Coverage Report

Created: 2026-09-14 07:15

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libjxl/lib/jxl/icc_codec.cc
Line
Count
Source
1
// Copyright (c) the JPEG XL Project Authors. All rights reserved.
2
//
3
// Use of this source code is governed by a BSD-style
4
// license that can be found in the LICENSE file.
5
6
#include "lib/jxl/icc_codec.h"
7
8
#include <jxl/memory_manager.h>
9
10
#include <algorithm>
11
#include <cstddef>
12
#include <cstdint>
13
14
#include "lib/jxl/base/common.h"
15
#include "lib/jxl/base/status.h"
16
#include "lib/jxl/dec_ans.h"
17
#include "lib/jxl/dec_bit_reader.h"
18
#include "lib/jxl/fields.h"
19
#include "lib/jxl/icc_codec_common.h"
20
#include "lib/jxl/padded_bytes.h"
21
22
namespace jxl {
23
namespace {
24
25
// Shuffles or interleaves bytes, for example with width 2, turns "ABCDabcd"
26
// into "AaBbCcDd". Transposes a matrix of ceil(size / width) columns and
27
// width rows. There are size elements, size may be < width * height, if so the
28
// last elements of the rightmost column are missing, the missing spots are
29
// transposed along with the filled spots, and the result has the missing
30
// elements at the end of the bottom row. The input is the input matrix in
31
// scanline order but with missing elements skipped (which may occur in multiple
32
// locations), the output is the result matrix in scanline order (with
33
// no need to skip missing elements as they are past the end of the data).
34
Status Shuffle(JxlMemoryManager* memory_manager, uint8_t* data, size_t size,
35
14.1k
               size_t width) {
36
14.1k
  size_t height = (size + width - 1) / width;  // amount of rows of output
37
14.1k
  PaddedBytes result(memory_manager);
38
14.1k
  JXL_ASSIGN_OR_RETURN(result,
39
14.1k
                       PaddedBytes::WithInitialSpace(memory_manager, size));
40
  // i = output index, j input index
41
14.1k
  size_t s = 0;
42
14.1k
  size_t j = 0;
43
1.79M
  for (size_t i = 0; i < size; i++) {
44
1.78M
    result[i] = data[j];
45
1.78M
    j += height;
46
1.78M
    if (j >= size) j = ++s;
47
1.78M
  }
48
49
1.79M
  for (size_t i = 0; i < size; i++) {
50
1.78M
    data[i] = result[i];
51
1.78M
  }
52
14.1k
  return true;
53
14.1k
}
54
55
// Two base-128 varints at up to 10 bytes each.
56
constexpr size_t kPreambleSize = 20;
57
58
// Decodes a base-128 unsigned varint into *out, advancing *pos by the exact
59
// number of bytes consumed. Returns an error if the input is truncated, if
60
// the terminator (top-bit-clear byte) is not seen within 10 bytes, or if the
61
// 10th byte encodes a value that does not fit in a uint64_t.
62
Status DecodeVarInt(const uint8_t* input, size_t inputSize, size_t* pos,
63
98.5k
                    uint64_t* out) {
64
98.5k
  uint64_t ret = 0;
65
  // 9 bytes cover bits 0..62; the 10th byte may only contribute bit 63.
66
127k
  for (size_t i = 0; i < 9; ++i) {
67
127k
    if (*pos >= inputSize) {
68
1
      return JXL_FAILURE("DecodeVarInt: truncated input");
69
1
    }
70
127k
    const uint8_t byte = input[(*pos)++];
71
127k
    ret |= static_cast<uint64_t>(byte & 0x7F) << (7 * i);
72
127k
    if ((byte & 0x80) == 0) {
73
98.5k
      *out = ret;
74
98.5k
      return true;
75
98.5k
    }
76
127k
  }
77
0
  if (*pos >= inputSize) {
78
0
    return JXL_FAILURE("DecodeVarInt: truncated input (10th byte)");
79
0
  }
80
0
  const uint8_t byte = input[(*pos)++];
81
0
  if ((byte & 0x80) != 0) {
82
0
    return JXL_FAILURE("DecodeVarInt: varint exceeds 10 bytes");
83
0
  }
84
0
  if ((byte & 0x7E) != 0) {
85
0
    return JXL_FAILURE("DecodeVarInt: value exceeds 2^64 - 1");
86
0
  }
87
0
  ret |= static_cast<uint64_t>(byte & 0x01) << 63;
88
0
  *out = ret;
89
0
  return true;
90
0
}
91
92
}  // namespace
93
94
// Mimics the beginning of UnpredictICC for quick validity check.
