mirror of
https://github.com/RobTillaart/Arduino.git
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233 lines
3.6 KiB
C++
233 lines
3.6 KiB
C++
//
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// FILE: ansi.cpp
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// AUTHOR: Rob Tillaart
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// VERSION: 0.1.8
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// PURPOSE: Arduino library to send ANSI escape sequences
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// DATE: 2020-04-28
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// URL: https://github.com/RobTillaart/ANSI
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#include "ansi.h"
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ANSI::ANSI(Stream * stream)
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{
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_stream = stream;
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}
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int ANSI::available()
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{
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return _stream->available();
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}
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int ANSI::read()
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{
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return _stream->read();
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}
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int ANSI::peek()
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{
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return _stream->peek();
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}
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void ANSI::clearScreen()
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{
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// print(F("\033[2J\033[H"));
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print("\033[2J");
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home();
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}
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void ANSI::clearLine(uint8_t clear)
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{
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print("\033[");
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print(clear);
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print("K");
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}
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void ANSI::home()
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{
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print("\033[H");
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};
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// ANSI has three different color spaces: 4-bit color, 8-bit color, and 24-bit color
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// These are rendered with SGR 30-37,90-97/40-47,100-107, SGR 38;5/48;5, and SGR 38;2/48;2, respectively
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// The 4-bit color space is the most widely compatible and the most compactly transmitted
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enum {
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fg_normal = 30,
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bg_normal = 40,
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bright_color = 52,
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extended_color = 8,
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extended_color8 = 5,
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extended_color24 = 2,
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};
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void ANSI::foreground(uint8_t fgcolor)
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{
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if (fgcolor < 16) {
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this->color4(fg_normal, fgcolor);
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} else {
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this->color8(fg_normal, fgcolor);
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}
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}
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void ANSI::background(uint8_t bgcolor)
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{
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if (bgcolor < 16) {
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this->color4(bg_normal, bgcolor);
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} else {
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this->color8(bg_normal, bgcolor);
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}
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}
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void ANSI::color(uint8_t fgcolor, uint8_t bgcolor)
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{
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if (fgcolor < 16 && bgcolor < 16) {
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this->colors4(fgcolor, bgcolor);
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} else {
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this->color8(fg_normal, fgcolor);
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this->color8(bg_normal, bgcolor);
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}
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}
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uint8_t ANSI::rgb2color(uint8_t r, uint8_t g, uint8_t b) {
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return 16 +
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36 * (uint16_t(r) * 6 / 256) +
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6 * (uint16_t(g) * 6 / 256) +
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(uint16_t(b) * 6 / 256);
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}
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void ANSI::gotoXY(uint8_t x, uint8_t y)
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{
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print("\033[");
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print(x);
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print(";");
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print(y);
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print("H");
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}
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void ANSI::cursorUp(uint8_t x)
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{
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print("\033[");
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print(x);
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print("A");
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}
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void ANSI::cursorDown(uint8_t x)
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{
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print("\033[");
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print(x);
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print("B");
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}
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void ANSI::cursorForward(uint8_t x)
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{
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print("\033[");
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print(x);
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print("C");
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}
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void ANSI::cursorBack(uint8_t x)
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{
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print("\033[");
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print(x);
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print("D");
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}
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int ANSI::deviceType(uint32_t timeout)
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{
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int type = -1; // -1 = unknown
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print("\033[0c");
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uint32_t start = millis();
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int read_len = 0;
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char buffer[8];
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while ((read_len != 3) && ((millis() - start) < timeout))
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{
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delay(1);
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read_len = Serial.readBytes(buffer, 3);
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if ((buffer[0] == '1') && (buffer[1] == ';'))
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{
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type = buffer[2] - '0';
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}
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// Serial.write(buffer, 3);
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// Serial.println();
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}
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return type;
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}
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//////////////////////////////////////////////////
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//
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// PRIVATE
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//
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size_t ANSI::write(uint8_t c)
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{
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// add line buffer? - interference with write(array, length) !?
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return _stream->write(c);
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}
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size_t ANSI::write(uint8_t * array, uint8_t length)
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{
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return _stream->write(array, length);
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}
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void ANSI::color4_code(uint8_t base, uint8_t color) {
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if (color < 8) {
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print(base + color);
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} else {
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print(base + bright_color + color);
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}
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}
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void ANSI::color4(uint8_t base, uint8_t color) {
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print("\033[");
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this->color4_code(base, color);
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print("m");
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}
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void ANSI::colors4(uint8_t fgcolor, uint8_t bgcolor) {
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print("\033[");
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this->color4_code(fg_normal, fgcolor);
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print(";");
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this->color4_code(bg_normal, bgcolor);
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print("m");
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}
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void ANSI::color8(uint8_t base, uint8_t color) {
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print("\033[");
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print(base + extended_color);
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print(";");
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print(extended_color8);
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print(";");
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print(color);
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print("m");
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}
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// -- END OF FILE --
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