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https://github.com/Utyff/Zintercom.git
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4 Commits
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e58b8a0f97 | ||
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a34f4319d9 | ||
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c9ff7819b2 |
13
README.md
13
README.md
@@ -21,6 +21,17 @@ You can control sound mode using z2m or by long press the button. (1000ms < X <
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After pressing the button, the LED will flash at 1.5 Hz.
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One flash - OFF, two flashes - ON.
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## Important info
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In Gerber PCB v1.0 committed on Apr 14, there are some errors in the silkscreen layers:
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1. 'Line-' and 'Phone-' are reversed.
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2. '+' and '-' are also reversed.
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Just plug by swapping.
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### How to join
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Reset to FN by reboot device 5 times with interval less than 10 seconds.
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Reset to FN by press and hold BTN for 5 seconds.
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@@ -83,7 +94,9 @@ For example, you can turn on the light while a call comes to the intercom, for n
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### Files to reproduce
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* [Gerbers and BOM](https://github.com/diyruz/Zintercom/tree/master/hardware) by [xyzroe](https://t.me/xyzroe)
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* [Firmware](https://github.com/diyruz/Zintercom/releases) by [xyzroe](https://t.me/xyzroe)
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* [Case stl](https://www.thingiverse.com/thing:4866356) by [dreamertwo](https://t.me/dreamertwo)
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### Inspired by
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The original scheme of the intercom opener by [Alexander Vaidurov](https://easyeda.com/Alex_AW/domofon-with-battery)
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@@ -68,6 +68,7 @@ byte zclApp_TaskID;
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* LOCAL VARIABLES
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*/
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static uint8 currentBtnClickPhase = 0;
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/*********************************************************************
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* LOCAL FUNCTIONS
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@@ -137,15 +138,17 @@ static void zclApp_HandleKeys(byte portAndAction, byte keyCode) {
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if (portAndAction & 0x01) { //P0 Ring //S1 P0_1
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//exit old stop timer
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osal_stop_timerEx(zclApp_TaskID, APP_RING_STOP_EVT);
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//osal_clear_event(zclApp_TaskID, APP_RING_STOP_EVT);
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//start new stop timer (ring ends timer)
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//osal_start_timerEx(zclApp_TaskID, APP_RING_STOP_EVT, 3000);
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//zclApp_Config.TimeRing
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uint32 TimeBell = (uint32)zclApp_Config.TimeBell *(uint32)1000;
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osal_start_timerEx(zclApp_TaskID, APP_RING_STOP_EVT, (uint32)TimeBell);
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if (portAndAction & HAL_KEY_PRESS) {
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//exit old stop timer
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osal_stop_timerEx(zclApp_TaskID, APP_RING_STOP_EVT);
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//osal_clear_event(zclApp_TaskID, APP_RING_STOP_EVT);
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//start new stop timer (ring ends timer)
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osal_start_timerEx(zclApp_TaskID, APP_RING_STOP_EVT, 3000);
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//start ring
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if (zclApp_State.RingRunStep == 0) {
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@@ -155,7 +158,8 @@ static void zclApp_HandleKeys(byte portAndAction, byte keyCode) {
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LREPMaster("Ring start\r\n");
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//HalLedSet(LED_PIN, HAL_LED_MODE_BLINK);
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zclApp_State.RingRunStep = 1;
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osal_start_reload_timer(zclApp_TaskID, APP_RING_RUN_EVT, 500);
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//osal_start_reload_timer(zclApp_TaskID, APP_RING_RUN_EVT, 500);
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osal_start_timerEx(zclApp_TaskID, APP_RING_RUN_EVT, 500);
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afAddrType_t inderect_DstAddr = {.addrMode = (afAddrMode_t)AddrNotPresent, .endPoint = 0, .addr.shortAddr = 0};
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zclGeneral_SendOnOff_CmdOn(zclApp_FirstEP.EndPoint, &inderect_DstAddr, FALSE, bdb_getZCLFrameCounter());
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}
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@@ -176,10 +180,10 @@ static void zclApp_HandleKeys(byte portAndAction, byte keyCode) {
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LREP("holdTime = %d \r\n", holdTime);
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zclApp_State.pressTime = 0;
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if (holdTime >= 1) { //seconds
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osal_start_reload_timer(zclApp_TaskID, APP_BTN_HOLD_EVT, 50);
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osal_start_timerEx(zclApp_TaskID, APP_BTN_HOLD_EVT, 50);
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}
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else {
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osal_start_reload_timer(zclApp_TaskID, APP_BTN_CLICK_EVT, 50);
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osal_start_timerEx(zclApp_TaskID, APP_BTN_CLICK_EVT, 50);
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}
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}
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}
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@@ -254,7 +258,9 @@ uint16 zclApp_event_loop(uint8 task_id, uint16 events) {
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if (events & APP_BTN_HOLD_EVT) {
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LREPMaster("APP_BTN_HOLD_EVT\r\n");
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zclApp_BtnClick(true);
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#if !defined( ZIC_BATTERY_MODE )
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zclApp_BtnClick(true);
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#endif
