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@ -58,26 +58,26 @@ static cell_t ResizeFile(cell_t fd, cell_t size);
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FLOATING_POINT_LIST
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#define REQUIRED_MEMORY_SUPPORT \
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Y(MALLOC, SET malloc(n0)) \
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Y(SYSFREE, free(a0); DROP) \
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Y(REALLOC, SET realloc(a1, n0); NIP) \
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Y(heap_caps_malloc, SET heap_caps_malloc(n1, n0); NIP) \
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Y(heap_caps_free, heap_caps_free(a0); DROP) \
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Y(heap_caps_realloc, \
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YV(INTERNALS, MALLOC, SET malloc(n0)) \
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YV(INTERNALS, SYSFREE, free(a0); DROP) \
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YV(INTERNALS, REALLOC, SET realloc(a1, n0); NIP) \
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YV(INTERNALS, heap_caps_malloc, SET heap_caps_malloc(n1, n0); NIP) \
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YV(INTERNALS, heap_caps_free, heap_caps_free(a0); DROP) \
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YV(INTERNALS, heap_caps_realloc, \
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tos = (cell_t) heap_caps_realloc(a2, n1, n0); NIPn(2))
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#define REQUIRED_SYSTEM_SUPPORT \
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X("MS-TICKS", MS_TICKS, PUSH millis()) \
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X("RAW-YIELD", RAW_YIELD, yield()) \
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XV(INTERNALS, "RAW-YIELD", RAW_YIELD, yield()) \
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Y(TERMINATE, exit(n0))
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#define REQUIRED_SERIAL_SUPPORT \
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X("Serial.begin", SERIAL_BEGIN, Serial.begin(tos); DROP) \
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X("Serial.end", SERIAL_END, Serial.end()) \
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X("Serial.available", SERIAL_AVAILABLE, PUSH Serial.available()) \
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X("Serial.readBytes", SERIAL_READ_BYTES, n0 = Serial.readBytes(b1, n0); NIP) \
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X("Serial.write", SERIAL_WRITE, n0 = Serial.write(b1, n0); NIP) \
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X("Serial.flush", SERIAL_FLUSH, Serial.flush())
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XV(SERIAL, "Serial.begin", SERIAL_BEGIN, Serial.begin(tos); DROP) \
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XV(SERIAL, "Serial.end", SERIAL_END, Serial.end()) \
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XV(SERIAL, "Serial.available", SERIAL_AVAILABLE, PUSH Serial.available()) \
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XV(SERIAL, "Serial.readBytes", SERIAL_READ_BYTES, n0 = Serial.readBytes(b1, n0); NIP) \
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XV(SERIAL, "Serial.write", SERIAL_WRITE, n0 = Serial.write(b1, n0); NIP) \
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XV(SERIAL, "Serial.flush", SERIAL_FLUSH, Serial.flush())
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#define REQUIRED_ARDUINO_GPIO_SUPPORT \
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Y(pinMode, pinMode(n1, n0); DROPn(2)) \
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@ -149,56 +149,56 @@ static cell_t ResizeFile(cell_t fd, cell_t size);
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# include "esp_partition.h"
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# endif
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# define OPTIONAL_SPI_FLASH_SUPPORT \
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Y(spi_flash_init, spi_flash_init()) \
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Y(spi_flash_get_chip_size, PUSH spi_flash_get_chip_size()) \
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Y(spi_flash_erase_sector, n0 = spi_flash_erase_sector(n0)) \
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Y(spi_flash_erase_range, n0 = spi_flash_erase_range(n1, n0); DROP) \
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Y(spi_flash_write, n0 = spi_flash_write(n2, a1, n0); NIPn(2)) \
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Y(spi_flash_write_encrypted, n0 = spi_flash_write_encrypted(n2, a1, n0); NIPn(2)) \
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Y(spi_flash_read, n0 = spi_flash_read(n2, a1, n0); NIPn(2)) \
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Y(spi_flash_read_encrypted, n0 = spi_flash_read_encrypted(n2, a1, n0); NIPn(2)) \
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Y(spi_flash_mmap, \
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YV(SPI_FLASH, spi_flash_init, spi_flash_init()) \
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YV(SPI_FLASH, spi_flash_get_chip_size, PUSH spi_flash_get_chip_size()) \
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YV(SPI_FLASH, spi_flash_erase_sector, n0 = spi_flash_erase_sector(n0)) \
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YV(SPI_FLASH, spi_flash_erase_range, n0 = spi_flash_erase_range(n1, n0); DROP) \
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YV(SPI_FLASH, spi_flash_write, n0 = spi_flash_write(n2, a1, n0); NIPn(2)) \
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YV(SPI_FLASH, spi_flash_write_encrypted, n0 = spi_flash_write_encrypted(n2, a1, n0); NIPn(2)) \
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YV(SPI_FLASH, spi_flash_read, n0 = spi_flash_read(n2, a1, n0); NIPn(2)) \
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YV(SPI_FLASH, spi_flash_read_encrypted, n0 = spi_flash_read_encrypted(n2, a1, n0); NIPn(2)) \
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YV(SPI_FLASH, spi_flash_mmap, \
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n0 = spi_flash_mmap(n4, n3, (spi_flash_mmap_memory_t) n2, \
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(const void **) a1, (spi_flash_mmap_handle_t *) a0); NIPn(4)) \
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Y(spi_flash_mmap_pages, \
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YV(SPI_FLASH, spi_flash_mmap_pages, \
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n0 = spi_flash_mmap_pages((const int *) a4, n3, (spi_flash_mmap_memory_t) n2, \
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(const void **) a1, (spi_flash_mmap_handle_t *) a0); NIPn(4)) \
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Y(spi_flash_munmap, spi_flash_munmap((spi_flash_mmap_handle_t) a0); DROP) \
