Can Granite Code 20B run on MacBook Pro M2 Max 32GB?
YES — Tight Fit
Granite Code 20B needs ~19.7 GB VRAM. MacBook Pro M2 Max 32GB has 23.0 GB. With Q4_K_M quantization, expect ~19 tok/s.
Operating mode
Choose the run profile you care about
Interactive favors responsiveness, while light API and scale-out lean harder on serving readiness. The fit stays the same, but the recommendation lens changes.
Current mode
Balanced
Balanced for general local use. Keeps the ranking neutral across personal and serving workflows.
Select quantization to explore
Fit status
Tight fit
Decode
20.5 tok/s
TTFT
9427 ms
Safe context
8K
Memory
19.7 GB / 23.0 GB
Memory breakdown
See how fast it feels
What limits this setup
This setup is broadly balanced for this model.
Shared-memory contention still exists
The OS, browser, and inference runtime all compete for the same physical memory pool, so real-world headroom is less forgiving than raw capacity suggests.
Best improvement path
Performance by workload
| Workload | Grade | Fit | Decode | TTFT | Context |
|---|---|---|---|---|---|
| Chat | A | Runs well | 19.0 tok/s | 5553 ms | 8K |
| Coding | A | Tight fit | 19.0 tok/s | 10181 ms | 8K |
| Agentic Coding | A | Runs with offload | 19.0 tok/s | 14808 ms | 8K |
| Reasoning | A | Tight fit | 19.0 tok/s | 12032 ms | 8K |
| RAG | A | Runs with offload | 19.0 tok/s | 18510 ms | 8K |
Quantization options
How Granite Code 20B (20B params) fits at each quantization level on MacBook Pro M2 Max 32GB (23.0 GB usable).
| Quant | Bits | VRAM | Quality | Fit |
|---|---|---|---|---|
Q2_K | 2 | 7.8 GB | Low | A77 |
Q3_K_S | 3 | 9.8 GB | Low | A79 |
NVFP4 | 4 | 11.2 GB | Medium | A80 |
Q4_K_M | 4 | 12.2 GB | Medium | A80 |
Q5_K_M | 5 | 14.4 GB | High | A80 |
Q6_KBest for your GPU | 6 | 16.4 GB | High | A79 |
Q8_0 | 8 | 21.4 GB | Very High | F0 |
F16 | 16 | 41.0 GB | Maximum | F0 |
Get started
Copy-paste commands to run Granite Code 20B on your machine.
Run
ollama run granite-code:20bYour hardware
More models your MacBook Pro M2 Max 32GB can run
| Model | Params | Grade | Decode | Capabilities |
|---|---|---|---|---|
| 30.5B | A | 31.5 tok/s | ||
| 27B | S | 14.1 tok/s | ||
| 27B | S | 11.6 tok/s | ||
| 30B | S | 33.3 tok/s | ||
| 35B | A | 27.5 tok/s |
Frequently asked questions
Can MacBook Pro M2 Max 32GB run Granite Code 20B?
Yes, MacBook Pro M2 Max 32GB can run Granite Code 20B with a A grade (Tight fit). Expected decode speed: 19.0 tok/s.
How much VRAM does Granite Code 20B need?
Granite Code 20B (20B parameters) requires approximately 19.7 GB of memory with Q4_K_M quantization.
What is the best quantization for Granite Code 20B?
The recommended quantization for Granite Code 20B is Q4_K_M, which balances quality and memory efficiency.
What speed will Granite Code 20B run at on MacBook Pro M2 Max 32GB?
On MacBook Pro M2 Max 32GB, Granite Code 20B achieves approximately 19.0 tokens per second decode speed with a time-to-first-token of 10181ms using Q4_K_M quantization.
Can MacBook Pro M2 Max 32GB run Granite Code 20B for coding?
For coding workloads, Granite Code 20B on MacBook Pro M2 Max 32GB receives a A grade with 19.0 tok/s and 8K context.
What context window can Granite Code 20B use on MacBook Pro M2 Max 32GB?
On MacBook Pro M2 Max 32GB, Granite Code 20B can safely use up to 8K tokens of context. The model's official context limit is 8K, but available memory constrains the safe maximum.
Is unified memory on MacBook Pro M2 Max 32GB as fast as VRAM for Granite Code 20B?
Not always. MacBook Pro M2 Max 32GB can often fit larger models thanks to unified memory, but a discrete GPU with dedicated high-bandwidth VRAM may still decode faster once the model fits. For this combination, the important distinction is capacity versus sustained throughput.
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