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8785c81248
| Author | SHA1 | Date | |
|---|---|---|---|
| 8785c81248 |
74
.gitignore
vendored
74
.gitignore
vendored
@@ -1,74 +0,0 @@
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|||||||
### Linux ###
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||||||
*~
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||||||
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# temporary files which can be created if a process still has a handle open of a deleted file
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||||||
.fuse_hidden*
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||||||
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||||||
# KDE directory preferences
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||||||
.directory
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# Linux trash folder which might appear on any partition or disk
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.Trash-*
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||||||
# .nfs files are created when an open file is removed but is still being accessed
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||||||
.nfs*
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||||||
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||||||
### macOS ###
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||||||
# General
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||||||
.DS_Store
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.AppleDouble
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||||||
.LSOverride
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||||||
# Icon must end with two \r
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Icon
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||||||
# Thumbnails
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._*
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# Files that might appear in the root of a volume
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.DocumentRevisions-V100
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.fseventsd
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.Spotlight-V100
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.TemporaryItems
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.Trashes
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.VolumeIcon.icns
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.com.apple.timemachine.donotpresent
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# Directories potentially created on remote AFP share
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.AppleDB
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.AppleDesktop
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Network Trash Folder
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Temporary Items
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.apdisk
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### macOS Patch ###
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# iCloud generated files
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*.icloud
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### Windows ###
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# Windows thumbnail cache files
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Thumbs.db
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Thumbs.db:encryptable
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ehthumbs.db
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ehthumbs_vista.db
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# Dump file
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*.stackdump
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# Folder config file
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[Dd]esktop.ini
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# Recycle Bin used on file shares
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$RECYCLE.BIN/
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# Windows Installer files
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*.cab
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*.msi
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||||||
*.msix
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*.msm
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*.msp
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# Windows shortcuts
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*.lnk
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13
README.md
13
README.md
@@ -8,16 +8,3 @@
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- Python 3
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- Python 3
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- Python 3 Requets
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- Python 3 Requets
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- Python 3 RPi.GPIO
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- Python 3 RPi.GPIO
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## Install instructions
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- Downloand script into /usr/local/bin/
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- Download rrcs-trigger file and place into /usr/local/bin/
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- Download rrcs-trigger.service and place it into /etc/systemd/system/
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- Run the follwoing commands to enable the service on boot. ```sudo systemctl enable rrcs-trigger.service``` and ```sudo systemctl start rrcs-trigger.service```
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- Run the following command to see how its booting up. ```watch systemctl status rrcs-triggers.service```
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- Modify the script to have your RRCS Server IP address and port.
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## Logging
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- All logs are printed to journalctl, this includes when the button is pressed.
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@@ -1,39 +0,0 @@
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const char Data_PressVirtKey1OnBench_P[] PROGMEM = "<?xml version=\"1.0\"?>\
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<methodCall>\
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<methodName>PressKeyEx</methodName>\
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<params>\
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<param><value><string>C0000000001</string></value></param>\
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<param><value><i4>64</i4></value></param>\
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<param><value><i4>46</i4></value></param>\
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<param><value><boolean>0</boolean></value></param>\
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<param><value><int>2</int></value></param>\
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<param><value><int>0</int></value></param>\
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<param><value><int>1</int></value></param>\
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<param><value><boolean>1</boolean></value></param>\
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<param><value><boolean>1</boolean></value></param>\
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<param><value><int>1</int></value></param>\
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</params>\
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</methodCall>\
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";
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const char Data_ReleaseVirtKey1OnBench_P[] PROGMEM = "<?xml version=\"1.0\"?>\
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<methodCall>\
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<methodName>PressKeyEx</methodName>\
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<params>\
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<param><value><string>C0000000002</string></value></param>\
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<param><value><i4>64</i4></value></param>\
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<param><value><i4>46</i4></value></param>\
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<param><value><boolean>0</boolean></value></param>\
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<param><value><int>2</int></value></param>\
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<param><value><int>0</int></value></param>\
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<param><value><int>1</int></value></param>\
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<param><value><boolean>1</boolean></value></param>\
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<param><value><boolean>0</boolean></value></param>\
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<param><value><int>1</int></value></param>\
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</params>\
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</methodCall>\
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";
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__FlashStringHelper* Data_PressVirtKey1OnBench = (__FlashStringHelper*)Data_PressVirtKey1OnBench_P;
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__FlashStringHelper* Data_ReleaseVirtKey1OnBench = (__FlashStringHelper*)Data_ReleaseVirtKey1OnBench_P;
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@@ -1,210 +0,0 @@
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/*
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DHCP-based IP printer
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This sketch uses the DHCP extensions to the Ethernet library
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to get an IP address via DHCP and print the address obtained.