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Y(spi_flash_mmap_dump, spi_flash_mmap_dump()) \
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Y(spi_flash_mmap_get_free_pages, \
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YV(SPI_FLASH, spi_flash_munmap, spi_flash_munmap((spi_flash_mmap_handle_t) a0); DROP) \
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YV(SPI_FLASH, spi_flash_mmap_dump, spi_flash_mmap_dump()) \
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YV(SPI_FLASH, spi_flash_mmap_get_free_pages, \
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n0 = spi_flash_mmap_get_free_pages((spi_flash_mmap_memory_t) n0)) \
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Y(spi_flash_cache2phys, n0 = spi_flash_cache2phys(a0)) \
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Y(spi_flash_phys2cache, \
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YV(SPI_FLASH, spi_flash_cache2phys, n0 = spi_flash_cache2phys(a0)) \
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YV(SPI_FLASH, spi_flash_phys2cache, \
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n0 = (cell_t) spi_flash_phys2cache(n1, (spi_flash_mmap_memory_t) n0); NIP) \
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Y(spi_flash_cache_enabled, PUSH spi_flash_cache_enabled()) \
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Y(esp_partition_find, \
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YV(SPI_FLASH, spi_flash_cache_enabled, PUSH spi_flash_cache_enabled()) \
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YV(SPI_FLASH, esp_partition_find, \
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n0 = (cell_t) esp_partition_find((esp_partition_type_t) n2, \
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(esp_partition_subtype_t) n1, c0); NIPn(2)) \
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Y(esp_partition_find_first, \
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YV(SPI_FLASH, esp_partition_find_first, \
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n0 = (cell_t) esp_partition_find_first((esp_partition_type_t) n2, \
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(esp_partition_subtype_t) n1, c0); NIPn(2)) \
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Y(esp_partition_t_size, PUSH sizeof(esp_partition_t)) \
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Y(esp_partition_get, \
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YV(SPI_FLASH, esp_partition_t_size, PUSH sizeof(esp_partition_t)) \
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YV(SPI_FLASH, esp_partition_get, \
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n0 = (cell_t) esp_partition_get((esp_partition_iterator_t) a0)) \
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Y(esp_partition_next, \
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YV(SPI_FLASH, esp_partition_next, \
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n0 = (cell_t) esp_partition_next((esp_partition_iterator_t) a0)) \
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Y(esp_partition_iterator_release, \
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YV(SPI_FLASH, esp_partition_iterator_release, \
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esp_partition_iterator_release((esp_partition_iterator_t) a0); DROP) \
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Y(esp_partition_verify, n0 = (cell_t) esp_partition_verify((esp_partition_t *) a0)) \
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Y(esp_partition_read, \
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YV(SPI_FLASH, esp_partition_verify, n0 = (cell_t) esp_partition_verify((esp_partition_t *) a0)) \
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YV(SPI_FLASH, esp_partition_read, \
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n0 = esp_partition_read((const esp_partition_t *) a3, n2, a1, n0); NIPn(3)) \
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Y(esp_partition_write, \
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YV(SPI_FLASH, esp_partition_write, \
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n0 = esp_partition_write((const esp_partition_t *) a3, n2, a1, n0); NIPn(3)) \
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Y(esp_partition_erase_range, \
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YV(SPI_FLASH, esp_partition_erase_range, \
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n0 = esp_partition_erase_range((const esp_partition_t *) a2, n1, n0); NIPn(2)) \
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Y(esp_partition_mmap, \
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YV(SPI_FLASH, esp_partition_mmap, \
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n0 = esp_partition_mmap((const esp_partition_t *) a5, n4, n3, \
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(spi_flash_mmap_memory_t) n2, \
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(const void **) a1, \
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(spi_flash_mmap_handle_t *) a0); NIPn(5)) \
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Y(esp_partition_get_sha256, \
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YV(SPI_FLASH, esp_partition_get_sha256, \
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n0 = esp_partition_get_sha256((const esp_partition_t *) a1, b0); NIP) \
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Y(esp_partition_check_identity, \
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YV(SPI_FLASH, esp_partition_check_identity, \
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n0 = esp_partition_check_identity((const esp_partition_t *) a1, \
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(const esp_partition_t *) a0); NIP)
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#endif
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@ -212,12 +212,12 @@ static cell_t ResizeFile(cell_t fd, cell_t size);
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# include "SPIFFS.h"
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# endif
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# define OPTIONAL_SPIFFS_SUPPORT \
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X("SPIFFS.begin", SPIFFS_BEGIN, \
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XV(SPIFFS, "SPIFFS.begin", SPIFFS_BEGIN, \
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tos = SPIFFS.begin(n2, c1, n0); NIPn(2)) \
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X("SPIFFS.end", SPIFFS_END, SPIFFS.end()) \
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X("SPIFFS.format", SPIFFS_FORMAT, PUSH SPIFFS.format()) \
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X("SPIFFS.totalBytes", SPIFFS_TOTAL_BYTES, PUSH SPIFFS.totalBytes()) \
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X("SPIFFS.usedBytes", SPIFFS_USED_BYTES, PUSH SPIFFS.usedBytes())
