1use crate::device::GpuDeviceInfo;
2use crate::gpu_error::GpuError;
3use crate::policy::GpuDispatchPolicy;
4use faer::Side;
5use gam_linalg::faer_ndarray::FaerCholesky;
6use gam_runtime::warm_start::{Fingerprint, Fingerprinter};
7use ndarray::{Array1, Array2};
8use serde::{Deserialize, Serialize};
9use std::fs;
10use std::path::PathBuf;
11use std::time::Instant;
12
13const SCHEMA_VERSION: u32 = 1;
14const CACHE_ROOT_COMPONENTS: [&str; 4] = ["gam", "gpu", "policy", "v1"];
15const GEMM_DIMS: [usize; 3] = [64, 128, 256];
16const POTRF_DIMS: [usize; 3] = [64, 128, 256];
17const XTWX_DIMS: [(usize, usize); 3] = [(2048, 32), (4096, 64), (8192, 96)];
18const GPU_WIN_RATIO: f64 = 0.95;
19
20const _: () = assert!(
27 2 * (GEMM_DIMS[0] as u128) * (GEMM_DIMS[0] as u128) * (GEMM_DIMS[0] as u128)
28 == GpuDispatchPolicy::MIN_CALIBRATABLE_GEMM_FLOPS
29);
30const _: () = assert!(POTRF_DIMS[0] == GpuDispatchPolicy::MIN_CALIBRATABLE_POTRF_P);
31const _: () = assert!(XTWX_DIMS[0].0 == GpuDispatchPolicy::MIN_CALIBRATABLE_ROW_KERNEL_N);
32
33#[derive(Clone, Debug, Serialize, Deserialize)]
34struct CachedCalibration {
35 schema_version: u32,
36 device_fingerprint: String,
37 policy: GpuDispatchPolicy,
38 measurements: Vec<MeasurementRecord>,
39}
40
41#[derive(Clone, Debug, Serialize, Deserialize)]
42struct MeasurementRecord {
43 operation: String,
44 rows: usize,
45 cols: usize,
46 inner: usize,
47 flops: usize,
48 cpu_seconds: f64,
49 gpu_seconds: f64,
50}
51
52#[derive(Clone, Debug)]
53struct Measurement {
54 operation: &'static str,
55 rows: usize,
56 cols: usize,
57 inner: usize,
58 flops: usize,
59 cpu_seconds: f64,
60 gpu_seconds: f64,
61}
62
63pub(crate) fn calibrated_policy_for_device(device: &GpuDeviceInfo) -> GpuDispatchPolicy {
64 let fingerprint = device_fingerprint(device);
65 if let Some(cached) = load_cached_policy(fingerprint) {
66 log::info!(
67 "[GPU] loaded calibrated dispatch policy for {} ({fingerprint})",
68 device.name
69 );
70 return cached;
71 }
72
73 match calibrate_device(device, fingerprint) {
74 Ok(record) => {
75 let policy = record.policy.clone();
76 store_cached_policy(fingerprint, &record);
77 policy
78 }
79 Err(err) => {
80 log::warn!(
81 "[GPU] dispatch calibration unavailable for {}: {}; using default policy",
82 device.name,
83 err
84 );
85 GpuDispatchPolicy::default()
86 }
87 }
88}
89
90fn calibrate_device(
91 device: &GpuDeviceInfo,
92 fingerprint: Fingerprint,
93) -> Result<CachedCalibration, GpuError> {
94 let mut measurements = Vec::new();
95 measurements.extend(measure_gemm(device.ordinal)?);
96 measurements.extend(measure_potrf(device.ordinal)?);
97 measurements.extend(measure_xtwx(device.ordinal)?);
98 if measurements.is_empty() {
99 return Err(GpuError::CalibrationFailed {
100 reason: "no GPU calibration measurements completed".to_string(),
101 });
102 }
103
104 let mut policy = GpuDispatchPolicy::default();
105 if let Some(flops) = crossover_flops(&measurements, "gemm", policy.gemm_min_flops) {
106 policy.gemm_min_flops = flops;
107 }
108 if let Some(flops) = crossover_flops(&measurements, "xtwx", policy.xtwx_flops_min) {
109 policy.xtwx_flops_min = flops;
110 }
111 if let Some(rows) = crossover_rows(&measurements, "xtwx", policy.xtwx_n_min) {
112 policy.xtwx_n_min = rows;
113 policy.row_kernel_min_n = rows;
114 policy.fused_kernel_min_n = rows.saturating_mul(2);
115 }
116 if let Some(p) = crossover_rows(&measurements, "potrf", policy.potrf_min_p) {
117 policy.potrf_min_p = p;
118 policy.prefer_gpu_factorization_min_p = p;
119 }
120
121 log::info!(
122 "[GPU] calibrated dispatch policy for {} ({fingerprint}) from {} measurements",
