ralph-claude-code/ralph_loop.sh
frankbria 8fc53755bf fix(circuit-breaker): eliminate JSON field false positives in error detection
Fixes circuit breaker opening prematurely due to naive error pattern matching
that treated JSON field names like "is_error": false as actual errors.

Changes:
- ralph_loop.sh: Implement two-stage error detection with JSON filtering
- lib/response_analyzer.sh: Apply same filtering to error counting
- tests/test_error_detection.sh: Add comprehensive test suite (12 scenarios)

Error detection now:
- Filters out JSON field patterns before searching for errors
- Uses context-specific patterns (^Error:, ]: error, Exception, Fatal)
- Avoids type annotations (error: Error) and code identifiers
- Includes debug logging when VERBOSE_PROGRESS=true

Test coverage validates:
✓ JSON fields don't trigger false positives
✓ Real error messages are correctly detected
✓ Mixed content handled properly
✓ Code diffs and documentation excluded

This prevents the consecutive_same_error counter from incrementing on
false positives, eliminating unnecessary circuit breaker trips.
2025-12-31 13:25:09 -07:00

699 lines
25 KiB
Bash
Executable file

#!/bin/bash
# Claude Code Ralph Loop with Rate Limiting and Documentation
# Adaptation of the Ralph technique for Claude Code with usage management
set -e # Exit on any error
# Source library components
SCRIPT_DIR="$(dirname "${BASH_SOURCE[0]}")"
source "$SCRIPT_DIR/lib/response_analyzer.sh"
source "$SCRIPT_DIR/lib/circuit_breaker.sh"
# Configuration
PROMPT_FILE="PROMPT.md"
LOG_DIR="logs"
DOCS_DIR="docs/generated"
STATUS_FILE="status.json"
PROGRESS_FILE="progress.json"
CLAUDE_CODE_CMD="claude"
MAX_CALLS_PER_HOUR=100 # Adjust based on your plan
VERBOSE_PROGRESS=false # Default: no verbose progress updates
CLAUDE_TIMEOUT_MINUTES=15 # Default: 15 minutes timeout for Claude Code execution
SLEEP_DURATION=3600 # 1 hour in seconds
CALL_COUNT_FILE=".call_count"
TIMESTAMP_FILE=".last_reset"
USE_TMUX=false
# Exit detection configuration
EXIT_SIGNALS_FILE=".exit_signals"
MAX_CONSECUTIVE_TEST_LOOPS=3
MAX_CONSECUTIVE_DONE_SIGNALS=2
TEST_PERCENTAGE_THRESHOLD=30 # If more than 30% of recent loops are test-only, flag it
# Colors for terminal output
RED='\033[0;31m'
GREEN='\033[0;32m'
YELLOW='\033[1;33m'
BLUE='\033[0;34m'
PURPLE='\033[0;35m'
NC='\033[0m' # No Color
# Initialize directories
mkdir -p "$LOG_DIR" "$DOCS_DIR"
# Check if tmux is available
check_tmux_available() {
if ! command -v tmux &> /dev/null; then
log_status "ERROR" "tmux is not installed. Please install tmux or run without --monitor flag."
