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MeshCore-Solo/examples/companion_radio/ui-new/NearbyScreen.h

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#pragma once
#include <math.h>
#ifndef M_PI
#define M_PI 3.14159265358979323846
#endif
class NearbyScreen : public UIScreen {
UITask* _task;
static const int VISIBLE = 4;
static const int ITEM_H = 12;
static const int START_Y = 12;
static const int DIST_COL = 86;
static const int FILTER_COUNT = 6;
static const char* FILTER_LABELS[FILTER_COUNT];
static const uint8_t FILTER_TYPES[FILTER_COUNT];
// ── nearby list state ────────────────────────────────────────────────────────
struct Entry {
char name[32];
int32_t lat_e6, lon_e6;
float dist_km;
uint8_t type;
int contact_idx;
uint32_t lastmod;
};
static const int MAX_NEARBY = 32;
Entry _entries[MAX_NEARBY];
int _count;
int _sel;
int _scroll;
bool _detail;
int32_t _own_lat, _own_lon;
bool _own_gps;
uint8_t _filter;
unsigned long _detail_refresh_ms;
static const unsigned long DETAIL_REFRESH_MS = 10000UL;
PopupMenu _ctx_menu;
// ── discover sub-screen state ────────────────────────────────────────────────
bool _discover_mode;
bool _discovering;
unsigned long _discover_started_ms;
static const unsigned long DISCOVER_DURATION_MS = 8000UL;
DiscoverResult _dresults[DISCOVER_RESULTS_MAX];
int _dresult_count;
int _dscroll;
int _dsel;
bool _ddetail;
static const int D_BOX_H = 19;
static const int D_ITEM_H = 21;
static const int D_VISIBLE = 2;
static const int D_START_Y = 11;
// ── helpers ──────────────────────────────────────────────────────────────────
static void pubKeyToBase64(const uint8_t* key, char* out, int out_len) {
static const char T[] = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
int j = 0;
for (int i = 0; i < PUB_KEY_SIZE && j + 5 < out_len; i += 3) {
uint32_t b = ((uint32_t)key[i] << 16)
| (i+1 < PUB_KEY_SIZE ? (uint32_t)key[i+1] << 8 : 0)
| (i+2 < PUB_KEY_SIZE ? (uint32_t)key[i+2] : 0);
out[j++] = T[(b >> 18) & 63];
out[j++] = T[(b >> 12) & 63];
if (i+1 < PUB_KEY_SIZE) out[j++] = T[(b >> 6) & 63];
if (i+2 < PUB_KEY_SIZE) out[j++] = T[b & 63];
}
out[j] = '\0';
}
static float haversineKm(int32_t lat1, int32_t lon1, int32_t lat2, int32_t lon2) {
static const float DEG2RAD = (float)M_PI / 180.0f;
float la1 = lat1 * (1e-6f * DEG2RAD);
float la2 = lat2 * (1e-6f * DEG2RAD);
float dla = (lat2 - lat1) * (1e-6f * DEG2RAD);
float dlo = (lon2 - lon1) * (1e-6f * DEG2RAD);
float a = sinf(dla/2)*sinf(dla/2) + cosf(la1)*cosf(la2)*sinf(dlo/2)*sinf(dlo/2);
return 6371.0f * 2.0f * asinf(sqrtf(a));
}
static int bearingDeg(int32_t lat1, int32_t lon1, int32_t lat2, int32_t lon2) {
static const float DEG2RAD = (float)M_PI / 180.0f;
float la1 = lat1 * (1e-6f * DEG2RAD);
float la2 = lat2 * (1e-6f * DEG2RAD);
float dlo = (lon2 - lon1) * (1e-6f * DEG2RAD);
float b = atan2f(sinf(dlo)*cosf(la2),
cosf(la1)*sinf(la2) - sinf(la1)*cosf(la2)*cosf(dlo)) * (180.0f / (float)M_PI);
if (b < 0.0f) b += 360.0f;
return (int)(b + 0.5f) % 360;
}
static const char* bearingCardinal(int deg) {
static const char* dirs[] = { "N","NE","E","SE","S","SW","W","NW" };
return dirs[((deg + 22) % 360) / 45];
}
static void fmtAge(char* buf, int n, uint32_t lastmod) {
uint32_t now = rtc_clock.getCurrentTime();
if (now < lastmod || lastmod == 0) { snprintf(buf, n, "unknown"); return; }
