Ptex
Ptexture.h
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1#ifndef Ptexture_h
2#define Ptexture_h
3
4/*
5PTEX SOFTWARE
6Copyright 2014 Disney Enterprises, Inc. All rights reserved
7
8Redistribution and use in source and binary forms, with or without
9modification, are permitted provided that the following conditions are
10met:
11
12 * Redistributions of source code must retain the above copyright
13 notice, this list of conditions and the following disclaimer.
14
15 * Redistributions in binary form must reproduce the above copyright
16 notice, this list of conditions and the following disclaimer in
17 the documentation and/or other materials provided with the
18 distribution.
19
20 * The names "Disney", "Walt Disney Pictures", "Walt Disney Animation
21 Studios" or the names of its contributors may NOT be used to
22 endorse or promote products derived from this software without
23 specific prior written permission from Walt Disney Pictures.
24
25Disclaimer: THIS SOFTWARE IS PROVIDED BY WALT DISNEY PICTURES AND
26CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING,
27BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS
28FOR A PARTICULAR PURPOSE, NONINFRINGEMENT AND TITLE ARE DISCLAIMED.
29IN NO EVENT SHALL WALT DISNEY PICTURES, THE COPYRIGHT HOLDER OR
30CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
31EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
32PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
33PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND BASED ON ANY
34THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
35(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
36OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
37*/
38
44#include "PtexExports.h"
45#include "PtexInt.h"
46#include "PtexVersion.h"
47
48#include <ostream>
49
50#if !defined(PTEX_PLATFORM_WINDOWS)
51# ifndef DOXYGEN
52# define PTEX_USE_STDSTRING
53# endif
54#endif
55
56#ifdef DOXYGEN
58namespace Ptex {
59#else
61#endif
62
68 mt_quad
69 };
70
77};
78
83};
84
90};
91
94enum EdgeId {
98 e_left
99};
100
110
113
116
119
122
124PTEXAPI const char* EdgeIdName(EdgeId eid);
125
128
130inline int DataSize(DataType dt) {
131 static const int sizes[] = { 1,2,2,4 };
132 return sizes[dt];
133}
134
136inline float OneValue(DataType dt) {
137 static const float one[] = { 255.f, 65535.f, 1.f, 1.f };
138 return one[dt];
139}
140
142inline float OneValueInv(DataType dt) {
143 static const float one[] = { 1.f/255.f, 1.f/65535.f, 1.f, 1.f };
144 return one[dt];
145}
146
148PTEXAPI void ConvertToFloat(float* dst, const void* src,
149 Ptex::DataType dt, int numChannels);
150
152PTEXAPI void ConvertFromFloat(void* dst, const float* src,
153 Ptex::DataType dt, int numChannels);
154
159struct Res {
160 int8_t ulog2;
161 int8_t vlog2;
162
164 Res() : ulog2(0), vlog2(0) {}
165
167 Res(int8_t ulog2_, int8_t vlog2_) : ulog2(ulog2_), vlog2(vlog2_) {}
168
170 Res(uint16_t value) : ulog2(int8_t(value&0xff)), vlog2(int8_t((value>>8)&0xff)) {}
171
173 int u() const { return 1<<(unsigned)ulog2; }
174
176 int v() const { return 1<<(unsigned)vlog2; }
177
179 uint16_t val() const { return uint16_t(ulog2 | (vlog2<<8)); }
180
182 int size() const { return u() * v(); }
183
185 size_t size64() const { return size_t(u()) * v(); }
186
188 bool operator==(const Res& r) const { return r.ulog2 == ulog2 && r.vlog2 == vlog2; }
189
191 bool operator!=(const Res& r) const { return !(r==*this); }
192
194 bool operator>=(const Res& r) const { return ulog2 >= r.ulog2 && vlog2 >= r.vlog2; }
195
197 Res swappeduv() const { return Res(vlog2, ulog2); }
198
200 void swapuv() { *this = swappeduv(); }
201
203 void clamp(const Res& r) {
204 if (ulog2 > r.ulog2) ulog2 = r.ulog2;
205 if (vlog2 > r.vlog2) vlog2 = r.vlog2;
206 }
207
209 int ntilesu(Res tileres) const { return 1<<(ulog2-tileres.ulog2); }
210
212 int ntilesv(Res tileres) const { return 1<<(vlog2-tileres.vlog2); }
213
215 int ntiles(Res tileres) const { return ntilesu(tileres) * ntilesv(tileres); }
216};
217
232struct FaceInfo {
234 uint8_t adjedges;
235 uint8_t flags;
236 int32_t adjfaces[4];
237
240 {
241 adjfaces[0] = adjfaces[1] = adjfaces[2] = adjfaces[3] = -1;
242 }
243
245 FaceInfo(Res res_) : res(res_), adjedges(0), flags(0)
246 {
247 adjfaces[0] = adjfaces[1] = adjfaces[2] = adjfaces[3] = -1;
248 }
249
251 FaceInfo(Res res_, int adjfaces_[4], int adjedges_[4], bool isSubface_=false)