echo "Install tmux:"
echo " Ubuntu/Debian: sudo apt-get install tmux"
echo " macOS: brew install tmux"
echo " CentOS/RHEL: sudo yum install tmux"
exit 1
fi
}
# Setup tmux session with monitor
setup_tmux_session() {
local session_name="ralph-$(date +%s)"
local ralph_home="${RALPH_HOME:-$HOME/.ralph}"
log_status "INFO" "Setting up tmux session: $session_name"
# Create new tmux session detached
tmux new-session -d -s "$session_name" -c "$(pwd)"
# Split window vertically to create monitor pane on the right
tmux split-window -h -t "$session_name" -c "$(pwd)"
# Start monitor in the right pane
if command -v ralph-monitor &> /dev/null; then
tmux send-keys -t "$session_name:0.1" "ralph-monitor" Enter
else
tmux send-keys -t "$session_name:0.1" "'$ralph_home/ralph_monitor.sh'" Enter
fi
# Start ralph loop in the left pane (exclude tmux flag to avoid recursion)
local ralph_cmd
if command -v ralph &> /dev/null; then
ralph_cmd="ralph"
else
ralph_cmd="'$ralph_home/ralph_loop.sh'"
fi
if [[ "$MAX_CALLS_PER_HOUR" != "100" ]]; then
ralph_cmd="$ralph_cmd --calls $MAX_CALLS_PER_HOUR"
fi
if [[ "$PROMPT_FILE" != "PROMPT.md" ]]; then
ralph_cmd="$ralph_cmd --prompt '$PROMPT_FILE'"
fi
tmux send-keys -t "$session_name:0.0" "$ralph_cmd" Enter
# Focus on left pane (main ralph loop)
tmux select-pane -t "$session_name:0.0"
# Set window title
tmux rename-window -t "$session_name:0" "Ralph: Loop | Monitor"
log_status "SUCCESS" "Tmux session created. Attaching to session..."
log_status "INFO" "Use Ctrl+B then D to detach from session"
log_status "INFO" "Use 'tmux attach -t $session_name' to reattach"
# Attach to session (this will block until session ends)
tmux attach-session -t "$session_name"
exit 0
}
# Initialize call tracking
init_call_tracking() {
log_status "INFO" "DEBUG: Entered init_call_tracking..."
local current_hour=$(date +%Y%m%d%H)
local last_reset_hour=""
if [[ -f "$TIMESTAMP_FILE" ]]; then
last_reset_hour=$(cat "$TIMESTAMP_FILE")
fi
# Reset counter if it's a new hour
if [[ "$current_hour" != "$last_reset_hour" ]]; then
echo "0" > "$CALL_COUNT_FILE"
echo "$current_hour" > "$TIMESTAMP_FILE"
log_status "INFO" "Call counter reset for new hour: $current_hour"
fi
# Initialize exit signals tracking if it doesn't exist
if [[ ! -f "$EXIT_SIGNALS_FILE" ]]; then
echo '{"test_only_loops": [], "done_signals": [], "completion_indicators": []}' > "$EXIT_SIGNALS_FILE"
fi
# Initialize circuit breaker
init_circuit_breaker
log_status "INFO" "DEBUG: Completed init_call_tracking successfully"
}
# Log function with timestamps and colors
log_status() {
local level=$1
local message=$2
local timestamp=$(date '+%Y-%m-%d %H:%M:%S')
local color=""
case $level in
"INFO") color=$BLUE ;;
"WARN") color=$YELLOW ;;
"ERROR") color=$RED ;;
"SUCCESS") color=$GREEN ;;
"LOOP") color=$PURPLE ;;
esac
echo -e "${color}[$timestamp] [$level] $message${NC}"
echo "[$timestamp] [$level] $message" >> "$LOG_DIR/ralph.log"
}
# Update status JSON for external monitoring
update_status() {
local loop_count=$1
local calls_made=$2
local last_action=$3
local status=$4
local exit_reason=${5:-""}
cat > "$STATUS_FILE" << STATUSEOF
{
"timestamp": "$(date -Iseconds)",
"loop_count": $loop_count,
"calls_made_this_hour": $calls_made,
"max_calls_per_hour": $MAX_CALLS_PER_HOUR,
"last_action": "$last_action",
"status": "$status",
"exit_reason": "$exit_reason",
"next_reset": "$(date -d '+1 hour' -Iseconds | cut -d'T' -f2 | cut -d'+' -f1)"
}
STATUSEOF
}
# Check if we can make another call
can_make_call() {
local calls_made=0
if [[ -f "$CALL_COUNT_FILE" ]]; then
calls_made=$(cat "$CALL_COUNT_FILE")
fi
if [[ $calls_made -ge $MAX_CALLS_PER_HOUR ]]; then
return 1 # Cannot make call
else
return 0 # Can make call
fi
}
# Increment call counter
increment_call_counter() {
local calls_made=0
if [[ -f "$CALL_COUNT_FILE" ]]; then
calls_made=$(cat "$CALL_COUNT_FILE")
fi
((calls_made++))
echo "$calls_made" > "$CALL_COUNT_FILE"
echo "$calls_made"
}
# Wait for rate limit reset with countdown
wait_for_reset() {
local calls_made=$(cat "$CALL_COUNT_FILE" 2>/dev/null || echo "0")
log_status "WARN" "Rate limit reached ($calls_made/$MAX_CALLS_PER_HOUR). Waiting for reset..."
