QRMatrix::matrix()   A
last analyzed

Complexity

Conditions 1
Paths 1

Size

Total Lines 2
Code Lines 1

Duplication

Lines 0
Ratio 0 %

Importance

Changes 2
Bugs 0 Features 1
Metric Value
cc 1
eloc 1
nc 1
nop 1
dl 0
loc 2
rs 10
c 2
b 0
f 1
1
<?php
2
/**
3
 * Class QRMatrix
4
 *
5
 * @created      15.11.2017
6
 * @author       Smiley <[email protected]>
7
 * @copyright    2017 Smiley
8
 * @license      MIT
9
 */
10
11
namespace chillerlan\QRCode\Data;
12
13
use chillerlan\QRCode\Common\{BitBuffer, EccLevel, MaskPattern, ReedSolomonEncoder, Version};
14
use function array_fill, array_map, array_reverse, count, floor;
15
16
/**
17
 * Holds an array representation of the final QR Code that contains numerical values for later output modifications;
18
 * maps the ECC coded binary data and applies the mask pattern
19
 *
20
 * @see http://www.thonky.com/qr-code-tutorial/format-version-information
21
 */
22
class QRMatrix{
23
24
	/** @var int */
25
	public const IS_DARK          = 0b100000000000;
26
	/** @var int */
27
	public const M_NULL           = 0b000000000000;
28
	/** @var int */
29
	public const M_DARKMODULE     = 0b100000000001;
30
	/** @var int */
31
	public const M_DATA           = 0b000000000010;
32
	/** @var int */
33
	public const M_DATA_DARK      = 0b100000000010;
34
	/** @var int */
35
	public const M_FINDER         = 0b000000000100;
36
	/** @var int */
37
	public const M_FINDER_DARK    = 0b100000000100;
38
	/** @var int */
39
	public const M_SEPARATOR      = 0b000000001000;
40
	/** @var int */
41
	public const M_ALIGNMENT      = 0b000000010000;
42
	/** @var int */
43
	public const M_ALIGNMENT_DARK = 0b100000010000;
44
	/** @var int */
45
	public const M_TIMING         = 0b000000100000;
46
	/** @var int */
47
	public const M_TIMING_DARK    = 0b100000100000;
48
	/** @var int */
49
	public const M_FORMAT         = 0b000001000000;
50
	/** @var int */
51
	public const M_FORMAT_DARK    = 0b100001000000;
52
	/** @var int */
53
	public const M_VERSION        = 0b000010000000;
54
	/** @var int */
55
	public const M_VERSION_DARK   = 0b100010000000;
56
	/** @var int */
57
	public const M_QUIETZONE      = 0b000100000000;
58
	/** @var int */
59
	public const M_QUIETZONE_DARK = 0b100100000000;
60
	/** @var int */
61
	public const M_LOGO           = 0b001000000000;
62
	/** @var int */
63
	public const M_LOGO_DARK      = 0b101000000000;
64
	/** @var int */
65
	public const M_FINDER_DOT     = 0b110000000000;
66
	/** @var int */
67
	public const M_TEST           = 0b011111111111;
68
	/** @var int */
69
	public const M_TEST_DARK      = 0b111111111111;
70
71
	/**
72
	 * Map of flag => coord
73
	 *
74
	 * @see \chillerlan\QRCode\Data\QRMatrix::checkNeighbours()
75
	 *
76
	 * @var array
77
	 */
78
	protected const neighbours = [
79
		0b00000001 => [-1, -1],
80
		0b00000010 => [ 0, -1],
81
		0b00000100 => [ 1, -1],
82
		0b00001000 => [ 1,  0],
83
		0b00010000 => [ 1,  1],
84
		0b00100000 => [ 0,  1],
85
		0b01000000 => [-1,  1],
86
		0b10000000 => [-1,  0],
87
	];
88
89
	/**
90
	 * the matrix version - always set in QRMatrix, may be null in BitMatrix
