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--- kpdf/xpdf/xpdf/Stream.cc
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+++ kpdf/xpdf/xpdf/Stream.cc
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@@ -1245,23 +1245,26 @@ CCITTFaxStream::CCITTFaxStream(Stream *s
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   columns = columnsA;
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   if (columns < 1) {
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     columns = 1;
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-  }
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-  if (columns + 4 <= 0) {
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-    columns = INT_MAX - 4;
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+  } else if (columns > INT_MAX - 2) {
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+    columns = INT_MAX - 2;
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   }
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   rows = rowsA;
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   endOfBlock = endOfBlockA;
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   black = blackA;
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-  refLine = (short *)gmallocn(columns + 3, sizeof(short));
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-  codingLine = (short *)gmallocn(columns + 2, sizeof(short));
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+  // 0 <= codingLine[0] < codingLine[1] < ... < codingLine[n] = columns
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+  // ---> max codingLine size = columns + 1
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+  // refLine has one extra guard entry at the end
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+  // ---> max refLine size = columns + 2
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+  codingLine = (int *)gmallocn(columns + 1, sizeof(int));
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+  refLine = (int *)gmallocn(columns + 2, sizeof(int));
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   eof = gFalse;
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   row = 0;
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   nextLine2D = encoding < 0;
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   inputBits = 0;
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-  codingLine[0] = 0;
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-  codingLine[1] = refLine[2] = columns;
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-  a0 = 1;
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+  codingLine[0] = columns;
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+  a0i = 0;
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+  outputBits = 0;
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   buf = EOF;
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 }
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@@ -1280,9 +1283,9 @@ void CCITTFaxStream::reset() {
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   row = 0;
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   nextLine2D = encoding < 0;
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   inputBits = 0;
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-  codingLine[0] = 0;
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-  codingLine[1] = columns;
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-  a0 = 1;
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+  codingLine[0] = columns;
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+  a0i = 0;
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+  outputBits = 0;
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   buf = EOF;
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   // skip any initial zero bits and end-of-line marker, and get the 2D
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@@ -1299,211 +1302,230 @@ void CCITTFaxStream::reset() {
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   }
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 }
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+inline void CCITTFaxStream::addPixels(int a1, int blackPixels) {
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+  if (a1 > codingLine[a0i]) {
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+    if (a1 > columns) {
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+      error(getPos(), "CCITTFax row is wrong length (%d)", a1);
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+      err = gTrue;
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+      a1 = columns;
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+    }
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+    if ((a0i & 1) ^ blackPixels) {
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+      ++a0i;
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+    }
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+    codingLine[a0i] = a1;
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+  }
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+}
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+
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+inline void CCITTFaxStream::addPixelsNeg(int a1, int blackPixels) {
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+  if (a1 > codingLine[a0i]) {
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+    if (a1 > columns) {
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+      error(getPos(), "CCITTFax row is wrong length (%d)", a1);
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+      err = gTrue;
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+      a1 = columns;
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+    }
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+    if ((a0i & 1) ^ blackPixels) {
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+      ++a0i;
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+    }
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+    codingLine[a0i] = a1;
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+  } else if (a1 < codingLine[a0i]) {
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+    if (a1 < 0) {
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+      error(getPos(), "Invalid CCITTFax code");
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+      err = gTrue;
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+      a1 = 0;
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+    }
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+    while (a0i > 0 && a1 <= codingLine[a0i - 1]) {
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+      --a0i;
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+    }
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+    codingLine[a0i] = a1;
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+  }
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+}
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+
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 int CCITTFaxStream::lookChar() {
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   short code1, code2, code3;
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-  int a0New;
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-  GBool err, gotEOL;
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-  int ret;
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-  int bits, i;
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+  int b1i, blackPixels, i, bits;
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+  GBool gotEOL;
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-  // if at eof just return EOF
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-  if (eof && codingLine[a0] >= columns) {
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-    return EOF;
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+  if (buf != EOF) {
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+    return buf;
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   }
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   // read the next row
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-  err = gFalse;
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-  if (codingLine[a0] >= columns) {
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+  if (outputBits == 0) {
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+
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+    // if at eof just return EOF
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+    if (eof) {
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+      return EOF;
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+    }
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+
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+    err = gFalse;
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     // 2-D encoding
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     if (nextLine2D) {
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-      // state:
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-      //   a0New = current position in coding line (0 <= a0New <= columns)
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-      //   codingLine[a0] = last change in coding line
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-      //                    (black-to-white if a0 is even,
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-      //                     white-to-black if a0 is odd)
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-      //   refLine[b1] = next change in reference line of opposite color
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-      //                 to a0
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-      // invariants:
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-      //   0 <= codingLine[a0] <= a0New
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-      //           <= refLine[b1] <= refLine[b1+1] <= columns
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-      //   0 <= a0 <= columns+1
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-      //   refLine[0] = 0
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-      //   refLine[n] = refLine[n+1] = columns
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-      //     -- for some 1 <= n <= columns+1
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-      // end condition:
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-      //   0 = codingLine[0] <= codingLine[1] < codingLine[2] < ...