# Calculate time until next hour
local current_minute=$(date +%M)
local current_second=$(date +%S)
local wait_time=$(((60 - current_minute - 1) * 60 + (60 - current_second)))
log_status "INFO" "Sleeping for $wait_time seconds until next hour..."
# Countdown display
while [[ $wait_time -gt 0 ]]; do
local hours=$((wait_time / 3600))
local minutes=$(((wait_time % 3600) / 60))
local seconds=$((wait_time % 60))
printf "\r${YELLOW}Time until reset: %02d:%02d:%02d${NC}" $hours $minutes $seconds
sleep 1
((wait_time--))
done
printf "\n"
# Reset counter
echo "0" > "$CALL_COUNT_FILE"
echo "$(date +%Y%m%d%H)" > "$TIMESTAMP_FILE"
log_status "SUCCESS" "Rate limit reset! Ready for new calls."
}
# Check if we should gracefully exit
should_exit_gracefully() {
log_status "INFO" "DEBUG: Checking exit conditions..." >&2
if [[ ! -f "$EXIT_SIGNALS_FILE" ]]; then
log_status "INFO" "DEBUG: No exit signals file found, continuing..." >&2
return 1 # Don't exit, file doesn't exist
fi
local signals=$(cat "$EXIT_SIGNALS_FILE")
log_status "INFO" "DEBUG: Exit signals content: $signals" >&2
# Count recent signals (last 5 loops) - with error handling
local recent_test_loops
local recent_done_signals
local recent_completion_indicators
recent_test_loops=$(echo "$signals" | jq '.test_only_loops | length' 2>/dev/null || echo "0")
recent_done_signals=$(echo "$signals" | jq '.done_signals | length' 2>/dev/null || echo "0")
recent_completion_indicators=$(echo "$signals" | jq '.completion_indicators | length' 2>/dev/null || echo "0")
log_status "INFO" "DEBUG: Exit counts - test_loops:$recent_test_loops, done_signals:$recent_done_signals, completion:$recent_completion_indicators" >&2
# Check for exit conditions
# 1. Too many consecutive test-only loops
if [[ $recent_test_loops -ge $MAX_CONSECUTIVE_TEST_LOOPS ]]; then
log_status "WARN" "Exit condition: Too many test-focused loops ($recent_test_loops >= $MAX_CONSECUTIVE_TEST_LOOPS)"
echo "test_saturation"
return 0
fi
# 2. Multiple "done" signals
if [[ $recent_done_signals -ge $MAX_CONSECUTIVE_DONE_SIGNALS ]]; then
log_status "WARN" "Exit condition: Multiple completion signals ($recent_done_signals >= $MAX_CONSECUTIVE_DONE_SIGNALS)"
echo "completion_signals"
return 0
fi
# 3. Strong completion indicators
if [[ $recent_completion_indicators -ge 2 ]]; then
log_status "WARN" "Exit condition: Strong completion indicators ($recent_completion_indicators)"
echo "project_complete"
return 0
fi
# 4. Check fix_plan.md for completion
if [[ -f "@fix_plan.md" ]]; then
local total_items=$(grep -c "^- \[" "@fix_plan.md" 2>/dev/null)
local completed_items=$(grep -c "^- \[x\]" "@fix_plan.md" 2>/dev/null)
# Handle case where grep returns no matches (exit code 1)
[[ -z "$total_items" ]] && total_items=0
[[ -z "$completed_items" ]] && completed_items=0
