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reed@google.com8260a892011-06-13 14:02:52 +00001/*
epoger@google.comec3ed6a2011-07-28 14:26:00 +00002 * Copyright 2011 Google Inc.
3 *
4 * Use of this source code is governed by a BSD-style license that can be
5 * found in the LICENSE file.
reed@google.com8260a892011-06-13 14:02:52 +00006 */
7
reed@google.com8260a892011-06-13 14:02:52 +00008#ifndef SkMatrix44_DEFINED
9#define SkMatrix44_DEFINED
10
11#include "SkMatrix.h"
12#include "SkScalar.h"
13
reed@google.com8260a892011-06-13 14:02:52 +000014#ifdef SK_MSCALAR_IS_DOUBLE
reed@google.com7d683352012-12-03 21:19:52 +000015#ifdef SK_MSCALAR_IS_FLOAT
16 #error "can't define MSCALAR both as DOUBLE and FLOAT"
17#endif
reed@google.com8260a892011-06-13 14:02:52 +000018 typedef double SkMScalar;
reed@google.com7d683352012-12-03 21:19:52 +000019
reed@google.com8260a892011-06-13 14:02:52 +000020 static inline double SkFloatToMScalar(float x) {
21 return static_cast<double>(x);
22 }
23 static inline float SkMScalarToFloat(double x) {
24 return static_cast<float>(x);
25 }
26 static inline double SkDoubleToMScalar(double x) {
27 return x;
28 }
29 static inline double SkMScalarToDouble(double x) {
30 return x;
31 }
32 static const SkMScalar SK_MScalarPI = 3.141592653589793;
vollick@chromium.org5596a692012-11-13 20:12:00 +000033#elif defined SK_MSCALAR_IS_FLOAT
reed@google.com7d683352012-12-03 21:19:52 +000034#ifdef SK_MSCALAR_IS_DOUBLE
35 #error "can't define MSCALAR both as DOUBLE and FLOAT"
36#endif
reed@google.com8260a892011-06-13 14:02:52 +000037 typedef float SkMScalar;
skia.committer@gmail.com0264fb42012-12-06 02:01:25 +000038
reed@google.com8260a892011-06-13 14:02:52 +000039 static inline float SkFloatToMScalar(float x) {
40 return x;
41 }
42 static inline float SkMScalarToFloat(float x) {
43 return x;
44 }
45 static inline float SkDoubleToMScalar(double x) {
46 return static_cast<float>(x);
47 }
48 static inline double SkMScalarToDouble(float x) {
49 return static_cast<double>(x);
50 }
51 static const SkMScalar SK_MScalarPI = 3.14159265f;
52#endif
53
reed@google.com20d44672012-11-09 21:28:55 +000054#define SkMScalarToScalar SkMScalarToFloat
55#define SkScalarToMScalar SkFloatToMScalar
bsalomon@google.com72e49b82011-10-27 21:47:03 +000056
reed@google.com8260a892011-06-13 14:02:52 +000057static const SkMScalar SK_MScalar1 = 1;
58
59///////////////////////////////////////////////////////////////////////////////
60
61struct SkVector4 {
62 SkScalar fData[4];
63
64 SkVector4() {
65 this->set(0, 0, 0, 1);
66 }
67 SkVector4(const SkVector4& src) {
68 memcpy(fData, src.fData, sizeof(fData));
69 }
70 SkVector4(SkScalar x, SkScalar y, SkScalar z, SkScalar w = SK_Scalar1) {
71 fData[0] = x;
72 fData[1] = y;
73 fData[2] = z;
74 fData[3] = w;
75 }
76
77 SkVector4& operator=(const SkVector4& src) {
78 memcpy(fData, src.fData, sizeof(fData));
79 return *this;
80 }
81
82 bool operator==(const SkVector4& v) {
83 return fData[0] == v.fData[0] && fData[1] == v.fData[1] &&
84 fData[2] == v.fData[2] && fData[3] == v.fData[3];
85 }
86 bool operator!=(const SkVector4& v) {
87 return !(*this == v);
88 }
89 bool equals(SkScalar x, SkScalar y, SkScalar z, SkScalar w = SK_Scalar1) {
90 return fData[0] == x && fData[1] == y &&
91 fData[2] == z && fData[3] == w;
92 }
93
