Skip to main content

A Python-based stock broker module

Project description

PKBrokers

MADE-IN-INDIA GitHub release (latest by date) Downloads latest download Docker Pulls

Platforms Windows Linux(x64) Linux(arm64) Mac OS(x64) Mac OS(arm64) Docker Status
Package / Docs Documentation OpenSSF Best Practices PyPI is wheel github license
Tests/Code-Quality CodeFactor Coverage Status codecov After Market

Table of Contents


What is PKBrokers?

PKBrokers is a high-performance Python library for connecting to stock brokers (primarily Zerodha's Kite Connect) to fetch real-time market data, instruments, and ticks. Key features include:

  • ๐Ÿš€ High-Performance Candle Store - O(1) access to OHLCV candles across 10 timeframes
  • ๐Ÿ“Š Real-Time Tick Processing - WebSocket-based tick aggregation
  • ๐Ÿ’พ Multi-Source Data Management - SQLite, Turso, pickle files, and Kite API
  • ๐Ÿค– Telegram Bot Integration - Distribute tick data via Telegram
  • ๐Ÿ” Automated Authentication - TOTP-based Kite login
  • ๐Ÿ“ฆ 24/7 Data Availability - GitHub-based data persistence

This library is part of the PKScreener ecosystem.


Installation

From PyPI

pip install pkbrokers

From Source

git clone https://github.com/pkjmesra/pkbrokers.git
cd pkbrokers
pip install -r requirements.txt
pip install -e .

Requirements

  • Python 3.9+
  • Zerodha Kite Connect account (for real-time data)
  • See requirements.txt for dependencies

Quick Start

High-Performance Data Provider

from pkbrokers.kite import get_candle_store, HighPerformanceDataProvider

# Get singleton candle store
store = get_candle_store()

# Or use high-level data provider
provider = HighPerformanceDataProvider()

# Get 5-minute candles for any stock
df = provider.get_stock_data("RELIANCE", interval="5m", count=50)

# Get current day's OHLCV
ohlcv = provider.get_current_ohlcv("TCS")
print(f"Open: {ohlcv['open']}, High: {ohlcv['high']}, Low: {ohlcv['low']}, Close: {ohlcv['close']}")

Data Manager (Multi-Source)

from pkbrokers.kite.datamanager import InstrumentDataManager

# Initialize manager
manager = InstrumentDataManager()

# Execute data synchronization
success = manager.execute()

if success:
    # Access stock data
    reliance = manager.pickle_data["RELIANCE"]
    df = pd.DataFrame(
        data=reliance['data'],
        columns=reliance['columns'],
        index=reliance['index']
    )
    print(f"Shape: {df.shape}")

Kite Authentication

from pkbrokers.kite.examples.externals import kite_auth

# Authenticate and get access token
# Requires KUSER, KPWD, KTOTP environment variables
kite_auth()

# Token is now available as KTOKEN
from PKDevTools.classes.Environment import PKEnvironment
token = PKEnvironment().KTOKEN

