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Author SHA1 Message Date
6e94092a74 docs: update changelog and header for version v1.5.12-beta1
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2025-08-28 15:18:54 +02:00
ece510099e docs: update platformio.ini for beta version v1.5.12-beta1 2025-08-28 15:18:54 +02:00
1f01af4da9 feat: implement filament and spool creation in Spoolman API 2025-08-28 15:17:42 +02:00
c5d24d5972 Merge branch 'main' into recyclingfabrik 2025-08-28 11:16:43 +02:00
48556b9519 docs: update changelog and header for version v1.5.12
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2025-08-28 11:16:10 +02:00
2ac8effe04 docs: update platformio.ini for version v1.5.12 2025-08-28 11:16:10 +02:00
4e58407af8 refactor: clean up library dependencies in platformio.ini 2025-08-28 11:12:25 +02:00
d776956c5e style: add numbering to update sections in upgrade.html
refactor: improve readability of checkSpoolmanInstance function
2025-08-28 11:10:10 +02:00
25233f70d5 docs: update changelog and header for version v1.5.11-beta4
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2025-08-28 11:04:17 +02:00
b4584364d6 docs: update platformio.ini for beta version v1.5.11-beta4 2025-08-28 11:04:17 +02:00
33ea062773 refactor: remove debug logging from checkSpoolmanInstance function 2025-08-28 11:04:06 +02:00
771b0a4839 docs: update changelog and header for version v1.5.11-beta3
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2025-08-28 10:55:30 +02:00
c48003e1b2 docs: update platformio.ini for beta version v1.5.11-beta3 2025-08-28 10:55:30 +02:00
83dec4c876 feat: add logging for spoolman status in checkSpoolmanInstance function 2025-08-28 10:55:24 +02:00
9d406e3428 Merge branch 'main' into recyclingfabrik 2025-08-27 17:54:32 +02:00
876e9c62d8 Add JSON structure comments for filament and spool creation 2025-08-06 17:38:26 +02:00
765cb5319d Add vendor and filament management to API; implement recycling factory handling in NFC 2025-08-06 17:27:11 +02:00
8 changed files with 554 additions and 21 deletions

View File

@@ -1,5 +1,42 @@
# Changelog
## [1.5.12-beta1] - 2025-08-28
### Added
- implement filament and spool creation in Spoolman API
- Add JSON structure comments for filament and spool creation
- Add vendor and filament management to API; implement recycling factory handling in NFC
### Changed
- update platformio.ini for beta version v1.5.12-beta1
- Merge branch 'main' into recyclingfabrik
- Merge branch 'main' into recyclingfabrik
## [1.5.12] - 2025-08-28
### Added
- add numbering to update sections in upgrade.html refactor: improve readability of checkSpoolmanInstance function
### Changed
- update platformio.ini for version v1.5.12
- clean up library dependencies in platformio.ini
## [1.5.11-beta4] - 2025-08-28
### Changed
- update platformio.ini for beta version v1.5.11-beta4
### Fixed
- remove debug logging from checkSpoolmanInstance function
## [1.5.11-beta3] - 2025-08-28
### Added
- add logging for spoolman status in checkSpoolmanInstance function
### Changed
- update platformio.ini for beta version v1.5.11-beta3
## [1.5.11-beta2] - 2025-08-28
### Added
- add logging for healthy spoolman instance check

View File

@@ -56,7 +56,7 @@
<div class="update-options">
<div class="update-section">
<h2>Firmware Update</h2>
<h2>1) Firmware Update</h2>
<p>Upload a new firmware file (upgrade_filaman_firmware_*.bin)</p>
<div class="update-form">
<form id="firmwareForm" enctype='multipart/form-data' data-type="firmware">
@@ -67,7 +67,7 @@
</div>
<div class="update-section">
<h2>Webpage Update</h2>
<h2>2) Webpage Update</h2>
<p>Upload a new webpage file (upgrade_filaman_website_*.bin)</p>
<div class="update-form">
<form id="webpageForm" enctype='multipart/form-data' data-type="webpage">

