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18 Commits

Author SHA1 Message Date
Lovell Fuller
e4ca8f44ec Version bump 2014-02-01 23:00:37 +00:00
Lovell Fuller
6b3dc1e350 Ensure crop occurs on y-axis 2014-02-01 22:58:30 +00:00
Lovell Fuller
7ffcdb79e0 Add glib-2.0 path for Mac OS X 2014-01-30 18:28:24 +00:00
Lovell Fuller
10ce7c6693 Add parallel performance test to demonstrate effect of waiting for a worker thread 2014-01-26 20:16:42 +00:00
Lovell Fuller
ccd6012152 Version bump 2014-01-21 22:49:40 +00:00
Lovell Fuller
377662fffc Ensure gm perf tests actually resize. Prevent coredump when embeding pre-shrunk image within same dimensions. 2014-01-21 22:48:33 +00:00
Lovell Fuller
d509458ba1 Major rewrite and therefore API change. Despite the name, image sharpening is now optional, plus there are other new options. Can now handle buffers in and out. Doubled performance in certain cases. Closes #3. Closes #4. 2014-01-19 21:38:37 +00:00
Lovell Fuller
be8f35d830 Use shrink-on-load for JPEG images, partially implementing #4. Switch to new vip_ methods from legacy im_ methods. Large performance gains all round. 2014-01-16 22:51:44 +00:00
Lovell Fuller
7e8af63129 Improve thread/buffer shutdown using new vips_thread_shutdown method - closes #5 2014-01-15 21:38:23 +00:00
Lovell Fuller
f7b8ce1287 Add support for writing image data output to a buffer, boosting ops/sec by ~7%. Partially implements #3. 2014-01-11 21:50:17 +00:00
Lovell Fuller
dde9e94850 From here on in, this module will be using the bleeding edge version of libvips. Why? It just keeps getting faster. 2013-11-23 22:08:51 +00:00
Lovell Fuller
21f12e74ba Add support for PNG format. Close #2. 2013-10-26 16:32:18 +01:00
Lovell Fuller
daeebcc7dc Add epeg module to the perf tests 2013-10-19 13:39:57 +01:00
Lovell Fuller
5546a4f881 Added GraphicsMagick perf stats 2013-10-04 22:01:16 +01:00
Lovell Fuller
4aee725530 README layout clean-up 2013-10-02 23:40:32 +01:00
Lovell Fuller
f3da2284b1 Now requires livbips 7.28 or later 2013-10-02 23:37:29 +01:00
Lovell Fuller
f3cd263cb7 Replaced use of deprecated libvips im_* methods with new, shiny non-deprecated vips_* versions 2013-10-02 21:50:03 +01:00
Lovell Fuller
8443dd5122 Version bump 2013-10-02 19:35:49 +01:00
10 changed files with 732 additions and 231 deletions

1
.gitignore vendored
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@@ -13,5 +13,6 @@ results
build
node_modules
tests/output.jpg
tests/output.png
npm-debug.log

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@@ -1,8 +0,0 @@
language: node_js
node_js:
- "0.11"
- "0.10"
before_install:
- sudo apt-get update -qq
- sudo apt-get install -qq libvips-dev imagemagick
- sudo ln -s /usr/lib/pkgconfig/vips-7.26.pc /usr/lib/pkgconfig/vips.pc

155
README.md
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@@ -1,4 +1,4 @@
# sharp
# sharp
_adj_
@@ -7,30 +7,18 @@ _adj_
3. shrewd or astute: a sharp bargainer.
4. (Informal.) very stylish: a sharp dresser; a sharp jacket.
The typical use case for this high speed Node.js module is to convert a large JPEG image to smaller JPEG images of varying dimensions.
The typical use case for this high speed Node.js module is to convert large JPEG and PNG images to smaller JPEG and PNG images of varying dimensions.
It is somewhat opinionated in that it only deals with JPEG images, always obeys the requested dimensions by either cropping or embedding and insists on a mild sharpen of the resulting image.
The performance of JPEG resizing is typically 15x-25x faster than ImageMagick and GraphicsMagick, based mainly on the number of CPU cores available.
Under the hood you'll find the blazingly fast [libvips](https://github.com/jcupitt/libvips) image processing library, originally created in 1989 at Birkbeck College and currently maintained by the University of Southampton.
Performance is 4x-8x faster than the imagemagick equivalent, based mainly on the number of CPU cores available.
Under the hood you'll find the blazingly fast [libvips](https://github.com/jcupitt/libvips) image processing library, originally created in 1989 at Birkbeck College and currently maintained by John Cupitt.
## Prerequisites
Requires Node.js v0.8+, node-gyp and libvips-dev to build.
* Node.js v0.8+
* [libvips](https://github.com/jcupitt/libvips) v7.38+
sudo npm install -g node-gyp
sudo apt-get install libvips-dev
Requires vips-7.xx.pc (installed with libvips-dev) to be symlinked as /usr/lib/pkgconfig/vips.pc
Ubuntu 12.04 LTS:
sudo ln -s /usr/lib/pkgconfig/vips-7.26.pc /usr/lib/pkgconfig/vips.pc
Ubuntu 13.04 (64-bit):
sudo ln -s /usr/lib/x86_64-linux-gnu/pkgconfig/vips-7.28.pc /usr/lib/pkgconfig/vips.pc
For the sharpest results, please compile libvips from source.
