dummy_ap.c 53 KB

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  1. /* Copyright Statement:
  2. *
  3. * This software/firmware and related documentation ("MediaTek Software") are
  4. * protected under relevant copyright laws. The information contained herein
  5. * is confidential and proprietary to MediaTek Inc. and/or its licensors.
  6. * Without the prior written permission of MediaTek inc. and/or its licensors,
  7. * any reproduction, modification, use or disclosure of MediaTek Software,
  8. * and information contained herein, in whole or in part, shall be strictly prohibited.
  9. */
  10. /* MediaTek Inc. (C) 2015. All rights reserved.
  11. *
  12. * BY OPENING THIS FILE, RECEIVER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES
  13. * THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE")
  14. * RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO RECEIVER ON
  15. * AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES,
  16. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF
  17. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NONINFRINGEMENT.
  18. * NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH RESPECT TO THE
  19. * SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY, INCORPORATED IN, OR
  20. * SUPPLIED WITH THE MEDIATEK SOFTWARE, AND RECEIVER AGREES TO LOOK ONLY TO SUCH
  21. * THIRD PARTY FOR ANY WARRANTY CLAIM RELATING THERETO. RECEIVER EXPRESSLY ACKNOWLEDGES
  22. * THAT IT IS RECEIVER'S SOLE RESPONSIBILITY TO OBTAIN FROM ANY THIRD PARTY ALL PROPER LICENSES
  23. * CONTAINED IN MEDIATEK SOFTWARE. MEDIATEK SHALL ALSO NOT BE RESPONSIBLE FOR ANY MEDIATEK
  24. * SOFTWARE RELEASES MADE TO RECEIVER'S SPECIFICATION OR TO CONFORM TO A PARTICULAR
  25. * STANDARD OR OPEN FORUM. RECEIVER'S SOLE AND EXCLUSIVE REMEDY AND MEDIATEK'S ENTIRE AND
  26. * CUMULATIVE LIABILITY WITH RESPECT TO THE MEDIATEK SOFTWARE RELEASED HEREUNDER WILL BE,
  27. * AT MEDIATEK'S OPTION, TO REVISE OR REPLACE THE MEDIATEK SOFTWARE AT ISSUE,
  28. * OR REFUND ANY SOFTWARE LICENSE FEES OR SERVICE CHARGE PAID BY RECEIVER TO
  29. * MEDIATEK FOR SUCH MEDIATEK SOFTWARE AT ISSUE.
  30. */
  31. /* Note: Pleae enable DUMMY_AP option at rule.mk if hope to use this function */
  32. #include <platform/boot_mode.h>
  33. #include <debug.h>
  34. #include <dev/uart.h>
  35. #include <platform/mtk_key.h>
  36. #include <target/cust_key.h>
  37. #include <platform/mt_gpio.h>
  38. #include <sys/types.h>
  39. #include <debug.h>
  40. #include <err.h>
  41. #include <reg.h>
  42. #include <string.h>
  43. #include <platform/mt_typedefs.h>
  44. #include <platform/mt_reg_base.h>
  45. #include <platform/mt_irq.h>
  46. #include <platform/mt_pmic.h>
  47. #include <platform/timer.h>
  48. #include <sys/types.h>
  49. #include <arch/ops.h>
  50. #include <platform/mt_pmic.h>
  51. #include <platform/upmu_common.h>
  52. #include <platform/upmu_hw.h>
  53. #include <platform/pmic_wrap_init.h>
  54. //=====================================================================
  55. // Feature option switch part
  56. //=====================================================================
  57. #define THIS_IS_EVB
  58. #define BOTH_MD_ON
  59. //#define DEFAULT_META
  60. //#define ENABLE_MD_RESET_SPM
  61. //#define ENABLE_MD_RESET_RGU
  62. #define IGNORE_MD_WDT
  63. //#define IGNORE_MD1_WDT
  64. //#define IGNORE_MD2_WDT
  65. //#define ALWAYS_META
  66. #define AP_MD_SAME_UART
  67. #ifdef ENABLE_MD_RESET_SPM
  68. #include <platform/spm.h>
  69. #endif
  70. enum {
  71. MD_SYS1 = 0,
  72. MD_SYS2,
  73. MD_SYS3,
  74. MD_SYS4,
  75. };
  76. //------- IRQ ID part ---------------------------------------
  77. #define GIC_PRIVATE_SIGNALS (32)
  78. #define MT_MD_WDT1_IRQ_ID (223+GIC_PRIVATE_SIGNALS)
  79. #define MT_MD_WDT2_IRQ_ID (220+GIC_PRIVATE_SIGNALS)
  80. // C2K_CONFIG (0x10001360)
  81. #define AP_C2K_CONFIG (0x10001360)
  82. // AP RGU
  83. #define TOP_RGU_WDT_MODE (TOPRGU_BASE+0x0)
  84. #define TOP_RGU_WDT_SWRST (TOPRGU_BASE+0x14)
  85. #define TOP_RGU_WDT_SWSYSRST (TOPRGU_BASE+0x18)
  86. #define TOP_RGU_WDT_NONRST_REG (TOPRGU_BASE+0x20)
  87. // MD RGU PCore
  88. #define MD_WDT_BASE (0x200F0000) // P Core 0x55000000
  89. #define MD_WDT_STA (MD_WDT_BASE+0x0C)
  90. // MD RGU L1 Core
  91. #define MD_L1WDT_BASE (0x26010000) //2200//L Core
  92. #define PLL_TYPE (volatile unsigned int *)
  93. #define MD_CLKSW_BASE (0x20150000)
  94. #define MD_GLOBAL_CON_DCM_BASE (0x20130000)
  95. #define PSMCU_MISC_BASE (0x20200000)
  96. #define MD_PERI_MISC_BASE (0x20060000)
  97. #define MDL1A0_BASE (0x260F0000)
  98. #define BASE_ADDR_MDTOP_PLLMIXED (0x20140000)
  99. #define BASE_ADDR_MDSYS_CLKCTL (0x20120000)
  100. #define L1_BASE_MADDR_MDL1_CONF (0x260F0000)
  101. #define R_CLKSEL_CTL (PLL_TYPE(MD_CLKSW_BASE+0x0024))
  102. #define R_FLEXCKGEN_SEL0 (PLL_TYPE(MD_CLKSW_BASE+0x0028))
  103. #define R_FLEXCKGEN_SEL1 (PLL_TYPE(MD_CLKSW_BASE+0x002C))
  104. #define R_FLEXCKGEN_SEL2 (PLL_TYPE(MD_CLKSW_BASE+0x0044))
  105. #define R_PLL_STS (PLL_TYPE(MD_CLKSW_BASE+0x0040))
  106. #define R_FLEXCKGEN_STS0 (PLL_TYPE(MD_CLKSW_BASE+0x0030))
  107. #define R_FLEXCKGEN_STS1 (PLL_TYPE(MD_CLKSW_BASE+0x0034))
  108. #define R_FLEXCKGEN_STS2 (PLL_TYPE(MD_CLKSW_BASE+0x0048))
  109. /*PSMCU DCM*/
  110. #define R_PSMCU_DCM_CTL0 (PLL_TYPE(MD_GLOBAL_CON_DCM_BASE+0x0010))
  111. #define R_PSMCU_DCM_CTL1 (PLL_TYPE(MD_GLOBAL_CON_DCM_BASE+0x0014))
  112. #define R_ARM7_DCM_CTL0 (PLL_TYPE(MD_GLOBAL_CON_DCM_BASE+0x0020))
  113. #define R_ARM7_DCM_CTL1 (PLL_TYPE(MD_GLOBAL_CON_DCM_BASE+0x0024))
  114. #define MD_GLOBAL_CON_DUMMY (PLL_TYPE(MD_GLOBAL_CON_DCM_BASE+0x1000))
  115. #define MD_PLL_MAGIC_NUM (0x67550000)
  116. #define R_DCM_SHR_SET_CTL (PLL_TYPE(BASE_ADDR_MDSYS_CLKCTL+0x0004))
  117. #define R_LTEL2_BUS_DCM_CTL (PLL_TYPE(BASE_ADDR_MDSYS_CLKCTL+0x0010))
  118. #define R_MDDMA_BUS_DCM_CTL (PLL_TYPE(BASE_ADDR_MDSYS_CLKCTL+0x0014))
  119. #define R_MDREG_BUS_DCM_CTL (PLL_TYPE(BASE_ADDR_MDSYS_CLKCTL+0x0018))
  120. #define R_MODULE_BUS2X_DCM_CTL (PLL_TYPE(BASE_ADDR_MDSYS_CLKCTL+0x001C))
  121. #define R_MODULE_BUS1X_DCM_CTL (PLL_TYPE(BASE_ADDR_MDSYS_CLKCTL+0x0020))
  122. #define R_MDINFRA_CKEN (PLL_TYPE(BASE_ADDR_MDSYS_CLKCTL+0x0044))
  123. #define R_MDPERI_CKEN (PLL_TYPE(BASE_ADDR_MDSYS_CLKCTL+0x0048))
  124. #define R_MDPERI_DCM_MASK (PLL_TYPE(BASE_ADDR_MDSYS_CLKCTL+0x0064))
  125. #define R_PSMCU_AO_CLK_CTL (PLL_TYPE(BASE_ADDR_MDSYS_CLKCTL+0x00C0))
  126. #define R_L1_PMS (PLL_TYPE(MD_PERI_MISC_BASE+0x00C4))
  127. #define REG_DCM_PLLCK_SEL (PLL_TYPE(MDL1A0_BASE+0x0188))
  128. #define R_L1MCU_PWR_AWARE (PLL_TYPE(MDL1A0_BASE+0x0190))
  129. #define R_L1AO_PWR_AWARE (PLL_TYPE(MDL1A0_BASE+0x0194))
  130. #define R_BUSL2DCM_CON3 (PLL_TYPE(MDL1A0_BASE+0x0198))
  131. #define R_L1MCU_DCM_CON2 (PLL_TYPE(MDL1A0_BASE+0x0184))
  132. #define R_L1MCU_DCM_CON (PLL_TYPE(MDL1A0_BASE+0x0180))
