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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.
- */
- #include <malloc.h>
- #include <dev/aee_platform_debug.h>
- #include <platform/dram_debug.h>
- #include <platform/mt_reg_base.h>
- #include <platform/mt_typedefs.h>
- #include <platform/mtk_wdt.h>
- #include <platform/platform_debug.h>
- #include "log_store_lk.h"
- #include <plat_debug_interface.h>
- #include <ram_console.h>
- #include <reg.h>
- #include <fdt.h>
- #include <libfdt.h>
- #include <debug.h>
- int plt_get_cluster_id(unsigned int cpu_id, unsigned int *core_id_in_cluster)
- {
- if (core_id_in_cluster == NULL)
- return -1;
- *core_id_in_cluster = (cpu_id % 4);
- return (cpu_id / 4);
- }
- unsigned long plt_get_cpu_power_status_at_wdt(void)
- {
- unsigned long bitmask = 0, ret;
- ret = readl(SLEEP_BASE + cfg_pc_latch.spm_pwr_sts);
- /* CPU0 ~ CPU3 */
- bitmask |= (ret & (0xf << 9)) >> 9;
- /* CPU4 ~ CPU7 */
- bitmask |= (ret & (0xf << 16)) >> 12;
- return bitmask;
- }
- unsigned int plt_get_dfd_dump_type(void)
- {
- /* for mt6757 with DFD 3.0 -> always dump to DRAM*/
- if (cfg_dfd.version >= DFD_V3_0)
- return DFD_DUMP_TO_DRAM;
- else
- return DFD_DUMP_NOT_SUPPORT;
- }
- static unsigned int save_cpu_bus_data(u64 offset, int *len, CALLBACK dev_write)
- {
- char *buf = NULL;
- int ret;
- unsigned int datasize = 0;
- /* Save latch buffer */
- ret = latch_get((void **)&buf, len);
- if (ret && (buf != NULL)) {
- if (*len > 0)
- datasize = dev_write(buf, *len);
- latch_put((void **)&buf);
- }
- /* Save systracker buffer */
- ret = systracker_get((void **)&buf, len, 8);
- if (buf != NULL) {
- if (*len > 0)
- datasize += dev_write(buf, *len);
- systracker_put((void **)&buf);
- }
- return datasize;
- }
- static unsigned int save_dfd_data(u64 offset, int *len, CALLBACK dev_write)
- {
- char *buf = NULL;
- unsigned int datasize = 0;
- /* Save dfd buffer */
- if (dfd_get((void **)&buf, len)) {
- datasize = dev_write(buf, *len);
- dfd_put((void **)&buf);
- }
- return datasize;
- }
- void platform_clear_cache_retention_select(void)
- {
- rgu_release_rg_mcu_pwr_iso_dis();
- rgu_release_rg_mcu_pwr_on();
- }
- /* SPM2 Debug Features */
- #define SPM2_WDT_LATCH0 (0x10227000 + 0x190)
- #define SPM2_WDT_LATCH1 (0x10227000 + 0x194)
- #define SPM2_WDT_LATCH2 (0x10227000 + 0x198)
- #define SPM2_WDT_LATCH3 (0x10227000 + 0x1e4)
- #define SPM2_WDT_LATCH4 (0x10227000 + 0x1e8)
- #define SPM2_WDT_LATCH_NUM (5)