91
	 */
92
	protected ?Version $version = null;
93
94
	/**
95
	 * the current ECC level - always set in QRMatrix, may be null in BitMatrix
96
	 */
97
	protected ?EccLevel $eccLevel = null;
98
99
	/**
100
	 * the mask pattern that was used in the most recent operation, set via:
101
	 *
102
	 * - QRMatrix::setFormatInfo()
103
	 * - QRMatrix::mask()
104
	 * - BitMatrix::readFormatInformation()
105
	 */
106
	protected ?MaskPattern $maskPattern = null;
107
108
	/**
109
	 * the size (side length) of the matrix, including quiet zone (if created)
110
	 */
111
	protected int $moduleCount;
112
113
	/**
114
	 * the actual matrix data array
115
	 *
116
	 * @var int[][]
117
	 */
118
	protected array $matrix;
119
120
	/**
121
	 * QRMatrix constructor.
122
	 */
123
	public function __construct(Version $version, EccLevel $eccLevel){
124
		$this->version     = $version;
125
		$this->eccLevel    = $eccLevel;
126
		$this->moduleCount = $this->version->getDimension();
127
		$this->matrix      = $this->createMatrix($this->moduleCount, $this::M_NULL);
128
	}
129
130
	/**
131
	 * Creates a 2-dimensional array (square) of the given $size
132
	 */
133
	protected function createMatrix(int $size, int $value):array{
134
		return array_fill(0, $size, array_fill(0, $size, $value));
135
	}
136
137
	/**
138
	 * shortcut to initialize the functional patterns
139
	 */
140
	public function initFunctionalPatterns():self{
141
		return $this
142
			->setFinderPattern()
143
			->setSeparators()
144
			->setAlignmentPattern()
145
			->setTimingPattern()
146
			->setDarkModule()
147
			->setVersionNumber()
148
			->setFormatInfo()
149
		;
150
	}
151
152
	/**
153
	 * Returns the data matrix, returns a pure boolean representation if $boolean is set to true
154
	 *
155
	 * @return int[][]|bool[][]
156
	 */
157
	public function getMatrix(bool $boolean = null):array{
158
159
		if($boolean !== true){
160
			return $this->matrix;
161
		}
162
163
		$matrix = [];
164
165
		for($y = 0; $y < $this->moduleCount; $y++){
166
			$matrix[$y] = [];
167
168
			for($x = 0; $x < $this->moduleCount; $x++){
169
				$matrix[$y][$x] = $this->checkType($x, $y, $this::IS_DARK);
170
			}
171
		}
172
173
		return $matrix;
174
	}
175
176
	/**
177
	 * @deprecated 5.0.0 use QRMatrix::getMatrix() instead
178
	 * @see \chillerlan\QRCode\Data\QRMatrix::getMatrix()
179
	 * @codeCoverageIgnore
180
	 */
181
	public function matrix(bool $boolean = null):array{
182
		return $this->getMatrix($boolean);
183
	}
184
185
	/**
186
	 * Returns the current version number
187
	 */
188
	public function getVersion():?Version{
189
		return $this->version;
190
	}
191
192
	/**
193
	 * @deprecated 5.0.0 use QRMatrix::getVersion() instead
194
	 * @see \chillerlan\QRCode\Data\QRMatrix::getVersion()
195
	 * @codeCoverageIgnore
196
	 */
197
	public function version():?Version{
198
		return $this->getVersion();
199
	}
200
201
	/**
202
	 * Returns the current ECC level
203
	 */
204
	public function getEccLevel():?EccLevel{
205
		return $this->eccLevel;
206
	}
207
208
	/**
209
	 * @deprecated 5.0.0 use QRMatrix::getEccLevel() instead
