causal.go 17.6 KB
Newer Older
Jesse Gross's avatar
Jesse Gross committed
1
2
3
4
5
6
7
8
9
10
package kvcache

import (
	"errors"
	"fmt"
	"log/slog"
	"math"
	"slices"

	"github.com/ollama/ollama/ml"
11
	"github.com/ollama/ollama/model/input"
Jesse Gross's avatar
Jesse Gross committed
12
13
14
15
16
17
18
19
20
21
22
23
24
)

type shiftFn func(ctx ml.Context, layer int, key, shift ml.Tensor) (ml.Tensor, error)

// Causal cache stores K and V tensors according to their position in the
// sequence. Returns the history and a mask for attending to past tokens
//
// The tensors are of shape embed dim, kv heads, batch size
// The mask is of shape history size, batch size
type Causal struct {
	DType      ml.DType
	windowSize int32

25
26
	opts CausalOptions

27
28
29
	// config controls mostly backend-specific optimizations
	config *ml.CacheConfig

Jesse Gross's avatar
Jesse Gross committed
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
	// ** current forward pass **

	// the active layer for Get and Put
	curLayer int

	// starting location for data storage for this batch
	curLoc int

	// size of the current batch
	curBatchSize int

	// mask of the cache as used by this batch
	curMask ml.Tensor

	// locations in the cache that are needed for this batch
	curCellRange cellRange

47
48
49
50
51
52
	// curSequences is the sequences corresponding to this pass's entries in the cache
	curSequences []int

	// curPositions is the positions corresponding to this pass's entries in the cache
	curPositions []int32

Jesse Gross's avatar
Jesse Gross committed
53
54
55
56
57
58
59
60
61
62
63
64
65
	// ** cache metadata **

	// for each possible location in the cache, stores the position and set of sequences
	// that reference the data there
	cells []cacheCell

	// maps from sequence to the range of locations where it is stored in the cache
	cellRanges map[int]cellRange

	// ** cache data storage **

	shiftFn      shiftFn
	backend      ml.Backend
66
67
	ctxs         map[int]ml.Context
	keys, values map[int]ml.Tensor
Jesse Gross's avatar
Jesse Gross committed
68
69
70
71
72
73
74
75
76
77
78
79
80
}

type cacheCell struct {
	pos       int32
	sequences []int
}

type cellRange struct {
	min int
	max int
}

func NewCausalCache(shift shiftFn) *Causal {
81
82
83
84
85
86
87
	return &Causal{
		windowSize: math.MaxInt32,
		shiftFn:    shift,
		ctxs:       make(map[int]ml.Context),
		keys:       make(map[int]ml.Tensor),
		values:     make(map[int]ml.Tensor),
	}
Jesse Gross's avatar
Jesse Gross committed
88
89
90
}

func NewSWACache(windowSize int32, shift shiftFn) *Causal {
91
92
93
94
95
96
97
	return &Causal{
		windowSize: windowSize,
		shiftFn:    shift,
		ctxs:       make(map[int]ml.Context),
		keys:       make(map[int]ml.Tensor),
		values:     make(map[int]ml.Tensor),
	}
Jesse Gross's avatar
Jesse Gross committed
98
99
}

100
func (c *Causal) Init(backend ml.Backend, dtype ml.DType, maxSequences, capacity, maxBatch int) {
101
102
103
104
105
106
107
108
109
110
111
112
	if c.config == nil {
		var config ml.CacheConfig
		if cc, ok := backend.(ml.BackendCacheConfig); ok {
			config = cc.CacheConfig()
		}
		c.config = &config
	}

	if c.config.CachePadding == 0 {
		c.config.CachePadding = 1
	}

113
114
115
116
117
118
119
120
	if c.config.MaskBatchPadding == 0 {
		c.config.MaskBatchPadding = 1
	}

	if c.config.MaskDType == ml.DTypeOther {
		c.config.MaskDType = ml.DTypeF32
	}

121
	var cacheSize int
122
	if c.windowSize == math.MaxInt32 || capacity < int(c.windowSize) {
123
124
		cacheSize = maxSequences * capacity
	} else {
125
		cacheSize = (maxSequences * int(c.windowSize)) + maxBatch
126
	}
127
128
129
	cacheSize = roundUp(cacheSize, c.config.CachePadding)
	c.cells = make([]cacheCell, cacheSize)

Jesse Gross's avatar
Jesse Gross committed
130
131
132
133
134
	c.DType = dtype
	c.cellRanges = make(map[int]cellRange)
	c.backend = backend
}