uint32_t age = now - lastmod;
if (age < 60) snprintf(buf, n, "%us ago", age);
else if (age < 3600) snprintf(buf, n, "%um ago", age / 60);
else if (age < 86400) snprintf(buf, n, "%uh ago", age / 3600);
else snprintf(buf, n, ">1d ago");
}
static void fmtDist(char* buf, int n, float km) {
if (km < 1.0f) snprintf(buf, n, "%dm", (int)(km * 1000 + 0.5f));
else if (km < 100.0f) snprintf(buf, n, "%.1fkm", km);
else snprintf(buf, n, "%dkm", (int)(km + 0.5f));
}
static const char* typeName(uint8_t t) {
switch (t) {
case ADV_TYPE_CHAT: return "Companion";
case ADV_TYPE_REPEATER: return "Repeater";
case ADV_TYPE_ROOM: return "Room";
case ADV_TYPE_SENSOR: return "Sensor";
default: return "Unknown";
}
}
void refresh() {
_count = 0;
_own_gps = false;
_own_lat = _own_lon = 0;
#if ENV_INCLUDE_GPS == 1
LocationProvider* loc = sensors.getLocationProvider();
if (loc && loc->isValid()) {
_own_lat = loc->getLatitude();
_own_lon = loc->getLongitude();
_own_gps = true;
}
#endif
int nc = the_mesh.getNumContacts();
for (int i = 0; i < nc && _count < MAX_NEARBY; i++) {
ContactInfo ci;
if (!the_mesh.getContactByIdx(i, ci)) continue;
if (_filter == 0 && !(ci.flags & 1)) continue;
if (_filter >= 2 && ci.type != FILTER_TYPES[_filter]) continue;
Entry& e = _entries[_count++];
strncpy(e.name, ci.name, sizeof(e.name) - 1);
e.name[sizeof(e.name) - 1] = '\0';
e.lat_e6 = ci.gps_lat;
e.lon_e6 = ci.gps_lon;
bool remote_gps = (ci.gps_lat != 0 || ci.gps_lon != 0);
e.dist_km = (_own_gps && remote_gps)
? haversineKm(_own_lat, _own_lon, ci.gps_lat, ci.gps_lon)
: -1.0f;
e.type = ci.type;
e.contact_idx = i;
e.lastmod = ci.lastmod;
}
// sort by distance ascending; nodes without GPS go to the end
for (int i = 0; i < _count - 1; i++) {
int best = i;
for (int j = i + 1; j < _count; j++) {
float dj = _entries[j].dist_km, db = _entries[best].dist_km;
if (dj >= 0.0f && (db < 0.0f || dj < db)) best = j;
}
if (best != i) { Entry tmp = _entries[i]; _entries[i] = _entries[best]; _entries[best] = tmp; }
}
if (_count == 0) {
_sel = _scroll = 0;
} else if (_sel >= _count) {
_sel = _count - 1;
if (_scroll > _sel) _scroll = _sel;
}
}
// ── discover sub-screen ──────────────────────────────────────────────────────
void enterDiscoverMode() {
_discover_mode = true;
_discovering = true;
_ddetail = false;
_discover_started_ms = millis();
_dresult_count = 0;
_dscroll = 0;
_dsel = 0;
the_mesh.sendNodeDiscoverReq();
}
int renderDiscover(DisplayDriver& display) {
if (_ddetail) {
// ── full-screen detail for selected node ──────────────────────────────
const DiscoverResult& r = _dresults[_dsel];
const char* fullType = (r.type == ADV_TYPE_REPEATER) ? "Repeater" :
(r.type == ADV_TYPE_SENSOR) ? "Sensor" :
(r.type == ADV_TYPE_ROOM) ? "Room" : "Node";
// title bar: node name inverted
char label[32];
if (r.name[0]) { strncpy(label, r.name, 31); label[31] = '\0'; }
else { snprintf(label, sizeof(label), "[%s]", fullType); }
char filtered[32];
display.translateUTF8ToBlocks(filtered, label, sizeof(filtered));
display.setColor(DisplayDriver::LIGHT);
display.fillRect(0, 0, display.width(), 10);
display.setColor(DisplayDriver::DARK);
display.drawTextEllipsized(2, 1, display.width() - 4, filtered);
display.setColor(DisplayDriver::LIGHT);
display.fillRect(0, 10, display.width(), 1);
// public key as base64, truncated with ... by drawTextEllipsized
