/* * SPDX-FileCopyrightText: 2017-2023 Espressif Systems (Shanghai) CO LTD * * SPDX-License-Identifier: Apache-2.0 */ #include "sdkconfig.h" #include "esp_efuse.h" #include #include "esp_efuse_table.h" // md5_digest_table 57d7fbd8410e3a4d1e0d19e39b9cb3c0 // This file was generated from the file esp_efuse_table.csv. DO NOT CHANGE THIS FILE MANUALLY. // If you want to change some fields, you need to change esp_efuse_table.csv file // then run `efuse_common_table` or `efuse_custom_table` command it will generate this file. // To show efuse_table run the command 'show_efuse_table'. static const esp_efuse_desc_t WR_DIS[] = { {EFUSE_BLK0, 0, 32}, // Write protection, }; static const esp_efuse_desc_t WR_DIS_RD_DIS[] = { {EFUSE_BLK0, 0, 1}, // Write protection for RD_DIS_KEY0 RD_DIS_KEY1 RD_DIS_KEY2 RD_DIS_KEY3 RD_DIS_KEY4 RD_DIS_KEY5 RD_DIS_SYS_DATA_PART2, }; static const esp_efuse_desc_t WR_DIS_GROUP_1[] = { {EFUSE_BLK0, 1, 1}, // Write protection for KM_RND_SWITCH_CYCLE KM_DEPLOY_ONLY_ONCE FORCE_USE_KEY_MANAGER_KEY FORCE_DISABLE_SW_INIT_KEY, }; static const esp_efuse_desc_t WR_DIS_GROUP_2[] = { {EFUSE_BLK0, 2, 1}, // Write protection for DIS_USB_JTAG POWERGLITCH_EN DIS_USB_DERIAL_JTAG DIS_FORCE_DOWNLOAD DIS_TWAI JTAG_SEL_ENABLE DIS_PAD_JTAG DIS_DOWNLOAD_MANUAL_ENCRYPT WDT_DELAY_SEL HYS_EN_PAD _0PXA_TIEH_SEL_0 _0PXA_TIEH_SEL_1 _0PXA_TIEH_SEL_2 _0PXA_TIEH_SEL_3 DIS_WDT DIS_SWD, }; static const esp_efuse_desc_t WR_DIS_HP_PWR_SRC_SEL[] = { {EFUSE_BLK0, 3, 1}, // Write protection for HP_PWR_SRC_SEL, }; static const esp_efuse_desc_t WR_DIS_SPI_BOOT_CRYPT_CNT[] = { {EFUSE_BLK0, 4, 1}, // Write protection for SPI_BOOT_CRYPT_CNT, }; static const esp_efuse_desc_t WR_DIS_SECURE_BOOT_KEY_REVOKE0[] = { {EFUSE_BLK0, 5, 1}, // Write protection for SECURE_BOOT_KEY_REVOKE0, }; static const esp_efuse_desc_t WR_DIS_SECURE_BOOT_KEY_REVOKE1[] = { {EFUSE_BLK0, 6, 1}, // Write protection for SECURE_BOOT_KEY_REVOKE1, }; static const esp_efuse_desc_t WR_DIS_SECURE_BOOT_KEY_REVOKE2[] = { {EFUSE_BLK0, 7, 1}, // Write protection for SECURE_BOOT_KEY_REVOKE2, }; static const esp_efuse_desc_t WR_DIS_KEY0_PURPOSE[] = { {EFUSE_BLK0, 8, 1}, // Write protection for key_purpose. KEY0, }; static const esp_efuse_desc_t WR_DIS_KEY1_PURPOSE[] = { {EFUSE_BLK0, 9, 1}, // Write protection for key_purpose. KEY1, }; static const esp_efuse_desc_t WR_DIS_KEY2_PURPOSE[] = { {EFUSE_BLK0, 10, 1}, // Write protection for key_purpose. KEY2, }; static const esp_efuse_desc_t WR_DIS_KEY3_PURPOSE[] = { {EFUSE_BLK0, 11, 1}, // Write protection for key_purpose. KEY3, }; static const esp_efuse_desc_t WR_DIS_KEY4_PURPOSE[] = { {EFUSE_BLK0, 12, 1}, // Write protection for key_purpose. KEY4, }; static const esp_efuse_desc_t WR_DIS_KEY5_PURPOSE[] = { {EFUSE_BLK0, 13, 1}, // Write protection for key_purpose. KEY5, }; static const esp_efuse_desc_t WR_DIS_GROUP_3[] = { {EFUSE_BLK0, 14, 1}, // Write protection for SEC_DPA_LEVEL CRYPT_DPA_ENABLE, }; static const esp_efuse_desc_t WR_DIS_SECURE_BOOT_EN[] = { {EFUSE_BLK0, 15, 1}, // Write protection for SECURE_BOOT_EN, }; static const esp_efuse_desc_t WR_DIS_SECURE_BOOT_AGGRESSIVE_REVOKE[] = { {EFUSE_BLK0, 16, 1}, // Write protection for SECURE_BOOT_AGGRESSIVE_REVOKE, }; static const esp_efuse_desc_t WR_DIS_ECDSA_FORCE_USE_HARDWARE_K[] = { {EFUSE_BLK0, 17, 1}, // Write protection for ECDSA_FORCE_USE_HARDWARE_K, }; static const esp_efuse_desc_t WR_DIS_GROUP_4[] = { {EFUSE_BLK0, 18, 1}, // Write protection for FLASH_TYPE FLASH_PAGE_SIZE FLASH_ECC_EN DIS_USB_OTG_DOWNLOAD_MODE FLASH_TPUW DIS_DOWNLOAD_MODE DIS_DIRECT_BOOT DIS_USB_SERIAL_JTAG_ROM_PRINT DIS_USB_SERIAL_JTAG_DOWNLOAD_MODE ENABLE_SECURITY_DOWNLOAD UART_PRINT_CONTROL FORCE_SEND_RESUME SECURE_VERSION SECURE_BOOT_DISABLE_FAST_WAKE, }; static const esp_efuse_desc_t WR_DIS_HUK_GEN_STATE[] = { {EFUSE_BLK0, 19, 1}, // Write protection for HUK_GEN_STATE, }; static const esp_efuse_desc_t WR_DIS_BLK1[] = { {EFUSE_BLK0, 20, 1}, // Write protection for EFUSE_BLK1. MAC_SPI_8M_SYS, }; static const esp_efuse_desc_t WR_DIS_SYS_DATA_PART1[] = { {EFUSE_BLK0, 21, 1}, // Write protection for EFUSE_BLK2. SYS_DATA_PART1, }; static const esp_efuse_desc_t WR_DIS_USER_DATA[] = { {EFUSE_BLK0, 22, 1}, // Write protection for EFUSE_BLK3. USER_DATA, }; static const esp_efuse_desc_t WR_DIS_KEY0[] = { {EFUSE_BLK0, 23, 1}, // Write protection for EFUSE_BLK4. KEY0, }; static const esp_efuse_desc_t