  133. // C2K boot
  134. #define UINT32P (volatile unsigned int *)
  135. #define SLEEP_BASE (0x10006000)
  136. #define APMIXED_BASE (0x1000C000)
  137. #define TOPRGU_BASE (0x10007000)
  138. #define INFRACFG_AO_BASE (0x10001000)
  139. #define C2KSYS_BASE (0x38000000)
  140. #define C2K_CGBR1 (UINT32P (C2KSYS_BASE+0x0200B004))
  141. #define WDT_SWSYSRST (UINT32P (TOPRGU_BASE+0x018))
  142. #define INFRA_TOPAXI_PROTECTEN_1 (UINT32P (INFRACFG_AO_BASE+0x250))
  143. #define C2K_SPM_CTRL (UINT32P (INFRACFG_AO_BASE+0x368))
  144. #define C2K_STATUS (UINT32P (INFRACFG_AO_BASE+0x364))
  145. #define POWERON_CONFIG_EN (UINT32P (SLEEP_BASE+0x000))
  146. #define C2K_PWR_CON (UINT32P (SLEEP_BASE+0x328))
  147. #define PWR_STATUS (UINT32P (SLEEP_BASE+0x180))
  148. #define PWR_STATUS_2ND (UINT32P (SLEEP_BASE+0x184))
  149. #define INFRA_MISC2 (UINT32P (INFRACFG_AO_BASE+0xF0C))
  150. #define AP_PLL_CON0 (UINT32P (APMIXED_BASE+0x0))
  151. #define PWR_RST_B 0
  152. #define PWR_ISO 1
  153. #define PWR_ON 2
  154. #define PWR_ON_2ND 3
  155. #define PWR_CLK_DIS 4
  156. #define C2K 28
  157. #define C2K_MAGIC_NUM 0xC275
  158. #define INFRACFG_AO_BASE (0x10001000)
  159. #define UINT16P volatile unsigned short *
  160. #define UINT32P (volatile unsigned int *)
  161. #define C2KSYS_BASE (0x38000000)
  162. #define C2K_SBC_KEY0 (UINT32P(INFRACFG_AO_BASE+0x8B0))
  163. #define C2K_SBC_KEY1 (UINT32P(INFRACFG_AO_BASE+0x8B4))
  164. #define C2K_SBC_KEY2 (UINT32P(INFRACFG_AO_BASE+0x8B8))
  165. #define C2K_SBC_KEY3 (UINT32P(INFRACFG_AO_BASE+0x8BC))
  166. #define C2K_SBC_KEY4 (UINT32P(INFRACFG_AO_BASE+0x8C0))
  167. #define C2K_SBC_KEY5 (UINT32P(INFRACFG_AO_BASE+0x8C4))
  168. #define C2K_SBC_KEY6 (UINT32P(INFRACFG_AO_BASE+0x8C8))
  169. #define C2K_SBC_KEY7 (UINT32P(INFRACFG_AO_BASE+0x8CC))
  170. #define C2K_SBC_KEY_LOCK (UINT32P(INFRACFG_AO_BASE+0x8D0))
  171. #define C2K_CONFIG (UINT32P(INFRACFG_AO_BASE+0x360))
  172. #define C2K_C2K_PLL_CON3 (UINT32P(C2KSYS_BASE+0x02013008))
  173. #define C2K_C2K_PLL_CON2 (UINT32P(C2KSYS_BASE+0x02013004))
  174. #define C2K_C2K_PLLTD_CON0 (UINT32P(C2KSYS_BASE+0x02013074))
  175. #define C2K_CLK_CTRL9 (UINT32P(C2KSYS_BASE+0x0200029C))
  176. #define C2K_CLK_CTRL4 (UINT32P(C2KSYS_BASE+0x02000010))
  177. #define C2K_CG_ARM_AMBA_CLKSEL (UINT32P(C2KSYS_BASE+0x02000234))
  178. #define C2K_C2K_C2KPLL1_CON0 (UINT32P(C2KSYS_BASE+0x02013018))
  179. #define C2K_C2K_CPPLL_CON0 (UINT32P(C2KSYS_BASE+0x02013040))
  180. #define C2K_C2K_DSPPLL_CON0 (UINT32P(C2KSYS_BASE+0x02013050))
  181. #define C2K 28
  182. #define MDPLL1_CON0 (UINT32P (APMIXED_BASE+0x02C8))
  183. // SIM GPIO setcion
  184. // -- SIM1
  185. #define SIM1_SIO_GPIO_ID (41)
  186. #define SIM1_SRST_GPIO_ID (40)
  187. #define SIM1_SCLK_GPIO_ID (39)
  188. #define SIM1_HOT_PLUG_GPIO_ID (46)
  189. // -- SIM2
  190. #define SIM2_SIO_GPIO_ID (36)
  191. #define SIM2_SRST_GPIO_ID (37)
  192. #define SIM2_SCLK_GPIO_ID (38)
  193. #define SIM2_HOT_PLUG_GPIO_ID (45)
  194. // -- Connection
  195. extern BOOT_ARGUMENT *g_boot_arg;
  196. static unsigned int img_load_flag = 0;
  197. void pmic_init_sequence(void);
  198. void md_uart_config(int md_id, int boot_mode);
  199. void md1_pll_init(void);
  200. void md1_pmic_setting(void);
  201. static int meta_detection(void)
  202. {
  203. int boot_mode;
  204. #ifdef DEFAULT_META
  205. boot_mode = 1;
  206. return boot_mode;
  207. #endif
  208. boot_mode = 0;
  209. if (g_boot_arg->boot_mode != NORMAL_BOOT)
  210. boot_mode = 1;
  211. dprintf(ALWAYS, "Meta mode: %d, boot_mode: %d\n", boot_mode, g_boot_arg->boot_mode);
  212. return boot_mode;
  213. }
  214. static void md_gpio_get(GPIO_PIN pin, char *tag)
  215. {
  216. dprintf(ALWAYS, "GPIO(%X)(%s): mode=%d,dir=%d,in=%d,out=%d,pull_en=%d,pull_sel=%d,smt=%d\n",
  217. pin, tag,
  218. mt_get_gpio_mode(pin),
  219. mt_get_gpio_dir(pin),
  220. mt_get_gpio_in(pin),
  221. mt_get_gpio_out(pin),
  222. mt_get_gpio_pull_enable(pin),
  223. mt_get_gpio_pull_select(pin),
  224. mt_get_gpio_smt(pin));
  225. }
  226. static void md_gpio_set(GPIO_PIN pin, GPIO_MODE mode, GPIO_DIR dir, GPIO_OUT out, GPIO_PULL_EN pull_en, GPIO_PULL pull, GPIO_SMT smt)
  227. {
  228. mt_set_gpio_mode(pin, mode);
  229. if (dir != GPIO_DIR_UNSUPPORTED)
  230. mt_set_gpio_dir(pin, dir);
  231. if (dir == GPIO_DIR_OUT) {
  232. mt_set_gpio_out(pin, out);
  233. }
  234. if (dir == GPIO_DIR_IN) {
  235. mt_set_gpio_smt(pin, smt);
  236. }
  237. if (pull_en != GPIO_PULL_EN_UNSUPPORTED) {
  238. mt_set_gpio_pull_enable(pin, pull_en);
  239. mt_set_gpio_pull_select(pin, pull);
  240. }
  241. md_gpio_get(pin, "-");
  242. }
  243. static void md_gpio_config(unsigned int boot_mode_case)
  244. {
  245. // init sim1
  246. mt_set_gpio_dir(SIM1_SCLK_GPIO_ID, GPIO_DIR_OUT);
  247. mt_set_gpio_dir(SIM1_SRST_GPIO_ID, GPIO_DIR_OUT);
  248. mt_set_gpio_pull_enable(SIM1_SIO_GPIO_ID, GPIO_PULL_ENABLE);
  249. mt_set_gpio_pull_select(SIM1_SIO_GPIO_ID, GPIO_PULL_UP);
  250. mt_set_gpio_dir(SIM1_SIO_GPIO_ID, GPIO_DIR_IN);
  251. mt_set_gpio_pull_enable(SIM1_HOT_PLUG_GPIO_ID, GPIO_PULL_ENABLE);
  252. mt_set_gpio_pull_select(SIM1_HOT_PLUG_GPIO_ID, GPIO_PULL_UP);
  253. mt_set_gpio_dir(SIM1_HOT_PLUG_GPIO_ID, GPIO_DIR_IN);
  254. // init sim2
  255. mt_set_gpio_dir(SIM2_SCLK_GPIO_ID, GPIO_DIR_OUT);
  256. mt_set_gpio_dir(SIM2_SRST_GPIO_ID, GPIO_DIR_OUT);
  257. mt_set_gpio_pull_enable(SIM2_SIO_GPIO_ID, GPIO_PULL_ENABLE);
  258. mt_set_gpio_pull_select(SIM2_SIO_GPIO_ID, GPIO_PULL_UP);
  259. mt_set_gpio_dir(SIM2_SIO_GPIO_ID, GPIO_DIR_IN);
  260. mt_set_gpio_pull_enable(SIM2_HOT_PLUG_GPIO_ID, GPIO_PULL_ENABLE);
  261. mt_set_gpio_pull_select(SIM2_HOT_PLUG_GPIO_ID, GPIO_PULL_UP);
  262. mt_set_gpio_dir(SIM2_HOT_PLUG_GPIO_ID, GPIO_DIR_IN);
  263. // md_gpio_set(GPIO96, GPIO_MODE_05, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  264. md_gpio_set(GPIO39, GPIO_MODE_05, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_DOWN, GPIO_SMT_UNSUPPORTED);
  265. md_gpio_set(GPIO40, GPIO_MODE_05, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_DOWN, GPIO_SMT_UNSUPPORTED);
  266. md_gpio_set(GPIO41, GPIO_MODE_05, GPIO_DIR_IN, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_UP, GPIO_SMT_UNSUPPORTED);
  267. md_gpio_set(GPIO38, GPIO_MODE_06, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_DOWN, GPIO_SMT_UNSUPPORTED);
  268. md_gpio_set(GPIO37, GPIO_MODE_06, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_DOWN, GPIO_SMT_UNSUPPORTED);
  269. md_gpio_set(GPIO36, GPIO_MODE_06, GPIO_DIR_IN, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_UP, GPIO_SMT_UNSUPPORTED);
  270. md_gpio_set(GPIO46, GPIO_MODE_01, GPIO_DIR_IN, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_UP, GPIO_SMT_UNSUPPORTED);
  271. md_gpio_set(GPIO45, GPIO_MODE_01, GPIO_DIR_IN, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_UP, GPIO_SMT_UNSUPPORTED);