210
	 * @see \chillerlan\QRCode\Data\QRMatrix::getEccLevel()
211
	 * @codeCoverageIgnore
212
	 */
213
	public function eccLevel():?EccLevel{
214
		return $this->getEccLevel();
215
	}
216
217
	/**
218
	 * Returns the current mask pattern
219
	 */
220
	public function getMaskPattern():?MaskPattern{
221
		return $this->maskPattern;
222
	}
223
224
	/**
225
	 * @deprecated 5.0.0 use QRMatrix::getMaskPattern() instead
226
	 * @see \chillerlan\QRCode\Data\QRMatrix::getMaskPattern()
227
	 * @codeCoverageIgnore
228
	 */
229
	public function maskPattern():?MaskPattern{
230
		return $this->getMaskPattern();
231
	}
232
233
	/**
234
	 * Returns the absoulute size of the matrix, including quiet zone (after setting it).
235
	 *
236
	 * size = version * 4 + 17 [ + 2 * quietzone size]
237
	 */
238
	public function getSize():int{
239
		return $this->moduleCount;
240
	}
241
242
	/**
243
	 * @deprecated 5.0.0 use QRMatrix::getSize() instead
244
	 * @see \chillerlan\QRCode\Data\QRMatrix::getSize()
245
	 * @codeCoverageIgnore
246
	 */
247
	public function size():int{
248
		return $this->getSize();
249
	}
250
251
	/**
252
	 * Returns the value of the module at position [$x, $y] or -1 if the coordinate is outside the matrix
253
	 */
254
	public function get(int $x, int $y):int{
255
256
		if(!isset($this->matrix[$y][$x])){
257
			return -1;
258
		}
259
260
		return $this->matrix[$y][$x];
261
	}
262
263
	/**
264
	 * Sets the $M_TYPE value for the module at position [$x, $y]
265
	 *
266
	 *   true  => $M_TYPE | 0x800
267
	 *   false => $M_TYPE
268
	 */
269
	public function set(int $x, int $y, bool $value, int $M_TYPE):self{
270
271
		if(isset($this->matrix[$y][$x])){
272
			$this->matrix[$y][$x] = (($M_TYPE & ~$this::IS_DARK) | (($value) ? $this::IS_DARK : 0));
273
		}
274
275
		return $this;
276
	}
277
278
	/**
279
	 * Fills an area of $width * $height, from the given starting point [$startX, $startY] (top left) with $value for $M_TYPE.
280
	 */
281
	public function setArea(int $startX, int $startY, int $width, int $height, bool $value, int $M_TYPE):self{
282
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		for($y = $startY; $y < ($startY + $height); $y++){
284
			for($x = $startX; $x < ($startX + $width); $x++){
285
				$this->set($x, $y, $value, $M_TYPE);
286
			}
287
		}
288
289
		return $this;
290
	}
291
292
	/**
293
	 * Checks whether the module at ($x, $y) is of the given $M_TYPE
294
	 *
295
	 *   true => $value & $M_TYPE === $M_TYPE
296
	 */
297
	public function checkType(int $x, int $y, int $M_TYPE):bool{
298
		$val = $this->get($x, $y);
299
300
		if($val === -1){
301
			return false;
302
		}
303
304
		return ($val & $M_TYPE) === $M_TYPE;
305
	}
306
307
	/**
308
	 * checks whether the module at ($x, $y) is in the given array of $M_TYPES,
309
	 * returns true if a match is found, otherwise false.
310
	 */
311
	public function checkTypeIn(int $x, int $y, array $M_TYPES):bool{
312
313
		foreach($M_TYPES as $type){
314
			if($this->checkType($x, $y, $type)){
315
				return true;
316
			}
317
		}
318
319
		return false;
320
	}
321
322
	/**
323