252 : res(res_), flags(isSubface_ ? flag_subface : 0)
253 {
254 setadjfaces(adjfaces_[0], adjfaces_[1], adjfaces_[2], adjfaces_[3]);
255 setadjedges(adjedges_[0], adjedges_[1], adjedges_[2], adjedges_[3]);
256 }
257
259 EdgeId adjedge(int eid) const { return EdgeId((adjedges >> (2*eid)) & 3); }
260
262 int adjface(int eid) const { return adjfaces[eid]; }
263
265 bool isConstant() const { return (flags & flag_constant) != 0; }
266
268 bool isNeighborhoodConstant() const { return (flags & flag_nbconstant) != 0; }
269
271 bool hasEdits() const { return false; }
272
274 bool isSubface() const { return (flags & flag_subface) != 0; }
275
277 void setadjfaces(int f0, int f1, int f2, int f3)
278 { adjfaces[0] = f0, adjfaces[1] = f1, adjfaces[2] = f2; adjfaces[3] = f3; }
279
281 void setadjedges(int e0, int e1, int e2, int e3)
282 { adjedges = (uint8_t)((e0&3) | ((e1&3)<<2) | ((e2&3)<<4) | ((e3&3)<<6)); }
283
286};
287
288
295#ifdef PTEX_USE_STDSTRING
296typedef std::string String;
297#else
299{
300public:
301 String() : _str(0) {}
302 String(const String& str) : _str(0) { *this = str; }
304 PTEXAPI String& operator=(const char* str);
305 String& operator=(const String& str) { *this = str._str; return *this; }
306 String& operator=(const std::string& str) { *this = str.c_str(); return *this; }
307 const char* c_str() const { return _str ? _str : ""; }
308 bool empty() const { return _str == 0 || _str[0] == '\0'; }
309
310private:
311 char* _str;
312};
313#endif
314
316#ifndef PTEX_USE_STDSTRING
317PTEXAPI std::ostream& operator << (std::ostream& stream, const Ptex::String& str);
318#endif
319
320
321#ifdef DOXYGEN
322} // end namespace Ptex
323#endif
324
332 protected:
334 virtual ~PtexMetaData() {}
335
336 public:
338 virtual void release() = 0;
339
341 virtual int numKeys() = 0;
342
344 virtual void getKey(int index, const char*& key, Ptex::MetaDataType& type) = 0;
345
347 virtual bool findKey(const char* key, int& index, Ptex::MetaDataType& type) = 0;
348
351 virtual void getValue(const char* key, const char*& value) = 0;
352
355 virtual void getValue(int index, const char*& value) = 0;
356
359 virtual void getValue(const char* key, const int8_t*& value, int& count) = 0;
360
363 virtual void getValue(int index, const int8_t*& value, int& count) = 0;
364
367 virtual void getValue(const char* key, const int16_t*& value, int& count) = 0;
368
371 virtual void getValue(int index, const int16_t*& value, int& count) = 0;
372
375 virtual void getValue(const char* key, const int32_t*& value, int& count) = 0;
376
379 virtual void getValue(int index, const int32_t*& value, int& count) = 0;
380
383 virtual void getValue(const char* key, const float*& value, int& count) = 0;
384
387 virtual void getValue(int index, const float*& value, int& count) = 0;
388
391 virtual void getValue(const char* key, const double*& value, int& count) = 0;
392
395 virtual void getValue(int index, const double*& value, int& count) = 0;
396};
397
398
410 protected:
412 virtual ~PtexFaceData() {}
413
414 public:
416 virtual void release() = 0;
417
419 virtual bool isConstant() = 0;
420
424 virtual Ptex::Res res() = 0;
425
429 virtual void getPixel(int u, int v, void* result) = 0;
430
437 virtual void* getData() = 0;
438
441 virtual bool isTiled() = 0;
442
444 virtual Ptex::Res tileRes() = 0;
445
447 virtual PtexFaceData* getTile(int tile) = 0;
448};
449
450
461 protected:
463 virtual ~PtexTexture() {}
464
465 public:
477 PTEXAPI static PtexTexture* open(const char* path, Ptex::String& error, bool premultiply=0);
478
479
481 virtual void release() = 0;
482
486 virtual const char* path() = 0;
487
489 struct Info {
490 MeshType meshType;
491 DataType dataType;
492 BorderMode uBorderMode;
493 BorderMode vBorderMode;
494 EdgeFilterMode edgeFilterMode;
498 };
499 virtual Info getInfo() = 0;
500
503
506
509
512
515
519 virtual int alphaChannel() = 0;
520
522 virtual int numChannels() = 0;
523
525 virtual int numFaces() = 0;
526
528 virtual bool hasEdits() = 0;
529
531 virtual bool hasMipMaps() = 0;
532
534 virtual PtexMetaData* getMetaData() = 0;
535
537 virtual const Ptex::FaceInfo& getFaceInfo(int faceid) = 0;
538
554 virtual void getData(int faceid, void* buffer, int stride) = 0;
555
567 virtual void getData(int faceid, void* buffer, int stride, Ptex::Res res) = 0;
568
570 virtual PtexFaceData* getData(int faceid) = 0;
571
581 virtual PtexFaceData* getData(int faceid, Ptex::Res res) = 0;
582