## Install
@@ -40,14 +28,31 @@ Ubuntu 13.04 (64-bit):
var sharp = require("sharp");
### crop(inputPath, outputPath, width, height, callback)
### resize(input, output, width, height, [options], callback)
Scale and crop JPEG `inputPath` to `width` x `height` and write JPEG to `outputPath` calling `callback` when complete.
Scale and crop to `width` x `height` calling `callback` when complete.
Example:
`input` can either be a filename String or a Buffer. When using a filename libvips will `mmap` the file for improved performance.
`output` can either be a filename String or one of `sharp.buffer.jpeg` or `sharp.buffer.png` to pass a Buffer containing image data to `callback`.
`width` is the Number of pixels wide the resultant image should be.
`height` is the Number of pixels high the resultant image should be.
`options` is optional, and can contain one or more of:
* `canvas` can be one of `sharp.canvas.crop`, `sharp.canvas.embedWhite` or `sharp.canvas.embedBlack`. Defaults to `sharp.canvas.crop`.
* `sharpen` when set to true will perform a mild sharpen of the resultant image. This typically reduces performance by 30%.
* `progressive` when set will use progressive (interlace) scan for the output. This typically reduces performance by 30%.
* `sequentialRead` is an advanced setting that, when set, switches the libvips access method to `VIPS_ACCESS_SEQUENTIAL`. This will reduce memory usage and can improve performance on some systems.
`callback` gets two arguments `(err, buffer)` where `err` is an error message, if any, and `buffer` is the resultant image data when a Buffer is requested.
### Examples
```javascript
sharp.crop("input.jpg", "output.jpg", 300, 200, function(err) {
sharp.resize("input.jpg", "output.jpg", 300, 200, function(err) {
if (err) {
throw err;
}
@@ -56,62 +61,104 @@ sharp.crop("input.jpg", "output.jpg", 300, 200, function(err) {
});
```
### embedWhite(inputPath, outputPath, width, height, callback)
Scale and embed JPEG `inputPath` to `width` x `height` using a white canvas and write JPEG to `outputPath` calling `callback` when complete.
```javascript
sharp.embedWhite("input.jpg", "output.jpg", 200, 300, function(err) {
sharp.resize("input.jpg", sharp.buffer.jpeg, 300, 200, {progressive: true}, function(err, buffer) {
if (err) {
throw err;
}
// output.jpg is a 200 pixels wide and 300 pixels high image
// containing a scaled version of input.jpg embedded on a white canvas
// buffer contains progressive JPEG image data
});
```
### embedBlack(inputPath, outputPath, width, height, callback)
Scale and embed JPEG `inputPath` to `width` x `height` using a black canvas and write JPEG to `outputPath` calling `callback` when complete.
```javascript
sharp.embedBlack("input.jpg", "output.jpg", 200, 300, function(err) {
sharp.resize("input.jpg", sharp.buffer.png, 300, 200, {sharpen: true}, function(err, buffer) {
if (err) {
throw err;
}
// output.jpg is a 200 pixels wide and 300 pixels high image
// containing a scaled version of input.jpg embedded on a black canvas
// buffer contains sharpened PNG image data (converted from JPEG)
});
```
## Testing [![Build Status](https://travis-ci.org/lovell/sharp.png?branch=master)](https://travis-ci.org/lovell/sharp)
```javascript
sharp.resize(buffer, "output.jpg", 200, 300, {canvas: sharp.canvas.embedWhite}, function(err) {
if (err) {
throw err;
}
// output.jpg is a 200 pixels wide and 300 pixels high image containing a scaled version
// of the image data contained in buffer embedded on a white canvas
});
```
```javascript
sharp.resize("input.jpg", sharp.buffer.jpeg, 200, 300, {canvas: sharp.canvas.embedBlack}, function(err, buffer) {
if (err) {
throw err;
}
// buffer contains JPEG image data of a 200 pixels wide and 300 pixels high image
// containing a scaled version of input.png embedded on a black canvas
});
```
## Testing
npm install --dev sharp
npm test
## Performance
### AMD Athlon 4x core 3.3GHz 512KB L2
Test environment:
* imagemagick x 5.55 ops/sec ±0.68% (31 runs sampled)
* sharp x 24.49 ops/sec ±6.85% (64 runs sampled)
* AMD Athlon 4 core 3.3GHz 512KB L2 CPU 1333 DDR3
* libvips 7.37
* libjpeg-turbo8 1.3.0
* libpng 1.6.6
* zlib1g 1.2.7
### AWS t1.micro
`-file-buffer` indicates read from file and write to buffer, `-buffer-file` indicates read from buffer and write to file etc.
* imagemagick x 1.36 ops/sec ±0.96% (11 runs sampled)
* sharp x 12.42 ops/sec ±5.84% (64 runs sampled)
`-sharpen`, `-progressive` etc. demonstrate the negative effect of options on performance.
