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1 /*
2  * Copyright (C) 2010 Samsung Electronics
3  * Minkyu Kang <mk7.kang@samsung.com>
4  *
5  * SPDX-License-Identifier:     GPL-2.0+
6  */
7
8 #include <common.h>
9 #include <asm/io.h>
10 #include <asm/arch/clock.h>
11 #include <asm/arch/clk.h>
12 #include <asm/arch/periph.h>
13
14 #define PLL_DIV_1024    1024
15 #define PLL_DIV_65535   65535
16 #define PLL_DIV_65536   65536
17
18 /* *
19  * This structure is to store the src bit, div bit and prediv bit
20  * positions of the peripheral clocks of the src and div registers
21  */
22 struct clk_bit_info {
23         int8_t src_bit;
24         int8_t div_bit;
25         int8_t prediv_bit;
26 };
27
28 /* src_bit div_bit prediv_bit */
29 static struct clk_bit_info clk_bit_info[] = {
30         {0,     0,      -1},
31         {4,     4,      -1},
32         {8,     8,      -1},
33         {12,    12,     -1},
34         {0,     0,      8},
35         {4,     16,     24},
36         {8,     0,      8},
37         {12,    16,     24},
38         {-1,    -1,     -1},
39         {16,    0,      8},
40         {20,    16,     24},
41         {24,    0,      8},
42         {0,     0,      4},
43         {4,     12,     16},
44         {-1,    -1,     -1},
45         {-1,    -1,     -1},
46         {-1,    24,     0},
47         {-1,    24,     0},
48         {-1,    24,     0},
49         {-1,    24,     0},
50         {-1,    24,     0},
51         {-1,    24,     0},
52         {-1,    24,     0},
53         {-1,    24,     0},
54         {24,    0,      -1},
55         {24,    0,      -1},
56         {24,    0,      -1},
57         {24,    0,      -1},
58         {24,    0,      -1},
59 };
60
61 /* Epll Clock division values to achive different frequency output */
62 static struct set_epll_con_val exynos5_epll_div[] = {
63         { 192000000, 0, 48, 3, 1, 0 },
64         { 180000000, 0, 45, 3, 1, 0 },
65         {  73728000, 1, 73, 3, 3, 47710 },
66         {  67737600, 1, 90, 4, 3, 20762 },
67         {  49152000, 0, 49, 3, 3, 9961 },
68         {  45158400, 0, 45, 3, 3, 10381 },
69         { 180633600, 0, 45, 3, 1, 10381 }
70 };
71
72 /* exynos: return pll clock frequency */
73 static int exynos_get_pll_clk(int pllreg, unsigned int r, unsigned int k)
74 {
75         unsigned long m, p, s = 0, mask, fout;
76         unsigned int div;
77         unsigned int freq;
78         /*
79          * APLL_CON: MIDV [25:16]
80          * MPLL_CON: MIDV [25:16]
81          * EPLL_CON: MIDV [24:16]
82          * VPLL_CON: MIDV [24:16]
83          * BPLL_CON: MIDV [25:16]: Exynos5
84          */
85         if (pllreg == APLL || pllreg == MPLL || pllreg == BPLL)
86                 mask = 0x3ff;
87         else
88                 mask = 0x1ff;
89
90         m = (r >> 16) & mask;
91
92         /* PDIV [13:8] */
93         p = (r >> 8) & 0x3f;
94         /* SDIV [2:0] */
95         s = r & 0x7;
96
97         freq = CONFIG_SYS_CLK_FREQ;
98
99         if (pllreg == EPLL || pllreg == RPLL) {
100                 k = k & 0xffff;
101                 /* FOUT = (MDIV + K / 65536) * FIN / (PDIV * 2^SDIV) */
102                 fout = (m + k / PLL_DIV_65536) * (freq / (p * (1 << s)));
103         } else if (pllreg == VPLL) {
104                 k = k & 0xfff;
105
106                 /*
107                  * Exynos4210
108                  * FOUT = (MDIV + K / 1024) * FIN / (PDIV * 2^SDIV)
109                  *
110                  * Exynos4412
111                  * FOUT = (MDIV + K / 65535) * FIN / (PDIV * 2^SDIV)
112                  *
113                  * Exynos5250
114                  * FOUT = (MDIV + K / 65536) * FIN / (PDIV * 2^SDIV)
115                  */
116                 if (proid_is_exynos4210())
117                         div = PLL_DIV_1024;
118                 else if (proid_is_exynos4412())
119                         div = PLL_DIV_65535;
120                 else if (proid_is_exynos5250() || proid_is_exynos5420())
121                         div = PLL_DIV_65536;
122                 else
123                         return 0;
124
125                 fout = (m + k / div) * (freq / (p * (1 << s)));
126         } else {
127                 /*
128                  * Exynos4412 / Exynos5250
129                  * FOUT = MDIV * FIN / (PDIV * 2^SDIV)
130                  *
131                  * Exynos4210
132                  * FOUT = MDIV * FIN / (PDIV * 2^(SDIV-1))
133                  */
134                 if (proid_is_exynos4210())
135                         fout = m * (freq / (p * (1 << (s - 1))));
136                 else
137                         fout = m * (freq / (p * (1 << s)));
138         }
139         return fout;
140 }
141
142 /* exynos4: return pll clock frequency */
143 static unsigned long exynos4_get_pll_clk(int pllreg)
144 {
145         struct exynos4_clock *clk =
146                 (struct exynos4_clock *)samsung_get_base_clock();
147         unsigned long r, k = 0;
148
149         switch (pllreg) {
150         case APLL:
151                 r = readl(&clk->apll_con0);
152                 break;
153         case MPLL:
154                 r = readl(&clk->mpll_con0);
155                 break;
156         case EPLL:
157                 r = readl(&clk->epll_con0);
158                 k = readl(&clk->epll_con1);
159                 break;
160         case VPLL:
161                 r = readl(&clk->vpll_con0);
162                 k = readl(&clk->vpll_con1);
163                 break;
164         default:
165                 printf("Unsupported PLL (%d)\n", pllreg);
166                 return 0;
167         }
168
169         return exynos_get_pll_clk(pllreg, r, k);
170 }
171
172 /* exynos4x12: return pll clock frequency */
173 static unsigned long exynos4x12_get_pll_clk(int pllreg)
174 {
175         struct exynos4x12_clock *clk =
176                 (struct exynos4x12_clock *)samsung_get_base_clock();
177         unsigned long r, k = 0;
178
179         switch (pllreg) {
180         case APLL:
181                 r = readl(&clk->apll_con0);
182                 break;
183         case MPLL:
184                 r = readl(&clk->mpll_con0);
185                 break;
186         case EPLL:
187                 r = readl(&clk->epll_con0);
188                 k = readl(&clk->epll_con1);
189                 break;
190         case VPLL:
191                 r = readl(&clk->vpll_con0);
192                 k = readl(&clk->vpll_con1);
193                 break;
194         default:
195                 printf("Unsupported PLL (%d)\n", pllreg);
196                 return 0;
197         }
198
199         return exynos_get_pll_clk(pllreg, r, k);
200 }
201
202 /* exynos5: return pll clock frequency */
203 static unsigned long exynos5_get_pll_clk(int pllreg)
204 {
205         struct exynos5_clock *clk =
206                 (struct exynos5_clock *)samsung_get_base_clock();
