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- /* Copyright Statement:
- *
- * This software/firmware and related documentation ("MediaTek Software") are
- * protected under relevant copyright laws. The information contained herein
- * is confidential and proprietary to MediaTek Inc. and/or its licensors.
- * Without the prior written permission of MediaTek inc. and/or its licensors,
- * any reproduction, modification, use or disclosure of MediaTek Software,
- * and information contained herein, in whole or in part, shall be strictly prohibited.
- */
- /* MediaTek Inc. (C) 2016. All rights reserved.
- *
- * BY OPENING THIS FILE, RECEIVER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES
- * THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE")
- * RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO RECEIVER ON
- * AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES,
- * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF
- * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NONINFRINGEMENT.
- * NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH RESPECT TO THE
- * SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY, INCORPORATED IN, OR
- * SUPPLIED WITH THE MEDIATEK SOFTWARE, AND RECEIVER AGREES TO LOOK ONLY TO SUCH
- * THIRD PARTY FOR ANY WARRANTY CLAIM RELATING THERETO. RECEIVER EXPRESSLY ACKNOWLEDGES
- * THAT IT IS RECEIVER'S SOLE RESPONSIBILITY TO OBTAIN FROM ANY THIRD PARTY ALL PROPER LICENSES
- * CONTAINED IN MEDIATEK SOFTWARE. MEDIATEK SHALL ALSO NOT BE RESPONSIBLE FOR ANY MEDIATEK
- * SOFTWARE RELEASES MADE TO RECEIVER'S SPECIFICATION OR TO CONFORM TO A PARTICULAR
- * STANDARD OR OPEN FORUM. RECEIVER'S SOLE AND EXCLUSIVE REMEDY AND MEDIATEK'S ENTIRE AND
- * CUMULATIVE LIABILITY WITH RESPECT TO THE MEDIATEK SOFTWARE RELEASED HEREUNDER WILL BE,
- * AT MEDIATEK'S OPTION, TO REVISE OR REPLACE THE MEDIATEK SOFTWARE AT ISSUE,
- * OR REFUND ANY SOFTWARE LICENSE FEES OR SERVICE CHARGE PAID BY RECEIVER TO
- * MEDIATEK FOR SUCH MEDIATEK SOFTWARE AT ISSUE.
- */
- //#define CTP_ENV
- #ifndef CTP_ENV
- /* Note: Pleae enable DUMMY_AP option at rule.mk if hope to use this function */
- #include <platform/boot_mode.h>
- #include <debug.h>
- #include <dev/uart.h>
- #include <platform/mtk_key.h>
- #include <target/cust_key.h>
- #include <platform/mt_gpio.h>
- #include <sys/types.h>
- #include <debug.h>
- #include <err.h>
- #include <reg.h>
- #include <string.h>
- #include <platform/mt_typedefs.h>
- #include <platform/mt_reg_base.h>
- #include <platform/mt_irq.h>
- #include <platform/mt_pmic.h>
- #include <platform/timer.h>
- #include <sys/types.h>
- #include <arch/ops.h>
- #include <platform/mt_pmic.h>