123 device.name,
124 measurements.len()
125 );
126
127 Ok(CachedCalibration {
128 schema_version: SCHEMA_VERSION,
129 device_fingerprint: fingerprint.to_hex(),
130 policy,
131 measurements: measurements
132 .into_iter()
133 .map(Measurement::into_record)
134 .collect(),
135 })
136}
137
138fn measure_gemm(ordinal: usize) -> Result<Vec<Measurement>, GpuError> {
139 let mut out = Vec::with_capacity(GEMM_DIMS.len());
140 for dim in GEMM_DIMS {
141 let a = deterministic_matrix(dim, dim, 0.13);
142 let b = deterministic_matrix(dim, dim, 0.37);
143 let cpu_seconds = time_cpu(|| a.dot(&b))?;
144 let gpu_seconds = time_gpu(|| {
145 crate::blas::gemm_on_ordinal_cuda(ordinal, a.view(), b.view(), false, false)
146 })?;
147 out.push(Measurement {
148 operation: "gemm",
149 rows: dim,
150 cols: dim,
151 inner: dim,
152 flops: 2usize
153 .saturating_mul(dim)
154 .saturating_mul(dim)
155 .saturating_mul(dim),
156 cpu_seconds,
157 gpu_seconds,
158 });
159 }
160 Ok(out)
161}
162
163fn measure_potrf(ordinal: usize) -> Result<Vec<Measurement>, GpuError> {
164 let mut out = Vec::with_capacity(POTRF_DIMS.len());
165 for dim in POTRF_DIMS {
166 let a = deterministic_spd_matrix(dim);
167 let cpu_seconds = time_gpu_result(|| {
168 a.cholesky(Side::Lower)
169 .map(|factor| factor.lower_triangular())
170 .map_err(|err| format!("cpu POTRF failed: {err}"))
171 })?;
172 let gpu_seconds =
173 time_gpu_result(|| crate::solver::cholesky_lower_on_ordinal_gpu(ordinal, a.view()))?;
174 out.push(Measurement {
175 operation: "potrf",
176 rows: dim,
177 cols: dim,
178 inner: dim,
179 flops: dim.saturating_mul(dim).saturating_mul(dim) / 3,
180 cpu_seconds,
181 gpu_seconds,
182 });
183 }
184 Ok(out)
185}
186
187fn measure_xtwx(ordinal: usize) -> Result<Vec<Measurement>, GpuError> {
188 let mut out = Vec::with_capacity(XTWX_DIMS.len());
189 for (n, p) in XTWX_DIMS {
190 let x = deterministic_matrix(n, p, 0.61);
191 let w = deterministic_weights(n);
192 let cpu_seconds = time_cpu(|| cpu_xtwx(&x, &w))?;
193 let gpu_seconds =
194 time_gpu(|| crate::blas::xt_diag_x_on_ordinal_cuda(ordinal, x.view(), w.view()))?;
195 out.push(Measurement {
196 operation: "xtwx",
197 rows: n,
198 cols: p,
199 inner: p,
200 flops: 2usize.saturating_mul(n).saturating_mul(p).saturating_mul(p),
201 cpu_seconds,
202 gpu_seconds,
203 });
204 }
205 Ok(out)
206}
207
208fn time_cpu<F>(mut f: F) -> Result<f64, GpuError>
209where
210 F: FnMut() -> Array2<f64>,
211{
212 time_gpu_result(|| Result::<Array2<f64>, GpuError>::Ok(f()))
213}
214
215fn time_gpu<F>(mut f: F) -> Result<f64, GpuError>
216where
217 F: FnMut() -> Option<Array2<f64>>,
218{
219 time_gpu_result(|| {
220 f().ok_or_else(|| GpuError::CalibrationFailed {
221 reason: "GPU calibration kernel returned no result".to_string(),
222 })
223 })
224}
225
226fn time_gpu_result<F, E>(mut f: F) -> Result<f64, GpuError>
227where
228 F: FnMut() -> Result<Array2<f64>, E>,
229 E: std::fmt::Display,
230{
231 let start = Instant::now();
232 let out = f().map_err(|err| GpuError::CalibrationFailed {
233 reason: err.to_string(),
234 })?;
235 let elapsed = start.elapsed().as_secs_f64();
236 let checksum = out.iter().fold(0.0, |acc, value| acc + value.abs());
237 if elapsed.is_finite() && elapsed > 0.0 && checksum.is_finite() {
238 Ok(elapsed)
239 } else {
240 Err(GpuError::CalibrationFailed {
241 reason: format!(
242 "invalid calibration timing/checksum: elapsed={elapsed}, checksum={checksum}"
243 ),
244 })
245 }
246}
247
248fn crossover_flops(
249 measurements: &[Measurement],
250 operation: &'static str,
251 fallback: usize,
