clk-exynos5250.c 33 KB

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  1. /*
  2. * Copyright (c) 2013 Samsung Electronics Co., Ltd.
  3. * Copyright (c) 2013 Linaro Ltd.
  4. * Author: Thomas Abraham <thomas.ab@samsung.com>
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License version 2 as
  8. * published by the Free Software Foundation.
  9. *
  10. * Common Clock Framework support for Exynos5250 SoC.
  11. */
  12. #include <dt-bindings/clock/exynos5250.h>
  13. #include <linux/clk-provider.h>
  14. #include <linux/of.h>
  15. #include <linux/of_address.h>
  16. #include <linux/syscore_ops.h>
  17. #include "clk.h"
  18. #include "clk-cpu.h"
  19. #include "clk-exynos5-subcmu.h"
  20. #define APLL_LOCK 0x0
  21. #define APLL_CON0 0x100
  22. #define SRC_CPU 0x200
  23. #define DIV_CPU0 0x500
  24. #define PWR_CTRL1 0x1020
  25. #define PWR_CTRL2 0x1024
  26. #define MPLL_LOCK 0x4000
  27. #define MPLL_CON0 0x4100
  28. #define SRC_CORE1 0x4204
  29. #define GATE_IP_ACP 0x8800
  30. #define GATE_IP_ISP0 0xc800
  31. #define GATE_IP_ISP1 0xc804
  32. #define CPLL_LOCK 0x10020
  33. #define EPLL_LOCK 0x10030
  34. #define VPLL_LOCK 0x10040
  35. #define GPLL_LOCK 0x10050
  36. #define CPLL_CON0 0x10120
  37. #define EPLL_CON0 0x10130
  38. #define VPLL_CON0 0x10140
  39. #define GPLL_CON0 0x10150
  40. #define SRC_TOP0 0x10210
  41. #define SRC_TOP1 0x10214
  42. #define SRC_TOP2 0x10218
  43. #define SRC_TOP3 0x1021c
  44. #define SRC_GSCL 0x10220
  45. #define SRC_DISP1_0 0x1022c
  46. #define SRC_MAU 0x10240
  47. #define SRC_FSYS 0x10244
  48. #define SRC_GEN 0x10248
  49. #define SRC_PERIC0 0x10250
  50. #define SRC_PERIC1 0x10254
  51. #define SRC_MASK_GSCL 0x10320
  52. #define SRC_MASK_DISP1_0 0x1032c
  53. #define SRC_MASK_MAU 0x10334
  54. #define SRC_MASK_FSYS 0x10340
  55. #define SRC_MASK_GEN 0x10344
  56. #define SRC_MASK_PERIC0 0x10350
  57. #define SRC_MASK_PERIC1 0x10354
  58. #define DIV_TOP0 0x10510
  59. #define DIV_TOP1 0x10514
  60. #define DIV_GSCL 0x10520
  61. #define DIV_DISP1_0 0x1052c
  62. #define DIV_GEN 0x1053c
  63. #define DIV_MAU 0x10544
  64. #define DIV_FSYS0 0x10548
  65. #define DIV_FSYS1 0x1054c
  66. #define DIV_FSYS2 0x10550
  67. #define DIV_PERIC0 0x10558
  68. #define DIV_PERIC1 0x1055c
  69. #define DIV_PERIC2 0x10560
  70. #define DIV_PERIC3 0x10564
  71. #define DIV_PERIC4 0x10568
  72. #define DIV_PERIC5 0x1056c
  73. #define GATE_IP_GSCL 0x10920
  74. #define GATE_IP_DISP1 0x10928
  75. #define GATE_IP_MFC 0x1092c
  76. #define GATE_IP_G3D 0x10930
  77. #define GATE_IP_GEN 0x10934
  78. #define GATE_IP_FSYS 0x10944
  79. #define GATE_IP_PERIC 0x10950
  80. #define GATE_IP_PERIS 0x10960
  81. #define BPLL_LOCK 0x20010
  82. #define BPLL_CON0 0x20110
  83. #define SRC_CDREX 0x20200
  84. #define PLL_DIV2_SEL 0x20a24
  85. /*Below definitions are used for PWR_CTRL settings*/
  86. #define PWR_CTRL1_CORE2_DOWN_RATIO (7 << 28)
  87. #define PWR_CTRL1_CORE1_DOWN_RATIO (7 << 16)
  88. #define PWR_CTRL1_DIV2_DOWN_EN (1 << 9)
  89. #define PWR_CTRL1_DIV1_DOWN_EN (1 << 8)
  90. #define PWR_CTRL1_USE_CORE1_WFE (1 << 5)
  91. #define PWR_CTRL1_USE_CORE0_WFE (1 << 4)
  92. #define PWR_CTRL1_USE_CORE1_WFI (1 << 1)
  93. #define PWR_CTRL1_USE_CORE0_WFI (1 << 0)
  94. #define PWR_CTRL2_DIV2_UP_EN (1 << 25)
  95. #define PWR_CTRL2_DIV1_UP_EN (1 << 24)
  96. #define PWR_CTRL2_DUR_STANDBY2_VAL (1 << 16)
  97. #define PWR_CTRL2_DUR_STANDBY1_VAL (1 << 8)
  98. #define PWR_CTRL2_CORE2_UP_RATIO (1 << 4)
  99. #define PWR_CTRL2_CORE1_UP_RATIO (1 << 0)
  100. /* list of PLLs to be registered */
  101. enum exynos5250_plls {
  102. apll, mpll, cpll, epll, vpll, gpll, bpll,
  103. nr_plls /* number of PLLs */
  104. };
  105. static void __iomem *reg_base;
  106. #ifdef CONFIG_PM_SLEEP
  107. static struct samsung_clk_reg_dump *exynos5250_save;
  108. /*
  109. * list of controller registers to be saved and restored during a
  110. * suspend/resume cycle.
