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| author | Abel Tim <abel.tim.t@gmail.com> | 2025-03-23 12:38:48 +0100 |
|---|---|---|
| committer | Abel Tim <abel.tim.t@gmail.com> | 2025-03-23 12:38:48 +0100 |
| commit | 764c8722596f5b3bd01bb26848f7289b0972d7b0 (patch) | |
| tree | 73b8090d371b0c0479f1b72803f3e0e0f0754dc1 /CODE/debugprewk/debug/comm | |
| parent | a52c13fdf50fbc19dfdce2d087b4739b96d46a0b (diff) | |
| download | robotica-764c8722596f5b3bd01bb26848f7289b0972d7b0.tar.gz robotica-764c8722596f5b3bd01bb26848f7289b0972d7b0.zip | |
updated repo structure
Diffstat (limited to 'CODE/debugprewk/debug/comm')
9 files changed, 0 insertions, 289 deletions
diff --git a/CODE/debugprewk/debug/comm/arduino_binairy_decoder/arduino_binairy_decoder.ino b/CODE/debugprewk/debug/comm/arduino_binairy_decoder/arduino_binairy_decoder.ino deleted file mode 100644 index eb257e5..0000000 --- a/CODE/debugprewk/debug/comm/arduino_binairy_decoder/arduino_binairy_decoder.ino +++ /dev/null @@ -1,28 +0,0 @@ -String inp = "01101000"; -int decimalValue = 0; - -void setup() { - Serial.begin(115200); - while (!Serial) { - ; // wait for serial port to connect. Needed for native USB - } - Serial.println(""); - - Serial.println(inp); - String binary = inp.substring(2); - Serial.println(binary); - for (int i = 0; i < binary.length(); i++) { - // Calculate the value of the current bit - int bitValue = binary.charAt(i) - '0'; - // Update the decimal value by shifting the bit to its correct position - decimalValue = (decimalValue << 1) | bitValue; - } - Serial.println(decimalValue); - Serial.println(""); -} - -void loop() { - // put your main code here, to run repeatedly: - delay(1000); - -} diff --git a/CODE/debugprewk/debug/comm/arduino_comm/arduino_comm.ino b/CODE/debugprewk/debug/comm/arduino_comm/arduino_comm.ino deleted file mode 100644 index 4a2b205..0000000 --- a/CODE/debugprewk/debug/comm/arduino_comm/arduino_comm.ino +++ /dev/null @@ -1,37 +0,0 @@ -String tlocd = ""; -String locd = ""; -bool readloc = false; -unsigned long datatime = 0; - -void setup() { - Serial1.begin(19200); - Serial.begin(19200); -} - -void loop() { - if(Serial1.available()){ - datatime = millis(); - - byte byteRead = Serial1.read(); - - if(byteRead == 's'){ - tlocd = ""; - readloc = true; - } - else if(byteRead == 'e'){ - readloc = false; - locd = tlocd; - } - else if(readloc == true){ - tlocd += (char)byteRead; - } - } - else{ - if(millis() - datatime > 5000){ - Serial.println("Err no data recieved for 5 sec"); - locd = "999"; - } - } - Serial.println(locd); - delay(134); -} diff --git a/CODE/debugprewk/debug/comm/seeed-teensy/readme.txt.txt b/CODE/debugprewk/debug/comm/seeed-teensy/readme.txt.txt deleted file mode 100644 index ef9f996..0000000 --- a/CODE/debugprewk/debug/comm/seeed-teensy/readme.txt.txt +++ /dev/null @@ -1,3 +0,0 @@ -serial communication between two Seeed Studio XIAO SAMD21 and one teensy. -Teensy Serial 2 and 3 on read -Seeed XIAO SAMD21 write a 8 values on Serial1 between 0-10000 (pulses from IR sensor) every 0,25 seconds. For example 100 pulses in 1 second = 00025 diff --git a/CODE/debugprewk/debug/comm/seeed-teensy/seeed_uart/seeed_uart.ino b/CODE/debugprewk/debug/comm/seeed-teensy/seeed_uart/seeed_uart.ino deleted file mode 100644 index 32750de..0000000 --- a/CODE/debugprewk/debug/comm/seeed-teensy/seeed_uart/seeed_uart.ino +++ /dev/null @@ -1,9 +0,0 @@ -void setup() { - Serial1.begin(9600) - -} - -void loop() { - Serial1.println("/D:00025:/E"); - delay(250); -} diff --git a/CODE/debugprewk/debug/comm/seeed-teensy/teensy_uard_read/teensy_uard_read.ino b/CODE/debugprewk/debug/comm/seeed-teensy/teensy_uard_read/teensy_uard_read.ino deleted file mode 100644 index 684c199..0000000 --- a/CODE/debugprewk/debug/comm/seeed-teensy/teensy_uard_read/teensy_uard_read.ino +++ /dev/null @@ -1,17 +0,0 @@ -void setup() { - // Initialize Serial1 with a baud rate of 19200 - Serial1.begin(9600); - Serial.begin(9600); // Initialize