View File

@@ -9,7 +9,7 @@
; https://docs.platformio.org/page/projectconf.html
[common]
version = "1.5.11-beta2"
version = "1.5.12-beta1"
to_old_version = "1.5.0"
##
@@ -23,10 +23,7 @@ monitor_speed = 115200
lib_deps =
tzapu/WiFiManager @ ^2.0.17
https://github.com/me-no-dev/ESPAsyncWebServer.git#master
#me-no-dev/AsyncTCP @ ^1.1.1
https://github.com/esphome/AsyncTCP.git
#mathieucarbou/ESPAsyncWebServer @ ^3.6.0
#esp32async/AsyncTCP @ ^3.3.5
bogde/HX711 @ ^0.7.5
adafruit/Adafruit SSD1306 @ ^2.5.13
adafruit/Adafruit GFX Library @ ^1.11.11
@@ -36,7 +33,6 @@ lib_deps =
digitaldragon/SSLClient @ ^1.3.2
; Enable SPIFFS upload
#board_build.filesystem = spiffs
board_build.filesystem = littlefs
; Update partition settings
board_build.partitions = partitions.csv

View File

@@ -5,8 +5,21 @@
#include <Preferences.h>
#include "debug.h"
#include "scale.h"
#include <time.h>
volatile spoolmanApiStateType spoolmanApiState = API_IDLE;
// Returns current date and time in ISO8601 format
String getCurrentDateISO8601() {
struct tm timeinfo;
if(!getLocalTime(&timeinfo)) {
Serial.println("Failed to obtain time");
return "1970-01-01T00:00:00Z";
}
char timeStringBuff[25];
strftime(timeStringBuff, sizeof(timeStringBuff), "%Y-%m-%dT%H:%M:%SZ", &timeinfo);
return String(timeStringBuff);
}
//bool spoolman_connected = false;
String spoolmanUrl = "";
bool octoEnabled = false;
@@ -14,6 +27,11 @@ bool sendOctoUpdate = false;
String octoUrl = "";
String octoToken = "";
uint16_t remainingWeight = 0;
uint16_t createdVendorId = 0; // Store ID of newly created vendor
uint16_t foundVendorId = 0; // Store ID of found vendor
uint16_t foundFilamentId = 0; // Store ID of found filament
uint16_t createdFilamentId = 0; // Store ID of newly created filament
uint16_t createdSpoolId = 0; // Store ID of newly created spool
bool spoolmanConnected = false;
bool spoolmanExtraFieldsChecked = false;
TaskHandle_t* apiTask;
@@ -129,6 +147,7 @@ void sendToApi(void *parameter) {
int httpCode;
if (httpType == "PATCH") httpCode = http.PATCH(updatePayload);
else if (httpType == "POST") httpCode = http.POST(updatePayload);
else if (httpType == "GET") httpCode = http.GET();
else httpCode = http.PUT(updatePayload);
if (httpCode == HTTP_CODE_OK) {
@@ -168,6 +187,86 @@ void sendToApi(void *parameter) {
oledShowProgressBar(5, 5, "Spool Tag", ("Done: " + String(remainingWeight) + " g remain").c_str());
remainingWeight = 0;
break;
case API_REQUEST_VENDOR_CREATE:
Serial.println("Vendor successfully created!");
createdVendorId = doc["id"].as<uint16_t>();
Serial.print("Created Vendor ID: ");
Serial.println(createdVendorId);
oledShowProgressBar(1, 1, "Vendor", "Created!");
break;
case API_REQUEST_VENDOR_CHECK:
if (doc.isNull() || doc.size() == 0) {
Serial.println("Vendor not found in response");
foundVendorId = 0;
} else {
foundVendorId = doc[0]["id"].as<uint16_t>();
Serial.print("Found Vendor ID: ");
Serial.println(foundVendorId);
}
break;
case API_REQUEST_FILAMENT_CHECK:
if (doc.isNull() || doc.size() == 0) {
Serial.println("Filament not found in response");
foundFilamentId = 0;
} else {
foundFilamentId = doc[0]["id"].as<uint16_t>();
Serial.print("Found Filament ID: ");
Serial.println(foundFilamentId);
}
break;
case API_REQUEST_FILAMENT_CREATE:
Serial.println("Filament successfully created!");
createdFilamentId = doc["id"].as<uint16_t>();
Serial.print("Created Filament ID: ");
Serial.println(createdFilamentId);
oledShowProgressBar(1, 1, "Filament", "Created!");
break;
case API_REQUEST_SPOOL_CREATE:
Serial.println("Spool successfully created!");
createdSpoolId = doc["id"].as<uint16_t>();
Serial.print("Created Spool ID: ");
Serial.println(createdSpoolId);
oledShowProgressBar(1, 1, "Spool", "Created!");
break;
}
}
doc.clear();
} else if (httpCode == HTTP_CODE_CREATED) {
Serial.println("Spoolman erfolgreich erstellt");
// Parse response for created resources
String payload = http.getString();
JsonDocument doc;
DeserializationError error = deserializeJson(doc, payload);
if (error) {
Serial.print("Fehler beim Parsen der JSON-Antwort: ");
Serial.println(error.c_str());
} else {
switch(requestType){
