Files
MeshCore-Solo/examples/companion_radio/ui-new/BotScreen.h
Jakub 71635e5e6f Bot: DM+channel modes with separate replies; buzzer auto-mute; UX fixes
- Bot redesign: DM bot active for all private messages (no pubkey filter),
  channel bot optional with separate enable flag; both can run simultaneously
- Bot: one shared trigger, separate reply texts for DM and channel
- Buzzer: add Auto mode (mutes when BT connected, unmutes on disconnect);
  per-channel force-on overrides still work as intended
- Settings: defer flash writes to menu exit (only when dirty)
- Settings: add Seconds toggle (hide clock seconds, refresh drops 1s→60s)
- Fullscreen msg preview: fix truncation (fmsg buf 79→140 chars)
- RingtoneEditor: fix melody playback cut after first note (RTTTL lib holds
  pointer — moved play buffer to member variable)
- BotScreen: remove key hint footer
- .gitattributes: protect README.md from upstream merge conflicts

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
2026-05-13 21:09:47 +02:00

325 lines
11 KiB
C++

#pragma once
// Custom screen — not part of upstream UITask.cpp
// Included by UITask.cpp after the global KB_* constants are defined.
class BotScreen : public UIScreen {
UITask* _task;
NodePrefs* _prefs;
// Items: 0=Enable(DM), 1=Channel, 2=Trigger, 3=Reply DM, 4=Reply Ch
static const int ITEM_COUNT = 5;
static const int ITEM_H = 11;
static const int START_Y = 12;
static const int VAL_X = 70;
int _sel;
// keyboard state (reused for trigger and reply fields)
int _kb_field; // -1=off, 2=trigger, 3=reply
char _kb_buf[KB_MAX_LEN + 1];
int _kb_len;
int _kb_maxlen;
int _kb_row, _kb_col;
bool _kb_caps;
bool _kb_ph_mode;
int _kb_ph_sel;
// channel cache (refreshed on enter)
int _num_channels;
uint8_t _channel_indices[MAX_GROUP_CHANNELS];
void refreshChannels() {
_num_channels = 0;
ChannelDetails ch;
for (int i = 0; i < MAX_GROUP_CHANNELS; i++) {
if (the_mesh.getChannel(i, ch) && ch.name[0] != '\0')
_channel_indices[_num_channels++] = (uint8_t)i;
}
}
// Returns index into _channel_indices[] for current bot_channel_idx, or -1 if not found/disabled.
int currentChannelListIdx() const {
if (!_prefs->bot_channel_enabled) return -1;
for (int i = 0; i < _num_channels; i++)
if (_channel_indices[i] == _prefs->bot_channel_idx) return i;
return -1;
}
public:
BotScreen(UITask* task, NodePrefs* prefs) : _task(task), _prefs(prefs) {}
void enter() {
_sel = 0;
_kb_field = -1;
refreshChannels();
}
int render(DisplayDriver& display) override {
display.setTextSize(1);
display.setColor(DisplayDriver::LIGHT);
if (_kb_field >= 0) {
const char* label = (_kb_field == 2) ? "Trigger:" : "Reply:";
const char* disp_start = _kb_buf;
int disp_len = _kb_len;
if (disp_len > 20) { disp_start = _kb_buf + (disp_len - 20); disp_len = 20; }
char preview[28];
snprintf(preview, sizeof(preview), "%s%.*s_", label, disp_len, disp_start);
display.setCursor(0, KB_TEXT_Y);
display.print(preview);
display.fillRect(0, KB_SEP_Y, display.width(), 1);
for (int row = 0; row < KB_ROWS_CHAR; row++) {
int y = KB_CHARS_Y + row * KB_CELL_H;
for (int col = 0; col < KB_COLS_CHAR; col++) {
bool sel = (_kb_row == row && _kb_col == col);
char ch = KB_CHARS[row][col];
if (_kb_caps && ch >= 'a' && ch <= 'z') ch = ch - 'a' + 'A';
char ch_buf[2] = { ch == ' ' ? '_' : ch, '\0' };