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using an Arduino WIZnet Ethernet shield.
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Circuit:
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Ethernet shield attached to pins 10, 11, 12, 13
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created 12 April 2011
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modified 9 Apr 2012
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by Tom Igoe
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modified 02 Sept 2015
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by Arturo Guadalupi
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*/
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#include <SPI.h>
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#include <Ethernet.h>
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#include "RRCS.h"
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// Enter a MAC address for your controller below.
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// Newer Ethernet shields have a MAC address printed on a sticker on the shield
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byte mac[] = {
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0xDE, 0xAD, 0xBE, 0xEF, 0xFE, 0xED
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};
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constexpr int PIN_BTN_MUTE = A2;
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constexpr int PIN_LED_RED = A0;
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//const uint8_t RRCSServerIP[4] = {10,75,120,147}; // TRUNKNAV VM
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//const uint8_t RRCSServerIP[4] = {192,168,192,247}; // Ben's laptop testing
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const uint8_t RRCSServerIP[4] = {192,168,192,241}; // Ben's windows VM
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const uint16_t RRCSServerPort = 8193;
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const uint16_t BlinkMs = 1000;
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EthernetClient client;
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void ToggleVirtualKey() {
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if (client.connect(RRCSServerIP, RRCSServerPort)) {
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Serial.println("Connected.");
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client.println("POST / HTTP/1.1");
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client.print("Host: ");
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client.print(RRCSServerIP[0]); client.print(".");
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client.print(RRCSServerIP[1]); client.print(".");
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client.print(RRCSServerIP[2]); client.print(".");
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client.println(RRCSServerIP[3]);
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client.println("Content-Type: text/xml"); // Or other content type like application/json
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client.println("User-Agent: Ben's Silly Box");
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client.println("Connection: close");
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client.print("Content-Length: ");
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client.println(strlen(Data_PressVirtKey1OnBench_P));
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client.println();
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client.println(Data_PressVirtKey1OnBench);
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client.println(); // End of request
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while(client.available()) {
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Serial.write((char)client.read());
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}
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delay(50);
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client.stop();
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Serial.println();
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client.connect(RRCSServerIP, RRCSServerPort);
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//delay(20);
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client.println("POST / HTTP/1.1");
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client.print("Host: ");
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client.print(RRCSServerIP[0]); client.print(".");
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client.print(RRCSServerIP[1]); client.print(".");
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client.print(RRCSServerIP[2]); client.print(".");
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client.println(RRCSServerIP[3]);
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client.println("Content-Type: text/xml"); // Or other content type like application/json
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client.println("User-Agent: Ben's Silly Box");
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client.println("Connection: close");
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client.print("Content-Length: ");
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client.println(strlen(Data_ReleaseVirtKey1OnBench_P));
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client.println();
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client.println(Data_ReleaseVirtKey1OnBench);
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client.println(); // End of request
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while(client.available()) {
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Serial.write((char)client.read());
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}
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client.stop();
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Serial.println();
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Serial.println("Sent.");
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} else {
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Serial.println("Couldn't reach RRCS Server!");
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}
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}
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bool MuteState = false;
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bool EthNoLink = true;
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void setup() {
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pinMode (PIN_BTN_MUTE, INPUT_PULLUP);
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// Blink once on startup
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pinMode(PIN_LED_RED, OUTPUT);
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digitalWrite(PIN_LED_RED, HIGH);
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delay(100);
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digitalWrite(PIN_LED_RED, LOW);
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|
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// You can use Ethernet.init(pin) to configure the CS pin
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|
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Ethernet.init(10); // Most Arduino shields
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|
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//Ethernet.init(5); // MKR ETH Shield
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|
||||||
//Ethernet.init(0); // Teensy 2.0
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|
||||||
//Ethernet.init(20); // Teensy++ 2.0
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|
||||||
//Ethernet.init(15); // ESP8266 with Adafruit FeatherWing Ethernet
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|
||||||
//Ethernet.init(33); // ESP32 with Adafruit FeatherWing Ethernet
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|
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// Open serial communications and wait for port to open:
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|
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Serial.begin(115200);
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|
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while (!Serial) {
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; // wait for serial port to connect. Needed for native USB port only
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}
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// start the Ethernet connection:
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Serial.println("Initialize Ethernet with DHCP:");
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if (Ethernet.begin(mac) == 0) {
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Serial.println("Failed to configure Ethernet using DHCP");
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|
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if (Ethernet.hardwareStatus() == EthernetNoHardware) {
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|
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Serial.println("Ethernet shield was not found. Sorry, can't run without hardware. :(");
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} else if (Ethernet.linkStatus() == LinkOFF) {
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|
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Serial.println("Ethernet cable is not connected.");
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|
||||||
}
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|
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Serial.println("Failed Eth setup. Retrying later.");
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|
||||||
} else {
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|
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EthNoLink = false;
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}
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// print your local IP address:
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Serial.print("My IP address: ");
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|
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Serial.println(Ethernet.localIP());
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|
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}
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|
||||||
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|
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void loop() {
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|
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digitalWrite(PIN_LED_RED, MuteState && ((millis() / BlinkMs) % 2));
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|
||||||
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|
||||||
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|
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if (digitalRead(PIN_BTN_MUTE) == LOW) {
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|
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// Mute action.
