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@@ -7,10 +7,7 @@
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CMakeUserPresets.json
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build
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build_release
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cmake-build-debug
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cmake-build-release
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build_*
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compile.sh
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**/__*
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@@ -1,26 +1,31 @@
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- Always read the full README.md before building or running any commands.
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- Build command: `cmake --build /home/nico/raptor/raptor/cmake-build-release --target onnx-mlir -j 30`
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- Never use `ninja` directly — it bypasses cmake's configuration and invalidates the build cache.
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- Always read the full README.md before doing anything.
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- Build commands:
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- `cmake --build ./build_release --target onnx-mlir -j 30`
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- `cmake --build ./build_debug --target onnx-mlir -j 30`
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- Never use `ninja` directly: it bypasses cmake's configuration and invalidates the build cache.
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# Code changes
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- Keep changes minimal and localized to the relevant parts of the code.
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- Preserve the existing naming conventions and coding style used in the surrounding code.
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- Keep code easy to read, well organized, and suitable for future extensibility.
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- Keep code easy to read, well organized, and suitable for future extensibility. A function must not be longer than
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200/250 lines for readability and cognitive complexity.
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- Prefer clear naming and structure over comments. Add comments only when they materially improve clarity.
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- Do not rename symbols, move files, or restructure modules unless that is necessary for the requested change.
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# Working style
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- Infer style and conventions from the existing code before introducing new patterns.
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- When several implementation options are possible, prefer the simplest one that fits the current architecture and minimizes churn.
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- When several implementation options are possible, prefer the simplest one that fits the current architecture and
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minimizes churn.
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- Avoid broad refactors unless I explicitly ask for them.
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# Responses
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- When showing code in chat, make it easy to copy-paste into the codebase.
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- Keep outputs focused on the changed parts.
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- At the end of the response, briefly list any bad practices, mistakes, or cleaner alternatives you noticed, separate from the main solution.
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- At the end of the response, briefly list any bad practices, mistakes, or cleaner alternatives you noticed, separate
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from the main solution.
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# Guidelines
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@@ -29,6 +34,7 @@
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**Don't assume. Don't hide confusion. Surface tradeoffs.**
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Before implementing:
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- State your assumptions explicitly. If uncertain, ask.
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- If multiple interpretations exist, present them - don't pick silently.
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- If a simpler approach exists, say so. Push back when warranted.
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@@ -39,8 +45,6 @@ Before implementing:
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**Minimum code that solves the problem. Nothing speculative.**
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- No features beyond what was asked.
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- No abstractions for single-use code.
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- No "flexibility" or "configurability" that wasn't requested.
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- No error handling for impossible scenarios.
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- If you write 200 lines and it could be 50, rewrite it.
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@@ -51,14 +55,16 @@ Ask yourself: "Would a senior engineer say this is overcomplicated?" If yes, sim
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**Touch only what you must. Clean up only your own mess.**
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When editing existing code:
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- Don't "improve" adjacent code, comments, or formatting.
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- Don't refactor things that aren't broken.
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- Match existing style, even if you'd do it differently.
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- If you notice unrelated dead code, mention it - don't delete it.
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When your changes create orphans:
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- Remove imports/variables/functions that YOUR changes made unused.
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- Don't remove pre-existing dead code unless asked.
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- Don't remove pre-existing dead code unless asked, but mention it.
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The test: Every changed line should trace directly to the user's request.
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@@ -67,11 +73,13 @@ The test: Every changed line should trace directly to the user's request.
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**Define success criteria. Loop until verified.**
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Transform tasks into verifiable goals:
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- "Add validation" → "Write tests for invalid inputs, then make them pass"
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- "Fix the bug" → "Write a test that reproduces it, then make it pass"
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- "Refactor X" → "Ensure tests pass before and after"
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For multi-step tasks, state a brief plan:
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```
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1. [Step] → verify: [check]
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2. [Step] → verify: [check]
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@@ -81,5 +89,3 @@ For multi-step tasks, state a brief plan:
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Strong success criteria let you loop independently. Weak criteria ("make it work") require constant clarification.
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---
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**These guidelines are working if:** fewer unnecessary changes in diffs, fewer rewrites due to overcomplication, and clarifying questions come before implementation rather than after mistakes.
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@@ -43,7 +43,7 @@ framework-level details).
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High-level lowering flow:
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```
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ONNX-MLIR ──► Spatial ──► Pim (tensor) ──► Pim (bufferized) ──► PIM JSON
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ONNX-MLIR ──► Spatial ──► Pim (tensor) ──► Pim (bufferized) ──► PIM code
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```
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1. **ONNX → Spatial** (`src/PIM/Conversion/ONNXToSpatial`).
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@@ -55,7 +55,7 @@ ONNX-MLIR ──► Spatial ──► Pim (tensor) ──► Pim (bufferized)
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Conversion patterns are split by op family under
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`Conversion/ONNXToSpatial/Patterns/{Math,NN,Tensor}` (Conv, Gemm, MatMul,
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Elementwise, ReduceMean, Pool, Relu, Sigmoid, Softmax, Concat, Gather,
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Reshape, Resize, Split).
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Reshape, Resize, Split, etc...).
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2. **Spatial → Pim** (`src/PIM/Conversion/SpatialToPim`).
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Lowers Spatial to the `pim` dialect (`src/PIM/Dialect/Pim`), which
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@@ -63,10 +63,7 @@ ONNX-MLIR ──► Spatial ──► Pim (tensor) ──► Pim (bufferized)
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(`pim.send` / `pim.receive`), halts, and crossbar-level operations.
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3. **Merge compute nodes** (`src/PIM/Dialect/Spatial/Transforms/MergeComputeNodes`).
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A DCP-inspired heuristic (Dynamic Critical Path — see the original
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scheduling paper by Kwok & Ahmad,
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[DCP-eScience2007](https://clouds.cis.unimelb.edu.au/papers/DCP-eScience2007.pdf))
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that coarsens the virtual node graph and decides how to group compute
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A PEFT heuristic that coarsens the virtual node graph and decides how to group compute
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nodes onto cores. Our implementation is only DCP-*inspired*: it is a
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heuristic with different assumptions from the paper (different cost
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model, constraints from crossbar capacity / core resources, and a
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