most console input line management moved to "iv.cmdcon"
[dd2d.git] / glutils.d
blob2e461d585569e5fff29de625595563015f760af8
1 /* DooM2D: Midnight on the Firing Line
2 * coded by Ketmar // Invisible Vector <ketmar@ketmar.no-ip.org>
3 * Understanding is not required. Only obedience.
5 * This program is free software: you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation, either version 3 of the License, or
8 * (at your option) any later version.
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
15 * You should have received a copy of the GNU General Public License
16 * along with this program. If not, see <http://www.gnu.org/licenses/>.
18 module glutils is aliced;
19 private:
20 import iv.glbinds;
21 import iv.vfs;
22 import arsd.color;
23 import arsd.png;
24 import iv.jpeg;
26 import wadarc;
29 // ////////////////////////////////////////////////////////////////////////// //
30 __gshared bool glutilsShowShaderWarnings = false; // shut up!
33 __gshared GLuint glLastUsedTexture = 0;
35 public void useTexture (GLuint tid) {
36 pragma(inline, true);
37 if (glLastUsedTexture != tid) {
38 glLastUsedTexture = tid;
39 glBindTexture(GL_TEXTURE_2D, tid);
43 public void useTexture (Texture tex) { pragma(inline, true); useTexture(tex !is null ? tex.tid : 0); }
47 public TrueColorImage loadPngFile (string fname) {
48 auto fl = VFile(fname);
49 auto sz = fl.size;
50 if (sz < 4 || sz > 32*1024*1024) throw new Exception("invalid png file size: '"~fname~"'");
51 if (sz == 0) return null;
52 auto res = new ubyte[](cast(uint)sz);
53 if (fl.rawRead(res[]).length != res.length) throw new Exception("error reading png file '"~fname~"'");
54 return imageFromPng(readPng(res)).getAsTrueColorImage;
58 // ////////////////////////////////////////////////////////////////////////// //
59 class OpenGLObject {
60 abstract @property uint id () const pure nothrow @nogc;
62 final void activate () nothrow @nogc {
63 if (gloSP >= gloStack.length) assert(0, "glo stack overflow");
64 gloStack.ptr[gloSP++] = this;
65 activateObj();
68 final void deactivate () nothrow @nogc {
69 foreach_reverse (usize idx; 0..gloStack.length) {
70 if (gloStack.ptr[idx] is this) {
71 // find previous object of this type
72 foreach_reverse (usize pidx; 0..idx) {
73 if (typeid(gloStack.ptr[pidx]) is typeid(gloStack.ptr[idx])) {
74 gloStack.ptr[pidx].activateObj();
75 removeFromStack(pidx);
76 return;
79 deactivateObj();
80 removeFromStack(idx);
81 return;
84 assert(0, "trying to deactivate inactive object");
87 protected:
88 abstract void activateObj () nothrow @nogc;
89 abstract void deactivateObj () nothrow @nogc;
93 __gshared OpenGLObject[1024] gloStack;
94 __gshared uint gloSP = 0;
97 public void gloStackClear () nothrow @nogc {
98 bindTexture(0);
99 //glBindTexture(GL_TEXTURE_CUBE_MAP, 0);
100 glBindFramebufferEXT(GL_FRAMEBUFFER_EXT, 0);
101 glUseProgram(0);
105 void removeFromStack (usize idx) nothrow @nogc {
106 if (idx >= gloSP) return;
107 if (idx != gloSP-1) {
108 import core.stdc.string : memmove;
109 memmove(gloStack.ptr+idx, gloStack.ptr+idx+1, (gloSP-idx-1)*gloStack[0].sizeof);
111 --gloSP;