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-      //     < codingLine[n-1] < codingLine[n] = columns
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-      //     -- where 1 <= n <= columns+1
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       for (i = 0; codingLine[i] < columns; ++i) {
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 	refLine[i] = codingLine[i];
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       }
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-      refLine[i] = refLine[i + 1] = columns;
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-      b1 = 1;
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-      a0New = codingLine[a0 = 0] = 0;
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-      do {
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+      refLine[i++] = columns;
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+      refLine[i] = columns;
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+      codingLine[0] = 0;
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+      a0i = 0;
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+      b1i = 0;
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+      blackPixels = 0;
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+      // invariant:
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+      // refLine[b1i-1] <= codingLine[a0i] < refLine[b1i] < refLine[b1i+1]
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+      //                                                             <= columns
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+      // exception at left edge:
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+      //   codingLine[a0i = 0] = refLine[b1i = 0] = 0 is possible
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+      // exception at right edge:
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+      //   refLine[b1i] = refLine[b1i+1] = columns is possible
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+      while (codingLine[a0i] < columns) {
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 	code1 = getTwoDimCode();
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 	switch (code1) {
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 	case twoDimPass:
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-	  if (refLine[b1] < columns) {
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-	    a0New = refLine[b1 + 1];
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-	    b1 += 2;
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+	  addPixels(refLine[b1i + 1], blackPixels);
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+	  if (refLine[b1i + 1] < columns) {
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+	    b1i += 2;
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 	  }
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 	  break;
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 	case twoDimHoriz:
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-	  if ((a0 & 1) == 0) {
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-	    code1 = code2 = 0;
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+	  code1 = code2 = 0;
bc9b361
+	  if (blackPixels) {
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 	    do {
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-	      code1 += code3 = getWhiteCode();
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+	      code1 += code3 = getBlackCode();
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 	    } while (code3 >= 64);
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 	    do {
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-	      code2 += code3 = getBlackCode();