char b64[48];
pubKeyToBase64(r.pub_key, b64, sizeof(b64));
display.drawTextEllipsized(2, 12, display.width() - 4, b64);
char buf[32];
snprintf(buf, sizeof(buf), "RSSI: %d dBm", (int)r.rssi);
display.setCursor(2, 21); display.print(buf);
snprintf(buf, sizeof(buf), "SNR: %d dB", (int)(r.snr_x4 / 4));
display.setCursor(2, 30); display.print(buf);
snprintf(buf, sizeof(buf), "Rem: %d dB", (int)(r.remote_snr_x4 / 4));
display.setCursor(2, 39); display.print(buf);
display.setCursor(2, 48);
display.print(r.is_known ? "Status: known" : "Status: new");
return 5000;
}
// ── list view ─────────────────────────────────────────────────────────────
_dresult_count = the_mesh.getDiscoverResults(_dresults, DISCOVER_RESULTS_MAX);
if (_discovering && millis() - _discover_started_ms >= DISCOVER_DURATION_MS)
_discovering = false;
display.setColor(DisplayDriver::LIGHT);
char title[28];
if (_discovering)
snprintf(title, sizeof(title), "SCANNING... (%d)", _dresult_count);
else if (_dresult_count == 0)
snprintf(title, sizeof(title), "DISCOVER: none");
else
snprintf(title, sizeof(title), "DISCOVER (%d found)", _dresult_count);
display.drawTextCentered(display.width() / 2, 0, title);
display.fillRect(0, 10, display.width(), 1);
if (_dresult_count == 0) {
display.drawTextCentered(display.width() / 2, 32,
_discovering ? "Waiting for replies..." : "No nodes found");
} else {
if (_dsel >= _dresult_count) _dsel = _dresult_count - 1;
if (_dscroll > _dresult_count - D_VISIBLE)
_dscroll = _dresult_count > D_VISIBLE ? _dresult_count - D_VISIBLE : 0;
if (_dscroll < 0) _dscroll = 0;
for (int i = 0; i < D_VISIBLE && (_dscroll + i) < _dresult_count; i++) {
int idx = _dscroll + i;
bool sel = (idx == _dsel);
const DiscoverResult& r = _dresults[idx];
int y = D_START_Y + i * D_ITEM_H;
const char* typeStr = (r.type == ADV_TYPE_REPEATER) ? "Rpt" :
(r.type == ADV_TYPE_SENSOR) ? "Snsr" :
(r.type == ADV_TYPE_ROOM) ? "Room" : "?";
display.setColor(DisplayDriver::LIGHT);
if (sel) {
display.fillRect(0, y, display.width(), D_BOX_H); // fully inverted when selected
display.setColor(DisplayDriver::DARK);
} else {
display.drawRect(0, y, display.width(), D_BOX_H);
display.fillRect(1, y + 1, display.width() - 2, 8);
display.setColor(DisplayDriver::DARK);
}
// header: name left, type right
char label[32];
if (r.name[0]) { strncpy(label, r.name, 31); label[31] = '\0'; }
else {
const char* ft = (r.type == ADV_TYPE_REPEATER) ? "Repeater" :
(r.type == ADV_TYPE_SENSOR) ? "Sensor" :
(r.type == ADV_TYPE_ROOM) ? "Room" : "Node";
snprintf(label, sizeof(label), "[%s]", ft);
}
char filtered[32];
display.translateUTF8ToBlocks(filtered, label, sizeof(filtered));
int tw = display.getTextWidth(typeStr);
display.drawTextEllipsized(3, y + 1, display.width() - 6 - tw, filtered);
display.setCursor(display.width() - 3 - tw, y + 1);
display.print(typeStr);
// body: RSSI + SNR
display.setColor(sel ? DisplayDriver::DARK : DisplayDriver::LIGHT);
char sig[24];
snprintf(sig, sizeof(sig), "RSSI:%d SNR:%d", (int)r.rssi, (int)(r.snr_x4 / 4));
display.drawTextEllipsized(3, y + 10, display.width() - 6, sig);
}
display.setColor(DisplayDriver::LIGHT);
if (_dscroll > 0)
{ display.setCursor(display.width() - 6, D_START_Y + 1); display.print("^"); }
if (_dscroll + D_VISIBLE < _dresult_count)
{ display.setCursor(display.width() - 6, D_START_Y + D_VISIBLE * D_ITEM_H - 10); display.print("v"); }