115 // ////////////////////////////////////////////////////////////////////////// //
116 public final class Texture : OpenGLObject {
117 GLuint tid;
118 int width, height;
120 override @property uint id () const pure nothrow @nogc => tid;
122 // default: repeat, linear
123 enum Option : int {
124 Repeat,
125 Clamp,
126 ClampBorder,
127 Linear,
128 Nearest,
129 UByte,
130 Float, // create floating point texture
131 Depth, // FBO: attach depth buffer
132 FBO2, // create two FBO attaches
135 this (string fname, in Option[] opts...) { loadImage(fname, opts); }
136 this (int w, int h, in Option[] opts...) { createIntr(w, h, null, opts); }
137 this (TrueColorImage aimg, Option[] opts...) { createIntr(aimg.width, aimg.height, aimg, opts); }
138 ~this () { clear(); }
141 void clear () {
142 if (tid) {
143 //useTexture(tid);
144 bindTexture(tid);
145 glDeleteTextures(1, &tid);
146 //useTexture(0);
147 bindTexture(0);
148 tid = 0;
149 width = 0;
150 height = 0;
154 private static void processOpt (GLuint* wrapOpt, GLuint* filterOpt, GLuint* ttype, in Option[] opts...) {
155 foreach (immutable opt; opts) {
156 switch (opt) with (Option) {
157 case Repeat: *wrapOpt = GL_REPEAT; break;
158 case Clamp: *wrapOpt = GL_CLAMP_TO_EDGE; break;
159 case ClampBorder: *wrapOpt = GL_CLAMP_TO_BORDER; break;
160 case Linear: *filterOpt = GL_LINEAR; break;
161 case Nearest: *filterOpt = GL_NEAREST; break;
162 case UByte: *ttype = GL_UNSIGNED_BYTE; break;
163 case Float: *ttype = GL_FLOAT; break;
164 default:
169 void createIntr (int w, int h, TrueColorImage img, in Option[] opts...) {
170 import core.stdc.stdlib : malloc, free;
171 assert(w > 0);
172 assert(h > 0);
173 clear();
175 GLuint wrapOpt = GL_REPEAT;
176 GLuint filterOpt = GL_LINEAR;
177 GLuint ttype = GL_UNSIGNED_BYTE;
178 processOpt(&wrapOpt, &filterOpt, &ttype, opts);
180 glGenTextures(1, &tid);
181 //useTexture(tid);
182 auto oldtid = boundTexture;
183 bindTexture(tid);
184 scope(exit) bindTexture(oldtid);
185 glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, wrapOpt);
186 glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, wrapOpt);
187 glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, filterOpt);
188 glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, filterOpt);
189 //glTexEnvf(GL_TEXTURE_ENV, GL_TEXTURE_ENV_MODE, GL_MODULATE);
190 //glTexEnvf(GL_TEXTURE_ENV, GL_TEXTURE_ENV_MODE, GL_REPLACE);
191 GLfloat[4] bclr = 0.0;
192 glTexParameterfv(GL_TEXTURE_2D, GL_TEXTURE_BORDER_COLOR, bclr.ptr);
193 if (img !is null && img.width == w && img.height == h) {
194 // create straight from image
195 glTexImage2D(GL_TEXTURE_2D, 0, (ttype == GL_FLOAT ? GL_RGBA16F : GL_RGBA), w, h, 0, GL_RGBA, GL_UNSIGNED_BYTE, img.imageData.bytes.ptr);
196 } else {
197 // create empty texture
198 ubyte* ptr = null;
199 scope(exit) if (ptr !is null) free(ptr);
201 import core.stdc.string : memset;
202 ptr = cast(ubyte*)malloc(w*h*4);
203 if (ptr !is null) memset(ptr, 0, w*h*4);
205 glTexImage2D(GL_TEXTURE_2D, 0, (ttype == GL_FLOAT ? GL_RGBA16F : GL_RGBA), w, h, 0, GL_RGBA, GL_UNSIGNED_BYTE, ptr);
206 if (img !is null && img.width > 0 && img.height > 0) {
