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| author | Your Name <[email protected]> | 2026-08-03 16:34:19 -0700 |
|---|---|---|
| committer | Your Name <[email protected]> | 2026-08-04 16:13:31 -0700 |
| commit | 9286b2dd9bd198d40017ca18a74f5d0449d4c0c4 (patch) | |
| tree | 7ebe4ba7bd8412fa4bedf5b53b483d6dda0b865e /src/README.md | |
| parent | 1217fb762ea1b5b4818ac2627f65b34b88b34ebd (diff) | |
Hot Swapping models
Diffstat (limited to 'src/README.md')
| -rw-r--r-- | src/README.md | 24 |
1 files changed, 3 insertions, 21 deletions
diff --git a/src/README.md b/src/README.md index b26f45d..cff34af 100644 --- a/src/README.md +++ b/src/README.md @@ -1,29 +1,11 @@ OH MY GOD SO MUCH HAS CHANGED NEED TO UPDATE -# Spires reservoir simulated on memristor crossbar using memTorch -## setup -### general -python3 -m venv .venv - -pip install -r requirements.txt - -### memTorch - -git clone --recursive https://github.com/coreylammie/MemTorch - -cd memTorch - -python setup.py install - -### spires - +# memristor crossbar readout layer for reservoir computer +##setup +### download spires ## overview ### simulation -Here we are using both memTorch and the Spiresrc libraries working together to simulate -a spires reservoir on a memristor crossbar. memTorch is acting as the weights, simulating -at a physics level including device to device differences, conductance drag, etc.... -Spires is acting as the actual reservoir neurons and determining the spikes. ### benchmark |
