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https://github.com/MarekZegare4/MeshCore-Solo.git
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Settings screen (UI_HAS_JOYSTICK_UPDOWN build variant): - Display brightness (5 levels, contrast curve tuned for SH1106 non-linearity) - Buzzer on/off (respected at startup, no more forced unmute) - TX power (2–22 dBm) - Auto-off delay (5s / 15s / 30s / 60s / never) - GPS update interval (off / 30s / 1min / 5min / 15min / 30min) - Timezone offset (UTC-12..+14) for clock screen - Low battery auto-shutdown threshold (off / 3.0–3.5V, default 3.4V) - Battery display mode (icon / % / voltage) Battery: - EMA filter (alpha=0.2) on ADC readings to smooth voltage spikes from uneven load - Battery % calculated using low_batt_mv as 0% anchor - Mute icon repositions dynamically based on battery display width Clock screen on HomeScreen showing time/date with timezone support. Build: - _settings variants added for USB and BLE companion radio builds - Automatic UF2 generation on every build via create-uf2.py post-script - UI_HAS_JOYSTICK_UPDOWN flag guards joystick_up/down to avoid breaking other boards Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
102 lines
3.4 KiB
C++
102 lines
3.4 KiB
C++
#pragma once
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#include <stdint.h>
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#include <string.h>
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class DisplayDriver {
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int _w, _h;
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protected:
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DisplayDriver(int w, int h) { _w = w; _h = h; }
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public:
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enum Color { DARK=0, LIGHT, RED, GREEN, BLUE, YELLOW, ORANGE }; // on b/w screen, colors will be !=0 synonym of light
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int width() const { return _w; }
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int height() const { return _h; }
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virtual bool isOn() = 0;
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virtual void turnOn() = 0;
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virtual void turnOff() = 0;
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virtual void clear() = 0;
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virtual void startFrame(Color bkg = DARK) = 0;
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virtual void setTextSize(int sz) = 0;
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virtual void setColor(Color c) = 0;
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virtual void setCursor(int x, int y) = 0;
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virtual void print(const char* str) = 0;
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virtual void printWordWrap(const char* str, int max_width) { print(str); } // fallback to basic print() if no override
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virtual void fillRect(int x, int y, int w, int h) = 0;
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virtual void drawRect(int x, int y, int w, int h) = 0;
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virtual void drawXbm(int x, int y, const uint8_t* bits, int w, int h) = 0;
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virtual uint16_t getTextWidth(const char* str) = 0;
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virtual void drawTextCentered(int mid_x, int y, const char* str) { // helper method (override to optimise)
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int w = getTextWidth(str);
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setCursor(mid_x - w/2, y);
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print(str);
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}
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virtual void drawTextRightAlign(int x_anch, int y, const char* str) {
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int w = getTextWidth(str);
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setCursor(x_anch - w, y);
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print(str);
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}
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virtual void drawTextLeftAlign(int x_anch, int y, const char* str) {
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setCursor(x_anch, y);
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print(str);
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}
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// convert UTF-8 characters to displayable block characters for compatibility
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virtual void translateUTF8ToBlocks(char* dest, const char* src, size_t dest_size) {
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size_t j = 0;
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for (size_t i = 0; src[i] != 0 && j < dest_size - 1; i++) {
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unsigned char c = (unsigned char)src[i];
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if (c >= 32 && c <= 126) {
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dest[j++] = c; // ASCII printable
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} else if (c >= 0x80) {
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dest[j++] = '\xDB'; // CP437 full block █
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while (src[i+1] && (src[i+1] & 0xC0) == 0x80)
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i++; // skip UTF-8 continuation bytes
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}
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}
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dest[j] = 0;
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}
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// draw text with ellipsis if it exceeds max_width
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virtual void drawTextEllipsized(int x, int y, int max_width, const char* str) {
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char temp_str[256]; // reasonable buffer size
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size_t len = strlen(str);
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if (len >= sizeof(temp_str)) len = sizeof(temp_str) - 1;
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memcpy(temp_str, str, len);
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temp_str[len] = 0;
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if (getTextWidth(temp_str) <= max_width) {
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setCursor(x, y);
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print(temp_str);
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return;
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}
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// for variable-width fonts (GxEPD), add space after ellipsis
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// for fixed-width fonts (OLED), keep tight spacing to save precious characters
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const char* ellipsis;
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// use a simple heuristic: if 'i' and 'l' have different widths, it's variable-width
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int i_width = getTextWidth("i");
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int l_width = getTextWidth("l");
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if (i_width != l_width) {
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ellipsis = "... "; // variable-width fonts: add space
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} else {
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ellipsis = "..."; // fixed-width fonts: no space
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}
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int ellipsis_width = getTextWidth(ellipsis);
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int str_len = strlen(temp_str);
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while (str_len > 0 && getTextWidth(temp_str) > max_width - ellipsis_width) {
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temp_str[--str_len] = 0;
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}
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strcat(temp_str, ellipsis);
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setCursor(x, y);
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print(temp_str);
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}
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virtual void setBrightness(uint8_t level) { } // level 0-4 (min to max), no-op default
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virtual void endFrame() = 0;
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};
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