  111. */
  112. static const unsigned long exynos5250_clk_regs[] __initconst = {
  113. SRC_CPU,
  114. DIV_CPU0,
  115. PWR_CTRL1,
  116. PWR_CTRL2,
  117. SRC_CORE1,
  118. SRC_TOP0,
  119. SRC_TOP1,
  120. SRC_TOP2,
  121. SRC_TOP3,
  122. SRC_GSCL,
  123. SRC_DISP1_0,
  124. SRC_MAU,
  125. SRC_FSYS,
  126. SRC_GEN,
  127. SRC_PERIC0,
  128. SRC_PERIC1,
  129. SRC_MASK_GSCL,
  130. SRC_MASK_DISP1_0,
  131. SRC_MASK_MAU,
  132. SRC_MASK_FSYS,
  133. SRC_MASK_GEN,
  134. SRC_MASK_PERIC0,
  135. SRC_MASK_PERIC1,
  136. DIV_TOP0,
  137. DIV_TOP1,
  138. DIV_GSCL,
  139. DIV_DISP1_0,
  140. DIV_GEN,
  141. DIV_MAU,
  142. DIV_FSYS0,
  143. DIV_FSYS1,
  144. DIV_FSYS2,
  145. DIV_PERIC0,
  146. DIV_PERIC1,
  147. DIV_PERIC2,
  148. DIV_PERIC3,
  149. DIV_PERIC4,
  150. DIV_PERIC5,
  151. GATE_IP_GSCL,
  152. GATE_IP_MFC,
  153. GATE_IP_G3D,
  154. GATE_IP_GEN,
  155. GATE_IP_FSYS,
  156. GATE_IP_PERIC,
  157. GATE_IP_PERIS,
  158. SRC_CDREX,
  159. PLL_DIV2_SEL,
  160. GATE_IP_DISP1,
  161. GATE_IP_ACP,
  162. GATE_IP_ISP0,
  163. GATE_IP_ISP1,
  164. };
  165. static int exynos5250_clk_suspend(void)
  166. {
  167. samsung_clk_save(reg_base, exynos5250_save,
  168. ARRAY_SIZE(exynos5250_clk_regs));
  169. return 0;
  170. }
  171. static void exynos5250_clk_resume(void)
  172. {
  173. samsung_clk_restore(reg_base, exynos5250_save,
  174. ARRAY_SIZE(exynos5250_clk_regs));
  175. }
  176. static struct syscore_ops exynos5250_clk_syscore_ops = {
  177. .suspend = exynos5250_clk_suspend,
  178. .resume = exynos5250_clk_resume,
  179. };
  180. static void __init exynos5250_clk_sleep_init(void)
  181. {
  182. exynos5250_save = samsung_clk_alloc_reg_dump(exynos5250_clk_regs,
  183. ARRAY_SIZE(exynos5250_clk_regs));
  184. if (!exynos5250_save) {
  185. pr_warn("%s: failed to allocate sleep save data, no sleep support!\n",
  186. __func__);
  187. return;
  188. }
  189. register_syscore_ops(&exynos5250_clk_syscore_ops);
  190. }
  191. #else
  192. static void __init exynos5250_clk_sleep_init(void) {}
  193. #endif
  194. /* list of all parent clock list */
  195. PNAME(mout_apll_p) = { "fin_pll", "fout_apll", };
  196. PNAME(mout_cpu_p) = { "mout_apll", "mout_mpll", };
  197. PNAME(mout_mpll_fout_p) = { "fout_mplldiv2", "fout_mpll" };
  198. PNAME(mout_mpll_p) = { "fin_pll", "mout_mpll_fout" };
  199. PNAME(mout_bpll_fout_p) = { "fout_bplldiv2", "fout_bpll" };
  200. PNAME(mout_bpll_p) = { "fin_pll", "mout_bpll_fout" };
  201. PNAME(mout_vpllsrc_p) = { "fin_pll", "sclk_hdmi27m" };
  202. PNAME(mout_vpll_p) = { "mout_vpllsrc", "fout_vpll" };
  203. PNAME(mout_cpll_p) = { "fin_pll", "fout_cpll" };
  204. PNAME(mout_epll_p) = { "fin_pll", "fout_epll" };
  205. PNAME(mout_gpll_p) = { "fin_pll", "fout_gpll" };
  206. PNAME(mout_mpll_user_p) = { "fin_pll", "mout_mpll" };
  207. PNAME(mout_bpll_user_p) = { "fin_pll", "mout_bpll" };
  208. PNAME(mout_aclk166_p) = { "mout_cpll", "mout_mpll_user" };
  209. PNAME(mout_aclk200_p) = { "mout_mpll_user", "mout_bpll_user" };
  210. PNAME(mout_aclk300_p) = { "mout_aclk300_disp1_mid",
  211. "mout_aclk300_disp1_mid1" };
  212. PNAME(mout_aclk400_p) = { "mout_aclk400_g3d_mid", "mout_gpll" };
  213. PNAME(mout_aclk200_sub_p) = { "fin_pll", "div_aclk200" };
  214. PNAME(mout_aclk266_sub_p) = { "fin_pll", "div_aclk266" };
  215. PNAME(mout_aclk300_sub_p) = { "fin_pll", "div_aclk300_disp" };
  216. PNAME(mout_aclk300_disp1_mid1_p) = { "mout_vpll", "mout_cpll" };
  217. PNAME(mout_aclk333_sub_p) = { "fin_pll", "div_aclk333" };
  218. PNAME(mout_aclk400_isp_sub_p) = { "fin_pll", "div_aclk400_isp" };
  219. PNAME(mout_hdmi_p) = { "div_hdmi_pixel", "sclk_hdmiphy" };
  220. PNAME(mout_usb3_p) = { "mout_mpll_user", "mout_cpll" };
  221. PNAME(mout_group1_p) = { "fin_pll", "fin_pll", "sclk_hdmi27m",
  222. "sclk_dptxphy", "sclk_uhostphy", "sclk_hdmiphy",
  223. "mout_mpll_user", "mout_epll", "mout_vpll",
  224. "mout_cpll", "none", "none",
  225. "none", "none", "none",
  226. "none" };
  227. PNAME(mout_audio0_p) = { "cdclk0", "fin_pll", "sclk_hdmi27m", "sclk_dptxphy",
  228. "sclk_uhostphy", "fin_pll",
  229. "mout_mpll_user", "mout_epll", "mout_vpll",
  230. "mout_cpll", "none", "none",
  231. "none", "none", "none",
  232. "none" };
  233. PNAME(mout_audio1_p) = { "cdclk1", "fin_pll", "sclk_hdmi27m", "sclk_dptxphy",
  234. "sclk_uhostphy", "fin_pll",
  235. "mout_mpll_user", "mout_epll", "mout_vpll",
  236. "mout_cpll", "none", "none",
  237. "none", "none", "none",
  238. "none" };
  239. PNAME(mout_audio2_p) = { "cdclk2", "fin_pll", "sclk_hdmi27m", "sclk_dptxphy",
  240. "sclk_uhostphy", "fin_pll",
  241. "mout_mpll_user", "mout_epll", "mout_vpll",
  242. "mout_cpll", "none", "none",
  243. "none", "none", "none",
  244. "none" };
  245. PNAME(mout_spdif_p) = { "sclk_audio0", "sclk_audio1", "sclk_audio2",
  246. "spdif_extclk" };
  247. /* fixed rate clocks generated outside the soc */
  248. static struct samsung_fixed_rate_clock exynos5250_fixed_rate_ext_clks[] __initdata = {
  249. FRATE(CLK_FIN_PLL, "fin_pll", NULL, 0, 0),
  250. };
  251. /* fixed rate clocks generated inside the soc */
  252. static const struct samsung_fixed_rate_clock exynos5250_fixed_rate_clks[] __initconst = {
  253. FRATE(CLK_SCLK_HDMIPHY, "sclk_hdmiphy", NULL, 0, 24000000),
  254. FRATE(0, "sclk_hdmi27m", NULL, 0, 27000000),
  255. FRATE(0, "sclk_dptxphy", NULL, 0, 24000000),
  256. FRATE(0, "sclk_uhostphy", NULL, 0, 48000000),
  257. };
  258. static const struct samsung_fixed_factor_clock exynos5250_fixed_factor_clks[] __initconst = {
  259. FFACTOR(0, "fout_mplldiv2", "fout_mpll", 1, 2, 0),
  260. FFACTOR(0, "fout_bplldiv2", "fout_bpll", 1, 2, 0),
  261. };
  262. static const struct samsung_mux_clock exynos5250_pll_pmux_clks[] __initconst = {
  263. MUX(0, "mout_vpllsrc", mout_vpllsrc_p, SRC_TOP2, 0, 1),
  264. };
  265. static const struct samsung_mux_clock exynos5250_mux_clks[] __initconst = {
  266. /*
  267. * NOTE: Following table is sorted by (clock domain, register address,
  268. * bitfield shift) triplet in ascending order. When adding new entries,
  269. * please make sure that the order is kept, to avoid merge conflicts
  270. * and make further work with defined data easier.
