[devel] Fixed some spelling and indentation.
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b9109e8254
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233357ef0e
84
png.c
84
png.c
@ -1342,7 +1342,7 @@ png_ascii_from_fp(png_structp png_ptr, png_charp ascii, png_size_t size,
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}
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/* Here on buffer too small. */
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png_error(png_ptr, "ASCII convertion buffer too small");
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png_error(png_ptr, "ASCII conversion buffer too small");
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}
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# endif /* FLOATING_POINT */
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@ -1401,9 +1401,21 @@ png_muldiv(png_fixed_point_p res, png_fixed_point a, png_int_32 times,
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#else
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int negative = 0;
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png_uint_32 A, T, D;
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if (a < 0) negative = 1, A = -a; else A = a;
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if (times < 0) negative = !negative, T = -times; else T = times;
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if (div < 0) negative = !negative, D = -div; else D = div;
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if (a < 0)
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negative = 1, A = -a;
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else
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A = a;
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if (times < 0)
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negative = !negative, T = -times;
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else
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T = times;
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if (div < 0)
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negative = !negative, D = -div;
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else
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D = div;
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/* Following can't overflow because the arguments only
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* have 31 bits each, however the result may be 32 bits.
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@ -1432,6 +1444,7 @@ png_muldiv(png_fixed_point_p res, png_fixed_point a, png_int_32 times,
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while (--bitshift >= 0)
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{
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png_uint_32 d32, d00;
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if (bitshift > 0)
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d32 = D >> (32-bitshift), d00 = D << bitshift;
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else
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@ -1442,7 +1455,8 @@ png_muldiv(png_fixed_point_p res, png_fixed_point a, png_int_32 times,
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if (s00 < d00) --s32; /* carry */
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s32 -= d32, s00 -= d00, result += 1<<bitshift;
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}
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else if (s32 == d32 && s00 >= d00)
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else
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if (s32 == d32 && s00 >= d00)
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s32 = 0, s00 -= d00, result += 1<<bitshift;
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}
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@ -1638,7 +1652,7 @@ png_8bit_l2[128] =
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24347096U, 0U
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#if 0
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/* The following are the values for 16 bit tables - these work fine for the 8
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* bit convertions but produce very slightly larger errors in the 16 bit log
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* bit conversions but produce very slightly larger errors in the 16 bit log
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* (about 1.2 as opposed to 0.7 absolute error in the final value). To use
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* these all the shifts below must be adjusted appropriately.
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*/
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@ -1667,10 +1681,18 @@ png_log8bit(unsigned x)
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* input), return 7.99998 for the overflow (log 0) case - so the result is
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* always at most 19 bits.
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*/
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if ((x &= 0xff) == 0) return 0xffffffff;
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if ((x & 0xf0) == 0) log = 4, x <<= 4;
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if ((x & 0xc0) == 0) log += 2, x <<= 2;
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if ((x & 0x80) == 0) log += 1, x <<= 1;
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if ((x &= 0xff) == 0)
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return 0xffffffff;
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if ((x & 0xf0) == 0)
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log = 4, x <<= 4;
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if ((x & 0xc0) == 0)
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log += 2, x <<= 2;
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if ((x & 0x80) == 0)
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log += 1, x <<= 1;
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return (log << 16) + ((png_8bit_l2[x-128]+32768)>>16);
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}
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@ -1710,11 +1732,20 @@ png_log16bit(png_uint_32 x)
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unsigned log = 0;
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/* As above, but now the input has 16 bits. */
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if ((x &= 0xffff) == 0) return 0xffffffff;
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if ((x & 0xff00) == 0) log = 8, x <<= 8;
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if ((x & 0xf000) == 0) log += 4, x <<= 4;
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if ((x & 0xc000) == 0) log += 2, x <<= 2;
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if ((x & 0x8000) == 0) log += 1, x <<= 1;
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if ((x &= 0xffff) == 0)
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return 0xffffffff;
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if ((x & 0xff00) == 0)
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log = 8, x <<= 8;
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if ((x & 0xf000) == 0)
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log += 4, x <<= 4;
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if ((x & 0xc000) == 0)
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log += 2, x <<= 2;
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if ((x & 0x8000) == 0)
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log += 1, x <<= 1;
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/* Calculate the base logarithm from the top 8 bits as a 28 bit fractional
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* value.