595 virtual void getPixel(int faceid, int u, int v,
596 float* result, int firstchan, int nchannels) = 0;
597
609 virtual void getPixel(int faceid, int u, int v,
610 float* result, int firstchan, int nchannels,
611 Ptex::Res res) = 0;
612
617 virtual void* getConstantData(int faceid) = 0;
618};
619
620
629 protected:
630 virtual ~PtexInputHandler() {}
631
632 public:
633 typedef void* Handle;
634
639 virtual Handle open(const char* path) = 0;
640
642 virtual void seek(Handle handle, int64_t pos) = 0;
643
649 virtual size_t read(void* buffer, size_t size, Handle handle) = 0;
650
653 virtual bool close(Handle handle) = 0;
654
656 virtual const char* lastError() = 0;
657};
658
659
668 protected:
669 virtual ~PtexErrorHandler() {}
670
671 public:
672 virtual void reportError(const char* error) = 0;
673};
674
675
694 protected:
696 virtual ~PtexCache() {}
697
698 public:
720 PTEXAPI static PtexCache* create(int maxFiles,
721 size_t maxMem,
722 bool premultiply=false,
723 PtexInputHandler* inputHandler=0,
724 PtexErrorHandler* errorHandler=0);
725
727 virtual void release() = 0;
728
734 virtual void setSearchPath(const char* path) = 0;
735
737 virtual const char* getSearchPath() = 0;
738
766 virtual PtexTexture* get(const char* path, Ptex::String& error) = 0;
767
773 virtual void purge(PtexTexture* texture) = 0;
774
780 virtual void purge(const char* path) = 0;
781
786 virtual void purgeAll() = 0;
787
788 struct Stats {
789 uint64_t memUsed;
790 uint64_t peakMemUsed;
791 uint64_t filesOpen;
794 uint64_t fileReopens;
795 uint64_t blockReads;
796 };
797
799 virtual void getStats(Stats& stats) = 0;
800};
801
802
820 protected:
822 virtual ~PtexWriter() {}
823
824 public:
835 PTEXAPI
836 static PtexWriter* open(const char* path,
838 int nchannels, int alphachan, int nfaces,
839 Ptex::String& error, bool genmipmaps=true);
840
848 PTEXAPI
849 static PtexWriter* edit(const char* path,
851 int nchannels, int alphachan, int nfaces,
852 Ptex::String& error, bool genmipmaps=true);
853
861 PTEXAPI
862 static PtexWriter* edit(const char* path, bool incremental,
864 int nchannels, int alphachan, int nfaces,
865 Ptex::String& error, bool genmipmaps=true);
866
869 PTEXAPI
870 static bool applyEdits(const char* path, Ptex::String& error);
871
873 virtual void release() = 0;
874
876 virtual void setBorderModes(Ptex::BorderMode uBorderMode, Ptex::BorderMode vBorderMode) = 0;
877
879 virtual void setEdgeFilterMode(Ptex::EdgeFilterMode edgeFilterMode) = 0;
880
882 virtual void writeMeta(const char* key, const char* string) = 0;
883
885 virtual void writeMeta(const char* key, const int8_t* value, int count) = 0;
886
888 virtual void writeMeta(const char* key, const int16_t* value, int count) = 0;
889
891 virtual void writeMeta(const char* key, const int32_t* value, int count) = 0;
892
894 virtual void writeMeta(const char* key, const float* value, int count) = 0;
895
897 virtual void writeMeta(const char* key, const double* value, int count) = 0;
898
900 virtual void writeMeta(PtexMetaData* data) = 0;
901
913 virtual bool writeFace(int faceid, const Ptex::FaceInfo& info, const void* data, int stride=0) = 0;
914
920 virtual bool writeConstantFace(int faceid, const Ptex::FaceInfo& info, const void* data) = 0;
921
925 virtual bool close(Ptex::String& error) = 0;
926
927#if NEW_API
928 virtual bool writeFaceReduction(int faceid, const Ptex::Res& res, const void* data, int stride=0) = 0;
929 virtual bool writeConstantFaceReduction(int faceid, const Ptex::Res& res, const void* data) = 0;
930#endif
931};
932
933
944 protected:
946 virtual ~PtexFilter() {}
947
948 public:
959 };
960
962 struct Options {
965 bool lerp;
966 float sharpness;
968
970 Options(FilterType filter_=f_box, bool lerp_=0, float sharpness_=0, bool noedgeblend_=0) :
971 __structSize(sizeof(Options)),
972 filter(filter_), lerp(lerp_), sharpness(sharpness_), noedgeblend(noedgeblend_) {}
973 };
974
975
976 /* Evaluate a texture using specified filter options
977
978 The filter region is a parallelogram centered at the given
979 (u,v) coordinate with sides defined by two vectors [uw1, vw1]
980 and [uw2, vw2]. For an axis-aligned rectangle, the vectors
981 are [uw, 0] and [0, vw]. See \link filterfootprint Filter
982 Footprint \endlink for details.
983
984 @param tx Texture to evaluate
985 @param opts Filter options
986 @param result Buffer to hold filter result. Must be large enough to hold nchannels worth of data.
