/**************************************************************************** * boards/xtensa/esp32/common/scripts/kernel-space.ld * * SPDX-License-Identifier: Apache-2.0 * * Licensed to the Apache Software Foundation (ASF) under one or more * contributor license agreements. See the NOTICE file distributed with * this work for additional information regarding copyright ownership. The * ASF licenses this file to you under the Apache License, Version 2.0 (the * "License"); you may not use this file except in compliance with the * License. You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the * License for the specific language governing permissions and limitations * under the License. * ****************************************************************************/ #include /* Provide these so there is no need for using config files for this */ __uirom_start = ORIGIN(UIROM); __uirom_size = LENGTH(UIROM); __uirom_end = ORIGIN(UIROM) + LENGTH(UIROM); __udrom_start = ORIGIN(UDROM); __udrom_size = LENGTH(UDROM); __udrom_end = ORIGIN(UDROM) + LENGTH(UDROM); __uiram_start = ORIGIN(UIRAM); __uiram_size = LENGTH(UIRAM); __uiram_end = ORIGIN(UIRAM) + LENGTH(UIRAM); __udram_start = ORIGIN(UDRAM); __udram_size = LENGTH(UDRAM); __udram_end = ORIGIN(UDRAM) + LENGTH(UDRAM); /* Provide the kernel boundaries as well */ __kirom_start = ORIGIN(KIROM); __kirom_size = LENGTH(KIROM); __kdrom_start = ORIGIN(KDROM); __kdrom_size = LENGTH(KDROM); __kdrom_start = ORIGIN(KDROM); __kdrom_size = LENGTH(KDROM); __kiram_0_start = ORIGIN(KIRAM_0); __kiram_0_size = LENGTH(KIRAM_0); __kiram_0_end = ORIGIN(KIRAM_0) + LENGTH(KIRAM_0); __kiram_1_start = ORIGIN(KIRAM_1); __kiram_1_size = LENGTH(KIRAM_1); __kiram_1_end = ORIGIN(KIRAM_1) + LENGTH(KIRAM_1); __kdram_0_start = ORIGIN(KDRAM_0); __kdram_0_size = LENGTH(KDRAM_0); __kdram_0_end = ORIGIN(KDRAM_0) + LENGTH(KDRAM_0); __kdram_1_start = ORIGIN(KDRAM_1); __kdram_1_size = LENGTH(KDRAM_1); __kdram_1_end = ORIGIN(KDRAM_1) + LENGTH(KDRAM_1); /* Heap ends at top of dram0_0_seg */ _eheap = 0x40000000; ENTRY(_stext) SECTIONS { /* Send .iram0 code to iram */ .iram0.vectors : { /* Vectors go to IRAM */ _init_start = ABSOLUTE(.); __vectors_start = ABSOLUTE(.); /* Vectors according to builds/RF-2015.2-win32/esp108_v1_2_s5_512int_2/config.html */ . = 0x0; KEEP (*(.window_vectors.text)); . = 0x180; KEEP (*(.xtensa_level2_vector.text)); . = 0x1c0; KEEP (*(.xtensa_level3_vector.text)); . = 0x200; KEEP (*(.xtensa_level4_vector.text)); . = 0x240; KEEP (*(.xtensa_level5_vector.text)); . = 0x280; KEEP (*(.debug_exception_vector.text)); . = 0x2c0; KEEP (*(.nmi_vector.text)); . = 0x300; KEEP (*(.kernel_exception_vector.text)); . = 0x340; KEEP (*(.user_exception_vector.text)); . = 0x3c0; KEEP (*(.double_exception_vector.text)); . = 0x400; *(.*_vector.literal) . = ALIGN (16); __vectors_end = ABSOLUTE(.); *(.entry.text) *(.init.literal) *(.init) _init_end = ABSOLUTE(.); } >KIRAM_0 .iram0.text : { /* Code marked as running out of IRAM */ _iram_text_start = ABSOLUTE(.); *(.iram1 .iram1.