Architecture Overview

โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”
โ”‚                            PKBrokers Architecture                            โ”‚
โ”œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”ค
โ”‚                                                                              โ”‚
โ”‚  โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”         โ”‚
โ”‚  โ”‚                     Application Layer                          โ”‚         โ”‚
โ”‚  โ”‚            PKScreener | Custom Applications                    โ”‚         โ”‚
โ”‚  โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”ฌโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜         โ”‚
โ”‚                                โ”‚                                             โ”‚
โ”‚  โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ–ผโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”         โ”‚
โ”‚  โ”‚                      Data Provider API                         โ”‚         โ”‚
โ”‚  โ”‚   HighPerformanceDataProvider | InstrumentDataManager          โ”‚         โ”‚
โ”‚  โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”ฌโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜         โ”‚
โ”‚                                โ”‚                                             โ”‚
โ”‚       โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”ผโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”                   โ”‚
โ”‚       โ”‚                        โ”‚                        โ”‚                   โ”‚
โ”‚  โ”Œโ”€โ”€โ”€โ”€โ–ผโ”€โ”€โ”€โ”€โ”           โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ–ผโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”        โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ–ผโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”          โ”‚
โ”‚  โ”‚InMemory โ”‚           โ”‚  Local SQLite โ”‚        โ”‚ Remote Data   โ”‚          โ”‚
โ”‚  โ”‚Candle   โ”‚           โ”‚  Database     โ”‚        โ”‚ (GitHub/Turso)โ”‚          โ”‚
โ”‚  โ”‚Store    โ”‚           โ”‚               โ”‚        โ”‚               โ”‚          โ”‚
โ”‚  โ””โ”€โ”€โ”€โ”€โ”ฌโ”€โ”€โ”€โ”€โ”˜           โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜        โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜          โ”‚
โ”‚       โ”‚                                                                      โ”‚
โ”‚  โ”Œโ”€โ”€โ”€โ”€โ–ผโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”         โ”‚
โ”‚  โ”‚                    Tick Processing Layer                       โ”‚         โ”‚
โ”‚  โ”‚   KiteTokenWatcher | CandleAggregator | TickProcessor          โ”‚         โ”‚
โ”‚  โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”ฌโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜         โ”‚
โ”‚                               โ”‚                                              โ”‚
โ”‚  โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ–ผโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”         โ”‚
โ”‚  โ”‚                     WebSocket Layer                             โ”‚         โ”‚
โ”‚  โ”‚          ZerodhaWebSocketClient | KiteTicker                    โ”‚         โ”‚
โ”‚  โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”ฌโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜         โ”‚
โ”‚                               โ”‚                                              โ”‚
โ”‚  โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ–ผโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”         โ”‚
โ”‚  โ”‚                  Kite Connect API / Authentication              โ”‚         โ”‚
โ”‚  โ”‚            Authenticator | KiteInstruments                      โ”‚         โ”‚
โ”‚  โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜         โ”‚
โ”‚                                                                              โ”‚
โ”‚  โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”         โ”‚
โ”‚  โ”‚                      Bot Layer (Telegram)                       โ”‚         โ”‚
โ”‚  โ”‚         PKTickBot | Orchestrator | Consumer                     โ”‚         โ”‚
โ”‚  โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜         โ”‚
โ”‚                                                                              โ”‚
โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜

Core Modules

1. In-Memory Candle Store

High-performance, in-memory OHLCV storage with O(1) access to all timeframes.

from pkbrokers.kite.inMemoryCandleStore import InMemoryCandleStore, get_candle_store

# Get singleton instance
store = get_candle_store()

# Process incoming tick
store.process_tick({
    'instrument_token': 256265,
    'last_price': 21500.50,
    'volume': 1000000,
    'timestamp': datetime.now()
})

# Get completed candles
candles = store.get_candles(
    instrument_token=256265,
    interval='5m',
    count=50
)

# Get current forming candle
current = store.get_current_candle(
    instrument_token=256265,
    interval='5m'
)

# Export to ticks.json
store.save_ticks_json("/path/to/ticks.json")

# Get statistics
stats = store.get_stats()
print(f"Instruments: {stats['instrument_count']}")
print(f"Ticks processed: {stats['ticks_processed']}")

Supported Timeframes

Interval Description Max Candles Stored
1m 1 minute 375 (full day)
2m 2 minutes 188
3m 3 minutes 125
4m 4 minutes 94
5m 5 minutes 75
10m 10 minutes 38
15m 15 minutes 25
30m 30 minutes 13
60m 60 minutes 7
day Daily 1

Features

  • O(1) Access: Instant lookup via hash-based indexing
  • No Rate Limits: Unlike Yahoo Finance
  • Auto-Persistence: Saves to disk every 5 minutes
  • Memory Efficient: ~100MB for 2000 instruments
  • Thread-Safe: Lock-protected operations

2. Data Manager

Comprehensive data synchronization from multiple sources.

from pkbrokers.kite.datamanager import InstrumentDataManager

manager = InstrumentDataManager()

# Set specific stocks (optional)
manager.list_stock_codes = ["RELIANCE", "TCS", "INFY"]

# Execute synchronization
# Priority: SQLite โ†’ InMemoryCandleStore โ†’ Kite API โ†’ Pickle files
success = manager.execute()

