mirror of https://github.com/arendst/Tasmota.git
Add BASE 2 for absolute relays
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@ -124,9 +124,9 @@ struct PCF8574 {
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uint8_t relay_offset;
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uint8_t button_max;
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uint8_t switch_max;
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uint8_t base;
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int8_t button_offset;
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int8_t switch_offset;
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bool base;
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bool interrupt;
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} Pcf8574;
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@ -234,9 +234,10 @@ bool Pcf8574LoadTemplate(void) {
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// rule3 on file#pcf8574.dat do {"NAME":"PCF8574 A=B1234,Ri4321,B=B5678,Ri8765","GPIO":[32,33,34,35,259,258,257,256,36,37,38,39,263,262,261,260]} endon
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// rule3 on file#pcf8574.dat do {"NAME":"PCF8574 A=B3456,Ri4321,B=B78910,Ri8765","BASE":1,"GPIO":[34,35,36,37,259,258,257,256,38,39,40,41,263,262,261,260]} endon
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// rule3 on file#pcf8574.dat do {"NAME":"PCF8574 A=B3456,Ri6543,B=B78910,Ri10987","BASE":2,"GPIO":[34,35,36,37,261,260,259,258,38,39,40,41,265,264,263,262]} endon
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JsonParserToken val = root[PSTR(D_JSON_BASE)];
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if (val) {
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Pcf8574.base = (val.getUInt()) ? true : false;
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Pcf8574.base = val.getUInt();
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}
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val = root[PSTR(D_JSON_NAME)];
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if (val) {
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@ -358,8 +359,13 @@ void Pcf8574Init(void) {
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void Pcf8574Power(void) {
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// XdrvMailbox.index = 32-bit rpower bit mask
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power_t rpower = XdrvMailbox.index >> Pcf8574.relay_offset;
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for (uint32_t index = 0; index < Pcf8574.relay_max; index++) {
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power_t rpower = XdrvMailbox.index;
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uint32_t relay_max = TasmotaGlobal.devices_present;
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if (Pcf8574.base < 2) {
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rpower >>= Pcf8574.relay_offset;
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relay_max = Pcf8574.relay_max;
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}
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for (uint32_t index = 0; index < relay_max; index++) {
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power_t state = rpower &1;
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if (Pcf8574PinUsed(GPIO_REL1, index)) {
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uint32_t pin = Pcf8574Pin(GPIO_REL1, index) & 0x3F; // Fix possible overflow over 63 gpios
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@ -372,13 +378,13 @@ void Pcf8574Power(void) {
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bool Pcf8574AddButton(void) {
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// XdrvMailbox.index = button/switch index
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uint32_t index = XdrvMailbox.index;
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if (Pcf8574.base) {
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if (!bitRead(Pcf8574.button_used, index)) { return false; }
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Pcf8574.button_offset = 0;
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} else {
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if (Pcf8574.base < 1) {
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if (Pcf8574.button_offset < 0) { Pcf8574.button_offset = index; }
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index -= Pcf8574.button_offset;
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if (index >= Pcf8574.button_max) { return false; }
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} else {
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if (!bitRead(Pcf8574.button_used, index)) { return false; }
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Pcf8574.button_offset = 0;
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}
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XdrvMailbox.index = (Pcf8574DigitalRead(Pcf8574Pin(GPIO_KEY1, index)) != bitRead(Pcf8574.button_inverted, index));
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return true;
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@ -387,13 +393,13 @@ bool Pcf8574AddButton(void) {
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bool Pcf8574AddSwitch(void) {
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// XdrvMailbox.index = button/switch index
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uint32_t index = XdrvMailbox.index;
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if (Pcf8574.base) {
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if (!bitRead(Pcf8574.switch_used, index)) { return false; }
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Pcf8574.switch_offset = 0;
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} else {
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if (Pcf8574.base < 1) {
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if (Pcf8574.switch_offset < 0) { Pcf8574.switch_offset = index; }
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index -= Pcf8574.switch_offset;
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if (index >= Pcf8574.switch_max) { return false; }
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} else {
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if (!bitRead(Pcf8574.switch_used, index)) { return false; }
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Pcf8574.switch_offset = 0;
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}
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XdrvMailbox.index = Pcf8574DigitalRead(Pcf8574Pin(GPIO_SWT1, index));
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return true;
