1 /*
2  * (C) Copyright 2015 Google, Inc
3  *
4  * SPDX-License-Identifier:	GPL-2.0
5  */
6 
7 #include <common.h>
8 #include <clk-uclass.h>
9 #include <dm.h>
10 #include <dt-structs.h>
11 #include <errno.h>
12 #include <mapmem.h>
13 #include <syscon.h>
14 #include <asm/io.h>
15 #include <asm/arch/clock.h>
16 #include <asm/arch/cru_rk3288.h>
17 #include <asm/arch/grf_rk3288.h>
18 #include <asm/arch/hardware.h>
19 #include <dt-bindings/clock/rk3288-cru.h>
20 #include <dm/device-internal.h>
21 #include <dm/lists.h>
22 #include <dm/uclass-internal.h>
23 #include <linux/log2.h>
24 
25 DECLARE_GLOBAL_DATA_PTR;
26 
27 struct rk3288_clk_plat {
28 #if CONFIG_IS_ENABLED(OF_PLATDATA)
29 	struct dtd_rockchip_rk3288_cru dtd;
30 #endif
31 };
32 
33 struct pll_div {
34 	u32 nr;
35 	u32 nf;
36 	u32 no;
37 };
38 
39 enum {
40 	VCO_MAX_HZ	= 2200U * 1000000,
41 	VCO_MIN_HZ	= 440 * 1000000,
42 	OUTPUT_MAX_HZ	= 2200U * 1000000,
43 	OUTPUT_MIN_HZ	= 27500000,
44 	FREF_MAX_HZ	= 2200U * 1000000,
45 	FREF_MIN_HZ	= 269 * 1000,
46 };
47 
48 enum {
49 	/* PLL CON0 */
50 	PLL_OD_MASK		= 0x0f,
51 
52 	/* PLL CON1 */
53 	PLL_NF_MASK		= 0x1fff,
54 
55 	/* PLL CON2 */
56 	PLL_BWADJ_MASK		= 0x0fff,
57 
58 	/* PLL CON3 */
59 	PLL_RESET_SHIFT		= 5,
60 
61 	/* CLKSEL0 */
62 	CORE_SEL_PLL_SHIFT	= 15,
63 	CORE_SEL_PLL_MASK	= 1 << CORE_SEL_PLL_SHIFT,
64 	A17_DIV_SHIFT		= 8,
65 	A17_DIV_MASK		= 0x1f << A17_DIV_SHIFT,
66 	MP_DIV_SHIFT		= 4,
67 	MP_DIV_MASK		= 0xf << MP_DIV_SHIFT,
68 	M0_DIV_SHIFT		= 0,
69 	M0_DIV_MASK		= 0xf << M0_DIV_SHIFT,
70 
71 	/* CLKSEL1: pd bus clk pll sel: codec or general */
72 	PD_BUS_SEL_PLL_MASK	= 15,
73 	PD_BUS_SEL_CPLL		= 0,
74 	PD_BUS_SEL_GPLL,
75 
76 	/* pd bus pclk div: pclk = pd_bus_aclk /(div + 1) */
77 	PD_BUS_PCLK_DIV_SHIFT	= 12,
78 	PD_BUS_PCLK_DIV_MASK	= 7 << PD_BUS_PCLK_DIV_SHIFT,
79 
80 	/* pd bus hclk div: aclk_bus: hclk_bus = 1:1 or 2:1 or 4:1 */
81 	PD_BUS_HCLK_DIV_SHIFT	= 8,
82 	PD_BUS_HCLK_DIV_MASK	= 3 << PD_BUS_HCLK_DIV_SHIFT,
83 
84 	/* pd bus aclk div: pd_bus_aclk = pd_bus_src_clk /(div0 * div1) */
85 	PD_BUS_ACLK_DIV0_SHIFT	= 3,
86 	PD_BUS_ACLK_DIV0_MASK	= 0x1f << PD_BUS_ACLK_DIV0_SHIFT,
87 	PD_BUS_ACLK_DIV1_SHIFT	= 0,
88 	PD_BUS_ACLK_DIV1_MASK	= 0x7 << PD_BUS_ACLK_DIV1_SHIFT,
89 
90 	/*
91 	 * CLKSEL10
92 	 * peripheral bus pclk div:
93 	 * aclk_bus: pclk_bus = 1:1 or 2:1 or 4:1 or 8:1
94 	 */
95 	PERI_SEL_PLL_SHIFT	 = 15,
96 	PERI_SEL_PLL_MASK	 = 1 << PERI_SEL_PLL_SHIFT,
97 	PERI_SEL_CPLL		= 0,
98 	PERI_SEL_GPLL,
99 
100 	PERI_PCLK_DIV_SHIFT	= 12,
101 	PERI_PCLK_DIV_MASK	= 3 << PERI_PCLK_DIV_SHIFT,
102 
103 	/* peripheral bus hclk div: aclk_bus: hclk_bus = 1:1 or 2:1 or 4:1 */
104 	PERI_HCLK_DIV_SHIFT	= 8,
105 	PERI_HCLK_DIV_MASK	= 3 << PERI_HCLK_DIV_SHIFT,
106 
107 	/*
108 	 * peripheral bus aclk div:
109 	 *    aclk_periph = periph_clk_src / (peri_aclk_div_con + 1)
110 	 */
111 	PERI_ACLK_DIV_SHIFT	= 0,
112 	PERI_ACLK_DIV_MASK	= 0x1f << PERI_ACLK_DIV_SHIFT,
113 
114 	SOCSTS_DPLL_LOCK	= 1 << 5,
115 	SOCSTS_APLL_LOCK	= 1 << 6,
116 	SOCSTS_CPLL_LOCK	= 1 << 7,
117 	SOCSTS_GPLL_LOCK	= 1 << 8,
118 	SOCSTS_NPLL_LOCK	= 1 << 9,
119 };
120 
121 #define DIV_TO_RATE(input_rate, div)	((input_rate) / ((div) + 1))
122 
123 #define PLL_DIVISORS(hz, _nr, _no) {\
