stb_image.h 241.0 KB
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/* stb_image - v2.13 - public domain image loader - http://nothings.org/stb_image.h
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                                     no warranty implied; use at your own risk
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   Do this:
      #define STB_IMAGE_IMPLEMENTATION
   before you include this file in *one* C or C++ file to create the implementation.

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   // i.e. it should look like this:
   #include ...
   #include ...
   #include ...
   #define STB_IMAGE_IMPLEMENTATION
   #include "stb_image.h"

   You can #define STBI_ASSERT(x) before the #include to avoid using assert.h.
   And #define STBI_MALLOC, STBI_REALLOC, and STBI_FREE to avoid using malloc,realloc,free
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   QUICK NOTES:
      Primarily of interest to game developers and other people who can
          avoid problematic images and only need the trivial interface

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      JPEG baseline & progressive (12 bpc/arithmetic not supported, same as stock IJG lib)
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      PNG 1/2/4/8-bit-per-channel (16 bpc not supported)
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      TGA (not sure what subset, if a subset)
      BMP non-1bpp, non-RLE
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      PSD (composited view only, no extra channels, 8/16 bit-per-channel)
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      GIF (*comp always reports as 4-channel)
      HDR (radiance rgbE format)
      PIC (Softimage PIC)
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      PNM (PPM and PGM binary only)
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      Animated GIF still needs a proper API, but here's one way to do it:
          http://gist.github.com/urraka/685d9a6340b26b830d49

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      - decode from memory or through FILE (define STBI_NO_STDIO to remove code)
      - decode from arbitrary I/O callbacks
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      - SIMD acceleration on x86/x64 (SSE2) and ARM (NEON)
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   Full documentation under "DOCUMENTATION" below.


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   Revision 2.00 release notes:
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      - Progressive JPEG is now supported.

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      - PPM and PGM binary formats are now supported, thanks to Ken Miller.
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      - x86 platforms now make use of SSE2 SIMD instructions for
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        JPEG decoding, and ARM platforms can use NEON SIMD if requested.
        This work was done by Fabian "ryg" Giesen. SSE2 is used by
        default, but NEON must be enabled explicitly; see docs.

        With other JPEG optimizations included in this version, we see
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        2x speedup on a JPEG on an x86 machine, and a 1.5x speedup
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        on a JPEG on an ARM machine, relative to previous versions of this
        library. The same results will not obtain for all JPGs and for all
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        x86/ARM machines. (Note that progressive JPEGs are significantly
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        slower to decode than regular JPEGs.) This doesn't mean that this
        is the fastest JPEG decoder in the land; rather, it brings it
        closer to parity with standard libraries. If you want the fastest
        decode, look elsewhere. (See "Philosophy" section of docs below.)

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        See final bullet items below for more info on SIMD.

      - Added STBI_MALLOC, STBI_REALLOC, and STBI_FREE macros for replacing
        the memory allocator. Unlike other STBI libraries, these macros don't
        support a context parameter, so if you need to pass a context in to
        the allocator, you'll have to store it in a global or a thread-local
        variable.

      - Split existing STBI_NO_HDR flag into two flags, STBI_NO_HDR and
        STBI_NO_LINEAR.
            STBI_NO_HDR:     suppress implementation of .hdr reader format
            STBI_NO_LINEAR:  suppress high-dynamic-range light-linear float API

      - You can suppress implementation of any of the decoders to reduce
        your code footprint by #defining one or more of the following
        symbols before creating the implementation.

            STBI_NO_JPEG
            STBI_NO_PNG
            STBI_NO_BMP
            STBI_NO_PSD
            STBI_NO_TGA
            STBI_NO_GIF
            STBI_NO_HDR
            STBI_NO_PIC
            STBI_NO_PNM   (.ppm and .pgm)

      - You can request *only* certain decoders and suppress all other ones
        (this will be more forward-compatible, as addition of new decoders
        doesn't require you to disable them explicitly):

            STBI_ONLY_JPEG
            STBI_ONLY_PNG
            STBI_ONLY_BMP
            STBI_ONLY_PSD
            STBI_ONLY_TGA
            STBI_ONLY_GIF
            STBI_ONLY_HDR
            STBI_ONLY_PIC
            STBI_ONLY_PNM   (.ppm and .pgm)

         Note that you can define multiples of these, and you will get all
         of them ("only x" and "only y" is interpreted to mean "only x&y").

       - If you use STBI_NO_PNG (or _ONLY_ without PNG), and you still
         want the zlib decoder to be available, #define STBI_SUPPORT_ZLIB

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      - Compilation of all SIMD code can be suppressed with
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            #define STBI_NO_SIMD
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        It should not be necessary to disable SIMD unless you have issues
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        compiling (e.g. using an x86 compiler which doesn't support SSE
        intrinsics or that doesn't support the method used to detect
        SSE2 support at run-time), and even those can be reported as
        bugs so I can refine the built-in compile-time checking to be
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        smarter.
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      - The old STBI_SIMD system which allowed installing a user-defined
        IDCT etc. has been removed. If you need this, don't upgrade. My
        assumption is that almost nobody was doing this, and those who
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        were will find the built-in SIMD more satisfactory anyway.
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      - RGB values computed for JPEG images are slightly different from
        previous versions of stb_image. (This is due to using less
        integer precision in SIMD.) The C code has been adjusted so
        that the same RGB values will be computed regardless of whether
        SIMD support is available, so your app should always produce
        consistent results. But these results are slightly different from
        previous versions. (Specifically, about 3% of available YCbCr values
        will compute different RGB results from pre-1.49 versions by +-1;
        most of the deviating values are one smaller in the G channel.)

      - If you must produce consistent results with previous versions of
        stb_image, #define STBI_JPEG_OLD and you will get the same results
        you used to; however, you will not get the SIMD speedups for
        the YCbCr-to-RGB conversion step (although you should still see
        significant JPEG speedup from the other changes).

        Please note that STBI_JPEG_OLD is a temporary feature; it will be
        removed in future versions of the library. It is only intended for
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        near-term back-compatibility use.
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   Latest revision history:
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      2.13  (2016-12-04) experimental 16-bit API, only for PNG so far; fixes
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      2.12  (2016-04-02) fix typo in 2.11 PSD fix that caused crashes
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      2.11  (2016-04-02) 16-bit PNGS; enable SSE2 in non-gcc x64
                         RGB-format JPEG; remove white matting in PSD;
                         allocate large structures on the stack; 
                         correct channel count for PNG & BMP
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      2.10  (2016-01-22) avoid warning introduced in 2.09
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      2.09  (2016-01-16) 16-bit TGA; comments in PNM files; STBI_REALLOC_SIZED
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      2.08  (2015-09-13) fix to 2.07 cleanup, reading RGB PSD as RGBA
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      2.07  (2015-09-13) partial animated GIF support
                         limited 16-bit PSD support
                         minor bugs, code cleanup, and compiler warnings
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   See end of file for full revision history.


 ============================    Contributors    =========================
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 Image formats                          Extensions, features
    Sean Barrett (jpeg, png, bmp)          Jetro Lauha (stbi_info)
    Nicolas Schulz (hdr, psd)              Martin "SpartanJ" Golini (stbi_info)
    Jonathan Dummer (tga)                  James "moose2000" Brown (iPhone PNG)
    Jean-Marc Lienher (gif)                Ben "Disch" Wenger (io callbacks)
    Tom Seddon (pic)                       Omar Cornut (1/2/4-bit PNG)
    Thatcher Ulrich (psd)                  Nicolas Guillemot (vertical flip)
    Ken Miller (pgm, ppm)                  Richard Mitton (16-bit PSD)
    urraka@github (animated gif)           Junggon Kim (PNM comments)
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                                           Daniel Gibson (16-bit TGA)
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 Optimizations & bugfixes
    Fabian "ryg" Giesen
    Arseny Kapoulkine

 Bug & warning fixes
    Marc LeBlanc            David Woo          Guillaume George   Martins Mozeiko
    Christpher Lloyd        Martin Golini      Jerry Jansson      Joseph Thomson
    Dave Moore              Roy Eltham         Hayaki Saito       Phil Jordan
    Won Chun                Luke Graham        Johan Duparc       Nathan Reed
    the Horde3D community   Thomas Ruf         Ronny Chevalier    Nick Verigakis
    Janez Zemva             John Bartholomew   Michal Cichon      svdijk@github
    Jonathan Blow           Ken Hamada         Tero Hanninen      Baldur Karlsson
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    Laurent Gomila          Cort Stratton      Sergio Gonzalez    romigrou@github
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    Aruelien Pocheville     Thibault Reuille   Cass Everitt       Matthew Gregan
    Ryamond Barbiero        Paul Du Bois       Engin Manap        snagar@github
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    Michaelangel007@github  Oriol Ferrer Mesia socks-the-fox      Zelex@github
    Philipp Wiesemann       Josh Tobin         rlyeh@github       grim210@github
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    Blazej Dariusz Roszkowski                  Dale Weiler
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LICENSE

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This software is dual-licensed to the public domain and under the following
license: you are granted a perpetual, irrevocable license to copy, modify,
publish, and distribute this file as you see fit.
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*/

#ifndef STBI_INCLUDE_STB_IMAGE_H
#define STBI_INCLUDE_STB_IMAGE_H

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// DOCUMENTATION
//
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// Limitations:
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//    - no 16-bit-per-channel PNG
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//    - no 12-bit-per-channel JPEG
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//    - no JPEGs with arithmetic coding
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//    - no 1-bit BMP
//    - GIF always returns *comp=4
//
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// Basic usage (see HDR discussion below for HDR usage):
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//    int x,y,n;
//    unsigned char *data = stbi_load(filename, &x, &y, &n, 0);
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//    // ... process data if not NULL ...
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//    // ... x = width, y = height, n = # 8-bit components per pixel ...
//    // ... replace '0' with '1'..'4' to force that many components per pixel
//    // ... but 'n' will always be the number that it would have been if you said 0
//    stbi_image_free(data)
//
// Standard parameters:
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//    int *x                 -- outputs image width in pixels
//    int *y                 -- outputs image height in pixels
//    int *channels_in_file  -- outputs # of image components in image file
//    int desired_channels   -- if non-zero, # of image components requested in result
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//
// The return value from an image loader is an 'unsigned char *' which points
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// to the pixel data, or NULL on an allocation failure or if the image is
// corrupt or invalid. The pixel data consists of *y scanlines of *x pixels,
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// with each pixel consisting of N interleaved 8-bit components; the first
// pixel pointed to is top-left-most in the image. There is no padding between
// image scanlines or between pixels, regardless of format. The number of
// components N is 'req_comp' if req_comp is non-zero, or *comp otherwise.
// If req_comp is non-zero, *comp has the number of components that _would_
// have been output otherwise. E.g. if you set req_comp to 4, you will always
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// get RGBA output, but you can check *comp to see if it's trivially opaque
// because e.g. there were only 3 channels in the source image.
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//
// An output image with N components has the following components interleaved
// in this order in each pixel:
//
//     N=#comp     components
//       1           grey
//       2           grey, alpha
//       3           red, green, blue
//       4           red, green, blue, alpha
//
// If image loading fails for any reason, the return value will be NULL,
// and *x, *y, *comp will be unchanged. The function stbi_failure_reason()
// can be queried for an extremely brief, end-user unfriendly explanation
// of why the load failed. Define STBI_NO_FAILURE_STRINGS to avoid
// compiling these strings at all, and STBI_FAILURE_USERMSG to get slightly
// more user-friendly ones.
//
// Paletted PNG, BMP, GIF, and PIC images are automatically depalettized.
//
// ===========================================================================
//
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// Philosophy
//
// stb libraries are designed with the following priorities:
//
//    1. easy to use
//    2. easy to maintain
//    3. good performance
//
// Sometimes I let "good performance" creep up in priority over "easy to maintain",
// and for best performance I may provide less-easy-to-use APIs that give higher
// performance, in addition to the easy to use ones. Nevertheless, it's important
// to keep in mind that from the standpoint of you, a client of this library,
// all you care about is #1 and #3, and stb libraries do not emphasize #3 above all.
//
// Some secondary priorities arise directly from the first two, some of which
// make more explicit reasons why performance can't be emphasized.
//
//    - Portable ("ease of use")
//    - Small footprint ("easy to maintain")
//    - No dependencies ("ease of use")
//
// ===========================================================================
//
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// I/O callbacks
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//
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// I/O callbacks allow you to read from arbitrary sources, like packaged
// files or some other source. Data read from callbacks are processed
// through a small internal buffer (currently 128 bytes) to try to reduce
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// overhead.
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//
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// The three functions you must define are "read" (reads some bytes of data),
// "skip" (skips some bytes of data), "eof" (reports if the stream is at the end).
//
// ===========================================================================
//
// SIMD support
//
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// The JPEG decoder will try to automatically use SIMD kernels on x86 when
// supported by the compiler. For ARM Neon support, you must explicitly
// request it.
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//
// (The old do-it-yourself SIMD API is no longer supported in the current
// code.)
//
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// On x86, SSE2 will automatically be used when available based on a run-time
// test; if not, the generic C versions are used as a fall-back. On ARM targets,
// the typical path is to have separate builds for NEON and non-NEON devices
// (at least this is true for iOS and Android). Therefore, the NEON support is
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// toggled by a build flag: define STBI_NEON to get NEON loops.
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//
// The output of the JPEG decoder is slightly different from versions where
// SIMD support was introduced (that is, for versions before 1.49). The
// difference is only +-1 in the 8-bit RGB channels, and only on a small
// fraction of pixels. You can force the pre-1.49 behavior by defining
// STBI_JPEG_OLD, but this will disable some of the SIMD decoding path
// and hence cost some performance.
//
// If for some reason you do not want to use any of SIMD code, or if
// you have issues compiling it, you can disable it entirely by
// defining STBI_NO_SIMD.
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//
// ===========================================================================
//
// HDR image support   (disable by defining STBI_NO_HDR)
//
// stb_image now supports loading HDR images in general, and currently
// the Radiance .HDR file format, although the support is provided
// generically. You can still load any file through the existing interface;
// if you attempt to load an HDR file, it will be automatically remapped to
// LDR, assuming gamma 2.2 and an arbitrary scale factor defaulting to 1;
// both of these constants can be reconfigured through this interface:
//
//     stbi_hdr_to_ldr_gamma(2.2f);
//     stbi_hdr_to_ldr_scale(1.0f);
//
// (note, do not use _inverse_ constants; stbi_image will invert them
// appropriately).
//
// Additionally, there is a new, parallel interface for loading files as
// (linear) floats to preserve the full dynamic range:
//
//    float *data = stbi_loadf(filename, &x, &y, &n, 0);
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//
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// If you load LDR images through this interface, those images will
// be promoted to floating point values, run through the inverse of
// constants corresponding to the above:
//
//     stbi_ldr_to_hdr_scale(1.0f);
//     stbi_ldr_to_hdr_gamma(2.2f);
//
// Finally, given a filename (or an open file or memory block--see header
// file for details) containing image data, you can query for the "most
// appropriate" interface to use (that is, whether the image is HDR or
// not), using:
//
//     stbi_is_hdr(char *filename);
//
// ===========================================================================
//
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// iPhone PNG support:
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//
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// By default we convert iphone-formatted PNGs back to RGB, even though
// they are internally encoded differently. You can disable this conversion
// by by calling stbi_convert_iphone_png_to_rgb(0), in which case
// you will always just get the native iphone "format" through (which
// is BGR stored in RGB).
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//
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// Call stbi_set_unpremultiply_on_load(1) as well to force a divide per
// pixel to remove any premultiplied alpha *only* if the image file explicitly
// says there's premultiplied data (currently only happens in iPhone images,
// and only if iPhone convert-to-rgb processing is on).
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//
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#ifndef STBI_NO_STDIO
#include <stdio.h>
#endif // STBI_NO_STDIO

#define STBI_VERSION 1

enum
{
   STBI_default = 0, // only used for req_comp

   STBI_grey       = 1,
   STBI_grey_alpha = 2,
   STBI_rgb        = 3,
   STBI_rgb_alpha  = 4
};

typedef unsigned char stbi_uc;
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typedef unsigned short stbi_us;
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#ifdef __cplusplus
extern "C" {
#endif

#ifdef STB_IMAGE_STATIC
#define STBIDEF static
#else
#define STBIDEF extern
#endif

//////////////////////////////////////////////////////////////////////////////
//
// PRIMARY API - works on images of any type
//

//
// load image by filename, open file, or memory buffer
//

typedef struct
{
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   int      (*read)  (void *user,char *data,int size);   // fill 'data' with 'size' bytes.  return number of bytes actually read
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   void     (*skip)  (void *user,int n);                 // skip the next 'n' bytes, or 'unget' the last -n bytes if negative
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   int      (*eof)   (void *user);                       // returns nonzero if we are at end of file/data
} stbi_io_callbacks;

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////////////////////////////////////
//
// 8-bits-per-channel interface
//

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STBIDEF stbi_uc *stbi_load               (char              const *filename,           int *x, int *y, int *channels_in_file, int desired_channels);
STBIDEF stbi_uc *stbi_load_from_memory   (stbi_uc           const *buffer, int len   , int *x, int *y, int *channels_in_file, int desired_channels);
STBIDEF stbi_uc *stbi_load_from_callbacks(stbi_io_callbacks const *clbk  , void *user, int *x, int *y, int *channels_in_file, int desired_channels);
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#ifndef STBI_NO_STDIO
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STBIDEF stbi_uc *stbi_load_from_file   (FILE *f, int *x, int *y, int *channels_in_file, int desired_channels);
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// for stbi_load_from_file, file pointer is left pointing immediately after image
#endif
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////////////////////////////////////
//
// 16-bits-per-channel interface
//

STBIDEF stbi_us *stbi_load_16(char const *filename, int *x, int *y, int *channels_in_file, int desired_channels);
#ifndef STBI_NO_STDIO
STBIDEF stbi_us *stbi_load_from_file_16(FILE *f, int *x, int *y, int *channels_in_file, int desired_channels);
#endif
// @TODO the other variants
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////////////////////////////////////
//
// float-per-channel interface
//
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#ifndef STBI_NO_LINEAR
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   STBIDEF float *stbi_loadf                 (char const *filename,           int *x, int *y, int *channels_in_file, int desired_channels);
   STBIDEF float *stbi_loadf_from_memory     (stbi_uc const *buffer, int len, int *x, int *y, int *channels_in_file, int desired_channels);
   STBIDEF float *stbi_loadf_from_callbacks  (stbi_io_callbacks const *clbk, void *user, int *x, int *y,  int *channels_in_file, int desired_channels);
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   #ifndef STBI_NO_STDIO
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   STBIDEF float *stbi_loadf_from_file  (FILE *f, int *x, int *y, int *channels_in_file, int desired_channels);
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   #endif
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#endif
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#ifndef STBI_NO_HDR
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   STBIDEF void   stbi_hdr_to_ldr_gamma(float gamma);
   STBIDEF void   stbi_hdr_to_ldr_scale(float scale);
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#endif // STBI_NO_HDR
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#ifndef STBI_NO_LINEAR
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   STBIDEF void   stbi_ldr_to_hdr_gamma(float gamma);
   STBIDEF void   stbi_ldr_to_hdr_scale(float scale);
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#endif // STBI_NO_LINEAR
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// stbi_is_hdr is always defined, but always returns false if STBI_NO_HDR
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STBIDEF int    stbi_is_hdr_from_callbacks(stbi_io_callbacks const *clbk, void *user);
STBIDEF int    stbi_is_hdr_from_memory(stbi_uc const *buffer, int len);
#ifndef STBI_NO_STDIO
STBIDEF int      stbi_is_hdr          (char const *filename);
STBIDEF int      stbi_is_hdr_from_file(FILE *f);
#endif // STBI_NO_STDIO


// get a VERY brief reason for failure
// NOT THREADSAFE
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STBIDEF const char *stbi_failure_reason  (void);
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// free the loaded image -- this is just free()
STBIDEF void     stbi_image_free      (void *retval_from_stbi_load);

// get image dimensions & components without fully decoding
STBIDEF int      stbi_info_from_memory(stbi_uc const *buffer, int len, int *x, int *y, int *comp);
STBIDEF int      stbi_info_from_callbacks(stbi_io_callbacks const *clbk, void *user, int *x, int *y, int *comp);

#ifndef STBI_NO_STDIO
STBIDEF int      stbi_info            (char const *filename,     int *x, int *y, int *comp);
STBIDEF int      stbi_info_from_file  (FILE *f,                  int *x, int *y, int *comp);

#endif



// for image formats that explicitly notate that they have premultiplied alpha,
// we just return the colors as stored in the file. set this flag to force
// unpremultiplication. results are undefined if the unpremultiply overflow.
STBIDEF void stbi_set_unpremultiply_on_load(int flag_true_if_should_unpremultiply);

// indicate whether we should process iphone images back to canonical format,
// or just pass them through "as-is"
STBIDEF void stbi_convert_iphone_png_to_rgb(int flag_true_if_should_convert);

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// flip the image vertically, so the first pixel in the output array is the bottom left
STBIDEF void stbi_set_flip_vertically_on_load(int flag_true_if_should_flip);
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// ZLIB client - used by PNG, available for other purposes

STBIDEF char *stbi_zlib_decode_malloc_guesssize(const char *buffer, int len, int initial_size, int *outlen);
STBIDEF char *stbi_zlib_decode_malloc_guesssize_headerflag(const char *buffer, int len, int initial_size, int *outlen, int parse_header);
STBIDEF char *stbi_zlib_decode_malloc(const char *buffer, int len, int *outlen);
STBIDEF int   stbi_zlib_decode_buffer(char *obuffer, int olen, const char *ibuffer, int ilen);

STBIDEF char *stbi_zlib_decode_noheader_malloc(const char *buffer, int len, int *outlen);
STBIDEF int   stbi_zlib_decode_noheader_buffer(char *obuffer, int olen, const char *ibuffer, int ilen);


#ifdef __cplusplus
}
#endif

//
//
////   end header file   /////////////////////////////////////////////////////
#endif // STBI_INCLUDE_STB_IMAGE_H

#ifdef STB_IMAGE_IMPLEMENTATION

535 536 537 538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571 572
#if defined(STBI_ONLY_JPEG) || defined(STBI_ONLY_PNG) || defined(STBI_ONLY_BMP) \
  || defined(STBI_ONLY_TGA) || defined(STBI_ONLY_GIF) || defined(STBI_ONLY_PSD) \
  || defined(STBI_ONLY_HDR) || defined(STBI_ONLY_PIC) || defined(STBI_ONLY_PNM) \
  || defined(STBI_ONLY_ZLIB)
   #ifndef STBI_ONLY_JPEG
   #define STBI_NO_JPEG
   #endif
   #ifndef STBI_ONLY_PNG
   #define STBI_NO_PNG
   #endif
   #ifndef STBI_ONLY_BMP
   #define STBI_NO_BMP
   #endif
   #ifndef STBI_ONLY_PSD
   #define STBI_NO_PSD
   #endif
   #ifndef STBI_ONLY_TGA
   #define STBI_NO_TGA
   #endif
   #ifndef STBI_ONLY_GIF
   #define STBI_NO_GIF
   #endif
   #ifndef STBI_ONLY_HDR
   #define STBI_NO_HDR
   #endif
   #ifndef STBI_ONLY_PIC
   #define STBI_NO_PIC
   #endif
   #ifndef STBI_ONLY_PNM
   #define STBI_NO_PNM
   #endif
#endif

#if defined(STBI_NO_PNG) && !defined(STBI_SUPPORT_ZLIB) && !defined(STBI_NO_ZLIB)
#define STBI_NO_ZLIB
#endif


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#include <stdarg.h>
#include <stddef.h> // ptrdiff_t on osx
#include <stdlib.h>
#include <string.h>
577
#include <limits.h>
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579
#if !defined(STBI_NO_LINEAR) || !defined(STBI_NO_HDR)
580 581 582 583 584 585
#include <math.h>  // ldexp
#endif

#ifndef STBI_NO_STDIO
#include <stdio.h>
#endif
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#ifndef STBI_ASSERT
588
#include <assert.h>
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#define STBI_ASSERT(x) assert(x)
#endif
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#ifndef _MSC_VER
   #ifdef __cplusplus
   #define stbi_inline inline
   #else
   #define stbi_inline
   #endif
#else
   #define stbi_inline __forceinline
#endif


#ifdef _MSC_VER
typedef unsigned short stbi__uint16;
typedef   signed short stbi__int16;
typedef unsigned int   stbi__uint32;
typedef   signed int   stbi__int32;
#else
#include <stdint.h>
typedef uint16_t stbi__uint16;
typedef int16_t  stbi__int16;
typedef uint32_t stbi__uint32;
typedef int32_t  stbi__int32;
#endif

// should produce compiler error if size is wrong
typedef unsigned char validate_uint32[sizeof(stbi__uint32)==4 ? 1 : -1];

#ifdef _MSC_VER
#define STBI_NOTUSED(v)  (void)(v)
#else
#define STBI_NOTUSED(v)  (void)sizeof(v)
#endif

#ifdef _MSC_VER
#define STBI_HAS_LROTL
#endif

#ifdef STBI_HAS_LROTL
   #define stbi_lrot(x,y)  _lrotl(x,y)
#else
   #define stbi_lrot(x,y)  (((x) << (y)) | ((x) >> (32 - (y))))
#endif

636
#if defined(STBI_MALLOC) && defined(STBI_FREE) && (defined(STBI_REALLOC) || defined(STBI_REALLOC_SIZED))
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// ok
638
#elif !defined(STBI_MALLOC) && !defined(STBI_FREE) && !defined(STBI_REALLOC) && !defined(STBI_REALLOC_SIZED)
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// ok
#else
641
#error "Must define all or none of STBI_MALLOC, STBI_FREE, and STBI_REALLOC (or STBI_REALLOC_SIZED)."
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#endif

#ifndef STBI_MALLOC
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#define STBI_MALLOC(sz)           malloc(sz)
#define STBI_REALLOC(p,newsz)     realloc(p,newsz)
#define STBI_FREE(p)              free(p)
#endif

#ifndef STBI_REALLOC_SIZED
#define STBI_REALLOC_SIZED(p,oldsz,newsz) STBI_REALLOC(p,newsz)
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#endif

654
// x86/x64 detection
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#if defined(__x86_64__) || defined(_M_X64)
#define STBI__X64_TARGET
#elif defined(__i386) || defined(_M_IX86)
658
#define STBI__X86_TARGET
659 660
#endif

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#if defined(__GNUC__) && (defined(STBI__X86_TARGET) || defined(STBI__X64_TARGET)) && !defined(__SSE2__) && !defined(STBI_NO_SIMD)
// NOTE: not clear do we actually need this for the 64-bit path?
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// gcc doesn't support sse2 intrinsics unless you compile with -msse2,
// (but compiling with -msse2 allows the compiler to use SSE2 everywhere;
// this is just broken and gcc are jerks for not fixing it properly
// http://www.virtualdub.org/blog/pivot/entry.php?id=363 )
#define STBI_NO_SIMD
#endif

670
#if defined(__MINGW32__) && defined(STBI__X86_TARGET) && !defined(STBI_MINGW_ENABLE_SSE2) && !defined(STBI_NO_SIMD)
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// Note that __MINGW32__ doesn't actually mean 32-bit, so we have to avoid STBI__X64_TARGET
//
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// 32-bit MinGW wants ESP to be 16-byte aligned, but this is not in the
// Windows ABI and VC++ as well as Windows DLLs don't maintain that invariant.
// As a result, enabling SSE2 on 32-bit MinGW is dangerous when not
// simultaneously enabling "-mstackrealign".
//
// See https://github.com/nothings/stb/issues/81 for more information.
//
// So default to no SSE2 on 32-bit MinGW. If you've read this far and added
// -mstackrealign to your build settings, feel free to #define STBI_MINGW_ENABLE_SSE2.
#define STBI_NO_SIMD
#endif

685
#if !defined(STBI_NO_SIMD) && (defined(STBI__X86_TARGET) || defined(STBI__X64_TARGET))
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#define STBI_SSE2
#include <emmintrin.h>

#ifdef _MSC_VER
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#if _MSC_VER >= 1400  // not VC6
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#include <intrin.h> // __cpuid
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static int stbi__cpuid3(void)
{
   int info[4];
   __cpuid(info,1);
   return info[3];
}
#else
static int stbi__cpuid3(void)
{
   int res;
   __asm {
      mov  eax,1
      cpuid
      mov  res,edx
   }
   return res;
}
#endif

712
#define STBI_SIMD_ALIGN(type, name) __declspec(align(16)) type name
713 714 715

static int stbi__sse2_available()
{
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   int info3 = stbi__cpuid3();
   return ((info3 >> 26) & 1) != 0;
718
}
719 720
#else // assume GCC-style if not VC++
#define STBI_SIMD_ALIGN(type, name) type name __attribute__((aligned(16)))
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static int stbi__sse2_available()
{
#if defined(__GNUC__) && (__GNUC__ * 100 + __GNUC_MINOR__) >= 408 // GCC 4.8 or later
   // GCC 4.8+ has a nice way to do this
   return __builtin_cpu_supports("sse2");
#else
   // portable way to do this, preferably without using GCC inline ASM?
   // just bail for now.
   return 0;
#endif
}
733
#endif
734 735
#endif

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// ARM NEON
#if defined(STBI_NO_SIMD) && defined(STBI_NEON)
#undef STBI_NEON
#endif

#ifdef STBI_NEON
#include <arm_neon.h>
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// assume GCC or Clang on ARM targets
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#define STBI_SIMD_ALIGN(type, name) type name __attribute__((aligned(16)))
#endif

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#ifndef STBI_SIMD_ALIGN
#define STBI_SIMD_ALIGN(type, name) type name
#endif
750

751 752
///////////////////////////////////////////////
//
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//  stbi__context struct and start_xxx functions
754

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// stbi__context structure is our basic context used by all images, so it
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// contains all the IO context, plus some basic image information
typedef struct
{
   stbi__uint32 img_x, img_y;
   int img_n, img_out_n;
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   stbi_io_callbacks io;
   void *io_user_data;

   int read_from_callbacks;
   int buflen;
767
   stbi_uc buffer_start[128];
768

769
   stbi_uc *img_buffer, *img_buffer_end;
770
   stbi_uc *img_buffer_original, *img_buffer_original_end;
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} stbi__context;
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static void stbi__refill_buffer(stbi__context *s);
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776
// initialize a memory-decode context
777
static void stbi__start_mem(stbi__context *s, stbi_uc const *buffer, int len)
778 779 780
{
   s->io.read = NULL;
   s->read_from_callbacks = 0;
781
   s->img_buffer = s->img_buffer_original = (stbi_uc *) buffer;
782
   s->img_buffer_end = s->img_buffer_original_end = (stbi_uc *) buffer+len;
783 784 785
}

// initialize a callback-based context
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static void stbi__start_callbacks(stbi__context *s, stbi_io_callbacks *c, void *user)
787 788 789 790 791 792
{
   s->io = *c;
   s->io_user_data = user;
   s->buflen = sizeof(s->buffer_start);
   s->read_from_callbacks = 1;
   s->img_buffer_original = s->buffer_start;
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   stbi__refill_buffer(s);
794
   s->img_buffer_original_end = s->img_buffer_end;
795 796 797 798
}

#ifndef STBI_NO_STDIO

799
static int stbi__stdio_read(void *user, char *data, int size)
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{
   return (int) fread(data,1,size,(FILE*) user);
}

804
static void stbi__stdio_skip(void *user, int n)
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{
   fseek((FILE*) user, n, SEEK_CUR);
}

809
static int stbi__stdio_eof(void *user)
810 811 812 813
{
   return feof((FILE*) user);
}

814
static stbi_io_callbacks stbi__stdio_callbacks =
815
{
816 817 818
   stbi__stdio_read,
   stbi__stdio_skip,
   stbi__stdio_eof,
819 820
};

821
static void stbi__start_file(stbi__context *s, FILE *f)
822
{
823
   stbi__start_callbacks(s, &stbi__stdio_callbacks, (void *) f);
824 825
}

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//static void stop_file(stbi__context *s) { }
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#endif // !STBI_NO_STDIO

830
static void stbi__rewind(stbi__context *s)
831 832 833 834 835
{
   // conceptually rewind SHOULD rewind to the beginning of the stream,
   // but we just rewind to the beginning of the initial buffer, because
   // we only use it after doing 'test', which only ever looks at at most 92 bytes
   s->img_buffer = s->img_buffer_original;
836
   s->img_buffer_end = s->img_buffer_original_end;
837 838
}

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enum
{
   STBI_ORDER_RGB,
   STBI_ORDER_BGR
};

typedef struct
{
   int bits_per_channel;
848
   int num_channels;
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   int channel_order;
} stbi__result_info;

852
#ifndef STBI_NO_JPEG
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static int      stbi__jpeg_test(stbi__context *s);
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static void    *stbi__jpeg_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri);
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static int      stbi__jpeg_info(stbi__context *s, int *x, int *y, int *comp);
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#endif

#ifndef STBI_NO_PNG
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static int      stbi__png_test(stbi__context *s);
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static void    *stbi__png_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri);
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static int      stbi__png_info(stbi__context *s, int *x, int *y, int *comp);
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#endif

#ifndef STBI_NO_BMP
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static int      stbi__bmp_test(stbi__context *s);
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static void    *stbi__bmp_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri);
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static int      stbi__bmp_info(stbi__context *s, int *x, int *y, int *comp);
#endif

#ifndef STBI_NO_TGA
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static int      stbi__tga_test(stbi__context *s);
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static void    *stbi__tga_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri);
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static int      stbi__tga_info(stbi__context *s, int *x, int *y, int *comp);
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#endif

#ifndef STBI_NO_PSD
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static int      stbi__psd_test(stbi__context *s);
878
static void    *stbi__psd_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri, int bpc);
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static int      stbi__psd_info(stbi__context *s, int *x, int *y, int *comp);
#endif

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#ifndef STBI_NO_HDR
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static int      stbi__hdr_test(stbi__context *s);
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static float   *stbi__hdr_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri);
885
static int      stbi__hdr_info(stbi__context *s, int *x, int *y, int *comp);
886
#endif
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#ifndef STBI_NO_PIC
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static int      stbi__pic_test(stbi__context *s);
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static void    *stbi__pic_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri);
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static int      stbi__pic_info(stbi__context *s, int *x, int *y, int *comp);
#endif

#ifndef STBI_NO_GIF
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static int      stbi__gif_test(stbi__context *s);
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static void    *stbi__gif_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri);
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static int      stbi__gif_info(stbi__context *s, int *x, int *y, int *comp);
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#endif

#ifndef STBI_NO_PNM
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static int      stbi__pnm_test(stbi__context *s);
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static void    *stbi__pnm_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri);
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static int      stbi__pnm_info(stbi__context *s, int *x, int *y, int *comp);
904
#endif
905 906

// this is not threadsafe
907
static const char *stbi__g_failure_reason;
908 909 910

STBIDEF const char *stbi_failure_reason(void)
{
911
   return stbi__g_failure_reason;
912 913
}

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static int stbi__err(const char *str)
915
{
916
   stbi__g_failure_reason = str;
917 918 919
   return 0;
}

920 921
static void *stbi__malloc(size_t size)
{
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    return STBI_MALLOC(size);
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}

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// stb_image uses ints pervasively, including for offset calculations.
// therefore the largest decoded image size we can support with the
// current code, even on 64-bit targets, is INT_MAX. this is not a
// significant limitation for the intended use case.
//
// we do, however, need to make sure our size calculations don't
// overflow. hence a few helper functions for size calculations that
// multiply integers together, making sure that they're non-negative
// and no overflow occurs.