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XV(SPIFFS, "SPIFFS.end", SPIFFS_END, SPIFFS.end()) \
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XV(SPIFFS, "SPIFFS.format", SPIFFS_FORMAT, PUSH SPIFFS.format()) \
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XV(SPIFFS, "SPIFFS.totalBytes", SPIFFS_TOTAL_BYTES, PUSH SPIFFS.totalBytes()) \
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XV(SPIFFS, "SPIFFS.usedBytes", SPIFFS_USED_BYTES, PUSH SPIFFS.usedBytes())
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#endif
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#ifndef ENABLE_FREERTOS_SUPPORT
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@ -228,10 +228,10 @@ static cell_t ResizeFile(cell_t fd, cell_t size);
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# include "freertos/task.h"
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# endif
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# define OPTIONAL_FREERTOS_SUPPORT \
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Y(vTaskDelete, vTaskDelete((TaskHandle_t) n0); DROP) \
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Y(xTaskCreatePinnedToCore, n0 = xTaskCreatePinnedToCore((TaskFunction_t) a6, \
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YV(RTOS, vTaskDelete, vTaskDelete((TaskHandle_t) n0); DROP) \
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YV(RTOS, xTaskCreatePinnedToCore, n0 = xTaskCreatePinnedToCore((TaskFunction_t) a6, \
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c5, n4, a3, (UBaseType_t) n2, (TaskHandle_t *) a1, (BaseType_t) n0); NIPn(6)) \
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Y(xPortGetCoreID, PUSH xPortGetCoreID())
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YV(RTOS, xPortGetCoreID, PUSH xPortGetCoreID())
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#endif
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#ifndef ENABLE_INTERRUPTS_SUPPORT
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@ -246,34 +246,34 @@ static cell_t GpioIsrHandlerAdd(cell_t pin, cell_t xt, cell_t arg);
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static cell_t TimerIsrRegister(cell_t group, cell_t timer, cell_t xt, cell_t arg, cell_t flags, void *ret);
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# endif
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# define OPTIONAL_INTERRUPTS_SUPPORT \
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Y(gpio_config, n0 = gpio_config((const gpio_config_t *) a0)) \
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Y(gpio_reset_pin, n0 = gpio_reset_pin((gpio_num_t) n0)) \
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Y(gpio_set_intr_type, n0 = gpio_set_intr_type((gpio_num_t) n1, (gpio_int_type_t) n0); NIP) \
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Y(gpio_intr_enable, n0 = gpio_intr_enable((gpio_num_t) n0)) \
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Y(gpio_intr_disable, n0 = gpio_intr_disable((gpio_num_t) n0)) \
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Y(gpio_set_level, n0 = gpio_set_level((gpio_num_t) n1, n0); NIP) \
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Y(gpio_get_level, n0 = gpio_get_level((gpio_num_t) n0)) \
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Y(gpio_set_direction, n0 = gpio_set_direction((gpio_num_t) n1, (gpio_mode_t) n0); NIP) \
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Y(gpio_set_pull_mode, n0 = gpio_set_pull_mode((gpio_num_t) n1, (gpio_pull_mode_t) n0); NIP) \
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Y(gpio_wakeup_enable, n0 = gpio_wakeup_enable((gpio_num_t) n1, (gpio_int_type_t) n0); NIP) \
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Y(gpio_wakeup_disable, n0 = gpio_wakeup_disable((gpio_num_t) n0)) \
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Y(gpio_pullup_en, n0 = gpio_pullup_en((gpio_num_t) n0)) \
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Y(gpio_pullup_dis, n0 = gpio_pullup_dis((gpio_num_t) n0)) \
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Y(gpio_pulldown_en, n0 = gpio_pulldown_en((gpio_num_t) n0)) \
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Y(gpio_pulldown_dis, n0 = gpio_pulldown_dis((gpio_num_t) n0)) \
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Y(gpio_hold_en, n0 = gpio_hold_en((gpio_num_t) n0)) \
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Y(gpio_hold_dis, n0 = gpio_hold_dis((gpio_num_t) n0)) \
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Y(gpio_deep_sleep_hold_en, gpio_deep_sleep_hold_en()) \
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Y(gpio_deep_sleep_hold_dis, gpio_deep_sleep_hold_dis()) \
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Y(gpio_install_isr_service, n0 = gpio_install_isr_service(n0)) \
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Y(gpio_uninstall_isr_service, gpio_uninstall_isr_service()) \
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Y(gpio_isr_handler_add, n0 = GpioIsrHandlerAdd(n2, n1, n0); NIPn(2)) \
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Y(gpio_isr_handler_remove, n0 = gpio_isr_handler_remove((gpio_num_t) n0)) \
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Y(gpio_set_drive_capability, n0 = gpio_set_drive_capability((gpio_num_t) n1, (gpio_drive_cap_t) n0); NIP) \
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Y(gpio_get_drive_capability, n0 = gpio_get_drive_capability((gpio_num_t) n1, (gpio_drive_cap_t *) a0); NIP) \
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Y(esp_intr_alloc, n0 = EspIntrAlloc(n4, n3, n2, n1, a0); NIPn(4)) \
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Y(esp_intr_free, n0 = esp_intr_free((intr_handle_t) n0)) \
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Y(timer_isr_register, n0 = TimerIsrRegister(n5, n4, n3, n2, n1, a0); NIPn(5))
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YV(INTERRUPTS, gpio_config, n0 = gpio_config((const gpio_config_t *) a0)) \
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YV(INTERRUPTS, gpio_reset_pin, n0 = gpio_reset_pin((gpio_num_t) n0)) \
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YV(INTERRUPTS, gpio_set_intr_type, n0 = gpio_set_intr_type((gpio_num_t) n1, (gpio_int_type_t) n0); NIP) \
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YV(INTERRUPTS, gpio_intr_enable, n0 = gpio_intr_enable((gpio_num_t) n0)) \
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YV(INTERRUPTS, gpio_intr_disable, n0 = gpio_intr_disable((gpio_num_t) n0)) \
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YV(INTERRUPTS, gpio_set_level, n0 = gpio_set_level((gpio_num_t) n1, n0); NIP) \
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YV(INTERRUPTS, gpio_get_level, n0 = gpio_get_level((gpio_num_t) n0)) \
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YV(INTERRUPTS, gpio_set_direction, n0 = gpio_set_direction((gpio_num_t) n1, (gpio_mode_t) n0); NIP) \