	 * Checks whether the module at ($x, $y) is true (dark) or false (light)
324
	 */
325
	public function check(int $x, int $y):bool{
326
		return $this->checkType($x, $y, $this::IS_DARK);
327
	}
328
329
	/**
330
	 * Checks the status of the neighbouring modules for the module at ($x, $y) and returns a bitmask with the results.
331
	 *
332
	 * The 8 flags of the bitmask represent the status of each of the neighbouring fields,
333
	 * starting with the lowest bit for top left, going clockwise:
334
	 *
335
	 *   1 2 3
336
	 *   8 # 4
337
	 *   7 6 5
338
	 */
339
	public function checkNeighbours(int $x, int $y, int $M_TYPE = null):int{
340
		$bits = 0;
341
342
		foreach($this::neighbours as $bit => [$ix, $iy]){
343
			$ix += $x;
344
			$iy += $y;
345
346
			// $M_TYPE is given, skip if the field is not the same type
347
			if($M_TYPE !== null && !$this->checkType($ix, $iy, $M_TYPE)){
348
				continue;
349
			}
350
351
			if($this->checkType($ix, $iy, $this::IS_DARK)){
352
				$bits |= $bit;
353
			}
354
		}
355
356
		return $bits;
357
	}
358
359
	/**
360
	 * Sets the "dark module", that is always on the same position 1x1px away from the bottom left finder
361
	 *
362
	 * 4 * version + 9 or moduleCount - 8
363
	 */
364
	public function setDarkModule():self{
365
		$this->set(8, ($this->moduleCount - 8), true, $this::M_DARKMODULE);
366
367
		return $this;
368
	}
369
370
	/**
371
	 * Draws the 7x7 finder patterns in the corners top left/right and bottom left
372
	 *
373
	 * ISO/IEC 18004:2000 Section 7.3.2
374
	 */
375
	public function setFinderPattern():self{
376
377
		$pos = [
378
			[0, 0], // top left
379
			[($this->moduleCount - 7), 0], // top right
380
			[0, ($this->moduleCount - 7)], // bottom left
381
		];
382
383
		foreach($pos as $c){
384
			$this
385
				->setArea($c[0], $c[1], 7, 7, true, $this::M_FINDER)
386
				->setArea(($c[0] + 1), ($c[1] + 1), 5, 5, false, $this::M_FINDER)
387
				->setArea(($c[0] + 2), ($c[1] + 2), 3, 3, true, $this::M_FINDER_DOT)
388
			;
389
		}
390
391
		return $this;
392
	}
393
394
	/**
395
	 * Draws the separator lines around the finder patterns
396
	 *
397
	 * ISO/IEC 18004:2000 Section 7.3.3
398
	 */
399
	public function setSeparators():self{
400
401
		$h = [
402
			[7, 0],
403
			[($this->moduleCount - 8), 0],
404
			[7, ($this->moduleCount - 8)],
405
		];
406
407
		$v = [
408
			[7, 7],
409
			[($this->moduleCount - 1), 7],
410
			[7, ($this->moduleCount - 8)],
411
		];
412
413
		for($c = 0; $c < 3; $c++){
414
			for($i = 0; $i < 8; $i++){
415
				$this->set($h[$c][0]     , ($h[$c][1] + $i), false, $this::M_SEPARATOR);
416
				$this->set(($v[$c][0] - $i), $v[$c][1]     , false, $this::M_SEPARATOR);
417
			}
418
		}
419
420
		return $this;
421
	}
422
423
424
	/**
425
	 * Draws the 5x5 alignment patterns
426
	 *
427
	 * ISO/IEC 18004:2000 Section 7.3.5
428
	 */
429
	public function setAlignmentPattern():self{
430
		$alignmentPattern = $this->version->getAlignmentPattern();
0 ignored issues
show
Bug introduced by
The method getAlignmentPattern() does not exist on null. ( Ignorable by Annotation )