### AWS m1.medium
### JPEG
* imagemagick x 1.38 ops/sec ±0.45% (11 runs sampled)
* sharp x 12.66 ops/sec ±5.54% (65 runs sampled)
* imagemagick x 5.53 ops/sec ±0.62% (31 runs sampled)
* gm-file-file x 4.10 ops/sec ±0.41% (25 runs sampled)
* gm-file-buffer x 4.10 ops/sec ±0.36% (25 runs sampled)
* epeg-file-file x 23.82 ops/sec ±0.18% (60 runs sampled)
* epeg-file-buffer x 23.98 ops/sec ±0.16% (61 runs sampled)
### AWS c1.medium
* sharp-buffer-file x 20.76 ops/sec ±0.55% (54 runs sampled)
* sharp-buffer-buffer x 20.90 ops/sec ±0.26% (54 runs sampled)
* sharp-file-file x 91.78 ops/sec ±0.38% (88 runs sampled)
* sharp-file-buffer x __93.05 ops/sec__ ±0.61% (76 runs sampled)
* imagemagick x 2.10 ops/sec ±0.67% (15 runs sampled)
* sharp x 18.97 ops/sec ±10.54% (52 runs sampled)
* sharp-file-buffer-sharpen x 63.09 ops/sec ±5.58% (63 runs sampled)
* sharp-file-buffer-progressive x 61.68 ops/sec ±0.53% (76 runs sampled)
* sharp-file-buffer-sequentialRead x 60.66 ops/sec ±0.38% (75 runs sampled)
### AWS m3.xlarge
### PNG
* imagemagick x 4.46 ops/sec ±0.33% (26 runs sampled)
* sharp x 28.89 ops/sec ±7.75% (74 runs sampled)
* imagemagick x 4.27 ops/sec ±0.21% (25 runs sampled)
* gm-file-file x 8.33 ops/sec ±0.19% (44 runs sampled)
* gm-file-buffer x 7.45 ops/sec ±0.16% (40 runs sampled)
* sharp-buffer-file x 4.94 ops/sec ±118.46% (26 runs sampled)
* sharp-buffer-buffer x 12.59 ops/sec ±0.55% (64 runs sampled)
* sharp-file-file x 44.06 ops/sec ±6.86% (75 runs sampled)
* sharp-file-buffer x __46.29 ops/sec__ ±0.38% (76 runs sampled)
* sharp-file-buffer-sharpen x 38.86 ops/sec ±0.22% (65 runs sampled)
* sharp-file-buffer-progressive x 46.35 ops/sec ±0.20% (76 runs sampled)
* sharp-file-buffer-sequentialRead x 29.02 ops/sec ±0.62% (72 runs sampled)
## Licence
Copyright 2013, 2014 Lovell Fuller
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at [http://www.apache.org/licenses/LICENSE-2.0](http://www.apache.org/licenses/LICENSE-2.0.html)
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.

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@@ -7,11 +7,13 @@
'<!@(PKG_CONFIG_PATH="/usr/lib/pkgconfig" pkg-config --libs vips)'
],
'include_dirs': [
'/usr/local/include/glib-2.0',
'/usr/local/lib/glib-2.0/include',
'/usr/include/glib-2.0',
'/usr/lib/glib-2.0/include',
'/usr/lib/x86_64-linux-gnu/glib-2.0/include'
],
'cflags': ['-fexceptions'],
'cflags_cc': ['-fexceptions']
'cflags': ['-fexceptions', '-O3'],
'cflags_cc': ['-fexceptions', '-O3']
}]
}

View File

@@ -1,13 +1,64 @@
var sharp = require("./build/Release/sharp");
module.exports.crop = function(input, output, width, height, callback) {
sharp.resize(input, output, width, height, "c", callback)
}
module.exports.buffer = {
jpeg: "__jpeg",
png: "__png"
};
module.exports.canvas = {
crop: "c",
embedWhite: "w",
embedBlack: "b"
};
module.exports.resize = function(input, output, width, height, options, callback) {
"use strict";
if (typeof options === 'function') {
callback = options;
options = {};
} else {
options = options || {};
}
if (typeof input === 'string') {
options.inFile = input;
} else if (typeof input ==='object' && input instanceof Buffer) {
options.inBuffer = input;
} else {
callback("Unsupported input " + typeof input);
return;
}
if (!output || output.length === 0) {
callback("Invalid output");
return;
}
var outWidth = Number(width);
if (Number.isNaN(outWidth)) {
callback("Invalid width " + width);
return;
}
var outHeight = Number(height);
if (Number.isNaN(outHeight)) {
callback("Invalid height " + height);
return;
}
var canvas = options.canvas || "c";
if (canvas.length !== 1 || "cwb".indexOf(canvas) === -1) {
callback("Invalid canvas " + canvas);
return;
}
var sharpen = !!options.sharpen;
var progessive = !!options.progessive;
var sequentialRead = !!options.sequentialRead;
sharp.resize(options.inFile, options.inBuffer, output, width, height, canvas, sharpen, progessive, sequentialRead, callback);
};
/* Deprecated v0.0.x methods */
module.exports.crop = function(input, output, width, height, sharpen, callback) {
sharp.resize(input, output, width, height, {canvas: "c", sharpen: true}, callback);
};
module.exports.embedWhite = function(input, output, width, height, callback) {
sharp.resize(input, output, width, height, "w", callback)
}
sharp.resize(input, output, width, height, {canvas: "w", sharpen: true}, callback);
};