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@ -1800,12 +1831,23 @@ png_exp(png_uint_32 x)
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* converge on 45426 and this is used to allow linear interpolation of the
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* low bits.
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*/
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if (x & 0x800) e -= (((e >> 16) * 44938U) + 16U) >> 5;
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if (x & 0x400) e -= (((e >> 16) * 45181U) + 32U) >> 6;
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if (x & 0x200) e -= (((e >> 16) * 45303U) + 64U) >> 7;
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if (x & 0x100) e -= (((e >> 16) * 45365U) + 128U) >> 8;
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if (x & 0x080) e -= (((e >> 16) * 45395U) + 256U) >> 9;
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if (x & 0x040) e -= (((e >> 16) * 45410U) + 512U) >> 10;
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if (x & 0x800)
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e -= (((e >> 16) * 44938U) + 16U) >> 5;
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if (x & 0x400)
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e -= (((e >> 16) * 45181U) + 32U) >> 6;
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if (x & 0x200)
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e -= (((e >> 16) * 45303U) + 64U) >> 7;
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if (x & 0x100)
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e -= (((e >> 16) * 45365U) + 128U) >> 8;
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if (x & 0x080)
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e -= (((e >> 16) * 45395U) + 256U) >> 9;
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if (x & 0x040)
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e -= (((e >> 16) * 45410U) + 512U) >> 10;
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/* And handle the low 6 bits in a single block. */
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e -= (((e >> 16) * 355U * (x & 0x3fU)) + 256U) >> 9;
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2
pngget.c
2
pngget.c
@ -295,7 +295,7 @@ static png_uint_32
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ppi_from_ppm(png_uint_32 ppm)
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{
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#if 0
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/* The convertion is *(2.54/100), in binary (32 digits):
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/* The conversion is *(2.54/100), in binary (32 digits):
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* .00000110100000001001110101001001
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*/
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png_uint_32 t1001, t1101;
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@ -116,11 +116,11 @@
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*/
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#if defined(PNG_FLOATING_POINT_SUPPORTED) ||\
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defined(PNG_FLOATING_ARITHMETIC_SUPPORTED)
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/* pngarith.c requires the following ANSI-C constants if the convertion of
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/* png.c requires the following ANSI-C constants if the conversion of
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* floating point to ASCII is implemented therein:
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*
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* DBL_DIG Maximum number of decimal digits (can be set to any constant)
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* DBL_MIN Smalles normalized fp number (can be set to an arbitrary value)
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* DBL_MIN Smallest normalized fp number (can be set to an arbitrary value)
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* DBL_MAX Maximum floating point number (can be set to an arbitrary value)
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*/
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# include <float.h>
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@ -366,7 +366,7 @@
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* when it is supposedly disabled.)
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*/
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#ifdef PNG_FLOATING_POINT_SUPPORTED
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/* The floating point convertion can't overflow, though it can and
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/* The floating point conversion can't overflow, though it can and
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* does lose accuracy relative to the original fixed point value.
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* In practice this doesn't matter because png_fixed_point only
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* stores numbers with very low precision. The png_ptr and s
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@ -375,7 +375,7 @@
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*/
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#define png_float(png_ptr, fixed, s) (.00001 * (fixed))
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/* The fixed point convertion performs range checking and evaluates
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/* The fixed point conversion performs range checking and evaluates
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* its argument multiple times, so must be used with care. The
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* range checking uses the PNG specification values for a signed
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* 32 bit fixed point value except that the values are deliberately
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@ -71,7 +71,7 @@ png_get_uint_32)(png_bytep buf)
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/* Grab a signed 32-bit integer from a buffer in big-endian format. The
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* data is stored in the PNG file in two's complement format and there
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* is no guarantee that a 'png_int_32' is exactly 32 bits, therefore
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* the following code does a two's complement to native convertion.
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* the following code does a two's complement to native conversion.
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*/
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png_int_32 (PNGAPI
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png_get_int_32)(png_bytep buf)
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@ -1876,7 +1876,7 @@ static void perform_gamma_strip16_tests(png_modifier *pm, int speed)
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* used by the library - otherwise we will get spurious errors from the
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* internal sbit style approximation.
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*
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* The threshold test is here because otherwise the 16 to 8 convertion will
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* The threshold test is here because otherwise the 16 to 8 conversion will
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* proceed *without* gamma correction, and the tests above will fail (but not
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* by much) - this could be fixed, it only appears with the -g option.
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*/
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