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+	      code2 += code3 = getWhiteCode();
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 	    } while (code3 >= 64);
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 	  } else {
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-	    code1 = code2 = 0;
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 	    do {
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-	      code1 += code3 = getBlackCode();
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+	      code1 += code3 = getWhiteCode();
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 	    } while (code3 >= 64);
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 	    do {
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-	      code2 += code3 = getWhiteCode();
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+	      code2 += code3 = getBlackCode();
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 	    } while (code3 >= 64);
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 	  }
bc9b361
-	  if (code1 > 0 || code2 > 0) {
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-	    if (a0New + code1 <= columns) {
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-	      codingLine[a0 + 1] = a0New + code1;
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-	    } else {
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-	      codingLine[a0 + 1] = columns;
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-	    }
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-	    ++a0;
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-	    if (codingLine[a0] + code2 <= columns) {
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-	      codingLine[a0 + 1] = codingLine[a0] + code2;
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-	    } else {
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-	      codingLine[a0 + 1] = columns;
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-	    }
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-	    ++a0;
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-	    a0New = codingLine[a0];
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-	    while (refLine[b1] <= a0New && refLine[b1] < columns) {
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-	      b1 += 2;
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+	  addPixels(codingLine[a0i] + code1, blackPixels);
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+	  if (codingLine[a0i] < columns) {
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+	    addPixels(codingLine[a0i] + code2, blackPixels ^ 1);
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+	  }
bc9b361
+	  while (refLine[b1i] <= codingLine[a0i] && refLine[b1i] < columns) {
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+	    b1i += 2;
bc9b361
+	  }
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+	  break;
bc9b361
+	case twoDimVertR3:
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+	  addPixels(refLine[b1i] + 3, blackPixels);
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+	  blackPixels ^= 1;
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+	  if (codingLine[a0i] < columns) {
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+	    ++b1i;
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+	    while (refLine[b1i] <= codingLine[a0i] && refLine[b1i] < columns) {
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+	      b1i += 2;
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 	    }
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 	  }
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 	  break;
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-	case twoDimVert0:
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-	  if (refLine[b1] < columns) {
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-	    a0New = codingLine[++a0] = refLine[b1];
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-	    ++b1;
bc9b361
-	    while (refLine[b1] <= a0New && refLine[b1] < columns) {
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-	      b1 += 2;
bc9b361
+	case twoDimVertR2:
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+	  addPixels(refLine[b1i] + 2, blackPixels);
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+	  blackPixels ^= 1;
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+	  if (codingLine[a0i] < columns) {
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+	    ++b1i;
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+	    while (refLine[b1i] <= codingLine[a0i] && refLine[b1i] < columns) {
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+	      b1i += 2;
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 	    }
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-	  } else {
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-	    a0New = codingLine[++a0] = columns;
bc9b361
 	  }
bc9b361
 	  break;
bc9b361
 	case twoDimVertR1:
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-	  if (refLine[b1] + 1 < columns) {
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-	    a0New = codingLine[++a0] = refLine[b1] + 1;
bc9b361
-	    ++b1;
bc9b361
-	    while (refLine[b1] <= a0New && refLine[b1] < columns) {
bc9b361
-	      b1 += 2;
bc9b361
+	  addPixels(refLine[b1i] + 1, blackPixels);
bc9b361
+	  blackPixels ^= 1;
bc9b361
+	  if (codingLine[a0i] < columns) {
bc9b361
+	    ++b1i;
bc9b361
+	    while (refLine[b1i] <= codingLine[a0i] && refLine[b1i] < columns) {
bc9b361
+	      b1i += 2;
bc9b361
 	    }
bc9b361
-	  } else {
bc9b361
-	    a0New = codingLine[++a0] = columns;
bc9b361
 	  }
bc9b361
 	  break;
bc9b361
-	case twoDimVertL1:
bc9b361
-	  if (refLine[b1] - 1 > a0New || (a0 == 0 && refLine[b1] == 1)) {
bc9b361
-	    a0New = codingLine[++a0] = refLine[b1] - 1;
bc9b361
-	    --b1;
bc9b361
-	    while (refLine[b1] <= a0New && refLine[b1] < columns) {
bc9b361
-	      b1 += 2;
bc9b361
+	case twoDimVert0:
bc9b361
+	  addPixels(refLine[b1i], blackPixels);
bc9b361
+	  blackPixels ^= 1;
bc9b361
+	  if (codingLine[a0i] < columns) {
bc9b361
+	    ++b1i;
bc9b361
+	    while (refLine[b1i] <= codingLine[a0i] && refLine[b1i] < columns) {
bc9b361
+	      b1i += 2;
bc9b361
 	    }
bc9b361
 	  }
bc9b361
 	  break;
bc9b361
-	case twoDimVertR2:
bc9b361
-	  if (refLine[b1] + 2 < columns) {
bc9b361
-	    a0New = codingLine[++a0] = refLine[b1] + 2;
bc9b361
-	    ++b1;
bc9b361
-	    while (refLine[b1] <= a0New && refLine[b1] < columns) {
bc9b361
-	      b1 += 2;
bc9b361
+	case twoDimVertL3:
bc9b361
+	  addPixelsNeg(refLine[b1i] - 3, blackPixels);
bc9b361
+	  blackPixels ^= 1;
bc9b361
+	  if (codingLine[a0i] < columns) {
bc9b361
+	    if (b1i > 0) {
bc9b361
+	      --b1i;
bc9b361
+	    } else {
bc9b361
+	      ++b1i;
bc9b361
+	    }
bc9b361
+	    while (refLine[b1i] <= codingLine[a0i] && refLine[b1i] < columns) {
bc9b361
+	      b1i += 2;
bc9b361
 	    }
bc9b361
-	  } else {
bc9b361
-	    a0New = codingLine[++a0] = columns;
bc9b361
 	  }
bc9b361
 	  break;
bc9b361
 	case twoDimVertL2:
bc9b361
-	  if (refLine[b1] - 2 > a0New || (a0 == 0 && refLine[b1] == 2)) {
bc9b361
-	    a0New = codingLine[++a0] = refLine[b1] - 2;
bc9b361
-	    --b1;
bc9b361
-	    while (refLine[b1] <= a0New && refLine[b1] < columns) {
bc9b361
-	      b1 += 2;
bc9b361
+	  addPixelsNeg(refLine[b1i] - 2, blackPixels);
bc9b361
+	  blackPixels ^= 1;
bc9b361
+	  if (codingLine[a0i] < columns) {
bc9b361
+	    if (b1i > 0) {
bc9b361
