#!/bin/bash # # StarForth — Steady-State Virtual Machine Runtime # # Copyright (c) 2023–2025 Robert A. James # All rights reserved. # # This file is part of the StarForth project. # # Licensed under the StarForth License, Version 1.0 (the "License"); # you may not use this file except in compliance with the License. # # You may obtain a copy of the License at: # https://github.com/star.4th@proton.me/StarForth/LICENSE.txt # # This software is provided "AS IS", WITHOUT WARRANTY OF ANY KIND, # express or implied, including but not limited to the warranties of # merchantability, fitness for a particular purpose, and noninfringement. # # See the License for the specific language governing permissions and # limitations under the License. # # StarForth — Steady-State Virtual Machine Runtime # Copyright (c) 2023–2025 Robert A. James # All rights reserved. # # This file is part of the StarForth project. # # Licensed under the StarForth License, Version 1.0 (the "License"); # you may not use this file except in compliance with the License. # # You may obtain a copy of the License at: # https://github.com/star.4th@proton.me/StarForth/LICENSE.txt # # This software is provided "AS IS", WITHOUT WARRANTY OF ANY KIND, # express or implied, including but not limited to the warranties of # merchantability, fitness for a particular purpose, and noninfringement. # # See the License for the specific language governing permissions and # limitations under the License. # # ################################################################################ # # StarForth Complete 2^7 Factorial DoE # # COMPREHENSIVE ONE-AND-DONE EXPERIMENT # # Design: # ─────────────────────────────────────────────────────────────────────────── # # This script executes a complete 2^7 factorial design of experiments: # - 7 binary feedback loop factors (ENABLE_LOOP_1 through ENABLE_LOOP_7) # - 2^7 = 128 unique configurations # - Each configuration tested N times (default: 20 runs per config) # - Total runs: 128 × 20 = 2,560 runs # - All results_run_01_2025_12_08 aggregated into ONE dataset for downstream analysis # # Factors (each binary: 0 or 1): # ─────────────────────────────────────────────────────────────────────────── # Loop #1: ENABLE_LOOP_1_HEAT_TRACKING Execution heat counting # Loop #2: ENABLE_LOOP_2_ROLLING_WINDOW Rolling window history capture # Loop #3: ENABLE_LOOP_3_LINEAR_DECAY Exponential heat decay # Loop #4: ENABLE_LOOP_4_PIPELINING_METRICS Word-to-word transition tracking # Loop #5: ENABLE_LOOP_5_WINDOW_INFERENCE Window width inference (Levene's test) # Loop #6: ENABLE_LOOP_6_DECAY_INFERENCE Decay slope inference (regression) # Loop #7: ENABLE_LOOP_7_ADAPTIVE_HEARTRATE Dynamic tick frequency adjustment # # Design Points: # ─────────────────────────────────────────────────────────────────────────── # Configuration format: L1_L2_L3_L4_L5_L6_L7 (each digit 0 or 1) # Examples: # 0000000 = baseline (all loops OFF - plain FORTH-79) # 0000001 = only heat tracking # 1111111 = all loops ON (current optimal) # 1010101 = alternating pattern # # Randomization: # ─────────────────────────────────────────────────────────────────────────── # - All 64 × N runs randomized into single test matrix # - No systematic ordering bias # - Prevents thermal/temporal confounds # # Output Structure: # ─────────────────────────────────────────────────────────────────────────── # // # ├── experiment_results.csv (1920 rows, 38+ columns) # ├── experiment_summary.txt (metadata, timing, notes) # ├── test_matrix.txt (randomized run order) # ├── run_logs/ (per-run execution logs) # │ ├── 000000_run_1.log # │ ├── 111111_run_1.log # │ └── ... (1920 total logs) # └── configuration_manifest.txt (mapping: config → loop flags) # # Expected Runtime: # ─────────────────────────────────────────────────────────────────────────── # - exp-iterations 1 (30 runs/config): ~2-4 hours (128 × 30 = 3,840 total runs) # - exp-iterations 2 (60 runs/config): ~4-8 hours (128 × 60 = 7,680 total runs) # - exp-iterations 3 (90 