124 	.nr = _nr, .nf = (u32)((u64)hz * _nr * _no / OSC_HZ), .no = _no};\
125 	_Static_assert(((u64)hz * _nr * _no / OSC_HZ) * OSC_HZ /\
126 		       (_nr * _no) == hz, #hz "Hz cannot be hit with PLL "\
127 		       "divisors on line " __stringify(__LINE__));
128 
129 /* Keep divisors as low as possible to reduce jitter and power usage */
130 static const struct pll_div apll_init_cfg = PLL_DIVISORS(APLL_HZ, 1, 1);
131 static const struct pll_div gpll_init_cfg = PLL_DIVISORS(GPLL_HZ, 2, 2);
132 static const struct pll_div cpll_init_cfg = PLL_DIVISORS(CPLL_HZ, 1, 2);
133 
134 static int rkclk_set_pll(struct rk3288_cru *cru, enum rk_clk_id clk_id,
135 			 const struct pll_div *div)
136 {
137 	int pll_id = rk_pll_id(clk_id);
138 	struct rk3288_pll *pll = &cru->pll[pll_id];
139 	/* All PLLs have same VCO and output frequency range restrictions. */
140 	uint vco_hz = OSC_HZ / 1000 * div->nf / div->nr * 1000;
141 	uint output_hz = vco_hz / div->no;
142 
143 	debug("PLL at %x: nf=%d, nr=%d, no=%d, vco=%u Hz, output=%u Hz\n",
144 	      (uint)pll, div->nf, div->nr, div->no, vco_hz, output_hz);
145 	assert(vco_hz >= VCO_MIN_HZ && vco_hz <= VCO_MAX_HZ &&
146 	       output_hz >= OUTPUT_MIN_HZ && output_hz <= OUTPUT_MAX_HZ &&
147 	       (div->no == 1 || !(div->no % 2)));
148 
149 	/* enter reset */
150 	rk_setreg(&pll->con3, 1 << PLL_RESET_SHIFT);
151 
152 	rk_clrsetreg(&pll->con0, CLKR_MASK | PLL_OD_MASK,
153 		     ((div->nr - 1) << CLKR_SHIFT) | (div->no - 1));
154 	rk_clrsetreg(&pll->con1, CLKF_MASK, div->nf - 1);
155 	rk_clrsetreg(&pll->con2, PLL_BWADJ_MASK, (div->nf >> 1) - 1);
156 
157 	udelay(10);
158 
159 	/* return from reset */
160 	rk_clrreg(&pll->con3, 1 << PLL_RESET_SHIFT);
161 
162 	return 0;
163 }
164 
165 static int rkclk_configure_ddr(struct rk3288_cru *cru, struct rk3288_grf *grf,
166 			       unsigned int hz)
167 {
168 	static const struct pll_div dpll_cfg[] = {
169 		{.nf = 25, .nr = 2, .no = 1},
170 		{.nf = 400, .nr = 9, .no = 2},
171 		{.nf = 500, .nr = 9, .no = 2},
172 		{.nf = 100, .nr = 3, .no = 1},
173 	};
174 	int cfg;
175 
176 	switch (hz) {
177 	case 300000000:
178 		cfg = 0;
179 		break;
180 	case 533000000:	/* actually 533.3P MHz */
181 		cfg = 1;
182 		break;
183 	case 666000000:	/* actually 666.6P MHz */
184 		cfg = 2;
185 		break;
186 	case 800000000:
187 		cfg = 3;
188 		break;
189 	default:
190 		debug("Unsupported SDRAM frequency");
191 		return -EINVAL;
192 	}
193 
194 	/* pll enter slow-mode */
195 	rk_clrsetreg(&cru->cru_mode_con, DPLL_MODE_MASK,
196 		     DPLL_MODE_SLOW << DPLL_MODE_SHIFT);
197 
198 	rkclk_set_pll(cru, CLK_DDR, &dpll_cfg[cfg]);
199 
200 	/* wait for pll lock */
201 	while (!(readl(&grf->soc_status[1]) & SOCSTS_DPLL_LOCK))
202 		udelay(1);
203 
204 	/* PLL enter normal-mode */
205 	rk_clrsetreg(&cru->cru_mode_con, DPLL_MODE_MASK,
206 		     DPLL_MODE_NORMAL << DPLL_MODE_SHIFT);
207 
208 	return 0;
209 }
210 
211 #ifndef CONFIG_SPL_BUILD
212 #define VCO_MAX_KHZ	2200000
213 #define VCO_MIN_KHZ	440000
214 #define FREF_MAX_KHZ	2200000
215 #define FREF_MIN_KHZ	269
216 
217 static int pll_para_config(ulong freq_hz, struct pll_div *div, uint *ext_div)
218 {
219 	uint ref_khz = OSC_HZ / 1000, nr, nf = 0;