  272. md_gpio_set(GPIO13, GPIO_MODE_05, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  273. md_gpio_set(GPIO14, GPIO_MODE_05, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  274. md_gpio_set(GPIO15, GPIO_MODE_05, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  275. md_gpio_set(GPIO16, GPIO_MODE_05, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  276. md_gpio_set(GPIO27, GPIO_MODE_05, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  277. md_gpio_set(GPIO28, GPIO_MODE_05, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  278. md_gpio_set(GPIO34, GPIO_MODE_06, GPIO_DIR_IN, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_DOWN, GPIO_SMT_UNSUPPORTED);
  279. md_gpio_set(GPIO30, GPIO_MODE_06, GPIO_DIR_IN, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_DOWN, GPIO_SMT_UNSUPPORTED);
  280. md_gpio_set(GPIO33, GPIO_MODE_06, GPIO_DIR_IN, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_UP, GPIO_SMT_UNSUPPORTED);
  281. md_gpio_set(GPIO32, GPIO_MODE_06, GPIO_DIR_IN, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_UP, GPIO_SMT_UNSUPPORTED);
  282. md_gpio_set(GPIO35, GPIO_MODE_06, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  283. md_gpio_set(GPIO31, GPIO_MODE_06, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  284. md_gpio_set(GPIO110, GPIO_MODE_05, GPIO_DIR_IN, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_DOWN, GPIO_SMT_UNSUPPORTED);
  285. md_gpio_set(GPIO108, GPIO_MODE_05, GPIO_DIR_IN, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_UP, GPIO_SMT_UNSUPPORTED);
  286. md_gpio_set(GPIO111, GPIO_MODE_05, GPIO_DIR_IN, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_UP, GPIO_SMT_UNSUPPORTED);
  287. md_gpio_set(GPIO107, GPIO_MODE_05, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  288. md_gpio_set(GPIO8, GPIO_MODE_05, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  289. md_gpio_set(GPIO18, GPIO_MODE_05, GPIO_DIR_OUT, GPIO_OUT_ONE, GPIO_PULL_ENABLE, GPIO_PULL_DOWN, GPIO_SMT_UNSUPPORTED);
  290. md_gpio_set(GPIO17, GPIO_MODE_05, GPIO_DIR_IN, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_UP, GPIO_SMT_UNSUPPORTED);
  291. md_gpio_set(GPIO25, GPIO_MODE_05, GPIO_DIR_OUT, GPIO_OUT_ONE, GPIO_PULL_ENABLE, GPIO_PULL_DOWN, GPIO_SMT_UNSUPPORTED);
  292. md_gpio_set(GPIO26, GPIO_MODE_05, GPIO_DIR_IN, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_UP, GPIO_SMT_UNSUPPORTED);
  293. md_gpio_set(GPIO116, GPIO_MODE_00, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_ENABLE, GPIO_PULL_DOWN, GPIO_SMT_UNSUPPORTED);
  294. md_gpio_set(GPIO82, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  295. md_gpio_set(GPIO81, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  296. md_gpio_set(GPIO80, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  297. md_gpio_set(GPIO79, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  298. md_gpio_set(GPIO62, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  299. md_gpio_set(GPIO61, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  300. md_gpio_set(GPIO60, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  301. md_gpio_set(GPIO59, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  302. md_gpio_set(GPIO58, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  303. md_gpio_set(GPIO57, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  304. md_gpio_set(GPIO56, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  305. md_gpio_set(GPIO55, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  306. md_gpio_set(GPIO54, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  307. md_gpio_set(GPIO53, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  308. md_gpio_set(GPIO52, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  309. md_gpio_set(GPIO51, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  310. md_gpio_set(GPIO90, GPIO_MODE_02, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  311. md_gpio_set(GPIO89, GPIO_MODE_02, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  312. md_gpio_set(GPIO88, GPIO_MODE_02, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  313. md_gpio_set(GPIO87, GPIO_MODE_02, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  314. md_gpio_set(GPIO86, GPIO_MODE_02, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  315. md_gpio_set(GPIO85, GPIO_MODE_02, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  316. md_gpio_set(GPIO84, GPIO_MODE_02, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  317. md_gpio_set(GPIO83, GPIO_MODE_02, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  318. md_gpio_set(GPIO159, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  319. md_gpio_set(GPIO160, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  320. md_gpio_set(GPIO69, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  321. md_gpio_set(GPIO68, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  322. md_gpio_set(GPIO67, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  323. md_gpio_set(GPIO66, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  324. md_gpio_set(GPIO65, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  325. md_gpio_set(GPIO64, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  326. md_gpio_set(GPIO63, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  327. md_gpio_set(GPIO78, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  328. md_gpio_set(GPIO77, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  329. md_gpio_set(GPIO76, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  330. md_gpio_set(GPIO75, GPIO_MODE_01, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  331. // md_gpio_set(GPIO51, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  332. // md_gpio_set(GPIO52, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  333. // md_gpio_set(GPIO53, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  334. // md_gpio_set(GPIO54, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  335. // md_gpio_set(GPIO107, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  336. // md_gpio_set(GPIO108, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  337. // md_gpio_set(GPIO161, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  338. // md_gpio_set(GPIO109, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  339. // md_gpio_set(GPIO110, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  340. // md_gpio_set(GPIO111, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  341. // md_gpio_set(GPIO42, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  342. // md_gpio_set(GPIO43, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  343. // md_gpio_set(GPIO157, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  344. // md_gpio_set(GPIO44, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  345. // md_gpio_set(GPIO158, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  346. // md_gpio_set(GPIO17, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  347. // md_gpio_set(GPIO18, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  348. // md_gpio_set(GPIO19, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  349. // md_gpio_set(GPIO20, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  350. // md_gpio_set(GPIO21, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  351. // md_gpio_set(GPIO22, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  352. // md_gpio_set(GPIO23, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  353. // md_gpio_set(GPIO24, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  354. // md_gpio_set(GPIO25, GPIO_MODE_07, GPIO_DIR_OUT, GPIO_OUT_ZERO, GPIO_PULL_EN_UNSUPPORTED, GPIO_PULL_UNSUPPORTED, GPIO_SMT_UNSUPPORTED);
