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614 lines
18 KiB
Java
614 lines
18 KiB
Java
/* -*- mode: jde; c-basic-offset: 2; indent-tabs-mode: nil -*- */
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/*
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BFont - font object for text rendering
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Part of the Processing project - http://processing.org
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Copyright (c) 2001-04 Massachusetts Institute of Technology
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(Except where noted that the author is not Ben Fry)
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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This library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General
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Public License along with this library; if not, write to the
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Free Software Foundation, Inc., 59 Temple Place, Suite 330,
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Boston, MA 02111-1307 USA
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*/
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package processing.core;
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import java.io.*;
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import java.util.*;
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// where is the font point size embedded in the font?
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// not sizing properly relative to how the platforms work
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// ascent = height of lowercase d
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// descent = depth of lowercase p
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// get the leading calculation in there properly
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// how do we handle kerning
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/*
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awful ascii (non)art for how this works
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| height is the full used height of the image
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| ..XX.. }
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| ..XX.. }
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| ...... }
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| XXXX.. } topExtent (top y is baseline - topExtent)
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| ..XX.. }
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| ..XX.. } dotted areas are where the image data
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| ..XX.. } is actually located for the character
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+---XXXXXX---- } (it extends to the right & down for pow of 2 textures)
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^^^^ leftExtent (amount to move over before drawing the image
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^^^^^^^^^^^^^^ setWidth (width displaced by char)
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*/
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public class PFont implements PConstants {
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//int firstChar = 33; // always
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public int charCount;
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public PImage images[];
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// image width, a power of 2
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// note! these will always be the same
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public int iwidth, iheight;
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// float versions of the above
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//float iwidthf, iheightf;
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// formerly iwidthf, iheightf.. but that's wrong
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// actually should be mbox, the font size
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float fwidth, fheight;
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// mbox is just the font size (i.e. 48 for most vlw fonts)
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public int mbox2; // next power of 2
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public int mbox; // font size
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public int value[]; // char code
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public int height[]; // height of the bitmap data
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public int width[]; // width of bitmap data
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public int setWidth[]; // width displaced by the char
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public int topExtent[]; // offset for the top
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public int leftExtent[]; // offset for the left
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public int ascent;
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public int descent;
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// scaling, for convenience
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public float size;
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public float leading;
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int ascii[]; // quick lookup for the ascii chars
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boolean cached;
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public PFont() { } // for PFontAI subclass and font builder
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public PFont(InputStream input) throws IOException {
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DataInputStream is = new DataInputStream(input);
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// number of character images stored in this font
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charCount = is.readInt();
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// bit count is ignored since this is always 8
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int numBits = is.readInt();
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// this was formerly ignored, now it's the actual font size
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mbox = is.readInt();
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// this was formerly mboxY, the one that was used
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// this will make new fonts downward compatible
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mbox2 = is.readInt();
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//System.out.println("boxes " + mbox + " " + mbox2);
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//int mboxX = is.readInt(); // not used, just fontsize (48)
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//int mboxY = is.readInt(); // also just fontsize (48)
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// only store this one for leading calc
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//mbox = mboxY;
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fwidth = mbox;
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fheight = mbox;
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// size for image ("texture") is next power of 2
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// over the font size. for most vlw fonts, the size is 48
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// so the next power of 2 is 64.
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// (actually that wasn't quite right, since mboxX/Y were both 64,
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// and the font builder was already setting it as the next pow of 2)
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/*
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iwidth = (int)
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Math.pow(2, Math.ceil(Math.log(mboxX) / Math.log(2)));
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iheight = (int)
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Math.pow(2, Math.ceil(Math.log(mboxY) / Math.log(2)));
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*/
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// double-check to make sure that mbox2 is a power of 2
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// there was a bug in the old font generator that broke this
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mbox2 = (int) Math.pow(2, Math.ceil(Math.log(mbox2) / Math.log(2)));
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// size for the texture is stored in the font
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iwidth = iheight = mbox2;
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//iwidthf = (float) iwidth;
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//iheightf = (float) iheight;
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// font size is 48, so default leading is 48 * 1.2
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// this is same as what illustrator uses for the default
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//defaultLeading = ((float)mboxY / iheightf) * 1.2f;
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//int baseHt = is.readInt(); // zero, ignored
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//is.readInt(); // ignore 4 for struct padding
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ascent = is.readInt(); // formerly zero/ignored
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descent = is.readInt(); // formerly ignored struct padding
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//System.out.println("found mbox = " + mbox);
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//System.out.println("found ascent/descent = " + ascent + " " + descent);
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// allocate enough space for the character info
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value = new int[charCount];
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height = new int[charCount];
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width = new int[charCount];
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setWidth = new int[charCount];
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topExtent = new int[charCount];
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leftExtent = new int[charCount];
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ascii = new int[128];
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for (int i = 0; i < 128; i++) ascii[i] = -1;
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// read the information about the individual characters
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for (int i = 0; i < charCount; i++) {
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value[i] = is.readInt();
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height[i] = is.readInt();
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width[i] = is.readInt();
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setWidth[i] = is.readInt();
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topExtent[i] = is.readInt();
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leftExtent[i] = is.readInt();
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// pointer in the c version, ignored
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is.readInt();
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// cache locations of the ascii charset
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if (value[i] < 128) ascii[value[i]] = i;
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//if (value[i] == 'd')
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//System.out.println("calc ascent is " + topExtent[i]);
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//if (value[i] == 'p')
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//System.out.println("calc descent is " + (-topExtent[i] + height[i]));
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// the values for getAscent() and getDescent() from FontMetrics
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// seem to be way too large.. perhaps they're the max?
