spl_mem_init.c 9.6 KB

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  1. /*
  2. * Freescale i.MX28 RAM init
  3. *
  4. * Copyright (C) 2011 Marek Vasut <marek.vasut@gmail.com>
  5. * on behalf of DENX Software Engineering GmbH
  6. *
  7. * See file CREDITS for list of people who contributed to this
  8. * project.
  9. *
  10. * This program is free software; you can redistribute it and/or
  11. * modify it under the terms of the GNU General Public License as
  12. * published by the Free Software Foundation; either version 2 of
  13. * the License, or (at your option) any later version.
  14. *
  15. * This program is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  18. * GNU General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public License
  21. * along with this program; if not, write to the Free Software
  22. * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
  23. * MA 02111-1307 USA
  24. */
  25. #include <common.h>
  26. #include <config.h>
  27. #include <asm/io.h>
  28. #include <asm/arch/imx-regs.h>
  29. #include <asm/arch/sys_proto.h>
  30. #include <linux/compiler.h>
  31. #include "mxs_init.h"
  32. static uint32_t dram_vals[] = {
  33. /*
  34. * i.MX28 DDR2 at 200MHz
  35. */
  36. #if defined(CONFIG_MX28)
  37. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  38. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  39. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  40. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  41. 0x00000000, 0x00000100, 0x00000000, 0x00000000,
  42. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  43. 0x00000000, 0x00000000, 0x00010101, 0x01010101,
  44. 0x000f0f01, 0x0f02020a, 0x00000000, 0x00010101,
  45. 0x00000100, 0x00000100, 0x00000000, 0x00000002,
  46. 0x01010000, 0x07080403, 0x06005003, 0x0a0000c8,
  47. 0x02009c40, 0x0002030c, 0x0036a609, 0x031a0612,
  48. 0x02030202, 0x00c8001c, 0x00000000, 0x00000000,
  49. 0x00012100, 0xffff0303, 0x00012100, 0xffff0303,
  50. 0x00012100, 0xffff0303, 0x00012100, 0xffff0303,
  51. 0x00000003, 0x00000000, 0x00000000, 0x00000000,
  52. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  53. 0x00000000, 0x00000000, 0x00000612, 0x01000F02,
  54. 0x06120612, 0x00000200, 0x00020007, 0xf4004a27,
  55. 0xf4004a27, 0xf4004a27, 0xf4004a27, 0x07000300,
  56. 0x07000300, 0x07400300, 0x07400300, 0x00000005,
  57. 0x00000000, 0x00000000, 0x01000000, 0x01020408,
  58. 0x08040201, 0x000f1133, 0x00000000, 0x00001f04,
  59. 0x00001f04, 0x00001f04, 0x00001f04, 0x00001f04,
  60. 0x00001f04, 0x00001f04, 0x00001f04, 0x00000000,
  61. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  62. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  63. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  64. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  65. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  66. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  67. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  68. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  69. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  70. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  71. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  72. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  73. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  74. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  75. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  76. 0x00000000, 0x00000000, 0x00000000, 0x00000000,
  77. 0x00000000, 0x00000000, 0x00010000, 0x00030404,
  78. 0x00000003, 0x00000000, 0x00000000, 0x00000000,
  79. 0x00000000, 0x00000000, 0x00000000, 0x01010000,
  80. 0x01000000, 0x03030000, 0x00010303, 0x01020202,
  81. 0x00000000, 0x02040303, 0x21002103, 0x00061200,