207 // setup from image
208 //TODO: dunno if it's ok to use images bigger than texture here
209 glTexSubImage2D(GL_TEXTURE_2D, 0, 0, 0, img.width, img.height, GL_RGBA, GL_UNSIGNED_BYTE, img.imageData.bytes.ptr);
210 // the following is ok too
211 //bindTexture(0);
212 //glTextureSubImage2D(tid, 0, 0, 0, img.width, img.height, GL_RGBA, GL_UNSIGNED_BYTE, img.imageData.bytes.ptr);
215 width = w;
216 height = h;
219 void setFromImage (TrueColorImage img, int x=0, int y=0) {
220 if (img is null || !tid || img.height < 1 || img.width < 1) return;
221 if (x >= width || y >= height) return;
222 if (x+img.width <= 0 || y+img.height <= 0) return; //TODO: overflow
223 if (x >= 0 && y >= 0 && x+img.width <= width && y+img.height <= height) {
224 // easy case, just copy it
225 glTextureSubImage2D(tid, 0, x, y, img.width, img.height, GL_RGBA, GL_UNSIGNED_BYTE, img.imageData.bytes.ptr);
226 } else {
227 import core.stdc.stdlib : malloc, free;
228 import core.stdc.string : memset, memcpy;
229 // hard case, have to build the temp region
230 uint* src = cast(uint*)img.imageData.bytes.ptr;
231 // calc x skip and effective width
232 int rwdt = img.width;
233 if (x < 0) {
234 rwdt += x;
235 src -= x; // as `x` is negative here
236 x = 0;
238 if (x+rwdt > width) rwdt = width-x;
239 // calc y skip and effective height
240 int rhgt = img.height;
241 if (y < 0) {
242 rhgt += y;
243 src -= y*img.width; // as `y` is negative here
244 y = 0;
246 if (y+rhgt > height) rhgt = height-y;
247 assert(rwdt > 0 && rhgt > 0);
248 uint* ptr = null;
249 scope(exit) if (ptr !is null) free(ptr);
250 ptr = cast(uint*)malloc(rwdt*rhgt*4);
251 if (ptr is null) assert(0, "out of memory in `Texture.setFromImage()`");
252 // now copy
253 auto d = ptr;
254 foreach (immutable _; 0..rhgt) {
255 memcpy(d, src, rwdt*4);
256 src += img.width;
257 d += rwdt;
259 glTextureSubImage2D(tid, 0, x, y, rwdt, rhgt, GL_RGBA, GL_UNSIGNED_BYTE, ptr);
263 void loadPng (VFile fl, in Option[] opts...) {
264 auto flsize = fl.size-fl.tell;
265 if (flsize < 8 || flsize > 1024*1024*32) throw new Exception("png image too big");
266 auto data = new ubyte[](cast(uint)flsize);
267 fl.rawReadExact(data);
268 auto png = readPng(data);
269 auto ximg = imageFromPng(png).getAsTrueColorImage;
270 if (ximg is null) throw new Exception("png: wtf?!");
271 if (ximg.width < 1 || ximg.height < 1) throw new Exception("png image too small");
272 createIntr(ximg.width, ximg.height, ximg, opts);
275 void loadJpeg (VFile fl, in Option[] opts...) {
276 auto jpg = readJpeg(fl);
277 if (jpg.width < 1 || jpg.width > 32760) throw new Exception("invalid image width");
278 if (jpg.height < 1 || jpg.height > 32760) throw new Exception("invalid image height");
279 createIntr(jpg.width, jpg.height, jpg, opts);
282 void loadImage (string fname, in Option[] opts...) {
283 scope(failure) clear;
284 auto fl = VFile(fname);
285 scope(failure) fl.seek(0);
286 char[8] sign;
287 fl.seek(0);
288 fl.rawReadExact(sign[]);
289 fl.seek(0);
290 // png?
291 if (sign == "\x89\x50\x4E\x47\x0D\x0A\x1A\x0A") {
292 loadPng(fl, opts);
293 return;
295 // jpeg?
