mirror of
https://github.com/Ikatono/stream_pad.git
synced 2025-10-29 04:56:01 -05:00
stepping away from this in favor of arduino version, cant get anything to run on the pad
This commit is contained in:
@@ -18,6 +18,25 @@ pico_sdk_init()
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pico_generate_pio_header(stream_pad ${CMAKE_CURRENT_LIST_DIR}/src/Neopixel.pio)
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add_compile_definitions(
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TARGET_RP2040
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PICO_FLASH_SIZE_BYTES=8388608
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ARDUINO_ADAFRUIT_MACROPAD_RP2040
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USBD_PID=0x8107
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USBD_VID=0x239a
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USBD_MAX_POWER_MA=250
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ARM_MATH_CM0_FAMILY
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ARM_MATH_CM0_PLUS
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CFG_TUSB_MCU=OPT_MCU_RP2040
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USBD_MAX_POWER_MA=250
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)
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target_compile_options(stream_pad PUBLIC -Osize)
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set_property()
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pico_set_linker_script(stream_pad ${CMAKE_CURRENT_LIST_DIR}/src/memmap_custom2.ld)
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target_sources(stream_pad PRIVATE
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src/main.cpp
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src/Page.cpp
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@@ -43,11 +62,11 @@ target_link_libraries(stream_pad
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pico_stdlib
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hardware_pio
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pico_unique_id
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#tinyusb_device
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#tinyusb_board
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tinyusb_device
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tinyusb_board
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)
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pico_enable_stdio_usb(stream_pad 0)
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pico_enable_stdio_uart(stream_pad 1)
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pico_enable_stdio_usb(stream_pad 1)
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pico_enable_stdio_uart(stream_pad 0)
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pico_add_extra_outputs(stream_pad)
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@@ -4,6 +4,11 @@
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namespace Hardware
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{
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static int32_t wheel_count = 0;
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static void wheel_interrupt(unsigned int gpio, uint32_t event_mask)
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{
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}
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void init_wheel()
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{
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gpio_init_mask(
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@@ -14,6 +19,8 @@ namespace Hardware
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gpio_set_input_enabled(Pin::WheelB, true);
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gpio_set_input_enabled(Pin::WheelButton, true);
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gpio_pull_up(Pin::WheelButton);
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gpio_set_irq_enabled_with_callback(Pin::WheelA, GPIO_IRQ_EDGE_FALL, true, &wheel_interrupt);
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gpio_set_irq_enabled(Pin::WheelB, GPIO_IRQ_EDGE_FALL, true);
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}
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WheelState get_wheel_state()
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{
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@@ -7,10 +7,10 @@ namespace Hardware
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{
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struct WheelState
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{
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int32_t count;
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bool a;
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bool b;
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bool button;
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int32_t count;
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};
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void init_wheel();
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WheelState get_wheel_state();
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@@ -26,7 +26,7 @@ Configuration::Config config;
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Configuration::Page *active_page;
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char config_buffer[1024];
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extern "C"
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//extern "C"
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int main()
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{
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//stdio_init_all();
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@@ -42,10 +42,12 @@ int main()
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// LED::put_pixel(pix);
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// Hardware::init_keys();
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LED::init_notification_led();
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LED::set_notification_led(true);
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while (1)
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{
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auto keys = Hardware::read_keys();
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LED::set_notification_led(keys.data != 0);
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//LED::set_notification_led(keys.data != 0);
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LED::set_notification_led(true);
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printf("Keys: {}\n", keys.data);
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sleep_ms(1000);
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}
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276
src/memmap_custom.ld
Normal file
276
src/memmap_custom.ld
Normal file
@@ -0,0 +1,276 @@
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/* Based on GCC ARM embedded samples.
