Merge branch 'pm-cpufreq'
[linux-2.6-block.git] / drivers / clk / spear / spear1340_clock.c
CommitLineData
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1/*
2 * arch/arm/mach-spear13xx/spear1340_clock.c
3 *
4 * SPEAr1340 machine clock framework source file
5 *
6 * Copyright (C) 2012 ST Microelectronics
da89947b 7 * Viresh Kumar <vireshk@kernel.org>
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8 *
9 * This file is licensed under the terms of the GNU General Public
10 * License version 2. This program is licensed "as is" without any
11 * warranty of any kind, whether express or implied.
12 */
13
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14#include <linux/clkdev.h>
15#include <linux/err.h>
16#include <linux/io.h>
17#include <linux/of_platform.h>
18#include <linux/spinlock_types.h>
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19#include "clk.h"
20
21/* Clock Configuration Registers */
d9909ebe 22#define SPEAR1340_SYS_CLK_CTRL (misc_base + 0x200)
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23 #define SPEAR1340_HCLK_SRC_SEL_SHIFT 27
24 #define SPEAR1340_HCLK_SRC_SEL_MASK 1
25 #define SPEAR1340_SCLK_SRC_SEL_SHIFT 23
26 #define SPEAR1340_SCLK_SRC_SEL_MASK 3
27
28/* PLL related registers and bit values */
d9909ebe 29#define SPEAR1340_PLL_CFG (misc_base + 0x210)
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30 /* PLL_CFG bit values */
31 #define SPEAR1340_CLCD_SYNT_CLK_MASK 1
32 #define SPEAR1340_CLCD_SYNT_CLK_SHIFT 31
33 #define SPEAR1340_GEN_SYNT2_3_CLK_SHIFT 29
34 #define SPEAR1340_GEN_SYNT_CLK_MASK 2
35 #define SPEAR1340_GEN_SYNT0_1_CLK_SHIFT 27
36 #define SPEAR1340_PLL_CLK_MASK 2
37 #define SPEAR1340_PLL3_CLK_SHIFT 24
38 #define SPEAR1340_PLL2_CLK_SHIFT 22
39 #define SPEAR1340_PLL1_CLK_SHIFT 20
40
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41#define SPEAR1340_PLL1_CTR (misc_base + 0x214)
42#define SPEAR1340_PLL1_FRQ (misc_base + 0x218)
43#define SPEAR1340_PLL2_CTR (misc_base + 0x220)
44#define SPEAR1340_PLL2_FRQ (misc_base + 0x224)
45#define SPEAR1340_PLL3_CTR (misc_base + 0x22C)
46#define SPEAR1340_PLL3_FRQ (misc_base + 0x230)
47#define SPEAR1340_PLL4_CTR (misc_base + 0x238)
48#define SPEAR1340_PLL4_FRQ (misc_base + 0x23C)
49#define SPEAR1340_PERIP_CLK_CFG (misc_base + 0x244)
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50 /* PERIP_CLK_CFG bit values */
51 #define SPEAR1340_SPDIF_CLK_MASK 1
52 #define SPEAR1340_SPDIF_OUT_CLK_SHIFT 15
53 #define SPEAR1340_SPDIF_IN_CLK_SHIFT 14
54 #define SPEAR1340_GPT3_CLK_SHIFT 13
55 #define SPEAR1340_GPT2_CLK_SHIFT 12
56 #define SPEAR1340_GPT_CLK_MASK 1
57 #define SPEAR1340_GPT1_CLK_SHIFT 9
58 #define SPEAR1340_GPT0_CLK_SHIFT 8
59 #define SPEAR1340_UART_CLK_MASK 2
60 #define SPEAR1340_UART1_CLK_SHIFT 6
61 #define SPEAR1340_UART0_CLK_SHIFT 4
62 #define SPEAR1340_CLCD_CLK_MASK 2
63 #define SPEAR1340_CLCD_CLK_SHIFT 2
64 #define SPEAR1340_C3_CLK_MASK 1
65 #define SPEAR1340_C3_CLK_SHIFT 1
66
d9909ebe 67#define SPEAR1340_GMAC_CLK_CFG (misc_base + 0x248)
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68 #define SPEAR1340_GMAC_PHY_CLK_MASK 1
69 #define SPEAR1340_GMAC_PHY_CLK_SHIFT 2
70 #define SPEAR1340_GMAC_PHY_INPUT_CLK_MASK 2
71 #define SPEAR1340_GMAC_PHY_INPUT_CLK_SHIFT 0
72
d9909ebe 73#define SPEAR1340_I2S_CLK_CFG (misc_base + 0x24C)
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74 /* I2S_CLK_CFG register mask */
75 #define SPEAR1340_I2S_SCLK_X_MASK 0x1F
76 #define SPEAR1340_I2S_SCLK_X_SHIFT 27
77 #define SPEAR1340_I2S_SCLK_Y_MASK 0x1F
78 #define SPEAR1340_I2S_SCLK_Y_SHIFT 22
79 #define SPEAR1340_I2S_SCLK_EQ_SEL_SHIFT 21
80 #define SPEAR1340_I2S_SCLK_SYNTH_ENB 20
81 #define SPEAR1340_I2S_PRS1_CLK_X_MASK 0xFF
82 #define SPEAR1340_I2S_PRS1_CLK_X_SHIFT 12
83 #define SPEAR1340_I2S_PRS1_CLK_Y_MASK 0xFF
84 #define SPEAR1340_I2S_PRS1_CLK_Y_SHIFT 4
85 #define SPEAR1340_I2S_PRS1_EQ_SEL_SHIFT 3
86 #define SPEAR1340_I2S_REF_SEL_MASK 1
87 #define SPEAR1340_I2S_REF_SHIFT 2
88 #define SPEAR1340_I2S_SRC_CLK_MASK 2
89 #define SPEAR1340_I2S_SRC_CLK_SHIFT 0
90
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91#define SPEAR1340_C3_CLK_SYNT (misc_base + 0x250)
92#define SPEAR1340_UART0_CLK_SYNT (misc_base + 0x254)
93#define SPEAR1340_UART1_CLK_SYNT (misc_base + 0x258)
94#define SPEAR1340_GMAC_CLK_SYNT (misc_base + 0x25C)
95#define SPEAR1340_SDHCI_CLK_SYNT (misc_base + 0x260)
96#define SPEAR1340_CFXD_CLK_SYNT (misc_base + 0x264)
97#define SPEAR1340_ADC_CLK_SYNT (misc_base + 0x270)
98#define SPEAR1340_AMBA_CLK_SYNT (misc_base + 0x274)
99#define SPEAR1340_CLCD_CLK_SYNT (misc_base + 0x27C)
100#define SPEAR1340_SYS_CLK_SYNT (misc_base + 0x284)
101#define SPEAR1340_GEN_CLK_SYNT0 (misc_base + 0x28C)
102#define SPEAR1340_GEN_CLK_SYNT1 (misc_base + 0x294)
103#define SPEAR1340_GEN_CLK_SYNT2 (misc_base + 0x29C)
104#define SPEAR1340_GEN_CLK_SYNT3 (misc_base + 0x304)
105#define SPEAR1340_PERIP1_CLK_ENB (misc_base + 0x30C)
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106 #define SPEAR1340_RTC_CLK_ENB 31
107 #define SPEAR1340_ADC_CLK_ENB 30
108 #define SPEAR1340_C3_CLK_ENB 29
109 #define SPEAR1340_CLCD_CLK_ENB 27
110 #define SPEAR1340_DMA_CLK_ENB 25
111 #define SPEAR1340_GPIO1_CLK_ENB 24
112 #define SPEAR1340_GPIO0_CLK_ENB 23
113 #define SPEAR1340_GPT1_CLK_ENB 22
114 #define SPEAR1340_GPT0_CLK_ENB 21
115 #define SPEAR1340_I2S_PLAY_CLK_ENB 20
116 #define SPEAR1340_I2S_REC_CLK_ENB 19