296 if (sign[0..2] == "\xff\xd8" && detectJpeg(fl)) {
298 fl.seek(-2, Seek.End);
299 fl.rawReadExact(sign[0..2]);
300 fl.seek(0);
301 if (sign[0..2] == "\xff\xd9") {
302 loadJpeg(fl, opts);
303 return;
306 loadJpeg(fl, opts);
307 return;
309 throw new Exception("invalid texture image format");
312 protected:
313 override void activateObj () nothrow @nogc { /*if (tid)*/ bindTexture(tid); }
314 override void deactivateObj () nothrow @nogc { /*if (tid)*/ bindTexture(0); }
318 // ////////////////////////////////////////////////////////////////////////// //
319 public final class FBO : OpenGLObject {
320 int width;
321 int height;
322 GLuint fbo;
323 Texture tex, tex1;
324 Texture texdepth;
325 //Texture.Option[] xopts;
327 override @property uint id () const pure nothrow @nogc => fbo;
329 this (Texture atex) { createWithTexture(atex); }
331 this (int wdt, int hgt, Texture.Option[] opts...) {
332 //xopts = opts.dup;
333 createWithTexture(new Texture(wdt, hgt, opts), opts);
336 ~this () {
337 //FIXME: this may be wrong, as texture may be already destroyed (and it's wrong too); we need refcount for textures
338 glFramebufferTexture2DEXT(GL_FRAMEBUFFER_EXT, GL_COLOR_ATTACHMENT0_EXT, GL_TEXTURE_2D, 0, 0);
339 glFramebufferTexture2DEXT(GL_FRAMEBUFFER_EXT, GL_COLOR_ATTACHMENT1_EXT, GL_TEXTURE_2D, 0, 0);
340 glDeleteFramebuffersEXT(1, &fbo);
341 fbo = 0;
344 void clear () {
345 if (fbo) {
346 // detach texture
347 glFramebufferTexture2DEXT(GL_FRAMEBUFFER_EXT, GL_COLOR_ATTACHMENT0_EXT, GL_TEXTURE_2D, 0, 0);
348 glFramebufferTexture2DEXT(GL_FRAMEBUFFER_EXT, GL_COLOR_ATTACHMENT1_EXT, GL_TEXTURE_2D, 0, 0);
349 //glDeleteFramebuffersEXT(1, &fbo);
350 glFramebufferTexture2DEXT(GL_FRAMEBUFFER_EXT, GL_DEPTH_ATTACHMENT, GL_TEXTURE_2D, 0, 0);
351 glDeleteFramebuffersEXT(1, &fbo);
352 fbo = 0;
354 if (tex !is null) tex.clear();
355 tex = null;
356 if (tex1 !is null) tex1.clear();
357 tex1 = null;
358 if (texdepth !is null) texdepth.clear();
359 texdepth = null;
362 protected:
363 override void activateObj () nothrow @nogc { /*if (fbo)*/ glBindFramebufferEXT(GL_FRAMEBUFFER_EXT, fbo); }
364 override void deactivateObj () nothrow @nogc { glBindFramebufferEXT(GL_FRAMEBUFFER_EXT, 0); }
366 // this will deactivate current FBO!
