
898 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
899 	[RPMH_RF_CLK3]		= &clk_rpmh_clk3_a1_e0.hw,
900 	[RPMH_RF_CLK3_A]	= &clk_rpmh_clk3_a1_e0_ao.hw,
901 	[RPMH_RF_CLK4]		= &clk_rpmh_clk4_a1_e0.hw,
902 	[RPMH_RF_CLK4_A]	= &clk_rpmh_clk4_a1_e0_ao.hw,
903 	[RPMH_RF_CLK5]		= &clk_rpmh_clk5_a1_e0.hw,
904 	[RPMH_RF_CLK5_A]	= &clk_rpmh_clk5_a1_e0_ao.hw,
905 };
906 
907 static const struct clk_rpmh_desc clk_rpmh_glymur = {
908 	.clks = glymur_rpmh_clocks,
909 	.num_clks = ARRAY_SIZE(glymur_rpmh_clocks),
910 };
911 
912 static struct clk_hw *kaanapali_rpmh_clocks[] = {
913 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
914 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
915 	[RPMH_DIV_CLK1]		= &clk_rpmh_clk11_a4_e0.hw,
916 	[RPMH_LN_BB_CLK1]	= &clk_rpmh_clk6_a2_e0.hw,
917 	[RPMH_LN_BB_CLK1_A]	= &clk_rpmh_clk6_a2_e0_ao.hw,
918 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_clk7_a2_e0.hw,
919 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_clk7_a2_e0_ao.hw,
920 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_clk8_a2_e0.hw,
921 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_clk8_a2_e0_ao.hw,
922 	[RPMH_RF_CLK1]		= &clk_rpmh_clk1_a1_e0.hw,
923 	[RPMH_RF_CLK1_A]	= &clk_rpmh_clk1_a1_e0_ao.hw,
924 	[RPMH_RF_CLK2]		= &clk_rpmh_clk2_a1_e0.hw,
925 	[RPMH_RF_CLK2_A]	= &clk_rpmh_clk2_a1_e0_ao.hw,
926 	[RPMH_RF_CLK3]		= &clk_rpmh_clk3_a2_e0.hw,
927 	[RPMH_RF_CLK3_A]	= &clk_rpmh_clk3_a2_e0_ao.hw,
928 	[RPMH_RF_CLK4]		= &clk_rpmh_clk4_a2_e0.hw,
929 	[RPMH_RF_CLK4_A]	= &clk_rpmh_clk4_a2_e0_ao.hw,
930 	[RPMH_RF_CLK5]		= &clk_rpmh_clk5_a2_e0.hw,
931 	[RPMH_RF_CLK5_A]	= &clk_rpmh_clk5_a2_e0_ao.hw,
932 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
933 };
934 
935 static const struct clk_rpmh_desc clk_rpmh_kaanapali = {
936 	.clks = kaanapali_rpmh_clocks,
937 	.num_clks = ARRAY_SIZE(kaanapali_rpmh_clocks),
938 };
939 
940 static struct clk_hw *eliza_rpmh_clocks[] = {
941 	[RPMH_CXO_CLK]          = &clk_rpmh_bi_tcxo_div2.hw,
942 	[RPMH_CXO_CLK_A]        = &clk_rpmh_bi_tcxo_div2_ao.hw,
943 	[RPMH_LN_BB_CLK1]	= &clk_rpmh_clk6_a2.hw,
944 	[RPMH_LN_BB_CLK1_A]	= &clk_rpmh_clk6_a2_ao.hw,
945 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_clk8_a2.hw,
946 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_clk8_a2_ao.hw,
947 	[RPMH_RF_CLK1]		= &clk_rpmh_rf_clk1_a.hw,
948 	[RPMH_RF_CLK1_A]	= &clk_rpmh_rf_clk1_a_ao.hw,
949 	[RPMH_RF_CLK2]		= &clk_rpmh_rf_clk2_a.hw,
950 	[RPMH_RF_CLK2_A]	= &clk_rpmh_rf_clk2_a_ao.hw,
951 	[RPMH_RF_CLK4]		= &clk_rpmh_rf_clk4_a2.hw,