117 #define SPEAR1340_I2C0_CLK_ENB 18
118 #define SPEAR1340_SSP_CLK_ENB 17
119 #define SPEAR1340_UART0_CLK_ENB 15
120 #define SPEAR1340_PCIE_SATA_CLK_ENB 12
121 #define SPEAR1340_UOC_CLK_ENB 11
122 #define SPEAR1340_UHC1_CLK_ENB 10
123 #define SPEAR1340_UHC0_CLK_ENB 9
124 #define SPEAR1340_GMAC_CLK_ENB 8
125 #define SPEAR1340_CFXD_CLK_ENB 7
126 #define SPEAR1340_SDHCI_CLK_ENB 6
127 #define SPEAR1340_SMI_CLK_ENB 5
128 #define SPEAR1340_FSMC_CLK_ENB 4
129 #define SPEAR1340_SYSRAM0_CLK_ENB 3
130 #define SPEAR1340_SYSRAM1_CLK_ENB 2
131 #define SPEAR1340_SYSROM_CLK_ENB 1
132 #define SPEAR1340_BUS_CLK_ENB 0
133
d9909ebe 134#define SPEAR1340_PERIP2_CLK_ENB (misc_base + 0x310)
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135 #define SPEAR1340_THSENS_CLK_ENB 8
136 #define SPEAR1340_I2S_REF_PAD_CLK_ENB 7
137 #define SPEAR1340_ACP_CLK_ENB 6
138 #define SPEAR1340_GPT3_CLK_ENB 5
139 #define SPEAR1340_GPT2_CLK_ENB 4
140 #define SPEAR1340_KBD_CLK_ENB 3
141 #define SPEAR1340_CPU_DBG_CLK_ENB 2
142 #define SPEAR1340_DDR_CORE_CLK_ENB 1
143 #define SPEAR1340_DDR_CTRL_CLK_ENB 0
144
d9909ebe 145#define SPEAR1340_PERIP3_CLK_ENB (misc_base + 0x314)
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146 #define SPEAR1340_PLGPIO_CLK_ENB 18
147 #define SPEAR1340_VIDEO_DEC_CLK_ENB 16
148 #define SPEAR1340_VIDEO_ENC_CLK_ENB 15
149 #define SPEAR1340_SPDIF_OUT_CLK_ENB 13
150 #define SPEAR1340_SPDIF_IN_CLK_ENB 12
151 #define SPEAR1340_VIDEO_IN_CLK_ENB 11
152 #define SPEAR1340_CAM0_CLK_ENB 10
153 #define SPEAR1340_CAM1_CLK_ENB 9
154 #define SPEAR1340_CAM2_CLK_ENB 8
155 #define SPEAR1340_CAM3_CLK_ENB 7
156 #define SPEAR1340_MALI_CLK_ENB 6
157 #define SPEAR1340_CEC0_CLK_ENB 5
158 #define SPEAR1340_CEC1_CLK_ENB 4
159 #define SPEAR1340_PWM_CLK_ENB 3
160 #define SPEAR1340_I2C1_CLK_ENB 2
161 #define SPEAR1340_UART1_CLK_ENB 1
162
163static DEFINE_SPINLOCK(_lock);
164
165/* pll rate configuration table, in ascending order of rates */
166static struct pll_rate_tbl pll_rtbl[] = {
167 /* PCLK 24MHz */
168 {.mode = 0, .m = 0x83, .n = 0x04, .p = 0x5}, /* vco 1572, pll 49.125 MHz */
169 {.mode = 0, .m = 0x7D, .n = 0x06, .p = 0x3}, /* vco 1000, pll 125 MHz */
170 {.mode = 0, .m = 0x64, .n = 0x06, .p = 0x1}, /* vco 800, pll 400 MHz */
171 {.mode = 0, .m = 0x7D, .n = 0x06, .p = 0x1}, /* vco 1000, pll 500 MHz */
172 {.mode = 0, .m = 0xA6, .n = 0x06, .p = 0x1}, /* vco 1328, pll 664 MHz */
173 {.mode = 0, .m = 0xC8, .n = 0x06, .p = 0x1}, /* vco 1600, pll 800 MHz */
174 {.mode = 0, .m = 0x7D, .n = 0x06, .p = 0x0}, /* vco 1, pll 1 GHz */
175 {.mode = 0, .m = 0x96, .n = 0x06, .p = 0x0}, /* vco 1200, pll 1200 MHz */
176};
177
178/* vco-pll4 rate configuration table, in ascending order of rates */
179static struct pll_rate_tbl pll4_rtbl[] = {
180 {.mode = 0, .m = 0x7D, .n = 0x06, .p = 0x2}, /* vco 1000, pll 250 MHz */
181 {.mode = 0, .m = 0xA6, .n = 0x06, .p = 0x2}, /* vco 1328, pll 332 MHz */
182 {.mode = 0, .m = 0xC8, .n = 0x06, .p = 0x2}, /* vco 1600, pll 400 MHz */
183 {.mode = 0, .m = 0x7D, .n = 0x06, .p = 0x0}, /* vco 1, pll 1 GHz */
184};
185
186/*
187 * All below entries generate 166 MHz for
188 * different values of vco1div2
189 */
190static struct frac_rate_tbl amba_synth_rtbl[] = {
ef0fd0a2 191 {.div = 0x073A8}, /* for vco1div2 = 600 MHz */
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192 {.div = 0x06062}, /* for vco1div2 = 500 MHz */
193 {.div = 0x04D1B}, /* for vco1div2 = 400 MHz */
194 {.div = 0x04000}, /* for vco1div2 = 332 MHz */
195 {.div = 0x03031}, /* for vco1div2 = 250 MHz */
196 {.div = 0x0268D}, /* for vco1div2 = 200 MHz */
197};
198
199/*
200 * Synthesizer Clock derived from vcodiv2. This clock is one of the
201 * possible clocks to feed cpu directly.
202 * We can program this synthesizer to make cpu run on different clock
203 * frequencies.
204 * Following table provides configuration values to let cpu run on 200,
205 * 250, 332, 400 or 500 MHz considering different possibilites of input
206 * (vco1div2) clock.
207 *
208 * --------------------------------------------------------------------
209 * vco1div2(Mhz) fout(Mhz) cpuclk = fout/2 div
210 * --------------------------------------------------------------------
211 * 400 200 100 0x04000
212 * 400 250 125 0x03333
213 * 400 332 166 0x0268D
214 * 400 400 200 0x02000
215 * --------------------------------------------------------------------
216 * 500 200 100 0x05000
217 * 500 250 125 0x04000
218 * 500 332 166 0x03031
219 * 500 400 200 0x02800
220 * 500 500 250 0x02000
221 * --------------------------------------------------------------------
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222 * 600 200 100 0x06000
223 * 600 250 125 0x04CCE
224 * 600 332 166 0x039D5
225 * 600 400 200 0x03000
226 * 600 500 250 0x02666
227 * --------------------------------------------------------------------
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228 * 664 200 100 0x06a38
229 * 664 250 125 0x054FD
230 * 664 332 166 0x04000
231 * 664 400 200 0x0351E
232 * 664 500 250 0x02A7E
233 * --------------------------------------------------------------------
234 * 800 200 100 0x08000
235 * 800 250 125 0x06666
236 * 800 332 166 0x04D18
237 * 800 400 200 0x04000
238 * 800 500 250 0x03333
239 * --------------------------------------------------------------------
240 * sys rate configuration table is in descending order of divisor.