368 void replaceTexture (Texture ntex) {
369 if (tex !is null) {
370 if (ntex !is null && ntex.tid == tex.tid) return;
371 } else {
372 if (ntex is null) return;
374 glGenFramebuffersEXT(1, &fbo);
375 glBindFramebufferEXT(GL_FRAMEBUFFER_EXT, fbo);
376 scope(exit) glBindFramebufferEXT(GL_FRAMEBUFFER_EXT, 0);
377 // detach texture
378 glFramebufferTexture2DEXT(GL_FRAMEBUFFER_EXT, GL_COLOR_ATTACHMENT0_EXT, GL_TEXTURE_2D, 0, 0);
379 glDeleteFramebuffersEXT(1, &fbo);
380 fbo = 0;
381 tex = ntex;
382 // attach texture
383 if (tex !is null) {
384 glFramebufferTexture2DEXT(GL_FRAMEBUFFER_EXT, GL_COLOR_ATTACHMENT0_EXT, GL_TEXTURE_2D, tex.tid, 0);
386 GLenum status = glCheckFramebufferStatusEXT(GL_FRAMEBUFFER_EXT);
387 if (status != GL_FRAMEBUFFER_COMPLETE_EXT) assert(0, "framebuffer fucked!");
393 private:
394 void createWithTexture (Texture atex, Texture.Option[] opts...) {
395 assert(atex !is null && atex.tid);
397 bool need2 = false;
398 foreach (immutable opt; opts) if (opt == Texture.Option.FBO2) { need2 = true; break; }
400 tex = atex;
401 glGenFramebuffersEXT(1, &fbo);
402 glBindFramebufferEXT(GL_FRAMEBUFFER_EXT, fbo);
403 scope(exit) glBindFramebufferEXT(GL_FRAMEBUFFER_EXT, 0);
404 // attach 2D texture to this FBO
405 glFramebufferTexture2DEXT(GL_FRAMEBUFFER_EXT, GL_COLOR_ATTACHMENT0_EXT, GL_TEXTURE_2D, tex.tid, 0);
406 // GL_COLOR_ATTACHMENT0_EXT, GL_DEPTH_ATTACHMENT_EXT, GL_STENCIL_ATTACHMENT_EXT
408 if (need2) {
409 tex1 = new Texture(tex.width, tex.height, opts);
410 glFramebufferTexture2DEXT(GL_FRAMEBUFFER_EXT, GL_COLOR_ATTACHMENT1_EXT, GL_TEXTURE_2D, tex1.tid, 0);
414 void createDepth () {
415 uint fboDepthId;
416 glGenRenderbuffersEXT(1, &fboDepthId);
417 glBindRenderbufferEXT(GL_RENDERBUFFER_EXT, fboDepthId);
418 glRenderbufferStorageEXT(GL_RENDERBUFFER_EXT, GL_DEPTH_COMPONENT/*24*/, atex.width, atex.height);
419 // attach depth buffer to FBO
420 glFramebufferRenderbufferEXT(GL_FRAMEBUFFER_EXT, GL_DEPTH_ATTACHMENT_EXT, GL_RENDERBUFFER_EXT, fboDepthId);
421 // kill it (we don't need it anymore)
422 glDeleteRenderbuffersEXT(1, &fboDepthId);
427 foreach (Texture.Option opt; opts) {
428 if (opt == Texture.Option.Depth) {
429 createDepth();
430 break;
434 //createDepth();
437 GLenum status = glCheckFramebufferStatusEXT(GL_FRAMEBUFFER_EXT);
438 if (status != GL_FRAMEBUFFER_COMPLETE_EXT) assert(0, "framebuffer fucked!");
440 glBindFramebufferEXT(GL_FRAMEBUFFER_EXT, 0);
442 width = tex.width;
443 height = tex.height;
448 // ////////////////////////////////////////////////////////////////////////// //
449 public struct SVec2I { int x, y; }
450 public struct SVec3I { int x, y, z; alias r = x; alias g = y; alias b = z; }
451 public struct SVec4I { int x, y, z, w; alias r = x; alias g = y; alias b = z; alias a = w; }
453 public struct SVec2F { float x, y; }
454 public struct SVec3F { float x, y, z; alias r = x; alias g = y; alias b = z; }
455 public struct SVec4F { float x, y, z, w; alias r = x; alias g = y; alias b = z; alias a = w; }
458 public final class Shader : OpenGLObject {
459 string shaderName;
460 GLuint prg = 0;
461 GLint[string] vars;