207         unsigned long r, k = 0, fout;
208         unsigned int pll_div2_sel, fout_sel;
209
210         switch (pllreg) {
211         case APLL:
212                 r = readl(&clk->apll_con0);
213                 break;
214         case MPLL:
215                 r = readl(&clk->mpll_con0);
216                 break;
217         case EPLL:
218                 r = readl(&clk->epll_con0);
219                 k = readl(&clk->epll_con1);
220                 break;
221         case VPLL:
222                 r = readl(&clk->vpll_con0);
223                 k = readl(&clk->vpll_con1);
224                 break;
225         case BPLL:
226                 r = readl(&clk->bpll_con0);
227                 break;
228         default:
229                 printf("Unsupported PLL (%d)\n", pllreg);
230                 return 0;
231         }
232
233         fout = exynos_get_pll_clk(pllreg, r, k);
234
235         /* According to the user manual, in EVT1 MPLL and BPLL always gives
236          * 1.6GHz clock, so divide by 2 to get 800MHz MPLL clock.*/
237         if (pllreg == MPLL || pllreg == BPLL) {
238                 pll_div2_sel = readl(&clk->pll_div2_sel);
239
240                 switch (pllreg) {
241                 case MPLL:
242                         fout_sel = (pll_div2_sel >> MPLL_FOUT_SEL_SHIFT)
243                                         & MPLL_FOUT_SEL_MASK;
244                         break;
245                 case BPLL:
246                         fout_sel = (pll_div2_sel >> BPLL_FOUT_SEL_SHIFT)
247                                         & BPLL_FOUT_SEL_MASK;
248                         break;
249                 default:
250                         fout_sel = -1;
251                         break;
252                 }
253
254                 if (fout_sel == 0)
255                         fout /= 2;
256         }
257
258         return fout;
259 }
260
261 static unsigned long exynos5_get_periph_rate(int peripheral)
262 {
263         struct clk_bit_info *bit_info = &clk_bit_info[peripheral];
264         unsigned long sclk, sub_clk;
265         unsigned int src, div, sub_div;
266         struct exynos5_clock *clk =
267                         (struct exynos5_clock *)samsung_get_base_clock();
268
269         switch (peripheral) {
270         case PERIPH_ID_UART0:
271         case PERIPH_ID_UART1:
272         case PERIPH_ID_UART2:
273         case PERIPH_ID_UART3:
274                 src = readl(&clk->src_peric0);
275                 div = readl(&clk->div_peric0);
276                 break;
277         case PERIPH_ID_PWM0:
278         case PERIPH_ID_PWM1:
279         case PERIPH_ID_PWM2:
280         case PERIPH_ID_PWM3:
281         case PERIPH_ID_PWM4:
282                 src = readl(&clk->src_peric0);
283                 div = readl(&clk->div_peric3);
284                 break;
285         case PERIPH_ID_I2S0:
286                 src = readl(&clk->src_mau);
287                 div = readl(&clk->div_mau);
288         case PERIPH_ID_SPI0:
289         case PERIPH_ID_SPI1:
290                 src = readl(&clk->src_peric1);
291                 div = readl(&clk->div_peric1);
292                 break;
293         case PERIPH_ID_SPI2:
294                 src = readl(&clk->src_peric1);
295                 div = readl(&clk->div_peric2);
296                 break;
297         case PERIPH_ID_SPI3:
298         case PERIPH_ID_SPI4:
299                 src = readl(&clk->sclk_src_isp);
300                 div = readl(&clk->sclk_div_isp);
301                 break;
302         case PERIPH_ID_SDMMC0:
303         case PERIPH_ID_SDMMC1:
304         case PERIPH_ID_SDMMC2:
305         case PERIPH_ID_SDMMC3:
306                 src = readl(&clk->src_fsys);
307                 div = readl(&clk->div_fsys1);
308                 break;
309         case PERIPH_ID_I2C0:
310         case PERIPH_ID_I2C1:
311         case PERIPH_ID_I2C2:
312         case PERIPH_ID_I2C3:
313         case PERIPH_ID_I2C4:
314         case PERIPH_ID_I2C5:
315         case PERIPH_ID_I2C6:
316         case PERIPH_ID_I2C7:
317                 sclk = exynos5_get_pll_clk(MPLL);
318                 sub_div = ((readl(&clk->div_top1) >> bit_info->div_bit)
319                                                                 & 0x7) + 1;
320                 div = ((readl(&clk->div_top0) >> bit_info->prediv_bit)
321                                                                 & 0x7) + 1;
322                 return (sclk / sub_div) / div;
323         default:
324                 debug("%s: invalid peripheral %d", __func__, peripheral);
325                 return -1;
326         };
327
328         src = (src >> bit_info->src_bit) & 0xf;
329
330         switch (src) {
331         case EXYNOS_SRC_MPLL:
332                 sclk = exynos5_get_pll_clk(MPLL);
333                 break;
334         case EXYNOS_SRC_EPLL:
335                 sclk = exynos5_get_pll_clk(EPLL);
336                 break;
337         case EXYNOS_SRC_VPLL:
338                 sclk = exynos5_get_pll_clk(VPLL);
339                 break;
340         default:
341                 return 0;
342         }
343
344         /* Ratio clock division for this peripheral */
345         sub_div = (div >> bit_info->div_bit) & 0xf;
346         sub_clk = sclk / (sub_div + 1);
347
348         /* Pre-ratio clock division for SDMMC0 and 2 */
349         if (peripheral == PERIPH_ID_SDMMC0 || peripheral == PERIPH_ID_SDMMC2) {
350                 div = (div >> bit_info->prediv_bit) & 0xff;
351                 return sub_clk / (div + 1);
352         }
353
354         return sub_clk;
355 }
356
357 unsigned long clock_get_periph_rate(int peripheral)
358 {
359         if (cpu_is_exynos5())
360                 return exynos5_get_periph_rate(peripheral);
361         else
362                 return 0;
363 }
364
365 /* exynos5420: return pll clock frequency */
366 static unsigned long exynos5420_get_pll_clk(int pllreg)
367 {
368         struct exynos5420_clock *clk =
369                 (struct exynos5420_clock *)samsung_get_base_clock();
370         unsigned long r, k = 0;
371
372         switch (pllreg) {
373         case APLL:
374                 r = readl(&clk->apll_con0);
375                 break;
376         case MPLL:
377                 r = readl(&clk->mpll_con0);
378                 break;
379         case EPLL:
380                 r = readl(&clk->epll_con0);
381                 k = readl(&clk->epll_con1);
382                 break;
383         case VPLL:
384                 r = readl(&clk->vpll_con0);
385                 k = readl(&clk->vpll_con1);
386                 break;
387         case BPLL:
388                 r = readl(&clk->bpll_con0);
389                 break;
390         case RPLL:
391                 r = readl(&clk->rpll_con0);
392                 k = readl(&clk->rpll_con1);
393                 break;
394         default:
