mirror of
https://github.com/logicog/RTLPlayground.git
synced 2026-08-30 14:52:51 +08:00
add utilities for led and gpio dump and detection
This commit is contained in:
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# LED GPIO Utilities
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This directory contains utility talking to RTL837x switch IC via I2C bus. These scripts are designed to help with monitoring, debugging GPIO, and identifying LED configurations.
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## Hardware requirements
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To use these utilities, you need:
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- A hardware dongle that can communicate with I2C devices. One example is the [I2C-Pico-USB](https://github.com/dquadros/I2C-Pico-USB) which provides USB-to-I2C connectivity.
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- Connection between the hardware dongle and the RTL837x's I2C communication port.
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## Scripts
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### 1. `i2c_read_rtl_gpio.py`
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This script reads RTL GPIO register values via I2C and displays changes in GPIO states.
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**Features:**
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- Reads live RTL GPIO register values via I2C (default address 0x5C)
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- Monitors GPIO changes with delta detection
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- Allows specification of I2C bus, sleep interval, and ignored GPIO pins
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- Shows changes in real-time with GPIO index display
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**Usage:**
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```bash
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# Basic usage (defaults to I2C bus 1, 2s sleep interval)
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python3 i2c_read_rtl_gpio.py
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# Specify I2C bus
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python3 i2c_read_rtl_gpio.py --i2c-bus 0
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# Specify sleep interval in seconds
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python3 i2c_read_rtl_gpio.py --sleep-interval 5
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# Ignore specific GPIO pins
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python3 i2c_read_rtl_gpio.py --ignored-ios 28 31 34 44
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# Combine options
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python3 i2c_read_rtl_gpio.py --i2c-bus 2 --sleep-interval 1 --ignored-ios 28 31
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```
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**Output Format:**
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- Displays register address and data in hex format
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- Shows GPIO pins that have changed since last read
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- Example: `0044: 00 00 00 00 00 00 00 00`
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### 2. `i2c_dump_rtl_regs.py`
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This script dumps all register values from an RTL device via I2C.
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**Features:**
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- Dumps registers sequentially from address 0x0000 to 0xFFFF
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- Reads 16 bytes at a time for efficiency
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- Configurable I2C bus number
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- Provides complete register dump in hex format
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**Usage:**
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```bash
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# Basic usage (defaults to I2C bus 1)
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python3 i2c_dump_rtl_regs.py >reg_dump.txt
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# Specify I2C bus
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python3 i2c_dump_rtl_regs.py --bus 0 >reg_dump.txt
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# Or using short option
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python3 i2c_dump_rtl_regs.py -b 2 >reg_dump.txt
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```
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**Output Format:**
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- Displays address and 16 bytes of data in hex format
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- Example: `0000: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00`
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### 3. `dec_leds_from_dump.py`
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This script decodes LED configuration from a register dump file ( the output from `i2c_dump_rtl_regs.py`).
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**Features:**
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- Parses register dump files (reg_dump.txt format)
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- Decodes LED pad configurations and LED sets
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- Maps LED types to bit positions based on configuration
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- Outputs LED mux configuration and set mappings
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**Usage:**
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```bash
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# Must be run in same directory as reg_dump.txt
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python3 dec_leds_from_dump.py
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```
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**Output Format:**
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- LED pad configuration (hex values for each pad)
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- LED set configurations with descriptions of LED types
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- Port selection mappings
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**Requirements:**
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- Requires a `reg_dump.txt` file containing the register dump output
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## Requirements
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All scripts require:
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- Python 3
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- `smbus2` Python package
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Install with:
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```bash
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pip3 install smbus2
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```
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## Common Usage Patterns
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### Monitoring GPIO Changes
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```bash
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# Monitor GPIO changes on bus 1 with 1-second intervals
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python3 i2c_read_rtl_gpio.py --i2c-bus 1 --sleep-interval 1
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```
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### Register Analysis
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```bash
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# Dump all device registers
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python3 i2c_dump_rtl_regs.py --bus 2 > reg_dump.txt
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# Analyze the register dump to understand LED configuration
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python3 dec_leds_from_dump.py
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```
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## Configuration
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All scripts support command-line arguments for flexible configuration:
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- `--i2c-bus` or `-b`: Specify I2C bus (default: 1)
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- `--sleep-interval` or `-s`: Sleep between reads in seconds (default: 2)
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- `--ignored-ios` or `-i`: GPIO pins to ignore (default: [28, 31, 34, 44])
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Executable
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#!/usr/bin/env python3
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#!/usr/bin/env python3
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import os
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import sys
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regs = list(range(65536))
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glb_mux = 0x65E0
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led3_0_set1 = 0x6528
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led1_0_set0 = 0x6548
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led_port_sel = 0x654c
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def get_word(i):
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val = (regs[i+3] <<24) + (regs[i+2]<<16) + (regs[i+1]<<8) + regs[i]
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# print(f"READING {i:04x} : {val:08x}")
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return val
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with open ('reg_dump.txt', 'r') as file:
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for line in file:
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(addr, data) = line.split(":")
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data = [ int(x, 16) for x in data.strip().split(" ") ]
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addr = int(addr, 16)
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for x in range(len(data)):
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regs[addr + x] = data[x]
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ledstr = []
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ledfmt = []
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print("LED pad Configuration:")
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for i in range(28):
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j = i % 5
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if j == 0:
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idx = glb_mux + (i//5)*4
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val = get_word(idx)
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ledval = (val>>(6*j)) &0x3f
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ledstr.append(f"{ledval:02x}")
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ledfmt.append(f"{i:02x}")