  271. */
  272. /*
  273. * CMU_CPU
  274. */
  275. MUX_F(0, "mout_apll", mout_apll_p, SRC_CPU, 0, 1,
  276. CLK_SET_RATE_PARENT, 0),
  277. MUX(0, "mout_cpu", mout_cpu_p, SRC_CPU, 16, 1),
  278. /*
  279. * CMU_CORE
  280. */
  281. MUX(0, "mout_mpll", mout_mpll_p, SRC_CORE1, 8, 1),
  282. /*
  283. * CMU_TOP
  284. */
  285. MUX(0, "mout_aclk166", mout_aclk166_p, SRC_TOP0, 8, 1),
  286. MUX(0, "mout_aclk200", mout_aclk200_p, SRC_TOP0, 12, 1),
  287. MUX(0, "mout_aclk300_disp1_mid", mout_aclk200_p, SRC_TOP0, 14, 1),
  288. MUX(0, "mout_aclk300", mout_aclk300_p, SRC_TOP0, 15, 1),
  289. MUX(0, "mout_aclk333", mout_aclk166_p, SRC_TOP0, 16, 1),
  290. MUX(0, "mout_aclk400_g3d_mid", mout_aclk200_p, SRC_TOP0, 20, 1),
  291. MUX(0, "mout_aclk300_disp1_mid1", mout_aclk300_disp1_mid1_p, SRC_TOP1,
  292. 8, 1),
  293. MUX(0, "mout_aclk400_isp", mout_aclk200_p, SRC_TOP1, 24, 1),
  294. MUX(0, "mout_aclk400_g3d", mout_aclk400_p, SRC_TOP1, 28, 1),
  295. MUX(0, "mout_cpll", mout_cpll_p, SRC_TOP2, 8, 1),
  296. MUX(0, "mout_epll", mout_epll_p, SRC_TOP2, 12, 1),
  297. MUX(0, "mout_vpll", mout_vpll_p, SRC_TOP2, 16, 1),
  298. MUX(0, "mout_mpll_user", mout_mpll_user_p, SRC_TOP2, 20, 1),
  299. MUX(0, "mout_bpll_user", mout_bpll_user_p, SRC_TOP2, 24, 1),
  300. MUX(CLK_MOUT_GPLL, "mout_gpll", mout_gpll_p, SRC_TOP2, 28, 1),
  301. MUX(CLK_MOUT_ACLK200_DISP1_SUB, "mout_aclk200_disp1_sub",
  302. mout_aclk200_sub_p, SRC_TOP3, 4, 1),
  303. MUX(CLK_MOUT_ACLK300_DISP1_SUB, "mout_aclk300_disp1_sub",
  304. mout_aclk300_sub_p, SRC_TOP3, 6, 1),
  305. MUX(0, "mout_aclk266_gscl_sub", mout_aclk266_sub_p, SRC_TOP3, 8, 1),
  306. MUX(0, "mout_aclk_266_isp_sub", mout_aclk266_sub_p, SRC_TOP3, 16, 1),
  307. MUX(0, "mout_aclk_400_isp_sub", mout_aclk400_isp_sub_p,
  308. SRC_TOP3, 20, 1),
  309. MUX(0, "mout_aclk333_sub", mout_aclk333_sub_p, SRC_TOP3, 24, 1),
  310. MUX(0, "mout_cam_bayer", mout_group1_p, SRC_GSCL, 12, 4),
  311. MUX(0, "mout_cam0", mout_group1_p, SRC_GSCL, 16, 4),
  312. MUX(0, "mout_cam1", mout_group1_p, SRC_GSCL, 20, 4),
  313. MUX(0, "mout_gscl_wa", mout_group1_p, SRC_GSCL, 24, 4),
  314. MUX(0, "mout_gscl_wb", mout_group1_p, SRC_GSCL, 28, 4),
  315. MUX(0, "mout_fimd1", mout_group1_p, SRC_DISP1_0, 0, 4),
  316. MUX(0, "mout_mipi1", mout_group1_p, SRC_DISP1_0, 12, 4),
  317. MUX(0, "mout_dp", mout_group1_p, SRC_DISP1_0, 16, 4),
  318. MUX(CLK_MOUT_HDMI, "mout_hdmi", mout_hdmi_p, SRC_DISP1_0, 20, 1),
  319. MUX(0, "mout_audio0", mout_audio0_p, SRC_MAU, 0, 4),
  320. MUX(0, "mout_mmc0", mout_group1_p, SRC_FSYS, 0, 4),
  321. MUX(0, "mout_mmc1", mout_group1_p, SRC_FSYS, 4, 4),
  322. MUX(0, "mout_mmc2", mout_group1_p, SRC_FSYS, 8, 4),
  323. MUX(0, "mout_mmc3", mout_group1_p, SRC_FSYS, 12, 4),
  324. MUX(0, "mout_sata", mout_aclk200_p, SRC_FSYS, 24, 1),
  325. MUX(0, "mout_usb3", mout_usb3_p, SRC_FSYS, 28, 1),
  326. MUX(0, "mout_jpeg", mout_group1_p, SRC_GEN, 0, 4),
  327. MUX(0, "mout_uart0", mout_group1_p, SRC_PERIC0, 0, 4),
  328. MUX(0, "mout_uart1", mout_group1_p, SRC_PERIC0, 4, 4),
  329. MUX(0, "mout_uart2", mout_group1_p, SRC_PERIC0, 8, 4),
  330. MUX(0, "mout_uart3", mout_group1_p, SRC_PERIC0, 12, 4),
  331. MUX(0, "mout_pwm", mout_group1_p, SRC_PERIC0, 24, 4),
  332. MUX(0, "mout_audio1", mout_audio1_p, SRC_PERIC1, 0, 4),
  333. MUX(0, "mout_audio2", mout_audio2_p, SRC_PERIC1, 4, 4),
  334. MUX(0, "mout_spdif", mout_spdif_p, SRC_PERIC1, 8, 2),
  335. MUX(0, "mout_spi0", mout_group1_p, SRC_PERIC1, 16, 4),
  336. MUX(0, "mout_spi1", mout_group1_p, SRC_PERIC1, 20, 4),
  337. MUX(0, "mout_spi2", mout_group1_p, SRC_PERIC1, 24, 4),
  338. /*
  339. * CMU_CDREX
  340. */
  341. MUX(0, "mout_bpll", mout_bpll_p, SRC_CDREX, 0, 1),
  342. MUX(0, "mout_mpll_fout", mout_mpll_fout_p, PLL_DIV2_SEL, 4, 1),
  343. MUX(0, "mout_bpll_fout", mout_bpll_fout_p, PLL_DIV2_SEL, 0, 1),
  344. };
  345. static const struct samsung_div_clock exynos5250_div_clks[] __initconst = {
  346. /*
  347. * NOTE: Following table is sorted by (clock domain, register address,
  348. * bitfield shift) triplet in ascending order. When adding new entries,
  349. * please make sure that the order is kept, to avoid merge conflicts
  350. * and make further work with defined data easier.
