runner.go 15.1 KB
Newer Older
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
package discover

// Runner based GPU discovery

import (
	"context"
	"io"
	"log/slog"
	"os"
	"os/exec"
	"path/filepath"
	"runtime"
	"sort"
	"strconv"
	"strings"
	"sync"
	"time"

	"github.com/ollama/ollama/envconfig"
	"github.com/ollama/ollama/format"
21
	"github.com/ollama/ollama/llm"
22
23
24
25
26
27
28
29
30
31
32
33
34
	"github.com/ollama/ollama/logutil"
	"github.com/ollama/ollama/ml"
)

var (
	deviceMu     sync.Mutex
	devices      []ml.DeviceInfo
	libDirs      map[string]struct{}
	rocmDir      string
	exe          string
	bootstrapped bool
)

35
func GPUDevices(ctx context.Context, runners []ml.FilteredRunnerDiscovery) []ml.DeviceInfo {
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
	deviceMu.Lock()
	defer deviceMu.Unlock()
	startDiscovery := time.Now()
	msg := "overall device VRAM discovery took"
	defer func() {
		slog.Debug(msg, "duration", time.Since(startDiscovery))
	}()

	if !bootstrapped {
		msg = "GPU bootstrap discovery took"
		libDirs = make(map[string]struct{})
		var err error
		exe, err = os.Executable()
		if err != nil {
			slog.Error("unable to lookup executable path", "error", err)
			return nil
		}
		if eval, err := filepath.EvalSymlinks(exe); err == nil {
			exe = eval
		}
		files, err := filepath.Glob(filepath.Join(LibOllamaPath, "*", "*ggml-*"))
		if err != nil {
			slog.Debug("unable to lookup runner library directories", "error", err)
		}
		for _, file := range files {
			libDirs[filepath.Dir(file)] = struct{}{}
		}

		// Our current packaging model places ggml-hip in the main directory
		// but keeps rocm in an isolated directory.  We have to add it to
		// the [LD_LIBRARY_]PATH so ggml-hip will load properly
		rocmDir = filepath.Join(LibOllamaPath, "rocm")
		if _, err := os.Stat(rocmDir); err != nil {
			rocmDir = ""
		}

		if len(libDirs) == 0 {
			libDirs[""] = struct{}{}
		}

		slog.Info("discovering available GPUs...")
77
78
		requested := envconfig.LLMLibrary()
		jetpack := cudaJetpack()
79
80
81
82
83
84

		// For our initial discovery pass, we gather all the known GPUs through
		// all the libraries that were detected. This pass may include GPUs that
		// are enumerated, but not actually supported.
		// We run this in serial to avoid potentially initializing a GPU multiple
		// times concurrently leading to memory contention
85
		// TODO refactor so we group the lib dirs and do serial per version, but parallel for different libs
86
		for dir := range libDirs {
87
			bootstrapTimeout := 30 * time.Second
88
			var dirs []string
89
90
91
92
93
94
95
96
			if dir != "" {
				if requested != "" && filepath.Base(dir) != requested {
					slog.Debug("skipping available library at users request", "requested", requested, "libDir", dir)
					continue
				} else if jetpack != "" && filepath.Base(dir) != "cuda_"+jetpack {
					continue
				}
			}
97
98
99
100
101
			if dir == "" {
				dirs = []string{LibOllamaPath}
			} else {
				dirs = []string{LibOllamaPath, dir}
			}
102
103
104
105
106

			// ROCm can take a long time on some systems, so give it more time before giving up
			if dir != "" && strings.Contains(filepath.Base(dir), "rocm") {
				bootstrapTimeout = 60 * time.Second
			}
107
108
109
110
			// Typically bootstrapping takes < 1s, but on some systems, with devices
			// in low power/idle mode, initialization can take multiple seconds.  We
			// set a long timeout just for bootstrap discovery to reduce the chance
			// of giving up too quickly
111
			ctx1stPass, cancel := context.WithTimeout(ctx, bootstrapTimeout)
112
113
114
115
116
117
118
119
			defer cancel()

			// For this pass, we retain duplicates in case any are incompatible with some libraries
			devices = append(devices, bootstrapDevices(ctx1stPass, dirs, nil)...)
		}

