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CannedMessagePlugin initial commit
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167
src/plugins/CannedMessagePlugin.cpp
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167
src/plugins/CannedMessagePlugin.cpp
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#include "configuration.h"
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#include "CannedMessagePlugin.h"
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#include "MeshService.h"
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#include "main.h"
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#include <assert.h>
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#define PIN_PUSH 21
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#define PIN_A 22
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#define PIN_B 23
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// TODO: add UP-DOWN mode
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#define ROTARY_MODE
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CannedMessagePlugin *cannedMessagePlugin;
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void IRAM_ATTR EXT_INT_PUSH()
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{
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cannedMessagePlugin->select();
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}
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void IRAM_ATTR EXT_INT_DIRECTION_A()
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{
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cannedMessagePlugin->directionA();
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}
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void IRAM_ATTR EXT_INT_DIRECTION_B()
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{
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cannedMessagePlugin->directionB();
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}
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CannedMessagePlugin::CannedMessagePlugin()
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: SinglePortPlugin("canned", PortNum_TEXT_MESSAGE_APP), concurrency::OSThread("CannedMessagePlugin")
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{
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// TODO: make pins configurable
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pinMode(PIN_PUSH, INPUT_PULLUP);
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pinMode(PIN_A, INPUT_PULLUP);
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pinMode(PIN_B, INPUT_PULLUP);
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attachInterrupt(PIN_PUSH, EXT_INT_PUSH, RISING);
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#ifdef ROTARY_MODE
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attachInterrupt(PIN_A, EXT_INT_DIRECTION_A, CHANGE);
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attachInterrupt(PIN_B, EXT_INT_DIRECTION_B, CHANGE);
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this->rotaryLevelA = digitalRead(PIN_A);
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this->rotaryLevelB = digitalRead(PIN_B);
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#endif
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}
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void CannedMessagePlugin::sendText(NodeNum dest, bool wantReplies)
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{
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MeshPacket *p = allocDataPacket();
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p->to = dest;
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const char *replyStr = "This is a canned message";
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p->decoded.payload.size = strlen(replyStr); // You must specify how many bytes are in the reply
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memcpy(p->decoded.payload.bytes, replyStr, p->decoded.payload.size);
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// PacketId prevPacketId = p->id; // In case we need it later.
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DEBUG_MSG("Sending message id=%d, msg=%.*s\n",
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p->id, p->decoded.payload.size, p->decoded.payload.bytes);
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service.sendToMesh(p);
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}
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int32_t CannedMessagePlugin::runOnce()
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{
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/*
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if (this->action == ACTION_PRESSED)
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{
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sendText(NODENUM_BROADCAST, true);
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needSend = false;
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}
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*/
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if (this->action == ACTION_PRESSED)
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{
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DEBUG_MSG("SELECTED\n");
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}
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else if (this->action == ACTION_UP)
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{
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DEBUG_MSG("MOVE UP\n");
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}
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else if (this->action == ACTION_DOWN)
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{
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DEBUG_MSG("MOVE_DOWN\n");
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}
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this->action = ACTION_NONE;
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return UINT32_MAX;
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}
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void CannedMessagePlugin::select()
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{
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this->action = ACTION_PRESSED;
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setInterval(20);
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}
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/**
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* @brief Rotary action implementation.
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* We assume, the following pin setup:
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* A --||
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* GND --||]========
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* B --||
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*
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* @return The new level of the actual pin (that is actualPinCurrentLevel).
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*/
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void CannedMessagePlugin::directionA()
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{
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#ifdef ROTARY_MODE
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// CW rotation (at least on most common rotary encoders)
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int currentLevelA = digitalRead(PIN_A);
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if (this->rotaryLevelA == currentLevelA)
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{
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return;
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}
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this->rotaryLevelA = currentLevelA;
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bool pinARaising = currentLevelA == HIGH;
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if (pinARaising && (this->rotaryLevelB == LOW))
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{
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if (this->rotaryStateCCW == EVENT_CLEARED)
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{
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this->rotaryStateCCW = EVENT_OCCURRED;
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if ((this->action == ACTION_NONE)
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|| (this->action == (cwRotationMeaning == ACTION_UP ? ACTION_UP : ACTION_DOWN)))
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{
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this->action = cwRotationMeaning == ACTION_UP ? ACTION_DOWN : ACTION_UP;
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}
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}
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}
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else if (!pinARaising && (this->rotaryLevelB == HIGH))
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{
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// Logic to prevent bouncing.
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this->rotaryStateCCW = EVENT_CLEARED;
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}
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#endif
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setInterval(30);
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}
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void CannedMessagePlugin::directionB()
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{
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#ifdef ROTARY_MODE
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// CW rotation (at least on most common rotary encoders)
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int currentLevelB = digitalRead(PIN_B);
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if (this->rotaryLevelB == currentLevelB)
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{
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return;
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}
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this->rotaryLevelB = currentLevelB;
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bool pinBRaising = currentLevelB == HIGH;
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if (pinBRaising && (this->rotaryLevelA == LOW))
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{
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if (this->rotaryStateCW == EVENT_CLEARED)
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{
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this->rotaryStateCW = EVENT_OCCURRED;
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if ((this->action == ACTION_NONE)
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|| (this->action == (cwRotationMeaning == ACTION_UP ? ACTION_DOWN : ACTION_UP)))
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{
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this->action = cwRotationMeaning == ACTION_UP ? ACTION_UP : ACTION_DOWN;
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}
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}
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}
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else if (!pinBRaising && (this->rotaryLevelA == HIGH))
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{
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// Logic to prevent bouncing.
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this->rotaryStateCW = EVENT_CLEARED;
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}
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#endif
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setInterval(30);
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}
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