  351. */
  352. /*
  353. * CMU_CPU
  354. */
  355. DIV(0, "div_arm", "mout_cpu", DIV_CPU0, 0, 3),
  356. DIV(0, "div_apll", "mout_apll", DIV_CPU0, 24, 3),
  357. DIV(0, "div_arm2", "div_arm", DIV_CPU0, 28, 3),
  358. /*
  359. * CMU_TOP
  360. */
  361. DIV(0, "div_aclk66", "div_aclk66_pre", DIV_TOP0, 0, 3),
  362. DIV(0, "div_aclk166", "mout_aclk166", DIV_TOP0, 8, 3),
  363. DIV(0, "div_aclk200", "mout_aclk200", DIV_TOP0, 12, 3),
  364. DIV(0, "div_aclk266", "mout_mpll_user", DIV_TOP0, 16, 3),
  365. DIV(0, "div_aclk333", "mout_aclk333", DIV_TOP0, 20, 3),
  366. DIV(0, "div_aclk400_g3d", "mout_aclk400_g3d", DIV_TOP0,
  367. 24, 3),
  368. DIV(0, "div_aclk300_disp", "mout_aclk300", DIV_TOP0, 28, 3),
  369. DIV(0, "div_aclk400_isp", "mout_aclk400_isp", DIV_TOP1, 20, 3),
  370. DIV(0, "div_aclk66_pre", "mout_mpll_user", DIV_TOP1, 24, 3),
  371. DIV(0, "div_cam_bayer", "mout_cam_bayer", DIV_GSCL, 12, 4),
  372. DIV(0, "div_cam0", "mout_cam0", DIV_GSCL, 16, 4),
  373. DIV(0, "div_cam1", "mout_cam1", DIV_GSCL, 20, 4),
  374. DIV(0, "div_gscl_wa", "mout_gscl_wa", DIV_GSCL, 24, 4),
  375. DIV(0, "div_gscl_wb", "mout_gscl_wb", DIV_GSCL, 28, 4),
  376. DIV(0, "div_fimd1", "mout_fimd1", DIV_DISP1_0, 0, 4),
  377. DIV(0, "div_mipi1", "mout_mipi1", DIV_DISP1_0, 16, 4),
  378. DIV_F(0, "div_mipi1_pre", "div_mipi1",
  379. DIV_DISP1_0, 20, 4, CLK_SET_RATE_PARENT, 0),
  380. DIV(0, "div_dp", "mout_dp", DIV_DISP1_0, 24, 4),
  381. DIV(CLK_SCLK_PIXEL, "div_hdmi_pixel", "mout_vpll", DIV_DISP1_0, 28, 4),
  382. DIV(0, "div_jpeg", "mout_jpeg", DIV_GEN, 4, 4),
  383. DIV(0, "div_audio0", "mout_audio0", DIV_MAU, 0, 4),
  384. DIV(CLK_DIV_PCM0, "div_pcm0", "sclk_audio0", DIV_MAU, 4, 8),
  385. DIV(0, "div_sata", "mout_sata", DIV_FSYS0, 20, 4),
  386. DIV(0, "div_usb3", "mout_usb3", DIV_FSYS0, 24, 4),
  387. DIV(0, "div_mmc0", "mout_mmc0", DIV_FSYS1, 0, 4),
  388. DIV_F(0, "div_mmc_pre0", "div_mmc0",
  389. DIV_FSYS1, 8, 8, CLK_SET_RATE_PARENT, 0),
  390. DIV(0, "div_mmc1", "mout_mmc1", DIV_FSYS1, 16, 4),
  391. DIV_F(0, "div_mmc_pre1", "div_mmc1",
  392. DIV_FSYS1, 24, 8, CLK_SET_RATE_PARENT, 0),
  393. DIV(0, "div_mmc2", "mout_mmc2", DIV_FSYS2, 0, 4),
  394. DIV_F(0, "div_mmc_pre2", "div_mmc2",
  395. DIV_FSYS2, 8, 8, CLK_SET_RATE_PARENT, 0),
  396. DIV(0, "div_mmc3", "mout_mmc3", DIV_FSYS2, 16, 4),
  397. DIV_F(0, "div_mmc_pre3", "div_mmc3",
  398. DIV_FSYS2, 24, 8, CLK_SET_RATE_PARENT, 0),
  399. DIV(0, "div_uart0", "mout_uart0", DIV_PERIC0, 0, 4),
  400. DIV(0, "div_uart1", "mout_uart1", DIV_PERIC0, 4, 4),
  401. DIV(0, "div_uart2", "mout_uart2", DIV_PERIC0, 8, 4),
  402. DIV(0, "div_uart3", "mout_uart3", DIV_PERIC0, 12, 4),
  403. DIV(0, "div_spi0", "mout_spi0", DIV_PERIC1, 0, 4),
  404. DIV_F(0, "div_spi_pre0", "div_spi0",
  405. DIV_PERIC1, 8, 8, CLK_SET_RATE_PARENT, 0),
  406. DIV(0, "div_spi1", "mout_spi1", DIV_PERIC1, 16, 4),
  407. DIV_F(0, "div_spi_pre1", "div_spi1",
  408. DIV_PERIC1, 24, 8, CLK_SET_RATE_PARENT, 0),
  409. DIV(0, "div_spi2", "mout_spi2", DIV_PERIC2, 0, 4),
  410. DIV_F(0, "div_spi_pre2", "div_spi2",
  411. DIV_PERIC2, 8, 8, CLK_SET_RATE_PARENT, 0),
  412. DIV(0, "div_pwm", "mout_pwm", DIV_PERIC3, 0, 4),
  413. DIV(0, "div_audio1", "mout_audio1", DIV_PERIC4, 0, 4),
  414. DIV(0, "div_pcm1", "sclk_audio1", DIV_PERIC4, 4, 8),
  415. DIV(0, "div_audio2", "mout_audio2", DIV_PERIC4, 16, 4),
  416. DIV(0, "div_pcm2", "sclk_audio2", DIV_PERIC4, 20, 8),
  417. DIV(CLK_DIV_I2S1, "div_i2s1", "sclk_audio1", DIV_PERIC5, 0, 6),
  418. DIV(CLK_DIV_I2S2, "div_i2s2", "sclk_audio2", DIV_PERIC5, 8, 6),
  419. };
  420. static const struct samsung_gate_clock exynos5250_gate_clks[] __initconst = {
  421. /*
  422. * NOTE: Following table is sorted by (clock domain, register address,
  423. * bitfield shift) triplet in ascending order. When adding new entries,
  424. * please make sure that the order is kept, to avoid merge conflicts
  425. * and make further work with defined data easier.
  426. */
  427. /*
  428. * CMU_ACP
  429. */
  430. GATE(CLK_MDMA0, "mdma0", "div_aclk266", GATE_IP_ACP, 1, 0, 0),
  431. GATE(CLK_SSS, "sss", "div_aclk266", GATE_IP_ACP, 2, 0, 0),
  432. GATE(CLK_G2D, "g2d", "div_aclk200", GATE_IP_ACP, 3, 0, 0),
  433. GATE(CLK_SMMU_MDMA0, "smmu_mdma0", "div_aclk266", GATE_IP_ACP, 5, 0, 0),
  434. /*
  435. * CMU_TOP
  436. */
  437. GATE(CLK_SCLK_CAM_BAYER, "sclk_cam_bayer", "div_cam_bayer",
  438. SRC_MASK_GSCL, 12, CLK_SET_RATE_PARENT, 0),
  439. GATE(CLK_SCLK_CAM0, "sclk_cam0", "div_cam0",
  440. SRC_MASK_GSCL, 16, CLK_SET_RATE_PARENT, 0),
  441. GATE(CLK_SCLK_CAM1, "sclk_cam1", "div_cam1",
  442. SRC_MASK_GSCL, 20, CLK_SET_RATE_PARENT, 0),
  443. GATE(CLK_SCLK_GSCL_WA, "sclk_gscl_wa", "div_gscl_wa",
  444. SRC_MASK_GSCL, 24, CLK_SET_RATE_PARENT, 0),
  445. GATE(CLK_SCLK_GSCL_WB, "sclk_gscl_wb", "div_gscl_wb",
  446. SRC_MASK_GSCL, 28, CLK_SET_RATE_PARENT, 0),