135
136
137
138
139
140
141
142
func (c *Causal) SetConfig(config ml.CacheConfig) {
	if c.config != nil {
		panic("config cannot be changed after being previously set, either by the model or backend")
	}

	c.config = &config
}

Jesse Gross's avatar
Jesse Gross committed
143
func (c *Causal) Close() {
144
145
146
	for _, ctx := range c.ctxs {
		ctx.Close()
	}
Jesse Gross's avatar
Jesse Gross committed
147
148
}

149
func (c *Causal) StartForward(ctx ml.Context, batch input.Batch, reserve bool) error {
Jesse Gross's avatar
Jesse Gross committed
150
151
152
	c.curBatchSize = len(batch.Positions)
	c.curSequences = batch.Sequences
	c.curPositions = batch.Positions
153
	c.opts.Except = nil
Jesse Gross's avatar
Jesse Gross committed
154

155
156
	if !reserve {
		c.updateSlidingWindow()
157

158
		var err error
Jesse Gross's avatar
Jesse Gross committed
159
		c.curLoc, err = c.findStartLoc()
160
161
162
		if errors.Is(err, ErrKvCacheFull) {
			c.defrag()
			c.curLoc, err = c.findStartLoc()
Jesse Gross's avatar
Jesse Gross committed
163
		}
164
165
		if err != nil {
			return err
Jesse Gross's avatar
Jesse Gross committed
166
167
		}

168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
		c.curCellRange = newRange()
		for i, pos := range batch.Positions {
			seq := batch.Sequences[i]

			c.cells[c.curLoc+i] = cacheCell{pos: pos, sequences: []int{seq}}

			seqRange, ok := c.cellRanges[seq]
			if !ok {
				seqRange = newRange()
			}

			if c.curLoc+i > seqRange.max {
				seqRange.max = c.curLoc + i
			}
			if seqRange.max > c.curCellRange.max {
				c.curCellRange.max = seqRange.max
			}

			if c.curLoc+i < seqRange.min {
				seqRange.min = c.curLoc + i
			}
			if seqRange.min < c.curCellRange.min {
				c.curCellRange.min = seqRange.min
			}
			c.cellRanges[seq] = seqRange
Jesse Gross's avatar
Jesse Gross committed
193
		}
194
195
196
197
198
199
	} else {
		// If we are reserving memory, don't update any of the cache metadata but set the size
		// to the worst case.
		c.curLoc = 0
		c.curCellRange.min = 0
		c.curCellRange.max = len(c.cells) - 1
Jesse Gross's avatar
Jesse Gross committed
200
201
	}

202
	var err error
203
	c.curMask, err = c.buildMask(ctx)
Jesse Gross's avatar
Jesse Gross committed
204
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

	return err
}

func newRange() cellRange {
	return cellRange{
		min: math.MaxInt,
		max: 0,
	}
}

// Find the first contiguous block of at least curBatchSize
func (c *Causal) findStartLoc() (int, error) {
	var start, count int
	for i := range c.cells {
		if len(c.cells[i].sequences) == 0 {
			count++
			if count >= c.curBatchSize {
				return start, nil
			}
		} else {
			start = i + 1
			count = 0
		}
	}

230
	return 0, fmt.Errorf("%w (length: %v)", ErrKvCacheFull, len(c.cells))
Jesse Gross's avatar
Jesse Gross committed
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
func (c *Causal) updateSlidingWindow() {
	if c.windowSize == math.MaxInt32 {
		return
	}

	// create a map of unique sequences to the lowest position in that sequence
	lowestPos := make(map[int]int32)
	for i := range c.curPositions {
		seq := c.curSequences[i]

		pos, ok := lowestPos[seq]
		if !ok {
			pos = c.curPositions[i]
		} else if c.curPositions[i] < pos {
			pos = c.curPositions[i]
		}

		lowestPos[seq] = pos
	}

	// delete any entries that are beyond the window of the oldest position in the sequence
	for seq, pos := range lowestPos {
		oldRange, ok := c.cellRanges[seq]
		if !ok {
			continue
		}

		newRange := newRange()

		for i := oldRange.min; i <= oldRange.max; i++ {
			if slices.Contains(c.cells[i].sequences, seq) {
				if c.cells[i].pos < pos-c.windowSize {
					c.cells[i].sequences = slices.DeleteFunc(c.cells[i].sequences, func(s int) bool { return s == seq })
				} else {
					newRange.min = min(newRange.min, i)
					newRange.max = max(newRange.max, i)
				}
			}
		}