module.exports.embedBlack = function(input, output, width, height, callback) {
sharp.resize(input, output, width, height, "b", callback)
}
sharp.resize(input, output, width, height, {canvas: "b", sharpen: true}, callback);
};

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@@ -1,32 +1,37 @@
{
"name": "sharp",
"version": "0.0.3",
"version": "0.1.2",
"author": "Lovell Fuller",
"description": "High performance module to resize JPEG and PNG images using the libvips image processing library",
"scripts": {
"test": "node tests/perf.js"
},
"main": "index.js",
"description": "High performance Node.js module to resize JPEG images using the libvips image processing library",
"repository": {
"type": "git",
"url": "git://github.com/lovell/sharp"
},
"devDependencies": {
"imagemagick": "*",
"benchmark": "*"
},
"scripts": {
"test": "node tests/perf.js"
},
"engines": {
"node": ">=0.8"
},
"keywords": [
"jpeg",
"png",
"resize",
"thumbnail",
"sharpen",
"crop",
"embed",
"libvips",
"fast"
"fast",
"buffer"
],
"author": "Lovell Fuller",
"license": "Apache 2.0"
"devDependencies": {
"imagemagick": "*",
"gm": "*",
"epeg": "*",
"async": "*",
"benchmark": "*"
},
"license": "Apache 2.0",
"engines": {
"node": ">=0.8"
}
}

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@@ -1,173 +1,292 @@
#include <node.h>
#include <node_buffer.h>
#include <math.h>
#include <string>
#include <vector>
#include <string.h>
#include <vips/vips.h>
using namespace v8;
using namespace node;
// Free VipsImage children when object goes out of scope
// Thanks due to https://github.com/dosx/node-vips
class ImageFreer {
public:
ImageFreer() {}
~ImageFreer() {
for (uint16_t i = 0; i < v_.size(); i++) {
if (v_[i] != NULL) {
g_object_unref(v_[i]);
}
}
v_.clear();
}
void add(VipsImage* i) { v_.push_back(i); }
private:
std::vector<VipsImage*> v_;
};
struct ResizeBaton {
std::string src;
std::string dst;
int cols;
int rows;
struct resize_baton {
std::string file_in;
void* buffer_in;
size_t buffer_in_len;
std::string file_out;
void* buffer_out;
size_t buffer_out_len;
int width;
int height;
bool crop;
int embed;
VipsExtend extend;
bool sharpen;
bool progessive;
VipsAccess access_method;
std::string err;
Persistent<Function> callback;
resize_baton(): buffer_in_len(0), buffer_out_len(0) {}
};
void ResizeAsync(uv_work_t *work) {
ResizeBaton* baton = static_cast<ResizeBaton*>(work->data);
typedef enum {
JPEG,
PNG
} ImageType;
VipsImage *in = vips_image_new_mode((baton->src).c_str(), "p");
im_jpeg2vips((baton->src).c_str(), in);
if (in == NULL) {
(baton->err).append(vips_error_buffer());
vips_error_clear();
return;
}
ImageFreer freer;
freer.add(in);
unsigned char MARKER_JPEG[] = {0xff, 0xd8};
unsigned char MARKER_PNG[] = {0x89, 0x50};
VipsImage* img = in;
VipsImage* t[4];
bool ends_with(std::string const &str, std::string const &end) {
return str.length() >= end.length() && 0 == str.compare(str.length() - end.length(), end.length(), end);
}
if (im_open_local_array(img, t, 4, "temp", "p")) {
(baton->err).append(vips_error_buffer());
vips_error_clear();
bool is_jpeg(std::string const &str) {
return ends_with(str, ".jpg") || ends_with(str, ".jpeg");
}
bool is_png(std::string const &str) {
return ends_with(str, ".png");
}
void resize_error(resize_baton *baton, VipsImage *unref) {
(baton->err).append(vips_error_buffer());
vips_error_clear();
g_object_unref(unref);
vips_thread_shutdown();
return;
}
void resize_async(uv_work_t *work) {
resize_baton* baton = static_cast<resize_baton*>(work->data);
ImageType inputImageType = JPEG;
VipsImage *in = vips_image_new();
if (baton->buffer_in_len > 1) {
if (memcmp(MARKER_JPEG, baton->buffer_in, 2) == 0) {
if (vips_jpegload_buffer(baton->buffer_in, baton->buffer_in_len, &in, "access", baton->access_method, NULL)) {
return resize_error(baton, in);
}
} else if(memcmp(MARKER_PNG, baton->buffer_in, 2) == 0) {
inputImageType = PNG;
if (vips_pngload_buffer(baton->buffer_in, baton->buffer_in_len, &in, "access", baton->access_method, NULL)) {
return resize_error(baton, in);
}
}
} else if (is_jpeg(baton->file_in)) {
if (vips_jpegload((baton->file_in).c_str(), &in, "access", baton->access_method, NULL)) {
return resize_error(baton, in);
}
} else if (is_png(baton->file_in)) {
inputImageType = PNG;
if (vips_pngload((baton->file_in).c_str(), &in, "access", baton->access_method, NULL)) {
return resize_error(baton, in);
}
} else {
