1c9d75b3cSYann Gautier /* 2e6cc3ccfSYann Gautier * Copyright (c) 2015-2020, ARM Limited and Contributors. All rights reserved. 3c9d75b3cSYann Gautier * 4c9d75b3cSYann Gautier * SPDX-License-Identifier: BSD-3-Clause 5c9d75b3cSYann Gautier */ 6c9d75b3cSYann Gautier 78f282daeSYann Gautier #include <assert.h> 88f282daeSYann Gautier 910e7a9e9SYann Gautier #include <libfdt.h> 1010e7a9e9SYann Gautier 11c9d75b3cSYann Gautier #include <platform_def.h> 12c9d75b3cSYann Gautier 1373680c23SYann Gautier #include <drivers/st/stm32_iwdg.h> 14c9d75b3cSYann Gautier #include <lib/xlat_tables/xlat_tables_v2.h> 15c9d75b3cSYann Gautier 1610e7a9e9SYann Gautier /* Internal layout of the 32bit OTP word board_id */ 1710e7a9e9SYann Gautier #define BOARD_ID_BOARD_NB_MASK GENMASK(31, 16) 1810e7a9e9SYann Gautier #define BOARD_ID_BOARD_NB_SHIFT 16 19f964f5c3SPatrick Delaunay #define BOARD_ID_VARCPN_MASK GENMASK(15, 12) 20f964f5c3SPatrick Delaunay #define BOARD_ID_VARCPN_SHIFT 12 2110e7a9e9SYann Gautier #define BOARD_ID_REVISION_MASK GENMASK(11, 8) 2210e7a9e9SYann Gautier #define BOARD_ID_REVISION_SHIFT 8 23f964f5c3SPatrick Delaunay #define BOARD_ID_VARFG_MASK GENMASK(7, 4) 24f964f5c3SPatrick Delaunay #define BOARD_ID_VARFG_SHIFT 4 2510e7a9e9SYann Gautier #define BOARD_ID_BOM_MASK GENMASK(3, 0) 2610e7a9e9SYann Gautier 2710e7a9e9SYann Gautier #define BOARD_ID2NB(_id) (((_id) & BOARD_ID_BOARD_NB_MASK) >> \ 2810e7a9e9SYann Gautier BOARD_ID_BOARD_NB_SHIFT) 29f964f5c3SPatrick Delaunay #define BOARD_ID2VARCPN(_id) (((_id) & BOARD_ID_VARCPN_MASK) >> \ 30f964f5c3SPatrick Delaunay BOARD_ID_VARCPN_SHIFT) 3110e7a9e9SYann Gautier #define BOARD_ID2REV(_id) (((_id) & BOARD_ID_REVISION_MASK) >> \ 3210e7a9e9SYann Gautier BOARD_ID_REVISION_SHIFT) 33f964f5c3SPatrick Delaunay #define BOARD_ID2VARFG(_id) (((_id) & BOARD_ID_VARFG_MASK) >> \ 34f964f5c3SPatrick Delaunay BOARD_ID_VARFG_SHIFT) 3510e7a9e9SYann Gautier #define BOARD_ID2BOM(_id) ((_id) & BOARD_ID_BOM_MASK) 3610e7a9e9SYann Gautier 370754143aSEtienne Carriere #if defined(IMAGE_BL2) 380754143aSEtienne Carriere #define MAP_SEC_SYSRAM MAP_REGION_FLAT(STM32MP_SYSRAM_BASE, \ 393f9c9784SYann Gautier STM32MP_SYSRAM_SIZE, \ 40c9d75b3cSYann Gautier MT_MEMORY | \ 41c9d75b3cSYann Gautier MT_RW | \ 42c9d75b3cSYann Gautier MT_SECURE | \ 43c9d75b3cSYann Gautier MT_EXECUTE_NEVER) 440754143aSEtienne Carriere #elif defined(IMAGE_BL32) 450754143aSEtienne Carriere #define MAP_SEC_SYSRAM MAP_REGION_FLAT(STM32MP_SEC_SYSRAM_BASE, \ 460754143aSEtienne Carriere STM32MP_SEC_SYSRAM_SIZE, \ 470754143aSEtienne Carriere MT_MEMORY | \ 480754143aSEtienne Carriere MT_RW | \ 490754143aSEtienne Carriere MT_SECURE | \ 500754143aSEtienne