952 	[RPMH_RF_CLK4_A]	= &clk_rpmh_rf_clk4_a2_ao.hw,
953 	[RPMH_RF_CLK5]		= &clk_rpmh_rf_clk5_a2.hw,
954 	[RPMH_RF_CLK5_A]	= &clk_rpmh_rf_clk5_a2_ao.hw,
955 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
956 };
957 
958 static const struct clk_rpmh_desc clk_rpmh_eliza = {
959 	.clks = eliza_rpmh_clocks,
960 	.num_clks = ARRAY_SIZE(eliza_rpmh_clocks),
961 };
962 
963 static struct clk_hw *nord_rpmh_clocks[] = {
964 	[RPMH_CXO_CLK]          = &clk_rpmh_bi_tcxo_div1.hw,
965 	[RPMH_CXO_CLK_A]        = &clk_rpmh_bi_tcxo_div1_ao.hw,
966 	[RPMH_LN_BB_CLK2]       = &clk_rpmh_ln_bb_clk2_a1.hw,
967 	[RPMH_LN_BB_CLK2_A]     = &clk_rpmh_ln_bb_clk2_a1_ao.hw,
968 	[RPMH_LN_BB_CLK3]       = &clk_rpmh_ln_bb_clk3_a1.hw,
969 	[RPMH_LN_BB_CLK3_A]     = &clk_rpmh_ln_bb_clk3_a1_ao.hw,
970 	[RPMH_IPA_CLK]          = &clk_rpmh_ipa.hw,
971 };
972 
973 static const struct clk_rpmh_desc clk_rpmh_nord = {
974 	.clks = nord_rpmh_clocks,
975 	.num_clks = ARRAY_SIZE(nord_rpmh_clocks),
976 };
977 
978 static struct clk_hw *hawi_rpmh_clocks[] = {
979 	[RPMH_CXO_CLK]		= &clk_rpmh_bi_tcxo_div2.hw,
980 	[RPMH_CXO_CLK_A]	= &clk_rpmh_bi_tcxo_div2_ao.hw,
981 	[RPMH_DIV_CLK1]		= &clk_rpmh_clk11_a4_e0.hw,
982 	[RPMH_LN_BB_CLK1]	= &clk_rpmh_clk6_a2_e0.hw,
983 	[RPMH_LN_BB_CLK1_A]	= &clk_rpmh_clk6_a2_e0_ao.hw,
984 	[RPMH_LN_BB_CLK2]	= &clk_rpmh_clk7_a4_e0.hw,
985 	[RPMH_LN_BB_CLK2_A]	= &clk_rpmh_clk7_a4_e0_ao.hw,
986 	[RPMH_LN_BB_CLK3]	= &clk_rpmh_clk8_a2_e0.hw,
987 	[RPMH_LN_BB_CLK3_A]	= &clk_rpmh_clk8_a2_e0_ao.hw,
988 	[RPMH_LN_BB_CLK4]	= &clk_rpmh_clk9_a2_e0.hw,
989 	[RPMH_LN_BB_CLK4_A]	= &clk_rpmh_clk9_a2_e0_ao.hw,
990 	[RPMH_RF_CLK1]		= &clk_rpmh_clk1_a1_e0.hw,
991 	[RPMH_RF_CLK1_A]	= &clk_rpmh_clk1_a1_e0_ao.hw,
992 	[RPMH_RF_CLK2]		= &clk_rpmh_clk2_a1_e0.hw,
993 	[RPMH_RF_CLK2_A]	= &clk_rpmh_clk2_a1_e0_ao.hw,
994 	[RPMH_RF_CLK3]		= &clk_rpmh_clk3_a2_e0.hw,
995 	[RPMH_RF_CLK3_A]	= &clk_rpmh_clk3_a2_e0_ao.hw,
996 	[RPMH_RF_CLK4]		= &clk_rpmh_clk4_a2_e0.hw,
997 	[RPMH_RF_CLK4_A]	= &clk_rpmh_clk4_a2_e0_ao.hw,
998 	[RPMH_RF_CLK5]		= &clk_rpmh_clk5_a2_e0.hw,
999 	[RPMH_RF_CLK5_A]	= &clk_rpmh_clk5_a2_e0_ao.hw,
1000 	[RPMH_IPA_CLK]		= &clk_rpmh_ipa.hw,
1001 };
1002 
1003 static const struct clk_rpmh_desc clk_rpmh_hawi = {
1004 	.clks = hawi_rpmh_clocks,
1005 	.num_clks = ARRAY_SIZE(hawi_rpmh_clocks),
1006 };
1007 
of_clk_rpmh_hw_get(struct of_phandle_args * clkspec,void * data)1008 static struct clk_hw *of_clk_rpmh_hw_get(struct of_phandle_args *clkspec,
1009 					 void *data)
1010 {
1011 	struct clk_rpmh_desc *rpmh = data;
1012 	unsigned int idx = clkspec->args[0];
1013 