- static unsigned long get_spm2_wdt_latch(int index)
- {
- unsigned long ret;
- switch (index) {
- case 0:
- ret = readl(SPM2_WDT_LATCH0);
- break;
- case 1:
- ret = readl(SPM2_WDT_LATCH1);
- break;
- case 2:
- ret = readl(SPM2_WDT_LATCH2);
- break;
- case 3:
- ret = readl(SPM2_WDT_LATCH3);
- break;
- case 4:
- ret = readl(SPM2_WDT_LATCH4);
- break;
- default:
- ret = 0;
- }
- return ret;
- }
- /* VCOREFS Debug Features */
- #define VCOREFS_SRAM_BASE (0x0011CF80)
- #define VCOREFS_SRAM_DVFS_UP_COUNT (VCOREFS_SRAM_BASE + 0x54)
- #define VCOREFS_SRAM_DVFS_DOWN_COUNT (VCOREFS_SRAM_BASE + 0x58)
- #define VCOREFS_SRAM_DVFS2_UP_COUNT (VCOREFS_SRAM_BASE + 0x5c)
- #define VCOREFS_SRAM_DVFS2_DOWN_COUNT (VCOREFS_SRAM_BASE + 0x60)
- #define VCOREFS_SRAM_DVFS_UP_TIME (VCOREFS_SRAM_BASE + 0x64)
- #define VCOREFS_SRAM_DVFS_DOWN_TIME (VCOREFS_SRAM_BASE + 0x68)
- #define VCOREFS_SRAM_DVFS2_UP_TIME (VCOREFS_SRAM_BASE + 0x6c)
- #define VCOREFS_SRAM_DVFS2_DOWN_TIME (VCOREFS_SRAM_BASE + 0x70)
- #define VCOREFS_SRAM_EMI_BLOCK_TIME (VCOREFS_SRAM_BASE + 0x74)
- #define VCOREFS_SRAM_NUM (9)
- static unsigned long get_vcorefs_sram(int index)
- {
- unsigned long ret;
- switch (index) {
- case 0:
- ret = readl(VCOREFS_SRAM_DVFS_UP_COUNT);
- break;
- case 1:
- ret = readl(VCOREFS_SRAM_DVFS_DOWN_COUNT);
- break;
- case 2:
- ret = readl(VCOREFS_SRAM_DVFS2_UP_COUNT);
- break;
- case 3:
- ret = readl(VCOREFS_SRAM_DVFS2_DOWN_COUNT);
- break;
- case 4:
- ret = readl(VCOREFS_SRAM_DVFS_UP_TIME);
- break;
- case 5:
- ret = readl(VCOREFS_SRAM_DVFS_DOWN_TIME);
- break;
- case 6:
- ret = readl(VCOREFS_SRAM_DVFS2_UP_TIME);
- break;
- case 7:
- ret = readl(VCOREFS_SRAM_DVFS2_DOWN_TIME);
- break;
- case 8:
- ret = readl(VCOREFS_SRAM_EMI_BLOCK_TIME);
- break;
- default:
- ret = 0;
- }
- return ret;
- }
- /* SPM Debug Features */
- #define PCM_WDT_LATCH_0 (SLEEP_BASE + 0x190)
- #define PCM_WDT_LATCH_1 (SLEEP_BASE + 0x194)
- #define PCM_WDT_LATCH_2 (SLEEP_BASE + 0x198)
- #define PCM_WDT_LATCH_3 (SLEEP_BASE + 0x1C4)
- #define PCM_WDT_LATCH_4 (SLEEP_BASE + 0x1E0)
- #define PCM_WDT_LATCH_5 (SLEEP_BASE + 0x1E4)
- #define PCM_WDT_LATCH_6 (SLEEP_BASE + 0x1E8)
- #define PCM_WDT_LATCH_7 (SLEEP_BASE + 0x1EC)
- #define PCM_WDT_LATCH_8 (SLEEP_BASE + 0x1F0)
- #define PCM_WDT_LATCH_9 (SLEEP_BASE + 0x1F4)
- #define PCM_WDT_LATCH_10 (SLEEP_BASE + 0x1F8)
- #define PCM_WDT_LATCH_11 (SLEEP_BASE + 0x1FC)
- #define PCM_WDT_LATCH_NUM (12)
- #define SPM_DATA_BUF_LENGTH (2048)
