使用Python

时间:2015-05-14 00:36:11

标签: python-2.7 python-imaging-library paste

我试图在Python中水平组合一些JPEG图像。

问题

我有3张图片 - 每张图片是148 x 95 - 见附件。我只是制作了3张相同的图像 - 这就是为什么它们是相同的。

enter image description here enter image description here enter image description here

我的尝试

我正在尝试使用以下代码水平加入它们:

import sys
from PIL import Image

list_im = ['Test1.jpg','Test2.jpg','Test3.jpg']
new_im = Image.new('RGB', (444,95)) #creates a new empty image, RGB mode, and size 444 by 95

for elem in list_im:
    for i in xrange(0,444,95):
        im=Image.open(elem)
        new_im.paste(im, (i,0))
new_im.save('test.jpg')

但是,这会产生附加为test.jpg的输出。

enter image description here

问题

有没有办法水平连接这些图像,以便test.jpg中的子图像没有显示额外的部分图像?

其他信息

我正在寻找一种水平连接n个图像的方法。我想一般使用这个代码,所以我更愿意:

  • 如果可能,不要硬编码图像尺寸
  • 在一行中指定尺寸,以便可以轻松更改

12 个答案:

答案 0 :(得分:115)

您可以这样做:

import sys
from PIL import Image

images = map(Image.open, ['Test1.jpg', 'Test2.jpg', 'Test3.jpg'])
widths, heights = zip(*(i.size for i in images))

total_width = sum(widths)
max_height = max(heights)

new_im = Image.new('RGB', (total_width, max_height))

x_offset = 0
for im in images:
  new_im.paste(im, (x_offset,0))
  x_offset += im.size[0]

new_im.save('test.jpg')

Test1.jpg

Test1.jpg

Test2.jpg

Test2.jpg

Test3.jpg

Test3.jpg

test.jpg

enter image description here

for i in xrange(0,444,95):的嵌套将每个图像粘贴5次,相隔95个像素。每个外循环迭代都粘贴在前一个上面。

for elem in list_im:
  for i in xrange(0,444,95):
    im=Image.open(elem)
    new_im.paste(im, (i,0))
  new_im.save('new_' + elem + '.jpg')

enter image description here enter image description here enter image description here

答案 1 :(得分:66)

我会试试这个:

import numpy as np
import PIL

list_im = ['Test1.jpg', 'Test2.jpg', 'Test3.jpg']
imgs    = [ PIL.Image.open(i) for i in list_im ]
# pick the image which is the smallest, and resize the others to match it (can be arbitrary image shape here)
min_shape = sorted( [(np.sum(i.size), i.size ) for i in imgs])[0][1]
imgs_comb = np.hstack( (np.asarray( i.resize(min_shape) ) for i in imgs ) )

# save that beautiful picture
imgs_comb = PIL.Image.fromarray( imgs_comb)
imgs_comb.save( 'Trifecta.jpg' )    

# for a vertical stacking it is simple: use vstack
imgs_comb = np.vstack( (np.asarray( i.resize(min_shape) ) for i in imgs ) )
imgs_comb = PIL.Image.fromarray( imgs_comb)
imgs_comb.save( 'Trifecta_vertical.jpg' )

只要所有图像具有相同的种类(所有RGB,所有RGBA或所有灰度),它都应该有效。不需要更多代码行确保这种情况并不困难。以下是我的示例图片,结果如下:

Test1.jpg

Test1.jpg

Test2.jpg

Test2.jpg

Test3.jpg

Test3.jpg

Trifecta.jpg:

combined images

Trifecta_vertical.jpg

enter image description here

答案 2 :(得分:21)