220 	uint fref_khz;
221 	uint diff_khz, best_diff_khz;
222 	const uint max_nr = 1 << 6, max_nf = 1 << 12, max_no = 1 << 4;
223 	uint vco_khz;
224 	uint no = 1;
225 	uint freq_khz = freq_hz / 1000;
226 
227 	if (!freq_hz) {
228 		printf("%s: the frequency can not be 0 Hz\n", __func__);
229 		return -EINVAL;
230 	}
231 
232 	no = DIV_ROUND_UP(VCO_MIN_KHZ, freq_khz);
233 	if (ext_div) {
234 		*ext_div = DIV_ROUND_UP(no, max_no);
235 		no = DIV_ROUND_UP(no, *ext_div);
236 	}
237 
238 	/* only even divisors (and 1) are supported */
239 	if (no > 1)
240 		no = DIV_ROUND_UP(no, 2) * 2;
241 
242 	vco_khz = freq_khz * no;
243 	if (ext_div)
244 		vco_khz *= *ext_div;
245 
246 	if (vco_khz < VCO_MIN_KHZ || vco_khz > VCO_MAX_KHZ || no > max_no) {
247 		printf("%s: Cannot find out a supported VCO for Frequency (%luHz).\n",
248 		       __func__, freq_hz);
249 		return -1;
250 	}
251 
252 	div->no = no;
253 
254 	best_diff_khz = vco_khz;
255 	for (nr = 1; nr < max_nr && best_diff_khz; nr++) {
256 		fref_khz = ref_khz / nr;
257 		if (fref_khz < FREF_MIN_KHZ)
258 			break;
259 		if (fref_khz > FREF_MAX_KHZ)
260 			continue;
261 
262 		nf = vco_khz / fref_khz;
263 		if (nf >= max_nf)
264 			continue;
265 		diff_khz = vco_khz - nf * fref_khz;
266 		if (nf + 1 < max_nf && diff_khz > fref_khz / 2) {
267 			nf++;
268 			diff_khz = fref_khz - diff_khz;
269 		}
270 
271 		if (diff_khz >= best_diff_khz)
272 			continue;
273 
274 		best_diff_khz = diff_khz;
275 		div->nr = nr;
276 		div->nf = nf;
277 	}
278 
279 	if (best_diff_khz > 4 * 1000) {
280 		printf("%s: Failed to match output frequency %lu, difference is %u Hz, exceed 4MHZ\n",
281 		       __func__, freq_hz, best_diff_khz * 1000);
282 		return -EINVAL;
283 	}
284 
285 	return 0;
286 }
287 
288 static int rockchip_mac_set_clk(struct rk3288_cru *cru,
289 				  int periph, uint freq)
290 {
291 	/* Assuming mac_clk is fed by an external clock */
292 	rk_clrsetreg(&cru->cru_clksel_con[21],
293 		     RMII_EXTCLK_MASK,
294 		     RMII_EXTCLK_SELECT_EXT_CLK << RMII_EXTCLK_SHIFT);
295 
296 	 return 0;
297 }
298 
299 static int rockchip_vop_set_clk(struct rk3288_cru *cru, struct rk3288_grf *grf,
300 				int periph, unsigned int rate_hz)
301 {
302 	struct pll_div npll_config = {0};
303 	u32 lcdc_div;
304 	int ret;
305 
306 	ret = pll_para_config(rate_hz, &npll_config, &lcdc_div);
307 	if (ret)
308 		return ret;
309 
310 	rk_clrsetreg(&cru->cru_mode_con, NPLL_MODE_MASK,
311 		     NPLL_MODE_SLOW << NPLL_MODE_SHIFT);
312 	rkclk_set_pll(cru, CLK_NEW, &npll_config);
313 
314 	/* waiting for pll lock */
315 	while (1) {
316 		if (readl(&grf->soc_status[1]) & SOCSTS_NPLL_LOCK)
317 			break;
318 		udelay(1);
319 	}
320 
321 	rk_clrsetreg(&cru->cru_mode_con, NPLL_MODE_MASK,
322 		     NPLL_MODE_NORMAL << NPLL_MODE_SHIFT);
323 
324 	/* vop dclk source clk: npll,dclk_div: 1 */
325 	switch (periph) {
326 	case DCLK_VOP0:
327 		rk_clrsetreg(&cru->cru_clksel_con[27], 0xff << 8 | 3 << 0,
328 			     (lcdc_div - 1) << 8 | 2 << 0);
329 		break;
330 	case DCLK_VOP1:
331 		rk_clrsetreg(&cru->cru_clksel_con[29], 0xff << 8 | 3 << 6,
332 			     (lcdc_div - 1) << 8 | 2 << 6);
333 		break;
334 	}
335 
336 	return 0;
337 }