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Defines the following symbols for use by code:
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__exidx_start
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__exidx_end
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__etext
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__data_start__
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__preinit_array_start
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__preinit_array_end
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__init_array_start
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__init_array_end
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__fini_array_start
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__fini_array_end
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__data_end__
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__bss_start__
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__bss_end__
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__end__
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end
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__HeapLimit
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__StackLimit
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__StackTop
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__stack (== StackTop)
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*/
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MEMORY
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{
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FLASH(rx) : ORIGIN = 0x10000000, LENGTH = 8384512
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RAM(rwx) : ORIGIN = 0x20000000, LENGTH = 256k
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SCRATCH_X(rwx) : ORIGIN = 0x20040000, LENGTH = 4k
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SCRATCH_Y(rwx) : ORIGIN = 0x20041000, LENGTH = 4k
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}
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/*
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PROVIDE ( _EEPROM_start = 276819968 );
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PROVIDE ( _FS_start = 276819968 );
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PROVIDE ( _FS_end = 276819968 );
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*/
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ENTRY(_entry_point)
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SECTIONS
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{
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/* Second stage bootloader is prepended to the image. It must be 256 bytes big
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and checksummed. It is usually built by the boot_stage2 target
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in the Raspberry Pi Pico SDK
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*/
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.flash_begin : {
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__flash_binary_start = .;
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} > FLASH
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.boot2 : {
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__boot2_start__ = .;
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KEEP (*(.boot2))
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__boot2_end__ = .;
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} > FLASH
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ASSERT(__boot2_end__ - __boot2_start__ == 256,
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"ERROR: Pico second stage bootloader must be 256 bytes in size")
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.ota : {
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/* Start image with OTA */
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KEEP (*(.OTA))
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/* Align to the last 16-bytes of the OTA region */
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/* If anyone has a better way of doing this, please submit a PR! */
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/* . = __flash_binary_start + 0x2ff0;
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LONG(276819968)
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LONG(276819968)
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LONG(276819968)
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LONG(8384512)*/
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} > FLASH
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.partition : {
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/* Align to the last 16-bytes of the OTA region */
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/* If anyone has a better way of doing this, please submit a PR! */
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. = __flash_binary_start + 0x2ff0;
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LONG(276819968)
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LONG(276819968)
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LONG(276819968)
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LONG(8384512)
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} > FLASH
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/* The second stage will always enter the image at the start of .text.
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The debugger will use the ELF entry point, which is the _entry_point
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symbol if present, otherwise defaults to start of .text.
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This can be used to transfer control back to the bootrom on debugger
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launches only, to perform proper flash setup.
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*/
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.text : {
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__logical_binary_start = .;
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KEEP (*(.vectors))
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KEEP (*(.binary_info_header))