95
// At least kPreambleSize bytes of data should be valid at invocation time.
96
5.27k
Status CheckPreamble(const PaddedBytes& data, size_t enc_size) {
97
5.27k
  const uint8_t* enc = data.data();
98
5.27k
  size_t size = data.size();
99
5.27k
  size_t pos = 0;
100
5.27k
  uint64_t osize;
101
5.27k
  JXL_RETURN_IF_ERROR(DecodeVarInt(enc, size, &pos, &osize));
102
5.27k
  JXL_RETURN_IF_ERROR(CheckIs32Bit(osize));
103
5.27k
  uint64_t csize;
104
5.27k
  JXL_RETURN_IF_ERROR(DecodeVarInt(enc, size, &pos, &csize));
105
5.27k
  JXL_RETURN_IF_ERROR(CheckIs32Bit(csize));
106
5.27k
  JXL_RETURN_IF_ERROR(CheckOutOfBounds(pos, csize, size));
107
  // We expect that UnpredictICC inflates input, not the other way round.
108
5.27k
  if (osize + 65536 < enc_size) return JXL_FAILURE("Malformed ICC");
109
110
  // NB(eustas): 64 MiB ICC should be enough for everything!?
111
5.27k
  const size_t output_limit = 1 << 28;
112
5.27k
  if (output_limit && osize > output_limit) {
113
0
    return JXL_FAILURE("Decoded ICC is too large");
114
0
  }
115
5.27k
  return true;
116
5.27k
}
117
118
// Decodes the result of PredictICC back to a valid ICC profile.
119
5.24k
Status UnpredictICC(const uint8_t* enc, size_t size, PaddedBytes* result) {
120
5.24k
  if (!result->empty()) return JXL_FAILURE("result must be empty initially");
121
5.24k
  JxlMemoryManager* memory_manager = result->memory_manager();
122
5.24k
  size_t pos = 0;
123
5.24k
  uint64_t osize;
124
5.24k
  JXL_RETURN_IF_ERROR(DecodeVarInt(enc, size, &pos, &osize));  // Output size
125
5.24k
  JXL_RETURN_IF_ERROR(CheckIs32Bit(osize));
126
5.24k
  uint64_t csize;
127
5.24k
  JXL_RETURN_IF_ERROR(DecodeVarInt(enc, size, &pos, &csize));  // Commands size
128
  // Every command is translated to at least one byte.
129
5.24k
  JXL_RETURN_IF_ERROR(CheckIs32Bit(csize));
130
5.24k
  size_t cpos = pos;  // pos in commands stream
131
5.24k
  JXL_RETURN_IF_ERROR(CheckOutOfBounds(pos, csize, size));
132
5.24k
  size_t commands_end = cpos + csize;
133
5.24k
  pos = commands_end;  // pos in data stream
134
135
  // Header
136
5.24k
  PaddedBytes header{memory_manager};
137
5.24k
  JXL_RETURN_IF_ERROR(header.append(ICCInitialHeaderPrediction(osize)));
138
675k
  for (size_t i = 0; i <= kICCHeaderSize; i++) {
139
675k
    if (result->size() == osize) {
140
3
      if (cpos != commands_end) return JXL_FAILURE("Not all commands used");
141
3
      if (pos != size) return JXL_FAILURE("Not all data used");
142
3
      return true;  // Valid end
143
3
    }
144
675k
    if (i == kICCHeaderSize) break;  // Done
145
670k
    ICCPredictHeader(result->data(), result->size(), header.data(), i);
146
670k
    if (pos >= size) return JXL_FAILURE("Out of bounds");
147
670k
    JXL_RETURN_IF_ERROR(result->push_back(enc[pos++] + header[i]));
148
670k
  }
149
5.23k
  if (cpos >= commands_end) return JXL_FAILURE("Out of bounds");
150
151
  // Tag list
152
5.23k
  uint64_t numtags;
153
5.23k
  JXL_RETURN_IF_ERROR(DecodeVarInt(enc, commands_end, &cpos, &numtags));
154
155
5.23k
  if (numtags != 0) {
156
5.23k
    numtags--;
157
5.23k
    JXL_RETURN_IF_ERROR(CheckIs32Bit(numtags));