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// as such, use a more traditional marker for ascent/descent
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if (value[i] == 'd') {
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ascent = topExtent[i];
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}
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if (value[i] == 'p') {
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descent = -topExtent[i] + height[i];
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}
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}
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// foreign font, so just make ascent the max topExtent
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// or maybe just throw an exception and say to re-export?
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if ((ascent == 0) && (descent == 0)) {
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for (int i = 0; i < charCount; i++) {
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char cc = (char) value[i];
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if (Character.isWhitespace(cc) ||
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(cc == '\u00A0') || (cc == '\u2007') || (cc == '\u202F')) {
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continue;
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}
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if (topExtent[i] > ascent) {
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ascent = topExtent[i];
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}
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int d = -topExtent[i] + height[i];
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if (d > descent) {
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descent = d;
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//System.out.println("big d is on " + PApplet.hex(value[i])
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// + " " + ((char) value[i]));
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}
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//System.out.println("max top now: " + ascent +
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// " for " + PApplet.hex(value[i]) + " ");
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}
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}
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//System.out.println("a/d = " + ascent + " " + descent);
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images = new PImage[charCount];
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for (int i = 0; i < charCount; i++) {
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//int pixels[] = new int[64 * 64];
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int pixels[] = new int[iwidth * iheight];
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//images[i] = new PImage(pixels, 64, 64, ALPHA);
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images[i] = new PImage(pixels, iwidth, iheight, ALPHA);
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int bitmapSize = height[i] * width[i];
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byte temp[] = new byte[bitmapSize];
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is.readFully(temp);
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// convert the bitmap to an alpha channel
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int w = width[i];
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int h = height[i];
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for (int y = 0; y < h; y++) {
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for (int x = 0; x < w; x++) {
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int valu = temp[y*w + x] & 0xff;
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//images[i].pixels[y*64 + x] = valu;
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images[i].pixels[y * iwidth + x] = valu;
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// the following makes javagl more happy..
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// not sure what's going on
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//(valu << 24) | (valu << 16) | (valu << 8) | valu; //0xffffff;
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//System.out.print((images[i].pixels[y*64+x] > 128) ? "*" : ".");
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}
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//System.out.println();
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}
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//System.out.println();
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}
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cached = false;
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resetSize();
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resetLeading(); // ??
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}
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//static boolean isSpace(int c) {
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//return (Character.isWhitespace((char) c) ||
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// (c == '\u00A0') || (c == '\u2007') || (c == '\u202F'));
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//}
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public void write(OutputStream output) throws IOException {
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DataOutputStream os = new DataOutputStream(output);
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os.writeInt(charCount);
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os.writeInt(8); // numBits
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os.writeInt(mbox); // formerly mboxX (was 64, now 48)
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os.writeInt(mbox2); // formerly mboxY (was 64, still 64)
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os.writeInt(ascent); // formerly baseHt (was ignored)
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os.writeInt(descent); // formerly struct padding for c version
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for (int i = 0; i < charCount; i++) {
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os.writeInt(value[i]);
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os.writeInt(height[i]);
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os.writeInt(width[i]);
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os.writeInt(setWidth[i]);
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os.writeInt(topExtent[i]);
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os.writeInt(leftExtent[i]);
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os.writeInt(0); // padding
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}
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for (int i = 0; i < charCount; i++) {
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//int bitmapSize = height[i] * width[i];
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//byte bitmap[] = new byte[bitmapSize];
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for (int y = 0; y < height[i]; y++) {
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for (int x = 0; x < width[i]; x++) {
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os.write(images[i].pixels[y * width[i] + x] & 0xff);
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}
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}
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}
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os.flush();
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os.close(); // can/should i do this?
