update
This commit is contained in:
@@ -12,38 +12,51 @@ https://universe.roboflow.com/kemals-workspace-kbc8l/electric-meter-detection-o4
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## Prerequisites
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- Install or sync the project dependencies: `uv sync`
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- The virtual environment is activated.
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- AWS credentials configured for the profile in `config.yaml`
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- Infrastructure already deployed with `uv run qc-cli infra setup`
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- A Roboflow API key exported as `ROBOFLOW_API_KEY`
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- `curl` and `unzip` available locally
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Install or sync the project dependencies:
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```bash
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uv sync
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```
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Set the Roboflow API key for the current shell:
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```bash
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export ROBOFLOW_API_KEY=your-roboflow-api-key
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```
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- Infrastructure already deployed with `qc-cli infra setup`
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## 1. Download The Dataset
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Download version 1 of the dataset in YOLO format. The script uses the Roboflow REST API directly and does not require Python:
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Register or sign in to Roboflow, then open the dataset page:
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```bash
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bash examples/meter-detection/download_dataset.sh
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```text
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https://universe.roboflow.com/kemals-workspace-kbc8l/electric-meter-detection-o4tfi/dataset/1
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```
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Confirm the extracted dataset has a YOLO data file and image splits:
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Download the dataset in YOLOv26 format from the Roboflow UI, then extract the downloaded archive into:
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```text
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examples/meter-detection/data/electric-meter-detection
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```
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The `data.yaml` file should be directly under that folder:
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```text
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examples/meter-detection/data/electric-meter-detection/data.yaml
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```
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Do not move `data.yaml` into the `train/` split folder.
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After extracting, confirm the dataset has a YOLO data file and image splits:
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```bash
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find examples/meter-detection/data/electric-meter-detection -maxdepth 2 -type d | sort
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find examples/meter-detection/data/electric-meter-detection -name data.yaml -print
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```
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Open `examples/meter-detection/data/electric-meter-detection/data.yaml` and make sure the split paths are relative to that folder:
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```yaml
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path: .
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train: train/images
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val: valid/images
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test: test/images
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```
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If your downloaded dataset does not include a `test/` folder, remove the `test:` line.
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The expected layout is similar to:
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```text
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@@ -54,8 +67,6 @@ examples/meter-detection/data/electric-meter-detection/
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test/
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```
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The `test/` split may be absent depending on the exported dataset version.
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## 2. Configure SageMaker Training
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Update `config.yaml` so the training section points at this example's source directory:
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@@ -107,7 +118,7 @@ sagemaker:
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Confirm the CLI can see the configured SageMaker role and S3 bucket:
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```bash
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uv run qc-cli infra status --config config.yaml
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qc-cli infra status --config config.yaml
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```
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## 4. Upload The Dataset
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@@ -115,29 +126,31 @@ uv run qc-cli infra status --config config.yaml
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Upload the downloaded Roboflow dataset to the `s3.data_prefix` configured in `config.yaml`:
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```bash
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uv run qc-cli upload examples/meter-detection/data/electric-meter-detection --config config.yaml
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qc-cli upload examples/meter-detection/data/electric-meter-detection
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```
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Directory uploads preserve paths relative to the uploaded directory, so SageMaker receives the dataset root with `data.yaml` plus the split directories.
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In SageMaker, this uploaded dataset root is mounted at `/opt/ml/input/data/train`. That `train` path is the SageMaker channel name, not the YOLO `train/` split folder.
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## 5. Start Training
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Submit the SageMaker training job:
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```bash
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uv run qc-cli train start --config config.yaml
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qc-cli train start
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```
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The command prints the submitted SageMaker job name. Check progress with:
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```bash
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uv run qc-cli train status --config config.yaml
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qc-cli train status
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```
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Or pass the job name explicitly:
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```bash
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uv run qc-cli train status qc-cli-YYYYMMDD-HHMMSS --config config.yaml
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qc-cli train status qc-cli-YYYYMMDD-HHMMSS
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```
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## Outputs
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@@ -167,6 +180,7 @@ Values under `sagemaker.training.hyperparameters` are passed to `source/train.py
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| `workers` | int | `2` | DataLoader worker count. |
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| `patience` | int | `20` | Early stopping patience. |
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| `device` | string | auto | Optional Ultralytics device value such as `0` or `cpu`. |
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| `data-yaml` | string | auto | Optional path to `data.yaml`; normally discovered from `SM_CHANNEL_TRAIN`. |
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| `data-yaml` | string | auto | Optional path to `data.yaml`; normally discovered from the uploaded dataset root. |
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| `dataset-dir` | string | `SM_CHANNEL_TRAIN` | Uploaded dataset root mounted by SageMaker. |
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Do not set `train-dir` or `model-dir` in normal SageMaker runs. SageMaker sets those automatically through `SM_CHANNEL_TRAIN` and `SM_MODEL_DIR`.
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Do not set `dataset-dir` or `model-dir` in normal SageMaker runs. SageMaker sets those automatically through `SM_CHANNEL_TRAIN` and `SM_MODEL_DIR`.
