refactor(skill): replace claude-specific dirs with agentskills.io standard
Replace AGENTS.md / claude-skill/ with a proper agentskills.io-compliant
skill directory. Any AI agent that supports the open Agent Skills standard
(Claude Code, OpenCode, Cursor, Codex, etc.) can now install and use this
skill generically.
Changes:
- Remove AGENTS.md (was Claude-specific convention)
- Remove claude-skill/ directory (was Claude-specific naming)
- Add timesfm-forecasting/SKILL.md with compliant frontmatter:
name: timesfm-forecasting
description: ...
license: Apache-2.0
metadata: author, version
- Rename claude-skill/examples/ → timesfm-forecasting/examples/
- Rename claude-skill/scripts/ → timesfm-forecasting/scripts/
- Rename claude-skill/references/ → timesfm-forecasting/references/
- Update .gitattributes paths to match new directory
Skill installs via:
cp -r timesfm-forecasting/ ~/.claude/skills/
cp -r timesfm-forecasting/ ~/.cursor/skills/
# or any agent that supports agentskills.io
Spec: https://agentskills.io/specification
This commit is contained in:
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# System Requirements for TimesFM
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## Hardware Tiers
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TimesFM can run on a variety of hardware configurations. This guide helps you
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choose the right setup and tune performance for your machine.
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### Tier 1: Minimal (CPU-Only, 4–8 GB RAM)
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- **Use case**: Light exploration, single-series forecasting, prototyping
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- **Model**: TimesFM 2.5 (200M) only
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- **Batch size**: `per_core_batch_size=4`
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- **Context**: Limit `max_context=512`
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- **Expected speed**: ~2–5 seconds per 100-point series
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```python
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model.compile(timesfm.ForecastConfig(
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max_context=512,
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max_horizon=128,
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per_core_batch_size=4,
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normalize_inputs=True,
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use_continuous_quantile_head=True,
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fix_quantile_crossing=True,
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))
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```
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### Tier 2: Standard (CPU 16 GB or GPU 4–8 GB VRAM)
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- **Use case**: Batch forecasting (dozens of series), evaluation, production prototypes
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- **Model**: TimesFM 2.5 (200M)
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- **Batch size**: `per_core_batch_size=32` (CPU) or `64` (GPU)
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- **Context**: `max_context=1024`
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- **Expected speed**: ~0.5–1 second per 100-point series (GPU)
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```python
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model.compile(timesfm.ForecastConfig(
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max_context=1024,
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max_horizon=256,
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per_core_batch_size=64,
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normalize_inputs=True,
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use_continuous_quantile_head=True,
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fix_quantile_crossing=True,
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))
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```
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### Tier 3: Production (GPU 16+ GB VRAM or Apple Silicon 32+ GB)
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- **Use case**: Large-scale batch forecasting (thousands of series), long context
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- **Model**: TimesFM 2.5 (200M)
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- **Batch size**: `per_core_batch_size=128–256`
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- **Context**: `max_context=4096` or higher
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- **Expected speed**: ~0.1–0.3 seconds per 100-point series
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```python
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model.compile(timesfm.ForecastConfig(
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max_context=4096,
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max_horizon=256,
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per_core_batch_size=128,
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normalize_inputs=True,
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use_continuous_quantile_head=True,
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fix_quantile_crossing=True,
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))
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```
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### Tier 4: Legacy Models (v1.0/v2.0 — 500M parameters)
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- **⚠️ WARNING**: TimesFM v2.0 (500M) requires **≥ 16 GB RAM** (CPU) or **≥ 8 GB VRAM** (GPU)
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- **⚠️ WARNING**: TimesFM v1.0 legacy JAX version may require **≥ 32 GB RAM**
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- **Recommendation**: Unless you specifically need a legacy checkpoint, use TimesFM 2.5
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## Memory Estimation
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### CPU Memory (RAM)
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Approximate RAM usage during inference:
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| Component | TimesFM 2.5 (200M) | TimesFM 2.0 (500M) |
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| --------- | ------------------- | ------------------- |
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| Model weights | ~800 MB | ~2 GB |
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| Runtime overhead | ~500 MB | ~1 GB |
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| Input/output buffers | ~200 MB per 1000 series | ~500 MB per 1000 series |
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| **Total (small batch)** | **~1.5 GB** | **~3.5 GB** |
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| **Total (large batch)** | **~3 GB** | **~6 GB** |
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**Formula**: `RAM ≈ model_weights + 0.5 GB + (0.2 MB × num_series × context_length / 1000)`
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### GPU Memory (VRAM)
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| Component | TimesFM 2.5 (200M) |
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| --------- | ------------------- |
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| Model weights | ~800 MB |
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| KV cache + activations | ~200–500 MB (scales with context) |
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| Batch buffers | ~100 MB per 100 series at context=1024 |
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| **Total (batch=32)** | **~1.2 GB** |
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| **Total (batch=128)** | **~1.8 GB** |
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| **Total (batch=256)** | **~2.5 GB** |
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### Disk Space
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| Item | Size |
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| ---- | ---- |
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| TimesFM 2.5 safetensors | ~800 MB |
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| Hugging Face cache overhead | ~200 MB |
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| **Total download** | **~1 GB** |
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Model weights are downloaded once from Hugging Face Hub and cached in
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`~/.cache/huggingface/` (or `$HF_HOME`).