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YV(INTERRUPTS, gpio_set_pull_mode, n0 = gpio_set_pull_mode((gpio_num_t) n1, (gpio_pull_mode_t) n0); NIP) \
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YV(INTERRUPTS, gpio_wakeup_enable, n0 = gpio_wakeup_enable((gpio_num_t) n1, (gpio_int_type_t) n0); NIP) \
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YV(INTERRUPTS, gpio_wakeup_disable, n0 = gpio_wakeup_disable((gpio_num_t) n0)) \
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YV(INTERRUPTS, gpio_pullup_en, n0 = gpio_pullup_en((gpio_num_t) n0)) \
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YV(INTERRUPTS, gpio_pullup_dis, n0 = gpio_pullup_dis((gpio_num_t) n0)) \
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YV(INTERRUPTS, gpio_pulldown_en, n0 = gpio_pulldown_en((gpio_num_t) n0)) \
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YV(INTERRUPTS, gpio_pulldown_dis, n0 = gpio_pulldown_dis((gpio_num_t) n0)) \
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YV(INTERRUPTS, gpio_hold_en, n0 = gpio_hold_en((gpio_num_t) n0)) \
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YV(INTERRUPTS, gpio_hold_dis, n0 = gpio_hold_dis((gpio_num_t) n0)) \
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YV(INTERRUPTS, gpio_deep_sleep_hold_en, gpio_deep_sleep_hold_en()) \
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YV(INTERRUPTS, gpio_deep_sleep_hold_dis, gpio_deep_sleep_hold_dis()) \
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YV(INTERRUPTS, gpio_install_isr_service, n0 = gpio_install_isr_service(n0)) \
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YV(INTERRUPTS, gpio_uninstall_isr_service, gpio_uninstall_isr_service()) \
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YV(INTERRUPTS, gpio_isr_handler_add, n0 = GpioIsrHandlerAdd(n2, n1, n0); NIPn(2)) \
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YV(INTERRUPTS, gpio_isr_handler_remove, n0 = gpio_isr_handler_remove((gpio_num_t) n0)) \
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YV(INTERRUPTS, gpio_set_drive_capability, n0 = gpio_set_drive_capability((gpio_num_t) n1, (gpio_drive_cap_t) n0); NIP) \
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YV(INTERRUPTS, gpio_get_drive_capability, n0 = gpio_get_drive_capability((gpio_num_t) n1, (gpio_drive_cap_t *) a0); NIP) \
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YV(INTERRUPTS, esp_intr_alloc, n0 = EspIntrAlloc(n4, n3, n2, n1, a0); NIPn(4)) \
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YV(INTERRUPTS, esp_intr_free, n0 = esp_intr_free((intr_handle_t) n0)) \
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YV(INTERRUPTS, timer_isr_register, n0 = TimerIsrRegister(n5, n4, n3, n2, n1, a0); NIPn(5))
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#endif
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#ifndef ENABLE_RMT_SUPPORT
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@ -283,57 +283,57 @@ static cell_t TimerIsrRegister(cell_t group, cell_t timer, cell_t xt, cell_t arg
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# include "driver/rmt.h"
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# endif
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# define OPTIONAL_RMT_SUPPORT \
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Y(rmt_set_clk_div, n0 = rmt_set_clk_div((rmt_channel_t) n1, n0); NIP) \
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Y(rmt_get_clk_div, n0 = rmt_get_clk_div((rmt_channel_t) n1, b0); NIP) \
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Y(rmt_set_rx_idle_thresh, n0 = rmt_set_rx_idle_thresh((rmt_channel_t) n1, n0); NIP) \
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Y(rmt_get_rx_idle_thresh, \
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YV(RMT, rmt_set_clk_div, n0 = rmt_set_clk_div((rmt_channel_t) n1, n0); NIP) \
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YV(RMT, rmt_get_clk_div, n0 = rmt_get_clk_div((rmt_channel_t) n1, b0); NIP) \
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YV(RMT, rmt_set_rx_idle_thresh, n0 = rmt_set_rx_idle_thresh((rmt_channel_t) n1, n0); NIP) \
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YV(RMT, rmt_get_rx_idle_thresh, \
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n0 = rmt_get_rx_idle_thresh((rmt_channel_t) n1, (uint16_t *) a0); NIP) \
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Y(rmt_set_mem_block_num, n0 = rmt_set_mem_block_num((rmt_channel_t) n1, n0); NIP) \
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Y(rmt_get_mem_block_num, n0 = rmt_get_mem_block_num((rmt_channel_t) n1, b0); NIP) \
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Y(rmt_set_tx_carrier, n0 = rmt_set_tx_carrier((rmt_channel_t) n4, n3, n2, n1, \
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YV(RMT, rmt_set_mem_block_num, n0 = rmt_set_mem_block_num((rmt_channel_t) n1, n0); NIP) \
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YV(RMT, rmt_get_mem_block_num, n0 = rmt_get_mem_block_num((rmt_channel_t) n1, b0); NIP) \
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YV(RMT, rmt_set_tx_carrier, n0 = rmt_set_tx_carrier((rmt_channel_t) n4, n3, n2, n1, \
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(rmt_carrier_level_t) n0); NIPn(4)) \
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Y(rmt_set_mem_pd, n0 = rmt_set_mem_pd((rmt_channel_t) n1, n0); NIP) \
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Y(rmt_get_mem_pd, n0 = rmt_get_mem_pd((rmt_channel_t) n1, (bool *) a0); NIP) \
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Y(rmt_tx_start, n0 = rmt_tx_start((rmt_channel_t) n1, n0); NIP) \
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Y(rmt_tx_stop, n0 = rmt_tx_stop((rmt_channel_t) n0)) \
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Y(rmt_rx_start, n0 = rmt_rx_start((rmt_channel_t) n1, n0); NIP) \
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Y(rmt_rx_stop, n0 = rmt_rx_stop((rmt_channel_t) n0)) \
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Y(rmt_tx_memory_reset, n0 = rmt_tx_memory_reset((rmt_channel_t) n0)) \
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Y(rmt_rx_memory_reset, n0 = rmt_rx_memory_reset((rmt_channel_t) n0)) \
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Y(rmt_set_memory_owner, n0 = rmt_set_memory_owner((rmt_channel_t) n1, (rmt_mem_owner_t) n0); NIP) \
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Y(rmt_get_memory_owner, n0 = rmt_get_memory_owner((rmt_channel_t) n1, (rmt_mem_owner_t *) a0); NIP) \
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Y(rmt_set_tx_loop_mode, n0 = rmt_set_tx_loop_mode((rmt_channel_t) n1, n0); NIP) \
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Y(rmt_get_tx_loop_mode, n0 = rmt_get_tx_loop_mode((rmt_channel_t) n1, (bool *) a0); NIP) \
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Y(rmt_set_rx_filter, n0 = rmt_set_rx_filter((rmt_channel_t) n2, n1, n0); NIPn(2)) \