338 #endif /* CONFIG_SPL_BUILD */
339 
340 static void rkclk_init(struct rk3288_cru *cru, struct rk3288_grf *grf)
341 {
342 	u32 aclk_div;
343 	u32 hclk_div;
344 	u32 pclk_div;
345 
346 	/* pll enter slow-mode */
347 	rk_clrsetreg(&cru->cru_mode_con,
348 		     GPLL_MODE_MASK | CPLL_MODE_MASK,
349 		     GPLL_MODE_SLOW << GPLL_MODE_SHIFT |
350 		     CPLL_MODE_SLOW << CPLL_MODE_SHIFT);
351 
352 	/* init pll */
353 	rkclk_set_pll(cru, CLK_GENERAL, &gpll_init_cfg);
354 	rkclk_set_pll(cru, CLK_CODEC, &cpll_init_cfg);
355 
356 	/* waiting for pll lock */
357 	while ((readl(&grf->soc_status[1]) &
358 			(SOCSTS_CPLL_LOCK | SOCSTS_GPLL_LOCK)) !=
359 			(SOCSTS_CPLL_LOCK | SOCSTS_GPLL_LOCK))
360 		udelay(1);
361 
362 	/*
363 	 * pd_bus clock pll source selection and
364 	 * set up dependent divisors for PCLK/HCLK and ACLK clocks.
365 	 */
366 	aclk_div = GPLL_HZ / PD_BUS_ACLK_HZ - 1;
367 	assert((aclk_div + 1) * PD_BUS_ACLK_HZ == GPLL_HZ && aclk_div < 0x1f);
368 	hclk_div = PD_BUS_ACLK_HZ / PD_BUS_HCLK_HZ - 1;
369 	assert((hclk_div + 1) * PD_BUS_HCLK_HZ ==
370 		PD_BUS_ACLK_HZ && (hclk_div < 0x4) && (hclk_div != 0x2));
371 
372 	pclk_div = PD_BUS_ACLK_HZ / PD_BUS_PCLK_HZ - 1;
373 	assert((pclk_div + 1) * PD_BUS_PCLK_HZ ==
374 		PD_BUS_ACLK_HZ && pclk_div < 0x7);
375 
376 	rk_clrsetreg(&cru->cru_clksel_con[1],
377 		     PD_BUS_PCLK_DIV_MASK | PD_BUS_HCLK_DIV_MASK |
378 		     PD_BUS_ACLK_DIV0_MASK | PD_BUS_ACLK_DIV1_MASK,
379 		     pclk_div << PD_BUS_PCLK_DIV_SHIFT |
380 		     hclk_div << PD_BUS_HCLK_DIV_SHIFT |
381 		     aclk_div << PD_BUS_ACLK_DIV0_SHIFT |
382 		     0 << 0);
383 
384 	/*
385 	 * peri clock pll source selection and
386 	 * set up dependent divisors for PCLK/HCLK and ACLK clocks.
387 	 */
388 	aclk_div = GPLL_HZ / PERI_ACLK_HZ - 1;
389 	assert((aclk_div + 1) * PERI_ACLK_HZ == GPLL_HZ && aclk_div < 0x1f);
390 
391 	hclk_div = ilog2(PERI_ACLK_HZ / PERI_HCLK_HZ);
392 	assert((1 << hclk_div) * PERI_HCLK_HZ ==
393 		PERI_ACLK_HZ && (hclk_div < 0x4));
394 
395 	pclk_div = ilog2(PERI_ACLK_HZ / PERI_PCLK_HZ);
396 	assert((1 << pclk_div) * PERI_PCLK_HZ ==
397 		PERI_ACLK_HZ && (pclk_div < 0x4));
398 
399 	rk_clrsetreg(&cru->cru_clksel_con[10],
400 		     PERI_PCLK_DIV_MASK | PERI_HCLK_DIV_MASK |
401 		     PERI_ACLK_DIV_MASK,
402 		     PERI_SEL_GPLL << PERI_SEL_PLL_SHIFT |
403 		     pclk_div << PERI_PCLK_DIV_SHIFT |
404 		     hclk_div << PERI_HCLK_DIV_SHIFT |
405 		     aclk_div << PERI_ACLK_DIV_SHIFT);
406 
407 	/* PLL enter normal-mode */
408 	rk_clrsetreg(&cru->cru_mode_con,
409 		     GPLL_MODE_MASK | CPLL_MODE_MASK,
410 		     GPLL_MODE_NORMAL << GPLL_MODE_SHIFT |
411 		     CPLL_MODE_NORMAL << CPLL_MODE_SHIFT);
412 }
413 
414 void rk3288_clk_configure_cpu(struct rk3288_cru *cru, struct rk3288_grf *grf)
415 {
416 	/* pll enter slow-mode */
417 	rk_clrsetreg(&cru->cru_mode_con, APLL_MODE_MASK,
418 		     APLL_MODE_SLOW << APLL_MODE_SHIFT);
419 
420 	rkclk_set_pll(cru, CLK_ARM, &apll_init_cfg);
421 
422 	/* waiting for pll lock */
423 	while (!(readl(&grf->soc_status[1]) & SOCSTS_APLL_LOCK))
424 		udelay(1);
425 
426 	/*
427 	 * core clock pll source selection and
428 	 * set up dependent divisors for MPAXI/M0AXI and ARM clocks.
