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A Large-Scale Database for Graph Representation Learning

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arxiv 2011.07682 v3 pith:3Y7WPA22 submitted 2020-11-16 cs.LG cs.AIcs.CRcs.CVcs.SI

classification cs.LGcs.AIcs.CRcs.CVcs.SI
keywords graphgraphsdatabasemalnetlearningrepresentationlarge-scaleoffers
verification ladder T0 review T1 audit T2 compute T3 formal
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With the rapid emergence of graph representation learning, the construction of new large-scale datasets is necessary to distinguish model capabilities and accurately assess the strengths and weaknesses of each technique. By carefully analyzing existing graph databases, we identify 3 critical components important for advancing the field of graph representation learning: (1) large graphs, (2) many graphs, and (3) class diversity. To date, no single graph database offers all these desired properties. We introduce MalNet, the largest public graph database ever constructed, representing a large-scale ontology of malicious software function call graphs. MalNet contains over 1.2 million graphs, averaging over 15k nodes and 35k edges per graph, across a hierarchy of 47 types and 696 families. Compared to the popular REDDIT-12K database, MalNet offers 105x more graphs, 39x larger graphs on average, and 63x more classes. We provide a detailed analysis of MalNet, discussing its properties and provenance, along with the evaluation of state-of-the-art machine learning and graph neural network techniques. The unprecedented scale and diversity of MalNet offers exciting opportunities to advance the frontiers of graph representation learning--enabling new discoveries and research into imbalanced classification, explainability and the impact of class hardness. The database is publicly available at www.mal-net.org.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. HiGraph: A Large-Scale Hierarchical Graph Dataset for Malware Analysis

    cs.LG 2025-09 conditional novelty 6.0 of 10

    HiGraph is a new public dataset of 595K Android apps represented as hierarchical graphs, containing over 200 million control-flow graphs nested in function-call graphs.

  2. Signal-Based Malware Classification Using 1D CNNs

    cs.CR 2025-09 conditional novelty 5.0 of 10

    Resizing malware binaries to 1D signals and classifying them with 1D CNNs yields slight F1 improvements over 2D byteplot image models on MalNet.

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