241 */
242static struct frac_rate_tbl sys_synth_rtbl[] = {
243 {.div = 0x08000},
244 {.div = 0x06a38},
245 {.div = 0x06666},
ef0fd0a2 246 {.div = 0x06000},
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247 {.div = 0x054FD},
248 {.div = 0x05000},
249 {.div = 0x04D18},
ef0fd0a2 250 {.div = 0x04CCE},
0b928af1 251 {.div = 0x04000},
ef0fd0a2 252 {.div = 0x039D5},
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253 {.div = 0x0351E},
254 {.div = 0x03333},
255 {.div = 0x03031},
ef0fd0a2 256 {.div = 0x03000},
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257 {.div = 0x02A7E},
258 {.div = 0x02800},
259 {.div = 0x0268D},
ef0fd0a2 260 {.div = 0x02666},
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261 {.div = 0x02000},
262};
263
264/* aux rate configuration table, in ascending order of rates */
265static struct aux_rate_tbl aux_rtbl[] = {
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266 /* 12.29MHz for vic1div2=600MHz and 10.24MHz for VCO1div2=500MHz */
267 {.xscale = 5, .yscale = 122, .eq = 0},
268 /* 14.70MHz for vic1div2=600MHz and 12.29MHz for VCO1div2=500MHz */
269 {.xscale = 10, .yscale = 204, .eq = 0},
270 /* 48MHz for vic1div2=600MHz and 40 MHz for VCO1div2=500MHz */
271 {.xscale = 4, .yscale = 25, .eq = 0},
272 /* 57.14MHz for vic1div2=600MHz and 48 MHz for VCO1div2=500MHz */
273 {.xscale = 4, .yscale = 21, .eq = 0},
274 /* 83.33MHz for vic1div2=600MHz and 69.44MHz for VCO1div2=500MHz */
275 {.xscale = 5, .yscale = 18, .eq = 0},
276 /* 100MHz for vic1div2=600MHz and 83.33 MHz for VCO1div2=500MHz */
277 {.xscale = 2, .yscale = 6, .eq = 0},
278 /* 125MHz for vic1div2=600MHz and 104.1MHz for VCO1div2=500MHz */
279 {.xscale = 5, .yscale = 12, .eq = 0},
280 /* 150MHz for vic1div2=600MHz and 125MHz for VCO1div2=500MHz */
281 {.xscale = 2, .yscale = 4, .eq = 0},
282 /* 166MHz for vic1div2=600MHz and 138.88MHz for VCO1div2=500MHz */
283 {.xscale = 5, .yscale = 18, .eq = 1},
284 /* 200MHz for vic1div2=600MHz and 166MHz for VCO1div2=500MHz */
285 {.xscale = 1, .yscale = 3, .eq = 1},
286 /* 250MHz for vic1div2=600MHz and 208.33MHz for VCO1div2=500MHz */
287 {.xscale = 5, .yscale = 12, .eq = 1},
288 /* 300MHz for vic1div2=600MHz and 250MHz for VCO1div2=500MHz */
289 {.xscale = 1, .yscale = 2, .eq = 1},
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290};
291
292/* gmac rate configuration table, in ascending order of rates */
293static struct aux_rate_tbl gmac_rtbl[] = {
294 /* For gmac phy input clk */
295 {.xscale = 2, .yscale = 6, .eq = 0}, /* divided by 6 */
296 {.xscale = 2, .yscale = 4, .eq = 0}, /* divided by 4 */
297 {.xscale = 1, .yscale = 3, .eq = 1}, /* divided by 3 */
298 {.xscale = 1, .yscale = 2, .eq = 1}, /* divided by 2 */
299};
300
301/* clcd rate configuration table, in ascending order of rates */
302static struct frac_rate_tbl clcd_rtbl[] = {
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303 {.div = 0x18000}, /* 25 Mhz , for vc01div4 = 300 MHz*/
304 {.div = 0x1638E}, /* 27 Mhz , for vc01div4 = 300 MHz*/
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305 {.div = 0x14000}, /* 25 Mhz , for vc01div4 = 250 MHz*/
306 {.div = 0x1284B}, /* 27 Mhz , for vc01div4 = 250 MHz*/
307 {.div = 0x0D8D3}, /* 58 Mhz , for vco1div4 = 393 MHz */
308 {.div = 0x0B72C}, /* 58 Mhz , for vco1div4 = 332 MHz */
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309 {.div = 0x0A584}, /* 58 Mhz , for vco1div4 = 300 MHz */
310 {.div = 0x093B1}, /* 65 Mhz , for vc01div4 = 300 MHz*/
0b928af1 311 {.div = 0x089EE}, /* 58 Mhz , for vc01div4 = 250 MHz*/
ef0fd0a2 312 {.div = 0x081BA}, /* 74 Mhz , for vc01div4 = 300 MHz*/
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313 {.div = 0x07BA0}, /* 65 Mhz , for vc01div4 = 250 MHz*/
314 {.div = 0x06f1C}, /* 72 Mhz , for vc01div4 = 250 MHz*/
315 {.div = 0x06E58}, /* 58 Mhz , for vco1div4 = 200 MHz */
316 {.div = 0x06c1B}, /* 74 Mhz , for vc01div4 = 250 MHz*/
ef0fd0a2 317 {.div = 0x058E3}, /* 108 Mhz , for vc01div4 = 300 MHz*/
0b928af1 318 {.div = 0x04A12}, /* 108 Mhz , for vc01div4 = 250 MHz*/
ef0fd0a2 319 {.div = 0x040A5}, /* 148.5 Mhz , for vc01div4 = 300 MHz*/
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320 {.div = 0x0378E}, /* 144 Mhz , for vc01div4 = 250 MHz*/
321 {.div = 0x0360D}, /* 148 Mhz , for vc01div4 = 250 MHz*/
322 {.div = 0x035E0}, /* 148.5 MHz, for vc01div4 = 250 MHz*/
323};
324
325/* i2s prescaler1 masks */
326static struct aux_clk_masks i2s_prs1_masks = {
327 .eq_sel_mask = AUX_EQ_SEL_MASK,
328 .eq_sel_shift = SPEAR1340_I2S_PRS1_EQ_SEL_SHIFT,
329 .eq1_mask = AUX_EQ1_SEL,
330 .eq2_mask = AUX_EQ2_SEL,
331 .xscale_sel_mask = SPEAR1340_I2S_PRS1_CLK_X_MASK,
332 .xscale_sel_shift = SPEAR1340_I2S_PRS1_CLK_X_SHIFT,
333 .yscale_sel_mask = SPEAR1340_I2S_PRS1_CLK_Y_MASK,
334 .yscale_sel_shift = SPEAR1340_I2S_PRS1_CLK_Y_SHIFT,
335};
336
337/* i2s sclk (bit clock) syynthesizers masks */
338static struct aux_clk_masks i2s_sclk_masks = {
339 .eq_sel_mask = AUX_EQ_SEL_MASK,
340 .eq_sel_shift = SPEAR1340_I2S_SCLK_EQ_SEL_SHIFT,
341 .eq1_mask = AUX_EQ1_SEL,
342 .eq2_mask = AUX_EQ2_SEL,
343 .xscale_sel_mask = SPEAR1340_I2S_SCLK_X_MASK,
344 .xscale_sel_shift = SPEAR1340_I2S_SCLK_X_SHIFT,
345 .yscale_sel_mask = SPEAR1340_I2S_SCLK_Y_MASK,
346 .yscale_sel_shift = SPEAR1340_I2S_SCLK_Y_SHIFT,
347 .enable_bit = SPEAR1340_I2S_SCLK_SYNTH_ENB,
348};
349
350/* i2s prs1 aux rate configuration table, in ascending order of rates */
351static struct aux_rate_tbl i2s_prs1_rtbl[] = {
352 /* For parent clk = 49.152 MHz */
353 {.xscale = 1, .yscale = 12, .eq = 0}, /* 2.048 MHz, smp freq = 8Khz */
354 {.xscale = 11, .yscale = 96, .eq = 0}, /* 2.816 MHz, smp freq = 11Khz */
355 {.xscale = 1, .yscale = 6, .eq = 0}, /* 4.096 MHz, smp freq = 16Khz */
356 {.xscale = 11, .yscale = 48, .eq = 0}, /* 5.632 MHz, smp freq = 22Khz */
357
358 /*
359 * with parent clk = 49.152, freq gen is 8.192 MHz, smp freq = 32Khz
360 * with parent clk = 12.288, freq gen is 2.048 MHz, smp freq = 8Khz
361 */
362 {.xscale = 1, .yscale = 3, .eq = 0},
363
364 /* For parent clk = 49.152 MHz */
365 {.xscale = 17, .yscale = 37, .eq = 0}, /* 11.289 MHz, smp freq = 44Khz*/
366 {.xscale = 1, .yscale = 2, .eq = 0}, /* 12.288 MHz, smp freq = 48Khz*/
367};
368
369/* i2s sclk aux rate configuration table, in ascending order of rates */
370static struct aux_rate_tbl i2s_sclk_rtbl[] = {
371 /* For sclk = ref_clk * x/2/y */
372 {.xscale = 1, .yscale = 4, .eq = 0},