429 	 * core clock select apll, apll clk = 1800MHz
430 	 * arm clk = 1800MHz, mpclk = 450MHz, m0clk = 900MHz
431 	 */
432 	rk_clrsetreg(&cru->cru_clksel_con[0],
433 		     CORE_SEL_PLL_MASK | A17_DIV_MASK | MP_DIV_MASK |
434 		     M0_DIV_MASK,
435 		     0 << A17_DIV_SHIFT |
436 		     3 << MP_DIV_SHIFT |
437 		     1 << M0_DIV_SHIFT);
438 
439 	/*
440 	 * set up dependent divisors for L2RAM/ATCLK and PCLK clocks.
441 	 * l2ramclk = 900MHz, atclk = 450MHz, pclk_dbg = 450MHz
442 	 */
443 	rk_clrsetreg(&cru->cru_clksel_con[37],
444 		     CLK_L2RAM_DIV_MASK | ATCLK_CORE_DIV_CON_MASK |
445 		     PCLK_CORE_DBG_DIV_MASK,
446 		     1 << CLK_L2RAM_DIV_SHIFT |
447 		     3 << ATCLK_CORE_DIV_CON_SHIFT |
448 		     3 << PCLK_CORE_DBG_DIV_SHIFT);
449 
450 	/* PLL enter normal-mode */
451 	rk_clrsetreg(&cru->cru_mode_con, APLL_MODE_MASK,
452 		     APLL_MODE_NORMAL << APLL_MODE_SHIFT);
453 }
454 
455 /* Get pll rate by id */
456 static uint32_t rkclk_pll_get_rate(struct rk3288_cru *cru,
457 				   enum rk_clk_id clk_id)
458 {
459 	uint32_t nr, no, nf;
460 	uint32_t con;
461 	int pll_id = rk_pll_id(clk_id);
462 	struct rk3288_pll *pll = &cru->pll[pll_id];
463 	static u8 clk_shift[CLK_COUNT] = {
464 		0xff, APLL_MODE_SHIFT, DPLL_MODE_SHIFT, CPLL_MODE_SHIFT,
465 		GPLL_MODE_SHIFT, NPLL_MODE_SHIFT
466 	};
467 	uint shift;
468 
469 	con = readl(&cru->cru_mode_con);
470 	shift = clk_shift[clk_id];
471 	switch ((con >> shift) & CRU_MODE_MASK) {
472 	case APLL_MODE_SLOW:
473 		return OSC_HZ;
474 	case APLL_MODE_NORMAL:
475 		/* normal mode */
476 		con = readl(&pll->con0);
477 		no = ((con & CLKOD_MASK) >> CLKOD_SHIFT) + 1;
478 		nr = ((con & CLKR_MASK) >> CLKR_SHIFT) + 1;
479 		con = readl(&pll->con1);
480 		nf = ((con & CLKF_MASK) >> CLKF_SHIFT) + 1;
481 
482 		return (24 * nf / (nr * no)) * 1000000;
483 	case APLL_MODE_DEEP:
484 	default:
485 		return 32768;
486 	}
487 }
488 
489 static ulong rockchip_mmc_get_clk(struct rk3288_cru *cru, uint gclk_rate,
490 				  int periph)
491 {
492 	uint src_rate;
493 	uint div, mux;
494 	u32 con;
495 
496 	switch (periph) {
497 	case HCLK_EMMC:
498 	case SCLK_EMMC:
499 		con = readl(&cru->cru_clksel_con[12]);
500 		mux = (con & EMMC_PLL_MASK) >> EMMC_PLL_SHIFT;
501 		div = (con & EMMC_DIV_MASK) >> EMMC_DIV_SHIFT;
502 		break;
503 	case HCLK_SDMMC:
504 	case SCLK_SDMMC:
505 		con = readl(&cru->cru_clksel_con[11]);
506 		mux = (con & MMC0_PLL_MASK) >> MMC0_PLL_SHIFT;
507 		div = (con & MMC0_DIV_MASK) >> MMC0_DIV_SHIFT;
508 		break;
509 	case HCLK_SDIO0:
510 	case SCLK_SDIO0:
511 		con = readl(&cru->cru_clksel_con[12]);
512 		mux = (con & SDIO0_PLL_MASK) >> SDIO0_PLL_SHIFT;
513 		div = (con & SDIO0_DIV_MASK) >> SDIO0_DIV_SHIFT;
514 		break;
515 	default:
516 		return -EINVAL;
517 	}
518 
519 	src_rate = mux == EMMC_PLL_SELECT_24MHZ ? OSC_HZ : gclk_rate;
520 	return DIV_TO_RATE(src_rate, div);
521 }
522 
523 static ulong rockchip_mmc_set_clk(struct rk3288_cru *cru, uint gclk_rate,
524 				  int  periph, uint freq)
525 {
526 	int src_clk_div;
527 	int mux;
528 