编辑:DTing的答案更适用于您的问题,因为它使用了PIL,但我会留下这个,以防您想知道如何在numpy中进行操作。

这是一个numpy / matplotlib解决方案,适用于任何大小/形状的N个图像(仅彩色图像)。

import numpy as np
import matplotlib.pyplot as plt

def concat_images(imga, imgb):
    """
    Combines two color image ndarrays side-by-side.
    """
    ha,wa = imga.shape[:2]
    hb,wb = imgb.shape[:2]
    max_height = np.max([ha, hb])
    total_width = wa+wb
    new_img = np.zeros(shape=(max_height, total_width, 3))
    new_img[:ha,:wa]=imga
    new_img[:hb,wa:wa+wb]=imgb
    return new_img

def concat_n_images(image_path_list):
    """
    Combines N color images from a list of image paths.
    """
    output = None
    for i, img_path in enumerate(image_path_list):
        img = plt.imread(img_path)[:,:,:3]
        if i==0:
            output = img
        else:
            output = concat_images(output, img)
    return output

以下是示例用法:

>>> images = ["ronda.jpeg", "rhod.jpeg", "ronda.jpeg", "rhod.jpeg"]
>>> output = concat_n_images(images)
>>> import matplotlib.pyplot as plt
>>> plt.imshow(output)
>>> plt.show()

enter image description here

答案 3 :(得分:9)

根据DTing的回答,我创建了一个更易于使用的功能:

from PIL import Image


def append_images(images, direction='horizontal',
                  bg_color=(255,255,255), aligment='center'):
    """
    Appends images in horizontal/vertical direction.

    Args:
        images: List of PIL images
        direction: direction of concatenation, 'horizontal' or 'vertical'
        bg_color: Background color (default: white)
        aligment: alignment mode if images need padding;
           'left', 'right', 'top', 'bottom', or 'center'

    Returns:
        Concatenated image as a new PIL image object.
    """
    widths, heights = zip(*(i.size for i in images))

    if direction=='horizontal':
        new_width = sum(widths)
        new_height = max(heights)
    else:
        new_width = max(widths)
        new_height = sum(heights)

    new_im = Image.new('RGB', (new_width, new_height), color=bg_color)


    offset = 0
    for im in images:
        if direction=='horizontal':
            y = 0
            if aligment == 'center':
                y = int((new_height - im.size[1])/2)
            elif aligment == 'bottom':
                y = new_height - im.size[1]
            new_im.paste(im, (offset, y))
            offset += im.size[0]
        else:
            x = 0
            if aligment == 'center':
                x = int((new_width - im.size[0])/2)
            elif aligment == 'right':
                x = new_width - im.size[0]
            new_im.paste(im, (x, offset))
            offset += im.size[1]

    return new_im

它允许选择背景颜色和图像对齐。递归也很容易:

images = map(Image.open, ['hummingbird.jpg', 'tiger.jpg', 'monarch.png'])

combo_1 = append_images(images, direction='horizontal')
combo_2 = append_images(images, direction='horizontal', aligment='top',
                        bg_color=(220, 140, 60))
combo_3 = append_images([combo_1, combo_2], direction='vertical')
combo_3.save('combo_3.png')

Example concatenated image

答案 4 :(得分:6)

这是一个概括以前方法的函数,在PIL中创建图像网格:

from PIL import Image
import numpy as np

def pil_grid(images, max_horiz=np.iinfo(int).max):
    n_images = len(images)
    n_horiz = min(n_images, max_horiz)
    h_sizes, v_sizes = [0] * n_horiz, [0] * (n_images // n_horiz)
    for i, im in enumerate(images):
        h, v = i % n_horiz, i // n_horiz
        h_sizes[h] = max(h_sizes[h], im.size[0])
        v_sizes[v] = max(v_sizes[v], im.size[1])
    h_sizes, v_sizes = np.cumsum([0] + h_sizes), np.cumsum([0] + v_sizes)
    im_grid = Image.new('RGB', (h_sizes[-1], v_sizes[-1]), color='white')
    for i, im in enumerate(images):
        im_grid.paste(im, (h_sizes[i % n_horiz], v_sizes[i // n_horiz]))
    return im_grid