If this is a false-positive, you can also ignore this issue in your code via the ignore-call  annotation

430
		/** @scrutinizer ignore-call */ 
431
  $alignmentPattern = $this->version->getAlignmentPattern();

This check looks for calls to methods that do not seem to exist on a given type. It looks for the method on the type itself as well as in inherited classes or implemented interfaces.

This is most likely a typographical error or the method has been renamed.

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431
432
		foreach($alignmentPattern as $y){
433
			foreach($alignmentPattern as $x){
434
435
				// skip existing patterns
436
				if($this->matrix[$y][$x] !== $this::M_NULL){
437
					continue;
438
				}
439
440
				$this
441
					->setArea(($x - 2), ($y - 2), 5, 5, true, $this::M_ALIGNMENT)
442
					->setArea(($x - 1), ($y - 1), 3, 3, false, $this::M_ALIGNMENT)
443
					->set($x, $y, true, $this::M_ALIGNMENT)
444
				;
445
446
			}
447
		}
448
449
		return $this;
450
	}
451
452
453
	/**
454
	 * Draws the timing pattern (h/v checkered line between the finder patterns)
455
	 *
456
	 * ISO/IEC 18004:2000 Section 7.3.4
457
	 */
458
	public function setTimingPattern():self{
459
460
		for($i = 8; $i < ($this->moduleCount - 8); $i++){
461
462
			if($this->matrix[6][$i] !== $this::M_NULL || $this->matrix[$i][6] !== $this::M_NULL){
463
				continue;
464
			}
465
466
			$v = ($i % 2) === 0;
467
468
			$this->set($i, 6, $v, $this::M_TIMING); // h
469
			$this->set(6, $i, $v, $this::M_TIMING); // v
470
		}
471
472
		return $this;
473
	}
474
475
	/**
476
	 * Draws the version information, 2x 3x6 pixel
477
	 *
478
	 * ISO/IEC 18004:2000 Section 8.10
479
	 */
480
	public function setVersionNumber():self{
481
		$bits = $this->version->getVersionPattern();
482
483
		if($bits !== null){
484
485
			for($i = 0; $i < 18; $i++){
486
				$a = (int)($i / 3);
487
				$b = (($i % 3) + ($this->moduleCount - 8 - 3));
488
				$v = (($bits >> $i) & 1) === 1;
489
490
				$this->set($b, $a, $v, $this::M_VERSION); // ne
491
				$this->set($a, $b, $v, $this::M_VERSION); // sw
492
			}
493
494
		}
495
496
		return $this;
497
	}
498
499
	/**
500
	 * Draws the format info along the finder patterns. If no $maskPattern, all format info modules will be set to false.
501
	 *
502
	 * ISO/IEC 18004:2000 Section 8.9
503
	 */
504
	public function setFormatInfo(MaskPattern $maskPattern = null):self{
505
		$this->maskPattern = $maskPattern;
506
507
		$bits = ($this->maskPattern instanceof MaskPattern)
508
			? $this->eccLevel->getformatPattern($this->maskPattern)
0 ignored issues
show
Bug introduced by
The method getformatPattern() does not exist on null. ( Ignorable by Annotation )

If this is a false-positive, you can also ignore this issue in your code via the ignore-call  annotation

508
			? $this->eccLevel->/** @scrutinizer ignore-call */ getformatPattern($this->maskPattern)

This check looks for calls to methods that do not seem to exist on a given type. It looks for the method on the type itself as well as in inherited classes or implemented interfaces.

This is most likely a typographical error or the method has been renamed.