373 {.xscale = 1, .yscale = 2, .eq = 0},
374};
375
376/* adc rate configuration table, in ascending order of rates */
377/* possible adc range is 2.5 MHz to 20 MHz. */
378static struct aux_rate_tbl adc_rtbl[] = {
379 /* For ahb = 166.67 MHz */
380 {.xscale = 1, .yscale = 31, .eq = 0}, /* 2.68 MHz */
381 {.xscale = 2, .yscale = 21, .eq = 0}, /* 7.94 MHz */
382 {.xscale = 4, .yscale = 21, .eq = 0}, /* 15.87 MHz */
383 {.xscale = 10, .yscale = 42, .eq = 0}, /* 19.84 MHz */
384};
385
386/* General synth rate configuration table, in ascending order of rates */
387static struct frac_rate_tbl gen_rtbl[] = {
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388 {.div = 0x1A92B}, /* 22.5792 MHz for vco1div4=300 MHz*/
389 {.div = 0x186A0}, /* 24.576 MHz for vco1div4=300 MHz*/
390 {.div = 0x18000}, /* 25 MHz for vco1div4=300 MHz*/
391 {.div = 0x1624E}, /* 22.5792 MHz for vco1div4=250 MHz*/
392 {.div = 0x14585}, /* 24.576 MHz for vco1div4=250 MHz*/
393 {.div = 0x14000}, /* 25 MHz for vco1div4=250 MHz*/
394 {.div = 0x0D495}, /* 45.1584 MHz for vco1div4=300 MHz*/
395 {.div = 0x0C000}, /* 50 MHz for vco1div4=300 MHz*/
396 {.div = 0x0B127}, /* 45.1584 MHz for vco1div4=250 MHz*/
397 {.div = 0x0A000}, /* 50 MHz for vco1div4=250 MHz*/
398 {.div = 0x07530}, /* 81.92 MHz for vco1div4=300 MHz*/
399 {.div = 0x061A8}, /* 81.92 MHz for vco1div4=250 MHz*/
400 {.div = 0x06000}, /* 100 MHz for vco1div4=300 MHz*/
401 {.div = 0x05000}, /* 100 MHz for vco1div4=250 MHz*/
402 {.div = 0x03000}, /* 200 MHz for vco1div4=300 MHz*/
403 {.div = 0x02DB6}, /* 210 MHz for vco1div4=300 MHz*/
404 {.div = 0x02BA2}, /* 220 MHz for vco1div4=300 MHz*/
405 {.div = 0x029BD}, /* 230 MHz for vco1div4=300 MHz*/
406 {.div = 0x02800}, /* 200 MHz for vco1div4=250 MHz*/
407 {.div = 0x02666}, /* 250 MHz for vco1div4=300 MHz*/
408 {.div = 0x02620}, /* 210 MHz for vco1div4=250 MHz*/
409 {.div = 0x02460}, /* 220 MHz for vco1div4=250 MHz*/
410 {.div = 0x022C0}, /* 230 MHz for vco1div4=250 MHz*/
411 {.div = 0x02160}, /* 240 MHz for vco1div4=250 MHz*/
412 {.div = 0x02000}, /* 250 MHz for vco1div4=250 MHz*/
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413};
414
415/* clock parents */
416static const char *vco_parents[] = { "osc_24m_clk", "osc_25m_clk", };
d4f513ff 417static const char *sys_parents[] = { "pll1_clk", "pll1_clk", "pll1_clk",
463f9e20 418 "pll1_clk", "sys_syn_clk", "sys_syn_clk", "pll2_clk", "pll3_clk", };
5cb6a9bc 419static const char *ahb_parents[] = { "cpu_div3_clk", "amba_syn_clk", };
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420static const char *gpt_parents[] = { "osc_24m_clk", "apb_clk", };
421static const char *uart0_parents[] = { "pll5_clk", "osc_24m_clk",
5cb6a9bc 422 "uart0_syn_gclk", };
0b928af1 423static const char *uart1_parents[] = { "pll5_clk", "osc_24m_clk",
5cb6a9bc
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424 "uart1_syn_gclk", };
425static const char *c3_parents[] = { "pll5_clk", "c3_syn_gclk", };
426static const char *gmac_phy_input_parents[] = { "gmii_pad_clk", "pll2_clk",
0b928af1 427 "osc_25m_clk", };
5cb6a9bc 428static const char *gmac_phy_parents[] = { "phy_input_mclk", "phy_syn_gclk", };
0b928af1 429static const char *clcd_synth_parents[] = { "vco1div4_clk", "pll2_clk", };
5cb6a9bc 430static const char *clcd_pixel_parents[] = { "pll5_clk", "clcd_syn_clk", };
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431static const char *i2s_src_parents[] = { "vco1div2_clk", "pll2_clk", "pll3_clk",
432 "i2s_src_pad_clk", };
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433static const char *i2s_ref_parents[] = { "i2s_src_mclk", "i2s_prs1_clk", };
434static const char *spdif_out_parents[] = { "i2s_src_pad_clk", "gen_syn2_clk", };
435static const char *spdif_in_parents[] = { "pll2_clk", "gen_syn3_clk", };
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436
437static const char *gen_synth0_1_parents[] = { "vco1div4_clk", "vco3div2_clk",
438 "pll3_clk", };
463f9e20 439static const char *gen_synth2_3_parents[] = { "vco1div4_clk", "vco2div2_clk",
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440 "pll2_clk", };
441
d9909ebe 442void __init spear1340_clk_init(void __iomem *misc_base)
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443{
444 struct clk *clk, *clk1;
445
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446 clk = clk_register_fixed_rate(NULL, "osc_32k_clk", NULL, CLK_IS_ROOT,
447 32000);
448 clk_register_clkdev(clk, "osc_32k_clk", NULL);
449
450 clk = clk_register_fixed_rate(NULL, "osc_24m_clk", NULL, CLK_IS_ROOT,
451 24000000);
452 clk_register_clkdev(clk, "osc_24m_clk", NULL);
453
454 clk = clk_register_fixed_rate(NULL, "osc_25m_clk", NULL, CLK_IS_ROOT,
455 25000000);
456 clk_register_clkdev(clk, "osc_25m_clk", NULL);
457
5cb6a9bc
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458 clk = clk_register_fixed_rate(NULL, "gmii_pad_clk", NULL, CLK_IS_ROOT,
459 125000000);
460 clk_register_clkdev(clk, "gmii_pad_clk", NULL);
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461
462 clk = clk_register_fixed_rate(NULL, "i2s_src_pad_clk", NULL,
463 CLK_IS_ROOT, 12288000);
464 clk_register_clkdev(clk, "i2s_src_pad_clk", NULL);
465
466 /* clock derived from 32 KHz osc clk */
467 clk = clk_register_gate(NULL, "rtc-spear", "osc_32k_clk", 0,
468 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_RTC_CLK_ENB, 0,
469 &_lock);
df2449ab 470 clk_register_clkdev(clk, NULL, "e0580000.rtc");
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471
472 /* clock derived from 24 or 25 MHz osc clk */
473 /* vco-pll */
5cb6a9bc 474 clk = clk_register_mux(NULL, "vco1_mclk", vco_parents,
819c1de3
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475 ARRAY_SIZE(vco_parents), CLK_SET_RATE_NO_REPARENT,
476 SPEAR1340_PLL_CFG, SPEAR1340_PLL1_CLK_SHIFT,
477 SPEAR1340_PLL_CLK_MASK, 0, &_lock);
5cb6a9bc
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478 clk_register_clkdev(clk, "vco1_mclk", NULL);
479 clk = clk_register_vco_pll("vco1_clk", "pll1_clk", NULL, "vco1_mclk", 0,
480 SPEAR1340_PLL1_CTR, SPEAR1340_PLL1_FRQ, pll_rtbl,
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481 ARRAY_SIZE(pll_rtbl), &_lock, &clk1, NULL);
482 clk_register_clkdev(clk, "vco1_clk", NULL);
483 clk_register_clkdev(clk1, "pll1_clk", NULL);
484
5cb6a9bc 485 clk = clk_register_mux(NULL, "vco2_mclk", vco_parents,
819c1de3
JH
486 ARRAY_SIZE(vco_parents), CLK_SET_RATE_NO_REPARENT,