它会将网格的每一行和每列缩小到最小。您可以通过使用pil_grid(图像)只使用一行,或使用pil_grid(图像,1)只使用一列。

使用PIL而非基于numpy-array的解决方案的一个好处是,您可以处理不同结构的图像(如灰度或基于调色板的图像)。

示例输出

def dummy(w, h):
    "Produces a dummy PIL image of given dimensions"
    from PIL import ImageDraw
    im = Image.new('RGB', (w, h), color=tuple((np.random.rand(3) * 255).astype(np.uint8)))
    draw = ImageDraw.Draw(im)
    points = [(i, j) for i in (0, im.size[0]) for j in (0, im.size[1])]
    for i in range(len(points) - 1):
        for j in range(i+1, len(points)):
            draw.line(points[i] + points[j], fill='black', width=2)
    return im

dummy_images = [dummy(20 + np.random.randint(30), 20 + np.random.randint(30)) for _ in range(10)]

pil_grid(dummy_images)

line.png

pil_grid(dummy_images, 3)

enter image description here

pil_grid(dummy_images, 1)

enter image description here

答案 5 :(得分:2)

这是我的解决方法:

from PIL import Image


def join_images(*rows, bg_color=(0, 0, 0, 0), alignment=(0.5, 0.5)):
    rows = [
        [image.convert('RGBA') for image in row]
        for row
        in rows
    ]

    heights = [
        max(image.height for image in row)
        for row
        in rows
    ]

    widths = [
        max(image.width for image in column)
        for column
        in zip(*rows)
    ]

    tmp = Image.new(
        'RGBA',
        size=(sum(widths), sum(heights)),
        color=bg_color
    )

    for i, row in enumerate(rows):
        for j, image in enumerate(row):
            y = sum(heights[:i]) + int((heights[i] - image.height) * alignment[1])
            x = sum(widths[:j]) + int((widths[j] - image.width) * alignment[0])
            tmp.paste(image, (x, y))

    return tmp


def join_images_horizontally(*row, bg_color=(0, 0, 0), alignment=(0.5, 0.5)):
    return join_images(
        row,
        bg_color=bg_color,
        alignment=alignment
    )


def join_images_vertically(*column, bg_color=(0, 0, 0), alignment=(0.5, 0.5)):
    return join_images(
        *[[image] for image in column],
        bg_color=bg_color,
        alignment=alignment
    )

对于这些图像:

images = [
    [Image.open('banana.png'), Image.open('apple.png')],
    [Image.open('lime.png'), Image.open('lemon.png')],
]

结果如下:


join_images(
    *images,
    bg_color='green',
    alignment=(0.5, 0.5)
).show()

enter image description here


join_images(
    *images,
    bg_color='green',
    alignment=(0, 0)

).show()

enter image description here


join_images(
    *images,
    bg_color='green',
    alignment=(1, 1)
).show()

enter image description here

答案 6 :(得分:1)

""" 
merge_image takes three parameters first two parameters specify 
the two images to be merged and third parameter i.e. vertically
is a boolean type which if True merges images vertically
and finally saves and returns the file_name
"""
def merge_image(img1, img2, vertically):
    images = list(map(Image.open, [img1, img2]))
    widths, heights = zip(*(i.size for i in images))
    if vertically:
        max_width = max(widths)
        total_height = sum(heights)
        new_im = Image.new('RGB', (max_width, total_height))

        y_offset = 0
        for im in images:
            new_im.paste(im, (0, y_offset))
            y_offset += im.size[1]
    else:
        total_width = sum(widths)
        max_height = max(heights)
        new_im = Image.new('RGB', (total_width, max_height))

        x_offset = 0
        for im in images:
            new_im.paste(im, (x_offset, 0))
            x_offset += im.size[0]

    new_im.save('test.jpg')
    return 'test.jpg'