// return 1 if the sum is valid, 0 on overflow.
// negative terms are considered invalid.
static int stbi__addsizes_valid(int a, int b)
{
   if (b < 0) return 0;
   // now 0 <= b <= INT_MAX, hence also
   // 0 <= INT_MAX - b <= INTMAX.
   // And "a + b <= INT_MAX" (which might overflow) is the
   // same as a <= INT_MAX - b (no overflow)
   return a <= INT_MAX - b;
}

// returns 1 if the product is valid, 0 on overflow.
// negative factors are considered invalid.
static int stbi__mul2sizes_valid(int a, int b)
{
   if (a < 0 || b < 0) return 0;
   if (b == 0) return 1; // mul-by-0 is always safe
   // portable way to check for no overflows in a*b
   return a <= INT_MAX/b;
}

// returns 1 if "a*b + add" has no negative terms/factors and doesn't overflow
static int stbi__mad2sizes_valid(int a, int b, int add)
{
   return stbi__mul2sizes_valid(a, b) && stbi__addsizes_valid(a*b, add);
}

// returns 1 if "a*b*c + add" has no negative terms/factors and doesn't overflow
static int stbi__mad3sizes_valid(int a, int b, int c, int add)
{
   return stbi__mul2sizes_valid(a, b) && stbi__mul2sizes_valid(a*b, c) &&
      stbi__addsizes_valid(a*b*c, add);
}

// returns 1 if "a*b*c*d + add" has no negative terms/factors and doesn't overflow
static int stbi__mad4sizes_valid(int a, int b, int c, int d, int add)
{
   return stbi__mul2sizes_valid(a, b) && stbi__mul2sizes_valid(a*b, c) &&
      stbi__mul2sizes_valid(a*b*c, d) && stbi__addsizes_valid(a*b*c*d, add);
}

// mallocs with size overflow checking
static void *stbi__malloc_mad2(int a, int b, int add)
{
   if (!stbi__mad2sizes_valid(a, b, add)) return NULL;
   return stbi__malloc(a*b + add);
}

static void *stbi__malloc_mad3(int a, int b, int c, int add)
{
   if (!stbi__mad3sizes_valid(a, b, c, add)) return NULL;
   return stbi__malloc(a*b*c + add);
}

static void *stbi__malloc_mad4(int a, int b, int c, int d, int add)
{
   if (!stbi__mad4sizes_valid(a, b, c, d, add)) return NULL;
   return stbi__malloc(a*b*c*d + add);
}

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// stbi__err - error
// stbi__errpf - error returning pointer to float
// stbi__errpuc - error returning pointer to unsigned char
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#ifdef STBI_NO_FAILURE_STRINGS
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   #define stbi__err(x,y)  0
1002
#elif defined(STBI_FAILURE_USERMSG)
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   #define stbi__err(x,y)  stbi__err(y)
1004
#else
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   #define stbi__err(x,y)  stbi__err(x)
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#endif

1008 1009
#define stbi__errpf(x,y)   ((float *)(size_t) (stbi__err(x,y)?NULL:NULL))
#define stbi__errpuc(x,y)  ((unsigned char *)(size_t) (stbi__err(x,y)?NULL:NULL))
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STBIDEF void stbi_image_free(void *retval_from_stbi_load)
{
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   STBI_FREE(retval_from_stbi_load);
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}

1016
#ifndef STBI_NO_LINEAR
1017
static float   *stbi__ldr_to_hdr(stbi_uc *data, int x, int y, int comp);
1018 1019 1020
#endif

#ifndef STBI_NO_HDR
1021
static stbi_uc *stbi__hdr_to_ldr(float   *data, int x, int y, int comp);
1022 1023
#endif

1024 1025
static int stbi__vertically_flip_on_load = 0;

1026
STBIDEF void stbi_set_flip_vertically_on_load(int flag_true_if_should_flip)
1027 1028 1029 1030
{
    stbi__vertically_flip_on_load = flag_true_if_should_flip;
}

1031
static void *stbi__load_main(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri, int bpc)
1032
{
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   memset(ri, 0, sizeof(*ri)); // make sure it's initialized if we add new fields
   ri->bits_per_channel = 8; // default is 8 so most paths don't have to be changed
   ri->channel_order = STBI_ORDER_RGB; // all current input & output are this, but this is here so we can add BGR order
1036
   ri->num_channels = 0;
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1037

1038
   #ifndef STBI_NO_JPEG
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   if (stbi__jpeg_test(s)) return stbi__jpeg_load(s,x,y,comp,req_comp, ri);
1040 1041
   #endif
   #ifndef STBI_NO_PNG
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   if (stbi__png_test(s))  return stbi__png_load(s,x,y,comp,req_comp, ri);
1043 1044
   #endif
   #ifndef STBI_NO_BMP
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   if (stbi__bmp_test(s))  return stbi__bmp_load(s,x,y,comp,req_comp, ri);
1046 1047
   #endif
   #ifndef STBI_NO_GIF
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   if (stbi__gif_test(s))  return stbi__gif_load(s,x,y,comp,req_comp, ri);
1049 1050
   #endif
   #ifndef STBI_NO_PSD
1051
   if (stbi__psd_test(s))  return stbi__psd_load(s,x,y,comp,req_comp, ri, bpc);
1052 1053
   #endif
   #ifndef STBI_NO_PIC
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   if (stbi__pic_test(s))  return stbi__pic_load(s,x,y,comp,req_comp, ri);
1055 1056
   #endif
   #ifndef STBI_NO_PNM
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   if (stbi__pnm_test(s))  return stbi__pnm_load(s,x,y,comp,req_comp, ri);
1058
   #endif
1059 1060

   #ifndef STBI_NO_HDR
1061
   if (stbi__hdr_test(s)) {
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1062
      float *hdr = stbi__hdr_load(s, x,y,comp,req_comp, ri);
1063
      return stbi__hdr_to_ldr(hdr, *x, *y, req_comp ? req_comp : *comp);
1064 1065 1066
   }
   #endif

1067
   #ifndef STBI_NO_TGA
1068
   // test tga last because it's a crappy test!
1069
   if (stbi__tga_test(s))
S
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1070
      return stbi__tga_load(s,x,y,comp,req_comp, ri);
1071 1072
   #endif

1073 1074
   return stbi__errpuc("unknown image type", "Image not of any known type, or corrupt");
}
1075

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1076
static stbi_uc *stbi__convert_16_to_8(stbi__uint16 *orig, int w, int h, int channels)
1077
{
S
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1078 1079 1080
   int i;
   int img_len = w * h * channels;
   stbi_uc *reduced;
1081

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1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095
   reduced = (stbi_uc *) stbi__malloc(img_len);
   if (reduced == NULL) return stbi__errpuc("outofmem", "Out of memory");

   for (i = 0; i < img_len; ++i)
      reduced[i] = (stbi_uc)((orig[i] >> 8) & 0xFF); // top half of each byte is sufficient approx of 16->8 bit scaling

   STBI_FREE(orig);
   return reduced;
}

static stbi__uint16 *stbi__convert_8_to_16(stbi_uc *orig, int w, int h, int channels)
{
   int i;
   int img_len = w * h * channels;
1096
   stbi__uint16 *enlarged;
S
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1097

1098 1099
   enlarged = (stbi__uint16 *) stbi__malloc(img_len*2);
   if (enlarged == NULL) return (stbi__uint16 *) stbi__errpuc("outofmem", "Out of memory");
S
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1100 1101

   for (i = 0; i < img_len; ++i)
1102
      enlarged[i] = (stbi__uint16)((orig[i] << 8) + orig[i]); // replicate to high and low byte, maps 0->0, 255->0xffff
S
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1103 1104

   STBI_FREE(orig);
1105
   return enlarged;
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1106 1107 1108 1109 1110
}

static unsigned char *stbi__load_and_postprocess_8bit(stbi__context *s, int *x, int *y, int *comp, int req_comp)
{
   stbi__result_info ri;
1111
   void *result = stbi__load_main(s, x, y, comp, req_comp, &ri, 8);
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1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124

   if (result == NULL)
      return NULL;

   if (ri.bits_per_channel != 8) {
      STBI_ASSERT(ri.bits_per_channel == 16);
      result = stbi__convert_16_to_8((stbi__uint16 *) result, *x, *y, req_comp == 0 ? *comp : req_comp);
      ri.bits_per_channel = 8;
   }

   // @TODO: move stbi__convert_format to here

   if (stbi__vertically_flip_on_load) {
1125
      int w = *x, h = *y;
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1126
      int channels = req_comp ? req_comp : *comp;
1127
      int row,col,z;
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1128
      stbi_uc *image = (stbi_uc *) result;
1129

1130 1131 1132
      // @OPTIMIZE: use a bigger temp buffer and memcpy multiple pixels at once
      for (row = 0; row < (h>>1); row++) {
         for (col = 0; col < w; col++) {
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1133 1134 1135 1136
            for (z = 0; z < channels; z++) {
               stbi_uc temp = image[(row * w + col) * channels + z];
               image[(row * w + col) * channels + z] = image[((h - row - 1) * w + col) * channels + z];
               image[((h - row - 1) * w + col) * channels + z] = temp;
1137 1138 1139 1140 1141
            }
         }
      }
   }

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1142 1143 1144 1145 1146 1147
   return (unsigned char *) result;
}

static stbi__uint16 *stbi__load_and_postprocess_16bit(stbi__context *s, int *x, int *y, int *comp, int req_comp)
{
   stbi__result_info ri;
1148
   void *result = stbi__load_main(s, x, y, comp, req_comp, &ri, 16);
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1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159

   if (result == NULL)
      return NULL;

   if (ri.bits_per_channel != 16) {
      STBI_ASSERT(ri.bits_per_channel == 8);
      result = stbi__convert_8_to_16((stbi_uc *) result, *x, *y, req_comp == 0 ? *comp : req_comp);
      ri.bits_per_channel = 16;
   }

   // @TODO: move stbi__convert_format16 to here
1160
   // @TODO: special case RGB-to-Y (and RGBA-to-YA) for 8-bit-to-16-bit case to keep more precision
S
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1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180

   if (stbi__vertically_flip_on_load) {
      int w = *x, h = *y;
      int channels = req_comp ? req_comp : *comp;
      int row,col,z;
      stbi__uint16 *image = (stbi__uint16 *) result;

      // @OPTIMIZE: use a bigger temp buffer and memcpy multiple pixels at once
      for (row = 0; row < (h>>1); row++) {
         for (col = 0; col < w; col++) {
            for (z = 0; z < channels; z++) {
               stbi__uint16 temp = image[(row * w + col) * channels + z];
               image[(row * w + col) * channels + z] = image[((h - row - 1) * w + col) * channels + z];
               image[((h - row - 1) * w + col) * channels + z] = temp;
            }
         }
      }
   }

   return (stbi__uint16 *) result;
1181 1182
}

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1183
#ifndef STBI_NO_HDR
1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203
static void stbi__float_postprocess(float *result, int *x, int *y, int *comp, int req_comp)
{
   if (stbi__vertically_flip_on_load && result != NULL) {
      int w = *x, h = *y;
      int depth = req_comp ? req_comp : *comp;
      int row,col,z;
      float temp;

      // @OPTIMIZE: use a bigger temp buffer and memcpy multiple pixels at once
      for (row = 0; row < (h>>1); row++) {
         for (col = 0; col < w; col++) {
            for (z = 0; z < depth; z++) {
               temp = result[(row * w + col) * depth + z];
               result[(row * w + col) * depth + z] = result[((h - row - 1) * w + col) * depth + z];
               result[((h - row - 1) * w + col) * depth + z] = temp;
            }
         }
      }
   }
}
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1204
#endif
1205

1206
#ifndef STBI_NO_STDIO
S
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1207

1208
static FILE *stbi__fopen(char const *filename, char const *mode)
S
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1209 1210
{
   FILE *f;
1211
#if defined(_MSC_VER) && _MSC_VER >= 1400
1212
   if (0 != fopen_s(&f, filename, mode))
S
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1213 1214
      f=0;
#else
1215
   f = fopen(filename, mode);
S
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1216 1217 1218 1219 1220
#endif
   return f;
}


1221
STBIDEF stbi_uc *stbi_load(char const *filename, int *x, int *y, int *comp, int req_comp)
1222
{
S
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1223
   FILE *f = stbi__fopen(filename, "rb");
1224
   unsigned char *result;
S
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1225
   if (!f) return stbi__errpuc("can't fopen", "Unable to open file");
1226 1227 1228 1229 1230
   result = stbi_load_from_file(f,x,y,comp,req_comp);
   fclose(f);
   return result;
}

1231
STBIDEF stbi_uc *stbi_load_from_file(FILE *f, int *x, int *y, int *comp, int req_comp)
1232 1233
{
   unsigned char *result;
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1234
   stbi__context s;
1235
   stbi__start_file(&s,f);
S
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1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249
   result = stbi__load_and_postprocess_8bit(&s,x,y,comp,req_comp);
   if (result) {
      // need to 'unget' all the characters in the IO buffer
      fseek(f, - (int) (s.img_buffer_end - s.img_buffer), SEEK_CUR);
   }
   return result;
}

STBIDEF stbi__uint16 *stbi_load_from_file_16(FILE *f, int *x, int *y, int *comp, int req_comp)
{
   stbi__uint16 *result;
   stbi__context s;
   stbi__start_file(&s,f);
   result = stbi__load_and_postprocess_16bit(&s,x,y,comp,req_comp);
1250 1251 1252 1253 1254 1255
   if (result) {
      // need to 'unget' all the characters in the IO buffer
      fseek(f, - (int) (s.img_buffer_end - s.img_buffer), SEEK_CUR);
   }
   return result;
}
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1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267

STBIDEF stbi_us *stbi_load_16(char const *filename, int *x, int *y, int *comp, int req_comp)
{
   FILE *f = stbi__fopen(filename, "rb");
   stbi__uint16 *result;
   if (!f) return (stbi_us *) stbi__errpuc("can't fopen", "Unable to open file");
   result = stbi_load_from_file_16(f,x,y,comp,req_comp);
   fclose(f);
   return result;
}


1268 1269
#endif //!STBI_NO_STDIO

1270
STBIDEF stbi_uc *stbi_load_from_memory(stbi_uc const *buffer, int len, int *x, int *y, int *comp, int req_comp)
1271
{
S
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1272 1273
   stbi__context s;
   stbi__start_mem(&s,buffer,len);
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1274
   return stbi__load_and_postprocess_8bit(&s,x,y,comp,req_comp);
1275 1276
}

1277
STBIDEF stbi_uc *stbi_load_from_callbacks(stbi_io_callbacks const *clbk, void *user, int *x, int *y, int *comp, int req_comp)
1278
{
S
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1279 1280
   stbi__context s;
   stbi__start_callbacks(&s, (stbi_io_callbacks *) clbk, user);
S
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1281
   return stbi__load_and_postprocess_8bit(&s,x,y,comp,req_comp);
1282 1283
}

1284
#ifndef STBI_NO_LINEAR
1285
static float *stbi__loadf_main(stbi__context *s, int *x, int *y, int *comp, int req_comp)
1286 1287 1288
{
   unsigned char *data;
   #ifndef STBI_NO_HDR
1289
   if (stbi__hdr_test(s)) {
S
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1290 1291
      stbi__result_info ri;
      float *hdr_data = stbi__hdr_load(s,x,y,comp,req_comp, &ri);
1292 1293 1294 1295
      if (hdr_data)
         stbi__float_postprocess(hdr_data,x,y,comp,req_comp);
      return hdr_data;
   }
1296
   #endif
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1297
   data = stbi__load_and_postprocess_8bit(s, x, y, comp, req_comp);
1298
   if (data)
1299
      return stbi__ldr_to_hdr(data, *x, *y, req_comp ? req_comp : *comp);
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1300
   return stbi__errpf("unknown image type", "Image not of any known type, or corrupt");
1301 1302
}

1303
STBIDEF float *stbi_loadf_from_memory(stbi_uc const *buffer, int len, int *x, int *y, int *comp, int req_comp)
1304
{
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1305 1306
   stbi__context s;
   stbi__start_mem(&s,buffer,len);
1307
   return stbi__loadf_main(&s,x,y,comp,req_comp);
1308 1309
}

1310
STBIDEF float *stbi_loadf_from_callbacks(stbi_io_callbacks const *clbk, void *user, int *x, int *y, int *comp, int req_comp)
1311
{
S
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1312 1313
   stbi__context s;
   stbi__start_callbacks(&s, (stbi_io_callbacks *) clbk, user);
1314
   return stbi__loadf_main(&s,x,y,comp,req_comp);
1315 1316 1317
}

#ifndef STBI_NO_STDIO
1318
STBIDEF float *stbi_loadf(char const *filename, int *x, int *y, int *comp, int req_comp)
1319 1320
{
   float *result;
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1321
   FILE *f = stbi__fopen(filename, "rb");
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1322
   if (!f) return stbi__errpf("can't fopen", "Unable to open file");
1323 1324 1325 1326 1327
   result = stbi_loadf_from_file(f,x,y,comp,req_comp);
   fclose(f);
   return result;
}

1328
STBIDEF float *stbi_loadf_from_file(FILE *f, int *x, int *y, int *comp, int req_comp)
1329
{
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1330
   stbi__context s;
1331
   stbi__start_file(&s,f);
1332
   return stbi__loadf_main(&s,x,y,comp,req_comp);
1333 1334 1335
}
#endif // !STBI_NO_STDIO

1336
#endif // !STBI_NO_LINEAR
1337

1338 1339
// these is-hdr-or-not is defined independent of whether STBI_NO_LINEAR is
// defined, for API simplicity; if STBI_NO_LINEAR is defined, it always
1340 1341
// reports false!

1342
STBIDEF int stbi_is_hdr_from_memory(stbi_uc const *buffer, int len)
1343 1344
{
   #ifndef STBI_NO_HDR
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1345 1346 1347
   stbi__context s;
   stbi__start_mem(&s,buffer,len);
   return stbi__hdr_test(&s);
1348 1349 1350 1351 1352 1353 1354 1355 1356 1357
   #else
   STBI_NOTUSED(buffer);
   STBI_NOTUSED(len);
   return 0;
   #endif
}

#ifndef STBI_NO_STDIO
STBIDEF int      stbi_is_hdr          (char const *filename)
{
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1358
   FILE *f = stbi__fopen(filename, "rb");
1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369
   int result=0;
   if (f) {
      result = stbi_is_hdr_from_file(f);
      fclose(f);
   }
   return result;
}

STBIDEF int      stbi_is_hdr_from_file(FILE *f)
{
   #ifndef STBI_NO_HDR
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1370
   stbi__context s;
1371
   stbi__start_file(&s,f);
S
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1372
   return stbi__hdr_test(&s);
1373
   #else
1374
   STBI_NOTUSED(f);
1375 1376 1377 1378 1379 1380 1381 1382
   return 0;
   #endif
}
#endif // !STBI_NO_STDIO

STBIDEF int      stbi_is_hdr_from_callbacks(stbi_io_callbacks const *clbk, void *user)
{
   #ifndef STBI_NO_HDR
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1383 1384 1385
   stbi__context s;
   stbi__start_callbacks(&s, (stbi_io_callbacks *) clbk, user);
   return stbi__hdr_test(&s);
1386
   #else
1387 1388
   STBI_NOTUSED(clbk);
   STBI_NOTUSED(user);
1389 1390 1391 1392
   return 0;
   #endif
}

1393
#ifndef STBI_NO_LINEAR
1394
static float stbi__l2h_gamma=2.2f, stbi__l2h_scale=1.0f;
1395

1396 1397
STBIDEF void   stbi_ldr_to_hdr_gamma(float gamma) { stbi__l2h_gamma = gamma; }
STBIDEF void   stbi_ldr_to_hdr_scale(float scale) { stbi__l2h_scale = scale; }
1398 1399
#endif

1400 1401
static float stbi__h2l_gamma_i=1.0f/2.2f, stbi__h2l_scale_i=1.0f;

1402 1403 1404
STBIDEF void   stbi_hdr_to_ldr_gamma(float gamma) { stbi__h2l_gamma_i = 1/gamma; }
STBIDEF void   stbi_hdr_to_ldr_scale(float scale) { stbi__h2l_scale_i = 1/scale; }

1405 1406 1407 1408 1409 1410 1411 1412

//////////////////////////////////////////////////////////////////////////////
//
// Common code used by all image loaders
//

enum
{
1413 1414 1415
   STBI__SCAN_load=0,
   STBI__SCAN_type,
   STBI__SCAN_header
1416 1417
};

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1418
static void stbi__refill_buffer(stbi__context *s)
1419 1420 1421 1422
{
   int n = (s->io.read)(s->io_user_data,(char*)s->buffer_start,s->buflen);
   if (n == 0) {
      // at end of file, treat same as if from memory, but need to handle case
T
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1423
      // where s->img_buffer isn't pointing to safe memory, e.g. 0-byte file
1424 1425 1426 1427 1428 1429 1430 1431 1432 1433
      s->read_from_callbacks = 0;
      s->img_buffer = s->buffer_start;
      s->img_buffer_end = s->buffer_start+1;
      *s->img_buffer = 0;
   } else {
      s->img_buffer = s->buffer_start;
      s->img_buffer_end = s->buffer_start + n;
   }
}

1434
stbi_inline static stbi_uc stbi__get8(stbi__context *s)
1435 1436 1437 1438
{
   if (s->img_buffer < s->img_buffer_end)
      return *s->img_buffer++;
   if (s->read_from_callbacks) {
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1439
      stbi__refill_buffer(s);
1440 1441 1442 1443 1444
      return *s->img_buffer++;
   }
   return 0;
}

1445
stbi_inline static int stbi__at_eof(stbi__context *s)
1446 1447 1448 1449 1450 1451 1452 1453
{
   if (s->io.read) {
      if (!(s->io.eof)(s->io_user_data)) return 0;
      // if feof() is true, check if buffer = end
      // special case: we've only got the special 0 character at the end
      if (s->read_from_callbacks == 0) return 1;
   }

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1454
   return s->img_buffer >= s->img_buffer_end;
1455 1456
}

1457
static void stbi__skip(stbi__context *s, int n)
1458
{
1459 1460 1461 1462
   if (n < 0) {
      s->img_buffer = s->img_buffer_end;
      return;
   }
1463 1464 1465 1466
   if (s->io.read) {
      int blen = (int) (s->img_buffer_end - s->img_buffer);
      if (blen < n) {
         s->img_buffer = s->img_buffer_end;
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         (s->io.skip)(s->io_user_data, n - blen);
1468 1469 1470 1471 1472 1473
         return;
      }
   }
   s->img_buffer += n;
}

1474
static int stbi__getn(stbi__context *s, stbi_uc *buffer, int n)
1475 1476 1477 1478 1479 1480 1481
{
   if (s->io.read) {
      int blen = (int) (s->img_buffer_end - s->img_buffer);
      if (blen < n) {
         int res, count;

         memcpy(buffer, s->img_buffer, blen);
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1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497
         count = (s->io.read)(s->io_user_data, (char*) buffer + blen, n - blen);
         res = (count == (n-blen));
         s->img_buffer = s->img_buffer_end;
         return res;
      }
   }

   if (s->img_buffer+n <= s->img_buffer_end) {
      memcpy(buffer, s->img_buffer, n);
      s->img_buffer += n;
      return 1;
   } else
      return 0;
}

1498
static int stbi__get16be(stbi__context *s)
1499
{
1500 1501
   int z = stbi__get8(s);
   return (z << 8) + stbi__get8(s);
1502 1503
}

1504
static stbi__uint32 stbi__get32be(stbi__context *s)
1505
{
1506 1507
   stbi__uint32 z = stbi__get16be(s);
   return (z << 16) + stbi__get16be(s);
1508 1509
}

1510 1511
#if defined(STBI_NO_BMP) && defined(STBI_NO_TGA) && defined(STBI_NO_GIF)
// nothing
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#else
1513
static int stbi__get16le(stbi__context *s)
1514
{
1515 1516
   int z = stbi__get8(s);
   return z + (stbi__get8(s) << 8);
1517
}
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1518
#endif
1519

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1520
#ifndef STBI_NO_BMP
1521
static stbi__uint32 stbi__get32le(stbi__context *s)
1522
{
1523 1524
   stbi__uint32 z = stbi__get16le(s);
   return z + (stbi__get16le(s) << 16);
1525
}
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1526
#endif
1527

1528 1529 1530
#define STBI__BYTECAST(x)  ((stbi_uc) ((x) & 255))  // truncate int to byte without warnings


1531 1532 1533
//////////////////////////////////////////////////////////////////////////////
//
//  generic converter from built-in img_n to req_comp
T
Tero Hänninen 已提交
1534
//    individual types do this automatically as much as possible (e.g. jpeg
1535 1536 1537 1538 1539 1540 1541
//    does all cases internally since it needs to colorspace convert anyway,
//    and it never has alpha, so very few cases ). png can automatically
//    interleave an alpha=255 channel, but falls back to this for other cases
//
//  assume data buffer is malloced, so malloc a new one and free that one
//  only failure mode is malloc failing

1542
static stbi_uc stbi__compute_y(int r, int g, int b)
1543
{
1544
   return (stbi_uc) (((r*77) + (g*150) +  (29*b)) >> 8);
1545 1546
}

1547
static unsigned char *stbi__convert_format(unsigned char *data, int img_n, int req_comp, unsigned int x, unsigned int y)
1548 1549 1550 1551 1552
{
   int i,j;
   unsigned char *good;

   if (req_comp == img_n) return data;
S
Sean Barrett 已提交
1553
   STBI_ASSERT(req_comp >= 1 && req_comp <= 4);
1554

1555
   good = (unsigned char *) stbi__malloc_mad3(req_comp, x, y, 0);
1556
   if (good == NULL) {
S
Sean Barrett 已提交
1557
      STBI_FREE(data);
S
Sean Barrett 已提交
1558
      return stbi__errpuc("outofmem", "Out of memory");
1559 1560 1561 1562 1563 1564
   }

   for (j=0; j < (int) y; ++j) {
      unsigned char *src  = data + j * x * img_n   ;
      unsigned char *dest = good + j * x * req_comp;

S
Sean Barrett 已提交
1565 1566 1567 1568 1569
      #define STBI__COMBO(a,b)  ((a)*8+(b))
      #define STBI__CASE(a,b)   case STBI__COMBO(a,b): for(i=x-1; i >= 0; --i, src += a, dest += b)
      // convert source image with img_n components to one with req_comp components;
      // avoid switch per pixel, so use switch per scanline and massive macros
      switch (STBI__COMBO(img_n, req_comp)) {
1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581
         STBI__CASE(1,2) { dest[0]=src[0], dest[1]=255;                                     } break;
         STBI__CASE(1,3) { dest[0]=dest[1]=dest[2]=src[0];                                  } break;
         STBI__CASE(1,4) { dest[0]=dest[1]=dest[2]=src[0], dest[3]=255;                     } break;
         STBI__CASE(2,1) { dest[0]=src[0];                                                  } break;
         STBI__CASE(2,3) { dest[0]=dest[1]=dest[2]=src[0];                                  } break;
         STBI__CASE(2,4) { dest[0]=dest[1]=dest[2]=src[0], dest[3]=src[1];                  } break;
         STBI__CASE(3,4) { dest[0]=src[0],dest[1]=src[1],dest[2]=src[2],dest[3]=255;        } break;
         STBI__CASE(3,1) { dest[0]=stbi__compute_y(src[0],src[1],src[2]);                   } break;
         STBI__CASE(3,2) { dest[0]=stbi__compute_y(src[0],src[1],src[2]), dest[1] = 255;    } break;
         STBI__CASE(4,1) { dest[0]=stbi__compute_y(src[0],src[1],src[2]);                   } break;
         STBI__CASE(4,2) { dest[0]=stbi__compute_y(src[0],src[1],src[2]), dest[1] = src[3]; } break;
         STBI__CASE(4,3) { dest[0]=src[0],dest[1]=src[1],dest[2]=src[2];                    } break;
S
Sean Barrett 已提交
1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615
         default: STBI_ASSERT(0);
      }
      #undef STBI__CASE
   }

   STBI_FREE(data);
   return good;
}

static stbi__uint16 stbi__compute_y_16(int r, int g, int b)
{
   return (stbi__uint16) (((r*77) + (g*150) +  (29*b)) >> 8);
}

static stbi__uint16 *stbi__convert_format16(stbi__uint16 *data, int img_n, int req_comp, unsigned int x, unsigned int y)
{
   int i,j;
   stbi__uint16 *good;

   if (req_comp == img_n) return data;
   STBI_ASSERT(req_comp >= 1 && req_comp <= 4);

   good = (stbi__uint16 *) stbi__malloc(req_comp * x * y * 2);
   if (good == NULL) {
      STBI_FREE(data);
      return (stbi__uint16 *) stbi__errpuc("outofmem", "Out of memory");
   }

   for (j=0; j < (int) y; ++j) {
      stbi__uint16 *src  = data + j * x * img_n   ;
      stbi__uint16 *dest = good + j * x * req_comp;

      #define STBI__COMBO(a,b)  ((a)*8+(b))
      #define STBI__CASE(a,b)   case STBI__COMBO(a,b): for(i=x-1; i >= 0; --i, src += a, dest += b)
1616 1617
      // convert source image with img_n components to one with req_comp components;
      // avoid switch per pixel, so use switch per scanline and massive macros
S
Sean Barrett 已提交
1618
      switch (STBI__COMBO(img_n, req_comp)) {
1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630
         STBI__CASE(1,2) { dest[0]=src[0], dest[1]=0xffff;                                     } break;
         STBI__CASE(1,3) { dest[0]=dest[1]=dest[2]=src[0];                                     } break;
         STBI__CASE(1,4) { dest[0]=dest[1]=dest[2]=src[0], dest[3]=0xffff;                     } break;
         STBI__CASE(2,1) { dest[0]=src[0];                                                     } break;
         STBI__CASE(2,3) { dest[0]=dest[1]=dest[2]=src[0];                                     } break;
         STBI__CASE(2,4) { dest[0]=dest[1]=dest[2]=src[0], dest[3]=src[1];                     } break;
         STBI__CASE(3,4) { dest[0]=src[0],dest[1]=src[1],dest[2]=src[2],dest[3]=0xffff;        } break;
         STBI__CASE(3,1) { dest[0]=stbi__compute_y_16(src[0],src[1],src[2]);                   } break;
         STBI__CASE(3,2) { dest[0]=stbi__compute_y_16(src[0],src[1],src[2]), dest[1] = 0xffff; } break;
         STBI__CASE(4,1) { dest[0]=stbi__compute_y_16(src[0],src[1],src[2]);                   } break;
         STBI__CASE(4,2) { dest[0]=stbi__compute_y_16(src[0],src[1],src[2]), dest[1] = src[3]; } break;
         STBI__CASE(4,3) { dest[0]=src[0],dest[1]=src[1],dest[2]=src[2];                       } break;
S
Sean Barrett 已提交
1631
         default: STBI_ASSERT(0);
1632
      }
S
Sean Barrett 已提交
1633
      #undef STBI__CASE
1634 1635
   }

S
Sean Barrett 已提交
1636
   STBI_FREE(data);
1637 1638 1639
   return good;
}

1640
#ifndef STBI_NO_LINEAR
1641
static float   *stbi__ldr_to_hdr(stbi_uc *data, int x, int y, int comp)
1642 1643
{
   int i,k,n;
1644 1645 1646
   float *output;
   if (!data) return NULL;
   output = (float *) stbi__malloc_mad4(x, y, comp, sizeof(float), 0);
S
Sean Barrett 已提交
1647
   if (output == NULL) { STBI_FREE(data); return stbi__errpf("outofmem", "Out of memory"); }
1648 1649 1650 1651
   // compute number of non-alpha components
   if (comp & 1) n = comp; else n = comp-1;
   for (i=0; i < x*y; ++i) {
      for (k=0; k < n; ++k) {
1652
         output[i*comp + k] = (float) (pow(data[i*comp+k]/255.0f, stbi__l2h_gamma) * stbi__l2h_scale);
1653 1654 1655
      }
      if (k < comp) output[i*comp + k] = data[i*comp+k]/255.0f;
   }
S
Sean Barrett 已提交
1656
   STBI_FREE(data);
1657 1658
   return output;
}
1659
#endif
1660

1661
#ifndef STBI_NO_HDR
1662 1663
#define stbi__float2int(x)   ((int) (x))
static stbi_uc *stbi__hdr_to_ldr(float   *data, int x, int y, int comp)
1664 1665
{
   int i,k,n;
1666 1667 1668
   stbi_uc *output;
   if (!data) return NULL;
   output = (stbi_uc *) stbi__malloc_mad3(x, y, comp, 0);
S
Sean Barrett 已提交
1669
   if (output == NULL) { STBI_FREE(data); return stbi__errpuc("outofmem", "Out of memory"); }
1670 1671 1672 1673
   // compute number of non-alpha components
   if (comp & 1) n = comp; else n = comp-1;
   for (i=0; i < x*y; ++i) {
      for (k=0; k < n; ++k) {
1674
         float z = (float) pow(data[i*comp+k]*stbi__h2l_scale_i, stbi__h2l_gamma_i) * 255 + 0.5f;
1675 1676
         if (z < 0) z = 0;
         if (z > 255) z = 255;
1677
         output[i*comp + k] = (stbi_uc) stbi__float2int(z);
1678 1679 1680 1681 1682
      }
      if (k < comp) {
         float z = data[i*comp+k] * 255 + 0.5f;
         if (z < 0) z = 0;
         if (z > 255) z = 255;
1683
         output[i*comp + k] = (stbi_uc) stbi__float2int(z);
1684 1685
      }
   }
S
Sean Barrett 已提交
1686
   STBI_FREE(data);
1687 1688 1689 1690 1691 1692
   return output;
}
#endif

//////////////////////////////////////////////////////////////////////////////
//
F
Fabian Giesen 已提交
1693
//  "baseline" JPEG/JFIF decoder
1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708
//
//    simple implementation
//      - doesn't support delayed output of y-dimension
//      - simple interface (only one output format: 8-bit interleaved RGB)
//      - doesn't try to recover corrupt jpegs
//      - doesn't allow partial loading, loading multiple at once
//      - still fast on x86 (copying globals into locals doesn't help x86)
//      - allocates lots of intermediate memory (full size of all components)
//        - non-interleaved case requires this anyway
//        - allows good upsampling (see next)
//    high-quality
//      - upsampled channels are bilinearly interpolated, even across blocks
//      - quality integer IDCT derived from IJG's 'slow'
//    performance
//      - fast huffman; reasonable integer IDCT
F
Fabian Giesen 已提交
1709
//      - some SIMD kernels for common paths on targets with SSE2/NEON
1710 1711
//      - uses a lot of intermediate memory, could cache poorly

1712 1713
#ifndef STBI_NO_JPEG

1714 1715 1716 1717 1718
// huffman decoding acceleration
#define FAST_BITS   9  // larger handles more cases; smaller stomps less cache

typedef struct
{
1719
   stbi_uc  fast[1 << FAST_BITS];
1720 1721
   // weirdly, repacking this into AoS is a 10% speed loss, instead of a win
   stbi__uint16 code[256];
1722 1723
   stbi_uc  values[256];
   stbi_uc  size[257];
1724 1725
   unsigned int maxcode[18];
   int    delta[17];   // old 'firstsymbol' - old 'firstcode'
1726
} stbi__huffman;
1727 1728 1729

typedef struct
{
S
Sean Barrett 已提交
1730
   stbi__context *s;
1731 1732
   stbi__huffman huff_dc[4];
   stbi__huffman huff_ac[4];
1733
   stbi_uc dequant[4][64];
1734
   stbi__int16 fast_ac[4][1 << FAST_BITS];
1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750

// sizes for components, interleaved MCUs
   int img_h_max, img_v_max;
   int img_mcu_x, img_mcu_y;
   int img_mcu_w, img_mcu_h;

// definition of jpeg image component
   struct
   {
      int id;
      int h,v;
      int tq;
      int hd,ha;
      int dc_pred;

      int x,y,w2,h2;
1751
      stbi_uc *data;
S
Sean Barrett 已提交
1752
      void *raw_data, *raw_coeff;
1753
      stbi_uc *linebuf;
S
Sean Barrett 已提交
1754 1755
      short   *coeff;   // progressive only
      int      coeff_w, coeff_h; // number of 8x8 coefficient blocks
1756 1757
   } img_comp[4];

S
Sean Barrett 已提交
1758
   stbi__uint32   code_buffer; // jpeg entropy-coded buffer
1759 1760 1761 1762
   int            code_bits;   // number of valid bits
   unsigned char  marker;      // marker seen while filling entropy buffer
   int            nomore;      // flag if we saw a marker so must stop

S
Sean Barrett 已提交
1763 1764 1765 1766 1767 1768
   int            progressive;
   int            spec_start;
   int            spec_end;
   int            succ_high;
   int            succ_low;
   int            eob_run;
1769
   int            rgb;
S
Sean Barrett 已提交
1770

1771 1772
   int scan_n, order[4];
   int restart_interval, todo;
1773 1774 1775

// kernels
   void (*idct_block_kernel)(stbi_uc *out, int out_stride, short data[64]);
F
Fabian Giesen 已提交
1776
   void (*YCbCr_to_RGB_kernel)(stbi_uc *out, const stbi_uc *y, const stbi_uc *pcb, const stbi_uc *pcr, int count, int step);
1777
   stbi_uc *(*resample_row_hv_2_kernel)(stbi_uc *out, stbi_uc *in_near, stbi_uc *in_far, int w, int hs);
1778
} stbi__jpeg;
1779

1780
static int stbi__build_huffman(stbi__huffman *h, int *count)
1781 1782 1783 1784 1785
{
   int i,j,k=0,code;
   // build size list for each symbol (from JPEG spec)
   for (i=0; i < 16; ++i)
      for (j=0; j < count[i]; ++j)
1786
         h->size[k++] = (stbi_uc) (i+1);
1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797
   h->size[k] = 0;

   // compute actual symbols (from jpeg spec)
   code = 0;
   k = 0;
   for(j=1; j <= 16; ++j) {
      // compute delta to add to code to compute symbol id
      h->delta[j] = k - code;
      if (h->size[k] == j) {
         while (h->size[k] == j)
            h->code[k++] = (stbi__uint16) (code++);
S
Sean Barrett 已提交
1798
         if (code-1 >= (1 << j)) return stbi__err("bad code lengths","Corrupt JPEG");
1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813
      }
      // compute largest code + 1 for this size, preshifted as needed later
      h->maxcode[j] = code << (16-j);
      code <<= 1;
   }
   h->maxcode[j] = 0xffffffff;

   // build non-spec acceleration table; 255 is flag for not-accelerated
   memset(h->fast, 255, 1 << FAST_BITS);
   for (i=0; i < k; ++i) {
      int s = h->size[i];
      if (s <= FAST_BITS) {
         int c = h->code[i] << (FAST_BITS-s);
         int m = 1 << (FAST_BITS-s);
         for (j=0; j < m; ++j) {
1814
            h->fast[c+j] = (stbi_uc) i;
1815 1816 1817 1818 1819 1820
         }
      }
   }
   return 1;
}

1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847
// build a table that decodes both magnitude and value of small ACs in
// one go.
static void stbi__build_fast_ac(stbi__int16 *fast_ac, stbi__huffman *h)
{
   int i;
   for (i=0; i < (1 << FAST_BITS); ++i) {
      stbi_uc fast = h->fast[i];
      fast_ac[i] = 0;
      if (fast < 255) {
         int rs = h->values[fast];
         int run = (rs >> 4) & 15;
         int magbits = rs & 15;
         int len = h->size[fast];

         if (magbits && len + magbits <= FAST_BITS) {
            // magnitude code followed by receive_extend code
            int k = ((i << len) & ((1 << FAST_BITS) - 1)) >> (FAST_BITS - magbits);
            int m = 1 << (magbits - 1);
            if (k < m) k += (-1 << magbits) + 1;
            // if the result is small enough, we can fit it in fast_ac table
            if (k >= -128 && k <= 127)
               fast_ac[i] = (stbi__int16) ((k << 8) + (run << 4) + (len + magbits));
         }
      }
   }
}

1848
static void stbi__grow_buffer_unsafe(stbi__jpeg *j)
1849 1850
{
   do {
1851
      int b = j->nomore ? 0 : stbi__get8(j->s);
1852
      if (b == 0xff) {
1853
         int c = stbi__get8(j->s);
1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865
         if (c != 0) {
            j->marker = (unsigned char) c;
            j->nomore = 1;
            return;
         }
      }
      j->code_buffer |= b << (24 - j->code_bits);
      j->code_bits += 8;
   } while (j->code_bits <= 24);
}

// (1 << n) - 1
1866
static stbi__uint32 stbi__bmask[17]={0,1,3,7,15,31,63,127,255,511,1023,2047,4095,8191,16383,32767,65535};
1867

1868
// decode a jpeg huffman value from the bitstream
1869
stbi_inline static int stbi__jpeg_huff_decode(stbi__jpeg *j, stbi__huffman *h)
1870 1871 1872 1873
{
   unsigned int temp;
   int c,k;

1874
   if (j->code_bits < 16) stbi__grow_buffer_unsafe(j);
1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908

   // look at the top FAST_BITS and determine what symbol ID it is,
   // if the code is <= FAST_BITS
   c = (j->code_buffer >> (32 - FAST_BITS)) & ((1 << FAST_BITS)-1);
   k = h->fast[c];
   if (k < 255) {
      int s = h->size[k];
      if (s > j->code_bits)
         return -1;
      j->code_buffer <<= s;
      j->code_bits -= s;
      return h->values[k];
   }

   // naive test is to shift the code_buffer down so k bits are
   // valid, then test against maxcode. To speed this up, we've
   // preshifted maxcode left so that it has (16-k) 0s at the
   // end; in other words, regardless of the number of bits, it
   // wants to be compared against something shifted to have 16;
   // that way we don't need to shift inside the loop.
   temp = j->code_buffer >> 16;
   for (k=FAST_BITS+1 ; ; ++k)
      if (temp < h->maxcode[k])
         break;
   if (k == 17) {
      // error! code not found
      j->code_bits -= 16;
      return -1;
   }

   if (k > j->code_bits)
      return -1;

   // convert the huffman code to the symbol id
1909
   c = ((j->code_buffer >> (32 - k)) & stbi__bmask[k]) + h->delta[k];
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Sean Barrett 已提交
1910
   STBI_ASSERT((((j->code_buffer) >> (32 - h->size[c])) & stbi__bmask[h->size[c]]) == h->code[c]);
1911 1912 1913 1914 1915 1916 1917

   // convert the id to a symbol
   j->code_bits -= k;
   j->code_buffer <<= k;
   return h->values[c];
}

1918 1919 1920
// bias[n] = (-1<<n) + 1
static int const stbi__jbias[16] = {0,-1,-3,-7,-15,-31,-63,-127,-255,-511,-1023,-2047,-4095,-8191,-16383,-32767};

1921 1922
// combined JPEG 'receive' and JPEG 'extend', since baseline
// always extends everything it receives.
1923
stbi_inline static int stbi__extend_receive(stbi__jpeg *j, int n)
1924 1925
{
   unsigned int k;
1926
   int sgn;
1927
   if (j->code_bits < n) stbi__grow_buffer_unsafe(j);
1928

1929
   sgn = (stbi__int32)j->code_buffer >> 31; // sign bit is always in MSB
1930
   k = stbi_lrot(j->code_buffer, n);
1931
   STBI_ASSERT(n >= 0 && n < (int) (sizeof(stbi__bmask)/sizeof(*stbi__bmask)));
1932 1933
   j->code_buffer = k & ~stbi__bmask[n];
   k &= stbi__bmask[n];
1934
   j->code_bits -= n;
1935
   return k + (stbi__jbias[n] & ~sgn);
1936 1937
}

S
Sean Barrett 已提交
1938 1939 1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959
// get some unsigned bits
stbi_inline static int stbi__jpeg_get_bits(stbi__jpeg *j, int n)
{
   unsigned int k;
   if (j->code_bits < n) stbi__grow_buffer_unsafe(j);
   k = stbi_lrot(j->code_buffer, n);
   j->code_buffer = k & ~stbi__bmask[n];
   k &= stbi__bmask[n];
   j->code_bits -= n;
   return k;
}

stbi_inline static int stbi__jpeg_get_bit(stbi__jpeg *j)
{
   unsigned int k;
   if (j->code_bits < 1) stbi__grow_buffer_unsafe(j);
   k = j->code_buffer;
   j->code_buffer <<= 1;
   --j->code_bits;
   return k & 0x80000000;
}

1960 1961
// given a value that's at position X in the zigzag stream,
// where does it appear in the 8x8 matrix coded as row-major?
1962
static stbi_uc stbi__jpeg_dezigzag[64+15] =
1963 1964 1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976
{
    0,  1,  8, 16,  9,  2,  3, 10,
   17, 24, 32, 25, 18, 11,  4,  5,
   12, 19, 26, 33, 40, 48, 41, 34,
   27, 20, 13,  6,  7, 14, 21, 28,
   35, 42, 49, 56, 57, 50, 43, 36,
   29, 22, 15, 23, 30, 37, 44, 51,
   58, 59, 52, 45, 38, 31, 39, 46,
   53, 60, 61, 54, 47, 55, 62, 63,
   // let corrupt input sample past end
   63, 63, 63, 63, 63, 63, 63, 63,
   63, 63, 63, 63, 63, 63, 63
};

1977
// decode one 64-entry block--
1978
static int stbi__jpeg_decode_block(stbi__jpeg *j, short data[64], stbi__huffman *hdc, stbi__huffman *hac, stbi__int16 *fac, int b, stbi_uc *dequant)
1979 1980
{
   int diff,dc,k;
1981 1982 1983 1984
   int t;

   if (j->code_bits < 16) stbi__grow_buffer_unsafe(j);
   t = stbi__jpeg_huff_decode(j, hdc);
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Sean Barrett 已提交
1985
   if (t < 0) return stbi__err("bad huffman code","Corrupt JPEG");
1986 1987 1988 1989

   // 0 all the ac values now so we can do it 32-bits at a time
   memset(data,0,64*sizeof(data[0]));