*) *librtc.a:(.literal .text .literal.* .text.*) *libkarch.a:esp_spiflash.*(.literal .text .literal.* .text.*) *libkarch.a:*esp_clk.*(.text .text.* .literal .literal.*) *libkarch.a:xtensa_cpupause.*(.literal .text .literal.* .text.*) *libkarch.a:xtensa_copystate.*(.literal .text .literal.* .text.*) *libkarch.a:xtensa_interruptcontext.*(.literal .text .literal.* .text.*) *libkarch.a:xtensa_testset.*(.literal .text .literal.* .text.*) *libkarch.a:esp_app_desc.*(.literal .text .literal.* .text.*) *libc.a:arch_atomic.*(.literal .text .literal.* .text.*) *libsched.a:sched_suspendscheduler.*(.literal .text .literal.* .text.*) *libsched.a:sched_note.*(.literal .text .literal.* .text.*) *libsched.a:sched_thistask.*(.literal .text .literal.* .text.*) *libsched.a:spinlock.*(.literal .text .literal.* .text.*) *libsched.a:irq_csection.*(.literal .text .literal.* .text.*) *libsched.a:irq_dispatch.*(.literal .text .literal.* .text.*) *libkarch.a:esp_spiflash.*(.literal .text .literal.* .text.*) *libkarch.a:esp_flash_api.*(.text .text.* .literal .literal.*) *libkarch.a:esp_flash_spi_init.*(.text .text.* .literal .literal.*) *libkarch.a:spi_flash_hal_iram.*(.literal .literal.* .text .text.*) *libkarch.a:spi_flash_encrypt_hal_iram.*(.text .text.* .literal .literal.*) *libkarch.a:spi_flash_hal_gpspi.*(.literal .literal.* .text .text.*) *libkarch.a:spi_flash_chip*.*(.literal .literal.* .text .text.*) *libkarch.a:spi_flash_wrap.*(.literal .literal.* .text .text.*) *libkarch.a:spi_flash_os_func_noos.*(.literal .literal.* .text .text.*) *libkarch.a:spi_flash_os_func_app.*(.literal .literal.* .text .text.*) *libkarch.a:flash_brownout_hook.*(.literal .literal.* .text .text.*) *libkarch.a:esp_cache_utils.*(.literal .literal.* .text .text.*) *libkarch.a:cache_esp32.*(.literal .literal.* .text .text.*) *libkarch.a:cache_hal_esp32.*(.literal .literal.* .text .text.*) *libkarch.a:cache_utils.*(.literal .literal.* .text .text.*) *libkarch.a:memspi_host_driver.*(.literal .literal.* .text .text.*) *libkarch.a:critical_section.*(.literal .literal.* .text .text.*) *libkarch.a:os.*(.literal.nuttx_enter_critical .text.nuttx_enter_critical) *libkarch.a:os.*(.literal.nuttx_exit_critical .text.nuttx_exit_critical) *libkarch.a:intr_alloc.*(.literal.esp_intr_get_intno .text.esp_intr_get_intno) *libkarch.a:intr_alloc.*(.literal.esp_intr_get_cpu .text.esp_intr_get_cpu) *libkarch.a:interrupt.*(.literal.intr_handler_get .text.intr_handler_get) *libkarch.a:interrupt.*(.literal.intr_handler_get_arg .text.intr_handler_get_arg) *libkarch.a:interrupt.*(.literal.intr_get_item .text.intr_get_item) *libkarch.a:interrupt.*(.literal.intr_handler_get_arg .text.intr_handler_get_arg) #ifdef CONFIG_ESPRESSIF_SIMPLE_BOOT /* Simple boot has no second-stage bootloader. __start() runs * bootloader_init() and map_rom_segments() before any flash mapping * exists, so everything they reach must be resident in RAM. */ /* __start() itself runs before the mapping it creates, so it cannot * live in the flash it is about to map. */ esp32_start.