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7 Commits

Author SHA1 Message Date
d12e766cd7 docs: update changelog and header for version v1.5.12-beta9
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2025-08-29 12:56:07 +02:00
af7bc23703 docs: update platformio.ini for beta version v1.5.12-beta9 2025-08-29 12:56:07 +02:00
de39892f64 fix: update vendor and filament ID handling to use NULL and add delays for stability 2025-08-29 12:55:51 +02:00
40cb835e51 docs: update changelog and header for version v1.5.12-beta8
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2025-08-29 11:03:11 +02:00
eb9d9e74f4 docs: update platformio.ini for beta version v1.5.12-beta8 2025-08-29 11:03:11 +02:00
d8af3f45e5 fix: correct color_hex key usage and comment out unused date fields in spool creation 2025-08-29 11:03:05 +02:00
96bb8f9c7c fix: add delay to ensure proper setting of vendor and filament IDs after API state changes 2025-08-29 10:58:06 +02:00
5 changed files with 87 additions and 26 deletions

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@@ -1,5 +1,24 @@
# Changelog
## [1.5.12-beta9] - 2025-08-29
### Added
- update vendor and filament ID handling to use NULL and add delays for stability
### Changed
- update platformio.ini for beta version v1.5.12-beta9
## [1.5.12-beta8] - 2025-08-29
### Added
- add delay to ensure proper setting of vendor and filament IDs after API state changes
### Changed
- update platformio.ini for beta version v1.5.12-beta8
### Fixed
- correct color_hex key usage and comment out unused date fields in spool creation
## [1.5.12-beta7] - 2025-08-29
### Changed
- update platformio.ini for beta version v1.5.12-beta7

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@@ -9,7 +9,7 @@
; https://docs.platformio.org/page/projectconf.html
[common]
version = "1.5.12-beta7"
version = "1.5.12-beta9"
to_old_version = "1.5.0"
##