94 void set(SkScalar x, SkScalar y, SkScalar z, SkScalar w = SK_Scalar1) {
95 fData[0] = x;
96 fData[1] = y;
97 fData[2] = z;
98 fData[3] = w;
99 }
100};
101
reed@google.com65d8bb02011-07-05 19:12:59 +0000102class SK_API SkMatrix44 {
reed@google.com8260a892011-06-13 14:02:52 +0000103public:
vollick@chromium.org57a54e32012-12-10 20:16:10 +0000104
105 enum Uninitialized_Constructor {
106 kUninitialized_Constructor
107 };
108 enum Identity_Constructor {
109 kIdentity_Constructor
110 };
111
112 SkMatrix44(Uninitialized_Constructor) { }
113 SkMatrix44(Identity_Constructor) { this->setIdentity(); }
114
reed@google.comedb77132013-01-16 16:28:58 +0000115 // DEPRECATED: use the constructors that take an enum
reed@google.com7d683352012-12-03 21:19:52 +0000116 SkMatrix44() { this->setIdentity(); }
reed@google.comd5302532013-01-15 14:54:00 +0000117
118 SkMatrix44(const SkMatrix44& src) {
119 memcpy(fMat, src.fMat, sizeof(fMat));
120 fTypeMask = src.fTypeMask;
121 }
122
123 SkMatrix44(const SkMatrix44& a, const SkMatrix44& b) {
124 this->setConcat(a, b);
125 }
reed@google.com8260a892011-06-13 14:02:52 +0000126
127 SkMatrix44& operator=(const SkMatrix44& src) {
reed@google.comd5302532013-01-15 14:54:00 +0000128 memcpy(fMat, src.fMat, sizeof(fMat));
129 fTypeMask = src.fTypeMask;
reed@google.com8260a892011-06-13 14:02:52 +0000130 return *this;
131 }
132
reed@google.com631940c2012-11-27 13:13:22 +0000133 bool operator==(const SkMatrix44& other) const;
reed@google.com8260a892011-06-13 14:02:52 +0000134 bool operator!=(const SkMatrix44& other) const {
reed@google.com631940c2012-11-27 13:13:22 +0000135 return !(other == *this);
reed@google.com8260a892011-06-13 14:02:52 +0000136 }
137
138 SkMatrix44(const SkMatrix&);
139 SkMatrix44& operator=(const SkMatrix& src);
140 operator SkMatrix() const;
141
reed@google.com7d683352012-12-03 21:19:52 +0000142 /**
143 * Return a reference to a const identity matrix
144 */
145 static const SkMatrix44& I();
146
147 enum TypeMask {
148 kIdentity_Mask = 0,
149 kTranslate_Mask = 0x01, //!< set if the matrix has translation
150 kScale_Mask = 0x02, //!< set if the matrix has any scale != 1
151 kAffine_Mask = 0x04, //!< set if the matrix skews or rotates
152 kPerspective_Mask = 0x08 //!< set if the matrix is in perspective
153 };
skia.committer@gmail.com0264fb42012-12-06 02:01:25 +0000154
reed@google.com7d683352012-12-03 21:19:52 +0000155 /**
156 * Returns a bitfield describing the transformations the matrix may
157 * perform. The bitfield is computed conservatively, so it may include
158 * false positives. For example, when kPerspective_Mask is true, all
159 * other bits may be set to true even in the case of a pure perspective
160 * transform.
161 */
162 inline TypeMask getType() const {
163 if (fTypeMask & kUnknown_Mask) {
164 fTypeMask = this->computeTypeMask();
165 }
166 SkASSERT(!(fTypeMask & kUnknown_Mask));
167 return (TypeMask)fTypeMask;
168 }
169
mike@reedtribe.orgf8b1ebc2012-12-10 03:27:47 +0000170 /**
171 * Return true if the matrix is identity.
172 */
reed@google.com7d683352012-12-03 21:19:52 +0000173 inline bool isIdentity() const {
mike@reedtribe.orgf8b1ebc2012-12-10 03:27:47 +0000174 return kIdentity_Mask == this->getType();
175 }
176
177 /**
178 * Return true if the matrix contains translate or is identity.