Carriere MT_EXECUTE_NEVER) 510754143aSEtienne Carriere 520754143aSEtienne Carriere /* Non-secure SYSRAM is used a uncached memory for SCMI message transfer */ 530754143aSEtienne Carriere #define MAP_NS_SYSRAM MAP_REGION_FLAT(STM32MP_NS_SYSRAM_BASE, \ 540754143aSEtienne Carriere STM32MP_NS_SYSRAM_SIZE, \ 550754143aSEtienne Carriere MT_DEVICE | \ 560754143aSEtienne Carriere MT_RW | \ 570754143aSEtienne Carriere MT_NS | \ 580754143aSEtienne Carriere MT_EXECUTE_NEVER) 590754143aSEtienne Carriere #endif 60c9d75b3cSYann Gautier 61c9d75b3cSYann Gautier #define MAP_DEVICE1 MAP_REGION_FLAT(STM32MP1_DEVICE1_BASE, \ 62c9d75b3cSYann Gautier STM32MP1_DEVICE1_SIZE, \ 63c9d75b3cSYann Gautier MT_DEVICE | \ 64c9d75b3cSYann Gautier MT_RW | \ 65c9d75b3cSYann Gautier MT_SECURE | \ 66c9d75b3cSYann Gautier MT_EXECUTE_NEVER) 67c9d75b3cSYann Gautier 68c9d75b3cSYann Gautier #define MAP_DEVICE2 MAP_REGION_FLAT(STM32MP1_DEVICE2_BASE, \ 69c9d75b3cSYann Gautier STM32MP1_DEVICE2_SIZE, \ 70c9d75b3cSYann Gautier MT_DEVICE | \ 71c9d75b3cSYann Gautier MT_RW | \ 72c9d75b3cSYann Gautier MT_SECURE | \ 73c9d75b3cSYann Gautier MT_EXECUTE_NEVER) 74c9d75b3cSYann Gautier 75c9d75b3cSYann Gautier #if defined(IMAGE_BL2) 76c9d75b3cSYann Gautier static const mmap_region_t stm32mp1_mmap[] = { 770754143aSEtienne Carriere MAP_SEC_SYSRAM, 78c9d75b3cSYann Gautier MAP_DEVICE1, 79c9d75b3cSYann Gautier MAP_DEVICE2, 80c9d75b3cSYann Gautier {0} 81c9d75b3cSYann Gautier }; 82c9d75b3cSYann Gautier #endif 83c9d75b3cSYann Gautier #if defined(IMAGE_BL32) 84c9d75b3cSYann Gautier static const mmap_region_t stm32mp1_mmap[] = { 850754143aSEtienne Carriere MAP_SEC_SYSRAM, 860754143aSEtienne Carriere MAP_NS_SYSRAM, 87c9d75b3cSYann Gautier MAP_DEVICE1, 88c9d75b3cSYann Gautier MAP_DEVICE2, 89c9d75b3cSYann Gautier {0} 90c9d75b3cSYann Gautier }; 91c9d75b3cSYann Gautier #endif 92c9d75b3cSYann Gautier 93c9d75b3cSYann Gautier void configure_mmu(void) 94c9d75b3cSYann Gautier { 95c9d75b3cSYann Gautier mmap_add(stm32mp1_mmap); 96c9d75b3cSYann Gautier init_xlat_tables(); 97c9d75b3cSYann Gautier 98c9d75b3cSYann Gautier enable_mmu_svc_mon(0); 99c9d75b3cSYann Gautier } 1008f282daeSYann Gautier 101c0ea3b1bSEtienne Carriere uintptr_t stm32_get_gpio_bank_base(unsigned int bank) 102c0ea3b1bSEtienne Carriere { 103c0ea3b1bSEtienne Carriere if (bank == GPIO_BANK_Z) { 104c0ea3b1bSEtienne Carriere return GPIOZ_BASE; 105c0ea3b1bSEtienne Carriere } 106c0ea3b1bSEtienne Carriere 107c0ea3b1bSEtienne Carriere assert(GPIO_BANK_A == 0 && bank <= GPIO_BANK_K); 108c0ea3b1bSEtienne Carriere 109c0ea3b1bSEtienne Carriere return GPIOA_BASE + (bank * GPIO_BANK_OFFSET); 110c0ea3b1bSEtienne Carriere } 