esp-idf/components/esp_hw_support
Jiang Jiang Jian 1aaae85ad2 Merge branch 'bugfix/esp32c6eco1_coex_ble_deinit_wifi_bcn_timeout_v5.3' into 'release/v5.3'
backport v5.3: fix the issue where deinit ble in a coexist scenario causes the wifi mac tsf counter to stop

See merge request espressif/esp-idf!30981
2024-05-22 07:37:41 +08:00
..
dma feat(mipi_dsi): support isr iram safe 2024-04-26 10:41:04 +08:00
include feat(esp_pm): fix esp32p4 cpu powerdown kconfig dependency error 2024-05-20 14:01:00 +08:00
ldo refactor(ldo): remove legacy private ldo driver 2024-03-26 11:36:54 +08:00
lowpower fix(esp_hw_support): invalidate L1DCache before enter hardware sleep 2024-05-20 14:02:04 +08:00
port change(esp_hw_support/sleep): improve esp32c3 systimer stall bug workaround 2024-05-21 20:30:24 +08:00
test_apps test(gdma): can read data from flash rodata 2024-05-07 13:01:11 +08:00
CMakeLists.txt feat(pm): support pd top for esp32c5beta3 2024-04-12 11:34:54 +08:00
Kconfig change(esp_hw_support/sleep): improve esp32c3 systimer stall bug workaround 2024-05-21 20:30:24 +08:00
README.md feat(dw_gdma): channel allocator driver 2023-12-12 03:35:05 +00:00
adc_share_hw_ctrl.c feat(all): Use PRIx macro in all logs 2024-03-12 11:15:53 +02:00
clk_ctrl_os.c change(mpll): clean up mpll clock acquire with ldo driver 2024-03-25 22:03:49 +08:00
cpu.c feat(hal): Adds hal funcs for cpu.c 2024-04-11 13:07:04 +03:00
esp_clk.c feat(esp32c61): final introduce helloworld support 2024-04-02 10:50:52 +08:00
esp_clock_output.c feat(esp_hw_support): support set clock divider for esp32p4 clock output 2024-04-17 15:09:54 +08:00
esp_dpa_protection.c
esp_ds.c feat(hal/sha): use RCC atomic block to enable/reset the SHA peripheral 2024-03-27 11:23:30 +05:30
esp_etm.c
esp_gpio_reserve.c feat(gpio): reserve gpio output atomically 2024-03-09 10:33:58 +08:00
esp_hmac.c feat(hal/sha): use RCC atomic block to enable/reset the SHA peripheral 2024-03-27 11:23:30 +05:30
esp_key_mgr.c fix(esp_hw_support): Fix key manager hw support 2024-03-29 18:53:13 +05:30
esp_memory_utils.c
hw_random.c feat(esp_hw_support): brought up RNG on ESP32-P4 2024-04-01 07:09:11 +05:30
intr_alloc.c fix(esp_hw_support): clear reserved interrupts that are not applicable for each target 2024-03-27 16:21:25 +08:00
linker.lf feat(gpio): reserve gpio output atomically 2024-03-09 10:33:58 +08:00
mac_addr.c feat(esp_hw_support): Adds MAC support for esp32p4 2024-03-29 01:44:39 +08:00
mipi_csi_share_hw_ctrl.c feat(isp): added isp driver framework and isp af driver 2024-04-01 09:30:07 +08:00
modem_clock.c fix(wifi): fix the issue where deinit ble in a coexist scenario causes the wifi mac tsf counter to stop 2024-05-21 16:39:20 +08:00
mspi_timing_by_dqs.c change(flash): rename spi_timing_is_tuned to spi_flash_timing_is_tuned 2024-01-10 11:52:28 +08:00
mspi_timing_by_dqs.h feat(psram): support 200mhz psram, experimental feature for now 2024-01-10 11:52:28 +08:00
mspi_timing_by_mspi_delay.c feat(all): Use PRIx macro in all logs 2024-03-12 11:15:53 +02:00
mspi_timing_by_mspi_delay.h feat(psram): support 200mhz psram, experimental feature for now 2024-01-10 11:52:28 +08:00
mspi_timing_tuning.c fix(esp_hw_support): fix esp332p4 stuck in dfs issue 2024-04-03 19:47:09 +08:00
periph_ctrl.c feat(esp32c61): final introduce helloworld support 2024-04-02 10:50:52 +08:00
regi2c_ctrl.c
revision.c
rtc_module.c feat(esp32c61): final introduce helloworld support 2024-04-02 10:50:52 +08:00
rtc_wdt.c
sar_periph_ctrl_common.c fix(tsens): 300us delay in phy cause extra power consumption 2024-01-10 09:46:02 +08:00
sdkconfig.rename
sdkconfig.rename.esp32 change(esp_hw_support/sleep): rename ESP_SLEEP_DEEP_SLEEP_WAKEUP_DELAY 2023-12-18 19:56:56 +08:00
sdkconfig.rename.esp32c3
sdkconfig.rename.esp32s2
sdkconfig.rename.esp32s3 change(esp_hw_support/sleep): rename ESP_SLEEP_DEEP_SLEEP_WAKEUP_DELAY 2023-12-18 19:56:56 +08:00
sleep_clock.c fix(esp_hw_support): fix some errors with sleep's power domain management 2024-04-07 17:39:48 +08:00
sleep_console.c refactor(hal/usj): Add USB PHY related functions to USJ LL 2024-03-18 19:23:42 +08:00
sleep_event.c
sleep_gpio.c feat(esp_hw_support): add esp32p4 sleep initial support 2024-03-10 10:51:28 +08:00
sleep_modem.c change(esp_hw_support): modify system and modem clock to support modem domain power down 2024-03-29 16:13:52 +08:00
sleep_modes.c fix(esp_hw_support/sleep): stop TG0/TG1 watchdog if XTAL not power down in lightsleep 2024-05-21 20:30:28 +08:00
sleep_retention.c fix: modify some typos to ensure CI pipeline run pass 2024-03-30 11:51:52 +08:00
sleep_system_peripheral.c change(esp_hw_support): use power down peripheral in light sleep option to determine TOP to off 2024-03-30 11:51:52 +08:00
sleep_wake_stub.c refactor(rtc): move soc/rtc.h from soc to esp_hw_support component 2024-01-25 19:15:33 +08:00
spi_bus_lock.c refactor(spi): moved spi hw sharing func to hw support 2023-11-20 12:07:54 +08:00
spi_share_hw_ctrl.c refactor(spi): moved spi hw sharing func to hw support 2023-11-20 12:07:54 +08:00