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|
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MuteState = !MuteState;
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|
||||||
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|
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Serial.println(MuteState ? "Muted." : "Unmuted.");
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|
||||||
|
|
||||||
// Lazy debounce is best debounce
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|
||||||
delay(50);
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|
||||||
while (digitalRead(PIN_BTN_MUTE) == LOW) delay(100);
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|
||||||
|
|
||||||
ToggleVirtualKey();
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|
||||||
}
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|
||||||
|
|
||||||
if (EthNoLink) {
|
|
||||||
Serial.println("Retrying Eth Setup...");
|
|
||||||
if (Ethernet.begin(mac) == 0) {
|
|
||||||
Serial.println("Failed to configure Ethernet using DHCP");
|
|
||||||
if (Ethernet.hardwareStatus() == EthernetNoHardware) {
|
|
||||||
Serial.println("Ethernet shield was not found. Sorry, can't run without hardware. :(");
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|
||||||
} else if (Ethernet.linkStatus() == LinkOFF) {
|
|
||||||
Serial.println("Ethernet cable is not connected.");
|
|
||||||
}
|
|
||||||
Serial.println("Failed Eth Setup.");
|
|
||||||
} else {
|
|
||||||
EthNoLink = false;
|
|
||||||
}
|
|
||||||
}
|
|
||||||
|
|
||||||
|
|
||||||
switch (Ethernet.maintain()) {
|
|
||||||
case 1:
|
|
||||||
//renewed fail
|
|
||||||
Serial.println("Error: renewed fail");
|
|
||||||
break;
|
|
||||||
|
|
||||||
case 2:
|
|
||||||
//renewed success
|
|
||||||
Serial.println("Renewed success");
|
|
||||||
//print your local IP address:
|
|
||||||
Serial.print("My IP address: ");
|
|
||||||
Serial.println(Ethernet.localIP());
|
|
||||||
digitalWrite(PIN_LED_RED, HIGH);
|
|
||||||
break;
|
|
||||||
|
|
||||||
case 3:
|
|
||||||
//rebind fail
|
|
||||||
Serial.println("Error: rebind fail");
|
|
||||||
break;
|
|
||||||
|
|
||||||
case 4:
|
|
||||||
//rebind success
|
|
||||||
Serial.println("Rebind success");
|
|
||||||
//print your local IP address:
|
|
||||||
Serial.print("My IP address: ");
|
|
||||||
Serial.println(Ethernet.localIP());
|
|
||||||
break;
|
|
||||||
|
|
||||||
default:
|
|
||||||
//nothing happened
|
|
||||||
break;
|
|
||||||
}
|
|
||||||
}
|
|
||||||
16
ras_pi_RRCS_BusyLight.py
Executable file → Normal file
16
ras_pi_RRCS_BusyLight.py
Executable file → Normal file
@@ -4,15 +4,13 @@ os.environ['RPI_LGPIO_REVISION'] = "800012"
|
|||||||
import time
|
import time
|
||||||
import requests
|
import requests
|
||||||
import RPi.GPIO as GPIO
|
import RPi.GPIO as GPIO
|
||||||
import socket
|
|
||||||
|
|
||||||
|
|
||||||
RED = "\033[91m"
|
RED = "\033[91m"
|
||||||
GREEN = "\033[92m"
|
GREEN = "\033[92m"
|
||||||
RESET = "\033[0m"
|
RESET = "\033[0m"
|
||||||
|
|
||||||
|
|
||||||
PressVirtKey1OnBench = '''<?xml version="1.0"?>