395                 printf("Unsupported PLL (%d)\n", pllreg);
396                 return 0;
397         }
398
399         return exynos_get_pll_clk(pllreg, r, k);
400 }
401
402 /* exynos4: return ARM clock frequency */
403 static unsigned long exynos4_get_arm_clk(void)
404 {
405         struct exynos4_clock *clk =
406                 (struct exynos4_clock *)samsung_get_base_clock();
407         unsigned long div;
408         unsigned long armclk;
409         unsigned int core_ratio;
410         unsigned int core2_ratio;
411
412         div = readl(&clk->div_cpu0);
413
414         /* CORE_RATIO: [2:0], CORE2_RATIO: [30:28] */
415         core_ratio = (div >> 0) & 0x7;
416         core2_ratio = (div >> 28) & 0x7;
417
418         armclk = get_pll_clk(APLL) / (core_ratio + 1);
419         armclk /= (core2_ratio + 1);
420
421         return armclk;
422 }
423
424 /* exynos4x12: return ARM clock frequency */
425 static unsigned long exynos4x12_get_arm_clk(void)
426 {
427         struct exynos4x12_clock *clk =
428                 (struct exynos4x12_clock *)samsung_get_base_clock();
429         unsigned long div;
430         unsigned long armclk;
431         unsigned int core_ratio;
432         unsigned int core2_ratio;
433
434         div = readl(&clk->div_cpu0);
435
436         /* CORE_RATIO: [2:0], CORE2_RATIO: [30:28] */
437         core_ratio = (div >> 0) & 0x7;
438         core2_ratio = (div >> 28) & 0x7;
439
440         armclk = get_pll_clk(APLL) / (core_ratio + 1);
441         armclk /= (core2_ratio + 1);
442
443         return armclk;
444 }
445
446 /* exynos5: return ARM clock frequency */
447 static unsigned long exynos5_get_arm_clk(void)
448 {
449         struct exynos5_clock *clk =
450                 (struct exynos5_clock *)samsung_get_base_clock();
451         unsigned long div;
452         unsigned long armclk;
453         unsigned int arm_ratio;
454         unsigned int arm2_ratio;
455
456         div = readl(&clk->div_cpu0);
457
458         /* ARM_RATIO: [2:0], ARM2_RATIO: [30:28] */
459         arm_ratio = (div >> 0) & 0x7;
460         arm2_ratio = (div >> 28) & 0x7;
461
462         armclk = get_pll_clk(APLL) / (arm_ratio + 1);
463         armclk /= (arm2_ratio + 1);
464
465         return armclk;
466 }
467
468 /* exynos4: return pwm clock frequency */
469 static unsigned long exynos4_get_pwm_clk(void)
470 {
471         struct exynos4_clock *clk =
472                 (struct exynos4_clock *)samsung_get_base_clock();
473         unsigned long pclk, sclk;
474         unsigned int sel;
475         unsigned int ratio;
476
477         if (s5p_get_cpu_rev() == 0) {
478                 /*
479                  * CLK_SRC_PERIL0
480                  * PWM_SEL [27:24]
481                  */
482                 sel = readl(&clk->src_peril0);
483                 sel = (sel >> 24) & 0xf;
484
485                 if (sel == 0x6)
486                         sclk = get_pll_clk(MPLL);
487                 else if (sel == 0x7)
488                         sclk = get_pll_clk(EPLL);
489                 else if (sel == 0x8)
490                         sclk = get_pll_clk(VPLL);
491                 else
492                         return 0;
493
494                 /*
495                  * CLK_DIV_PERIL3
496                  * PWM_RATIO [3:0]
497                  */
498                 ratio = readl(&clk->div_peril3);
499                 ratio = ratio & 0xf;
500         } else if (s5p_get_cpu_rev() == 1) {
501                 sclk = get_pll_clk(MPLL);
502                 ratio = 8;
503         } else
504                 return 0;
505
506         pclk = sclk / (ratio + 1);
507
508         return pclk;
509 }
510
511 /* exynos4x12: return pwm clock frequency */
512 static unsigned long exynos4x12_get_pwm_clk(void)
513 {
514         unsigned long pclk, sclk;
515         unsigned int ratio;
516
517         sclk = get_pll_clk(MPLL);
518         ratio = 8;
519
520         pclk = sclk / (ratio + 1);
521
522         return pclk;
523 }
524
525 /* exynos5420: return pwm clock frequency */
526 static unsigned long exynos5420_get_pwm_clk(void)
527 {
528         struct exynos5420_clock *clk =
529                 (struct exynos5420_clock *)samsung_get_base_clock();
530         unsigned long pclk, sclk;
531         unsigned int ratio;
532
533         /*
534          * CLK_DIV_PERIC0
535          * PWM_RATIO [31:28]
536          */
537         ratio = readl(&clk->div_peric0);
538         ratio = (ratio >> 28) & 0xf;
539         sclk = get_pll_clk(MPLL);
540
541         pclk = sclk / (ratio + 1);
542
543         return pclk;
544 }
545
546 /* exynos4: return uart clock frequency */
547 static unsigned long exynos4_get_uart_clk(int dev_index)
548 {
549         struct exynos4_clock *clk =
550                 (struct exynos4_clock *)samsung_get_base_clock();
551         unsigned long uclk, sclk;
552         unsigned int sel;
553         unsigned int ratio;
554
555         /*
556          * CLK_SRC_PERIL0
557          * UART0_SEL [3:0]
558          * UART1_SEL [7:4]
559          * UART2_SEL [8:11]
560          * UART3_SEL [12:15]
561          * UART4_SEL [16:19]
562          * UART5_SEL [23:20]
563          */
564         sel = readl(&clk->src_peril0);
565         sel = (sel >> (dev_index << 2)) & 0xf;
566
567         if (sel == 0x6)
568                 sclk = get_pll_clk(MPLL);
569         else if (sel == 0x7)
570                 sclk = get_pll_clk(EPLL);
571         else if (sel == 0x8)
572                 sclk = get_pll_clk(VPLL);
573         else
574                 return 0;
575
576         /*
577          * CLK_DIV_PERIL0
578          * UART0_RATIO [3:0]
579          * UART1_RATIO [7:4]
580          * UART2_RATIO [8:11]
581          * UART3_RATIO [12:15]
582          * UART4_RATIO [16:19]
583          * UART5_RATIO [23:20]
584          */
585         ratio = readl(&clk->div_peril0);
586         ratio = (ratio >> (dev_index << 2)) & 0xf;
587
588         uclk = sclk / (ratio + 1);
589
590         return uclk;
591 }
592
593 /* exynos4x12: return uart clock frequency */
594 static unsigned long exynos4x12_get_uart_clk(int dev_index)
595 {
596         struct exynos4x12_clock *clk =
597                 (struct exynos4x12_clock *)samsung_get_base_clock();
598         unsigned long uclk, sclk;
599         unsigned int sel;
600         unsigned int ratio;
601
602         /*
603          * CLK_SRC_PERIL0
604          * UART0_SEL [3:0]
605          * UART1_SEL [7:4]
606          * UART2_SEL [8:11]
607          * UART3_SEL [12:15]
608          * UART4_SEL [16:19]
609          */
610         sel = readl(&clk->src_peril0);
611         sel = (sel >> (dev_index << 2)) & 0xf;
612
613         if (sel == 0x6)
614                 sclk = get_pll_clk(MPLL);
615         else if (sel == 0x7)
616                 sclk = get_pll_clk(EPLL);
617         else if (sel == 0x8)
618                 sclk = get_pll_clk(VPLL);