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Y(rmt_set_source_clk, n0 = rmt_set_source_clk((rmt_channel_t) n1, (rmt_source_clk_t) n0); NIP) \
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Y(rmt_get_source_clk, n0 = rmt_get_source_clk((rmt_channel_t) n1, (rmt_source_clk_t * ) a0); NIP) \
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Y(rmt_set_idle_level, n0 = rmt_set_idle_level((rmt_channel_t) n2, n1, \
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YV(RMT, rmt_set_mem_pd, n0 = rmt_set_mem_pd((rmt_channel_t) n1, n0); NIP) \
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YV(RMT, rmt_get_mem_pd, n0 = rmt_get_mem_pd((rmt_channel_t) n1, (bool *) a0); NIP) \
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YV(RMT, rmt_tx_start, n0 = rmt_tx_start((rmt_channel_t) n1, n0); NIP) \
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YV(RMT, rmt_tx_stop, n0 = rmt_tx_stop((rmt_channel_t) n0)) \
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YV(RMT, rmt_rx_start, n0 = rmt_rx_start((rmt_channel_t) n1, n0); NIP) \
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YV(RMT, rmt_rx_stop, n0 = rmt_rx_stop((rmt_channel_t) n0)) \
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YV(RMT, rmt_tx_memory_reset, n0 = rmt_tx_memory_reset((rmt_channel_t) n0)) \
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YV(RMT, rmt_rx_memory_reset, n0 = rmt_rx_memory_reset((rmt_channel_t) n0)) \
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YV(RMT, rmt_set_memory_owner, n0 = rmt_set_memory_owner((rmt_channel_t) n1, (rmt_mem_owner_t) n0); NIP) \
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YV(RMT, rmt_get_memory_owner, n0 = rmt_get_memory_owner((rmt_channel_t) n1, (rmt_mem_owner_t *) a0); NIP) \
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YV(RMT, rmt_set_tx_loop_mode, n0 = rmt_set_tx_loop_mode((rmt_channel_t) n1, n0); NIP) \
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YV(RMT, rmt_get_tx_loop_mode, n0 = rmt_get_tx_loop_mode((rmt_channel_t) n1, (bool *) a0); NIP) \
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YV(RMT, rmt_set_rx_filter, n0 = rmt_set_rx_filter((rmt_channel_t) n2, n1, n0); NIPn(2)) \
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YV(RMT, rmt_set_source_clk, n0 = rmt_set_source_clk((rmt_channel_t) n1, (rmt_source_clk_t) n0); NIP) \
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YV(RMT, rmt_get_source_clk, n0 = rmt_get_source_clk((rmt_channel_t) n1, (rmt_source_clk_t * ) a0); NIP) \
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YV(RMT, rmt_set_idle_level, n0 = rmt_set_idle_level((rmt_channel_t) n2, n1, \
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(rmt_idle_level_t) n0); NIPn(2)) \
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Y(rmt_get_idle_level, n0 = rmt_get_idle_level((rmt_channel_t) n2, \
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YV(RMT, rmt_get_idle_level, n0 = rmt_get_idle_level((rmt_channel_t) n2, \
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(bool *) a1, (rmt_idle_level_t *) a0); NIPn(2)) \
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Y(rmt_get_status, n0 = rmt_get_status((rmt_channel_t) n1, (uint32_t *) a0); NIP) \
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Y(rmt_set_rx_intr_en, n0 = rmt_set_rx_intr_en((rmt_channel_t) n1, n0); NIP) \
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Y(rmt_set_err_intr_en, n0 = rmt_set_err_intr_en((rmt_channel_t) n1, (rmt_mode_t) n0); NIP) \
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Y(rmt_set_tx_intr_en, n0 = rmt_set_tx_intr_en((rmt_channel_t) n1, n0); NIP) \
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Y(rmt_set_tx_thr_intr_en, n0 = rmt_set_tx_thr_intr_en((rmt_channel_t) n2, n1, n0); NIPn(2)) \
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Y(rmt_set_gpio, n0 = rmt_set_gpio((rmt_channel_t) n3, (rmt_mode_t) n2, (gpio_num_t) n1, n0); NIPn(3)) \
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Y(rmt_config, n0 = rmt_config((const rmt_config_t *) a0)) \
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Y(rmt_isr_register, n0 = rmt_isr_register((void (*)(void*)) a3, a2, n1, \
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YV(RMT, rmt_get_status, n0 = rmt_get_status((rmt_channel_t) n1, (uint32_t *) a0); NIP) \
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YV(RMT, rmt_set_rx_intr_en, n0 = rmt_set_rx_intr_en((rmt_channel_t) n1, n0); NIP) \
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YV(RMT, rmt_set_err_intr_en, n0 = rmt_set_err_intr_en((rmt_channel_t) n1, (rmt_mode_t) n0); NIP) \
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YV(RMT, rmt_set_tx_intr_en, n0 = rmt_set_tx_intr_en((rmt_channel_t) n1, n0); NIP) \
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YV(RMT, rmt_set_tx_thr_intr_en, n0 = rmt_set_tx_thr_intr_en((rmt_channel_t) n2, n1, n0); NIPn(2)) \
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YV(RMT, rmt_set_gpio, n0 = rmt_set_gpio((rmt_channel_t) n3, (rmt_mode_t) n2, (gpio_num_t) n1, n0); NIPn(3)) \
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YV(RMT, rmt_config, n0 = rmt_config((const rmt_config_t *) a0)) \
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YV(RMT, rmt_isr_register, n0 = rmt_isr_register((void (*)(void*)) a3, a2, n1, \
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(rmt_isr_handle_t *) a0); NIPn(3)) \
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Y(rmt_isr_deregister, n0 = rmt_isr_deregister((rmt_isr_handle_t) n0)) \
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Y(rmt_fill_tx_items, n0 = rmt_fill_tx_items((rmt_channel_t) n3, \
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YV(RMT, rmt_isr_deregister, n0 = rmt_isr_deregister((rmt_isr_handle_t) n0)) \
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YV(RMT, rmt_fill_tx_items, n0 = rmt_fill_tx_items((rmt_channel_t) n3, \
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(rmt_item32_t *) a2, n1, n0); NIPn(3)) \
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Y(rmt_driver_install, n0 = rmt_driver_install((rmt_channel_t) n2, n1, n0); NIPn(2)) \
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Y(rmt_driver_uinstall, n0 = rmt_driver_uninstall((rmt_channel_t) n0)) \
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Y(rmt_get_channel_status, n0 = rmt_get_channel_status((rmt_channel_status_result_t *) a0)) \
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Y(rmt_get_counter_clock, n0 = rmt_get_counter_clock((rmt_channel_t) n1, (uint32_t *) a0); NIP) \
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Y(rmt_write_items, n0 = rmt_write_items((rmt_channel_t) n3, (rmt_item32_t *) a2, n1, n0); NIPn(3)) \
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Y(rmt_wait_tx_done, n0 = rmt_wait_tx_done((rmt_channel_t) n1, n0); NIP) \