1014 	if (idx >= rpmh->num_clks) {
1015 		pr_err("%s: invalid index %u\n", __func__, idx);
1016 		return ERR_PTR(-EINVAL);
1017 	}
1018 
1019 	return rpmh->clks[idx];
1020 }
1021 
clk_rpmh_probe(struct platform_device * pdev)1022 static int clk_rpmh_probe(struct platform_device *pdev)
1023 {
1024 	struct clk_hw **hw_clks;
1025 	struct clk_rpmh *rpmh_clk;
1026 	const struct clk_rpmh_desc *desc;
1027 	int ret, i;
1028 
1029 	desc = of_device_get_match_data(&pdev->dev);
1030 	if (!desc)
1031 		return -ENODEV;
1032 
1033 	hw_clks = desc->clks;
1034 
1035 	for (i = 0; i < desc->num_clks; i++) {
1036 		const char *name;
1037 		u32 res_addr;
1038 		size_t aux_data_len;
1039 		const struct bcm_db *data;
1040 
1041 		if (!hw_clks[i])
1042 			continue;
1043 
1044 		name = hw_clks[i]->init->name;
1045 
1046 		rpmh_clk = to_clk_rpmh(hw_clks[i]);
1047 		res_addr = cmd_db_read_addr(rpmh_clk->res_name);
1048 		if (!res_addr) {
1049 			hw_clks[i] = NULL;
1050 
1051 			if (rpmh_clk->res_addr == CLK_RPMH_VRM_EN_OFFSET)
1052 				continue;
1053 
1054 			dev_err(&pdev->dev, "missing RPMh resource address for %s\n",
1055 				rpmh_clk->res_name);
1056 			return -ENODEV;
1057 		}
1058 
1059 		data = cmd_db_read_aux_data(rpmh_clk->res_name, &aux_data_len);
1060 		if (IS_ERR(data)) {
1061 			ret = PTR_ERR(data);
1062 			dev_err(&pdev->dev,
1063 				"error reading RPMh aux data for %s (%d)\n",
1064 				rpmh_clk->res_name, ret);
1065 			return ret;
1066 		}
1067 
1068 		/* Convert unit from Khz to Hz */
1069 		if (aux_data_len == sizeof(*data))
1070 			rpmh_clk->unit = le32_to_cpu(data->unit) * 1000ULL;
1071 
1072 		rpmh_clk->res_addr += res_addr;
1073 		rpmh_clk->dev = &pdev->dev;
1074 
1075 		ret = devm_clk_hw_register(&pdev->dev, hw_clks[i]);
1076 		if (ret) {
1077 			dev_err(&pdev->dev, "failed to register %s\n", name);
1078 			return ret;
1079 		}
1080 	}
1081 
1082 	/* typecast to silence compiler warning */
1083 	ret = devm_of_clk_add_hw_provider(&pdev->dev, of_clk_rpmh_hw_get,
1084 					  (void *)desc);
1085 	if (ret) {
1086 		dev_err(&pdev->dev, "Failed to add clock provider\n");
1087 		return ret;
1088 	}
1089 
1090 	dev_dbg(&pdev->dev, "Registered RPMh clocks\n");
1091 
1092 	return 0;
1093 }
1094 
1095 static const struct of_device_id clk_rpmh_match_table[] = {
1096 	{ .compatible = "qcom,eliza-rpmh-clk", .data = &clk_rpmh_eliza},
1097 	{ .compatible = "qcom,glymur-rpmh-clk", .data = &clk_rpmh_glymur},
1098 	{ .compatible = "qcom,hawi-rpmh-clk", .data = &clk_rpmh_hawi},
1099 	{ .compatible = "qcom,kaanapali-rpmh-clk", .data = &clk_rpmh_kaanapali},