- #include <platform/upmu_common.h>
- #include <platform/upmu_hw.h>
- #include <platform/spm.h>
- #else
- /*CTP environment*/
- #include <gpio.h>
- #include <barriers.h>
- #include <sync_write.h>
- #include <upmu_hw.h>
- #include <mt_spm_reg.h>
- #include <mt_spm_mtcmos.h>
- #include <efuse.h>
- #define dprintf(CRITICAL, fmt, args...) dbg_print("[MD]: "fmt, ##args)
- static void let_md_go(int md_id);
- static void config_md_boot_env(int md_id, int boot_mode);
- #endif /*CTP_ENV*/
- //------- feature option part ---------------------------------------
- //#define DEFAULT_META
- #define ENABLE_MD_RESET_SPM
- //#define ENABLE_MD_RESET_RGU
- //#define IGNORE_MD_WDT
- //#define IGNORE_MD1_WDT
- //#define IGNORE_MD2_WDT
- //#define NO_UNGATE_MD
- //------- enum and macro part ---------------------------------------
- enum {
- MD_SYS1 = 0,
- MD_SYS2,
- MD_SYS3,
- MD_SYS4,
- };
- enum {
- AP_ONLY = -1,
- MD1_ONLY = 0,
- MD2_ONLY,
- MD1_MD2,
- };
- #define ccci_write32(b, a, v) DRV_WriteReg32((b)+(a), (v))
- #define ccci_read32(b, a) DRV_Reg32((b)+(a))
- #define ccci_write16(b, a, v) DRV_WriteReg16((b)+(a), (v))
- #define ccci_read16(b, a) DRV_Reg16((b)+(a))
- #define ccci_write8(b, a, v) DRV_WriteReg8((b)+(a), (v))
- #define ccci_read8(b, a) DRV_Reg8((b)+(a))
- struct sram_cfg {
- unsigned int offset;
- unsigned int start_bit;
- unsigned int end_bit;
- };
- //------- IRQ ID part ---------------------------------------
- #define GIC_PRIVATE_SIGNALS (32)
- #define MT_MD_WDT1_IRQ_ID (77+GIC_PRIVATE_SIGNALS)
- //------- register part ---------------------------------------
- #define MD1_BUS_PROTECT_SET (0x100012A0)
- #define MD1_BUS_PROTECT_CLR (0x100012A4)
- #define MD1_BUS_PROTECT_STA (0x10001228)
- #define MD1_BUS_PROTECT1_SET (0x100012A8)
- #define MD1_BUS_PROTECT1_CLR (0x100012AC)
- #define MD1_BUS_PROTECT1_STA (0x10001258)
- #define PROTECTION_BITMASK ((0x1 << 3)|(0x1 << 4)|(0x1 << 7)) // bit 3,4,7
- #define PROTECTION1_BITMASK (0x1 << 6) // bit 6
- #define MD1_BOOT_VECTOR_EN (0x20000024)
- #define MD1_META_FLAG (0x20000010)
- #define TOPRGU_BASE (0x10007000)
- #define TOP_RGU_WDT_MODE (0x0)
- #define TOP_RGU_WDT_SWRST (0x14)
- #define TOP_RGU_WDT_SWSYSRST (0x18)
- #define TOP_RGU_WDT_NONRST_REG (0x20)
- #define TOP_RGU_LATCH_CONTROL (0x44)
- #define MD1_SYS (1 << 7)
- #define UNLOCK_KEY (0x88000000)
- #define MD_USB_INTERRUPT_MUX 0x10000280
- /* MD RGU PCore
- #define BASE_ADDR_MDRSTCTL 0x200F0000
- #define MD_RGU_BASE (BASE_ADDR_MDRSTCTL + 0x100)
- #define WDT_MD_MODE (0x0)
- #define WDT_MD_MODE_KEY (0x55000030)
- */
- #define PLL_TYPE (volatile kal_uint32 *)
- // AP view
- #define BASE_MADDR_APMIXEDSYS (0x1000C000)
- #define BASE_MADDR_MDTOP_PLLMIXED (0x20140000)