WR_DIS_KEY1[] = { {EFUSE_BLK0, 24, 1}, // Write protection for EFUSE_BLK5. KEY1, }; static const esp_efuse_desc_t WR_DIS_KEY2[] = { {EFUSE_BLK0, 25, 1}, // Write protection for EFUSE_BLK6. KEY2, }; static const esp_efuse_desc_t WR_DIS_KEY3[] = { {EFUSE_BLK0, 26, 1}, // Write protection for EFUSE_BLK7. KEY3, }; static const esp_efuse_desc_t WR_DIS_KEY4[] = { {EFUSE_BLK0, 27, 1}, // Write protection for EFUSE_BLK8. KEY4, }; static const esp_efuse_desc_t WR_DIS_KEY5[] = { {EFUSE_BLK0, 28, 1}, // Write protection for EFUSE_BLK9. KEY5, }; static const esp_efuse_desc_t WR_DIS_SYS_DATA_PART2[] = { {EFUSE_BLK0, 29, 1}, // Write protection for EFUSE_BLK10. SYS_DATA_PART2, }; static const esp_efuse_desc_t WR_DIS_GROUP_5[] = { {EFUSE_BLK0, 30, 1}, // Write protection for USB_DEVICE_EXCHG_PINS USB_OTG11_EXCHG_PINS USB_DEVICE_DREFH USB_OTG11_DREFH USB_PHY_SEL USB_DEVICE_DREFL USB_OTG11_DREFL, }; static const esp_efuse_desc_t WR_DIS_SOFT_DIS_JTAG[] = { {EFUSE_BLK0, 31, 1}, // Write protection for SOFT_DIS_JTAG, }; static const esp_efuse_desc_t RD_DIS[] = { {EFUSE_BLK0, 32, 7}, // Read protection, }; static const esp_efuse_desc_t RD_DIS_KEY0[] = { {EFUSE_BLK0, 32, 1}, // Read protection for EFUSE_BLK4. KEY0, }; static const esp_efuse_desc_t RD_DIS_KEY1[] = { {EFUSE_BLK0, 33, 1}, // Read protection for EFUSE_BLK5. KEY1, }; static const esp_efuse_desc_t RD_DIS_KEY2[] = { {EFUSE_BLK0, 34, 1}, // Read protection for EFUSE_BLK6. KEY2, }; static const esp_efuse_desc_t RD_DIS_KEY3[] = { {EFUSE_BLK0, 35, 1}, // Read protection for EFUSE_BLK7. KEY3, }; static const esp_efuse_desc_t RD_DIS_KEY4[] = { {EFUSE_BLK0, 36, 1}, // Read protection for EFUSE_BLK8. KEY4, }; static const esp_efuse_desc_t RD_DIS_KEY5[] = { {EFUSE_BLK0, 37, 1}, // Read protection for EFUSE_BLK9. KEY5, }; static const esp_efuse_desc_t RD_DIS_SYS_DATA_PART2[] = { {EFUSE_BLK0, 38, 1}, // Read protection for EFUSE_BLK10. SYS_DATA_PART2, }; static const esp_efuse_desc_t USB_DEVICE_EXCHG_PINS[] = { {EFUSE_BLK0, 39, 1}, // USB-device exchange pins, }; static const esp_efuse_desc_t USB_OTG11_EXCHG_PINS[] = { {EFUSE_BLK0, 40, 1}, // USB-otg11 change pins, }; static const esp_efuse_desc_t DIS_USB_JTAG[] = { {EFUSE_BLK0, 41, 1}, // Disable USB JTAG, }; static const esp_efuse_desc_t POWERGLITCH_EN[] = { {EFUSE_BLK0, 42, 1}, // Power glitch enable, }; static const esp_efuse_desc_t DIS_USB_SERIAL_JTAG[] = { {EFUSE_BLK0, 43, 1}, // Disable USB_SERIAL_JTAG, }; static const esp_efuse_desc_t DIS_FORCE_DOWNLOAD[] = { {EFUSE_BLK0, 44, 1}, // Disable force chip go to download mode function, }; static const esp_efuse_desc_t DIS_SPI_DOWNLOAD_MSPI[] = { {EFUSE_BLK0, 45, 1}, // Represents whether the SPI0 controller is disabled in boot_mode_download, }; static const esp_efuse_desc_t DIS_TWAI[] = { {EFUSE_BLK0, 46, 1}, // Disable TWAI function, }; static const esp_efuse_desc_t JTAG_SEL_ENABLE[] = { {EFUSE_BLK0, 47, 1}, // Set this bit to enable selection between usb_to_jtag and pad_to_jtag through strapping gpio10 when both reg_dis_usb_jtag and reg_dis_pad_jtag are equal to 0., }; static const esp_efuse_desc_t SOFT_DIS_JTAG[] = { {EFUSE_BLK0, 48, 3}, // Set these bits to soft disable JTAG (odd number 1 means disable). JTAG can be enabled in HMAC module., }; static const esp_efuse_desc_t DIS_PAD_JTAG[] = { {EFUSE_BLK0, 51, 1}, // Hard disable JTAG. JTAG is disabled permanently., }; static const esp_efuse_desc_t DIS_DOWNLOAD_MANUAL_ENCRYPT[] = { {EFUSE_BLK0, 52, 1}, // Disable flash encryption when in download boot modes., }; static const esp_efuse_desc_t USB_DEVICE_DREFH[] = { {EFUSE_BLK0, 53, 2}, // USB-device drefh, }; static const esp_efuse_desc_t USB_OTG11_DREFH[] = { {EFUSE_BLK0, 55, 2}, // USB-otg11 drefh, }; static const esp_efuse_desc_t USB_PHY_SEL[] = { {EFUSE_BLK0, 57, 1}, // Select usb phy, }; static const esp_efuse_desc_t HUK_GEN_STATE[] = { {EFUSE_BLK0, 58, 9}, // HUK generator state, }; static const esp_efuse_desc_t KM_RND_SWITCH_CYCLE[] = { {EFUSE_BLK0, 67, 2}, // km random switch cycle, }; static const esp_efuse_desc_t KM_DEPLOY_ONLY_ONCE[] = { {EFUSE_BLK0, 69, 4}, // km deploy only once, }; static const esp_efuse_desc_t FORCE_USE_KEY_MANAGER_KEY[] = { {EFUSE_BLK0, 73, 4}, // force use key manager key, }; static const esp_efuse_desc_t FORCE_DISABLE_SW_INIT_KEY[] = { {EFUSE_BLK0, 77, 1}, // force disable software init key, }; static const esp_efuse_desc_t