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Y(rmt_get_ringbuf_handle, n0 = rmt_get_ringbuf_handle((rmt_channel_t) n1, (RingbufHandle_t *) a0); NIP) \
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Y(rmt_translator_init, n0 = rmt_translator_init((rmt_channel_t) n1, (sample_to_rmt_t) n0); NIP) \
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Y(rmt_translator_set_context, n0 = rmt_translator_set_context((rmt_channel_t) n1, a0); NIP) \
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Y(rmt_translator_get_context, n0 = rmt_translator_get_context((const size_t *) a1, (void **) a0); NIP) \
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Y(rmt_write_sample, n0 = rmt_write_sample((rmt_channel_t) n3, b2, n1, n0); NIPn(3))
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YV(RMT, rmt_driver_install, n0 = rmt_driver_install((rmt_channel_t) n2, n1, n0); NIPn(2)) \
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YV(RMT, rmt_driver_uinstall, n0 = rmt_driver_uninstall((rmt_channel_t) n0)) \
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YV(RMT, rmt_get_channel_status, n0 = rmt_get_channel_status((rmt_channel_status_result_t *) a0)) \
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YV(RMT, rmt_get_counter_clock, n0 = rmt_get_counter_clock((rmt_channel_t) n1, (uint32_t *) a0); NIP) \
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YV(RMT, rmt_write_items, n0 = rmt_write_items((rmt_channel_t) n3, (rmt_item32_t *) a2, n1, n0); NIPn(3)) \
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YV(RMT, rmt_wait_tx_done, n0 = rmt_wait_tx_done((rmt_channel_t) n1, n0); NIP) \
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YV(RMT, rmt_get_ringbuf_handle, n0 = rmt_get_ringbuf_handle((rmt_channel_t) n1, (RingbufHandle_t *) a0); NIP) \
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YV(RMT, rmt_translator_init, n0 = rmt_translator_init((rmt_channel_t) n1, (sample_to_rmt_t) n0); NIP) \
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YV(RMT, rmt_translator_set_context, n0 = rmt_translator_set_context((rmt_channel_t) n1, a0); NIP) \
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YV(RMT, rmt_translator_get_context, n0 = rmt_translator_get_context((const size_t *) a1, (void **) a0); NIP) \
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YV(RMT, rmt_write_sample, n0 = rmt_write_sample((rmt_channel_t) n3, b2, n1, n0); NIPn(3))
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|
#endif
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|
#ifndef ENABLE_CAMERA_SUPPORT
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|
|
|
|
@ -343,11 +343,11 @@ static cell_t TimerIsrRegister(cell_t group, cell_t timer, cell_t xt, cell_t arg
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|
|
# include "esp_camera.h"
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|
|
|
# endif
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|
|
|
# define OPTIONAL_CAMERA_SUPPORT \
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|
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|
|
Y(esp_camera_init, n0 = esp_camera_init((camera_config_t *) a0)) \
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|
Y(esp_camera_deinit, PUSH esp_camera_deinit()) \
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|
Y(esp_camera_fb_get, PUSH esp_camera_fb_get()) \
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|
Y(esp_camera_fb_return, esp_camera_fb_return((camera_fb_t *) a0); DROP) \
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|
Y(esp_camera_sensor_get, PUSH esp_camera_sensor_get())
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|
YV(CAMERA, esp_camera_init, n0 = esp_camera_init((camera_config_t *) a0)) \
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YV(CAMERA, esp_camera_deinit, PUSH esp_camera_deinit()) \
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|
YV(CAMERA, esp_camera_fb_get, PUSH esp_camera_fb_get()) \
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|
YV(CAMERA, esp_camera_fb_return, esp_camera_fb_return((camera_fb_t *) a0); DROP) \
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|
YV(CAMERA, esp_camera_sensor_get, PUSH esp_camera_sensor_get())
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|
|
#endif
|
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|
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|
|
#ifndef ENABLE_SOCKETS_SUPPORT
|
|
|
|
|
@ -363,15 +363,15 @@ static cell_t TimerIsrRegister(cell_t group, cell_t timer, cell_t xt, cell_t arg
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|
|
# include <sys/poll.h>
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|
|
|
|
# endif
|
|
|
|
|
# define OPTIONAL_SOCKETS_SUPPORT \
|
|
|
|
|
Y(socket, n0 = socket(n2, n1, n0); NIPn(2)) \
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|
Y(setsockopt, n0 = setsockopt(n4, n3, n2, a1, n0); NIPn(4)) \
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Y(bind, n0 = bind(n2, (struct sockaddr *) a1, n0); NIPn(2)) \
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|
Y(listen, n0 = listen(n1, n0); NIP) \
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|
Y(connect, n0 = connect(n2, (struct sockaddr *) a1, n0); NIPn(2)) \
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|
Y(sockaccept, n0 = accept(n2, (struct sockaddr *) a1, (socklen_t *) a0); NIPn(2)) \
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Y(select, n0 = select(n4, (fd_set *) a3, (fd_set *) a2, (fd_set *) a1, (struct timeval *) a0); NIPn(4)) \
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|
Y(poll, n0 = poll((struct pollfd *) a2, (nfds_t) n1, n0); NIPn(2)) \
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Y(errno, PUSH errno)
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|
|
YV(SOCKETS, socket, n0 = socket(n2, n1, n0); NIPn(2)) \
|
|
|
|
|
YV(SOCKETS, setsockopt, n0 = setsockopt(n4, n3, n2, a1, n0); NIPn(4)) \
|
|
|
|
|
YV(SOCKETS, bind, n0 = bind(n2, (struct sockaddr *) a1, n0); NIPn(2)) \
|
|
|
|
|
YV(SOCKETS, listen, n0 = listen(n1, n0); NIP) \
|
|
|
|
|
YV(SOCKETS, connect, n0 = connect(n2, (struct sockaddr *) a1, n0); NIPn(2)) \
|
|
|
|
|
YV(SOCKETS, sockaccept, n0 = accept(n2, (struct sockaddr *) a1, (socklen_t *) a0); NIPn(2)) \
|
|
|
|
|
YV(SOCKETS, select, n0 = select(n4, (fd_set *) a3, (fd_set *) a2, (fd_set *) a1, (struct timeval *) a0); NIPn(4)) \
|
|
|
|
|
YV(SOCKETS, poll, n0 = poll((struct pollfd *) a2, (nfds_t) n1, n0); NIPn(2)) \
|
|
|
|
|
YV(SOCKETS, errno, PUSH errno)
|
|
|
|
|
#endif
|
|
|
|
|
|
|
|
|
|
#ifndef ENABLE_SD_SUPPORT
|
|
|
|
|
@ -381,15 +381,15 @@ static cell_t TimerIsrRegister(cell_t group, cell_t timer, cell_t xt, cell_t arg
|
|
|
|
|
# include "SD.h"
|
|
|
|
|
# endif
|
|
|
|
|
# define OPTIONAL_SD_SUPPORT \
|
|
|
|
|
X("SD.begin", SD_BEGIN, PUSH SD.begin()) \
|
|
|
|
|
X("SD.beginFull", SD_BEGIN_FULL, \
|
|
|
|
|
XV(SD, "SD.begin", SD_BEGIN, PUSH SD.begin()) \
|
|
|
|
|
XV(SD, "SD.beginFull", SD_BEGIN_FULL, \
|
|
|
|
|