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}
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/**
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* Get index for the char (convert from unicode to bagel charset).
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* @return index into arrays or -1 if not found
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*/
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public int index(char c) {
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// these chars required in all fonts
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//if ((c >= 33) && (c <= 126)) {
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//return c - 33;
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//}
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// quicker lookup for the ascii fellers
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if (c < 128) return ascii[c];
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// some other unicode char, hunt it out
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return index_hunt(c, 0, value.length-1);
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}
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// whups, this used the p5 charset rather than what was inside the font
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// meaning that old fonts would crash.. fixed for 0069
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private int index_hunt(int c, int start, int stop) {
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//System.err.println("checking between " + start + " and " + stop);
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int pivot = (start + stop) / 2;
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// if this is the char, then return it
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if (c == value[pivot]) return pivot;
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// char doesn't exist, otherwise would have been the pivot
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//if (start == stop) return -1;
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if (start >= stop) return -1;
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// if it's in the lower half, continue searching that
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if (c < value[pivot]) return index_hunt(c, start, pivot-1);
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// if it's in the upper half, continue there
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return index_hunt(c, pivot+1, stop);
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}
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public float kern(char a, char b) {
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return 0; // * size, but since zero..
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}
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public void resetSize() {
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size = 12;
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}
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public void size(float isize) {
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size = isize;
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}
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public void resetLeading() {
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leading = size * ((float)mbox / fheight) * 1.2f;
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}
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public void leading(float ileading) {
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leading = ileading;
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}
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public float ascent() {
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return ((float)ascent / fheight) * size;
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}
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public float descent() {
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return ((float)descent / fheight) * size;
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}
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// supposedly this should be ok even in SCREEN_SPACE mode
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// since the applet will set the 'size' of the font to iwidth
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// (though this prolly breaks any sort of 'height' measurements)
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public float width(char c) {
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if (c == 32) return width('i');
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int cc = index(c);
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if (cc == -1) return 0;
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return ((float)setWidth[cc] / fwidth) * size;
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}
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public float width(String string) {
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//if (!valid) return 0;
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float wide = 0;
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float pwide = 0;
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char previous = 0;
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char s[] = string.toCharArray();
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for (int i = 0; i < s.length; i++) {
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if (s[i] == '\n') {
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if (wide > pwide) pwide = wide;
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wide = 0;
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previous = 0;
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} else {
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wide += width(s[i]);
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if (previous != 0) {
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wide += kern(previous, s[i]);
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}
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previous = s[i];
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}
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}
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return (pwide > wide) ? pwide : wide;
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}
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public void text(char c, float x, float y, PGraphics parent) {
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text(c, x, y, 0, parent);
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}
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public void text(char c, float x, float y, float z, PGraphics parent) {
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//if (!valid) return;
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//if (!exists(c)) return;
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// eventually replace this with a table
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// to convert the > 127 coded chars
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//int glyph = c - 33;
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int glyph = index(c);
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if (glyph == -1) return;
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if (!cached) {
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// cache on first run, to ensure a graphics context exists
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parent.cache(images);
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cached = true;
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}
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if (parent.text_space == OBJECT_SPACE) {
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float high = (float) height[glyph] / fheight;
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float bwidth = (float) width[glyph] / fwidth;
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float lextent = (float) leftExtent[glyph] / fwidth;
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float textent = (float) topExtent[glyph] / fheight;
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int savedTextureMode = parent.texture_mode;
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//boolean savedSmooth = parent.smooth;
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boolean savedStroke = parent._stroke;
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parent.texture_mode = IMAGE_SPACE;
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//parent.smooth = true;
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parent.drawing_text = true;
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parent._stroke = false;
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float x1 = x + lextent * size;
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float y1 = y - textent * size;
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float x2 = x1 + bwidth * size;
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float y2 = y1 + high * size;
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// this code was moved here (instead of using parent.image)
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// because now images use tint() for their coloring, which
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// internally is kind of a hack because it temporarily sets
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// the fill color to the tint values when drawing text.
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// rather than doubling up the hack with this hack, the code
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// is just included here instead.