  355. switch (boot_mode_case) {
  356. case 0:
  357. //SIM1=> MD1 SIM1IF
  358. mt_set_gpio_mode(SIM1_SCLK_GPIO_ID, 1);
  359. mt_set_gpio_mode(SIM1_SRST_GPIO_ID, 1);
  360. mt_set_gpio_mode(SIM1_SIO_GPIO_ID, 1);
  361. mt_set_gpio_mode(SIM1_HOT_PLUG_GPIO_ID, 1);
  362. //SIM2=> MD1 SIM2IF
  363. mt_set_gpio_mode(SIM2_SCLK_GPIO_ID, 1);
  364. mt_set_gpio_mode(SIM2_SRST_GPIO_ID, 1);
  365. mt_set_gpio_mode(SIM2_SIO_GPIO_ID, 1);
  366. mt_set_gpio_mode(SIM2_HOT_PLUG_GPIO_ID, 1);
  367. break;
  368. case 1:
  369. //SIM1=> MD2 UIM0IF
  370. mt_set_gpio_mode(SIM1_SCLK_GPIO_ID, 5);
  371. mt_set_gpio_mode(SIM1_SRST_GPIO_ID, 5);
  372. mt_set_gpio_mode(SIM1_SIO_GPIO_ID, 5);
  373. mt_set_gpio_mode(SIM1_HOT_PLUG_GPIO_ID, 1);
  374. //SIM2=> MD2 UIM1IF
  375. mt_set_gpio_mode(SIM2_SCLK_GPIO_ID, 6);
  376. mt_set_gpio_mode(SIM2_SRST_GPIO_ID, 6);
  377. mt_set_gpio_mode(SIM2_SIO_GPIO_ID, 6);
  378. mt_set_gpio_mode(SIM2_HOT_PLUG_GPIO_ID, 1);
  379. break;
  380. case 2:
  381. //SIM1=> MD1 SIM1IF
  382. mt_set_gpio_mode(SIM1_SCLK_GPIO_ID, 1);
  383. mt_set_gpio_mode(SIM1_SRST_GPIO_ID, 1);
  384. mt_set_gpio_mode(SIM1_SIO_GPIO_ID, 1);
  385. mt_set_gpio_mode(SIM1_HOT_PLUG_GPIO_ID, 1);
  386. //SIM2=> MD2 UIM0IF
  387. mt_set_gpio_mode(SIM2_SCLK_GPIO_ID, 5);
  388. mt_set_gpio_mode(SIM2_SRST_GPIO_ID, 5);
  389. mt_set_gpio_mode(SIM2_SIO_GPIO_ID, 5);
  390. mt_set_gpio_mode(SIM2_HOT_PLUG_GPIO_ID, 1);
  391. break;
  392. default:
  393. break;
  394. }
  395. md_gpio_get(SIM1_SCLK_GPIO_ID, "sclk");
  396. md_gpio_get(SIM1_SRST_GPIO_ID, "srst");
  397. md_gpio_get(SIM1_SIO_GPIO_ID, "sio");
  398. md_gpio_get(SIM1_HOT_PLUG_GPIO_ID, "hp");
  399. md_gpio_get(SIM2_SCLK_GPIO_ID, "sclk2");
  400. md_gpio_get(SIM2_SRST_GPIO_ID, "srst2");
  401. md_gpio_get(SIM2_SIO_GPIO_ID, "sio2");
  402. md_gpio_get(SIM2_HOT_PLUG_GPIO_ID, "hp2");
  403. }
  404. static void md_power_up_mtcmos(unsigned int boot_md_id)
  405. {
  406. #ifdef ENABLE_MD_RESET_SPM
  407. switch (boot_md_id) {
  408. case MD_SYS1:
  409. spm_mtcmos_ctrl_mdsys1(STA_POWER_ON);
  410. break;
  411. case MD_SYS3
  412. spm_mtcmos_ctrl_mdsys2(STA_POWER_ON);
  413. break;
  414. default:
  415. break;
  416. }
  417. #endif
  418. }
  419. static void c2k_boot(int boot_mode);
  420. void md_uart_config(int type_id, int boot_mode)
  421. {
  422. switch (type_id) {
  423. case -1: // for AP only
  424. dprintf(ALWAYS, "md_uart_config:%d, UART1->[AP], UART2->AP, UART3->XXX, UART4->C2K\n", type_id);
  425. mt_set_gpio_mode(105, 1); //URXD0 / MD_URXD0
  426. mt_set_gpio_mode(106, 1); //UTXD0 / MD_UTXD0
  427. mt_set_gpio_mode(19, 2); //URXD1
  428. mt_set_gpio_mode(20, 2); //UTXD1
  429. //mt_set_gpio_mode(13, 4); //C2K_URXD0
  430. //mt_set_gpio_mode(14, 4); //C2K_UTXD0
  431. //mt_set_gpio_mode(17, 5); //C2K_URXD0
  432. //mt_set_gpio_mode(18, 5); //C2K_UTXD0
  433. break;
  434. case 0: // for AP & MD1
  435. case 1: // for AP & MD2201
  436. if (boot_mode==0) { // Normal boot
  437. dprintf(ALWAYS, "[Normal]md_uart_config:%d, UART1->[MD1], UART2->AP, UART3->XXX, UART4->C2K\n", type_id);
  438. #ifdef AP_MD_SAME_UART
  439. mt_set_gpio_mode(105, 1);//3); //URXD0 / MD_URXD0
  440. mt_set_gpio_mode(106, 1);//3); //UTXD0 / MD_UTXD0
  441. mt_set_gpio_mode(13, 0); //URXD0 / MD_URXD0
  442. mt_set_gpio_mode(14, 0); //UTXD0 / MD_UTXD0
  443. #else
  444. mt_set_gpio_mode(105, 1); //URXD0 / MD_URXD0
  445. mt_set_gpio_mode(106, 1); //UTXD0 / MD_UTXD0
  446. mt_set_gpio_mode(13, 4); //URXD0 / MD_URXD0
  447. mt_set_gpio_mode(14, 4); //UTXD0 / MD_UTXD0
  448. #endif
  449. //mt_set_gpio_mode(105, 1); //URXD0 / MD_URXD0
  450. //mt_set_gpio_mode(106, 1); //UTXD0 / MD_UTXD0
  451. mt_set_gpio_mode(19, 2); //URXD1
  452. mt_set_gpio_mode(20, 2); //UTXD1
  453. //mt_set_gpio_mode(13, 4); //C2K_URXD0
  454. //mt_set_gpio_mode(14, 4); //C2K_UTXD0
  455. //mt_set_gpio_mode(17, 5); //C2K_URXD0
  456. //mt_set_gpio_mode(18, 5); //C2K_UTXD0
  457. } else {
  458. dprintf(ALWAYS, "[Meta]md_uart_config:%d, UART1->[MD1], UART2->AP, UART3->XXX, UART4->C2K\n", type_id);
  459. mt_set_gpio_mode(105, 3); //URXD0 / MD_URXD0
  460. mt_set_gpio_mode(106, 3); //UTXD0 / MD_UTXD0
  461. mt_set_gpio_mode(13, 0); //URXD0 / MD_URXD0
  462. mt_set_gpio_mode(14, 0); //UTXD0 / MD_UTXD0
  463. //mt_set_gpio_mode(105, 1); //URXD0 / MD_URXD0
  464. //mt_set_gpio_mode(106, 1); //UTXD0 / MD_UTXD0
  465. mt_set_gpio_mode(19, 2); //URXD1
  466. mt_set_gpio_mode(20, 2); //UTXD1
  467. //mt_set_gpio_mode(13, 4); //C2K_URXD0
  468. //mt_set_gpio_mode(14, 4); //C2K_UTXD0
  469. //mt_set_gpio_mode(17, 5); //C2K_URXD0
  470. //mt_set_gpio_mode(18, 5); //C2K_UTXD0
  471. }
  472. break;
  473. case 2: // for both MD1 and MD2
  474. dprintf(ALWAYS, "md_uart_config:%d, UART1->[MD1], UART2->AP, UART3->XXX, UART4->C2K\n", type_id);
  475. mt_set_gpio_mode(105, 3); //URXD0 / MD_URXD0
  476. mt_set_gpio_mode(106, 3); //UTXD0 / MD_UTXD0
  477. mt_set_gpio_mode(13, 0); //MD_URXD0 ==> MD1
  478. mt_set_gpio_mode(14, 0); //MD_UTXD0 ==> MD1
  479. mt_set_gpio_mode(19, 2); //URXD1
  480. mt_set_gpio_mode(20, 2); //UTXD1
  481. //mt_set_gpio_mode(13, 4); //C2K_URXD0
  482. //mt_set_gpio_mode(14, 4); //C2K_UTXD0
  483. //mt_set_gpio_mode(17, 5); //C2K_URXD0
  484. //mt_set_gpio_mode(18, 5); //C2K_UTXD0
  485. default:
  486. break;
  487. }
  488. }
  489. static void let_md_go(int md_id)
  490. {
  491. unsigned int reg_val;
  492. switch (md_id) {
  493. case MD_SYS1:
  494. // Trigger MD run
  495. DRV_WriteReg32(0x20000024, 1);
  496. break;
  497. case MD_SYS3:
  498. DRV_WriteReg32(AP_C2K_CONFIG, DRV_Reg32(AP_C2K_CONFIG)|(1<<3));
  499. /* AP release C2K ARM core to let C2K go */
  500. reg_val = DRV_Reg32(C2K_CONFIG);
  501. reg_val &= ~(0x1 << 1);
  502. DRV_WriteReg32(C2K_CONFIG, reg_val);
  503. break;
  504. default:
  505. break;
  506. }
  507. }
  508. int md_common_setting(int boot_md_comb)
  509. {
  510. unsigned int reg_value;
  511. // step 3: MD srcclkena setting
  512. if ((boot_md_comb&((1<<MD_SYS1)|(1<<MD_SYS3)))==(1<<MD_SYS1))
  513. *((volatile unsigned int*)0x10001000+0xF0C) = 0x29;
  514. else {
  515. reg_value = *((volatile unsigned int*)0x10001000+0xF0C);
  516. reg_value &= 0x6D;