*(.literal .text .literal.* .text.*) *libkarch.a:*esp_loader.*(.literal .text .literal.* .text.*) *libkarch.a:*bootloader_init.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_common.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_common_loader.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_console.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_console_loader.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_banner_wrap.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_clock_init.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_clock_loader.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_efuse.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_esp32.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_flash.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_flash_config_esp32.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_mem.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_panic.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_random.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_random_esp32.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_sha.*(.text .text.* .literal .literal.*) *libkarch.a:*bootloader_soc.*(.text .text.* .literal .literal.*) *libkarch.a:*esp_image_format.*(.text .text.* .literal .literal.*) *libkarch.a:*flash_encrypt.*(.text .text.* .literal .literal.*) *libkarch.a:*flash_qio_mode.*(.text .text.* .literal .literal.*) *libkarch.a:*brownout_hal.*(.text .text.* .literal .literal.*) *libkarch.a:*cpu.*(.text .text.* .literal .literal.*) *libkarch.a:*cpu_region_protect.*(.text .text.* .literal .literal.*) *libkarch.a:*gpio_hal.*(.text .text.* .literal .literal.*) *libkarch.a:*periph_ctrl.*(.text .text.* .literal .literal.*) *libkarch.a:*clk.*(.text .text.* .literal .literal.*) *libkarch.a:*clk_tree_hal.*(.text .text.* .literal .literal.*) *libkarch.a:*esp_clk_tree.*(.text .text.* .literal .literal.*) *libkarch.a:*esp_clk_tree_common.*(.text .text.* .literal .literal.*) *libkarch.a:*rtc_init.*(.text .text.* .literal .literal.*) *libkarch.a:*rtc_clk.*(.text .text.* .literal .literal.*) *libkarch.a:*rtc_clk_init.*(.text .text.* .literal .literal.*) *libkarch.a:*rtc_sleep.*(.text .text.* .literal .literal.*) *libkarch.a:*rtc_time.*(.text .text.* .literal .literal.*) *libkarch.a:*regi2c_ctrl.*(.text .text.* .literal .literal.*) *libkarch.a:*efuse_hal.*(.text .text.* .literal .literal.*) *libkarch.a:*efuse_utility.*(.text .text.* .literal .literal.*) *libkarch.a:*mmu_hal.*(.text .text.* .literal .literal.*) *libkarch.a:*mpu_hal.*(.text .text.* .literal .literal.*) *libkarch.a:*cache_esp32.*(.text .text.* .literal .literal.*) *libkarch.a:*cache_hal_esp32.*(.text .text.* .literal .literal.*) *libkarch.a:*uart_hal.*(.text .text.* .literal .literal.*) *libkarch.a:*uart_hal_iram.