Make font encoding use all byte seq. possible
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@@ -233,6 +233,55 @@ def getCJKGlyph(sym):
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return s
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def getCharsFromFontIndex(index: int) -> str:
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'''
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Converts the font table index into its corresponding string escape
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sequence(s).
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'''
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# We want to be able to use more than 254 symbols (excluding \x00 null
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# terminator and \x01 new-line) in the font table but without making all
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# the chars take 2 bytes. To do this, we use \xF1 to \xFF as lead bytes
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# to designate double-byte chars, and leave the remaining as single-byte
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# chars.
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#
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# For the sake of sanity, \x00 always means the end of string, so we skip
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# \xF1\x00 and others in the mapping.
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#
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# Mapping example:
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#
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# 0x02 => 2
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# 0x03 => 3
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# ...
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# 0xEF => 239
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# 0xF0 => 240
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# 0xF1 0x01 => 1 * 0xFF - 15 + 1 = 241
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# 0xF1 0x02 => 1 * 0xFF - 15 + 2 = 242
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# ...
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# 0xF1 0xFF => 1 * 0xFF - 15 + 255 = 495
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# 0xF2 0x01 => 2 * 0xFF - 15 + 1 = 496
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# ...
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# 0xF2 0xFF => 2 * 0xFF - 15 + 255 = 750
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# 0xF3 0x01 => 3 * 0xFF - 15 + 1 = 751
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# ...
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# 0xFF 0xFF => 15 * 0xFF - 15 + 255 = 4065
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assert index >= 0
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page = int((index + 14) / 0xFF)
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assert page <= 0x0F
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if page == 0:
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return "\\x%0.2X" % index
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else:
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# Into extended range
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# Leader is 0xFz where z is the page number
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# Following char is the remainder
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leader = page + 0xF0
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value = ((index + 14) % 0xFF) + 1
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assert leader <= 0xFF
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assert value <= 0xFF
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return "\\x%0.2X\\x%0.2X" % (leader, value)
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def getFontMapAndTable(textList):
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# the text list is sorted
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# allocate out these in their order as number codes
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@@ -242,29 +291,20 @@ def getFontMapAndTable(textList):
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forcedFirstSymbols = ["0", "1", "2", "3", "4", "5", "6", "7", "8", "9"]
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# enforce numbers are first
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for sym in forcedFirstSymbols:
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symbolMap[sym] = "\\x%0.2X" % index
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symbolMap[sym] = getCharsFromFontIndex(index)
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index = index + 1
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totalSymbolCount = len(set(textList) | set(forcedFirstSymbols))
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# \x00 is for NULL termination and \x01 is for newline, so the maximum
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# number of symbols allowed with 8 bits is `256 - 2`.
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if totalSymbolCount > ((0xEE * 0x0F) - 2):
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# number of symbols allowed is as follow (see also the comments in
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# `getCharsFromFontIndex`):
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if totalSymbolCount > (0x10 * 0xFF - 15) - 2:
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log(f"Error, too many used symbols for this version (total {totalSymbolCount})")
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sys.exit(1)
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log("Generating fonts for {} symbols".format(totalSymbolCount))
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for sym in textList:
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if sym not in symbolMap:
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page = int(index / 0xEF)
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if page == 0:
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symbolMap[sym] = "\\x%0.2X" % index
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else:
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# Into extended range
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# Leader is 0xFz where z is the page number
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# Following char is the remainder
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leader = page + 0xF0
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value = (index % 0xEF) + 1
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symbolMap[sym] = "\\x%0.2X" % leader + "\\x%0.2X" % value
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symbolMap[sym] = getCharsFromFontIndex(index)
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index = index + 1
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# Get the font table
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fontTableStrings = []
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@@ -235,20 +235,21 @@ void OLED::setRotation(bool leftHanded) {
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}
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// print a string to the current cursor location
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void OLED::print(const char *str) {
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uint16_t page = 0;
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while (str[0]) {
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if (static_cast<uint8_t>(str[0]) >= 0xF0) {
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page = static_cast<uint16_t>(str[0] & 0x0F);
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} else if (page != 0) {
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page *= 0xEF;
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page += static_cast<uint8_t>(str[0]) - 1;
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drawChar(page);
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page = 0;
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void OLED::print(const char *const str) {
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const uint8_t *next = reinterpret_cast<const uint8_t *>(str);
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while (next[0]) {
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uint16_t index;
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if (next[0] <= 0xF0) {
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index = next[0];
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next++;
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} else {
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drawChar(str[0]);
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if (!next[1]) {
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return;
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}
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index = (next[0] - 0xF0) * 0xFF - 15 + next[1];
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next += 2;
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}
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str++;
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drawChar(index);
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}
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}
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