252) -> Option<usize> {
253 crossover_measurement(measurements, operation)
254 .map(|measurement| measurement.flops.max(1))
255 .or_else(|| {
256 measurements
257 .iter()
258 .filter(|measurement| measurement.operation == operation)
259 .map(|measurement| measurement.flops)
260 .max()
261 .map(|max_seen| fallback.max(max_seen.saturating_mul(2)))
262 })
263}
264
265fn crossover_rows(
266 measurements: &[Measurement],
267 operation: &'static str,
268 fallback: usize,
269) -> Option<usize> {
270 crossover_measurement(measurements, operation)
271 .map(|measurement| measurement.rows.max(1))
272 .or_else(|| {
273 measurements
274 .iter()
275 .filter(|measurement| measurement.operation == operation)
276 .map(|measurement| measurement.rows)
277 .max()
278 .map(|max_seen| fallback.max(max_seen.saturating_mul(2)))
279 })
280}
281
282fn crossover_measurement<'a>(
283 measurements: &'a [Measurement],
284 operation: &'static str,
285) -> Option<&'a Measurement> {
286 measurements
287 .iter()
288 .filter(|measurement| measurement.operation == operation)
289 .find(|measurement| measurement.gpu_seconds <= measurement.cpu_seconds * GPU_WIN_RATIO)
290}
291
292fn deterministic_matrix(rows: usize, cols: usize, phase: f64) -> Array2<f64> {
293 Array2::from_shape_fn((rows, cols), |(row, col)| {
294 let x = (row as f64 + 1.0) * 0.017 + (col as f64 + 1.0) * 0.031 + phase;
295 x.sin() + 0.25 * (2.0 * x).cos()
296 })
297}
298
299fn deterministic_spd_matrix(dim: usize) -> Array2<f64> {
300 let a = deterministic_matrix(dim, dim, 0.89);
301 let mut spd = a.t().dot(&a);
302 for idx in 0..dim {
303 spd[[idx, idx]] += dim as f64;
304 }
305 spd
306}
307
308fn deterministic_weights(n: usize) -> Array1<f64> {
309 Array1::from_shape_fn(n, |idx| 0.5 + ((idx as f64 + 1.0) * 0.019).sin().abs())
310}
311
312fn cpu_xtwx(x: &Array2<f64>, w: &Array1<f64>) -> Array2<f64> {
313 let mut weighted = x.clone();
314 for (mut row, weight) in weighted.outer_iter_mut().zip(w.iter()) {
315 row *= *weight;
316 }
317 x.t().dot(&weighted)
318}
319
320fn load_cached_policy(fingerprint: Fingerprint) -> Option<GpuDispatchPolicy> {
321 let path = cache_path(fingerprint);
322 let bytes = fs::read(path).ok()?;
323 let record: CachedCalibration = serde_json::from_slice(&bytes).ok()?;
324 if record.schema_version == SCHEMA_VERSION && record.device_fingerprint == fingerprint.to_hex()
325 {
326 Some(record.policy)
327 } else {
328 None
329 }
330}
331
332fn store_cached_policy(fingerprint: Fingerprint, record: &CachedCalibration) {
333 let path = cache_path(fingerprint);
334 if let Some(parent) = path.parent() {
335 if let Err(err) = fs::create_dir_all(parent) {
336 log::warn!("[GPU] unable to create calibration cache dir: {err}");
337 return;
338 }
339 }
340 let tmp = path.with_extension("json.tmp");
341 let bytes = match serde_json::to_vec_pretty(record) {
342 Ok(bytes) => bytes,
343 Err(err) => {
344 log::warn!("[GPU] unable to serialize calibration cache: {err}");
345 return;
346 }
347 };
348 if let Err(err) = fs::write(&tmp, bytes).and_then(|_| fs::rename(&tmp, &path)) {
349 log::warn!("[GPU] unable to write calibration cache: {err}");
350 }
351}
352
353fn cache_path(fingerprint: Fingerprint) -> PathBuf {
354 let mut root = std::env::temp_dir();
355 for component in CACHE_ROOT_COMPONENTS {
356 root.push(component);
357 }
358 root.push(format!("{fingerprint}.json"));
359 root
360}
361
362fn device_fingerprint(device: &GpuDeviceInfo) -> Fingerprint {
363 let mut fp = Fingerprinter::new();
364 fp.absorb_tag(b"gpu-dispatch-calibration");
365 fp.absorb_u64(b"schema-version", u64::from(SCHEMA_VERSION));