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509
			: 0; // sets all format fields to false (test mode)
510
511
		for($i = 0; $i < 15; $i++){
512
			$v = (($bits >> $i) & 1) === 1;
513
514
			if($i < 6){
515
				$this->set(8, $i, $v, $this::M_FORMAT);
516
			}
517
			elseif($i < 8){
518
				$this->set(8, ($i + 1), $v, $this::M_FORMAT);
519
			}
520
			else{
521
				$this->set(8, ($this->moduleCount - 15 + $i), $v, $this::M_FORMAT);
522
			}
523
524
			if($i < 8){
525
				$this->set(($this->moduleCount - $i - 1), 8, $v, $this::M_FORMAT);
526
			}
527
			elseif($i < 9){
528
				$this->set(((15 - $i)), 8, $v, $this::M_FORMAT);
529
			}
530
			else{
531
				$this->set((15 - $i - 1), 8, $v, $this::M_FORMAT);
532
			}
533
534
		}
535
536
		return $this;
537
	}
538
539
	/**
540
	 * Draws the "quiet zone" of $size around the matrix
541
	 *
542
	 * ISO/IEC 18004:2000 Section 7.3.7
543
	 *
544
	 * @throws \chillerlan\QRCode\Data\QRCodeDataException
545
	 */
546
	public function setQuietZone(int $quietZoneSize):self{
547
548
		if($this->matrix[($this->moduleCount - 1)][($this->moduleCount - 1)] === $this::M_NULL){
549
			throw new QRCodeDataException('use only after writing data');
550
		}
551
552
		// create a matrix with the new size
553
		$newSize   = ($this->moduleCount + ($quietZoneSize * 2));
554
		$newMatrix = $this->createMatrix($newSize, $this::M_QUIETZONE);
555
556
		// copy over the current matrix
557
		for($y = 0; $y < $this->moduleCount; $y++){
558
			for($x = 0; $x < $this->moduleCount; $x++){
559
				$newMatrix[($y + $quietZoneSize)][($x + $quietZoneSize)] = $this->matrix[$y][$x];
560
			}
561
		}
562
563
		// set the new values
564
		$this->moduleCount = $newSize;
565
		$this->matrix      = $newMatrix;
566
567
		return $this;
568
	}
569
570
	/**
571
	 * Rotates the matrix by 90 degrees clock wise
572
	 */
573
	public function rotate90():self{
574
		/** @phan-suppress-next-line PhanParamTooFewInternalUnpack */
575
		$this->matrix = array_map((fn(int ...$a):array => array_reverse($a)), ...$this->matrix);
576
577
		return $this;
578
	}
579
580
	/**
581
	 * Clears a space of $width * $height in order to add a logo or text.
582
	 * If no $height is given, the space will be assumed a square of $width.
583
	 *
584
	 * Additionally, the logo space can be positioned within the QR Code - respecting the main functional patterns -
585
	 * using $startX and $startY. If either of these are null, the logo space will be centered in that direction.
586
	 * ECC level "H" (30%) is required.
587
	 *
588
	 * The coordinates of $startX and $startY do not include the quiet zone:
589
	 * [0, 0] is always the top left module of the top left finder pattern, negative values go into the quiet zone top and left.
590
	 *
591
	 * Please note that adding a logo space minimizes the error correction capacity of the QR Code and
592
	 * created images may become unreadable, especially when printed with a chance to receive damage.
593
	 * Please test thoroughly before using this feature in production.
594
	 *
595
	 * This method should be called from within an output module (after the matrix has been filled with data).
596
	 * Note that there is no restiction on how many times this method could be called on the same matrix instance.
597
	 *
598
	 * @link https://github.com/chillerlan/php-qrcode/issues/52
599
	 *
600
	 * @throws \chillerlan\QRCode\Data\QRCodeDataException
601
	 */
602
	public function setLogoSpace(int $width, int $height = null, int $startX = null, int $startY = null):self{
603
604
		// for logos, we operate in ECC H (30%) only
605
		if($this->eccLevel->getLevel() !== EccLevel::H){
606
			throw new QRCodeDataException('ECC level "H" required to add logo space');
607
		}
608
609
		if($height === null){
610
			$height = $width;
611
		}
612
613
		// if width and height happen to be negative or 0 (default value), just return - nothing to do
614
		if($width <= 0 || $height <= 0){
615
			return $this; // @codeCoverageIgnore
616
		}
617
618
		// $this->moduleCount includes the quiet zone (if created), we need the QR size here
619
		$length = $this->version->getDimension();
620
621
		// throw if the size is exceeds the qrcode size
622
		if($width > $length || $height > $length){
623
			throw new QRCodeDataException('logo dimensions exceed matrix size');
624
		}
625
626
		// we need uneven sizes to center the logo space, adjust if needed
627
		if($startX === null && ($width % 2) === 0){
628
			$width++;
629
		}
630
631
		if($startY === null && ($height % 2) === 0){
632
			$height++;
633
		}
634
635
		// throw if the logo space exceeds the maximum error correction capacity
636
		if(($width * $height) > floor($length * $length * 0.2)){
637
			throw new QRCodeDataException('logo space exceeds the maximum error correction capacity');
638
		}
639
640
		// quiet zone size
641
		$qz    = (($this->moduleCount - $length) / 2);
642
		// skip quiet zone and the first 9 rows/columns (finder-, mode-, version- and timing patterns)
643
		$start = ($qz + 9);
644
		// skip quiet zone
645
		$end   = ($this->moduleCount - $qz);
646
647
		// determine start coordinates
648
		$startX = ((($startX !== null) ? $startX : ($length - $width) / 2) + $qz);
649
		$startY = ((($startY !== null) ? $startY : ($length - $height) / 2) + $qz);
650
		$endX   = ($startX + $width);
651
		$endY   = ($startY + $height);
652
653
		// clear the space
654
		for($y = $startY; $y < $endY; $y++){
655
			for($x = $startX; $x < $endX; $x++){
656
				// out of bounds, skip
657
				if($x < $start || $y < $start ||$x >= $end || $y >= $end){
658
					continue;
659
				}
660
661
				$this->set($x, $y, false, $this::M_LOGO);
662
			}
663
		}
664
665
		return $this;
666
	}
667
668
	/**
669
	 * Maps the interleaved binary $data on the matrix
670
	 */
671
	public function writeCodewords(BitBuffer $bitBuffer):self{
672
		$data      = (new ReedSolomonEncoder($this->version, $this->eccLevel))->interleaveEcBytes($bitBuffer);
0 ignored issues
show
Bug introduced by
It seems like $this->version can also be of type null; however, parameter $version of chillerlan\QRCode\Common...nEncoder::__construct() does only seem to accept chillerlan\QRCode\Common\Version, maybe add an additional type check? ( Ignorable by Annotation )