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@ -154,9 +154,9 @@ struct MCP230 {
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uint8_t relay_offset;
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uint8_t button_max;
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uint8_t switch_max;
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uint8_t base;
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int8_t button_offset;
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int8_t switch_offset;
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bool base;
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bool interrupt;
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} Mcp23x;
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@ -491,7 +491,7 @@ bool MCP23xLoadTemplate(void) {
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// {"NAME":"MCP23017","GPIO":[32,33,34,35,36,37,38,39,224,225,226,227,228,229,230,231,40,41,42,43,44,45,46,47,232,233,234,235,236,237,238,239]}
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JsonParserToken val = root[PSTR(D_JSON_BASE)];
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if (val) {
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Mcp23x.base = (val.getUInt()) ? true : false;
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Mcp23x.base = val.getUInt();
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}
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val = root[PSTR(D_JSON_NAME)];
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if (val) {
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@ -745,14 +745,17 @@ void MCP23xInit(void) {
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}
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void MCP23xPower(void) {
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power_t rpower = XdrvMailbox.index >> Mcp23x.relay_offset;
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for (uint32_t index = 0; index < Mcp23x.relay_max; index++) {
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// XdrvMailbox.index = 32-bit rpower bit mask
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power_t rpower = XdrvMailbox.index;
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uint32_t relay_max = TasmotaGlobal.devices_present;
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if (Mcp23x.base < 2) {
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rpower >>= Mcp23x.relay_offset;
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relay_max = Mcp23x.relay_max;
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}
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for (uint32_t index = 0; index < relay_max; index++) {
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power_t state = rpower &1;
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if (MCP23xPinUsed(GPIO_REL1, index)) {
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uint32_t pin = MCP23xPin(GPIO_REL1, index) & 0x3F; // Fix possible overflow over 63 gpios
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// AddLog(LOG_LEVEL_DEBUG, PSTR("MCP: Power pin %d, state %d(%d)"), pin, state, bitRead(Mcp23x.relay_inverted, index));
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MCP23xDigitalWrite(pin, bitRead(Mcp23x.relay_inverted, index) ? !state : state);
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}
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rpower >>= 1; // Select next power
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@ -762,13 +765,13 @@ void MCP23xPower(void) {
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bool MCP23xAddButton(void) {
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// XdrvMailbox.index = button/switch index
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uint32_t index = XdrvMailbox.index;
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if (Mcp23x.base) {
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if (!bitRead(Mcp23x.button_used, index)) { return false; }
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Mcp23x.button_offset = 0;
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} else {
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if (Mcp23x.base < 1) {
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if (Mcp23x.button_offset < 0) { Mcp23x.button_offset = index; }
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index -= Mcp23x.button_offset;
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if (index >= Mcp23x.button_max) { return false; }
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} else {
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if (!bitRead(Mcp23x.button_used, index)) { return false; }
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Mcp23x.button_offset = 0;
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}
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XdrvMailbox.index = (MCP23xDigitalRead(MCP23xPin(GPIO_KEY1, index)) != bitRead(Mcp23x.button_inverted, index));
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return true;
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@ -777,13 +780,13 @@ bool MCP23xAddButton(void) {
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bool MCP23xAddSwitch(void) {
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// XdrvMailbox.index = button/switch index
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uint32_t index = XdrvMailbox.index;
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if (Mcp23x.base) {
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if (!bitRead(Mcp23x.switch_used, index)) { return false; }
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Mcp23x.switch_offset = 0;
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} else {
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if (Mcp23x.base < 1) {
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if (Mcp23x.switch_offset < 0) { Mcp23x.switch_offset = index; }
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index -= Mcp23x.switch_offset;
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if (index >= Mcp23x.switch_max) { return false; }
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} else {
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if (!bitRead(Mcp23x.switch_used, index)) { return false; }
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Mcp23x.switch_offset = 0;
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}
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XdrvMailbox.index = MCP23xDigitalRead(MCP23xPin(GPIO_SWT1, index));
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return true;
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