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return (events ^ APP_BTN_HOLD_EVT);
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}
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return 0;
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@@ -266,6 +272,7 @@ static void zclApp_RingRun(void) {
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LREP("zclApp_State.RingRunStep %d\r\n", zclApp_State.RingRunStep);
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LREP("zclApp_State.State %d\r\n", zclApp_State.State);
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osal_start_timerEx(zclApp_TaskID, APP_RING_RUN_EVT, 500);
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switch (zclApp_State.State) {
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@@ -304,6 +311,7 @@ static void zclApp_RingRun(void) {
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}
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break;
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case Droped:
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osal_stop_timerEx(zclApp_TaskID, APP_RING_STOP_EVT);
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if (zclApp_State.RingRunStep > 1) {
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zclApp_RingEnd();
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}
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@@ -314,7 +322,7 @@ static void zclApp_RingRun(void) {
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static void zclApp_TalkStart(void) {
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LREPMaster("Talk start\r\n");
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osal_stop_timerEx(zclApp_TaskID, APP_RING_STOP_EVT);
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//osal_stop_timerEx(zclApp_TaskID, APP_RING_STOP_EVT);
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//osal_clear_event(zclApp_TaskID, APP_RING_STOP_EVT);
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zclApp_OneReport();
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HalLedSet(ANSWER_PIN, HAL_LED_MODE_ON);
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@@ -332,8 +340,8 @@ static void zclApp_RingEnd(void) {
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HalLedSet(HANDSET_PIN, !zclApp_Config.ModeSound);
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HalLedSet(ANSWER_PIN, HAL_LED_MODE_OFF);
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osal_stop_timerEx(zclApp_TaskID, APP_RING_RUN_EVT);
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osal_clear_event(zclApp_TaskID, APP_RING_RUN_EVT);
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osal_stop_timerEx(zclApp_TaskID, APP_RING_STOP_EVT);
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//osal_clear_event(zclApp_TaskID, APP_RING_RUN_EVT);
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//osal_stop_timerEx(zclApp_TaskID, APP_RING_STOP_EVT);
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//osal_clear_event(zclApp_TaskID, APP_RING_STOP_EVT);
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zclApp_State.RingRunStep = 0;
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zclApp_State.State = Idle;
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@@ -353,17 +361,13 @@ static void zclApp_RingEnd(void) {
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}
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static void zclApp_BtnClick(bool hold) {
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static uint8 currentBtnClickPhase = 0;
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LREP("currentBtnClickPhase %d\r\n", currentBtnClickPhase);
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switch (currentBtnClickPhase++) {
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case 0:
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if (hold) {
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#if !defined( ZIC_BATTERY_MODE )
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zclApp_Config.ModeSound = !zclApp_Config.ModeSound;
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HalLedSet(HANDSET_PIN, !zclApp_Config.ModeSound);
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HalLedSet(CATCH_PIN, !zclApp_Config.ModeSound);
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#endif
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zclApp_Config.ModeSound = !zclApp_Config.ModeSound;
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HalLedSet(HANDSET_PIN, !zclApp_Config.ModeSound);
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HalLedSet(CATCH_PIN, !zclApp_Config.ModeSound);
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}
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else {
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if (zclApp_Config.ModeOpen < Drop) {
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@@ -385,7 +389,8 @@ static void zclApp_BtnClick(bool hold) {
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HalLedBlink(LED_PIN, zclApp_Config.ModeOpen+1, 50, 250);
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}
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break;
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case 3:
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default:
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/*
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if (hold) {
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osal_stop_timerEx(zclApp_TaskID, APP_BTN_HOLD_EVT);
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osal_clear_event(zclApp_TaskID, APP_BTN_HOLD_EVT);
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@@ -394,9 +399,18 @@ static void zclApp_BtnClick(bool hold) {
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osal_stop_timerEx(zclApp_TaskID, APP_BTN_CLICK_EVT);
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osal_clear_event(zclApp_TaskID, APP_BTN_CLICK_EVT);
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}
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*/
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currentBtnClickPhase = 0;
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break;
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}
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if (currentBtnClickPhase != 0) {
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if (hold) {
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osal_start_timerEx(zclApp_TaskID, APP_BTN_HOLD_EVT, 50);
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}
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else {
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osal_start_timerEx(zclApp_TaskID, APP_BTN_CLICK_EVT, 50);
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}
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}
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}
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static void zclApp_Report(void) {
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@@ -53,6 +53,7 @@ extern "C" {
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#define ATTRID_TIMERING 0x0053
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#define ATTRID_TIMETALK 0x0054
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#define ATTRID_TIMEOPEN 0x0055
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#define ATTRID_TIMEBELL 0x0057
