/* The Clear BSD License * * Copyright (c) 2025 EdgeImpulse Inc. * All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted (subject to the limitations in the disclaimer * below) provided that the following conditions are met: * * * Redistributions of source code must retain the above copyright notice, * this list of conditions and the following disclaimer. * * * Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * * * Neither the name of the copyright holder nor the names of its * contributors may be used to endorse or promote products derived from this * software without specific prior written permission. * * NO EXPRESS OR IMPLIED LICENSES TO ANY PARTY'S PATENT RIGHTS ARE GRANTED BY * THIS LICENSE. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A * PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER * IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE * POSSIBILITY OF SUCH DAMAGE. */ /* Includes */ #include "../ei_classifier_porting.h" #if ((EI_PORTING_RENESASRA65 == 1) || (EI_PORTING_RENESASRA8D1 == 1)) #include #include #include #include "unistd.h" #include "peripheral/uart_ep.h" #include extern "C" uint32_t timer_get_ms(void); extern "C" uint32_t timer_get_us(void); __attribute__((weak)) EI_IMPULSE_ERROR ei_run_impulse_check_canceled() { return EI_IMPULSE_OK; } /** * Cancelable sleep, can be triggered with signal from other thread */ __attribute__((weak)) EI_IMPULSE_ERROR ei_sleep(int32_t time_ms) { uint64_t start_time = ei_read_timer_ms(); while(start_time + time_ms > ei_read_timer_ms()){}; return EI_IMPULSE_OK; } uint64_t ei_read_timer_ms() { return timer_get_ms(); } uint64_t ei_read_timer_us() { return timer_get_us(); } __attribute__((weak)) char ei_getchar() { // dummy implementation char ch = 0; return ch; } __attribute__((weak)) void ei_printf(const char *format, ...) { char buffer[1024] = {0}; int length; va_list myargs; va_start(myargs, format); length = vsnprintf(buffer, sizeof(buffer), format, myargs); va_end(myargs); if (length > 0) { uart_print_user_msg((uint8_t *)buffer, length); } } __attribute__((weak)) void ei_printf_float(float f) { float n = f; static double PRECISION = 0.00001; static int MAX_NUMBER_STRING_SIZE = 32; char s[MAX_NUMBER_STRING_SIZE]; if (n == 0.0) { strcpy(s, "0"); } else { int digit, m; char *c = s; int neg = (n < 0); if (neg) { n = -n; } // calculate magnitude m = log10(n); if (neg) { *(c++) = '-'; } if (m < 1.0) { m = 0; } // convert the number while (n > PRECISION || m >= 0) { double weight = pow(10.0, m); if (weight > 0 && !isinf(weight)) { digit = floor(n / weight); n -= (digit * weight); *(c++) = '0' + digit; } if (m == 0 && n > 0) { *(c++) = '.'; } m--; } *(c) = '\0'; } ei_printf("%s", s); } /** * * @param c */ void ei_putchar(char c) { uart_putc(c); } __attribute__((weak)) void *ei_malloc(size_t size) { return malloc(size); } __attribute__((weak)) void *ei_calloc(size_t nitems, size_t size) { return calloc(nitems, size); } __attribute__((weak)) void ei_free(void *ptr) { free(ptr); } #if defined(__cplusplus) && EI_C_LINKAGE == 1 extern "C" #endif __attribute__((weak)) void DebugLog(const char* s) { ei_printf("%s", s); } #elif EI_PORTING_RENESASRA8D1_FREERTOS == 1 #include #include #include #include "unistd.h" #include "peripheral/uart.h" #include "peripheral/usb/usb.h" #include #include "FreeRTOS.h" #include "task.h" #include "stream_buffer.h" #include "common_data.h" extern "C" uint32_t timer_get_ms(void); extern "C" uint32_t timer_get_us(void); __attribute__((weak)) EI_IMPULSE_ERROR ei_run_impulse_check_canceled() { return EI_IMPULSE_OK; } /** * Cancelable sleep, can be triggered with signal from other thread */ /** * Cancelable sleep, can be triggered with signal from other thread */ __attribute__((weak)) EI_IMPULSE_ERROR ei_sleep(int32_t time_ms) { vTaskDelay(time_ms / portTICK_PERIOD_MS); return EI_IMPULSE_OK; } uint64_t ei_read_timer_ms() { return timer_get_ms(); } uint64_t ei_read_timer_us() { return timer_get_us(); } __attribute__((weak)) char ei_getchar() { // dummy implementation char ch = 0; return ch; } #include __attribute__((weak)) void ei_printf(const char *format, ...) { char buffer[1024] = {0}; int length; va_list myargs; va_start(myargs, format); length = vsnprintf(buffer, sizeof(buffer), format, myargs); va_end(myargs); if (length > 0) { //uart_print_user_msg((uint8_t *)buffer, length); //xStreamBufferSend(g_uart_buffer, buffer, length, 0); //uart_print_to_console((uint8_t *)buffer, length); comms_send((uint8_t *)buffer, length, 1000); } } __attribute__((weak)) void ei_printf_float(float f) { float n = f; static double PRECISION = 0.00001; static int MAX_NUMBER_STRING_SIZE = 32; char s[MAX_NUMBER_STRING_SIZE]; if (n == 0.0) { strcpy(s, "0"); } else { int digit, m; char *c = s; int neg = (n < 0); if (neg) { n = -n; } // calculate magnitude m = log10(n); if (neg) { *(c++) = '-'; } if (m < 1.0) { m = 0; } // convert the number while (n > PRECISION || m >= 0) { double weight = pow(10.0, m); if (weight > 0 && !isinf(weight)) { digit = floor(n / weight); n -= (digit * weight); *(c++) = '0' + digit; } if (m == 0 && n > 0) { *(c++) = '.'; } m--; } *(c) = '\0'; } ei_printf("%s", s); } /** * * @param c */ void ei_putchar(char c) { ei_printf("%c", c); } __attribute__((weak)) void *ei_malloc(size_t size) { if (size > 0){ return pvPortMalloc(size); } else { return NULL; } } __attribute__((weak)) void *ei_calloc(size_t nitems, size_t size) { if ((size*nitems) > 0) { return pvPortCalloc(nitems, size); } else { return NULL; } } __attribute__((weak)) void ei_free(void *ptr) { vPortFree(ptr); } #if defined(__cplusplus) && EI_C_LINKAGE == 1 extern "C" #endif __attribute__((weak)) void DebugLog(const char* s) { ei_printf("%s", s); } void * operator new( size_t size ) { return pvPortMalloc( size ); } void * operator new[]( size_t size ) { return pvPortMalloc(size); } void operator delete( void * ptr ) { vPortFree ( ptr ); } void operator delete[]( void * ptr ) { vPortFree ( ptr ); } #endif // EI_PORTING_RENESASRA8D1_FREERTOS == 1