		c.cellRanges[seq] = newRange
	}
}

277
278
279
280
281
282
283
284
func roundDown(length, pad int) int {
	return (length / pad) * pad
}

func roundUp(length, pad int) int {
	return ((length + pad - 1) / pad) * pad
}

Jesse Gross's avatar
Jesse Gross committed
285
286
287
// Builds a mask of history x batch indicating whether for each token in the batch the
// token in the history should apply. This is based on both the sequence and causality (the
// position of the history is not ahead of the token in the batch).
288
func (c *Causal) buildMask(ctx ml.Context) (ml.Tensor, error) {
289
290
291
	// Align and pad the two dimensions as required by the backend
	batchSize := roundUp(c.curBatchSize, c.config.MaskBatchPadding)

292
293
294
295
	c.curCellRange.min = roundDown(c.curCellRange.min, c.config.CachePadding)
	c.curCellRange.max = roundUp(c.curCellRange.max+1, c.config.CachePadding) - 1

	length := c.curCellRange.max - c.curCellRange.min + 1
296
	mask := make([]float32, batchSize*length)
Jesse Gross's avatar
Jesse Gross committed
297
298

	for i := range c.curBatchSize {
299
		enabled := !slices.Contains(c.opts.Except, i)
Jesse Gross's avatar
Jesse Gross committed
300
		for j := c.curCellRange.min; j <= c.curCellRange.max; j++ {
301
			if !slices.Contains(c.cells[j].sequences, c.curSequences[i]) ||
302
				(enabled && c.cells[j].pos > c.curPositions[i]) ||
303
				c.cells[j].pos < c.curPositions[i]-c.windowSize {
304
				mask[i*length+(j-c.curCellRange.min)] = float32(math.Inf(-1))
Jesse Gross's avatar
Jesse Gross committed
305
306
307
308
			}
		}
	}

309
310
311
312
313
314
	// Mask out any padding tokens we added. For padding that we added to the cache history, this
	// has already been masked out because the sequence doesn't match.
	for i := c.curBatchSize * length; i < len(mask); i++ {
		mask[i] = float32(math.Inf(-1))
	}

315
	maskTensor, err := ctx.Input().FromFloatSlice(mask, length, batchSize)
316
317
318
319
320
	if err != nil {
		return nil, err
	}

	if c.config.MaskDType != ml.DTypeF32 {
321
		out := ctx.Input().Empty(c.config.MaskDType, maskTensor.Shape()...)
322
323
324
325
326
		ctx.Forward(maskTensor.Copy(ctx, out))
		maskTensor = out
	}

	return maskTensor, nil
Jesse Gross's avatar
Jesse Gross committed
327
328
}

329
func (c *Causal) moveCells(ctx ml.Context, src, dst, length int) {
330
331
	for i, key := range c.keys {
		if key == nil {
Jesse Gross's avatar
Jesse Gross committed
332
333
334
			continue
		}

335
336
337
338
		kHeadDim := key.Dim(0)
		numKVHeads := key.Dim(1)
		rowSize := key.Stride(2)

339
340
		kSrcView := key.View(ctx, rowSize*src, kHeadDim*numKVHeads*length)
		kDstView := key.View(ctx, rowSize*dst, kHeadDim*numKVHeads*length)
341
342
343
344
345
346
347

		value := c.values[i]
		var vSrcView, vDstView ml.Tensor
		if c.config.PermutedV {
			vHeadDim := value.Dim(1)
			elemSize := value.Stride(0)

348
349
			vSrcView = value.View(ctx, elemSize*src, length, len(c.cells)*elemSize, vHeadDim*numKVHeads)
			vDstView = value.View(ctx, elemSize*dst, length, len(c.cells)*elemSize, vHeadDim*numKVHeads)
350
351
352
		} else {
			vHeadDim := value.Dim(0)
			rowSize := value.Stride(2)
Jesse Gross's avatar
Jesse Gross committed
353

354
355
			vSrcView = value.View(ctx, rowSize*src, vHeadDim*numKVHeads*length)
			vDstView = value.View(ctx, rowSize*dst, vHeadDim*numKVHeads*length)
356
357
358
359
360
361
		}

		ctx.Forward(
			kSrcView.Copy(ctx, kDstView),
			vSrcView.Copy(ctx, vDstView),
		)
Jesse Gross's avatar
Jesse Gross committed
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
	}
}

func (c *Causal) defrag() {
	slog.Debug("defragmenting kv cache")