log_status "INFO" "DEBUG: @fix_plan.md check - total_items:$total_items, completed_items:$completed_items" >&2
if [[ $total_items -gt 0 ]] && [[ $completed_items -eq $total_items ]]; then
log_status "WARN" "Exit condition: All fix_plan.md items completed ($completed_items/$total_items)" >&2
echo "plan_complete"
return 0
fi
else
log_status "INFO" "DEBUG: @fix_plan.md file not found" >&2
fi
log_status "INFO" "DEBUG: No exit conditions met, continuing loop" >&2
echo "" # Return empty string instead of using return code
}
# Main execution function
execute_claude_code() {
local timestamp=$(date '+%Y-%m-%d_%H-%M-%S')
local output_file="$LOG_DIR/claude_output_${timestamp}.log"
local loop_count=$1
local calls_made=$(cat "$CALL_COUNT_FILE" 2>/dev/null || echo "0")
calls_made=$((calls_made + 1))
log_status "LOOP" "Executing Claude Code (Call $calls_made/$MAX_CALLS_PER_HOUR)"
local timeout_seconds=$((CLAUDE_TIMEOUT_MINUTES * 60))
log_status "INFO" "⏳ Starting Claude Code execution... (timeout: ${CLAUDE_TIMEOUT_MINUTES}m)"
# Execute Claude Code with the prompt, streaming output
if timeout ${timeout_seconds}s $CLAUDE_CODE_CMD < "$PROMPT_FILE" > "$output_file" 2>&1 &
then
local claude_pid=$!
local progress_counter=0
# Show progress while Claude Code is running
while kill -0 $claude_pid 2>/dev/null; do
progress_counter=$((progress_counter + 1))
case $((progress_counter % 4)) in
1) progress_indicator="⠋" ;;
2) progress_indicator="⠙" ;;
3) progress_indicator="⠹" ;;
0) progress_indicator="⠸" ;;
esac
# Get last line from output if available
local last_line=""
if [[ -f "$output_file" && -s "$output_file" ]]; then
last_line=$(tail -1 "$output_file" 2>/dev/null | head -c 80)
fi
# Update progress file for monitor
cat > "$PROGRESS_FILE" << EOF
{
"status": "executing",
"indicator": "$progress_indicator",
"elapsed_seconds": $((progress_counter * 10)),
"last_output": "$last_line",
"timestamp": "$(date '+%Y-%m-%d %H:%M:%S')"
}
EOF
# Only log if verbose mode is enabled
if [[ "$VERBOSE_PROGRESS" == "true" ]]; then
if [[ -n "$last_line" ]]; then
log_status "INFO" "$progress_indicator Claude Code: $last_line... (${progress_counter}0s)"
else
log_status "INFO" "$progress_indicator Claude Code working... (${progress_counter}0s elapsed)"
fi
fi
sleep 10
done
# Wait for the process to finish and get exit code
wait $claude_pid
local exit_code=$?
if [ $exit_code -eq 0 ]; then
# Only increment counter on successful execution
echo "$calls_made" > "$CALL_COUNT_FILE"
# Clear progress file
echo '{"status": "completed", "timestamp": "'$(date '+%Y-%m-%d %H:%M:%S')'"}' > "$PROGRESS_FILE"
log_status "SUCCESS" "✅ Claude Code execution completed successfully"
# Analyze the response
log_status "INFO" "🔍 Analyzing Claude Code response..."
analyze_response "$output_file" "$loop_count"
local analysis_exit_code=$?