463 override @property uint id () const pure nothrow @nogc => prg;
465 this (string ashaderName, const(char)[] src) {
466 shaderName = ashaderName;
467 if (src.length > int.max) {
468 import core.stdc.stdio : printf;
469 printf("shader '%.*s' code too long!", cast(uint)ashaderName.length, ashaderName.ptr);
470 assert(0);
472 auto shaderId = glCreateShader(GL_FRAGMENT_SHADER);
473 auto sptr = src.ptr;
474 GLint slen = cast(int)src.length;
475 glShaderSource(shaderId, 1, &sptr, &slen);
476 glCompileShader(shaderId);
477 GLint success = 0;
478 glGetShaderiv(shaderId, GL_COMPILE_STATUS, &success);
479 if (!success || glutilsShowShaderWarnings) {
480 import core.stdc.stdio : printf;
481 import core.stdc.stdlib : malloc, free;
482 GLint logSize = 0;
483 glGetShaderiv(shaderId, GL_INFO_LOG_LENGTH, &logSize);
484 if (logSize > 0) {
485 auto logStrZ = cast(GLchar*)malloc(logSize);
486 glGetShaderInfoLog(shaderId, logSize, null, logStrZ);
487 printf("shader '%.*s' compilation messages:\n%s\n", cast(uint)ashaderName.length, ashaderName.ptr, logStrZ);
488 free(logStrZ);
491 if (!success) assert(0);
492 prg = glCreateProgram();
493 glAttachShader(prg, shaderId);
494 glLinkProgram(prg);
497 GLint varId(NT) (NT vname) if (is(NT == char[]) || is(NT == const(char)[]) || is(NT == immutable(char)[])) {
498 GLint id = -1;
499 if (vname.length > 0 && vname.length <= 128) {
500 if (auto vi = vname in vars) {
501 id = *vi;
502 } else {
503 char[129] buf = void;
504 buf[0..vname.length] = vname[];
505 buf[vname.length] = 0;
506 id = glGetUniformLocation(prg, buf.ptr);
507 //{ import core.stdc.stdio; printf("[%.*s.%s]=%i\n", cast(uint)shaderName.length, shaderName.ptr, buf.ptr, id); }
508 static if (is(NT == immutable(char)[])) {
509 vars[vname.idup] = id;
510 } else {
511 vars[vname.idup] = id;
513 if (id < 0) {
514 import core.stdc.stdio : printf;
515 printf("shader '%.*s': unknown variable '%.*s'\n", cast(uint)shaderName.length, shaderName.ptr, cast(uint)vname.length, vname.ptr);
519 return id;
522 // get unified var id
523 GLint opIndex(NT) (NT vname) if (is(NT == char[]) || is(NT == const(char)[]) || is(NT == immutable(char)[])) {
524 auto id = varId(vname);
525 if (id < 0) {
526 import core.stdc.stdio : printf;
527 printf("shader '%.*s': unknown variable '%.*s'\n", cast(uint)shaderName.length, shaderName.ptr, cast(uint)vname.length, vname.ptr);
528 assert(0);
530 return id;
533 private import std.traits;
534 void opIndexAssign(T, NT) (in auto ref T v, NT vname)
535 if (((isIntegral!T && T.sizeof <= 4) || (isFloatingPoint!T && T.sizeof == float.sizeof) || isBoolean!T ||
536 is(T : SVec2I) || is(T : SVec3I) || is(T : SVec4I) ||
537 is(T : SVec2F) || is(T : SVec3F) || is(T : SVec4F)) &&
538 (is(NT == char[]) || is(NT == const(char)[]) || is(NT == immutable(char)[])))
540 auto id = varId(vname);
541 if (id < 0) return;
542 //{ import core.stdc.stdio; printf("setting '%.*s' (%d)\n", cast(uint)vname.length, vname.ptr, id); }
543 static if (isIntegral!T || isBoolean!T) glUniform1i(id, cast(int)v);
544 else static if (isFloatingPoint!T) glUniform1f(id, cast(float)v);