158
5.23k
    JXL_RETURN_IF_ERROR(AppendUint32(numtags, result));
159
5.23k
    uint64_t prevtagstart = kICCHeaderSize + numtags * 12;
160
5.23k
    uint64_t prevtagsize = 0;
161
46.8k
    for (;;) {
162
46.8k
      if (result->size() > osize) return JXL_FAILURE("Invalid result size");
163
46.8k
      if (cpos > commands_end) return JXL_FAILURE("Out of bounds");
164
46.8k
      if (cpos == commands_end) break;  // Valid end
165
46.8k
      uint8_t command = enc[cpos++];
166
46.8k
      uint8_t tagcode = command & 63;
167
46.8k
      Tag tag;
168
46.8k
      if (tagcode == 0) {
169
5.23k
        break;
170
41.6k
      } else if (tagcode == kCommandTagUnknown) {
171
1.60k
        JXL_RETURN_IF_ERROR(CheckOutOfBounds(pos, 4, size));
172
1.60k
        tag = DecodeKeyword(enc, size, pos);
173
1.60k
        pos += 4;
174
40.0k
      } else if (tagcode == kCommandTagTRC) {
175
5.08k
        tag = kRtrcTag;
176
34.9k
      } else if (tagcode == kCommandTagXYZ) {
177
3.12k
        tag = kRxyzTag;
178
31.8k
      } else {
179
31.8k
        if (tagcode - kCommandTagStringFirst >= kNumTagStrings) {
180
1
          return JXL_FAILURE("Unknown tagcode");
181
1
        }
182
31.8k
        tag = *kTagStrings[tagcode - kCommandTagStringFirst];
183
31.8k
      }
184
41.6k
      JXL_RETURN_IF_ERROR(AppendKeyword(tag, result));
185
186
41.6k
      uint64_t tagstart;
187
41.6k
      uint64_t tagsize = prevtagsize;
188
41.6k
      if (tag == kRxyzTag || tag == kGxyzTag || tag == kBxyzTag ||
189
32.6k
          tag == kKxyzTag || tag == kWtptTag || tag == kBkptTag ||
190
27.2k
          tag == kLumiTag) {
191
14.3k
        tagsize = 20;
192
14.3k
      }
193
194
41.6k
      if (command & kFlagBitOffset) {
195
14.8k
        JXL_RETURN_IF_ERROR(DecodeVarInt(enc, commands_end, &cpos, &tagstart));
196
26.7k
      } else {
197
26.7k
        JXL_RETURN_IF_ERROR(CheckIs32Bit(prevtagstart));
198
26.7k
        tagstart = prevtagstart + prevtagsize;
199
26.7k
      }
200
41.6k
      JXL_RETURN_IF_ERROR(CheckIs32Bit(tagstart));
201
41.6k
      JXL_RETURN_IF_ERROR(AppendUint32(tagstart, result));
202
41.6k
      if (command & kFlagBitSize) {
203
25.4k
        JXL_RETURN_IF_ERROR(DecodeVarInt(enc, commands_end, &cpos, &tagsize));
204
25.4k
      }
205
41.6k
      JXL_RETURN_IF_ERROR(CheckIs32Bit(tagsize));
206
41.6k
      JXL_RETURN_IF_ERROR(AppendUint32(tagsize, result));
207
41.6k
      prevtagstart = tagstart;
208
41.6k
      prevtagsize = tagsize;
209
210
41.6k
      if (tagcode == kCommandTagTRC) {
211
5.08k
        JXL_RETURN_IF_ERROR(AppendKeyword(kGtrcTag, result));
212
5.08k
        JXL_RETURN_IF_ERROR(AppendUint32(tagstart, result));
213
5.08k
        JXL_RETURN_IF_ERROR(AppendUint32(tagsize, result));
214
5.08k
        JXL_RETURN_IF_ERROR(AppendKeyword(kBtrcTag, result));
215
5.08k
        JXL_RETURN_IF_ERROR(AppendUint32(tagstart, result));
216
5.08k
        JXL_RETURN_IF_ERROR(AppendUint32(tagsize, result));
217
5.08k
      }
218
219
41.6k
      if (tagcode == kCommandTagXYZ) {
220
3.12k
        JXL_RETURN_IF_ERROR(CheckIs32Bit(tagstart + tagsize * 2));
221
3.12k