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__binary_info_header_end = .;
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KEEP (*(.reset))
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/* TODO revisit this now memset/memcpy/float in ROM */
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/* bit of a hack right now to exclude all floating point and time critical (e.g. memset, memcpy) code from
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* FLASH ... we will include any thing excluded here in .data below by default */
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*(.init)
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/* Some of these excludes required for PicoDVI library, won't affect most code */
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*(EXCLUDE_FILE(*libgcc.a: *libc.a:*lib_a-mem*.o *libm.a: *interp.c.obj *divider.S.obj *PicoDVI.cpp.o *dvi.c.o) .text*)
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*(.fini)
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/* Pull all c'tors into .text */
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*crtbegin.o(.ctors)
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*crtbegin?.o(.ctors)
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*(EXCLUDE_FILE(*crtend?.o *crtend.o) .ctors)
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*(SORT(.ctors.*))
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*(.ctors)
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||||
/* Followed by destructors */
|
||||
*crtbegin.o(.dtors)
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||||
*crtbegin?.o(.dtors)
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||||
*(EXCLUDE_FILE(*crtend?.o *crtend.o) .dtors)
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*(SORT(.dtors.*))
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*(.dtors)
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|
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*(.eh_frame*)
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. = ALIGN(4);
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||||
} > FLASH
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.rodata : {
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*(EXCLUDE_FILE(*libgcc.a: *libc.a:*lib_a-mem*.o *libm.a:) .rodata* .big_const*)
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. = ALIGN(4);
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*(SORT_BY_ALIGNMENT(SORT_BY_NAME(.flashdata*)))
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. = ALIGN(4);
|
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} > FLASH
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|
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.ARM.extab :
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{
|
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*(.ARM.extab* .gnu.linkonce.armextab.*)
|
||||
} > FLASH
|
||||
|
||||
__exidx_start = .;
|
||||
.ARM.exidx :
|
||||
{
|
||||
*(.ARM.exidx* .gnu.linkonce.armexidx.*)
|
||||
} > FLASH
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__exidx_end = .;
|
||||
|
||||
. = ALIGN(4);
|
||||
|
||||
/* End of .text-like segments */
|
||||
__etext = .;
|
||||
|
||||
.ram_vector_table (COPY): {
|
||||
*(.ram_vector_table)
|
||||
} > RAM
|
||||
|
||||
.data : {
|
||||
__data_start__ = .;
|
||||
*(vtable)
|
||||
|
||||
*(.time_critical*)
|
||||
|
||||
/* remaining .text and .rodata; i.e. stuff we exclude above because we want it in RAM */
|
||||
*(.text*)
|
||||
. = ALIGN(4);
|
||||
*(.rodata*)
|
||||
. = ALIGN(4);
|
||||
|
||||
*(.data*)
|
||||
|
||||
. = ALIGN(4);
|
||||
*(.after_data.*)
|
||||
. = ALIGN(4);
|
||||
/* preinit data */
|
||||
PROVIDE_HIDDEN (__mutex_array_start = .);
|
||||
KEEP(*(SORT(.mutex_array.*)))
|
||||
KEEP(*(.mutex_array))
|
||||
PROVIDE_HIDDEN (__mutex_array_end = .);
|
||||
|
||||
. = ALIGN(4);
|
||||
/* preinit data */
|
||||
PROVIDE_HIDDEN (__preinit_array_start = .);
|
||||
KEEP(*(SORT(.preinit_array.*)))
|
||||
KEEP(*(.preinit_array))
|
||||
PROVIDE_HIDDEN (__preinit_array_end = .);
|
||||
|
||||
. = ALIGN(4);
|
||||
/* init data */
|
||||
PROVIDE_HIDDEN (__init_array_start = .);
|
||||
KEEP(*(SORT(.init_array.*)))
|
||||
KEEP(*(.init_array))
|
||||
PROVIDE_HIDDEN (__init_array_end = .);
|
||||
|
||||
. = ALIGN(4);
|
||||
/* finit data */
|
||||
PROVIDE_HIDDEN (__fini_array_start = .);
|
||||
*(SORT(.fini_array.*))
|
||||
*(.fini_array)
|
||||
PROVIDE_HIDDEN (__fini_array_end = .);
|
||||
|
||||
*(.jcr)
|
||||
. = ALIGN(4);
|
||||
/* All data end */
|
||||
__data_end__ = .;
|
||||
} > RAM AT> FLASH
|
||||
|
||||
/* Start and end symbols must be word-aligned */
|
||||
.scratch_x : {
|
||||
__scratch_x_start__ = .;
|
||||
*(.scratch_x.*)
|
||||
. = ALIGN(4);
|
||||
__scratch_x_end__ = .;
|
||||
} > SCRATCH_X AT > FLASH
|
||||
__scratch_x_source__ = LOADADDR(.scratch_x);
|
||||
|
||||
.scratch_y : {
|
||||
__scratch_y_start__ = .;
|
||||
*(.scratch_y.*)
|
||||
. = ALIGN(4);
|
||||
__scratch_y_end__ = .;
|
||||
} > SCRATCH_Y AT > FLASH
|
||||
__scratch_y_source__ = LOADADDR(.scratch_y);
|
||||
|
||||
.bss : {
|
||||
. = ALIGN(4);
|
||||
__bss_start__ = .;
|
||||
*(SORT_BY_ALIGNMENT(SORT_BY_NAME(.bss*)))
|
||||
*(COMMON)
|
||||
. = ALIGN(4);
|
||||
__bss_end__ = .;
|
||||
} > RAM
|
||||
|
||||
/* At most one of the following two will be engaged, depending on the SDK version */
|
||||
.uninitialized_ram MAX(0x20003000, .) (NOLOAD) : {
|
||||
*(.uninitialized_ram*)
|
||||
} > RAM
|
||||
|
||||
.uninitialized_data MAX(0x20003000, .) (NOLOAD) : {
|
||||
*(.uninitialized_data*)
|
||||
} > RAM
|
||||
|
||||
.heap (COPY):
|
||||
{
|
||||
__end__ = .;
|
||||
end = __end__;
|
||||
*(.heap*)
|
||||
__HeapLimit = .;
|
||||
} > RAM
|
||||
|
||||
/* .stack*_dummy section doesn't contains any symbols. It is only
|
||||
* used for linker to calculate size of stack sections, and assign
|
||||
* values to stack symbols later
|
||||
*
|
||||
* stack1 section may be empty/missing if platform_launch_core1 is not used */
|
||||
|
||||
/* by default we put core 0 stack at the end of scratch Y, so that if core 1
|
||||
* stack is not used then all of SCRATCH_X is free.