tos = SD.begin(n5, *(SPIClass*)a4, n3, c2, n1, n0); NIPn(5)) \
|
|
|
|
|
X("SD.beginDefaults", SD_BEGIN_DEFAULTS, \
|
|
|
|
|
XV(SD, "SD.beginDefaults", SD_BEGIN_DEFAULTS, \
|
|
|
|
|
PUSH SS; PUSH &SPI; PUSH 4000000; PUSH "/sd"; PUSH 5; PUSH false) \
|
|
|
|
|
X("SD.end", SD_END, SD.end()) \
|
|
|
|
|
X("SD.cardType", SD_CARD_TYPE, PUSH SD.cardType()) \
|
|
|
|
|
X("SD.totalBytes", SD_TOTAL_BYTES, PUSH SD.totalBytes()) \
|
|
|
|
|
X("SD.usedBytes", SD_USED_BYTES, PUSH SD.usedBytes())
|
|
|
|
|
XV(SD, "SD.end", SD_END, SD.end()) \
|
|
|
|
|
XV(SD, "SD.cardType", SD_CARD_TYPE, PUSH SD.cardType()) \
|
|
|
|
|
XV(SD, "SD.totalBytes", SD_TOTAL_BYTES, PUSH SD.totalBytes()) \
|
|
|
|
|
XV(SD, "SD.usedBytes", SD_USED_BYTES, PUSH SD.usedBytes())
|
|
|
|
|
#endif
|
|
|
|
|
|
|
|
|
|
#ifndef ENABLE_SD_MMC_SUPPORT
|
|
|
|
|
@ -399,14 +399,14 @@ static cell_t TimerIsrRegister(cell_t group, cell_t timer, cell_t xt, cell_t arg
|
|
|
|
|
# include "SD_MMC.h"
|
|
|
|
|
# endif
|
|
|
|
|
# define OPTIONAL_SD_MMC_SUPPORT \
|
|
|
|
|
X("SD_MMC.begin", SD_MMC_BEGIN, PUSH SD_MMC.begin()) \
|
|
|
|
|
X("SD_MMC.beginFull", SD_MMC_BEGIN_FULL, tos = SD_MMC.begin(c2, n1, n0); NIPn(2)) \
|
|
|
|
|
X("SD_MMC.beginDefaults", SD_MMC_BEGIN_DEFAULTS, \
|
|
|
|
|
XV(SD_MMC, "SD_MMC.begin", SD_MMC_BEGIN, PUSH SD_MMC.begin()) \
|
|
|
|
|
XV(SD_MMC, "SD_MMC.beginFull", SD_MMC_BEGIN_FULL, tos = SD_MMC.begin(c2, n1, n0); NIPn(2)) \
|
|
|
|
|
XV(SD_MMC, "SD_MMC.beginDefaults", SD_MMC_BEGIN_DEFAULTS, \
|
|
|
|
|
PUSH "/sdcard"; PUSH false; PUSH false) \
|
|
|
|
|
X("SD_MMC.end", SD_MMC_END, SD_MMC.end()) \
|
|
|
|
|
X("SD_MMC.cardType", SD_MMC_CARD_TYPE, PUSH SD_MMC.cardType()) \
|
|
|
|
|
X("SD_MMC.totalBytes", SD_MMC_TOTAL_BYTES, PUSH SD_MMC.totalBytes()) \
|
|
|
|
|
X("SD_MMC.usedBytes", SD_MMC_USED_BYTES, PUSH SD_MMC.usedBytes())
|
|
|
|
|
XV(SD_MMC, "SD_MMC.end", SD_MMC_END, SD_MMC.end()) \
|
|
|
|
|
XV(SD_MMC, "SD_MMC.cardType", SD_MMC_CARD_TYPE, PUSH SD_MMC.cardType()) \
|
|
|
|
|
XV(SD_MMC, "SD_MMC.totalBytes", SD_MMC_TOTAL_BYTES, PUSH SD_MMC.totalBytes()) \
|
|
|
|
|
XV(SD_MMC, "SD_MMC.usedBytes", SD_MMC_USED_BYTES, PUSH SD_MMC.usedBytes())
|
|
|
|
|
#endif
|
|
|
|
|
|
|
|
|
|
#ifndef ENABLE_I2C_SUPPORT
|
|
|
|
|
@ -416,19 +416,19 @@ static cell_t TimerIsrRegister(cell_t group, cell_t timer, cell_t xt, cell_t arg
|
|
|
|
|
# include <Wire.h>
|
|
|
|
|
# endif
|
|
|
|
|
# define OPTIONAL_I2C_SUPPORT \
|
|
|
|
|
X("Wire.begin", WIRE_BEGIN, n0 = Wire.begin(n1, n0); NIP) \
|
|
|
|
|
X("Wire.setClock", WIRE_SET_CLOCK, Wire.setClock(n0); DROP) \
|
|
|
|
|
X("Wire.getClock", WIRE_GET_CLOCK, PUSH Wire.getClock()) \
|
|
|
|
|
X("Wire.setTimeout", WIRE_SET_TIMEOUT, Wire.setTimeout(n0); DROP) \
|
|
|
|
|
X("Wire.getTimeout", WIRE_GET_TIMEOUT, PUSH Wire.getTimeout()) \
|
|
|
|
|
X("Wire.beginTransmission", WIRE_BEGIN_TRANSMISSION, Wire.beginTransmission(n0); DROP) \
|
|
|
|
|
X("Wire.endTransmission", WIRE_END_TRANSMISSION, SET Wire.endTransmission(n0)) \
|
|
|
|
|
X("Wire.requestFrom", WIRE_REQUEST_FROM, n0 = Wire.requestFrom(n2, n1, n0); NIPn(2)) \
|
|
|
|
|
X("Wire.write", WIRE_WRITE, n0 = Wire.write(b1, n0); NIP) \
|
|
|
|
|
X("Wire.available", WIRE_AVAILABLE, PUSH Wire.available()) \
|
|
|
|
|
X("Wire.read", WIRE_READ, PUSH Wire.read()) \
|
|
|
|
|
X("Wire.peek", WIRE_PEEK, PUSH Wire.peek()) \
|
|
|
|
|
X("Wire.flush", WIRE_FLUSH, Wire.flush())
|
|
|
|
|
XV(WIRE, "Wire.begin", WIRE_BEGIN, n0 = Wire.begin(n1, n0); NIP) \
|
|
|
|
|
XV(WIRE, "Wire.setClock", WIRE_SET_CLOCK, Wire.setClock(n0); DROP) \
|
|
|
|
|
XV(WIRE, "Wire.getClock", WIRE_GET_CLOCK, PUSH Wire.getClock()) \
|
|
|
|
|
XV(WIRE, "Wire.setTimeout", WIRE_SET_TIMEOUT, Wire.setTimeout(n0); DROP) \
|
|
|
|
|
XV(WIRE, "Wire.getTimeout", WIRE_GET_TIMEOUT, PUSH Wire.getTimeout()) \
|
|
|
|
|
XV(WIRE, "Wire.beginTransmission", WIRE_BEGIN_TRANSMISSION, Wire.beginTransmission(n0); DROP) \
|
|
|
|
|
XV(WIRE, "Wire.endTransmission", WIRE_END_TRANSMISSION, SET Wire.endTransmission(n0)) \
|
|
|
|
|
XV(WIRE, "Wire.requestFrom", WIRE_REQUEST_FROM, n0 = Wire.requestFrom(n2, n1, n0); NIPn(2)) \
|
|
|
|
|
XV(WIRE, "Wire.write", WIRE_WRITE, n0 = Wire.write(b1, n0); NIP) \
|
|
|
|
|
XV(WIRE, "Wire.available", WIRE_AVAILABLE, PUSH Wire.available()) \
|
|
|
|
|
XV(WIRE, "Wire.read", WIRE_READ, PUSH Wire.read()) \
|
|
|
|
|
XV(WIRE, "Wire.peek", WIRE_PEEK, PUSH Wire.peek()) \
|
|
|
|
|
XV(WIRE, "Wire.flush", WIRE_FLUSH, Wire.flush())
|
|
|
|
|
#endif
|
|
|
|
|
|
|
|
|
|
#ifndef ENABLE_SERIAL_BLUETOOTH_SUPPORT
|
|
|
|
|
@ -440,26 +440,26 @@ static cell_t TimerIsrRegister(cell_t group, cell_t timer, cell_t xt, cell_t arg
|
|
|
|
|
# define bt0 ((BluetoothSerial *) a0)
|
|
|
|
|
# endif
|
|
|
|
|
# define OPTIONAL_SERIAL_BLUETOOTH_SUPPORT \
|
|
|
|
|
X("SerialBT.new", SERIALBT_NEW, PUSH new BluetoothSerial()) \
|
|
|
|
|
X("SerialBT.delete", SERIALBT_DELETE, delete bt0; DROP) \
|
|
|
|
|
X("SerialBT.begin", SERIALBT_BEGIN, n0 = bt0->begin(c2, n1); NIPn(2)) \
|
|
|
|
|
X("SerialBT.end", SERIALBT_END, bt0->end(); DROP) \
|
|
|
|
|
X("SerialBT.available", SERIALBT_AVAILABLE, n0 = bt0->available()) \
|
|
|
|
|
X("SerialBT.readBytes", SERIALBT_READ_BYTES, n0 = bt0->readBytes(b2, n1); NIPn(2)) \
|
|
|
|
|
X("SerialBT.write", SERIALBT_WRITE, n0 = bt0->write(b2, n1); NIPn(2)) \
|
|
|
|
|
X("SerialBT.flush", SERIALBT_FLUSH, bt0->flush(); DROP) \
|
|
|
|
|
X("SerialBT.hasClient", SERIALBT_HAS_CLIENT, n0 = bt0->hasClient()) \
|
|
|
|
|
X("SerialBT.enableSSP", SERIALBT_ENABLE_SSP, bt0->enableSSP(); DROP) \
|
|
|
|
|
X("SerialBT.setPin", SERIALBT_SET_PIN, n0 = bt0->setPin(c1); NIP) \
|
|
|
|
|
X("SerialBT.unpairDevice", SERIALBT_UNPAIR_DEVICE, \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.new", SERIALBT_NEW, PUSH new BluetoothSerial()) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.delete", SERIALBT_DELETE, delete bt0; DROP) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.begin", SERIALBT_BEGIN, n0 = bt0->begin(c2, n1); NIPn(2)) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.end", SERIALBT_END, bt0->end(); DROP) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.available", SERIALBT_AVAILABLE, n0 = bt0->available()) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.readBytes", SERIALBT_READ_BYTES, n0 = bt0->readBytes(b2, n1); NIPn(2)) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.write", SERIALBT_WRITE, n0 = bt0->write(b2, n1); NIPn(2)) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.flush", SERIALBT_FLUSH, bt0->flush(); DROP) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.hasClient", SERIALBT_HAS_CLIENT, n0 = bt0->hasClient()) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.enableSSP", SERIALBT_ENABLE_SSP, bt0->enableSSP(); DROP) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.setPin", SERIALBT_SET_PIN, n0 = bt0->setPin(c1); NIP) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.unpairDevice", SERIALBT_UNPAIR_DEVICE, \
|
|
|
|
|
n0 = bt0->unpairDevice(b1); NIP) \