# Access data
if success:
    for symbol, data in manager.pickle_data.items():
        df = pd.DataFrame(
            data=data['data'],
            columns=data['columns'],
            index=data['index']
        )
        print(f"{symbol}: {len(df)} rows")

Data Source Priority

  1. During Market Hours:

    • Local SQLite database
    • InMemoryCandleStore (real-time ticks)
    • Kite API (authenticated)
    • GitHub ticks.json
  2. After Market Hours:

    • Local pickle files
    • Remote GitHub pickle files

3. Kite Instruments

Manage instrument data from Kite Connect API.

from pkbrokers.kite.instruments import KiteInstruments, Instrument

# Initialize with credentials
kite = KiteInstruments(
    api_key="your_api_key",
    access_token="your_access_token"
)

# Sync instruments from Kite API
kite.sync_instruments(force_fetch=True)

# Get instrument count
count = kite.get_instrument_count()
print(f"Total instruments: {count}")

# Get NSE stocks only
equities = kite.get_equities(only_nse_stocks=True)

# Get instrument tokens for subscription
tokens = kite.get_instrument_tokens(equities)

# Fetch instrument by token
instrument = kite.get_instrument(256265)  # NIFTY 50
print(f"Symbol: {instrument.tradingsymbol}")

Instrument Model

@dataclass
class Instrument:
    instrument_token: int      # Unique identifier
    exchange_token: str        # Exchange-specific token
    tradingsymbol: str         # Trading symbol (e.g., 'RELIANCE')
    name: Optional[str]        # Full name
    last_price: Optional[float]
    expiry: Optional[str]      # For derivatives
    strike: Optional[float]    # For options
    tick_size: float
    lot_size: int
    instrument_type: str       # EQ, FUT, OPT, INDEX
    segment: str               # NSE, BSE
    exchange: str
    last_updated: str
    nse_stock: bool

4. Tick Watcher

WebSocket-based real-time tick processing.

from pkbrokers.kite.kiteTokenWatcher import KiteTokenWatcher

# Initialize watcher
watcher = KiteTokenWatcher()

# Start watching (blocking)
try:
    watcher.watch(test_mode=False)
except KeyboardInterrupt:
    watcher.stop()

Command-Line Usage

# Start tick watcher
pkkite --ticks

# Test mode (3 minutes)
pkkite --ticks --test

# Authenticate first
pkkite --auth

# Fetch historical data
pkkite --history=5minute

5. Local Candle Database

SQLite-based candle storage for persistence.

from pkbrokers.kite.localCandleDatabase import LocalCandleDatabase

# Initialize database
db = LocalCandleDatabase()

# Save daily candle
db.save_daily_candle(
    symbol="RELIANCE",
    date=date.today(),
    open_price=2500.0,
    high_price=2550.0,
    low_price=2480.0,
    close_price=2530.0,
    volume=1000000
)

# Load candles
candles = db.load_daily_candles("RELIANCE", days=30)

# Save intraday candles
db.save_intraday_candle(
    symbol="RELIANCE",
    timestamp=datetime.now(),
    interval="5m",
    open_price=2500.0,
    high_price=2510.0,
    low_price=2495.0,
    close_price=2505.0,
    volume=50000
)

6. Telegram Bots

PKTickBot

Telegram bot for distributing tick data.

from pkbrokers.bot.tickbot import PKTickBot

bot = PKTickBot(
    bot_token="your_bot_token",
    ticks_file_path="/path/to/ticks.json",
    chat_id="-1001234567890"
)

# Start bot (blocking)
bot.run()

Available Commands:

Command Description
/ticks Get zipped ticks.json file
/db Get local SQLite database
/status Check bot and data status
/top Get top 20 ticking symbols
/token Get current KTOKEN
/refresh_token Generate new KTOKEN
/restart Refresh token and restart watcher
/test_ticks Start 3-minute tick test
/help Show help message

Orchestrator

Multi-process orchestrator for bot and data management.

from pkbrokers.bot.orchestrator import Orchestrator

orchestrator = Orchestrator()

# Check if market is open
if orchestrator.should_run_kite_process():
    orchestrator.start_kite_process()

7. Authentication

Automated Kite Connect authentication using TOTP.

