Files
composable_kernel/example/ck_tile
msaffari-amd c8c0eaf982 Add BF16/FP16 vec_k_col_v batch_prefill kernel variants
Emit decode-aligned VEC_K_COL_V pipeline instances (5D vectorized K + 4D
ColumnMajor V) for the non-quant BF16/FP16 batch_prefill path. This mirrors
the FP8 PER_TOKEN_HEAD col-V variant (vlayout="col") but with qscale="no", so
the plain BF16/FP16 prefill path can ingest the decode KV cache layout directly
without an intermediate reshape. Variants cover logits/mask/sink/lse with
bias="no" and dropout="f".

The production hd=128 default tile (bk0=32, bk1=32) is retained unchanged. An
autotune sweep over 516 hd=128 tile instances was run but is not deployed: its
ranking was latency-only (not correctness-gated), and every meaningful-uplift
candidate altered bk0 or bk1, which produces numerically incorrect output for
the vec_k_col_v access pattern (verified vs the FP32 reference). Per-shape tile
selection is therefore deferred to a correctness-gated re-sweep.
2026-06-04 16:31:54 +00:00
..

CK Tile Example Suite

This directory contains a comprehensive suite of examples demonstrating the CK Tile programming model for high-performance GPU kernels. Each example illustrates a key deep learning or HPC operation, implemented using tile-based parallelism, modular pipelines, and data movement policy.


What is CK Tile?

CK Tile is a composable GPU programming API that expresses kernels as a composition of "tiles"—rectangular blocks of computation and data movement. The pipeline & policy orchestrates data movement (global <-> LDS <-> registers), computation, and synchronization, enabling high efficiency and flexibility.


Example Index

Example Operation Description
01_fmha Fused Multi-Head Attention Tile-based FMHA with masking, quantization, and epilogue fusion
02_layernorm2d LayerNorm2D Blockwise layer normalization with fusion and quantization
03_gemm GEMM Matrix multiplication with tilewise parallelism
04_img2col im2col Image-to-column transformation for GEMM-based convolution
05_reduce Reduction Tilewise sum, max, mean reductions
06_permute Permute Generic tensor permutation (up to rank-8)
09_topk_softmax TopK-Softmax Rowwise softmax and top-k selection for MoE gating
10_rmsnorm2d RMSNorm2D Root mean square normalization for LLMs
11_add_rmsnorm2d_rdquant Add + RMSNorm2D + RDQuant Fused add, RMSNorm, and rowwise dynamic quantization
12_smoothquant SmoothQuant Per-channel scaling and quantization for int8 inference
13_moe_sorting MoE Sorting Token-to-expert rearrangement for MoE dispatch
14_moe_smoothquant MoE-SmoothQuant Expert-dependent quantization fused with top-k selection
15_fused_moe Fused MoE End-to-end fused MoE block: sorting, group-GEMM, activation, weighting
16_batched_gemm Batched GEMM Parallel computation of multiple GEMMs
17_grouped_gemm Grouped GEMM Multiple independent GEMMs with different shapes
18_flatmm FLATMM Flattened matrix multiplication for packed layouts
19_gemm_multi_d Multi-D GEMM GEMM with multiple side inputs (bias, residual, etc.)
35_batched_transpose Batched Transpose NCHW <-> NHWC and other layout conversions
36_copy Copy Minimal example for tile-based memory movement
37_transpose Block Transpose High-performance tiled transpose for large tensors

Technical Highlights


How to Build & Run

mkdir build && cd build
sh ../script/cmake-ck-dev.sh ../ <arch>
make -j

Each example produces its own executable in build/bin/.


Learning and Extending


References


Back to Composable Kernel Examples