- #define BASE_MADDR_MDTOP_CLKSW (0x20150000)
- #define UINT32P (volatile unsigned int *)
- #define SLEEP_BASE (0x10006000)
- #define POWERON_CONFIG_EN (UINT32P (SLEEP_BASE+0x0))
- #define SPM_POWER_ON_VAL1 (UINT32P (SLEEP_BASE+0x8))
- #define INFRACFG_AO_BASE (0x10001000)
- #define INFRA_TOPAXI_PROTECTEN_1_SET (0x2A8)
- #define INFRA_TOPAXI_PROTECTEN_1_CLR (0x2AC)
- #define INFRA_MISC2 (0xF0C)
- #define INFRA_SEC_BASE (0x1001a000)
- #define MD_BROM_0 (0x824)
- #define MD_BROM_1 (0x828)
- #define MD_BROM_2 (0x82C)
- #define MD_BROM_3 (0x830)
- //------- GPIO part ---------------------------------------
- #define GPIO_MAGIC (0x80000000)
- // -- UART
- #define NO_NEED_UART_CONFIG
- #ifndef NO_NEED_UART_CONFIG
- #define UART1_TX_GPIO_ID (GPIO54 | GPIO_MAGIC)
- #define UART1_RX_GPIO_ID (GPIO53 | GPIO_MAGIC)
- #define UART2_TX_GPIO_ID (GPIO149 | GPIO_MAGIC)
- #define UART2_RX_GPIO_ID (GPIO147 | GPIO_MAGIC)
- #define UART3_TX_GPIO_ID (GPIO48 | GPIO_MAGIC)
- #define UART3_RX_GPIO_ID (GPIO47 | GPIO_MAGIC)
- #define UART4_TX_GPIO_ID (GPIO50 | GPIO_MAGIC)
- #define UART4_RX_GPIO_ID (GPIO49 | GPIO_MAGIC)
- #endif
- //------- code part ---------------------------------------
- static unsigned int img_load_flag = 0;
- #ifndef CTP_ENV
- extern BOOT_ARGUMENT *g_boot_arg;
- extern char *ld_md_errno_to_str(int errno);
- static int meta_detection(void)
- {
- int boot_mode;
- #ifdef DEFAULT_META
- boot_mode = 1;
- return boot_mode;
- #endif
- boot_mode = 0;
- if (g_boot_arg->boot_mode != NORMAL_BOOT)
- boot_mode = 1;
- dprintf(CRITICAL, "Meta mode: %d, boot_mode: %d\n", boot_mode, g_boot_arg->boot_mode);
- return boot_mode;
- }
- void md_wdt_init(void)
- {
- if (img_load_flag & (1 << MD_SYS1)) {
- mt_irq_set_sens(MT_MD_WDT1_IRQ_ID, MT65xx_EDGE_SENSITIVE);
- mt_irq_set_polarity(MT_MD_WDT1_IRQ_ID, MT65xx_POLARITY_LOW);
- mt_irq_unmask(MT_MD_WDT1_IRQ_ID);
- }
- }
- #endif //#ifndef CTP_ENV
- void md_uart_config(int type_id, int boot_mode)
- {
- #ifndef NO_NEED_UART_CONFIG
- switch (type_id) {
- case AP_ONLY: // for AP only
- dprintf(CRITICAL, "md_uart_config:%d, UART1->AP_0, UART2->N/A, UART3->MD1_0, UART4->MD1\n", type_id);
- // same as dws initial setting
- mt_set_gpio_mode(UART1_TX_GPIO_ID, GPIO_MODE_01);
- mt_set_gpio_mode(UART1_RX_GPIO_ID, GPIO_MODE_01);
- mt_set_gpio_mode(UART3_TX_GPIO_ID, GPIO_MODE_04);
- mt_set_gpio_mode(UART3_RX_GPIO_ID, GPIO_MODE_04);
- break;
- case MD1_ONLY: // for AP & MD1
- case MD2_ONLY: // for AP & C2K
- case MD1_MD2: // for both MD1 and C2K
- if (boot_mode) {
- dprintf(CRITICAL, "md_uart_config:%d, UART3->MD1_0, UART1->AP_0, UART2->NA/A, UART4->MD1\n", type_id);
- mt_set_gpio_mode(UART1_TX_GPIO_ID, GPIO_MODE_01);