WDT_DELAY_SEL[] = { {EFUSE_BLK0, 80, 2}, // watchdog delay selection, }; static const esp_efuse_desc_t SPI_BOOT_CRYPT_CNT[] = { {EFUSE_BLK0, 82, 3}, // spi boot encryption counter, }; static const esp_efuse_desc_t SECURE_BOOT_KEY_REVOKE0[] = { {EFUSE_BLK0, 85, 1}, // Enable revoke first secure boot key, }; static const esp_efuse_desc_t SECURE_BOOT_KEY_REVOKE1[] = { {EFUSE_BLK0, 86, 1}, // Enable revoke second secure boot key, }; static const esp_efuse_desc_t SECURE_BOOT_KEY_REVOKE2[] = { {EFUSE_BLK0, 87, 1}, // Enable revoke third secure boot key, }; static const esp_efuse_desc_t KEY_PURPOSE_0[] = { {EFUSE_BLK0, 88, 4}, // Key0 purpose, }; static const esp_efuse_desc_t KEY_PURPOSE_1[] = { {EFUSE_BLK0, 92, 4}, // Key1 purpose, }; static const esp_efuse_desc_t KEY_PURPOSE_2[] = { {EFUSE_BLK0, 96, 4}, // Key2 purpose, }; static const esp_efuse_desc_t KEY_PURPOSE_3[] = { {EFUSE_BLK0, 100, 4}, // Key3 purpose, }; static const esp_efuse_desc_t KEY_PURPOSE_4[] = { {EFUSE_BLK0, 104, 4}, // Key4 purpose, }; static const esp_efuse_desc_t KEY_PURPOSE_5[] = { {EFUSE_BLK0, 108, 4}, // Key5 purpose, }; static const esp_efuse_desc_t SEC_DPA_LEVEL[] = { {EFUSE_BLK0, 112, 2}, // Configures the clock random divide mode to determine the DPA security level, }; static const esp_efuse_desc_t ECDSA_FORCE_USE_HARDWARE_K[] = { {EFUSE_BLK0, 114, 1}, // ecdsa force use hardware key, }; static const esp_efuse_desc_t CRYPT_DPA_ENABLE[] = { {EFUSE_BLK0, 115, 1}, // Represents whether defense against DPA attack is enabled, }; static const esp_efuse_desc_t SECURE_BOOT_EN[] = { {EFUSE_BLK0, 116, 1}, // Secure boot enable, }; static const esp_efuse_desc_t SECURE_BOOT_AGGRESSIVE_REVOKE[] = { {EFUSE_BLK0, 117, 1}, // Enable aggressive secure boot revoke, }; static const esp_efuse_desc_t FLASH_TYPE[] = { {EFUSE_BLK0, 119, 1}, // flash type, }; static const esp_efuse_desc_t FLASH_PAGE_SIZE[] = { {EFUSE_BLK0, 120, 2}, // flash page size, }; static const esp_efuse_desc_t FLASH_ECC_EN[] = { {EFUSE_BLK0, 122, 1}, // flash ecc enable, }; static const esp_efuse_desc_t DIS_USB_OTG_DOWNLOAD_MODE[] = { {EFUSE_BLK0, 123, 1}, // disable use otg download mode, }; static const esp_efuse_desc_t FLASH_TPUW[] = { {EFUSE_BLK0, 124, 4}, // flash tpuw, }; static const esp_efuse_desc_t DIS_DOWNLOAD_MODE[] = { {EFUSE_BLK0, 128, 1}, // Disble download mode, }; static const esp_efuse_desc_t DIS_DIRECT_BOOT[] = { {EFUSE_BLK0, 129, 1}, // Disable direct boot mode, }; static const esp_efuse_desc_t DIS_USB_SERIAL_JTAG_ROM_PRINT[] = { {EFUSE_BLK0, 130, 1}, // Represents whether print from USB-Serial-JTAG during ROM boot is disabled, }; static const esp_efuse_desc_t DIS_USB_SERIAL_JTAG_DOWNLOAD_MODE[] = { {EFUSE_BLK0, 132, 1}, // Represents whether the USB-Serial-JTAG download func- tion is disabled, }; static const esp_efuse_desc_t ENABLE_SECURITY_DOWNLOAD[] = { {EFUSE_BLK0, 133, 1}, // Enable secure download mode, }; static const esp_efuse_desc_t UART_PRINT_CONTROL[] = { {EFUSE_BLK0, 134, 2}, // b00:force print. b01:control by GPIO8 - low level print. b10:control by GPIO8 - high level print. b11:force disable print., }; static const esp_efuse_desc_t FORCE_SEND_RESUME[] = { {EFUSE_BLK0, 136, 1}, // Force ROM code to send a resume command during SPI boot, }; static const esp_efuse_desc_t SECURE_VERSION[] = { {EFUSE_BLK0, 137, 16}, // Secure version for anti-rollback, }; static const esp_efuse_desc_t SECURE_BOOT_DISABLE_FAST_WAKE[] = { {EFUSE_BLK0, 153, 1}, // Represents whether FAST VERIFY ON WAKE is disabled or enabled when Secure Boot is enabled, }; static const esp_efuse_desc_t HYS_EN_PAD[] = { {EFUSE_BLK0, 154, 1}, // Hys en pad, }; static const esp_efuse_desc_t DCDC_VSET[] = { {EFUSE_BLK0, 155, 5}, // dcdc vset, }; static const esp_efuse_desc_t _0PXA_TIEH_SEL_0[] = { {EFUSE_BLK0, 160, 2}, // 0pxa tieh sel0, }; static const esp_efuse_desc_t _0PXA_TIEH_SEL_1[] = { {EFUSE_BLK0, 162, 2}, // 0pxa tieh sel1, }; static const esp_efuse_desc_t _0PXA_TIEH_SEL_2[] = { {EFUSE_BLK0, 164, 2}, // 0pxa tieh sel2, }; static const esp_efuse_desc_t _0PXA_TIEH_SEL_3[] = { {EFUSE_BLK0, 166, 2}, // 0pxa tieh sel3, }; static const esp_efuse_desc_t USB_DEVICE_DREFL[] = { {EFUSE_BLK0, 172, 2}, // usb device drefl, }; static const esp_efuse_desc_t USB_OTG11_DREFL[] = { {EFUSE_BLK0, 174, 2}, // usb otg1.1 drefl, }; static const esp_efuse_desc_t HP_PWR_SRC_SEL[] = { {EFUSE_BLK0, 178, 1}, // hp