README.md

esp_hw_support (G1 component)

This component contains hardware-related operations for supporting the system. These operations are one level above that of hal in that:

  1. it uses system services such as memory allocation, logging, scheduling
  2. it may be multi-step operations involving/affecting multiple parts of the SoC
  3. it offers a service for other components vary from multiple layers (G1, G2 and G3) of ESP-IDF

Implementations that don't fit other components cleanly, but are not worth creating a new component for (yet) may also be placed here as long as they don't pull dependencies other than the core system components.

Event-Task Service (esp_etm)

esp_etm driver design

esp_etm driver is divided into two parts:

  • The core driver, which focuses on ETM channel allocation and offers APIs to connect the channel with ETM tasks and ETM events that come from other peripherals.
  • Peripheral side extensions, e.g. GPTimer support generating different kinds of ETM events, and accept multiple ETM tasks. These extensions are implemented in the peripheral driver, and can be located in different components. Usually, the task and event extensions will simply inherit the interface that defined in the core driver.

See the following class diagram, we take the GPIO and GPTimer as the example to illustrate the architecture of esp_etm driver.

classDiagram
    esp_etm_channel_t "1" --> "1" esp_etm_event_t : Has
    esp_etm_channel_t "1" --> "1" esp_etm_task_t : Has
    class esp_etm_channel_t {
        -int chan_id
        -esp_etm_event_t event
        -esp_etm_task_t task
        +enable() esp_err_t
        +disable() esp_err_t
        +connect(event, task) esp_err_t
        +dump() esp_err_t
    }

    class esp_etm_event_t {
        <<interface>>
        #int event_id
        #etm_trigger_peripheral_t trig_periph
        #del() esp_err_t
    }

    class esp_etm_task_t {
        <<interface>>
        #int task_id
        #etm_trigger_peripheral_t trig_periph
        #del() esp_err_t
    }

    gpio_etm_event_t --|> esp_etm_event_t : Inheritance
    class gpio_etm_event_t {
        -int chan_id
        +bind_gpio(gpio_num_t gpio) esp_err_t
    }

    gpio_etm_task_t --|> esp_etm_task_t : Inheritance
    class gpio_etm_task_t {
        -int chan_id
        +add_gpio(gpio_num) esp_err_t
        +rm_gpio(gpio_num) esp_err_t
    }

    gptimer_t "1" --> "1..*" gptimer_etm_event_t : Has
    gptimer_t "1" --> "1..*" gptimer_etm_task_t : Has
    class gptimer_t {
        -gptimer_etm_event_t[] events
        -gptimer_etm_task_t[] tasks
    }

    gptimer_etm_event_t --|> esp_etm_event_t : Inheritance
    class gptimer_etm_event_t {
    }

    gptimer_etm_task_t --|> esp_etm_task_t : Inheritance
    class gptimer_etm_task_t {
    }

DMA Service

With the increasing demand, the hardware design of DMA is changing along the way. At first, each peripheral has a dedicated DMA controller. Later, a centralized DMA controller is introduced, which is called GDMA in the software.

There may be multiple GDMA instances on a chip, some is attached to the AHB bus and some is attached to the AXI bus. But their functionalities are almost the same.

Some high-performance peripherals, such as MIPI, require DMA to provide more functions, such as hardware handshake mechanism, address growth mode, out-of-order transmission and so on. Therefore, a new DMA controller, called DW_GDMA was born. The prefix DW is taken from DesignWare.

Please note that the specific DMA controller to be used for peripherals is determined by the specific chip. It is possible that, on chip A, SPI works with AHB GDMA, while on chip B, SPI works with AXI GDMA.