987 @param firstchan First channel to evaluate [0..tx->numChannels()-1]
988 @param nchannels Number of channels to evaluate
989 @param faceid Face index [0..tx->numFaces()-1]
990 @param u U coordinate, normalized [0..1]
991 @param v V coordinate, normalized [0..1]
992 @param uw1 U filter width 1, normalized [0..1]
993 @param vw1 V filter width 1, normalized [0..1]
994 @param uw2 U filter width 2, normalized [0..1]
995 @param vw2 V filter width 2, normalized [0..1]
996 @param width scale factor for filter width
997 @param blur amount to add to filter width [0..1]
998 */
999 PTEXAPI static void eval(PtexTexture* tx, const Options& opts,
1000 float* result, int firstchan, int nchannels,
1001 int faceid, float u, float v, float uw1, float vw1, float uw2, float vw2,
1002 float width=1, float blur=0);
1003
1004 /* Construct a filter for the given texture. Deprecated. (use static eval method)
1005 */
1006 PTEXAPI static PtexFilter* getFilter(PtexTexture* tx, const Options& opts);
1007
1009 virtual void release() = 0;
1010
1032 virtual void eval(float* result, int firstchan, int nchannels,
1033 int faceid, float u, float v, float uw1, float vw1, float uw2, float vw2,
1034 float width=1, float blur=0) = 0;
1035};
1036
1037
1067template <class T> class PtexPtr {
1069 public:
1071 PtexPtr(T* ptr=0) : _ptr(ptr) {}
1072
1074 ~PtexPtr() { if (_ptr) _ptr->release(); }
1075
1077 operator T* () const { return _ptr; }
1078
1080 T* operator-> () const { return _ptr; }
1081
1083 T* get() const { return _ptr; }
1084
1086 void swap(PtexPtr& p)
1087 {
1088 T* tmp = p._ptr;
1089 p._ptr = _ptr;
1090 _ptr = tmp;
1091 }
1092
1094 void reset(T* ptr=0) {
1095 if (_ptr) _ptr->release();
1096 _ptr = ptr;
1097 }
1098
1099 private:
1101 PtexPtr(const PtexPtr& p);
1102
1105};
1106
1107#ifndef DOXYGEN
1108namespace PtexUtils {}
1109
1111
1112using Ptex::PtexMetaData;
1113using Ptex::PtexFaceData;
1114using Ptex::PtexTexture;
1115using Ptex::PtexInputHandler;
1116using Ptex::PtexErrorHandler;
1117using Ptex::PtexCache;
1118using Ptex::PtexWriter;
1119using Ptex::PtexFilter;
1120using Ptex::PtexPtr;
1121namespace PtexUtils = Ptex::PtexUtils;
1122
1123#endif
1124#endif
Definitions related to exported Ptex API symbol visibility.
#define PTEXAPI
Definition: PtexExports.h:60
Portable fixed-width integer types.
std::ostream & operator<<(std::ostream &stream, const String &str)
Definition: PtexUtils.cpp:692
#define PTEX_NAMESPACE_END
Definition: PtexVersion.h:62
File-handle and memory cache for reading ptex files.
Definition: Ptexture.h:693
virtual void getStats(Stats &stats)=0
Get stats.
virtual void release()=0
Release PtexCache. Cache will be immediately destroyed and all resources will be released.
virtual PtexTexture * get(const char *path, Ptex::String &error)=0
Access a texture.
virtual void purge(PtexTexture *texture)=0
Remove a texture file from the cache.
static PtexCache * create(int maxFiles, size_t maxMem, bool premultiply=false, PtexInputHandler *inputHandler=0, PtexErrorHandler *errorHandler=0)
Create a cache with the specified limits.
Definition: PtexCache.cpp:173
virtual void setSearchPath(const char *path)=0
Set a search path for finding textures.
virtual ~PtexCache()
Destructor not for public use. Use release() instead.
Definition: Ptexture.h:696
virtual const char * getSearchPath()=0
Query the search path.
virtual void purgeAll()=0
Remove all texture files from the cache.
virtual void purge(const char *path)=0
Remove a texture file from the cache by pathname.
Custom handler interface redirecting Ptex error messages.
Definition: Ptexture.h:667
virtual void reportError(const char *error)=0
virtual ~PtexErrorHandler()
Definition: Ptexture.h:669
Per-face texture data accessor.