529 	debug("%s: gclk_rate=%u\n", __func__, gclk_rate);
530 	/* mmc clock default div 2 internal, need provide double in cru */
531 	src_clk_div = DIV_ROUND_UP(gclk_rate / 2, freq);
532 
533 	if (src_clk_div > 0x3f) {
534 		src_clk_div = DIV_ROUND_UP(OSC_HZ / 2, freq);
535 		assert(src_clk_div < 0x40);
536 		mux = EMMC_PLL_SELECT_24MHZ;
537 		assert((int)EMMC_PLL_SELECT_24MHZ ==
538 		       (int)MMC0_PLL_SELECT_24MHZ);
539 	} else {
540 		mux = EMMC_PLL_SELECT_GENERAL;
541 		assert((int)EMMC_PLL_SELECT_GENERAL ==
542 		       (int)MMC0_PLL_SELECT_GENERAL);
543 	}
544 	switch (periph) {
545 	case HCLK_EMMC:
546 	case SCLK_EMMC:
547 		rk_clrsetreg(&cru->cru_clksel_con[12],
548 			     EMMC_PLL_MASK | EMMC_DIV_MASK,
549 			     mux << EMMC_PLL_SHIFT |
550 			     (src_clk_div - 1) << EMMC_DIV_SHIFT);
551 		break;
552 	case HCLK_SDMMC:
553 	case SCLK_SDMMC:
554 		rk_clrsetreg(&cru->cru_clksel_con[11],
555 			     MMC0_PLL_MASK | MMC0_DIV_MASK,
556 			     mux << MMC0_PLL_SHIFT |
557 			     (src_clk_div - 1) << MMC0_DIV_SHIFT);
558 		break;
559 	case HCLK_SDIO0:
560 	case SCLK_SDIO0:
561 		rk_clrsetreg(&cru->cru_clksel_con[12],
562 			     SDIO0_PLL_MASK | SDIO0_DIV_MASK,
563 			     mux << SDIO0_PLL_SHIFT |
564 			     (src_clk_div - 1) << SDIO0_DIV_SHIFT);
565 		break;
566 	default:
567 		return -EINVAL;
568 	}
569 
570 	return rockchip_mmc_get_clk(cru, gclk_rate, periph);
571 }
572 
573 static ulong rockchip_spi_get_clk(struct rk3288_cru *cru, uint gclk_rate,
574 				  int periph)
575 {
576 	uint div, mux;
577 	u32 con;
578 
579 	switch (periph) {
580 	case SCLK_SPI0:
581 		con = readl(&cru->cru_clksel_con[25]);
582 		mux = (con & SPI0_PLL_MASK) >> SPI0_PLL_SHIFT;
583 		div = (con & SPI0_DIV_MASK) >> SPI0_DIV_SHIFT;
584 		break;
585 	case SCLK_SPI1:
586 		con = readl(&cru->cru_clksel_con[25]);
587 		mux = (con & SPI1_PLL_MASK) >> SPI1_PLL_SHIFT;
588 		div = (con & SPI1_DIV_MASK) >> SPI1_DIV_SHIFT;
589 		break;
590 	case SCLK_SPI2:
591 		con = readl(&cru->cru_clksel_con[39]);
592 		mux = (con & SPI2_PLL_MASK) >> SPI2_PLL_SHIFT;
593 		div = (con & SPI2_DIV_MASK) >> SPI2_DIV_SHIFT;
594 		break;
595 	default:
596 		return -EINVAL;
597 	}
598 	assert(mux == SPI0_PLL_SELECT_GENERAL);
599 
600 	return DIV_TO_RATE(gclk_rate, div);
601 }
602 
603 static ulong rockchip_spi_set_clk(struct rk3288_cru *cru, uint gclk_rate,
604 				  int periph, uint freq)
605 {
606 	int src_clk_div;
607 
608 	debug("%s: clk_general_rate=%u\n", __func__, gclk_rate);
609 	src_clk_div = DIV_ROUND_UP(gclk_rate, freq) - 1;
610 	assert(src_clk_div < 128);
611 	switch (periph) {
612 	case SCLK_SPI0:
613 		rk_clrsetreg(&cru->cru_clksel_con[25],
614 			     SPI0_PLL_MASK | SPI0_DIV_MASK,
615 			     SPI0_PLL_SELECT_GENERAL << SPI0_PLL_SHIFT |
616 			     src_clk_div << SPI0_DIV_SHIFT);
617 		break;
618 	case SCLK_SPI1:
619 		rk_clrsetreg(&cru->cru_clksel_con[25],
620 			     SPI1_PLL_MASK | SPI1_DIV_MASK,
621 			     SPI1_PLL_SELECT_GENERAL << SPI1_PLL_SHIFT |
622 			     src_clk_div << SPI1_DIV_SHIFT);
623 		break;
624 	case SCLK_SPI2:
625 		rk_clrsetreg(&cru->cru_clksel_con[39],
626 			     SPI2_PLL_MASK | SPI2_DIV_MASK,
627 			     SPI2_PLL_SELECT_GENERAL << SPI2_PLL_SHIFT |
628 			     src_clk_div << SPI2_DIV_SHIFT);
629 		break;
630 	default:
631 		return -EINVAL;
632 	}
633 
634 	return rockchip_spi_get_clk(cru, gclk_rate, periph);
635 }
636 
637 static ulong rk3288_clk_get_rate(struct clk *clk)
638 {
639 	struct rk3288_clk_priv *priv = dev_get_priv(clk->dev);
640 	ulong new_rate, gclk_rate;
641 
642 	gclk_rate = rkclk_pll_get_rate(priv->cru, CLK_GENERAL);
643 	switch (clk->id) {
644 	case 0 ... 63:
645 		new_rate = rkclk_pll_get_rate(priv->cru, clk->id);
646 		break;
647 	case HCLK_EMMC:
648 	case HCLK_SDMMC:
649 	case HCLK_SDIO0:
650 	case SCLK_EMMC:
651 	case SCLK_SDMMC:
652 	case SCLK_SDIO0:
653 		new_rate = rockchip_mmc_get_clk(priv->cru, gclk_rate, clk->id);
654 		break;
655 	case SCLK_SPI0:
656 	case SCLK_SPI1:
657 	case SCLK_SPI2:
658 		new_rate = rockchip_spi_get_clk(priv->cru, gclk_rate, clk->id);
659 		break;
660 	case PCLK_I2C0:
661 	case PCLK_I2C1:
662 	case PCLK_I2C2:
663 	case PCLK_I2C3:
664 	case PCLK_I2C4:
665 	case PCLK_I2C5:
666 		return gclk_rate;
667 	case PCLK_PWM:
668 		return PD_BUS_PCLK_HZ;
669 	default:
670 		return -ENOENT;
671 	}
672 
673 	return new_rate;
674 }
675 
676 static ulong rk3288_clk_set_rate(struct clk *clk, ulong rate)
677 {
678 	struct rk3288_clk_priv *priv = dev_get_priv(clk->dev);
679 	struct rk3288_cru *cru = priv->cru;
680 	ulong new_rate, gclk_rate;
681 
682 	gclk_rate = rkclk_pll_get_rate(priv->cru, CLK_GENERAL);
683 	switch (clk->id) {
684 	case PLL_APLL:
685 		/* We only support a fixed rate here */
686 		if (rate != 1800000000)
687 			return -EINVAL;
688 		rk3288_clk_configure_cpu(priv->cru, priv->grf);
689 		new_rate = rate;
690 		break;
691 	case CLK_DDR:
692 		new_rate = rkclk_configure_ddr(priv->cru, priv->grf, rate);
693 		break;
694 	case HCLK_EMMC:
695 	case HCLK_SDMMC:
696 	case HCLK_SDIO0:
697 	case SCLK_EMMC:
698 	case SCLK_SDMMC:
699 	case SCLK_SDIO0:
700 		new_rate = rockchip_mmc_set_clk(cru, gclk_rate, clk->id, rate);
701 		break;
702 	case SCLK_SPI0:
703 	case SCLK_SPI1:
704 	case SCLK_SPI2:
705 		new_rate = rockchip_spi_set_clk(cru, gclk_rate, clk->id, rate);
706 		break;
707 #ifndef CONFIG_SPL_BUILD
708 	case SCLK_MAC:
709 		new_rate = rockchip_mac_set_clk(priv->cru, clk->id, rate);
710 		break;
711 	case DCLK_VOP0:
712 	case DCLK_VOP1:
713 		new_rate = rockchip_vop_set_clk(cru, priv->grf, clk->id, rate);
714 		break;
715 	case SCLK_EDP_24M:
716 		/* clk_edp_24M source: 24M */
717 		rk_setreg(&cru->cru_clksel_con[28], 1 << 15);
718 
719 		/* rst edp */
720 		rk_setreg(&cru->cru_clksel_con[6], 1 << 15);
721 		udelay(1);
722 		rk_clrreg(&cru->cru_clksel_con[6], 1 << 15);
723 		new_rate = rate;
724 		break;
725 	case ACLK_VOP0:
726 	case ACLK_VOP1: {
727 		u32 div;
728 
729 		/* vop aclk source clk: cpll */
730 		div = CPLL_HZ / rate;
731 		assert((div - 1 < 64) && (div * rate == CPLL_HZ));
732 
733 		switch (clk->id) {
734 		case ACLK_VOP0:
735 			rk_clrsetreg(&cru->cru_clksel_con[31],