  517. reg_value |= 0x29;
  518. *((volatile unsigned int*)0x10001000+0xF0C) = reg_value;
  519. }
  520. dprintf(ALWAYS, "MD srcclkena setting:0x%x\n", *((volatile unsigned int*)0x10001000+0xF0C));
  521. return 0;
  522. }
  523. static void config_md_boot_env(int md_id, int boot_mode)
  524. {
  525. unsigned int reg_value;
  526. switch (md_id) {
  527. case MD_SYS1:
  528. // step 0: PMIC setting
  529. md1_pmic_setting();
  530. // step 1: Power on MTCMOS
  531. md_power_up_mtcmos(md_id);
  532. // Temp Setting:
  533. // Request by Yuyang Hsiao and Adder
  534. DRV_WriteReg32(0x10006008,0x215830);
  535. // step 2: pll init
  536. md1_pll_init();
  537. // step 3: set META Register
  538. if (boot_mode) {
  539. reg_value = DRV_Reg32(0x20000010);
  540. DRV_WriteReg32(0x20000010, (reg_value |0x1)); // Bit0, Meta mode flag, this need sync with MD init owner
  541. }
  542. // step 4: Disabel MD WDT
  543. // -- PCore
  544. //DRV_WriteReg32(MD_WDT_BASE, 0x55000000);
  545. // -- MD RGU L1 Core
  546. //DRV_WriteReg32(MD_L1WDT_BASE ,0x2200); //L Core
  547. break;
  548. case MD_SYS3:
  549. pmic_init_sequence();
  550. c2k_boot(boot_mode);
  551. break;
  552. default:
  553. break;
  554. }
  555. // Configure DAP for ICE to connect to MD
  556. dprintf(ALWAYS, "Configure DAP for ICE to connect to MD!\n");
  557. }
  558. void md_wdt_init(void)
  559. {
  560. if (img_load_flag &(1<<MD_SYS1)) {
  561. mt_irq_set_sens(MT_MD_WDT1_IRQ_ID, MT65xx_EDGE_SENSITIVE);
  562. mt_irq_set_polarity(MT_MD_WDT1_IRQ_ID, MT65xx_POLARITY_LOW);
  563. mt_irq_unmask(MT_MD_WDT1_IRQ_ID);
  564. }
  565. if (img_load_flag &(1<<MD_SYS3)) {
  566. mt_irq_set_sens(MT_MD_WDT2_IRQ_ID, MT65xx_EDGE_SENSITIVE);
  567. mt_irq_set_polarity(MT_MD_WDT2_IRQ_ID, MT65xx_POLARITY_LOW);
  568. mt_irq_unmask(MT_MD_WDT2_IRQ_ID);
  569. }
  570. }
  571. extern char *ld_md_errno_to_str(int errno);
  572. void dummy_ap_boot_up_md(int md_ld_flag)
  573. {
  574. int boot_mode;
  575. int i;
  576. int ret;
  577. img_load_flag = (unsigned int)md_ld_flag;
  578. // reinit UART, overwrite DWS setting
  579. md_uart_config(-1, 0);
  580. // Disable AP WDT
  581. *(volatile unsigned int *)(TOPRGU_BASE) = 0x22000000;
  582. dprintf(ALWAYS, "Welcome to use dummy AP!\n");
  583. dprintf(ALWAYS, "load flag for dummy AP: %x\n", img_load_flag);
  584. if (img_load_flag == 0) {
  585. dprintf(ALWAYS, "no MD loaded for dummy AP\n");
  586. ret = get_md_err_from_lk_info(MD_SYS1);
  587. dprintf(ALWAYS, "hint for MD1 errno: %x, %s\n", ret, ld_md_errno_to_str(-ret));
  588. ret = get_md_err_from_lk_info(MD_SYS3);
  589. dprintf(ALWAYS, "hint for MD3 errno: %x\n", ret, ld_md_errno_to_str(-ret));
  590. dprintf(ALWAYS, "stop.....\n");
  591. while (1);
  592. }
  593. if (img_load_flag & (1<<MD_SYS1)) {
  594. dprintf(ALWAYS, "MD1 loaded");
  595. ret = get_md_err_from_lk_info(MD_SYS1);
  596. if (ret < 0) {
  597. dprintf(ALWAYS, "MD1 load image has error, errno:%s", ld_md_errno_to_str(-ret));
  598. while (1);
  599. }
  600. }
  601. if (img_load_flag & (1<<MD_SYS3)) {
  602. dprintf(ALWAYS, "MD3 loaded");
  603. ret = get_md_err_from_lk_info(MD_SYS3);
  604. if (ret < 0) {
  605. dprintf(ALWAYS, "MD3 load image has error, errno:%s", ld_md_errno_to_str(-ret));
  606. while (1);
  607. }
  608. }
  609. // 1, Setup special GPIO request (RF/SIM/UART ... etc)
  610. dprintf(ALWAYS, "Configure GPIO!\n");
  611. if ((img_load_flag&((1<<MD_SYS1)|(1<<MD_SYS3))) == ((1<<MD_SYS1)|(1<<MD_SYS3))) {
  612. md_gpio_config(2);
  613. } else if (img_load_flag & (1<<MD_SYS1)) {
  614. md_gpio_config(0);
  615. } else if (img_load_flag & (1<<MD_SYS3)) {
  616. md_gpio_config(1);
  617. }
  618. // 2, Check boot Mode
  619. boot_mode = meta_detection();
  620. dprintf(ALWAYS, "Get boot mode is %d\n", boot_mode);
  621. // 3, MD WDT ISR init
  622. dprintf(ALWAYS, "Init MD WDT\n");
  623. md_wdt_init();
  624. // 4. Common Env setting
  625. md_common_setting(img_load_flag);
  626. // 5. Setup per-MD env before boot up MD
  627. for (i=0; i<3; i++) {
  628. if (img_load_flag & (1<<i)) {
  629. dprintf(ALWAYS, "MD%d Enabled\n", i+1);
  630. config_md_boot_env(i, boot_mode);
  631. }
  632. }
  633. // 6, Switch UART
  634. dprintf(ALWAYS, "Switch UART!\n");
  635. if ((img_load_flag&((1<<MD_SYS1)|(1<<MD_SYS3))) == ((1<<MD_SYS1)|(1<<MD_SYS3))) {
  636. md_uart_config(2, boot_mode);
  637. } else if (img_load_flag & (1<<MD_SYS1)) {
  638. md_uart_config(0, boot_mode);
  639. } else if (img_load_flag & (1<<MD_SYS3)) {
  640. md_uart_config(1, boot_mode);
  641. }
  642. for (i=0; i<3; i++) {
  643. if (img_load_flag & (1<<i)) {
  644. dprintf(ALWAYS, "Trigger MD%d run\n", i+1);
  645. let_md_go(i);
  646. }
  647. }
  648. dprintf(ALWAYS, "enter while(1), ^O^!!!!!!!!!\n");
  649. while (1);
  650. }
  651. void bus_protection_en(int md_id)
  652. {
  653. if (md_id == MD_SYS1) {
  654. /* enable protection for MD1 */
  655. dprintf(ALWAYS, "enable protection for md\n");
  656. DRV_WriteReg32(0x10001250, 0x003F0000);
  657. /* Polling protection ready */
  658. dprintf(ALWAYS, "wait protection ....\n");
  659. while ((DRV_Reg32(0x10001258)&0x003F0000) != 0x003F0000);
  660. dprintf(ALWAYS, "protection done\n");
  661. return;
  662. }
  663. }
  664. void bus_protection_diable(int md_id)
  665. {
  666. if (md_id == MD_SYS1) {
  667. /* enable protection for MD1 */
  668. dprintf(ALWAYS, "disable protection for md\n");
  669. DRV_WriteReg32(0x10001250, 0x00000000);
  670. /* Polling protection ready */
  671. dprintf(ALWAYS, "wait protection disable....\n");
  672. while ((DRV_Reg32(0x10001258)&0x003F0000) != 0x00000000);
  673. dprintf(ALWAYS, "protection disable done\n");
  674. return;
  675. }
  676. }
  677. void md_wdt_irq_handler(unsigned int irq)
  678. {
  679. unsigned int reg_value;
  680. #if defined(ENABLE_MD_RESET_SPM) || defined(ENABLE_MD_RESET_RGU)
  681. // update counter
  682. unsigned int cnt = *(volatile unsigned int *)(TOP_RGU_WDT_NONRST_REG);
  683. *(volatile unsigned int *)(TOP_RGU_WDT_NONRST_REG) = cnt+1;
  684. // reset UART config
  685. md_uart_config(-1, 0);
  686. dprintf(ALWAYS, "\n\n\n\nCurrent wdt cnt:%d\n", cnt+1);
  687. if (irq == MT_MD_WDT1_IRQ_ID) {
  688. #ifdef ENABLE_MD_RESET_SPM
  689. dprintf(ALWAYS, "MD1 power off\n");
  690. spm_mtcmos_ctrl_mdsys1(STA_POWER_DOWN);
  691. mdelay(5);
  692. #endif
  693. #ifdef ENABLE_MD_RESET_RGU
  694. dprintf(ALWAYS, "MD1 reset\n");
  695. bus_protection_en(0);
  696. reg_value = *((volatile unsigned int*)TOP_RGU_WDT_SWSYSRST);
  697. *((volatile unsigned int*)TOP_RGU_WDT_SWSYSRST) = reg_value|0x88000000|(0x1<<7);
  698. mdelay(5);
  699. reg_value = *((volatile unsigned int*)TOP_RGU_WDT_SWSYSRST);
  700. *((volatile unsigned int*)TOP_RGU_WDT_SWSYSRST) = (reg_value|0x88000000)&(~(0x1<<7));
  701. bus_protection_diable(0);
  702. #endif
  703. config_md_boot_env(MD_SYS1, 0);