619         else
620                 return 0;
621
622         /*
623          * CLK_DIV_PERIL0
624          * UART0_RATIO [3:0]
625          * UART1_RATIO [7:4]
626          * UART2_RATIO [8:11]
627          * UART3_RATIO [12:15]
628          * UART4_RATIO [16:19]
629          */
630         ratio = readl(&clk->div_peril0);
631         ratio = (ratio >> (dev_index << 2)) & 0xf;
632
633         uclk = sclk / (ratio + 1);
634
635         return uclk;
636 }
637
638 /* exynos5: return uart clock frequency */
639 static unsigned long exynos5_get_uart_clk(int dev_index)
640 {
641         struct exynos5_clock *clk =
642                 (struct exynos5_clock *)samsung_get_base_clock();
643         unsigned long uclk, sclk;
644         unsigned int sel;
645         unsigned int ratio;
646
647         /*
648          * CLK_SRC_PERIC0
649          * UART0_SEL [3:0]
650          * UART1_SEL [7:4]
651          * UART2_SEL [8:11]
652          * UART3_SEL [12:15]
653          * UART4_SEL [16:19]
654          * UART5_SEL [23:20]
655          */
656         sel = readl(&clk->src_peric0);
657         sel = (sel >> (dev_index << 2)) & 0xf;
658
659         if (sel == 0x6)
660                 sclk = get_pll_clk(MPLL);
661         else if (sel == 0x7)
662                 sclk = get_pll_clk(EPLL);
663         else if (sel == 0x8)
664                 sclk = get_pll_clk(VPLL);
665         else
666                 return 0;
667
668         /*
669          * CLK_DIV_PERIC0
670          * UART0_RATIO [3:0]
671          * UART1_RATIO [7:4]
672          * UART2_RATIO [8:11]
673          * UART3_RATIO [12:15]
674          * UART4_RATIO [16:19]
675          * UART5_RATIO [23:20]
676          */
677         ratio = readl(&clk->div_peric0);
678         ratio = (ratio >> (dev_index << 2)) & 0xf;
679
680         uclk = sclk / (ratio + 1);
681
682         return uclk;
683 }
684
685 /* exynos5420: return uart clock frequency */
686 static unsigned long exynos5420_get_uart_clk(int dev_index)
687 {
688         struct exynos5420_clock *clk =
689                 (struct exynos5420_clock *)samsung_get_base_clock();
690         unsigned long uclk, sclk;
691         unsigned int sel;
692         unsigned int ratio;
693
694         /*
695          * CLK_SRC_PERIC0
696          * UART0_SEL [6:4]
697          * UART1_SEL [10:8]
698          * UART2_SEL [14:12]
699          * UART3_SEL [18:16]
700          * generalised calculation as follows
701          * sel = (sel >> ((dev_index * 4) + 4)) & mask;
702          */
703         sel = readl(&clk->src_peric0);
704         sel = (sel >> ((dev_index * 4) + 4)) & 0x7;
705
706         if (sel == 0x3)
707                 sclk = get_pll_clk(MPLL);
708         else if (sel == 0x6)
709                 sclk = get_pll_clk(EPLL);
710         else if (sel == 0x7)
711                 sclk = get_pll_clk(RPLL);
712         else
713                 return 0;
714
715         /*
716          * CLK_DIV_PERIC0
717          * UART0_RATIO [11:8]
718          * UART1_RATIO [15:12]
719          * UART2_RATIO [19:16]
720          * UART3_RATIO [23:20]
721          * generalised calculation as follows
722          * ratio = (ratio >> ((dev_index * 4) + 8)) & mask;
723          */
724         ratio = readl(&clk->div_peric0);
725         ratio = (ratio >> ((dev_index * 4) + 8)) & 0xf;
726
727         uclk = sclk / (ratio + 1);
728
729         return uclk;
730 }
731
732 static unsigned long exynos4_get_mmc_clk(int dev_index)
733 {
734         struct exynos4_clock *clk =
735                 (struct exynos4_clock *)samsung_get_base_clock();
736         unsigned long uclk, sclk;
737         unsigned int sel, ratio, pre_ratio;
738         int shift = 0;
739
740         sel = readl(&clk->src_fsys);
741         sel = (sel >> (dev_index << 2)) & 0xf;
742
743         if (sel == 0x6)
744                 sclk = get_pll_clk(MPLL);
745         else if (sel == 0x7)
746                 sclk = get_pll_clk(EPLL);
747         else if (sel == 0x8)
748                 sclk = get_pll_clk(VPLL);
749         else
750                 return 0;
751
752         switch (dev_index) {
753         case 0:
754         case 1:
755                 ratio = readl(&clk->div_fsys1);
756                 pre_ratio = readl(&clk->div_fsys1);
757                 break;
758         case 2:
759         case 3:
760                 ratio = readl(&clk->div_fsys2);
761                 pre_ratio = readl(&clk->div_fsys2);
762                 break;
763         case 4:
764                 ratio = readl(&clk->div_fsys3);
765                 pre_ratio = readl(&clk->div_fsys3);
766                 break;
767         default:
768                 return 0;
769         }
770
771         if (dev_index == 1 || dev_index == 3)
772                 shift = 16;
773
774         ratio = (ratio >> shift) & 0xf;
775         pre_ratio = (pre_ratio >> (shift + 8)) & 0xff;
776         uclk = (sclk / (ratio + 1)) / (pre_ratio + 1);
777
778         return uclk;
779 }
780
781 static unsigned long exynos5_get_mmc_clk(int dev_index)
782 {
783         struct exynos5_clock *clk =
784                 (struct exynos5_clock *)samsung_get_base_clock();
785         unsigned long uclk, sclk;
786         unsigned int sel, ratio, pre_ratio;
787         int shift = 0;
788
789         sel = readl(&clk->src_fsys);
790         sel = (sel >> (dev_index << 2)) & 0xf;
791
792         if (sel == 0x6)
793                 sclk = get_pll_clk(MPLL);
794         else if (sel == 0x7)
795                 sclk = get_pll_clk(EPLL);
796         else if (sel == 0x8)
797                 sclk = get_pll_clk(VPLL);
798         else
799                 return 0;
800
801         switch (dev_index) {
802         case 0:
803         case 1:
804                 ratio = readl(&clk->div_fsys1);
805                 pre_ratio = readl(&clk->div_fsys1);
806                 break;
807         case 2:
808         case 3:
809                 ratio = readl(&clk->div_fsys2);
810                 pre_ratio = readl(&clk->div_fsys2);
811                 break;
812         default:
813                 return 0;
814         }
815
816         if (dev_index == 1 || dev_index == 3)
817                 shift = 16;
818
819         ratio = (ratio >> shift) & 0xf;
820         pre_ratio = (pre_ratio >> (shift + 8)) & 0xff;
821         uclk = (sclk / (ratio + 1)) / (pre_ratio + 1);
822
823         return uclk;
824 }
825
826 static unsigned long exynos5420_get_mmc_clk(int dev_index)
827 {
828         struct exynos5420_clock *clk =
829                 (struct exynos5420_clock *)samsung_get_base_clock();
830         unsigned long uclk, sclk;
831         unsigned int sel, ratio;
832
833         /*
834          * CLK_SRC_FSYS
835          * MMC0_SEL [10:8]
836          * MMC1_SEL [14:12]
837          * MMC2_SEL [18:16]
838          * generalised calculation as follows
839          * sel = (sel >> ((dev_index * 4) + 8)) & mask