- static unsigned long get_spm_wdt_latch(int index)
- {
- unsigned long ret;
- switch (index) {
- case 0:
- ret = readl(PCM_WDT_LATCH_0);
- break;
- case 1:
- ret = readl(PCM_WDT_LATCH_1);
- break;
- case 2:
- ret = readl(PCM_WDT_LATCH_2);
- break;
- case 3:
- ret = readl(PCM_WDT_LATCH_3);
- break;
- case 4:
- ret = readl(PCM_WDT_LATCH_4);
- break;
- case 5:
- ret = readl(PCM_WDT_LATCH_5);
- break;
- case 6:
- ret = readl(PCM_WDT_LATCH_6);
- break;
- case 7:
- ret = readl(PCM_WDT_LATCH_7);
- break;
- case 8:
- ret = readl(PCM_WDT_LATCH_8);
- break;
- case 9:
- ret = readl(PCM_WDT_LATCH_9);
- break;
- case 10:
- ret = readl(PCM_WDT_LATCH_10);
- break;
- case 11:
- ret = readl(PCM_WDT_LATCH_11);
- break;
- default:
- ret = 0;
- }
- return ret;
- }
- static int spm_dump_data(char *buf, int *wp)
- {
- int i;
- unsigned long val;
- if (buf == NULL || wp == NULL)
- return -1;
- /*
- * Example output:
- * SPM Suspend debug regs(index 1) = 0x8320535
- * SPM Suspend debug regs(index 2) = 0xfe114200
- * SPM Suspend debug regs(index 3) = 0x3920fffe
- * SPM Suspend debug regs(index 4) = 0x3ac06f4f
- */
- for (i = 0; i < PCM_WDT_LATCH_NUM; i++) {
- val = get_spm_wdt_latch(i);
- *wp += sprintf(buf + *wp,
- "SPM Suspend debug regs(index %d) = 0x%x\n",
- i + 1, val);
- }
- for (i = 0; i < VCOREFS_SRAM_NUM; i++) {
- val = get_vcorefs_sram(i);
- *wp += sprintf(buf + *wp,
- "vcore dvfs debug regs(index %d) = 0x%x\n",
- i + 1, val);
- }
- for (i = 0; i < SPM2_WDT_LATCH_NUM; i++) {
- val = get_spm2_wdt_latch(i);
- *wp += sprintf(buf + *wp,
- "SPM2_WDT_Latch%d = 0x%x\n",
- i, val);
- }
- *wp += sprintf(buf + *wp, "\n");
- return 1;
- }
- int spm_data_get(void **data, int *len)
- {
- int ret;
- *len = 0;
- *data = malloc(SPM_DATA_BUF_LENGTH);
- if (*data == NULL)
- return 0;
- ret = spm_dump_data(*data, len);
- if (ret < 0 || *len > SPM_DATA_BUF_LENGTH) {
- *len = (*len > SPM_DATA_BUF_LENGTH) ? SPM_DATA_BUF_LENGTH : *len;
- return ret;
- }
- return 1;
- }
- void spm_data_put(void **data)
- {
- free(*data);
- }
- static unsigned int save_spm_data(u64 offset, int *len, CALLBACK dev_write)
- {
- char *buf = NULL;
- unsigned int datasize = 0;
- /* Save SPM buffer */
- spm_data_get((void **)&buf, len);
- if (buf != NULL) {
- if (*len > 0)
- datasize = dev_write(buf, *len);
- spm_data_put((void **)&buf);
- }
- return datasize;
- }
- /*
- * FOR DRAMC data and DRAM Calibration Log
- * This area is applied for DRAM related debug.