111c0ea3b1bSEtienne Carriere 112c0ea3b1bSEtienne Carriere uint32_t stm32_get_gpio_bank_offset(unsigned int bank) 113c0ea3b1bSEtienne Carriere { 114c0ea3b1bSEtienne Carriere if (bank == GPIO_BANK_Z) { 115c0ea3b1bSEtienne Carriere return 0; 116c0ea3b1bSEtienne Carriere } 117c0ea3b1bSEtienne Carriere 118c0ea3b1bSEtienne Carriere assert(GPIO_BANK_A == 0 && bank <= GPIO_BANK_K); 119c0ea3b1bSEtienne Carriere 120c0ea3b1bSEtienne Carriere return bank * GPIO_BANK_OFFSET; 121c0ea3b1bSEtienne Carriere } 122c0ea3b1bSEtienne Carriere 1238f282daeSYann Gautier unsigned long stm32_get_gpio_bank_clock(unsigned int bank) 1248f282daeSYann Gautier { 1258f282daeSYann Gautier if (bank == GPIO_BANK_Z) { 1268f282daeSYann Gautier return GPIOZ; 1278f282daeSYann Gautier } 1288f282daeSYann Gautier 1298f282daeSYann Gautier assert(GPIO_BANK_A == 0 && bank <= GPIO_BANK_K); 1308f282daeSYann Gautier 1318f282daeSYann Gautier return GPIOA + (bank - GPIO_BANK_A); 1328f282daeSYann Gautier } 13373680c23SYann Gautier 134ccc199edSEtienne Carriere int stm32_get_gpio_bank_pinctrl_node(void *fdt, unsigned int bank) 135ccc199edSEtienne Carriere { 136ccc199edSEtienne Carriere switch (bank) { 137ccc199edSEtienne Carriere case GPIO_BANK_A: 138ccc199edSEtienne Carriere case GPIO_BANK_B: 139ccc199edSEtienne Carriere case GPIO_BANK_C: 140ccc199edSEtienne Carriere case GPIO_BANK_D: 141ccc199edSEtienne Carriere case GPIO_BANK_E: 142ccc199edSEtienne Carriere case GPIO_BANK_F: 143ccc199edSEtienne Carriere case GPIO_BANK_G: 144ccc199edSEtienne Carriere case GPIO_BANK_H: 145ccc199edSEtienne Carriere case GPIO_BANK_I: 146ccc199edSEtienne Carriere case GPIO_BANK_J: 147ccc199edSEtienne Carriere case GPIO_BANK_K: 148ccc199edSEtienne Carriere return fdt_path_offset(fdt, "/soc/pin-controller"); 149ccc199edSEtienne Carriere case GPIO_BANK_Z: 150ccc199edSEtienne Carriere return fdt_path_offset(fdt, "/soc/pin-controller-z"); 151ccc199edSEtienne Carriere default: 152ccc199edSEtienne Carriere panic(); 153ccc199edSEtienne Carriere } 154ccc199edSEtienne Carriere } 155ccc199edSEtienne Carriere 156dec286ddSYann Gautier static int get_part_number(uint32_t *part_nb) 157dec286ddSYann Gautier { 158dec286ddSYann Gautier uint32_t part_number; 159dec286ddSYann Gautier uint32_t dev_id; 160dec286ddSYann Gautier 161*d75a3409SNicolas Le Bayon assert(part_nb != NULL); 162*d75a3409SNicolas Le Bayon 163dec286ddSYann Gautier if (stm32mp1_dbgmcu_get_chip_dev_id(&dev_id) < 0) { 164dec286ddSYann Gautier return -1; 165dec286ddSYann Gautier } 166dec286ddSYann Gautier 167dec286ddSYann Gautier if (bsec_shadow_read_otp(&part_number, PART_NUMBER_OTP) != BSEC_OK) { 168dec286ddSYann Gautier ERROR("BSEC: PART_NUMBER_OTP Error\n"); 169dec286ddSYann Gautier return -1; 170dec286ddSYann Gautier } 171dec286ddSYann Gautier 172dec286ddSYann Gautier part_number = (part_number & PART_NUMBER_OTP_PART_MASK) >> 173dec286ddSYann Gautier PART_NUMBER_OTP_PART_SHIFT; 174dec286ddSYann Gautier 175dec286ddSYann Gautier *part_nb = part_number | (dev_id << 16); 176dec286ddSYann Gautier 177dec286ddSYann Gautier return 0; 178dec286ddSYann Gautier } 179dec286ddSYann Gautier 180dec286ddSYann Gautier static int get_cpu_package(uint32_t *cpu_package) 181dec286ddSYann Gautier { 182dec286ddSYann Gautier uint32_t package; 183dec286ddSYann Gautier 184*d75a3409SNicolas Le Bayon assert(cpu_package != NULL); 185*d75a3409SNicolas Le Bayon 186dec286ddSYann Gautier if (bsec_shadow_read_otp(&package, PACKAGE_OTP) != BSEC_OK) { 187dec286ddSYann Gautier ERROR("BSEC: PACKAGE_OTP Error\n"); 188dec286ddSYann Gautier return -1; 189dec286ddSYann Gautier } 190dec286ddSYann Gautier 191dec286ddSYann Gautier *cpu_package = (package & PACKAGE_OTP_PKG_MASK) >> 192dec286ddSYann Gautier PACKAGE_OTP_PKG_SHIFT; 193dec286ddSYann Gautier 194dec286ddSYann Gautier return 0; 195dec286ddSYann Gautier } 196dec286ddSYann Gautier 197dec286ddSYann Gautier void stm32mp_print_cpuinfo(void) 198dec286ddSYann Gautier { 199dec286ddSYann Gautier const char *cpu_s, *cpu_r, *pkg; 200dec286ddSYann Gautier uint32_t part_number; 201dec286ddSYann Gautier uint32_t cpu_package; 202dec286ddSYann Gautier uint32_t chip_dev_id; 203dec286ddSYann Gautier int ret; 204dec286ddSYann Gautier 205dec286ddSYann Gautier /* MPUs Part Numbers */ 206dec286ddSYann Gautier ret = get_part_number(&part_number); 207dec286ddSYann Gautier if (ret < 0) { 208dec286ddSYann Gautier WARN("Cannot get part number\n"); 209dec286ddSYann Gautier return; 210dec286ddSYann Gautier } 211dec286ddSYann Gautier 212dec286ddSYann Gautier switch (part_number) { 213dec286ddSYann Gautier case STM32MP157C_PART_NB: 214dec286ddSYann Gautier cpu_s = "157C"; 215dec286ddSYann Gautier break; 216dec286ddSYann Gautier case STM32MP157A_PART_NB: 217dec286ddSYann Gautier cpu_s = "157A"; 218dec286ddSYann Gautier break; 219dec286ddSYann Gautier case STM32MP153C_PART_NB: 220dec286ddSYann Gautier cpu_s = "153C"; 221dec286ddSYann Gautier break; 222dec286ddSYann Gautier case STM32MP153A_PART_NB: 223dec286ddSYann Gautier cpu_s = "153A"; 224dec286ddSYann Gautier break; 225dec286ddSYann Gautier case STM32MP151C_PART_NB: 226dec286ddSYann Gautier cpu_s = "151C"; 227dec286ddSYann Gautier break; 228dec286ddSYann Gautier case STM32MP151A_PART_NB: 229dec286ddSYann Gautier cpu_s = "151A"; 230dec286ddSYann Gautier break; 2318ccf4954SLionel Debieve case STM32MP157F_PART_NB: 