  704. let_md_go(MD_SYS1);
  705. }
  706. if (irq == MT_MD_WDT2_IRQ_ID) {
  707. #ifdef ENABLE_MD_RESET_SPM
  708. dprintf(ALWAYS, "MD2 power off\n");
  709. spm_mtcmos_ctrl_mdsys2(STA_POWER_DOWN);
  710. mdelay(5);
  711. #endif
  712. #ifdef ENABLE_MD_RESET_RGU
  713. dprintf(ALWAYS, "MD2 reset\n");
  714. reg_value = *((volatile unsigned int*)TOP_RGU_WDT_SWSYSRST);
  715. *((volatile unsigned int*)TOP_RGU_WDT_SWSYSRST) = reg_value|0x88000000|(0x1<<15);
  716. mdelay(5);
  717. reg_value = *((volatile unsigned int*)TOP_RGU_WDT_SWSYSRST);
  718. *((volatile unsigned int*)TOP_RGU_WDT_SWSYSRST) = (reg_value|0x88000000)&(~(0x1<<15));
  719. #endif
  720. config_md_boot_env(MD_SYS3, 0);
  721. let_md_go(MD_SYS3);
  722. }
  723. #if 1
  724. dprintf(ALWAYS, "Config UART after MD WDT! %d\n", cnt+1);
  725. if ((img_load_flag&((1<<MD_SYS1)|(1<<MD_SYS3))) == ((1<<MD_SYS1)|(1<<MD_SYS3))) {
  726. md_uart_config(2, 0);
  727. } else if (img_load_flag & (1<<MD_SYS1)) {
  728. md_uart_config(0, 0);
  729. } else if (img_load_flag & (1<<MD_SYS3)) {
  730. md_uart_config(2, 0);
  731. }
  732. #endif
  733. #else
  734. md_uart_config(-1, 0);
  735. dprintf(ALWAYS, "Get MD WDT irq, STA:%x!!\n", *((volatile unsigned int*)(MD_WDT_STA)));
  736. #ifdef IGNORE_MD_WDT
  737. dprintf(ALWAYS, "ignore MD WDT\n");
  738. #else
  739. dprintf(ALWAYS, "whole system reboot\n");
  740. *(volatile unsigned int *)(TOP_RGU_WDT_MODE) = 0x22000000;
  741. *(volatile unsigned int *)(TOP_RGU_WDT_SWRST) = 0x1209;
  742. while (1);
  743. #endif
  744. #endif
  745. }
  746. int dummy_ap_irq_helper(unsigned int irq)
  747. {
  748. switch (irq) {
  749. case MT_MD_WDT1_IRQ_ID:
  750. if (img_load_flag &(1<<MD_SYS1)) {
  751. #ifndef IGNORE_MD1_WDT
  752. md_wdt_irq_handler(MT_MD_WDT1_IRQ_ID);
  753. #else
  754. dprintf(ALWAYS, "ignore MD1 WDT\n");
  755. #endif
  756. }
  757. return 1;
  758. case MT_MD_WDT2_IRQ_ID:
  759. if (img_load_flag &(1<<MD_SYS3)) {
  760. #ifndef IGNORE_MD2_WDT
  761. md_wdt_irq_handler(MT_MD_WDT2_IRQ_ID);
  762. #else
  763. dprintf(ALWAYS, "ignore MD2 WDT\n");
  764. #endif
  765. }
  766. return 1;
  767. default:
  768. break;
  769. }
  770. return 0;
  771. }
  772. void pmic_init_sequence(void)
  773. {
  774. // Copy from Jade kernel code: alps\kernel-3.10\drivers\misc\mediatek\power\mt6755 =====
  775. // provided by Argus
  776. pmic_config_interface(0x8,0x1,0x1,0);
  777. pmic_config_interface(0xA,0x1,0x1,1);
  778. pmic_config_interface(0xA,0x1,0x1,2);
  779. pmic_config_interface(0xA,0x1,0x1,3);
  780. pmic_config_interface(0xA,0x1,0x1,4);
  781. pmic_config_interface(0xA,0x1,0x1,5);
  782. pmic_config_interface(0xA,0x1,0x1,7);
  783. pmic_config_interface(0xA,0x1,0x1,8);
  784. pmic_config_interface(0xA,0x1,0x1,10);
  785. pmic_config_interface(0xA,0x1,0x1,11);
  786. pmic_config_interface(0xA,0x1,0x1,12);
  787. pmic_config_interface(0xA,0x1,0x1,13);
  788. pmic_config_interface(0xA,0x1,0x1,14);
  789. pmic_config_interface(0xA,0x1,0x1,15);
  790. pmic_config_interface(0x18,0x1,0x1,5);
  791. pmic_config_interface(0x1C,0x1,0x1,7);
  792. pmic_config_interface(0x1E,0x1,0x1,0);
  793. pmic_config_interface(0x1E,0x1,0x1,1);
  794. pmic_config_interface(0x2C,0x1,0x1,15);
  795. pmic_config_interface(0x32,0x1,0x1,2);
  796. pmic_config_interface(0x32,0x1,0x1,3);
  797. pmic_config_interface(0x204,0x1,0x1,4);
  798. pmic_config_interface(0x204,0x1,0x1,5);
  799. pmic_config_interface(0x204,0x1,0x1,6);
  800. pmic_config_interface(0x226,0x1,0x1,0);
  801. pmic_config_interface(0x228,0x1,0x1,0);
  802. pmic_config_interface(0x228,0x1,0x1,1);
  803. pmic_config_interface(0x228,0x1,0x1,2);
  804. pmic_config_interface(0x228,0x1,0x1,3);
  805. pmic_config_interface(0x240,0x1,0x1,2);
  806. pmic_config_interface(0x240,0x1,0x1,3);
  807. pmic_config_interface(0x246,0x1,0x1,13);
  808. pmic_config_interface(0x246,0x1,0x1,14);
  809. pmic_config_interface(0x25E,0x1,0x1,9);
  810. pmic_config_interface(0x282,0x0,0x1,10);
  811. pmic_config_interface(0x282,0x0,0x1,11);
  812. pmic_config_interface(0x410,0x8,0x3F,8);
  813. pmic_config_interface(0x414,0x3,0x3,4);
  814. pmic_config_interface(0x436,0x0,0x3,2);
  815. pmic_config_interface(0x450,0xF,0xF,11);
  816. pmic_config_interface(0x452,0x1,0x1,3);
  817. pmic_config_interface(0x45C,0x1,0x1,1);
  818. pmic_config_interface(0x45E,0x400,0xFFFF,0);
  819. pmic_config_interface(0x464,0xF,0xF,11);
  820. pmic_config_interface(0x466,0x1,0x1,3);
  821. pmic_config_interface(0x470,0x1,0x1,1);
  822. pmic_config_interface(0x472,0x400,0xFFFF,0);
  823. pmic_config_interface(0x478,0xF,0xF,11);
  824. pmic_config_interface(0x47A,0x2,0x7,6);
  825. pmic_config_interface(0x47E,0x1,0x1,1);
  826. pmic_config_interface(0x480,0x1,0x7,4);
  827. pmic_config_interface(0x484,0x1,0x1,1);
  828. pmic_config_interface(0x48C,0xF,0xF,11);
  829. pmic_config_interface(0x48E,0x2,0x7,6);
  830. pmic_config_interface(0x492,0x1,0x1,1);
  831. pmic_config_interface(0x494,0x1,0x7,4);
  832. pmic_config_interface(0x498,0x1,0x1,1);
  833. pmic_config_interface(0x4A0,0xF,0xF,11);
  834. pmic_config_interface(0x4A2,0x2,0x7,6);
  835. pmic_config_interface(0x4A6,0x1,0x1,1);
  836. pmic_config_interface(0x4A8,0x1,0x7,4);
  837. pmic_config_interface(0x4AC,0x1,0x1,1);
  838. pmic_config_interface(0x4B6,0x4,0x7,6);
  839. pmic_config_interface(0x4C2,0x10,0xFFFF,0);
  840. pmic_config_interface(0x4CE,0x1,0x1,1);
  841. pmic_config_interface(0x4D0,0x1,0x7,4);
  842. pmic_config_interface(0x4DC,0x3,0x3,0);
  843. pmic_config_interface(0x4DC,0x0,0x1,10);
  844. pmic_config_interface(0x4E0,0x0,0x3,14);
  845. pmic_config_interface(0x4E2,0x81,0xFF,8);
  846. pmic_config_interface(0x600,0x1,0x1,1);
  847. pmic_config_interface(0x606,0x11,0x7F,0);
  848. pmic_config_interface(0x606,0x4,0x7F,8);
  849. pmic_config_interface(0x60C,0x10,0x7F,0);
  850. pmic_config_interface(0x612,0x3,0x3,0);
  851. pmic_config_interface(0x612,0x1,0x1,8);
  852. pmic_config_interface(0x61A,0x11,0x7F,0);
  853. pmic_config_interface(0x61A,0x4,0x7F,8);
  854. pmic_config_interface(0x620,0x10,0x7F,0);
  855. pmic_config_interface(0x626,0x3,0x3,0);
  856. pmic_config_interface(0x626,0x1,0x1,8);
  857. pmic_config_interface(0x628,0x1,0x1,1);
  858. pmic_config_interface(0x62E,0x11,0x7F,0);
  859. pmic_config_interface(0x62E,0x4,0x7F,8);
  860. //if (mt_get_chip_sw_ver() == CHIP_SW_VER_02) // For E2 code
  861. // ret = pmic_config_interface(0x632,0x30,0x7F,0);
  862. pmic_config_interface(0x634,0x10,0x7F,0);
  863. pmic_config_interface(0x63A,0x3,0x3,0);
  864. pmic_config_interface(0x63A,0x1,0x3,4);
  865. pmic_config_interface(0x63A,0x1,0x1,8);
  866. pmic_config_interface(0x63C,0x1,0x1,1);
  867. pmic_config_interface(0x642,0x11,0x7F,0);
  868. pmic_config_interface(0x642,0x4,0x7F,8);
  869. pmic_config_interface(0x646,0x30,0x7F,0);
  870. pmic_config_interface(0x648,0x10,0x7F,0);
  871. pmic_config_interface(0x64E,0x3,0x3,0);
