MacroLens / code /experiments /run_experiments.sh
itouchz's picture
Upload experiments/ (runner, predictions, results, paper artifacts)
029e02e verified
Raw
History Blame Contribute Delete
6.22 kB
#!/bin/bash
# ==================================================================
# MacroLens: Full Experiment Launch Script (30-method panel)
# ==================================================================
# Runs the 28-method panel x 7 tasks x 3 granularities on 4x A100-40GB
# (physical GPU IDs 5,6,7,8). Other users keep 0-4 for themselves.
#
# Usage:
# # Quick validation (verify code works, ~4-8h)
# bash run_experiments.sh --quick
#
# # Full experiments (all granularities, ~3-5 days)
# bash run_experiments.sh --full
#
# # Single family
# bash run_experiments.sh --quick --family naive
# ==================================================================
set -euo pipefail
MODE="${1:---quick}"
FAMILY="${3:-all}"
LOG_DIR="/mnt/local/patara/experiment_logs"
mkdir -p "$LOG_DIR"
TIMESTAMP=$(date +%Y%m%d_%H%M%S)
# MacroLens-assigned physical GPU IDs. Single source of truth.
MACROLENS_GPUS="4,5,6,7"
# Parse mode
QUICK_FLAG=""
SEED_FLAGS=""
case "$MODE" in
--quick)
QUICK_FLAG="--quick"
echo "=== QUICK VALIDATION MODE ==="
;;
--full)
# Single-seed primary per panel.PRIMARY_SEED; the headline-T1 multi-seed
# subset is driven inside the runner by panel.seeds_for().
SEED_FLAGS=""
echo "=== FULL EXPERIMENT MODE (single-seed primary) ==="
;;
*)
echo "Usage: $0 [--quick|--full] [--family FAMILY]"
exit 1
;;
esac
# Allow --family as $2
if [[ "${2:-}" == "--family" ]]; then
FAMILY="$3"
fi
run_family() {
local family=$1
local gpus=$2 # CUDA_VISIBLE_DEVICES string (physical IDs, e.g. "5,6,7,8")
local log="$LOG_DIR/${TIMESTAMP}_${family}.log"
echo "[$(date +%H:%M:%S)] Starting $family on GPUs $gpus -> $log"
CUDA_VISIBLE_DEVICES="$gpus" \
nohup uv run python -m projects.agent_builder.scripts.whatif_bench.baselines \
$QUICK_FLAG $SEED_FLAGS --family "$family" \
> "$log" 2>&1 &
echo " PID: $!"
}
# ==================================================================
# Batch 1: CPU-only families (no GPU)
# naive, classical, ablation classical arm - all CPU
# ==================================================================
run_batch_1() {
echo ""
echo "=== Batch 1: CPU families ==="
run_family "naive" ""
run_family "classical" ""
wait
echo "Batch 1 complete."
}
# ==================================================================
# Batch 2: Sequence + TSFM ZS + TSFM FT (share 4 GPUs)
# sequence -> 1 GPU (4)
# tsfm ZS -> 1 GPU (5)
# tsfm FT -> 2 GPUs (6,7)
# ==================================================================
run_batch_2() {
echo ""
echo "=== Batch 2: Sequence + TSFM ZS + TSFM FT ==="
run_family "sequence" "4"
run_family "tsfm" "5"
run_family "tsfm_ft" "6,7"
wait
echo "Batch 2 complete."
}
# ==================================================================
# Batch 3: LLM-TS Multi-Task (ChatTime, ITFormer, Time-MQA)
# Uses all 4 GPUs since each framework can benefit from parallel inference
# on the 7B backbone.
# ==================================================================
run_batch_3() {
echo ""
echo "=== Batch 3: LLM-TS Multi-Task ==="
run_family "llm_ts_reason" "$MACROLENS_GPUS"
wait
echo "Batch 3 complete."
}
# ==================================================================
# Batch 4: LLM ZS + FT (use all 4 GPUs; ZS first, then FT)
# Llama-4 Scout needs tensor-parallel 4 (all GPUs).
# Gemma-4 / EXAONE are TP=1 but run sequentially inside the runner.
# ==================================================================
run_batch_4() {
echo ""
echo "=== Batch 4: LLM ZS ==="
run_family "llm" "$MACROLENS_GPUS"
wait
echo "=== Batch 4: LLM FT (QLoRA NF4 + ZeRO-2) ==="
run_family "llm_ft" "$MACROLENS_GPUS"
wait
echo "Batch 4 complete."
}
# ==================================================================
# Ablation (5 settings x 5 models on T1 h=21 + T4)
# ==================================================================
run_ablation() {
echo ""
echo "=== Ablation (5x5 on T1 h=21 + T4) ==="
run_family "ablation" "$MACROLENS_GPUS"
wait
echo "Ablation complete."
}
# ==================================================================
# Multi-granularity (weekly + monthly, after daily completes)
# ==================================================================
run_multi_gran() {
echo ""
echo "=== Multi-granularity: weekly ==="
for family in naive classical sequence tsfm tsfm_ft llm_ts_reason llm llm_ft ablation; do
CUDA_VISIBLE_DEVICES="$MACROLENS_GPUS" \
uv run python -m projects.agent_builder.scripts.whatif_bench.baselines \
$QUICK_FLAG $SEED_FLAGS --family "$family" --granularity weekly \
>> "$LOG_DIR/${TIMESTAMP}_weekly.log" 2>&1
done
echo "=== Multi-granularity: monthly ==="
for family in naive classical sequence tsfm tsfm_ft llm_ts_reason llm llm_ft ablation; do
CUDA_VISIBLE_DEVICES="$MACROLENS_GPUS" \
uv run python -m projects.agent_builder.scripts.whatif_bench.baselines \
$QUICK_FLAG $SEED_FLAGS --family "$family" --granularity monthly \
>> "$LOG_DIR/${TIMESTAMP}_monthly.log" 2>&1
done
echo "Multi-granularity complete."
}
# ==================================================================
# Main
# ==================================================================
echo "MacroLens Experiments - $MODE (GPUs: $MACROLENS_GPUS)"
echo "Logs: $LOG_DIR/${TIMESTAMP}_*.log"
echo ""
if [[ "$FAMILY" != "all" ]]; then
run_family "$FAMILY" "$MACROLENS_GPUS"
wait
else
run_batch_1
run_batch_2
run_batch_3
run_batch_4
run_ablation
if [[ "$MODE" == "--full" ]]; then
run_multi_gran
fi
fi
echo ""
echo "=== ALL EXPERIMENTS COMPLETE ==="
echo "Results: data_small_caps/benchmark/daily/all_results*.json"
echo "Logs: $LOG_DIR/${TIMESTAMP}_*.log"
echo ""
echo "=== Generating LaTeX tables ==="
CUDA_VISIBLE_DEVICES="$MACROLENS_GPUS" \
uv run python -m projects.agent_builder.scripts.whatif_bench.baselines.gen_tables
echo "Tables saved."