487 SPEAR1340_PLL_CFG, SPEAR1340_PLL2_CLK_SHIFT,
488 SPEAR1340_PLL_CLK_MASK, 0, &_lock);
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489 clk_register_clkdev(clk, "vco2_mclk", NULL);
490 clk = clk_register_vco_pll("vco2_clk", "pll2_clk", NULL, "vco2_mclk", 0,
491 SPEAR1340_PLL2_CTR, SPEAR1340_PLL2_FRQ, pll_rtbl,
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492 ARRAY_SIZE(pll_rtbl), &_lock, &clk1, NULL);
493 clk_register_clkdev(clk, "vco2_clk", NULL);
494 clk_register_clkdev(clk1, "pll2_clk", NULL);
495
5cb6a9bc 496 clk = clk_register_mux(NULL, "vco3_mclk", vco_parents,
819c1de3
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497 ARRAY_SIZE(vco_parents), CLK_SET_RATE_NO_REPARENT,
498 SPEAR1340_PLL_CFG, SPEAR1340_PLL3_CLK_SHIFT,
499 SPEAR1340_PLL_CLK_MASK, 0, &_lock);
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500 clk_register_clkdev(clk, "vco3_mclk", NULL);
501 clk = clk_register_vco_pll("vco3_clk", "pll3_clk", NULL, "vco3_mclk", 0,
502 SPEAR1340_PLL3_CTR, SPEAR1340_PLL3_FRQ, pll_rtbl,
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503 ARRAY_SIZE(pll_rtbl), &_lock, &clk1, NULL);
504 clk_register_clkdev(clk, "vco3_clk", NULL);
505 clk_register_clkdev(clk1, "pll3_clk", NULL);
506
507 clk = clk_register_vco_pll("vco4_clk", "pll4_clk", NULL, "osc_24m_clk",
508 0, SPEAR1340_PLL4_CTR, SPEAR1340_PLL4_FRQ, pll4_rtbl,
509 ARRAY_SIZE(pll4_rtbl), &_lock, &clk1, NULL);
510 clk_register_clkdev(clk, "vco4_clk", NULL);
511 clk_register_clkdev(clk1, "pll4_clk", NULL);
512
513 clk = clk_register_fixed_rate(NULL, "pll5_clk", "osc_24m_clk", 0,
514 48000000);
515 clk_register_clkdev(clk, "pll5_clk", NULL);
516
517 clk = clk_register_fixed_rate(NULL, "pll6_clk", "osc_25m_clk", 0,
518 25000000);
519 clk_register_clkdev(clk, "pll6_clk", NULL);
520
521 /* vco div n clocks */
522 clk = clk_register_fixed_factor(NULL, "vco1div2_clk", "vco1_clk", 0, 1,
523 2);
524 clk_register_clkdev(clk, "vco1div2_clk", NULL);
525
526 clk = clk_register_fixed_factor(NULL, "vco1div4_clk", "vco1_clk", 0, 1,
527 4);
528 clk_register_clkdev(clk, "vco1div4_clk", NULL);
529
530 clk = clk_register_fixed_factor(NULL, "vco2div2_clk", "vco2_clk", 0, 1,
531 2);
532 clk_register_clkdev(clk, "vco2div2_clk", NULL);
533
534 clk = clk_register_fixed_factor(NULL, "vco3div2_clk", "vco3_clk", 0, 1,
535 2);
536 clk_register_clkdev(clk, "vco3div2_clk", NULL);
537
538 /* peripherals */
539 clk_register_fixed_factor(NULL, "thermal_clk", "osc_24m_clk", 0, 1,
540 128);
5cb6a9bc 541 clk = clk_register_gate(NULL, "thermal_gclk", "thermal_clk", 0,
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542 SPEAR1340_PERIP2_CLK_ENB, SPEAR1340_THSENS_CLK_ENB, 0,
543 &_lock);
df2449ab 544 clk_register_clkdev(clk, NULL, "e07008c4.thermal");
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545
546 /* clock derived from pll4 clk */
547 clk = clk_register_fixed_factor(NULL, "ddr_clk", "pll4_clk", 0, 1,
548 1);
549 clk_register_clkdev(clk, "ddr_clk", NULL);
550
551 /* clock derived from pll1 clk */
5cb6a9bc 552 clk = clk_register_frac("sys_syn_clk", "vco1div2_clk", 0,
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553 SPEAR1340_SYS_CLK_SYNT, sys_synth_rtbl,
554 ARRAY_SIZE(sys_synth_rtbl), &_lock);
5cb6a9bc 555 clk_register_clkdev(clk, "sys_syn_clk", NULL);
0b928af1 556
5cb6a9bc 557 clk = clk_register_frac("amba_syn_clk", "vco1div2_clk", 0,
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558 SPEAR1340_AMBA_CLK_SYNT, amba_synth_rtbl,
559 ARRAY_SIZE(amba_synth_rtbl), &_lock);
5cb6a9bc 560 clk_register_clkdev(clk, "amba_syn_clk", NULL);
0b928af1 561
5cb6a9bc 562 clk = clk_register_mux(NULL, "sys_mclk", sys_parents,
819c1de3
JH
563 ARRAY_SIZE(sys_parents), CLK_SET_RATE_NO_REPARENT,
564 SPEAR1340_SYS_CLK_CTRL, SPEAR1340_SCLK_SRC_SEL_SHIFT,
0b928af1 565 SPEAR1340_SCLK_SRC_SEL_MASK, 0, &_lock);
e0b9c210 566 clk_register_clkdev(clk, "sys_mclk", NULL);
0b928af1 567
5cb6a9bc 568 clk = clk_register_fixed_factor(NULL, "cpu_clk", "sys_mclk", 0, 1,
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569 2);
570 clk_register_clkdev(clk, "cpu_clk", NULL);
571
572 clk = clk_register_fixed_factor(NULL, "cpu_div3_clk", "cpu_clk", 0, 1,
573 3);
574 clk_register_clkdev(clk, "cpu_div3_clk", NULL);
575
576 clk = clk_register_fixed_factor(NULL, "wdt_clk", "cpu_clk", 0, 1,
577 2);
578 clk_register_clkdev(clk, NULL, "ec800620.wdt");
579
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580 clk = clk_register_fixed_factor(NULL, "smp_twd_clk", "cpu_clk", 0, 1,
581 2);
582 clk_register_clkdev(clk, NULL, "smp_twd");
583
0b928af1 584 clk = clk_register_mux(NULL, "ahb_clk", ahb_parents,
819c1de3
JH
585 ARRAY_SIZE(ahb_parents), CLK_SET_RATE_NO_REPARENT,
586 SPEAR1340_SYS_CLK_CTRL, SPEAR1340_HCLK_SRC_SEL_SHIFT,
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587 SPEAR1340_HCLK_SRC_SEL_MASK, 0, &_lock);
588 clk_register_clkdev(clk, "ahb_clk", NULL);
589
590 clk = clk_register_fixed_factor(NULL, "apb_clk", "ahb_clk", 0, 1,
591 2);
592 clk_register_clkdev(clk, "apb_clk", NULL);
593
594 /* gpt clocks */
5cb6a9bc 595 clk = clk_register_mux(NULL, "gpt0_mclk", gpt_parents,
819c1de3
JH
596 ARRAY_SIZE(gpt_parents), CLK_SET_RATE_NO_REPARENT,
597 SPEAR1340_PERIP_CLK_CFG, SPEAR1340_GPT0_CLK_SHIFT,
598 SPEAR1340_GPT_CLK_MASK, 0, &_lock);
5cb6a9bc
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599 clk_register_clkdev(clk, "gpt0_mclk", NULL);
600 clk = clk_register_gate(NULL, "gpt0_clk", "gpt0_mclk", 0,
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601 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_GPT0_CLK_ENB, 0,
602 &_lock);
603 clk_register_clkdev(clk, NULL, "gpt0");
604
5cb6a9bc 605 clk = clk_register_mux(NULL, "gpt1_mclk", gpt_parents,
819c1de3
JH
606 ARRAY_SIZE(gpt_parents), CLK_SET_RATE_NO_REPARENT,
607 SPEAR1340_PERIP_CLK_CFG, SPEAR1340_GPT1_CLK_SHIFT,
608 SPEAR1340_GPT_CLK_MASK, 0, &_lock);
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609 clk_register_clkdev(clk, "gpt1_mclk", NULL);
610 clk = clk_register_gate(NULL, "gpt1_clk", "gpt1_mclk", 0,
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611 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_GPT1_CLK_ENB, 0,
612 &_lock);
613 clk_register_clkdev(clk, NULL, "gpt1");
614
5cb6a9bc 615 clk = clk_register_mux(NULL, "gpt2_mclk", gpt_parents,
819c1de3
JH
616 ARRAY_SIZE(gpt_parents), CLK_SET_RATE_NO_REPARENT,
617 SPEAR1340_PERIP_CLK_CFG, SPEAR1340_GPT2_CLK_SHIFT,