If this is a false-positive, you can also ignore this issue in your code via the ignore-type  annotation

672
		$data      = (new ReedSolomonEncoder(/** @scrutinizer ignore-type */ $this->version, $this->eccLevel))->interleaveEcBytes($bitBuffer);
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Bug introduced by
It seems like $this->eccLevel can also be of type null; however, parameter $eccLevel of chillerlan\QRCode\Common...nEncoder::__construct() does only seem to accept chillerlan\QRCode\Common\EccLevel, maybe add an additional type check? ( Ignorable by Annotation )

If this is a false-positive, you can also ignore this issue in your code via the ignore-type  annotation

672
		$data      = (new ReedSolomonEncoder($this->version, /** @scrutinizer ignore-type */ $this->eccLevel))->interleaveEcBytes($bitBuffer);
Loading history...
673
		$byteCount = count($data);
674
		$iByte     = 0;
675
		$iBit      = 7;
676
		$direction = true;
677
678
		for($i = ($this->moduleCount - 1); $i > 0; $i -= 2){
679
680
			// skip vertical alignment pattern
681
			if($i === 6){
682
				$i--;
683
			}
684
685
			for($count = 0; $count < $this->moduleCount; $count++){
686
				$y = ($direction) ? ($this->moduleCount - 1 - $count) : $count;
687
688
				for($col = 0; $col < 2; $col++){
689
					$x = ($i - $col);
690
691
					// skip functional patterns
692
					if($this->get($x, $y) !== $this::M_NULL){
693
						continue;
694
					}
695
696
					$v = $iByte < $byteCount && (($data[$iByte] >> $iBit--) & 1) === 1;
697
698
					$this->set($x, $y, $v, $this::M_DATA);
699
700
					if($iBit === -1){
701
						$iByte++;
702
						$iBit = 7;
703
					}
704
				}
705
			}
706
707
			$direction = !$direction; // switch directions
0 ignored issues
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introduced by
The condition $direction is always true.
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708
		}
709
710
		return $this;
711
	}
712
713
	/**
714
	 * Applies/reverses the mask pattern
715
	 *
716
	 * ISO/IEC 18004:2000 Section 8.8.1
717
	 */
718
	public function mask(MaskPattern $maskPattern):self{
719
		$this->maskPattern = $maskPattern;
720
		$mask              = $this->maskPattern->getMask();
721
722
		foreach($this->matrix as $y => $row){
723
			foreach($row as $x => $val){
724
				// skip non-data modules
725
				if(($val & $this::M_DATA) !== $this::M_DATA){
726
					continue;
727
				}
728
729
				if($mask($x, $y)){
730
					$this->set($x, $y, ($val & $this::IS_DARK) !== $this::IS_DARK, $val);
731
				}
732
			}
733
		}
734
735
		return $this;
736
	}
737
738
}
739