Serial for debugging -} - -void loop() { - // Check if there is any data available to read from Serial1 - if (Serial1.available()) { - // Read the most recent byte - byte byteRead = Serial1.read(); - // Echo the value that was read - Serial1.write(byteRead); - // Print the received byte for debugging - Serial.print((char)byteRead); - } -} diff --git a/CODE/debugprewk/debug/comm/spi/arduino_spi_master/arduino_spi_master.ino b/CODE/debugprewk/debug/comm/spi/arduino_spi_master/arduino_spi_master.ino deleted file mode 100644 index 248ef0f..0000000 --- a/CODE/debugprewk/debug/comm/spi/arduino_spi_master/arduino_spi_master.ino +++ /dev/null @@ -1,34 +0,0 @@ -#include <SPI.h> -#define SS_PIN 10 -#define BAUD_RATE 19200 -#define CHAR_BUF 128 - -void setup() { - pinMode(SS_PIN, OUTPUT); - Serial.begin(BAUD_RATE); - SPI.begin(); - SPI.setBitOrder(MSBFIRST); - SPI.setClockDivider(SPI_CLOCK_DIV16); - SPI.setDataMode(SPI_MODE0); - delay(1000); // Give the OpenMV Cam time to bootup. -} - -void loop() { - int32_t len = 0; - char buff[CHAR_BUF] = {0}; - digitalWrite(SS_PIN, LOW); - delay(1); // Give the OpenMV Cam some time to setup to send data. - - if(SPI.transfer(1) == 85) { // saw sync char? - SPI.transfer(&len, 4); // get length - if (len) { - SPI.transfer(&buff, min(len, CHAR_BUF)); - len -= min(len, CHAR_BUF); - } - while (len--) SPI.transfer(0); // eat any remaining bytes - } - - digitalWrite(SS_PIN, HIGH); - Serial.print(buff); - delay(1); // Don't loop to quickly. -}
\ No newline at end of file diff --git a/CODE/debugprewk/debug/comm/spi/arduino_spi_slave_1.py b/CODE/debugprewk/debug/comm/spi/arduino_spi_slave_1.py deleted file mode 100644 index e05c2f0..0000000 --- a/CODE/debugprewk/debug/comm/spi/arduino_spi_slave_1.py +++ /dev/null @@ -1,102 +0,0 @@ -# This work is licensed under the MIT license. -# Copyright (c) 2013-2023 OpenMV LLC. All rights reserved. -# https://github.com/openmv/openmv/blob/master/LICENSE -# -# SPI with the Arduino as the master device and the OpenMV Cam as the slave. -# -# Please wire up your OpenMV Cam to your Arduino like this: -# -# OpenMV Cam Master Out Slave In (P0) - Arduino Uno MOSI (11) -# OpenMV Cam Master In Slave Out (P1) - Arduino Uno MISO (12) -# OpenMV Cam Serial Clock (P2) - Arduino Uno SCK (13) -# OpenMV Cam Slave Select (P3) - Arduino Uno SS (10) -# OpenMV Cam Ground - Arduino Ground - -import pyb -import ustruct -import time - -text = "Hello World!\n" -data = ustruct.pack("<bi%ds" % len(text), 85, len(text), text) # 85 is a sync char. -# Use "ustruct" to build data packets to send. -# "<" puts the data in the struct in little endian order. -# "b" puts a signed char in the data stream. -# "i" puts a signed integer in the data stream. -# "%ds" puts a string in the data stream. E.g. "13s" for "Hello World!\n" (13 chars). -# See https://docs.python.org/3/library/struct.html - -# READ ME!!! -# -# Please understand that when your OpenMV Cam is not the SPI master it may miss responding to -# sending data as a SPI slave no matter if you call "spi.send()" in an interrupt callback or in the -# main loop below. Because of this you must absolutely design your communications protocol such -# that if the slave device (the OpenMV Cam) doesn't call "spi.send()" in time that garbage data -# read from the SPI peripheral by the master (the Arduino) is tossed. To accomplish this we use a -# sync character of 85 (binary 01010101) which the Arduino will look for as the first byte read. -# If it doesn't see this then it aborts the SPI transaction and will try again. Second, in order to -# clear out the SPI peripheral state we always send a multiple of four bytes and an extra four zero -# bytes to make sure that the SPI peripheral doesn't hold any stale data which could be 85. Note -# that the OpenMV Cam will miss the "spi.send()" window randomly because it has to service -# interrupts. Interrupts will happen a lot more while connected to your PC. - -# The hardware SPI