*(.text .text.* .literal .literal.*) *libkarch.a:*uart_periph.*(.text .text.* .literal .literal.*) *libkarch.a:*wdt_hal_iram.*(.text .text.* .literal .literal.*) *libkarch.a:*esp_rom_uart.*(.text .text.* .literal .literal.*) *libkarch.a:*esp_rom_sys.*(.text .text.* .literal .literal.*) *libkarch.a:*esp_rom_spiflash.*(.text .text.* .literal .literal.*) *libkarch.a:*esp_rom_wdt.*(.text .text.* .literal .literal.*) *libkarch.a:*log.*(.text .text.* .literal .literal.*) *libkarch.a:*log_lock.*(.literal .literal.* .text .text.*) *libkarch.a:*log_print.*(.literal .literal.* .text .text.*) *libkarch.a:*log_timestamp.*(.literal .literal.* .text .text.*) *libkarch.a:*log_timestamp_common.*(.literal .literal.* .text .text.*) *libkarch.a:*log_write.*(.literal .literal.* .text .text.*) *libkarch.a:esp_app_desc.*(.literal .literal.* .text .text.*) *libkarch.a:esp_flash_api.*(.text .text.* .literal .literal.*) *libkarch.a:esp_flash_spi_init.*(.text .text.* .literal .literal.*) *libkarch.a:spi_flash_hal_gpspi.*(.literal .literal.* .text .text.*) *libkarch.a:spi_flash_encrypt_hal_iram.*(.text .text.* .literal .literal.*) *libkarch.a:spi_flash_os_func_noos.*(.literal .literal.* .text .text.*) *libkarch.a:spi_flash_os_func_app.*(.literal .literal.* .text .text.*) *libkarch.a:spi_flash_wrap.*(.literal .literal.* .text .text.*) #endif *(.wifirxiram .wifirxiram.*) *(.wifi0iram .wifi0iram.*) *(.wifislpiram .wifislpiram.*) *(.wifislprxiram .wifislprxiram.*) *(.phyiram .phyiram.*) _iram_text_end = ABSOLUTE(.); /* IRAM heap starts at the end of iram0_0_seg */ . = ALIGN (4); _siramheap = ABSOLUTE(.); } >KIRAM_1 /* Shared RAM */ .dram0.bss (NOLOAD) : { /* .bss initialized on power-up */ . = ALIGN (8); _sbss = ABSOLUTE(.); _bss_start = ABSOLUTE(.); *(.ext_ram.bss*) _bt_bss_start = ABSOLUTE(.); *libbt.a:(.bss .bss.* COMMON) . = ALIGN (4); _bt_bss_end = ABSOLUTE(.); _btdm_bss_start = ABSOLUTE(.); *libbtdm_app.a:(.bss .bss.* COMMON) . = ALIGN (4); _btdm_bss_end = ABSOLUTE(.); . = ALIGN (8); *(.dynsbss) *(.sbss) *(.sbss.*) *(.gnu.linkonce.sb.*) *(.scommon) *(.sbss2) *(.sbss2.*) *(.gnu.linkonce.sb2.*) *(.dynbss) KEEP (*(.bss)) *(.bss.*) *(.share.mem) *(.gnu.linkonce.b.*) *(COMMON) *libkarch.a:esp_spiflash.*(.bss .bss.* COMMON) *libkarch.a:xtensa_cpupause.*(.bss .bss.* COMMON) *libkarch.a:xtensa_copystate.*(.bss .bss.* COMMON) *libkarch.a:xtensa_interruptcontext.*(.bss .bss.* COMMON) *libkarch.a:xtensa_testset.*(.bss .bss.* COMMON) *libsched.a:sched_suspendscheduler.*(.bss .bss.* COMMON) *libsched.a:sched_thistask.*(.bss .bss.* COMMON) *libsched.a:sched_note.*(.bss .bss.* COMMON) *libsched.a:spinlock.*(.bss .bss.* COMMON) *libsched.a:irq_csection.*(.bss .bss.* COMMON) *libsched.a:irq_dispatch.*(.bss .bss.* COMMON) . = ALIGN(8); _bss_end = ABSOLUTE(.); _ebss = ABSOLUTE(.); } >KDRAM_0 .noinit (NOLOAD): { /* This section contains data that is not initialized during load, * or during the application's initialization sequence. */ *(.noinit) } >KDRAM_0 .dram0.data : { /* .data initialized on power-up in ROMed configurations. */ _sdata = ABSOLUTE(.); _bt_data_start = ABSOLUTE(.); *libbt.a:(.data .data.