}
return _discovering ? 200 : 2000;
}
bool handleInputDiscover(char c) {
if (_ddetail) {
if (c == KEY_CANCEL) { _ddetail = false; return true; }
if (c == KEY_CONTEXT_MENU || c == KEY_ENTER) {
enterDiscoverMode(); // re-scan; clears _ddetail
return true;
}
return true;
}
if (c == KEY_CANCEL) {
_discover_mode = false;
refresh();
return true;
}
if (c == KEY_ENTER && _dresult_count > 0) {
_ddetail = true;
return true;
}
if (c == KEY_CONTEXT_MENU) {
enterDiscoverMode(); // re-scan
return true;
}
if (c == KEY_UP && _dsel > 0) {
_dsel--;
if (_dsel < _dscroll) _dscroll = _dsel;
return true;
}
if (c == KEY_DOWN && _dsel < _dresult_count - 1) {
_dsel++;
if (_dsel >= _dscroll + D_VISIBLE) _dscroll = _dsel - D_VISIBLE + 1;
return true;
}
return true;
}
public:
NearbyScreen(UITask* task)
: _task(task), _count(0), _sel(0), _scroll(0), _detail(false),
_own_lat(0), _own_lon(0), _own_gps(false), _filter(0),
_detail_refresh_ms(0),
_discover_mode(false), _discovering(false), _discover_started_ms(0),
_dresult_count(0), _dscroll(0), _dsel(0), _ddetail(false) {}
void enter() {
_sel = _scroll = 0;
_detail = false;
_filter = 0;
_discover_mode = false;
_ddetail = false;
_dsel = 0;
_ctx_menu.active = false;
refresh();
}
int render(DisplayDriver& display) override {
display.setTextSize(1);
// ── discover sub-screen ──────────────────────────────────────────────────
if (_discover_mode) return renderDiscover(display);
// periodic refresh in detail view — preserve selected contact by idx
if (_detail && millis() - _detail_refresh_ms >= DETAIL_REFRESH_MS) {
int saved_contact_idx = (_sel < _count) ? _entries[_sel].contact_idx : -1;
refresh();
bool found = false;
if (saved_contact_idx >= 0) {
for (int i = 0; i < _count; i++) {
if (_entries[i].contact_idx == saved_contact_idx) { _sel = i; found = true; break; }
}
}
if (!found) _detail = false;
_detail_refresh_ms = millis();
}
// ── detail view ──────────────────────────────────────────────────────────
if (_detail && _sel < _count) {
const Entry& e = _entries[_sel];
display.setColor(DisplayDriver::LIGHT);
display.fillRect(0, 0, display.width(), 10);
display.setColor(DisplayDriver::DARK);
char filtered[32];
display.translateUTF8ToBlocks(filtered, e.name, sizeof(filtered));
display.drawTextEllipsized(2, 1, display.width() - 4, filtered);
display.setColor(DisplayDriver::LIGHT);
char buf[32];
snprintf(buf, sizeof(buf), "Lat: %.5f", e.lat_e6 / 1e6);
display.setCursor(2, 11); display.print(buf);
snprintf(buf, sizeof(buf), "Lon: %.5f", e.lon_e6 / 1e6);
display.setCursor(2, 20); display.print(buf);
if (e.dist_km >= 0.0f) {
char dist[12];
fmtDist(dist, sizeof(dist), e.dist_km);
int az = bearingDeg(_own_lat, _own_lon, e.lat_e6, e.lon_e6);
snprintf(buf, sizeof(buf), "Dist: %s", dist);
display.setCursor(2, 29); display.print(buf);
snprintf(buf, sizeof(buf), "Az: %dd (%s)", az, bearingCardinal(az));
display.setCursor(2, 38); display.print(buf);
} else {
display.setCursor(2, 29); display.print("Dist: no own GPS");
display.setCursor(2, 38); display.print("Az: unknown");
}
snprintf(buf, sizeof(buf), "Type: %s", typeName(e.type));
display.setCursor(2, 47); display.print(buf);
char age[16];
fmtAge(age, sizeof(age), e.lastmod);
snprintf(buf, sizeof(buf), "Seen: %s", age);
display.setCursor(2, 56); display.print(buf);