case API_REQUEST_VENDOR_CREATE:
Serial.println("Vendor successfully created!");
createdVendorId = doc["id"].as<uint16_t>();
Serial.print("Created Vendor ID: ");
Serial.println(createdVendorId);
oledShowProgressBar(1, 1, "Vendor", "Created!");
break;
case API_REQUEST_FILAMENT_CREATE:
Serial.println("Filament successfully created!");
createdFilamentId = doc["id"].as<uint16_t>();
Serial.print("Created Filament ID: ");
Serial.println(createdFilamentId);
oledShowProgressBar(1, 1, "Filament", "Created!");
break;
case API_REQUEST_SPOOL_CREATE:
Serial.println("Spool successfully created!");
createdSpoolId = doc["id"].as<uint16_t>();
Serial.print("Created Spool ID: ");
Serial.println(createdSpoolId);
oledShowProgressBar(1, 1, "Spool", "Created!");
break;
default:
// Handle other create operations if needed
break;
}
}
doc.clear();
@@ -235,6 +334,15 @@ void sendToApi(void *parameter) {
case API_REQUEST_BAMBU_UPDATE:
oledShowProgressBar(1, 1, "Failure!", "Bambu update");
break;
case API_REQUEST_VENDOR_CREATE:
oledShowProgressBar(1, 1, "Failure!", "Vendor create");
break;
case API_REQUEST_FILAMENT_CREATE:
oledShowProgressBar(1, 1, "Failure!", "Filament create");
break;
case API_REQUEST_SPOOL_CREATE:
oledShowProgressBar(1, 1, "Failure!", "Spool create");
break;
}
Serial.println("Fehler beim Senden an Spoolman! HTTP Code: " + String(httpCode));
@@ -504,6 +612,361 @@ bool updateSpoolBambuData(String payload) {
return true;
}
// #### Brand Filament
uint16_t createVendor(String vendor) {
// Create new vendor in Spoolman database using task system
// Note: Due to async nature, the ID will be stored in createdVendorId global variable
createdVendorId = 0; // Reset previous value
String spoolsUrl = spoolmanUrl + apiUrl + "/vendor";
Serial.print("Create vendor with URL: ");
Serial.println(spoolsUrl);
// Create JSON payload for vendor creation
JsonDocument vendorDoc;
vendorDoc["name"] = vendor;
vendorDoc["comment"] = "automatically generated";
vendorDoc["empty_spool_weight"] = 180;
vendorDoc["external_id"] = vendor;
String vendorPayload;
serializeJson(vendorDoc, vendorPayload);
Serial.print("Vendor Payload: ");
Serial.println(vendorPayload);
SendToApiParams* params = new SendToApiParams();
if (params == nullptr) {
Serial.println("Fehler: Kann Speicher für Task-Parameter nicht allokieren.");
vendorDoc.clear();
return 0;
}
params->requestType = API_REQUEST_VENDOR_CREATE;
params->httpType = "POST";
params->spoolsUrl = spoolsUrl;
params->updatePayload = vendorPayload;
// Check if API is idle before creating task
if(spoolmanApiState == API_IDLE){
// Erstelle die Task
BaseType_t result = xTaskCreate(
sendToApi, // Task-Funktion
"SendToApiTask", // Task-Name
6144, // Stackgröße in Bytes
(void*)params, // Parameter
0, // Priorität
NULL // Task-Handle (nicht benötigt)
);
} else {
Serial.println("Not spawning new task, API still active!");
delete params;
vendorDoc.clear();
return 0;
}
vendorDoc.clear();
// Wait for task completion and return the created vendor ID
// Note: createdVendorId will be set by sendToApi when response is received
while(spoolmanApiState != API_IDLE) {
vTaskDelay(100 / portTICK_PERIOD_MS);
}
return createdVendorId;
}
uint16_t checkVendor(String vendor) {
// Check if vendor exists using task system
foundVendorId = 0; // Reset previous value
String spoolsUrl = spoolmanUrl + apiUrl + "/vendor?name=" + vendor;
Serial.print("Check vendor with URL: ");
Serial.println(spoolsUrl);
SendToApiParams* params = new SendToApiParams();
if (params == nullptr) {
Serial.println("Fehler: Kann Speicher für Task-Parameter nicht allokieren.");
return 0;
}
params->requestType = API_REQUEST_VENDOR_CHECK;
params->httpType = "GET";
params->spoolsUrl = spoolsUrl;
params->updatePayload = ""; // Empty for GET request
// Check if API is idle before creating task
if(spoolmanApiState == API_IDLE){
// Erstelle die Task
BaseType_t result = xTaskCreate(
sendToApi, // Task-Funktion
"SendToApiTask", // Task-Name
6144, // Stackgröße in Bytes
(void*)params, // Parameter
0, // Priorität
NULL // Task-Handle (nicht benötigt)
);
} 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);