		// In the second pass, we more deeply initialize the GPUs to weed out devices that
		// aren't supported by a given library.  We run this phase in parallel to speed up discovery.
120
		slog.Debug("evluating which if any devices to filter out", "initial_count", len(devices))
121
122
123
124
125
126
127
128
129
130
131
		ctx2ndPass, cancel := context.WithTimeout(ctx, 30*time.Second)
		defer cancel()
		var wg sync.WaitGroup
		needsDelete := make([]bool, len(devices))
		supportedMu := sync.Mutex{}
		supported := make(map[string]map[string]map[string]int) // [Library][libDir][ID] = pre-deletion devices index
		for i := range devices {
			libDir := devices[i].LibraryPath[len(devices[i].LibraryPath)-1]
			if devices[i].Library == "Metal" {
				continue
			}
132
			slog.Debug("verifying GPU is supported", "library", libDir, "description", devices[i].Description, "compute", devices[i].Compute(), "id", devices[i].ID, "pci_id", devices[i].PCIID)
133
134
135
136
			wg.Add(1)
			go func(i int) {
				defer wg.Done()
				var envVar string
137
				id := devices[i].ID
138
139
140
141
142
143
				if devices[i].Library == "ROCm" {
					if runtime.GOOS != "linux" {
						envVar = "HIP_VISIBLE_DEVICES"
					} else {
						envVar = "ROCR_VISIBLE_DEVICES"
					}
144
				} else if devices[i].Library == "CUDA" {
145
					envVar = "CUDA_VISIBLE_DEVICES"
146
147
148
149
150
				} else if devices[i].Library == "Vulkan" {
					id = devices[i].FilteredID
					envVar = "GGML_VK_VISIBLE_DEVICES"
				} else {
					slog.Error("Unknown Library:" + devices[i].Library)
151
152
				}

153
154
155
				extraEnvs := map[string]string{
					"GGML_CUDA_INIT": "1", // force deep initialization to trigger crash on unsupported GPUs
					envVar:           id,  // Filter to just this one GPU
156
157
				}
				if len(bootstrapDevices(ctx2ndPass, devices[i].LibraryPath, extraEnvs)) == 0 {
158
159
160
161
162
163
					slog.Debug("filtering device which didn't fully initialize",
						"id", devices[i].ID,
						"libdir", devices[i].LibraryPath[len(devices[i].LibraryPath)-1],
						"pci_id", devices[i].PCIID,
						"library", devices[i].Library,
					)
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
					needsDelete[i] = true
				} else {
					supportedMu.Lock()
					if _, ok := supported[devices[i].Library]; !ok {
						supported[devices[i].Library] = make(map[string]map[string]int)
					}
					if _, ok := supported[devices[i].Library][libDir]; !ok {
						supported[devices[i].Library][libDir] = make(map[string]int)
					}
					supported[devices[i].Library][libDir][devices[i].ID] = i
					supportedMu.Unlock()
				}
			}(i)
		}
		wg.Wait()
179
		logutil.Trace("supported GPU library combinations before filtering", "supported", supported)
180

181
182
		filterOutVulkanThatAreSupportedByOtherGPU(needsDelete)

183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
		// Mark for deletion any overlaps - favoring the library version that can cover all GPUs if possible
		filterOverlapByLibrary(supported, needsDelete)

		// TODO if we ever support multiple ROCm library versions this algorithm will need to be adjusted to keep the rocmID numeric value correct
		rocmID := 0
		for i := 0; i < len(needsDelete); i++ {
			if needsDelete[i] {
				logutil.Trace("removing unsupported or overlapping GPU combination", "libDir", devices[i].LibraryPath[len(devices[i].LibraryPath)-1], "description", devices[i].Description, "compute", devices[i].Compute(), "pci_id", devices[i].PCIID)
				devices = append(devices[:i], devices[i+1:]...)
				needsDelete = append(needsDelete[:i], needsDelete[i+1:]...)
				i--
			} else if devices[i].Library == "ROCm" {
				if _, err := strconv.Atoi(devices[i].ID); err == nil {
					// Replace the numeric ID with the post-filtered IDs
					devices[i].FilteredID = devices[i].ID
					devices[i].ID = strconv.Itoa(rocmID)
				}
				rocmID++
			}
		}

204
		// Now filter out any overlap with different libraries (favor CUDA/HIP over others)
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
		for i := 0; i < len(devices); i++ {
			for j := i + 1; j < len(devices); j++ {
				// For this pass, we only drop exact duplicates
				switch devices[i].Compare(devices[j]) {
				case ml.SameBackendDevice:
					// Same library and device, skip it
					devices = append(devices[:j], devices[j+1:]...)
					j--
					continue
				case ml.DuplicateDevice:
					// Different library, choose based on priority
					var droppedDevice ml.DeviceInfo
					if devices[i].Library == "CUDA" || devices[i].Library == "ROCm" {
						droppedDevice = devices[j]
					} else {
						droppedDevice = devices[i]
						devices[i] = devices[j]
					}
					devices = append(devices[:j], devices[j+1:]...)
					j--