runs/config): ~6-12 hours (128 × 90 = 11,520 total runs) # # Usage: # ./scripts/run_factorial_doe.sh EXPERIMENT_LABEL (defaults to exp-iterations 1) # ./scripts/run_factorial_doe.sh --exp-iterations 1 BASELINE_DOE # ./scripts/run_factorial_doe.sh --exp-iterations 2 COMPREHENSIVE_DOE # ./scripts/run_factorial_doe.sh --exp-iterations 3 FULL_COVERAGE # # Example: # ./scripts/run_factorial_doe.sh 2025_11_20_BASELINE # → stores in /home/rajames/CLionProjects/StarForth-DoE/experiments/2025_11_20_BASELINE # → runs 128 configs × 30 runs = 3,840 total runs # ################################################################################ set -e ################################################################################ # Parse Arguments ################################################################################ EXP_ITERATIONS=1 OUTPUT_DIR="" EXPERIMENTS_BASE="/home/rajames/CLionProjects/StarForth-DoE/experiments" BASE_RUNS_PER_CONFIG=30 while [[ $# -gt 0 ]]; do case $1 in --exp-iterations) EXP_ITERATIONS="$2" shift 2 ;; -*) echo "Unknown option: $1" echo "Usage: $0 [--exp-iterations N] EXPERIMENT_LABEL" exit 1 ;; *) OUTPUT_DIR="$1" shift ;; esac done if [ -z "${OUTPUT_DIR}" ]; then echo "Usage: $0 [--exp-iterations N] EXPERIMENT_LABEL" echo "" echo "Iteration Levels (runs-per-config = iteration × 30):" echo " --exp-iterations 1 → 30 runs per config" echo " --exp-iterations 2 → 60 runs per config" echo " --exp-iterations 3 → 90 runs per config" echo "" echo "Examples:" echo " $0 2025_11_19_FULL_FACTORIAL" echo " $0 --exp-iterations 1 BASELINE_DOE" echo " $0 --exp-iterations 2 COMPREHENSIVE_DOE" exit 1 fi if ! [[ "${EXP_ITERATIONS}" =~ ^[0-9]+$ ]] || [ "${EXP_ITERATIONS}" -lt 1 ]; then echo "Error: --exp-iterations must be a positive integer" exit 1 fi # Calculate runs per config based on iteration level RUNS_PER_CONFIG=$((EXP_ITERATIONS * BASE_RUNS_PER_CONFIG)) # Paths REPO_ROOT="$(cd "$(dirname "${BASH_SOURCE[0]}")/.." && pwd)" BUILD_DIR="${REPO_ROOT}/build" BUILD_PROFILE="fastest" # Ensure base directory exists mkdir -p "${EXPERIMENTS_BASE}" || { echo "Error: unable to create experiments base at ${EXPERIMENTS_BASE}" exit 1 } OUTPUT_DIR="${EXPERIMENTS_BASE%/}/${OUTPUT_DIR}" LOG_DIR="${OUTPUT_DIR}/run_logs" RESULTS_CSV="${OUTPUT_DIR}/experiment_results.csv" SUMMARY_LOG="${OUTPUT_DIR}/experiment_summary.txt" TEST_MATRIX="${OUTPUT_DIR}/test_matrix.txt" CONFIG_MANIFEST="${OUTPUT_DIR}/configuration_manifest.txt" # Colors RED='\033[0;31m' GREEN='\033[0;32m' YELLOW='\033[1;33m' BLUE='\033[0;34m' NC='\033[0m' mkdir -p "${LOG_DIR}" "${OUTPUT_DIR}" ################################################################################ # Logging Functions ################################################################################ log_header() { echo -e "${BLUE}═══════════════════════════════════════════════════════════${NC}" >&2 echo -e "${BLUE}$1${NC}" >&2 echo -e "${BLUE}═══════════════════════════════════════════════════════════${NC}" >&2 } log_success() { echo -e "${GREEN}✓ $1${NC}" >&2 } log_error() { echo -e "${RED}✗ $1${NC}" >&2 } log_info() { echo -e "${YELLOW}→ $1${NC}" >&2 } log_section() { echo -e "\n${BLUE}>>> $1${NC}" >&2 } timestamp() { date +"%Y-%m-%dT%H:%M:%S" } runtime_seconds() { local start=$1 local end=$2 echo $((end - start)) } format_duration() { local seconds=$1 local hours=$((seconds / 3600)) local minutes=$(((seconds % 3600) / 60)) local secs=$((seconds % 60)) printf "%dh %dm %ds" $hours $minutes $secs } extract_final_csv_row() { local log_file=$1 if [ ! -f "${log_file}" ]; then return 1 fi awk '!