}
// Check if vendor was found
if (foundVendorId == 0) {
Serial.println("Vendor not found, creating new vendor...");
uint16_t vendorId = createVendor(vendor);
if (vendorId == 0) {
Serial.println("Failed to create vendor, returning 0.");
return 0; // Failed to create vendor
} else {
Serial.println("Vendor created with ID: " + String(vendorId));
return vendorId;
}
} else {
Serial.println("Vendor found: " + vendor);
Serial.print("Vendor ID: ");
Serial.println(foundVendorId);
return foundVendorId;
}
}
uint16_t createFilament(uint16_t vendorId, const JsonDocument& payload) {
// Create new filament in Spoolman database using task system
// Note: Due to async nature, the ID will be stored in createdFilamentId global variable
createdFilamentId = 0; // Reset previous value
String spoolsUrl = spoolmanUrl + apiUrl + "/filament";
Serial.print("Create filament with URL: ");
Serial.println(spoolsUrl);
// Create JSON payload for filament creation
JsonDocument filamentDoc;
filamentDoc["name"] = payload["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";
filamentDoc["diameter"] = (payload["diameter"].is<String>() && payload["diameter"].as<String>().length() > 0) ? payload["diameter"].as<String>() : "1.75";
filamentDoc["weight"] = payload["weight"].as<String>();
filamentDoc["spool_weight"] = payload["spool_weight"].as<String>();
filamentDoc["article_number"] = payload["artnr"].as<String>();
filamentDoc["comment"] = String("automatically generated");
filamentDoc["extruder_temp"] = payload["extruder_temp"].is<String>() ? payload["extruder_temp"].as<String>() : "";
filamentDoc["bed_temp"] = payload["bed_temp"].is<String>() ? payload["bed_temp"].as<String>() : "";
filamentDoc["external_id"] = payload["artnr"].as<String>();
if (payload["multi_color_hexes"].is<String>()) {
filamentDoc["multi_color_hexes"] = payload["multi_color_hexes"].as<String>();
filamentDoc["multi_color_direction"] = payload["multi_color_direction"].is<String>() ? payload["multi_color_direction"].as<String>() : "";
}
else
{
filamentDoc["color_hex"] = (payload["color"].is<String>() && payload["color"].as<String>().length() >= 6) ? payload["color"].as<String>() : "FFFFFF";
}
String filamentPayload;
serializeJson(filamentDoc, filamentPayload);
Serial.print("Filament Payload: ");
Serial.println(filamentPayload);
SendToApiParams* params = new SendToApiParams();
if (params == nullptr) {
Serial.println("Fehler: Kann Speicher für Task-Parameter nicht allokieren.");
filamentDoc.clear();
return 0;
}
params->requestType = API_REQUEST_FILAMENT_CREATE;
params->httpType = "POST";
params->spoolsUrl = spoolsUrl;
params->updatePayload = filamentPayload;
// Check if API is idle before creating task
if(spoolmanApiState == API_IDLE){
// Erstelle die Task
BaseType_t result = xTaskCreate(
sendToApi, // Task-Funktion
"SendToApiTask", // Task-Name
6144, // Stackgröße in Bytes
(void*)params, // Parameter
0, // Priorität
NULL // Task-Handle (nicht benötigt)
);
} else {
Serial.println("Not spawning new task, API still active!");
delete params;
filamentDoc.clear();
return 0;
}
filamentDoc.clear();
// Wait for task completion and return the created filament ID
// Note: createdFilamentId will be set by sendToApi when response is received
while(spoolmanApiState != API_IDLE) {
vTaskDelay(100 / portTICK_PERIOD_MS);
}
return createdFilamentId;
}
uint16_t checkFilament(uint16_t vendorId, const JsonDocument& payload) {
// Check if filament exists using task system
foundFilamentId = 0; // 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: ");
Serial.println(spoolsUrl);
SendToApiParams* params = new SendToApiParams();
if (params == nullptr) {
Serial.println("Fehler: Kann Speicher für Task-Parameter nicht allokieren.");
return 0;
}
params->requestType = API_REQUEST_FILAMENT_CHECK;
params->httpType = "GET";
params->spoolsUrl = spoolsUrl;
params->updatePayload = ""; // Empty for GET request
// Check if API is idle before creating task
if(spoolmanApiState == API_IDLE){
// Erstelle die Task
BaseType_t result = xTaskCreate(
sendToApi, // Task-Funktion
"SendToApiTask", // Task-Name
6144, // Stackgröße in Bytes