- mt_set_gpio_mode(UART1_RX_GPIO_ID, GPIO_MODE_01);
- mt_set_gpio_mode(UART3_TX_GPIO_ID, GPIO_MODE_04);
- mt_set_gpio_mode(UART3_RX_GPIO_ID, GPIO_MODE_04);
- }
- break;
- default:
- break;
- }
- #endif
- }
- void bus_protection_en(int md_id)
- {
- if (md_id == MD_SYS1) {
- /* enable protection for MD1 */
- dprintf(CRITICAL, "enable protection for md\n");
- DRV_WriteReg32(MD1_BUS_PROTECT_SET, PROTECTION_BITMASK);
- DRV_WriteReg32(MD1_BUS_PROTECT1_SET, PROTECTION1_BITMASK);
- /* poll protection ready */
- dprintf(CRITICAL, "wait protection ....\n");
- while ((DRV_Reg32(MD1_BUS_PROTECT_STA)&PROTECTION_BITMASK) != PROTECTION_BITMASK) {
- dprintf(CRITICAL, "0x%x\n", DRV_Reg32(MD1_BUS_PROTECT_STA));
- }
- dprintf(CRITICAL, "wait protection1 ....\n");
- while ((DRV_Reg32(MD1_BUS_PROTECT1_STA)&PROTECTION1_BITMASK) != PROTECTION1_BITMASK) {
- dprintf(CRITICAL, "0x%x\n", DRV_Reg32(MD1_BUS_PROTECT1_STA));
- }
- dprintf(CRITICAL, "protection enable done\n");
- return;
- }
- }
- void bus_protection_diable(int md_id)
- {
- if (md_id == MD_SYS1) {
- /* enable protection for MD1 */
- dprintf(CRITICAL, "disable protection for md\n");
- DRV_WriteReg32(MD1_BUS_PROTECT_CLR, PROTECTION_BITMASK);
- DRV_WriteReg32(MD1_BUS_PROTECT1_CLR, PROTECTION1_BITMASK);
- /* poll protection ready */
- dprintf(CRITICAL, "wait protection disable....\n");
- while ((DRV_Reg32(MD1_BUS_PROTECT_STA)&PROTECTION_BITMASK) != 0x00000000) {
- dprintf(CRITICAL, "0x%x\n", DRV_Reg32(MD1_BUS_PROTECT_STA));
- }
- dprintf(CRITICAL, "wait protection1 disable....\n");
- while ((DRV_Reg32(MD1_BUS_PROTECT1_STA)&PROTECTION1_BITMASK) != 0x00000000) {
- dprintf(CRITICAL, "0x%x\n", DRV_Reg32(MD1_BUS_PROTECT1_STA));
- }
- dprintf(CRITICAL, "protection disable done\n");
- return;
- }
- }
- int md_common_setting()
- {
- unsigned int reg_value;
- // MD srcclkena setting: [7:4]=4'h0110, [3:0]=4'h1101
- reg_value = ccci_read32(INFRACFG_AO_BASE, INFRA_MISC2);
- reg_value &= ~(0xFF);
- reg_value |= 0x21;
- ccci_write32(INFRACFG_AO_BASE, INFRA_MISC2, reg_value);
- dprintf(CRITICAL, "MD srcclkena setting:0x%x\n", ccci_read32(INFRACFG_AO_BASE, INFRA_MISC2));
- return 0;
- }
- static void config_md_boot_env(int md_id, int boot_mode)
- {
- spm_write(POWERON_CONFIG_EN, 0x0B160001);
- spm_write(SPM_POWER_ON_VAL1, 0x80215830);
- dprintf(CRITICAL, "md_srclkena done!\n");
- spm_mtcmos_ctrl_md1(STA_POWER_ON);
- dprintf(CRITICAL, "MD1 MTCMOS power on done!\n");
- bypass_md_boot_rom();
- }
- static void let_md_go(int md_id)
- {
- switch (md_id) {
- case MD_SYS1:
- /* step 8: trigger modem SW to run */
- #ifndef NO_UNGATE_MD
- ccci_write32(MD1_BOOT_VECTOR_EN, 0, 1);
- #else
- dprintf(CRITICAL, "do not let MD1 go\n");
- #endif