1100 	{ .compatible = "qcom,milos-rpmh-clk", .data = &clk_rpmh_milos},
1101 	{ .compatible = "qcom,nord-rpmh-clk", .data = &clk_rpmh_nord},
1102 	{ .compatible = "qcom,qcs615-rpmh-clk", .data = &clk_rpmh_qcs615},
1103 	{ .compatible = "qcom,qdu1000-rpmh-clk", .data = &clk_rpmh_qdu1000},
1104 	{ .compatible = "qcom,sa8775p-rpmh-clk", .data = &clk_rpmh_sa8775p},
1105 	{ .compatible = "qcom,sar2130p-rpmh-clk", .data = &clk_rpmh_sar2130p},
1106 	{ .compatible = "qcom,sc7180-rpmh-clk", .data = &clk_rpmh_sc7180},
1107 	{ .compatible = "qcom,sc7280-rpmh-clk", .data = &clk_rpmh_sc7280},
1108 	{ .compatible = "qcom,sc8180x-rpmh-clk", .data = &clk_rpmh_sc8180x},
1109 	{ .compatible = "qcom,sc8280xp-rpmh-clk", .data = &clk_rpmh_sc8280xp},
1110 	{ .compatible = "qcom,sdm845-rpmh-clk", .data = &clk_rpmh_sdm845},
1111 	{ .compatible = "qcom,sdm670-rpmh-clk", .data = &clk_rpmh_sdm670},
1112 	{ .compatible = "qcom,sdx55-rpmh-clk",  .data = &clk_rpmh_sdx55},
1113 	{ .compatible = "qcom,sdx65-rpmh-clk",  .data = &clk_rpmh_sdx65},
1114 	{ .compatible = "qcom,sdx75-rpmh-clk",  .data = &clk_rpmh_sdx75},
1115 	{ .compatible = "qcom,sm4450-rpmh-clk", .data = &clk_rpmh_sm4450},
1116 	{ .compatible = "qcom,sm6350-rpmh-clk", .data = &clk_rpmh_sm6350},
1117 	{ .compatible = "qcom,sm8150-rpmh-clk", .data = &clk_rpmh_sm8150},
1118 	{ .compatible = "qcom,sm8250-rpmh-clk", .data = &clk_rpmh_sm8250},
1119 	{ .compatible = "qcom,sm8350-rpmh-clk", .data = &clk_rpmh_sm8350},
1120 	{ .compatible = "qcom,sm8450-rpmh-clk", .data = &clk_rpmh_sm8450},
1121 	{ .compatible = "qcom,sm8550-rpmh-clk", .data = &clk_rpmh_sm8550},
1122 	{ .compatible = "qcom,sm8650-rpmh-clk", .data = &clk_rpmh_sm8650},
1123 	{ .compatible = "qcom,sm8750-rpmh-clk", .data = &clk_rpmh_sm8750},
1124 	{ .compatible = "qcom,x1e80100-rpmh-clk", .data = &clk_rpmh_x1e80100},
1125 	{ }
1126 };
1127 MODULE_DEVICE_TABLE(of, clk_rpmh_match_table);
1128 
1129 static struct platform_driver clk_rpmh_driver = {
1130 	.probe		= clk_rpmh_probe,
1131 	.driver		= {
1132 		.name	= "clk-rpmh",
1133 		.of_match_table = clk_rpmh_match_table,
1134 	},
1135 };
1136 
clk_rpmh_init(void)1137 static int __init clk_rpmh_init(void)
1138 {
1139 	return platform_driver_register(&clk_rpmh_driver);
1140 }
1141 core_initcall(clk_rpmh_init);
1142 
clk_rpmh_exit(void)1143 static void __exit clk_rpmh_exit(void)
1144 {
1145 	platform_driver_unregister(&clk_rpmh_driver);
1146 }
1147 module_exit(clk_rpmh_exit);
1148 
1149 MODULE_DESCRIPTION("QCOM RPMh Clock Driver");
1150 MODULE_LICENSE("GPL v2");
1151