	// Defrag strategy:
	// - Search for empty holes at the beginning of the cache,
	//   filling them with active data starting at the end
	// - If there are contiguous elements that need to be moved,
	//   combine them into a single operation by holding new moves
	//   until we see that the next one is non-contiguous
	// - Fill up the context with the maximum number of operations it
	//   can hold then compute that and continue with a new context
	//
	// We could try to optimize placement by grouping blocks from
	// the same sequences together but most likely the next forward
	// pass will disrupt this anyways, so the real world benefit
	// seems limited as this time.

	ctx := c.backend.NewContext()

	// For every move, 6 tensors are required per layer (2 views and a
385
386
	// copy for each of k and v). We also need to refer to the original
	// k and v cache tensors - once per layer, not per move.
Jesse Gross's avatar
Jesse Gross committed
387
388
389
390
391
392
393
394
	layers := 0
	for _, key := range c.keys {
		if key == nil {
			continue
		}
		layers++
	}

395
	maxMoves := (ctx.MaxGraphNodes() - 2*layers) / (6 * layers)
Jesse Gross's avatar
Jesse Gross committed
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
	moves := 0

	var pendingSrc, pendingDst, pendingLen int
	src := len(c.cells) - 1

	for dst := 0; dst < src; dst++ {
		if len(c.cells[dst].sequences) == 0 {
			for ; src > dst; src-- {
				if len(c.cells[src].sequences) != 0 {
					c.cells[dst] = c.cells[src]
					c.cells[src] = cacheCell{}

					if pendingLen > 0 {
						if src == pendingSrc-pendingLen && dst == pendingDst+pendingLen {
							pendingSrc = src
							pendingLen++
							break
						} else {
414
							c.moveCells(ctx, pendingSrc, pendingDst, pendingLen)
Jesse Gross's avatar
Jesse Gross committed
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
434
435
436
437
							moves++
						}
					}

					pendingSrc = src
					pendingDst = dst
					pendingLen = 1

					break
				}
			}
		}

		if moves >= maxMoves {
			ctx.Compute()
			ctx.Close()
			ctx = c.backend.NewContext()

			moves = 0
		}
	}

	if pendingLen > 0 {
438
		c.moveCells(ctx, pendingSrc, pendingDst, pendingLen)
Jesse Gross's avatar
Jesse Gross committed
439
440
441
442
443
444
445
446
447
448
449
450
451
452
453
454
455
456
457
458
459
460
461
462
463
464
465
466
467
468
469
		moves++
	}

	if moves > 0 {
		ctx.Compute()
	}
	ctx.Close()

	// Reset range metadata
	for seq := range c.cellRanges {
		seqRange := newRange()

		for i, cell := range c.cells {
			if slices.Contains(cell.sequences, seq) {
				if i < seqRange.min {
					seqRange.min = i
				}
				if i > seqRange.max {
					seqRange.max = i
				}
			}
		}

		c.cellRanges[seq] = seqRange
	}
}

func (c *Causal) SetLayer(layer int) {
	c.curLayer = layer
}

470
type CausalOptions struct {
471
472
	// Enabled controls whether the causal mask is generated for a particular index in a batch
	Except []int
473
474
}

475
476
// SetCausal disables causal mask generation for a particular range of indicies in
// the current batch for subsequent calls to Get. The state resets for the next forward pass.
477
478
479
func (c *Causal) SetCausal(ctx ml.Context, opts CausalOptions) {
	if !slices.Equal(c.opts.Except, opts.Except) {
		c.opts = opts
480
481
482
483
484
485
486
487
488
489
490
		if ctx != nil {
			var err error
			c.curMask, err = c.buildMask(ctx)
			if err != nil {
				// This error should never occur because we have previously built a mask with the same shape
				panic(fmt.Errorf("SetCausal: %w", err))
			}
		}
	}
}

Jesse Gross's avatar
Jesse Gross committed
491
492
493
494
func (c *Causal) Get(ctx ml.Context) (ml.Tensor, ml.Tensor, ml.Tensor) {
	key := c.keys[c.curLayer]
	value := c.values[c.curLayer]

495
496
497
498
	kHeadDim := key.Dim(0)
	numKVHeads := key.Dim(1)
	rowSize := key.Stride(2)
	cachedSize := c.curMask.Dim(0)
Jesse Gross's avatar
Jesse Gross committed
499