2328ccf4954SLionel Debieve cpu_s = "157F"; 2338ccf4954SLionel Debieve break; 2348ccf4954SLionel Debieve case STM32MP157D_PART_NB: 2358ccf4954SLionel Debieve cpu_s = "157D"; 2368ccf4954SLionel Debieve break; 2378ccf4954SLionel Debieve case STM32MP153F_PART_NB: 2388ccf4954SLionel Debieve cpu_s = "153F"; 2398ccf4954SLionel Debieve break; 2408ccf4954SLionel Debieve case STM32MP153D_PART_NB: 2418ccf4954SLionel Debieve cpu_s = "153D"; 2428ccf4954SLionel Debieve break; 2438ccf4954SLionel Debieve case STM32MP151F_PART_NB: 2448ccf4954SLionel Debieve cpu_s = "151F"; 2458ccf4954SLionel Debieve break; 2468ccf4954SLionel Debieve case STM32MP151D_PART_NB: 2478ccf4954SLionel Debieve cpu_s = "151D"; 2488ccf4954SLionel Debieve break; 249dec286ddSYann Gautier default: 250dec286ddSYann Gautier cpu_s = "????"; 251dec286ddSYann Gautier break; 252dec286ddSYann Gautier } 253dec286ddSYann Gautier 254dec286ddSYann Gautier /* Package */ 255dec286ddSYann Gautier ret = get_cpu_package(&cpu_package); 256dec286ddSYann Gautier if (ret < 0) { 257dec286ddSYann Gautier WARN("Cannot get CPU package\n"); 258dec286ddSYann Gautier return; 259dec286ddSYann Gautier } 260dec286ddSYann Gautier 261dec286ddSYann Gautier switch (cpu_package) { 262dec286ddSYann Gautier case PKG_AA_LFBGA448: 263dec286ddSYann Gautier pkg = "AA"; 264dec286ddSYann Gautier break; 265dec286ddSYann Gautier case PKG_AB_LFBGA354: 266dec286ddSYann Gautier pkg = "AB"; 267dec286ddSYann Gautier break; 268dec286ddSYann Gautier case PKG_AC_TFBGA361: 269dec286ddSYann Gautier pkg = "AC"; 270dec286ddSYann Gautier break; 271dec286ddSYann Gautier case PKG_AD_TFBGA257: 272dec286ddSYann Gautier pkg = "AD"; 273dec286ddSYann Gautier break; 274dec286ddSYann Gautier default: 275dec286ddSYann Gautier pkg = "??"; 276dec286ddSYann Gautier break; 277dec286ddSYann Gautier } 278dec286ddSYann Gautier 279dec286ddSYann Gautier /* REVISION */ 280dec286ddSYann Gautier ret = stm32mp1_dbgmcu_get_chip_version(&chip_dev_id); 281dec286ddSYann Gautier if (ret < 0) { 282dec286ddSYann Gautier WARN("Cannot get CPU version\n"); 283dec286ddSYann Gautier return; 284dec286ddSYann Gautier } 285dec286ddSYann Gautier 286dec286ddSYann Gautier switch (chip_dev_id) { 287dec286ddSYann Gautier case STM32MP1_REV_B: 288dec286ddSYann Gautier cpu_r = "B"; 289dec286ddSYann Gautier break; 290ffb3f277SLionel Debieve case STM32MP1_REV_Z: 291ffb3f277SLionel Debieve cpu_r = "Z"; 292ffb3f277SLionel Debieve break; 293dec286ddSYann Gautier default: 294dec286ddSYann Gautier cpu_r = "?"; 295dec286ddSYann Gautier break; 296dec286ddSYann Gautier } 297dec286ddSYann Gautier 298dec286ddSYann Gautier NOTICE("CPU: STM32MP%s%s Rev.