/^HB,/ && NF {line=$0} END {if (length(line)) print line}' "${log_file}" } ################################################################################ # Generate All 128 Configurations (2^7) ################################################################################ generate_all_configurations() { # Generate all 128 binary combinations of 7 loops # Format: L1_L2_L3_L4_L5_L6_L7 (each digit 0 or 1) local configs=() for i in $(seq 0 127); do local l1=$(( (i >> 0) & 1 )) local l2=$(( (i >> 1) & 1 )) local l3=$(( (i >> 2) & 1 )) local l4=$(( (i >> 3) & 1 )) local l5=$(( (i >> 4) & 1 )) local l6=$(( (i >> 5) & 1 )) local l7=$(( (i >> 6) & 1 )) local config_name="${l1}_${l2}_${l3}_${l4}_${l5}_${l6}_${l7}" configs+=("$config_name") done echo "${configs[@]}" } ################################################################################ # Configuration Mapping ################################################################################ config_to_loop_flags() { # Parse config name "L1_L2_L3_L4_L5_L6_L7" and output 7 comma-separated values local config=$1 # config format: "L1_L2_L3_L4_L5_L6_L7" local l1=$(echo "$config" | cut -d'_' -f1) local l2=$(echo "$config" | cut -d'_' -f2) local l3=$(echo "$config" | cut -d'_' -f3) local l4=$(echo "$config" | cut -d'_' -f4) local l5=$(echo "$config" | cut -d'_' -f5) local l6=$(echo "$config" | cut -d'_' -f6) local l7=$(echo "$config" | cut -d'_' -f7) echo "${l1},${l2},${l3},${l4},${l5},${l6},${l7}" } ################################################################################ # CSV Functions ################################################################################ init_csv_header() { { printf 'timestamp,configuration,run_number,build_status,run_status,' printf 'total_lookups,cache_hits,cache_hit_percent,bucket_hits,bucket_hit_percent,' printf 'cache_hit_latency_ns,cache_hit_stddev_ns,bucket_search_latency_ns,bucket_search_stddev_ns,' printf 'context_predictions_total,context_correct,context_accuracy_percent,' printf 'rolling_window_width,decay_slope,' printf 'hot_word_count,stale_word_ratio,avg_word_heat,' printf 'prefetch_accuracy_percent,prefetch_attempts,prefetch_hits,window_tuning_checks,final_effective_window_size,' printf 'vm_workload_duration_ns_q48,cpu_temp_delta_c_q48,cpu_freq_delta_mhz_q48,' printf 'decay_rate_q16,decay_min_interval_ns,rolling_window_size,adaptive_shrink_rate,heat_cache_demotion_threshold,' printf 'enable_loop_1_heat_tracking,enable_loop_2_rolling_window,enable_loop_3_linear_decay,' printf 'enable_loop_4_pipelining_metrics,enable_loop_5_window_inference,enable_loop_6_decay_inference,' printf 'enable_loop_7_adaptive_heartrate\n' } > "${RESULTS_CSV}" log_success "CSV header created (with build_status and run_status columns for tracking incompatible configs)" } write_configuration_manifest() { # Document all 128 configurations for reference { echo "# StarForth 2^7 Factorial DoE - Configuration Manifest" echo "# Generated: $(timestamp)" echo "" echo "Configuration format: LOOP1_LOOP2_LOOP3_LOOP4_LOOP5_LOOP6_LOOP7" echo "" echo "Factors:" echo " LOOP1 = ENABLE_LOOP_1_HEAT_TRACKING (execution heat counting)" echo " LOOP2 = ENABLE_LOOP_2_ROLLING_WINDOW (rolling window history)" echo " LOOP3 = ENABLE_LOOP_3_LINEAR_DECAY (exponential heat decay)" echo " LOOP4 = ENABLE_LOOP_4_PIPELINING_METRICS (word transition tracking)" echo " LOOP5 = ENABLE_LOOP_5_WINDOW_INFERENCE (window width inference)" echo " LOOP6 = ENABLE_LOOP_6_DECAY_INFERENCE (decay slope inference)" echo " LOOP7 = ENABLE_LOOP_7_ADAPTIVE_HEARTRATE (dynamic tick frequency adjustment)" echo "" echo "All 128 configurations:" echo "" local idx=0 for config in $(generate_all_configurations); do printf "%3d. %s\n" $((idx + 1)) "$config" idx=$((idx + 1)) done } > "${CONFIG_MANIFEST}" log_success "Configuration manifest written: ${CONFIG_MANIFEST}" } ################################################################################ # Build Functions ################################################################################ build_configuration() { local config_name=$1 local l1=$2 local l2=$3 local l3=$4 local l4=$5 local l5=$6 local l6=$7 local l7=$8 cd "${REPO_ROOT}" # Clean previous build make clean > /dev/null 2>&1 || true # Build with specific loop configuration log_info "Building: make TARGET=${BUILD_PROFILE} with loops: L1=${l1} L2=${l2} L3=${l3} L4=${l4} L5=${l5} L6=${l6} L7=${l7}" if make TARGET="${BUILD_PROFILE}" \ ENABLE_LOOP_1_HEAT_TRACKING="${l1}" \ ENABLE_LOOP_2_ROLLING_WINDOW="${l2}" \ ENABLE_LOOP_3_LINEAR_DECAY="${l3}" \ ENABLE_LOOP_4_PIPELINING_METRICS="${l4}" \ ENABLE_LOOP_5_WINDOW_INFERENCE="${l5}" \ ENABLE_LOOP_6_DECAY_INFERENCE="${l6}" \ ENABLE_LOOP_7_ADAPTIVE_HEARTRATE="${l7}" \ > "${LOG_DIR}/build_${config_name}.log" 2>&1; then log_success "Build completed for ${config_name}" echo "${BUILD_DIR}/amd64/${BUILD_PROFILE}/starforth" else log_error "Build failed for ${config_name}" cat "${LOG_DIR}/build_${config_name}.log" >&2 return 1 fi } ################################################################################ # Test Matrix Generation ################################################################################ generate_test_matrix() { local matrix_file="${TEST_MATRIX}" > "${matrix_file}" # Generate all configs × runs for config in $(generate_all_configurations); do for run in $(seq 1 ${RUNS_PER_CONFIG}); do echo "${config},${run}" >> "${matrix_file}" done done # Randomize entire matrix sort -R "${matrix_file}" > "${matrix_file}.shuffled" mv "${matrix_file}.shuffled" "${matrix_file}" echo "${matrix_file}" } ################################################################################ # Execution Functions ################################################################################ run_single_iteration() { local binary=$1 local config=$2 local run_num=$3 local output_log=$4 if "${binary}" --doe-experiment > "${output_log}" 2>&1; then return 0 else return 1 fi } run_experiment() { local matrix_file=$1 log_header "RANDOMIZED FACTORIAL EXPERIMENT (${TOTAL_RUNS} runs)" local current_config="" local current_binary="" local current_build_status="OK" local run_index=0 local incompatible_configs=() local successful_runs=0 local failed_configs=0 # Read shuffled test matrix while IFS=',' read -r config_name run_number; do run_index=$((run_index + 1)) # Build if configuration changed if [ "${current_config}" != "${config_name}" ]; then local flags=$(config_to_loop_flags "${config_name}") local l1="${flags%,*}" flags="${flags#*,}" local l2="${flags%,*}" flags="${flags#*,}" local l3="${flags%,*}" flags="${flags#*,}" local l4="${flags%,*}" flags="${flags#*,}" local l5="${flags%,*}" flags="${flags#*,}" local l6="${flags%,*}" flags="${flags#*,}" local l7="${flags#*,}" # Attempt to build configuration if current_binary=$(build_configuration "${config_name}" "${l1}" "${l2}" "${l3}" "${l4}" "${l5}" "${l6}" "${l7}" 2>/dev/null); then current_build_status="OK" log_success "Build successful for ${config_name}" else # Build failed - mark as incompatible and continue current_build_status="BUILD_FAILED" incompatible_configs+=("${config_name}") failed_configs=$((failed_configs + 1)) log_error "Configuration ${config_name} is INCOMPATIBLE (build failure) - recording as data point" current_config="${config_name}" current_binary="" continue fi current_config="${config_name}" fi # Skip execution if build failed for this config if [ "${current_build_status}" = "BUILD_FAILED" ]; then log_info "Run ${run_index}/${TOTAL_RUNS} - config ${config_name} #${run_number} skipped (incompatible)" continue fi # Execute run local run_log="${LOG_DIR}/${config_name}_run_${run_number}.log" local start_time=$(date +%s) log_info "Run ${run_index}/${TOTAL_RUNS} - config ${config_name} #${run_number}..." if run_single_iteration "${current_binary}" "${config_name}" "${run_number}" "${run_log}"; then # Extract CSV row local csv_row if ! csv_row=$(extract_final_csv_row "${run_log}"); then log_error "Run ${run_index}/${TOTAL_RUNS} missing metrics - may indicate crash" # Record as crash (incompatible) current_build_status="CRASH" if [[ ! " ${incompatible_configs[@]} " =~ " ${config_name} " ]]; then incompatible_configs+=("${config_name}") failed_configs=$((failed_configs + 1)) fi log_error "Configuration ${config_name} is INCOMPATIBLE (StarForth crash) - recording as data point" continue fi if [ -z "${csv_row}" ]; then log_error "Run ${run_index}/${TOTAL_RUNS} empty metrics - configuration may be