- break;
- default:
- break;
- }
- }
- void md_wdt_irq_handler(unsigned int irq)
- {
- //spm_mtcmos_ctrl_audio(STA_POWER_DOWN);
- //dprintf(CRITICAL, "turn off audio.\n");
- #if defined(ENABLE_MD_RESET_SPM) || defined(ENABLE_MD_RESET_RGU)
- unsigned int reg_value = 0;
- unsigned int cnt = ccci_read32(TOPRGU_BASE, TOP_RGU_WDT_NONRST_REG);
- // update counter
- ccci_write32(TOPRGU_BASE, TOP_RGU_WDT_NONRST_REG, cnt + 1);
- // reset UART config
- md_uart_config(AP_ONLY, 0);
- dprintf(CRITICAL, "\n\n\n\nCurrent wdt cnt:%d\n", cnt + 1);
- if (irq == MT_MD_WDT1_IRQ_ID) {
- #ifdef ENABLE_MD_RESET_SPM
- dprintf(CRITICAL, "MD1 power off\n");
- spm_mtcmos_ctrl_md1(STA_POWER_DOWN);
- mdelay(5);
- config_md_boot_env(MD_SYS1, 0);
- #endif
- #ifdef ENABLE_MD_RESET_RGU
- dprintf(CRITICAL, "MD1 reset\n");
- bus_protection_en(0);
- ccci_write32(TOPRGU_BASE, TOP_RGU_WDT_SWSYSRST,
- (ccci_read32(TOPRGU_BASE, TOP_RGU_WDT_SWSYSRST) | UNLOCK_KEY) | MD1_SYS);
- mdelay(5);
- ccci_write32(TOPRGU_BASE, TOP_RGU_WDT_SWSYSRST,
- (ccci_read32(TOPRGU_BASE, TOP_RGU_WDT_SWSYSRST) | UNLOCK_KEY) & (~MD1_SYS));
- bus_protection_diable(0);
- #endif
- let_md_go(MD_SYS1);
- }
- #if 1
- dprintf(CRITICAL, "Config UART after MD WDT! %d\n", cnt+1);
- if ((img_load_flag&((1 << MD_SYS1) | (1 << MD_SYS3))) == ((1 << MD_SYS1) | (1 << MD_SYS3))) {
- md_uart_config(MD1_MD2, 0);
- } else if (img_load_flag & (1 << MD_SYS1)) {
- md_uart_config(MD1_ONLY, 0);
- } else if (img_load_flag & (1 << MD_SYS3)) {
- md_uart_config(MD2_ONLY, 0);
- }
- #endif
- #else
- md_uart_config(AP_ONLY, 0);
- dprintf(CRITICAL, "Get MD WDT irq, STA:%x!!\n", ccci_read32(MD_RGU_BASE, 0xC));
- #ifdef IGNORE_MD_WDT
- dprintf(CRITICAL, "ignore MD WDT\n");
- #else
- dprintf(CRITICAL, "whole system reboot\n");
- ccci_write32(TOPRGU_BASE, TOP_RGU_LATCH_CONTROL, 0x95000000);
- ccci_write32(TOPRGU_BASE, TOP_RGU_WDT_MODE, 0x22000004);
- ccci_write32(TOPRGU_BASE, TOP_RGU_WDT_SWRST, 0x1209);
- while (1);
- #endif
- #endif
- //spm_mtcmos_ctrl_audio(STA_POWER_ON);
- //dprintf(CRITICAL, "turn on audio.\n");
- }
- int dummy_ap_irq_helper(unsigned int irq)
- {
- switch (irq) {
- case MT_MD_WDT1_IRQ_ID:
- if (img_load_flag &(1 << MD_SYS1)) {
- #ifndef IGNORE_MD1_WDT
- md_wdt_irq_handler(MT_MD_WDT1_IRQ_ID);
- #else
- dprintf(CRITICAL, "ignore MD1 WDT\n");
- #endif
- }
- return 1;
- default:
- break;
- }
- return 0;
- }
- #define BRINGUP_BYPASS_BROM /* bypass brom */
- int bypass_md_boot_rom(void)
- {
- #ifdef BRINGUP_BYPASS_BROM
- #define MDPERIMISC_BASE (0x20060000)
- /* Change boot slave jump address */
- // unlock to write boot slave jump address
- ccci_write32(MDPERIMISC_BASE, 0x10C, 0x5500);
- // write 0x0 to boot slave jump address