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@@ -676,7 +676,7 @@ uint16_t createVendor(String vendor) {
uint16_t checkVendor(String vendor) {
// Check if vendor exists using task system
foundVendorId = 0; // Reset previous value
foundVendorId = NULL; // Reset previous value
String vendorName = vendor;
vendorName.trim();
@@ -696,7 +696,13 @@ uint16_t checkVendor(String vendor) {
params->updatePayload = ""; // Empty for GET request
// Check if API is idle before creating task
if(spoolmanApiState == API_IDLE){
while (spoolmanApiState != API_IDLE)
{
vTaskDelay(100 / portTICK_PERIOD_MS);
}
if(spoolmanApiState == API_IDLE) {
// Erstelle die Task
BaseType_t result = xTaskCreate(
sendToApi, // Task-Funktion
@@ -716,6 +722,12 @@ uint16_t checkVendor(String vendor) {
while(spoolmanApiState != API_IDLE) {
vTaskDelay(100 / portTICK_PERIOD_MS);
}
// Additional delay to ensure foundVendorId is properly set after API state becomes IDLE
while (foundVendorId == NULL)
{
vTaskDelay(50 / portTICK_PERIOD_MS);
}
// Check if vendor was found
if (foundVendorId == 0) {
@@ -748,7 +760,7 @@ uint16_t createFilament(uint16_t vendorId, const JsonDocument& payload) {
// Create JSON payload for filament creation
JsonDocument filamentDoc;
filamentDoc["name"] = payload["name"].as<String>();
filamentDoc["name"] = payload["color_name"].as<String>();
filamentDoc["vendor_id"] = String(vendorId);
filamentDoc["material"] = payload["type"].as<String>();
filamentDoc["density"] = (payload["density"].is<String>() && payload["density"].as<String>().length() > 0) ? payload["density"].as<String>() : "1.24";
@@ -775,7 +787,7 @@ uint16_t createFilament(uint16_t vendorId, const JsonDocument& payload) {
}
else
{
filamentDoc["color_hex"] = (payload["color"].is<String>() && payload["color"].as<String>().length() >= 6) ? payload["color"].as<String>() : "FFFFFF";
filamentDoc["color_hex"] = (payload["color_hex"].is<String>() && payload["color_hex"].as<String>().length() >= 6) ? payload["color_hex"].as<String>() : "FFFFFF";
}
String filamentPayload;
@@ -824,7 +836,7 @@ uint16_t createFilament(uint16_t vendorId, const JsonDocument& payload) {
uint16_t checkFilament(uint16_t vendorId, const JsonDocument& payload) {
// Check if filament exists using task system
foundFilamentId = 0; // Reset previous value
foundFilamentId = NULL; // Reset previous value
String spoolsUrl = spoolmanUrl + apiUrl + "/filament?vendor.id=" + String(vendorId) + "&external_id=" + String(payload["artnr"].as<String>());
Serial.print("Check filament with URL: ");
@@ -841,7 +853,7 @@ uint16_t checkFilament(uint16_t vendorId, const JsonDocument& payload) {
params->updatePayload = ""; // Empty for GET request
// Check if API is idle before creating task
if(spoolmanApiState == API_IDLE){
//if(spoolmanApiState == API_IDLE){
// Erstelle die Task
BaseType_t result = xTaskCreate(
sendToApi, // Task-Funktion
@@ -851,16 +863,21 @@ uint16_t checkFilament(uint16_t vendorId, const JsonDocument& payload) {
0, // Priorität
NULL // Task-Handle (nicht benötigt)
);
} else {
Serial.println("Not spawning new task, API still active!");
delete params;
return 0;
}
//} else {
// Serial.println("Not spawning new task, API still active!");
// delete params;
// return 0;
//}
// Wait for task completion
while(spoolmanApiState != API_IDLE) {
vTaskDelay(100 / portTICK_PERIOD_MS);
}
// Additional delay to ensure foundFilamentId is properly set after API state becomes IDLE
while (foundFilamentId == NULL) {
vTaskDelay(50 / portTICK_PERIOD_MS);
}
// Check if filament was found
if (foundFilamentId == 0) {
@@ -885,22 +902,21 @@ uint16_t createSpool(uint16_t vendorId, uint16_t filamentId, JsonDocument& paylo
// Create new spool in Spoolman database using task system
// Note: Due to async nature, the ID will be stored in createdSpoolId global variable
// Note: This function assumes that the caller has already ensured API is IDLE
createdSpoolId = 0; // Reset previous value
createdSpoolId = NULL; // Reset previous value
String spoolsUrl = spoolmanUrl + apiUrl + "/spool";
Serial.print("Create spool with URL: ");
Serial.println(spoolsUrl);
String currentDate = getCurrentDateISO8601();
//String currentDate = getCurrentDateISO8601();
// Create JSON payload for spool creation
JsonDocument spoolDoc;
spoolDoc["first_used"] = String(currentDate);
spoolDoc["last_used"] = String(currentDate);
//spoolDoc["first_used"] = String(currentDate);
//spoolDoc["last_used"] = String(currentDate);
spoolDoc["filament_id"] = String(filamentId);
spoolDoc["initial_weight"] = weight > 10 ? String(weight) : "1000";
spoolDoc["initial_weight"] = weight > 10 ? String(weight-payload["spool_weight"].as<int>()) : "1000";
spoolDoc["spool_weight"] = (payload["spool_weight"].is<String>() && payload["spool_weight"].as<String>().length() > 0) ? payload["spool_weight"].as<String>() : "180";
spoolDoc["remaining_weight"] = (payload["weight"].is<String>() && payload["weight"].as<String>().length() > 0) ? payload["weight"].as<String>() : "1000";
spoolDoc["used_weight"] = "0";
spoolDoc["lot_nr"] = (payload["lotnr"].is<String>() && payload["lotnr"].as<String>().length() > 0) ? payload["lotnr"].as<String>() : "";
spoolDoc["comment"] = "automatically generated";
spoolDoc["extra"]["nfc_id"] = "\"" + uidString + "\"";
@@ -940,8 +956,8 @@ uint16_t createSpool(uint16_t vendorId, uint16_t filamentId, JsonDocument& paylo
// Wait for task completion and return the created spool ID
// Note: createdSpoolId will be set by sendToApi when response is received
while(spoolmanApiState != API_IDLE) {
vTaskDelay(100 / portTICK_PERIOD_MS);
while(createdSpoolId == NULL) {
vTaskDelay(50 / portTICK_PERIOD_MS);
}
// Write data to tag with startWriteJsonToTag
@@ -950,6 +966,9 @@ uint16_t createSpool(uint16_t vendorId, uint16_t filamentId, JsonDocument& paylo
String payloadString;
serializeJson(payload, payloadString);
nfcReaderState = NFC_IDLE;
vTaskDelay(50 / portTICK_PERIOD_MS);
startWriteJsonToTag(true, payloadString.c_str());
return createdSpoolId;