  447. GATE(CLK_SCLK_FIMD1, "sclk_fimd1", "div_fimd1",
  448. SRC_MASK_DISP1_0, 0, CLK_SET_RATE_PARENT, 0),
  449. GATE(CLK_SCLK_MIPI1, "sclk_mipi1", "div_mipi1",
  450. SRC_MASK_DISP1_0, 12, CLK_SET_RATE_PARENT, 0),
  451. GATE(CLK_SCLK_DP, "sclk_dp", "div_dp",
  452. SRC_MASK_DISP1_0, 16, CLK_SET_RATE_PARENT, 0),
  453. GATE(CLK_SCLK_HDMI, "sclk_hdmi", "mout_hdmi",
  454. SRC_MASK_DISP1_0, 20, 0, 0),
  455. GATE(CLK_SCLK_AUDIO0, "sclk_audio0", "div_audio0",
  456. SRC_MASK_MAU, 0, CLK_SET_RATE_PARENT, 0),
  457. GATE(CLK_SCLK_MMC0, "sclk_mmc0", "div_mmc_pre0",
  458. SRC_MASK_FSYS, 0, CLK_SET_RATE_PARENT, 0),
  459. GATE(CLK_SCLK_MMC1, "sclk_mmc1", "div_mmc_pre1",
  460. SRC_MASK_FSYS, 4, CLK_SET_RATE_PARENT, 0),
  461. GATE(CLK_SCLK_MMC2, "sclk_mmc2", "div_mmc_pre2",
  462. SRC_MASK_FSYS, 8, CLK_SET_RATE_PARENT, 0),
  463. GATE(CLK_SCLK_MMC3, "sclk_mmc3", "div_mmc_pre3",
  464. SRC_MASK_FSYS, 12, CLK_SET_RATE_PARENT, 0),
  465. GATE(CLK_SCLK_SATA, "sclk_sata", "div_sata",
  466. SRC_MASK_FSYS, 24, CLK_SET_RATE_PARENT, 0),
  467. GATE(CLK_SCLK_USB3, "sclk_usb3", "div_usb3",
  468. SRC_MASK_FSYS, 28, CLK_SET_RATE_PARENT, 0),
  469. GATE(CLK_SCLK_JPEG, "sclk_jpeg", "div_jpeg",
  470. SRC_MASK_GEN, 0, CLK_SET_RATE_PARENT, 0),
  471. GATE(CLK_SCLK_UART0, "sclk_uart0", "div_uart0",
  472. SRC_MASK_PERIC0, 0, CLK_SET_RATE_PARENT, 0),
  473. GATE(CLK_SCLK_UART1, "sclk_uart1", "div_uart1",
  474. SRC_MASK_PERIC0, 4, CLK_SET_RATE_PARENT, 0),
  475. GATE(CLK_SCLK_UART2, "sclk_uart2", "div_uart2",
  476. SRC_MASK_PERIC0, 8, CLK_SET_RATE_PARENT, 0),
  477. GATE(CLK_SCLK_UART3, "sclk_uart3", "div_uart3",
  478. SRC_MASK_PERIC0, 12, CLK_SET_RATE_PARENT, 0),
  479. GATE(CLK_SCLK_PWM, "sclk_pwm", "div_pwm",
  480. SRC_MASK_PERIC0, 24, CLK_SET_RATE_PARENT, 0),
  481. GATE(CLK_SCLK_AUDIO1, "sclk_audio1", "div_audio1",
  482. SRC_MASK_PERIC1, 0, CLK_SET_RATE_PARENT, 0),
  483. GATE(CLK_SCLK_AUDIO2, "sclk_audio2", "div_audio2",
  484. SRC_MASK_PERIC1, 4, CLK_SET_RATE_PARENT, 0),
  485. GATE(CLK_SCLK_SPDIF, "sclk_spdif", "mout_spdif",
  486. SRC_MASK_PERIC1, 4, 0, 0),
  487. GATE(CLK_SCLK_SPI0, "sclk_spi0", "div_spi_pre0",
  488. SRC_MASK_PERIC1, 16, CLK_SET_RATE_PARENT, 0),
  489. GATE(CLK_SCLK_SPI1, "sclk_spi1", "div_spi_pre1",
  490. SRC_MASK_PERIC1, 20, CLK_SET_RATE_PARENT, 0),
  491. GATE(CLK_SCLK_SPI2, "sclk_spi2", "div_spi_pre2",
  492. SRC_MASK_PERIC1, 24, CLK_SET_RATE_PARENT, 0),
  493. GATE(CLK_GSCL0, "gscl0", "mout_aclk266_gscl_sub", GATE_IP_GSCL, 0, 0,
  494. 0),
  495. GATE(CLK_GSCL1, "gscl1", "mout_aclk266_gscl_sub", GATE_IP_GSCL, 1, 0,
  496. 0),
  497. GATE(CLK_GSCL2, "gscl2", "mout_aclk266_gscl_sub", GATE_IP_GSCL, 2, 0,
  498. 0),
  499. GATE(CLK_GSCL3, "gscl3", "mout_aclk266_gscl_sub", GATE_IP_GSCL, 3, 0,
  500. 0),
  501. GATE(CLK_CAMIF_TOP, "camif_top", "mout_aclk266_gscl_sub",
  502. GATE_IP_GSCL, 4, 0, 0),
  503. GATE(CLK_GSCL_WA, "gscl_wa", "div_gscl_wa", GATE_IP_GSCL, 5, 0, 0),
  504. GATE(CLK_GSCL_WB, "gscl_wb", "div_gscl_wb", GATE_IP_GSCL, 6, 0, 0),
  505. GATE(CLK_SMMU_GSCL0, "smmu_gscl0", "mout_aclk266_gscl_sub",
  506. GATE_IP_GSCL, 7, 0, 0),
  507. GATE(CLK_SMMU_GSCL1, "smmu_gscl1", "mout_aclk266_gscl_sub",
  508. GATE_IP_GSCL, 8, 0, 0),
  509. GATE(CLK_SMMU_GSCL2, "smmu_gscl2", "mout_aclk266_gscl_sub",
  510. GATE_IP_GSCL, 9, 0, 0),
  511. GATE(CLK_SMMU_GSCL3, "smmu_gscl3", "mout_aclk266_gscl_sub",
  512. GATE_IP_GSCL, 10, 0, 0),
  513. GATE(CLK_SMMU_FIMC_LITE0, "smmu_fimc_lite0", "mout_aclk266_gscl_sub",
  514. GATE_IP_GSCL, 11, 0, 0),
  515. GATE(CLK_SMMU_FIMC_LITE1, "smmu_fimc_lite1", "mout_aclk266_gscl_sub",
  516. GATE_IP_GSCL, 12, 0, 0),
  517. GATE(CLK_MFC, "mfc", "mout_aclk333_sub", GATE_IP_MFC, 0, 0, 0),
  518. GATE(CLK_SMMU_MFCR, "smmu_mfcr", "mout_aclk333_sub", GATE_IP_MFC, 1, 0,
  519. 0),
  520. GATE(CLK_SMMU_MFCL, "smmu_mfcl", "mout_aclk333_sub", GATE_IP_MFC, 2, 0,
  521. 0),
  522. GATE(CLK_G3D, "g3d", "div_aclk400_g3d", GATE_IP_G3D, 0,
  523. CLK_SET_RATE_PARENT, 0),
  524. GATE(CLK_ROTATOR, "rotator", "div_aclk266", GATE_IP_GEN, 1, 0, 0),
  525. GATE(CLK_JPEG, "jpeg", "div_aclk166", GATE_IP_GEN, 2, 0, 0),
  526. GATE(CLK_MDMA1, "mdma1", "div_aclk266", GATE_IP_GEN, 4, 0, 0),
  527. GATE(CLK_SMMU_ROTATOR, "smmu_rotator", "div_aclk266", GATE_IP_GEN, 6, 0,
  528. 0),
  529. GATE(CLK_SMMU_JPEG, "smmu_jpeg", "div_aclk166", GATE_IP_GEN, 7, 0, 0),
  530. GATE(CLK_SMMU_MDMA1, "smmu_mdma1", "div_aclk266", GATE_IP_GEN, 9, 0, 0),
  531. GATE(CLK_PDMA0, "pdma0", "div_aclk200", GATE_IP_FSYS, 1, 0, 0),
  532. GATE(CLK_PDMA1, "pdma1", "div_aclk200", GATE_IP_FSYS, 2, 0, 0),
  533. GATE(CLK_SATA, "sata", "div_aclk200", GATE_IP_FSYS, 6, 0, 0),
  534. GATE(CLK_USBOTG, "usbotg", "div_aclk200", GATE_IP_FSYS, 7, 0, 0),
  535. GATE(CLK_MIPI_HSI, "mipi_hsi", "div_aclk200", GATE_IP_FSYS, 8, 0, 0),
  536. GATE(CLK_SDMMC0, "sdmmc0", "div_aclk200", GATE_IP_FSYS, 12, 0, 0),