+	      --b1i;
bc9b361
+	    } else {
bc9b361
+	      ++b1i;
bc9b361
 	    }
bc9b361
-	  }
bc9b361
-	  break;
bc9b361
-	case twoDimVertR3:
bc9b361
-	  if (refLine[b1] + 3 < columns) {
bc9b361
-	    a0New = codingLine[++a0] = refLine[b1] + 3;
bc9b361
-	    ++b1;
bc9b361
-	    while (refLine[b1] <= a0New && refLine[b1] < columns) {
bc9b361
-	      b1 += 2;
bc9b361
+	    while (refLine[b1i] <= codingLine[a0i] && refLine[b1i] < columns) {
bc9b361
+	      b1i += 2;
bc9b361
 	    }
bc9b361
-	  } else {
bc9b361
-	    a0New = codingLine[++a0] = columns;
bc9b361
 	  }
bc9b361
 	  break;
bc9b361
-	case twoDimVertL3:
bc9b361
-	  if (refLine[b1] - 3 > a0New || (a0 == 0 && refLine[b1] == 3)) {
bc9b361
-	    a0New = codingLine[++a0] = refLine[b1] - 3;
bc9b361
-	    --b1;
bc9b361
-	    while (refLine[b1] <= a0New && refLine[b1] < columns) {
bc9b361
-	      b1 += 2;
bc9b361
+	case twoDimVertL1:
bc9b361
+	  addPixelsNeg(refLine[b1i] - 1, blackPixels);
bc9b361
+	  blackPixels ^= 1;
bc9b361
+	  if (codingLine[a0i] < columns) {
bc9b361
+	    if (b1i > 0) {
bc9b361
+	      --b1i;
bc9b361
+	    } else {
bc9b361
+	      ++b1i;
bc9b361
+	    }
bc9b361
+	    while (refLine[b1i] <= codingLine[a0i] && refLine[b1i] < columns) {
bc9b361
+	      b1i += 2;
bc9b361
 	    }
bc9b361
 	  }
bc9b361
 	  break;
bc9b361
 	case EOF:
bc9b361
+	  addPixels(columns, 0);
bc9b361
 	  eof = gTrue;
bc9b361
-	  codingLine[a0 = 0] = columns;
bc9b361
-	  return EOF;
bc9b361
+	  break;
bc9b361
 	default:
bc9b361
 	  error(getPos(), "Bad 2D code %04x in CCITTFax stream", code1);
bc9b361
+	  addPixels(columns, 0);
bc9b361
 	  err = gTrue;
bc9b361
 	  break;
bc9b361
 	}
bc9b361
-      } while (codingLine[a0] < columns);
bc9b361
+      }
bc9b361
 
bc9b361
     // 1-D encoding
bc9b361
     } else {
bc9b361
-      codingLine[a0 = 0] = 0;
bc9b361
-      while (1) {
bc9b361
+      codingLine[0] = 0;
bc9b361
+      a0i = 0;
bc9b361
+      blackPixels = 0;
bc9b361
+      while (codingLine[a0i] < columns) {
bc9b361
 	code1 = 0;
bc9b361
-	do {
bc9b361
-	  code1 += code3 = getWhiteCode();
bc9b361
-	} while (code3 >= 64);
bc9b361
-	codingLine[a0+1] = codingLine[a0] + code1;
bc9b361
-	++a0;
bc9b361
-	if (codingLine[a0] >= columns) {
bc9b361
-	  break;
bc9b361
-	}
bc9b361
-	code2 = 0;
bc9b361
-	do {
bc9b361
-	  code2 += code3 = getBlackCode();
bc9b361
-	} while (code3 >= 64);
bc9b361
-	codingLine[a0+1] = codingLine[a0] + code2;
bc9b361
-	++a0;
bc9b361
-	if (codingLine[a0] >= columns) {
bc9b361
-	  break;
bc9b361
+	if (blackPixels) {
bc9b361
+	  do {
bc9b361
+	    code1 += code3 = getBlackCode();
bc9b361
+	  } while (code3 >= 64);
bc9b361
+	} else {
bc9b361
+	  do {
bc9b361
+	    code1 += code3 = getWhiteCode();
bc9b361
+	  } while (code3 >= 64);
bc9b361
 	}
bc9b361
+	addPixels(codingLine[a0i] + code1, blackPixels);
bc9b361
+	blackPixels ^= 1;
bc9b361
       }
bc9b361
     }
bc9b361
 
bc9b361
-    if (codingLine[a0] != columns) {
bc9b361
-      error(getPos(), "CCITTFax row is wrong length (%d)", codingLine[a0]);
bc9b361
-      // force the row to be the correct length
bc9b361
-      while (codingLine[a0] > columns) {
bc9b361
-	--a0;
bc9b361
-      }
bc9b361
-      codingLine[++a0] = columns;
bc9b361
-      err = gTrue;
bc9b361
-    }
bc9b361
-
bc9b361
     // byte-align the row
bc9b361
     if (byteAlign) {
bc9b361
       inputBits &= ~7;
bc9b361
@@ -1562,14 +1584,17 @@ int CCITTFaxStream::lookChar() {
bc9b361
     // this if we know the stream contains end-of-line markers because
bc9b361
     // the "just plow on" technique tends to work better otherwise
bc9b361
     } else if (err && endOfLine) {
bc9b361
-      do {
bc9b361
+      while (1) {
bc9b361
+	code1 = lookBits(13);
bc9b361
 	if (code1 == EOF) {
bc9b361
 	  eof = gTrue;