					typeStr := "discrete"
					if droppedDevice.Integrated {
						typeStr = "iGPU"
					}
					slog.Debug("dropping duplicate device",
						"id", droppedDevice.ID,
						"library", droppedDevice.Library,
						"compute", droppedDevice.Compute(),
						"name", droppedDevice.Name,
						"description", droppedDevice.Description,
						"libdirs", strings.Join(droppedDevice.LibraryPath, ","),
						"driver", droppedDevice.Driver(),
						"pci_id", droppedDevice.PCIID,
						"type", typeStr,
						"total", format.HumanBytes2(droppedDevice.TotalMemory),
						"available", format.HumanBytes2(droppedDevice.FreeMemory),
					)
					continue
				}
			}
		}

		// Reset the libDirs to what we actually wind up using for future refreshes
		libDirs = make(map[string]struct{})
		for _, dev := range devices {
			dir := dev.LibraryPath[len(dev.LibraryPath)-1]
			if dir != LibOllamaPath {
				libDirs[dir] = struct{}{}
			}
		}
		if len(libDirs) == 0 {
			libDirs[""] = struct{}{}
		}

		bootstrapped = true
	} else {
		if runtime.GOOS == "darwin" && runtime.GOARCH == "arm64" {
			// metal never updates free VRAM
			return devices
		}

		slog.Debug("refreshing free memory")
		updated := make([]bool, len(devices))
		allDone := func() bool {
			allDone := true
			for _, done := range updated {
				if !done {
					allDone = false
					break
				}
			}
			return allDone
		}

		// First try to use existing runners to refresh VRAM since they're already
		// active on GPU(s)
		for _, runner := range runners {
			if runner == nil {
				continue
			}
			deviceIDs := runner.GetActiveDeviceIDs()
			if len(deviceIDs) == 0 {
				// Skip this runner since it doesn't have active GPU devices
				continue
			}

			// Check to see if this runner is active on any devices that need a refresh
			skip := true
		devCheck:
			for _, dev := range deviceIDs {
				for i := range devices {
					if dev == devices[i].DeviceID {
						if !updated[i] {
							skip = false
							break devCheck
						}
					}
				}
			}
			if skip {
				continue
			}

			// Typical refresh on existing runner is ~500ms but allow longer if the system
			// is under stress before giving up and using stale data.
			ctx, cancel := context.WithTimeout(ctx, 3*time.Second)
			defer cancel()
			start := time.Now()
			updatedDevices := runner.GetDeviceInfos(ctx)
			slog.Debug("existing runner discovery took", "duration", time.Since(start))
			for _, u := range updatedDevices {
				for i := range devices {
					if u.DeviceID == devices[i].DeviceID {
						updated[i] = true
						devices[i].FreeMemory = u.FreeMemory
						break
					}
				}
			}
			// Short circuit if we've updated all the devices
			if allDone() {
				break
			}
		}
		if !allDone() {
			slog.Debug("unable to refresh all GPUs with existing runners, performing bootstrap discovery")

			// Bootstrapping may take longer in some cases (AMD windows), but we
			// would rather use stale free data to get the model running sooner
			ctx, cancel := context.WithTimeout(ctx, 3*time.Second)
			defer cancel()

338
339
340
			// Apply any dev filters to avoid re-discovering unsupported devices, and get IDs correct
			devFilter := ml.GetVisibleDevicesEnv(devices)

341
			for dir := range libDirs {
342
				updatedDevices := bootstrapDevices(ctx, []string{LibOllamaPath, dir}, devFilter)
343
344
				for _, u := range updatedDevices {
					for i := range devices {
345
						if u.DeviceID == devices[i].DeviceID && u.PCIID == devices[i].PCIID {
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
							updated[i] = true
							devices[i].FreeMemory = u.FreeMemory
							break
						}
					}
					// TODO - consider evaluating if new devices have appeared (e.g. hotplug)
				}
				if allDone() {
					break
				}
			}
			if !allDone() {
				slog.Warn("unable to refresh free memory, using old values")
			}
		}
	}

	return devices
}

366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
func filterOutVulkanThatAreSupportedByOtherGPU(needsDelete []bool) {
	// Filter out Vulkan devices that share a PCI ID with a non-Vulkan device that is not marked for deletion
	for i := range devices {
		if devices[i].Library != "Vulkan" || needsDelete[i] {
			continue
		}
		if devices[i].PCIID == "" {
			continue
		}
		for j := range devices {
			if i == j {
				continue
			}
			if devices[j].PCIID == "" {
				continue
			}
			if devices[j].PCIID == devices[i].PCIID && devices[j].Library != "Vulkan" && !needsDelete[j] {
				needsDelete[i] = true
384
385
386
387
				slog.Debug("filtering device with duplicate PCI ID",
					"id", devices[i].ID,
					"library", devices[i].Library,
					"libdir", devices[i].LibraryPath[len(devices[i].LibraryPath)-1],
388
389
					"pci_id", devices[i].PCIID,
					"kept_id", devices[j].ID,
390
					"kept_library", devices[j].Library,
391
392
393
394
395
396
397
				)
				break
			}
		}
	}
}