return 2000;
}
// ── list view ────────────────────────────────────────────────────────────
display.setColor(DisplayDriver::LIGHT);
char title[22];
snprintf(title, sizeof(title), "NEARBY[%s]", FILTER_LABELS[_filter]);
display.drawTextCentered(display.width() / 2, 0, title);
display.fillRect(0, 10, display.width(), 1);
if (_count == 0) {
display.drawTextCentered(display.width() / 2, 28, "No contacts found");
display.drawTextCentered(display.width() / 2, 40, "[Enter]=Discover");
} else {
for (int i = 0; i < VISIBLE && (_scroll + i) < _count; i++) {
int idx = _scroll + i;
bool sel = (idx == _sel);
int y = START_Y + i * ITEM_H;
const Entry& e = _entries[idx];
if (sel) {
display.setColor(DisplayDriver::LIGHT);
display.fillRect(0, y - 1, display.width(), ITEM_H - 1);
display.setColor(DisplayDriver::DARK);
} else {
display.setColor(DisplayDriver::LIGHT);
}
char filt[32];
display.translateUTF8ToBlocks(filt, e.name, sizeof(filt));
display.drawTextEllipsized(2, y, DIST_COL - 4, filt);
display.setColor(sel ? DisplayDriver::DARK : DisplayDriver::LIGHT);
char dist[10];
if (e.dist_km >= 0.0f) fmtDist(dist, sizeof(dist), e.dist_km);
else strncpy(dist, "?GPS", sizeof(dist));
display.setCursor(DIST_COL, y);
display.print(dist);
}
display.setColor(DisplayDriver::LIGHT);
if (_scroll > 0)
{ display.setCursor(display.width() - 6, START_Y); display.print("^"); }
if (_scroll + VISIBLE < _count)
{ display.setCursor(display.width() - 6, START_Y + (VISIBLE - 1) * ITEM_H); display.print("v"); }
}
if (_ctx_menu.active) {
_ctx_menu.render(display);
return 50;
}
return _count == 0 ? 3000 : 2000;
}
bool handleInput(char c) override {
// ── discover sub-screen ──────────────────────────────────────────────────
if (_discover_mode) return handleInputDiscover(c);
// ── detail view ─────────────────────────────────────────────────────────
if (_detail) {
if (c == KEY_CANCEL || c == KEY_CONTEXT_MENU) { _detail = false; return true; }
return true;
}
// ── context menu ─────────────────────────────────────────────────────────
if (_ctx_menu.active) {
auto res = _ctx_menu.handleInput(c);
if (res == PopupMenu::SELECTED) {
if (_ctx_menu.selectedIndex() == 0)
enterDiscoverMode();
else
_task->gotoToolsScreen();
}
return true;
}
// ── list view ────────────────────────────────────────────────────────────
if (c == KEY_CANCEL) { _task->gotoToolsScreen(); return true; }
if (c == KEY_CONTEXT_MENU) {
_ctx_menu.begin("Options", 2);
_ctx_menu.addItem("Discover nearby");
_ctx_menu.addItem("Back");
return true;
}
if (c == KEY_UP && _sel > 0) {
_sel--;
if (_sel < _scroll) _scroll = _sel;
return true;
}
if (c == KEY_DOWN && _sel < _count - 1) {
_sel++;
if (_sel >= _scroll + VISIBLE) _scroll = _sel - VISIBLE + 1;
return true;
}
if (c == KEY_ENTER && _count == 0) { enterDiscoverMode(); return true; }
if (c == KEY_ENTER && _count > 0) {
_detail = true;
_detail_refresh_ms = millis();
return true;
}
if (c == KEY_LEFT) {
_filter = (_filter + FILTER_COUNT - 1) % FILTER_COUNT;
refresh();
return true;
}
if (c == KEY_RIGHT) {
_filter = (_filter + 1) % FILTER_COUNT;
refresh();
return true;
}
return false;
}
};
const char* NearbyScreen::FILTER_LABELS[6] = { "Fav", "ALL", "Comp", "Rpt", "Room", "Snsr" };
const uint8_t NearbyScreen::FILTER_TYPES[6] = { 0, 0, ADV_TYPE_CHAT, ADV_TYPE_REPEATER, ADV_TYPE_ROOM, ADV_TYPE_SENSOR };