1990
   diff = t ? stbi__extend_receive(j, t) : 0;
1991 1992
   dc = j->img_comp[b].dc_pred + diff;
   j->img_comp[b].dc_pred = dc;
1993
   data[0] = (short) (dc * dequant[0]);
1994

1995
   // decode AC components, see JPEG spec
1996 1997
   k = 1;
   do {
1998
      unsigned int zig;
1999 2000 2001 2002 2003 2004 2005 2006 2007
      int c,r,s;
      if (j->code_bits < 16) stbi__grow_buffer_unsafe(j);
      c = (j->code_buffer >> (32 - FAST_BITS)) & ((1 << FAST_BITS)-1);
      r = fac[c];
      if (r) { // fast-AC path
         k += (r >> 4) & 15; // run
         s = r & 15; // combined length
         j->code_buffer <<= s;
         j->code_bits -= s;
2008
         // decode into unzigzag'd location
2009 2010
         zig = stbi__jpeg_dezigzag[k++];
         data[zig] = (short) ((r >> 8) * dequant[zig]);
2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021
      } else {
         int rs = stbi__jpeg_huff_decode(j, hac);
         if (rs < 0) return stbi__err("bad huffman code","Corrupt JPEG");
         s = rs & 15;
         r = rs >> 4;
         if (s == 0) {
            if (rs != 0xf0) break; // end block
            k += 16;
         } else {
            k += r;
            // decode into unzigzag'd location
2022 2023
            zig = stbi__jpeg_dezigzag[k++];
            data[zig] = (short) (stbi__extend_receive(j,s) * dequant[zig]);
2024
         }
2025 2026 2027 2028 2029
      }
   } while (k < 64);
   return 1;
}

2030
static int stbi__jpeg_decode_block_prog_dc(stbi__jpeg *j, short data[64], stbi__huffman *hdc, int b)
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2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045
{
   int diff,dc;
   int t;
   if (j->spec_end != 0) return stbi__err("can't merge dc and ac", "Corrupt JPEG");

   if (j->code_bits < 16) stbi__grow_buffer_unsafe(j);

   if (j->succ_high == 0) {
      // first scan for DC coefficient, must be first
      memset(data,0,64*sizeof(data[0])); // 0 all the ac values now
      t = stbi__jpeg_huff_decode(j, hdc);
      diff = t ? stbi__extend_receive(j, t) : 0;

      dc = j->img_comp[b].dc_pred + diff;
      j->img_comp[b].dc_pred = dc;
2046
      data[0] = (short) (dc << j->succ_low);
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   } else {
      // refinement scan for DC coefficient
      if (stbi__jpeg_get_bit(j))
2050
         data[0] += (short) (1 << j->succ_low);
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   }
   return 1;
}

// @OPTIMIZE: store non-zigzagged during the decode passes,
// and only de-zigzag when dequantizing
2057
static int stbi__jpeg_decode_block_prog_ac(stbi__jpeg *j, short data[64], stbi__huffman *hac, stbi__int16 *fac)
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{
   int k;
   if (j->spec_start == 0) return stbi__err("can't merge dc and ac", "Corrupt JPEG");

   if (j->succ_high == 0) {
      int shift = j->succ_low;

      if (j->eob_run) {
         --j->eob_run;
         return 1;
      }

      k = j->spec_start;
      do {
         unsigned int zig;
         int c,r,s;
         if (j->code_bits < 16) stbi__grow_buffer_unsafe(j);
         c = (j->code_buffer >> (32 - FAST_BITS)) & ((1 << FAST_BITS)-1);
         r = fac[c];
2077
         if (r) { // fast-AC path
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            k += (r >> 4) & 15; // run
            s = r & 15; // combined length
            j->code_buffer <<= s;
            j->code_bits -= s;
            zig = stbi__jpeg_dezigzag[k++];
            data[zig] = (short) ((r >> 8) << shift);
         } else {
            int rs = stbi__jpeg_huff_decode(j, hac);
            if (rs < 0) return stbi__err("bad huffman code","Corrupt JPEG");
            s = rs & 15;
            r = rs >> 4;
            if (s == 0) {
               if (r < 15) {
                  j->eob_run = (1 << r);
                  if (r)
                     j->eob_run += stbi__jpeg_get_bits(j, r);
                  --j->eob_run;
                  break;
               }
               k += 16;
            } else {
               k += r;
               zig = stbi__jpeg_dezigzag[k++];
               data[zig] = (short) (stbi__extend_receive(j,s) << shift);
            }
         }
      } while (k <= j->spec_end);
   } else {
      // refinement scan for these AC coefficients

2108
      short bit = (short) (1 << j->succ_low);
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2110 2111 2112 2113 2114 2115
      if (j->eob_run) {
         --j->eob_run;
         for (k = j->spec_start; k <= j->spec_end; ++k) {
            short *p = &data[stbi__jpeg_dezigzag[k]];
            if (*p != 0)
               if (stbi__jpeg_get_bit(j))
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                  if ((*p & bit)==0) {
2117 2118 2119 2120
                     if (*p > 0)
                        *p += bit;
                     else
                        *p -= bit;
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                  }
2122 2123 2124
         }
      } else {
         k = j->spec_start;
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         do {
            int r,s;
2127
            int rs = stbi__jpeg_huff_decode(j, hac); // @OPTIMIZE see if we can use the fast path here, advance-by-r is so slow, eh
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            if (rs < 0) return stbi__err("bad huffman code","Corrupt JPEG");
            s = rs & 15;
            r = rs >> 4;
            if (s == 0) {
               if (r < 15) {
2133
                  j->eob_run = (1 << r) - 1;
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                  if (r)
                     j->eob_run += stbi__jpeg_get_bits(j, r);
2136
                  r = 64; // force end of block
2137 2138 2139 2140
               } else {
                  // r=15 s=0 should write 16 0s, so we just do
                  // a run of 15 0s and then write s (which is 0),
                  // so we don't have to do anything special here
2141
               }
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            } else {
               if (s != 1) return stbi__err("bad huffman code", "Corrupt JPEG");
               // sign bit
               if (stbi__jpeg_get_bit(j))
                  s = bit;
               else
                  s = -bit;
            }

            // advance by r
            while (k <= j->spec_end) {
2153
               short *p = &data[stbi__jpeg_dezigzag[k++]];
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               if (*p != 0) {
2155
                  if (stbi__jpeg_get_bit(j))
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2156
                     if ((*p & bit)==0) {
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                        if (*p > 0)
                           *p += bit;
                        else
                           *p -= bit;
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2161
                     }
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2162
               } else {
2163
                  if (r == 0) {
2164
                     *p = (short) s;
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                     break;
2166
                  }
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                  --r;
               }
            }
         } while (k <= j->spec_end);
      }
   }
   return 1;
}

2176
// take a -128..127 value and stbi__clamp it and convert to 0..255
2177
stbi_inline static stbi_uc stbi__clamp(int x)
2178 2179 2180 2181 2182 2183
{
   // trick to use a single test to catch both cases
   if ((unsigned int) x > 255) {
      if (x < 0) return 0;
      if (x > 255) return 255;
   }
2184
   return (stbi_uc) x;
2185 2186
}

2187
#define stbi__f2f(x)  ((int) (((x) * 4096 + 0.5)))
2188
#define stbi__fsh(x)  ((x) << 12)
2189 2190

// derived from jidctint -- DCT_ISLOW
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#define STBI__IDCT_1D(s0,s1,s2,s3,s4,s5,s6,s7) \
2192 2193 2194
   int t0,t1,t2,t3,p1,p2,p3,p4,p5,x0,x1,x2,x3; \
   p2 = s2;                                    \
   p3 = s6;                                    \
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   p1 = (p2+p3) * stbi__f2f(0.5411961f);       \
   t2 = p1 + p3*stbi__f2f(-1.847759065f);      \
   t3 = p1 + p2*stbi__f2f( 0.765366865f);      \
2198 2199
   p2 = s0;                                    \
   p3 = s4;                                    \
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   t0 = stbi__fsh(p2+p3);                      \
   t1 = stbi__fsh(p2-p3);                      \
2202 2203 2204 2205 2206 2207 2208 2209 2210 2211 2212 2213
   x0 = t0+t3;                                 \
   x3 = t0-t3;                                 \
   x1 = t1+t2;                                 \
   x2 = t1-t2;                                 \
   t0 = s7;                                    \
   t1 = s5;                                    \
   t2 = s3;                                    \
   t3 = s1;                                    \
   p3 = t0+t2;                                 \
   p4 = t1+t3;                                 \
   p1 = t0+t3;                                 \
   p2 = t1+t2;                                 \
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   p5 = (p3+p4)*stbi__f2f( 1.175875602f);      \
   t0 = t0*stbi__f2f( 0.298631336f);           \
   t1 = t1*stbi__f2f( 2.053119869f);           \
   t2 = t2*stbi__f2f( 3.072711026f);           \
   t3 = t3*stbi__f2f( 1.501321110f);           \
   p1 = p5 + p1*stbi__f2f(-0.899976223f);      \
   p2 = p5 + p2*stbi__f2f(-2.562915447f);      \
   p3 = p3*stbi__f2f(-1.961570560f);           \
   p4 = p4*stbi__f2f(-0.390180644f);           \
2223 2224 2225 2226 2227
   t3 += p1+p4;                                \
   t2 += p2+p3;                                \
   t1 += p2+p4;                                \
   t0 += p1+p3;

2228
static void stbi__idct_block(stbi_uc *out, int out_stride, short data[64])
2229 2230
{
   int i,val[64],*v=val;
2231
   stbi_uc *o;
2232 2233 2234
   short *d = data;

   // columns
2235
   for (i=0; i < 8; ++i,++d, ++v) {
2236 2237 2238 2239 2240 2241 2242
      // if all zeroes, shortcut -- this avoids dequantizing 0s and IDCTing
      if (d[ 8]==0 && d[16]==0 && d[24]==0 && d[32]==0
           && d[40]==0 && d[48]==0 && d[56]==0) {
         //    no shortcut                 0     seconds
         //    (1|2|3|4|5|6|7)==0          0     seconds
         //    all separate               -0.047 seconds
         //    1 && 2|3 && 4|5 && 6|7:    -0.047 seconds
2243
         int dcterm = d[0] << 2;
2244 2245
         v[0] = v[8] = v[16] = v[24] = v[32] = v[40] = v[48] = v[56] = dcterm;
      } else {
2246
         STBI__IDCT_1D(d[ 0],d[ 8],d[16],d[24],d[32],d[40],d[48],d[56])
2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259 2260 2261 2262
         // constants scaled things up by 1<<12; let's bring them back
         // down, but keep 2 extra bits of precision
         x0 += 512; x1 += 512; x2 += 512; x3 += 512;
         v[ 0] = (x0+t3) >> 10;
         v[56] = (x0-t3) >> 10;
         v[ 8] = (x1+t2) >> 10;
         v[48] = (x1-t2) >> 10;
         v[16] = (x2+t1) >> 10;
         v[40] = (x2-t1) >> 10;
         v[24] = (x3+t0) >> 10;
         v[32] = (x3-t0) >> 10;
      }
   }

   for (i=0, v=val, o=out; i < 8; ++i,v+=8,o+=out_stride) {
      // no fast case since the first 1D IDCT spread components out
2263
      STBI__IDCT_1D(v[0],v[1],v[2],v[3],v[4],v[5],v[6],v[7])
2264 2265 2266 2267 2268 2269 2270 2271 2272 2273 2274 2275
      // constants scaled things up by 1<<12, plus we had 1<<2 from first
      // loop, plus horizontal and vertical each scale by sqrt(8) so together
      // we've got an extra 1<<3, so 1<<17 total we need to remove.
      // so we want to round that, which means adding 0.5 * 1<<17,
      // aka 65536. Also, we'll end up with -128 to 127 that we want
      // to encode as 0..255 by adding 128, so we'll add that before the shift
      x0 += 65536 + (128<<17);
      x1 += 65536 + (128<<17);
      x2 += 65536 + (128<<17);
      x3 += 65536 + (128<<17);
      // tried computing the shifts into temps, or'ing the temps to see
      // if any were out of range, but that was slower
2276 2277 2278 2279 2280 2281 2282 2283
      o[0] = stbi__clamp((x0+t3) >> 17);
      o[7] = stbi__clamp((x0-t3) >> 17);
      o[1] = stbi__clamp((x1+t2) >> 17);
      o[6] = stbi__clamp((x1-t2) >> 17);
      o[2] = stbi__clamp((x2+t1) >> 17);
      o[5] = stbi__clamp((x2-t1) >> 17);
      o[3] = stbi__clamp((x3+t0) >> 17);
      o[4] = stbi__clamp((x3-t0) >> 17);
2284 2285 2286
   }
}

2287 2288 2289 2290
#ifdef STBI_SSE2
// sse2 integer IDCT. not the fastest possible implementation but it
// produces bit-identical results to the generic C version so it's
// fully "transparent".
2291
static void stbi__idct_simd(stbi_uc *out, int out_stride, short data[64])
2292 2293 2294 2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320 2321 2322 2323 2324 2325 2326 2327 2328 2329 2330 2331 2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371 2372 2373 2374 2375 2376 2377 2378 2379 2380 2381 2382 2383 2384 2385 2386 2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401 2402 2403 2404 2405 2406 2407 2408 2409 2410 2411 2412 2413 2414 2415 2416 2417 2418 2419 2420 2421 2422 2423 2424 2425 2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442 2443 2444 2445 2446 2447 2448 2449 2450 2451 2452 2453 2454 2455 2456 2457 2458 2459 2460 2461 2462 2463
{
   // This is constructed to match our regular (generic) integer IDCT exactly.
   __m128i row0, row1, row2, row3, row4, row5, row6, row7;
   __m128i tmp;

   // dot product constant: even elems=x, odd elems=y
   #define dct_const(x,y)  _mm_setr_epi16((x),(y),(x),(y),(x),(y),(x),(y))

   // out(0) = c0[even]*x + c0[odd]*y   (c0, x, y 16-bit, out 32-bit)
   // out(1) = c1[even]*x + c1[odd]*y
   #define dct_rot(out0,out1, x,y,c0,c1) \
      __m128i c0##lo = _mm_unpacklo_epi16((x),(y)); \
      __m128i c0##hi = _mm_unpackhi_epi16((x),(y)); \
      __m128i out0##_l = _mm_madd_epi16(c0##lo, c0); \
      __m128i out0##_h = _mm_madd_epi16(c0##hi, c0); \
      __m128i out1##_l = _mm_madd_epi16(c0##lo, c1); \
      __m128i out1##_h = _mm_madd_epi16(c0##hi, c1)

   // out = in << 12  (in 16-bit, out 32-bit)
   #define dct_widen(out, in) \
      __m128i out##_l = _mm_srai_epi32(_mm_unpacklo_epi16(_mm_setzero_si128(), (in)), 4); \
      __m128i out##_h = _mm_srai_epi32(_mm_unpackhi_epi16(_mm_setzero_si128(), (in)), 4)

   // wide add
   #define dct_wadd(out, a, b) \
      __m128i out##_l = _mm_add_epi32(a##_l, b##_l); \
      __m128i out##_h = _mm_add_epi32(a##_h, b##_h)

   // wide sub
   #define dct_wsub(out, a, b) \
      __m128i out##_l = _mm_sub_epi32(a##_l, b##_l); \
      __m128i out##_h = _mm_sub_epi32(a##_h, b##_h)

   // butterfly a/b, add bias, then shift by "s" and pack
   #define dct_bfly32o(out0, out1, a,b,bias,s) \
      { \
         __m128i abiased_l = _mm_add_epi32(a##_l, bias); \
         __m128i abiased_h = _mm_add_epi32(a##_h, bias); \
         dct_wadd(sum, abiased, b); \
         dct_wsub(dif, abiased, b); \
         out0 = _mm_packs_epi32(_mm_srai_epi32(sum_l, s), _mm_srai_epi32(sum_h, s)); \
         out1 = _mm_packs_epi32(_mm_srai_epi32(dif_l, s), _mm_srai_epi32(dif_h, s)); \
      }

   // 8-bit interleave step (for transposes)
   #define dct_interleave8(a, b) \
      tmp = a; \
      a = _mm_unpacklo_epi8(a, b); \
      b = _mm_unpackhi_epi8(tmp, b)

   // 16-bit interleave step (for transposes)
   #define dct_interleave16(a, b) \
      tmp = a; \
      a = _mm_unpacklo_epi16(a, b); \
      b = _mm_unpackhi_epi16(tmp, b)

   #define dct_pass(bias,shift) \
      { \
         /* even part */ \
         dct_rot(t2e,t3e, row2,row6, rot0_0,rot0_1); \
         __m128i sum04 = _mm_add_epi16(row0, row4); \
         __m128i dif04 = _mm_sub_epi16(row0, row4); \
         dct_widen(t0e, sum04); \
         dct_widen(t1e, dif04); \
         dct_wadd(x0, t0e, t3e); \
         dct_wsub(x3, t0e, t3e); \
         dct_wadd(x1, t1e, t2e); \
         dct_wsub(x2, t1e, t2e); \
         /* odd part */ \
         dct_rot(y0o,y2o, row7,row3, rot2_0,rot2_1); \
         dct_rot(y1o,y3o, row5,row1, rot3_0,rot3_1); \
         __m128i sum17 = _mm_add_epi16(row1, row7); \
         __m128i sum35 = _mm_add_epi16(row3, row5); \
         dct_rot(y4o,y5o, sum17,sum35, rot1_0,rot1_1); \
         dct_wadd(x4, y0o, y4o); \
         dct_wadd(x5, y1o, y5o); \
         dct_wadd(x6, y2o, y5o); \
         dct_wadd(x7, y3o, y4o); \
         dct_bfly32o(row0,row7, x0,x7,bias,shift); \
         dct_bfly32o(row1,row6, x1,x6,bias,shift); \
         dct_bfly32o(row2,row5, x2,x5,bias,shift); \
         dct_bfly32o(row3,row4, x3,x4,bias,shift); \
      }

   __m128i rot0_0 = dct_const(stbi__f2f(0.5411961f), stbi__f2f(0.5411961f) + stbi__f2f(-1.847759065f));
   __m128i rot0_1 = dct_const(stbi__f2f(0.5411961f) + stbi__f2f( 0.765366865f), stbi__f2f(0.5411961f));
   __m128i rot1_0 = dct_const(stbi__f2f(1.175875602f) + stbi__f2f(-0.899976223f), stbi__f2f(1.175875602f));
   __m128i rot1_1 = dct_const(stbi__f2f(1.175875602f), stbi__f2f(1.175875602f) + stbi__f2f(-2.562915447f));
   __m128i rot2_0 = dct_const(stbi__f2f(-1.961570560f) + stbi__f2f( 0.298631336f), stbi__f2f(-1.961570560f));
   __m128i rot2_1 = dct_const(stbi__f2f(-1.961570560f), stbi__f2f(-1.961570560f) + stbi__f2f( 3.072711026f));
   __m128i rot3_0 = dct_const(stbi__f2f(-0.390180644f) + stbi__f2f( 2.053119869f), stbi__f2f(-0.390180644f));
   __m128i rot3_1 = dct_const(stbi__f2f(-0.390180644f), stbi__f2f(-0.390180644f) + stbi__f2f( 1.501321110f));

   // rounding biases in column/row passes, see stbi__idct_block for explanation.
   __m128i bias_0 = _mm_set1_epi32(512);
   __m128i bias_1 = _mm_set1_epi32(65536 + (128<<17));

   // load
   row0 = _mm_load_si128((const __m128i *) (data + 0*8));
   row1 = _mm_load_si128((const __m128i *) (data + 1*8));
   row2 = _mm_load_si128((const __m128i *) (data + 2*8));
   row3 = _mm_load_si128((const __m128i *) (data + 3*8));
   row4 = _mm_load_si128((const __m128i *) (data + 4*8));
   row5 = _mm_load_si128((const __m128i *) (data + 5*8));
   row6 = _mm_load_si128((const __m128i *) (data + 6*8));
   row7 = _mm_load_si128((const __m128i *) (data + 7*8));

   // column pass
   dct_pass(bias_0, 10);

   {
      // 16bit 8x8 transpose pass 1
      dct_interleave16(row0, row4);
      dct_interleave16(row1, row5);
      dct_interleave16(row2, row6);
      dct_interleave16(row3, row7);

      // transpose pass 2
      dct_interleave16(row0, row2);
      dct_interleave16(row1, row3);
      dct_interleave16(row4, row6);
      dct_interleave16(row5, row7);

      // transpose pass 3
      dct_interleave16(row0, row1);
      dct_interleave16(row2, row3);
      dct_interleave16(row4, row5);
      dct_interleave16(row6, row7);
   }

   // row pass
   dct_pass(bias_1, 17);

   {
      // pack
      __m128i p0 = _mm_packus_epi16(row0, row1); // a0a1a2a3...a7b0b1b2b3...b7
      __m128i p1 = _mm_packus_epi16(row2, row3);
      __m128i p2 = _mm_packus_epi16(row4, row5);
      __m128i p3 = _mm_packus_epi16(row6, row7);

      // 8bit 8x8 transpose pass 1
      dct_interleave8(p0, p2); // a0e0a1e1...
      dct_interleave8(p1, p3); // c0g0c1g1...

      // transpose pass 2
      dct_interleave8(p0, p1); // a0c0e0g0...
      dct_interleave8(p2, p3); // b0d0f0h0...

      // transpose pass 3
      dct_interleave8(p0, p2); // a0b0c0d0...
      dct_interleave8(p1, p3); // a4b4c4d4...

      // store
      _mm_storel_epi64((__m128i *) out, p0); out += out_stride;
      _mm_storel_epi64((__m128i *) out, _mm_shuffle_epi32(p0, 0x4e)); out += out_stride;
      _mm_storel_epi64((__m128i *) out, p2); out += out_stride;
      _mm_storel_epi64((__m128i *) out, _mm_shuffle_epi32(p2, 0x4e)); out += out_stride;
      _mm_storel_epi64((__m128i *) out, p1); out += out_stride;
      _mm_storel_epi64((__m128i *) out, _mm_shuffle_epi32(p1, 0x4e)); out += out_stride;
      _mm_storel_epi64((__m128i *) out, p3); out += out_stride;
      _mm_storel_epi64((__m128i *) out, _mm_shuffle_epi32(p3, 0x4e));
   }

#undef dct_const
#undef dct_rot
#undef dct_widen
#undef dct_wadd
#undef dct_wsub
#undef dct_bfly32o
#undef dct_interleave8
#undef dct_interleave16
#undef dct_pass
2464 2465
}

2466
#endif // STBI_SSE2
2467

2468 2469 2470 2471
#ifdef STBI_NEON

// NEON integer IDCT. should produce bit-identical
// results to the generic C version.
2472
static void stbi__idct_simd(stbi_uc *out, int out_stride, short data[64])
2473 2474 2475 2476 2477 2478 2479 2480 2481 2482 2483 2484 2485 2486 2487 2488 2489 2490 2491 2492 2493 2494 2495 2496 2497 2498 2499 2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567 2568 2569 2570 2571 2572 2573 2574 2575 2576 2577 2578 2579 2580 2581 2582 2583 2584 2585 2586
{
   int16x8_t row0, row1, row2, row3, row4, row5, row6, row7;

   int16x4_t rot0_0 = vdup_n_s16(stbi__f2f(0.5411961f));
   int16x4_t rot0_1 = vdup_n_s16(stbi__f2f(-1.847759065f));
   int16x4_t rot0_2 = vdup_n_s16(stbi__f2f( 0.765366865f));
   int16x4_t rot1_0 = vdup_n_s16(stbi__f2f( 1.175875602f));
   int16x4_t rot1_1 = vdup_n_s16(stbi__f2f(-0.899976223f));
   int16x4_t rot1_2 = vdup_n_s16(stbi__f2f(-2.562915447f));
   int16x4_t rot2_0 = vdup_n_s16(stbi__f2f(-1.961570560f));
   int16x4_t rot2_1 = vdup_n_s16(stbi__f2f(-0.390180644f));
   int16x4_t rot3_0 = vdup_n_s16(stbi__f2f( 0.298631336f));
   int16x4_t rot3_1 = vdup_n_s16(stbi__f2f( 2.053119869f));
   int16x4_t rot3_2 = vdup_n_s16(stbi__f2f( 3.072711026f));
   int16x4_t rot3_3 = vdup_n_s16(stbi__f2f( 1.501321110f));

#define dct_long_mul(out, inq, coeff) \
   int32x4_t out##_l = vmull_s16(vget_low_s16(inq), coeff); \
   int32x4_t out##_h = vmull_s16(vget_high_s16(inq), coeff)

#define dct_long_mac(out, acc, inq, coeff) \
   int32x4_t out##_l = vmlal_s16(acc##_l, vget_low_s16(inq), coeff); \
   int32x4_t out##_h = vmlal_s16(acc##_h, vget_high_s16(inq), coeff)

#define dct_widen(out, inq) \
   int32x4_t out##_l = vshll_n_s16(vget_low_s16(inq), 12); \
   int32x4_t out##_h = vshll_n_s16(vget_high_s16(inq), 12)

// wide add
#define dct_wadd(out, a, b) \
   int32x4_t out##_l = vaddq_s32(a##_l, b##_l); \
   int32x4_t out##_h = vaddq_s32(a##_h, b##_h)

// wide sub
#define dct_wsub(out, a, b) \
   int32x4_t out##_l = vsubq_s32(a##_l, b##_l); \
   int32x4_t out##_h = vsubq_s32(a##_h, b##_h)

// butterfly a/b, then shift using "shiftop" by "s" and pack
#define dct_bfly32o(out0,out1, a,b,shiftop,s) \
   { \
      dct_wadd(sum, a, b); \
      dct_wsub(dif, a, b); \
      out0 = vcombine_s16(shiftop(sum_l, s), shiftop(sum_h, s)); \
      out1 = vcombine_s16(shiftop(dif_l, s), shiftop(dif_h, s)); \
   }

#define dct_pass(shiftop, shift) \
   { \
      /* even part */ \
      int16x8_t sum26 = vaddq_s16(row2, row6); \
      dct_long_mul(p1e, sum26, rot0_0); \
      dct_long_mac(t2e, p1e, row6, rot0_1); \
      dct_long_mac(t3e, p1e, row2, rot0_2); \
      int16x8_t sum04 = vaddq_s16(row0, row4); \
      int16x8_t dif04 = vsubq_s16(row0, row4); \
      dct_widen(t0e, sum04); \
      dct_widen(t1e, dif04); \
      dct_wadd(x0, t0e, t3e); \
      dct_wsub(x3, t0e, t3e); \
      dct_wadd(x1, t1e, t2e); \
      dct_wsub(x2, t1e, t2e); \
      /* odd part */ \
      int16x8_t sum15 = vaddq_s16(row1, row5); \
      int16x8_t sum17 = vaddq_s16(row1, row7); \
      int16x8_t sum35 = vaddq_s16(row3, row5); \
      int16x8_t sum37 = vaddq_s16(row3, row7); \
      int16x8_t sumodd = vaddq_s16(sum17, sum35); \
      dct_long_mul(p5o, sumodd, rot1_0); \
      dct_long_mac(p1o, p5o, sum17, rot1_1); \
      dct_long_mac(p2o, p5o, sum35, rot1_2); \
      dct_long_mul(p3o, sum37, rot2_0); \
      dct_long_mul(p4o, sum15, rot2_1); \
      dct_wadd(sump13o, p1o, p3o); \
      dct_wadd(sump24o, p2o, p4o); \
      dct_wadd(sump23o, p2o, p3o); \
      dct_wadd(sump14o, p1o, p4o); \
      dct_long_mac(x4, sump13o, row7, rot3_0); \
      dct_long_mac(x5, sump24o, row5, rot3_1); \
      dct_long_mac(x6, sump23o, row3, rot3_2); \
      dct_long_mac(x7, sump14o, row1, rot3_3); \
      dct_bfly32o(row0,row7, x0,x7,shiftop,shift); \
      dct_bfly32o(row1,row6, x1,x6,shiftop,shift); \
      dct_bfly32o(row2,row5, x2,x5,shiftop,shift); \
      dct_bfly32o(row3,row4, x3,x4,shiftop,shift); \
   }

   // load
   row0 = vld1q_s16(data + 0*8);
   row1 = vld1q_s16(data + 1*8);
   row2 = vld1q_s16(data + 2*8);
   row3 = vld1q_s16(data + 3*8);
   row4 = vld1q_s16(data + 4*8);
   row5 = vld1q_s16(data + 5*8);
   row6 = vld1q_s16(data + 6*8);
   row7 = vld1q_s16(data + 7*8);

   // add DC bias
   row0 = vaddq_s16(row0, vsetq_lane_s16(1024, vdupq_n_s16(0), 0));

   // column pass
   dct_pass(vrshrn_n_s32, 10);

   // 16bit 8x8 transpose
   {
// these three map to a single VTRN.16, VTRN.32, and VSWP, respectively.
// whether compilers actually get this is another story, sadly.
#define dct_trn16(x, y) { int16x8x2_t t = vtrnq_s16(x, y); x = t.val[0]; y = t.val[1]; }
#define dct_trn32(x, y) { int32x4x2_t t = vtrnq_s32(vreinterpretq_s32_s16(x), vreinterpretq_s32_s16(y)); x = vreinterpretq_s16_s32(t.val[0]); y = vreinterpretq_s16_s32(t.val[1]); }
#define dct_trn64(x, y) { int16x8_t x0 = x; int16x8_t y0 = y; x = vcombine_s16(vget_low_s16(x0), vget_low_s16(y0)); y = vcombine_s16(vget_high_s16(x0), vget_high_s16(y0)); }

      // pass 1
      dct_trn16(row0, row1); // a0b0a2b2a4b4a6b6
      dct_trn16(row2, row3);
2587
      dct_trn16(row4, row5);
2588 2589 2590 2591 2592 2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624 2625 2626 2627 2628 2629 2630 2631 2632 2633 2634 2635 2636 2637 2638 2639 2640 2641 2642 2643 2644 2645 2646 2647 2648 2649 2650 2651 2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664 2665 2666 2667 2668 2669 2670 2671 2672 2673 2674 2675
      dct_trn16(row6, row7);

      // pass 2
      dct_trn32(row0, row2); // a0b0c0d0a4b4c4d4
      dct_trn32(row1, row3);
      dct_trn32(row4, row6);
      dct_trn32(row5, row7);

      // pass 3
      dct_trn64(row0, row4); // a0b0c0d0e0f0g0h0
      dct_trn64(row1, row5);
      dct_trn64(row2, row6);
      dct_trn64(row3, row7);

#undef dct_trn16
#undef dct_trn32
#undef dct_trn64
   }

   // row pass
   // vrshrn_n_s32 only supports shifts up to 16, we need
   // 17. so do a non-rounding shift of 16 first then follow
   // up with a rounding shift by 1.
   dct_pass(vshrn_n_s32, 16);

   {
      // pack and round
      uint8x8_t p0 = vqrshrun_n_s16(row0, 1);
      uint8x8_t p1 = vqrshrun_n_s16(row1, 1);
      uint8x8_t p2 = vqrshrun_n_s16(row2, 1);
      uint8x8_t p3 = vqrshrun_n_s16(row3, 1);
      uint8x8_t p4 = vqrshrun_n_s16(row4, 1);
      uint8x8_t p5 = vqrshrun_n_s16(row5, 1);
      uint8x8_t p6 = vqrshrun_n_s16(row6, 1);
      uint8x8_t p7 = vqrshrun_n_s16(row7, 1);

      // again, these can translate into one instruction, but often don't.
#define dct_trn8_8(x, y) { uint8x8x2_t t = vtrn_u8(x, y); x = t.val[0]; y = t.val[1]; }
#define dct_trn8_16(x, y) { uint16x4x2_t t = vtrn_u16(vreinterpret_u16_u8(x), vreinterpret_u16_u8(y)); x = vreinterpret_u8_u16(t.val[0]); y = vreinterpret_u8_u16(t.val[1]); }
#define dct_trn8_32(x, y) { uint32x2x2_t t = vtrn_u32(vreinterpret_u32_u8(x), vreinterpret_u32_u8(y)); x = vreinterpret_u8_u32(t.val[0]); y = vreinterpret_u8_u32(t.val[1]); }

      // sadly can't use interleaved stores here since we only write
      // 8 bytes to each scan line!

      // 8x8 8-bit transpose pass 1
      dct_trn8_8(p0, p1);
      dct_trn8_8(p2, p3);
      dct_trn8_8(p4, p5);
      dct_trn8_8(p6, p7);

      // pass 2
      dct_trn8_16(p0, p2);
      dct_trn8_16(p1, p3);
      dct_trn8_16(p4, p6);
      dct_trn8_16(p5, p7);

      // pass 3
      dct_trn8_32(p0, p4);
      dct_trn8_32(p1, p5);
      dct_trn8_32(p2, p6);
      dct_trn8_32(p3, p7);

      // store
      vst1_u8(out, p0); out += out_stride;
      vst1_u8(out, p1); out += out_stride;
      vst1_u8(out, p2); out += out_stride;
      vst1_u8(out, p3); out += out_stride;
      vst1_u8(out, p4); out += out_stride;
      vst1_u8(out, p5); out += out_stride;
      vst1_u8(out, p6); out += out_stride;
      vst1_u8(out, p7);

#undef dct_trn8_8
#undef dct_trn8_16
#undef dct_trn8_32
   }

#undef dct_long_mul
#undef dct_long_mac
#undef dct_widen
#undef dct_wadd
#undef dct_wsub
#undef dct_bfly32o
#undef dct_pass
}

#endif // STBI_NEON

2676
#define STBI__MARKER_none  0xff
2677 2678 2679
// if there's a pending marker from the entropy stream, return that
// otherwise, fetch from the stream and get a marker. if there's no
// marker, return 0xff, which is never a valid marker value
2680
static stbi_uc stbi__get_marker(stbi__jpeg *j)
2681
{
2682
   stbi_uc x;
2683
   if (j->marker != STBI__MARKER_none) { x = j->marker; j->marker = STBI__MARKER_none; return x; }
2684
   x = stbi__get8(j->s);
2685
   if (x != 0xff) return STBI__MARKER_none;
2686
   while (x == 0xff)
2687
      x = stbi__get8(j->s);
2688 2689 2690 2691 2692
   return x;
}

// in each scan, we'll have scan_n components, and the order
// of the components is specified by order[]
2693
#define STBI__RESTART(x)     ((x) >= 0xd0 && (x) <= 0xd7)
2694

2695
// after a restart interval, stbi__jpeg_reset the entropy decoder and
2696
// the dc prediction
2697
static void stbi__jpeg_reset(stbi__jpeg *j)
2698 2699 2700 2701 2702
{
   j->code_bits = 0;
   j->code_buffer = 0;
   j->nomore = 0;
   j->img_comp[0].dc_pred = j->img_comp[1].dc_pred = j->img_comp[2].dc_pred = 0;
2703
   j->marker = STBI__MARKER_none;
2704
   j->todo = j->restart_interval ? j->restart_interval : 0x7fffffff;
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   j->eob_run = 0;
2706 2707 2708 2709
   // no more than 1<<31 MCUs if no restart_interal? that's plenty safe,
   // since we don't even allow 1<<30 pixels
}

2710
static int stbi__parse_entropy_coded_data(stbi__jpeg *z)
2711
{
2712
   stbi__jpeg_reset(z);
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   if (!z->progressive) {
      if (z->scan_n == 1) {
         int i,j;
         STBI_SIMD_ALIGN(short, data[64]);
         int n = z->order[0];
         // non-interleaved data, we just need to process one block at a time,
         // in trivial scanline order
         // number of blocks to do just depends on how many actual "pixels" this
         // component has, independent of interleaved MCU blocking and such
         int w = (z->img_comp[n].x+7) >> 3;
         int h = (z->img_comp[n].y+7) >> 3;
         for (j=0; j < h; ++j) {
            for (i=0; i < w; ++i) {
               int ha = z->img_comp[n].ha;
               if (!stbi__jpeg_decode_block(z, data, z->huff_dc+z->img_comp[n].hd, z->huff_ac+ha, z->fast_ac[ha], n, z->dequant[z->img_comp[n].tq])) return 0;
               z->idct_block_kernel(z->img_comp[n].data+z->img_comp[n].w2*j*8+i*8, z->img_comp[n].w2, data);
               // every data block is an MCU, so countdown the restart interval
               if (--z->todo <= 0) {
                  if (z->code_bits < 24) stbi__grow_buffer_unsafe(z);
                  // if it's NOT a restart, then just bail, so we get corrupt data
                  // rather than no data
                  if (!STBI__RESTART(z->marker)) return 1;
                  stbi__jpeg_reset(z);
               }
2737 2738
            }
         }
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         return 1;
2740
      } else { // interleaved
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         int i,j,k,x,y;
         STBI_SIMD_ALIGN(short, data[64]);
         for (j=0; j < z->img_mcu_y; ++j) {
            for (i=0; i < z->img_mcu_x; ++i) {
               // scan an interleaved mcu... process scan_n components in order
               for (k=0; k < z->scan_n; ++k) {
                  int n = z->order[k];
                  // scan out an mcu's worth of this component; that's just determined
                  // by the basic H and V specified for the component
                  for (y=0; y < z->img_comp[n].v; ++y) {
                     for (x=0; x < z->img_comp[n].h; ++x) {
                        int x2 = (i*z->img_comp[n].h + x)*8;
                        int y2 = (j*z->img_comp[n].v + y)*8;
                        int ha = z->img_comp[n].ha;
                        if (!stbi__jpeg_decode_block(z, data, z->huff_dc+z->img_comp[n].hd, z->huff_ac+ha, z->fast_ac[ha], n, z->dequant[z->img_comp[n].tq])) return 0;
2756
                        z->idct_block_kernel(z->img_comp[n].data+z->img_comp[n].w2*y2+x2, z->img_comp[n].w2, data);
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                     }
                  }
               }
               // after all interleaved components, that's an interleaved MCU,
               // so now count down the restart interval
               if (--z->todo <= 0) {
                  if (z->code_bits < 24) stbi__grow_buffer_unsafe(z);
                  if (!STBI__RESTART(z->marker)) return 1;
                  stbi__jpeg_reset(z);
               }
            }
         }
         return 1;
2770
      }
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   } else {
      if (z->scan_n == 1) {
         int i,j;
         int n = z->order[0];
         // non-interleaved data, we just need to process one block at a time,
         // in trivial scanline order
         // number of blocks to do just depends on how many actual "pixels" this
         // component has, independent of interleaved MCU blocking and such
         int w = (z->img_comp[n].x+7) >> 3;
         int h = (z->img_comp[n].y+7) >> 3;
         for (j=0; j < h; ++j) {
            for (i=0; i < w; ++i) {
               short *data = z->img_comp[n].coeff + 64 * (i + j * z->img_comp[n].coeff_w);
               if (z->spec_start == 0) {
2785
                  if (!stbi__jpeg_decode_block_prog_dc(z, data, &z->huff_dc[z->img_comp[n].hd], n))
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                     return 0;
               } else {
2788 2789
                  int ha = z->img_comp[n].ha;
                  if (!stbi__jpeg_decode_block_prog_ac(z, data, &z->huff_ac[ha], z->fast_ac[ha]))
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                     return 0;
               }
               // every data block is an MCU, so countdown the restart interval
               if (--z->todo <= 0) {
                  if (z->code_bits < 24) stbi__grow_buffer_unsafe(z);
                  if (!STBI__RESTART(z->marker)) return 1;
                  stbi__jpeg_reset(z);
               }
            }
         }
         return 1;
2801
      } else { // interleaved
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         int i,j,k,x,y;
         for (j=0; j < z->img_mcu_y; ++j) {
            for (i=0; i < z->img_mcu_x; ++i) {
               // scan an interleaved mcu... process scan_n components in order
               for (k=0; k < z->scan_n; ++k) {
                  int n = z->order[k];
                  // scan out an mcu's worth of this component; that's just determined
                  // by the basic H and V specified for the component
                  for (y=0; y < z->img_comp[n].v; ++y) {
                     for (x=0; x < z->img_comp[n].h; ++x) {
                        int x2 = (i*z->img_comp[n].h + x);
                        int y2 = (j*z->img_comp[n].v + y);
                        short *data = z->img_comp[n].coeff + 64 * (x2 + y2 * z->img_comp[n].coeff_w);
2815
                        if (!stbi__jpeg_decode_block_prog_dc(z, data, &z->huff_dc[z->img_comp[n].hd], n))
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                           return 0;
                     }
2818 2819
                  }
               }
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               // after all interleaved components, that's an interleaved MCU,
               // so now count down the restart interval
               if (--z->todo <= 0) {
                  if (z->code_bits < 24) stbi__grow_buffer_unsafe(z);
                  if (!STBI__RESTART(z->marker)) return 1;
                  stbi__jpeg_reset(z);
               }
2827
            }
S
Sean Barrett 已提交
2828 2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850 2851 2852 2853
         }
         return 1;
      }
   }
}

static void stbi__jpeg_dequantize(short *data, stbi_uc *dequant)
{
   int i;
   for (i=0; i < 64; ++i)
      data[i] *= dequant[i];
}

static void stbi__jpeg_finish(stbi__jpeg *z)
{
   if (z->progressive) {
      // dequantize and idct the data
      int i,j,n;
      for (n=0; n < z->s->img_n; ++n) {
         int w = (z->img_comp[n].x+7) >> 3;
         int h = (z->img_comp[n].y+7) >> 3;
         for (j=0; j < h; ++j) {
            for (i=0; i < w; ++i) {
               short *data = z->img_comp[n].coeff + 64 * (i + j * z->img_comp[n].coeff_w);
               stbi__jpeg_dequantize(data, z->dequant[z->img_comp[n].tq]);
               z->idct_block_kernel(z->img_comp[n].data+z->img_comp[n].w2*j*8+i*8, z->img_comp[n].w2, data);
2854 2855 2856 2857 2858 2859
            }
         }
      }
   }
}

