Change Sonoff L1 color up scaling and color margin detection

Change Sonoff L1 color up scaling and color margin detection (#9545)
This commit is contained in:
Theo Arends 2020-11-09 15:04:22 +01:00
parent 40e58c0702
commit 371b00823e
3 changed files with 72 additions and 7 deletions

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@ -6,6 +6,7 @@ All notable changes to this project will be documented in this file.
## [9.1.0.1]
### Added
- Zigbee support for Mi Door and Contact (#9759)
- Zigbee alarm persistence (#9785)
- Support for EZO PMP sensors by Christopher Tremblay (#9760)
- Commands ``TuyaRGB``, ``TuyaEnum`` and ``TuyaEnumList`` (#9769)
@ -13,6 +14,7 @@ All notable changes to this project will be documented in this file.
- Core library from v2.7.4.5 to v2.7.4.7
- Platformio compiler option `no target align` enabled (#9749)
- Consolidate `AddLog_P` into `AddLog_P2` and rename to `AddLog_P`
- Sonoff L1 color up scaling and color margin detection (#9545)
### Fixed
- NTP fallback server functionality (#9739)

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@ -60,12 +60,14 @@ The attached binaries can also be downloaded from http://ota.tasmota.com/tasmota
## Changelog v9.1.0.1
### Added
- Zigbee support for Mi Door and Contact (#9759)
- Zigbee alarm persistence (#9785)
- Support for additional EZO sensors by Christopher Tremblay
- Commands ``TuyaRGB``, ``TuyaEnum`` and ``TuyaEnumList`` (#9769)
### Changed
- Core library from v2.7.4.5 to v2.7.4.7
- Platformio compiler option `no target align` enabled (#9749)
- Sonoff L1 color up scaling and color margin detection (#9545)
### Fixed
- NTP fallback server functionality (#9739)