840          */
841         sel = readl(&clk->src_fsys);
842         sel = (sel >> ((dev_index * 4) + 8)) & 0x7;
843
844         if (sel == 0x3)
845                 sclk = get_pll_clk(MPLL);
846         else if (sel == 0x6)
847                 sclk = get_pll_clk(EPLL);
848         else
849                 return 0;
850
851         /*
852          * CLK_DIV_FSYS1
853          * MMC0_RATIO [9:0]
854          * MMC1_RATIO [19:10]
855          * MMC2_RATIO [29:20]
856          * generalised calculation as follows
857          * ratio = (ratio >> (dev_index * 10)) & mask
858          */
859         ratio = readl(&clk->div_fsys1);
860         ratio = (ratio >> (dev_index * 10)) & 0x3ff;
861
862         uclk = (sclk / (ratio + 1));
863
864         return uclk;
865 }
866
867 /* exynos4: set the mmc clock */
868 static void exynos4_set_mmc_clk(int dev_index, unsigned int div)
869 {
870         struct exynos4_clock *clk =
871                 (struct exynos4_clock *)samsung_get_base_clock();
872         unsigned int addr;
873
874         /*
875          * CLK_DIV_FSYS1
876          * MMC0_PRE_RATIO [15:8], MMC1_PRE_RATIO [31:24]
877          * CLK_DIV_FSYS2
878          * MMC2_PRE_RATIO [15:8], MMC3_PRE_RATIO [31:24]
879          * CLK_DIV_FSYS3
880          * MMC4_PRE_RATIO [15:8]
881          */
882         if (dev_index < 2) {
883                 addr = (unsigned int)&clk->div_fsys1;
884         }  else if (dev_index == 4) {
885                 addr = (unsigned int)&clk->div_fsys3;
886                 dev_index -= 4;
887         } else {
888                 addr = (unsigned int)&clk->div_fsys2;
889                 dev_index -= 2;
890         }
891
892         clrsetbits_le32(addr, 0xff << ((dev_index << 4) + 8),
893                         (div & 0xff) << ((dev_index << 4) + 8));
894 }
895
896 /* exynos4x12: set the mmc clock */
897 static void exynos4x12_set_mmc_clk(int dev_index, unsigned int div)
898 {
899         struct exynos4x12_clock *clk =
900                 (struct exynos4x12_clock *)samsung_get_base_clock();
901         unsigned int addr;
902
903         /*
904          * CLK_DIV_FSYS1
905          * MMC0_PRE_RATIO [15:8], MMC1_PRE_RATIO [31:24]
906          * CLK_DIV_FSYS2
907          * MMC2_PRE_RATIO [15:8], MMC3_PRE_RATIO [31:24]
908          */
909         if (dev_index < 2) {
910                 addr = (unsigned int)&clk->div_fsys1;
911         } else {
912                 addr = (unsigned int)&clk->div_fsys2;
913                 dev_index -= 2;
914         }
915
916         clrsetbits_le32(addr, 0xff << ((dev_index << 4) + 8),
917                         (div & 0xff) << ((dev_index << 4) + 8));
918 }
919
920 /* exynos5: set the mmc clock */
921 static void exynos5_set_mmc_clk(int dev_index, unsigned int div)
922 {
923         struct exynos5_clock *clk =
924                 (struct exynos5_clock *)samsung_get_base_clock();
925         unsigned int addr;
926
927         /*
928          * CLK_DIV_FSYS1
929          * MMC0_PRE_RATIO [15:8], MMC1_PRE_RATIO [31:24]
930          * CLK_DIV_FSYS2
931          * MMC2_PRE_RATIO [15:8], MMC3_PRE_RATIO [31:24]
932          */
933         if (dev_index < 2) {
934                 addr = (unsigned int)&clk->div_fsys1;
935         } else {
936                 addr = (unsigned int)&clk->div_fsys2;
937                 dev_index -= 2;
938         }
939
940         clrsetbits_le32(addr, 0xff << ((dev_index << 4) + 8),
941                         (div & 0xff) << ((dev_index << 4) + 8));
942 }
943
944 /* exynos5: set the mmc clock */
945 static void exynos5420_set_mmc_clk(int dev_index, unsigned int div)
946 {
947         struct exynos5420_clock *clk =
948                 (struct exynos5420_clock *)samsung_get_base_clock();
949         unsigned int addr;
950         unsigned int shift;
951
952         /*
953          * CLK_DIV_FSYS1
954          * MMC0_RATIO [9:0]
955          * MMC1_RATIO [19:10]
956          * MMC2_RATIO [29:20]
957          */
958         addr = (unsigned int)&clk->div_fsys1;
959         shift = dev_index * 10;
960
961         clrsetbits_le32(addr, 0x3ff << shift, (div & 0x3ff) << shift);
962 }
963
964 /* get_lcd_clk: return lcd clock frequency */
965 static unsigned long exynos4_get_lcd_clk(void)
966 {
967         struct exynos4_clock *clk =
968                 (struct exynos4_clock *)samsung_get_base_clock();
969         unsigned long pclk, sclk;
970         unsigned int sel;
971         unsigned int ratio;
972
973         /*
974          * CLK_SRC_LCD0
975          * FIMD0_SEL [3:0]
976          */
977         sel = readl(&clk->src_lcd0);
978         sel = sel & 0xf;
979
980         /*
981          * 0x6: SCLK_MPLL
982          * 0x7: SCLK_EPLL
983          * 0x8: SCLK_VPLL
984          */
985         if (sel == 0x6)
986                 sclk = get_pll_clk(MPLL);
987         else if (sel == 0x7)
988                 sclk = get_pll_clk(EPLL);
989         else if (sel == 0x8)
990                 sclk = get_pll_clk(VPLL);
991         else
992                 return 0;
993
994         /*
995          * CLK_DIV_LCD0
996          * FIMD0_RATIO [3:0]
997          */
998         ratio = readl(&clk->div_lcd0);
999         ratio = ratio & 0xf;
1000
1001         pclk = sclk / (ratio + 1);
1002
1003         return pclk;
1004 }
1005
1006 /* get_lcd_clk: return lcd clock frequency */
1007 static unsigned long exynos5_get_lcd_clk(void)
1008 {
1009         struct exynos5_clock *clk =
1010                 (struct exynos5_clock *)samsung_get_base_clock();
1011         unsigned long pclk, sclk;
1012         unsigned int sel;
1013         unsigned int ratio;
1014
1015         /*
1016          * CLK_SRC_LCD0
1017          * FIMD0_SEL [3:0]
1018          */
1019         sel = readl(&clk->src_disp1_0);
1020         sel = sel & 0xf;
1021
1022         /*
1023          * 0x6: SCLK_MPLL
1024          * 0x7: SCLK_EPLL
1025          * 0x8: SCLK_VPLL
1026          */
1027         if (sel == 0x6)
1028                 sclk = get_pll_clk(MPLL);
1029         else if (sel == 0x7)
1030                 sclk = get_pll_clk(EPLL);
1031         else if (sel == 0x8)
1032                 sclk = get_pll_clk(VPLL);
1033         else
1034                 return 0;
1035
1036         /*
1037          * CLK_DIV_LCD0
1038          * FIMD0_RATIO [3:0]
1039          */
1040         ratio = readl(&clk->div_disp1_0);
1041         ratio = ratio & 0xf;
1042
1043         pclk = sclk / (ratio + 1);
1044
1045         return pclk;
1046 }
1047
1048 void exynos4_set_lcd_clk(void)
1049 {
1050         struct exynos4_clock *clk =
1051             (struct exynos4_clock *)samsung_get_base_clock();
1052
1053         /*
1054          * CLK_GATE_BLOCK
1055          * CLK_CAM      [0]
1056          * CLK_TV       [1]
1057          * CLK_MFC      [2]
1058          * CLK_G3D      [3]
1059          * CLK_LCD0     [4]
1060          * CLK_LCD1     [5]