|
||||
*/
|
||||
.stack1_dummy (COPY):
|
||||
{
|
||||
*(.stack1*)
|
||||
} > SCRATCH_X
|
||||
.stack_dummy (COPY):
|
||||
{
|
||||
*(.stack*)
|
||||
} > SCRATCH_Y
|
||||
|
||||
.flash_end : {
|
||||
__flash_binary_end = .;
|
||||
} > FLASH
|
||||
|
||||
/* stack limit is poorly named, but historically is maximum heap ptr */
|
||||
__StackLimit = ORIGIN(RAM) + LENGTH(RAM);
|
||||
__StackOneTop = ORIGIN(SCRATCH_X) + LENGTH(SCRATCH_X);
|
||||
__StackTop = ORIGIN(SCRATCH_Y) + LENGTH(SCRATCH_Y);
|
||||
__StackOneBottom = __StackOneTop - SIZEOF(.stack1_dummy);
|
||||
__StackBottom = __StackTop - SIZEOF(.stack_dummy);
|
||||
PROVIDE(__stack = __StackTop);
|
||||
|
||||
/* Check if data + heap + stack exceeds RAM limit */
|
||||
ASSERT(__StackLimit >= __HeapLimit, "region RAM overflowed")
|
||||
|
||||
ASSERT( __binary_info_header_end - __logical_binary_start <= 256, "Binary info must be in first 256 bytes of the binary")
|
||||
/* todo assert on extra code */
|
||||
}
|
||||
|
||||
251
src/memmap_custom2.ld
Normal file
251
src/memmap_custom2.ld
Normal file
@@ -0,0 +1,251 @@
|
||||
/* Based on GCC ARM embedded samples.
|
||||
Defines the following symbols for use by code:
|
||||
__exidx_start
|
||||
__exidx_end
|
||||
__etext
|
||||
__data_start__
|
||||
__preinit_array_start
|
||||
__preinit_array_end
|
||||
__init_array_start
|
||||
__init_array_end
|
||||
__fini_array_start
|
||||
__fini_array_end
|
||||
__data_end__
|
||||
__bss_start__
|
||||
__bss_end__
|
||||
__end__
|
||||
end
|
||||
__HeapLimit
|
||||
__StackLimit
|
||||
__StackTop
|
||||
__stack (== StackTop)
|
||||
*/
|
||||
|
||||
MEMORY
|
||||
{
|
||||
FLASH(rx) : ORIGIN = 0x10000000, LENGTH = 8192k
|
||||
RAM(rwx) : ORIGIN = 0x20000000, LENGTH = 256k
|
||||
SCRATCH_X(rwx) : ORIGIN = 0x20040000, LENGTH = 4k
|
||||
SCRATCH_Y(rwx) : ORIGIN = 0x20041000, LENGTH = 4k
|
||||
}
|
||||
|
||||
ENTRY(_entry_point)
|
||||
|
||||
SECTIONS
|
||||
{
|
||||
/* Second stage bootloader is prepended to the image. It must be 256 bytes big
|
||||
and checksummed. It is usually built by the boot_stage2 target
|
||||
in the Raspberry Pi Pico SDK
|
||||
*/
|
||||
|
||||
.flash_begin : {
|
||||
__flash_binary_start = .;
|
||||
} > FLASH
|
||||
|
||||
.boot2 : {
|
||||
__boot2_start__ = .;
|
||||
KEEP (*(.boot2))
|
||||
__boot2_end__ = .;
|
||||
} > FLASH
|
||||
|
||||
ASSERT(__boot2_end__ - __boot2_start__ == 256,
|
||||
"ERROR: Pico second stage bootloader must be 256 bytes in size")
|
||||
|
||||
/* The second stage will always enter the image at the start of .text.
|
||||
The debugger will use the ELF entry point, which is the _entry_point
|
||||
symbol if present, otherwise defaults to start of .text.
|
||||
This can be used to transfer control back to the bootrom on debugger
|
||||
launches only, to perform proper flash setup.