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@ -25,6 +25,10 @@
#define XLGT_05 5
//#define SONOFF_L1_START_DELAY // Sync Nuvotron power state with Tasmota on power up
//#define SONOFF_L1_ALLOW_REMOTE_INTERRUPT // During schemes 2..4
#define SONOFF_L1_DEBUG1 // Add send and receive logging
#define SONOFF_L1_BUFFER_SIZE 140
#define SONOFF_L1_MODE_COLORFUL 1 // [Color key] Colorful (static color)
@ -41,19 +45,51 @@
#define SONOFF_L1_MODE_SYNC_TO_MUSIC 12 // Sync to music [Speed 1- 100, sensitivity 1 - 10]
struct SNFL1 {
#ifdef SONOFF_L1_ALLOW_REMOTE_INTERRUPT
uint32_t unlock = 0;
bool receive_ready = true;
#endif
#ifdef SONOFF_L1_START_DELAY
char buffer[SONOFF_L1_BUFFER_SIZE];
#endif
uint8_t color[3];
uint8_t dimmer;
uint8_t power;
bool receive_ready = true;
} Snfl1;
/********************************************************************************************/
#ifdef SONOFF_L1_START_DELAY
#include <Ticker.h>
Ticker SnfL1StartDelay;
void SnfL1SendDelayed(void) {
SnfL1StartDelay.detach();
SnfL1Send();
}
void SnfL1Send(void)
{
#ifdef SONOFF_L1_DEBUG1
AddLog_P(LOG_LEVEL_DEBUG, PSTR("SL1: Send %s"), Snfl1.buffer);
#endif
Serial.print(Snfl1.buffer);
Serial.write(0x1B);
Serial.flush();
}
void SnfL1SerialSendOk(void)
{
snprintf_P(Snfl1.buffer, sizeof(Snfl1.buffer), PSTR("AT+SEND=ok"));
SnfL1Send();
}
#else
void SnfL1Send(const char *buffer)
{
#ifdef SONOFF_L1_DEBUG1
AddLog_P(LOG_LEVEL_DEBUG, PSTR("SL1: Send %s"), buffer);
#endif
Serial.print(buffer);
Serial.write(0x1B);
Serial.flush();
@ -66,11 +102,12 @@ void SnfL1SerialSendOk(void)
SnfL1Send(buffer);
}
#endif // SONOFF_L1_START_DELAY
bool SnfL1SerialInput(void)
{
if (TasmotaGlobal.serial_in_byte != 0x1B) {
if (TasmotaGlobal.serial_in_byte_counter >= 140) {
if (TasmotaGlobal.serial_in_byte_counter >= SONOFF_L1_BUFFER_SIZE) {
TasmotaGlobal.serial_in_byte_counter = 0;
}
if (TasmotaGlobal.serial_in_byte_counter || (!TasmotaGlobal.serial_in_byte_counter && ('A' == TasmotaGlobal.serial_in_byte))) { // A from AT
@ -82,10 +119,13 @@ bool SnfL1SerialInput(void)
// AT+RESULT="sequence":"1554682835320"
// AT+UPDATE="sequence":"34906","switch":"on","light_type":1,"colorR":0,"colorG":16,"colorB":0,"bright":6,"mode":1
// AT+UPDATE="switch":"on","light_type":1,"colorR":255,"colorG":0,"colorB":0,"bright":6,"mode":1,"speed":100,"sensitive":10
#ifdef SONOFF_L1_DEBUG1
AddLog_P(LOG_LEVEL_DEBUG, PSTR("SL1: Rcvd %s"), TasmotaGlobal.serial_in_buffer);
#endif
if (!strncmp(TasmotaGlobal.serial_in_buffer +3, "RESULT", 6)) {
#ifdef SONOFF_L1_ALLOW_REMOTE_INTERRUPT
Snfl1.receive_ready = true;
#endif
}
else if (!strncmp(TasmotaGlobal.serial_in_buffer +3, "UPDATE", 6)) {
char cmnd_dimmer[20];
@ -203,7 +243,9 @@ bool SnfL1SerialInput(void)
bool SnfL1SetChannels(void)
{
// if (Snfl1.receive_ready || TimeReached(Snfl1.unlock)) {
#ifdef SONOFF_L1_ALLOW_REMOTE_INTERRUPT
if (Snfl1.receive_ready || TimeReached(Snfl1.unlock)) {
#endif
uint8_t power = Light.power;
bool power_changed = (Snfl1.power != power);
Snfl1.power = power;
@ -224,7 +266,23 @@ bool SnfL1SetChannels(void)
}
if (!power_changed && !dimmer_changed && !color_changed) { return true; }
char buffer[140];
#ifdef SONOFF_L1_START_DELAY
snprintf_P(Snfl1.buffer, sizeof(Snfl1.buffer), PSTR("AT+UPDATE=\"sequence\":\"%d%03d\",\"switch\":\"%s\",\"light_type\":1,\"colorR\":%d,\"colorG\":%d,\"colorB\":%d,\"bright\":%d,\"mode\":%d"),
LocalTime(), millis()%1000,
Snfl1.power ? "on" : "off",
Snfl1.color[0], Snfl1.color[1], Snfl1.color[2],
Snfl1.dimmer,
SONOFF_L1_MODE_COLORFUL);
static bool first_call = true;
if (first_call) {
SnfL1StartDelay.attach_ms(900, SnfL1SendDelayed); // Allow startup time for Nuvotron microcontroller
first_call = false;
} else {
SnfL1Send();
}
#else
char buffer[SONOFF_L1_BUFFER_SIZE];
snprintf_P(buffer, sizeof(buffer), PSTR("AT+UPDATE=\"sequence\":\"%d%03d\",\"switch\":\"%s\",\"light_type\":1,\"colorR\":%d,\"colorG\":%d,\"colorB\":%d,\"bright\":%d,\"mode\":%d"),
LocalTime(), millis()%1000,
Snfl1.power ? "on" : "off",
@ -233,10 +291,13 @@ bool SnfL1SetChannels(void)
SONOFF_L1_MODE_COLORFUL);
SnfL1Send(buffer);
#endif // SONOFF_L1_START_DELAY
#ifdef SONOFF_L1_ALLOW_REMOTE_INTERRUPT
Snfl1.unlock = millis() + 500; // Allow time for the RC
Snfl1.receive_ready = false;
// }
}
#endif
return true;
}