366 fp.absorb_str(b"name", &device.name);
367 fp.absorb_u64(
368 b"compute-major",
369 u64::try_from(device.capability.compute_major).unwrap_or(0),
370 );
371 fp.absorb_u64(
372 b"compute-minor",
373 u64::try_from(device.capability.compute_minor).unwrap_or(0),
374 );
375 fp.absorb_u64(b"sm-count", u64::try_from(device.sm_count).unwrap_or(0));
376 fp.absorb_u64(
377 b"max-threads-per-sm",
378 u64::try_from(device.max_threads_per_sm).unwrap_or(0),
379 );
380 fp.absorb_u64(
381 b"max-shared-mem-per-block",
382 device.max_shared_mem_per_block as u64,
383 );
384 fp.absorb_u64(b"l2-cache-bytes", device.l2_cache_bytes as u64);
385 fp.absorb_u64(b"total-mem-bytes", device.total_mem_bytes as u64);
386 fp.absorb_u64(b"ecc-enabled", bool_fingerprint_value(device.ecc_enabled));
387 fp.absorb_u64(b"integrated", bool_fingerprint_value(device.integrated));
388 fp.absorb_u64(b"mig-mode", bool_fingerprint_value(device.mig_mode));
389 fp.finalize()
390}
391
392const fn bool_fingerprint_value(value: bool) -> u64 {
393 if value { 1 } else { 0 }
394}
395
396impl Measurement {
397 fn into_record(self) -> MeasurementRecord {
398 MeasurementRecord {
399 operation: self.operation.to_string(),
400 rows: self.rows,
401 cols: self.cols,
402 inner: self.inner,
403 flops: self.flops,
404 cpu_seconds: self.cpu_seconds,
405 gpu_seconds: self.gpu_seconds,
406 }
407 }
408}
409
410#[cfg(test)]
411mod tests {
412 use super::*;
413 use crate::device::GpuCapability;
414
415 fn measurement(
416 operation: &'static str,
417 rows: usize,
418 cols: usize,
419 flops: usize,
420 cpu_seconds: f64,
421 gpu_seconds: f64,
422 ) -> Measurement {
423 Measurement {
424 operation,
425 rows,
426 cols,
427 inner: cols,
428 flops,
429 cpu_seconds,
430 gpu_seconds,
431 }
432 }
433
434 #[test]
435 fn calibration_crossover_uses_first_measured_gpu_win() {
436 let measurements = vec![
437 measurement("gemm", 64, 64, 524_288, 0.001, 0.004),
438 measurement("gemm", 128, 128, 4_194_304, 0.010, 0.009),
439 measurement("gemm", 256, 256, 33_554_432, 0.080, 0.010),
440 ];
441
442 assert_eq!(
443 crossover_flops(&measurements, "gemm", 100_000_000),
444 Some(4_194_304)
445 );
446 }
447
448 #[test]
449 fn calibration_crossover_raises_threshold_when_gpu_never_wins() {
450 let measurements = vec![
451 measurement("xtwx", 2_048, 32, 4_194_304, 0.001, 0.004),
452 measurement("xtwx", 4_096, 64, 33_554_432, 0.010, 0.040),
453 measurement("xtwx", 8_192, 96, 150_994_944, 0.080, 0.400),
454 ];
455
456 assert_eq!(
457 crossover_flops(&measurements, "xtwx", 100_000_000),
458 Some(301_989_888)
459 );
460 assert_eq!(crossover_rows(&measurements, "xtwx", 50_000), Some(50_000));
461 }
462
463 #[test]
464 fn calibration_cache_key_tracks_device_fingerprint() {
465 let device = GpuDeviceInfo {
466 ordinal: 0,
467 name: "unit-test GPU".to_string(),
468 capability: GpuCapability::from_compute_capability(8, 0),
469 sm_count: 108,
470 max_threads_per_sm: 2048,
471 max_shared_mem_per_block: 99_328,
472 l2_cache_bytes: 40 * 1024 * 1024,
473 total_mem_bytes: 80 * 1024 * 1024 * 1024,
474 free_mem_bytes: 70 * 1024 * 1024 * 1024,
475 ecc_enabled: true,
476 integrated: false,
477 mig_mode: false,
478 };
479
480 let fingerprint = device_fingerprint(&device);
481 let path = cache_path(fingerprint);
482 assert!(path.ends_with(format!("{}.json", fingerprint.to_hex())));
483 assert!(
484 path.components()
485 .map(|component| component.as_os_str().to_string_lossy().into_owned())
486 .collect::<Vec<_>>()
487 .windows(CACHE_ROOT_COMPONENTS.len())
488 .any(|window| window == CACHE_ROOT_COMPONENTS)
489 );
490 }
491}