Open deep learning compiler stack for cpu, gpu and specialized accelerators
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Jared Roesch f08015e7fd Fix issue mutating if expressions (#2601)
(cherry picked from commit f6be4d6970)
2019-02-18 14:42:45 -08:00
.github Add link to the reviewers 2018-10-22 23:08:32 -07:00
3rdparty [IR] Update HalideIR (#2582) 2019-02-10 15:21:50 -08:00
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golang [Golang] bugfix #2517 (#2558) 2019-02-06 06:01:33 -06:00
include/tvm [RUNTIME] Enable NDArray type extension (#2598) 2019-02-13 23:40:21 -08:00
jvm Vulkan TVM Android Support (#1571) 2018-08-09 18:41:49 -07:00
nnvm fix get layout in to_relay (#2610) 2019-02-18 14:42:45 -08:00
python Fix issue mutating if expressions (#2601) 2019-02-18 14:42:45 -08:00
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src [Quantize] Skip for same input-output domain scale. (#2611) 2019-02-18 14:42:45 -08:00
tests [TVM][Bugfix] fix storage_rewrite bug when input is big (#2580) 2019-02-14 08:55:29 -08:00
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version.py Version 0.5 (#2604) 2019-02-18 14:42:45 -08:00

README.md

Open Deep Learning Compiler Stack

GitHub license Build Status

Documentation | Contributors | Community | Release Notes

TVM is a compiler stack for deep learning systems. It is designed to close the gap between the productivity-focused deep learning frameworks, and the performance- and efficiency-focused hardware backends. TVM works with deep learning frameworks to provide end to end compilation to different backends. Checkout the tvm stack homepage for more information.

License

© Contributors Licensed under an Apache-2.0 license.

Contribute to TVM

TVM adopts apache committer model, we aim to create an open source project that is maintained and owned by the community. Checkout the Contributor Guide

Acknowledgement

We learnt a lot from the following projects when building TVM.

  • Halide: TVM uses HalideIR as data structure for arithmetic simplification and low level lowering. We also learnt and adapted some part of lowering pipeline from Halide.
  • Loopy: use of integer set analysis and its loop transformation primitives.
  • Theano: the design inspiration of symbolic scan operator for recurrence.