618 SPEAR1340_GPT_CLK_MASK, 0, &_lock);
5cb6a9bc
VKS
619 clk_register_clkdev(clk, "gpt2_mclk", NULL);
620 clk = clk_register_gate(NULL, "gpt2_clk", "gpt2_mclk", 0,
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621 SPEAR1340_PERIP2_CLK_ENB, SPEAR1340_GPT2_CLK_ENB, 0,
622 &_lock);
623 clk_register_clkdev(clk, NULL, "gpt2");
624
5cb6a9bc 625 clk = clk_register_mux(NULL, "gpt3_mclk", gpt_parents,
819c1de3
JH
626 ARRAY_SIZE(gpt_parents), CLK_SET_RATE_NO_REPARENT,
627 SPEAR1340_PERIP_CLK_CFG, SPEAR1340_GPT3_CLK_SHIFT,
628 SPEAR1340_GPT_CLK_MASK, 0, &_lock);
5cb6a9bc
VKS
629 clk_register_clkdev(clk, "gpt3_mclk", NULL);
630 clk = clk_register_gate(NULL, "gpt3_clk", "gpt3_mclk", 0,
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631 SPEAR1340_PERIP2_CLK_ENB, SPEAR1340_GPT3_CLK_ENB, 0,
632 &_lock);
633 clk_register_clkdev(clk, NULL, "gpt3");
634
635 /* others */
5cb6a9bc 636 clk = clk_register_aux("uart0_syn_clk", "uart0_syn_gclk",
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637 "vco1div2_clk", 0, SPEAR1340_UART0_CLK_SYNT, NULL,
638 aux_rtbl, ARRAY_SIZE(aux_rtbl), &_lock, &clk1);
5cb6a9bc
VKS
639 clk_register_clkdev(clk, "uart0_syn_clk", NULL);
640 clk_register_clkdev(clk1, "uart0_syn_gclk", NULL);
0b928af1 641
5cb6a9bc 642 clk = clk_register_mux(NULL, "uart0_mclk", uart0_parents,
819c1de3
JH
643 ARRAY_SIZE(uart0_parents),
644 CLK_SET_RATE_PARENT | CLK_SET_RATE_NO_REPARENT,
12499792
VKS
645 SPEAR1340_PERIP_CLK_CFG, SPEAR1340_UART0_CLK_SHIFT,
646 SPEAR1340_UART_CLK_MASK, 0, &_lock);
5cb6a9bc 647 clk_register_clkdev(clk, "uart0_mclk", NULL);
0b928af1 648
12499792
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649 clk = clk_register_gate(NULL, "uart0_clk", "uart0_mclk",
650 CLK_SET_RATE_PARENT, SPEAR1340_PERIP1_CLK_ENB,
651 SPEAR1340_UART0_CLK_ENB, 0, &_lock);
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652 clk_register_clkdev(clk, NULL, "e0000000.serial");
653
5cb6a9bc 654 clk = clk_register_aux("uart1_syn_clk", "uart1_syn_gclk",
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655 "vco1div2_clk", 0, SPEAR1340_UART1_CLK_SYNT, NULL,
656 aux_rtbl, ARRAY_SIZE(aux_rtbl), &_lock, &clk1);
5cb6a9bc
VKS
657 clk_register_clkdev(clk, "uart1_syn_clk", NULL);
658 clk_register_clkdev(clk1, "uart1_syn_gclk", NULL);
0b928af1 659
5cb6a9bc 660 clk = clk_register_mux(NULL, "uart1_mclk", uart1_parents,
819c1de3
JH
661 ARRAY_SIZE(uart1_parents), CLK_SET_RATE_NO_REPARENT,
662 SPEAR1340_PERIP_CLK_CFG, SPEAR1340_UART1_CLK_SHIFT,
663 SPEAR1340_UART_CLK_MASK, 0, &_lock);
5cb6a9bc 664 clk_register_clkdev(clk, "uart1_mclk", NULL);
0b928af1 665
5cb6a9bc 666 clk = clk_register_gate(NULL, "uart1_clk", "uart1_mclk", 0,
d9ba8db2 667 SPEAR1340_PERIP3_CLK_ENB, SPEAR1340_UART1_CLK_ENB, 0,
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668 &_lock);
669 clk_register_clkdev(clk, NULL, "b4100000.serial");
670
5cb6a9bc 671 clk = clk_register_aux("sdhci_syn_clk", "sdhci_syn_gclk",
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672 "vco1div2_clk", 0, SPEAR1340_SDHCI_CLK_SYNT, NULL,
673 aux_rtbl, ARRAY_SIZE(aux_rtbl), &_lock, &clk1);
5cb6a9bc
VKS
674 clk_register_clkdev(clk, "sdhci_syn_clk", NULL);
675 clk_register_clkdev(clk1, "sdhci_syn_gclk", NULL);
0b928af1 676
12499792
VKS
677 clk = clk_register_gate(NULL, "sdhci_clk", "sdhci_syn_gclk",
678 CLK_SET_RATE_PARENT, SPEAR1340_PERIP1_CLK_ENB,
679 SPEAR1340_SDHCI_CLK_ENB, 0, &_lock);
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680 clk_register_clkdev(clk, NULL, "b3000000.sdhci");
681
5cb6a9bc
VKS
682 clk = clk_register_aux("cfxd_syn_clk", "cfxd_syn_gclk", "vco1div2_clk",
683 0, SPEAR1340_CFXD_CLK_SYNT, NULL, aux_rtbl,
684 ARRAY_SIZE(aux_rtbl), &_lock, &clk1);
685 clk_register_clkdev(clk, "cfxd_syn_clk", NULL);
686 clk_register_clkdev(clk1, "cfxd_syn_gclk", NULL);
0b928af1 687
12499792
VKS
688 clk = clk_register_gate(NULL, "cfxd_clk", "cfxd_syn_gclk",
689 CLK_SET_RATE_PARENT, SPEAR1340_PERIP1_CLK_ENB,
690 SPEAR1340_CFXD_CLK_ENB, 0, &_lock);
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691 clk_register_clkdev(clk, NULL, "b2800000.cf");
692 clk_register_clkdev(clk, NULL, "arasan_xd");
693
5cb6a9bc
VKS
694 clk = clk_register_aux("c3_syn_clk", "c3_syn_gclk", "vco1div2_clk", 0,
695 SPEAR1340_C3_CLK_SYNT, NULL, aux_rtbl,
696 ARRAY_SIZE(aux_rtbl), &_lock, &clk1);
697 clk_register_clkdev(clk, "c3_syn_clk", NULL);
698 clk_register_clkdev(clk1, "c3_syn_gclk", NULL);
0b928af1 699
5cb6a9bc 700 clk = clk_register_mux(NULL, "c3_mclk", c3_parents,
819c1de3
JH
701 ARRAY_SIZE(c3_parents),
702 CLK_SET_RATE_PARENT | CLK_SET_RATE_NO_REPARENT,
12499792
VKS
703 SPEAR1340_PERIP_CLK_CFG, SPEAR1340_C3_CLK_SHIFT,
704 SPEAR1340_C3_CLK_MASK, 0, &_lock);
5cb6a9bc 705 clk_register_clkdev(clk, "c3_mclk", NULL);
0b928af1 706
12499792 707 clk = clk_register_gate(NULL, "c3_clk", "c3_mclk", CLK_SET_RATE_PARENT,
0b928af1
VK
708 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_C3_CLK_ENB, 0,
709 &_lock);
df2449ab 710 clk_register_clkdev(clk, NULL, "e1800000.c3");
0b928af1
VK
711
712 /* gmac */
5cb6a9bc 713 clk = clk_register_mux(NULL, "phy_input_mclk", gmac_phy_input_parents,
819c1de3
JH
714 ARRAY_SIZE(gmac_phy_input_parents),
715 CLK_SET_RATE_NO_REPARENT, SPEAR1340_GMAC_CLK_CFG,
0b928af1
VK
716 SPEAR1340_GMAC_PHY_INPUT_CLK_SHIFT,
717 SPEAR1340_GMAC_PHY_INPUT_CLK_MASK, 0, &_lock);
5cb6a9bc 718 clk_register_clkdev(clk, "phy_input_mclk", NULL);
0b928af1 719
5cb6a9bc
VKS
720 clk = clk_register_aux("phy_syn_clk", "phy_syn_gclk", "phy_input_mclk",
721 0, SPEAR1340_GMAC_CLK_SYNT, NULL, gmac_rtbl,
722 ARRAY_SIZE(gmac_rtbl), &_lock, &clk1);
723 clk_register_clkdev(clk, "phy_syn_clk", NULL);
724 clk_register_clkdev(clk1, "phy_syn_gclk", NULL);
0b928af1 725
5cb6a9bc 726 clk = clk_register_mux(NULL, "phy_mclk", gmac_phy_parents,
819c1de3 727 ARRAY_SIZE(gmac_phy_parents), CLK_SET_RATE_NO_REPARENT,
0b928af1
VK
728 SPEAR1340_PERIP_CLK_CFG, SPEAR1340_GMAC_PHY_CLK_SHIFT,
729 SPEAR1340_GMAC_PHY_CLK_MASK, 0, &_lock);
df2449ab 730 clk_register_clkdev(clk, "stmmacphy.0", NULL);
0b928af1
VK
731
732 /* clcd */
5cb6a9bc 733 clk = clk_register_mux(NULL, "clcd_syn_mclk", clcd_synth_parents,
819c1de3
JH
734 ARRAY_SIZE(clcd_synth_parents),
735 CLK_SET_RATE_NO_REPARENT, SPEAR1340_CLCD_CLK_SYNT,
736 SPEAR1340_CLCD_SYNT_CLK_SHIFT,
0b928af1 737 SPEAR1340_CLCD_SYNT_CLK_MASK, 0, &_lock);
5cb6a9bc 738 clk_register_clkdev(clk, "clcd_syn_mclk", NULL);
0b928af1 739