- ccci_write32(MDPERIMISC_BASE, 0x104, 0x0);
- // update boot slave jump address
- ccci_write32(MDPERIMISC_BASE, 0x108, 0x1);
- return 0;
- #else
- return -1;
- #endif
- }
- #if 0//ndef CTP_ENV
- int md_brom_boot(int boot_mode)
- {
- int ret = -1;
- int i;
- config_md_boot_env(MD_SYS1, boot_mode);
- let_md_go(MD_SYS1);
- for (i = 0; i < 200; i++) {
- if ((ccci_read32(INFRA_SEC_BASE, MD_BROM_0) == 1) &&
- (ccci_read32(INFRA_SEC_BASE, MD_BROM_1) == 1) &&
- (ccci_read32(INFRA_SEC_BASE, MD_BROM_2) == 1) &&
- (ccci_read32(INFRA_SEC_BASE, MD_BROM_3) == 1)) {
- dprintf(CRITICAL, "BROM success!!\n");
- spm_mtcmos_ctrl_md1(STA_POWER_DOWN);
- //mdelay(5); no need
- ret = 0;
- break;
- }
- mdelay(10);
- }
- if (ret) {
- dprintf(CRITICAL, "BROM Failed: 0x%x, 0x%x, 0x%x, 0x%x\n",
- ccci_read32(INFRA_SEC_BASE, MD_BROM_0),
- ccci_read32(INFRA_SEC_BASE, MD_BROM_1),
- ccci_read32(INFRA_SEC_BASE, MD_BROM_2),
- ccci_read32(INFRA_SEC_BASE, MD_BROM_3));
- if (bypass_md_boot_rom() >= 0)
- let_md_go(MD_SYS1);
- }
- return ret;
- }
- #endif
- void dummy_ap_boot_up_md(int md_ld_flag)
- {
- int boot_mode = 0;
- int i = 0;
- int ret;
- img_load_flag = (unsigned int)md_ld_flag;
- // reinit UART, overwrite DWS setting
- md_uart_config(AP_ONLY, 0);
- // Disable AP WDT
- *(volatile unsigned int *)(TOPRGU_BASE) = 0x22000000;
- dprintf(CRITICAL, "Welcome to use dummy AP!\n");
- dprintf(CRITICAL, "load flag for dummy AP: %x\n", img_load_flag);
- #ifndef CTP_ENV
- if (img_load_flag == 0) {
- dprintf(CRITICAL, "no MD loaded for dummy AP\n");
- ret = get_md_err_from_lk_info(MD_SYS1);
- dprintf(CRITICAL, "hint for MD1 errno: %x, %s\n", ret, ld_md_errno_to_str(-ret));
- ret = get_md_err_from_lk_info(MD_SYS3);
- dprintf(CRITICAL, "hint for MD3 errno: %x, %s\n", ret, ld_md_errno_to_str(-ret));
- dprintf(CRITICAL, "stop.....\n");
- while (1);
- }
- if (img_load_flag & (1 << MD_SYS1)) {
- dprintf(CRITICAL, "MD1 loaded");
- ret = get_md_err_from_lk_info(MD_SYS1);
- if (ret < 0) {
- dprintf(CRITICAL, "MD1 load image has error, errno:%s", ld_md_errno_to_str(-ret));
- while (1);
- }
- }
- // 2, Check boot Mode
- // 3, MD WDT ISR init
- dprintf(CRITICAL, "Init MD WDT\n");
- md_wdt_init();
- #endif
- // 6. Switch UART
- dprintf(CRITICAL, "Switch UART!\n");
- md_uart_config(MD1_ONLY, boot_mode); // 4. Common setting for all MD
- dprintf(CRITICAL, "MD%d Enabled\n", i+1);
- md_common_setting();
- #if 0//ndef CTP_ENV
- ret = md_brom_boot(boot_mode);
- if ( ret == 0)
- #endif
- {
- config_md_boot_env(MD_SYS1, boot_mode);
- let_md_go(MD_SYS1);
- }
- #ifndef CTP_ENV
- dprintf(CRITICAL, "enter while(1), ^O^!!!!!!!!!\n");
- while (1);
- #endif
- }
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