1061          * CLK_GPS      [7]
1062          */
1063         setbits_le32(&clk->gate_block, 1 << 4);
1064
1065         /*
1066          * CLK_SRC_LCD0
1067          * FIMD0_SEL            [3:0]
1068          * MDNIE0_SEL           [7:4]
1069          * MDNIE_PWM0_SEL       [8:11]
1070          * MIPI0_SEL            [12:15]
1071          * set lcd0 src clock 0x6: SCLK_MPLL
1072          */
1073         clrsetbits_le32(&clk->src_lcd0, 0xf, 0x6);
1074
1075         /*
1076          * CLK_GATE_IP_LCD0
1077          * CLK_FIMD0            [0]
1078          * CLK_MIE0             [1]
1079          * CLK_MDNIE0           [2]
1080          * CLK_DSIM0            [3]
1081          * CLK_SMMUFIMD0        [4]
1082          * CLK_PPMULCD0         [5]
1083          * Gating all clocks for FIMD0
1084          */
1085         setbits_le32(&clk->gate_ip_lcd0, 1 << 0);
1086
1087         /*
1088          * CLK_DIV_LCD0
1089          * FIMD0_RATIO          [3:0]
1090          * MDNIE0_RATIO         [7:4]
1091          * MDNIE_PWM0_RATIO     [11:8]
1092          * MDNIE_PWM_PRE_RATIO  [15:12]
1093          * MIPI0_RATIO          [19:16]
1094          * MIPI0_PRE_RATIO      [23:20]
1095          * set fimd ratio
1096          */
1097         clrsetbits_le32(&clk->div_lcd0, 0xf, 0x1);
1098 }
1099
1100 void exynos5_set_lcd_clk(void)
1101 {
1102         struct exynos5_clock *clk =
1103             (struct exynos5_clock *)samsung_get_base_clock();
1104
1105         /*
1106          * CLK_GATE_BLOCK
1107          * CLK_CAM      [0]
1108          * CLK_TV       [1]
1109          * CLK_MFC      [2]
1110          * CLK_G3D      [3]
1111          * CLK_LCD0     [4]
1112          * CLK_LCD1     [5]
1113          * CLK_GPS      [7]
1114          */
1115         setbits_le32(&clk->gate_block, 1 << 4);
1116
1117         /*
1118          * CLK_SRC_LCD0
1119          * FIMD0_SEL            [3:0]
1120          * MDNIE0_SEL           [7:4]
1121          * MDNIE_PWM0_SEL       [8:11]
1122          * MIPI0_SEL            [12:15]
1123          * set lcd0 src clock 0x6: SCLK_MPLL
1124          */
1125         clrsetbits_le32(&clk->src_disp1_0, 0xf, 0x6);
1126
1127         /*
1128          * CLK_GATE_IP_LCD0
1129          * CLK_FIMD0            [0]
1130          * CLK_MIE0             [1]
1131          * CLK_MDNIE0           [2]
1132          * CLK_DSIM0            [3]
1133          * CLK_SMMUFIMD0        [4]
1134          * CLK_PPMULCD0         [5]
1135          * Gating all clocks for FIMD0
1136          */
1137         setbits_le32(&clk->gate_ip_disp1, 1 << 0);
1138
1139         /*
1140          * CLK_DIV_LCD0
1141          * FIMD0_RATIO          [3:0]
1142          * MDNIE0_RATIO         [7:4]
1143          * MDNIE_PWM0_RATIO     [11:8]
1144          * MDNIE_PWM_PRE_RATIO  [15:12]
1145          * MIPI0_RATIO          [19:16]
1146          * MIPI0_PRE_RATIO      [23:20]
1147          * set fimd ratio
1148          */
1149         clrsetbits_le32(&clk->div_disp1_0, 0xf, 0x0);
1150 }
1151
1152 void exynos4_set_mipi_clk(void)
1153 {
1154         struct exynos4_clock *clk =
1155             (struct exynos4_clock *)samsung_get_base_clock();
1156
1157         /*
1158          * CLK_SRC_LCD0
1159          * FIMD0_SEL            [3:0]
1160          * MDNIE0_SEL           [7:4]
1161          * MDNIE_PWM0_SEL       [8:11]
1162          * MIPI0_SEL            [12:15]
1163          * set mipi0 src clock 0x6: SCLK_MPLL
1164          */
1165         clrsetbits_le32(&clk->src_lcd0, 0xf << 12, 0x6 << 12);
1166
1167         /*
1168          * CLK_SRC_MASK_LCD0
1169          * FIMD0_MASK           [0]
1170          * MDNIE0_MASK          [4]
1171          * MDNIE_PWM0_MASK      [8]
1172          * MIPI0_MASK           [12]
1173          * set src mask mipi0 0x1: Unmask
1174          */
1175         setbits_le32(&clk->src_mask_lcd0, 0x1 << 12);
1176
1177         /*
1178          * CLK_GATE_IP_LCD0
1179          * CLK_FIMD0            [0]
1180          * CLK_MIE0             [1]
1181          * CLK_MDNIE0           [2]
1182          * CLK_DSIM0            [3]
1183          * CLK_SMMUFIMD0        [4]
1184          * CLK_PPMULCD0         [5]
1185          * Gating all clocks for MIPI0
1186          */
1187         setbits_le32(&clk->gate_ip_lcd0, 1 << 3);
1188
1189         /*
1190          * CLK_DIV_LCD0
1191          * FIMD0_RATIO          [3:0]
1192          * MDNIE0_RATIO         [7:4]
1193          * MDNIE_PWM0_RATIO     [11:8]
1194          * MDNIE_PWM_PRE_RATIO  [15:12]
1195          * MIPI0_RATIO          [19:16]
1196          * MIPI0_PRE_RATIO      [23:20]
1197          * set mipi ratio
1198          */
1199         clrsetbits_le32(&clk->div_lcd0, 0xf << 16, 0x1 << 16);
1200 }
1201
1202 /*
1203  * I2C
1204  *
1205  * exynos5: obtaining the I2C clock
1206  */
1207 static unsigned long exynos5_get_i2c_clk(void)
1208 {
1209         struct exynos5_clock *clk =
1210                 (struct exynos5_clock *)samsung_get_base_clock();
1211         unsigned long aclk_66, aclk_66_pre, sclk;
1212         unsigned int ratio;
1213
1214         sclk = get_pll_clk(MPLL);
1215
1216         ratio = (readl(&clk->div_top1)) >> 24;
1217         ratio &= 0x7;
1218         aclk_66_pre = sclk / (ratio + 1);
1219         ratio = readl(&clk->div_top0);
1220         ratio &= 0x7;
1221         aclk_66 = aclk_66_pre / (ratio + 1);
1222         return aclk_66;
1223 }
1224
1225 int exynos5_set_epll_clk(unsigned long rate)
1226 {
1227         unsigned int epll_con, epll_con_k;
1228         unsigned int i;
1229         unsigned int lockcnt;
1230         unsigned int start;
1231         struct exynos5_clock *clk =
1232                 (struct exynos5_clock *)samsung_get_base_clock();
1233
1234         epll_con = readl(&clk->epll_con0);
1235         epll_con &= ~((EPLL_CON0_LOCK_DET_EN_MASK <<
1236                         EPLL_CON0_LOCK_DET_EN_SHIFT) |
1237                 EPLL_CON0_MDIV_MASK << EPLL_CON0_MDIV_SHIFT |
1238                 EPLL_CON0_PDIV_MASK << EPLL_CON0_PDIV_SHIFT |
1239                 EPLL_CON0_SDIV_MASK << EPLL_CON0_SDIV_SHIFT);
1240
1241         for (i = 0; i < ARRAY_SIZE(exynos5_epll_div); i++) {
1242                 if (exynos5_epll_div[i].freq_out == rate)
1243                         break;
1244         }
1245
1246         if (i == ARRAY_SIZE(exynos5_epll_div))
1247                 return -1;
1248
1249         epll_con_k = exynos5_epll_div[i].k_dsm << 0;
1250         epll_con |= exynos5_epll_div[i].en_lock_det <<
1251                                 EPLL_CON0_LOCK_DET_EN_SHIFT;
1252         epll_con |= exynos5_epll_div[i].m_div << EPLL_CON0_MDIV_SHIFT;
1253         epll_con |= exynos5_epll_div[i].p_div << EPLL_CON0_PDIV_SHIFT;
1254         epll_con |= exynos5_epll_div[i].s_div << EPLL_CON0_SDIV_SHIFT;
1255
1256         /*
1257          * Required period ( in cycles) to genarate a stable clock output.
