204 lines
6.2 KiB
C
204 lines
6.2 KiB
C
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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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/**
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* Demo: MAX7219 8x8 LED Matrix 4 in 1
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* Board: STC8G1K08, STC8G1K08A
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*
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* P5.4 -> DIN
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* P3.2 -> SCLK
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* P5.5 -> CS
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*/
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/**
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*
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* PlatformIO configuration example
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[env:stc8g1k08]
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platform = intel_mcs51
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board = stc8g1k08
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build_flags =
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-D__CONF_FOSC=36864000UL
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-D__CONF_MCU_MODEL=MCU_MODEL_STC8G1K08
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-D__CONF_CLKDIV=0x00
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-D__CONF_IRCBAND=0x01
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-D__CONF_VRTRIM=0x20
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-D__CONF_IRTRIM=0xA3
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-D__CONF_LIRTRIM=0x03
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upload_protocol = custom
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upload_port = /dev/ttyUSB0
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upload_speed = 115200
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upload_flags =
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-p$UPLOAD_PORT
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-s$UPLOAD_SPEED
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-e
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upload_command = ${platformio.packages_dir}/tool-stc8prog/stc8prog $UPLOAD_FLAGS -f $SOURCE
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*/
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#include "fw_hal.h"
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#define MAX7219_CS P55
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#define MAX7219_BLOCKS 4
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#define DECODE_MODE 0x09
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#define INTENSITY 0x0A
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#define SCAN_LIMIT 0x0B
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#define SHUT_DOWN 0x0C
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#define DISPLAY_TEST 0x0F
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const uint8_t numbers[]={
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0x3e,0x63,0x63,0x7f,0x63,0x63,0x63,0x63, //A
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0x7e,0x63,0x63,0x7e,0x63,0x63,0x63,0x7e, //B
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0x3e,0x63,0x63,0x60,0x60,0x63,0x63,0x3e, //C
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0x7e,0x63,0x63,0x63,0x63,0x63,0x63,0x7e, //D
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0x7f,0x60,0x60,0x7f,0x60,0x60,0x60,0x7f, //E
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0x7f,0x60,0x60,0x7e,0x60,0x60,0x60,0x60, //F
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0x3e,0x63,0x63,0x60,0x67,0x63,0x63,0x3e, //G
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0x63,0x63,0x63,0x7f,0x63,0x63,0x63,0x63, //H
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0x3f,0x0c,0x0c,0x0c,0x0c,0x0c,0x0c,0x3f, //I
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0x1f,0x06,0x06,0x06,0x06,0x66,0x66,0x3c, //J
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0x63,0x66,0x6c,0x78,0x6c,0x66,0x63,0x61, //K
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0x60,0x60,0x60,0x60,0x60,0x60,0x60,0x7f, //L
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0x63,0x77,0x7f,0x6b,0x63,0x63,0x63,0x63, //M
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0x63,0x63,0x73,0x7b,0x6f,0x67,0x63,0x63, //N
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0x3e,0x63,0x63,0x63,0x63,0x63,0x63,0x3e, //O
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0x7e,0x63,0x63,0x63,0x7e,0x60,0x60,0x60, //P
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0x3c,0x66,0x66,0x66,0x66,0x6e,0x66,0x3f, //Q
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0x7e,0x63,0x63,0x63,0x7e,0x6c,0x66,0x63, //R
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0x3e,0x63,0x63,0x60,0x3e,0x03,0x63,0x3e, //S
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0x3f,0x0c,0x0c,0x0c,0x0c,0x0c,0x0c,0x0c, //T
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0x63,0x63,0x63,0x63,0x63,0x63,0x63,0x3e, //U
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0x63,0x63,0x63,0x63,0x63,0x36,0x1c,0x08, //V
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0x63,0x63,0x63,0x63,0x6b,0x7f,0x77,0x63, //W
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0x63,0x63,0x36,0x1c,0x1c,0x36,0x63,0x63, //X
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0x33,0x33,0x33,0x33,0x1e,0x0c,0x0c,0x0c, //Y
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0x7f,0x03,0x06,0x0c,0x18,0x30,0x60,0x7f, //Z
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0x3e,0x63,0x73,0x6b,0x67,0x63,0x63,0x3e, //0
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0x0c,0x1c,0x3c,0x0c,0x0c,0x0c,0x0c,0x3f, //1
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0x3e,0x63,0x63,0x06,0x0c,0x18,0x30,0x7f, //2
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0x3e,0x63,0x63,0x0e,0x03,0x63,0x63,0x3e, //3
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0x06,0x0e,0x1e,0x36,0x66,0x7f,0x06,0x06, //4
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0x7f,0x60,0x60,0x7e,0x03,0x03,0x03,0x7e, //5
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0x3e,0x63,0x60,0x7e,0x63,0x63,0x63,0x3e, //6
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0x7f,0x03,0x03,0x06,0x0c,0x18,0x18,0x18, //7
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0x3e,0x63,0x63,0x3e,0x63,0x63,0x63,0x3e, //8
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0x3e,0x63,0x63,0x63,0x3f,0x03,0x63,0x3e, //9
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};
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uint8_t val[MAX7219_BLOCKS];
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uint8_t character_len = sizeof(numbers) / 8;
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void MAX7219_singeWrite(uint8_t index, uint8_t addr, uint8_t dat)
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{
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index = index % MAX7219_BLOCKS;
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MAX7219_CS = 0;