- */
- static int plat_dram_debug_get(void **data, int *len)
- {
- *data = (void *)DRAM_DEBUG_SRAM_ADDRESS;
- *len = DRAM_DEBUG_SRAM_LENGTH;
- return 1;
- }
- bool plat_boot_in_ddr_rsv(void)
- {
- if ((readl(DRAM_DEBUG_FATAL_FLAG) & (1 << DRAM_DEBUG_FLAG_DDR_RSV_BIT)) == 0)
- return false;
- else
- return true;
- }
- static int plat_dram_klog_get(void **data, int *len)
- {
- *data = (void *)DRAM_KLOG_SRAM_ADDRESS;
- *len = DRAM_KLOG_SRAM_LENGTH;
- return 1;
- }
- static bool plat_dram_has_klog(void)
- {
- /* not to overwrite klog in abnormal boot or in DDR reserve mode */
- if (ram_console_is_abnormal_boot() || plat_boot_in_ddr_rsv())
- return false;
- if (*(volatile unsigned int*)DRAM_KLOG_VALID_ADDRESS)
- return true;
- return false;
- }
- static unsigned int save_dram_data(u64 offset, int *len, CALLBACK dev_write)
- {
- char *buf = NULL;
- unsigned int datasize = 0, allsize = 0;
- if (plat_dram_debug_get((void **)&buf, len)) {
- datasize = dev_write(buf, *len);
- allsize = datasize;
- }
- if (plat_dram_klog_get((void **)&buf, len)) {
- buf = malloc(*len);
- if (buf) {
- mrdump_read_log(buf, *len, MRDUMP_EXPDB_DRAM_KLOG_OFFSET);
- datasize = dev_write(buf, *len);
- allsize += datasize;
- free(buf);
- }
- }
- return allsize;
- }
- static int plat_write_dram_klog(void)
- {
- char *sram_base = NULL;
- int len = 0;
- if (plat_dram_klog_get((void **)&sram_base, (int *)&len)) {
- if (plat_dram_has_klog()) {
- mrdump_write_log(MRDUMP_EXPDB_DRAM_KLOG_OFFSET, sram_base, len);
- }
- }
- return 0;
- }
- /* SRAM for Hybrid CPU DVFS */
- #define HVFS_SRAM_ADDRESS 0x0011c000
- #define HVFS_SRAM_LENGTH 0xf80 /* 3968 bytes */
- static int plat_hvfs_data_get(void **data, int *len)
- {
- *data = (void *)HVFS_SRAM_ADDRESS;
- *len = HVFS_SRAM_LENGTH;
- return 1;
- }
- static unsigned int save_hvfs_data(u64 offset, int *len, CALLBACK dev_write)
- {
- char *buf = NULL;
- unsigned int datasize = 0;
- if (plat_hvfs_data_get((void **)&buf, len)) {
- datasize = dev_write(buf, *len);
- }
- return datasize;
- }
- /* platform initial function */
- int platform_debug_init(void)
- {
- /* function pointer assignment */
- plat_spm_data_get = save_spm_data;
- plat_dram_get = save_dram_data;
- plat_cpu_bus_get = save_cpu_bus_data;
- plat_hvfs_get = save_hvfs_data;
- /* check dfd_valid_before_reboot and efuse for DFD 3.0 */
- if ((readl(cfg_dfd.plat_sram_flag1) & 0x2) && (get_efuse_dfd_disabled() == 0x0)) {
- plat_dfd20_get = save_dfd_data;
- }
- /* routine tasks */
- plat_write_dram_klog();
- return 1;
- }
- extern int get_ccci_md_view_smem_addr(unsigned long long *ap_addr, unsigned int *md_addr);
- int dfd_set_base_addr(void *fdt)
- {
- int ret = 0;
- int offset;
- u64 addr;
- unsigned int md_addr;
- unsigned long long ap_addr;
- if (!fdt)
- return -1;
- ret = get_ccci_md_view_smem_addr(&ap_addr, &md_addr);
- if (ret < 0)
- return ret;
- offset = fdt_path_offset(fdt, "/chosen");
- if (offset < 0)
- return offset;
- /* pass base address to kernel */
- addr = cpu_to_fdt64(md_addr);
- ret = fdt_setprop(fdt, offset, "dfd,base_addr", &addr, sizeof(addr));
- if (ret < 0)
- return ret;
- /*
- * write base address[31:1] from AP view to plat_sram_flag2[31:1]
- * write base address[32:32] from AP view to plat_sram_flag2[0:0]
- */
- writel((ap_addr & ~(0x1)) | ((ap_addr >> 32) & 0x1),
- cfg_dfd.plat_sram_flag2);
- return ret;
- }
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