|
||||
*/
|
||||
|
||||
.text : {
|
||||
__logical_binary_start = .;
|
||||
KEEP (*(.vectors))
|
||||
KEEP (*(.binary_info_header))
|
||||
__binary_info_header_end = .;
|
||||
KEEP (*(.reset))
|
||||
/* TODO revisit this now memset/memcpy/float in ROM */
|
||||
/* bit of a hack right now to exclude all floating point and time critical (e.g. memset, memcpy) code from
|
||||
* FLASH ... we will include any thing excluded here in .data below by default */
|
||||
*(.init)
|
||||
*(EXCLUDE_FILE(*libgcc.a: *libc.a:*lib_a-mem*.o *libm.a:) .text*)
|
||||
*(.fini)
|
||||
/* Pull all c'tors into .text */
|
||||
*crtbegin.o(.ctors)
|
||||
*crtbegin?.o(.ctors)
|
||||
*(EXCLUDE_FILE(*crtend?.o *crtend.o) .ctors)
|
||||
*(SORT(.ctors.*))
|
||||
*(.ctors)
|
||||
/* Followed by destructors */
|
||||
*crtbegin.o(.dtors)
|
||||
*crtbegin?.o(.dtors)
|
||||
*(EXCLUDE_FILE(*crtend?.o *crtend.o) .dtors)
|
||||
*(SORT(.dtors.*))
|
||||
*(.dtors)
|
||||
|
||||
*(.eh_frame*)
|
||||
. = ALIGN(4);
|
||||
} > FLASH
|
||||
|
||||
.rodata : {
|
||||
*(EXCLUDE_FILE(*libgcc.a: *libc.a:*lib_a-mem*.o *libm.a:) .rodata*)
|
||||
. = ALIGN(4);
|
||||
*(SORT_BY_ALIGNMENT(SORT_BY_NAME(.flashdata*)))
|
||||
. = ALIGN(4);
|
||||
} > FLASH
|
||||
|
||||
.ARM.extab :
|
||||
{
|
||||
*(.ARM.extab* .gnu.linkonce.armextab.*)
|
||||
} > FLASH
|
||||
|
||||
__exidx_start = .;
|
||||
.ARM.exidx :
|
||||
{
|
||||
*(.ARM.exidx* .gnu.linkonce.armexidx.*)
|
||||
} > FLASH
|
||||
__exidx_end = .;
|
||||
|
||||
/* Machine inspectable binary information */
|
||||
. = ALIGN(4);
|
||||
__binary_info_start = .;
|
||||
.binary_info :
|
||||
{
|
||||
KEEP(*(.binary_info.keep.*))
|
||||
*(.binary_info.*)
|
||||
} > FLASH
|
||||
__binary_info_end = .;
|
||||
. = ALIGN(4);
|
||||
|
||||
.ram_vector_table (NOLOAD): {
|
||||
*(.ram_vector_table)
|
||||
} > RAM
|
||||
|
||||
.data : {
|
||||
__data_start__ = .;
|
||||
*(vtable)
|
||||
|
||||
*(.time_critical*)
|
||||
|
||||
/* remaining .text and .rodata; i.e. stuff we exclude above because we want it in RAM */
|
||||
*(.text*)
|
||||
. = ALIGN(4);
|
||||
*(.rodata*)
|
||||
. = ALIGN(4);
|
||||
|
||||
*(.data*)
|
||||
|
||||
. = ALIGN(4);
|
||||
*(.after_data.*)
|
||||
. = ALIGN(4);
|
||||
/* preinit data */
|
||||
PROVIDE_HIDDEN (__mutex_array_start = .);
|
||||
KEEP(*(SORT(.mutex_array.*)))
|
||||
KEEP(*(.mutex_array))
|
||||
PROVIDE_HIDDEN (__mutex_array_end = .);
|
||||
|
||||
. = ALIGN(4);
|
||||
/* preinit data */
|
||||
PROVIDE_HIDDEN (__preinit_array_start = .);
|
||||
KEEP(*(SORT(.preinit_array.*)))
|
||||
KEEP(*(.preinit_array))
|
||||
PROVIDE_HIDDEN (__preinit_array_end = .);
|
||||
|
||||
. = ALIGN(4);
|
||||
/* init data */
|
||||
PROVIDE_HIDDEN (__init_array_start = .);
|
||||
KEEP(*(SORT(.init_array.*)))
|
||||
KEEP(*(.init_array))
|
||||
PROVIDE_HIDDEN (__init_array_end = .);
|
||||
|
||||
. = ALIGN(4);