power source selection, }; static const esp_efuse_desc_t DCDC_VSET_EN[] = { {EFUSE_BLK0, 179, 1}, // dcdc vset enable, }; static const esp_efuse_desc_t DIS_WDT[] = { {EFUSE_BLK0, 180, 1}, // disable watchdog, }; static const esp_efuse_desc_t DIS_SWD[] = { {EFUSE_BLK0, 181, 1}, // disable super watchdog, }; static const esp_efuse_desc_t MAC_FACTORY[] = { {EFUSE_BLK1, 40, 8}, // Factory MAC addr [0], {EFUSE_BLK1, 32, 8}, // Factory MAC addr [1], {EFUSE_BLK1, 24, 8}, // Factory MAC addr [2], {EFUSE_BLK1, 16, 8}, // Factory MAC addr [3], {EFUSE_BLK1, 8, 8}, // Factory MAC addr [4], {EFUSE_BLK1, 0, 8}, // Factory MAC addr [5], }; static const esp_efuse_desc_t MAC_EXT[] = { {EFUSE_BLK1, 48, 8}, // Extend MAC addr [0], {EFUSE_BLK1, 56, 8}, // Extend MAC addr [1], }; static const esp_efuse_desc_t WAFER_VERSION_MINOR[] = { {EFUSE_BLK1, 114, 3}, // WAFER_VERSION_MINOR least significant bits, {EFUSE_BLK1, 183, 1}, // WAFER_VERSION_MINOR most significant bit, }; static const esp_efuse_desc_t PKG_VERSION[] = { {EFUSE_BLK1, 117, 3}, // Package version 0:ESP32C3, }; static const esp_efuse_desc_t BLK_VERSION_MINOR[] = { {EFUSE_BLK1, 120, 3}, // BLK_VERSION_MINOR, }; static const esp_efuse_desc_t OPTIONAL_UNIQUE_ID[] = { {EFUSE_BLK2, 0, 128}, // Optional unique 128-bit ID, }; static const esp_efuse_desc_t BLK_VERSION_MAJOR[] = { {EFUSE_BLK2, 128, 2}, // BLK_VERSION_MAJOR of BLOCK2, }; static const esp_efuse_desc_t TEMP_CALIB[] = { {EFUSE_BLK2, 131, 9}, // Temperature calibration data, }; static const esp_efuse_desc_t OCODE[] = { {EFUSE_BLK2, 140, 8}, // ADC OCode, }; static const esp_efuse_desc_t ADC1_INIT_CODE_ATTEN0[] = { {EFUSE_BLK2, 148, 10}, // ADC1 init code at atten0, }; static const esp_efuse_desc_t ADC1_INIT_CODE_ATTEN1[] = { {EFUSE_BLK2, 158, 10}, // ADC1 init code at atten1, }; static const esp_efuse_desc_t ADC1_INIT_CODE_ATTEN2[] = { {EFUSE_BLK2, 168, 10}, // ADC1 init code at atten2, }; static const esp_efuse_desc_t ADC1_INIT_CODE_ATTEN3[] = { {EFUSE_BLK2, 178, 10}, // ADC1 init code at atten3, }; static const esp_efuse_desc_t ADC1_CAL_VOL_ATTEN0[] = { {EFUSE_BLK2, 188, 10}, // ADC1 calibration voltage at atten0, }; static const esp_efuse_desc_t ADC1_CAL_VOL_ATTEN1[] = { {EFUSE_BLK2, 198, 10}, // ADC1 calibration voltage at atten1, }; static const esp_efuse_desc_t ADC1_CAL_VOL_ATTEN2[] = { {EFUSE_BLK2, 208, 10}, // ADC1 calibration voltage at atten2, }; static const esp_efuse_desc_t ADC1_CAL_VOL_ATTEN3[] = { {EFUSE_BLK2, 218, 10}, // ADC1 calibration voltage at atten3, }; static const esp_efuse_desc_t USER_DATA[] = { {EFUSE_BLK3, 0, 256}, // User data, }; static const esp_efuse_desc_t USER_DATA_MAC_CUSTOM[] = { {EFUSE_BLK3, 200, 48}, // Custom MAC, }; static const esp_efuse_desc_t KEY0[] = { {EFUSE_BLK4, 0, 256}, // Key0 or user data, }; static const esp_efuse_desc_t KEY1[] = { {EFUSE_BLK5, 0, 256}, // Key1 or user data, }; static const esp_efuse_desc_t KEY2[] = { {EFUSE_BLK6, 0, 256}, // Key2 or user data, }; static const esp_efuse_desc_t KEY3[] = { {EFUSE_BLK7, 0, 256}, // Key3 or user data, }; static const esp_efuse_desc_t KEY4[] = { {EFUSE_BLK8, 0, 256}, // Key4 or user data, }; static const esp_efuse_desc_t KEY5[] = { {EFUSE_BLK9, 0, 256}, // Key5 or user data, }; static const esp_efuse_desc_t SYS_DATA_PART2[] = { {EFUSE_BLK10, 0, 256}, // System configuration, }; static const esp_efuse_desc_t K_RTC_LDO[] = { {EFUSE_BLK1, 135, 7}, // BLOCK1 K_RTC_LDO, }; static const esp_efuse_desc_t K_DIG_LDO[] = { {EFUSE_BLK1, 142, 7}, // BLOCK1 K_DIG_LDO, }; static const esp_efuse_desc_t V_RTC_DBIAS20[] = { {EFUSE_BLK1, 149, 8}, // BLOCK1 voltage of rtc dbias20, }; static const esp_efuse_desc_t V_DIG_DBIAS20[] = { {EFUSE_BLK1, 157, 8}, // BLOCK1 voltage of digital dbias20, }; static const esp_efuse_desc_t DIG_DBIAS_HVT[] = { {EFUSE_BLK1, 165, 5}, // BLOCK1 digital dbias when hvt, }; static const esp_efuse_desc_t THRES_HVT[] = { {EFUSE_BLK1, 170, 10}, // BLOCK1 pvt threshold when hvt, }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS[] = { &WR_DIS[0], // Write protection NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_RD_DIS[] = { &WR_DIS_RD_DIS[0], // Write protection for RD_DIS_KEY0 RD_DIS_KEY1 RD_DIS_KEY2 RD_DIS_KEY3 RD_DIS_KEY4 RD_DIS_KEY5 RD_DIS_SYS_DATA_PART2 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_GROUP_1[] = { &WR_DIS_GROUP_1[0], // Write protection for KM_RND_SWITCH_CYCLE