5cb6a9bc 740 clk = clk_register_frac("clcd_syn_clk", "clcd_syn_mclk", 0,
0b928af1
VK
741 SPEAR1340_CLCD_CLK_SYNT, clcd_rtbl,
742 ARRAY_SIZE(clcd_rtbl), &_lock);
5cb6a9bc 743 clk_register_clkdev(clk, "clcd_syn_clk", NULL);
0b928af1 744
5cb6a9bc 745 clk = clk_register_mux(NULL, "clcd_pixel_mclk", clcd_pixel_parents,
819c1de3
JH
746 ARRAY_SIZE(clcd_pixel_parents),
747 CLK_SET_RATE_PARENT | CLK_SET_RATE_NO_REPARENT,
0b928af1
VK
748 SPEAR1340_PERIP_CLK_CFG, SPEAR1340_CLCD_CLK_SHIFT,
749 SPEAR1340_CLCD_CLK_MASK, 0, &_lock);
e0b9c210 750 clk_register_clkdev(clk, "clcd_pixel_mclk", NULL);
0b928af1 751
5cb6a9bc 752 clk = clk_register_gate(NULL, "clcd_clk", "clcd_pixel_mclk", 0,
0b928af1
VK
753 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_CLCD_CLK_ENB, 0,
754 &_lock);
df2449ab 755 clk_register_clkdev(clk, NULL, "e1000000.clcd");
0b928af1
VK
756
757 /* i2s */
5cb6a9bc 758 clk = clk_register_mux(NULL, "i2s_src_mclk", i2s_src_parents,
819c1de3
JH
759 ARRAY_SIZE(i2s_src_parents), CLK_SET_RATE_NO_REPARENT,
760 SPEAR1340_I2S_CLK_CFG, SPEAR1340_I2S_SRC_CLK_SHIFT,
761 SPEAR1340_I2S_SRC_CLK_MASK, 0, &_lock);
e0b9c210 762 clk_register_clkdev(clk, "i2s_src_mclk", NULL);
0b928af1 763
12499792
VKS
764 clk = clk_register_aux("i2s_prs1_clk", NULL, "i2s_src_mclk",
765 CLK_SET_RATE_PARENT, SPEAR1340_I2S_CLK_CFG,
766 &i2s_prs1_masks, i2s_prs1_rtbl,
0b928af1
VK
767 ARRAY_SIZE(i2s_prs1_rtbl), &_lock, NULL);
768 clk_register_clkdev(clk, "i2s_prs1_clk", NULL);
769
5cb6a9bc 770 clk = clk_register_mux(NULL, "i2s_ref_mclk", i2s_ref_parents,
819c1de3
JH
771 ARRAY_SIZE(i2s_ref_parents),
772 CLK_SET_RATE_PARENT | CLK_SET_RATE_NO_REPARENT,
12499792
VKS
773 SPEAR1340_I2S_CLK_CFG, SPEAR1340_I2S_REF_SHIFT,
774 SPEAR1340_I2S_REF_SEL_MASK, 0, &_lock);
e0b9c210 775 clk_register_clkdev(clk, "i2s_ref_mclk", NULL);
0b928af1 776
5cb6a9bc 777 clk = clk_register_gate(NULL, "i2s_ref_pad_clk", "i2s_ref_mclk", 0,
0b928af1
VK
778 SPEAR1340_PERIP2_CLK_ENB, SPEAR1340_I2S_REF_PAD_CLK_ENB,
779 0, &_lock);
780 clk_register_clkdev(clk, "i2s_ref_pad_clk", NULL);
781
5cb6a9bc
VKS
782 clk = clk_register_aux("i2s_sclk_clk", "i2s_sclk_gclk", "i2s_ref_mclk",
783 0, SPEAR1340_I2S_CLK_CFG, &i2s_sclk_masks,
784 i2s_sclk_rtbl, ARRAY_SIZE(i2s_sclk_rtbl), &_lock,
785 &clk1);
0b928af1 786 clk_register_clkdev(clk, "i2s_sclk_clk", NULL);
5cb6a9bc 787 clk_register_clkdev(clk1, "i2s_sclk_gclk", NULL);
0b928af1
VK
788
789 /* clock derived from ahb clk */
790 clk = clk_register_gate(NULL, "i2c0_clk", "ahb_clk", 0,
791 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_I2C0_CLK_ENB, 0,
792 &_lock);
793 clk_register_clkdev(clk, NULL, "e0280000.i2c");
794
795 clk = clk_register_gate(NULL, "i2c1_clk", "ahb_clk", 0,
d9ba8db2 796 SPEAR1340_PERIP3_CLK_ENB, SPEAR1340_I2C1_CLK_ENB, 0,
0b928af1
VK
797 &_lock);
798 clk_register_clkdev(clk, NULL, "b4000000.i2c");
799
800 clk = clk_register_gate(NULL, "dma_clk", "ahb_clk", 0,
801 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_DMA_CLK_ENB, 0,
802 &_lock);
803 clk_register_clkdev(clk, NULL, "ea800000.dma");
804 clk_register_clkdev(clk, NULL, "eb000000.dma");
805
806 clk = clk_register_gate(NULL, "gmac_clk", "ahb_clk", 0,
807 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_GMAC_CLK_ENB, 0,
808 &_lock);
809 clk_register_clkdev(clk, NULL, "e2000000.eth");
810
811 clk = clk_register_gate(NULL, "fsmc_clk", "ahb_clk", 0,
812 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_FSMC_CLK_ENB, 0,
813 &_lock);
814 clk_register_clkdev(clk, NULL, "b0000000.flash");
815
816 clk = clk_register_gate(NULL, "smi_clk", "ahb_clk", 0,
817 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_SMI_CLK_ENB, 0,
818 &_lock);
819 clk_register_clkdev(clk, NULL, "ea000000.flash");
820
821 clk = clk_register_gate(NULL, "usbh0_clk", "ahb_clk", 0,
822 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_UHC0_CLK_ENB, 0,
823 &_lock);
df2449ab
RK
824 clk_register_clkdev(clk, NULL, "e4000000.ohci");
825 clk_register_clkdev(clk, NULL, "e4800000.ehci");
0b928af1
VK
826
827 clk = clk_register_gate(NULL, "usbh1_clk", "ahb_clk", 0,
828 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_UHC1_CLK_ENB, 0,
829 &_lock);
df2449ab
RK
830 clk_register_clkdev(clk, NULL, "e5000000.ohci");
831 clk_register_clkdev(clk, NULL, "e5800000.ehci");
0b928af1
VK
832
833 clk = clk_register_gate(NULL, "uoc_clk", "ahb_clk", 0,
834 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_UOC_CLK_ENB, 0,
835 &_lock);
df2449ab 836 clk_register_clkdev(clk, NULL, "e3800000.otg");
0b928af1
VK
837
838 clk = clk_register_gate(NULL, "pcie_sata_clk", "ahb_clk", 0,
839 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_PCIE_SATA_CLK_ENB,
840 0, &_lock);
22a69230 841 clk_register_clkdev(clk, NULL, "b1000000.pcie");
df2449ab 842 clk_register_clkdev(clk, NULL, "b1000000.ahci");
0b928af1
VK
843
844 clk = clk_register_gate(NULL, "sysram0_clk", "ahb_clk", 0,
845 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_SYSRAM0_CLK_ENB, 0,
846 &_lock);
847 clk_register_clkdev(clk, "sysram0_clk", NULL);
848
849 clk = clk_register_gate(NULL, "sysram1_clk", "ahb_clk", 0,
850 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_SYSRAM1_CLK_ENB, 0,
851 &_lock);
852 clk_register_clkdev(clk, "sysram1_clk", NULL);
853
5cb6a9bc 854 clk = clk_register_aux("adc_syn_clk", "adc_syn_gclk", "ahb_clk",
0b928af1
VK
855 0, SPEAR1340_ADC_CLK_SYNT, NULL, adc_rtbl,
856 ARRAY_SIZE(adc_rtbl), &_lock, &clk1);
5cb6a9bc
VKS
857 clk_register_clkdev(clk, "adc_syn_clk", NULL);
858 clk_register_clkdev(clk1, "adc_syn_gclk", NULL);
0b928af1 859
12499792
VKS
860 clk = clk_register_gate(NULL, "adc_clk", "adc_syn_gclk",
861 CLK_SET_RATE_PARENT, SPEAR1340_PERIP1_CLK_ENB,
862 SPEAR1340_ADC_CLK_ENB, 0, &_lock);
df2449ab 863 clk_register_clkdev(clk, NULL, "e0080000.adc");
0b928af1
VK
864
865 /* clock derived from apb clk */
866 clk = clk_register_gate(NULL, "ssp_clk", "apb_clk", 0,
867 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_SSP_CLK_ENB, 0,
868 &_lock);
869 clk_register_clkdev(clk, NULL, "e0100000.spi");
870
871 clk = clk_register_gate(NULL, "gpio0_clk", "apb_clk", 0,
872 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_GPIO0_CLK_ENB, 0,
873 &_lock);
874 clk_register_clkdev(clk, NULL, "e0600000.gpio");
875
876 clk = clk_register_gate(NULL, "gpio1_clk", "apb_clk", 0,
877 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_GPIO1_CLK_ENB, 0,
878 &_lock);
879 clk_register_clkdev(clk, NULL, "e0680000.gpio");