  537. GATE(CLK_SDMMC1, "sdmmc1", "div_aclk200", GATE_IP_FSYS, 13, 0, 0),
  538. GATE(CLK_SDMMC2, "sdmmc2", "div_aclk200", GATE_IP_FSYS, 14, 0, 0),
  539. GATE(CLK_SDMMC3, "sdmmc3", "div_aclk200", GATE_IP_FSYS, 15, 0, 0),
  540. GATE(CLK_SROMC, "sromc", "div_aclk200", GATE_IP_FSYS, 17, 0, 0),
  541. GATE(CLK_USB2, "usb2", "div_aclk200", GATE_IP_FSYS, 18, 0, 0),
  542. GATE(CLK_USB3, "usb3", "div_aclk200", GATE_IP_FSYS, 19, 0, 0),
  543. GATE(CLK_SATA_PHYCTRL, "sata_phyctrl", "div_aclk200",
  544. GATE_IP_FSYS, 24, 0, 0),
  545. GATE(CLK_SATA_PHYI2C, "sata_phyi2c", "div_aclk200", GATE_IP_FSYS, 25, 0,
  546. 0),
  547. GATE(CLK_UART0, "uart0", "div_aclk66", GATE_IP_PERIC, 0, 0, 0),
  548. GATE(CLK_UART1, "uart1", "div_aclk66", GATE_IP_PERIC, 1, 0, 0),
  549. GATE(CLK_UART2, "uart2", "div_aclk66", GATE_IP_PERIC, 2, 0, 0),
  550. GATE(CLK_UART3, "uart3", "div_aclk66", GATE_IP_PERIC, 3, 0, 0),
  551. GATE(CLK_UART4, "uart4", "div_aclk66", GATE_IP_PERIC, 4, 0, 0),
  552. GATE(CLK_I2C0, "i2c0", "div_aclk66", GATE_IP_PERIC, 6, 0, 0),
  553. GATE(CLK_I2C1, "i2c1", "div_aclk66", GATE_IP_PERIC, 7, 0, 0),
  554. GATE(CLK_I2C2, "i2c2", "div_aclk66", GATE_IP_PERIC, 8, 0, 0),
  555. GATE(CLK_I2C3, "i2c3", "div_aclk66", GATE_IP_PERIC, 9, 0, 0),
  556. GATE(CLK_I2C4, "i2c4", "div_aclk66", GATE_IP_PERIC, 10, 0, 0),
  557. GATE(CLK_I2C5, "i2c5", "div_aclk66", GATE_IP_PERIC, 11, 0, 0),
  558. GATE(CLK_I2C6, "i2c6", "div_aclk66", GATE_IP_PERIC, 12, 0, 0),
  559. GATE(CLK_I2C7, "i2c7", "div_aclk66", GATE_IP_PERIC, 13, 0, 0),
  560. GATE(CLK_I2C_HDMI, "i2c_hdmi", "div_aclk66", GATE_IP_PERIC, 14, 0, 0),
  561. GATE(CLK_ADC, "adc", "div_aclk66", GATE_IP_PERIC, 15, 0, 0),
  562. GATE(CLK_SPI0, "spi0", "div_aclk66", GATE_IP_PERIC, 16, 0, 0),
  563. GATE(CLK_SPI1, "spi1", "div_aclk66", GATE_IP_PERIC, 17, 0, 0),
  564. GATE(CLK_SPI2, "spi2", "div_aclk66", GATE_IP_PERIC, 18, 0, 0),
  565. GATE(CLK_I2S1, "i2s1", "div_aclk66", GATE_IP_PERIC, 20, 0, 0),
  566. GATE(CLK_I2S2, "i2s2", "div_aclk66", GATE_IP_PERIC, 21, 0, 0),
  567. GATE(CLK_PCM1, "pcm1", "div_aclk66", GATE_IP_PERIC, 22, 0, 0),
  568. GATE(CLK_PCM2, "pcm2", "div_aclk66", GATE_IP_PERIC, 23, 0, 0),
  569. GATE(CLK_PWM, "pwm", "div_aclk66", GATE_IP_PERIC, 24, 0, 0),
  570. GATE(CLK_SPDIF, "spdif", "div_aclk66", GATE_IP_PERIC, 26, 0, 0),
  571. GATE(CLK_AC97, "ac97", "div_aclk66", GATE_IP_PERIC, 27, 0, 0),
  572. GATE(CLK_HSI2C0, "hsi2c0", "div_aclk66", GATE_IP_PERIC, 28, 0, 0),
  573. GATE(CLK_HSI2C1, "hsi2c1", "div_aclk66", GATE_IP_PERIC, 29, 0, 0),
  574. GATE(CLK_HSI2C2, "hsi2c2", "div_aclk66", GATE_IP_PERIC, 30, 0, 0),
  575. GATE(CLK_HSI2C3, "hsi2c3", "div_aclk66", GATE_IP_PERIC, 31, 0, 0),
  576. GATE(CLK_CHIPID, "chipid", "div_aclk66", GATE_IP_PERIS, 0, 0, 0),
  577. GATE(CLK_SYSREG, "sysreg", "div_aclk66",
  578. GATE_IP_PERIS, 1, CLK_IGNORE_UNUSED, 0),
  579. GATE(CLK_PMU, "pmu", "div_aclk66", GATE_IP_PERIS, 2, CLK_IGNORE_UNUSED,
  580. 0),
  581. GATE(CLK_CMU_TOP, "cmu_top", "div_aclk66",
  582. GATE_IP_PERIS, 3, CLK_IGNORE_UNUSED, 0),
  583. GATE(CLK_CMU_CORE, "cmu_core", "div_aclk66",
  584. GATE_IP_PERIS, 4, CLK_IGNORE_UNUSED, 0),
  585. GATE(CLK_CMU_MEM, "cmu_mem", "div_aclk66",
  586. GATE_IP_PERIS, 5, CLK_IGNORE_UNUSED, 0),
  587. GATE(CLK_TZPC0, "tzpc0", "div_aclk66", GATE_IP_PERIS, 6, 0, 0),
  588. GATE(CLK_TZPC1, "tzpc1", "div_aclk66", GATE_IP_PERIS, 7, 0, 0),
  589. GATE(CLK_TZPC2, "tzpc2", "div_aclk66", GATE_IP_PERIS, 8, 0, 0),
  590. GATE(CLK_TZPC3, "tzpc3", "div_aclk66", GATE_IP_PERIS, 9, 0, 0),
  591. GATE(CLK_TZPC4, "tzpc4", "div_aclk66", GATE_IP_PERIS, 10, 0, 0),
  592. GATE(CLK_TZPC5, "tzpc5", "div_aclk66", GATE_IP_PERIS, 11, 0, 0),
  593. GATE(CLK_TZPC6, "tzpc6", "div_aclk66", GATE_IP_PERIS, 12, 0, 0),
  594. GATE(CLK_TZPC7, "tzpc7", "div_aclk66", GATE_IP_PERIS, 13, 0, 0),
  595. GATE(CLK_TZPC8, "tzpc8", "div_aclk66", GATE_IP_PERIS, 14, 0, 0),
  596. GATE(CLK_TZPC9, "tzpc9", "div_aclk66", GATE_IP_PERIS, 15, 0, 0),
  597. GATE(CLK_HDMI_CEC, "hdmi_cec", "div_aclk66", GATE_IP_PERIS, 16, 0, 0),
  598. GATE(CLK_MCT, "mct", "div_aclk66", GATE_IP_PERIS, 18, 0, 0),
  599. GATE(CLK_WDT, "wdt", "div_aclk66", GATE_IP_PERIS, 19, 0, 0),
  600. GATE(CLK_RTC, "rtc", "div_aclk66", GATE_IP_PERIS, 20, 0, 0),
  601. GATE(CLK_TMU, "tmu", "div_aclk66", GATE_IP_PERIS, 21, 0, 0),
  602. GATE(CLK_SMMU_2D, "smmu_2d", "div_aclk200", GATE_IP_ACP, 7, 0, 0),
  603. GATE(CLK_SMMU_FIMC_ISP, "smmu_fimc_isp", "mout_aclk_266_isp_sub",
  604. GATE_IP_ISP0, 8, 0, 0),
  605. GATE(CLK_SMMU_FIMC_DRC, "smmu_fimc_drc", "mout_aclk_266_isp_sub",
  606. GATE_IP_ISP0, 9, 0, 0),
  607. GATE(CLK_SMMU_FIMC_FD, "smmu_fimc_fd", "mout_aclk_266_isp_sub",
  608. GATE_IP_ISP0, 10, 0, 0),
  609. GATE(CLK_SMMU_FIMC_SCC, "smmu_fimc_scc", "mout_aclk_266_isp_sub",
  610. GATE_IP_ISP0, 11, 0, 0),
  611. GATE(CLK_SMMU_FIMC_SCP, "smmu_fimc_scp", "mout_aclk_266_isp_sub",