  872. pmic_config_interface(0x64E,0x1,0x3,4);
  873. pmic_config_interface(0x64E,0x1,0x1,8);
  874. pmic_config_interface(0x650,0x1,0x1,1);
  875. pmic_config_interface(0x656,0x11,0x7F,0);
  876. pmic_config_interface(0x656,0x4,0x7F,8);
  877. pmic_config_interface(0x65A,0x40,0x7F,0);
  878. pmic_config_interface(0x65C,0x10,0x7F,0);
  879. pmic_config_interface(0x662,0x3,0x3,0);
  880. pmic_config_interface(0x662,0x1,0x3,4);
  881. pmic_config_interface(0x662,0x1,0x1,8);
  882. pmic_config_interface(0x676,0x1,0x1,8);
  883. pmic_config_interface(0x68A,0x1,0x1,8);
  884. pmic_config_interface(0x692,0x0,0x7F,0);
  885. pmic_config_interface(0x692,0x1,0x7F,8);
  886. pmic_config_interface(0x69E,0x0,0x3,0);
  887. pmic_config_interface(0x6A0,0x1,0x1,1);
  888. pmic_config_interface(0x6A6,0x11,0x7F,0);
  889. pmic_config_interface(0x6A6,0x4,0x7F,8);
  890. pmic_config_interface(0x6AC,0x35,0x7F,0);
  891. pmic_config_interface(0x6B2,0x3,0x3,0);
  892. pmic_config_interface(0x6B2,0x1,0x3,4);
  893. pmic_config_interface(0x6B2,0x1,0x1,8);
  894. pmic_config_interface(0xA02,0x1,0x1,9);
  895. pmic_config_interface(0xA04,0x1,0x1,3);
  896. pmic_config_interface(0xA04,0x0,0x7,11);
  897. pmic_config_interface(0xA06,0x1,0x1,9);
  898. pmic_config_interface(0xA08,0x1,0x1,3);
  899. pmic_config_interface(0xA08,0x1,0x7,11);
  900. pmic_config_interface(0xA0A,0x1,0x1,9);
  901. pmic_config_interface(0xA0E,0x1,0x1,9);
  902. pmic_config_interface(0xA14,0x1,0x1,9);
  903. pmic_config_interface(0xA18,0x1,0x1,9);
  904. pmic_config_interface(0xA1E,0x1,0x1,9);
  905. pmic_config_interface(0xA24,0x1,0x1,9);
  906. pmic_config_interface(0xA2A,0x1,0x1,9);
  907. pmic_config_interface(0xA30,0x1,0x1,9);
  908. pmic_config_interface(0xA36,0x1,0x1,9);
  909. pmic_config_interface(0xA3C,0x1,0x1,9);
  910. pmic_config_interface(0xA42,0x1,0x1,9);
  911. pmic_config_interface(0xA46,0x1,0x1,3);
  912. pmic_config_interface(0xA46,0x1,0x7,11);
  913. pmic_config_interface(0xA48,0x1,0x1,9);
  914. pmic_config_interface(0xA4E,0x1,0x1,9);
  915. pmic_config_interface(0xA54,0x1,0x1,9);
  916. pmic_config_interface(0xA5A,0x1,0x1,9);
  917. pmic_config_interface(0xA60,0x1,0x1,9);
  918. pmic_config_interface(0xA66,0x1,0x1,9);
  919. pmic_config_interface(0xA68,0x1,0x1,3);
  920. pmic_config_interface(0xA68,0x1,0x7,11);
  921. pmic_config_interface(0xA6A,0x1,0x1,9);
  922. pmic_config_interface(0xA70,0x1,0x1,9);
  923. pmic_config_interface(0xA74,0x1,0x1,1);
  924. pmic_config_interface(0xA74,0x1,0x1,2);
  925. pmic_config_interface(0xA74,0x0,0x1,3);
  926. pmic_config_interface(0xA74,0x0,0x7,5);
  927. pmic_config_interface(0xA76,0x1,0x1,9);
  928. pmic_config_interface(0xA7C,0x1,0x1,9);
  929. pmic_config_interface(0xA82,0x1,0x1,9);
  930. pmic_config_interface(0xA86,0x0,0x1,3);
  931. pmic_config_interface(0xA88,0x1,0x1,9);
  932. pmic_config_interface(0xA8E,0x1,0x1,9);
  933. pmic_config_interface(0xA94,0x1,0x1,9);
  934. pmic_config_interface(0xA9E,0x1,0x1,9);
  935. pmic_config_interface(0xAAC,0x1,0x1,9);
  936. pmic_config_interface(0xB10,0x2,0x7,8);
  937. pmic_config_interface(0xB24,0xF0,0xFF,2);
  938. pmic_config_interface(0xCC4,0x1,0x1,8);
  939. pmic_config_interface(0xCC4,0x1,0x1,9);
  940. pmic_config_interface(0xCC8,0x1F,0xFFFF,0);
  941. pmic_config_interface(0xCCA,0x14,0xFF,0);
  942. pmic_config_interface(0xCCC,0xFF,0xFF,8);
  943. pmic_config_interface(0xCE2,0x1,0x7FFF,0);
  944. pmic_config_interface(0xCE4,0xBCAC,0xFFFF,0);
  945. pmic_config_interface(0xEA2,0x0,0x1,13);
  946. pmic_config_interface(0xEA2,0x0,0x1,14);
  947. pmic_config_interface(0xEA2,0x0,0x1,15);
  948. pmic_config_interface(0xEAA,0x83,0xFFF,0);
  949. pmic_config_interface(0xEAA,0x1,0x1,13);
  950. pmic_config_interface(0xEAA,0x1,0x1,15);
  951. pmic_config_interface(0xEB2,0x1,0x3,4);
  952. pmic_config_interface(0xEB2,0x3,0x3,6);
  953. pmic_config_interface(0xEB2,0x1,0x3,8);
  954. pmic_config_interface(0xEB2,0x1,0x3,10);
  955. pmic_config_interface(0xEB2,0x1,0x3,12);
  956. pmic_config_interface(0xEB2,0x2,0x3,14);
  957. pmic_config_interface(0xEB4,0x1,0x3,0);
  958. pmic_config_interface(0xEB4,0x1,0x3,2);
  959. pmic_config_interface(0xEB4,0x1,0x3,4);
  960. pmic_config_interface(0xEB4,0x3,0x3,6);
  961. pmic_config_interface(0xEC6,0x1,0x1,14);
  962. pmic_config_interface(0xF16,0x40,0x3FF,0);
  963. pmic_config_interface(0xF16,0x1,0x1,15);
  964. pmic_config_interface(0xF1C,0x40,0x3FF,0);
  965. pmic_config_interface(0xF1C,0x1,0x1,15);
  966. pmic_config_interface(0xF20,0x1,0x1,2);
  967. pmic_config_interface(0xF7A,0xB,0xF,4);
  968. pmic_config_interface(0xF84,0x4,0xF,1);
  969. pmic_config_interface(0xF92,0x3,0xF,0);
  970. pmic_config_interface(0xFA0,0x1,0x1,1);
  971. pmic_config_interface(0xFA4,0x0,0x7,4);
  972. pmic_config_interface(0xFAA,0x1,0x1,2);
  973. pmic_config_interface(0xFAA,0x1,0x1,6);
  974. pmic_config_interface(0xFAA,0x1,0x1,7);
  975. }
  976. //=============================================
  977. // MD1 PMIC setting
  978. void md1_pmic_setting(void)
  979. {
  980. pmic_config_interface(MT6351_PMIC_BUCK_VSRAM_MD_VOSEL_ON, 0x40, 0x7F, 0); //E1 1.0V; offset:0x65A
  981. pmic_config_interface(MT6351_PMIC_BUCK_VMODEM_VOSEL_ON, 0x40, 0x7F, 0); // 1.0V; offset: 0x632
  982. pmic_config_interface(MT6351_PMIC_BUCK_VSRAM_MD_VOSEL_CTRL, 1, 1, 1); // HW mode, bit[1]; offset: 0x650
  983. pmic_config_interface(MT6351_PMIC_BUCK_VMD1_VOSEL_CTRL, 1, 1, 1); // HW mode, bit[1]; offset: 0x63C
  984. pmic_config_interface(MT6351_PMIC_BUCK_VMODEM_VOSEL_CTRL, 1, 1, 1); // HW mode, bit[1]; offset: 0x628
  985. }
  986. //=============================================
  987. // MD1 pll init
  988. void md1_pll_on(void)
  989. {
  990. dprintf(ALWAYS, "md1_pll_on\n");
  991. /* Make md1 208M CG off, switch to software mode */
  992. *((volatile unsigned int *)0x20150020) |= (0x1<<26); /* turn off mdpll1 cg */
  993. *((volatile unsigned int *)0x20140010) |= (0x1<<16); /* let mdpll on ctrl into software mode */
  994. *((volatile unsigned int *)0x20140014) |= (0x1<<16); /* let mdpll enable into software mode */
  995. /* Turn on 208M */
  996. *MDPLL1_CON0 |= 0x00000001;
  997. DRV_WriteReg32(AP_PLL_CON0, (DRV_Reg32(AP_PLL_CON0)|(0x1<<1)));
  998. udelay(200);
  999. /* close 208M and autoK */
  1000. *MDPLL1_CON0 &= 0xfffffffe;
  1001. *MDPLL1_CON0 &= 0xffffff7f;
  1002. *((volatile unsigned int *)0x20140010) &= ~(0x1<<16); /* let mdpll on ctrl into hardware mode */
  1003. *((volatile unsigned int *)0x20140014) &= ~(0x1<<16); /* let mdpll enable into hardware mode */
  1004. *((volatile unsigned int *)0x20150020) &= ~(0x1<<26); /* turn on mdpll1 cg */
  1005. *MDPLL1_CON0 &= 0xfffffdff; /* set mdpll control by md1 and c2k */
  1006. }
  1007. void md1_pll_init(void)
  1008. {
  1009. md1_pll_on();
  1010. //enable L1 permission
  1011. *R_L1_PMS |= 0x7;
  1012. // modify PSMCU2EMI bus divider from 3 to 4.