from pkbrokers.kite.authenticator import KiteAuthenticator

auth = KiteAuthenticator(
    user_id="your_user_id",
    password="your_password",
    totp_secret="your_totp_secret",
    api_key="your_api_key"
)

# Get access token
access_token = auth.authenticate()

# Token is automatically saved to environment

Environment Variables Required:

  • KUSER: Kite user ID
  • KPWD: Kite password
  • KTOTP: TOTP secret key
  • KAPI: Kite API key

API Reference

Main Exports

from pkbrokers.kite import (
    # Candle Store
    InMemoryCandleStore,
    get_candle_store,
    
    # Data Providers
    HighPerformanceDataProvider,
    InstrumentDataManager,
    
    # Instruments
    KiteInstruments,
    Instrument,
    
    # Tick Processing
    KiteTokenWatcher,
    CandleAggregator,
    
    # Database
    LocalCandleDatabase,
    
    # Authentication
    KiteAuthenticator,
)

from pkbrokers.bot import (
    PKTickBot,
    Orchestrator,
)

Module Structure

pkbrokers/
โ”œโ”€โ”€ __init__.py
โ”œโ”€โ”€ bot/
โ”‚   โ”œโ”€โ”€ __init__.py
โ”‚   โ”œโ”€โ”€ consumer.py          # Data consumer
โ”‚   โ”œโ”€โ”€ orchestrator.py      # Multi-process orchestrator
โ”‚   โ””โ”€โ”€ tickbot.py           # Telegram tick bot
โ”œโ”€โ”€ kite/
โ”‚   โ”œโ”€โ”€ __init__.py
โ”‚   โ”œโ”€โ”€ authenticator.py     # Kite authentication
โ”‚   โ”œโ”€โ”€ candleAggregator.py  # Tick โ†’ Candle aggregation
โ”‚   โ”œโ”€โ”€ datamanager.py       # Multi-source data manager
โ”‚   โ”œโ”€โ”€ databasewriter.py    # Database writer
โ”‚   โ”œโ”€โ”€ inMemoryCandleStore.py  # In-memory candle store
โ”‚   โ”œโ”€โ”€ instrumentHistory.py # Historical data
โ”‚   โ”œโ”€โ”€ instruments.py       # Instrument management
โ”‚   โ”œโ”€โ”€ kiteTokenWatcher.py  # WebSocket tick watcher
โ”‚   โ”œโ”€โ”€ localCandleDatabase.py  # SQLite candle storage
โ”‚   โ”œโ”€โ”€ tickProcessor.py     # Tick processing
โ”‚   โ”œโ”€โ”€ ticks.py             # Tick utilities
โ”‚   โ”œโ”€โ”€ trader.py            # Trading operations
โ”‚   โ”œโ”€โ”€ zerodhaWebSocketClient.py  # WebSocket client
โ”‚   โ””โ”€โ”€ examples/
โ”‚       โ”œโ”€โ”€ externals.py     # External helpers
โ”‚       โ””โ”€โ”€ pkkite.py        # CLI entry point
โ””โ”€โ”€ scripts/
    โ””โ”€โ”€ publish_candle_data.py  # Data publishing

Environment Variables

Variable Required Description
KUSER Yes* Kite user ID
KPWD Yes* Kite password
KTOTP Yes* TOTP secret for 2FA
KAPI Yes* Kite API key
KTOKEN Auto Access token (auto-generated)
TOKEN Yes** Telegram bot token
CHAT_ID Yes** Default Telegram chat ID
TURSO_DB_URL No Turso database URL
TURSO_DB_AUTH_TOKEN No Turso auth token

*Required for Kite Connect features
**Required for Telegram bot features


Contributing

Development Setup

git clone https://github.com/pkjmesra/pkbrokers.git
cd pkbrokers
python -m venv venv
source venv/bin/activate
pip install -r requirements.txt
pip install -e .

Running Tests

pytest test/
pytest --cov=pkbrokers test/

Code Style

ruff check pkbrokers/
ruff format pkbrokers/

Related Projects


License

MIT License - see LICENSE file.