*) . = ALIGN (4); _bt_data_end = ABSOLUTE(.); _btdm_data_start = ABSOLUTE(.); *libbtdm_app.a:(.data .data.*) . = ALIGN (4); _btdm_data_end = ABSOLUTE(.); KEEP (*(.data)) KEEP (*(.data.*)) KEEP (*(.gnu.linkonce.d.*)) KEEP (*(.data1)) KEEP (*(.sdata)) KEEP (*(.sdata.*)) KEEP (*(.gnu.linkonce.s.*)) KEEP (*(.sdata2)) KEEP (*(.sdata2.*)) KEEP (*(.gnu.linkonce.s2.*)) KEEP (*(.jcr)) *(.dram1 .dram1.*) *libphy.a:(.rodata .rodata.*) *libkarch.a:esp_cache_utils.*(.rodata .rodata.*) *libkarch.a:esp_spiflash.*(.rodata .rodata.*) *libkarch.a:*esp_clk.*(.rodata .rodata.*) *libkarch.a:xtensa_cpupause.*(.rodata .rodata.*) *libkarch.a:xtensa_copystate.*(.rodata .rodata.*) *libkarch.a:xtensa_interruptcontext.*(.rodata .rodata.*) *libkarch.a:xtensa_testset.*(.rodata .rodata.*) *libkarch.a:spi_flash_chip*.*(.rodata .rodata.*) *libkarch.a:critical_section.*(.rodata .rodata.*) *libkarch.a:os.*(.rodata.g_int_flags_count .rodata.g_int_flags) *libkc.a:arch_atomic.*(.rodata .rodata.*) #ifdef CONFIG_ESPRESSIF_SIMPLE_BOOT /* The read-only data of everything pinned into IRAM above. */ esp32_start.*(.rodata .rodata.*) *libkarch.a:*esp_loader.*(.rodata .rodata.*) *libkarch.a:*bootloader_init.*(.rodata .rodata.*) *libkarch.a:*bootloader_common.*(.rodata .rodata.*) *libkarch.a:*bootloader_common_loader.*(.rodata .rodata.*) *libkarch.a:*bootloader_console.*(.rodata .rodata.*) *libkarch.a:*bootloader_console_loader.*(.rodata .rodata.*) *libkarch.a:*bootloader_banner_wrap.*(.rodata .rodata.*) *libkarch.a:*bootloader_clock_init.*(.rodata .rodata.*) *libkarch.a:*bootloader_clock_loader.*(.rodata .rodata.*) *libkarch.a:*bootloader_efuse.*(.rodata .rodata.*) *libkarch.a:*bootloader_esp32.*(.rodata .rodata.*) *libkarch.a:*bootloader_flash.*(.rodata .rodata.*) *libkarch.a:*bootloader_flash_config_esp32.*(.rodata .rodata.*) *libkarch.a:*bootloader_mem.*(.rodata .rodata.*) *libkarch.a:*bootloader_panic.*(.rodata .rodata.*) *libkarch.a:*bootloader_random.*(.rodata .rodata.*) *libkarch.a:*bootloader_random_esp32.*(.rodata .rodata.*) *libkarch.a:*bootloader_sha.*(.rodata .rodata.*) *libkarch.a:*bootloader_soc.*(.rodata .rodata.*) *libkarch.a:*esp_image_format.*(.rodata .rodata.*) *libkarch.a:*flash_encrypt.*(.rodata .rodata.*) *libkarch.a:*flash_qio_mode.*(.rodata .rodata.*) *libkarch.a:*brownout_hal.*(.rodata .rodata.*) *libkarch.a:*cpu.*(.rodata .rodata.*) *libkarch.a:*cpu_region_protect.*(.rodata .rodata.*) *libkarch.a:*gpio_hal.*(.rodata .rodata.*) *libkarch.a:*periph_ctrl.*(.rodata .rodata.*) *libkarch.a:*clk.*(.rodata .rodata.*) *libkarch.a:*clk_tree_hal.*(.rodata .rodata.*) *libkarch.a:*esp_clk_tree.*(.rodata .rodata.*) *libkarch.a:*esp_clk_tree_common.*(.rodata .rodata.*) *libkarch.a:*rtc_init.*(.rodata .rodata.*) *libkarch.a:*rtc_clk.*(.rodata .rodata.*) *libkarch.a:*rtc_clk_init.