500
501
502
503
	key = key.View(ctx, rowSize*c.curCellRange.min,
		kHeadDim, key.Stride(1),
		numKVHeads, key.Stride(2),
		cachedSize,
Jesse Gross's avatar
Jesse Gross committed
504
505
	)

506
507
508
509
510
511
512
513
514
515
516
517
518
519
520
521
522
523
524
525
	if c.config.PermutedV {
		vHeadDim := value.Dim(1)
		elemSize := value.Stride(0)

		value = value.View(ctx, elemSize*c.curCellRange.min,
			cachedSize, value.Stride(1),
			vHeadDim, value.Stride(2),
			numKVHeads,
		)
	} else {
		vHeadDim := value.Dim(0)
		rowSize := value.Stride(2)

		value = value.View(ctx, rowSize*c.curCellRange.min,
			vHeadDim, value.Stride(1),
			numKVHeads, value.Stride(2),
			cachedSize,
		)
	}

Jesse Gross's avatar
Jesse Gross committed
526
527
528
529
	return key, value, c.curMask
}

func (c *Causal) Put(ctx ml.Context, key, value ml.Tensor) {
530
531
532
533
534
535
536
	kHeadDim := key.Dim(0)
	vHeadDim := value.Dim(0)
	numKVHeads := key.Dim(1)
	batchSize := key.Dim(2)

	if c.curBatchSize != batchSize {
		panic(fmt.Errorf("inconsistent batch sizes (layer: %v, batch size: %v layer batch size: %v)", c.curLayer, c.curBatchSize, batchSize))
Jesse Gross's avatar
Jesse Gross committed
537
538
	}

539
	if _, ok := c.ctxs[c.curLayer]; !ok {
540
		c.ctxs[c.curLayer] = c.backend.NewContextSize(2).Layer(c.curLayer)
541
542
543
	}

	if _, ok := c.keys[c.curLayer]; !ok {
544
		c.keys[c.curLayer] = c.ctxs[c.curLayer].Zeros(c.DType, kHeadDim, numKVHeads, len(c.cells))
545
	}
546

547
	if _, ok := c.values[c.curLayer]; !ok {
548
		if c.config.PermutedV {
549
			c.values[c.curLayer] = c.ctxs[c.curLayer].Zeros(c.DType, len(c.cells), vHeadDim, numKVHeads)
550
		} else {
551
			c.values[c.curLayer] = c.ctxs[c.curLayer].Zeros(c.DType, vHeadDim, numKVHeads, len(c.cells))
552
		}
Jesse Gross's avatar
Jesse Gross committed
553
554
	}

555
556
557
558
559
560
561
	rowSize := c.keys[c.curLayer].Stride(2)
	ctx.Forward(key.Copy(ctx, c.keys[c.curLayer].View(ctx, rowSize*c.curLoc, kHeadDim*numKVHeads*batchSize)))

	if c.config.PermutedV {
		elemSize := c.values[c.curLayer].Stride(0)

		value = value.Permute(ctx, 1, 2, 0, 3)
562
		ctx.Forward(value.Copy(ctx, c.values[c.curLayer].View(ctx, elemSize*c.curLoc, batchSize, len(c.cells)*elemSize, vHeadDim*numKVHeads)))
563
564
565
566
567
	} else {
		rowSize := c.values[c.curLayer].Stride(2)

		ctx.Forward(value.Copy(ctx, c.values[c.curLayer].View(ctx, rowSize*c.curLoc, vHeadDim*numKVHeads*batchSize)))
	}
Jesse Gross's avatar
Jesse Gross committed
568
569
570
571
572
573
574
575
576
577
578
579
580
581
582
583
584
585
586
587
588
589
590
591
592
}

func (c *Causal) CopyPrefix(srcSeq, dstSeq int, len int32) {
	seqRange := newRange()

	for i := range c.cells {
		// Remove the contents of dstSeq so that we only have the copied prefix, metadata will be reset at the end
		if slices.Contains(c.cells[i].sequences, dstSeq) {
			c.cells[i].sequences = slices.DeleteFunc(c.cells[i].sequences, func(s int) bool { return s == dstSeq })
		}

		if slices.Contains(c.cells[i].sequences, srcSeq) && c.cells[i].pos < len {
			c.cells[i].sequences = append(c.cells[i].sequences, dstSeq)
			if i < seqRange.min {
				seqRange.min = i
			}
			if i > seqRange.max {
				seqRange.max = i
			}
		}
	}