  612. GATE_IP_ISP0, 12, 0, 0),
  613. GATE(CLK_SMMU_FIMC_MCU, "smmu_fimc_mcu", "mout_aclk_400_isp_sub",
  614. GATE_IP_ISP0, 13, 0, 0),
  615. GATE(CLK_SMMU_FIMC_ODC, "smmu_fimc_odc", "mout_aclk_266_isp_sub",
  616. GATE_IP_ISP1, 4, 0, 0),
  617. GATE(CLK_SMMU_FIMC_DIS0, "smmu_fimc_dis0", "mout_aclk_266_isp_sub",
  618. GATE_IP_ISP1, 5, 0, 0),
  619. GATE(CLK_SMMU_FIMC_DIS1, "smmu_fimc_dis1", "mout_aclk_266_isp_sub",
  620. GATE_IP_ISP1, 6, 0, 0),
  621. GATE(CLK_SMMU_FIMC_3DNR, "smmu_fimc_3dnr", "mout_aclk_266_isp_sub",
  622. GATE_IP_ISP1, 7, 0, 0),
  623. };
  624. static const struct samsung_gate_clock exynos5250_disp_gate_clks[] __initconst = {
  625. GATE(CLK_FIMD1, "fimd1", "mout_aclk200_disp1_sub", GATE_IP_DISP1, 0, 0,
  626. 0),
  627. GATE(CLK_MIE1, "mie1", "mout_aclk200_disp1_sub", GATE_IP_DISP1, 1, 0,
  628. 0),
  629. GATE(CLK_DSIM0, "dsim0", "mout_aclk200_disp1_sub", GATE_IP_DISP1, 3, 0,
  630. 0),
  631. GATE(CLK_DP, "dp", "mout_aclk200_disp1_sub", GATE_IP_DISP1, 4, 0, 0),
  632. GATE(CLK_MIXER, "mixer", "mout_aclk200_disp1_sub", GATE_IP_DISP1, 5, 0,
  633. 0),
  634. GATE(CLK_HDMI, "hdmi", "mout_aclk200_disp1_sub", GATE_IP_DISP1, 6, 0,
  635. 0),
  636. GATE(CLK_SMMU_TV, "smmu_tv", "mout_aclk200_disp1_sub",
  637. GATE_IP_DISP1, 9, 0, 0),
  638. GATE(CLK_SMMU_FIMD1, "smmu_fimd1", "mout_aclk200_disp1_sub",
  639. GATE_IP_DISP1, 8, 0, 0),
  640. };
  641. static struct exynos5_subcmu_reg_dump exynos5250_disp_suspend_regs[] = {
  642. { GATE_IP_DISP1, 0xffffffff, 0xffffffff }, /* DISP1 gates */
  643. { SRC_TOP3, 0, BIT(4) }, /* MUX mout_aclk200_disp1_sub */
  644. { SRC_TOP3, 0, BIT(6) }, /* MUX mout_aclk300_disp1_sub */
  645. };
  646. static const struct exynos5_subcmu_info exynos5250_disp_subcmu = {
  647. .gate_clks = exynos5250_disp_gate_clks,
  648. .nr_gate_clks = ARRAY_SIZE(exynos5250_disp_gate_clks),
  649. .suspend_regs = exynos5250_disp_suspend_regs,
  650. .nr_suspend_regs = ARRAY_SIZE(exynos5250_disp_suspend_regs),
  651. .pd_name = "DISP1",
  652. };
  653. static const struct samsung_pll_rate_table vpll_24mhz_tbl[] __initconst = {
  654. /* sorted in descending order */
  655. /* PLL_36XX_RATE(rate, m, p, s, k) */
  656. PLL_36XX_RATE(24 * MHZ, 266000000, 266, 3, 3, 0),
  657. /* Not in UM, but need for eDP on snow */
  658. PLL_36XX_RATE(24 * MHZ, 70500000, 94, 2, 4, 0),
  659. { },
  660. };
  661. static const struct samsung_pll_rate_table epll_24mhz_tbl[] __initconst = {
  662. /* sorted in descending order */
  663. /* PLL_36XX_RATE(rate, m, p, s, k) */
  664. PLL_36XX_RATE(24 * MHZ, 192000000, 64, 2, 2, 0),
  665. PLL_36XX_RATE(24 * MHZ, 180633605, 90, 3, 2, 20762),
  666. PLL_36XX_RATE(24 * MHZ, 180000000, 90, 3, 2, 0),
  667. PLL_36XX_RATE(24 * MHZ, 73728000, 98, 2, 4, 19923),
  668. PLL_36XX_RATE(24 * MHZ, 67737602, 90, 2, 4, 20762),
  669. PLL_36XX_RATE(24 * MHZ, 49152000, 98, 3, 4, 19923),
  670. PLL_36XX_RATE(24 * MHZ, 45158401, 90, 3, 4, 20762),
  671. PLL_36XX_RATE(24 * MHZ, 32768001, 131, 3, 5, 4719),
  672. { },
  673. };
  674. static const struct samsung_pll_rate_table apll_24mhz_tbl[] __initconst = {
  675. /* sorted in descending order */
  676. /* PLL_35XX_RATE(fin, rate, m, p, s) */
  677. PLL_35XX_RATE(24 * MHZ, 1700000000, 425, 6, 0),
  678. PLL_35XX_RATE(24 * MHZ, 1600000000, 200, 3, 0),
  679. PLL_35XX_RATE(24 * MHZ, 1500000000, 250, 4, 0),
  680. PLL_35XX_RATE(24 * MHZ, 1400000000, 175, 3, 0),
  681. PLL_35XX_RATE(24 * MHZ, 1300000000, 325, 6, 0),
  682. PLL_35XX_RATE(24 * MHZ, 1200000000, 200, 4, 0),
  683. PLL_35XX_RATE(24 * MHZ, 1100000000, 275, 6, 0),
  684. PLL_35XX_RATE(24 * MHZ, 1000000000, 125, 3, 0),
  685. PLL_35XX_RATE(24 * MHZ, 900000000, 150, 4, 0),
  686. PLL_35XX_RATE(24 * MHZ, 800000000, 100, 3, 0),
  687. PLL_35XX_RATE(24 * MHZ, 700000000, 175, 3, 1),
  688. PLL_35XX_RATE(24 * MHZ, 600000000, 200, 4, 1),
  689. PLL_35XX_RATE(24 * MHZ, 500000000, 125, 3, 1),
  690. PLL_35XX_RATE(24 * MHZ, 400000000, 100, 3, 1),
  691. PLL_35XX_RATE(24 * MHZ, 300000000, 200, 4, 2),
  692. PLL_35XX_RATE(24 * MHZ, 200000000, 100, 3, 2),
  693. };
  694. static struct samsung_pll_clock exynos5250_plls[nr_plls] __initdata = {
  695. [apll] = PLL(pll_35xx, CLK_FOUT_APLL, "fout_apll", "fin_pll", APLL_LOCK,
  696. APLL_CON0, NULL),
  697. [mpll] = PLL(pll_35xx, CLK_FOUT_MPLL, "fout_mpll", "fin_pll", MPLL_LOCK,
  698. MPLL_CON0, NULL),
  699. [bpll] = PLL(pll_35xx, CLK_FOUT_BPLL, "fout_bpll", "fin_pll", BPLL_LOCK,
  700. BPLL_CON0, NULL),
  701. [gpll] = PLL(pll_35xx, CLK_FOUT_GPLL, "fout_gpll", "fin_pll", GPLL_LOCK,
  702. GPLL_CON0, NULL),
  703. [cpll] = PLL(pll_35xx, CLK_FOUT_CPLL, "fout_cpll", "fin_pll", CPLL_LOCK,
  704. CPLL_CON0, NULL),
  705. [epll] = PLL(pll_36xx, CLK_FOUT_EPLL, "fout_epll", "fin_pll", EPLL_LOCK,
  706. EPLL_CON0, NULL),
