// Copyright 2021 IOsetting // // Licensed under the Apache License, Version 2.0 (the "License"); // you may not use this file except in compliance with the License. // You may obtain a copy of the License at // // http://www.apache.org/licenses/LICENSE-2.0 // // Unless required by applicable law or agreed to in writing, software // distributed under the License is distributed on an "AS IS" BASIS, // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. // See the License for the specific language governing permissions and // limitations under the License. /** * Demo: DAC voice output simulation * Board: STC8H3K32 (types with flash size >= 32KB) * * P1.0 -> 200R -> Speaker + * GND -> Speaker - */ #include "fw_hal.h" #include "voice.h" uint8_t dc = 0; uint16_t voice_pos = 0, voice_size = 27451; void PWM_Init() { // Set GPIO pins output mode P10 -> PWMA.1P GPIO_P1_SetMode(GPIO_Pin_0, GPIO_Mode_Output_PP); // Turn off PWMA.1 before change its mode PWMA_PWM1_SetPortState(HAL_State_OFF); PWMA_PWM1N_SetPortState(HAL_State_OFF); // Set PWMA.1 port direction output PWMA_PWM1_SetPortDirection(PWMB_PortDirOut); // Set PWMA.1 output low voltage when counter is less than target value PWMA_PWM1_ConfigOutputMode(PWM_OutputMode_PWM_HighIfLess); // Enable comparison value preload to make duty cycle changing smooth PWMA_PWM1_SetComparePreload(HAL_State_ON); // Turn on PWMA.1 PWMA_PWM1_SetPortState(HAL_State_ON); // Set PWM frequency to 16kHz, Fpwm = SYSCLK / (PWMx_PSCR + 1) / (PWMx_ARR + 1) // You will hear obvious noise if PWM frequency is less than 12kHz PWMA_SetPrescaler(8); // PWM width = Period + 1 (side alignment), or AutoReloadPeriod * 2 (center alignment) PWMA_SetPeriod(0xFF); // Counter direction, down:from [PWMA_ARRH,PWMA_ARRL] to 0 PWMA_SetCounterDirection(PWM_CounterDirection_Down); // Enable preload on reload-period PWMA_SetAutoReloadPreload(HAL_State_ON); // Enable output on PWMA.1P PWMA_SetPinOutputState(PWM_Pin_1, HAL_State_ON); // Set PWMA.1 alternative ports to P1.0 and P1.1 PWMA_PWM1_SetPort(PWMA_PWM1_AlterPort_P10_P11); // Enable overall output PWMA_SetOverallState(HAL_State_ON); // Start counter PWMA_SetCounterState(HAL_State_ON); } void Timer0_Init() { TIM_Timer0_Config(HAL_State_ON, TIM_TimerMode_16BitAuto, 8000); EXTI_Timer0_SetIntState(HAL_State_ON); EXTI_Timer0_SetIntPriority(EXTI_IntPriority_High); EXTI_Global_SetIntState(HAL_State_ON); TIM_Timer0_SetRunState(HAL_State_ON); } INTERRUPT(Timer0_Routine, EXTI_VectTimer0) { uint8_t dc; dc = voice_bulk[voice_pos++]; PWMA_PWM1_SetCaptureCompareValue(dc); if (voice_pos == voice_size) voice_pos = 0; } void main(void) { SYS_SetClock(); PWM_Init(); Timer0_Init(); while(1); }