Source code for stgraph.dataset.temporal.pedalme_dataloader

"""PedalMe Bicycle deliver orders in London."""

from __future__ import annotations

import numpy as np

from stgraph.dataset.temporal.stgraph_temporal_dataset import STGraphTemporalDataset


[docs]class PedalMeDataLoader(STGraphTemporalDataset): r"""PedalMe Bicycle deliver orders in London. This class provides functionality for loading, processing, and accessing the PedalMe dataset for use in deep learning tasks such as node classification. .. list-table:: gdata :widths: 33 33 33 :header-rows: 1 * - num_nodes - num_edges - total_timestamps * - 15 - 225 - 36 Example ------- .. code-block:: python from stgraph.dataset import PedalMeDataLoader pedal = PedalMeDataLoader(verbose=True) num_nodes = pedal.gdata["num_nodes"] num_edges = pedal.gdata["num_edges"] total_timestamps = pedal.gdata["total_timestamps"] edge_list = pedal.get_edges() edge_weights = pedal.get_edge_weights() targets = pedal.get_all_targets() Parameters ---------- verbose : bool, optional Flag to control whether to display verbose info (default is False) lags : int, optional The number of time lags (default is 4) cutoff_time : int, optional The cutoff timestamp for the temporal dataset (default is None) redownload : bool, optional (default is False) Redownload the dataset online and save to cache Attributes ---------- name : str The name of the dataset. gdata : dict Graph meta data. """ def __init__( self: PedalMeDataLoader, verbose: bool = False, lags: int = 4, cutoff_time: int | None = None, redownload: bool = False, ) -> None: """PedalMe Bicycle deliver orders in London.""" super().__init__() if not isinstance(lags, int): raise TypeError("lags must be of type int") if lags < 0: raise ValueError("lags must be a positive integer") if cutoff_time is not None and not isinstance(cutoff_time, int): raise TypeError("cutoff_time must be of type int") if cutoff_time is not None and cutoff_time < 0: raise ValueError("cutoff_time must be a positive integer") if cutoff_time is not None and cutoff_time <= lags: raise ValueError("cutoff_time must be greater than lags") self.name = "PedalMe" self._url = "https://raw.githubusercontent.com/bfGraph/STGraph-Datasets/main/pedalme.json" self._verbose = verbose self._lags = lags self._cutoff_time = cutoff_time if redownload and self._has_dataset_cache(): self._delete_cached_dataset() if self._has_dataset_cache(): self._load_dataset() else: self._download_dataset() self._save_dataset() self._process_dataset() def _process_dataset(self: PedalMeDataLoader) -> None: self._set_total_timestamps() self._set_num_nodes() self._set_num_edges() self._set_edges() self._set_edge_weights() self._set_targets() self._set_features() def _set_total_timestamps(self: PedalMeDataLoader) -> None: r"""Set the total timestamps present in the dataset. It sets the total timestamps present in the dataset into the gdata attribute dictionary. It is the minimum of the cutoff time choosen by the user and the total time periods present in the original dataset. """ if self._cutoff_time is not None: self.gdata["total_timestamps"] = min( self._dataset["time_periods"], self._cutoff_time, ) else: self.gdata["total_timestamps"] = self._dataset["time_periods"] def _set_num_nodes(self: PedalMeDataLoader) -> None: r"""Set the total number of nodes present in the dataset.""" node_set = set() max_node_id = 0 for edge in self._dataset["edges"]: node_set.add(edge[0]) node_set.add(edge[1]) max_node_id = max(max_node_id, edge[0], edge[1]) if max_node_id != len(node_set) - 1: raise ValueError("Node ID labelling is not continuous") self.gdata["num_nodes"] = len(node_set) def _set_num_edges(self: PedalMeDataLoader) -> None: r"""Set the total number of edges present in the dataset.""" self.gdata["num_edges"] = len(self._dataset["edges"]) def _set_edges(self: PedalMeDataLoader) -> None: r"""Set the edge list of the dataset.""" self._edge_list = [(edge[0], edge[1]) for edge in self._dataset["edges"]] def _set_edge_weights(self: PedalMeDataLoader) -> None: r"""Set the edge weights of the dataset.""" edges = self._dataset["edges"] edge_weights = self._dataset["weights"] comb_edge_list = [ (edges[i][0], edges[i][1], edge_weights[i]) for i in range(len(edges)) ] comb_edge_list.sort(key=lambda x: (x[1], x[0])) self._edge_weights = np.array([edge_det[2] for edge_det in comb_edge_list]) def _set_targets(self: PedalMeDataLoader) -> None: r"""Calculate and set the target attributes.""" targets = [ np.array(self._dataset[str(time)]) for time in range(self.gdata["total_timestamps"]) ] stacked_target = np.stack(targets) self._all_targets = np.array( [ stacked_target[i + self._lags, :].T for i in range(stacked_target.shape[0] - self._lags) ], ) def _set_features(self: PedalMeDataLoader) -> None: pass
[docs] def get_edges(self: PedalMeDataLoader) -> list: r"""Return the edge list.""" return self._edge_list
[docs] def get_edge_weights(self: PedalMeDataLoader) -> np.ndarray: r"""Return the edge weights.""" return self._edge_weights
[docs] def get_all_targets(self: PedalMeDataLoader) -> np.ndarray: r"""Return the targets for each timestamp.""" return self._all_targets