resize_error(baton, in);
(baton->err).append("Unsupported input " + baton->file_in);
return;
}
double xfactor = static_cast<double>(img->Xsize) / std::max(baton->cols, 1);
double yfactor = static_cast<double>(img->Ysize) / std::max(baton->rows, 1);
double xfactor = static_cast<double>(in->Xsize) / std::max(baton->width, 1);
double yfactor = static_cast<double>(in->Ysize) / std::max(baton->height, 1);
double factor = baton->crop ? std::min(xfactor, yfactor) : std::max(xfactor, yfactor);
factor = std::max(factor, 1.0);
int shrink = floor(factor);
double residual = shrink / factor;
// Use im_shrink with the integral reduction
if (im_shrink(img, t[0], shrink, shrink)) {
(baton->err).append(vips_error_buffer());
vips_error_clear();
return;
}
// Use im_affinei with the remaining float part using bilinear interpolation
if (im_affinei_all(t[0], t[1], vips_interpolate_bilinear_static(), residual, 0, 0, residual, 0, 0)) {
(baton->err).append(vips_error_buffer());
vips_error_clear();
return;
}
img = t[1];
if (baton->crop) {
int width = std::min(img->Xsize, baton->cols);
int height = std::min(img->Ysize, baton->rows);
int left = (img->Xsize - width + 1) / 2;
int top = (img->Ysize - height + 1) / 2;
if (im_extract_area(img, t[2], left, top, width, height)) {
(baton->err).append(vips_error_buffer());
vips_error_clear();
return;
// Try to use libjpeg shrink-on-load
int shrink_on_load = 1;
if (inputImageType == JPEG) {
if (shrink >= 8) {
factor = residual * shrink / 8;
shrink_on_load = 8;
shrink = floor(factor);
residual = shrink / factor;
} else if (shrink >= 4) {
factor = residual * shrink / 4;
shrink_on_load = 4;
shrink = floor(factor);
residual = shrink / factor;
} else if (shrink >= 2) {
factor = residual * shrink / 2;
shrink_on_load = 2;
shrink = floor(factor);
residual = shrink / factor;
}
if (shrink_on_load > 1) {
g_object_unref(in);
in = vips_image_new();
if (baton->buffer_in_len > 1) {
if (vips_jpegload_buffer(baton->buffer_in, baton->buffer_in_len, &in, "shrink", shrink_on_load, NULL)) {
return resize_error(baton, in);
}
} else {
if (vips_jpegload((baton->file_in).c_str(), &in, "shrink", shrink_on_load, NULL)) {
return resize_error(baton, in);
}
}
}
}
VipsImage *shrunk = vips_image_new();
if (shrink > 1) {
// Use vips_shrink with the integral reduction
if (vips_shrink(in, &shrunk, shrink, shrink, NULL)) {
return resize_error(baton, in);
}
img = t[2];
} else {
int left = (baton->cols - img->Xsize) / 2;
int top = (baton->rows - img->Ysize) / 2;
if (im_embed(img, t[2], baton->embed, left, top, baton->cols, baton->rows)) {
(baton->err).append(vips_error_buffer());
vips_error_clear();
return;
}
img = t[2];
vips_copy(in, &shrunk, NULL);
}
g_object_unref(in);
// Use vips_affine with the remaining float part using bilinear interpolation
VipsImage *affined = vips_image_new();
if (residual > 0) {
if (vips_affine(shrunk, &affined, residual, 0, 0, residual, "interpolate", vips_interpolate_bilinear_static(), NULL)) {
return resize_error(baton, shrunk);
}
} else {
vips_copy(shrunk, &affined, NULL);
}
g_object_unref(shrunk);
VipsImage *canvased = vips_image_new();
if (affined->Xsize != baton->width || affined->Ysize != baton->height) {
if (baton->crop && affined->Xsize != baton->width && affined->Ysize != baton->height) {
// Crop
int width = std::min(affined->Xsize, baton->width);
int height = std::min(affined->Ysize, baton->height);
int left = (affined->Xsize - width + 1) / 2;
int top = (affined->Ysize - height + 1) / 2;
if (vips_extract_area(affined, &canvased, left, top, width, height, NULL)) {
return resize_error(baton, affined);
}
} else {
// Embed
int left = (baton->width - affined->Xsize) / 2;
int top = (baton->height - affined->Ysize) / 2;
if (vips_embed(affined, &canvased, left, top, baton->width, baton->height, "extend", baton->extend, NULL)) {
return resize_error(baton, affined);
}
}
} else {
vips_copy(affined, &canvased, NULL);
}
g_object_unref(affined);
// Mild sharpen
INTMASK* sharpen = im_create_imaskv("sharpen", 3, 3,
-1, -1, -1,
-1, 32, -1,
-1, -1, -1);
sharpen->scale = 24;
if (im_conv(img, t[3], sharpen)) {
(baton->err).append(vips_error_buffer());
vips_error_clear();
return;
VipsImage *sharpened = vips_image_new();
if (baton->sharpen) {
INTMASK* sharpen = im_create_imaskv("sharpen", 3, 3,
-1, -1, -1,
-1, 32, -1,
-1, -1, -1);
sharpen->scale = 24;
if (im_conv(canvased, sharpened, sharpen)) {
