2021-12-30 16:09:36 +01:00
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// Copyright 2021 IOsetting <iosetting(at)outlook.com>
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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2021-12-29 18:05:13 +01:00
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#include "fw_hal.h"
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static uint16_t counter = 0;
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uint8_t readCode(uint8_t offset)
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{
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return (*(unsigned char volatile __CODE *)(__CID_ADDR + offset));
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}
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INTERRUPT(Timer0_Routine, EXTI_VectTimer0)
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{
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uint8_t i, j;
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counter++;
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if (counter == 1000)
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{
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i = 0;
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counter = 0;
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UART1_TxString("ADDR: 0x");
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UART1_TxHex(__CID_ADDR >> 8);
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UART1_TxHex(__CID_ADDR & 0xFF);
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UART1_TxString("\r\n");
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UART1_TxString(" VER1 VER2\r\n");
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UART1_TxString("VRTRIM 40M: ");
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("VRTRIM 24M: ");
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("VRTRIM 35M ??M: ");
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("VRTRIM 20M ??M: ");
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("ITRIM --- 45M: ");
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("ITRIM --- 40M: ");
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("ITRIM 36.864M: ");
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("ITRIM 35M: ");
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("ITRIM 33.1776M: ");
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("ITRIM 30M: ");
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("ITRIM 27M: ");
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("ITRIM 20M: ");
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("ITRIM 24M: ");
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("ITRIM 22.1184M: ");
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("32kHz PD FreQ: ");
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UART1_TxHex(readCode(i++));
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("1.19Vref: ");
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UART1_TxHex(readCode(i++));
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UART1_TxHex(readCode(i++));
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UART1_TxString("\r\n");
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UART1_TxString("\r\n");
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UART1_TxString("MCUID: ");
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for (j = 0; j < 7; j++)
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{
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UART1_TxHex(readCode(i+j));
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UART1_TxChar(' ');
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}
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UART1_TxString("\r\n");
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UART1_TxString("Current IRCBAND:");
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UART1_TxHex(IRCBAND);
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UART1_TxString(", VRTRIM:");
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UART1_TxHex(VRTRIM);
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UART1_TxString(", IRTRIM:");
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UART1_TxHex(IRTRIM);
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UART1_TxString(", LIRTRIM:");
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UART1_TxHex(LIRTRIM);
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UART1_TxString("\r\n\r\n");
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}
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}
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void main(void)
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{
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2021-12-30 15:48:21 +01:00
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// Set system clock. Remove this line if system clock is already set by STC-ISP
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SYS_SetClock();
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2021-12-29 18:05:13 +01:00
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// UART1 configuration: baud 115200 with Timer2, 1T mode, no interrupt
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2022-01-09 12:26:52 +01:00
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UART1_Config8bitUart(UART1_BaudSource_Timer2, HAL_State_ON, 115200);
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2021-12-30 15:48:21 +01:00
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// Timer0 configuration: 16-bit auto-reload, interrupt enabled
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TIM_Timer0_Config(HAL_State_ON, TIM_TimerMode_16BitAuto, 1000);
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EXTI_Timer0_SetIntState(HAL_State_ON);
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EXTI_Timer0_SetIntPriority(EXTI_IntPriority_High);
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2021-12-29 18:05:13 +01:00
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EXTI_Global_SetIntState(HAL_State_ON);
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2021-12-30 15:48:21 +01:00
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TIM_Timer0_SetRunState(HAL_State_ON);
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2021-12-29 18:05:13 +01:00
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while(1);
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}
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