unstable" current_build_status="CRASH" if [[ ! " ${incompatible_configs[@]} " =~ " ${config_name} " ]]; then incompatible_configs+=("${config_name}") failed_configs=$((failed_configs + 1)) fi log_error "Configuration ${config_name} is INCOMPATIBLE (no metrics) - recording as data point" continue fi # Append config flags to CSV row with build status local flags=$(config_to_loop_flags "${config_name}") local ts_now=$(timestamp) printf '%s,%s,%s,%s,%s,%s,%s\n' "${ts_now}" "${config_name}" "${run_number}" "OK" "OK" "${csv_row}" "${flags}" >> "${RESULTS_CSV}" successful_runs=$((successful_runs + 1)) local elapsed=$(runtime_seconds ${start_time} $(date +%s)) log_success "Run ${run_index}/${TOTAL_RUNS} completed (${elapsed}s)" else # Binary execution failed (crash/signal) current_build_status="CRASH" if [[ ! " ${incompatible_configs[@]} " =~ " ${config_name} " ]]; then incompatible_configs+=("${config_name}") failed_configs=$((failed_configs + 1)) fi log_error "Configuration ${config_name} is INCOMPATIBLE (StarForth crash/signal exit) - recording as data point" # Record incompatibility without metrics local flags=$(config_to_loop_flags "${config_name}") local ts_now=$(timestamp) printf '%s,%s,%s,%s,%s,%s\n' "${ts_now}" "${config_name}" "${run_number}" "OK" "CRASH" "${flags}" >> "${RESULTS_CSV}" fi done < "${matrix_file}" log_header "EXPERIMENT COMPLETE (with incompatibility detection)" log_success "Successful runs: ${successful_runs}/${TOTAL_RUNS}" log_success "Failed configurations (incompatible): ${failed_configs}" if [ ${#incompatible_configs[@]} -gt 0 ]; then echo "" log_info "Incompatible configurations detected:" for config in "${incompatible_configs[@]}"; do log_error " ${config}" done echo "" log_info "These configs are marked in CSV with build_status or run_status = INCOMPATIBLE" log_info "They represent configurations where loops cannot coexist without conflict" fi } ################################################################################ # Main ################################################################################ main() { local experiment_start=$(date +%s) local start_time=$(timestamp) # Calculate totals TOTAL_CONFIGS=128 TOTAL_RUNS=$((TOTAL_CONFIGS * RUNS_PER_CONFIG)) log_header "STARFORTH COMPLETE 2^7 FACTORIAL DoE" log_info "Factors: 7 feedback loops (LOOP_1 through LOOP_7)" log_info "Configurations: 2^7 = 128" log_info "Runs per config: ${RUNS_PER_CONFIG}" log_info "TOTAL RUNS: ${TOTAL_RUNS}" log_info "Workload: Complete test harness (936+ FORTH tests)" log_info "Output: ${OUTPUT_DIR}" # Initialize init_csv_header write_configuration_manifest log_section "Generating randomized test matrix..." local matrix_file if ! matrix_file=$(generate_test_matrix); then log_error "Failed to generate test matrix" return 1 fi log_success "Test matrix generated: ${matrix_file}" # Show preview echo "" log_info "Test Matrix Preview (first 10 of ${TOTAL_RUNS} runs):" head -10 "${matrix_file}" | sed 's/^/ /' echo " ..." echo "" # Wait for confirmation log_info "Complete test matrix saved: ${matrix_file}" read -p "Press ENTER to begin execution (Ctrl+C to abort): " # Execute if ! run_experiment "${matrix_file}"; then log_error "Experiment failed" return 1 fi # Summary local experiment_end=$(date +%s) local total_seconds=$(runtime_seconds ${experiment_start} ${experiment_end}) local end_time=$(timestamp) log_header "EXPERIMENT COMPLETE" log_success "All ${TOTAL_RUNS} runs completed!" log_success "Start time: ${start_time}" log_success "End time: ${end_time}" log_success "Total runtime: $(format_duration ${total_seconds})" log_success "Results: ${RESULTS_CSV}" log_success "Configs: ${CONFIG_MANIFEST}" log_success "Logs: ${LOG_DIR}/" echo "" log_info "CSV Results Preview (first 5 data rows):" head -6 "${RESULTS_CSV}" | sed 's/^/ /' echo "" log_info "Next steps:" log_info " 1. Download results to analysis repository" log_info " 2. Run factorial analysis (main effects, interactions)" log_info " 3. Identify optimal configuration subset" return 0 } main "$@" exit $?