398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
434
func filterOverlapByLibrary(supported map[string]map[string]map[string]int, needsDelete []bool) {
	// For multi-GPU systems, use the newest version that supports all the GPUs
	for _, byLibDirs := range supported {
		libDirs := make([]string, 0, len(byLibDirs))
		for libDir := range byLibDirs {
			libDirs = append(libDirs, libDir)
		}
		sort.Sort(sort.Reverse(sort.StringSlice(libDirs)))
		anyMissing := false
		var newest string
		for _, newest = range libDirs {
			for _, libDir := range libDirs {
				if libDir == newest {
					continue
				}
				if len(byLibDirs[newest]) != len(byLibDirs[libDir]) {
					anyMissing = true
					break
				}
				for dev := range byLibDirs[newest] {
					if _, found := byLibDirs[libDir][dev]; !found {
						anyMissing = true
						break
					}
				}
			}
			if !anyMissing {
				break
			}
		}
		// Now we can mark overlaps for deletion
		for _, libDir := range libDirs {
			if libDir == newest {
				continue
			}
			for dev, i := range byLibDirs[libDir] {
				if _, found := byLibDirs[newest][dev]; found {
435
436
437
438
439
440
					slog.Debug("filtering device with overlapping libraries",
						"id", dev,
						"library", libDir,
						"delete_index", i,
						"kept_library", newest,
					)
441
442
443
444
445
446
447
448
449
450
451
452
453
454
455
456
457
458
459
460
461
462
463
					needsDelete[i] = true
				}
			}
		}
	}
}

type bootstrapRunner struct {
	port int
	cmd  *exec.Cmd
}

func (r *bootstrapRunner) GetPort() int {
	return r.port
}

func (r *bootstrapRunner) HasExited() bool {
	if r.cmd != nil && r.cmd.ProcessState != nil {
		return true
	}
	return false
}

464
465
466
467
468
func bootstrapDevices(ctx context.Context, ollamaLibDirs []string, extraEnvs map[string]string) []ml.DeviceInfo {
	var out io.Writer
	if envconfig.LogLevel() == logutil.LevelTrace {
		out = os.Stderr
	}
469
470
471
472
	start := time.Now()
	defer func() {
		slog.Debug("bootstrap discovery took", "duration", time.Since(start), "OLLAMA_LIBRARY_PATH", ollamaLibDirs, "extra_envs", extraEnvs)
	}()
473

474
475
476
477
478
479
480
481
482
483
	logutil.Trace("starting runner for device discovery", "libDirs", ollamaLibDirs, "extraEnvs", extraEnvs)
	cmd, port, err := llm.StartRunner(
		true, // ollama engine
		"",   // no model
		ollamaLibDirs,
		out,
		extraEnvs,
	)
	if err != nil {
		slog.Debug("failed to start runner to discovery GPUs", "error", err)
484
485
		return nil
	}
486

487
488
489
490
491
	go func() {
		cmd.Wait() // exit status ignored
	}()

	defer cmd.Process.Kill()
492
	devices, err := ml.GetDevicesFromRunner(ctx, &bootstrapRunner{port: port, cmd: cmd})
493
494
495
496
497
498
499
500
501
	if err != nil {
		if cmd.ProcessState != nil && cmd.ProcessState.ExitCode() >= 0 {
			// Expected during bootstrapping while we filter out unsupported AMD GPUs
			logutil.Trace("runner exited", "OLLAMA_LIBRARY_PATH", ollamaLibDirs, "extra_envs", extraEnvs, "code", cmd.ProcessState.ExitCode())
		} else {
			slog.Info("failure during GPU discovery", "OLLAMA_LIBRARY_PATH", ollamaLibDirs, "extra_envs", extraEnvs, "error", err)
		}
	}
	logutil.Trace("runner enumerated devices", "OLLAMA_LIBRARY_PATH", ollamaLibDirs, "devices", devices)
502

503
504
	return devices
}