179 */
180 inline bool isTranslate() const {
181 return !(this->getType() & ~kTranslate_Mask);
182 }
183
184 /**
185 * Return true if the matrix only contains scale or translate or is identity.
186 */
187 inline bool isScaleTranslate() const {
188 return !(this->getType() & ~(kScale_Mask | kTranslate_Mask));
reed@google.com7d683352012-12-03 21:19:52 +0000189 }
skia.committer@gmail.com0264fb42012-12-06 02:01:25 +0000190
reed@google.com7d683352012-12-03 21:19:52 +0000191 void setIdentity();
192 inline void reset() { this->setIdentity();}
193
194 /**
195 * get a value from the matrix. The row,col parameters work as follows:
196 * (0, 0) scale-x
197 * (0, 3) translate-x
198 * (3, 0) perspective-x
199 */
200 inline SkMScalar get(int row, int col) const {
reed@google.com631940c2012-11-27 13:13:22 +0000201 SkASSERT((unsigned)row <= 3);
202 SkASSERT((unsigned)col <= 3);
203 return fMat[col][row];
204 }
reed@google.com8260a892011-06-13 14:02:52 +0000205
reed@google.com7d683352012-12-03 21:19:52 +0000206 /**
207 * set a value in the matrix. The row,col parameters work as follows:
208 * (0, 0) scale-x
209 * (0, 3) translate-x
210 * (3, 0) perspective-x
211 */
212 inline void set(int row, int col, SkMScalar value) {
reed@google.com631940c2012-11-27 13:13:22 +0000213 SkASSERT((unsigned)row <= 3);
214 SkASSERT((unsigned)col <= 3);
215 fMat[col][row] = value;
reed@google.com7d683352012-12-03 21:19:52 +0000216 this->dirtyTypeMask();
reed@google.com631940c2012-11-27 13:13:22 +0000217 }
skia.committer@gmail.comab38f7a2012-11-28 02:02:11 +0000218
reed@google.com7d683352012-12-03 21:19:52 +0000219 inline double getDouble(int row, int col) const {
vollick@chromium.org9b21c252012-11-14 21:33:55 +0000220 return SkMScalarToDouble(this->get(row, col));
221 }
reed@google.com7d683352012-12-03 21:19:52 +0000222 inline void setDouble(int row, int col, double value) {
vollick@chromium.org9b21c252012-11-14 21:33:55 +0000223 this->set(row, col, SkDoubleToMScalar(value));
224 }
225
vollick@chromium.orgf11cf9f2012-11-19 21:02:06 +0000226 /** These methods allow one to efficiently read matrix entries into an
227 * array. The given array must have room for exactly 16 entries. Whenever
228 * possible, they will try to use memcpy rather than an entry-by-entry
229 * copy.
230 */
reed@google.comda9fac02011-06-13 14:46:52 +0000231 void asColMajorf(float[]) const;
232 void asColMajord(double[]) const;
233 void asRowMajorf(float[]) const;
234 void asRowMajord(double[]) const;
235
vollick@chromium.orgf11cf9f2012-11-19 21:02:06 +0000236 /** These methods allow one to efficiently set all matrix entries from an
237 * array. The given array must have room for exactly 16 entries. Whenever
238 * possible, they will try to use memcpy rather than an entry-by-entry
239 * copy.