return resize_error(baton, canvased);
}
} else {
vips_copy(canvased, &sharpened, NULL);
}
img = t[3];
g_object_unref(canvased);
if (im_vips2jpeg(img, baton->dst.c_str())) {
(baton->err).append(vips_error_buffer());
vips_error_clear();
}
if (baton->file_out == "__jpeg") {
// Write JPEG to buffer
if (vips_jpegsave_buffer(canvased, &baton->buffer_out, &baton->buffer_out_len, "strip", TRUE, "Q", 80, "optimize_coding", TRUE, "interlace", baton->progessive, NULL)) {
return resize_error(baton, canvased);
}
} else if (baton->file_out == "__png") {
// Write PNG to buffer
if (vips_pngsave_buffer(canvased, &baton->buffer_out, &baton->buffer_out_len, "strip", TRUE, "compression", 6, "interlace", baton->progessive, NULL)) {
return resize_error(baton, canvased);
}
} else if (is_jpeg(baton->file_out)) {
// Write JPEG to file
if (vips_jpegsave(canvased, baton->file_out.c_str(), "strip", TRUE, "Q", 80, "optimize_coding", TRUE, "interlace", baton->progessive, NULL)) {
return resize_error(baton, canvased);
}
} else if (is_png(baton->file_out)) {
// Write PNG to file
if (vips_pngsave(canvased, baton->file_out.c_str(), "strip", TRUE, "compression", 6, "interlace", baton->progessive, NULL)) {
return resize_error(baton, canvased);
}
} else {
(baton->err).append("Unsupported output " + baton->file_out);
}
g_object_unref(canvased);
vips_thread_shutdown();
}
void ResizeAsyncAfter(uv_work_t *work, int status) {
void resize_async_after(uv_work_t *work, int status) {
HandleScope scope;
ResizeBaton *baton = static_cast<ResizeBaton*>(work->data);
resize_baton *baton = static_cast<resize_baton*>(work->data);
Local<Value> argv[1];
Handle<Value> argv[2] = { Null(), Null() };
if (!baton->err.empty()) {
// Error
argv[0] = String::New(baton->err.data(), baton->err.size());
} else {
argv[0] = Local<Value>::New(Null());
} else if (baton->buffer_out_len > 0) {
// Buffer
Buffer *slowBuffer = Buffer::New(baton->buffer_out_len);
memcpy(Buffer::Data(slowBuffer), baton->buffer_out, baton->buffer_out_len);
Local<Object> globalObj = Context::GetCurrent()->Global();
Local<Function> bufferConstructor = Local<Function>::Cast(globalObj->Get(String::New("Buffer")));
Handle<Value> constructorArgs[3] = { slowBuffer->handle_, v8::Integer::New(baton->buffer_out_len), v8::Integer::New(0) };
argv[1] = bufferConstructor->NewInstance(3, constructorArgs);
g_free(baton->buffer_out);
}
baton->callback->Call(Context::GetCurrent()->Global(), 1, argv);
baton->callback->Call(Context::GetCurrent()->Global(), 2, argv);
baton->callback.Dispose();
delete baton;
delete work;
}
Handle<Value> Resize(const Arguments& args) {
Handle<Value> resize(const Arguments& args) {
HandleScope scope;
ResizeBaton *baton = new ResizeBaton;
baton->src = *String::Utf8Value(args[0]->ToString());
baton->dst = *String::Utf8Value(args[1]->ToString());
baton->cols = args[2]->Int32Value();
baton->rows = args[3]->Int32Value();
Local<String> canvas = args[4]->ToString();
resize_baton *baton = new resize_baton;
baton->file_in = *String::Utf8Value(args[0]->ToString());
if (args[1]->IsObject()) {
Local<Object> buffer = args[1]->ToObject();
baton->buffer_in = Buffer::Data(buffer);
baton->buffer_in_len = Buffer::Length(buffer);
}
baton->file_out = *String::Utf8Value(args[2]->ToString());
baton->width = args[3]->Int32Value();
baton->height = args[4]->Int32Value();
Local<String> canvas = args[5]->ToString();
if (canvas->Equals(String::NewSymbol("c"))) {
baton->crop = true;
baton->crop = true;
} else if (canvas->Equals(String::NewSymbol("w"))) {
baton->crop = false;
baton->embed = 4;
baton->extend = VIPS_EXTEND_WHITE;
} else if (canvas->Equals(String::NewSymbol("b"))) {
baton->crop = false;
baton->embed = 0;
}
baton->callback = Persistent<Function>::New(Local<Function>::Cast(args[5]));
baton->extend = VIPS_EXTEND_BLACK;
}
baton->sharpen = args[6]->BooleanValue();
baton->progessive = args[7]->BooleanValue();
baton->access_method = args[8]->BooleanValue() ? VIPS_ACCESS_SEQUENTIAL : VIPS_ACCESS_RANDOM;
baton->callback = Persistent<Function>::New(Local<Function>::Cast(args[9]));
uv_work_t *work = new uv_work_t;
work->data = baton;
uv_queue_work(uv_default_loop(), work, ResizeAsync, (uv_after_work_cb)ResizeAsyncAfter);
return Undefined();
uv_queue_work(uv_default_loop(), work, resize_async, (uv_after_work_cb)resize_async_after);
return scope.Close(Undefined());
}
static void at_exit(void* arg) {
