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3 changes: 3 additions & 0 deletions .Jules/palette.md
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Expand Up @@ -5,3 +5,6 @@
## 2025-02-28 - Structured CLI Reports
**Learning:** Dense numerical data in CLI output is hard to parse. Using ASCII box-drawing characters and alignment to create a "dashboard" or "invoice" style summary significantly improves readability and perceived quality.
**Action:** When summarizing simulation or batch job results, always format the final report as a structured table or box rather than a list of print statements.
## 2024-05-20 - Dynamic Progress Bar for Quiet CLI Tasks
**Learning:** For long-running CLI processes that suppress verbose logging (e.g., `--quiet`), users lose system status visibility.
**Action:** Implemented a dynamic progress bar using `\r` and `flush=True`, conditional on `sys.stdout.isatty()`, to provide status feedback without polluting non-interactive logs.
2 changes: 1 addition & 1 deletion Dockerfile
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Expand Up @@ -5,7 +5,7 @@ FROM gcc:latest
WORKDIR /usr/src/app

# Copy your C++ file into the container
COPY NumberGuess.cpp .
COPY NumberGuess/NumberGuess.cpp .

# Compile the code
RUN g++ -o NumberGuess NumberGuess.cpp
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18 changes: 15 additions & 3 deletions bitcoin_trading_simulation.py
Original file line number Diff line number Diff line change
Expand Up @@ -84,7 +84,14 @@ def simulate_trading(signals, initial_cash=10000, quiet=False):

if not quiet:
print(f"\n{Colors.HEADER}{Colors.BOLD}------ Daily Trading Ledger ------{Colors.ENDC}")
for i, row in signals.iterrows():
for idx, (i, row) in enumerate(signals.iterrows()):
if quiet and sys.stdout.isatty():
progress = (idx + 1) / len(signals)
bar_length = 30
filled_len = int(bar_length * progress)
bar = 'β–ˆ' * filled_len + '-' * (bar_length - filled_len)
print(f'\r{Colors.BLUE}Simulation Progress: |{bar}| {progress:.1%}{Colors.ENDC}', end='', flush=True)

if i > 0:
portfolio.loc[i, 'cash'] = portfolio.loc[i-1, 'cash']
portfolio.loc[i, 'btc'] = portfolio.loc[i-1, 'btc']
Expand All @@ -94,14 +101,16 @@ def simulate_trading(signals, initial_cash=10000, quiet=False):
btc_to_buy = portfolio.loc[i, 'cash'] / row['price']
portfolio.loc[i, 'btc'] += btc_to_buy
portfolio.loc[i, 'cash'] -= btc_to_buy * row['price']
print(f"{Colors.GREEN}🟒 Day {i}: Buy {btc_to_buy:.4f} BTC at ${row['price']:.2f}{Colors.ENDC}")
if not quiet:
print(f"{Colors.GREEN}🟒 Day {i}: Buy {btc_to_buy:.4f} BTC at ${row['price']:.2f}{Colors.ENDC}")

# Sell signal
elif row['positions'] == -2.0:
if portfolio.loc[i, 'btc'] > 0:
cash_received = portfolio.loc[i, 'btc'] * row['price']
portfolio.loc[i, 'cash'] += cash_received
print(f"{Colors.FAIL}πŸ”΄ Day {i}: Sell {portfolio.loc[i, 'btc']:.4f} BTC at ${row['price']:.2f}{Colors.ENDC}")
if not quiet:
print(f"{Colors.FAIL}πŸ”΄ Day {i}: Sell {portfolio.loc[i, 'btc']:.4f} BTC at ${row['price']:.2f}{Colors.ENDC}")
portfolio.loc[i, 'btc'] = 0

portfolio.loc[i, 'total_value'] = portfolio.loc[i, 'cash'] + portfolio.loc[i, 'btc'] * row['price']
Expand All @@ -110,6 +119,9 @@ def simulate_trading(signals, initial_cash=10000, quiet=False):
print(f"Day {i}: Portfolio Value: ${portfolio.loc[i, 'total_value']:.2f}, "
f"Cash: ${portfolio.loc[i, 'cash']:.2f}, BTC: {portfolio.loc[i, 'btc']:.4f}")

if quiet and sys.stdout.isatty():
print()

return portfolio


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1 change: 1 addition & 0 deletions main.tf
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@@ -0,0 +1 @@
terraform {}
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