545 else static if (is(SVec2I : T)) glUniform2i(id, cast(int)v.x, cast(int)v.y);
546 else static if (is(SVec3I : T)) glUniform3i(id, cast(int)v.x, cast(int)v.y, cast(int)v.z);
547 else static if (is(SVec4I : T)) glUniform4i(id, cast(int)v.x, cast(int)v.y, cast(int)v.z, cast(int)v.w);
548 else static if (is(SVec2F : T)) glUniform2f(id, cast(float)v.x, cast(float)v.y);
549 else static if (is(SVec3F : T)) glUniform3f(id, cast(float)v.x, cast(float)v.y, cast(float)v.z);
550 else static if (is(SVec4F : T)) glUniform4f(id, cast(float)v.x, cast(float)v.y, cast(float)v.z, cast(float)v.w);
551 else static assert(0, "wtf?!");
554 protected:
555 override void activateObj () nothrow @nogc { /*if (prg)*/ glUseProgram(prg); }
556 override void deactivateObj () nothrow @nogc { glUseProgram(0); }
560 // ////////////////////////////////////////////////////////////////////////// //
561 //private import std.traits;
563 public:
564 void exec(TO) (TO obj, scope void delegate () dg) if (is(typeof(() { obj.activate(); obj.deactivate(); }))) {
565 obj.activate();
566 scope(exit) obj.deactivate();
567 dg();
570 void exec(TO, TG) (TO obj, scope TG dg) if (is(typeof((TO obj) { dg(obj); })) && is(typeof(() { obj.activate(); obj.deactivate(); }))) {
571 obj.activate();
572 scope(exit) obj.deactivate();
573 dg(obj);
577 // ////////////////////////////////////////////////////////////////////////// //
578 void orthoCamera (int wdt, int hgt) {
579 glMatrixMode(GL_PROJECTION); // for ortho camera
580 glLoadIdentity();
581 // left, right, bottom, top, near, far
582 //glOrtho(0, wdt, 0, hgt, -1, 1); // bottom-to-top
583 glOrtho(0, wdt, hgt, 0, -1, 1); // top-to-bottom
584 glViewport(0, 0, wdt, hgt);
586 //glTranslatef(-cx, -cy, 0.0f);
589 // origin is texture left top
590 void drawAtXY (GLuint tid, int x, int y, int w, int h, bool mirrorX=false, bool mirrorY=false) {
591 if (!tid || w < 1 || h < 1) return;
592 w += x;
593 h += y;
594 if (mirrorX) { int tmp = x; x = w; w = tmp; }
595 if (mirrorY) { int tmp = y; y = h; h = tmp; }
596 bindTexture(tid);
597 glBegin(GL_QUADS);
598 glTexCoord2f(0.0f, 0.0f); glVertex2i(x, y); // top-left
599 glTexCoord2f(1.0f, 0.0f); glVertex2i(w, y); // top-right
600 glTexCoord2f(1.0f, 1.0f); glVertex2i(w, h); // bottom-right
601 glTexCoord2f(0.0f, 1.0f); glVertex2i(x, h); // bottom-left
602 glEnd();
606 // origin is texture center
607 void drawAtXYC (Texture tex, int x, int y, bool mirrorX=false, bool mirrorY=false) {
608 if (tex is null || !tex.tid) return;
609 x -= tex.width/2;
610 y -= tex.height/2;
611 drawAtXY(tex.tid, x, y, tex.width, tex.height, mirrorX, mirrorY);
615 // origin is texture left top
616 void drawAtXY (Texture tex, int x, int y, bool mirrorX=false, bool mirrorY=false) {
617 if (tex is null || !tex.tid) return;
618 drawAtXY(tex.tid, x, y, tex.width, tex.height, mirrorX, mirrorY);
622 private __gshared GLuint boundTexture = 0;
624 // make sure that texture unit 0 is active!
625 void bindTexture (GLuint tid) nothrow @trusted @nogc {
626 if (tid != boundTexture) {
627 boundTexture = tid;
628 glBindTexture(GL_TEXTURE_2D, tid);