Star History Chart

Project details


Release history Release notifications | RSS feed

Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distribution

pkbrokers-0.1.20251226.42.tar.gz (142.5 kB view details)

Uploaded Source

Built Distributions

If you're not sure about the file name format, learn more about wheel file names.

pkbrokers-0.1.20251226.42-cp312-cp312-win_amd64.whl (158.1 kB view details)

Uploaded CPython 3.12Windows x86-64

pkbrokers-0.1.20251226.42-cp310-cp310-macosx_13_0_arm64.whl (156.8 kB view details)

Uploaded CPython 3.10macOS 13.0+ ARM64

pkbrokers-0.1.20251226.42-cp310-cp310-macosx_10_9_x86_64.whl (156.8 kB view details)

Uploaded CPython 3.10macOS 10.9+ x86-64

File details

Details for the file pkbrokers-0.1.20251226.42.tar.gz.

File metadata

  • Download URL: pkbrokers-0.1.20251226.42.tar.gz
  • Upload date:
  • Size: 142.5 kB
  • Tags: Source
  • Uploaded using Trusted Publishing? No
  • Uploaded via: twine/6.2.0 CPython/3.12.12

File hashes

Hashes for pkbrokers-0.1.20251226.42.tar.gz
Algorithm Hash digest
SHA256 899309475865ad5d8040a009f5e2eb52de1f2210337f052e789f366c6abf7b4f
MD5 bce8b9266fa70312bd346cb16726a514
BLAKE2b-256 be995d1b3f9ac5170d1346f10bd2200e5fbd39aba96a74198c8714946703480a

See more details on using hashes here.

File details

Details for the file pkbrokers-0.1.20251226.42-cp312-cp312-win_amd64.whl.

File metadata

File hashes

Hashes for pkbrokers-0.1.20251226.42-cp312-cp312-win_amd64.whl
Algorithm Hash digest
SHA256 c935257beada8255afc51a80c36615bdca22f5e3145a1720e6cd0447e317f9cf
MD5 12a481c86e2c00994c0657c92d3ce549
BLAKE2b-256 d4246b8841905b37d0190b7212561c962248f8f39f6bb8748dc0d00fe7756797

See more details on using hashes here.

File details

Details for the file pkbrokers-0.1.20251226.42-cp312-cp312-manylinux2014_x86_64.whl.

File metadata

File hashes

Hashes for pkbrokers-0.1.20251226.42-cp312-cp312-manylinux2014_x86_64.whl
Algorithm Hash digest
SHA256 21516beacbbc7c470c785c8556d9f16c4d3119307e377b1f649a49b93e911dac
MD5 a8a14e794aca879b9a65c9e1c01fdb7d
BLAKE2b-256 bde8567c07a9ebf2727e40fb91cb71d19c5098cc0e04b6c2624908c0ba409e11

See more details on using hashes here.

File details

Details for the file pkbrokers-0.1.20251226.42-cp310-cp310-macosx_13_0_arm64.whl.

File metadata

File hashes

Hashes for pkbrokers-0.1.20251226.42-cp310-cp310-macosx_13_0_arm64.whl
Algorithm Hash digest
SHA256 7ca72d31697cfe05bfe3801072078819eb080ceda59efcea0529f8f860dc8e04
MD5 af4d13f97f768e7b13b25db7076f5153
BLAKE2b-256 86460d26047079ec8478a5dab7800c6ce12bb2bd4bbf84f83e7a39842a17978c

See more details on using hashes here.

File details

Details for the file pkbrokers-0.1.20251226.42-cp310-cp310-macosx_10_9_x86_64.whl.

File metadata

File hashes

Hashes for pkbrokers-0.1.20251226.42-cp310-cp310-macosx_10_9_x86_64.whl
Algorithm Hash digest
SHA256 872191213cfd45ad15c899eb1bd12797e195529f0ee19d1a74d7d0e526b52706
MD5 d82591782e4b770f5c3ff6f25cd8ce03
BLAKE2b-256 a6a9cad2ee03f8d264a633d97da8ac0a17c75131ead03403f51f0ab180d31de8

See more details on using hashes here.

Supported by

AWS Cloud computing and Security Sponsor Datadog Monitoring Depot Continuous Integration Fastly CDN Google Download Analytics Pingdom Monitoring Sentry Error logging StatusPage Status page