%s\n", cpu_s, pkg, cpu_r); 299dec286ddSYann Gautier } 300dec286ddSYann Gautier 30110e7a9e9SYann Gautier void stm32mp_print_boardinfo(void) 30210e7a9e9SYann Gautier { 30310e7a9e9SYann Gautier uint32_t board_id; 30410e7a9e9SYann Gautier uint32_t board_otp; 30510e7a9e9SYann Gautier int bsec_node, bsec_board_id_node; 30610e7a9e9SYann Gautier void *fdt; 30710e7a9e9SYann Gautier const fdt32_t *cuint; 30810e7a9e9SYann Gautier 30910e7a9e9SYann Gautier if (fdt_get_address(&fdt) == 0) { 31010e7a9e9SYann Gautier panic(); 31110e7a9e9SYann Gautier } 31210e7a9e9SYann Gautier 31310e7a9e9SYann Gautier bsec_node = fdt_node_offset_by_compatible(fdt, -1, DT_BSEC_COMPAT); 31410e7a9e9SYann Gautier if (bsec_node < 0) { 31510e7a9e9SYann Gautier return; 31610e7a9e9SYann Gautier } 31710e7a9e9SYann Gautier 31810e7a9e9SYann Gautier bsec_board_id_node = fdt_subnode_offset(fdt, bsec_node, "board_id"); 31910e7a9e9SYann Gautier if (bsec_board_id_node <= 0) { 32010e7a9e9SYann Gautier return; 32110e7a9e9SYann Gautier } 32210e7a9e9SYann Gautier 32310e7a9e9SYann Gautier cuint = fdt_getprop(fdt, bsec_board_id_node, "reg", NULL); 32410e7a9e9SYann Gautier if (cuint == NULL) { 32510e7a9e9SYann Gautier panic(); 32610e7a9e9SYann Gautier } 32710e7a9e9SYann Gautier 32810e7a9e9SYann Gautier board_otp = fdt32_to_cpu(*cuint) / sizeof(uint32_t); 32910e7a9e9SYann Gautier 33010e7a9e9SYann Gautier if (bsec_shadow_read_otp(&board_id, board_otp) != BSEC_OK) { 33110e7a9e9SYann Gautier ERROR("BSEC: PART_NUMBER_OTP Error\n"); 33210e7a9e9SYann Gautier return; 33310e7a9e9SYann Gautier } 33410e7a9e9SYann Gautier 33510e7a9e9SYann Gautier if (board_id != 0U) { 33610e7a9e9SYann Gautier char rev[2]; 33710e7a9e9SYann Gautier 33810e7a9e9SYann Gautier rev[0] = BOARD_ID2REV(board_id) - 1 + 'A'; 33910e7a9e9SYann Gautier rev[1] = '\0'; 340f964f5c3SPatrick Delaunay NOTICE("Board: MB%04x Var%d.%d Rev.%s-%02d\n", 34110e7a9e9SYann Gautier BOARD_ID2NB(board_id), 342f964f5c3SPatrick Delaunay BOARD_ID2VARCPN(board_id), 343f964f5c3SPatrick Delaunay BOARD_ID2VARFG(board_id), 34410e7a9e9SYann Gautier rev, 34510e7a9e9SYann Gautier BOARD_ID2BOM(board_id)); 34610e7a9e9SYann Gautier } 34710e7a9e9SYann Gautier } 34810e7a9e9SYann Gautier 349b2182cdeSYann Gautier /* Return true when SoC provides a single Cortex-A7 core, and false otherwise */ 350b2182cdeSYann Gautier bool stm32mp_is_single_core(void) 351b2182cdeSYann Gautier { 352b2182cdeSYann Gautier uint32_t part_number; 353b2182cdeSYann Gautier 354b2182cdeSYann Gautier if (get_part_number(&part_number) < 0) { 355b2182cdeSYann Gautier ERROR("Invalid part number, assume single core chip"); 356b2182cdeSYann Gautier return true; 357b2182cdeSYann