240 */
241 void setColMajorf(const float[]);
242 void setColMajord(const double[]);
243 void setRowMajorf(const float[]);
244 void setRowMajord(const double[]);
245
reed@google.com7d683352012-12-03 21:19:52 +0000246#ifdef SK_MSCALAR_IS_FLOAT
247 void setColMajor(const SkMScalar data[]) { this->setColMajorf(data); }
248 void setRowMajor(const SkMScalar data[]) { this->setRowMajorf(data); }
249#else
250 void setColMajor(const SkMScalar data[]) { this->setColMajord(data); }
251 void setRowMajor(const SkMScalar data[]) { this->setRowMajord(data); }
252#endif
reed@google.com8260a892011-06-13 14:02:52 +0000253
254 void set3x3(SkMScalar m00, SkMScalar m01, SkMScalar m02,
255 SkMScalar m10, SkMScalar m11, SkMScalar m12,
256 SkMScalar m20, SkMScalar m21, SkMScalar m22);
257
258 void setTranslate(SkMScalar dx, SkMScalar dy, SkMScalar dz);
259 void preTranslate(SkMScalar dx, SkMScalar dy, SkMScalar dz);
260 void postTranslate(SkMScalar dx, SkMScalar dy, SkMScalar dz);
261
262 void setScale(SkMScalar sx, SkMScalar sy, SkMScalar sz);
263 void preScale(SkMScalar sx, SkMScalar sy, SkMScalar sz);
264 void postScale(SkMScalar sx, SkMScalar sy, SkMScalar sz);
265
reed@google.com7d683352012-12-03 21:19:52 +0000266 inline void setScale(SkMScalar scale) {
reed@google.com8260a892011-06-13 14:02:52 +0000267 this->setScale(scale, scale, scale);
268 }
reed@google.com7d683352012-12-03 21:19:52 +0000269 inline void preScale(SkMScalar scale) {
reed@google.com8260a892011-06-13 14:02:52 +0000270 this->preScale(scale, scale, scale);
271 }
reed@google.com7d683352012-12-03 21:19:52 +0000272 inline void postScale(SkMScalar scale) {
reed@google.com8260a892011-06-13 14:02:52 +0000273 this->postScale(scale, scale, scale);
274 }
275
276 void setRotateDegreesAbout(SkMScalar x, SkMScalar y, SkMScalar z,
277 SkMScalar degrees) {
278 this->setRotateAbout(x, y, z, degrees * SK_MScalarPI / 180);
279 }
280
281 /** Rotate about the vector [x,y,z]. If that vector is not unit-length,
282 it will be automatically resized.
283 */
284 void setRotateAbout(SkMScalar x, SkMScalar y, SkMScalar z,
285 SkMScalar radians);
286 /** Rotate about the vector [x,y,z]. Does not check the length of the
287 vector, assuming it is unit-length.
288 */
289 void setRotateAboutUnit(SkMScalar x, SkMScalar y, SkMScalar z,
290 SkMScalar radians);
291
292 void setConcat(const SkMatrix44& a, const SkMatrix44& b);
reed@google.com7d683352012-12-03 21:19:52 +0000293 inline void preConcat(const SkMatrix44& m) {
reed@google.com8260a892011-06-13 14:02:52 +0000294 this->setConcat(*this, m);
295 }
reed@google.com7d683352012-12-03 21:19:52 +0000296 inline void postConcat(const SkMatrix44& m) {
reed@google.com8260a892011-06-13 14:02:52 +0000297 this->setConcat(m, *this);
298 }
299
300 friend SkMatrix44 operator*(const SkMatrix44& a, const SkMatrix44& b) {
301 return SkMatrix44(a, b);
302 }
303
304 /** If this is invertible, return that in inverse and return true. If it is
305 not invertible, return false and ignore the inverse parameter.
306 */
307 bool invert(SkMatrix44* inverse) const;
308
vollick@chromium.org9b21c252012-11-14 21:33:55 +0000309 /** Transpose this matrix in place. */
310 void transpose();
311
reed@google.com8260a892011-06-13 14:02:52 +0000312 /** Apply the matrix to the src vector, returning the new vector in dst.
