Files
MeshCore-Solo/examples/companion_radio/ui-new/LiveShareScreen.h
T
MarekZegare4andClaude Opus 4.8 659ecec5a4 refactor(companion): tidy geo-alert / live-share; dedicated auto-pause gate
Review cleanup of the new location features:
- GeoAlertScreen + LiveShareScreen use the shared drawList() helper instead
  of hand-rolling the scroll/clamp/scrollbar maths, matching every other
  list screen.
- Extract UITask::geoAlertDistance() — one place for the target-distance
  maths, shared by the crossing evaluator and the proximity beeper.
- Geo Alert re-seeds its crossing engine after every edit, so changing the
  target/radius while armed can't fire a stale arrive/leave before exit.
- Trail auto-pause gets its own coarse movement gate
  (NodePrefs::TRAIL_AUTOPAUSE_MOVE_M = 15 m) instead of reusing the trail
  min-delta, so GPS jitter while parked doesn't keep the idle timer alive.
- Fix stale include comments.

Verified: WioTrackerL1_companion_solo_dual builds clean.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-22 12:38:59 +02:00

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#pragma once
// Live location sharing config tool. Tools Live Share.
// One place for both directions of position sharing:
// Track loc — receive [LOC] shares from others (LiveTrackStore).
// Auto share — periodically broadcast my own [LOC] to a channel/contact
// while moving (movement-gated engine in UITask).
// Independent of (and able to run alongside) the 0-hop Auto-Advert. The
// one-shot "Share my pos" lives on the Map screen.
// Included by UITask.cpp after AutoAdvertScreen.h.
#include "../NodePrefs.h"
#include "icons.h" // drawList (shared scrolling-list helper)
class LiveShareScreen : public UIScreen {
UITask* _task;
NodePrefs* _prefs;
bool _dirty = false;
int _sel = 0;
int _scroll = 0;
enum Kind : uint8_t { K_TRACK, K_AUTO, K_TARGET, K_MOVE, K_GAP, K_HB };
struct Row { Kind kind; const char* label; };
static const int ROW_COUNT = 6;
static Row rows(int i) {
static const Row R[ROW_COUNT] = {
{ K_TRACK, "Track loc" },
{ K_AUTO, "Auto share" },
{ K_TARGET, "To" },
{ K_MOVE, "Move" },
{ K_GAP, "Min gap" },
{ K_HB, "Heartbeat" },
};
return R[i];
}
public:
LiveShareScreen(UITask* task, NodePrefs* prefs) : _task(task), _prefs(prefs) {}
void enter() { _dirty = false; _sel = 0; _scroll = 0; }
// Resolve the configured target's display name (channel name or contact name).
void currentTargetName(char* buf, int n) {
if (!_prefs) { snprintf(buf, n, "none"); return; }
if (_prefs->loc_share_target_type == 0) {
ChannelDetails ch;
if (the_mesh.getChannel(_prefs->loc_share_channel_idx, ch) && ch.name[0])
snprintf(buf, n, "%s", ch.name);
else
snprintf(buf, n, "Ch %d", (int)_prefs->loc_share_channel_idx);
} else {
ContactInfo* c = the_mesh.lookupContactByPubKey(_prefs->loc_share_dm_prefix, NodePrefs::FAVOURITE_PREFIX_LEN);
if (c) snprintf(buf, n, "%s", c->name);
else snprintf(buf, n, "(contact?)");
}
}
void valueLabel(Kind k, char* buf, int n) {
switch (k) {
case K_TRACK:
snprintf(buf, n, "%s", (_prefs && _prefs->track_shared_loc) ? "ON" : "OFF");
break;
case K_AUTO:
snprintf(buf, n, "%s", (_prefs && _prefs->loc_share_enabled) ? "ON" : "OFF");
break;
case K_TARGET:
currentTargetName(buf, n);
break;
case K_MOVE:
snprintf(buf, n, "%um", (unsigned)NodePrefs::locShareMoveMeters(_prefs ? _prefs->loc_share_move_idx : 1));
break;
case K_GAP: {
uint16_t s = NodePrefs::locShareIntervalSecs(_prefs ? _prefs->loc_share_interval_idx : 1);
if (s < 60) snprintf(buf, n, "%us", (unsigned)s);
else snprintf(buf, n, "%um", (unsigned)(s / 60));
break;
}
case K_HB: {
uint16_t s = NodePrefs::locShareHeartbeatSecs(_prefs ? _prefs->loc_share_heartbeat_idx : 0);
if (s == 0) snprintf(buf, n, "OFF");
else snprintf(buf, n, "%um", (unsigned)(s / 60));
break;
}
default: buf[0] = '\0';
}
}
int render(DisplayDriver& display) override {
display.setTextSize(1);
display.setColor(DisplayDriver::LIGHT);
display.drawCenteredHeader("LIVE SHARE");
const int valx = display.width() / 2 + 6;
drawList(display, ROW_COUNT, _sel, _scroll, [&](int i, int y, bool sel, int reserve) {
Row r = rows(i);
display.drawSelectionRow(0, y - 1, display.width() - reserve, display.lineStep() - 1, sel);
display.setCursor(4, y);
display.print(r.label);
char val[24];
valueLabel(r.kind, val, sizeof(val));
if (val[0]) display.drawTextEllipsized(valx, y, display.width() - valx - reserve, val);
});
return 500;
}
void moveSel(int dir) { _sel = (_sel + dir + ROW_COUNT) % ROW_COUNT; }
// Cycle/act on the selected row. `enter` opens the target picker (vs LEFT/RIGHT
// value cycling).