2860
static int stbi__process_marker(stbi__jpeg *z, int m)
2861 2862 2863
{
   int L;
   switch (m) {
2864
      case STBI__MARKER_none: // no marker found
S
Sean Barrett 已提交
2865
         return stbi__err("expected marker","Corrupt JPEG");
2866 2867

      case 0xDD: // DRI - specify restart interval
2868 2869
         if (stbi__get16be(z->s) != 4) return stbi__err("bad DRI len","Corrupt JPEG");
         z->restart_interval = stbi__get16be(z->s);
2870 2871 2872
         return 1;

      case 0xDB: // DQT - define quantization table
2873
         L = stbi__get16be(z->s)-2;
2874
         while (L > 0) {
2875
            int q = stbi__get8(z->s);
2876 2877
            int p = q >> 4;
            int t = q & 15,i;
S
Sean Barrett 已提交
2878 2879
            if (p != 0) return stbi__err("bad DQT type","Corrupt JPEG");
            if (t > 3) return stbi__err("bad DQT table","Corrupt JPEG");
2880
            for (i=0; i < 64; ++i)
2881
               z->dequant[t][stbi__jpeg_dezigzag[i]] = stbi__get8(z->s);
2882 2883 2884 2885 2886
            L -= 65;
         }
         return L==0;

      case 0xC4: // DHT - define huffman table
2887
         L = stbi__get16be(z->s)-2;
2888
         while (L > 0) {
2889
            stbi_uc *v;
2890
            int sizes[16],i,n=0;
2891
            int q = stbi__get8(z->s);
2892 2893
            int tc = q >> 4;
            int th = q & 15;
S
Sean Barrett 已提交
2894
            if (tc > 1 || th > 3) return stbi__err("bad DHT header","Corrupt JPEG");
2895
            for (i=0; i < 16; ++i) {
2896
               sizes[i] = stbi__get8(z->s);
2897 2898 2899 2900
               n += sizes[i];
            }
            L -= 17;
            if (tc == 0) {
2901
               if (!stbi__build_huffman(z->huff_dc+th, sizes)) return 0;
2902 2903
               v = z->huff_dc[th].values;
            } else {
2904
               if (!stbi__build_huffman(z->huff_ac+th, sizes)) return 0;
2905 2906 2907
               v = z->huff_ac[th].values;
            }
            for (i=0; i < n; ++i)
2908
               v[i] = stbi__get8(z->s);
2909 2910
            if (tc != 0)
               stbi__build_fast_ac(z->fast_ac[th], z->huff_ac + th);
2911 2912 2913 2914 2915 2916
            L -= n;
         }
         return L==0;
   }
   // check for comment block or APP blocks
   if ((m >= 0xE0 && m <= 0xEF) || m == 0xFE) {
2917
      stbi__skip(z->s, stbi__get16be(z->s)-2);
2918 2919 2920 2921 2922
      return 1;
   }
   return 0;
}

S
Sean Barrett 已提交
2923
// after we see SOS
2924
static int stbi__process_scan_header(stbi__jpeg *z)
2925 2926
{
   int i;
2927 2928
   int Ls = stbi__get16be(z->s);
   z->scan_n = stbi__get8(z->s);
S
Sean Barrett 已提交
2929 2930
   if (z->scan_n < 1 || z->scan_n > 4 || z->scan_n > (int) z->s->img_n) return stbi__err("bad SOS component count","Corrupt JPEG");
   if (Ls != 6+2*z->scan_n) return stbi__err("bad SOS len","Corrupt JPEG");
2931
   for (i=0; i < z->scan_n; ++i) {
2932 2933
      int id = stbi__get8(z->s), which;
      int q = stbi__get8(z->s);
2934 2935 2936
      for (which = 0; which < z->s->img_n; ++which)
         if (z->img_comp[which].id == id)
            break;
S
Sean Barrett 已提交
2937
      if (which == z->s->img_n) return 0; // no match
S
Sean Barrett 已提交
2938 2939
      z->img_comp[which].hd = q >> 4;   if (z->img_comp[which].hd > 3) return stbi__err("bad DC huff","Corrupt JPEG");
      z->img_comp[which].ha = q & 15;   if (z->img_comp[which].ha > 3) return stbi__err("bad AC huff","Corrupt JPEG");
2940 2941
      z->order[i] = which;
   }
S
Sean Barrett 已提交
2942 2943 2944 2945 2946 2947 2948 2949 2950 2951 2952 2953 2954 2955 2956 2957 2958

   {
      int aa;
      z->spec_start = stbi__get8(z->s);
      z->spec_end   = stbi__get8(z->s); // should be 63, but might be 0
      aa = stbi__get8(z->s);
      z->succ_high = (aa >> 4);
      z->succ_low  = (aa & 15);
      if (z->progressive) {
         if (z->spec_start > 63 || z->spec_end > 63  || z->spec_start > z->spec_end || z->succ_high > 13 || z->succ_low > 13)
            return stbi__err("bad SOS", "Corrupt JPEG");
      } else {
         if (z->spec_start != 0) return stbi__err("bad SOS","Corrupt JPEG");
         if (z->succ_high != 0 || z->succ_low != 0) return stbi__err("bad SOS","Corrupt JPEG");
         z->spec_end = 63;
      }
   }
2959 2960 2961 2962

   return 1;
}

2963 2964 2965 2966 2967 2968 2969 2970 2971 2972 2973 2974 2975 2976 2977 2978 2979 2980 2981 2982 2983 2984
static int stbi__free_jpeg_components(stbi__jpeg *z, int ncomp, int why)
{
   int i;
   for (i=0; i < ncomp; ++i) {
      if (z->img_comp[i].raw_data) {
         STBI_FREE(z->img_comp[i].raw_data);
         z->img_comp[i].raw_data = NULL;
         z->img_comp[i].data = NULL;
      }
      if (z->img_comp[i].raw_coeff) {
         STBI_FREE(z->img_comp[i].raw_coeff);
         z->img_comp[i].raw_coeff = 0;
         z->img_comp[i].coeff = 0;
      }
      if (z->img_comp[i].linebuf) {
         STBI_FREE(z->img_comp[i].linebuf);
         z->img_comp[i].linebuf = NULL;
      }
   }
   return why;
}

2985
static int stbi__process_frame_header(stbi__jpeg *z, int scan)
2986
{
S
Sean Barrett 已提交
2987
   stbi__context *s = z->s;
2988
   int Lf,p,i,q, h_max=1,v_max=1,c;
S
Sean Barrett 已提交
2989 2990
   Lf = stbi__get16be(s);         if (Lf < 11) return stbi__err("bad SOF len","Corrupt JPEG"); // JPEG
   p  = stbi__get8(s);            if (p != 8) return stbi__err("only 8-bit","JPEG format not supported: 8-bit only"); // JPEG baseline
2991 2992 2993
   s->img_y = stbi__get16be(s);   if (s->img_y == 0) return stbi__err("no header height", "JPEG format not supported: delayed height"); // Legal, but we don't handle it--but neither does IJG
   s->img_x = stbi__get16be(s);   if (s->img_x == 0) return stbi__err("0 width","Corrupt JPEG"); // JPEG requires
   c = stbi__get8(s);
S
Sean Barrett 已提交
2994
   if (c != 3 && c != 1) return stbi__err("bad component count","Corrupt JPEG");    // JFIF requires
2995 2996 2997 2998 2999 3000
   s->img_n = c;
   for (i=0; i < c; ++i) {
      z->img_comp[i].data = NULL;
      z->img_comp[i].linebuf = NULL;
   }

S
Sean Barrett 已提交
3001
   if (Lf != 8+3*s->img_n) return stbi__err("bad SOF len","Corrupt JPEG");
3002

3003
   z->rgb = 0;
3004
   for (i=0; i < s->img_n; ++i) {
3005
      static unsigned char rgb[3] = { 'R', 'G', 'B' };
3006
      z->img_comp[i].id = stbi__get8(s);
3007
      if (z->img_comp[i].id != i+1)   // JFIF requires
3008 3009 3010 3011 3012 3013
         if (z->img_comp[i].id != i) {  // some version of jpegtran outputs non-JFIF-compliant files!
            // somethings output this (see http://fileformats.archiveteam.org/wiki/JPEG#Color_format)
            if (z->img_comp[i].id != rgb[i])
               return stbi__err("bad component ID","Corrupt JPEG");
            ++z->rgb;
         }
3014
      q = stbi__get8(s);
S
Sean Barrett 已提交
3015 3016
      z->img_comp[i].h = (q >> 4);  if (!z->img_comp[i].h || z->img_comp[i].h > 4) return stbi__err("bad H","Corrupt JPEG");
      z->img_comp[i].v = q & 15;    if (!z->img_comp[i].v || z->img_comp[i].v > 4) return stbi__err("bad V","Corrupt JPEG");
3017
      z->img_comp[i].tq = stbi__get8(s);  if (z->img_comp[i].tq > 3) return stbi__err("bad TQ","Corrupt JPEG");
3018 3019
   }

3020
   if (scan != STBI__SCAN_load) return 1;
3021

3022
   if (!stbi__mad3sizes_valid(s->img_x, s->img_y, s->img_n, 0)) return stbi__err("too large", "Image too large to decode");
3023 3024 3025 3026 3027 3028 3029 3030 3031 3032 3033

   for (i=0; i < s->img_n; ++i) {
      if (z->img_comp[i].h > h_max) h_max = z->img_comp[i].h;
      if (z->img_comp[i].v > v_max) v_max = z->img_comp[i].v;
   }

   // compute interleaved mcu info
   z->img_h_max = h_max;
   z->img_v_max = v_max;
   z->img_mcu_w = h_max * 8;
   z->img_mcu_h = v_max * 8;
3034
   // these sizes can't be more than 17 bits
3035 3036 3037 3038
   z->img_mcu_x = (s->img_x + z->img_mcu_w-1) / z->img_mcu_w;
   z->img_mcu_y = (s->img_y + z->img_mcu_h-1) / z->img_mcu_h;

   for (i=0; i < s->img_n; ++i) {
T
Tero Hänninen 已提交
3039
      // number of effective pixels (e.g. for non-interleaved MCU)
3040 3041
      z->img_comp[i].x = (s->img_x * z->img_comp[i].h + h_max-1) / h_max;
      z->img_comp[i].y = (s->img_y * z->img_comp[i].v + v_max-1) / v_max;
3042
      // to simplify generation, we'll allocate enough memory to decode
3043
      // the bogus oversized data from using interleaved MCUs and their
T
Tero Hänninen 已提交
3044
      // big blocks (e.g. a 16x16 iMCU on an image of width 33); we won't
3045
      // discard the extra data until colorspace conversion
3046 3047 3048
      //
      // img_mcu_x, img_mcu_y: <=17 bits; comp[i].h and .v are <=4 (checked earlier)
      // so these muls can't overflow with 32-bit ints (which we require)
3049 3050
      z->img_comp[i].w2 = z->img_mcu_x * z->img_comp[i].h * 8;
      z->img_comp[i].h2 = z->img_mcu_y * z->img_comp[i].v * 8;
3051 3052 3053
      z->img_comp[i].coeff = 0;
      z->img_comp[i].raw_coeff = 0;
      z->img_comp[i].linebuf = NULL;
3054
      z->img_comp[i].raw_data = stbi__malloc_mad2(z->img_comp[i].w2, z->img_comp[i].h2, 15);
3055 3056
      if (z->img_comp[i].raw_data == NULL)
         return stbi__free_jpeg_components(z, i+1, stbi__err("outofmem", "Out of memory"));
S
Sean Barrett 已提交
3057
      // align blocks for idct using mmx/sse
3058
      z->img_comp[i].data = (stbi_uc*) (((size_t) z->img_comp[i].raw_data + 15) & ~15);
S
Sean Barrett 已提交
3059
      if (z->progressive) {
3060 3061 3062 3063
         // w2, h2 are multiples of 8 (see above)
         z->img_comp[i].coeff_w = z->img_comp[i].w2 / 8;
         z->img_comp[i].coeff_h = z->img_comp[i].h2 / 8;
         z->img_comp[i].raw_coeff = stbi__malloc_mad3(z->img_comp[i].w2, z->img_comp[i].h2, sizeof(short), 15);
3064 3065
         if (z->img_comp[i].raw_coeff == NULL)
            return stbi__free_jpeg_components(z, i+1, stbi__err("outofmem", "Out of memory"));
S
Sean Barrett 已提交
3066 3067
         z->img_comp[i].coeff = (short*) (((size_t) z->img_comp[i].raw_coeff + 15) & ~15);
      }
3068 3069 3070 3071 3072
   }

   return 1;
}

S
Sean Barrett 已提交
3073
// use comparisons since in some cases we handle more than one case (e.g. SOF)
3074 3075 3076
#define stbi__DNL(x)         ((x) == 0xdc)
#define stbi__SOI(x)         ((x) == 0xd8)
#define stbi__EOI(x)         ((x) == 0xd9)
S
Sean Barrett 已提交
3077
#define stbi__SOF(x)         ((x) == 0xc0 || (x) == 0xc1 || (x) == 0xc2)
3078
#define stbi__SOS(x)         ((x) == 0xda)
3079

S
Sean Barrett 已提交
3080 3081
#define stbi__SOF_progressive(x)   ((x) == 0xc2)

S
Sean Barrett 已提交
3082
static int stbi__decode_jpeg_header(stbi__jpeg *z, int scan)
3083 3084
{
   int m;
3085 3086
   z->marker = STBI__MARKER_none; // initialize cached marker to empty
   m = stbi__get_marker(z);
S
Sean Barrett 已提交
3087
   if (!stbi__SOI(m)) return stbi__err("no SOI","Corrupt JPEG");
3088
   if (scan == STBI__SCAN_type) return 1;
3089 3090 3091 3092 3093
   m = stbi__get_marker(z);
   while (!stbi__SOF(m)) {
      if (!stbi__process_marker(z,m)) return 0;
      m = stbi__get_marker(z);
      while (m == STBI__MARKER_none) {
3094
         // some files have extra padding after their blocks, so ok, we'll scan
S
Sean Barrett 已提交
3095
         if (stbi__at_eof(z->s)) return stbi__err("no SOF", "Corrupt JPEG");
3096
         m = stbi__get_marker(z);
3097 3098
      }
   }
S
Sean Barrett 已提交
3099
   z->progressive = stbi__SOF_progressive(m);
3100
   if (!stbi__process_frame_header(z, scan)) return 0;
3101 3102 3103
   return 1;
}

S
Sean Barrett 已提交
3104
// decode image to YCbCr format
S
Sean Barrett 已提交
3105
static int stbi__decode_jpeg_image(stbi__jpeg *j)
3106 3107
{
   int m;
3108 3109 3110 3111
   for (m = 0; m < 4; m++) {
      j->img_comp[m].raw_data = NULL;
      j->img_comp[m].raw_coeff = NULL;
   }
3112
   j->restart_interval = 0;
3113
   if (!stbi__decode_jpeg_header(j, STBI__SCAN_load)) return 0;
3114 3115 3116 3117 3118 3119
   m = stbi__get_marker(j);
   while (!stbi__EOI(m)) {
      if (stbi__SOS(m)) {
         if (!stbi__process_scan_header(j)) return 0;
         if (!stbi__parse_entropy_coded_data(j)) return 0;
         if (j->marker == STBI__MARKER_none ) {
3120
            // handle 0s at the end of image data from IP Kamera 9060
3121 3122
            while (!stbi__at_eof(j->s)) {
               int x = stbi__get8(j->s);
3123
               if (x == 255) {
3124
                  j->marker = stbi__get8(j->s);
3125 3126
                  break;
               } else if (x != 0) {
S
Sean Barrett 已提交
3127
                  return stbi__err("junk before marker", "Corrupt JPEG");
3128 3129
               }
            }
3130
            // if we reach eof without hitting a marker, stbi__get_marker() below will fail and we'll eventually return 0
3131 3132
         }
      } else {
3133
         if (!stbi__process_marker(j, m)) return 0;
3134
      }
3135
      m = stbi__get_marker(j);
3136
   }
S
Sean Barrett 已提交
3137 3138
   if (j->progressive)
      stbi__jpeg_finish(j);
3139 3140 3141 3142 3143
   return 1;
}

// static jfif-centered resampling (across block boundaries)

3144
typedef stbi_uc *(*resample_row_func)(stbi_uc *out, stbi_uc *in0, stbi_uc *in1,
3145 3146
                                    int w, int hs);

3147
#define stbi__div4(x) ((stbi_uc) ((x) >> 2))
3148

3149
static stbi_uc *resample_row_1(stbi_uc *out, stbi_uc *in_near, stbi_uc *in_far, int w, int hs)
3150 3151 3152 3153 3154 3155 3156 3157
{
   STBI_NOTUSED(out);
   STBI_NOTUSED(in_far);
   STBI_NOTUSED(w);
   STBI_NOTUSED(hs);
   return in_near;
}

3158
static stbi_uc* stbi__resample_row_v_2(stbi_uc *out, stbi_uc *in_near, stbi_uc *in_far, int w, int hs)
3159 3160 3161 3162 3163
{
   // need to generate two samples vertically for every one in input
   int i;
   STBI_NOTUSED(hs);
   for (i=0; i < w; ++i)
3164
      out[i] = stbi__div4(3*in_near[i] + in_far[i] + 2);
3165 3166 3167
   return out;
}

3168
static stbi_uc*  stbi__resample_row_h_2(stbi_uc *out, stbi_uc *in_near, stbi_uc *in_far, int w, int hs)
3169 3170 3171
{
   // need to generate two samples horizontally for every one in input
   int i;
3172
   stbi_uc *input = in_near;
3173 3174 3175 3176 3177 3178 3179 3180

   if (w == 1) {
      // if only one sample, can't do any interpolation
      out[0] = out[1] = input[0];
      return out;
   }

   out[0] = input[0];
3181
   out[1] = stbi__div4(input[0]*3 + input[1] + 2);
3182 3183
   for (i=1; i < w-1; ++i) {
      int n = 3*input[i]+2;
3184 3185
      out[i*2+0] = stbi__div4(n+input[i-1]);
      out[i*2+1] = stbi__div4(n+input[i+1]);
3186
   }
3187
   out[i*2+0] = stbi__div4(input[w-2]*3 + input[w-1] + 2);
3188 3189 3190 3191 3192 3193 3194 3195
   out[i*2+1] = input[w-1];

   STBI_NOTUSED(in_far);
   STBI_NOTUSED(hs);

   return out;
}

3196
#define stbi__div16(x) ((stbi_uc) ((x) >> 4))
3197

3198
static stbi_uc *stbi__resample_row_hv_2(stbi_uc *out, stbi_uc *in_near, stbi_uc *in_far, int w, int hs)
3199 3200 3201 3202
{
   // need to generate 2x2 samples for every one in input
   int i,t0,t1;
   if (w == 1) {
3203
      out[0] = out[1] = stbi__div4(3*in_near[0] + in_far[0] + 2);
3204 3205 3206 3207
      return out;
   }

   t1 = 3*in_near[0] + in_far[0];
3208
   out[0] = stbi__div4(t1+2);
3209 3210 3211
   for (i=1; i < w; ++i) {
      t0 = t1;
      t1 = 3*in_near[i]+in_far[i];
3212 3213
      out[i*2-1] = stbi__div16(3*t0 + t1 + 8);
      out[i*2  ] = stbi__div16(3*t1 + t0 + 8);
3214
   }
3215
   out[w*2-1] = stbi__div4(t1+2);
3216 3217 3218 3219 3220 3221

   STBI_NOTUSED(hs);

   return out;
}

3222 3223
#if defined(STBI_SSE2) || defined(STBI_NEON)
static stbi_uc *stbi__resample_row_hv_2_simd(stbi_uc *out, stbi_uc *in_near, stbi_uc *in_far, int w, int hs)
3224 3225 3226 3227 3228 3229 3230 3231 3232 3233 3234 3235 3236 3237
{
   // need to generate 2x2 samples for every one in input
   int i=0,t0,t1;

   if (w == 1) {
      out[0] = out[1] = stbi__div4(3*in_near[0] + in_far[0] + 2);
      return out;
   }

   t1 = 3*in_near[0] + in_far[0];
   // process groups of 8 pixels for as long as we can.
   // note we can't handle the last pixel in a row in this loop
   // because we need to handle the filter boundary conditions.
   for (; i < ((w-1) & ~7); i += 8) {
3238
#if defined(STBI_SSE2)
3239 3240 3241 3242 3243 3244 3245 3246 3247 3248 3249
      // load and perform the vertical filtering pass
      // this uses 3*x + y = 4*x + (y - x)
      __m128i zero  = _mm_setzero_si128();
      __m128i farb  = _mm_loadl_epi64((__m128i *) (in_far + i));
      __m128i nearb = _mm_loadl_epi64((__m128i *) (in_near + i));
      __m128i farw  = _mm_unpacklo_epi8(farb, zero);
      __m128i nearw = _mm_unpacklo_epi8(nearb, zero);
      __m128i diff  = _mm_sub_epi16(farw, nearw);
      __m128i nears = _mm_slli_epi16(nearw, 2);
      __m128i curr  = _mm_add_epi16(nears, diff); // current row

3250
      // horizontal filter works the same based on shifted vers of current
3251 3252 3253 3254 3255 3256 3257 3258 3259 3260 3261 3262 3263
      // row. "prev" is current row shifted right by 1 pixel; we need to
      // insert the previous pixel value (from t1).
      // "next" is current row shifted left by 1 pixel, with first pixel
      // of next block of 8 pixels added in.
      __m128i prv0 = _mm_slli_si128(curr, 2);
      __m128i nxt0 = _mm_srli_si128(curr, 2);
      __m128i prev = _mm_insert_epi16(prv0, t1, 0);
      __m128i next = _mm_insert_epi16(nxt0, 3*in_near[i+8] + in_far[i+8], 7);

      // horizontal filter, polyphase implementation since it's convenient:
      // even pixels = 3*cur + prev = cur*4 + (prev - cur)
      // odd  pixels = 3*cur + next = cur*4 + (next - cur)
      // note the shared term.
3264
      __m128i bias  = _mm_set1_epi16(8);
3265 3266 3267 3268 3269 3270 3271 3272 3273 3274 3275 3276 3277 3278 3279 3280
      __m128i curs = _mm_slli_epi16(curr, 2);
      __m128i prvd = _mm_sub_epi16(prev, curr);
      __m128i nxtd = _mm_sub_epi16(next, curr);
      __m128i curb = _mm_add_epi16(curs, bias);
      __m128i even = _mm_add_epi16(prvd, curb);
      __m128i odd  = _mm_add_epi16(nxtd, curb);

      // interleave even and odd pixels, then undo scaling.
      __m128i int0 = _mm_unpacklo_epi16(even, odd);
      __m128i int1 = _mm_unpackhi_epi16(even, odd);
      __m128i de0  = _mm_srli_epi16(int0, 4);
      __m128i de1  = _mm_srli_epi16(int1, 4);

      // pack and write output
      __m128i outv = _mm_packus_epi16(de0, de1);
      _mm_storeu_si128((__m128i *) (out + i*2), outv);
3281 3282 3283 3284 3285 3286 3287 3288 3289 3290 3291 3292 3293 3294 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309 3310 3311 3312 3313 3314 3315
#elif defined(STBI_NEON)
      // load and perform the vertical filtering pass
      // this uses 3*x + y = 4*x + (y - x)
      uint8x8_t farb  = vld1_u8(in_far + i);
      uint8x8_t nearb = vld1_u8(in_near + i);
      int16x8_t diff  = vreinterpretq_s16_u16(vsubl_u8(farb, nearb));
      int16x8_t nears = vreinterpretq_s16_u16(vshll_n_u8(nearb, 2));
      int16x8_t curr  = vaddq_s16(nears, diff); // current row

      // horizontal filter works the same based on shifted vers of current
      // row. "prev" is current row shifted right by 1 pixel; we need to
      // insert the previous pixel value (from t1).
      // "next" is current row shifted left by 1 pixel, with first pixel
      // of next block of 8 pixels added in.
      int16x8_t prv0 = vextq_s16(curr, curr, 7);
      int16x8_t nxt0 = vextq_s16(curr, curr, 1);
      int16x8_t prev = vsetq_lane_s16(t1, prv0, 0);
      int16x8_t next = vsetq_lane_s16(3*in_near[i+8] + in_far[i+8], nxt0, 7);

      // horizontal filter, polyphase implementation since it's convenient:
      // even pixels = 3*cur + prev = cur*4 + (prev - cur)
      // odd  pixels = 3*cur + next = cur*4 + (next - cur)
      // note the shared term.
      int16x8_t curs = vshlq_n_s16(curr, 2);
      int16x8_t prvd = vsubq_s16(prev, curr);
      int16x8_t nxtd = vsubq_s16(next, curr);
      int16x8_t even = vaddq_s16(curs, prvd);
      int16x8_t odd  = vaddq_s16(curs, nxtd);

      // undo scaling and round, then store with even/odd phases interleaved
      uint8x8x2_t o;
      o.val[0] = vqrshrun_n_s16(even, 4);
      o.val[1] = vqrshrun_n_s16(odd,  4);
      vst2_u8(out + i*2, o);
#endif
3316 3317 3318 3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3329 3330 3331 3332 3333 3334 3335 3336 3337 3338

      // "previous" value for next iter
      t1 = 3*in_near[i+7] + in_far[i+7];
   }

   t0 = t1;
   t1 = 3*in_near[i] + in_far[i];
   out[i*2] = stbi__div16(3*t1 + t0 + 8);

   for (++i; i < w; ++i) {
      t0 = t1;
      t1 = 3*in_near[i]+in_far[i];
      out[i*2-1] = stbi__div16(3*t0 + t1 + 8);
      out[i*2  ] = stbi__div16(3*t1 + t0 + 8);
   }
   out[w*2-1] = stbi__div4(t1+2);

   STBI_NOTUSED(hs);

   return out;
}
#endif

3339
static stbi_uc *stbi__resample_row_generic(stbi_uc *out, stbi_uc *in_near, stbi_uc *in_far, int w, int hs)
3340 3341 3342 3343 3344 3345 3346 3347 3348 3349
{
   // resample with nearest-neighbor
   int i,j;
   STBI_NOTUSED(in_far);
   for (i=0; i < w; ++i)
      for (j=0; j < hs; ++j)
         out[i*hs+j] = in_near[i];
   return out;
}

3350 3351 3352
#ifdef STBI_JPEG_OLD
// this is the same YCbCr-to-RGB calculation that stb_image has used
// historically before the algorithm changes in 1.49
3353
#define float2fixed(x)  ((int) ((x) * 65536 + 0.5))
3354
static void stbi__YCbCr_to_RGB_row(stbi_uc *out, const stbi_uc *y, const stbi_uc *pcb, const stbi_uc *pcr, int count, int step)
3355 3356 3357 3358 3359 3360 3361 3362 3363 3364 3365 3366 3367 3368 3369 3370
{
   int i;
   for (i=0; i < count; ++i) {
      int y_fixed = (y[i] << 16) + 32768; // rounding
      int r,g,b;
      int cr = pcr[i] - 128;
      int cb = pcb[i] - 128;
      r = y_fixed + cr*float2fixed(1.40200f);
      g = y_fixed - cr*float2fixed(0.71414f) - cb*float2fixed(0.34414f);
      b = y_fixed                            + cb*float2fixed(1.77200f);
      r >>= 16;
      g >>= 16;
      b >>= 16;
      if ((unsigned) r > 255) { if (r < 0) r = 0; else r = 255; }
      if ((unsigned) g > 255) { if (g < 0) g = 0; else g = 255; }
      if ((unsigned) b > 255) { if (b < 0) b = 0; else b = 255; }
3371 3372 3373
      out[0] = (stbi_uc)r;
      out[1] = (stbi_uc)g;
      out[2] = (stbi_uc)b;
3374 3375 3376 3377
      out[3] = 255;
      out += step;
   }
}
3378 3379 3380 3381 3382
#else
// this is a reduced-precision calculation of YCbCr-to-RGB introduced
// to make sure the code produces the same results in both SIMD and scalar
#define float2fixed(x)  (((int) ((x) * 4096.0f + 0.5f)) << 8)
static void stbi__YCbCr_to_RGB_row(stbi_uc *out, const stbi_uc *y, const stbi_uc *pcb, const stbi_uc *pcr, int count, int step)
S
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3383 3384 3385 3386 3387 3388 3389
{
   int i;
   for (i=0; i < count; ++i) {
      int y_fixed = (y[i] << 20) + (1<<19); // rounding
      int r,g,b;
      int cr = pcr[i] - 128;
      int cb = pcb[i] - 128;
3390 3391 3392
      r = y_fixed +  cr* float2fixed(1.40200f);
      g = y_fixed + (cr*-float2fixed(0.71414f)) + ((cb*-float2fixed(0.34414f)) & 0xffff0000);
      b = y_fixed                               +   cb* float2fixed(1.77200f);
S
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3393 3394 3395 3396 3397 3398 3399 3400 3401 3402 3403 3404 3405
      r >>= 20;
      g >>= 20;
      b >>= 20;
      if ((unsigned) r > 255) { if (r < 0) r = 0; else r = 255; }
      if ((unsigned) g > 255) { if (g < 0) g = 0; else g = 255; }
      if ((unsigned) b > 255) { if (b < 0) b = 0; else b = 255; }
      out[0] = (stbi_uc)r;
      out[1] = (stbi_uc)g;
      out[2] = (stbi_uc)b;
      out[3] = 255;
      out += step;
   }
}
3406
#endif
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3407

F
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3408 3409
#if defined(STBI_SSE2) || defined(STBI_NEON)
static void stbi__YCbCr_to_RGB_simd(stbi_uc *out, stbi_uc const *y, stbi_uc const *pcb, stbi_uc const *pcr, int count, int step)
F
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3410 3411 3412
{
   int i = 0;

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3413
#ifdef STBI_SSE2
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3414 3415 3416 3417 3418
   // step == 3 is pretty ugly on the final interleave, and i'm not convinced
   // it's useful in practice (you wouldn't use it for textures, for example).
   // so just accelerate step == 4 case.
   if (step == 4) {
      // this is a fairly straightforward implementation and not super-optimized.
3419
      __m128i signflip  = _mm_set1_epi8(-0x80);
S
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3420 3421 3422 3423
      __m128i cr_const0 = _mm_set1_epi16(   (short) ( 1.40200f*4096.0f+0.5f));
      __m128i cr_const1 = _mm_set1_epi16( - (short) ( 0.71414f*4096.0f+0.5f));
      __m128i cb_const0 = _mm_set1_epi16( - (short) ( 0.34414f*4096.0f+0.5f));
      __m128i cb_const1 = _mm_set1_epi16(   (short) ( 1.77200f*4096.0f+0.5f));
3424
      __m128i y_bias = _mm_set1_epi8((char) (unsigned char) 128);
S
VC6:  
Sean Barrett 已提交
3425
      __m128i xw = _mm_set1_epi16(255); // alpha channel
F
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3426 3427 3428 3429 3430 3431

      for (; i+7 < count; i += 8) {
         // load
         __m128i y_bytes = _mm_loadl_epi64((__m128i *) (y+i));
         __m128i cr_bytes = _mm_loadl_epi64((__m128i *) (pcr+i));
         __m128i cb_bytes = _mm_loadl_epi64((__m128i *) (pcb+i));
S
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3432 3433
         __m128i cr_biased = _mm_xor_si128(cr_bytes, signflip); // -128
         __m128i cb_biased = _mm_xor_si128(cb_bytes, signflip); // -128
F
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3434 3435

         // unpack to short (and left-shift cr, cb by 8)
S
VC6:  
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3436 3437 3438
         __m128i yw  = _mm_unpacklo_epi8(y_bias, y_bytes);
         __m128i crw = _mm_unpacklo_epi8(_mm_setzero_si128(), cr_biased);
         __m128i cbw = _mm_unpacklo_epi8(_mm_setzero_si128(), cb_biased);
F
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3439 3440

         // color transform
S
VC6:  
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3441
         __m128i yws = _mm_srli_epi16(yw, 4);
F
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3442 3443 3444 3445
         __m128i cr0 = _mm_mulhi_epi16(cr_const0, crw);
         __m128i cb0 = _mm_mulhi_epi16(cb_const0, cbw);
         __m128i cb1 = _mm_mulhi_epi16(cbw, cb_const1);
         __m128i cr1 = _mm_mulhi_epi16(crw, cr_const1);
S
VC6:  
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3446 3447 3448
         __m128i rws = _mm_add_epi16(cr0, yws);
         __m128i gwt = _mm_add_epi16(cb0, yws);
         __m128i bws = _mm_add_epi16(yws, cb1);
F
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3449 3450 3451 3452 3453 3454 3455 3456 3457 3458 3459 3460 3461 3462 3463 3464 3465 3466 3467 3468 3469 3470 3471
         __m128i gws = _mm_add_epi16(gwt, cr1);

         // descale
         __m128i rw = _mm_srai_epi16(rws, 4);
         __m128i bw = _mm_srai_epi16(bws, 4);
         __m128i gw = _mm_srai_epi16(gws, 4);

         // back to byte, set up for transpose
         __m128i brb = _mm_packus_epi16(rw, bw);
         __m128i gxb = _mm_packus_epi16(gw, xw);

         // transpose to interleave channels
         __m128i t0 = _mm_unpacklo_epi8(brb, gxb);
         __m128i t1 = _mm_unpackhi_epi8(brb, gxb);
         __m128i o0 = _mm_unpacklo_epi16(t0, t1);
         __m128i o1 = _mm_unpackhi_epi16(t0, t1);

         // store
         _mm_storeu_si128((__m128i *) (out + 0), o0);
         _mm_storeu_si128((__m128i *) (out + 16), o1);
         out += 32;
      }
   }
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3472 3473 3474 3475 3476 3477 3478 3479 3480 3481 3482 3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495 3496 3497 3498 3499 3500 3501 3502 3503 3504 3505 3506 3507 3508 3509 3510 3511 3512 3513 3514 3515 3516 3517 3518
#endif

#ifdef STBI_NEON
   // in this version, step=3 support would be easy to add. but is there demand?
   if (step == 4) {
      // this is a fairly straightforward implementation and not super-optimized.
      uint8x8_t signflip = vdup_n_u8(0x80);
      int16x8_t cr_const0 = vdupq_n_s16(   (short) ( 1.40200f*4096.0f+0.5f));
      int16x8_t cr_const1 = vdupq_n_s16( - (short) ( 0.71414f*4096.0f+0.5f));
      int16x8_t cb_const0 = vdupq_n_s16( - (short) ( 0.34414f*4096.0f+0.5f));
      int16x8_t cb_const1 = vdupq_n_s16(   (short) ( 1.77200f*4096.0f+0.5f));

      for (; i+7 < count; i += 8) {
         // load
         uint8x8_t y_bytes  = vld1_u8(y + i);
         uint8x8_t cr_bytes = vld1_u8(pcr + i);
         uint8x8_t cb_bytes = vld1_u8(pcb + i);
         int8x8_t cr_biased = vreinterpret_s8_u8(vsub_u8(cr_bytes, signflip));
         int8x8_t cb_biased = vreinterpret_s8_u8(vsub_u8(cb_bytes, signflip));

         // expand to s16
         int16x8_t yws = vreinterpretq_s16_u16(vshll_n_u8(y_bytes, 4));
         int16x8_t crw = vshll_n_s8(cr_biased, 7);
         int16x8_t cbw = vshll_n_s8(cb_biased, 7);

         // color transform
         int16x8_t cr0 = vqdmulhq_s16(crw, cr_const0);
         int16x8_t cb0 = vqdmulhq_s16(cbw, cb_const0);
         int16x8_t cr1 = vqdmulhq_s16(crw, cr_const1);
         int16x8_t cb1 = vqdmulhq_s16(cbw, cb_const1);
         int16x8_t rws = vaddq_s16(yws, cr0);
         int16x8_t gws = vaddq_s16(vaddq_s16(yws, cb0), cr1);
         int16x8_t bws = vaddq_s16(yws, cb1);

         // undo scaling, round, convert to byte
         uint8x8x4_t o;
         o.val[0] = vqrshrun_n_s16(rws, 4);
         o.val[1] = vqrshrun_n_s16(gws, 4);
         o.val[2] = vqrshrun_n_s16(bws, 4);
         o.val[3] = vdup_n_u8(255);

         // store, interleaving r/g/b/a
         vst4_u8(out, o);
         out += 8*4;
      }
   }
#endif
3519

F
Fabian Giesen 已提交
3520
   for (; i < count; ++i) {
3521
      int y_fixed = (y[i] << 20) + (1<<19); // rounding
F
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3522 3523 3524
      int r,g,b;
      int cr = pcr[i] - 128;
      int cb = pcb[i] - 128;
3525 3526 3527 3528 3529 3530
      r = y_fixed + cr* float2fixed(1.40200f);
      g = y_fixed + cr*-float2fixed(0.71414f) + ((cb*-float2fixed(0.34414f)) & 0xffff0000);
      b = y_fixed                             +   cb* float2fixed(1.77200f);
      r >>= 20;
      g >>= 20;
      b >>= 20;
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3531 3532 3533 3534 3535 3536 3537 3538 3539
      if ((unsigned) r > 255) { if (r < 0) r = 0; else r = 255; }
      if ((unsigned) g > 255) { if (g < 0) g = 0; else g = 255; }
      if ((unsigned) b > 255) { if (b < 0) b = 0; else b = 255; }
      out[0] = (stbi_uc)r;
      out[1] = (stbi_uc)g;
      out[2] = (stbi_uc)b;
      out[3] = 255;
      out += step;
   }
3540 3541 3542
}
#endif

3543 3544 3545 3546
// set up the kernels
static void stbi__setup_jpeg(stbi__jpeg *j)
{
   j->idct_block_kernel = stbi__idct_block;
F
Fabian Giesen 已提交
3547
   j->YCbCr_to_RGB_kernel = stbi__YCbCr_to_RGB_row;
3548
   j->resample_row_hv_2_kernel = stbi__resample_row_hv_2;
3549 3550 3551

#ifdef STBI_SSE2
   if (stbi__sse2_available()) {
3552
      j->idct_block_kernel = stbi__idct_simd;
3553
      #ifndef STBI_JPEG_OLD
F
Fabian Giesen 已提交
3554
      j->YCbCr_to_RGB_kernel = stbi__YCbCr_to_RGB_simd;
3555
      #endif
3556
      j->resample_row_hv_2_kernel = stbi__resample_row_hv_2_simd;
3557 3558
   }
#endif
3559 3560

#ifdef STBI_NEON
3561
   j->idct_block_kernel = stbi__idct_simd;
S
Sean Barrett 已提交
3562
   #ifndef STBI_JPEG_OLD
F
Fabian Giesen 已提交
3563
   j->YCbCr_to_RGB_kernel = stbi__YCbCr_to_RGB_simd;
S
Sean Barrett 已提交
3564
   #endif
3565 3566
   j->resample_row_hv_2_kernel = stbi__resample_row_hv_2_simd;
#endif
3567
}
3568 3569

// clean up the temporary component buffers
3570
static void stbi__cleanup_jpeg(stbi__jpeg *j)
3571
{
3572
   stbi__free_jpeg_components(j, j->s->img_n, 0);
3573 3574 3575 3576 3577
}

typedef struct
{
   resample_row_func resample;
3578
   stbi_uc *line0,*line1;
3579
   int hs,vs;   // expansion factor in each axis
S
Sean Barrett 已提交
3580
   int w_lores; // horizontal pixels pre-expansion
3581 3582
   int ystep;   // how far through vertical expansion we are
   int ypos;    // which pre-expansion row we're on
3583
} stbi__resample;
3584

3585
static stbi_uc *load_jpeg_image(stbi__jpeg *z, int *out_x, int *out_y, int *comp, int req_comp)
3586 3587
{
   int n, decode_n;
3588 3589
   z->s->img_n = 0; // make stbi__cleanup_jpeg safe

3590
   // validate req_comp
S
Sean Barrett 已提交
3591
   if (req_comp < 0 || req_comp > 4) return stbi__errpuc("bad req_comp", "Internal error");
3592