(void*)params, // Parameter
0, // Priorität
NULL // Task-Handle (nicht benötigt)
);
} 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);
}
// Check if filament was found
if (foundFilamentId == 0) {
Serial.println("Filament not found, creating new filament...");
uint16_t filamentId = createFilament(vendorId, payload);
if (filamentId == 0) {
Serial.println("Failed to create filament, returning 0.");
return 0; // Failed to create filament
} else {
Serial.println("Filament created with ID: " + String(filamentId));
return filamentId;
}
} else {
Serial.println("Filament found for vendor ID: " + String(vendorId));
Serial.print("Filament ID: ");
Serial.println(foundFilamentId);
return foundFilamentId;
}
}
uint16_t createSpool(uint16_t vendorId, uint16_t filamentId, JsonDocument& payload, String uidString) {
// Create new spool in Spoolman database using task system
// Note: Due to async nature, the ID will be stored in createdSpoolId global variable
createdSpoolId = 0; // Reset previous value
String spoolsUrl = spoolmanUrl + apiUrl + "/spool";
Serial.print("Create spool with URL: ");
Serial.println(spoolsUrl);
String currentDate = getCurrentDateISO8601();
// Create JSON payload for spool creation
JsonDocument spoolDoc;
spoolDoc["first_used"] = String(currentDate);
spoolDoc["last_used"] = String(currentDate);
spoolDoc["filament_id"] = String(filamentId);
spoolDoc["initial_weight"] = weight > 10 ? String(weight) : "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 + "\"";
String spoolPayload;
serializeJson(spoolDoc, spoolPayload);
Serial.print("Spool Payload: ");
Serial.println(spoolPayload);
spoolDoc.clear();
SendToApiParams* params = new SendToApiParams();
if (params == nullptr) {
Serial.println("Fehler: Kann Speicher für Task-Parameter nicht allokieren.");
spoolDoc.clear();
return 0;
}
params->requestType = API_REQUEST_SPOOL_CREATE;
params->httpType = "POST";
params->spoolsUrl = spoolsUrl;
params->updatePayload = spoolPayload;
// Check if API is idle before creating task
if(spoolmanApiState == API_IDLE){
// Erstelle die Task
BaseType_t result = xTaskCreate(
sendToApi, // Task-Funktion
"SendToApiTask", // Task-Name
6144, // Stackgröße in Bytes
(void*)params, // Parameter
0, // Priorität
NULL // Task-Handle (nicht benötigt)
);
} else {
Serial.println("Not spawning new task, API still active!");
delete params;
return 0;
}
// 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);
}
// daten mit startWriteJsonToTag schreiben
// void startWriteJsonToTag(const bool isSpoolTag, const char* payload);
payload["sm_id"].set(String(createdSpoolId));
String payloadString;
serializeJson(payload, payloadString);
startWriteJsonToTag(true, payloadString.c_str());
return createdSpoolId;
}
bool createBrandFilament(JsonDocument& payload, String uidString) {
uint16_t vendorId = checkVendor(payload["brand"].as<String>());
if (vendorId == 0) {
Serial.println("ERROR: Failed to create/find vendor");
return false;
}
uint16_t filamentId = checkFilament(vendorId, payload);
if (filamentId == 0) {
Serial.println("ERROR: Failed to create/find filament");
return false;
}
uint16_t spoolId = createSpool(vendorId, filamentId, payload, uidString);
if (spoolId == 0) {
Serial.println("ERROR: Failed to create spool");
return false;
}
Serial.println("SUCCESS: Brand filament created with Spool ID: " + String(spoolId));
return true;
}
// #### Spoolman init
bool checkSpoolmanExtraFields() {
// Only check extra fields if they have not been checked before
@@ -700,8 +1163,6 @@ bool checkSpoolmanInstance() {
oledShowTopRow();
spoolmanConnected = true;
returnValue = strcmp(status, "healthy") == 0;
Serial.print("Spoolman instance is healthy: ");
Serial.println(returnValue);
}else{
spoolmanConnected = false;
}
@@ -715,9 +1176,10 @@ bool checkSpoolmanInstance() {
Serial.println("Error contacting spoolman instance! HTTP Code: " + String(httpCode));
}
http.end();
returnValue = false;
spoolmanApiState = API_IDLE;
}else{
}
else
{
// If the check is skipped, return the previous status
Serial.println("Skipping spoolman healthcheck, API is active.");
returnValue = spoolmanConnected;