*(.rodata .rodata.*) *libkarch.a:*rtc_time.*(.rodata .rodata.*) *libkarch.a:*regi2c_ctrl.*(.rodata .rodata.*) *libkarch.a:*efuse_hal.*(.rodata .rodata.*) *libkarch.a:*efuse_utility.*(.rodata .rodata.*) *libkarch.a:*mmu_hal.*(.rodata .rodata.*) *libkarch.a:*mpu_hal.*(.rodata .rodata.*) *libkarch.a:*cache_esp32.*(.rodata .rodata.*) *libkarch.a:*cache_hal_esp32.*(.rodata .rodata.*) *libkarch.a:*uart_hal.*(.rodata .rodata.*) *libkarch.a:*uart_hal_iram.*(.rodata .rodata.*) *libkarch.a:*uart_periph.*(.rodata .rodata.*) *libkarch.a:*wdt_hal_iram.*(.rodata .rodata.*) *libkarch.a:*esp_rom_uart.*(.rodata .rodata.*) *libkarch.a:*esp_rom_sys.*(.rodata .rodata.*) *libkarch.a:*esp_rom_spiflash.*(.rodata .rodata.*) *libkarch.a:*esp_rom_wdt.*(.rodata .rodata.*) *libkarch.a:*log.*(.rodata .rodata.*) *libkarch.a:esp_app_desc.*(.rodata .rodata.*) *libkarch.a:esp_flash_api.*(.rodata .rodata.*) *libkarch.a:esp_flash_spi_init.*(.rodata .rodata.*) #endif *libsched.a:sched_suspendscheduler.*(.rodata .rodata.*) *libsched.a:sched_thistask.*(.rodata .rodata.*) *libsched.a:sched_note.*(.rodata .rodata.*) *libsched.a:spinlock.*(.rodata .rodata.*) *libsched.a:irq_csection.*(.rodata .rodata.*) *libsched.a:irq_dispatch.*(.rodata .rodata.*) . = ALIGN(4); _edata = ABSOLUTE(.); /* Heap starts at the end of .data */ _sheap = ABSOLUTE(.); } >KDRAM_0 .flash.rodata : { _srodata = ABSOLUTE(.);_rodata_reserved_start = ABSOLUTE(.); _srodata = ABSOLUTE(.); /* !DO NOT PUT ANYTHING BEFORE THIS! */ /* Should be the first. App version info. */ *(.rodata_desc .rodata_desc.*) *(.rodata) *(.rodata.*) *(.irom1.text) /* catch stray ICACHE_RODATA_ATTR */ *(.gnu.linkonce.r.*) *(.rodata1) __XT_EXCEPTION_TABLE_ = ABSOLUTE(.); *(.xt_except_table) *(.gcc_except_table) *(.gcc_except_table.*) *(.gnu.linkonce.e.*) *(.gnu.version_r) *(.eh_frame) . = (. + 3) & ~ 3; /* C++ exception handlers table: */ __XT_EXCEPTION_DESCS_ = ABSOLUTE(.); *(.xt_except_desc) *(.gnu.linkonce.h.*) __XT_EXCEPTION_DESCS_END__ = ABSOLUTE(.); *(.xt_except_desc_end) *(.dynamic) *(.gnu.version_d) _erodata = ABSOLUTE(.); /* Literals are also RO data. */ _lit4_start = ABSOLUTE(.); *(*.lit4) *(.lit4.*) *(.gnu.linkonce.lit4.*) _lit4_end = ABSOLUTE(.); /* C++ constructor tables. Those are initialized by lib_cxx_initialize * which calls constructor functions that may be on common source code. */ . = ALIGN(4); _sinit = ABSOLUTE(.); __init_array_start = ABSOLUTE(.); KEEP (*(EXCLUDE_FILE (*crtend.* *crtbegin.*) .ctors SORT(.ctors.*))) __init_array_end = ABSOLUTE(.); _einit = ABSOLUTE(.); /* Addresses of memory regions reserved via SOC_RESERVE_MEMORY_REGION() */ . = ALIGN(4); soc_reserved_memory_region_start = ABSOLUTE(.); KEEP (*(.reserved_memory_address)) soc_reserved_memory_region_end = ABSOLUTE(.); /* System init functions registered via ESP_SYSTEM_INIT_FN */ . = ALIGN(4); _esp_system_init_fn_array_start = ABSOLUTE(.); KEEP (*(SORT_BY_INIT_PRIORITY(.esp_system_init_fn.