313 It is legal for src and dst to point to the same memory.
314 */
reed@google.com1ea95be2012-11-09 21:39:48 +0000315 void mapScalars(const SkScalar src[4], SkScalar dst[4]) const;
reed@google.com7d683352012-12-03 21:19:52 +0000316 inline void mapScalars(SkScalar vec[4]) const {
reed@google.com1ea95be2012-11-09 21:39:48 +0000317 this->mapScalars(vec, vec);
318 }
319
320 // DEPRECATED: call mapScalars()
321 void map(const SkScalar src[4], SkScalar dst[4]) const {
322 this->mapScalars(src, dst);
323 }
324 // DEPRECATED: call mapScalars()
reed@google.com8260a892011-06-13 14:02:52 +0000325 void map(SkScalar vec[4]) const {
reed@google.com1ea95be2012-11-09 21:39:48 +0000326 this->mapScalars(vec, vec);
327 }
328
329#ifdef SK_MSCALAR_IS_DOUBLE
reed@google.comdd311312012-11-12 20:43:59 +0000330 void mapMScalars(const SkMScalar src[4], SkMScalar dst[4]) const;
vollick@chromium.org5596a692012-11-13 20:12:00 +0000331#elif defined SK_MSCALAR_IS_FLOAT
reed@google.com7d683352012-12-03 21:19:52 +0000332 inline void mapMScalars(const SkMScalar src[4], SkMScalar dst[4]) const {
reed@google.com1ea95be2012-11-09 21:39:48 +0000333 this->mapScalars(src, dst);
334 }
335#endif
reed@google.com7d683352012-12-03 21:19:52 +0000336 inline void mapMScalars(SkMScalar vec[4]) const {
reed@google.com1ea95be2012-11-09 21:39:48 +0000337 this->mapMScalars(vec, vec);
reed@google.com8260a892011-06-13 14:02:52 +0000338 }
339
340 friend SkVector4 operator*(const SkMatrix44& m, const SkVector4& src) {
341 SkVector4 dst;
342 m.map(src.fData, dst.fData);
343 return dst;
344 }
345
reed@google.com99b5c7f2012-12-05 22:13:59 +0000346 /**
347 * map an array of [x, y, 0, 1] through the matrix, returning an array
348 * of [x', y', z', w'].
349 *
350 * @param src2 array of [x, y] pairs, with implied z=0 and w=1
351 * @param count number of [x, y] pairs in src2
352 * @param dst4 array of [x', y', z', w'] quads as the output.
353 */
354 void map2(const float src2[], int count, float dst4[]) const;
355 void map2(const double src2[], int count, double dst4[]) const;
356
reed@google.com8260a892011-06-13 14:02:52 +0000357 void dump() const;
358
vollick@chromium.org3959a762012-11-13 15:08:22 +0000359 double determinant() const;
360
reed@google.com8260a892011-06-13 14:02:52 +0000361private:
reed@google.comd5302532013-01-15 14:54:00 +0000362 SkMScalar fMat[4][4];
363 mutable unsigned fTypeMask;
skia.committer@gmail.com0264fb42012-12-06 02:01:25 +0000364
reed@google.com7d683352012-12-03 21:19:52 +0000365 enum {
366 kUnknown_Mask = 0x80,
jamesr@chromium.orgdeb4c162012-11-29 21:17:16 +0000367
reed@google.com7d683352012-12-03 21:19:52 +0000368 kAllPublic_Masks = 0xF
369 };
370
371 SkMScalar transX() const { return fMat[3][0]; }
372 SkMScalar transY() const { return fMat[3][1]; }
373 SkMScalar transZ() const { return fMat[3][2]; }
374
375 SkMScalar scaleX() const { return fMat[0][0]; }
376 SkMScalar scaleY() const { return fMat[1][1]; }
377 SkMScalar scaleZ() const { return fMat[2][2]; }
skia.committer@gmail.com0264fb42012-12-06 02:01:25 +0000378
reed@google.com7d683352012-12-03 21:19:52 +0000379 SkMScalar perspX() const { return fMat[0][3]; }
380 SkMScalar perspY() const { return fMat[1][3]; }
381 SkMScalar perspZ() const { return fMat[2][3]; }
382
383 int computeTypeMask() const;
384
385 inline void dirtyTypeMask() {
386 fTypeMask = kUnknown_Mask;
387 }
388
389 inline void setTypeMask(int mask) {
390 SkASSERT(0 == (~(kAllPublic_Masks | kUnknown_Mask) & mask));
391 fTypeMask = mask;
392 }
393
394 /**
395 * Does not take the time to 'compute' the typemask. Only returns true if
396 * we already know that this matrix is identity.
397 */
398 inline bool isTriviallyIdentity() const {
399 return 0 == fTypeMask;
400 }
reed@google.com8260a892011-06-13 14:02:52 +0000401};
402
403#endif