void activate(int dir, bool enter) {
if (!_prefs) return;
switch (rows(_sel).kind) {
case K_TRACK: _prefs->track_shared_loc ^= 1; _dirty = true; break;
case K_AUTO: _prefs->loc_share_enabled ^= 1; _dirty = true; break;
case K_TARGET:
if (enter) { _task->pickLocShareTarget(); return; } // full chooser
cycleTarget(dir); _dirty = true; // L/R quick cycle
break;
case K_MOVE:
_prefs->loc_share_move_idx = (uint8_t)((_prefs->loc_share_move_idx + (dir >= 0 ? 1 : NodePrefs::LOC_SHARE_MOVE_COUNT - 1)) % NodePrefs::LOC_SHARE_MOVE_COUNT);
_dirty = true; break;
case K_GAP:
_prefs->loc_share_interval_idx = (uint8_t)((_prefs->loc_share_interval_idx + (dir >= 0 ? 1 : NodePrefs::LOC_SHARE_INTERVAL_COUNT - 1)) % NodePrefs::LOC_SHARE_INTERVAL_COUNT);
_dirty = true; break;
case K_HB:
_prefs->loc_share_heartbeat_idx = (uint8_t)((_prefs->loc_share_heartbeat_idx + (dir >= 0 ? 1 : NodePrefs::LOC_SHARE_HEARTBEAT_COUNT - 1)) % NodePrefs::LOC_SHARE_HEARTBEAT_COUNT);
_dirty = true; break;
}
}
void cycleTarget(int dir) {
struct T { uint8_t type, ch; uint8_t prefix[NodePrefs::FAVOURITE_PREFIX_LEN]; } list[24];
int n = 0;
ChannelDetails ch;
for (int i = 0; i < 64 && n < 24; i++) {
if (!the_mesh.getChannel(i, ch) || ch.name[0] == '\0') continue;
list[n].type = 0; list[n].ch = (uint8_t)i; n++;
}
for (int i = 0; i < NodePrefs::FAVOURITES_COUNT && n < 24; i++) {
const uint8_t* pre = _prefs->favourite_contacts[i];
bool empty = true;
for (int b = 0; b < NodePrefs::FAVOURITE_PREFIX_LEN; b++) if (pre[b]) { empty = false; break; }
if (empty || !the_mesh.lookupContactByPubKey(pre, NodePrefs::FAVOURITE_PREFIX_LEN)) continue;
list[n].type = 1; list[n].ch = 0;
memcpy(list[n].prefix, pre, NodePrefs::FAVOURITE_PREFIX_LEN); n++;
}
if (n == 0) { _task->showAlert("No channels/favs", 1200); return; }
int cur = -1;
for (int i = 0; i < n; i++) {
if (list[i].type != _prefs->loc_share_target_type) continue;
if (list[i].type == 0) { if (list[i].ch == _prefs->loc_share_channel_idx) { cur = i; break; } }
else if (memcmp(list[i].prefix, _prefs->loc_share_dm_prefix, NodePrefs::FAVOURITE_PREFIX_LEN) == 0) { cur = i; break; }
}
int nx = (cur < 0) ? 0 : ((cur + (dir >= 0 ? 1 : n - 1)) % n);
_prefs->loc_share_target_type = list[nx].type;
if (list[nx].type == 0) _prefs->loc_share_channel_idx = list[nx].ch;
else memcpy(_prefs->loc_share_dm_prefix, list[nx].prefix, NodePrefs::FAVOURITE_PREFIX_LEN);
}
bool handleInput(char c) override {
if (c == KEY_CANCEL || c == KEY_CONTEXT_MENU) {
if (_dirty) { the_mesh.savePrefs(); _dirty = false; }
_task->gotoToolsScreen();
return true;
}
if (c == KEY_UP) { moveSel(-1); return true; }
if (c == KEY_DOWN) { moveSel(+1); return true; }
if (keyIsPrev(c)) { activate(-1, false); return true; }
if (keyIsNext(c)) { activate(+1, false); return true; }
if (c == KEY_ENTER) { activate(+1, true); return true; }
return false;
}
};