	c.cellRanges[dstSeq] = seqRange
}

593
594
595
596
597
598
599
600
601
602
603
604
605
606
607
608
609
610
611
612
613
614
615
616
617
618
619
620
621
func (c *Causal) CanResume(seq int, pos int32) bool {
	if c.windowSize == math.MaxInt32 {
		return true
	}

	seqRange, ok := c.cellRanges[seq]
	if !ok {
		return false
	}

	// for sliding window, check that the window of the new sequence is contained in
	// the window of what we are storing
	var last int32 = -1
	for i := seqRange.min; i <= seqRange.max; i++ {
		if slices.Contains(c.cells[i].sequences, seq) {
			last = max(last, c.cells[i].pos)
		}
	}

	if last == -1 {
		return false
	}

	lastWindowStart := max(0, last-c.windowSize)
	posWindowStart := max(0, pos-c.windowSize)

	return posWindowStart >= lastWindowStart
}

Jesse Gross's avatar
Jesse Gross committed
622
623
624
625
626
627
628
629
630
631
632
633
634
635
636
637
638
639
640
641
func (c *Causal) shift(seq int, beginIndex, offset int32) error {
	if c.shiftFn == nil {
		return ErrNotSupported
	}

	ctx := c.backend.NewContext()
	defer ctx.Close()

	seqRange := c.cellRanges[seq]
	size := seqRange.max - seqRange.min + 1

	offsets := make([]int32, size)
	for i := range offsets {
		cell := c.cells[seqRange.min+i]

		if slices.Contains(cell.sequences, seq) && cell.pos >= beginIndex {
			offsets[i] = offset
		}
	}

642
	kShift, err := ctx.Input().FromIntSlice(offsets, len(offsets))
Jesse Gross's avatar
Jesse Gross committed
643
644
645
646
647
648
649
650
651
	if err != nil {
		return err
	}

	for i, key := range c.keys {
		if key == nil {
			continue
		}

652
653
654
655
656
657
658
		kHeadDim := key.Dim(0)
		numKVHeads := key.Dim(1)
		rowSize := key.Stride(2)

		key = key.View(ctx, rowSize*seqRange.min,
			kHeadDim, key.Stride(1),
			numKVHeads, key.Stride(2),
Jesse Gross's avatar
Jesse Gross committed
659
660
661
662
663
664
665
666
667
668
669
670
671
672
673
674
675
			size,
		)

		roped, err := c.shiftFn(ctx, i, key, kShift)
		if err != nil {
			return err
		}

		ctx.Forward(roped.Copy(ctx, key))
	}

	ctx.Compute()

	return nil
}

func (c *Causal) Remove(seq int, beginIndex, endIndex int32) error {
676
677
678
679
680
681
	// TODO(jessegross): We should check to see if removing the middle of the sequence will
	// cause the sliding window to encompass tokens that we no longer have. If so, then we
	// should return an error, which will trigger the runner to evaluate the full history and
	// rebuild the window. However, if we have multimodal inputs in our history, this reuse
	// results in use after free, so we don't do it for now.

Jesse Gross's avatar
Jesse Gross committed
682
683
684
685
686
687
688
689
690
691
692
693
694
695
	var offset int32
	if endIndex != math.MaxInt32 {
		offset = beginIndex - endIndex
	}

	seqRange := newRange()

	for i := range c.cells {
		if slices.Contains(c.cells[i].sequences, seq) {
			if c.cells[i].pos >= beginIndex && c.cells[i].pos < endIndex {
				c.cells[i].sequences = slices.DeleteFunc(c.cells[i].sequences, func(s int) bool { return s == seq })
			} else {
				if c.cells[i].pos >= endIndex {
					if slices.ContainsFunc(c.cells[i].sequences, func(s int) bool { return s != seq }) {
696
						return errors.New("shifting cells shared by multiple sequences not supported")
Jesse Gross's avatar
Jesse Gross committed
697
698
699
700
701
702
703
704
705
706
707
708
709
710
711
712
713
714
715
716
717
718
719
720
721
722
723
724
725
726
					}

					c.cells[i].pos += offset
				}
				if i < seqRange.min {
					seqRange.min = i
				}
				if i > seqRange.max {
					seqRange.max = i
				}
			}
		}
	}

	if seqRange == newRange() {
		delete(c.cellRanges, seq)
		return nil
	}

	c.cellRanges[seq] = seqRange

	if endIndex != math.MaxInt32 {
		err := c.shift(seq, endIndex+offset, offset)
		if err != nil {
			return err
		}
	}

	return nil
}