HandleScope scope;
vips_shutdown();
}
extern "C" void init(Handle<Object> target) {
HandleScope scope;
vips_init("");
NODE_SET_METHOD(target, "resize", Resize);
AtExit(at_exit);
NODE_SET_METHOD(target, "resize", resize);
};
NODE_MODULE(sharp, init)
NODE_MODULE(sharp, init);

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29
tests/parallel.js Executable file
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var sharp = require("../index");
var fs = require("fs");
var assert = require("assert");
var async = require("async");
var inputJpg = __dirname + "/2569067123_aca715a2ee_o.jpg"; // http://www.flickr.com/photos/grizdave/2569067123/
var width = 720;
var height = 480;
async.mapSeries([1, 1, 2, 4, 8, 16, 32, 64, 128], function(parallelism, next) {
var start = new Date().getTime();
async.times(parallelism,
function(id, callback) {
sharp.resize(inputJpg, sharp.buffer.jpeg, width, height, function(err, buffer) {
buffer = null;
callback(err, new Date().getTime() - start);
});
},
function(err, ids) {
assert(!err);
assert(ids.length === parallelism);
var mean = ids.reduce(function(a, b) {
return a + b;
}) / ids.length;
console.log(parallelism + " parallel calls: fastest=" + ids[0] + "ms slowest=" + ids[ids.length - 1] + "ms mean=" + mean + "ms");
next();
}
);
}, function() {});

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@@ -1,44 +1,299 @@
var sharp = require("../index");
var fs = require("fs");
var imagemagick = require("imagemagick");
var gm = require("gm");
var epeg = require("epeg");
var async = require("async");
var assert = require("assert");
var Benchmark = require("benchmark");
var input = __dirname + "/2569067123_aca715a2ee_o.jpg"; // http://www.flickr.com/photos/grizdave/2569067123/
var output = __dirname + "/output.jpg";
var width = 640;
var inputJpg = __dirname + "/2569067123_aca715a2ee_o.jpg"; // http://www.flickr.com/photos/grizdave/2569067123/
var outputJpg = __dirname + "/output.jpg";
var inputPng = __dirname + "/50020484-00001.png"; // http://c.searspartsdirect.com/lis_png/PLDM/50020484-00001.png
var outputPng = __dirname + "/output.png";
var width = 720;
var height = 480;
var suite = new Benchmark.Suite;
suite.add("imagemagick", {
"defer": true,
"fn": function(deferred) {
imagemagick.resize({
srcPath: input,
dstPath: output,
quality: 0.75,
width: width,
height: height
}, function(err) {
if (err) {
throw err;
} else {
async.series({
jpeg: function(callback) {
var inputJpgBuffer = fs.readFileSync(inputJpg);
(new Benchmark.Suite("jpeg")).add("imagemagick", {
defer: true,
fn: function(deferred) {
imagemagick.resize({
srcPath: inputJpg,
dstPath: outputJpg,
quality: 0.8,
width: width,
height: height
}, function(err) {
if (err) {
throw err;
} else {
deferred.resolve();
}
});
}
}).add("gm-file-file", {
defer: true,
fn: function(deferred) {
gm(inputJpg).resize(width, height).quality(80).write(outputJpg, function (err) {
if (err) {
throw err;
} else {
deferred.resolve();
}
});
}
}).add("gm-file-buffer", {
defer: true,
fn: function(deferred) {
gm(inputJpg).resize(width, height).quality(80).toBuffer(function (err, buffer) {
if (err) {
throw err;
} else {
assert.notStrictEqual(null, buffer);
deferred.resolve();
}
});
}
}).add("epeg-file-file", {
defer: true,
fn: function(deferred) {
var image = new epeg.Image({path: inputJpg});
image.downsize(width, height, 80).saveTo(outputJpg);
deferred.resolve();
}
});
}
}).add("sharp", {
"defer": true,
"fn": function(deferred) {
sharp.crop(input, output, width, height, function(err) {
if (err) {
throw err;
} else {
}).add("epeg-file-buffer", {
defer: true,
fn: function(deferred) {
var image = new epeg.Image({path: inputJpg});
var buffer = image.downsize(width, height, 80).process();
assert.notStrictEqual(null, buffer);
deferred.resolve();
}
});
}).add("sharp-buffer-file", {
defer: true,
fn: function(deferred) {
sharp.resize(inputJpgBuffer, outputJpg, width, height, function(err) {
if (err) {
throw err;
} else {
deferred.resolve();
}
});
}
}).add("sharp-buffer-buffer", {
defer: true,
fn: function(deferred) {
sharp.resize(inputJpgBuffer, sharp.buffer.jpeg, width, height, function(err, buffer) {
if (err) {
throw err;
} else {
assert.notStrictEqual(null, buffer);
deferred.resolve();
}
});
}
}).add("sharp-file-file", {
defer: true,
fn: function(deferred) {
sharp.resize(inputJpg, outputJpg, width, height, function(err) {