S
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3593
   // load a jpeg image from whichever source, but leave in YCbCr format
S
Sean Barrett 已提交
3594
   if (!stbi__decode_jpeg_image(z)) { stbi__cleanup_jpeg(z); return NULL; }
3595 3596 3597 3598 3599 3600 3601 3602 3603 3604 3605 3606 3607

   // determine actual number of components to generate
   n = req_comp ? req_comp : z->s->img_n;

   if (z->s->img_n == 3 && n < 3)
      decode_n = 1;
   else
      decode_n = z->s->img_n;

   // resample and color-convert
   {
      int k;
      unsigned int i,j;
3608 3609
      stbi_uc *output;
      stbi_uc *coutput[4];
3610

3611
      stbi__resample res_comp[4];
3612 3613

      for (k=0; k < decode_n; ++k) {
3614
         stbi__resample *r = &res_comp[k];
3615 3616 3617

         // allocate line buffer big enough for upsampling off the edges
         // with upsample factor of 4
3618
         z->img_comp[k].linebuf = (stbi_uc *) stbi__malloc(z->s->img_x + 3);
3619
         if (!z->img_comp[k].linebuf) { stbi__cleanup_jpeg(z); return stbi__errpuc("outofmem", "Out of memory"); }
3620 3621 3622 3623 3624 3625 3626 3627 3628

         r->hs      = z->img_h_max / z->img_comp[k].h;
         r->vs      = z->img_v_max / z->img_comp[k].v;
         r->ystep   = r->vs >> 1;
         r->w_lores = (z->s->img_x + r->hs-1) / r->hs;
         r->ypos    = 0;
         r->line0   = r->line1 = z->img_comp[k].data;

         if      (r->hs == 1 && r->vs == 1) r->resample = resample_row_1;
3629 3630
         else if (r->hs == 1 && r->vs == 2) r->resample = stbi__resample_row_v_2;
         else if (r->hs == 2 && r->vs == 1) r->resample = stbi__resample_row_h_2;
3631
         else if (r->hs == 2 && r->vs == 2) r->resample = z->resample_row_hv_2_kernel;
3632
         else                               r->resample = stbi__resample_row_generic;
3633 3634 3635
      }

      // can't error after this so, this is safe
3636
      output = (stbi_uc *) stbi__malloc_mad3(n, z->s->img_x, z->s->img_y, 1);
3637
      if (!output) { stbi__cleanup_jpeg(z); return stbi__errpuc("outofmem", "Out of memory"); }
3638 3639 3640

      // now go ahead and resample
      for (j=0; j < z->s->img_y; ++j) {
3641
         stbi_uc *out = output + n * z->s->img_x * j;
3642
         for (k=0; k < decode_n; ++k) {
3643
            stbi__resample *r = &res_comp[k];
3644 3645 3646 3647 3648 3649 3650 3651 3652 3653 3654 3655 3656
            int y_bot = r->ystep >= (r->vs >> 1);
            coutput[k] = r->resample(z->img_comp[k].linebuf,
                                     y_bot ? r->line1 : r->line0,
                                     y_bot ? r->line0 : r->line1,
                                     r->w_lores, r->hs);
            if (++r->ystep >= r->vs) {
               r->ystep = 0;
               r->line0 = r->line1;
               if (++r->ypos < z->img_comp[k].y)
                  r->line1 += z->img_comp[k].w2;
            }
         }
         if (n >= 3) {
3657
            stbi_uc *y = coutput[0];
3658
            if (z->s->img_n == 3) {
3659 3660 3661 3662 3663 3664 3665 3666 3667 3668 3669
               if (z->rgb == 3) {
                  for (i=0; i < z->s->img_x; ++i) {
                     out[0] = y[i];
                     out[1] = coutput[1][i];
                     out[2] = coutput[2][i];
                     out[3] = 255;
                     out += n;
                  }
               } else {
                  z->YCbCr_to_RGB_kernel(out, y, coutput[1], coutput[2], z->s->img_x, n);
               }
3670 3671 3672 3673 3674 3675 3676
            } else
               for (i=0; i < z->s->img_x; ++i) {
                  out[0] = out[1] = out[2] = y[i];
                  out[3] = 255; // not used if n==3
                  out += n;
               }
         } else {
3677
            stbi_uc *y = coutput[0];
3678 3679 3680 3681 3682 3683
            if (n == 1)
               for (i=0; i < z->s->img_x; ++i) out[i] = y[i];
            else
               for (i=0; i < z->s->img_x; ++i) *out++ = y[i], *out++ = 255;
         }
      }
3684
      stbi__cleanup_jpeg(z);
3685 3686 3687 3688 3689 3690 3691
      *out_x = z->s->img_x;
      *out_y = z->s->img_y;
      if (comp) *comp  = z->s->img_n; // report original components, not output
      return output;
   }
}

S
Sean Barrett 已提交
3692
static void *stbi__jpeg_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri)
3693
{
3694 3695 3696 3697 3698 3699 3700
   unsigned char* result;
   stbi__jpeg* j = (stbi__jpeg*) stbi__malloc(sizeof(stbi__jpeg));
   j->s = s;
   stbi__setup_jpeg(j);
   result = load_jpeg_image(j, x,y,comp,req_comp);
   STBI_FREE(j);
   return result;
3701 3702
}

S
Sean Barrett 已提交
3703
static int stbi__jpeg_test(stbi__context *s)
3704 3705
{
   int r;
3706
   stbi__jpeg j;
3707
   j.s = s;
3708
   stbi__setup_jpeg(&j);
3709
   r = stbi__decode_jpeg_header(&j, STBI__SCAN_type);
3710
   stbi__rewind(s);
3711 3712 3713
   return r;
}

3714
static int stbi__jpeg_info_raw(stbi__jpeg *j, int *x, int *y, int *comp)
3715
{
3716
   if (!stbi__decode_jpeg_header(j, STBI__SCAN_header)) {
3717
      stbi__rewind( j->s );
3718 3719 3720 3721 3722 3723 3724 3725
      return 0;
   }
   if (x) *x = j->s->img_x;
   if (y) *y = j->s->img_y;
   if (comp) *comp = j->s->img_n;
   return 1;
}

S
Sean Barrett 已提交
3726
static int stbi__jpeg_info(stbi__context *s, int *x, int *y, int *comp)
3727
{
3728 3729 3730 3731 3732 3733
   int result;
   stbi__jpeg* j = (stbi__jpeg*) (stbi__malloc(sizeof(stbi__jpeg)));
   j->s = s;
   result = stbi__jpeg_info_raw(j, x, y, comp);
   STBI_FREE(j);
   return result;
3734
}
3735
#endif
3736

3737
// public domain zlib decode    v0.2  Sean Barrett 2006-11-18
3738 3739 3740 3741 3742 3743
//    simple implementation
//      - all input must be provided in an upfront buffer
//      - all output is written to a single output buffer (can malloc/realloc)
//    performance
//      - fast huffman

3744 3745
#ifndef STBI_NO_ZLIB

3746
// fast-way is faster to check than jpeg huffman, but slow way is slower
3747 3748
#define STBI__ZFAST_BITS  9 // accelerate all cases in default tables
#define STBI__ZFAST_MASK  ((1 << STBI__ZFAST_BITS) - 1)
3749 3750 3751 3752 3753

// zlib-style huffman encoding
// (jpegs packs from left, zlib from right, so can't share code)
typedef struct
{
3754
   stbi__uint16 fast[1 << STBI__ZFAST_BITS];
3755 3756 3757
   stbi__uint16 firstcode[16];
   int maxcode[17];
   stbi__uint16 firstsymbol[16];
3758
   stbi_uc  size[288];
S
Sean Barrett 已提交
3759
   stbi__uint16 value[288];
3760
} stbi__zhuffman;
3761

3762
stbi_inline static int stbi__bitreverse16(int n)
3763 3764 3765 3766 3767 3768 3769 3770
{
  n = ((n & 0xAAAA) >>  1) | ((n & 0x5555) << 1);
  n = ((n & 0xCCCC) >>  2) | ((n & 0x3333) << 2);
  n = ((n & 0xF0F0) >>  4) | ((n & 0x0F0F) << 4);
  n = ((n & 0xFF00) >>  8) | ((n & 0x00FF) << 8);
  return n;
}

3771
stbi_inline static int stbi__bit_reverse(int v, int bits)
3772
{
S
Sean Barrett 已提交
3773
   STBI_ASSERT(bits <= 16);
3774
   // to bit reverse n bits, reverse 16 and shift
T
Tero Hänninen 已提交
3775
   // e.g. 11 bits, bit reverse and shift away 5
3776
   return stbi__bitreverse16(v) >> (16-bits);
3777 3778
}

3779
static int stbi__zbuild_huffman(stbi__zhuffman *z, stbi_uc *sizelist, int num)
3780 3781 3782 3783 3784 3785
{
   int i,k=0;
   int code, next_code[16], sizes[17];

   // DEFLATE spec for generating codes
   memset(sizes, 0, sizeof(sizes));
3786
   memset(z->fast, 0, sizeof(z->fast));
S
Sean Barrett 已提交
3787
   for (i=0; i < num; ++i)
3788 3789
      ++sizes[sizelist[i]];
   sizes[0] = 0;
3790 3791 3792
   for (i=1; i < 16; ++i)
      if (sizes[i] > (1 << i))
         return stbi__err("bad sizes", "Corrupt PNG");
3793 3794 3795 3796 3797 3798 3799
   code = 0;
   for (i=1; i < 16; ++i) {
      next_code[i] = code;
      z->firstcode[i] = (stbi__uint16) code;
      z->firstsymbol[i] = (stbi__uint16) k;
      code = (code + sizes[i]);
      if (sizes[i])
3800
         if (code-1 >= (1 << i)) return stbi__err("bad codelengths","Corrupt PNG");
3801 3802 3803 3804 3805 3806 3807 3808 3809
      z->maxcode[i] = code << (16-i); // preshift for inner loop
      code <<= 1;
      k += sizes[i];
   }
   z->maxcode[16] = 0x10000; // sentinel
   for (i=0; i < num; ++i) {
      int s = sizelist[i];
      if (s) {
         int c = next_code[s] - z->firstcode[s] + z->firstsymbol[s];
3810
         stbi__uint16 fastv = (stbi__uint16) ((s << 9) | i);
3811 3812
         z->size [c] = (stbi_uc     ) s;
         z->value[c] = (stbi__uint16) i;
3813
         if (s <= STBI__ZFAST_BITS) {
S
Sean Barrett 已提交
3814 3815 3816 3817
            int j = stbi__bit_reverse(next_code[s],s);
            while (j < (1 << STBI__ZFAST_BITS)) {
               z->fast[j] = fastv;
               j += (1 << s);
3818 3819 3820 3821 3822 3823 3824 3825 3826 3827 3828 3829 3830 3831 3832 3833
            }
         }
         ++next_code[s];
      }
   }
   return 1;
}

// zlib-from-memory implementation for PNG reading
//    because PNG allows splitting the zlib stream arbitrarily,
//    and it's annoying structurally to have PNG call ZLIB call PNG,
//    we require PNG read all the IDATs and combine them into a single
//    memory buffer

typedef struct
{
3834
   stbi_uc *zbuffer, *zbuffer_end;
3835 3836 3837 3838 3839 3840 3841 3842
   int num_bits;
   stbi__uint32 code_buffer;

   char *zout;
   char *zout_start;
   char *zout_end;
   int   z_expandable;

3843 3844
   stbi__zhuffman z_length, z_distance;
} stbi__zbuf;
3845

3846
stbi_inline static stbi_uc stbi__zget8(stbi__zbuf *z)
3847 3848 3849 3850 3851
{
   if (z->zbuffer >= z->zbuffer_end) return 0;
   return *z->zbuffer++;
}

3852
static void stbi__fill_bits(stbi__zbuf *z)
3853 3854
{
   do {
S
Sean Barrett 已提交
3855
      STBI_ASSERT(z->code_buffer < (1U << z->num_bits));
3856
      z->code_buffer |= (unsigned int) stbi__zget8(z) << z->num_bits;
3857 3858 3859 3860
      z->num_bits += 8;
   } while (z->num_bits <= 24);
}

3861
stbi_inline static unsigned int stbi__zreceive(stbi__zbuf *z, int n)
3862 3863
{
   unsigned int k;
3864
   if (z->num_bits < n) stbi__fill_bits(z);
3865 3866 3867
   k = z->code_buffer & ((1 << n) - 1);
   z->code_buffer >>= n;
   z->num_bits -= n;
S
Sean Barrett 已提交
3868
   return k;
3869 3870
}

3871
static int stbi__zhuffman_decode_slowpath(stbi__zbuf *a, stbi__zhuffman *z)
3872 3873 3874 3875
{
   int b,s,k;
   // not resolved by fast table, so compute it the slow way
   // use jpeg approach, which requires MSbits at top
3876 3877
   k = stbi__bit_reverse(a->code_buffer, 16);
   for (s=STBI__ZFAST_BITS+1; ; ++s)
3878 3879 3880 3881 3882
      if (k < z->maxcode[s])
         break;
   if (s == 16) return -1; // invalid code!
   // code size is s, so:
   b = (k >> (16-s)) - z->firstcode[s] + z->firstsymbol[s];
S
Sean Barrett 已提交
3883
   STBI_ASSERT(z->size[b] == s);
3884 3885 3886 3887 3888
   a->code_buffer >>= s;
   a->num_bits -= s;
   return z->value[b];
}

3889 3890 3891 3892 3893
stbi_inline static int stbi__zhuffman_decode(stbi__zbuf *a, stbi__zhuffman *z)
{
   int b,s;
   if (a->num_bits < 16) stbi__fill_bits(a);
   b = z->fast[a->code_buffer & STBI__ZFAST_MASK];
3894 3895
   if (b) {
      s = b >> 9;
3896 3897
      a->code_buffer >>= s;
      a->num_bits -= s;
3898
      return b & 511;
3899 3900 3901 3902
   }
   return stbi__zhuffman_decode_slowpath(a, z);
}

3903
static int stbi__zexpand(stbi__zbuf *z, char *zout, int n)  // need to make room for n bytes
3904 3905
{
   char *q;
3906
   int cur, limit, old_limit;
3907
   z->zout = zout;
S
Sean Barrett 已提交
3908
   if (!z->z_expandable) return stbi__err("output buffer limit","Corrupt PNG");
3909
   cur   = (int) (z->zout     - z->zout_start);
3910
   limit = old_limit = (int) (z->zout_end - z->zout_start);
3911 3912
   while (cur + n > limit)
      limit *= 2;
3913
   q = (char *) STBI_REALLOC_SIZED(z->zout_start, old_limit, limit);
3914
   STBI_NOTUSED(old_limit);
S
Sean Barrett 已提交
3915
   if (q == NULL) return stbi__err("outofmem", "Out of memory");
3916 3917 3918 3919 3920 3921
   z->zout_start = q;
   z->zout       = q + cur;
   z->zout_end   = q + limit;
   return 1;
}

3922
static int stbi__zlength_base[31] = {
3923 3924 3925 3926
   3,4,5,6,7,8,9,10,11,13,
   15,17,19,23,27,31,35,43,51,59,
   67,83,99,115,131,163,195,227,258,0,0 };

S
Sean Barrett 已提交
3927
static int stbi__zlength_extra[31]=
3928 3929
{ 0,0,0,0,0,0,0,0,1,1,1,1,2,2,2,2,3,3,3,3,4,4,4,4,5,5,5,5,0,0,0 };

3930
static int stbi__zdist_base[32] = { 1,2,3,4,5,7,9,13,17,25,33,49,65,97,129,193,
3931 3932
257,385,513,769,1025,1537,2049,3073,4097,6145,8193,12289,16385,24577,0,0};

3933
static int stbi__zdist_extra[32] =
3934 3935
{ 0,0,0,0,1,1,2,2,3,3,4,4,5,5,6,6,7,7,8,8,9,9,10,10,11,11,12,12,13,13};

3936
static int stbi__parse_huffman_block(stbi__zbuf *a)
3937
{
3938
   char *zout = a->zout;
3939
   for(;;) {
3940
      int z = stbi__zhuffman_decode(a, &a->z_length);
3941
      if (z < 256) {
S
Sean Barrett 已提交
3942
         if (z < 0) return stbi__err("bad huffman code","Corrupt PNG"); // error in huffman codes
3943 3944 3945 3946 3947
         if (zout >= a->zout_end) {
            if (!stbi__zexpand(a, zout, 1)) return 0;
            zout = a->zout;
         }
         *zout++ = (char) z;
3948
      } else {
3949
         stbi_uc *p;
3950
         int len,dist;
3951 3952 3953 3954
         if (z == 256) {
            a->zout = zout;
            return 1;
         }
3955
         z -= 257;
3956 3957 3958
         len = stbi__zlength_base[z];
         if (stbi__zlength_extra[z]) len += stbi__zreceive(a, stbi__zlength_extra[z]);
         z = stbi__zhuffman_decode(a, &a->z_distance);
S
Sean Barrett 已提交
3959
         if (z < 0) return stbi__err("bad huffman code","Corrupt PNG");
3960 3961
         dist = stbi__zdist_base[z];
         if (stbi__zdist_extra[z]) dist += stbi__zreceive(a, stbi__zdist_extra[z]);
3962 3963 3964 3965 3966 3967
         if (zout - a->zout_start < dist) return stbi__err("bad dist","Corrupt PNG");
         if (zout + len > a->zout_end) {
            if (!stbi__zexpand(a, zout, len)) return 0;
            zout = a->zout;
         }
         p = (stbi_uc *) (zout - dist);
3968 3969
         if (dist == 1) { // run of one byte; common in images.
            stbi_uc v = *p;
3970
            if (len) { do *zout++ = v; while (--len); }
3971
         } else {
3972
            if (len) { do *zout++ = *p++; while (--len); }
3973
         }
3974 3975 3976 3977
      }
   }
}

3978
static int stbi__compute_huffman_codes(stbi__zbuf *a)
3979
{
3980
   static stbi_uc length_dezigzag[19] = { 16,17,18,0,8,7,9,6,10,5,11,4,12,3,13,2,14,1,15 };
3981
   stbi__zhuffman z_codelength;
3982 3983
   stbi_uc lencodes[286+32+137];//padding for maximum single op
   stbi_uc codelength_sizes[19];
3984 3985
   int i,n;

3986 3987 3988
   int hlit  = stbi__zreceive(a,5) + 257;
   int hdist = stbi__zreceive(a,5) + 1;
   int hclen = stbi__zreceive(a,4) + 4;
3989
   int ntot  = hlit + hdist;
3990 3991 3992

   memset(codelength_sizes, 0, sizeof(codelength_sizes));
   for (i=0; i < hclen; ++i) {
3993
      int s = stbi__zreceive(a,3);
3994
      codelength_sizes[length_dezigzag[i]] = (stbi_uc) s;
3995
   }
3996
   if (!stbi__zbuild_huffman(&z_codelength, codelength_sizes, 19)) return 0;
3997 3998

   n = 0;
3999
   while (n < ntot) {
4000
      int c = stbi__zhuffman_decode(a, &z_codelength);
4001
      if (c < 0 || c >= 19) return stbi__err("bad codelengths", "Corrupt PNG");
4002
      if (c < 16)
4003
         lencodes[n++] = (stbi_uc) c;
4004 4005 4006 4007 4008 4009 4010 4011 4012 4013 4014 4015 4016 4017
      else {
         stbi_uc fill = 0;
         if (c == 16) {
            c = stbi__zreceive(a,2)+3;
            if (n == 0) return stbi__err("bad codelengths", "Corrupt PNG");
            fill = lencodes[n-1];
         } else if (c == 17)
            c = stbi__zreceive(a,3)+3;
         else {
            STBI_ASSERT(c == 18);
            c = stbi__zreceive(a,7)+11;
         }
         if (ntot - n < c) return stbi__err("bad codelengths", "Corrupt PNG");
         memset(lencodes+n, fill, c);
4018 4019 4020
         n += c;
      }
   }
4021
   if (n != ntot) return stbi__err("bad codelengths","Corrupt PNG");
4022 4023
   if (!stbi__zbuild_huffman(&a->z_length, lencodes, hlit)) return 0;
   if (!stbi__zbuild_huffman(&a->z_distance, lencodes+hlit, hdist)) return 0;
4024 4025 4026
   return 1;
}

4027
static int stbi__parse_uncompressed_block(stbi__zbuf *a)
4028
{
4029
   stbi_uc header[4];
4030 4031
   int len,nlen,k;
   if (a->num_bits & 7)
4032
      stbi__zreceive(a, a->num_bits & 7); // discard
4033 4034 4035
   // drain the bit-packed data into header
   k = 0;
   while (a->num_bits > 0) {
4036
      header[k++] = (stbi_uc) (a->code_buffer & 255); // suppress MSVC run-time check
4037 4038 4039
      a->code_buffer >>= 8;
      a->num_bits -= 8;
   }
S
Sean Barrett 已提交
4040
   STBI_ASSERT(a->num_bits == 0);
4041 4042
   // now fill header the normal way
   while (k < 4)
4043
      header[k++] = stbi__zget8(a);
4044 4045
   len  = header[1] * 256 + header[0];
   nlen = header[3] * 256 + header[2];
S
Sean Barrett 已提交
4046 4047
   if (nlen != (len ^ 0xffff)) return stbi__err("zlib corrupt","Corrupt PNG");
   if (a->zbuffer + len > a->zbuffer_end) return stbi__err("read past buffer","Corrupt PNG");
4048
   if (a->zout + len > a->zout_end)
4049
      if (!stbi__zexpand(a, a->zout, len)) return 0;
4050 4051 4052 4053 4054 4055
   memcpy(a->zout, a->zbuffer, len);
   a->zbuffer += len;
   a->zout += len;
   return 1;
}

4056
static int stbi__parse_zlib_header(stbi__zbuf *a)
4057
{
4058
   int cmf   = stbi__zget8(a);
4059 4060
   int cm    = cmf & 15;
   /* int cinfo = cmf >> 4; */
4061
   int flg   = stbi__zget8(a);
S
Sean Barrett 已提交
4062 4063 4064
   if ((cmf*256+flg) % 31 != 0) return stbi__err("bad zlib header","Corrupt PNG"); // zlib spec
   if (flg & 32) return stbi__err("no preset dict","Corrupt PNG"); // preset dictionary not allowed in png
   if (cm != 8) return stbi__err("bad compression","Corrupt PNG"); // DEFLATE required for png
4065 4066 4067 4068 4069
   // window = 1 << (8 + cinfo)... but who cares, we fully buffer output
   return 1;
}

// @TODO: should statically initialize these for optimal thread safety
4070
static stbi_uc stbi__zdefault_length[288], stbi__zdefault_distance[32];
4071
static void stbi__init_zdefaults(void)
4072 4073
{
   int i;   // use <= to match clearly with spec
4074 4075 4076 4077
   for (i=0; i <= 143; ++i)     stbi__zdefault_length[i]   = 8;
   for (   ; i <= 255; ++i)     stbi__zdefault_length[i]   = 9;
   for (   ; i <= 279; ++i)     stbi__zdefault_length[i]   = 7;
   for (   ; i <= 287; ++i)     stbi__zdefault_length[i]   = 8;
4078

4079
   for (i=0; i <=  31; ++i)     stbi__zdefault_distance[i] = 5;
4080 4081
}

4082
static int stbi__parse_zlib(stbi__zbuf *a, int parse_header)
4083 4084 4085
{
   int final, type;
   if (parse_header)
4086
      if (!stbi__parse_zlib_header(a)) return 0;
4087 4088 4089
   a->num_bits = 0;
   a->code_buffer = 0;
   do {
4090 4091
      final = stbi__zreceive(a,1);
      type = stbi__zreceive(a,2);
4092
      if (type == 0) {
4093
         if (!stbi__parse_uncompressed_block(a)) return 0;
4094 4095 4096 4097 4098
      } else if (type == 3) {
         return 0;
      } else {
         if (type == 1) {
            // use fixed code lengths
4099 4100 4101
            if (!stbi__zdefault_distance[31]) stbi__init_zdefaults();
            if (!stbi__zbuild_huffman(&a->z_length  , stbi__zdefault_length  , 288)) return 0;
            if (!stbi__zbuild_huffman(&a->z_distance, stbi__zdefault_distance,  32)) return 0;
4102
         } else {
4103
            if (!stbi__compute_huffman_codes(a)) return 0;
4104
         }
4105
         if (!stbi__parse_huffman_block(a)) return 0;
4106 4107 4108 4109 4110
      }
   } while (!final);
   return 1;
}

4111
static int stbi__do_zlib(stbi__zbuf *a, char *obuf, int olen, int exp, int parse_header)
4112 4113 4114 4115 4116 4117
{
   a->zout_start = obuf;
   a->zout       = obuf;
   a->zout_end   = obuf + olen;
   a->z_expandable = exp;

4118
   return stbi__parse_zlib(a, parse_header);
4119 4120 4121 4122
}

STBIDEF char *stbi_zlib_decode_malloc_guesssize(const char *buffer, int len, int initial_size, int *outlen)
{
4123
   stbi__zbuf a;
4124
   char *p = (char *) stbi__malloc(initial_size);
4125
   if (p == NULL) return NULL;
4126 4127
   a.zbuffer = (stbi_uc *) buffer;
   a.zbuffer_end = (stbi_uc *) buffer + len;
4128
   if (stbi__do_zlib(&a, p, initial_size, 1, 1)) {
4129 4130 4131
      if (outlen) *outlen = (int) (a.zout - a.zout_start);
      return a.zout_start;
   } else {
S
Sean Barrett 已提交
4132
      STBI_FREE(a.zout_start);
4133 4134 4135 4136 4137 4138 4139 4140 4141 4142 4143
      return NULL;
   }
}

STBIDEF char *stbi_zlib_decode_malloc(char const *buffer, int len, int *outlen)
{
   return stbi_zlib_decode_malloc_guesssize(buffer, len, 16384, outlen);
}

STBIDEF char *stbi_zlib_decode_malloc_guesssize_headerflag(const char *buffer, int len, int initial_size, int *outlen, int parse_header)
{
4144
   stbi__zbuf a;
4145
   char *p = (char *) stbi__malloc(initial_size);
4146
   if (p == NULL) return NULL;
4147 4148
   a.zbuffer = (stbi_uc *) buffer;
   a.zbuffer_end = (stbi_uc *) buffer + len;
4149
   if (stbi__do_zlib(&a, p, initial_size, 1, parse_header)) {
4150 4151 4152
      if (outlen) *outlen = (int) (a.zout - a.zout_start);
      return a.zout_start;
   } else {
S
Sean Barrett 已提交
4153
      STBI_FREE(a.zout_start);
4154 4155 4156 4157 4158 4159
      return NULL;
   }
}

STBIDEF int stbi_zlib_decode_buffer(char *obuffer, int olen, char const *ibuffer, int ilen)
{
4160
   stbi__zbuf a;
4161 4162
   a.zbuffer = (stbi_uc *) ibuffer;
   a.zbuffer_end = (stbi_uc *) ibuffer + ilen;
4163
   if (stbi__do_zlib(&a, obuffer, olen, 0, 1))
4164 4165 4166 4167 4168 4169 4170
      return (int) (a.zout - a.zout_start);
   else
      return -1;
}

STBIDEF char *stbi_zlib_decode_noheader_malloc(char const *buffer, int len, int *outlen)
{
4171
   stbi__zbuf a;
4172
   char *p = (char *) stbi__malloc(16384);
4173
   if (p == NULL) return NULL;
4174 4175
   a.zbuffer = (stbi_uc *) buffer;
   a.zbuffer_end = (stbi_uc *) buffer+len;
4176
   if (stbi__do_zlib(&a, p, 16384, 1, 0)) {
4177 4178 4179
      if (outlen) *outlen = (int) (a.zout - a.zout_start);
      return a.zout_start;
   } else {
S
Sean Barrett 已提交
4180
      STBI_FREE(a.zout_start);
4181 4182 4183 4184 4185 4186
      return NULL;
   }
}

STBIDEF int stbi_zlib_decode_noheader_buffer(char *obuffer, int olen, const char *ibuffer, int ilen)
{
4187
   stbi__zbuf a;
4188 4189
   a.zbuffer = (stbi_uc *) ibuffer;
   a.zbuffer_end = (stbi_uc *) ibuffer + ilen;
4190
   if (stbi__do_zlib(&a, obuffer, olen, 0, 0))
4191 4192 4193 4194
      return (int) (a.zout - a.zout_start);
   else
      return -1;
}
4195
#endif
4196 4197 4198 4199 4200 4201 4202 4203 4204 4205 4206

// public domain "baseline" PNG decoder   v0.10  Sean Barrett 2006-11-18
//    simple implementation
//      - only 8-bit samples
//      - no CRC checking
//      - allocates lots of intermediate memory
//        - avoids problem of streaming data between subsystems
//        - avoids explicit window management
//    performance
//      - uses stb_zlib, a PD zlib implementation with fast huffman decoding

4207
#ifndef STBI_NO_PNG
4208 4209 4210 4211
typedef struct
{
   stbi__uint32 length;
   stbi__uint32 type;
4212
} stbi__pngchunk;
4213

4214
static stbi__pngchunk stbi__get_chunk_header(stbi__context *s)
4215
{
4216
   stbi__pngchunk c;
4217 4218
   c.length = stbi__get32be(s);
   c.type   = stbi__get32be(s);
4219 4220 4221
   return c;
}

4222
static int stbi__check_png_header(stbi__context *s)
4223
{
4224
   static stbi_uc png_sig[8] = { 137,80,78,71,13,10,26,10 };
4225 4226
   int i;
   for (i=0; i < 8; ++i)
4227
      if (stbi__get8(s) != png_sig[i]) return stbi__err("bad png sig","Not a PNG");
4228 4229 4230 4231 4232
   return 1;
}

typedef struct
{
S
Sean Barrett 已提交
4233
   stbi__context *s;
4234
   stbi_uc *idata, *expanded, *out;
4235
   int depth;
4236
} stbi__png;
4237 4238 4239


enum {
4240 4241 4242 4243 4244 4245 4246 4247
   STBI__F_none=0,
   STBI__F_sub=1,
   STBI__F_up=2,
   STBI__F_avg=3,
   STBI__F_paeth=4,
   // synthetic filters used for first scanline to avoid needing a dummy row of 0s
   STBI__F_avg_first,
   STBI__F_paeth_first
4248 4249
};

4250
static stbi_uc first_row_filter[5] =
4251
{
4252 4253 4254 4255 4256
   STBI__F_none,
   STBI__F_sub,
   STBI__F_none,
   STBI__F_avg_first,
   STBI__F_paeth_first
4257 4258
};

4259
static int stbi__paeth(int a, int b, int c)
4260 4261 4262 4263 4264 4265 4266 4267 4268 4269
{
   int p = a + b - c;
   int pa = abs(p-a);
   int pb = abs(p-b);
   int pc = abs(p-c);
   if (pa <= pb && pa <= pc) return a;
   if (pb <= pc) return b;
   return c;
}

4270 4271
static stbi_uc stbi__depth_scale_table[9] = { 0, 0xff, 0x55, 0, 0x11, 0,0,0, 0x01 };

4272
// create the png data from post-deflated data
4273
static int stbi__create_png_image_raw(stbi__png *a, stbi_uc *raw, stbi__uint32 raw_len, int out_n, stbi__uint32 x, stbi__uint32 y, int depth, int color)
4274
{
4275
   int bytes = (depth == 16? 2 : 1);
S
Sean Barrett 已提交
4276
   stbi__context *s = a->s;
4277
   stbi__uint32 i,j,stride = x*out_n*bytes;
4278
   stbi__uint32 img_len, img_width_bytes;
4279 4280
   int k;
   int img_n = s->img_n; // copy it into a local for later
O
ocornut 已提交
4281

4282 4283 4284 4285
   int output_bytes = out_n*bytes;
   int filter_bytes = img_n*bytes;
   int width = x;

S
Sean Barrett 已提交
4286
   STBI_ASSERT(out_n == s->img_n || out_n == s->img_n+1);
4287
   a->out = (stbi_uc *) stbi__malloc_mad3(x, y, output_bytes, 0); // extra bytes to write off the end into
S
Sean Barrett 已提交
4288
   if (!a->out) return stbi__err("outofmem", "Out of memory");
O
ocornut 已提交
4289

4290 4291
   img_width_bytes = (((img_n * x * depth) + 7) >> 3);
   img_len = (img_width_bytes + 1) * y;
4292
   if (s->img_x == x && s->img_y == y) {
O
ocornut 已提交
4293
      if (raw_len != img_len) return stbi__err("not enough pixels","Corrupt PNG");
4294
   } else { // interlaced:
O
ocornut 已提交
4295
      if (raw_len < img_len) return stbi__err("not enough pixels","Corrupt PNG");
4296
   }
O
ocornut 已提交
4297

4298
   for (j=0; j < y; ++j) {
4299 4300
      stbi_uc *cur = a->out + stride*j;
      stbi_uc *prior = cur - stride;
4301
      int filter = *raw++;
4302

4303
      if (filter > 4)
4304 4305
         return stbi__err("invalid filter","Corrupt PNG");

4306
      if (depth < 8) {
4307
         STBI_ASSERT(img_width_bytes <= x);
4308 4309 4310
         cur += x*out_n - img_width_bytes; // store output to the rightmost img_len bytes, so we can decode in place
         filter_bytes = 1;
         width = img_width_bytes;
4311
      }
4312

4313 4314
      // if first row, use special filter that doesn't sample previous row
      if (j == 0) filter = first_row_filter[filter];
O
ocornut 已提交
4315

4316 4317
      // handle first byte explicitly
      for (k=0; k < filter_bytes; ++k) {
4318
         switch (filter) {
4319 4320 4321 4322 4323 4324 4325
            case STBI__F_none       : cur[k] = raw[k]; break;
            case STBI__F_sub        : cur[k] = raw[k]; break;
            case STBI__F_up         : cur[k] = STBI__BYTECAST(raw[k] + prior[k]); break;
            case STBI__F_avg        : cur[k] = STBI__BYTECAST(raw[k] + (prior[k]>>1)); break;
            case STBI__F_paeth      : cur[k] = STBI__BYTECAST(raw[k] + stbi__paeth(0,prior[k],0)); break;
            case STBI__F_avg_first  : cur[k] = raw[k]; break;
            case STBI__F_paeth_first: cur[k] = raw[k]; break;
4326 4327
         }
      }
4328 4329 4330 4331 4332 4333 4334

      if (depth == 8) {
         if (img_n != out_n)
            cur[img_n] = 255; // first pixel
         raw += img_n;
         cur += out_n;
         prior += out_n;
4335 4336 4337 4338 4339 4340 4341 4342
      } else if (depth == 16) {
         if (img_n != out_n) {
            cur[filter_bytes]   = 255; // first pixel top byte
            cur[filter_bytes+1] = 255; // first pixel bottom byte
         }
         raw += filter_bytes;
         cur += output_bytes;
         prior += output_bytes;
4343 4344 4345 4346 4347 4348
      } else {
         raw += 1;
         cur += 1;
         prior += 1;
      }

4349
      // this is a little gross, so that we don't switch per-pixel or per-component
4350
      if (depth < 8 || img_n == out_n) {
4351
         int nk = (width - 1)*filter_bytes;
S
Sean Barrett 已提交
4352
         #define STBI__CASE(f) \
4353
             case f:     \
4354
                for (k=0; k < nk; ++k)
4355
         switch (filter) {
4356 4357
            // "none" filter turns into a memcpy here; make that explicit.
            case STBI__F_none:         memcpy(cur, raw, nk); break;
4358 4359 4360 4361 4362 4363
            STBI__CASE(STBI__F_sub)          { cur[k] = STBI__BYTECAST(raw[k] + cur[k-filter_bytes]); } break;
            STBI__CASE(STBI__F_up)           { cur[k] = STBI__BYTECAST(raw[k] + prior[k]); } break;
            STBI__CASE(STBI__F_avg)          { cur[k] = STBI__BYTECAST(raw[k] + ((prior[k] + cur[k-filter_bytes])>>1)); } break;
            STBI__CASE(STBI__F_paeth)        { cur[k] = STBI__BYTECAST(raw[k] + stbi__paeth(cur[k-filter_bytes],prior[k],prior[k-filter_bytes])); } break;
            STBI__CASE(STBI__F_avg_first)    { cur[k] = STBI__BYTECAST(raw[k] + (cur[k-filter_bytes] >> 1)); } break;
            STBI__CASE(STBI__F_paeth_first)  { cur[k] = STBI__BYTECAST(raw[k] + stbi__paeth(cur[k-filter_bytes],0,0)); } break;
4364
         }
S
Sean Barrett 已提交
4365
         #undef STBI__CASE
4366
         raw += nk;
4367
      } else {
S
Sean Barrett 已提交
4368
         STBI_ASSERT(img_n+1 == out_n);
S
Sean Barrett 已提交
4369
         #define STBI__CASE(f) \
4370
             case f:     \
4371 4372
                for (i=x-1; i >= 1; --i, cur[filter_bytes]=255,raw+=filter_bytes,cur+=output_bytes,prior+=output_bytes) \
                   for (k=0; k < filter_bytes; ++k)
4373
         switch (filter) {
4374 4375 4376 4377 4378 4379 4380
            STBI__CASE(STBI__F_none)         { cur[k] = raw[k]; } break;
            STBI__CASE(STBI__F_sub)          { cur[k] = STBI__BYTECAST(raw[k] + cur[k- output_bytes]); } break;
            STBI__CASE(STBI__F_up)           { cur[k] = STBI__BYTECAST(raw[k] + prior[k]); } break;
            STBI__CASE(STBI__F_avg)          { cur[k] = STBI__BYTECAST(raw[k] + ((prior[k] + cur[k- output_bytes])>>1)); } break;
            STBI__CASE(STBI__F_paeth)        { cur[k] = STBI__BYTECAST(raw[k] + stbi__paeth(cur[k- output_bytes],prior[k],prior[k- output_bytes])); } break;
            STBI__CASE(STBI__F_avg_first)    { cur[k] = STBI__BYTECAST(raw[k] + (cur[k- output_bytes] >> 1)); } break;
            STBI__CASE(STBI__F_paeth_first)  { cur[k] = STBI__BYTECAST(raw[k] + stbi__paeth(cur[k- output_bytes],0,0)); } break;
4381
         }
S
Sean Barrett 已提交
4382
         #undef STBI__CASE
4383 4384 4385 4386 4387 4388 4389 4390 4391

         // the loop above sets the high byte of the pixels' alpha, but for
         // 16 bit png files we also need the low byte set. we'll do that here.
         if (depth == 16) {
            cur = a->out + stride*j; // start at the beginning of the row again
            for (i=0; i < x; ++i,cur+=output_bytes) {
               cur[filter_bytes+1] = 255;
            }
         }
4392 4393
      }
   }
4394

4395 4396 4397 4398 4399 4400 4401 4402 4403 4404 4405 4406 4407 4408 4409 4410 4411 4412 4413 4414 4415 4416 4417 4418 4419 4420 4421 4422 4423 4424 4425 4426 4427 4428 4429 4430 4431 4432 4433 4434 4435 4436 4437 4438 4439 4440 4441 4442 4443 4444 4445 4446 4447
   // we make a separate pass to expand bits to pixels; for performance,
   // this could run two scanlines behind the above code, so it won't
   // intefere with filtering but will still be in the cache.
   if (depth < 8) {
      for (j=0; j < y; ++j) {
         stbi_uc *cur = a->out + stride*j;
         stbi_uc *in  = a->out + stride*j + x*out_n - img_width_bytes;
         // unpack 1/2/4-bit into a 8-bit buffer. allows us to keep the common 8-bit path optimal at minimal cost for 1/2/4-bit
         // png guarante byte alignment, if width is not multiple of 8/4/2 we'll decode dummy trailing data that will be skipped in the later loop
         stbi_uc scale = (color == 0) ? stbi__depth_scale_table[depth] : 1; // scale grayscale values to 0..255 range