View File

@@ -17,7 +17,12 @@ typedef enum {
API_REQUEST_BAMBU_UPDATE,
API_REQUEST_SPOOL_TAG_ID_UPDATE,
API_REQUEST_SPOOL_WEIGHT_UPDATE,
API_REQUEST_SPOOL_LOCATION_UPDATE
API_REQUEST_SPOOL_LOCATION_UPDATE,
API_REQUEST_VENDOR_CREATE,
API_REQUEST_VENDOR_CHECK,
API_REQUEST_FILAMENT_CHECK,
API_REQUEST_FILAMENT_CREATE,
API_REQUEST_SPOOL_CREATE
} SpoolmanApiRequestType;
extern volatile spoolmanApiStateType spoolmanApiState;
@@ -40,5 +45,6 @@ uint8_t updateSpoolLocation(String spoolId, String location);
bool initSpoolman(); // Neue Funktion zum Initialisieren von Spoolman
bool updateSpoolBambuData(String payload); // Neue Funktion zum Aktualisieren der Bambu-Daten
bool updateSpoolOcto(int spoolId); // Neue Funktion zum Aktualisieren der Octo-Daten
bool createBrandFilament(JsonDocument& payload, String uidString);
#endif

View File

@@ -33,6 +33,7 @@ AMSData ams_data[MAX_AMS]; // Definition des Arrays;
bool removeBambuCredentials() {
if (BambuMqttTask) {
vTaskDelete(BambuMqttTask);
BambuMqttTask = NULL;
}
Preferences preferences;
@@ -63,6 +64,7 @@ bool removeBambuCredentials() {
bool saveBambuCredentials(const String& ip, const String& serialnr, const String& accesscode, bool autoSend, const String& autoSendTime) {
if (BambuMqttTask) {
vTaskDelete(BambuMqttTask);
BambuMqttTask = NULL;
}
bambuCredentials.ip = ip.c_str();
@@ -593,6 +595,7 @@ void reconnect() {
Serial.println("Disable Bambu MQTT Task after 5 retries");
//vTaskSuspend(BambuMqttTask);
vTaskDelete(BambuMqttTask);
BambuMqttTask = NULL;
break;
}
@@ -681,6 +684,7 @@ void bambu_restart() {
if (BambuMqttTask) {
vTaskDelete(BambuMqttTask);
BambuMqttTask = NULL;
delay(10);
}
setupMqtt();