Definition: Ptexture.h:409
virtual PtexFaceData * getTile(int tile)=0
Access a tile from the data block.
virtual bool isTiled()=0
True if this data block is tiled.
virtual void release()=0
Release resources held by this pointer (pointer becomes invalid).
virtual void getPixel(int u, int v, void *result)=0
Read a single texel from the data block.
virtual Ptex::Res tileRes()=0
Resolution of each tile in this data block.
virtual bool isConstant()=0
True if this data block is constant.
virtual ~PtexFaceData()
Destructor not for public use. Use release() instead.
Definition: Ptexture.h:412
virtual void * getData()=0
Access the data from this data block.
virtual Ptex::Res res()=0
Resolution of the texture held by this data block.
Interface for filtered sampling of ptex data files.
Definition: Ptexture.h:943
static PtexFilter * getFilter(PtexTexture *tx, const Options &opts)
virtual void release()=0
Release resources held by this pointer (pointer becomes invalid).
virtual ~PtexFilter()
Destructor not for public use. Use release() instead.
Definition: Ptexture.h:946
static void eval(PtexTexture *tx, const Options &opts, float *result, int firstchan, int nchannels, int faceid, float u, float v, float uw1, float vw1, float uw2, float vw2, float width=1, float blur=0)
virtual void eval(float *result, int firstchan, int nchannels, int faceid, float u, float v, float uw1, float vw1, float uw2, float vw2, float width=1, float blur=0)=0
Apply filter to a ptex data file.
FilterType
Filter types.
Definition: Ptexture.h:950
@ f_bicubic
General bi-cubic filter (uses sharpness option)
Definition: Ptexture.h:955
@ f_bspline
BSpline (equivalent to bi-cubic w/ sharpness=0)
Definition: Ptexture.h:956
@ f_bilinear
Bi-linear interpolation.
Definition: Ptexture.h:952
@ f_catmullrom
Catmull-Rom (equivalent to bi-cubic w/ sharpness=1)
Definition: Ptexture.h:957
@ f_mitchell
Mitchell (equivalent to bi-cubic w/ sharpness=2/3)
Definition: Ptexture.h:958
@ f_box
Box filter.
Definition: Ptexture.h:953
@ f_gaussian
Gaussian filter.
Definition: Ptexture.h:954
@ f_point
Point-sampled (no filtering)
Definition: Ptexture.h:951
Custom handler interface for intercepting and redirecting Ptex input stream calls.
Definition: Ptexture.h:628
virtual void seek(Handle handle, int64_t pos)=0
Seek to an absolute byte position in the input stream.
virtual ~PtexInputHandler()
Definition: Ptexture.h:630
virtual size_t read(void *buffer, size_t size, Handle handle)=0
Read a number of bytes from the file.
virtual const char * lastError()=0
Return the last error message encountered.
virtual Handle open(const char *path)=0
Open a file in read mode.
virtual bool close(Handle handle)=0
Close a file.
Meta data accessor.
Definition: Ptexture.h:331
virtual void getValue(int index, const int8_t *&value, int &count)=0
Query the value of a given meta data entry by index.
virtual void getValue(int index, const int32_t *&value, int &count)=0
Query the value of a given meta data entry by index.
virtual void getValue(const char *key, const double *&value, int &count)=0
Query the value of a given meta data entry.
virtual int numKeys()=0
Query number of meta data entries stored in file.
virtual ~PtexMetaData()
Destructor not for public use. Use release() instead.
Definition: Ptexture.h:334
virtual void getValue(const char *key, const int8_t *&value, int &count)=0
Query the value of a given meta data entry.
virtual void release()=0
Release resources held by this pointer (pointer becomes invalid).
virtual void getValue(int index, const double *&value, int &count)=0
Query the value of a given meta data entry by index.
virtual void getValue(const char *key, const int32_t *&value, int &count)=0
Query the value of a given meta data entry.
virtual bool findKey(const char *key, int &index, Ptex::MetaDataType &type)=0
Query the index and type of a meta data entry by name.
virtual void getValue(int index, const int16_t *&value, int &count)=0
Query the value of a given meta data entry by index.
virtual void getValue(const char *key, const float *&value, int &count)=0
Query the value of a given meta data entry.
virtual void getValue(int index, const float *&value, int &count)=0
Query the value of a given meta data entry by index.
virtual void getValue(const char *key, const char *&value)=0
Query the value of a given meta data entry.
virtual void getValue(int index, const char *&value)=0
Query the value of a given meta data entry by index.
virtual void getKey(int index, const char *&key, Ptex::MetaDataType &type)=0
Query the name and type of a meta data entry.
virtual void getValue(const char *key, const int16_t *&value, int &count)=0
Query the value of a given meta data entry.
Smart-pointer for acquiring and releasing API objects.
Definition: Ptexture.h:1067
PtexPtr(const PtexPtr &p)
Copying prohibited.