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print(f"{' '.join(ledfmt)}")
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print(f"{' '.join(ledstr)}")
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print(f".led_mux = {{ 0x{', 0x'.join(ledstr)} }},")
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LED_TYPES = [
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" 2G5",
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" TWO_1G",
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" 1G",
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" 500M",
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" 100M",
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" 10M",
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" LINK",
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" LINK_FLASH",
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" ACT",
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" RX",
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" TX",
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" COL",
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" DUPLEX",
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" TRAINING",
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" MASTER",
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"",
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" 10G",
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" TWO_5G",
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" 5G",
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" TWO_2G5",
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]
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led_set = []
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led_set_str = []
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print("\nLED-set Configuration:")
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print("LED-ID 0 1 2 3")
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for i in range(4):
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idval = []
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idvalstr = []
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for id in range(4):
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val = 0xffff & ( get_word(led1_0_set0 - 8*i - ((id>>1)<<2)) >> (16*(id&1)) )
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valhi = ( 0xf & ( get_word(led3_0_set1 - 4*(i>>1)) >> (16*(i&1) + 4*id)) ) << 16
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val += valhi
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idval.append(val)
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valstr = "("
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for bit in range(20):
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if val & (1<<bit):
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valstr += LED_TYPES[bit]
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valstr += ")"
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idvalstr.append(valstr)
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led_set.append(idval)
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led_set_str.append(idvalstr)
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idstr = ' '.join([f"{d:05x}" for d in idval])
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print(f"SET {i}: {idstr}")
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# print(f"{idvalstr}")
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portsel = get_word(led_port_sel)
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for i in range(3,9):
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sel = (portsel>>(i<<1)) & 3
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print(f"Port {i}: SET {sel}: {', '.join(led_set_str[sel])}")
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Executable
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#!/usr/bin/env python3
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import time
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import argparse
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from smbus2 import SMBus, i2c_msg
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# Configuration
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DEFAULT_I2C_BUS = 1
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DEVICE_ADDR = 0x5C # Replace with your device address
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NUM_BYTES = 16 # Bytes to read
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# Parse command line arguments
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parser = argparse.ArgumentParser(description='Dump RTL registers via I2C')
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parser.add_argument('-b', '--bus', type=int, default=DEFAULT_I2C_BUS,
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help='I2C bus number (default: {})'.format(DEFAULT_I2C_BUS))
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args = parser.parse_args()
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I2C_BUS = args.bus
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# Open I2C bus
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with SMBus(I2C_BUS) as bus:
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for addr in range (0, 65536, NUM_BYTES):
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# Create write message (send register address)
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write = i2c_msg.write(DEVICE_ADDR, [addr>>8, addr & 0xff])
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# Create read message (read 2 bytes)
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read = i2c_msg.read(DEVICE_ADDR, NUM_BYTES)
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# Perform combined transaction
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bus.i2c_rdwr(write, read)
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new_data = list(read)
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# Convert read message to string
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datastr = " ".join([ f"{x:02x}" for x in new_data])
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print(f"{addr:04x}: {datastr}")
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#!/usr/bin/env python3
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import time
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import sys
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import argparse
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from smbus2 import SMBus, i2c_msg
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# Configuration
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I2C_BUS = 1
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DEVICE_ADDR = 0x5C # Replace with your device address
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NUM_BYTES = 8 # Bytes to read
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SLEEP_INTERVAL = 2
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# Handle command line arguments for ignored IOs
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IGNORED_IOS = [ 28, 31, 34, 44]
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# Setup argument parser
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parser = argparse.ArgumentParser(description='Read I2C data from RTL GPIO expander')
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parser.add_argument('--i2c-bus', '-b', type=int, default=1,
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help='I2C bus number (default: 1)')
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parser.add_argument('--sleep-interval', '-s', type=int, default=2,
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help='Sleep interval in seconds (default: 2)')
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parser.add_argument('--ignored-ios', '-i', nargs='*', type=int, default=[28, 31, 34, 44],
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help='List of GPIO pins to ignore (default: [28, 31, 34, 44])')
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args = parser.parse_args()
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I2C_BUS = args.i2c_bus
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SLEEP_INTERVAL = args.sleep_interval
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IGNORED_IOS = args.ignored_ios
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first_read = True
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last_data = [ 0 for x in range(NUM_BYTES) ]
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# Open I2C bus
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with SMBus(I2C_BUS) as bus:
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addr = 0x44
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while True:
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# Create write message (send register address)
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write = i2c_msg.write(DEVICE_ADDR, [addr>>8, addr & 0xff])
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# Create read message (read NUM_BYTES bytes)
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read = i2c_msg.read(DEVICE_ADDR, NUM_BYTES)
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# Perform combined transaction
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bus.i2c_rdwr(write, read)
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new_data = list(read)
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if first_read:
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delta_data = last_data
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first_read = False
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else:
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delta_data = [new_data[x] ^ last_data[x] for x in range(NUM_BYTES)]
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last_data = new_data
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# Convert read message to list
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datastr = " ".join([ f"{x:02x}" for x in new_data])
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deltastr = ""
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chg_list = []
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for x in range(NUM_BYTES):
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if delta_data[x] == 0:
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continue
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for y in range(8):
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if delta_data[x] & ( 1<<y):
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idx = x*8 + y
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if idx not in IGNORED_IOS:
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deltastr += f"\n{' ':8s}GPIO{idx}"
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# deltastr = " ".join([ f"{x:02x}" for x in delta_data])
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print(f"{addr:04x}: {datastr}{deltastr}")
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time.sleep(SLEEP_INTERVAL)
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