答案 7 :(得分:1)

from __future__ import print_function
import os
from pil import Image

files = [
      '1.png',
      '2.png',
      '3.png',
      '4.png']

result = Image.new("RGB", (800, 800))

for index, file in enumerate(files):
path = os.path.expanduser(file)
img = Image.open(path)
img.thumbnail((400, 400), Image.ANTIALIAS)
x = index // 2 * 400
y = index % 2 * 400
w, h = img.size
result.paste(img, (x, y, x + w, y + h))

result.save(os.path.expanduser('output.jpg'))

输出

enter image description here

答案 8 :(得分:1)

如果所有图片的高度都相同,

imgs = [‘a.jpg’, ‘b.jpg’, ‘c.jpg’]
concatenated = Image.fromarray(
  np.concatenate(
    [np.array(Image.open(x)) for x in imgs],
    axis=1
  )
)

也许您可以像这样在合并之前调整图像的大小,

imgs = [‘a.jpg’, ‘b.jpg’, ‘c.jpg’]
concatenated = Image.fromarray(
  np.concatenate(
    [np.array(Image.open(x).resize((640,480)) for x in imgs],
    axis=1
  )
)

答案 9 :(得分:1)

投票最多的答案在Python 3.6中效果不佳

我所做的更改是使用listmap(image.open, [])迭代器转换为列表对象。

然后运行良好。

import sys
from PIL import Image

images = list(map(Image.open, ['Test1.jpg', 'Test2.jpg', 'Test3.jpg']))
widths, heights = zip(*(i.size for i in images))

total_width = sum(widths)
max_height = max(heights)

new_im = Image.new('RGB', (total_width, max_height))

x_offset = 0
for im in images:
  new_im.paste(im, (x_offset,0))
  x_offset += im.size[0]

new_im.save('test.jpg')

答案 10 :(得分:0)

只需添加已建议的解决方案即可。假定高度相同,没有调整大小。

import sys
import glob
from PIL import Image
Image.MAX_IMAGE_PIXELS = 100000000  # For PIL Image error when handling very large images

imgs    = [ Image.open(i) for i in list_im ]

widths, heights = zip(*(i.size for i in imgs))
total_width = sum(widths)
max_height = max(heights)

new_im = Image.new('RGB', (total_width, max_height))

# Place first image
new_im.paste(imgs[0],(0,0))

# Iteratively append images in list horizontally
hoffset=0
for i in range(1,len(imgs),1):
    **hoffset=imgs[i-1].size[0]+hoffset  # update offset**
    new_im.paste(imgs[i],**(hoffset,0)**)

new_im.save('output_horizontal_montage.jpg')

答案 11 :(得分:0)

我的解决方法是:

import sys
import os
from PIL import Image, ImageFilter
from PIL import ImageFont
from PIL import ImageDraw 

os.chdir('C:/Users/Sidik/Desktop/setup')
print(os.getcwd())

image_list= ['IMG_7292.jpg','IMG_7293.jpg','IMG_7294.jpg', 'IMG_7295.jpg' ]

image = [Image.open(x) for x in image_list]  # list
im_1 = image[0].rotate(270)
im_2 = image[1].rotate(270)
im_3 = image[2].rotate(270)
#im_4 = image[3].rotate(270)

height = image[0].size[0]
width = image[0].size[1]
# Create an empty white image frame
new_im = Image.new('RGB',(height*2,width*2),(255,255,255))

new_im.paste(im_1,(0,0))
new_im.paste(im_2,(height,0))
new_im.paste(im_3,(0,width))
new_im.paste(im_4,(height,width))


draw = ImageDraw.Draw(new_im)
font = ImageFont.truetype('arial',200)

draw.text((0, 0), '(a)', fill='white', font=font)
draw.text((height, 0), '(b)', fill='white', font=font)
draw.text((0, width), '(c)', fill='white', font=font)
#draw.text((height, width), '(d)', fill='white', font=font)

new_im.show()
new_im.save('BS1319.pdf')   
[![Laser spots on the edge][1]][1]