         // note that the final byte might overshoot and write more data than desired.
         // we can allocate enough data that this never writes out of memory, but it
         // could also overwrite the next scanline. can it overwrite non-empty data
         // on the next scanline? yes, consider 1-pixel-wide scanlines with 1-bit-per-pixel.
         // so we need to explicitly clamp the final ones

         if (depth == 4) {
            for (k=x*img_n; k >= 2; k-=2, ++in) {
               *cur++ = scale * ((*in >> 4)       );
               *cur++ = scale * ((*in     ) & 0x0f);
            }
            if (k > 0) *cur++ = scale * ((*in >> 4)       );
         } else if (depth == 2) {
            for (k=x*img_n; k >= 4; k-=4, ++in) {
               *cur++ = scale * ((*in >> 6)       );
               *cur++ = scale * ((*in >> 4) & 0x03);
               *cur++ = scale * ((*in >> 2) & 0x03);
               *cur++ = scale * ((*in     ) & 0x03);
            }
            if (k > 0) *cur++ = scale * ((*in >> 6)       );
            if (k > 1) *cur++ = scale * ((*in >> 4) & 0x03);
            if (k > 2) *cur++ = scale * ((*in >> 2) & 0x03);
         } else if (depth == 1) {
            for (k=x*img_n; k >= 8; k-=8, ++in) {
               *cur++ = scale * ((*in >> 7)       );
               *cur++ = scale * ((*in >> 6) & 0x01);
               *cur++ = scale * ((*in >> 5) & 0x01);
               *cur++ = scale * ((*in >> 4) & 0x01);
               *cur++ = scale * ((*in >> 3) & 0x01);
               *cur++ = scale * ((*in >> 2) & 0x01);
               *cur++ = scale * ((*in >> 1) & 0x01);
               *cur++ = scale * ((*in     ) & 0x01);
            }
            if (k > 0) *cur++ = scale * ((*in >> 7)       );
            if (k > 1) *cur++ = scale * ((*in >> 6) & 0x01);
            if (k > 2) *cur++ = scale * ((*in >> 5) & 0x01);
            if (k > 3) *cur++ = scale * ((*in >> 4) & 0x01);
            if (k > 4) *cur++ = scale * ((*in >> 3) & 0x01);
            if (k > 5) *cur++ = scale * ((*in >> 2) & 0x01);
            if (k > 6) *cur++ = scale * ((*in >> 1) & 0x01);
         }
         if (img_n != out_n) {
4448
            int q;
4449
            // insert alpha = 255
4450
            cur = a->out + stride*j;
4451
            if (img_n == 1) {
4452 4453 4454
               for (q=x-1; q >= 0; --q) {
                  cur[q*2+1] = 255;
                  cur[q*2+0] = cur[q];
4455 4456
               }
            } else {
4457
               STBI_ASSERT(img_n == 3);
4458 4459 4460 4461 4462
               for (q=x-1; q >= 0; --q) {
                  cur[q*4+3] = 255;
                  cur[q*4+2] = cur[q*3+2];
                  cur[q*4+1] = cur[q*3+1];
                  cur[q*4+0] = cur[q*3+0];
4463 4464 4465 4466
               }
            }
         }
      }
4467 4468 4469 4470 4471 4472 4473 4474 4475 4476 4477
   } else if (depth == 16) {
      // force the image data from big-endian to platform-native.
      // this is done in a separate pass due to the decoding relying
      // on the data being untouched, but could probably be done
      // per-line during decode if care is taken.
      stbi_uc *cur = a->out;
      stbi__uint16 *cur16 = (stbi__uint16*)cur;

      for(i=0; i < x*y*out_n; ++i,cur16++,cur+=2) {
         *cur16 = (cur[0] << 8) | cur[1];
      }
4478 4479
   }

4480 4481 4482
   return 1;
}

4483
static int stbi__create_png_image(stbi__png *a, stbi_uc *image_data, stbi__uint32 image_data_len, int out_n, int depth, int color, int interlaced)
4484
{
4485 4486
   int bytes = (depth == 16 ? 2 : 1);
   int out_bytes = out_n * bytes;
4487
   stbi_uc *final;
4488 4489
   int p;
   if (!interlaced)
4490
      return stbi__create_png_image_raw(a, image_data, image_data_len, out_n, a->s->img_x, a->s->img_y, depth, color);
4491 4492

   // de-interlacing
4493
   final = (stbi_uc *) stbi__malloc_mad3(a->s->img_x, a->s->img_y, out_bytes, 0);
4494 4495 4496 4497 4498 4499 4500 4501 4502 4503
   for (p=0; p < 7; ++p) {
      int xorig[] = { 0,4,0,2,0,1,0 };
      int yorig[] = { 0,0,4,0,2,0,1 };
      int xspc[]  = { 8,8,4,4,2,2,1 };
      int yspc[]  = { 8,8,8,4,4,2,2 };
      int i,j,x,y;
      // pass1_x[4] = 0, pass1_x[5] = 1, pass1_x[12] = 1
      x = (a->s->img_x - xorig[p] + xspc[p]-1) / xspc[p];
      y = (a->s->img_y - yorig[p] + yspc[p]-1) / yspc[p];
      if (x && y) {
4504 4505
         stbi__uint32 img_len = ((((a->s->img_n * x * depth) + 7) >> 3) + 1) * y;
         if (!stbi__create_png_image_raw(a, image_data, image_data_len, out_n, x, y, depth, color)) {
S
Sean Barrett 已提交
4506
            STBI_FREE(final);
4507 4508
            return 0;
         }
4509 4510 4511 4512
         for (j=0; j < y; ++j) {
            for (i=0; i < x; ++i) {
               int out_y = j*yspc[p]+yorig[p];
               int out_x = i*xspc[p]+xorig[p];
4513 4514
               memcpy(final + out_y*a->s->img_x*out_bytes + out_x*out_bytes,
                      a->out + (j*x+i)*out_bytes, out_bytes);
4515 4516
            }
         }
S
Sean Barrett 已提交
4517
         STBI_FREE(a->out);
4518 4519
         image_data += img_len;
         image_data_len -= img_len;
4520 4521 4522 4523 4524 4525 4526
      }
   }
   a->out = final;

   return 1;
}

4527
static int stbi__compute_transparency(stbi__png *z, stbi_uc tc[3], int out_n)
4528
{
S
Sean Barrett 已提交
4529
   stbi__context *s = z->s;
4530
   stbi__uint32 i, pixel_count = s->img_x * s->img_y;
4531
   stbi_uc *p = z->out;
4532 4533 4534

   // compute color-based transparency, assuming we've
   // already got 255 as the alpha value in the output
S
Sean Barrett 已提交
4535
   STBI_ASSERT(out_n == 2 || out_n == 4);
4536 4537 4538 4539 4540 4541 4542 4543 4544 4545 4546 4547 4548 4549 4550 4551

   if (out_n == 2) {
      for (i=0; i < pixel_count; ++i) {
         p[1] = (p[0] == tc[0] ? 0 : 255);
         p += 2;
      }
   } else {
      for (i=0; i < pixel_count; ++i) {
         if (p[0] == tc[0] && p[1] == tc[1] && p[2] == tc[2])
            p[3] = 0;
         p += 4;
      }
   }
   return 1;
}

4552 4553 4554 4555 4556 4557 4558 4559 4560 4561 4562 4563 4564 4565 4566 4567 4568 4569 4570 4571 4572 4573 4574 4575 4576
static int stbi__compute_transparency16(stbi__png *z, stbi__uint16 tc[3], int out_n)
{
   stbi__context *s = z->s;
   stbi__uint32 i, pixel_count = s->img_x * s->img_y;
   stbi__uint16 *p = (stbi__uint16*) z->out;

   // compute color-based transparency, assuming we've
   // already got 65535 as the alpha value in the output
   STBI_ASSERT(out_n == 2 || out_n == 4);

   if (out_n == 2) {
      for (i = 0; i < pixel_count; ++i) {
         p[1] = (p[0] == tc[0] ? 0 : 65535);
         p += 2;
      }
   } else {
      for (i = 0; i < pixel_count; ++i) {
         if (p[0] == tc[0] && p[1] == tc[1] && p[2] == tc[2])
            p[3] = 0;
         p += 4;
      }
   }
   return 1;
}

4577
static int stbi__expand_png_palette(stbi__png *a, stbi_uc *palette, int len, int pal_img_n)
4578 4579
{
   stbi__uint32 i, pixel_count = a->s->img_x * a->s->img_y;
4580
   stbi_uc *p, *temp_out, *orig = a->out;
4581

4582
   p = (stbi_uc *) stbi__malloc_mad2(pixel_count, pal_img_n, 0);
S
Sean Barrett 已提交
4583
   if (p == NULL) return stbi__err("outofmem", "Out of memory");
4584 4585 4586 4587 4588 4589 4590 4591 4592 4593 4594 4595 4596 4597 4598 4599 4600 4601 4602 4603 4604 4605

   // between here and free(out) below, exitting would leak
   temp_out = p;

   if (pal_img_n == 3) {
      for (i=0; i < pixel_count; ++i) {
         int n = orig[i]*4;
         p[0] = palette[n  ];
         p[1] = palette[n+1];
         p[2] = palette[n+2];
         p += 3;
      }
   } else {
      for (i=0; i < pixel_count; ++i) {
         int n = orig[i]*4;
         p[0] = palette[n  ];
         p[1] = palette[n+1];
         p[2] = palette[n+2];
         p[3] = palette[n+3];
         p += 4;
      }
   }
S
Sean Barrett 已提交
4606
   STBI_FREE(a->out);
4607 4608 4609 4610 4611 4612 4613
   a->out = temp_out;

   STBI_NOTUSED(len);

   return 1;
}

4614 4615
static int stbi__unpremultiply_on_load = 0;
static int stbi__de_iphone_flag = 0;
4616

4617
STBIDEF void stbi_set_unpremultiply_on_load(int flag_true_if_should_unpremultiply)
4618
{
4619
   stbi__unpremultiply_on_load = flag_true_if_should_unpremultiply;
4620
}
4621 4622

STBIDEF void stbi_convert_iphone_png_to_rgb(int flag_true_if_should_convert)
4623
{
4624
   stbi__de_iphone_flag = flag_true_if_should_convert;
4625 4626
}

4627
static void stbi__de_iphone(stbi__png *z)
4628
{
S
Sean Barrett 已提交
4629
   stbi__context *s = z->s;
4630
   stbi__uint32 i, pixel_count = s->img_x * s->img_y;
4631
   stbi_uc *p = z->out;
4632 4633 4634

   if (s->img_out_n == 3) {  // convert bgr to rgb
      for (i=0; i < pixel_count; ++i) {
4635
         stbi_uc t = p[0];
4636 4637 4638 4639 4640
         p[0] = p[2];
         p[2] = t;
         p += 3;
      }
   } else {
S
Sean Barrett 已提交
4641
      STBI_ASSERT(s->img_out_n == 4);
4642
      if (stbi__unpremultiply_on_load) {
4643 4644
         // convert bgr to rgb and unpremultiply
         for (i=0; i < pixel_count; ++i) {
4645 4646
            stbi_uc a = p[3];
            stbi_uc t = p[0];
4647 4648 4649 4650 4651 4652 4653
            if (a) {
               p[0] = p[2] * 255 / a;
               p[1] = p[1] * 255 / a;
               p[2] =  t   * 255 / a;
            } else {
               p[0] = p[2];
               p[2] = t;
S
Sean Barrett 已提交
4654
            }
4655 4656 4657 4658 4659
            p += 4;
         }
      } else {
         // convert bgr to rgb
         for (i=0; i < pixel_count; ++i) {
4660
            stbi_uc t = p[0];
4661 4662 4663 4664 4665 4666 4667 4668
            p[0] = p[2];
            p[2] = t;
            p += 4;
         }
      }
   }
}

4669 4670
#define STBI__PNG_TYPE(a,b,c,d)  (((a) << 24) + ((b) << 16) + ((c) << 8) + (d))

4671
static int stbi__parse_png_file(stbi__png *z, int scan, int req_comp)
4672
{
4673 4674
   stbi_uc palette[1024], pal_img_n=0;
   stbi_uc has_trans=0, tc[3];
4675
   stbi__uint16 tc16[3];
4676
   stbi__uint32 ioff=0, idata_limit=0, i, pal_len=0;
4677
   int first=1,k,interlace=0, color=0, is_iphone=0;
S
Sean Barrett 已提交
4678
   stbi__context *s = z->s;
4679 4680 4681 4682 4683

   z->expanded = NULL;
   z->idata = NULL;
   z->out = NULL;

4684
   if (!stbi__check_png_header(s)) return 0;
4685

4686
   if (scan == STBI__SCAN_type) return 1;
4687 4688

   for (;;) {
4689
      stbi__pngchunk c = stbi__get_chunk_header(s);
4690
      switch (c.type) {
4691
         case STBI__PNG_TYPE('C','g','B','I'):
4692
            is_iphone = 1;
4693
            stbi__skip(s, c.length);
4694
            break;
4695
         case STBI__PNG_TYPE('I','H','D','R'): {
4696
            int comp,filter;
S
Sean Barrett 已提交
4697
            if (!first) return stbi__err("multiple IHDR","Corrupt PNG");
4698
            first = 0;
S
Sean Barrett 已提交
4699
            if (c.length != 13) return stbi__err("bad IHDR len","Corrupt PNG");
4700 4701
            s->img_x = stbi__get32be(s); if (s->img_x > (1 << 24)) return stbi__err("too large","Very large image (corrupt?)");
            s->img_y = stbi__get32be(s); if (s->img_y > (1 << 24)) return stbi__err("too large","Very large image (corrupt?)");
4702
            z->depth = stbi__get8(s);  if (z->depth != 1 && z->depth != 2 && z->depth != 4 && z->depth != 8 && z->depth != 16)  return stbi__err("1/2/4/8/16-bit only","PNG not supported: 1/2/4/8/16-bit only");
4703
            color = stbi__get8(s);  if (color > 6)         return stbi__err("bad ctype","Corrupt PNG");
4704
			if (color == 3 && z->depth == 16)                  return stbi__err("bad ctype","Corrupt PNG");
S
Sean Barrett 已提交
4705
            if (color == 3) pal_img_n = 3; else if (color & 1) return stbi__err("bad ctype","Corrupt PNG");
4706 4707 4708
            comp  = stbi__get8(s);  if (comp) return stbi__err("bad comp method","Corrupt PNG");
            filter= stbi__get8(s);  if (filter) return stbi__err("bad filter method","Corrupt PNG");
            interlace = stbi__get8(s); if (interlace>1) return stbi__err("bad interlace method","Corrupt PNG");
S
Sean Barrett 已提交
4709
            if (!s->img_x || !s->img_y) return stbi__err("0-pixel image","Corrupt PNG");
4710 4711
            if (!pal_img_n) {
               s->img_n = (color & 2 ? 3 : 1) + (color & 4 ? 1 : 0);
4712
               if ((1 << 30) / s->img_x / s->img_n < s->img_y) return stbi__err("too large", "Image too large to decode");
4713
               if (scan == STBI__SCAN_header) return 1;
4714 4715 4716 4717
            } else {
               // if paletted, then pal_n is our final components, and
               // img_n is # components to decompress/filter.
               s->img_n = 1;
S
Sean Barrett 已提交
4718
               if ((1 << 30) / s->img_x / 4 < s->img_y) return stbi__err("too large","Corrupt PNG");
4719 4720 4721 4722 4723
               // if SCAN_header, have to scan to see if we have a tRNS
            }
            break;
         }

4724
         case STBI__PNG_TYPE('P','L','T','E'):  {
S
Sean Barrett 已提交
4725 4726
            if (first) return stbi__err("first not IHDR", "Corrupt PNG");
            if (c.length > 256*3) return stbi__err("invalid PLTE","Corrupt PNG");
4727
            pal_len = c.length / 3;
S
Sean Barrett 已提交
4728
            if (pal_len * 3 != c.length) return stbi__err("invalid PLTE","Corrupt PNG");
4729
            for (i=0; i < pal_len; ++i) {
4730 4731 4732
               palette[i*4+0] = stbi__get8(s);
               palette[i*4+1] = stbi__get8(s);
               palette[i*4+2] = stbi__get8(s);
4733 4734 4735 4736 4737
               palette[i*4+3] = 255;
            }
            break;
         }

4738
         case STBI__PNG_TYPE('t','R','N','S'): {
S
Sean Barrett 已提交
4739 4740
            if (first) return stbi__err("first not IHDR", "Corrupt PNG");
            if (z->idata) return stbi__err("tRNS after IDAT","Corrupt PNG");
4741
            if (pal_img_n) {
4742
               if (scan == STBI__SCAN_header) { s->img_n = 4; return 1; }
S
Sean Barrett 已提交
4743 4744
               if (pal_len == 0) return stbi__err("tRNS before PLTE","Corrupt PNG");
               if (c.length > pal_len) return stbi__err("bad tRNS len","Corrupt PNG");
4745 4746
               pal_img_n = 4;
               for (i=0; i < c.length; ++i)
4747
                  palette[i*4+3] = stbi__get8(s);
4748
            } else {
S
Sean Barrett 已提交
4749 4750
               if (!(s->img_n & 1)) return stbi__err("tRNS with alpha","Corrupt PNG");
               if (c.length != (stbi__uint32) s->img_n*2) return stbi__err("bad tRNS len","Corrupt PNG");
4751
               has_trans = 1;
4752
               if (z->depth == 16) {
J
jon 已提交
4753
                  for (k = 0; k < s->img_n; ++k) tc16[k] = (stbi__uint16)stbi__get16be(s); // copy the values as-is
4754 4755 4756
               } else {
                  for (k = 0; k < s->img_n; ++k) tc[k] = (stbi_uc)(stbi__get16be(s) & 255) * stbi__depth_scale_table[z->depth]; // non 8-bit images will be larger
               }
4757 4758 4759 4760
            }
            break;
         }

4761
         case STBI__PNG_TYPE('I','D','A','T'): {
S
Sean Barrett 已提交
4762 4763
            if (first) return stbi__err("first not IHDR", "Corrupt PNG");
            if (pal_img_n && !pal_len) return stbi__err("no PLTE","Corrupt PNG");
4764
            if (scan == STBI__SCAN_header) { s->img_n = pal_img_n; return 1; }
4765
            if ((int)(ioff + c.length) < (int)ioff) return 0;
4766
            if (ioff + c.length > idata_limit) {
4767
               stbi__uint32 idata_limit_old = idata_limit;
4768
               stbi_uc *p;
4769 4770 4771
               if (idata_limit == 0) idata_limit = c.length > 4096 ? c.length : 4096;
               while (ioff + c.length > idata_limit)
                  idata_limit *= 2;
4772
               STBI_NOTUSED(idata_limit_old);
4773
               p = (stbi_uc *) STBI_REALLOC_SIZED(z->idata, idata_limit_old, idata_limit); if (p == NULL) return stbi__err("outofmem", "Out of memory");
4774 4775
               z->idata = p;
            }
4776
            if (!stbi__getn(s, z->idata+ioff,c.length)) return stbi__err("outofdata","Corrupt PNG");
4777 4778 4779 4780
            ioff += c.length;
            break;
         }

4781
         case STBI__PNG_TYPE('I','E','N','D'): {
4782
            stbi__uint32 raw_len, bpl;
S
Sean Barrett 已提交
4783
            if (first) return stbi__err("first not IHDR", "Corrupt PNG");
4784
            if (scan != STBI__SCAN_load) return 1;
S
Sean Barrett 已提交
4785
            if (z->idata == NULL) return stbi__err("no IDAT","Corrupt PNG");
4786
            // initial guess for decoded data size to avoid unnecessary reallocs
4787
            bpl = (s->img_x * z->depth + 7) / 8; // bytes per line, per component
4788
            raw_len = bpl * s->img_y * s->img_n /* pixels */ + s->img_y /* filter mode per row */;
4789
            z->expanded = (stbi_uc *) stbi_zlib_decode_malloc_guesssize_headerflag((char *) z->idata, ioff, raw_len, (int *) &raw_len, !is_iphone);
4790
            if (z->expanded == NULL) return 0; // zlib should set error
S
Sean Barrett 已提交
4791
            STBI_FREE(z->idata); z->idata = NULL;
4792 4793 4794 4795
            if ((req_comp == s->img_n+1 && req_comp != 3 && !pal_img_n) || has_trans)
               s->img_out_n = s->img_n+1;
            else
               s->img_out_n = s->img_n;
4796 4797 4798 4799 4800 4801 4802 4803
            if (!stbi__create_png_image(z, z->expanded, raw_len, s->img_out_n, z->depth, color, interlace)) return 0;
            if (has_trans) {
               if (z->depth == 16) {
                  if (!stbi__compute_transparency16(z, tc16, s->img_out_n)) return 0;
               } else {
                  if (!stbi__compute_transparency(z, tc, s->img_out_n)) return 0;
               }
            }
4804
            if (is_iphone && stbi__de_iphone_flag && s->img_out_n > 2)
4805
               stbi__de_iphone(z);
4806 4807 4808 4809 4810
            if (pal_img_n) {
               // pal_img_n == 3 or 4
               s->img_n = pal_img_n; // record the actual colors we had
               s->img_out_n = pal_img_n;
               if (req_comp >= 3) s->img_out_n = req_comp;
4811
               if (!stbi__expand_png_palette(z, palette, pal_len, s->img_out_n))
4812 4813
                  return 0;
            }
S
Sean Barrett 已提交
4814
            STBI_FREE(z->expanded); z->expanded = NULL;
4815 4816 4817 4818 4819
            return 1;
         }

         default:
            // if critical, fail
S
Sean Barrett 已提交
4820
            if (first) return stbi__err("first not IHDR", "Corrupt PNG");
4821 4822 4823
            if ((c.type & (1 << 29)) == 0) {
               #ifndef STBI_NO_FAILURE_STRINGS
               // not threadsafe
4824 4825 4826 4827 4828
               static char invalid_chunk[] = "XXXX PNG chunk not known";
               invalid_chunk[0] = STBI__BYTECAST(c.type >> 24);
               invalid_chunk[1] = STBI__BYTECAST(c.type >> 16);
               invalid_chunk[2] = STBI__BYTECAST(c.type >>  8);
               invalid_chunk[3] = STBI__BYTECAST(c.type >>  0);
4829
               #endif
4830
               return stbi__err(invalid_chunk, "PNG not supported: unknown PNG chunk type");
4831
            }
4832
            stbi__skip(s, c.length);
4833 4834
            break;
      }
4835
      // end of PNG chunk, read and skip CRC
4836
      stbi__get32be(s);
4837 4838 4839
   }
}

S
Sean Barrett 已提交
4840
static void *stbi__do_png(stbi__png *p, int *x, int *y, int *n, int req_comp, stbi__result_info *ri)
4841
{
S
Sean Barrett 已提交
4842
   void *result=NULL;
S
Sean Barrett 已提交
4843
   if (req_comp < 0 || req_comp > 4) return stbi__errpuc("bad req_comp", "Internal error");
4844
   if (stbi__parse_png_file(p, STBI__SCAN_load, req_comp)) {
4845 4846 4847 4848
      if (p->depth < 8)
         ri->bits_per_channel = 8;
      else
         ri->bits_per_channel = p->depth;
4849 4850 4851
      result = p->out;
      p->out = NULL;
      if (req_comp && req_comp != p->s->img_out_n) {
S
Sean Barrett 已提交
4852 4853 4854 4855
         if (ri->bits_per_channel == 8)
            result = stbi__convert_format((unsigned char *) result, p->s->img_out_n, req_comp, p->s->img_x, p->s->img_y);
         else
            result = stbi__convert_format16((stbi__uint16 *) result, p->s->img_out_n, req_comp, p->s->img_x, p->s->img_y);
4856 4857 4858 4859 4860
         p->s->img_out_n = req_comp;
         if (result == NULL) return result;
      }
      *x = p->s->img_x;
      *y = p->s->img_y;
4861
      if (n) *n = p->s->img_n;
4862
   }
S
Sean Barrett 已提交
4863 4864 4865
   STBI_FREE(p->out);      p->out      = NULL;
   STBI_FREE(p->expanded); p->expanded = NULL;
   STBI_FREE(p->idata);    p->idata    = NULL;
4866 4867 4868 4869

   return result;
}

S
Sean Barrett 已提交
4870
static void *stbi__png_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri)
4871
{
4872
   stbi__png p;
4873
   p.s = s;
S
Sean Barrett 已提交
4874
   return stbi__do_png(&p, x,y,comp,req_comp, ri);
4875 4876
}

S
Sean Barrett 已提交
4877
static int stbi__png_test(stbi__context *s)
4878 4879
{
   int r;
4880
   r = stbi__check_png_header(s);
4881
   stbi__rewind(s);
4882 4883 4884
   return r;
}

4885
static int stbi__png_info_raw(stbi__png *p, int *x, int *y, int *comp)
4886
{
4887
   if (!stbi__parse_png_file(p, STBI__SCAN_header, 0)) {
4888
      stbi__rewind( p->s );
4889 4890 4891 4892 4893 4894 4895 4896
      return 0;
   }
   if (x) *x = p->s->img_x;
   if (y) *y = p->s->img_y;
   if (comp) *comp = p->s->img_n;
   return 1;
}

4897
static int stbi__png_info(stbi__context *s, int *x, int *y, int *comp)
4898
{
4899
   stbi__png p;
4900
   p.s = s;
4901
   return stbi__png_info_raw(&p, x, y, comp);
4902
}
4903
#endif
4904 4905

// Microsoft/Windows BMP image
4906 4907

#ifndef STBI_NO_BMP
4908
static int stbi__bmp_test_raw(stbi__context *s)
4909
{
4910
   int r;
4911
   int sz;
4912 4913 4914 4915 4916 4917 4918
   if (stbi__get8(s) != 'B') return 0;
   if (stbi__get8(s) != 'M') return 0;
   stbi__get32le(s); // discard filesize
   stbi__get16le(s); // discard reserved
   stbi__get16le(s); // discard reserved
   stbi__get32le(s); // discard data offset
   sz = stbi__get32le(s);
4919
   r = (sz == 12 || sz == 40 || sz == 56 || sz == 108 || sz == 124);
4920 4921 4922 4923 4924 4925
   return r;
}

static int stbi__bmp_test(stbi__context *s)
{
   int r = stbi__bmp_test_raw(s);
4926
   stbi__rewind(s);
4927 4928 4929 4930 4931
   return r;
}


// returns 0..31 for the highest set bit
4932
static int stbi__high_bit(unsigned int z)
4933 4934 4935 4936 4937 4938 4939 4940 4941 4942 4943
{
   int n=0;
   if (z == 0) return -1;
   if (z >= 0x10000) n += 16, z >>= 16;
   if (z >= 0x00100) n +=  8, z >>=  8;
   if (z >= 0x00010) n +=  4, z >>=  4;
   if (z >= 0x00004) n +=  2, z >>=  2;
   if (z >= 0x00002) n +=  1, z >>=  1;
   return n;
}

4944
static int stbi__bitcount(unsigned int a)
4945 4946 4947 4948 4949 4950 4951 4952 4953
{
   a = (a & 0x55555555) + ((a >>  1) & 0x55555555); // max 2
   a = (a & 0x33333333) + ((a >>  2) & 0x33333333); // max 4
   a = (a + (a >> 4)) & 0x0f0f0f0f; // max 8 per 4, now 8 bits
   a = (a + (a >> 8)); // max 16 per 8 bits
   a = (a + (a >> 16)); // max 32 per 8 bits
   return a & 0xff;
}

4954
static int stbi__shiftsigned(int v, int shift, int bits)
4955 4956 4957 4958 4959 4960 4961 4962 4963 4964 4965 4966 4967 4968 4969 4970
{
   int result;
   int z=0;

   if (shift < 0) v <<= -shift;
   else v >>= shift;
   result = v;

   z = bits;
   while (z < 8) {
      result += v >> z;
      z += bits;
   }
   return result;
}

4971
typedef struct
4972
{
4973 4974 4975 4976 4977 4978 4979
   int bpp, offset, hsz;
   unsigned int mr,mg,mb,ma, all_a;
} stbi__bmp_data;

static void *stbi__bmp_parse_header(stbi__context *s, stbi__bmp_data *info)
{
   int hsz;
4980 4981 4982 4983
   if (stbi__get8(s) != 'B' || stbi__get8(s) != 'M') return stbi__errpuc("not BMP", "Corrupt BMP");
   stbi__get32le(s); // discard filesize
   stbi__get16le(s); // discard reserved
   stbi__get16le(s); // discard reserved
4984 4985
   info->offset = stbi__get32le(s);
   info->hsz = hsz = stbi__get32le(s);
4986
   info->mr = info->mg = info->mb = info->ma = 0;
4987
   
4988
   if (hsz != 12 && hsz != 40 && hsz != 56 && hsz != 108 && hsz != 124) return stbi__errpuc("unknown BMP", "BMP type not supported: unknown");
4989
   if (hsz == 12) {
4990 4991
      s->img_x = stbi__get16le(s);
      s->img_y = stbi__get16le(s);
4992
   } else {
4993 4994
      s->img_x = stbi__get32le(s);
      s->img_y = stbi__get32le(s);
4995
   }
4996
   if (stbi__get16le(s) != 1) return stbi__errpuc("bad BMP", "bad BMP");
4997 4998 4999 5000
   info->bpp = stbi__get16le(s);
   if (info->bpp == 1) return stbi__errpuc("monochrome", "BMP type not supported: 1-bit");
   if (hsz != 12) {
      int compress = stbi__get32le(s);
S
Sean Barrett 已提交
5001
      if (compress == 1 || compress == 2) return stbi__errpuc("BMP RLE", "BMP type not supported: RLE");
5002 5003 5004 5005 5006
      stbi__get32le(s); // discard sizeof
      stbi__get32le(s); // discard hres
      stbi__get32le(s); // discard vres
      stbi__get32le(s); // discard colorsused
      stbi__get32le(s); // discard max important
5007 5008
      if (hsz == 40 || hsz == 56) {
         if (hsz == 56) {
5009 5010 5011 5012
            stbi__get32le(s);
            stbi__get32le(s);
            stbi__get32le(s);
            stbi__get32le(s);
5013
         }
5014
         if (info->bpp == 16 || info->bpp == 32) {
5015
            if (compress == 0) {
5016 5017 5018 5019 5020 5021
               if (info->bpp == 32) {
                  info->mr = 0xffu << 16;
                  info->mg = 0xffu <<  8;
                  info->mb = 0xffu <<  0;
                  info->ma = 0xffu << 24;
                  info->all_a = 0; // if all_a is 0 at end, then we loaded alpha channel but it was all 0
5022
               } else {
5023 5024 5025
                  info->mr = 31u << 10;
                  info->mg = 31u <<  5;
                  info->mb = 31u <<  0;
5026 5027
               }
            } else if (compress == 3) {
5028 5029 5030
               info->mr = stbi__get32le(s);
               info->mg = stbi__get32le(s);
               info->mb = stbi__get32le(s);
5031
               // not documented, but generated by photoshop and handled by mspaint
5032
               if (info->mr == info->mg && info->mg == info->mb) {
5033
                  // ?!?!?
S
Sean Barrett 已提交
5034
                  return stbi__errpuc("bad BMP", "bad BMP");
5035 5036
               }
            } else
S
Sean Barrett 已提交
5037
               return stbi__errpuc("bad BMP", "bad BMP");
5038 5039
         }
      } else {
5040 5041 5042 5043 5044 5045 5046
         int i;
         if (hsz != 108 && hsz != 124)
            return stbi__errpuc("bad BMP", "bad BMP");
         info->mr = stbi__get32le(s);
         info->mg = stbi__get32le(s);
         info->mb = stbi__get32le(s);
         info->ma = stbi__get32le(s);
5047
         stbi__get32le(s); // discard color space
5048
         for (i=0; i < 12; ++i)
5049
            stbi__get32le(s); // discard color space parameters
5050 5051 5052 5053 5054 5055
         if (hsz == 124) {
            stbi__get32le(s); // discard rendering intent
            stbi__get32le(s); // discard offset of profile data
            stbi__get32le(s); // discard size of profile data
            stbi__get32le(s); // discard reserved
         }
5056 5057
      }
   }
5058 5059 5060 5061
   return (void *) 1;
}


S
Sean Barrett 已提交
5062
static void *stbi__bmp_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri)
5063 5064 5065 5066 5067 5068 5069
{
   stbi_uc *out;
   unsigned int mr=0,mg=0,mb=0,ma=0, all_a;
   stbi_uc pal[256][4];
   int psize=0,i,j,width;
   int flip_vertically, pad, target;
   stbi__bmp_data info;
S
Sean Barrett 已提交
5070
   STBI_NOTUSED(ri);
5071 5072 5073 5074 5075 5076 5077 5078 5079 5080 5081 5082 5083 5084 5085 5086 5087 5088 5089 5090 5091 5092

   info.all_a = 255;   
   if (stbi__bmp_parse_header(s, &info) == NULL)
      return NULL; // error code already set

   flip_vertically = ((int) s->img_y) > 0;
   s->img_y = abs((int) s->img_y);

   mr = info.mr;
   mg = info.mg;
   mb = info.mb;
   ma = info.ma;
   all_a = info.all_a;

   if (info.hsz == 12) {
      if (info.bpp < 24)
         psize = (info.offset - 14 - 24) / 3;
   } else {
      if (info.bpp < 16)
         psize = (info.offset - 14 - info.hsz) >> 2;
   }

5093
   s->img_n = ma ? 4 : 3;
5094
   if (req_comp && req_comp >= 3) // we can directly decode 3 or 4
5095 5096 5097
      target = req_comp;
   else
      target = s->img_n; // if they want monochrome, we'll post-convert
5098

5099 5100 5101 5102 5103
   // sanity-check size
   if (!stbi__mad3sizes_valid(target, s->img_x, s->img_y, 0))
      return stbi__errpuc("too large", "Corrupt BMP");

   out = (stbi_uc *) stbi__malloc_mad3(target, s->img_x, s->img_y, 0);
S
Sean Barrett 已提交
5104
   if (!out) return stbi__errpuc("outofmem", "Out of memory");
5105
   if (info.bpp < 16) {
5106
      int z=0;
S
Sean Barrett 已提交
5107
      if (psize == 0 || psize > 256) { STBI_FREE(out); return stbi__errpuc("invalid", "Corrupt BMP"); }
5108
      for (i=0; i < psize; ++i) {
5109 5110 5111
         pal[i][2] = stbi__get8(s);
         pal[i][1] = stbi__get8(s);
         pal[i][0] = stbi__get8(s);
5112
         if (info.hsz != 12) stbi__get8(s);
5113 5114
         pal[i][3] = 255;
      }
5115 5116 5117
      stbi__skip(s, info.offset - 14 - info.hsz - psize * (info.hsz == 12 ? 3 : 4));
      if (info.bpp == 4) width = (s->img_x + 1) >> 1;
      else if (info.bpp == 8) width = s->img_x;
S
Sean Barrett 已提交
5118
      else { STBI_FREE(out); return stbi__errpuc("bad bpp", "Corrupt BMP"); }
5119 5120 5121
      pad = (-width)&3;
      for (j=0; j < (int) s->img_y; ++j) {
         for (i=0; i < (int) s->img_x; i += 2) {
5122
            int v=stbi__get8(s),v2=0;
5123
            if (info.bpp == 4) {
5124 5125 5126 5127 5128 5129 5130 5131
               v2 = v & 15;
               v >>= 4;
            }
            out[z++] = pal[v][0];
            out[z++] = pal[v][1];
            out[z++] = pal[v][2];
            if (target == 4) out[z++] = 255;
            if (i+1 == (int) s->img_x) break;
5132
            v = (info.bpp == 8) ? stbi__get8(s) : v2;
5133 5134 5135 5136 5137
            out[z++] = pal[v][0];
            out[z++] = pal[v][1];
            out[z++] = pal[v][2];
            if (target == 4) out[z++] = 255;
         }
5138
         stbi__skip(s, pad);
5139 5140 5141 5142 5143
      }
   } else {
      int rshift=0,gshift=0,bshift=0,ashift=0,rcount=0,gcount=0,bcount=0,acount=0;
      int z = 0;
      int easy=0;
5144 5145 5146
      stbi__skip(s, info.offset - 14 - info.hsz);
      if (info.bpp == 24) width = 3 * s->img_x;
      else if (info.bpp == 16) width = 2*s->img_x;
5147 5148
      else /* bpp = 32 and pad = 0 */ width=0;
      pad = (-width) & 3;
5149
      if (info.bpp == 24) {
5150
         easy = 1;
5151
      } else if (info.bpp == 32) {
5152 5153 5154 5155
         if (mb == 0xff && mg == 0xff00 && mr == 0x00ff0000 && ma == 0xff000000)
            easy = 2;
      }
      if (!easy) {
S
Sean Barrett 已提交
5156
         if (!mr || !mg || !mb) { STBI_FREE(out); return stbi__errpuc("bad masks", "Corrupt BMP"); }
5157
         // right shift amt to put high bit in position #7
5158 5159 5160 5161
         rshift = stbi__high_bit(mr)-7; rcount = stbi__bitcount(mr);
         gshift = stbi__high_bit(mg)-7; gcount = stbi__bitcount(mg);
         bshift = stbi__high_bit(mb)-7; bcount = stbi__bitcount(mb);
         ashift = stbi__high_bit(ma)-7; acount = stbi__bitcount(ma);
5162 5163 5164 5165
      }
      for (j=0; j < (int) s->img_y; ++j) {
         if (easy) {
            for (i=0; i < (int) s->img_x; ++i) {
5166 5167 5168 5169
               unsigned char a;
               out[z+2] = stbi__get8(s);
               out[z+1] = stbi__get8(s);
               out[z+0] = stbi__get8(s);
5170
               z += 3;
5171
               a = (easy == 2 ? stbi__get8(s) : 255);
5172
               all_a |= a;
5173
               if (target == 4) out[z++] = a;
5174 5175
            }
         } else {
5176
            int bpp = info.bpp;
5177
            for (i=0; i < (int) s->img_x; ++i) {
J
Joseph Thomson 已提交
5178
               stbi__uint32 v = (bpp == 16 ? (stbi__uint32) stbi__get16le(s) : stbi__get32le(s));
5179
               int a;
5180 5181 5182
               out[z++] = STBI__BYTECAST(stbi__shiftsigned(v & mr, rshift, rcount));
               out[z++] = STBI__BYTECAST(stbi__shiftsigned(v & mg, gshift, gcount));
               out[z++] = STBI__BYTECAST(stbi__shiftsigned(v & mb, bshift, bcount));
5183
               a = (ma ? stbi__shiftsigned(v & ma, ashift, acount) : 255);
5184
               all_a |= a;
S
Sean Barrett 已提交
5185
               if (target == 4) out[z++] = STBI__BYTECAST(a);
5186 5187
            }
         }
5188
         stbi__skip(s, pad);
5189 5190
      }
   }
5191 5192 5193 5194 5195 5196
   
   // if alpha channel is all 0s, replace with all 255s
   if (target == 4 && all_a == 0)
      for (i=4*s->img_x*s->img_y-1; i >= 0; i -= 4)
         out[i] = 255;

5197 5198 5199 5200 5201 5202 5203 5204 5205 5206 5207 5208
   if (flip_vertically) {
      stbi_uc t;
      for (j=0; j < (int) s->img_y>>1; ++j) {
         stbi_uc *p1 = out +      j     *s->img_x*target;
         stbi_uc *p2 = out + (s->img_y-1-j)*s->img_x*target;
         for (i=0; i < (int) s->img_x*target; ++i) {
            t = p1[i], p1[i] = p2[i], p2[i] = t;
         }
      }
   }

   if (req_comp && req_comp != target) {
5209 5210
      out = stbi__convert_format(out, target, req_comp, s->img_x, s->img_y);
      if (out == NULL) return out; // stbi__convert_format frees input on failure
5211 5212 5213 5214 5215 5216 5217
   }

   *x = s->img_x;
   *y = s->img_y;
   if (comp) *comp = s->img_n;
   return out;
}
5218
#endif
5219 5220 5221

// Targa Truevision - TGA
// by Jonathan Dummer
5222
#ifndef STBI_NO_TGA
5223
// returns STBI_rgb or whatever, 0 on error
5224
static int stbi__tga_get_comp(int bits_per_pixel, int is_grey, int* is_rgb16)
5225 5226 5227 5228 5229
{
   // only RGB or RGBA (incl. 16bit) or grey allowed
   if(is_rgb16) *is_rgb16 = 0;
   switch(bits_per_pixel) {
      case 8:  return STBI_grey;
5230 5231 5232 5233
      case 16: if(is_grey) return STBI_grey_alpha;
            // else: fall-through
      case 15: if(is_rgb16) *is_rgb16 = 1;
            return STBI_rgb;
5234 5235 5236 5237 5238 5239
      case 24: // fall-through
      case 32: return bits_per_pixel/8;
      default: return 0;
   }
}