bc9b361
 	  return EOF;
bc9b361
 	}
bc9b361
+	if ((code1 >> 1) == 0x001) {
bc9b361
+	  break;
bc9b361
+	}
bc9b361
 	eatBits(1);
bc9b361
-	code1 = lookBits(13);
bc9b361
-      } while ((code1 >> 1) != 0x001);
bc9b361
+      }
bc9b361
       eatBits(12); 
bc9b361
       if (encoding > 0) {
bc9b361
 	eatBits(1);
bc9b361
@@ -1577,11 +1602,11 @@ int CCITTFaxStream::lookChar() {
bc9b361
       }
bc9b361
     }
bc9b361
 
bc9b361
-    a0 = 0;
bc9b361
-    outputBits = codingLine[1] - codingLine[0];
bc9b361
-    if (outputBits == 0) {
bc9b361
-      a0 = 1;
bc9b361
-      outputBits = codingLine[2] - codingLine[1];
bc9b361
+    // set up for output
bc9b361
+    if (codingLine[0] > 0) {
bc9b361
+      outputBits = codingLine[a0i = 0];
bc9b361
+    } else {
bc9b361
+      outputBits = codingLine[a0i = 1];
bc9b361
     }
bc9b361
 
bc9b361
     ++row;
bc9b361
@@ -1589,39 +1614,43 @@ int CCITTFaxStream::lookChar() {
bc9b361
 
bc9b361
   // get a byte
bc9b361
   if (outputBits >= 8) {
bc9b361
-    ret = ((a0 & 1) == 0) ? 0xff : 0x00;
bc9b361
-    if ((outputBits -= 8) == 0) {
bc9b361
-      ++a0;
bc9b361
-      if (codingLine[a0] < columns) {
bc9b361
-	outputBits = codingLine[a0 + 1] - codingLine[a0];
bc9b361
-      }
bc9b361
+    buf = (a0i & 1) ? 0x00 : 0xff;
bc9b361
+    outputBits -= 8;
bc9b361
+    if (outputBits == 0 && codingLine[a0i] < columns) {
bc9b361
+      ++a0i;
bc9b361
+      outputBits = codingLine[a0i] - codingLine[a0i - 1];
bc9b361
     }
bc9b361
   } else {
bc9b361
     bits = 8;
bc9b361
-    ret = 0;
bc9b361
+    buf = 0;
bc9b361
     do {
bc9b361
       if (outputBits > bits) {
bc9b361
-	i = bits;
bc9b361
-	bits = 0;
bc9b361
-	if ((a0 & 1) == 0) {
bc9b361
-	  ret |= 0xff >> (8 - i);
bc9b361
+	buf <<= bits;
bc9b361
+	if (!(a0i & 1)) {
bc9b361
+	  buf |= 0xff >> (8 - bits);
bc9b361
 	}
bc9b361
-	outputBits -= i;
bc9b361
+	outputBits -= bits;
bc9b361
+	bits = 0;
bc9b361
       } else {
bc9b361
-	i = outputBits;
bc9b361
-	bits -= outputBits;
bc9b361
-	if ((a0 & 1) == 0) {
bc9b361
-	  ret |= (0xff >> (8 - i)) << bits;
bc9b361
+	buf <<= outputBits;
bc9b361
+	if (!(a0i & 1)) {
bc9b361
+	  buf |= 0xff >> (8 - outputBits);
bc9b361
 	}
bc9b361
+	bits -= outputBits;
bc9b361
 	outputBits = 0;
bc9b361
-	++a0;
bc9b361
-	if (codingLine[a0] < columns) {
bc9b361
-	  outputBits = codingLine[a0 + 1] - codingLine[a0];
bc9b361
+	if (codingLine[a0i] < columns) {
bc9b361
+	  ++a0i;
bc9b361
+	  outputBits = codingLine[a0i] - codingLine[a0i - 1];
bc9b361
+	} else if (bits > 0) {
bc9b361
+	  buf <<= bits;
bc9b361
+	  bits = 0;
bc9b361
 	}
bc9b361
       }
bc9b361
-    } while (bits > 0 && codingLine[a0] < columns);
bc9b361
+    } while (bits);
bc9b361
+  }
bc9b361
+  if (black) {
bc9b361
+    buf ^= 0xff;
bc9b361
   }
bc9b361
-  buf = black ? (ret ^ 0xff) : ret;
bc9b361
   return buf;
bc9b361
 }
bc9b361
 
bc9b361
@@ -1663,6 +1692,9 @@ short CCITTFaxStream::getWhiteCode() {
bc9b361
   code = 0; // make gcc happy
bc9b361
   if (endOfBlock) {
bc9b361
     code = lookBits(12);
bc9b361
+    if (code == EOF) {
bc9b361
+      return 1;
bc9b361
+    }
bc9b361
     if ((code >> 5) == 0) {
bc9b361
       p = &whiteTab1[code];
bc9b361
     } else {
bc9b361
@@ -1675,6 +1707,9 @@ short CCITTFaxStream::getWhiteCode() {
bc9b361
   } else {
bc9b361
     for (n = 1; n <= 9; ++n) {
bc9b361
       code = lookBits(n);
bc9b361
+      if (code == EOF) {
bc9b361
+	return 1;
bc9b361
+      }
bc9b361
       if (n < 9) {
bc9b361
 	code <<= 9 - n;
bc9b361
       }
bc9b361
@@ -1686,6 +1721,9 @@ short CCITTFaxStream::getWhiteCode() {
bc9b361
     }
bc9b361
     for (n = 11; n <= 12; ++n) {
bc9b361
       code = lookBits(n);
bc9b361
+      if (code == EOF) {
bc9b361
+	return 1;
bc9b361
+      }
bc9b361
       if (n < 12) {