1258          * The maximum clock time can be up to 3000 * PDIV cycles of PLLs
1259          * frequency input (as per spec)
1260          */
1261         lockcnt = 3000 * exynos5_epll_div[i].p_div;
1262
1263         writel(lockcnt, &clk->epll_lock);
1264         writel(epll_con, &clk->epll_con0);
1265         writel(epll_con_k, &clk->epll_con1);
1266
1267         start = get_timer(0);
1268
1269          while (!(readl(&clk->epll_con0) &
1270                         (0x1 << EXYNOS5_EPLLCON0_LOCKED_SHIFT))) {
1271                 if (get_timer(start) > TIMEOUT_EPLL_LOCK) {
1272                         debug("%s: Timeout waiting for EPLL lock\n", __func__);
1273                         return -1;
1274                 }
1275         }
1276         return 0;
1277 }
1278
1279 int exynos5_set_i2s_clk_source(unsigned int i2s_id)
1280 {
1281         struct exynos5_clock *clk =
1282                 (struct exynos5_clock *)samsung_get_base_clock();
1283         unsigned int *audio_ass = (unsigned int *)samsung_get_base_audio_ass();
1284
1285         if (i2s_id == 0) {
1286                 setbits_le32(&clk->src_top2, CLK_SRC_MOUT_EPLL);
1287                 clrsetbits_le32(&clk->src_mau, AUDIO0_SEL_MASK,
1288                                 (CLK_SRC_SCLK_EPLL));
1289                 setbits_le32(audio_ass, AUDIO_CLKMUX_ASS);
1290         } else if (i2s_id == 1) {
1291                 clrsetbits_le32(&clk->src_peric1, AUDIO1_SEL_MASK,
1292                                 (CLK_SRC_SCLK_EPLL));
1293         } else {
1294                 return -1;
1295         }
1296         return 0;
1297 }
1298
1299 int exynos5_set_i2s_clk_prescaler(unsigned int src_frq,
1300                                   unsigned int dst_frq,
1301                                   unsigned int i2s_id)
1302 {
1303         struct exynos5_clock *clk =
1304                 (struct exynos5_clock *)samsung_get_base_clock();
1305         unsigned int div;
1306
1307         if ((dst_frq == 0) || (src_frq == 0)) {
1308                 debug("%s: Invalid requency input for prescaler\n", __func__);
1309                 debug("src frq = %d des frq = %d ", src_frq, dst_frq);
1310                 return -1;
1311         }
1312
1313         div = (src_frq / dst_frq);
1314         if (i2s_id == 0) {
1315                 if (div > AUDIO_0_RATIO_MASK) {
1316                         debug("%s: Frequency ratio is out of range\n",
1317                               __func__);
1318                         debug("src frq = %d des frq = %d ", src_frq, dst_frq);
1319                         return -1;
1320                 }
1321                 clrsetbits_le32(&clk->div_mau, AUDIO_0_RATIO_MASK,
1322                                 (div & AUDIO_0_RATIO_MASK));
1323         } else if(i2s_id == 1) {
1324                 if (div > AUDIO_1_RATIO_MASK) {
1325                         debug("%s: Frequency ratio is out of range\n",
1326                               __func__);
1327                         debug("src frq = %d des frq = %d ", src_frq, dst_frq);
1328                         return -1;
1329                 }
1330                 clrsetbits_le32(&clk->div_peric4, AUDIO_1_RATIO_MASK,
1331                                 (div & AUDIO_1_RATIO_MASK));
1332         } else {
1333                 return -1;
1334         }
1335         return 0;
1336 }
1337
1338 /**
1339  * Linearly searches for the most accurate main and fine stage clock scalars
1340  * (divisors) for a specified target frequency and scalar bit sizes by checking
1341  * all multiples of main_scalar_bits values. Will always return scalars up to or
1342  * slower than target.
1343  *
1344  * @param main_scalar_bits      Number of main scalar bits, must be > 0 and < 32
1345  * @param fine_scalar_bits      Number of fine scalar bits, must be > 0 and < 32
1346  * @param input_freq            Clock frequency to be scaled in Hz
1347  * @param target_freq           Desired clock frequency in Hz
1348  * @param best_fine_scalar      Pointer to store the fine stage divisor
1349  *
1350  * @return best_main_scalar     Main scalar for desired frequency or -1 if none
1351  * found
1352  */
1353 static int clock_calc_best_scalar(unsigned int main_scaler_bits,
1354         unsigned int fine_scalar_bits, unsigned int input_rate,
1355         unsigned int target_rate, unsigned int *best_fine_scalar)
1356 {
1357         int i;
1358         int best_main_scalar = -1;
1359         unsigned int best_error = target_rate;
1360         const unsigned int cap = (1 << fine_scalar_bits) - 1;
1361         const unsigned int loops = 1 << main_scaler_bits;
1362
1363         debug("Input Rate is %u, Target is %u, Cap is %u\n", input_rate,
1364                         target_rate, cap);
1365
1366         assert(best_fine_scalar != NULL);
1367         assert(main_scaler_bits <= fine_scalar_bits);
1368
1369         *best_fine_scalar = 1;
1370
1371         if (input_rate == 0 || target_rate == 0)
1372                 return -1;
1373
1374         if (target_rate >= input_rate)
1375                 return 1;
1376
1377         for (i = 1; i <= loops; i++) {
1378                 const unsigned int effective_div = max(min(input_rate / i /
1379                                                         target_rate, cap), 1);
1380                 const unsigned int effective_rate = input_rate / i /
1381                                                         effective_div;
1382                 const int error = target_rate - effective_rate;
1383
1384                 debug("%d|effdiv:%u, effrate:%u, error:%d\n", i, effective_div,
1385                                 effective_rate, error);
1386
1387                 if (error >= 0 && error <= best_error) {
1388                         best_error = error;
1389                         best_main_scalar = i;
1390                         *best_fine_scalar = effective_div;
1391                 }
1392         }
1393
1394         return best_main_scalar;
1395 }
1396
1397 static int exynos5_set_spi_clk(enum periph_id periph_id,
1398                                         unsigned int rate)
1399 {
1400         struct exynos5_clock *clk =
1401                 (struct exynos5_clock *)samsung_get_base_clock();
1402         int main;
1403         unsigned int fine;
1404         unsigned shift, pre_shift;
1405         unsigned mask = 0xff;
1406         u32 *reg;
1407
1408         main = clock_calc_best_scalar(4, 8, 400000000, rate, &fine);
1409         if (main < 0) {
1410                 debug("%s: Cannot set clock rate for periph %d",
1411                                 __func__, periph_id);
1412                 return -1;
1413         }
1414         main = main - 1;
1415         fine = fine - 1;
1416
1417         switch (periph_id) {
1418         case PERIPH_ID_SPI0:
1419                 reg = &clk->div_peric1;
1420                 shift = 0;
1421                 pre_shift = 8;
1422                 break;
1423         case PERIPH_ID_SPI1:
1424                 reg = &clk->div_peric1;
1425                 shift = 16;
1426                 pre_shift = 24;
1427                 break;
1428         case PERIPH_ID_SPI2:
1429                 reg = &clk->div_peric2;
1430                 shift = 0;
1431                 pre_shift = 8;
1432                 break;
1433         case PERIPH_ID_SPI3:
1434                 reg = &clk->sclk_div_isp;
1435                 shift = 0;
1436                 pre_shift = 4;
1437                 break;
1438         case PERIPH_ID_SPI4:
1439                 reg = &clk->sclk_div_isp;
1440                 shift = 12;
1441                 pre_shift = 16;
1442                 break;
1443         default:
1444                 debug("%s: Unsupported peripheral ID %d\n", __func__,
1445                       periph_id);
1446                 return -1;