5240
static int stbi__tga_info(stbi__context *s, int *x, int *y, int *comp)
5241
{
5242 5243
    int tga_w, tga_h, tga_comp, tga_image_type, tga_bits_per_pixel, tga_colormap_bpp;
    int sz, tga_colormap_type;
5244
    stbi__get8(s);                   // discard Offset
5245 5246
    tga_colormap_type = stbi__get8(s); // colormap type
    if( tga_colormap_type > 1 ) {
5247
        stbi__rewind(s);
5248 5249
        return 0;      // only RGB or indexed allowed
    }
5250 5251 5252 5253 5254 5255 5256 5257 5258 5259 5260 5261 5262 5263 5264 5265 5266 5267 5268 5269 5270 5271
    tga_image_type = stbi__get8(s); // image type
    if ( tga_colormap_type == 1 ) { // colormapped (paletted) image
        if (tga_image_type != 1 && tga_image_type != 9) {
            stbi__rewind(s);
            return 0;
        }
        stbi__skip(s,4);       // skip index of first colormap entry and number of entries
        sz = stbi__get8(s);    //   check bits per palette color entry
        if ( (sz != 8) && (sz != 15) && (sz != 16) && (sz != 24) && (sz != 32) ) {
            stbi__rewind(s);
            return 0;
        }
        stbi__skip(s,4);       // skip image x and y origin
        tga_colormap_bpp = sz;
    } else { // "normal" image w/o colormap - only RGB or grey allowed, +/- RLE
        if ( (tga_image_type != 2) && (tga_image_type != 3) && (tga_image_type != 10) && (tga_image_type != 11) ) {
            stbi__rewind(s);
            return 0; // only RGB or grey allowed, +/- RLE
        }
        stbi__skip(s,9); // skip colormap specification and image x/y origin
        tga_colormap_bpp = 0;
    }
5272
    tga_w = stbi__get16le(s);
5273
    if( tga_w < 1 ) {
5274
        stbi__rewind(s);
5275 5276
        return 0;   // test width
    }
5277
    tga_h = stbi__get16le(s);
5278
    if( tga_h < 1 ) {
5279
        stbi__rewind(s);
5280 5281
        return 0;   // test height
    }
5282
    tga_bits_per_pixel = stbi__get8(s); // bits per pixel
5283
    stbi__get8(s); // ignore alpha bits
5284 5285 5286 5287 5288 5289 5290
    if (tga_colormap_bpp != 0) {
        if((tga_bits_per_pixel != 8) && (tga_bits_per_pixel != 16)) {
            // when using a colormap, tga_bits_per_pixel is the size of the indexes
            // I don't think anything but 8 or 16bit indexes makes sense
            stbi__rewind(s);
            return 0;
        }
5291
        tga_comp = stbi__tga_get_comp(tga_colormap_bpp, 0, NULL);
5292
    } else {
5293
        tga_comp = stbi__tga_get_comp(tga_bits_per_pixel, (tga_image_type == 3) || (tga_image_type == 11), NULL);
5294
    }
5295 5296 5297
    if(!tga_comp) {
      stbi__rewind(s);
      return 0;
5298 5299 5300
    }
    if (x) *x = tga_w;
    if (y) *y = tga_h;
5301
    if (comp) *comp = tga_comp;
5302 5303 5304
    return 1;                   // seems to have passed everything
}

5305
static int stbi__tga_test(stbi__context *s)
5306
{
5307 5308
   int res = 0;
   int sz, tga_color_type;
5309
   stbi__get8(s);      //   discard Offset
5310 5311
   tga_color_type = stbi__get8(s);   //   color type
   if ( tga_color_type > 1 ) goto errorEnd;   //   only RGB or indexed allowed
5312
   sz = stbi__get8(s);   //   image type
5313 5314 5315 5316 5317 5318 5319 5320 5321 5322 5323 5324
   if ( tga_color_type == 1 ) { // colormapped (paletted) image
      if (sz != 1 && sz != 9) goto errorEnd; // colortype 1 demands image type 1 or 9
      stbi__skip(s,4);       // skip index of first colormap entry and number of entries
      sz = stbi__get8(s);    //   check bits per palette color entry
      if ( (sz != 8) && (sz != 15) && (sz != 16) && (sz != 24) && (sz != 32) ) goto errorEnd;
      stbi__skip(s,4);       // skip image x and y origin
   } else { // "normal" image w/o colormap
      if ( (sz != 2) && (sz != 3) && (sz != 10) && (sz != 11) ) goto errorEnd; // only RGB or grey allowed, +/- RLE
      stbi__skip(s,9); // skip colormap specification and image x/y origin
   }
   if ( stbi__get16le(s) < 1 ) goto errorEnd;      //   test width
   if ( stbi__get16le(s) < 1 ) goto errorEnd;      //   test height
5325
   sz = stbi__get8(s);   //   bits per pixel
5326 5327 5328 5329 5330 5331
   if ( (tga_color_type == 1) && (sz != 8) && (sz != 16) ) goto errorEnd; // for colormapped images, bpp is size of an index
   if ( (sz != 8) && (sz != 15) && (sz != 16) && (sz != 24) && (sz != 32) ) goto errorEnd;

   res = 1; // if we got this far, everything's good and we can return 1 instead of 0

errorEnd:
5332
   stbi__rewind(s);
5333 5334 5335
   return res;
}

5336
// read 16bit value and convert to 24bit RGB
5337
static void stbi__tga_read_rgb16(stbi__context *s, stbi_uc* out)
5338
{
J
jon 已提交
5339
   stbi__uint16 px = (stbi__uint16)stbi__get16le(s);
5340 5341 5342 5343 5344 5345
   stbi__uint16 fiveBitMask = 31;
   // we have 3 channels with 5bits each
   int r = (px >> 10) & fiveBitMask;
   int g = (px >> 5) & fiveBitMask;
   int b = px & fiveBitMask;
   // Note that this saves the data in RGB(A) order, so it doesn't need to be swapped later
J
jon 已提交
5346 5347 5348
   out[0] = (stbi_uc)((r * 255)/31);
   out[1] = (stbi_uc)((g * 255)/31);
   out[2] = (stbi_uc)((b * 255)/31);
5349

5350 5351 5352 5353
   // some people claim that the most significant bit might be used for alpha
   // (possibly if an alpha-bit is set in the "image descriptor byte")
   // but that only made 16bit test images completely translucent..
   // so let's treat all 15 and 16bit TGAs as RGB with no alpha.
5354 5355
}

S
Sean Barrett 已提交
5356
static void *stbi__tga_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri)
5357 5358
{
   //   read in the TGA header stuff
5359 5360 5361
   int tga_offset = stbi__get8(s);
   int tga_indexed = stbi__get8(s);
   int tga_image_type = stbi__get8(s);
5362
   int tga_is_RLE = 0;
5363 5364
   int tga_palette_start = stbi__get16le(s);
   int tga_palette_len = stbi__get16le(s);
5365
   int tga_palette_bits = stbi__get8(s);
5366 5367 5368 5369
   int tga_x_origin = stbi__get16le(s);
   int tga_y_origin = stbi__get16le(s);
   int tga_width = stbi__get16le(s);
   int tga_height = stbi__get16le(s);
5370
   int tga_bits_per_pixel = stbi__get8(s);
5371
   int tga_comp, tga_rgb16=0;
5372
   int tga_inverted = stbi__get8(s);
5373
   // int tga_alpha_bits = tga_inverted & 15; // the 4 lowest bits - unused (useless?)
5374 5375 5376 5377 5378 5379 5380 5381
   //   image data
   unsigned char *tga_data;
   unsigned char *tga_palette = NULL;
   int i, j;
   unsigned char raw_data[4];
   int RLE_count = 0;
   int RLE_repeating = 0;
   int read_next_pixel = 1;
S
Sean Barrett 已提交
5382
   STBI_NOTUSED(ri);
5383 5384 5385 5386 5387 5388 5389 5390 5391 5392

   //   do a tiny bit of precessing
   if ( tga_image_type >= 8 )
   {
      tga_image_type -= 8;
      tga_is_RLE = 1;
   }
   tga_inverted = 1 - ((tga_inverted >> 5) & 1);

   //   If I'm paletted, then I'll use the number of bits from the palette
5393 5394
   if ( tga_indexed ) tga_comp = stbi__tga_get_comp(tga_palette_bits, 0, &tga_rgb16);
   else tga_comp = stbi__tga_get_comp(tga_bits_per_pixel, (tga_image_type == 3), &tga_rgb16);
5395 5396 5397

   if(!tga_comp) // shouldn't really happen, stbi__tga_test() should have ensured basic consistency
      return stbi__errpuc("bad format", "Can't find out TGA pixelformat");
5398 5399 5400 5401 5402 5403

   //   tga info
   *x = tga_width;
   *y = tga_height;
   if (comp) *comp = tga_comp;

5404 5405 5406 5407
   if (!stbi__mad3sizes_valid(tga_width, tga_height, tga_comp, 0))
      return stbi__errpuc("too large", "Corrupt TGA");

   tga_data = (unsigned char*)stbi__malloc_mad3(tga_width, tga_height, tga_comp, 0);
S
Sean Barrett 已提交
5408
   if (!tga_data) return stbi__errpuc("outofmem", "Out of memory");
5409

5410
   // skip to the data's starting position (offset usually = 0)
5411
   stbi__skip(s, tga_offset );
5412

5413
   if ( !tga_indexed && !tga_is_RLE && !tga_rgb16 ) {
5414
      for (i=0; i < tga_height; ++i) {
5415 5416
         int row = tga_inverted ? tga_height -i - 1 : i;
         stbi_uc *tga_row = tga_data + row*tga_width*tga_comp;
5417
         stbi__getn(s, tga_row, tga_width * tga_comp);
5418 5419 5420 5421 5422
      }
   } else  {
      //   do I need to load a palette?
      if ( tga_indexed)
      {
5423
         //   any data to skip? (offset usually = 0)
5424
         stbi__skip(s, tga_palette_start );
5425
         //   load the palette
5426
         tga_palette = (unsigned char*)stbi__malloc_mad2(tga_palette_len, tga_comp, 0);
5427
         if (!tga_palette) {
S
Sean Barrett 已提交
5428
            STBI_FREE(tga_data);
S
Sean Barrett 已提交
5429
            return stbi__errpuc("outofmem", "Out of memory");
5430
         }
5431 5432
         if (tga_rgb16) {
            stbi_uc *pal_entry = tga_palette;
5433
            STBI_ASSERT(tga_comp == STBI_rgb);
5434
            for (i=0; i < tga_palette_len; ++i) {
5435
               stbi__tga_read_rgb16(s, pal_entry);
5436 5437 5438 5439 5440 5441
               pal_entry += tga_comp;
            }
         } else if (!stbi__getn(s, tga_palette, tga_palette_len * tga_comp)) {
               STBI_FREE(tga_data);
               STBI_FREE(tga_palette);
               return stbi__errpuc("bad palette", "Corrupt TGA");
5442 5443 5444 5445 5446
         }
      }
      //   load the data
      for (i=0; i < tga_width * tga_height; ++i)
      {
5447
         //   if I'm in RLE mode, do I need to get a RLE stbi__pngchunk?
5448 5449 5450 5451 5452
         if ( tga_is_RLE )
         {
            if ( RLE_count == 0 )
            {
               //   yep, get the next byte as a RLE command
5453
               int RLE_cmd = stbi__get8(s);
5454 5455 5456 5457 5458 5459 5460 5461 5462 5463 5464 5465 5466 5467 5468 5469 5470
               RLE_count = 1 + (RLE_cmd & 127);
               RLE_repeating = RLE_cmd >> 7;
               read_next_pixel = 1;
            } else if ( !RLE_repeating )
            {
               read_next_pixel = 1;
            }
         } else
         {
            read_next_pixel = 1;
         }
         //   OK, if I need to read a pixel, do it now
         if ( read_next_pixel )
         {
            //   load however much data we did have
            if ( tga_indexed )
            {
5471 5472 5473 5474
               // read in index, then perform the lookup
               int pal_idx = (tga_bits_per_pixel == 8) ? stbi__get8(s) : stbi__get16le(s);
               if ( pal_idx >= tga_palette_len ) {
                  // invalid index
5475 5476
                  pal_idx = 0;
               }
5477 5478
               pal_idx *= tga_comp;
               for (j = 0; j < tga_comp; ++j) {
5479 5480
                  raw_data[j] = tga_palette[pal_idx+j];
               }
5481
            } else if(tga_rgb16) {
5482 5483
               STBI_ASSERT(tga_comp == STBI_rgb);
               stbi__tga_read_rgb16(s, raw_data);
5484
            } else {
5485
               //   read in the data raw
5486
               for (j = 0; j < tga_comp; ++j) {
5487
                  raw_data[j] = stbi__get8(s);
5488 5489 5490 5491 5492 5493 5494 5495 5496 5497 5498 5499 5500 5501 5502 5503 5504 5505
               }
            }
            //   clear the reading flag for the next pixel
            read_next_pixel = 0;
         } // end of reading a pixel

         // copy data
         for (j = 0; j < tga_comp; ++j)
           tga_data[i*tga_comp+j] = raw_data[j];

         //   in case we're in RLE mode, keep counting down
         --RLE_count;
      }
      //   do I need to invert the image?
      if ( tga_inverted )
      {
         for (j = 0; j*2 < tga_height; ++j)
         {
5506 5507 5508
            int index1 = j * tga_width * tga_comp;
            int index2 = (tga_height - 1 - j) * tga_width * tga_comp;
            for (i = tga_width * tga_comp; i > 0; --i)
5509 5510 5511 5512 5513 5514 5515 5516 5517 5518 5519 5520
            {
               unsigned char temp = tga_data[index1];
               tga_data[index1] = tga_data[index2];
               tga_data[index2] = temp;
               ++index1;
               ++index2;
            }
         }
      }
      //   clear my palette, if I had one
      if ( tga_palette != NULL )
      {
S
Sean Barrett 已提交
5521
         STBI_FREE( tga_palette );
5522 5523 5524
      }
   }

5525
   // swap RGB - if the source data was RGB16, it already is in the right order
5526
   if (tga_comp >= 3 && !tga_rgb16)
5527 5528 5529 5530 5531 5532 5533 5534 5535 5536 5537 5538 5539
   {
      unsigned char* tga_pixel = tga_data;
      for (i=0; i < tga_width * tga_height; ++i)
      {
         unsigned char temp = tga_pixel[0];
         tga_pixel[0] = tga_pixel[2];
         tga_pixel[2] = temp;
         tga_pixel += tga_comp;
      }
   }

   // convert to target component count
   if (req_comp && req_comp != tga_comp)
5540
      tga_data = stbi__convert_format(tga_data, tga_comp, req_comp, tga_width, tga_height);
5541 5542 5543 5544 5545 5546 5547 5548

   //   the things I do to get rid of an error message, and yet keep
   //   Microsoft's C compilers happy... [8^(
   tga_palette_start = tga_palette_len = tga_palette_bits =
         tga_x_origin = tga_y_origin = 0;
   //   OK, done
   return tga_data;
}
5549
#endif
5550 5551 5552 5553

// *************************************************************************************************
// Photoshop PSD loader -- PD by Thatcher Ulrich, integration by Nicolas Schulz, tweaked by STB

5554
#ifndef STBI_NO_PSD
S
Sean Barrett 已提交
5555
static int stbi__psd_test(stbi__context *s)
5556
{
5557 5558
   int r = (stbi__get32be(s) == 0x38425053);
   stbi__rewind(s);
5559 5560 5561
   return r;
}

5562 5563 5564 5565 5566 5567 5568 5569 5570 5571 5572 5573 5574 5575 5576 5577 5578 5579 5580 5581 5582 5583 5584 5585 5586 5587 5588 5589 5590 5591 5592 5593 5594 5595 5596 5597 5598 5599
static int stbi__psd_decode_rle(stbi__context *s, stbi_uc *p, int pixelCount)
{
   int count, nleft, len;

   count = 0;
   while ((nleft = pixelCount - count) > 0) {
      len = stbi__get8(s);
      if (len == 128) {
         // No-op.
      } else if (len < 128) {
         // Copy next len+1 bytes literally.
         len++;
         if (len > nleft) return 0; // corrupt data
         count += len;
         while (len) {
            *p = stbi__get8(s);
            p += 4;
            len--;
         }
      } else if (len > 128) {
         stbi_uc   val;
         // Next -len+1 bytes in the dest are replicated from next source byte.
         // (Interpret len as a negative 8-bit int.)
         len = 257 - len;
         if (len > nleft) return 0; // corrupt data
         val = stbi__get8(s);
         count += len;
         while (len) {
            *p = val;
            p += 4;
            len--;
         }
      }
   }

   return 1;
}

5600
static void *stbi__psd_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri, int bpc)
5601
{
5602
   int pixelCount;
5603
   int channelCount, compression;
5604
   int channel, i;
R
rmitton 已提交
5605
   int bitdepth;
5606
   int w,h;
5607
   stbi_uc *out;
S
Sean Barrett 已提交
5608
   STBI_NOTUSED(ri);
5609 5610

   // Check identifier
5611
   if (stbi__get32be(s) != 0x38425053)   // "8BPS"
S
Sean Barrett 已提交
5612
      return stbi__errpuc("not PSD", "Corrupt PSD image");
5613 5614

   // Check file type version.
5615
   if (stbi__get16be(s) != 1)
S
Sean Barrett 已提交
5616
      return stbi__errpuc("wrong version", "Unsupported version of PSD image");
5617 5618

   // Skip 6 reserved bytes.
5619
   stbi__skip(s, 6 );
5620 5621

   // Read the number of channels (R, G, B, A, etc).
5622
   channelCount = stbi__get16be(s);
5623
   if (channelCount < 0 || channelCount > 16)
S
Sean Barrett 已提交
5624
      return stbi__errpuc("wrong channel count", "Unsupported number of channels in PSD image");
5625 5626

   // Read the rows and columns of the image.
5627 5628
   h = stbi__get32be(s);
   w = stbi__get32be(s);
S
Sean Barrett 已提交
5629

5630
   // Make sure the depth is 8 bits.
R
rmitton 已提交
5631 5632 5633
   bitdepth = stbi__get16be(s);
   if (bitdepth != 8 && bitdepth != 16)
      return stbi__errpuc("unsupported bit depth", "PSD bit depth is not 8 or 16 bit");
5634 5635 5636 5637 5638 5639 5640 5641 5642 5643 5644

   // Make sure the color mode is RGB.
   // Valid options are:
   //   0: Bitmap
   //   1: Grayscale
   //   2: Indexed color
   //   3: RGB color
   //   4: CMYK color
   //   7: Multichannel
   //   8: Duotone
   //   9: Lab color
5645
   if (stbi__get16be(s) != 3)
S
Sean Barrett 已提交
5646
      return stbi__errpuc("wrong color format", "PSD is not in RGB color format");
5647 5648

   // Skip the Mode Data.  (It's the palette for indexed color; other info for other modes.)
5649
   stbi__skip(s,stbi__get32be(s) );
5650 5651

   // Skip the image resources.  (resolution, pen tool paths, etc)
5652
   stbi__skip(s, stbi__get32be(s) );
5653 5654

   // Skip the reserved data.
5655
   stbi__skip(s, stbi__get32be(s) );
5656 5657 5658 5659 5660

   // Find out if the data is compressed.
   // Known values:
   //   0: no compression
   //   1: RLE compressed
5661
   compression = stbi__get16be(s);
5662
   if (compression > 1)
S
Sean Barrett 已提交
5663
      return stbi__errpuc("bad compression", "PSD has an unknown compression format");
5664

5665 5666 5667 5668
   // Check size
   if (!stbi__mad3sizes_valid(4, w, h, 0))
      return stbi__errpuc("too large", "Corrupt PSD");

5669
   // Create the destination image.
5670 5671

   if (!compression && bitdepth == 16 && bpc == 16) {
5672
      out = (stbi_uc *) stbi__malloc_mad3(8, w, h, 0);
5673 5674 5675 5676
      ri->bits_per_channel = 16;
   } else
      out = (stbi_uc *) stbi__malloc(4 * w*h);

S
Sean Barrett 已提交
5677
   if (!out) return stbi__errpuc("outofmem", "Out of memory");
5678 5679 5680 5681
   pixelCount = w*h;

   // Initialize the data to zero.
   //memset( out, 0, pixelCount * 4 );
S
Sean Barrett 已提交
5682

5683 5684 5685 5686 5687 5688 5689 5690 5691 5692 5693
   // Finally, the image data.
   if (compression) {
      // RLE as used by .PSD and .TIFF
      // Loop until you get the number of unpacked bytes you are expecting:
      //     Read the next source byte into n.
      //     If n is between 0 and 127 inclusive, copy the next n+1 bytes literally.
      //     Else if n is between -127 and -1 inclusive, copy the next byte -n+1 times.
      //     Else if n is 128, noop.
      // Endloop

      // The RLE-compressed data is preceeded by a 2-byte data count for each row in the data,
5694
      // which we're going to just skip.
5695
      stbi__skip(s, h * channelCount * 2 );
5696 5697 5698

      // Read the RLE data by channel.
      for (channel = 0; channel < 4; channel++) {
5699
         stbi_uc *p;
S
Sean Barrett 已提交
5700

5701 5702 5703
         p = out+channel;
         if (channel >= channelCount) {
            // Fill this channel with default data.
5704 5705
            for (i = 0; i < pixelCount; i++, p += 4)
               *p = (channel == 3 ? 255 : 0);
5706 5707
         } else {
            // Read the RLE data.
5708 5709 5710
            if (!stbi__psd_decode_rle(s, p, pixelCount)) {
               STBI_FREE(out);
               return stbi__errpuc("corrupt", "bad RLE data");
5711 5712 5713
            }
         }
      }
S
Sean Barrett 已提交
5714

5715 5716
   } else {
      // We're at the raw image data.  It's each channel in order (Red, Green, Blue, Alpha, ...)
5717
      // where each channel consists of an 8-bit (or 16-bit) value for each pixel in the image.
S
Sean Barrett 已提交
5718

5719 5720
      // Read the data by channel.
      for (channel = 0; channel < 4; channel++) {
5721
         if (channel >= channelCount) {
5722
            // Fill this channel with default data.
5723 5724
            if (bitdepth == 16 && bpc == 16) {
               stbi__uint16 *q = ((stbi__uint16 *) out) + channel;
S
sammyhw 已提交
5725
               stbi__uint16 val = channel == 3 ? 65535 : 0;
5726 5727
               for (i = 0; i < pixelCount; i++, q += 4)
                  *q = val;
R
rmitton 已提交
5728
            } else {
5729 5730
               stbi_uc *p = out+channel;
               stbi_uc val = channel == 3 ? 255 : 0;
R
rmitton 已提交
5731
               for (i = 0; i < pixelCount; i++, p += 4)
5732 5733 5734 5735 5736 5737 5738 5739 5740 5741 5742 5743 5744 5745 5746 5747
                  *p = val;
            }
         } else {
            if (ri->bits_per_channel == 16) {    // output bpc
               stbi__uint16 *q = ((stbi__uint16 *) out) + channel;
               for (i = 0; i < pixelCount; i++, q += 4)
                  *q = (stbi__uint16) stbi__get16be(s);
            } else {
               stbi_uc *p = out+channel;
               if (bitdepth == 16) {  // input bpc
                  for (i = 0; i < pixelCount; i++, p += 4)
                     *p = (stbi_uc) (stbi__get16be(s) >> 8);
               } else {
                  for (i = 0; i < pixelCount; i++, p += 4)
                     *p = stbi__get8(s);
               }
R
rmitton 已提交
5748
            }
5749 5750 5751 5752
         }
      }
   }

5753
   // remove weird white matte from PSD
S
Sean Barrett 已提交
5754
   if (channelCount >= 4) {
5755 5756 5757 5758 5759 5760 5761 5762 5763 5764 5765 5766 5767 5768 5769 5770 5771 5772 5773 5774 5775 5776 5777
      if (ri->bits_per_channel == 16) {
         for (i=0; i < w*h; ++i) {
            stbi__uint16 *pixel = (stbi__uint16 *) out + 4*i;
            if (pixel[3] != 0 && pixel[3] != 65535) {
               float a = pixel[3] / 65535.0f;
               float ra = 1.0f / a;
               float inv_a = 65535.0f * (1 - ra);
               pixel[0] = (stbi__uint16) (pixel[0]*ra + inv_a);
               pixel[1] = (stbi__uint16) (pixel[1]*ra + inv_a);
               pixel[2] = (stbi__uint16) (pixel[2]*ra + inv_a);
            }
         }
      } else {
         for (i=0; i < w*h; ++i) {
            unsigned char *pixel = out + 4*i;
            if (pixel[3] != 0 && pixel[3] != 255) {
               float a = pixel[3] / 255.0f;
               float ra = 1.0f / a;
               float inv_a = 255.0f * (1 - ra);
               pixel[0] = (unsigned char) (pixel[0]*ra + inv_a);
               pixel[1] = (unsigned char) (pixel[1]*ra + inv_a);
               pixel[2] = (unsigned char) (pixel[2]*ra + inv_a);
            }
5778 5779 5780 5781
         }
      }
   }

5782
   // convert to desired output format
5783
   if (req_comp && req_comp != 4) {
5784 5785 5786 5787
      if (ri->bits_per_channel == 16)
         out = (stbi_uc *) stbi__convert_format16((stbi__uint16 *) out, 4, req_comp, w, h);
      else
         out = stbi__convert_format(out, 4, req_comp, w, h);
5788
      if (out == NULL) return out; // stbi__convert_format frees input on failure
5789 5790
   }

5791
   if (comp) *comp = 4;
5792 5793
   *y = h;
   *x = w;
S
Sean Barrett 已提交
5794

5795 5796
   return out;
}
5797
#endif
5798 5799 5800 5801 5802 5803 5804 5805

// *************************************************************************************************
// Softimage PIC loader
// by Tom Seddon
//
// See http://softimage.wiki.softimage.com/index.php/INFO:_PIC_file_format
// See http://ozviz.wasp.uwa.edu.au/~pbourke/dataformats/softimagepic/

5806
#ifndef STBI_NO_PIC
5807
static int stbi__pic_is4(stbi__context *s,const char *str)
5808 5809 5810
{
   int i;
   for (i=0; i<4; ++i)
5811
      if (stbi__get8(s) != (stbi_uc)str[i])
5812 5813 5814 5815 5816
         return 0;

   return 1;
}

5817
static int stbi__pic_test_core(stbi__context *s)
5818 5819 5820
{
   int i;

5821
   if (!stbi__pic_is4(s,"\x53\x80\xF6\x34"))
5822 5823 5824
      return 0;

   for(i=0;i<84;++i)
5825
      stbi__get8(s);
5826

5827
   if (!stbi__pic_is4(s,"PICT"))
5828 5829 5830 5831 5832 5833 5834 5835
      return 0;

   return 1;
}

typedef struct
{
   stbi_uc size,type,channel;
5836
} stbi__pic_packet;
5837

5838
static stbi_uc *stbi__readval(stbi__context *s, int channel, stbi_uc *dest)
5839 5840 5841 5842 5843
{
   int mask=0x80, i;

   for (i=0; i<4; ++i, mask>>=1) {
      if (channel & mask) {
5844
         if (stbi__at_eof(s)) return stbi__errpuc("bad file","PIC file too short");
5845
         dest[i]=stbi__get8(s);
5846 5847 5848 5849 5850 5851
      }
   }

   return dest;
}

5852
static void stbi__copyval(int channel,stbi_uc *dest,const stbi_uc *src)
5853 5854 5855 5856 5857 5858 5859 5860
{
   int mask=0x80,i;

   for (i=0;i<4; ++i, mask>>=1)
      if (channel&mask)
         dest[i]=src[i];
}

5861
static stbi_uc *stbi__pic_load_core(stbi__context *s,int width,int height,int *comp, stbi_uc *result)
5862 5863
{
   int act_comp=0,num_packets=0,y,chained;
5864
   stbi__pic_packet packets[10];
5865 5866 5867 5868

   // this will (should...) cater for even some bizarre stuff like having data
    // for the same channel in multiple packets.
   do {
5869
      stbi__pic_packet *packet;
5870 5871

      if (num_packets==sizeof(packets)/sizeof(packets[0]))
S
Sean Barrett 已提交
5872
         return stbi__errpuc("bad format","too many packets");
5873 5874 5875

      packet = &packets[num_packets++];

5876
      chained = stbi__get8(s);
5877 5878 5879
      packet->size    = stbi__get8(s);
      packet->type    = stbi__get8(s);
      packet->channel = stbi__get8(s);
5880 5881 5882

      act_comp |= packet->channel;

5883
      if (stbi__at_eof(s))          return stbi__errpuc("bad file","file too short (reading packets)");
S
Sean Barrett 已提交
5884
      if (packet->size != 8)  return stbi__errpuc("bad format","packet isn't 8bpp");
5885 5886 5887 5888 5889 5890 5891 5892
   } while (chained);

   *comp = (act_comp & 0x10 ? 4 : 3); // has alpha channel?

   for(y=0; y<height; ++y) {
      int packet_idx;

      for(packet_idx=0; packet_idx < num_packets; ++packet_idx) {
5893
         stbi__pic_packet *packet = &packets[packet_idx];
5894 5895 5896 5897
         stbi_uc *dest = result+y*width*4;

         switch (packet->type) {
            default:
S
Sean Barrett 已提交
5898
               return stbi__errpuc("bad format","packet has bad compression type");
5899 5900 5901 5902 5903

            case 0: {//uncompressed
               int x;

               for(x=0;x<width;++x, dest+=4)
5904
                  if (!stbi__readval(s,packet->channel,dest))
5905 5906 5907 5908 5909 5910 5911 5912 5913 5914 5915
                     return 0;
               break;
            }

            case 1://Pure RLE
               {
                  int left=width, i;

                  while (left>0) {
                     stbi_uc count,value[4];

5916
                     count=stbi__get8(s);
5917
                     if (stbi__at_eof(s))   return stbi__errpuc("bad file","file too short (pure read count)");
5918 5919

                     if (count > left)
5920
                        count = (stbi_uc) left;
5921

5922
                     if (!stbi__readval(s,packet->channel,value))  return 0;
5923 5924

                     for(i=0; i<count; ++i,dest+=4)
5925
                        stbi__copyval(packet->channel,dest,value);
5926 5927 5928 5929 5930 5931 5932 5933
                     left -= count;
                  }
               }
               break;

            case 2: {//Mixed RLE
               int left=width;
               while (left>0) {
5934 5935
                  int count = stbi__get8(s), i;
                  if (stbi__at_eof(s))  return stbi__errpuc("bad file","file too short (mixed read count)");
5936 5937 5938 5939 5940

                  if (count >= 128) { // Repeated
                     stbi_uc value[4];

                     if (count==128)
5941
                        count = stbi__get16be(s);
5942 5943 5944
                     else
                        count -= 127;
                     if (count > left)
S
Sean Barrett 已提交
5945
                        return stbi__errpuc("bad file","scanline overrun");
5946

5947
                     if (!stbi__readval(s,packet->channel,value))
5948 5949 5950
                        return 0;

                     for(i=0;i<count;++i, dest += 4)
5951
                        stbi__copyval(packet->channel,dest,value);
5952 5953
                  } else { // Raw
                     ++count;
S
Sean Barrett 已提交
5954
                     if (count>left) return stbi__errpuc("bad file","scanline overrun");
5955 5956

                     for(i=0;i<count;++i, dest+=4)
5957
                        if (!stbi__readval(s,packet->channel,dest))
5958 5959 5960 5961 5962 5963 5964 5965 5966 5967 5968 5969 5970
                           return 0;
                  }
                  left-=count;
               }
               break;
            }
         }
      }
   }

   return result;
}

S
Sean Barrett 已提交
5971
static void *stbi__pic_load(stbi__context *s,int *px,int *py,int *comp,int req_comp, stbi__result_info *ri)
5972 5973 5974
{
   stbi_uc *result;
   int i, x,y;
S
Sean Barrett 已提交
5975
   STBI_NOTUSED(ri);
5976 5977

   for (i=0; i<92; ++i)
5978
      stbi__get8(s);
5979

5980 5981 5982
   x = stbi__get16be(s);
   y = stbi__get16be(s);
   if (stbi__at_eof(s))  return stbi__errpuc("bad file","file too short (pic header)");
5983
   if (!stbi__mad3sizes_valid(x, y, 4, 0)) return stbi__errpuc("too large", "PIC image too large to decode");
5984

S
Sean Barrett 已提交
5985 5986 5987
   stbi__get32be(s); //skip `ratio'
   stbi__get16be(s); //skip `fields'
   stbi__get16be(s); //skip `pad'
5988 5989

   // intermediate buffer is RGBA
5990
   result = (stbi_uc *) stbi__malloc_mad3(x, y, 4, 0);
5991 5992
   memset(result, 0xff, x*y*4);

5993
   if (!stbi__pic_load_core(s,x,y,comp, result)) {
S
Sean Barrett 已提交
5994
      STBI_FREE(result);
5995 5996 5997 5998 5999
      result=0;
   }
   *px = x;
   *py = y;
   if (req_comp == 0) req_comp = *comp;
6000
   result=stbi__convert_format(result,4,req_comp,x,y);
6001 6002 6003 6004

   return result;
}

S
Sean Barrett 已提交
6005
static int stbi__pic_test(stbi__context *s)
6006
{
6007 6008
   int r = stbi__pic_test_core(s);
   stbi__rewind(s);
6009 6010
   return r;
}
6011
#endif
6012 6013 6014

// *************************************************************************************************
// GIF loader -- public domain by Jean-Marc Lienher -- simplified/shrunk by stb
6015 6016

#ifndef STBI_NO_GIF
S
Sean Barrett 已提交
6017
typedef struct
6018
{
6019
   stbi__int16 prefix;
6020 6021 6022
   stbi_uc first;
   stbi_uc suffix;
} stbi__gif_lzw;
6023

6024
typedef struct
6025 6026
{
   int w,h;
U
urraka 已提交
6027 6028
   stbi_uc *out, *old_out;             // output buffer (always 4 components)
   int flags, bgindex, ratio, transparent, eflags, delay;
6029 6030 6031 6032
   stbi_uc  pal[256][4];
   stbi_uc lpal[256][4];
   stbi__gif_lzw codes[4096];
   stbi_uc *color_table;
6033 6034 6035 6036 6037 6038
   int parse, step;
   int lflags;
   int start_x, start_y;
   int max_x, max_y;
   int cur_x, cur_y;
   int line_size;
6039
} stbi__gif;
6040

6041
static int stbi__gif_test_raw(stbi__context *s)
6042 6043
{
   int sz;
6044 6045
   if (stbi__get8(s) != 'G' || stbi__get8(s) != 'I' || stbi__get8(s) != 'F' || stbi__get8(s) != '8') return 0;
   sz = stbi__get8(s);
6046
   if (sz != '9' && sz != '7') return 0;
6047
   if (stbi__get8(s) != 'a') return 0;
6048 6049 6050
   return 1;
}

S
Sean Barrett 已提交
6051
static int stbi__gif_test(stbi__context *s)
6052
{
6053 6054
   int r = stbi__gif_test_raw(s);
   stbi__rewind(s);
6055 6056 6057
   return r;
}

6058
static void stbi__gif_parse_colortable(stbi__context *s, stbi_uc pal[256][4], int num_entries, int transp)
6059 6060 6061
{
   int i;
   for (i=0; i < num_entries; ++i) {
6062 6063 6064
      pal[i][2] = stbi__get8(s);
      pal[i][1] = stbi__get8(s);
      pal[i][0] = stbi__get8(s);
6065
      pal[i][3] = transp == i ? 0 : 255;
S
Sean Barrett 已提交
6066
   }
6067 6068
}

6069
static int stbi__gif_header(stbi__context *s, stbi__gif *g, int *comp, int is_info)
6070
{
6071
   stbi_uc version;
6072
   if (stbi__get8(s) != 'G' || stbi__get8(s) != 'I' || stbi__get8(s) != 'F' || stbi__get8(s) != '8')
S
Sean Barrett 已提交
6073
      return stbi__err("not GIF", "Corrupt GIF");
6074

6075
   version = stbi__get8(s);
S
Sean Barrett 已提交
6076
   if (version != '7' && version != '9')    return stbi__err("not GIF", "Corrupt GIF");
S
Sean Barrett 已提交
6077
   if (stbi__get8(s) != 'a')                return stbi__err("not GIF", "Corrupt GIF");
S
Sean Barrett 已提交
6078

6079
   stbi__g_failure_reason = "";
6080 6081 6082 6083 6084
   g->w = stbi__get16le(s);
   g->h = stbi__get16le(s);
   g->flags = stbi__get8(s);
   g->bgindex = stbi__get8(s);
   g->ratio = stbi__get8(s);
6085 6086 6087 6088 6089 6090 6091
   g->transparent = -1;

   if (comp != 0) *comp = 4;  // can't actually tell whether it's 3 or 4 until we parse the comments

   if (is_info) return 1;

   if (g->flags & 0x80)
6092
      stbi__gif_parse_colortable(s,g->pal, 2 << (g->flags & 7), -1);
6093 6094 6095 6096

   return 1;
}

6097
static int stbi__gif_info_raw(stbi__context *s, int *x, int *y, int *comp)
6098
{
6099 6100 6101
   stbi__gif* g = (stbi__gif*) stbi__malloc(sizeof(stbi__gif));
   if (!stbi__gif_header(s, g, comp, 1)) {
      STBI_FREE(g);
6102
      stbi__rewind( s );
6103 6104
      return 0;
   }
6105 6106 6107
   if (x) *x = g->w;
   if (y) *y = g->h;
   STBI_FREE(g);
6108 6109 6110
   return 1;
}

6111
static void stbi__out_gif_code(stbi__gif *g, stbi__uint16 code)
6112
{
6113
   stbi_uc *p, *c;
6114

6115
   // recurse to decode the prefixes, since the linked-list is backwards,
6116 6117
   // and working backwards through an interleaved image would be nasty
   if (g->codes[code].prefix >= 0)
6118
      stbi__out_gif_code(g, g->codes[code].prefix);
6119 6120

   if (g->cur_y >= g->max_y) return;
S
Sean Barrett 已提交
6121

6122 6123 6124 6125 6126 6127 6128 6129 6130 6131 6132 6133 6134 6135 6136 6137 6138 6139 6140 6141 6142 6143 6144
   p = &g->out[g->cur_x + g->cur_y];
   c = &g->color_table[g->codes[code].suffix * 4];

   if (c[3] >= 128) {
      p[0] = c[2];
      p[1] = c[1];
      p[2] = c[0];
      p[3] = c[3];
   }
   g->cur_x += 4;

   if (g->cur_x >= g->max_x) {
      g->cur_x = g->start_x;
      g->cur_y += g->step;

      while (g->cur_y >= g->max_y && g->parse > 0) {
         g->step = (1 << g->parse) * g->line_size;
         g->cur_y = g->start_y + (g->step >> 1);
         --g->parse;
      }
   }
}

6145
static stbi_uc *stbi__process_gif_raster(stbi__context *s, stbi__gif *g)
6146
{
6147
   stbi_uc lzw_cs;
S
Sean Barrett 已提交
6148
   stbi__int32 len, init_code;
6149 6150
   stbi__uint32 first;
   stbi__int32 codesize, codemask, avail, oldcode, bits, valid_bits, clear;
6151
   stbi__gif_lzw *p;
6152

6153
   lzw_cs = stbi__get8(s);
6154
   if (lzw_cs > 12) return NULL;
6155 6156 6157 6158 6159 6160
   clear = 1 << lzw_cs;
   first = 1;
   codesize = lzw_cs + 1;
   codemask = (1 << codesize) - 1;
   bits = 0;
   valid_bits = 0;
S
Sean Barrett 已提交
6161 6162 6163 6164
   for (init_code = 0; init_code < clear; init_code++) {
      g->codes[init_code].prefix = -1;
      g->codes[init_code].first = (stbi_uc) init_code;
      g->codes[init_code].suffix = (stbi_uc) init_code;
6165 6166 6167 6168 6169 6170 6171 6172 6173 6174
   }

   // support no starting clear code
   avail = clear+2;
   oldcode = -1;

   len = 0;
   for(;;) {
      if (valid_bits < codesize) {
         if (len == 0) {
6175
            len = stbi__get8(s); // start new block
S
Sean Barrett 已提交
6176
            if (len == 0)
6177 6178 6179
               return g->out;
         }
         --len;
6180
         bits |= (stbi__int32) stbi__get8(s) << valid_bits;
6181 6182
         valid_bits += 8;
      } else {
S
Sean Barrett 已提交
6183
         stbi__int32 code = bits & codemask;
6184 6185 6186 6187 6188 6189 6190 6191 6192 6193
         bits >>= codesize;
         valid_bits -= codesize;
         // @OPTIMIZE: is there some way we can accelerate the non-clear path?
         if (code == clear) {  // clear code
            codesize = lzw_cs + 1;
            codemask = (1 << codesize) - 1;
            avail = clear + 2;
            oldcode = -1;
            first = 0;
         } else if (code == clear + 1) { // end of stream code
6194 6195 6196
            stbi__skip(s, len);
            while ((len = stbi__get8(s)) > 0)
               stbi__skip(s,len);
6197 6198
            return g->out;
         } else if (code <= avail) {
S
Sean Barrett 已提交
6199
            if (first) return stbi__errpuc("no clear code", "Corrupt GIF");
6200 6201 6202

            if (oldcode >= 0) {
               p = &g->codes[avail++];
S
Sean Barrett 已提交
6203
               if (avail > 4096)        return stbi__errpuc("too many codes", "Corrupt GIF");
6204 6205 6206 6207
               p->prefix = (stbi__int16) oldcode;
               p->first = g->codes[oldcode].first;
               p->suffix = (code == avail) ? p->first : g->codes[code].first;
            } else if (code == avail)
S
Sean Barrett 已提交
6208
               return stbi__errpuc("illegal code in raster", "Corrupt GIF");
6209