PtexPtr(T *ptr=0)
Constructor.
Definition: Ptexture.h:1071
void reset(T *ptr=0)
Deallocate object pointed to, and optionally set to new value.
Definition: Ptexture.h:1094
T * get() const
Get pointer value.
Definition: Ptexture.h:1083
void operator=(PtexPtr &p)
Assignment prohibited.
~PtexPtr()
Destructor, calls ptr->release().
Definition: Ptexture.h:1074
T * operator->() const
Access members of pointer.
Definition: Ptexture.h:1080
void swap(PtexPtr &p)
Swap pointer values.
Definition: Ptexture.h:1086
T * _ptr
Definition: Ptexture.h:1068
Interface for reading data from a ptex file.
Definition: Ptexture.h:460
virtual void * getConstantData(int faceid)=0
Access the constant (or average) data value for a given face.
virtual void getData(int faceid, void *buffer, int stride)=0
Access texture data for a face at highest-resolution.
virtual Ptex::MeshType meshType()=0
Type of mesh for which texture data is defined.
virtual Ptex::BorderMode uBorderMode()=0
Mode for filtering texture access beyond mesh border.
virtual ~PtexTexture()
Destructor not for public use. Use release() instead.
Definition: Ptexture.h:463
virtual PtexMetaData * getMetaData()=0
Access meta data.
virtual bool hasMipMaps()=0
True if the file has mipmaps.
virtual Info getInfo()=0
virtual int numFaces()=0
Number of faces stored in file.
virtual Ptex::DataType dataType()=0
Type of data stored in file.
virtual void getData(int faceid, void *buffer, int stride, Ptex::Res res)=0
Access texture data for a face at a specific resolution.
virtual PtexFaceData * getData(int faceid, Ptex::Res res)=0
Access texture data for a face at a specific resolution as stored on disk.
virtual const char * path()=0
Path that file was opened with.
virtual int alphaChannel()=0
Index of alpha channel (if any).
virtual Ptex::EdgeFilterMode edgeFilterMode()=0
Mode for filtering textures across edges.
static PtexTexture * open(const char *path, Ptex::String &error, bool premultiply=0)
Open a ptex file for reading.
Definition: PtexReader.cpp:61
virtual void getPixel(int faceid, int u, int v, float *result, int firstchan, int nchannels)=0
Access a single texel from the highest resolution texture .
virtual PtexFaceData * getData(int faceid)=0
Access texture data for a face at highest-resolution as stored on disk.
virtual bool hasEdits()=0
Obsolete (returns false).
virtual Ptex::BorderMode vBorderMode()=0
Mode for filtering texture access beyond mesh border.
virtual int numChannels()=0
Number of channels stored in file.
virtual const Ptex::FaceInfo & getFaceInfo(int faceid)=0
Access resolution and adjacency information about a face.
virtual void getPixel(int faceid, int u, int v, float *result, int firstchan, int nchannels, Ptex::Res res)=0
Access a single texel for a face at a particular resolution.
virtual void release()=0
Release resources held by this pointer (pointer becomes invalid).
Interface for writing data to a ptex file.
Definition: Ptexture.h:819
virtual void setBorderModes(Ptex::BorderMode uBorderMode, Ptex::BorderMode vBorderMode)=0
Set border modes.
virtual void writeMeta(const char *key, const float *value, int count)=0
Write an array of signed 32-bit floats as meta data.
virtual void setEdgeFilterMode(Ptex::EdgeFilterMode edgeFilterMode)=0
Set edge filter mode.
virtual void release()=0
Release resources held by this pointer (pointer becomes invalid).
virtual void writeMeta(const char *key, const int8_t *value, int count)=0
Write an array of signed 8-bit integers as meta data.
static bool applyEdits(const char *path, Ptex::String &error)
Obsolete (returns true).
Definition: PtexWriter.cpp:175
virtual void writeMeta(const char *key, const int32_t *value, int count)=0
Write an array of signed 32-bit integers as meta data.
virtual void writeMeta(const char *key, const int16_t *value, int count)=0
Write an array of signed 16-bit integers as meta data.
virtual void writeMeta(const char *key, const char *string)=0
Write a string as meta data.
static PtexWriter * edit(const char *path, Ptex::MeshType mt, Ptex::DataType dt, int nchannels, int alphachan, int nfaces, Ptex::String &error, bool genmipmaps=true)
Open an existing texture file for writing.
Definition: PtexWriter.cpp:119
virtual bool close(Ptex::String &error)=0
Close the file.
virtual void writeMeta(const char *key, const double *value, int count)=0
Write an array of signed 32-bit doubles as meta data.
virtual void writeMeta(PtexMetaData *data)=0
Copy meta data from an existing meta data block.
static PtexWriter * open(const char *path, Ptex::MeshType mt, Ptex::DataType dt, int nchannels, int alphachan, int nfaces, Ptex::String &error, bool genmipmaps=true)
Open a new texture file for writing.
