Add 5s deferred response for commands

This commit is contained in:
UA1ZBE
2026-07-22 09:20:13 +03:00
parent 2909d069d0
commit 307e27de60

View File

@@ -96,6 +96,24 @@ public:
return 0; return 0;
} }
char pending_response[256];
unsigned long pending_at = 0;
bool pending = false;
void flush_response() {
if (pending && millis() >= pending_at) {
send_text(pending_response);
pending = false;
}
}
void defer_response(const char* text) {
strncpy(pending_response, text, sizeof(pending_response) - 1);
pending_response[sizeof(pending_response) - 1] = 0;
pending_at = millis() + 5000;
pending = true;
}
void send_text(const char* text) { void send_text(const char* text) {
if (!channel_ready) return; if (!channel_ready) return;
uint32_t ts = rtc_clock.getCurrentTime(); uint32_t ts = rtc_clock.getCurrentTime();
@@ -130,31 +148,31 @@ public:
while (*cmd == ' ') cmd++; while (*cmd == ' ') cmd++;
if (strcmp(cmd, "help") == 0) { if (strcmp(cmd, "help") == 0) {
send_text("help:ohrana on,ohrana off,relay1 on,relay1 off,relay2 on,relay2 off,status,ver,scan,security_conf"); defer_response("help:ohrana on,ohrana off,relay1 on,relay1 off,relay2 on,relay2 off,status,ver,scan,security_conf");
} else if (strcmp(cmd, "ohrana on") == 0) { } else if (strcmp(cmd, "ohrana on") == 0) {
g_armed = true; digitalWrite(PIN_RELAY_1, LOW); saveSecurityConfig(); send_text("ohrana on ok"); g_armed = true; digitalWrite(PIN_RELAY_1, LOW); saveSecurityConfig(); defer_response("ohrana on ok");
} else if (strcmp(cmd, "ohrana off") == 0) { } else if (strcmp(cmd, "ohrana off") == 0) {
g_armed = false; digitalWrite(PIN_RELAY_1, HIGH); saveSecurityConfig(); send_text("ohrana off ok"); g_armed = false; digitalWrite(PIN_RELAY_1, HIGH); saveSecurityConfig(); defer_response("ohrana off ok");
} else if (strcmp(cmd, "relay1 on") == 0) { } else if (strcmp(cmd, "relay1 on") == 0) {
digitalWrite(PIN_RELAY_1, LOW); send_text("relay1 on ok"); digitalWrite(PIN_RELAY_1, LOW); defer_response("relay1 on ok");
} else if (strcmp(cmd, "relay1 off") == 0) { } else if (strcmp(cmd, "relay1 off") == 0) {
digitalWrite(PIN_RELAY_1, HIGH); send_text("relay1 off ok"); digitalWrite(PIN_RELAY_1, HIGH); defer_response("relay1 off ok");
} else if (strcmp(cmd, "relay2 on") == 0) { } else if (strcmp(cmd, "relay2 on") == 0) {
g_relay2_state = true; digitalWrite(PIN_RELAY_2, LOW); send_text("relay2 on ok"); g_relay2_state = true; digitalWrite(PIN_RELAY_2, LOW); defer_response("relay2 on ok");
} else if (strcmp(cmd, "relay2 off") == 0) { } else if (strcmp(cmd, "relay2 off") == 0) {
g_relay2_state = false; digitalWrite(PIN_RELAY_2, HIGH); send_text("relay2 off ok"); g_relay2_state = false; digitalWrite(PIN_RELAY_2, HIGH); defer_response("relay2 off ok");
} else if (strcmp(cmd, "status") == 0) { } else if (strcmp(cmd, "status") == 0) {
char r[128]; char tb[16]; float t = g_last_temperature; char r[128]; char tb[16]; float t = g_last_temperature;
if (t == -127.0f) strcpy(tb, "N/A"); else snprintf(tb, sizeof(tb), "%+.1fC", t); if (t == -127.0f) strcpy(tb, "N/A"); else snprintf(tb, sizeof(tb), "%+.1fC", t);
snprintf(r, sizeof(r), "status:%s temp:%s hall:%s motion:%s", snprintf(r, sizeof(r), "status:%s temp:%s hall:%s motion:%s",
g_armed ? "armed" : "off", tb, g_hall_alert ? "trig" : "ok", g_motion_alert ? "trig" : "ok"); g_armed ? "armed" : "off", tb, g_hall_alert ? "trig" : "ok", g_motion_alert ? "trig" : "ok");
send_text(r); defer_response(r);
} else if (strcmp(cmd, "ver") == 0) { } else if (strcmp(cmd, "ver") == 0) {
char r[64]; snprintf(r, sizeof(r), "build:%s %s", __DATE__, __TIME__); send_text(r); char r[64]; snprintf(r, sizeof(r), "build:%s %s", __DATE__, __TIME__); defer_response(r);
} else if (strcmp(cmd, "scan") == 0) { } else if (strcmp(cmd, "scan") == 0) {
float sum = 0; float sum = 0;
for (int j = 0; j < 20; j++) { sum += radio_driver.getCurrentRSSI(); delay(50); } for (int j = 0; j < 20; j++) { sum += radio_driver.getCurrentRSSI(); delay(50); }
char r[32]; snprintf(r, sizeof(r), "noise:%.0fdBm", sum / 20); send_text(r); char r[32]; snprintf(r, sizeof(r), "noise:%.0fdBm", sum / 20); defer_response(r);
} else if (strncmp(cmd, "security_conf", 13) == 0) { } else if (strncmp(cmd, "security_conf", 13) == 0) {
const char* nc = cmd + 13; while (*nc == ' ') nc++; const char* nc = cmd + 13; while (*nc == ' ') nc++;
if (strlen(nc) > 0 && strlen(nc) < 32) { if (strlen(nc) > 0 && strlen(nc) < 32) {
@@ -163,8 +181,8 @@ public:
memset(mesh_channel.secret, 0, 32); memset(mesh_channel.secret, 0, 32);
memcpy(mesh_channel.secret, key, 16); memcpy(mesh_channel.secret, key, 16);
mesh::Utils::sha256(mesh_channel.hash, sizeof(mesh_channel.hash), mesh_channel.secret, 16); mesh::Utils::sha256(mesh_channel.hash, sizeof(mesh_channel.hash), mesh_channel.secret, 16);
char r[64]; snprintf(r, sizeof(r), "channel:%s", nc); send_text(r); char r[64]; snprintf(r, sizeof(r), "channel:%s", nc); defer_response(r);
} else send_text("bad name"); } else defer_response("bad name");
} }
} }
}; };
@@ -221,6 +239,7 @@ void setup() {
void loop() { void loop() {
NRF_WDT->RR[0] = WDT_RR_RR_Reload; NRF_WDT->RR[0] = WDT_RR_RR_Reload;
the_mesh.loop(); the_mesh.loop();
the_mesh.flush_response();
rtc_clock.tick(); rtc_clock.tick();
if (!g_startup_msg_sent && millis() - g_boot_time >= 10000) { if (!g_startup_msg_sent && millis() - g_boot_time >= 10000) {