if (err) {
throw err;
} else {
deferred.resolve();
}
});
}
}).add("sharp-file-buffer", {
defer: true,
fn: function(deferred) {
sharp.resize(inputJpg, sharp.buffer.jpeg, width, height, function(err, buffer) {
if (err) {
throw err;
} else {
assert.notStrictEqual(null, buffer);
deferred.resolve();
}
});
}
}).add("sharp-file-buffer-sharpen", {
defer: true,
fn: function(deferred) {
sharp.resize(inputJpg, sharp.buffer.jpeg, width, height, {sharpen: true}, function(err, buffer) {
if (err) {
throw err;
} else {
assert.notStrictEqual(null, buffer);
deferred.resolve();
}
});
}
}).add("sharp-file-buffer-progressive", {
defer: true,
fn: function(deferred) {
sharp.resize(inputJpg, sharp.buffer.jpeg, width, height, {progressive: true}, function(err, buffer) {
if (err) {
throw err;
} else {
assert.notStrictEqual(null, buffer);
deferred.resolve();
}
});
}
}).add("sharp-file-buffer-sequentialRead", {
defer: true,
fn: function(deferred) {
sharp.resize(inputJpg, sharp.buffer.jpeg, width, height, {sequentialRead: true}, function(err, buffer) {
if (err) {
throw err;
} else {
assert.notStrictEqual(null, buffer);
deferred.resolve();
}
});
}
}).on("cycle", function(event) {
console.log("jpeg " + String(event.target));
}).on("complete", function() {
callback(null, this.filter("fastest").pluck("name"));
}).run();
},
png: function(callback) {
var inputPngBuffer = fs.readFileSync(inputPng);
(new Benchmark.Suite("png")).add("imagemagick", {
defer: true,
fn: function(deferred) {
imagemagick.resize({
srcPath: inputPng,
dstPath: outputPng,
width: width,
height: height
}, function(err) {
if (err) {
throw err;
} else {
deferred.resolve();
}
});
}
}).add("gm-file-file", {
defer: true,
fn: function(deferred) {
gm(inputPng).resize(width, height).write(outputPng, function (err) {
if (err) {
throw err;
} else {
deferred.resolve();
}
});
}
}).add("gm-file-buffer", {
defer: true,
fn: function(deferred) {
gm(inputPng).resize(width, height).quality(80).toBuffer(function (err, buffer) {
if (err) {
throw err;
} else {
assert.notStrictEqual(null, buffer);
deferred.resolve();
}
});
}
}).add("sharp-buffer-file", {
defer: true,
fn: function(deferred) {
sharp.resize(inputPngBuffer, outputPng, width, height, function(err) {
if (err) {
throw err;
} else {
deferred.resolve();
}
});
}
}).add("sharp-buffer-buffer", {
defer: true,
fn: function(deferred) {
sharp.resize(inputPngBuffer, sharp.buffer.png, width, height, function(err, buffer) {
if (err) {
throw err;
} else {
assert.notStrictEqual(null, buffer);
deferred.resolve();
}
});
}
}).add("sharp-file-file", {
defer: true,
fn: function(deferred) {
sharp.resize(inputPng, outputPng, width, height, function(err) {
if (err) {
throw err;
} else {
deferred.resolve();
}
});
}
}).add("sharp-file-buffer", {
defer: true,
fn: function(deferred) {
sharp.resize(inputPng, sharp.buffer.png, width, height, function(err, buffer) {
if (err) {
throw err;
} else {
assert.notStrictEqual(null, buffer);
deferred.resolve();
}
});
}
}).add("sharp-file-buffer-sharpen", {
defer: true,
fn: function(deferred) {
sharp.resize(inputPng, sharp.buffer.png, width, height, {sharpen: true}, function(err, buffer) {
if (err) {
throw err;
} else {
assert.notStrictEqual(null, buffer);
deferred.resolve();
}
});
}
}).add("sharp-file-buffer-progressive", {
defer: true,
fn: function(deferred) {
sharp.resize(inputPng, sharp.buffer.png, width, height, {progressive: true}, function(err, buffer) {
if (err) {
throw err;
} else {
assert.notStrictEqual(null, buffer);
deferred.resolve();
}
});
}
}).add("sharp-file-buffer-sequentialRead", {
defer: true,
fn: function(deferred) {
sharp.resize(inputPng, sharp.buffer.png, width, height, {sequentialRead: true}, function(err, buffer) {
if (err) {
throw err;
} else {
assert.notStrictEqual(null, buffer);
deferred.resolve();
}
});
}
}).on("cycle", function(event) {
console.log(" png " + String(event.target));
}).on("complete", function() {
callback(null, this.filter("fastest").pluck("name"));
}).run();
}
}).on("cycle", function(event) {
console.log(String(event.target));
}).on("complete", function() {
assert(this.filter("fastest").pluck("name") == "sharp");
}).run();
}, function(err, results) {
assert(!err, err);
Object.keys(results).forEach(function(format) {
assert.strictEqual("sharp", results[format].toString().substr(0, 5), "sharp was slower than " + results[format] + " for " + format);
});
});