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## GPU Selection Guide
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### NVIDIA GPUs (CUDA)
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| GPU | VRAM | Recommended batch | Notes |
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| --- | ---- | ----------------- | ----- |
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| RTX 3060 | 12 GB | 64 | Good entry-level |
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| RTX 3090 / 4090 | 24 GB | 256 | Excellent for production |
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| A100 (40 GB) | 40 GB | 512 | Cloud/HPC |
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| A100 (80 GB) | 80 GB | 1024 | Cloud/HPC |
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| T4 | 16 GB | 128 | Cloud (Colab, AWS) |
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| V100 | 16–32 GB | 128–256 | Cloud |
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### Apple Silicon (MPS)
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| Chip | Unified Memory | Recommended batch | Notes |
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| ---- | -------------- | ----------------- | ----- |
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| M1 | 8–16 GB | 16–32 | Works, slower than CUDA |
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| M1 Pro/Max | 16–64 GB | 32–128 | Good performance |
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| M2/M3/M4 Pro/Max | 18–128 GB | 64–256 | Excellent |
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### CPU Only
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Works on any CPU with sufficient RAM. Expect 5–20× slower than GPU.
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## Python and Package Requirements
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| Requirement | Minimum | Recommended |
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| ----------- | ------- | ----------- |
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| Python | 3.10 | 3.12+ |
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| numpy | 1.26.4 | latest |
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| torch | 2.0.0 | latest |
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| huggingface_hub | 0.23.0 | latest |
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| safetensors | 0.5.3 | latest |
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### Optional Dependencies
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| Package | Purpose | Install |
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| ------- | ------- | ------- |
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| jax | Flax backend | `pip install jax[cuda]` |
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| flax | Flax backend | `pip install flax` |
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| scikit-learn | XReg covariates | `pip install scikit-learn` |
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## Operating System Compatibility
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| OS | Status | Notes |
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| -- | ------ | ----- |
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| Linux (Ubuntu 20.04+) | ✅ Fully supported | Best performance with CUDA |
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| macOS 13+ (Ventura) | ✅ Fully supported | MPS acceleration on Apple Silicon |
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| Windows 11 + WSL2 | ✅ Supported | Use WSL2 for best experience |
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| Windows (native) | ⚠️ Partial | PyTorch works, some edge cases |
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## Troubleshooting
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### Out of Memory (OOM)
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```python
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# Reduce batch size
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model.compile(timesfm.ForecastConfig(
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per_core_batch_size=4, # Start very small
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max_context=512, # Reduce context
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...
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))
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# Process in chunks
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for i in range(0, len(inputs), 50):
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chunk = inputs[i:i+50]
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p, q = model.forecast(horizon=H, inputs=chunk)
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```
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### Slow Inference on CPU
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```python
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# Ensure matmul precision is set
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import torch
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torch.set_float32_matmul_precision("high")
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# Use smaller context
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model.compile(timesfm.ForecastConfig(
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max_context=256, # Shorter context = faster
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...
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))
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```
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### Model Download Fails
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```bash
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# Set a different cache directory
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export HF_HOME=/path/with/more/space
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# Or download manually
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huggingface-cli download google/timesfm-2.5-200m-pytorch
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```
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