KM_DEPLOY_ONLY_ONCE FORCE_USE_KEY_MANAGER_KEY FORCE_DISABLE_SW_INIT_KEY NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_GROUP_2[] = { &WR_DIS_GROUP_2[0], // Write protection for DIS_USB_JTAG POWERGLITCH_EN DIS_USB_DERIAL_JTAG DIS_FORCE_DOWNLOAD DIS_TWAI JTAG_SEL_ENABLE DIS_PAD_JTAG DIS_DOWNLOAD_MANUAL_ENCRYPT WDT_DELAY_SEL HYS_EN_PAD _0PXA_TIEH_SEL_0 _0PXA_TIEH_SEL_1 _0PXA_TIEH_SEL_2 _0PXA_TIEH_SEL_3 DIS_WDT DIS_SWD NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_HP_PWR_SRC_SEL[] = { &WR_DIS_HP_PWR_SRC_SEL[0], // Write protection for HP_PWR_SRC_SEL NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_SPI_BOOT_CRYPT_CNT[] = { &WR_DIS_SPI_BOOT_CRYPT_CNT[0], // Write protection for SPI_BOOT_CRYPT_CNT NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_SECURE_BOOT_KEY_REVOKE0[] = { &WR_DIS_SECURE_BOOT_KEY_REVOKE0[0], // Write protection for SECURE_BOOT_KEY_REVOKE0 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_SECURE_BOOT_KEY_REVOKE1[] = { &WR_DIS_SECURE_BOOT_KEY_REVOKE1[0], // Write protection for SECURE_BOOT_KEY_REVOKE1 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_SECURE_BOOT_KEY_REVOKE2[] = { &WR_DIS_SECURE_BOOT_KEY_REVOKE2[0], // Write protection for SECURE_BOOT_KEY_REVOKE2 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_KEY0_PURPOSE[] = { &WR_DIS_KEY0_PURPOSE[0], // Write protection for key_purpose. KEY0 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_KEY1_PURPOSE[] = { &WR_DIS_KEY1_PURPOSE[0], // Write protection for key_purpose. KEY1 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_KEY2_PURPOSE[] = { &WR_DIS_KEY2_PURPOSE[0], // Write protection for key_purpose. KEY2 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_KEY3_PURPOSE[] = { &WR_DIS_KEY3_PURPOSE[0], // Write protection for key_purpose. KEY3 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_KEY4_PURPOSE[] = { &WR_DIS_KEY4_PURPOSE[0], // Write protection for key_purpose. KEY4 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_KEY5_PURPOSE[] = { &WR_DIS_KEY5_PURPOSE[0], // Write protection for key_purpose. KEY5 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_GROUP_3[] = { &WR_DIS_GROUP_3[0], // Write protection for SEC_DPA_LEVEL CRYPT_DPA_ENABLE NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_SECURE_BOOT_EN[] = { &WR_DIS_SECURE_BOOT_EN[0], // Write protection for SECURE_BOOT_EN NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_SECURE_BOOT_AGGRESSIVE_REVOKE[] = { &WR_DIS_SECURE_BOOT_AGGRESSIVE_REVOKE[0], // Write protection for SECURE_BOOT_AGGRESSIVE_REVOKE NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_ECDSA_FORCE_USE_HARDWARE_K[] = { &WR_DIS_ECDSA_FORCE_USE_HARDWARE_K[0], // Write protection for ECDSA_FORCE_USE_HARDWARE_K NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_GROUP_4[] = { &WR_DIS_GROUP_4[0], // Write protection for FLASH_TYPE FLASH_PAGE_SIZE FLASH_ECC_EN DIS_USB_OTG_DOWNLOAD_MODE FLASH_TPUW DIS_DOWNLOAD_MODE DIS_DIRECT_BOOT DIS_USB_SERIAL_JTAG_ROM_PRINT DIS_USB_SERIAL_JTAG_DOWNLOAD_MODE ENABLE_SECURITY_DOWNLOAD UART_PRINT_CONTROL FORCE_SEND_RESUME SECURE_VERSION SECURE_BOOT_DISABLE_FAST_WAKE NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_HUK_GEN_STATE[] = { &WR_DIS_HUK_GEN_STATE[0], // Write protection for HUK_GEN_STATE NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_BLK1[] = { &WR_DIS_BLK1[0], // Write protection for EFUSE_BLK1. MAC_SPI_8M_SYS NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_SYS_DATA_PART1[] = { &WR_DIS_SYS_DATA_PART1[0], // Write protection for EFUSE_BLK2. SYS_DATA_PART1 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_USER_DATA[] = { &WR_DIS_USER_DATA[0], // Write protection for EFUSE_BLK3. USER_DATA NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_KEY0[] = { &WR_DIS_KEY0[0], // Write protection for EFUSE_BLK4. KEY0 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_KEY1[] = { &WR_DIS_KEY1[0], // Write protection for EFUSE_BLK5. KEY1 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_KEY2[] = { &WR_DIS_KEY2[0], // Write protection for EFUSE_BLK6. KEY2 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_KEY3[] = { &WR_DIS_KEY3[0], // Write protection for EFUSE_BLK7. KEY3 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_KEY4[] = { &WR_DIS_KEY4[0], // Write protection for EFUSE_BLK8. KEY4 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_KEY5[] = { &WR_DIS_KEY5[0], // Write