int cx = col * KB_CELL_W;
if (sel) {
display.setColor(DisplayDriver::LIGHT);
display.fillRect(cx, y - 1, KB_CELL_W - 1, KB_CELL_H);
display.setColor(DisplayDriver::DARK);
} else {
display.setColor(DisplayDriver::LIGHT);
}
display.setCursor(cx + 3, y);
display.print(ch_buf);
}
}
const char* spec[] = { "[^]", "[Sp]", "[Del]", "[{}]", "[OK]" };
for (int i = 0; i < KB_SPECIAL; i++) {
bool sel = (_kb_row == KB_ROWS_CHAR && _kb_col == i);
bool active = (i == 0 && _kb_caps);
int sx = i * 25;
if (sel || active) {
display.setColor(DisplayDriver::LIGHT);
display.fillRect(sx, KB_SPECIAL_Y - 1, 24, KB_CELL_H);
display.setColor(DisplayDriver::DARK);
} else {
display.setColor(DisplayDriver::LIGHT);
}
display.setCursor(sx + 1, KB_SPECIAL_Y);
display.print(spec[i]);
display.setColor(DisplayDriver::LIGHT);
}
if (_kb_ph_mode) {
display.setColor(DisplayDriver::DARK);
display.fillRect(20, 20, 88, 12 + KB_PH_COUNT * 10);
display.setColor(DisplayDriver::LIGHT);
display.drawRect(20, 20, 88, 12 + KB_PH_COUNT * 10);
display.setCursor(24, 21);
display.print("Placeholder:");
display.fillRect(20, 30, 88, 1);
for (int i = 0; i < KB_PH_COUNT; i++) {
int py = 33 + i * 10;
if (i == _kb_ph_sel) {
display.setColor(DisplayDriver::LIGHT);
display.fillRect(21, py - 1, 86, 10);
display.setColor(DisplayDriver::DARK);
} else {
display.setColor(DisplayDriver::LIGHT);
}
display.setCursor(24, py);
display.print(KB_PH_LIST[i]);
}
display.setColor(DisplayDriver::LIGHT);
}
return 50;
}
display.drawTextCentered(display.width() / 2, 0, "AUTO-REPLY BOT");
display.fillRect(0, 10, display.width(), 1);
static const char* labels[] = { "Enable", "Channel", "Trigger", "Reply DM", "Reply Ch" };
for (int i = 0; i < ITEM_COUNT; i++) {
int y = START_Y + i * ITEM_H;
bool sel = (i == _sel);
if (sel) {
display.fillRect(0, y - 1, display.width(), ITEM_H);
display.setColor(DisplayDriver::DARK);
}
display.setCursor(2, y);
display.print(labels[i]);
display.setCursor(VAL_X, y);
if (i == 0) {
display.print(_prefs->bot_enabled ? "ON" : "OFF");
} else if (i == 1) {
if (!_prefs->bot_channel_enabled || _num_channels == 0) {
display.print("OFF");
} else {
ChannelDetails ch;
if (the_mesh.getChannel(_prefs->bot_channel_idx, ch) && ch.name[0])
display.drawTextEllipsized(VAL_X, y, display.width() - VAL_X - 1, ch.name);
else
display.print("?");
}
} else if (i == 2) {
const char* tr = _prefs->bot_trigger;
display.drawTextEllipsized(VAL_X, y, display.width() - VAL_X - 1, tr[0] ? tr : "(none)");
} else if (i == 3) {
const char* rp = _prefs->bot_reply_dm;
display.drawTextEllipsized(VAL_X, y, display.width() - VAL_X - 1, rp[0] ? rp : "(none)");
} else {
const char* rp = _prefs->bot_reply_ch;
display.drawTextEllipsized(VAL_X, y, display.width() - VAL_X - 1, rp[0] ? rp : "(none)");
}
display.setColor(DisplayDriver::LIGHT);
}
return 300;
}
bool handleInput(char c) override {
bool up = (c == KEY_UP);
bool down = (c == KEY_DOWN);
bool left = (c == KEY_LEFT || c == KEY_PREV);
bool right = (c == KEY_RIGHT || c == KEY_NEXT);
bool enter = (c == KEY_ENTER);
bool cancel = (c == KEY_CANCEL || c == KEY_CONTEXT_MENU);
if (_kb_field >= 0) {
if (_kb_ph_mode) {
if (c == KEY_UP && _kb_ph_sel > 0) { _kb_ph_sel--; return true; }
if (c == KEY_DOWN && _kb_ph_sel < KB_PH_COUNT - 1) { _kb_ph_sel++; return true; }