  82. 0x06120612, 0x04420442, 0x04420442, 0x00040004,
  83. 0x00040004, 0x00000000, 0x00000000, 0x00000000,
  84. 0x00000000, 0xffffffff
  85. /*
  86. * i.MX23 DDR at 133MHz
  87. */
  88. #elif defined(CONFIG_MX23)
  89. 0x01010001, 0x00010100, 0x01000101, 0x00000001,
  90. 0x00000101, 0x00000000, 0x00010000, 0x01000001,
  91. 0x00000000, 0x00000001, 0x07000200, 0x00070202,
  92. 0x02020000, 0x04040a01, 0x00000201, 0x02040000,
  93. 0x02000000, 0x19000f08, 0x0d0d0000, 0x02021313,
  94. 0x02061521, 0x0000000a, 0x00080008, 0x00200020,
  95. 0x00200020, 0x00200020, 0x000003f7, 0x00000000,
  96. 0x00000000, 0x00000020, 0x00000020, 0x00c80000,
  97. 0x000a23cd, 0x000000c8, 0x00006665, 0x00000000,
  98. 0x00000101, 0x00040001, 0x00000000, 0x00000000,
  99. 0x00010000
  100. #else
  101. #error Unsupported memory initialization
  102. #endif
  103. };
  104. __weak void mxs_adjust_memory_params(uint32_t *dram_vals)
  105. {
  106. }
  107. #ifdef CONFIG_MX28
  108. static void initialize_dram_values(void)
  109. {
  110. int i;
  111. mxs_adjust_memory_params(dram_vals);
  112. for (i = 0; i < ARRAY_SIZE(dram_vals); i++)
  113. writel(dram_vals[i], MXS_DRAM_BASE + (4 * i));
  114. }
  115. #else
  116. static void initialize_dram_values(void)
  117. {
  118. int i;
  119. mxs_adjust_memory_params(dram_vals);
  120. for (i = 0; i < ARRAY_SIZE(dram_vals); i++) {
  121. if (i == 8 || i == 27 || i == 28 || i == 35)
  122. continue;
  123. writel(dram_vals[i], MXS_DRAM_BASE + (4 * i));
  124. }
  125. /*
  126. * Enable tRAS lockout in HW_DRAM_CTL08 ; it must be the last
  127. * element to be set
  128. */
  129. writel((1 << 24), MXS_DRAM_BASE + (4 * 8));
  130. }
  131. #endif
  132. static void mxs_mem_init_clock(void)
  133. {
  134. struct mxs_clkctrl_regs *clkctrl_regs =
  135. (struct mxs_clkctrl_regs *)MXS_CLKCTRL_BASE;
  136. #if defined(CONFIG_MX23)
  137. /* Fractional divider for ref_emi is 33 ; 480 * 18 / 33 = 266MHz */
  138. const unsigned char divider = 33;
  139. #elif defined(CONFIG_MX28)
  140. /* Fractional divider for ref_emi is 21 ; 480 * 18 / 21 = 411MHz */
  141. const unsigned char divider = 21;
  142. #endif
  143. /* Gate EMI clock */
  144. writeb(CLKCTRL_FRAC_CLKGATE,
  145. &clkctrl_regs->hw_clkctrl_frac0_set[CLKCTRL_FRAC0_EMI]);
  146. /* Set fractional divider for ref_emi */
  147. writeb(CLKCTRL_FRAC_CLKGATE | (divider & CLKCTRL_FRAC_FRAC_MASK),
  148. &clkctrl_regs->hw_clkctrl_frac0[CLKCTRL_FRAC0_EMI]);
  149. /* Ungate EMI clock */
  150. writeb(CLKCTRL_FRAC_CLKGATE,
  151. &clkctrl_regs->hw_clkctrl_frac0_clr[CLKCTRL_FRAC0_EMI]);
  152. early_delay(11000);
  153. /* Set EMI clock divider for EMI clock to 411 / 2 = 205MHz */
  154. writel((2 << CLKCTRL_EMI_DIV_EMI_OFFSET) |
  155. (1 << CLKCTRL_EMI_DIV_XTAL_OFFSET),
  156. &clkctrl_regs->hw_clkctrl_emi);
  157. /* Unbypass EMI */
  158. writel(CLKCTRL_CLKSEQ_BYPASS_EMI,
  159. &clkctrl_regs->hw_clkctrl_clkseq_clr);
  160. early_delay(10000);
  161. }
  162. static void mxs_mem_setup_cpu_and_hbus(void)
  163. {
  164. struct mxs_clkctrl_regs *clkctrl_regs =
  165. (struct mxs_clkctrl_regs *)MXS_CLKCTRL_BASE;
  166. /* Set fractional divider for ref_cpu to 480 * 18 / 19 = 454MHz
  167. * and ungate CPU clock */
  168. writeb(19 & CLKCTRL_FRAC_FRAC_MASK,
  169. (uint8_t *)&clkctrl_regs->hw_clkctrl_frac0[CLKCTRL_FRAC0_CPU]);
  170. /* Set CPU bypass */
  171. writel(CLKCTRL_CLKSEQ_BYPASS_CPU,
  172. &clkctrl_regs->hw_clkctrl_clkseq_set);
  173. /* HBUS = 151MHz */
  174. writel(CLKCTRL_HBUS_DIV_MASK, &clkctrl_regs->hw_clkctrl_hbus_set);
  175. writel(((~3) << CLKCTRL_HBUS_DIV_OFFSET) & CLKCTRL_HBUS_DIV_MASK,
  176. &clkctrl_regs->hw_clkctrl_hbus_clr);
  177. early_delay(10000);
  178. /* CPU clock divider = 1 */