protection for EFUSE_BLK9. KEY5 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_SYS_DATA_PART2[] = { &WR_DIS_SYS_DATA_PART2[0], // Write protection for EFUSE_BLK10. SYS_DATA_PART2 NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_GROUP_5[] = { &WR_DIS_GROUP_5[0], // Write protection for USB_DEVICE_EXCHG_PINS USB_OTG11_EXCHG_PINS USB_DEVICE_DREFH USB_OTG11_DREFH USB_PHY_SEL USB_DEVICE_DREFL USB_OTG11_DREFL NULL }; const esp_efuse_desc_t* ESP_EFUSE_WR_DIS_SOFT_DIS_JTAG[] = { &WR_DIS_SOFT_DIS_JTAG[0], // Write protection for SOFT_DIS_JTAG NULL }; const esp_efuse_desc_t* ESP_EFUSE_RD_DIS[] = { &RD_DIS[0], // Read protection NULL }; const esp_efuse_desc_t* ESP_EFUSE_RD_DIS_KEY0[] = { &RD_DIS_KEY0[0], // Read protection for EFUSE_BLK4. KEY0 NULL }; const esp_efuse_desc_t* ESP_EFUSE_RD_DIS_KEY1[] = { &RD_DIS_KEY1[0], // Read protection for EFUSE_BLK5. KEY1 NULL }; const esp_efuse_desc_t* ESP_EFUSE_RD_DIS_KEY2[] = { &RD_DIS_KEY2[0], // Read protection for EFUSE_BLK6. KEY2 NULL }; const esp_efuse_desc_t* ESP_EFUSE_RD_DIS_KEY3[] = { &RD_DIS_KEY3[0], // Read protection for EFUSE_BLK7. KEY3 NULL }; const esp_efuse_desc_t* ESP_EFUSE_RD_DIS_KEY4[] = { &RD_DIS_KEY4[0], // Read protection for EFUSE_BLK8. KEY4 NULL }; const esp_efuse_desc_t* ESP_EFUSE_RD_DIS_KEY5[] = { &RD_DIS_KEY5[0], // Read protection for EFUSE_BLK9. KEY5 NULL }; const esp_efuse_desc_t* ESP_EFUSE_RD_DIS_SYS_DATA_PART2[] = { &RD_DIS_SYS_DATA_PART2[0], // Read protection for EFUSE_BLK10. SYS_DATA_PART2 NULL }; const esp_efuse_desc_t* ESP_EFUSE_USB_DEVICE_EXCHG_PINS[] = { &USB_DEVICE_EXCHG_PINS[0], // USB-device exchange pins NULL }; const esp_efuse_desc_t* ESP_EFUSE_USB_OTG11_EXCHG_PINS[] = { &USB_OTG11_EXCHG_PINS[0], // USB-otg11 change pins NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIS_USB_JTAG[] = { &DIS_USB_JTAG[0], // Disable USB JTAG NULL }; const esp_efuse_desc_t* ESP_EFUSE_POWERGLITCH_EN[] = { &POWERGLITCH_EN[0], // Power glitch enable NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIS_USB_SERIAL_JTAG[] = { &DIS_USB_SERIAL_JTAG[0], // Disable USB_SERIAL_JTAG NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIS_FORCE_DOWNLOAD[] = { &DIS_FORCE_DOWNLOAD[0], // Disable force chip go to download mode function NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIS_SPI_DOWNLOAD_MSPI[] = { &DIS_SPI_DOWNLOAD_MSPI[0], // Represents whether the SPI0 controller is disabled in boot_mode_download NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIS_TWAI[] = { &DIS_TWAI[0], // Disable TWAI function NULL }; const esp_efuse_desc_t* ESP_EFUSE_JTAG_SEL_ENABLE[] = { &JTAG_SEL_ENABLE[0], // Set this bit to enable selection between usb_to_jtag and pad_to_jtag through strapping gpio10 when both reg_dis_usb_jtag and reg_dis_pad_jtag are equal to 0. NULL }; const esp_efuse_desc_t* ESP_EFUSE_SOFT_DIS_JTAG[] = { &SOFT_DIS_JTAG[0], // Set these bits to soft disable JTAG (odd number 1 means disable). JTAG can be enabled in HMAC module. NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIS_PAD_JTAG[] = { &DIS_PAD_JTAG[0], // Hard disable JTAG. JTAG is disabled permanently. NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIS_DOWNLOAD_MANUAL_ENCRYPT[] = { &DIS_DOWNLOAD_MANUAL_ENCRYPT[0], // Disable flash encryption when in download boot modes. NULL }; const esp_efuse_desc_t* ESP_EFUSE_USB_DEVICE_DREFH[] = { &USB_DEVICE_DREFH[0], // USB-device drefh NULL }; const esp_efuse_desc_t* ESP_EFUSE_USB_OTG11_DREFH[] = { &USB_OTG11_DREFH[0], // USB-otg11 drefh NULL }; const esp_efuse_desc_t* ESP_EFUSE_USB_PHY_SEL[] = { &USB_PHY_SEL[0], // Select usb phy NULL }; const esp_efuse_desc_t* ESP_EFUSE_HUK_GEN_STATE[] = { &HUK_GEN_STATE[0], // HUK generator state NULL }; const esp_efuse_desc_t* ESP_EFUSE_KM_RND_SWITCH_CYCLE[] = { &KM_RND_SWITCH_CYCLE[0], // km random switch cycle NULL }; const esp_efuse_desc_t* ESP_EFUSE_KM_DEPLOY_ONLY_ONCE[] = { &KM_DEPLOY_ONLY_ONCE[0], // km deploy only once NULL }; const esp_efuse_desc_t* ESP_EFUSE_FORCE_USE_KEY_MANAGER_KEY[] = { &FORCE_USE_KEY_MANAGER_KEY[0], // force use key manager key NULL }; const esp_efuse_desc_t* ESP_EFUSE_FORCE_DISABLE_SW_INIT_KEY[] = { &FORCE_DISABLE_SW_INIT_KEY[0], // force disable software init key NULL }; const esp_efuse_desc_t* ESP_EFUSE_WDT_DELAY_SEL[] = { &WDT_DELAY_SEL[0], // watchdog delay selection NULL }; const esp_efuse_desc_t* ESP_EFUSE_SPI_BOOT_CRYPT_CNT[] = { &SPI_BOOT_CRYPT_CNT[0], // spi