Definition: PtexWriter.cpp:100
virtual bool writeConstantFace(int faceid, const Ptex::FaceInfo &info, const void *data)=0
Write constant texture data for a face.
virtual ~PtexWriter()
Destructor not for public use. Use release() instead.
Definition: Ptexture.h:822
virtual bool writeFace(int faceid, const Ptex::FaceInfo &info, const void *data, int stride=0)=0
Write texture data for a face.
Memory-managed string.
Definition: Ptexture.h:299
const char * c_str() const
Definition: Ptexture.h:307
String & operator=(const std::string &str)
Definition: Ptexture.h:306
bool empty() const
Definition: Ptexture.h:308
char * _str
Definition: Ptexture.h:311
String & operator=(const String &str)
Definition: Ptexture.h:305
String(const String &str)
Definition: Ptexture.h:302
String & operator=(const char *str)
Definition: PtexUtils.cpp:685
Common data structures and enums used throughout the API.
Definition: Ptexture.h:58
const char * DataTypeName(DataType dt)
Look up name of given data type.
int DataSize(DataType dt)
Look up size of given data type (in bytes).
Definition: Ptexture.h:130
const char * MeshTypeName(MeshType mt)
Look up name of given mesh type.
void ConvertFromFloat(void *dst, const float *src, Ptex::DataType dt, int numChannels)
Convert a number of data values from float to the given data type.
EdgeId
Edge IDs used in adjacency data in the Ptex::FaceInfo struct.
Definition: Ptexture.h:94
@ e_right
Right edge, from UV (1,0) to (1,1)
Definition: Ptexture.h:96
@ e_top
Top edge, from UV (1,1) to (0,1)
Definition: Ptexture.h:97
@ e_left
Left edge, from UV (0,1) to (0,0)
Definition: Ptexture.h:98
@ e_bottom
Bottom edge, from UV (0,0) to (1,0)
Definition: Ptexture.h:95
const char * EdgeFilterModeName(EdgeFilterMode m)
Look up name of given edge filter mode.
DataType
Type of data stored in texture file.
Definition: Ptexture.h:72
@ dt_half
Half-precision (16-bit) floating point.
Definition: Ptexture.h:75
@ dt_float
Single-precision (32-bit) floating point.
Definition: Ptexture.h:76
@ dt_uint16
Unsigned, 16-bit integer.
Definition: Ptexture.h:74
@ dt_uint8
Unsigned, 8-bit integer.
Definition: Ptexture.h:73
float OneValue(DataType dt)
Look up value of given data type that corresponds to the normalized value of 1.0.
Definition: Ptexture.h:136
const char * MetaDataTypeName(MetaDataType mdt)
Look up name of given meta data type.
const char * EdgeIdName(EdgeId eid)
Look up name of given edge ID.
MeshType
Type of base mesh for which the textures are defined.
Definition: Ptexture.h:66
@ mt_triangle
Mesh is triangle-based.
Definition: Ptexture.h:67
@ mt_quad
Mesh is quad-based.
Definition: Ptexture.h:68
BorderMode
How to handle mesh border when filtering.
Definition: Ptexture.h:86
@ m_black
texel beyond border are assumed to be black
Definition: Ptexture.h:88
@ m_clamp
texel access is clamped to border
Definition: Ptexture.h:87
@ m_periodic
texel access wraps to other side of face
Definition: Ptexture.h:89
void ConvertToFloat(float *dst, const void *src, Ptex::DataType dt, int numChannels)
Convert a number of data values from the given data type to float.
MetaDataType
Type of meta data entry.
Definition: Ptexture.h:102
@ mdt_string
Null-terminated string.
Definition: Ptexture.h:103
@ mdt_float
Single-precision (32-bit) floating point.
Definition: Ptexture.h:107
@ mdt_int32
Signed 32-bit integer.
Definition: Ptexture.h:106
@ mdt_int8
Signed 8-bit integer.
Definition: Ptexture.h:104
@ mdt_double
Double-precision (32-bit) floating point.
Definition: Ptexture.h:108
@ mdt_int16
Signed 16-bit integer.
Definition: Ptexture.h:105
EdgeFilterMode
How to handle transformation across edges when filtering.
Definition: Ptexture.h:80
@ efm_none
Don't do anything with the values.
Definition: Ptexture.h:81
@ efm_tanvec
Values are vectors in tangent space; rotate values.
Definition: Ptexture.h:82
const char * BorderModeName(BorderMode m)
Look up name of given border mode.
float OneValueInv(DataType dt)
Lookup up inverse value of given data type that corresponds to the normalized value of 1....
Definition: Ptexture.h:142
uint64_t filesAccessed
Definition: Ptexture.h:793
uint64_t filesOpen
Definition: Ptexture.h:791
uint64_t peakFilesOpen
Definition: Ptexture.h:792
uint64_t fileReopens
Definition: Ptexture.h:794
uint64_t memUsed
Definition: Ptexture.h:789
uint64_t blockReads
Definition: Ptexture.h:795
uint64_t peakMemUsed
Definition: Ptexture.h:790
Choose filter options.