View File

@@ -39,7 +39,6 @@ volatile nfcReaderStateType nfcReaderState = NFC_IDLE;
// 6 = reading
// ***** PN532
// ##### Funktionen für RFID #####
void payloadToJson(uint8_t *data) {
const char* startJson = strchr((char*)data, '{');
@@ -60,7 +59,7 @@ void payloadToJson(uint8_t *data) {
int min_temp = doc["min_temp"];
int max_temp = doc["max_temp"];
const char* brand = doc["brand"];
Serial.println();
Serial.println("-----------------");
Serial.println("JSON-Parsed Data:");
@@ -204,7 +203,7 @@ uint8_t ntag2xx_WriteNDEF(const char *payload) {
return 1;
}
bool decodeNdefAndReturnJson(const byte* encodedMessage) {
bool decodeNdefAndReturnJson(const byte* encodedMessage, String uidString) {
oledShowProgressBar(1, octoEnabled?5:4, "Reading", "Decoding data");
byte typeLength = encodedMessage[3];
@@ -218,7 +217,7 @@ bool decodeNdefAndReturnJson(const byte* encodedMessage) {
}
// JSON-Dokument verarbeiten
JsonDocument doc; // Passen Sie die Größe an den JSON-Inhalt an
JsonDocument doc;
DeserializationError error = deserializeJson(doc, nfcJsonData);
if (error)
{
@@ -235,7 +234,7 @@ bool decodeNdefAndReturnJson(const byte* encodedMessage) {
// Sende die aktualisierten AMS-Daten an alle WebSocket-Clients
Serial.println("JSON-Dokument erfolgreich verarbeitet");
Serial.println(doc.as<String>());
if (doc["sm_id"].is<String>() && doc["sm_id"] != "")
if (doc["sm_id"].is<String>() && doc["sm_id"] != "" && doc["sm_id"] != "0")
{
oledShowProgressBar(2, octoEnabled?5:4, "Spool Tag", "Weighing");
Serial.println("SPOOL-ID gefunden: " + doc["sm_id"].as<String>());
@@ -255,6 +254,16 @@ bool decodeNdefAndReturnJson(const byte* encodedMessage) {
oledShowProgressBar(1, 1, "Failure", "Scan spool first");
}
}
// Brand Filament not registered to Spoolman
else if ((!doc["sm_id"].is<String>() || (doc["sm_id"].is<String>() && (doc["sm_id"] == "0" || doc["sm_id"] == "")))
&& doc["brand"].is<String>() && doc["artnr"].is<String>())
{
doc["sm_id"] = "0"; // Ensure sm_id is set to 0
// If no sm_id is present but the brand is Brand Filament then
// create a new spool, maybe brand too, in Spoolman
Serial.println("New Brand Filament Tag found!");
createBrandFilament(doc, uidString);
}
else
{
Serial.println("Keine SPOOL-ID gefunden.");
@@ -375,6 +384,9 @@ void writeJsonToTag(void *parameter) {
nfcReadingTaskSuspendRequest = false;
pauseBambuMqttTask = false;
free(params->payload);
delete params;
vTaskDelete(NULL);
}
@@ -432,6 +444,16 @@ void scanRfidTask(void * parameter) {
oledShowProgressBar(0, octoEnabled?5:4, "Reading", "Detecting tag");
//vTaskDelay(500 / portTICK_PERIOD_MS);
// create Tag UID string
String uidString = "";
for (uint8_t i = 0; i < uidLength; i++) {
//TBD: Rework to remove all the string operations
uidString += String(uid[i], HEX);
if (i < uidLength - 1) {
uidString += ":"; // Optional: Trennzeichen hinzufügen
}
}
if (uidLength == 7)
{
@@ -462,7 +484,7 @@ void scanRfidTask(void * parameter) {
vTaskDelay(pdMS_TO_TICKS(1));
}
if (!decodeNdefAndReturnJson(data))
if (!decodeNdefAndReturnJson(data, uidString))
{
oledShowProgressBar(1, 1, "Failure", "Unknown tag");
nfcReaderState = NFC_READ_ERROR;

View File

@@ -48,9 +48,15 @@ void onWsEvent(AsyncWebSocket *server, AsyncWebSocketClient *client, AwsEventTyp
} else if (type == WS_EVT_PONG) {
Serial.printf("WebSocket Client #%u pong\n", client->id());
} else if (type == WS_EVT_DATA) {
String message = String((char*)data);
JsonDocument doc;
deserializeJson(doc, message);
DeserializationError error = deserializeJson(doc, (char*)data, len);
//String message = String((char*)data);
//deserializeJson(doc, message);
if (error) {
Serial.println("JSON deserialization failed: " + String(error.c_str()));
return;
}
if (doc["type"] == "heartbeat") {
// Sende Heartbeat-Antwort