880
881 clk = clk_register_gate(NULL, "i2s_play_clk", "apb_clk", 0,
882 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_I2S_PLAY_CLK_ENB, 0,
883 &_lock);
df2449ab 884 clk_register_clkdev(clk, NULL, "b2400000.i2s-play");
0b928af1
VK
885
886 clk = clk_register_gate(NULL, "i2s_rec_clk", "apb_clk", 0,
887 SPEAR1340_PERIP1_CLK_ENB, SPEAR1340_I2S_REC_CLK_ENB, 0,
888 &_lock);
df2449ab 889 clk_register_clkdev(clk, NULL, "b2000000.i2s-rec");
0b928af1
VK
890
891 clk = clk_register_gate(NULL, "kbd_clk", "apb_clk", 0,
892 SPEAR1340_PERIP2_CLK_ENB, SPEAR1340_KBD_CLK_ENB, 0,
893 &_lock);
894 clk_register_clkdev(clk, NULL, "e0300000.kbd");
895
896 /* RAS clks */
5cb6a9bc 897 clk = clk_register_mux(NULL, "gen_syn0_1_mclk", gen_synth0_1_parents,
819c1de3
JH
898 ARRAY_SIZE(gen_synth0_1_parents),
899 CLK_SET_RATE_NO_REPARENT, SPEAR1340_PLL_CFG,
5cb6a9bc 900 SPEAR1340_GEN_SYNT0_1_CLK_SHIFT,
0b928af1 901 SPEAR1340_GEN_SYNT_CLK_MASK, 0, &_lock);
e0b9c210 902 clk_register_clkdev(clk, "gen_syn0_1_mclk", NULL);
0b928af1 903
5cb6a9bc 904 clk = clk_register_mux(NULL, "gen_syn2_3_mclk", gen_synth2_3_parents,
819c1de3
JH
905 ARRAY_SIZE(gen_synth2_3_parents),
906 CLK_SET_RATE_NO_REPARENT, SPEAR1340_PLL_CFG,
5cb6a9bc 907 SPEAR1340_GEN_SYNT2_3_CLK_SHIFT,
0b928af1 908 SPEAR1340_GEN_SYNT_CLK_MASK, 0, &_lock);
e0b9c210 909 clk_register_clkdev(clk, "gen_syn2_3_mclk", NULL);
0b928af1 910
e0b9c210 911 clk = clk_register_frac("gen_syn0_clk", "gen_syn0_1_mclk", 0,
0b928af1
VK
912 SPEAR1340_GEN_CLK_SYNT0, gen_rtbl, ARRAY_SIZE(gen_rtbl),
913 &_lock);
5cb6a9bc 914 clk_register_clkdev(clk, "gen_syn0_clk", NULL);
0b928af1 915
e0b9c210 916 clk = clk_register_frac("gen_syn1_clk", "gen_syn0_1_mclk", 0,
0b928af1
VK
917 SPEAR1340_GEN_CLK_SYNT1, gen_rtbl, ARRAY_SIZE(gen_rtbl),
918 &_lock);
5cb6a9bc 919 clk_register_clkdev(clk, "gen_syn1_clk", NULL);
0b928af1 920
e0b9c210 921 clk = clk_register_frac("gen_syn2_clk", "gen_syn2_3_mclk", 0,
0b928af1
VK
922 SPEAR1340_GEN_CLK_SYNT2, gen_rtbl, ARRAY_SIZE(gen_rtbl),
923 &_lock);
5cb6a9bc 924 clk_register_clkdev(clk, "gen_syn2_clk", NULL);
0b928af1 925
e0b9c210 926 clk = clk_register_frac("gen_syn3_clk", "gen_syn2_3_mclk", 0,
0b928af1
VK
927 SPEAR1340_GEN_CLK_SYNT3, gen_rtbl, ARRAY_SIZE(gen_rtbl),
928 &_lock);
5cb6a9bc 929 clk_register_clkdev(clk, "gen_syn3_clk", NULL);
0b928af1 930
12499792
VKS
931 clk = clk_register_gate(NULL, "mali_clk", "gen_syn3_clk",
932 CLK_SET_RATE_PARENT, SPEAR1340_PERIP3_CLK_ENB,
933 SPEAR1340_MALI_CLK_ENB, 0, &_lock);
0b928af1
VK
934 clk_register_clkdev(clk, NULL, "mali");
935
936 clk = clk_register_gate(NULL, "cec0_clk", "ahb_clk", 0,
937 SPEAR1340_PERIP3_CLK_ENB, SPEAR1340_CEC0_CLK_ENB, 0,
938 &_lock);
939 clk_register_clkdev(clk, NULL, "spear_cec.0");
940
941 clk = clk_register_gate(NULL, "cec1_clk", "ahb_clk", 0,
942 SPEAR1340_PERIP3_CLK_ENB, SPEAR1340_CEC1_CLK_ENB, 0,
943 &_lock);
944 clk_register_clkdev(clk, NULL, "spear_cec.1");
945
5cb6a9bc 946 clk = clk_register_mux(NULL, "spdif_out_mclk", spdif_out_parents,
819c1de3
JH
947 ARRAY_SIZE(spdif_out_parents),
948 CLK_SET_RATE_PARENT | CLK_SET_RATE_NO_REPARENT,
0b928af1
VK
949 SPEAR1340_PERIP_CLK_CFG, SPEAR1340_SPDIF_OUT_CLK_SHIFT,
950 SPEAR1340_SPDIF_CLK_MASK, 0, &_lock);
5cb6a9bc 951 clk_register_clkdev(clk, "spdif_out_mclk", NULL);
0b928af1 952
12499792
VKS
953 clk = clk_register_gate(NULL, "spdif_out_clk", "spdif_out_mclk",
954 CLK_SET_RATE_PARENT, SPEAR1340_PERIP3_CLK_ENB,
955 SPEAR1340_SPDIF_OUT_CLK_ENB, 0, &_lock);
df2449ab 956 clk_register_clkdev(clk, NULL, "d0000000.spdif-out");
0b928af1 957
5cb6a9bc 958 clk = clk_register_mux(NULL, "spdif_in_mclk", spdif_in_parents,
819c1de3
JH
959 ARRAY_SIZE(spdif_in_parents),
960 CLK_SET_RATE_PARENT | CLK_SET_RATE_NO_REPARENT,
0b928af1
VK
961 SPEAR1340_PERIP_CLK_CFG, SPEAR1340_SPDIF_IN_CLK_SHIFT,
962 SPEAR1340_SPDIF_CLK_MASK, 0, &_lock);
5cb6a9bc 963 clk_register_clkdev(clk, "spdif_in_mclk", NULL);
0b928af1 964
12499792
VKS
965 clk = clk_register_gate(NULL, "spdif_in_clk", "spdif_in_mclk",
966 CLK_SET_RATE_PARENT, SPEAR1340_PERIP3_CLK_ENB,
967 SPEAR1340_SPDIF_IN_CLK_ENB, 0, &_lock);
df2449ab 968 clk_register_clkdev(clk, NULL, "d0100000.spdif-in");
0b928af1 969
04981724 970 clk = clk_register_gate(NULL, "acp_clk", "ahb_clk", 0,
0b928af1
VK
971 SPEAR1340_PERIP2_CLK_ENB, SPEAR1340_ACP_CLK_ENB, 0,
972 &_lock);
973 clk_register_clkdev(clk, NULL, "acp_clk");
974
04981724 975 clk = clk_register_gate(NULL, "plgpio_clk", "ahb_clk", 0,
0b928af1
VK
976 SPEAR1340_PERIP3_CLK_ENB, SPEAR1340_PLGPIO_CLK_ENB, 0,
977 &_lock);
df2449ab 978 clk_register_clkdev(clk, NULL, "e2800000.gpio");
0b928af1 979
04981724 980 clk = clk_register_gate(NULL, "video_dec_clk", "ahb_clk", 0,
0b928af1
VK
981 SPEAR1340_PERIP3_CLK_ENB, SPEAR1340_VIDEO_DEC_CLK_ENB,
982 0, &_lock);
983 clk_register_clkdev(clk, NULL, "video_dec");
984
04981724 985 clk = clk_register_gate(NULL, "video_enc_clk", "ahb_clk", 0,
0b928af1
VK
986 SPEAR1340_PERIP3_CLK_ENB, SPEAR1340_VIDEO_ENC_CLK_ENB,
987 0, &_lock);
988 clk_register_clkdev(clk, NULL, "video_enc");
989
04981724 990 clk = clk_register_gate(NULL, "video_in_clk", "ahb_clk", 0,
0b928af1
VK
991 SPEAR1340_PERIP3_CLK_ENB, SPEAR1340_VIDEO_IN_CLK_ENB, 0,
992 &_lock);
993 clk_register_clkdev(clk, NULL, "spear_vip");
994
04981724 995 clk = clk_register_gate(NULL, "cam0_clk", "ahb_clk", 0,
0b928af1
VK
996 SPEAR1340_PERIP3_CLK_ENB, SPEAR1340_CAM0_CLK_ENB, 0,
997 &_lock);
df2449ab 998 clk_register_clkdev(clk, NULL, "d0200000.cam0");
0b928af1 999
04981724 1000 clk = clk_register_gate(NULL, "cam1_clk", "ahb_clk", 0,
0b928af1
VK
1001 SPEAR1340_PERIP3_CLK_ENB, SPEAR1340_CAM1_CLK_ENB, 0,
1002 &_lock);
df2449ab 1003 clk_register_clkdev(clk, NULL, "d0300000.cam1");
0b928af1 1004
04981724 1005 clk = clk_register_gate(NULL, "cam2_clk", "ahb_clk", 0,
0b928af1
VK
1006 SPEAR1340_PERIP3_CLK_ENB, SPEAR1340_CAM2_CLK_ENB, 0,
1007 &_lock);
df2449ab 1008 clk_register_clkdev(clk, NULL, "d0400000.cam2");
0b928af1 1009
04981724 1010 clk = clk_register_gate(NULL, "cam3_clk", "ahb_clk", 0,
0b928af1
VK
1011 SPEAR1340_PERIP3_CLK_ENB, SPEAR1340_CAM3_CLK_ENB, 0,
1012 &_lock);
df2449ab 1013 clk_register_clkdev(clk, NULL, "d0500000.cam3");
0b928af1 1014
463f9e20 1015 clk = clk_register_gate(NULL, "pwm_clk", "ahb_clk", 0,
0b928af1
VK
1016 SPEAR1340_PERIP3_CLK_ENB, SPEAR1340_PWM_CLK_ENB, 0,
1017 &_lock);
df2449ab 1018 clk_register_clkdev(clk, NULL, "e0180000.pwm");
0b928af1 1019}