if (c == KEY_ENTER) {
const char* ph = KB_PH_LIST[_kb_ph_sel];
int ph_len = strlen(ph);
if (_kb_len + ph_len <= _kb_maxlen) {
memcpy(_kb_buf + _kb_len, ph, ph_len);
_kb_len += ph_len;
_kb_buf[_kb_len] = '\0';
}
_kb_ph_mode = false;
return true;
}
if (cancel) { _kb_ph_mode = false; return true; }
return true;
}
if (cancel) { _kb_field = -1; return true; }
if (up) {
if (_kb_row > 0) {
_kb_row--;
if (_kb_row == KB_ROWS_CHAR - 1)
_kb_col = _kb_col * KB_COLS_CHAR / KB_SPECIAL;
}
return true;
}
if (down) {
if (_kb_row < KB_ROWS_CHAR) {
_kb_row++;
if (_kb_row == KB_ROWS_CHAR)
_kb_col = _kb_col * KB_SPECIAL / KB_COLS_CHAR;
}
return true;
}
if (left) { if (_kb_col > 0) _kb_col--; return true; }
if (right) {
int max_col = (_kb_row == KB_ROWS_CHAR) ? KB_SPECIAL - 1 : KB_COLS_CHAR - 1;
if (_kb_col < max_col) _kb_col++;
return true;
}
if (enter) {
if (_kb_row < KB_ROWS_CHAR) {
if (_kb_len < _kb_maxlen) {
char ch = KB_CHARS[_kb_row][_kb_col];
if (_kb_caps && ch >= 'a' && ch <= 'z') ch = ch - 'a' + 'A';
_kb_buf[_kb_len++] = ch;
_kb_buf[_kb_len] = '\0';
}
} else {
switch (_kb_col) {
case 0: _kb_caps = !_kb_caps; break;
case 1:
if (_kb_len < _kb_maxlen) { _kb_buf[_kb_len++] = ' '; _kb_buf[_kb_len] = '\0'; }
break;
case 2:
if (_kb_len > 0) _kb_buf[--_kb_len] = '\0';
break;
case 3:
_kb_ph_mode = true;
_kb_ph_sel = 0;
break;
case 4:
if (_kb_field == 2) {
strncpy(_prefs->bot_trigger, _kb_buf, sizeof(_prefs->bot_trigger) - 1);
_prefs->bot_trigger[sizeof(_prefs->bot_trigger) - 1] = '\0';
} else if (_kb_field == 3) {
strncpy(_prefs->bot_reply_dm, _kb_buf, sizeof(_prefs->bot_reply_dm) - 1);
_prefs->bot_reply_dm[sizeof(_prefs->bot_reply_dm) - 1] = '\0';
} else {
strncpy(_prefs->bot_reply_ch, _kb_buf, sizeof(_prefs->bot_reply_ch) - 1);
_prefs->bot_reply_ch[sizeof(_prefs->bot_reply_ch) - 1] = '\0';
}
_kb_field = -1;
break;
}
}
return true;
}
return true;
}
if (cancel) {
the_mesh.savePrefs();
_task->gotoToolsScreen();
return true;
}
if (up && _sel > 0) { _sel--; return true; }
if (down && _sel < ITEM_COUNT - 1) { _sel++; return true; }
if (_sel == 0 && (enter || left || right)) {
_prefs->bot_enabled ^= 1;
return true;
}
if (_sel == 1) {
if (_num_channels == 0) return false;
// Cycle: OFF → ch[0] → ch[1] → ... → OFF
int idx = currentChannelListIdx(); // -1 = OFF
if (right || enter) {
idx++;
if (idx >= _num_channels) idx = -1; // wrap to OFF
}
if (left) {
idx--;
if (idx < -1) idx = _num_channels - 1;
}
if (left || right || enter) {
if (idx < 0) {
_prefs->bot_channel_enabled = 0;
} else {
_prefs->bot_channel_enabled = 1;
_prefs->bot_channel_idx = _channel_indices[idx];
}
return true;
}
}
if ((_sel == 2 || _sel == 3 || _sel == 4) && enter) {
_kb_field = _sel;
_kb_row = 0;
_kb_col = 0;
_kb_caps = false;
_kb_ph_mode = false;
_kb_ph_sel = 0;
if (_sel == 2) {
strncpy(_kb_buf, _prefs->bot_trigger, sizeof(_kb_buf) - 1);
_kb_maxlen = sizeof(_prefs->bot_trigger) - 1;
} else if (_sel == 3) {
strncpy(_kb_buf, _prefs->bot_reply_dm, sizeof(_kb_buf) - 1);
_kb_maxlen = sizeof(_prefs->bot_reply_dm) - 1;
} else {
strncpy(_kb_buf, _prefs->bot_reply_ch, sizeof(_kb_buf) - 1);
_kb_maxlen = sizeof(_prefs->bot_reply_ch) - 1;
}
_kb_buf[sizeof(_kb_buf) - 1] = '\0';
_kb_len = strlen(_kb_buf);
return true;
}
return false;
}
};