        JXL_RETURN_IF_ERROR(AppendKeyword(kGxyzTag, result));
222
3.12k
        JXL_RETURN_IF_ERROR(AppendUint32(tagstart + tagsize, result));
223
3.12k
        JXL_RETURN_IF_ERROR(AppendUint32(tagsize, result));
224
3.12k
        JXL_RETURN_IF_ERROR(AppendKeyword(kBxyzTag, result));
225
3.12k
        JXL_RETURN_IF_ERROR(AppendUint32(tagstart + tagsize * 2, result));
226
3.12k
        JXL_RETURN_IF_ERROR(AppendUint32(tagsize, result));
227
3.12k
      }
228
41.6k
    }
229
5.23k
  }
230
231
  // Main Content
232
82.4k
  for (;;) {
233
82.4k
    if (result->size() > osize) return JXL_FAILURE("Invalid result size");
234
82.4k
    if (cpos > commands_end) return JXL_FAILURE("Out of bounds");
235
82.4k
    if (cpos == commands_end) break;  // Valid end
236
77.1k
    uint8_t command = enc[cpos++];
237
77.1k
    if (command == kCommandInsert) {
238
17.6k
      uint64_t num;
239
17.6k
      JXL_RETURN_IF_ERROR(DecodeVarInt(enc, commands_end, &cpos, &num));
240
17.6k
      JXL_RETURN_IF_ERROR(CheckOutOfBounds(pos, num, size));
241
13.7M
      for (size_t i = 0; i < num; i++) {
242
13.7M
        JXL_RETURN_IF_ERROR(result->push_back(enc[pos++]));
243
13.7M
      }
244
59.5k
    } else if (command == kCommandShuffle2 || command == kCommandShuffle4) {
245
13.9k
      uint64_t num;
246
13.9k
      JXL_RETURN_IF_ERROR(DecodeVarInt(enc, commands_end, &cpos, &num));
247
13.9k
      JXL_RETURN_IF_ERROR(CheckOutOfBounds(pos, num, size));
248
13.9k
      PaddedBytes shuffled(memory_manager);
249
13.9k
      JXL_ASSIGN_OR_RETURN(shuffled,
250
13.9k
                           PaddedBytes::WithInitialSpace(memory_manager, num));
251
656k
      for (size_t i = 0; i < num; i++) {
252
642k
        shuffled[i] = enc[pos + i];
253
642k
      }
254
13.9k
      if (command == kCommandShuffle2) {
255
13.6k
        JXL_RETURN_IF_ERROR(Shuffle(memory_manager, shuffled.data(), num, 2));
256
13.6k
      } else if (command == kCommandShuffle4) {
257
262
        JXL_RETURN_IF_ERROR(Shuffle(memory_manager, shuffled.data(), num, 4));
258
262
      }
259
656k
      for (size_t i = 0; i < num; i++) {
260
642k
        JXL_RETURN_IF_ERROR(result->push_back(shuffled[i]));
261
642k
        pos++;
262
642k
      }
263
45.5k
    } else if (command == kCommandPredict) {
264
403
      JXL_RETURN_IF_ERROR(CheckOutOfBounds(cpos, 2, commands_end));
265
403
      uint8_t flags = enc[cpos++];
266
267
403
      size_t width = (flags & 3) + 1;
268
403
      if (width == 3) return JXL_FAILURE("Invalid width");
269
270
403
      int order = (flags & 12) >> 2;
271
403
      if (order == 3) return JXL_FAILURE("Invalid order");
272
273
403
      uint64_t stride = width;
274
403
      if (flags & 16) {
275
0
        JXL_RETURN_IF_ERROR(DecodeVarInt(enc, commands_end, &cpos, &stride));
276
0
        if (stride < width) {
277
0
          return JXL_FAILURE("Invalid stride");
278
0
        }
279
0
      }
280
      // If stride * 4 >= result->size(), return failure. The check
281
      // "size == 0 || ((size - 1) >> 2) < stride" corresponds to
282
      // "stride * 4 >= size", but does not suffer from integer overflow.