|
||||
/* finit data */
|
||||
PROVIDE_HIDDEN (__fini_array_start = .);
|
||||
*(SORT(.fini_array.*))
|
||||
*(.fini_array)
|
||||
PROVIDE_HIDDEN (__fini_array_end = .);
|
||||
|
||||
*(.jcr)
|
||||
. = ALIGN(4);
|
||||
/* All data end */
|
||||
__data_end__ = .;
|
||||
} > RAM AT> FLASH
|
||||
/* __etext is (for backwards compatibility) the name of the .data init source pointer (...) */
|
||||
__etext = LOADADDR(.data);
|
||||
|
||||
.uninitialized_data (NOLOAD): {
|
||||
. = ALIGN(4);
|
||||
*(.uninitialized_data*)
|
||||
} > RAM
|
||||
|
||||
/* Start and end symbols must be word-aligned */
|
||||
.scratch_x : {
|
||||
__scratch_x_start__ = .;
|
||||
*(.scratch_x.*)
|
||||
. = ALIGN(4);
|
||||
__scratch_x_end__ = .;
|
||||
} > SCRATCH_X AT > FLASH
|
||||
__scratch_x_source__ = LOADADDR(.scratch_x);
|
||||
|
||||
.scratch_y : {
|
||||
__scratch_y_start__ = .;
|
||||
*(.scratch_y.*)
|
||||
. = ALIGN(4);
|
||||
__scratch_y_end__ = .;
|
||||
} > SCRATCH_Y AT > FLASH
|
||||
__scratch_y_source__ = LOADADDR(.scratch_y);
|
||||
|
||||
.bss : {
|
||||
. = ALIGN(4);
|
||||
__bss_start__ = .;
|
||||
*(SORT_BY_ALIGNMENT(SORT_BY_NAME(.bss*)))
|
||||
*(COMMON)
|
||||
. = ALIGN(4);
|
||||
__bss_end__ = .;
|
||||
} > RAM
|
||||
|
||||
.heap (NOLOAD):
|
||||
{
|
||||
__end__ = .;
|
||||
end = __end__;
|
||||
KEEP(*(.heap*))
|
||||
__HeapLimit = .;
|
||||
} > RAM
|
||||
|
||||
/* .stack*_dummy section doesn't contains any symbols. It is only
|
||||
* used for linker to calculate size of stack sections, and assign
|
||||
* values to stack symbols later
|
||||
*
|
||||
* stack1 section may be empty/missing if platform_launch_core1 is not used */
|
||||
|
||||
/* by default we put core 0 stack at the end of scratch Y, so that if core 1
|
||||
* stack is not used then all of SCRATCH_X is free.
|
||||
*/
|
||||
.stack1_dummy (NOLOAD):
|
||||
{
|
||||
*(.stack1*)
|
||||
} > SCRATCH_X
|
||||
.stack_dummy (NOLOAD):
|
||||
{
|
||||
KEEP(*(.stack*))
|
||||
} > SCRATCH_Y
|
||||
|
||||
.flash_end : {
|
||||
PROVIDE(__flash_binary_end = .);
|
||||
} > FLASH
|
||||
|
||||
/* stack limit is poorly named, but historically is maximum heap ptr */
|
||||
__StackLimit = ORIGIN(RAM) + LENGTH(RAM);
|
||||
__StackOneTop = ORIGIN(SCRATCH_X) + LENGTH(SCRATCH_X);
|
||||
__StackTop = ORIGIN(SCRATCH_Y) + LENGTH(SCRATCH_Y);
|
||||
__StackOneBottom = __StackOneTop - SIZEOF(.stack1_dummy);
|
||||
__StackBottom = __StackTop - SIZEOF(.stack_dummy);
|
||||
PROVIDE(__stack = __StackTop);
|
||||
|
||||
/* Check if data + heap + stack exceeds RAM limit */
|
||||
ASSERT(__StackLimit >= __HeapLimit, "region RAM overflowed")
|
||||
|
||||
ASSERT( __binary_info_header_end - __logical_binary_start <= 256, "Binary info must be in first 256 bytes of the binary")
|
||||
/* todo assert on extra code */
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user