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//System.out.println(x1 + " " + y1 + " " + x2 + " " + y2);
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parent.beginShape(QUADS);
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parent.texture(images[glyph]);
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parent.vertex(x1, y1, z, 0, 0);
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parent.vertex(x1, y2, z, 0, height[glyph]);
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parent.vertex(x2, y2, z, width[glyph], height[glyph]);
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parent.vertex(x2, y1, z, width[glyph], 0);
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parent.endShape();
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parent.texture_mode = savedTextureMode;
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parent.drawing_text = false;
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parent._stroke = savedStroke;
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} else { // SCREEN_SPACE
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int xx = (int) x + leftExtent[glyph];;
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int yy = (int) y - topExtent[glyph];
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int x0 = 0;
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int y0 = 0;
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int w0 = width[glyph];
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int h0 = height[glyph];
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if ((xx >= parent.width) || (yy >= parent.height) ||
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(xx + w0 < 0) || (yy + h0 < 0)) return;
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if (xx < 0) {
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x0 -= xx;
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w0 += xx;
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//System.out.println("x " + xx + " " + x0 + " " + w0);
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xx = 0;
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}
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if (yy < 0) {
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y0 -= yy;
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h0 += yy;
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//System.out.println("y " + yy + " " + y0 + " " + h0);
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yy = 0;
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}
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if (xx + w0 > parent.width) {
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//System.out.println("wide " + x0 + " " + w0);
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w0 -= ((xx + w0) - parent.width);
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}
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if (yy + h0 > parent.height) {
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h0 -= ((yy + h0) - parent.height);
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}
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int fr = parent.fillRi;
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int fg = parent.fillGi;
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int fb = parent.fillBi;
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int fa = parent.fillAi;
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int pixels1[] = images[glyph].pixels;
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int pixels2[] = parent.pixels;
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for (int row = y0; row < y0 + h0; row++) {
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for (int col = x0; col < x0 + w0; col++) {
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int a1 = (fa * pixels1[row * iwidth + col]) >> 8;
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int a2 = a1 ^ 0xff;
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int p1 = pixels1[row * width[glyph] + col];
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int p2 = pixels2[(yy + row-y0)*parent.width + (xx+col-x0)];
|
|
|
|
pixels2[(yy + row-y0)*parent.width + xx+col-x0] =
|
|
(0xff000000 |
|
|
(((a1 * fr + a2 * ((p2 >> 16) & 0xff)) & 0xff00) << 8) |
|
|
(( a1 * fg + a2 * ((p2 >> 8) & 0xff)) & 0xff00) |
|
|
(( a1 * fb + a2 * ( p2 & 0xff)) >> 8));
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
|
|
// used by the text() functions to avoid over-allocation of memory
|
|
private char c[] = new char[8192];
|
|
|
|
|
|
public void text(String str, float x, float y, PGraphics parent) {
|
|
text(str, x, y, 0, parent);
|
|
}
|
|
|
|
|
|
public void text(String str, float x, float y, float z, PGraphics parent) {
|
|
float startX = x;
|
|
int index = 0;
|
|
char previous = 0;
|
|
|
|
int length = str.length();
|
|
if (length > c.length) {
|
|
c = new char[length + 10];
|
|
}
|
|
str.getChars(0, length, c, 0);
|
|
|
|
while (index < length) {
|
|
if (c[index] == '\n') {
|
|
x = startX;
|
|
y += leading;
|
|
//y += ascent();
|
|
previous = 0;
|
|
} else {
|
|
text(c[index], x, y, z, parent);
|
|
x += width(c[index]);
|
|
if (previous != 0)
|
|
x += kern(previous, c[index]);
|
|
previous = c[index];
|
|
}
|
|
index++;
|
|
}
|
|
}
|
|
|
|
|
|
/**
|
|
* Same as below, just without a z coordinate.
|
|
*/
|
|
public void text(String str, float x, float y,
|
|
float w, float h, PGraphics parent) {
|
|
text(str, x, y, 0, w, h, parent);
|
|
}
|
|
|
|
|
|
/**
|
|
* Draw text in a text both that is constrained to a
|
|
* particular width and height
|
|
*/
|
|
public void text(String str, float x, float y, float z,
|
|
float w, float h, PGraphics parent) {
|
|
float space = width(' ');
|
|
float xx = x;
|
|
float yy = y;
|
|
float right = x + w;
|
|
|
|
yy += ascent();
|
|
|
|
String paragraphs[] = PApplet.split(str, '\n');
|
|
for (int i = 0; i < paragraphs.length; i++) {
|
|
String words[] = PApplet.split(paragraphs[i], ' ');
|
|
float wide = 0;
|
|
for (int j = 0; j < words.length; j++) {
|
|
float size = width(words[j]);
|
|
if (xx + size > right) {
|
|
// this goes on the next line
|
|
xx = x;
|
|
yy += ascent() + descent(); //leading;
|
|
if (yy > h) return; // too big for box
|
|
}
|
|
text(words[j], xx, yy, z, parent);
|
|
xx += size + space;
|
|
}
|
|
// end of paragraph, move to left and increment leading
|
|
xx = 0;
|
|
yy += leading;
|
|
if (yy > h) return; // too big for box
|
|
}
|
|
}
|
|
}
|