# Update exit signals based on analysis
update_exit_signals
# Log analysis summary
log_analysis_summary
# Get file change count for circuit breaker
local files_changed=$(git diff --name-only 2>/dev/null | wc -l || echo 0)
local has_errors="false"
# Two-stage error detection to avoid JSON field false positives
# Stage 1: Filter out JSON field patterns like "is_error": false
# Stage 2: Look for actual error messages in specific contexts
# Avoid type annotations like "error: Error" by requiring lowercase after ": error"
if grep -v '"[^"]*error[^"]*":' "$output_file" 2>/dev/null | \
grep -qE '(^Error:|^ERROR:|^error:|\]: error|Link: error|Error occurred|failed with error|[Ee]xception|Fatal|FATAL)'; then
has_errors="true"
# Debug logging: show what triggered error detection
if [[ "$VERBOSE_PROGRESS" == "true" ]]; then
log_status "DEBUG" "Error patterns found:"
grep -v '"[^"]*error[^"]*":' "$output_file" 2>/dev/null | \
grep -nE '(^Error:|^ERROR:|^error:|\]: error|Link: error|Error occurred|failed with error|[Ee]xception|Fatal|FATAL)' | \
head -3 | while IFS= read -r line; do
log_status "DEBUG" " $line"
done
fi
log_status "WARN" "Errors detected in output, check: $output_file"
fi
local output_length=$(wc -c < "$output_file" 2>/dev/null || echo 0)
# Record result in circuit breaker
record_loop_result "$loop_count" "$files_changed" "$has_errors" "$output_length"
local circuit_result=$?
if [[ $circuit_result -ne 0 ]]; then
log_status "WARN" "Circuit breaker opened - halting execution"
return 3 # Special code for circuit breaker trip
fi
return 0
else
# Clear progress file on failure
echo '{"status": "failed", "timestamp": "'$(date '+%Y-%m-%d %H:%M:%S')'"}' > "$PROGRESS_FILE"
# Check if the failure is due to API 5-hour limit
if grep -qi "5.*hour.*limit\|limit.*reached.*try.*back\|usage.*limit.*reached" "$output_file"; then
log_status "ERROR" "🚫 Claude API 5-hour usage limit reached"
return 2 # Special return code for API limit
else
log_status "ERROR" "❌ Claude Code execution failed, check: $output_file"
return 1
fi
fi
else
log_status "ERROR" "❌ Failed to start Claude Code process"
return 1
fi
}
# Cleanup function
cleanup() {
log_status "INFO" "Ralph loop interrupted. Cleaning up..."
update_status "$loop_count" "$(cat "$CALL_COUNT_FILE" 2>/dev/null || echo "0")" "interrupted" "stopped"
exit 0
}
# Set up signal handlers
trap cleanup SIGINT SIGTERM
# Global variable for loop count (needed by cleanup function)
loop_count=0
# Main loop
main() {
log_status "SUCCESS" "🚀 Ralph loop starting with Claude Code"
log_status "INFO" "Max calls per hour: $MAX_CALLS_PER_HOUR"
log_status "INFO" "Logs: $LOG_DIR/ | Docs: $DOCS_DIR/ | Status: $STATUS_FILE"
# Check if this is a Ralph project directory
if [[ ! -f "$PROMPT_FILE" ]]; then
log_status "ERROR" "Prompt file '$PROMPT_FILE' not found!"
echo ""
# Check if this looks like a partial Ralph project
if [[ -f "@fix_plan.md" ]] || [[ -d "specs" ]] || [[ -f "@AGENT.md" ]]; then
echo "This appears to be a Ralph project but is missing PROMPT.md."
echo "You may need to create or restore the PROMPT.md file."
else
echo "This directory is not a Ralph project."
fi
echo ""
echo "To fix this:"
echo " 1. Create a new project: ralph-setup my-project"
echo " 2. Import existing requirements: ralph-import requirements.md"
echo " 3. Navigate to an existing Ralph project directory"
echo " 4. Or create PROMPT.md manually in this directory"
echo ""
echo "Ralph projects should contain: PROMPT.md, @fix_plan.md, specs/, src/, etc."