boot encryption counter NULL }; const esp_efuse_desc_t* ESP_EFUSE_SECURE_BOOT_KEY_REVOKE0[] = { &SECURE_BOOT_KEY_REVOKE0[0], // Enable revoke first secure boot key NULL }; const esp_efuse_desc_t* ESP_EFUSE_SECURE_BOOT_KEY_REVOKE1[] = { &SECURE_BOOT_KEY_REVOKE1[0], // Enable revoke second secure boot key NULL }; const esp_efuse_desc_t* ESP_EFUSE_SECURE_BOOT_KEY_REVOKE2[] = { &SECURE_BOOT_KEY_REVOKE2[0], // Enable revoke third secure boot key NULL }; const esp_efuse_desc_t* ESP_EFUSE_KEY_PURPOSE_0[] = { &KEY_PURPOSE_0[0], // Key0 purpose NULL }; const esp_efuse_desc_t* ESP_EFUSE_KEY_PURPOSE_1[] = { &KEY_PURPOSE_1[0], // Key1 purpose NULL }; const esp_efuse_desc_t* ESP_EFUSE_KEY_PURPOSE_2[] = { &KEY_PURPOSE_2[0], // Key2 purpose NULL }; const esp_efuse_desc_t* ESP_EFUSE_KEY_PURPOSE_3[] = { &KEY_PURPOSE_3[0], // Key3 purpose NULL }; const esp_efuse_desc_t* ESP_EFUSE_KEY_PURPOSE_4[] = { &KEY_PURPOSE_4[0], // Key4 purpose NULL }; const esp_efuse_desc_t* ESP_EFUSE_KEY_PURPOSE_5[] = { &KEY_PURPOSE_5[0], // Key5 purpose NULL }; const esp_efuse_desc_t* ESP_EFUSE_SEC_DPA_LEVEL[] = { &SEC_DPA_LEVEL[0], // Configures the clock random divide mode to determine the DPA security level NULL }; const esp_efuse_desc_t* ESP_EFUSE_ECDSA_FORCE_USE_HARDWARE_K[] = { &ECDSA_FORCE_USE_HARDWARE_K[0], // ecdsa force use hardware key NULL }; const esp_efuse_desc_t* ESP_EFUSE_CRYPT_DPA_ENABLE[] = { &CRYPT_DPA_ENABLE[0], // Represents whether defense against DPA attack is enabled NULL }; const esp_efuse_desc_t* ESP_EFUSE_SECURE_BOOT_EN[] = { &SECURE_BOOT_EN[0], // Secure boot enable NULL }; const esp_efuse_desc_t* ESP_EFUSE_SECURE_BOOT_AGGRESSIVE_REVOKE[] = { &SECURE_BOOT_AGGRESSIVE_REVOKE[0], // Enable aggressive secure boot revoke NULL }; const esp_efuse_desc_t* ESP_EFUSE_FLASH_TYPE[] = { &FLASH_TYPE[0], // flash type NULL }; const esp_efuse_desc_t* ESP_EFUSE_FLASH_PAGE_SIZE[] = { &FLASH_PAGE_SIZE[0], // flash page size NULL }; const esp_efuse_desc_t* ESP_EFUSE_FLASH_ECC_EN[] = { &FLASH_ECC_EN[0], // flash ecc enable NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIS_USB_OTG_DOWNLOAD_MODE[] = { &DIS_USB_OTG_DOWNLOAD_MODE[0], // disable use otg download mode NULL }; const esp_efuse_desc_t* ESP_EFUSE_FLASH_TPUW[] = { &FLASH_TPUW[0], // flash tpuw NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIS_DOWNLOAD_MODE[] = { &DIS_DOWNLOAD_MODE[0], // Disble download mode NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIS_DIRECT_BOOT[] = { &DIS_DIRECT_BOOT[0], // Disable direct boot mode NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIS_USB_SERIAL_JTAG_ROM_PRINT[] = { &DIS_USB_SERIAL_JTAG_ROM_PRINT[0], // Represents whether print from USB-Serial-JTAG during ROM boot is disabled NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIS_USB_SERIAL_JTAG_DOWNLOAD_MODE[] = { &DIS_USB_SERIAL_JTAG_DOWNLOAD_MODE[0], // Represents whether the USB-Serial-JTAG download func- tion is disabled NULL }; const esp_efuse_desc_t* ESP_EFUSE_ENABLE_SECURITY_DOWNLOAD[] = { &ENABLE_SECURITY_DOWNLOAD[0], // Enable secure download mode NULL }; const esp_efuse_desc_t* ESP_EFUSE_UART_PRINT_CONTROL[] = { &UART_PRINT_CONTROL[0], // b00:force print. b01:control by GPIO8 - low level print. b10:control by GPIO8 - high level print. b11:force disable print. NULL }; const esp_efuse_desc_t* ESP_EFUSE_FORCE_SEND_RESUME[] = { &FORCE_SEND_RESUME[0], // Force ROM code to send a resume command during SPI boot NULL }; const esp_efuse_desc_t* ESP_EFUSE_SECURE_VERSION[] = { &SECURE_VERSION[0], // Secure version for anti-rollback NULL }; const esp_efuse_desc_t* ESP_EFUSE_SECURE_BOOT_DISABLE_FAST_WAKE[] = { &SECURE_BOOT_DISABLE_FAST_WAKE[0], // Represents whether FAST VERIFY ON WAKE is disabled or enabled when Secure Boot is enabled NULL }; const esp_efuse_desc_t* ESP_EFUSE_HYS_EN_PAD[] = { &HYS_EN_PAD[0], // Hys en pad NULL }; const esp_efuse_desc_t* ESP_EFUSE_DCDC_VSET[] = { &DCDC_VSET[0], // dcdc vset NULL }; const esp_efuse_desc_t* ESP_EFUSE__0PXA_TIEH_SEL_0[] = { &_0PXA_TIEH_SEL_0[0], // 0pxa tieh sel0 NULL }; const esp_efuse_desc_t* ESP_EFUSE__0PXA_TIEH_SEL_1[] = { &_0PXA_TIEH_SEL_1[0], // 0pxa tieh sel1 NULL }; const esp_efuse_desc_t* ESP_EFUSE__0PXA_TIEH_SEL_2[] = { &_0PXA_TIEH_SEL_2[0], // 0pxa tieh sel2 NULL }; const esp_efuse_desc_t* ESP_EFUSE__0PXA_TIEH_SEL_3[] = { &_0PXA_TIEH_SEL_3[0], // 0pxa tieh sel3 NULL }; const