RT-J β€” int4 (Q4-style, mixed-precision) quantized checkpoints

Int4 quantizations of stanford-star/rt-j, the Relational Transformer foundation model for in-context learning over relational databases. Produced and consumed by the RelativeDB native inference engine (cpp/rt_quantize --type q4). Weights stay quantized-resident at inference: the engine's CPU (Accelerate / portable SIMD) and Metal/MPS kernels dequantize inside the GEMM, so DRAM weight traffic is the int4 payload.

Sibling repos: rt-j-int8 Β· rt-j-fp16

File Task head Size
classification/model.q4.safetensors classification / ranking (logits β€” apply sigmoid) 64 MB
regression/model.q4.safetensors regression / forecasting (normalized values) 64 MB

(vs. 171 MB bf16 upstream, 342 MB fp32 in memory.)

Quantization format

Plain safetensors β€” no custom container:

  • Most transformer-block projections (wq/wk/wv/wg, ffn.w1/w3) are uint4 in groups of 32 along the input dim: fp16 (scale, min) pair per group in a <name>.q4_scale companion (U8 payload, two nibbles/byte, low nibble = even index): W[o,i] β‰ˆ nibble * scale + min. Group ranges are chosen by a min-MSE clip search (shrink grid 1.0β†’0.8).
  • The residual-writing projections (wo, ffn.w2) stay int8 with per-row fp32 scales (I8 + <name>.q_scale) β€” the Q4_K_M recipe: their error lands directly on the residual stream every block.
  • The value/col-name encoders, decoder head, norms, biases and mask embeddings stay fp32 β€” input-side error would propagate through all 12 blocks.

Accuracy

Measured on the RelativeDB golden batch (B=5, S=16) against the PyTorch reference; identical on CPU and Metal/MPS:

Metric fp32 int4
yhat max abs. error vs. torch 3.9e-3 1.5e-1
yhat mean abs. error 5.1e-4 2.4e-2
target-score sign / ranking preserved preserved

Int4 is the aggressive end for an 86M-param model: per-score drift is a few hundredths. Use int8 when scores must track fp32 tightly; use int4 when footprint/bandwidth dominates.

Usage (RelativeDB native engine)

# direct path (looser golden gate for int4)
./build/rt_test testdata classification/model.q4.safetensors --tol 100 --device mps

# via the Java / Python / Rust bindings: place the .q4 file next to the fp32
# checkpoint (or point at a directory containing it) and opt in with
export RELATIVEDB_RT_QUANTIZED=q4

The C ABI (rt_model_load) accepts these files directly β€” the format is auto-detected from the tensor dtypes. Quantized checkpoints currently run on the CPU and Metal/MPS backends (CUDA is fp32-only).

Reproduce

cmake -B build -S cpp && cmake --build build -j
./build/rt_quantize <rt-j>/classification/model.safetensors classification/model.q4.safetensors --type q4
./build/rt_quantize <rt-j>/regression/model.safetensors regression/model.q4.safetensors --type q4

License & attribution

Derivative of stanford-star/rt-j (Stanford STAR lab), redistributed under the same CC-BY-NC-SA-4.0 license. Architecture and training details are described in the upstream model card; only the weight storage format differs here.

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