bc9b361
 	code <<= 12 - n;
bc9b361
       }
bc9b361
@@ -1711,9 +1749,12 @@ short CCITTFaxStream::getBlackCode() {
bc9b361
   code = 0; // make gcc happy
bc9b361
   if (endOfBlock) {
bc9b361
     code = lookBits(13);
bc9b361
+    if (code == EOF) {
bc9b361
+      return 1;
bc9b361
+    }
bc9b361
     if ((code >> 7) == 0) {
bc9b361
       p = &blackTab1[code];
bc9b361
-    } else if ((code >> 9) == 0) {
bc9b361
+    } else if ((code >> 9) == 0 && (code >> 7) != 0) {
bc9b361
       p = &blackTab2[(code >> 1) - 64];
bc9b361
     } else {
bc9b361
       p = &blackTab3[code >> 7];
bc9b361
@@ -1725,6 +1766,9 @@ short CCITTFaxStream::getBlackCode() {
bc9b361
   } else {
bc9b361
     for (n = 2; n <= 6; ++n) {
bc9b361
       code = lookBits(n);
bc9b361
+      if (code == EOF) {
bc9b361
+	return 1;
bc9b361
+      }
bc9b361
       if (n < 6) {
bc9b361
 	code <<= 6 - n;
bc9b361
       }
bc9b361
@@ -1736,6 +1780,9 @@ short CCITTFaxStream::getBlackCode() {
bc9b361
     }
bc9b361
     for (n = 7; n <= 12; ++n) {
bc9b361
       code = lookBits(n);
bc9b361
+      if (code == EOF) {
bc9b361
+	return 1;
bc9b361
+      }
bc9b361
       if (n < 12) {
bc9b361
 	code <<= 12 - n;
bc9b361
       }
bc9b361
@@ -1749,6 +1796,9 @@ short CCITTFaxStream::getBlackCode() {
bc9b361
     }
bc9b361
     for (n = 10; n <= 13; ++n) {
bc9b361
       code = lookBits(n);
bc9b361
+      if (code == EOF) {
bc9b361
+	return 1;
bc9b361
+      }
bc9b361
       if (n < 13) {
bc9b361
 	code <<= 13 - n;
bc9b361
       }
bc9b361
@@ -1963,6 +2013,12 @@ void DCTStream::reset() {
bc9b361
     // allocate a buffer for the whole image
bc9b361
     bufWidth = ((width + mcuWidth - 1) / mcuWidth) * mcuWidth;
bc9b361
     bufHeight = ((height + mcuHeight - 1) / mcuHeight) * mcuHeight;
bc9b361
+    if (bufWidth <= 0 || bufHeight <= 0 ||
bc9b361
+	bufWidth > INT_MAX / bufWidth / (int)sizeof(int)) {
bc9b361
+      error(getPos(), "Invalid image size in DCT stream");
bc9b361
+      y = height;
bc9b361
+      return;
bc9b361
+    }
bc9b361
     for (i = 0; i < numComps; ++i) {
bc9b361
       frameBuf[i] = (int *)gmallocn(bufWidth * bufHeight, sizeof(int));
bc9b361
       memset(frameBuf[i], 0, bufWidth * bufHeight * sizeof(int));
bc9b361
@@ -3038,6 +3094,11 @@ GBool DCTStream::readScanInfo() {
bc9b361
   }
bc9b361
   scanInfo.firstCoeff = str->getChar();
bc9b361
   scanInfo.lastCoeff = str->getChar();
bc9b361
+  if (scanInfo.firstCoeff < 0 || scanInfo.lastCoeff > 63 ||
bc9b361
+      scanInfo.firstCoeff > scanInfo.lastCoeff) {
bc9b361
+    error(getPos(), "Bad DCT coefficient numbers in scan info block");
bc9b361
+    return gFalse;
bc9b361
+  }
bc9b361
   c = str->getChar();
bc9b361
   scanInfo.ah = (c >> 4) & 0x0f;
bc9b361
   scanInfo.al = c & 0x0f;
bc9b361
--- kpdf/xpdf/xpdf/Stream.h
bc9b361
+++ kpdf/xpdf/xpdf/Stream.h
bc9b361
@@ -528,13 +528,15 @@ private:
bc9b361
   int row;			// current row
bc9b361
   int inputBuf;			// input buffer
bc9b361
   int inputBits;		// number of bits in input buffer
bc9b361
-  short *refLine;		// reference line changing elements
bc9b361
-  int b1;			// index into refLine
bc9b361
-  short *codingLine;		// coding line changing elements
bc9b361
-  int a0;			// index into codingLine
bc9b361
+  int *codingLine;		// coding line changing elements
bc9b361
+  int *refLine;			// reference line changing elements
bc9b361
+  int a0i;			// index into codingLine
bc9b361
+  GBool err;			// error on current line
bc9b361
   int outputBits;		// remaining ouput bits
bc9b361
   int buf;			// character buffer
bc9b361
 
bc9b361
+  void addPixels(int a1, int black);
bc9b361
+  void addPixelsNeg(int a1, int black);
bc9b361
   short getTwoDimCode();
bc9b361
   short getWhiteCode();
bc9b361
   short getBlackCode();