|
|
|
|
|
X("SerialBT.connect", SERIALBT_CONNECT, n0 = bt0->connect(c1); NIP) \
|
|
|
|
|
X("SerialBT.connectAddr", SERIALBT_CONNECT_ADDR, n0 = bt0->connect(b1); NIP) \
|
|
|
|
|
X("SerialBT.disconnect", SERIALBT_DISCONNECT, n0 = bt0->disconnect()) \
|
|
|
|
|
X("SerialBT.connected", SERIALBT_CONNECTED, n0 = bt0->connected(n1); NIP) \
|
|
|
|
|
X("SerialBT.isReady", SERIALBT_IS_READY, n0 = bt0->isReady(n2, n1); NIPn(2)) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.connect", SERIALBT_CONNECT, n0 = bt0->connect(c1); NIP) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.connectAddr", SERIALBT_CONNECT_ADDR, n0 = bt0->connect(b1); NIP) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.disconnect", SERIALBT_DISCONNECT, n0 = bt0->disconnect()) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.connected", SERIALBT_CONNECTED, n0 = bt0->connected(n1); NIP) \
|
|
|
|
|
XV(BLUETOOTH, "SerialBT.isReady", SERIALBT_IS_READY, n0 = bt0->isReady(n2, n1); NIPn(2)) \
|
|
|
|
|
/* Bluetooth */ \
|
|
|
|
|
Y(esp_bt_dev_get_address, PUSH esp_bt_dev_get_address())
|
|
|
|
|
YV(BLUETOOTH, esp_bt_dev_get_address, PUSH esp_bt_dev_get_address())
|
|
|
|
|
#endif
|
|
|
|
|
|
|
|
|
|
#ifndef ENABLE_WIFI_SUPPORT
|
|
|
|
|
@ -485,16 +485,16 @@ static cell_t FromIP(IPAddress ip) {
|
|
|
|
|
|
|
|
|
|
# define OPTIONAL_WIFI_SUPPORT \
|
|
|
|
|
/* WiFi */ \
|
|
|
|
|
X("WiFi.config", WIFI_CONFIG, \
|
|
|
|
|
XV(WIFI, "WiFi.config", WIFI_CONFIG, \
|
|
|
|
|
WiFi.config(ToIP(n3), ToIP(n2), ToIP(n1), ToIP(n0)); DROPn(4)) \
|
|
|
|
|
X("WiFi.begin", WIFI_BEGIN, WiFi.begin(c1, c0); DROPn(2)) \
|
|
|
|
|
X("WiFi.disconnect", WIFI_DISCONNECT, WiFi.disconnect()) \
|
|
|
|
|
X("WiFi.status", WIFI_STATUS, PUSH WiFi.status()) \
|
|
|
|
|
X("WiFi.macAddress", WIFI_MAC_ADDRESS, WiFi.macAddress(b0); DROP) \
|
|
|
|
|
X("WiFi.localIP", WIFI_LOCAL_IPS, PUSH FromIP(WiFi.localIP())) \
|
|
|
|
|
X("WiFi.mode", WIFI_MODE, WiFi.mode((wifi_mode_t) n0); DROP) \
|
|
|
|
|
X("WiFi.setTxPower", WIFI_SET_TX_POWER, WiFi.setTxPower((wifi_power_t) n0); DROP) \
|
|
|
|
|
X("WiFi.getTxPower", WIFI_GET_TX_POWER, PUSH WiFi.getTxPower())
|
|
|
|
|
XV(WIFI, "WiFi.begin", WIFI_BEGIN, WiFi.begin(c1, c0); DROPn(2)) \
|
|
|
|
|
XV(WIFI, "WiFi.disconnect", WIFI_DISCONNECT, WiFi.disconnect()) \
|
|
|
|
|
XV(WIFI, "WiFi.status", WIFI_STATUS, PUSH WiFi.status()) \
|
|
|
|
|
XV(WIFI, "WiFi.macAddress", WIFI_MAC_ADDRESS, WiFi.macAddress(b0); DROP) \
|
|
|
|
|
XV(WIFI, "WiFi.localIP", WIFI_LOCAL_IPS, PUSH FromIP(WiFi.localIP())) \
|
|
|
|
|
XV(WIFI, "WiFi.mode", WIFI_MODE, WiFi.mode((wifi_mode_t) n0); DROP) \
|
|
|
|
|
XV(WIFI, "WiFi.setTxPower", WIFI_SET_TX_POWER, WiFi.setTxPower((wifi_power_t) n0); DROP) \
|
|
|
|
|
XV(WIFI, "WiFi.getTxPower", WIFI_GET_TX_POWER, PUSH WiFi.getTxPower())
|
|
|
|
|
#endif
|
|
|
|
|
|
|
|
|
|
#ifndef ENABLE_MDNS_SUPPORT
|
|
|
|
|
@ -517,27 +517,27 @@ static cell_t FromIP(IPAddress ip) {
|
|
|
|
|
static Adafruit_SSD1306 *oled_display = 0;
|
|
|
|
|
# endif
|
|
|
|
|
# define OPTIONAL_OLED_SUPPORT \
|
|
|
|
|
Y(OledAddr, PUSH &oled_display) \
|
|
|
|
|
Y(OledNew, oled_display = new Adafruit_SSD1306(n2, n1, &Wire, n0); DROPn(3)) \
|
|
|
|
|
Y(OledDelete, delete oled_display) \
|
|
|
|
|
Y(OledBegin, n0 = oled_display->begin(n1, n0); NIP) \
|
|
|
|
|
Y(OledHOME, oled_display->setCursor(0,0); DROP) \
|
|
|
|
|
Y(OledCLS, oled_display->clearDisplay()) \
|
|
|
|
|
Y(OledTextc, oled_display->setTextColor(n0); DROP) \
|
|
|
|
|
Y(OledPrintln, oled_display->println(c0); DROP) \
|
|
|
|
|
Y(OledNumln, oled_display->println(n0); DROP) \
|
|
|
|
|
Y(OledNum, oled_display->print(n0); DROP) \
|
|
|
|
|
Y(OledDisplay, oled_display->display()) \
|
|
|
|
|
Y(OledPrint, oled_display->write(c0); DROP) \
|
|
|
|
|
Y(OledInvert, oled_display->invertDisplay(n0); DROP) \
|
|
|
|
|
Y(OledTextsize, oled_display->setTextSize(n0); DROP) \
|
|
|
|
|
Y(OledSetCursor, oled_display->setCursor(n1,n0); DROPn(2)) \
|
|
|
|
|
Y(OledPixel, oled_display->drawPixel(n2, n1, n0); DROPn(2)) \
|
|
|
|
|
Y(OledDrawL, oled_display->drawLine(n4, n3, n2, n1, n0); DROPn(4)) \
|
|
|
|
|
Y(OledCirc, oled_display->drawCircle(n3,n2, n1, n0); DROPn(3)) \
|
|
|
|
|
Y(OledCircF, oled_display->fillCircle(n3, n2, n1, n0); DROPn(3)) \
|
|
|
|
|
Y(OledRect, oled_display->drawRect(n4, n3, n2, n1, n0); DROPn(4)) \
|
|
|
|
|
Y(OledRectF, oled_display->fillRect(n4, n3, n2, n1, n0); DROPn(3)) \
|
|
|
|
|
Y(OledRectR, oled_display->drawRoundRect(n5, n4, n3, n2, n1, n0); DROPn(5)) \
|
|
|
|
|
Y(OledRectRF, oled_display->fillRoundRect(n5, n4, n3, n2, n1, n0 ); DROPn(5))
|
|
|
|
|
YV(OLED, OledAddr, PUSH &oled_display) \
|
|
|
|
|
YV(OLED, OledNew, oled_display = new Adafruit_SSD1306(n2, n1, &Wire, n0); DROPn(3)) \
|
|
|
|
|
YV(OLED, OledDelete, delete oled_display) \
|
|
|
|
|
YV(OLED, OledBegin, n0 = oled_display->begin(n1, n0); NIP) \
|
|
|
|
|
YV(OLED, OledHOME, oled_display->setCursor(0,0); DROP) \
|
|
|
|
|
YV(OLED, OledCLS, oled_display->clearDisplay()) \
|
|
|
|
|
YV(OLED, OledTextc, oled_display->setTextColor(n0); DROP) \
|
|
|
|
|
YV(OLED, OledPrintln, oled_display->println(c0); DROP) \
|
|
|
|
|
YV(OLED, OledNumln, oled_display->println(n0); DROP) \
|
|
|
|
|
YV(OLED, OledNum, oled_display->print(n0); DROP) \
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YV(OLED, OledDisplay, oled_display->display()) \
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YV(OLED, OledPrint, oled_display->write(c0); DROP) \
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YV(OLED, OledInvert, oled_display->invertDisplay(n0); DROP) \
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YV(OLED, OledTextsize, oled_display->setTextSize(n0); DROP) \
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YV(OLED, OledSetCursor, oled_display->setCursor(n1,n0); DROPn(2)) \
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YV(OLED, OledPixel, oled_display->drawPixel(n2, n1, n0); DROPn(2)) \
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YV(OLED, OledDrawL, oled_display->drawLine(n4, n3, n2, n1, n0); DROPn(4)) \
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YV(OLED, OledCirc, oled_display->drawCircle(n3,n2, n1, n0); DROPn(3)) \
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YV(OLED, OledCircF, oled_display->fillCircle(n3, n2, n1, n0); DROPn(3)) \
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YV(OLED, OledRect, oled_display->drawRect(n4, n3, n2, n1, n0); DROPn(4)) \
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YV(OLED, OledRectF, oled_display->fillRect(n4, n3, n2, n1, n0); DROPn(3)) \
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YV(OLED, OledRectR, oled_display->drawRoundRect(n5, n4, n3, n2, n1, n0); DROPn(5)) \
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YV(OLED, OledRectRF, oled_display->fillRoundRect(n5, n4, n3, n2, n1, n0 ); DROPn(5))
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#endif
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