|
BenBusyRRCSdataRising = '''<?xml version="1.0"?>
|
||||||
<methodCall>
|
<methodCall>
|
||||||
<methodName>PressKeyEx</methodName>
|
<methodName>PressKeyEx</methodName>
|
||||||
<params>
|
<params>
|
||||||
@@ -30,7 +28,7 @@ PressVirtKey1OnBench = '''<?xml version="1.0"?>
|
|||||||
</methodCall>
|
</methodCall>
|
||||||
'''
|
'''
|
||||||
|
|
||||||
ReleasePressVirtKey1OnBench = '''<?xml version="1.0"?>
|
BenBusyRRCSdataFalling = '''<?xml version="1.0"?>
|
||||||
<methodCall>
|
<methodCall>
|
||||||
<methodName>PressKeyEx</methodName>
|
<methodName>PressKeyEx</methodName>
|
||||||
<params>
|
<params>
|
||||||
@@ -51,19 +49,15 @@ ReleasePressVirtKey1OnBench = '''<?xml version="1.0"?>
|
|||||||
def button_callback(channel):
|
def button_callback(channel):
|
||||||
if GPIO.input(channel):
|
if GPIO.input(channel):
|
||||||
print(f"{RED}Button pressed{RESET}")
|
print(f"{RED}Button pressed{RESET}")
|
||||||
r = requests.post('http://10.75.120.229:8193',headers={'content-type': 'text/xml'},data=PressVirtKey1OnBench)
|
r = requests.post('http://10.75.120.229:8193',headers={'content-type': 'text/xml'},data=BenBusyRRCSdataRising)
|
||||||
time.sleep(0.05)
|
time.sleep(0.05)
|
||||||
print(f"{GREEN}Button released{RESET}")
|
print(f"{GREEN}Button released{RESET}")
|
||||||
r = requests.post('http://10.75.120.229:8193',headers={'content-type': 'text/xml'},data=ReleasePressVirtKey1OnBench)
|
r = requests.post('http://10.75.120.229:8193',headers={'content-type': 'text/xml'},data=BenBusyRRCSdataFalling)
|
||||||
GPIO.setwarnings(False)
|
GPIO.setwarnings(False)
|
||||||
GPIO.setmode(GPIO.BOARD)
|
GPIO.setmode(GPIO.BOARD)
|
||||||
GPIO.setup(12, GPIO.IN, pull_up_down=GPIO.PUD_DOWN)
|
GPIO.setup(12, GPIO.IN, pull_up_down=GPIO.PUD_DOWN)
|
||||||
|
|
||||||
GPIO.add_event_detect(12, GPIO.RISING, callback=button_callback, bouncetime=200)
|
GPIO.add_event_detect(12, GPIO.RISING, callback=button_callback, bouncetime=200)
|
||||||
|
|
||||||
print("RRCS-Trigger ready for input")
|
input("Press enter to quit\n\n")
|
||||||
[sockA, sockB] = socket.socketpair()
|
|
||||||
junk = sockA.recv(1) # will never return since sockA will never receive any data
|
|
||||||
|
|
||||||
print("This should never get printed")
|
|
||||||
GPIO.cleanup()
|
GPIO.cleanup()
|
||||||
@@ -1,2 +0,0 @@
|
|||||||
#!/bin/bash
|
|
||||||
exec /usr/bin/python3 /usr/local/bin/ras_pi_RRCS_BusyLight.py
|
|
||||||
@@ -1,18 +0,0 @@
|
|||||||
[Unit]
|
|
||||||
Description=Runs the ras_pi_RRCS_BusyLight.py script at boot
|
|
||||||
After=network.target
|
|
||||||
#StartLimitIntervalSec=5
|
|
||||||
|
|
||||||
[Service]
|
|
||||||
Type=simple
|
|
||||||
Restart=always
|
|
||||||
RestartSec=5
|
|
||||||
User=root
|
|
||||||
ExecStart=/usr/local/bin/rrcs-trigger /usr/local/bin/ras_pi_RRCS_BusyLight.py
|
|
||||||
WorkingDirectory=/tmp
|
|
||||||
StandardOutput=journal
|
|
||||||
StandardError=journal
|
|
||||||
Environment=PYTHONUNBUFFERED=1
|
|
||||||
|
|
||||||
[Install]
|
|
||||||
WantedBy=multi-user.target
|
|
||||||
Reference in New Issue
Block a user