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https://github.com/RobTillaart/Arduino.git
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212 lines
3.9 KiB
C++
212 lines
3.9 KiB
C++
//
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// FILE: SHEX.cpp
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// AUTHOR: Rob Tillaart
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// VERSION: 0.3.1
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// PURPOSE: Arduino library to generate hex dump over Serial
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// DATE: 2020-05-24
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// URL: https://github.com/RobTillaart/SHEX
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#include "SHEX.h"
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SHEX::SHEX(Print* stream, uint8_t length)
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{
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_stream = stream;
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reset();
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// force multiple of 4; max 32
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_length = ((length + 3) / 4) * 4;
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if (_length > SHEX_MAX_LENGTH)
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{
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_length = SHEX_MAX_LENGTH;
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}
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if (_length < SHEX_MIN_LENGTH)
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{
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_length = SHEX_MIN_LENGTH;
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}
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};
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void SHEX::reset()
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{
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_hexOutput = true;
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_length = SHEX_DEFAULT_LENGTH;
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_charCount = 0;
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_separator = ' ';
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_digits = SHEX_COUNTER_DIGITS;
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_vtab = SHEX_DEFAULT_VTAB;
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}
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///////////////////////////////////////////
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//
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// WRITE - the core
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//
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size_t SHEX::write(uint8_t c)
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{
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// PASS THROUGH MODE
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if (_hexOutput == false) return _stream->write(c);
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// HEX MODE
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// handle end of line and position number
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if ((_charCount % _length) == 0)
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{
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// insert ASCII array here
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_stream->println();
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// separator line every _vtab (default 8) lines
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if ((_charCount % (_length * _vtab)) == 0)
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{
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_stream->println();
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}
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// next line
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if (_digits > 0)
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{
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uint32_t mask = 0xF000;
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if (_digits > 4) mask = 0xF00000;
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if (_digits > 6) mask = 0xF0000000;
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while((mask > 0xF) && (mask & _charCount) == 0)
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{
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_stream->print('0');
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mask >>= 4;
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}
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_stream->print(_charCount, HEX);
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_stream->print('\t');
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}
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}
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// Print char as HEX
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if (c < 0x10) _stream->print('0');
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_stream->print(c, HEX);
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_stream->print(_separator);
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_charCount++;
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if ((_charCount % 4) == 0) _stream->print(_separator);
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return 1;
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}
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void SHEX::setHEX(bool hexOutput)
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{
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_hexOutput = hexOutput;
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restartOutput();
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};
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void SHEX::setBytesPerLine(const uint8_t length)
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{
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// force multiple of 4; max 32
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_length = ((length + 3) / 4) * 4;
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if (_length > SHEX_MAX_LENGTH)
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{
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_length = SHEX_MAX_LENGTH;
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}
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if (_length < SHEX_MIN_LENGTH)
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{
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_length = SHEX_MIN_LENGTH;
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}
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restartOutput();
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}
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void SHEX::setVTAB(uint8_t vtab)
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{
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_vtab = vtab;
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restartOutput();
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};
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void SHEX::setCountDigits(uint8_t digits)
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{
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_digits = digits;
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if (_digits == 0) return;
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if (_digits < 4) _digits = 4;
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if (_digits > 8) _digits = 8;
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restartOutput();
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};
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void SHEX::restartOutput()
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{
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// prevent change in middle of line
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_charCount = 0;
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_stream->println();
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}
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///////////////////////////////////////////////////
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//
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// SHEXA
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//
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SHEXA::SHEXA(Print* stream, uint8_t length) : SHEX(stream, length)
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{
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}
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size_t SHEXA::write(uint8_t c)
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{
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// PASS THROUGH MODE
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if (_hexOutput == false) return _stream->write(c);
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// HEX MODE
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// handle end of line and position number
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if ((_charCount % _length) == 0)
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{
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// printable ASCII column
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if (_charCount != 0) flushASCII();
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_stream->println();
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// separator line every _vtab (default 8) lines
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if ((_charCount % (_length * _vtab)) == 0)
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{
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_stream->println();
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}
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// next line
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if (_digits > 0)
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{
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uint32_t mask = 0xF000;
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if (_digits > 4) mask = 0xF00000;
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if (_digits > 6) mask = 0xF0000000;
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while((mask > 0xF) && (mask & _charCount) == 0)
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{
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_stream->print('0');
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mask >>= 4;
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}
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_stream->print(_charCount, HEX);
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_stream->print('\t');
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}
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}
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// Print char as HEX
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if (c < 0x10) _stream->print('0');
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_stream->print(c, HEX);
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_stream->print(_separator);
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// Store in _txtbuf
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_txtbuf[_charCount % _length] = isPrintable(c) ? c : '.';
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_charCount++;
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if ((_charCount % 4) == 0) _stream->print(_separator);
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return 1;
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}
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void SHEXA::flushASCII()
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{
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int len = _charCount % _length;
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if (len == 0) len = _length;
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// else print about (_length - len) * 3 of spaces ...
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for (uint8_t i = 0; i < len;)
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{
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_stream->write(_txtbuf[i++]);
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if ((i % 8) == 0)_stream->print(" ");
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}
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}
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// -- END OF FILE --
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