1447         }
1448         clrsetbits_le32(reg, mask << shift, (main & mask) << shift);
1449         clrsetbits_le32(reg, mask << pre_shift, (fine & mask) << pre_shift);
1450
1451         return 0;
1452 }
1453
1454 static int exynos5420_set_spi_clk(enum periph_id periph_id,
1455                                         unsigned int rate)
1456 {
1457         struct exynos5420_clock *clk =
1458                 (struct exynos5420_clock *)samsung_get_base_clock();
1459         int main;
1460         unsigned int fine;
1461         unsigned shift, pre_shift;
1462         unsigned div_mask = 0xf, pre_div_mask = 0xff;
1463         u32 *reg;
1464         u32 *pre_reg;
1465
1466         main = clock_calc_best_scalar(4, 8, 400000000, rate, &fine);
1467         if (main < 0) {
1468                 debug("%s: Cannot set clock rate for periph %d",
1469                       __func__, periph_id);
1470                 return -1;
1471         }
1472         main = main - 1;
1473         fine = fine - 1;
1474
1475         switch (periph_id) {
1476         case PERIPH_ID_SPI0:
1477                 reg = &clk->div_peric1;
1478                 shift = 20;
1479                 pre_reg = &clk->div_peric4;
1480                 pre_shift = 8;
1481                 break;
1482         case PERIPH_ID_SPI1:
1483                 reg = &clk->div_peric1;
1484                 shift = 24;
1485                 pre_reg = &clk->div_peric4;
1486                 pre_shift = 16;
1487                 break;
1488         case PERIPH_ID_SPI2:
1489                 reg = &clk->div_peric1;
1490                 shift = 28;
1491                 pre_reg = &clk->div_peric4;
1492                 pre_shift = 24;
1493                 break;
1494         case PERIPH_ID_SPI3:
1495                 reg = &clk->div_isp1;
1496                 shift = 16;
1497                 pre_reg = &clk->div_isp1;
1498                 pre_shift = 0;
1499                 break;
1500         case PERIPH_ID_SPI4:
1501                 reg = &clk->div_isp1;
1502                 shift = 20;
1503                 pre_reg = &clk->div_isp1;
1504                 pre_shift = 8;
1505                 break;
1506         default:
1507                 debug("%s: Unsupported peripheral ID %d\n", __func__,
1508                       periph_id);
1509                 return -1;
1510         }
1511
1512         clrsetbits_le32(reg, div_mask << shift, (main & div_mask) << shift);
1513         clrsetbits_le32(pre_reg, pre_div_mask << pre_shift,
1514                         (fine & pre_div_mask) << pre_shift);
1515
1516         return 0;
1517 }
1518
1519 static unsigned long exynos4_get_i2c_clk(void)
1520 {
1521         struct exynos4_clock *clk =
1522                 (struct exynos4_clock *)samsung_get_base_clock();
1523         unsigned long sclk, aclk_100;
1524         unsigned int ratio;
1525
1526         sclk = get_pll_clk(APLL);
1527
1528         ratio = (readl(&clk->div_top)) >> 4;
1529         ratio &= 0xf;
1530         aclk_100 = sclk / (ratio + 1);
1531         return aclk_100;
1532 }
1533
1534 unsigned long get_pll_clk(int pllreg)
1535 {
1536         if (cpu_is_exynos5()) {
1537                 if (proid_is_exynos5420())
1538                         return exynos5420_get_pll_clk(pllreg);
1539                 return exynos5_get_pll_clk(pllreg);
1540         } else {
1541                 if (proid_is_exynos4412())
1542                         return exynos4x12_get_pll_clk(pllreg);
1543                 return exynos4_get_pll_clk(pllreg);
1544         }
1545 }
1546
1547 unsigned long get_arm_clk(void)
1548 {
1549         if (cpu_is_exynos5())
1550                 return exynos5_get_arm_clk();
1551         else {
1552                 if (proid_is_exynos4412())
1553                         return exynos4x12_get_arm_clk();
1554                 return exynos4_get_arm_clk();
1555         }
1556 }
1557
1558 unsigned long get_i2c_clk(void)
1559 {
1560         if (cpu_is_exynos5()) {
1561                 return exynos5_get_i2c_clk();
1562         } else if (cpu_is_exynos4()) {
1563                 return exynos4_get_i2c_clk();
1564         } else {
1565                 debug("I2C clock is not set for this CPU\n");
1566                 return 0;
1567         }
1568 }
1569
1570 unsigned long get_pwm_clk(void)
1571 {
1572         if (cpu_is_exynos5()) {
1573                 if (proid_is_exynos5420())
1574                         return exynos5420_get_pwm_clk();
1575                 return clock_get_periph_rate(PERIPH_ID_PWM0);
1576         } else {
1577                 if (proid_is_exynos4412())
1578                         return exynos4x12_get_pwm_clk();
1579                 return exynos4_get_pwm_clk();
1580         }
1581 }
1582
1583 unsigned long get_uart_clk(int dev_index)
1584 {
1585         if (cpu_is_exynos5()) {
1586                 if (proid_is_exynos5420())
1587                         return exynos5420_get_uart_clk(dev_index);
1588                 return exynos5_get_uart_clk(dev_index);
1589         } else {
1590                 if (proid_is_exynos4412())
1591                         return exynos4x12_get_uart_clk(dev_index);
1592                 return exynos4_get_uart_clk(dev_index);
1593         }
1594 }
1595
1596 unsigned long get_mmc_clk(int dev_index)
1597 {
1598         if (cpu_is_exynos5()) {
1599                 if (proid_is_exynos5420())
1600                         return exynos5420_get_mmc_clk(dev_index);
1601                 return exynos5_get_mmc_clk(dev_index);
1602         } else {
1603                 return exynos4_get_mmc_clk(dev_index);
1604         }
1605 }
1606
1607 void set_mmc_clk(int dev_index, unsigned int div)
1608 {
1609         if (cpu_is_exynos5()) {
1610                 if (proid_is_exynos5420())
1611                         exynos5420_set_mmc_clk(dev_index, div);
1612                 else
1613                         exynos5_set_mmc_clk(dev_index, div);
1614         } else {
1615                 if (proid_is_exynos4412())
1616                         exynos4x12_set_mmc_clk(dev_index, div);
1617                 else
1618                         exynos4_set_mmc_clk(dev_index, div);
1619         }
1620 }
1621
1622 unsigned long get_lcd_clk(void)
1623 {
1624         if (cpu_is_exynos4())
1625                 return exynos4_get_lcd_clk();
1626         else
1627                 return exynos5_get_lcd_clk();
1628 }
1629
1630 void set_lcd_clk(void)
1631 {
1632         if (cpu_is_exynos4())
1633                 exynos4_set_lcd_clk();
1634         else
1635                 exynos5_set_lcd_clk();
1636 }
1637
1638 void set_mipi_clk(void)
1639 {
1640         if (cpu_is_exynos4())
1641                 exynos4_set_mipi_clk();
1642 }
1643
1644 int set_spi_clk(int periph_id, unsigned int rate)
1645 {
1646         if (cpu_is_exynos5()) {
1647                 if (proid_is_exynos5420())
1648                         return exynos5420_set_spi_clk(periph_id, rate);
1649                 return exynos5_set_spi_clk(periph_id, rate);
1650         } else {
1651                 return 0;
1652         }
1653 }
1654
1655 int set_i2s_clk_prescaler(unsigned int src_frq, unsigned int dst_frq,
1656                           unsigned int i2s_id)
1657 {
1658         if (cpu_is_exynos5())
1659                 return exynos5_set_i2s_clk_prescaler(src_frq, dst_frq, i2s_id);
1660         else
1661                 return 0;
1662 }
1663
1664 int set_i2s_clk_source(unsigned int i2s_id)
1665 {
1666         if (cpu_is_exynos5())
1667                 return exynos5_set_i2s_clk_source(i2s_id);
1668         else
1669                 return 0;
1670 }
1671
1672 int set_epll_clk(unsigned long rate)
1673 {
1674         if (cpu_is_exynos5())
1675                 return exynos5_set_epll_clk(rate);
1676         else
1677                 return 0;
1678 }