bus for your OpenMV Cam is always SPI bus 2. -# polarity = 0 -> clock is idle low. -# phase = 0 -> sample data on rising clock edge, output data on falling clock edge. -spi = pyb.SPI(2, pyb.SPI.SLAVE, polarity=0, phase=0) - - -# NSS callback. -def nss_callback(line): - global spi, data - try: - spi.send(data, timeout=1000) - except OSError as err: - pass # Don't care about errors - so pass. - # Note that there are 3 possible errors. A timeout error, a general purpose error, or - # a busy error. The error codes are 116, 5, 16 respectively for "err.arg[0]". - - -# Configure NSS/CS in IRQ mode to send data when requested by the master. -pyb.ExtInt(pyb.Pin("P3"), pyb.ExtInt.IRQ_FALLING, pyb.Pin.PULL_UP, nss_callback) - -while True: - time.sleep_ms(1000) - -################################################################################################### -# Arduino Code -################################################################################################### -# -# #include <SPI.h> -# #define SS_PIN 10 -# #define BAUD_RATE 19200 -# #define CHAR_BUF 128 -# -# void setup() { -# pinMode(SS_PIN, OUTPUT); -# Serial.begin(BAUD_RATE); -# SPI.begin(); -# SPI.setBitOrder(MSBFIRST); -# SPI.setClockDivider(SPI_CLOCK_DIV16); -# SPI.setDataMode(SPI_MODE0); -# delay(1000); // Give the OpenMV Cam time to bootup. -# } -# -# void loop() { -# int32_t len = 0; -# char buff[CHAR_BUF] = {0}; -# digitalWrite(SS_PIN, LOW); -# delay(1); // Give the OpenMV Cam some time to setup to send data. -# -# if(SPI.transfer(1) == 85) { // saw sync char? -# SPI.transfer(&len, 4); // get length -# if (len) { -# SPI.transfer(&buff, min(len, CHAR_BUF)); -# len -= min(len, CHAR_BUF); -# } -# while (len--) SPI.transfer(0); // eat any remaining bytes -# } -# -# digitalWrite(SS_PIN, HIGH); -# Serial.print(buff); -# delay(1); // Don't loop to quickly. -# } diff --git a/CODE/debugprewk/debug/comm/uart/arduino_uart/arduino_uart.ino b/CODE/debugprewk/debug/comm/uart/arduino_uart/arduino_uart.ino deleted file mode 100644 index 6385695..0000000 --- a/CODE/debugprewk/debug/comm/uart/arduino_uart/arduino_uart.ino +++ /dev/null @@ -1,17 +0,0 @@ -void setup() { - // Initialize Serial1 with a baud rate of 19200 - Serial1.begin(19200); - Serial.begin(19200); // Initialize Serial for debugging -} - -void loop() { - // Check if there is any data available to read from Serial1 - if (Serial1.available()) { - // Read the most recent byte - byte byteRead = Serial1.read(); - // Echo the value that was read - Serial1.write(byteRead); - // Print the received byte for debugging - Serial.print((char)byteRead); - } -} diff --git a/CODE/debugprewk/debug/comm/uart/arduino_uart_1.py b/CODE/debugprewk/debug/comm/uart/arduino_uart_1.py deleted file mode 100644 index 3996cf7..0000000 --- a/CODE/debugprewk/debug/comm/uart/arduino_uart_1.py +++ /dev/null @@ -1,42 +0,0 @@ -# This work is licensed under the MIT license. -# Copyright (c) 2013-2023 OpenMV LLC. All rights reserved. -# https://github.com/openmv/openmv/blob/master/LICENSE -# -# Basic UART communications between OpenMV and Arduino Uno. - -# 1) Wire up your OpenMV Cam to your Arduino Uno like this: -# -# OpenMV Cam Ground Pin ----> Arduino Ground -# OpenMV Cam UART3_TX(P4) ----> Arduino Uno UART_RX(0) -# OpenMV Cam UART3_RX(P5) ----> Arduino Uno UART_TX(1) - -# 2) Uncomment and upload the following sketch to Arduino: -# -# void setup() { -# // put your setup code here, to run once: -# Serial.begin(19200); -# } -# -# void loop() { -# // put your main code here, to run repeatedly: -# if (Serial.available()) { -# // Read the most recent byte -# byte byteRead = Serial.read(); -# // ECHO the value that was read -# Serial.write(byteRead); -# } -# } - -# 3) Run the following script in OpenMV IDE: - -import time -from pyb import UART - -# UART 3, and baudrate. -uart = UART(3, 19200, timeout_char=200) - -while True: - uart.write("Hello World!\n") - if uart.any(): - print(uart.read()) - time.sleep_ms(1000) |