exit 1
fi
log_status "INFO" "Starting main loop..."
log_status "INFO" "DEBUG: About to enter while loop, loop_count=$loop_count"
while true; do
loop_count=$((loop_count + 1))
log_status "INFO" "DEBUG: Successfully incremented loop_count to $loop_count"
log_status "INFO" "Loop #$loop_count - calling init_call_tracking..."
init_call_tracking
log_status "LOOP" "=== Starting Loop #$loop_count ==="
# Check circuit breaker before attempting execution
if should_halt_execution; then
update_status "$loop_count" "$(cat "$CALL_COUNT_FILE")" "circuit_breaker_open" "halted" "stagnation_detected"
log_status "ERROR" "🛑 Circuit breaker has opened - execution halted"
break
fi
# Check rate limits
if ! can_make_call; then
wait_for_reset
continue
fi
# Check for graceful exit conditions
local exit_reason=$(should_exit_gracefully)
if [[ "$exit_reason" != "" ]]; then
log_status "SUCCESS" "🏁 Graceful exit triggered: $exit_reason"
update_status "$loop_count" "$(cat "$CALL_COUNT_FILE")" "graceful_exit" "completed" "$exit_reason"
log_status "SUCCESS" "🎉 Ralph has completed the project! Final stats:"
log_status "INFO" " - Total loops: $loop_count"
log_status "INFO" " - API calls used: $(cat "$CALL_COUNT_FILE")"
log_status "INFO" " - Exit reason: $exit_reason"
break
fi
# Update status
local calls_made=$(cat "$CALL_COUNT_FILE" 2>/dev/null || echo "0")
update_status "$loop_count" "$calls_made" "executing" "running"
# Execute Claude Code
execute_claude_code "$loop_count"
local exec_result=$?
if [ $exec_result -eq 0 ]; then
update_status "$loop_count" "$(cat "$CALL_COUNT_FILE")" "completed" "success"
# Brief pause between successful executions
sleep 5
elif [ $exec_result -eq 3 ]; then
# Circuit breaker opened
update_status "$loop_count" "$(cat "$CALL_COUNT_FILE")" "circuit_breaker_open" "halted" "stagnation_detected"
log_status "ERROR" "🛑 Circuit breaker has opened - halting loop"
log_status "INFO" "Run 'ralph --reset-circuit' to reset the circuit breaker after addressing issues"
break
elif [ $exec_result -eq 2 ]; then
# API 5-hour limit reached - handle specially
update_status "$loop_count" "$(cat "$CALL_COUNT_FILE")" "api_limit" "paused"
log_status "WARN" "🛑 Claude API 5-hour limit reached!"
# Ask user whether to wait or exit
echo -e "\n${YELLOW}The Claude API 5-hour usage limit has been reached.${NC}"
echo -e "${YELLOW}You can either:${NC}"
echo -e " ${GREEN}1)${NC} Wait for the limit to reset (usually within an hour)"
echo -e " ${GREEN}2)${NC} Exit the loop and try again later"
echo -e "\n${BLUE}Choose an option (1 or 2):${NC} "
# Read user input with timeout
read -t 30 -n 1 user_choice
echo # New line after input
if [[ "$user_choice" == "2" ]] || [[ -z "$user_choice" ]]; then
log_status "INFO" "User chose to exit (or timed out). Exiting loop..."
update_status "$loop_count" "$(cat "$CALL_COUNT_FILE")" "api_limit_exit" "stopped" "api_5hour_limit"
break
else
log_status "INFO" "User chose to wait. Waiting for API limit reset..."
# Wait for longer period when API limit is hit
local wait_minutes=60
log_status "INFO" "Waiting $wait_minutes minutes before retrying..."