  707. [vpll] = PLL(pll_36xx, CLK_FOUT_VPLL, "fout_vpll", "mout_vpllsrc",
  708. VPLL_LOCK, VPLL_CON0, NULL),
  709. };
  710. #define E5250_CPU_DIV0(apll, pclk_dbg, atb, periph, acp, cpud) \
  711. ((((apll) << 24) | ((pclk_dbg) << 20) | ((atb) << 16) | \
  712. ((periph) << 12) | ((acp) << 8) | ((cpud) << 4)))
  713. #define E5250_CPU_DIV1(hpm, copy) \
  714. (((hpm) << 4) | (copy))
  715. static const struct exynos_cpuclk_cfg_data exynos5250_armclk_d[] __initconst = {
  716. { 1700000, E5250_CPU_DIV0(5, 3, 7, 7, 7, 3), E5250_CPU_DIV1(2, 0), },
  717. { 1600000, E5250_CPU_DIV0(4, 1, 7, 7, 7, 3), E5250_CPU_DIV1(2, 0), },
  718. { 1500000, E5250_CPU_DIV0(4, 1, 7, 7, 7, 2), E5250_CPU_DIV1(2, 0), },
  719. { 1400000, E5250_CPU_DIV0(4, 1, 6, 7, 7, 2), E5250_CPU_DIV1(2, 0), },
  720. { 1300000, E5250_CPU_DIV0(3, 1, 6, 7, 7, 2), E5250_CPU_DIV1(2, 0), },
  721. { 1200000, E5250_CPU_DIV0(3, 1, 5, 7, 7, 2), E5250_CPU_DIV1(2, 0), },
  722. { 1100000, E5250_CPU_DIV0(3, 1, 5, 7, 7, 3), E5250_CPU_DIV1(2, 0), },
  723. { 1000000, E5250_CPU_DIV0(2, 1, 4, 7, 7, 1), E5250_CPU_DIV1(2, 0), },
  724. { 900000, E5250_CPU_DIV0(2, 1, 4, 7, 7, 1), E5250_CPU_DIV1(2, 0), },
  725. { 800000, E5250_CPU_DIV0(2, 1, 4, 7, 7, 1), E5250_CPU_DIV1(2, 0), },
  726. { 700000, E5250_CPU_DIV0(1, 1, 3, 7, 7, 1), E5250_CPU_DIV1(2, 0), },
  727. { 600000, E5250_CPU_DIV0(1, 1, 3, 7, 7, 1), E5250_CPU_DIV1(2, 0), },
  728. { 500000, E5250_CPU_DIV0(1, 1, 2, 7, 7, 1), E5250_CPU_DIV1(2, 0), },
  729. { 400000, E5250_CPU_DIV0(1, 1, 2, 7, 7, 1), E5250_CPU_DIV1(2, 0), },
  730. { 300000, E5250_CPU_DIV0(1, 1, 1, 7, 7, 1), E5250_CPU_DIV1(2, 0), },
  731. { 200000, E5250_CPU_DIV0(1, 1, 1, 7, 7, 1), E5250_CPU_DIV1(2, 0), },
  732. { 0 },
  733. };
  734. static const struct of_device_id ext_clk_match[] __initconst = {
  735. { .compatible = "samsung,clock-xxti", .data = (void *)0, },
  736. { },
  737. };
  738. /* register exynox5250 clocks */
  739. static void __init exynos5250_clk_init(struct device_node *np)
  740. {
  741. struct samsung_clk_provider *ctx;
  742. unsigned int tmp;
  743. if (np) {
  744. reg_base = of_iomap(np, 0);
  745. if (!reg_base)
  746. panic("%s: failed to map registers\n", __func__);
  747. } else {
  748. panic("%s: unable to determine soc\n", __func__);
  749. }
  750. ctx = samsung_clk_init(np, reg_base, CLK_NR_CLKS);
  751. samsung_clk_of_register_fixed_ext(ctx, exynos5250_fixed_rate_ext_clks,
  752. ARRAY_SIZE(exynos5250_fixed_rate_ext_clks),
  753. ext_clk_match);
  754. samsung_clk_register_mux(ctx, exynos5250_pll_pmux_clks,
  755. ARRAY_SIZE(exynos5250_pll_pmux_clks));
  756. if (_get_rate("fin_pll") == 24 * MHZ) {
  757. exynos5250_plls[epll].rate_table = epll_24mhz_tbl;
  758. exynos5250_plls[apll].rate_table = apll_24mhz_tbl;
  759. }
  760. if (_get_rate("mout_vpllsrc") == 24 * MHZ)
  761. exynos5250_plls[vpll].rate_table = vpll_24mhz_tbl;
  762. samsung_clk_register_pll(ctx, exynos5250_plls,
  763. ARRAY_SIZE(exynos5250_plls),
  764. reg_base);
  765. samsung_clk_register_fixed_rate(ctx, exynos5250_fixed_rate_clks,
  766. ARRAY_SIZE(exynos5250_fixed_rate_clks));
  767. samsung_clk_register_fixed_factor(ctx, exynos5250_fixed_factor_clks,
  768. ARRAY_SIZE(exynos5250_fixed_factor_clks));
  769. samsung_clk_register_mux(ctx, exynos5250_mux_clks,
  770. ARRAY_SIZE(exynos5250_mux_clks));
  771. samsung_clk_register_div(ctx, exynos5250_div_clks,
  772. ARRAY_SIZE(exynos5250_div_clks));
  773. samsung_clk_register_gate(ctx, exynos5250_gate_clks,
  774. ARRAY_SIZE(exynos5250_gate_clks));
  775. exynos_register_cpu_clock(ctx, CLK_ARM_CLK, "armclk",
  776. mout_cpu_p[0], mout_cpu_p[1], 0x200,
  777. exynos5250_armclk_d, ARRAY_SIZE(exynos5250_armclk_d),
  778. CLK_CPU_HAS_DIV1);
  779. /*
  780. * Enable arm clock down (in idle) and set arm divider
  781. * ratios in WFI/WFE state.
  782. */
  783. tmp = (PWR_CTRL1_CORE2_DOWN_RATIO | PWR_CTRL1_CORE1_DOWN_RATIO |
  784. PWR_CTRL1_DIV2_DOWN_EN | PWR_CTRL1_DIV1_DOWN_EN |
  785. PWR_CTRL1_USE_CORE1_WFE | PWR_CTRL1_USE_CORE0_WFE |
  786. PWR_CTRL1_USE_CORE1_WFI | PWR_CTRL1_USE_CORE0_WFI);
  787. __raw_writel(tmp, reg_base + PWR_CTRL1);
  788. /*
  789. * Enable arm clock up (on exiting idle). Set arm divider
  790. * ratios when not in idle along with the standby duration
  791. * ratios.
  792. */
  793. tmp = (PWR_CTRL2_DIV2_UP_EN | PWR_CTRL2_DIV1_UP_EN |
  794. PWR_CTRL2_DUR_STANDBY2_VAL | PWR_CTRL2_DUR_STANDBY1_VAL |
  795. PWR_CTRL2_CORE2_UP_RATIO | PWR_CTRL2_CORE1_UP_RATIO);
  796. __raw_writel(tmp, reg_base + PWR_CTRL2);
  797. exynos5250_clk_sleep_init();
  798. exynos5_subcmus_init(ctx, 1, &exynos5250_disp_subcmu);
  799. samsung_clk_of_add_provider(np, ctx);
  800. pr_info("Exynos5250: clock setup completed, armclk=%ld\n",
  801. _get_rate("div_arm2"));
  802. }
  803. CLK_OF_DECLARE_DRIVER(exynos5250_clk, "samsung,exynos5250-clock", exynos5250_clk_init);