283
      // This check is more strict than necessary but follows the specification
284
      // and the encoder should ensure this is followed.
285
403
      if (result->empty() || ((result->size() - 1u) >> 2u) < stride) {
286
0
        return JXL_FAILURE("Invalid stride");
287
0
      }
288
289
403
      uint64_t num;
290
403
      JXL_RETURN_IF_ERROR(DecodeVarInt(enc, commands_end, &cpos, &num));  // in bytes
291
402
      JXL_RETURN_IF_ERROR(CheckOutOfBounds(pos, num, size));
292
293
401
      PaddedBytes shuffled(memory_manager);
294
401
      JXL_ASSIGN_OR_RETURN(shuffled,
295
401
                           PaddedBytes::WithInitialSpace(memory_manager, num));
296
297
1.14M
      for (size_t i = 0; i < num; i++) {
298
1.14M
        shuffled[i] = enc[pos + i];
299
1.14M
      }
300
401
      if (width > 1) {
301
253
        JXL_RETURN_IF_ERROR(
302
253
            Shuffle(memory_manager, shuffled.data(), num, width));
303
253
      }
304
305
401
      size_t start = result->size();
306
1.14M
      for (size_t i = 0; i < num; i++) {
307
1.14M
        uint8_t predicted = LinearPredictICCValue(result->data(), start, i,
308
1.14M
                                                  stride, width, order);
309
1.14M
        JXL_RETURN_IF_ERROR(result->push_back(predicted + shuffled[i]));
310
1.14M
      }
311
401
      pos += num;
312
45.1k
    } else if (command == kCommandXYZ) {
313
20.5k
      JXL_RETURN_IF_ERROR(AppendKeyword(kXyz_Tag, result));
314
102k
      for (int i = 0; i < 4; i++) {
315
82.3k
        JXL_RETURN_IF_ERROR(result->push_back(0));
316
82.3k
      }
317
20.5k
      JXL_RETURN_IF_ERROR(CheckOutOfBounds(pos, 12, size));
318
267k
      for (size_t i = 0; i < 12; i++) {
319
247k
        JXL_RETURN_IF_ERROR(result->push_back(enc[pos++]));
320
247k
      }
321
24.5k
    } else if (command >= kCommandTypeStartFirst &&
322
24.5k
               command < kCommandTypeStartFirst + kNumTypeStrings) {
323
24.5k
      JXL_RETURN_IF_ERROR(AppendKeyword(
324
24.5k
          *kTypeStrings[command - kCommandTypeStartFirst], result));
325
122k
      for (size_t i = 0; i < 4; i++) {
326
98.3k
        JXL_RETURN_IF_ERROR(result->push_back(0));
327
98.3k
      }
328
24.5k
    } else {
329
3
      return JXL_FAILURE("Unknown command");
330
3
    }
331
77.1k
  }
332
333
5.23k
  if (pos != size) return JXL_FAILURE("Not all data used");
334
5.22k
  if (result->size() != osize) return JXL_FAILURE("Invalid result size");
335
336
5.22k
  return true;
337
5.22k
}
338
339
5.40k
Status ICCReader::Init(BitReader* reader) {
340
5.40k
  JXL_RETURN_IF_ERROR(CheckEOI(reader));
341
5.40k
  JxlMemoryManager* memory_manager = decompressed_.memory_manager();
342
5.40k
  used_bits_base_ = reader->TotalBitsConsumed();
343
5.40k
  if (bits_to_skip_ == 0) {
344
5.28k
    enc_size_ = U64Coder::Read(reader);
345
5.28k
    if (enc_size_ > 268435456) {
346
      // Avoid too large memory allocation for invalid file.