esp_efuse_desc_t* ESP_EFUSE_USB_DEVICE_DREFL[] = { &USB_DEVICE_DREFL[0], // usb device drefl NULL }; const esp_efuse_desc_t* ESP_EFUSE_USB_OTG11_DREFL[] = { &USB_OTG11_DREFL[0], // usb otg1.1 drefl NULL }; const esp_efuse_desc_t* ESP_EFUSE_HP_PWR_SRC_SEL[] = { &HP_PWR_SRC_SEL[0], // hp power source selection NULL }; const esp_efuse_desc_t* ESP_EFUSE_DCDC_VSET_EN[] = { &DCDC_VSET_EN[0], // dcdc vset enable NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIS_WDT[] = { &DIS_WDT[0], // disable watchdog NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIS_SWD[] = { &DIS_SWD[0], // disable super watchdog NULL }; const esp_efuse_desc_t* ESP_EFUSE_MAC_FACTORY[] = { &MAC_FACTORY[0], // Factory MAC addr [0] &MAC_FACTORY[1], // Factory MAC addr [1] &MAC_FACTORY[2], // Factory MAC addr [2] &MAC_FACTORY[3], // Factory MAC addr [3] &MAC_FACTORY[4], // Factory MAC addr [4] &MAC_FACTORY[5], // Factory MAC addr [5] NULL }; const esp_efuse_desc_t* ESP_EFUSE_MAC_EXT[] = { &MAC_EXT[0], // Extend MAC addr [0] &MAC_EXT[1], // Extend MAC addr [1] NULL }; const esp_efuse_desc_t* ESP_EFUSE_WAFER_VERSION_MINOR[] = { &WAFER_VERSION_MINOR[0], // WAFER_VERSION_MINOR least significant bits &WAFER_VERSION_MINOR[1], // WAFER_VERSION_MINOR most significant bit NULL }; const esp_efuse_desc_t* ESP_EFUSE_PKG_VERSION[] = { &PKG_VERSION[0], // Package version 0:ESP32C3 NULL }; const esp_efuse_desc_t* ESP_EFUSE_BLK_VERSION_MINOR[] = { &BLK_VERSION_MINOR[0], // BLK_VERSION_MINOR NULL }; const esp_efuse_desc_t* ESP_EFUSE_OPTIONAL_UNIQUE_ID[] = { &OPTIONAL_UNIQUE_ID[0], // Optional unique 128-bit ID NULL }; const esp_efuse_desc_t* ESP_EFUSE_BLK_VERSION_MAJOR[] = { &BLK_VERSION_MAJOR[0], // BLK_VERSION_MAJOR of BLOCK2 NULL }; const esp_efuse_desc_t* ESP_EFUSE_TEMP_CALIB[] = { &TEMP_CALIB[0], // Temperature calibration data NULL }; const esp_efuse_desc_t* ESP_EFUSE_OCODE[] = { &OCODE[0], // ADC OCode NULL }; const esp_efuse_desc_t* ESP_EFUSE_ADC1_INIT_CODE_ATTEN0[] = { &ADC1_INIT_CODE_ATTEN0[0], // ADC1 init code at atten0 NULL }; const esp_efuse_desc_t* ESP_EFUSE_ADC1_INIT_CODE_ATTEN1[] = { &ADC1_INIT_CODE_ATTEN1[0], // ADC1 init code at atten1 NULL }; const esp_efuse_desc_t* ESP_EFUSE_ADC1_INIT_CODE_ATTEN2[] = { &ADC1_INIT_CODE_ATTEN2[0], // ADC1 init code at atten2 NULL }; const esp_efuse_desc_t* ESP_EFUSE_ADC1_INIT_CODE_ATTEN3[] = { &ADC1_INIT_CODE_ATTEN3[0], // ADC1 init code at atten3 NULL }; const esp_efuse_desc_t* ESP_EFUSE_ADC1_CAL_VOL_ATTEN0[] = { &ADC1_CAL_VOL_ATTEN0[0], // ADC1 calibration voltage at atten0 NULL }; const esp_efuse_desc_t* ESP_EFUSE_ADC1_CAL_VOL_ATTEN1[] = { &ADC1_CAL_VOL_ATTEN1[0], // ADC1 calibration voltage at atten1 NULL }; const esp_efuse_desc_t* ESP_EFUSE_ADC1_CAL_VOL_ATTEN2[] = { &ADC1_CAL_VOL_ATTEN2[0], // ADC1 calibration voltage at atten2 NULL }; const esp_efuse_desc_t* ESP_EFUSE_ADC1_CAL_VOL_ATTEN3[] = { &ADC1_CAL_VOL_ATTEN3[0], // ADC1 calibration voltage at atten3 NULL }; const esp_efuse_desc_t* ESP_EFUSE_USER_DATA[] = { &USER_DATA[0], // User data NULL }; const esp_efuse_desc_t* ESP_EFUSE_USER_DATA_MAC_CUSTOM[] = { &USER_DATA_MAC_CUSTOM[0], // Custom MAC NULL }; const esp_efuse_desc_t* ESP_EFUSE_KEY0[] = { &KEY0[0], // Key0 or user data NULL }; const esp_efuse_desc_t* ESP_EFUSE_KEY1[] = { &KEY1[0], // Key1 or user data NULL }; const esp_efuse_desc_t* ESP_EFUSE_KEY2[] = { &KEY2[0], // Key2 or user data NULL }; const esp_efuse_desc_t* ESP_EFUSE_KEY3[] = { &KEY3[0], // Key3 or user data NULL }; const esp_efuse_desc_t* ESP_EFUSE_KEY4[] = { &KEY4[0], // Key4 or user data NULL }; const esp_efuse_desc_t* ESP_EFUSE_KEY5[] = { &KEY5[0], // Key5 or user data NULL }; const esp_efuse_desc_t* ESP_EFUSE_SYS_DATA_PART2[] = { &SYS_DATA_PART2[0], // System configuration NULL }; const esp_efuse_desc_t* ESP_EFUSE_K_RTC_LDO[] = { &K_RTC_LDO[0], // BLOCK1 K_RTC_LDO NULL }; const esp_efuse_desc_t* ESP_EFUSE_K_DIG_LDO[] = { &K_DIG_LDO[0], // BLOCK1 K_DIG_LDO NULL }; const esp_efuse_desc_t* ESP_EFUSE_V_RTC_DBIAS20[] = { &V_RTC_DBIAS20[0], // BLOCK1 voltage of rtc dbias20 NULL }; const esp_efuse_desc_t* ESP_EFUSE_V_DIG_DBIAS20[] = { &V_DIG_DBIAS20[0], // BLOCK1 voltage of digital dbias20 NULL }; const esp_efuse_desc_t* ESP_EFUSE_DIG_DBIAS_HVT[] = { &DIG_DBIAS_HVT[0], // BLOCK1 digital dbias when hvt NULL }; const esp_efuse_desc_t* ESP_EFUSE_THRES_HVT[] = { &THRES_HVT[0], // BLOCK1 pvt threshold when hvt NULL };