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#define ATTRID_TIMEREPORT 0x0056
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#define LED_PIN HAL_LED_1
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@@ -107,6 +108,7 @@ typedef struct {
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uint8 TimeRing;
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uint8 TimeTalk;
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uint8 TimeOpen;
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uint8 TimeBell;
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uint8 TimeReport;
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} application_config_t;
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@@ -67,7 +67,7 @@ const uint8 zclApp_PowerSource = POWER_SOURCE_DC;
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#define DEFAULT_TimeRing 7 //seconds to ring, before answer
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#define DEFAULT_TimeTalk 3 //seconds to talk, before open
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#define DEFAULT_TimeOpen 2 //seconds to hold open
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#define DEFAULT_TimeBell 3 //seconds after last bell to finish ring
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application_config_t zclApp_Config = {
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.ModeOpen = DEFAULT_ModeOpen,
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@@ -75,6 +75,7 @@ application_config_t zclApp_Config = {
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.TimeRing = DEFAULT_TimeRing,
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.TimeTalk = DEFAULT_TimeTalk,
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.TimeOpen = DEFAULT_TimeOpen,
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.TimeBell = DEFAULT_TimeBell,
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.TimeReport = DEFAULT_TimeReport,
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};
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@@ -122,6 +123,7 @@ CONST zclAttrRec_t zclApp_AttrsFirstEP[] = {
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{ZCL_INTERCOM, {ATTRID_TIMERING, ZCL_UINT8, RW, (void *)&zclApp_Config.TimeRing}},
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{ZCL_INTERCOM, {ATTRID_TIMETALK, ZCL_UINT8, RW, (void *)&zclApp_Config.TimeTalk}},
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{ZCL_INTERCOM, {ATTRID_TIMEOPEN, ZCL_UINT8, RW, (void *)&zclApp_Config.TimeOpen}},
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{ZCL_INTERCOM, {ATTRID_TIMEBELL, ZCL_UINT8, RW, (void *)&zclApp_Config.TimeBell}},
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{ZCL_INTERCOM, {ATTRID_TIMEREPORT, ZCL_UINT8, RW, (void *)&zclApp_Config.TimeReport}},
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};
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@@ -157,5 +159,6 @@ void zclApp_ResetAttributesToDefaultValues(void) {
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zclApp_Config.TimeRing = DEFAULT_TimeRing;
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zclApp_Config.TimeTalk = DEFAULT_TimeTalk;
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zclApp_Config.TimeOpen = DEFAULT_TimeOpen;
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zclApp_Config.TimeBell = DEFAULT_TimeBell;
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zclApp_Config.TimeReport = DEFAULT_TimeReport;
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}
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@@ -82,6 +82,9 @@ const fz = {
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if (msg.data.hasOwnProperty(0x0055)) {
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result.time_open = msg.data[0x0055];
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}
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if (msg.data.hasOwnProperty(0x0057)) {
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result.time_bell = msg.data[0x0057];
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}
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if (msg.data.hasOwnProperty(0x0056)) {
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result.time_report = msg.data[0x0056];
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}
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@@ -92,7 +95,7 @@ const fz = {
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const tz = {
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diy_zintercom_config: {
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key: ['state', 'mode', 'sound', 'time_ring', 'time_talk', 'time_open', 'time_report'],
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key: ['state', 'mode', 'sound', 'time_ring', 'time_talk', 'time_open', 'time_bell', 'time_report'],
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convertSet: async (entity, key, rawValue, meta) => {
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const lookup = {
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'OFF': 0x00,
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@@ -118,6 +121,7 @@ const tz = {
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time_ring: {0x0053: {value, type: 0x20}},
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time_talk: {0x0054: {value, type: 0x20}},
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time_open: {0x0055: {value, type: 0x20}},
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time_bell: {0x0057: {value, type: 0x20}},
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time_report: {0x0056: {value, type: 0x20}},
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};
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@@ -134,6 +138,7 @@ const tz = {
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time_ring: ['closuresDoorLock', 0x0053],
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time_talk: ['closuresDoorLock', 0x0054],
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time_open: ['closuresDoorLock', 0x0055],
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time_bell: ['closuresDoorLock', 0x0057],
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time_report: ['closuresDoorLock', 0x0056],
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};
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await entity.read(payloads[key][0], [payloads[key][1]]);
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@@ -193,10 +198,11 @@ const device = {
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.withDescription('Time to hold before open'),
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exposes.numeric('time_open', ea.ALL).withUnit('sec')
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.withDescription('Time to open before end'),
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exposes.numeric('time_bell', ea.ALL).withUnit('sec')
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.withDescription('Time after last bell to finish ring'),
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exposes.numeric('time_report', ea.ALL).withUnit('min')
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.withDescription('Reporting interval'),
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ep.battery(),
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ep.linkquality(),
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],
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};
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