Definition: Ptexture.h:962
FilterType filter
Filter type.
Definition: Ptexture.h:964
int __structSize
(for internal use only)
Definition: Ptexture.h:963
float sharpness
Filter sharpness, 0..1 (for general bi-cubic filter only).
Definition: Ptexture.h:966
bool lerp
Interpolate between mipmap levels.
Definition: Ptexture.h:965
bool noedgeblend
Disable cross-face filtering. Useful for debugging or rendering on polys.
Definition: Ptexture.h:967
Options(FilterType filter_=f_box, bool lerp_=0, float sharpness_=0, bool noedgeblend_=0)
Constructor - sets defaults.
Definition: Ptexture.h:970
Get most commonly used info in a single call for convenience / efficiency.
Definition: Ptexture.h:489
BorderMode uBorderMode
Definition: Ptexture.h:492
BorderMode vBorderMode
Definition: Ptexture.h:493
EdgeFilterMode edgeFilterMode
Definition: Ptexture.h:494
DataType dataType
Definition: Ptexture.h:491
MeshType meshType
Definition: Ptexture.h:490
Information about a face, as stored in the Ptex file header.
Definition: Ptexture.h:232
void setadjedges(int e0, int e1, int e2, int e3)
Set the adjedges data.
Definition: Ptexture.h:281
bool hasEdits() const
Obsolete (returns false).
Definition: Ptexture.h:271
bool isNeighborhoodConstant() const
Determine if neighborhood of face is constant (by checking a flag).
Definition: Ptexture.h:268
FaceInfo(Res res_)
Constructor.
Definition: Ptexture.h:245
bool isSubface() const
Determine if face is a subface (by checking a flag).
Definition: Ptexture.h:274
Res res
Resolution of face.
Definition: Ptexture.h:233
EdgeId adjedge(int eid) const
Access an adjacent edge id. The eid value must be 0..3.
Definition: Ptexture.h:259
bool isConstant() const
Determine if face is constant (by checking a flag).
Definition: Ptexture.h:265
uint8_t adjedges
Adjacent edges, 2 bits per edge.
Definition: Ptexture.h:234
int32_t adjfaces[4]
Adjacent faces (-1 == no adjacent face).
Definition: Ptexture.h:236
uint8_t flags
Flags.
Definition: Ptexture.h:235
FaceInfo(Res res_, int adjfaces_[4], int adjedges_[4], bool isSubface_=false)
Constructor.
Definition: Ptexture.h:251
FaceInfo()
Default constructor.
Definition: Ptexture.h:239
void setadjfaces(int f0, int f1, int f2, int f3)
Set the adjfaces data.
Definition: Ptexture.h:277
int adjface(int eid) const
Access an adjacent face id. The eid value must be 0..3.
Definition: Ptexture.h:262
Pixel resolution of a given texture.
Definition: Ptexture.h:159
bool operator>=(const Res &r) const
True if res is >= given res in both u and v directions.
Definition: Ptexture.h:194
int ntilesu(Res tileres) const
Determine the number of tiles in the u direction for the given tile res.
Definition: Ptexture.h:209
bool operator!=(const Res &r) const
Comparison operator.
Definition: Ptexture.h:191
Res(uint16_t value)
Constructor.
Definition: Ptexture.h:170
int8_t ulog2
log base 2 of u resolution, in texels
Definition: Ptexture.h:160
int ntilesv(Res tileres) const
Determine the number of tiles in the v direction for the given tile res.
Definition: Ptexture.h:212
Res()
Default constructor, sets res to 0 (1x1 texel).
Definition: Ptexture.h:164
uint16_t val() const
Resolution as a single 16-bit integer value.
Definition: Ptexture.h:179
int v() const
V resolution in texels.
Definition: Ptexture.h:176
Res swappeduv() const
Get value of resolution with u and v swapped.
Definition: Ptexture.h:197
int size() const
Total size of specified texture in texels (u * v). (deprecated, use size64)
Definition: Ptexture.h:182
size_t size64() const
Total size of specified texture in texels (u * v), allowing arbitrarily large textures.
Definition: Ptexture.h:185
Res(int8_t ulog2_, int8_t vlog2_)
Constructor.
Definition: Ptexture.h:167
void swapuv()
Swap the u and v resolution values in place.
Definition: Ptexture.h:200
void clamp(const Res &r)
Clamp the resolution value against the given value.
Definition: Ptexture.h:203
int ntiles(Res tileres) const
Determine the total number of tiles for the given tile res.
Definition: Ptexture.h:215
int u() const
U resolution in texels.
Definition: Ptexture.h:173
int8_t vlog2
log base 2 of v resolution, in texels
Definition: Ptexture.h:161
bool operator==(const Res &r) const
Comparison operator.
Definition: Ptexture.h:188