6210
            stbi__out_gif_code(g, (stbi__uint16) code);
6211 6212 6213 6214 6215 6216 6217 6218

            if ((avail & codemask) == 0 && avail <= 0x0FFF) {
               codesize++;
               codemask = (1 << codesize) - 1;
            }

            oldcode = code;
         } else {
S
Sean Barrett 已提交
6219
            return stbi__errpuc("illegal code in raster", "Corrupt GIF");
6220
         }
S
Sean Barrett 已提交
6221
      }
6222 6223 6224
   }
}

U
urraka 已提交
6225
static void stbi__fill_gif_background(stbi__gif *g, int x0, int y0, int x1, int y1)
6226
{
U
urraka 已提交
6227
   int x, y;
6228
   stbi_uc *c = g->pal[g->bgindex];
U
urraka 已提交
6229 6230 6231 6232 6233 6234 6235 6236
   for (y = y0; y < y1; y += 4 * g->w) {
      for (x = x0; x < x1; x += 4) {
         stbi_uc *p  = &g->out[y + x];
         p[0] = c[2];
         p[1] = c[1];
         p[2] = c[0];
         p[3] = 0;
      }
6237 6238 6239 6240
   }
}

// this function is designed to support animated gifs, although stb_image doesn't support it
6241
static stbi_uc *stbi__gif_load_next(stbi__context *s, stbi__gif *g, int *comp, int req_comp)
6242 6243
{
   int i;
U
urraka 已提交
6244
   stbi_uc *prev_out = 0;
6245

U
urraka 已提交
6246 6247 6248
   if (g->out == 0 && !stbi__gif_header(s, g, comp,0))
      return 0; // stbi__g_failure_reason set by stbi__gif_header

6249 6250 6251
   if (!stbi__mad3sizes_valid(g->w, g->h, 4, 0))
      return stbi__errpuc("too large", "GIF too large");

U
urraka 已提交
6252
   prev_out = g->out;
6253
   g->out = (stbi_uc *) stbi__malloc_mad3(4, g->w, g->h, 0);
U
urraka 已提交
6254 6255 6256 6257 6258 6259 6260 6261 6262 6263 6264 6265 6266 6267 6268 6269 6270 6271 6272 6273
   if (g->out == 0) return stbi__errpuc("outofmem", "Out of memory");

   switch ((g->eflags & 0x1C) >> 2) {
      case 0: // unspecified (also always used on 1st frame)
         stbi__fill_gif_background(g, 0, 0, 4 * g->w, 4 * g->w * g->h);
         break;
      case 1: // do not dispose
         if (prev_out) memcpy(g->out, prev_out, 4 * g->w * g->h);
         g->old_out = prev_out;
         break;
      case 2: // dispose to background
         if (prev_out) memcpy(g->out, prev_out, 4 * g->w * g->h);
         stbi__fill_gif_background(g, g->start_x, g->start_y, g->max_x, g->max_y);
         break;
      case 3: // dispose to previous
         if (g->old_out) {
            for (i = g->start_y; i < g->max_y; i += 4 * g->w)
               memcpy(&g->out[i + g->start_x], &g->old_out[i + g->start_x], g->max_x - g->start_x);
         }
         break;
6274
   }
S
Sean Barrett 已提交
6275

6276
   for (;;) {
6277
      switch (stbi__get8(s)) {
6278 6279
         case 0x2C: /* Image Descriptor */
         {
U
urraka 已提交
6280
            int prev_trans = -1;
6281
            stbi__int32 x, y, w, h;
6282
            stbi_uc *o;
6283

6284 6285 6286 6287
            x = stbi__get16le(s);
            y = stbi__get16le(s);
            w = stbi__get16le(s);
            h = stbi__get16le(s);
6288
            if (((x + w) > (g->w)) || ((y + h) > (g->h)))
S
Sean Barrett 已提交
6289
               return stbi__errpuc("bad Image Descriptor", "Corrupt GIF");
6290 6291 6292 6293 6294 6295 6296 6297 6298

            g->line_size = g->w * 4;
            g->start_x = x * 4;
            g->start_y = y * g->line_size;
            g->max_x   = g->start_x + w * 4;
            g->max_y   = g->start_y + h * g->line_size;
            g->cur_x   = g->start_x;
            g->cur_y   = g->start_y;

6299
            g->lflags = stbi__get8(s);
6300 6301 6302 6303 6304 6305 6306 6307 6308 6309

            if (g->lflags & 0x40) {
               g->step = 8 * g->line_size; // first interlaced spacing
               g->parse = 3;
            } else {
               g->step = g->line_size;
               g->parse = 0;
            }

            if (g->lflags & 0x80) {
6310
               stbi__gif_parse_colortable(s,g->lpal, 2 << (g->lflags & 7), g->eflags & 0x01 ? g->transparent : -1);
S
Sean Barrett 已提交
6311
               g->color_table = (stbi_uc *) g->lpal;
6312
            } else if (g->flags & 0x80) {
U
urraka 已提交
6313 6314
               if (g->transparent >= 0 && (g->eflags & 0x01)) {
                  prev_trans = g->pal[g->transparent][3];
6315
                  g->pal[g->transparent][3] = 0;
U
urraka 已提交
6316
               }
6317
               g->color_table = (stbi_uc *) g->pal;
6318
            } else
S
Sean Barrett 已提交
6319
               return stbi__errpuc("missing color table", "Corrupt GIF");
S
Sean Barrett 已提交
6320

6321
            o = stbi__process_gif_raster(s, g);
6322 6323
            if (o == NULL) return NULL;

U
urraka 已提交
6324
            if (prev_trans != -1)
6325
               g->pal[g->transparent][3] = (stbi_uc) prev_trans;
U
urraka 已提交
6326

6327 6328 6329 6330 6331 6332
            return o;
         }

         case 0x21: // Comment Extension.
         {
            int len;
6333 6334
            if (stbi__get8(s) == 0xF9) { // Graphic Control Extension.
               len = stbi__get8(s);
6335
               if (len == 4) {
6336
                  g->eflags = stbi__get8(s);
U
urraka 已提交
6337
                  g->delay = stbi__get16le(s);
6338
                  g->transparent = stbi__get8(s);
6339
               } else {
6340
                  stbi__skip(s, len);
6341 6342 6343
                  break;
               }
            }
6344 6345
            while ((len = stbi__get8(s)) != 0)
               stbi__skip(s, len);
6346 6347 6348 6349
            break;
         }

         case 0x3B: // gif stream termination code
6350
            return (stbi_uc *) s; // using '1' causes warning on some compilers
6351 6352

         default:
S
Sean Barrett 已提交
6353
            return stbi__errpuc("unknown code", "Corrupt GIF");
6354 6355
      }
   }
6356 6357

   STBI_NOTUSED(req_comp);
6358 6359
}

S
Sean Barrett 已提交
6360
static void *stbi__gif_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri)
6361
{
6362
   stbi_uc *u = 0;
6363 6364
   stbi__gif* g = (stbi__gif*) stbi__malloc(sizeof(stbi__gif));
   memset(g, 0, sizeof(*g));
S
Sean Barrett 已提交
6365
   STBI_NOTUSED(ri);
6366

6367
   u = stbi__gif_load_next(s, g, comp, req_comp);
6368
   if (u == (stbi_uc *) s) u = 0;  // end of animated gif marker
6369
   if (u) {
6370 6371
      *x = g->w;
      *y = g->h;
U
urraka 已提交
6372
      if (req_comp && req_comp != 4)
6373
         u = stbi__convert_format(u, 4, req_comp, g->w, g->h);
6374
   }
6375 6376 6377
   else if (g->out)
      STBI_FREE(g->out);
   STBI_FREE(g);
6378 6379 6380
   return u;
}

S
Sean Barrett 已提交
6381
static int stbi__gif_info(stbi__context *s, int *x, int *y, int *comp)
6382
{
6383
   return stbi__gif_info_raw(s,x,y,comp);
6384
}
6385
#endif
6386 6387 6388 6389 6390

// *************************************************************************************************
// Radiance RGBE HDR loader
// originally by Nicolas Schulz
#ifndef STBI_NO_HDR
J
jon 已提交
6391
static int stbi__hdr_test_core(stbi__context *s, const char *signature)
6392 6393 6394
{
   int i;
   for (i=0; signature[i]; ++i)
6395
      if (stbi__get8(s) != signature[i])
J
jon 已提交
6396 6397
          return 0;
   stbi__rewind(s);
6398 6399 6400
   return 1;
}

S
Sean Barrett 已提交
6401
static int stbi__hdr_test(stbi__context* s)
6402
{
J
jon 已提交
6403
   int r = stbi__hdr_test_core(s, "#?RADIANCE\n");
6404
   stbi__rewind(s);
J
jon 已提交
6405 6406 6407 6408
   if(!r) {
       r = stbi__hdr_test_core(s, "#?RGBE\n");
       stbi__rewind(s);
   }
6409 6410 6411
   return r;
}

6412 6413
#define STBI__HDR_BUFLEN  1024
static char *stbi__hdr_gettoken(stbi__context *z, char *buffer)
6414 6415 6416 6417
{
   int len=0;
   char c = '\0';

6418
   c = (char) stbi__get8(z);
6419

6420
   while (!stbi__at_eof(z) && c != '\n') {
6421
      buffer[len++] = c;
6422
      if (len == STBI__HDR_BUFLEN-1) {
6423
         // flush to end of line
6424
         while (!stbi__at_eof(z) && stbi__get8(z) != '\n')
6425 6426 6427
            ;
         break;
      }
6428
      c = (char) stbi__get8(z);
6429 6430 6431 6432 6433 6434
   }

   buffer[len] = 0;
   return buffer;
}

6435
static void stbi__hdr_convert(float *output, stbi_uc *input, int req_comp)
6436 6437 6438 6439 6440 6441 6442 6443 6444 6445 6446 6447 6448 6449 6450 6451 6452 6453 6454 6455 6456 6457 6458 6459 6460 6461
{
   if ( input[3] != 0 ) {
      float f1;
      // Exponent
      f1 = (float) ldexp(1.0f, input[3] - (int)(128 + 8));
      if (req_comp <= 2)
         output[0] = (input[0] + input[1] + input[2]) * f1 / 3;
      else {
         output[0] = input[0] * f1;
         output[1] = input[1] * f1;
         output[2] = input[2] * f1;
      }
      if (req_comp == 2) output[1] = 1;
      if (req_comp == 4) output[3] = 1;
   } else {
      switch (req_comp) {
         case 4: output[3] = 1; /* fallthrough */
         case 3: output[0] = output[1] = output[2] = 0;
                 break;
         case 2: output[1] = 1; /* fallthrough */
         case 1: output[0] = 0;
                 break;
      }
   }
}

S
Sean Barrett 已提交
6462
static float *stbi__hdr_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri)
6463
{
6464
   char buffer[STBI__HDR_BUFLEN];
6465 6466 6467 6468 6469 6470 6471 6472
   char *token;
   int valid = 0;
   int width, height;
   stbi_uc *scanline;
   float *hdr_data;
   int len;
   unsigned char count, value;
   int i, j, k, c1,c2, z;
J
jon 已提交
6473
   const char *headerToken;
S
Sean Barrett 已提交
6474
   STBI_NOTUSED(ri);
6475 6476

   // Check identifier
J
jon 已提交
6477 6478
   headerToken = stbi__hdr_gettoken(s,buffer);
   if (strcmp(headerToken, "#?RADIANCE") != 0 && strcmp(headerToken, "#?RGBE") != 0)
S
Sean Barrett 已提交
6479
      return stbi__errpf("not HDR", "Corrupt HDR image");
S
Sean Barrett 已提交
6480

6481 6482
   // Parse header
   for(;;) {
6483
      token = stbi__hdr_gettoken(s,buffer);
6484 6485 6486 6487
      if (token[0] == 0) break;
      if (strcmp(token, "FORMAT=32-bit_rle_rgbe") == 0) valid = 1;
   }

S
Sean Barrett 已提交
6488
   if (!valid)    return stbi__errpf("unsupported format", "Unsupported HDR format");
6489 6490 6491

   // Parse width and height
   // can't use sscanf() if we're not using stdio!
6492
   token = stbi__hdr_gettoken(s,buffer);
S
Sean Barrett 已提交
6493
   if (strncmp(token, "-Y ", 3))  return stbi__errpf("unsupported data layout", "Unsupported HDR format");
6494 6495 6496
   token += 3;
   height = (int) strtol(token, &token, 10);
   while (*token == ' ') ++token;
S
Sean Barrett 已提交
6497
   if (strncmp(token, "+X ", 3))  return stbi__errpf("unsupported data layout", "Unsupported HDR format");
6498 6499 6500 6501 6502 6503
   token += 3;
   width = (int) strtol(token, NULL, 10);

   *x = width;
   *y = height;

6504
   if (comp) *comp = 3;
6505 6506
   if (req_comp == 0) req_comp = 3;

6507 6508 6509
   if (!stbi__mad4sizes_valid(width, height, req_comp, sizeof(float), 0))
      return stbi__errpf("too large", "HDR image is too large");

6510
   // Read data
6511 6512 6513
   hdr_data = (float *) stbi__malloc_mad4(width, height, req_comp, sizeof(float), 0);
   if (!hdr_data)
      return stbi__errpf("outofmem", "Out of memory");
6514 6515 6516 6517 6518 6519 6520 6521 6522

   // Load image data
   // image data is stored as some number of sca
   if ( width < 8 || width >= 32768) {
      // Read flat data
      for (j=0; j < height; ++j) {
         for (i=0; i < width; ++i) {
            stbi_uc rgbe[4];
           main_decode_loop:
6523
            stbi__getn(s, rgbe, 4);
6524
            stbi__hdr_convert(hdr_data + j * width * req_comp + i * req_comp, rgbe, req_comp);
6525 6526 6527 6528 6529 6530 6531
         }
      }
   } else {
      // Read RLE-encoded data
      scanline = NULL;

      for (j = 0; j < height; ++j) {
6532 6533 6534
         c1 = stbi__get8(s);
         c2 = stbi__get8(s);
         len = stbi__get8(s);
6535 6536 6537
         if (c1 != 2 || c2 != 2 || (len & 0x80)) {
            // not run-length encoded, so we have to actually use THIS data as a decoded
            // pixel (note this can't be a valid pixel--one of RGB must be >= 128)
6538 6539 6540 6541
            stbi_uc rgbe[4];
            rgbe[0] = (stbi_uc) c1;
            rgbe[1] = (stbi_uc) c2;
            rgbe[2] = (stbi_uc) len;
6542
            rgbe[3] = (stbi_uc) stbi__get8(s);
6543
            stbi__hdr_convert(hdr_data, rgbe, req_comp);
6544 6545
            i = 1;
            j = 0;
S
Sean Barrett 已提交
6546
            STBI_FREE(scanline);
6547 6548 6549
            goto main_decode_loop; // yes, this makes no sense
         }
         len <<= 8;
6550
         len |= stbi__get8(s);
S
Sean Barrett 已提交
6551
         if (len != width) { STBI_FREE(hdr_data); STBI_FREE(scanline); return stbi__errpf("invalid decoded scanline length", "corrupt HDR"); }
6552 6553 6554 6555 6556 6557 6558
         if (scanline == NULL) {
            scanline = (stbi_uc *) stbi__malloc_mad2(width, 4, 0);
            if (!scanline) {
               STBI_FREE(hdr_data);
               return stbi__errpf("outofmem", "Out of memory");
            }
         }
S
Sean Barrett 已提交
6559

6560
         for (k = 0; k < 4; ++k) {
6561
            int nleft;
6562
            i = 0;
6563
            while ((nleft = width - i) > 0) {
6564
               count = stbi__get8(s);
6565 6566
               if (count > 128) {
                  // Run
6567
                  value = stbi__get8(s);
6568
                  count -= 128;
6569
                  if (count > nleft) { STBI_FREE(hdr_data); STBI_FREE(scanline); return stbi__errpf("corrupt", "bad RLE data in HDR"); }
6570 6571 6572 6573
                  for (z = 0; z < count; ++z)
                     scanline[i++ * 4 + k] = value;
               } else {
                  // Dump
6574
                  if (count > nleft) { STBI_FREE(hdr_data); STBI_FREE(scanline); return stbi__errpf("corrupt", "bad RLE data in HDR"); }
6575
                  for (z = 0; z < count; ++z)
6576
                     scanline[i++ * 4 + k] = stbi__get8(s);
6577 6578 6579 6580
               }
            }
         }
         for (i=0; i < width; ++i)
6581
            stbi__hdr_convert(hdr_data+(j*width + i)*req_comp, scanline + i*4, req_comp);
6582
      }
6583 6584
      if (scanline)
         STBI_FREE(scanline);
6585 6586 6587 6588 6589
   }

   return hdr_data;
}

6590
static int stbi__hdr_info(stbi__context *s, int *x, int *y, int *comp)
6591
{
6592
   char buffer[STBI__HDR_BUFLEN];
6593 6594 6595
   char *token;
   int valid = 0;

6596
   if (stbi__hdr_test(s) == 0) {
6597
       stbi__rewind( s );
6598 6599 6600 6601
       return 0;
   }

   for(;;) {
6602
      token = stbi__hdr_gettoken(s,buffer);
6603 6604 6605 6606 6607
      if (token[0] == 0) break;
      if (strcmp(token, "FORMAT=32-bit_rle_rgbe") == 0) valid = 1;
   }

   if (!valid) {
6608
       stbi__rewind( s );
6609 6610
       return 0;
   }
6611
   token = stbi__hdr_gettoken(s,buffer);
6612
   if (strncmp(token, "-Y ", 3)) {
6613
       stbi__rewind( s );
6614 6615 6616 6617 6618 6619
       return 0;
   }
   token += 3;
   *y = (int) strtol(token, &token, 10);
   while (*token == ' ') ++token;
   if (strncmp(token, "+X ", 3)) {
6620
       stbi__rewind( s );
6621 6622 6623 6624 6625 6626 6627 6628 6629
       return 0;
   }
   token += 3;
   *x = (int) strtol(token, NULL, 10);
   *comp = 3;
   return 1;
}
#endif // STBI_NO_HDR

6630
#ifndef STBI_NO_BMP
6631
static int stbi__bmp_info(stbi__context *s, int *x, int *y, int *comp)
6632
{
6633 6634 6635 6636 6637 6638 6639 6640 6641 6642 6643
   void *p;
   stbi__bmp_data info;

   info.all_a = 255;   
   p = stbi__bmp_parse_header(s, &info);
   stbi__rewind( s );
   if (p == NULL)
      return 0;
   *x = s->img_x;
   *y = s->img_y;
   *comp = info.ma ? 4 : 3;
6644 6645
   return 1;
}
6646
#endif
6647

6648
#ifndef STBI_NO_PSD
6649
static int stbi__psd_info(stbi__context *s, int *x, int *y, int *comp)
6650 6651
{
   int channelCount;
6652
   if (stbi__get32be(s) != 0x38425053) {
6653
       stbi__rewind( s );
6654 6655
       return 0;
   }
6656
   if (stbi__get16be(s) != 1) {
6657
       stbi__rewind( s );
6658 6659
       return 0;
   }
6660 6661
   stbi__skip(s, 6);
   channelCount = stbi__get16be(s);
6662
   if (channelCount < 0 || channelCount > 16) {
6663
       stbi__rewind( s );
6664 6665
       return 0;
   }
6666 6667 6668
   *y = stbi__get32be(s);
   *x = stbi__get32be(s);
   if (stbi__get16be(s) != 8) {
6669
       stbi__rewind( s );
6670 6671
       return 0;
   }
6672
   if (stbi__get16be(s) != 3) {
6673
       stbi__rewind( s );
6674 6675 6676 6677 6678
       return 0;
   }
   *comp = 4;
   return 1;
}
6679
#endif
6680

6681
#ifndef STBI_NO_PIC
6682
static int stbi__pic_info(stbi__context *s, int *x, int *y, int *comp)
6683 6684
{
   int act_comp=0,num_packets=0,chained;
6685
   stbi__pic_packet packets[10];
6686

6687 6688 6689 6690 6691 6692
   if (!stbi__pic_is4(s,"\x53\x80\xF6\x34")) {
      stbi__rewind(s);
      return 0;
   }

   stbi__skip(s, 88);
6693

6694 6695
   *x = stbi__get16be(s);
   *y = stbi__get16be(s);
6696 6697 6698 6699
   if (stbi__at_eof(s)) {
      stbi__rewind( s);
      return 0;
   }
6700
   if ( (*x) != 0 && (1 << 28) / (*x) < (*y)) {
6701 6702
      stbi__rewind( s );
      return 0;
6703 6704
   }

6705
   stbi__skip(s, 8);
6706 6707

   do {
6708
      stbi__pic_packet *packet;
6709 6710 6711 6712 6713

      if (num_packets==sizeof(packets)/sizeof(packets[0]))
         return 0;

      packet = &packets[num_packets++];
6714
      chained = stbi__get8(s);
6715 6716 6717
      packet->size    = stbi__get8(s);
      packet->type    = stbi__get8(s);
      packet->channel = stbi__get8(s);
6718 6719
      act_comp |= packet->channel;

6720
      if (stbi__at_eof(s)) {
6721
          stbi__rewind( s );
6722 6723 6724
          return 0;
      }
      if (packet->size != 8) {
6725
          stbi__rewind( s );
6726 6727 6728 6729 6730 6731 6732 6733
          return 0;
      }
   } while (chained);

   *comp = (act_comp & 0x10 ? 4 : 3);

   return 1;
}
6734
#endif
6735

K
Ken Miller 已提交
6736 6737 6738 6739 6740 6741 6742 6743 6744 6745
// *************************************************************************************************
// Portable Gray Map and Portable Pixel Map loader
// by Ken Miller
//
// PGM: http://netpbm.sourceforge.net/doc/pgm.html
// PPM: http://netpbm.sourceforge.net/doc/ppm.html
//
// Known limitations:
//    Does not support comments in the header section
//    Does not support ASCII image data (formats P2 and P3)
S
Sean Barrett 已提交
6746
//    Does not support 16-bit-per-channel
K
Ken Miller 已提交
6747

6748 6749
#ifndef STBI_NO_PNM

K
Ken Miller 已提交
6750 6751 6752 6753 6754 6755 6756 6757 6758 6759 6760 6761
static int      stbi__pnm_test(stbi__context *s)
{
   char p, t;
   p = (char) stbi__get8(s);
   t = (char) stbi__get8(s);
   if (p != 'P' || (t != '5' && t != '6')) {
       stbi__rewind( s );
       return 0;
   }
   return 1;
}

S
Sean Barrett 已提交
6762
static void *stbi__pnm_load(stbi__context *s, int *x, int *y, int *comp, int req_comp, stbi__result_info *ri)
K
Ken Miller 已提交
6763 6764
{
   stbi_uc *out;
S
Sean Barrett 已提交
6765 6766
   STBI_NOTUSED(ri);

S
Sean Barrett 已提交
6767 6768
   if (!stbi__pnm_info(s, (int *)&s->img_x, (int *)&s->img_y, (int *)&s->img_n))
      return 0;
S
Sean Barrett 已提交
6769

K
Ken Miller 已提交
6770 6771 6772 6773
   *x = s->img_x;
   *y = s->img_y;
   *comp = s->img_n;

6774 6775 6776 6777
   if (!stbi__mad3sizes_valid(s->img_n, s->img_x, s->img_y, 0))
      return stbi__errpuc("too large", "PNM too large");

   out = (stbi_uc *) stbi__malloc_mad3(s->img_n, s->img_x, s->img_y, 0);
K
Ken Miller 已提交
6778 6779 6780 6781 6782 6783 6784 6785 6786 6787 6788 6789
   if (!out) return stbi__errpuc("outofmem", "Out of memory");
   stbi__getn(s, out, s->img_n * s->img_x * s->img_y);

   if (req_comp && req_comp != s->img_n) {
      out = stbi__convert_format(out, s->img_n, req_comp, s->img_x, s->img_y);
      if (out == NULL) return out; // stbi__convert_format frees input on failure
   }
   return out;
}

static int      stbi__pnm_isspace(char c)
{
6790
   return c == ' ' || c == '\t' || c == '\n' || c == '\v' || c == '\f' || c == '\r';
K
Ken Miller 已提交
6791 6792
}

S
Sean Barrett 已提交
6793
static void     stbi__pnm_skip_whitespace(stbi__context *s, char *c)
K
Ken Miller 已提交
6794
{
S
Sean Barrett 已提交
6795 6796 6797 6798 6799 6800 6801 6802 6803 6804
   for (;;) {
      while (!stbi__at_eof(s) && stbi__pnm_isspace(*c))
         *c = (char) stbi__get8(s);

      if (stbi__at_eof(s) || *c != '#')
         break;

      while (!stbi__at_eof(s) && *c != '\n' && *c != '\r' )
         *c = (char) stbi__get8(s);
   }
K
Ken Miller 已提交
6805 6806 6807 6808 6809 6810 6811 6812 6813 6814 6815 6816
}

static int      stbi__pnm_isdigit(char c)
{
   return c >= '0' && c <= '9';
}

static int      stbi__pnm_getinteger(stbi__context *s, char *c)
{
   int value = 0;

   while (!stbi__at_eof(s) && stbi__pnm_isdigit(*c)) {
S
Sean Barrett 已提交
6817
      value = value*10 + (*c - '0');
K
Ken Miller 已提交
6818 6819 6820 6821 6822 6823 6824 6825
      *c = (char) stbi__get8(s);
   }

   return value;
}

static int      stbi__pnm_info(stbi__context *s, int *x, int *y, int *comp)
{
S
Sean Barrett 已提交
6826
   int maxv;
K
Ken Miller 已提交
6827 6828 6829 6830 6831 6832 6833 6834 6835 6836 6837 6838
   char c, p, t;

   stbi__rewind( s );

   // Get identifier
   p = (char) stbi__get8(s);
   t = (char) stbi__get8(s);
   if (p != 'P' || (t != '5' && t != '6')) {
       stbi__rewind( s );
       return 0;
   }

S
Sean Barrett 已提交
6839
   *comp = (t == '6') ? 3 : 1;  // '5' is 1-component .pgm; '6' is 3-component .ppm
K
Ken Miller 已提交
6840

S
Sean Barrett 已提交
6841
   c = (char) stbi__get8(s);
S
Sean Barrett 已提交
6842
   stbi__pnm_skip_whitespace(s, &c);
K
Ken Miller 已提交
6843

S
Sean Barrett 已提交
6844 6845
   *x = stbi__pnm_getinteger(s, &c); // read width
   stbi__pnm_skip_whitespace(s, &c);
K
Ken Miller 已提交
6846

S
Sean Barrett 已提交
6847 6848
   *y = stbi__pnm_getinteger(s, &c); // read height
   stbi__pnm_skip_whitespace(s, &c);
K
Ken Miller 已提交
6849

S
Sean Barrett 已提交
6850
   maxv = stbi__pnm_getinteger(s, &c);  // read max value
K
Ken Miller 已提交
6851

S
Sean Barrett 已提交
6852 6853 6854 6855
   if (maxv > 255)
      return stbi__err("max value > 255", "PPM image not 8-bit");
   else
      return 1;
K
Ken Miller 已提交
6856
}
6857
#endif
K
Ken Miller 已提交
6858

6859
static int stbi__info_main(stbi__context *s, int *x, int *y, int *comp)
6860
{
6861 6862 6863 6864 6865 6866 6867 6868 6869 6870 6871 6872 6873 6874 6875 6876 6877 6878 6879
   #ifndef STBI_NO_JPEG
   if (stbi__jpeg_info(s, x, y, comp)) return 1;
   #endif

   #ifndef STBI_NO_PNG
   if (stbi__png_info(s, x, y, comp))  return 1;
   #endif

   #ifndef STBI_NO_GIF
   if (stbi__gif_info(s, x, y, comp))  return 1;
   #endif

   #ifndef STBI_NO_BMP
   if (stbi__bmp_info(s, x, y, comp))  return 1;
   #endif

   #ifndef STBI_NO_PSD
   if (stbi__psd_info(s, x, y, comp))  return 1;
   #endif
6880

6881 6882 6883 6884 6885 6886 6887 6888
   #ifndef STBI_NO_PIC
   if (stbi__pic_info(s, x, y, comp))  return 1;
   #endif

   #ifndef STBI_NO_PNM
   if (stbi__pnm_info(s, x, y, comp))  return 1;
   #endif

6889
   #ifndef STBI_NO_HDR
6890
   if (stbi__hdr_info(s, x, y, comp))  return 1;
6891
   #endif
6892

6893
   // test tga last because it's a crappy test!
6894
   #ifndef STBI_NO_TGA
S
Sean Barrett 已提交
6895
   if (stbi__tga_info(s, x, y, comp))
6896
       return 1;
6897
   #endif
S
Sean Barrett 已提交
6898
   return stbi__err("unknown image type", "Image not of any known type, or corrupt");
6899 6900 6901 6902 6903
}

#ifndef STBI_NO_STDIO
STBIDEF int stbi_info(char const *filename, int *x, int *y, int *comp)
{
S
Sean Barrett 已提交
6904
    FILE *f = stbi__fopen(filename, "rb");
6905
    int result;
S
Sean Barrett 已提交
6906
    if (!f) return stbi__err("can't fopen", "Unable to open file");
6907 6908 6909 6910 6911 6912 6913 6914
    result = stbi_info_from_file(f, x, y, comp);
    fclose(f);
    return result;
}

STBIDEF int stbi_info_from_file(FILE *f, int *x, int *y, int *comp)
{
   int r;
S
Sean Barrett 已提交
6915
   stbi__context s;
6916
   long pos = ftell(f);
6917 6918
   stbi__start_file(&s, f);
   r = stbi__info_main(&s,x,y,comp);
6919 6920 6921 6922 6923 6924 6925
   fseek(f,pos,SEEK_SET);
   return r;
}
#endif // !STBI_NO_STDIO

STBIDEF int stbi_info_from_memory(stbi_uc const *buffer, int len, int *x, int *y, int *comp)
{
S
Sean Barrett 已提交
6926 6927
   stbi__context s;
   stbi__start_mem(&s,buffer,len);
6928
   return stbi__info_main(&s,x,y,comp);
6929 6930 6931 6932
}

STBIDEF int stbi_info_from_callbacks(stbi_io_callbacks const *c, void *user, int *x, int *y, int *comp)
{
S
Sean Barrett 已提交
6933 6934
   stbi__context s;
   stbi__start_callbacks(&s, (stbi_io_callbacks *) c, user);
6935
   return stbi__info_main(&s,x,y,comp);
6936 6937 6938 6939 6940 6941
}

#endif // STB_IMAGE_IMPLEMENTATION

/*
   revision history:
S
Sean Barrett 已提交
6942
      2.13  (2016-11-29) add 16-bit API, only supported for PNG right now
S
Sean Barrett 已提交
6943
      2.12  (2016-04-02) fix typo in 2.11 PSD fix that caused crashes
6944 6945 6946 6947 6948 6949
      2.11  (2016-04-02) allocate large structures on the stack
                         remove white matting for transparent PSD
                         fix reported channel count for PNG & BMP
                         re-enable SSE2 in non-gcc 64-bit
                         support RGB-formatted JPEG
                         read 16-bit PNGs (only as 8-bit)
6950
      2.10  (2016-01-22) avoid warning introduced in 2.09 by STBI_REALLOC_SIZED
6951
      2.09  (2016-01-16) allow comments in PNM files
6952
                         16-bit-per-pixel TGA (not bit-per-component)
S
Sean Barrett 已提交
6953
                         info() for TGA could break due to .hdr handling
6954
                         info() for BMP to shares code instead of sloppy parse
6955
                         can use STBI_REALLOC_SIZED if allocator doesn't support realloc
S
Sean Barrett 已提交
6956
                         code cleanup
6957
      2.08  (2015-09-13) fix to 2.07 cleanup, reading RGB PSD as RGBA
6958 6959
      2.07  (2015-09-13) fix compiler warnings
                         partial animated GIF support
6960
                         limited 16-bpc PSD support
6961 6962
                         #ifdef unused functions
                         bug with < 92 byte PIC,PNM,HDR,TGA
6963
      2.06  (2015-04-19) fix bug where PSD returns wrong '*comp' value
S
Sean Barrett 已提交
6964
      2.05  (2015-04-19) fix bug in progressive JPEG handling, fix warning
6965
      2.04  (2015-04-15) try to re-enable SIMD on MinGW 64-bit
S
Sean Barrett 已提交
6966 6967
      2.03  (2015-04-12) extra corruption checking (mmozeiko)
                         stbi_set_flip_vertically_on_load (nguillemot)
6968
                         fix NEON support; fix mingw support
6969
      2.02  (2015-01-19) fix incorrect assert, fix warning
6970
      2.01  (2015-01-17) fix various warnings; suppress SIMD on gcc 32-bit without -msse2
S
Sean Barrett 已提交
6971 6972 6973 6974 6975 6976 6977 6978 6979 6980 6981 6982 6983 6984 6985 6986 6987 6988 6989 6990 6991 6992 6993 6994 6995 6996 6997 6998 6999 7000 7001 7002 7003 7004 7005 7006 7007 7008 7009 7010 7011 7012 7013 7014 7015 7016 7017 7018 7019 7020 7021 7022 7023 7024 7025 7026 7027 7028 7029 7030 7031 7032 7033 7034 7035 7036 7037 7038 7039 7040 7041 7042 7043 7044 7045 7046 7047 7048 7049 7050 7051 7052 7053 7054
      2.00b (2014-12-25) fix STBI_MALLOC in progressive JPEG
      2.00  (2014-12-25) optimize JPG, including x86 SSE2 & NEON SIMD (ryg)
                         progressive JPEG (stb)
                         PGM/PPM support (Ken Miller)
                         STBI_MALLOC,STBI_REALLOC,STBI_FREE
                         GIF bugfix -- seemingly never worked
                         STBI_NO_*, STBI_ONLY_*
      1.48  (2014-12-14) fix incorrectly-named assert()
      1.47  (2014-12-14) 1/2/4-bit PNG support, both direct and paletted (Omar Cornut & stb)
                         optimize PNG (ryg)
                         fix bug in interlaced PNG with user-specified channel count (stb)
      1.46  (2014-08-26)
              fix broken tRNS chunk (colorkey-style transparency) in non-paletted PNG
      1.45  (2014-08-16)
              fix MSVC-ARM internal compiler error by wrapping malloc
      1.44  (2014-08-07)
              various warning fixes from Ronny Chevalier
      1.43  (2014-07-15)
              fix MSVC-only compiler problem in code changed in 1.42
      1.42  (2014-07-09)
              don't define _CRT_SECURE_NO_WARNINGS (affects user code)
              fixes to stbi__cleanup_jpeg path
              added STBI_ASSERT to avoid requiring assert.h
      1.41  (2014-06-25)
              fix search&replace from 1.36 that messed up comments/error messages
      1.40  (2014-06-22)
              fix gcc struct-initialization warning
      1.39  (2014-06-15)
              fix to TGA optimization when req_comp != number of components in TGA;
              fix to GIF loading because BMP wasn't rewinding (whoops, no GIFs in my test suite)
              add support for BMP version 5 (more ignored fields)
      1.38  (2014-06-06)
              suppress MSVC warnings on integer casts truncating values
              fix accidental rename of 'skip' field of I/O
      1.37  (2014-06-04)
              remove duplicate typedef
      1.36  (2014-06-03)
              convert to header file single-file library
              if de-iphone isn't set, load iphone images color-swapped instead of returning NULL
      1.35  (2014-05-27)
              various warnings
              fix broken STBI_SIMD path
              fix bug where stbi_load_from_file no longer left file pointer in correct place
              fix broken non-easy path for 32-bit BMP (possibly never used)
              TGA optimization by Arseny Kapoulkine
      1.34  (unknown)
              use STBI_NOTUSED in stbi__resample_row_generic(), fix one more leak in tga failure case
      1.33  (2011-07-14)
              make stbi_is_hdr work in STBI_NO_HDR (as specified), minor compiler-friendly improvements
      1.32  (2011-07-13)
              support for "info" function for all supported filetypes (SpartanJ)
      1.31  (2011-06-20)
              a few more leak fixes, bug in PNG handling (SpartanJ)
      1.30  (2011-06-11)
              added ability to load files via callbacks to accomidate custom input streams (Ben Wenger)
              removed deprecated format-specific test/load functions
              removed support for installable file formats (stbi_loader) -- would have been broken for IO callbacks anyway
              error cases in bmp and tga give messages and don't leak (Raymond Barbiero, grisha)
              fix inefficiency in decoding 32-bit BMP (David Woo)
      1.29  (2010-08-16)
              various warning fixes from Aurelien Pocheville
      1.28  (2010-08-01)
              fix bug in GIF palette transparency (SpartanJ)
      1.27  (2010-08-01)
              cast-to-stbi_uc to fix warnings
      1.26  (2010-07-24)
              fix bug in file buffering for PNG reported by SpartanJ
      1.25  (2010-07-17)
              refix trans_data warning (Won Chun)
      1.24  (2010-07-12)
              perf improvements reading from files on platforms with lock-heavy fgetc()
              minor perf improvements for jpeg
              deprecated type-specific functions so we'll get feedback if they're needed
              attempt to fix trans_data warning (Won Chun)
      1.23    fixed bug in iPhone support
      1.22  (2010-07-10)
              removed image *writing* support
              stbi_info support from Jetro Lauha
              GIF support from Jean-Marc Lienher
              iPhone PNG-extensions from James Brown
              warning-fixes from Nicolas Schulz and Janez Zemva (i.stbi__err. Janez (U+017D)emva)
      1.21    fix use of 'stbi_uc' in header (reported by jon blow)
      1.20    added support for Softimage PIC, by Tom Seddon
      1.19    bug in interlaced PNG corruption check (found by ryg)
S
Sean Barrett 已提交
7055
      1.18  (2008-08-02)
S
Sean Barrett 已提交
7056 7057 7058 7059 7060 7061 7062 7063 7064 7065 7066 7067 7068 7069 7070 7071 7072 7073 7074 7075 7076 7077 7078 7079 7080 7081 7082 7083 7084 7085 7086 7087 7088 7089 7090 7091 7092 7093 7094 7095 7096 7097 7098 7099
              fix a threading bug (local mutable static)
      1.17    support interlaced PNG
      1.16    major bugfix - stbi__convert_format converted one too many pixels
      1.15    initialize some fields for thread safety
      1.14    fix threadsafe conversion bug
              header-file-only version (#define STBI_HEADER_FILE_ONLY before including)
      1.13    threadsafe
      1.12    const qualifiers in the API
      1.11    Support installable IDCT, colorspace conversion routines
      1.10    Fixes for 64-bit (don't use "unsigned long")
              optimized upsampling by Fabian "ryg" Giesen
      1.09    Fix format-conversion for PSD code (bad global variables!)
      1.08    Thatcher Ulrich's PSD code integrated by Nicolas Schulz
      1.07    attempt to fix C++ warning/errors again
      1.06    attempt to fix C++ warning/errors again
      1.05    fix TGA loading to return correct *comp and use good luminance calc
      1.04    default float alpha is 1, not 255; use 'void *' for stbi_image_free
      1.03    bugfixes to STBI_NO_STDIO, STBI_NO_HDR
      1.02    support for (subset of) HDR files, float interface for preferred access to them
      1.01    fix bug: possible bug in handling right-side up bmps... not sure
              fix bug: the stbi__bmp_load() and stbi__tga_load() functions didn't work at all
      1.00    interface to zlib that skips zlib header
      0.99    correct handling of alpha in palette
      0.98    TGA loader by lonesock; dynamically add loaders (untested)
      0.97    jpeg errors on too large a file; also catch another malloc failure
      0.96    fix detection of invalid v value - particleman@mollyrocket forum
      0.95    during header scan, seek to markers in case of padding
      0.94    STBI_NO_STDIO to disable stdio usage; rename all #defines the same
      0.93    handle jpegtran output; verbose errors
      0.92    read 4,8,16,24,32-bit BMP files of several formats
      0.91    output 24-bit Windows 3.0 BMP files
      0.90    fix a few more warnings; bump version number to approach 1.0
      0.61    bugfixes due to Marc LeBlanc, Christopher Lloyd
      0.60    fix compiling as c++
      0.59    fix warnings: merge Dave Moore's -Wall fixes
      0.58    fix bug: zlib uncompressed mode len/nlen was wrong endian
      0.57    fix bug: jpg last huffman symbol before marker was >9 bits but less than 16 available
      0.56    fix bug: zlib uncompressed mode len vs. nlen
      0.55    fix bug: restart_interval not initialized to 0
      0.54    allow NULL for 'int *comp'
      0.53    fix bug in png 3->4; speedup png decoding
      0.52    png handles req_comp=3,4 directly; minor cleanup; jpeg comments
      0.51    obey req_comp requests, 1-component jpegs return as 1-component,
              on 'test' only check type, not whether we support this variant
S
Sean Barrett 已提交
7100 7101
      0.50  (2006-11-19)
              first released version
7102
*/