  1013. *R_PSMCU_AO_CLK_CTL = *R_PSMCU_AO_CLK_CTL | 0x83;
  1014. *R_L1MCU_PWR_AWARE |= (1<<16); //lock dcm bus
  1015. *R_L1AO_PWR_AWARE |= (1<<16); //lock dcm bus
  1016. //busL2 DCM div 8/normal div 1/ clkslow_en/clock from PLL /debounce enable/ debounce time 7T
  1017. //*R_BUSL2DCM_CON3 = 0x0001FDE7; //L2DCM L1BUS div 16 v1.5
  1018. //*R_BUSL2DCM_CON3 = 0x1001FDE7; //toggle setting // V1.5
  1019. //*R_L1MCU_DCM_CON = 0x0003FDE7; // DCM div 16/normal div 1/clkslow_en/ clock from PLL / dcm enable /debounce enable /debounce time 15T // V1.5
  1020. *R_BUSL2DCM_CON3 = 0x0000FDE7; //L2DCM L1BUS div 16
  1021. *R_BUSL2DCM_CON3 = 0x1000FDE7; //toggle setting
  1022. *R_L1MCU_DCM_CON = 0x0001FDE7; // DCM div 8/normal div 1/clkslow_en/ clock from PLL / dcm enable /debounce enable /debounce time 15T
  1023. *R_L1MCU_DCM_CON2 = 0x00000000; //DCM config toggle = 0
  1024. *R_L1MCU_DCM_CON2 = 0x80000000; //DCM config toggle = 1 / old
  1025. //*R_L1MCU_DCM_CON2 = 0x90000000; //DCM config toggle = 1 /
  1026. //*R_L1MCU_PWR_AWARE &= (1<<16); //un-lock dcm bus
  1027. //*R_L1AO_PWR_AWARE &= (1<<16); //un-lock dcm bus
  1028. /*Wait PSMCU PLL ready*/
  1029. dprintf(ALWAYS, "Wait PSMCU PLL ready\n");
  1030. while ((*R_PLL_STS & 0x1) !=0x1); // Bit 0: PSMCUPLL_RDY
  1031. dprintf(ALWAYS, "Got it\n");
  1032. /*Switch clock, 0: 26MHz, 1: PLL*/
  1033. *R_CLKSEL_CTL |=0x2; // Bit 17: RF1_CKSEL
  1034. // Bit 16: INTF_CKSEL
  1035. // Bit 15: MD2G_CKSEL
  1036. // Bit 14: DFE_CKSEL
  1037. // Bit 13: CMP_CKSEL
  1038. // Bit 12: ICC_CKSEL
  1039. // Bit 11: IMC_CKSEL
  1040. // Bit 10: EQ_CKSEL
  1041. // Bit 9: BRP_CKSEL
  1042. // Bit 8: L1MCU_CKSEL
  1043. // Bit 6-5: ATB_SRC_CKSEL
  1044. // Bit 4: ATB_CKSEL
  1045. // Bit 3: DBG_CKSEL
  1046. // Bit 2: ARM7_CKSEL
  1047. // Bit 1: PSMCU_CKSEL
  1048. // Bit 0: BUS_CKSEL
  1049. /*Wait L1MCU PLL ready*/
  1050. dprintf(ALWAYS, "Wait L1MCU PLL ready\n");
  1051. while ((*R_PLL_STS & 0x2) != 0x2); // Bit 1: L1MCUPLL_RDY
  1052. dprintf(ALWAYS, "Got it\n");
  1053. *R_CLKSEL_CTL |= 0x100; // Bit 8: L1MCU_CK = L1MCUPLL
  1054. /*DFE/CMP/ICC/IMC clock src select*/
  1055. *R_FLEXCKGEN_SEL1 = 0x30302020; // Bit 29-28 DFE_CLK src = DFEPLL
  1056. // Bit 21-20 CMP_CLK src = DFEPLL
  1057. // Bit 13-12 ICC_CLK src = IMCPLL
  1058. // Bit 5-4 IMC_CLK src = IMCPLL
  1059. /*IMC/MD2G clock src select */
  1060. *R_FLEXCKGEN_SEL2 = 0x00002030; // Bit 13-12 INTF_CLK src = IMCPLL
  1061. // Bit 5-4 MD2G_CLK src = DFEPLL
  1062. /*Wait DFE/IMC PLL ready*/
  1063. dprintf(ALWAYS, "Wait DFE/IMC PLL ready\n");
  1064. while ((*R_PLL_STS & 0x90) !=0x90); // Bit 7: DFEPLL_RDY
  1065. // Bit 4: IMCPLL_RDY
  1066. dprintf(ALWAYS, "done\n");
  1067. /*Wait L1SYS clock ready*/
  1068. dprintf(ALWAYS, "Wait L1SYS clock ready\n");
  1069. while ((*R_FLEXCKGEN_STS0 & 0x80800000) != 0x80800000); // Bit 31: EQ_CK_RDY
  1070. // Bit 23: BRP_CK_RDY
  1071. dprintf(ALWAYS, "Done\n");
  1072. dprintf(ALWAYS, "Wait R_FLEXCKGEN_STS1 & 0x80808080 ready\n");
  1073. while ((*R_FLEXCKGEN_STS1 & 0x80808080) != 0x80808080); // Bit 31: DFE_CK_RDY
  1074. // Bit 23: CMP_CK_RDY
  1075. // Bit 15: ICC_CK_RDY
  1076. // Bit 7: IMC_CK_RDY
  1077. dprintf(ALWAYS, "Done\n");
  1078. dprintf(ALWAYS, "Wait R_FLEXCKGEN_STS2 & 0x8080 ready\n");
  1079. while ((*R_FLEXCKGEN_STS2 & 0x8080) != 0x8080); // Bit 15: INTF_CK_RDY
  1080. // Bit 23: MD2G_CK_RDY
  1081. dprintf(ALWAYS, "Done\n");
  1082. /*Switch L1SYS clock to PLL clock*/
  1083. *R_CLKSEL_CTL |=0x3fe00;
  1084. /*MD BUS/ARM7 clock src select */
  1085. *R_FLEXCKGEN_SEL0 = 0x30203031; // Bit 29-28: EQ_CLK src = EQPLL
  1086. // Bit 26-24: EQ+DIVSEL, divided-by bit[2:0]+1
  1087. // Bit 21-20: BRP_CLK src = IMCPLL
  1088. // Bit 13-12: ARM7_CLK src = DFEPLL
  1089. // Bit 5-4: BUS_CLK src = EQPLL
  1090. // Bit 2-0: BUS_DIVSEL, divided-by bit[2:0]+1
  1091. *MD_GLOBAL_CON_DUMMY = MD_PLL_MAGIC_NUM;
  1092. *REG_DCM_PLLCK_SEL |= (1<<7); // Bit 7: 0: clock do not from PLL, 1: clock from PLL
  1093. // wait DCM config done, then switch BUS clock src to PLL
  1094. dprintf(ALWAYS, "wait DCM config done\n");
  1095. while ((*R_FLEXCKGEN_STS0 & 0x80) !=0x80); // Bit 7: BUS_CK_RDY
  1096. dprintf(ALWAYS, "done\n");
  1097. *R_CLKSEL_CTL |=0x1; // Bit 1: BUS_CLK = EQPLL/2
  1098. }
  1099. //===========================================================
  1100. void c2k_boot(int boot_mode)
  1101. {
  1102. unsigned int reg_value;
  1103. #if 1
  1104. /* C2K CONFIGURE addr: 0x10001360 , Make C2K boot from 0 address at DRAM*/
  1105. reg_value =*((volatile unsigned int*)0x10001360);
  1106. reg_value &= (~(7<<8));
  1107. reg_value |= (5<<8);
  1108. *((volatile unsigned int*)0x10001360) = reg_value;
  1109. dprintf(ALWAYS, "C2K[0x10001360]%x\n", *((volatile unsigned int*)0x10001360));
  1110. #endif
  1111. /* Power on C2K MTCMOS */
  1112. /* Turn On SPM Reg Key*/
  1113. *POWERON_CONFIG_EN = 0x0b160001;
  1114. *C2K_PWR_CON |= (0x1 << PWR_ON); // Assert pwr_on
  1115. *C2K_PWR_CON |= (0x1 << PWR_ON_2ND); // Assert pwr_on_2nd
  1116. dprintf(ALWAYS, "C2K, wait PWR_SATUS and PWR_STATUS_2ND\n");
  1117. while (
  1118. ((*PWR_STATUS & (0x1 << C2K)) != (0x1 << C2K)) ||
  1119. ((*PWR_STATUS_2ND & (0x1 << C2K)) != (0x1 << C2K))
  1120. ); // waiting for power ready
  1121. dprintf(ALWAYS, "done\n");
  1122. *C2K_PWR_CON &= ~(0x1 << PWR_CLK_DIS); // Release clk_dis
  1123. *C2K_PWR_CON &= ~(0x1 << PWR_ISO); // Release pwr_iso
  1124. *C2K_PWR_CON |= (0x1 << PWR_RST_B); // Release pwr_rst_b
  1125. /* AP config srcclkena selection mask (INFRA_AO, SLEEP_CON register) */
  1126. /* INFRA_MISC2 0x10001F0C */
  1127. *INFRA_MISC2 |= 0x44;
  1128. /* AP config ClkSQ register (APMixedsys register) */
  1129. /* CLKSQ_LPF_EN (AP_PLL_CON0[1]) set to 1, @ 0x1000C000*/
  1130. *AP_PLL_CON0 |= (0x1 << 1);
  1131. /* AP Hold C2K ARM core */
  1132. *C2K_CONFIG |= 0x1 << 1;
  1133. /* AP_REQ_C2K, AP wakeup C2k */
  1134. /* Enable C2K to Control MDPLL1 */
  1135. *MDPLL1_CON0 &= 0XFFFFFDFF;
  1136. /* Make sure release C2KSYS Reset */
  1137. reg_value = *WDT_SWSYSRST;
  1138. reg_value |= 0x88000000;
  1139. reg_value &= ~(0x1<<15);
  1140. *WDT_SWSYSRST = reg_value;
  1141. /* AP Wakeup C2KSYS */
  1142. *C2K_SPM_CTRL |= 0x1 << 1;
  1143. dprintf(ALWAYS, "Wait C2K_STATUS\n");
  1144. while (((*C2K_STATUS >> 1) & 0x1) == 0);
  1145. dprintf(ALWAYS, "done\n");
  1146. *C2K_SPM_CTRL &= ~(0x1 << 1);
  1147. *INFRA_TOPAXI_PROTECTEN_1 &= 0xFE3FFFFF;
  1148. /* Waiting for C2KSYS Bus ready for operation */
  1149. dprintf(ALWAYS, "Waiting for C2KSYS Bus ready for operation\n");
  1150. do {
  1151. reg_value = *C2K_CGBR1;
  1152. } while (reg_value != 0xFE8);
  1153. dprintf(ALWAYS, "Done\n");
  1154. /* C2K PLL init */
  1155. *(UINT16P)C2K_C2K_PLL_CON3 = 0x8805; // CPPLL/DSPPLL ISO_EN -> hw mode
  1156. *(UINT16P)C2K_C2K_PLL_CON3 = 0x0005; // CPPLL/DSPPLL PWR_ON -> hw mode
  1157. *(UINT16P)C2K_C2K_PLL_CON3 = 0x0001; // MDPLL1 EN -> hw mode
  1158. *(UINT16P)C2K_C2K_PLL_CON2 = 0x0000; // CPPLL/DSPPLL/C2KPLL_SUBPLL1/2 EN -> hw mode
  1159. *(UINT16P)C2K_C2K_PLLTD_CON0 = 0x0010;// bp_pll_dly -> 0
  1160. *(UINT16P)C2K_C2K_CPPLL_CON0 |= 1 << 15;
  1161. *(UINT16P)C2K_C2K_DSPPLL_CON0 |= 1 << 15;
  1162. *(UINT16P)C2K_C2K_C2KPLL1_CON0 |= 1 << 15;
  1163. /* Wait 20us */
  1164. udelay(20);
  1165. *(UINT16P)C2K_CG_ARM_AMBA_CLKSEL = 0xC124;
  1166. *(UINT16P)C2K_CLK_CTRL4 = 0x8e43;
  1167. *(UINT16P)C2K_CLK_CTRL9 = 0xA207;
  1168. }