# Countdown display
local wait_seconds=$((wait_minutes * 60))
while [[ $wait_seconds -gt 0 ]]; do
local minutes=$((wait_seconds / 60))
local seconds=$((wait_seconds % 60))
printf "\r${YELLOW}Time until retry: %02d:%02d${NC}" $minutes $seconds
sleep 1
((wait_seconds--))
done
printf "\n"
fi
else
update_status "$loop_count" "$(cat "$CALL_COUNT_FILE")" "failed" "error"
log_status "WARN" "Execution failed, waiting 30 seconds before retry..."
sleep 30
fi
log_status "LOOP" "=== Completed Loop #$loop_count ==="
done
}
# Help function
show_help() {
cat << HELPEOF
Ralph Loop for Claude Code
Usage: $0 [OPTIONS]
IMPORTANT: This command must be run from a Ralph project directory.
Use 'ralph-setup project-name' to create a new project first.
Options:
-h, --help Show this help message
-c, --calls NUM Set max calls per hour (default: $MAX_CALLS_PER_HOUR)
-p, --prompt FILE Set prompt file (default: $PROMPT_FILE)
-s, --status Show current status and exit
-m, --monitor Start with tmux session and live monitor (requires tmux)
-v, --verbose Show detailed progress updates during execution
-t, --timeout MIN Set Claude Code execution timeout in minutes (default: $CLAUDE_TIMEOUT_MINUTES)
--reset-circuit Reset circuit breaker to CLOSED state
--circuit-status Show circuit breaker status and exit
Files created:
- $LOG_DIR/: All execution logs
- $DOCS_DIR/: Generated documentation
- $STATUS_FILE: Current status (JSON)
Example workflow:
ralph-setup my-project # Create project
cd my-project # Enter project directory
$0 --monitor # Start Ralph with monitoring
Examples:
$0 --calls 50 --prompt my_prompt.md
$0 --monitor # Start with integrated tmux monitoring
$0 --monitor --timeout 30 # 30-minute timeout for complex tasks
$0 --verbose --timeout 5 # 5-minute timeout with detailed progress
HELPEOF
}
# Parse command line arguments
while [[ $# -gt 0 ]]; do
case $1 in
-h|--help)
show_help
exit 0
;;
-c|--calls)
MAX_CALLS_PER_HOUR="$2"
shift 2
;;
-p|--prompt)
PROMPT_FILE="$2"
shift 2
;;
-s|--status)
if [[ -f "$STATUS_FILE" ]]; then
echo "Current Status:"
cat "$STATUS_FILE" | jq . 2>/dev/null || cat "$STATUS_FILE"
else
echo "No status file found. Ralph may not be running."
fi
exit 0
;;
-m|--monitor)
USE_TMUX=true
shift
;;
-v|--verbose)
VERBOSE_PROGRESS=true
shift
;;
-t|--timeout)
if [[ "$2" =~ ^[1-9][0-9]*$ ]] && [[ "$2" -le 120 ]]; then
CLAUDE_TIMEOUT_MINUTES="$2"
else
echo "Error: Timeout must be a positive integer between 1 and 120 minutes"
exit 1
fi
shift 2
;;
--reset-circuit)
# Source the circuit breaker library
SCRIPT_DIR="$(dirname "${BASH_SOURCE[0]}")"
source "$SCRIPT_DIR/lib/circuit_breaker.sh"
reset_circuit_breaker "Manual reset via command line"
exit 0
;;
--circuit-status)
# Source the circuit breaker library
SCRIPT_DIR="$(dirname "${BASH_SOURCE[0]}")"
source "$SCRIPT_DIR/lib/circuit_breaker.sh"
show_circuit_status
exit 0
;;
*)
echo "Unknown option: $1"
show_help
exit 1
;;
esac
done
# If tmux mode requested, set it up
if [[ "$USE_TMUX" == "true" ]]; then
check_tmux_available
setup_tmux_session
fi
# Start the main loop
main