Gautier } 358b2182cdeSYann Gautier 359b2182cdeSYann Gautier switch (part_number) { 360b2182cdeSYann Gautier case STM32MP151A_PART_NB: 361b2182cdeSYann Gautier case STM32MP151C_PART_NB: 3628ccf4954SLionel Debieve case STM32MP151D_PART_NB: 3638ccf4954SLionel Debieve case STM32MP151F_PART_NB: 3648ccf4954SLionel Debieve return true; 365b2182cdeSYann Gautier 366b2182cdeSYann Gautier default: 3678ccf4954SLionel Debieve return false; 368b2182cdeSYann Gautier } 369b2182cdeSYann Gautier } 370b2182cdeSYann Gautier 371f700423cSLionel Debieve /* Return true when device is in closed state */ 372f700423cSLionel Debieve bool stm32mp_is_closed_device(void) 373f700423cSLionel Debieve { 374f700423cSLionel Debieve uint32_t value; 375f700423cSLionel Debieve 376f700423cSLionel Debieve if ((bsec_shadow_register(DATA0_OTP) != BSEC_OK) || 377f700423cSLionel Debieve (bsec_read_otp(&value, DATA0_OTP) != BSEC_OK)) { 378f700423cSLionel Debieve return true; 379f700423cSLionel Debieve } 380f700423cSLionel Debieve 381f700423cSLionel Debieve return (value & DATA0_OTP_SECURED) == DATA0_OTP_SECURED; 382f700423cSLionel Debieve } 383f700423cSLionel Debieve 38473680c23SYann Gautier uint32_t stm32_iwdg_get_instance(uintptr_t base) 38573680c23SYann Gautier { 38673680c23SYann Gautier switch (base) { 38773680c23SYann Gautier case IWDG1_BASE: 38873680c23SYann Gautier return IWDG1_INST; 38973680c23SYann Gautier case IWDG2_BASE: 39073680c23SYann Gautier return IWDG2_INST; 39173680c23SYann Gautier default: 39273680c23SYann Gautier panic(); 39373680c23SYann Gautier } 39473680c23SYann Gautier } 39573680c23SYann Gautier 39673680c23SYann Gautier uint32_t stm32_iwdg_get_otp_config(uint32_t iwdg_inst) 39773680c23SYann Gautier { 39873680c23SYann Gautier uint32_t iwdg_cfg = 0U; 39973680c23SYann Gautier uint32_t otp_value; 40073680c23SYann Gautier 40173680c23SYann Gautier #if defined(IMAGE_BL2) 40273680c23SYann Gautier if (bsec_shadow_register(HW2_OTP) != BSEC_OK) { 40373680c23SYann Gautier panic(); 40473680c23SYann Gautier } 40573680c23SYann Gautier #endif 40673680c23SYann Gautier 40773680c23SYann Gautier if (bsec_read_otp(&otp_value, HW2_OTP) != BSEC_OK) { 40873680c23SYann Gautier panic(); 40973680c23SYann Gautier } 41073680c23SYann Gautier 41173680c23SYann Gautier if ((otp_value & BIT(iwdg_inst + HW2_OTP_IWDG_HW_POS)) != 0U) { 41273680c23SYann Gautier iwdg_cfg |= IWDG_HW_ENABLED; 41373680c23SYann Gautier } 41473680c23SYann Gautier 41573680c23SYann Gautier if ((otp_value & BIT(iwdg_inst + HW2_OTP_IWDG_FZ_STOP_POS)) != 0U) { 41673680c23SYann Gautier iwdg_cfg |= IWDG_DISABLE_ON_STOP; 41773680c23SYann Gautier } 41873680c23SYann Gautier 41973680c23SYann Gautier if ((otp_value & BIT(iwdg_inst + HW2_OTP_IWDG_FZ_STANDBY_POS)) != 0U) { 42073680c23SYann Gautier iwdg_cfg |= IWDG_DISABLE_ON_STANDBY; 42173680c23SYann Gautier } 42273680c23SYann Gautier 42373680c23SYann Gautier return iwdg_cfg; 42473680c23SYann Gautier } 42573680c23SYann Gautier 42673680c23SYann Gautier #if defined(IMAGE_BL2) 42773680c23SYann Gautier uint32_t stm32_iwdg_shadow_update(uint32_t iwdg_inst, uint32_t flags) 42873680c23SYann Gautier { 42973680c23SYann Gautier uint32_t otp; 43073680c23SYann Gautier uint32_t result; 43173680c23SYann Gautier 43273680c23SYann Gautier if (bsec_shadow_read_otp(&otp, HW2_OTP) != BSEC_OK) { 43373680c23SYann Gautier panic(); 43473680c23SYann Gautier } 43573680c23SYann Gautier 43673680c23SYann Gautier if ((flags & IWDG_DISABLE_ON_STOP) != 0U) { 43773680c23SYann Gautier otp |= BIT(iwdg_inst + HW2_OTP_IWDG_FZ_STOP_POS); 43873680c23SYann Gautier } 43973680c23SYann Gautier 44073680c23SYann Gautier if ((flags & IWDG_DISABLE_ON_STANDBY) != 0U) { 44173680c23SYann Gautier otp |= BIT(iwdg_inst + HW2_OTP_IWDG_FZ_STANDBY_POS); 44273680c23SYann Gautier } 44373680c23SYann Gautier 44473680c23SYann Gautier result = bsec_write_otp(otp, HW2_OTP); 44573680c23SYann Gautier if (result != BSEC_OK) { 44673680c23SYann Gautier return result; 44773680c23SYann Gautier } 44873680c23SYann Gautier 44973680c23SYann Gautier /* Sticky lock OTP_IWDG (read and write) */ 45073680c23SYann Gautier if (!bsec_write_sr_lock(HW2_OTP, 1U) || 45173680c23SYann Gautier !bsec_write_sw_lock(HW2_OTP, 1U)) { 45273680c23SYann Gautier return BSEC_LOCK_FAIL; 45373680c23SYann Gautier } 45473680c23SYann Gautier 45573680c23SYann Gautier return BSEC_OK; 45673680c23SYann Gautier } 45773680c23SYann Gautier #endif 458e6cc3ccfSYann Gautier 459e6cc3ccfSYann Gautier /* Get the non-secure DDR size */ 460e6cc3ccfSYann Gautier uint32_t stm32mp_get_ddr_ns_size(void) 461e6cc3ccfSYann Gautier { 462e6cc3ccfSYann Gautier static uint32_t ddr_ns_size; 463e6cc3ccfSYann Gautier uint32_t ddr_size; 464e6cc3ccfSYann Gautier 465e6cc3ccfSYann Gautier if (ddr_ns_size != 0U) { 466e6cc3ccfSYann Gautier return ddr_ns_size; 467e6cc3ccfSYann Gautier } 468e6cc3ccfSYann Gautier 469e6cc3ccfSYann Gautier ddr_size = dt_get_ddr_size(); 470e6cc3ccfSYann Gautier if ((ddr_size <= (STM32MP_DDR_S_SIZE + STM32MP_DDR_SHMEM_SIZE)) || 471e6cc3ccfSYann Gautier (ddr_size > STM32MP_DDR_MAX_SIZE)) { 472e6cc3ccfSYann Gautier panic(); 473e6cc3ccfSYann Gautier } 474e6cc3ccfSYann Gautier 475e6cc3ccfSYann Gautier ddr_ns_size = ddr_size - (STM32MP_DDR_S_SIZE + STM32MP_DDR_SHMEM_SIZE); 476e6cc3ccfSYann Gautier 477e6cc3ccfSYann Gautier return ddr_ns_size; 478e6cc3ccfSYann Gautier } 479