  179. clrsetbits_le32(&clkctrl_regs->hw_clkctrl_cpu,
  180. CLKCTRL_CPU_DIV_CPU_MASK, 1);
  181. /* Disable CPU bypass */
  182. writel(CLKCTRL_CLKSEQ_BYPASS_CPU,
  183. &clkctrl_regs->hw_clkctrl_clkseq_clr);
  184. early_delay(15000);
  185. }
  186. static void mxs_mem_setup_vdda(void)
  187. {
  188. struct mxs_power_regs *power_regs =
  189. (struct mxs_power_regs *)MXS_POWER_BASE;
  190. writel((0xc << POWER_VDDACTRL_TRG_OFFSET) |
  191. (0x7 << POWER_VDDACTRL_BO_OFFSET_OFFSET) |
  192. POWER_VDDACTRL_LINREG_OFFSET_1STEPS_BELOW,
  193. &power_regs->hw_power_vddactrl);
  194. }
  195. uint32_t mxs_mem_get_size(void)
  196. {
  197. uint32_t sz, da;
  198. uint32_t *vt = (uint32_t *)0x20;
  199. /* The following is "subs pc, r14, #4", used as return from DABT. */
  200. const uint32_t data_abort_memdetect_handler = 0xe25ef004;
  201. /* Replace the DABT handler. */
  202. da = vt[4];
  203. vt[4] = data_abort_memdetect_handler;
  204. sz = get_ram_size((long *)PHYS_SDRAM_1, PHYS_SDRAM_1_SIZE);
  205. /* Restore the old DABT handler. */
  206. vt[4] = da;
  207. return sz;
  208. }
  209. #ifdef CONFIG_MX23
  210. static void mx23_mem_setup_vddmem(void)
  211. {
  212. struct mxs_power_regs *power_regs =
  213. (struct mxs_power_regs *)MXS_POWER_BASE;
  214. writel((0x12 << POWER_VDDMEMCTRL_TRG_OFFSET) |
  215. POWER_VDDMEMCTRL_ENABLE_ILIMIT |
  216. POWER_VDDMEMCTRL_ENABLE_LINREG |
  217. POWER_VDDMEMCTRL_PULLDOWN_ACTIVE,
  218. &power_regs->hw_power_vddmemctrl);
  219. early_delay(10000);
  220. writel((0x12 << POWER_VDDMEMCTRL_TRG_OFFSET) |
  221. POWER_VDDMEMCTRL_ENABLE_LINREG,
  222. &power_regs->hw_power_vddmemctrl);
  223. }
  224. static void mx23_mem_init(void)
  225. {
  226. /*
  227. * Reset/ungate the EMI block. This is essential, otherwise the system
  228. * suffers from memory instability. This thing is mx23 specific and is
  229. * no longer present on mx28.
  230. */
  231. mxs_reset_block((struct mxs_register_32 *)MXS_EMI_BASE);
  232. mx23_mem_setup_vddmem();
  233. /*
  234. * Configure the DRAM registers
  235. */
  236. /* Clear START and SREFRESH bit from DRAM_CTL8 */
  237. clrbits_le32(MXS_DRAM_BASE + 0x20, (1 << 16) | (1 << 8));
  238. initialize_dram_values();
  239. /* Set START bit in DRAM_CTL8 */
  240. setbits_le32(MXS_DRAM_BASE + 0x20, 1 << 16);
  241. clrbits_le32(MXS_DRAM_BASE + 0x40, 1 << 17);
  242. early_delay(20000);
  243. /* Adjust EMI port priority. */
  244. clrsetbits_le32(0x80020000, 0x1f << 16, 0x8);
  245. early_delay(20000);
  246. setbits_le32(MXS_DRAM_BASE + 0x40, 1 << 19);
  247. setbits_le32(MXS_DRAM_BASE + 0x40, 1 << 11);
  248. }
  249. #endif
  250. #ifdef CONFIG_MX28
  251. static void mx28_mem_init(void)
  252. {
  253. struct mxs_pinctrl_regs *pinctrl_regs =
  254. (struct mxs_pinctrl_regs *)MXS_PINCTRL_BASE;
  255. /* Set DDR2 mode */
  256. writel(PINCTRL_EMI_DS_CTRL_DDR_MODE_DDR2,
  257. &pinctrl_regs->hw_pinctrl_emi_ds_ctrl_set);
  258. /*
  259. * Configure the DRAM registers
  260. */
  261. /* Clear START bit from DRAM_CTL16 */
  262. clrbits_le32(MXS_DRAM_BASE + 0x40, 1);
  263. initialize_dram_values();
  264. /* Clear SREFRESH bit from DRAM_CTL17 */
  265. clrbits_le32(MXS_DRAM_BASE + 0x44, 1);
  266. /* Set START bit in DRAM_CTL16 */
  267. setbits_le32(MXS_DRAM_BASE + 0x40, 1);
  268. /* Wait for bit 20 (DRAM init complete) in DRAM_CTL58 */
  269. while (!(readl(MXS_DRAM_BASE + 0xe8) & (1 << 20)))
  270. ;
  271. }
  272. #endif
  273. void mxs_mem_init(void)
  274. {
  275. early_delay(11000);
  276. mxs_mem_init_clock();
  277. mxs_mem_setup_vdda();
  278. #if defined(CONFIG_MX23)
  279. mx23_mem_init();
  280. #elif defined(CONFIG_MX28)
  281. mx28_mem_init();
  282. #endif
  283. early_delay(10000);
  284. mxs_mem_setup_cpu_and_hbus();
  285. }