*))) _esp_system_init_fn_array_end = ABSOLUTE(.); . = ALIGN(4); } >KDROM .flash.text : { _stext = .; _text_start = ABSOLUTE(.); *(.literal .text .literal.* .text.* .stub .gnu.warning .gnu.linkonce.literal.* .gnu.linkonce.t.*.literal .gnu.linkonce.t.*) *(.irom0.text) /* catch stray ICACHE_RODATA_ATTR */ *(.fini.literal) *(.fini) *(.gnu.version) _text_end = ABSOLUTE(.); _etext = .; } >KIROM #ifdef CONFIG_ESPRESSIF_SIMPLE_BOOT /* Simple boot has no second-stage bootloader to map the flash, so __start() * does it. map_rom_segments() reads the segment table out of the image in * flash, but the entry point still needs these to be defined. */ _image_irom_vma = ADDR(.flash.text); _image_irom_lma = LOADADDR(.flash.text); _image_irom_size = LOADADDR(.flash.text) + SIZEOF(.flash.text) - _image_irom_lma; _image_drom_vma = ADDR(.flash.rodata); _image_drom_lma = LOADADDR(.flash.rodata); _image_drom_size = LOADADDR(.flash.rodata) + SIZEOF(.flash.rodata) - _image_drom_lma; #endif .rtc.text : { . = ALIGN(4); _rtc_data_start = ABSOLUTE(.); *(.rtc.literal .rtc.text) } >rtc_iram_seg AT>ROM .rtc.data : { *(.rtc.data) *(.rtc.data.*) *(.rtc.rodata) *(.rtc.rodata.*) /* Whatever is left from the RTC memory is used as a special heap. */ . = ALIGN (4); _srtcheap = ABSOLUTE(.); } >rtc_slow_seg AT>ROM .rtc.force_slow : { . = ALIGN(4); _rtc_force_slow_start = ABSOLUTE(.); *(.rtc.force_slow .rtc.force_slow.*) . = ALIGN(4); _rtc_force_slow_end = ABSOLUTE(.); } >rtc_slow_seg AT>ROM /* This section holds RTC FAST data that should have fixed addresses. * The data are not initialized at power-up and are retained during deep * sleep. */ .rtc_fast_reserved (NOLOAD): { . = ALIGN(4); _rtc_fast_reserved_start = ABSOLUTE(.); /* New data can only be added here to ensure existing data are not moved. * Because data have adhered to the end of the segment and code is relied * on it. * >> put new data here << */ KEEP(*(.bootloader_data_rtc_mem .bootloader_data_rtc_mem.*)) _rtc_fast_reserved_end = ABSOLUTE(.); } > rtc_fast_reserved_seg _rtc_fast_reserved_length = _rtc_fast_reserved_end - _rtc_fast_reserved_start; ASSERT((_rtc_fast_reserved_length <= LENGTH(rtc_fast_reserved_seg)), "RTC FAST reserved segment data does not fit.") /* This section holds RTC SLOW data that should have fixed addresses. * The data are not initialized at power-up and are retained during deep * sleep. */ .rtc_slow_reserved (NOLOAD): { . = ALIGN(4); _rtc_slow_reserved_start = ABSOLUTE(.); /* New data can only be added here to ensure existing data are not moved. * Because data have adhered to the end of the segment and code is relied * on it. * >> put new data here << */ *(.rtc_timer_data_in_rtc_mem .rtc_timer_data_in_rtc_mem.*) _rtc_slow_reserved_end = ABSOLUTE(.); } > rtc_slow_reserved_seg _rtc_slow_reserved_length = _rtc_slow_reserved_end - _rtc_slow_reserved_start; _rtc_reserved_length = _rtc_slow_reserved_length; /* Get size of rtc slow data */ _rtc_slow_length = (_rtc_force_slow_end - _rtc_data_start); }