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@@ -1,57 +0,0 @@
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#!/usr/bin/env bash
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set -euo pipefail
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WORKSPACE="kemals-workspace-kbc8l"
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PROJECT="electric-meter-detection-o4tfi"
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VERSION="1"
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FORMAT="yolov8"
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DATASET_DIR="examples/meter-detection/data/electric-meter-detection"
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if [[ -z "${ROBOFLOW_API_KEY:-}" ]]; then
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echo "ROBOFLOW_API_KEY is required." >&2
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echo "Run: export ROBOFLOW_API_KEY=your-roboflow-api-key" >&2
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exit 1
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fi
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if ! command -v curl >/dev/null 2>&1; then
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echo "curl is required." >&2
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exit 1
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fi
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if ! command -v unzip >/dev/null 2>&1; then
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echo "unzip is required." >&2
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exit 1
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fi
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TMP_DIR="$(mktemp -d)"
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trap 'rm -rf "${TMP_DIR}"' EXIT
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API_URL="https://api.roboflow.com/${WORKSPACE}/${PROJECT}/${VERSION}/${FORMAT}?api_key=${ROBOFLOW_API_KEY}"
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RESPONSE_FILE="${TMP_DIR}/roboflow-export.json"
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ZIP_FILE="${TMP_DIR}/dataset.zip"
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echo "Requesting Roboflow export link..."
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curl -fsSL "${API_URL}" -o "${RESPONSE_FILE}"
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DOWNLOAD_URL="$(
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sed -n 's/.*"link"[[:space:]]*:[[:space:]]*"\([^"]*\)".*/\1/p' "${RESPONSE_FILE}" \
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| head -n 1 \
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| sed 's#\\/#/#g; s#\\u0026#\&#g'
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)"
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if [[ -z "${DOWNLOAD_URL}" ]]; then
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echo "Could not find export.link in Roboflow response." >&2
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echo "Response:" >&2
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cat "${RESPONSE_FILE}" >&2
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exit 1
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fi
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mkdir -p "${DATASET_DIR}"
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echo "Downloading dataset ZIP..."
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curl -fL "${DOWNLOAD_URL}" -o "${ZIP_FILE}"
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echo "Extracting dataset..."
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unzip -q -o "${ZIP_FILE}" -d "${DATASET_DIR}"
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echo "Downloaded dataset to ${DATASET_DIR}"
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@@ -24,37 +24,29 @@ def parse_args() -> argparse.Namespace:
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parser.add_argument("--patience", type=int, default=20)
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parser.add_argument("--device", default=None)
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parser.add_argument("--data-yaml", default=None)
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parser.add_argument("--train-dir", default=os.environ.get("SM_CHANNEL_TRAIN", "/opt/ml/input/data/train"))
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parser.add_argument("--dataset-dir", default=os.environ.get("SM_CHANNEL_TRAIN", "/opt/ml/input/data/train"))
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parser.add_argument("--train-dir", dest="dataset_dir", help=argparse.SUPPRESS)
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parser.add_argument("--model-dir", default=os.environ.get("SM_MODEL_DIR", "/opt/ml/model"))
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return parser.parse_args()
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def find_data_yaml(train_dir: Path, explicit_path: str | None) -> Path:
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def find_data_yaml(dataset_dir: Path, explicit_path: str | None) -> Path:
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if explicit_path:
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data_yaml = Path(explicit_path)
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if data_yaml.is_file():
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return data_yaml
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raise FileNotFoundError(f"Configured data.yaml does not exist: {data_yaml}")
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matches = sorted(train_dir.rglob("data.yaml"))
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matches = sorted(dataset_dir.rglob("data.yaml"))
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if not matches:
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raise FileNotFoundError(f"Could not find data.yaml under {train_dir}")
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raise FileNotFoundError(f"Could not find data.yaml under {dataset_dir}")
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if len(matches) > 1:
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print(f"Found multiple data.yaml files; using {matches[0]}")
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return matches[0]
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def _split_exists(dataset_root: Path, value: Any) -> bool:
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if value is None:
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return False
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split_path = Path(str(value))
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if split_path.is_absolute():
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return split_path.exists()
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return (dataset_root / split_path).exists()
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def prepare_data_yaml(data_yaml: Path) -> Path:
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"""Write a SageMaker-local data file with absolute dataset paths."""
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"""Write a SageMaker-local data file rooted at the uploaded dataset."""
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dataset_root = data_yaml.parent
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data = yaml.safe_load(data_yaml.read_text(encoding="utf-8"))
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if not isinstance(data, dict):
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@@ -62,24 +54,8 @@ def prepare_data_yaml(data_yaml: Path) -> Path:
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normalized = dict(data)
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normalized["path"] = str(dataset_root)
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for split_name in ("train", "val", "valid", "test"):
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split_value = normalized.get(split_name)
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if split_value is None:
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continue
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split_path = Path(str(split_value))
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if split_path.is_absolute():
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normalized[split_name] = str(split_path)
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else:
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normalized[split_name] = str((dataset_root / split_path).resolve())
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if "val" not in normalized and "valid" in normalized:
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normalized["val"] = normalized["valid"]
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if not _split_exists(dataset_root, normalized.get("train")):
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raise FileNotFoundError(f"Could not resolve train split from {data_yaml}")
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if not _split_exists(dataset_root, normalized.get("val")):
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raise FileNotFoundError(f"Could not resolve validation split from {data_yaml}")
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normalized["val"] = normalized.pop("valid")
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prepared_path = dataset_root / "data.sagemaker.yaml"
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prepared_path.write_text(yaml.safe_dump(normalized, sort_keys=False), encoding="utf-8")
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@@ -95,11 +71,11 @@ def copy_if_exists(source: Path, destination: Path) -> None:
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def main() -> None:
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args = parse_args()
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train_dir = Path(args.train_dir)
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dataset_dir = Path(args.dataset_dir)
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model_dir = Path(args.model_dir)
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model_dir.mkdir(parents=True, exist_ok=True)
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data_yaml = prepare_data_yaml(find_data_yaml(train_dir, args.data_yaml))
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data_yaml = prepare_data_yaml(find_data_yaml(dataset_dir, args.data_yaml))
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model = YOLO(args.model)
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train_kwargs: dict[str, Any] = {
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