View File

@@ -364,8 +364,20 @@ bool decodeNdefAndReturnJson(const byte* encodedMessage, String uidString) {
Serial.print("Actual JSON length extracted: ");
Serial.println(actualJsonLength);
Serial.println("Decoded JSON Data:");
Serial.print("Total nfcJsonData length: ");
Serial.println(nfcJsonData.length());
Serial.println("=== DECODED JSON DATA START ===");
Serial.println(nfcJsonData);
Serial.println("=== DECODED JSON DATA END ===");
// Check if JSON was truncated
if (nfcJsonData.length() < payloadLength && !nfcJsonData.endsWith("}")) {
Serial.println("WARNING: JSON payload appears to be truncated!");
Serial.print("Expected payload length: ");
Serial.println(payloadLength);
Serial.print("Actual extracted length: ");
Serial.println(nfcJsonData.length());
}
// Trim any trailing whitespace or invalid characters
nfcJsonData.trim();
@@ -597,7 +609,9 @@ void scanRfidTask(void * parameter) {
oledShowProgressBar(0, octoEnabled?5:4, "Reading", "Detecting tag");
//vTaskDelay(500 / portTICK_PERIOD_MS);
// Wait 1 second after tag detection to stabilize connection
Serial.println("Tag detected, waiting 1 second for stabilization...");
vTaskDelay(1000 / portTICK_PERIOD_MS);
// create Tag UID string
String uidString = "";
@@ -620,24 +634,34 @@ void scanRfidTask(void * parameter) {
// We probably have an NTAG2xx card (though it could be Ultralight as well)
Serial.println("Seems to be an NTAG2xx tag (7 byte UID)");
Serial.print("Tag size: ");
Serial.print(tagSize);
Serial.println(" bytes");
uint8_t numPages = readTagSize()/4;
for (uint8_t i = 4; i < 4+numPages; i++) {
if (!nfc.ntag2xx_ReadPage(i, data+(i-4) * 4))
{
break; // Stop if reading fails
}
// Check for NDEF message end
if (data[(i - 4) * 4] == 0xFE)
{
Serial.println("Found NDEF message end marker");
break; // End of NDEF message
}
yield();
esp_task_wdt_reset();
vTaskDelay(pdMS_TO_TICKS(1));
// Increased delay to ensure stable reading
vTaskDelay(pdMS_TO_TICKS(5)); // Increased from 1ms to 5ms
}
Serial.println("Tag reading completed, starting NDEF decode...");
if (!decodeNdefAndReturnJson(data, uidString))
{
oledShowProgressBar(1, 1, "Failure", "Unknown tag");

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@@ -49,8 +49,7 @@ void scale_loop(void * parameter) {
Serial.println("++++++++++++++++++++++++++++++");
vTaskDelay(pdMS_TO_TICKS(500));
scale.tare();
vTaskDelay(pdMS_TO_TICKS(500));
scale_tare_counter = 10; // damit beim Starten der Waage automatisch getart wird
for(;;) {
if (scale.is_ready())