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SPI_TxRx(addr);
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SPI_TxRx(dat);
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while(index--)
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{
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SPI_TxRx(addr);
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SPI_TxRx(dat);
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}
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MAX7219_CS = 1;
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}
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void MAX7219_multiWrite(uint8_t addr, uint8_t len, uint8_t* dat)
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{
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MAX7219_CS = 0;
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while (len--)
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{
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SPI_TxRx(addr);
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SPI_TxRx(*dat++);
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}
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MAX7219_CS = 1;
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}
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void MAX7219_init(void)
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{
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for (uint8_t i = 0; i < MAX7219_BLOCKS; i++)
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{
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MAX7219_singeWrite(i, SHUT_DOWN, 0x01); // 0x00:shutdown, 0x01:normal
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MAX7219_singeWrite(i, DECODE_MODE, 0x00); // Bypass code B decoder, no-decode operation
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MAX7219_singeWrite(i, SCAN_LIMIT, 0x07); // Scan-limit, 0:1-digit, 1:2-digits, ..., 7:8-digits
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MAX7219_singeWrite(i, INTENSITY, 0x00); // 0x00:min, 0xFF:max
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MAX7219_singeWrite(i, DISPLAY_TEST, 0x00); // 0x00:normal, 0x01:test mode
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}
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}
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void SPI_init(void)
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{
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// MAX7219 can work with frequency up to 20MHz
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SPI_SetClockPrescaler(SPI_ClockPreScaler_4);
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// Clock idles low
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SPI_SetClockPolarity(HAL_State_OFF);
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// Data transfer is driven by lower SS pin
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SPI_SetClockPhase(SPI_ClockPhase_LeadingEdge);
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// MSB first
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SPI_SetDataOrder(SPI_DataOrder_MSB);
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// Define the output pins
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SPI_SetPort(SPI_AlterPort_P12P54_P13_P14_P15);
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// Ignore SS pin, use MSTR to swith between master/slave mode
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SPI_IgnoreSlaveSelect(HAL_State_ON);
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// Master mode
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SPI_SetMasterMode(HAL_State_ON);
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// Start SPI
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SPI_SetEnableState(HAL_State_ON);
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}
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void main()
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{
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/**
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* ________________________
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* | |
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* |_______________________|
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* A B
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*
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* pos: point to the bit for boundary A
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* lpos: point to the bit for boundary B
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*/
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uint16_t pos = 0, lpos = 0;
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uint8_t i, j, cpos = 0, bpos = 0, tcpos = 0;
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SYS_SetClock();
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// Configure GPIO pins before SPI and device
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// SCLK(P32), CS(P55)
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GPIO_P3_SetMode(GPIO_Pin_2, GPIO_Mode_Output_PP);
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GPIO_P5_SetMode(GPIO_Pin_5, GPIO_Mode_Output_PP);
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// MOSI(P54)
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GPIO_P5_SetMode(GPIO_Pin_4, GPIO_Mode_InOut_QBD);
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// Configure SPI and device
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SPI_init();
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MAX7219_init();
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while(1)
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{
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lpos = pos + sizeof(numbers) - MAX7219_BLOCKS * 8;
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cpos = lpos / 8; // char position
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bpos = lpos % 8; // bit position
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for (i = 0; i < 8; i++) // fill each line
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{
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for (j = 0; j < MAX7219_BLOCKS; j++)
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{
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tcpos = (cpos + j) % character_len;
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val[j] = numbers[tcpos * 8 + i] << bpos;
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tcpos = (cpos + j + 1) % character_len;
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val[j] |= numbers[tcpos * 8 + i] >> (8 - bpos);
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}
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MAX7219_multiWrite(i + 1, MAX7219_BLOCKS, val);
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}
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pos = (pos + 1) % sizeof(numbers);
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SYS_Delay(100);
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}
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}
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