736 				     3 << 6 | 0x1f << 0,
737 				     0 << 6 | (div - 1) << 0);
738 			break;
739 		case ACLK_VOP1:
740 			rk_clrsetreg(&cru->cru_clksel_con[31],
741 				     3 << 14 | 0x1f << 8,
742 				     0 << 14 | (div - 1) << 8);
743 			break;
744 		}
745 		new_rate = rate;
746 		break;
747 	}
748 	case PCLK_HDMI_CTRL:
749 		/* enable pclk hdmi ctrl */
750 		rk_clrreg(&cru->cru_clkgate_con[16], 1 << 9);
751 
752 		/* software reset hdmi */
753 		rk_setreg(&cru->cru_clkgate_con[7], 1 << 9);
754 		udelay(1);
755 		rk_clrreg(&cru->cru_clkgate_con[7], 1 << 9);
756 		new_rate = rate;
757 		break;
758 #endif
759 	default:
760 		return -ENOENT;
761 	}
762 
763 	return new_rate;
764 }
765 
766 static struct clk_ops rk3288_clk_ops = {
767 	.get_rate	= rk3288_clk_get_rate,
768 	.set_rate	= rk3288_clk_set_rate,
769 };
770 
771 static int rk3288_clk_ofdata_to_platdata(struct udevice *dev)
772 {
773 #if !CONFIG_IS_ENABLED(OF_PLATDATA)
774 	struct rk3288_clk_priv *priv = dev_get_priv(dev);
775 
776 	priv->cru = (struct rk3288_cru *)devfdt_get_addr(dev);
777 #endif
778 
779 	return 0;
780 }
781 
782 static int rk3288_clk_probe(struct udevice *dev)
783 {
784 	struct rk3288_clk_priv *priv = dev_get_priv(dev);
785 	bool init_clocks = false;
786 
787 	priv->grf = syscon_get_first_range(ROCKCHIP_SYSCON_GRF);
788 	if (IS_ERR(priv->grf))
789 		return PTR_ERR(priv->grf);
790 #ifdef CONFIG_SPL_BUILD
791 #if CONFIG_IS_ENABLED(OF_PLATDATA)
792 	struct rk3288_clk_plat *plat = dev_get_platdata(dev);
793 
794 	priv->cru = map_sysmem(plat->dtd.reg[0], plat->dtd.reg[1]);
795 #endif
796 	init_clocks = true;
797 #endif
798 	if (!(gd->flags & GD_FLG_RELOC)) {
799 		u32 reg;
800 
801 		/*
802 		 * Init clocks in U-Boot proper if the NPLL is runnning. This
803 		 * indicates that a previous boot loader set up the clocks, so
804 		 * we need to redo it. U-Boot's SPL does not set this clock.
805 		 */
806 		reg = readl(&priv->cru->cru_mode_con);
807 		if (((reg & NPLL_MODE_MASK) >> NPLL_MODE_SHIFT) ==
808 				NPLL_MODE_NORMAL)
809 			init_clocks = true;
810 	}
811 
812 	if (init_clocks)
813 		rkclk_init(priv->cru, priv->grf);
814 
815 	return 0;
816 }
817 
818 static int rk3288_clk_bind(struct udevice *dev)
819 {
820 	int ret;
821 
822 	/* The reset driver does not have a device node, so bind it here */
823 	ret = device_bind_driver(gd->dm_root, "rk3288_sysreset", "reset", &dev);
824 	if (ret)
825 		debug("Warning: No RK3288 reset driver: ret=%d\n", ret);
826 
827 	return 0;
828 }
829 
830 static const struct udevice_id rk3288_clk_ids[] = {
831 	{ .compatible = "rockchip,rk3288-cru" },
832 	{ }
833 };
834 
835 U_BOOT_DRIVER(rockchip_rk3288_cru) = {
836 	.name		= "rockchip_rk3288_cru",
837 	.id		= UCLASS_CLK,
838 	.of_match	= rk3288_clk_ids,
839 	.priv_auto_alloc_size = sizeof(struct rk3288_clk_priv),
840 	.platdata_auto_alloc_size = sizeof(struct rk3288_clk_plat),
841 	.ops		= &rk3288_clk_ops,
842 	.bind		= rk3288_clk_bind,
843 	.ofdata_to_platdata	= rk3288_clk_ofdata_to_platdata,
844 	.probe		= rk3288_clk_probe,
845 };
846