347
0
      return JXL_FAILURE("Too large encoded profile");
348
0
    }
349
5.28k
    JXL_RETURN_IF_ERROR(DecodeHistograms(
350
5.28k
        memory_manager, reader, kNumICCContexts, &code_, &context_map_));
351
10.5k
    JXL_ASSIGN_OR_RETURN(ans_reader_, ANSSymbolReader::Create(&code_, reader));
352
10.5k
    i_ = 0;
353
10.5k
    JXL_RETURN_IF_ERROR(
354
10.5k
        decompressed_.resize(std::min<size_t>(i_ + 0x400, enc_size_)));
355
15.8k
    for (; i_ < std::min<size_t>(2, enc_size_); i_++) {
356
10.5k
      decompressed_[i_] = ans_reader_.ReadHybridUint(
357
10.5k
          ICCANSContext(i_, i_ > 0 ? decompressed_[i_ - 1] : 0,
358
10.5k
                        i_ > 1 ? decompressed_[i_ - 2] : 0),
359
10.5k
          reader, context_map_);
360
10.5k
    }
361
5.28k
    if (enc_size_ > kPreambleSize) {
362
100k
      for (; i_ < kPreambleSize; i_++) {
363
94.9k
        decompressed_[i_] = ans_reader_.ReadHybridUint(
364
94.9k
            ICCANSContext(i_, decompressed_[i_ - 1], decompressed_[i_ - 2]),
365
94.9k
            reader, context_map_);
366
94.9k
      }
367
5.27k
      JXL_RETURN_IF_ERROR(CheckEOI(reader));
368
5.27k
      JXL_RETURN_IF_ERROR(CheckPreamble(decompressed_, enc_size_));
369
5.27k
    }
370
5.28k
    bits_to_skip_ = reader->TotalBitsConsumed() - used_bits_base_;
371
5.28k
  } else {
372
112
    reader->SkipBits(bits_to_skip_);
373
112
  }
374
5.39k
  return true;
375
5.40k
}
376
377
5.39k
Status ICCReader::Process(BitReader* reader, PaddedBytes* icc) {
378
5.39k
  auto checkpoint = jxl::make_unique<ANSSymbolReader::Checkpoint>();
379
5.39k
  size_t saved_i = 0;
380
307k
  auto save = [&]() {
381
307k
    ans_reader_.Save(checkpoint.get());
382
307k
    bits_to_skip_ = reader->TotalBitsConsumed() - used_bits_base_;
383
307k
    saved_i = i_;
384
307k
  };
385
5.39k
  save();
386
307k
  auto check_and_restore = [&]() -> Status {
387
307k
    Status status = CheckEOI(reader);
388
307k
    if (!status) {
389
      // not enough bytes.
390
150
      ans_reader_.Restore(*checkpoint);
391
150
      i_ = saved_i;
392
150
      return status;
393
150
    }
394
306k
    return true;
395
307k
  };
396
156M
  for (; i_ < enc_size_; i_++) {
397
156M
    if (i_ % ANSSymbolReader::kMaxCheckpointInterval == 0 && i_ > 0) {
398
301k
      JXL_RETURN_IF_ERROR(check_and_restore());
399
301k
      save();
400
301k
      if ((i_ > 0) && (((i_ & 0xFFFF) == 0))) {
401
2.23k
        float used_bytes =
402
2.23k
            (reader->TotalBitsConsumed() - used_bits_base_) / 8.0f;
403
2.23k
        if (i_ > used_bytes * 256) return JXL_FAILURE("Corrupted stream");
404
2.23k
      }
405
301k
      JXL_RETURN_IF_ERROR(
406
301k
          decompressed_.resize(std::min<size_t>(i_ + 0x400, enc_size_)));
407
301k
    }
408
156M
    JXL_ENSURE(i_ >= 2);
409
156M
    decompressed_[i_] = ans_reader_.ReadHybridUint(
410
156M
        ICCANSContext(i_, decompressed_[i_ - 1], decompressed_[i_ - 2]), reader,
411
156M
        context_map_);
412
156M
  }
413
5.34k
  JXL_RETURN_IF_ERROR(check_and_restore());
414
5.24k
  bits_to_skip_ = reader->TotalBitsConsumed() - used_bits_base_;
415
5.24k
  if (!ans_reader_.CheckANSFinalState()) {
416
0
    return JXL_FAILURE("Corrupted ICC profile");
417
0
  }
418
419
5.24k
  icc->clear();
420
5.24k
  return UnpredictICC(decompressed_.data(), decompressed_.size(), icc);
421
5.24k
}
422
423
317k
Status ICCReader::CheckEOI(BitReader* reader) {
424
317k
  if (reader->AllReadsWithinBounds()) return true;
425
150
  return JXL_NOT_ENOUGH_BYTES("Not enough bytes for reading ICC profile");
426
317k
}
427
428
}  // namespace jxl