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15 Commits
Author SHA1 Message Date
FPille b8fcd7cf83 Improve find expressions/options 2019-08-05 22:48:18 +02:00
FPille 0bcc5dcabb Add CLI outputs 2019-08-05 21:17:27 +02:00
FPille 9f74f306e1 Fix find command for listing programs 2019-08-05 21:14:55 +02:00
FPille 65bf748d59 Remove less from packages / Copy less and column from build environment to AppDir 2019-08-05 20:12:19 +02:00
FPille 65dba03703 ImageMagick already exists in build environment 2019-08-05 20:10:38 +02:00
FPille cb1126b743 Add pushd "$HERE" 2019-08-05 20:07:41 +02:00
FPille 8ef928fcdd Add parameter ocrmypdf 2019-08-04 20:01:47 +02:00
FPille 67fa41c39a Force copy of less binaries 2019-08-04 19:54:47 +02:00
FPille 1e14c2101f Add user dialog to show license files 2019-08-04 19:32:16 +02:00
FPille 7f12775032 Add package less 2019-08-04 19:31:17 +02:00
FPille d3bee93ed5 Disable pytest 2019-08-04 19:30:14 +02:00
FPille 7409cbed29 Add ppa for pngquant 2.5.0 2019-08-02 17:46:46 +02:00
FrankandGitHub 55a44f823a Delete ocrmypdf.png
This file is a bloody workaround.  AppImages require a dir icon.
When started to build this AppImage there was no logo at the github repo of OCRmyPDF.
Now the build script uses/converts the OCRmyPDF logo to use it as dir icon.
2019-07-29 23:41:21 +02:00
FrankandGitHub 8cd87bd26f Correct order of programs 2019-07-29 20:59:45 +02:00
FPille 03932e877a Initial commit 2019-07-29 20:56:31 +02:00
87 changed files with 340 additions and 14342 deletions
-31
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*.ipynb
*.pdf
*.pyc
*.rst
*.sublime*
*/*.pyc
*/*/*.pyc
*/*/*/*.pyc
*/*/*/*/*.pyc
*/*/*/*/*/*.pyc
*/*/*/*/*/*/*.pyc
*/*/*/*/*/*/*/*.pyc
.cache/
.git/
.ipynb_checkpoints/
.ruffus_history.sqlite
bin/
build/
dist/
htmlcov/
include/
lib/
MANIFEST.in
ocrmypdf.egg-info/
staging/
tests/cache/
tests/output/
tests/resources/private/
tmp/
venv-3.4/
venv-3.5/
-1
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ref-names: $Format:%D$
-10
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# Always use Unix convention for new lines
* text eol=lf
# These files are binary and should be left untouched
# (binary is a macro for -text -diff)
*.jar binary
*.pdf binary
*.PDF binary
.git_archival.txt export-subst
-3
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Please include the command line and (if needed) a test file with your issue report.
If possible, please use a test file that we can include in future test cases (no personal information, no copyrighted material).
-34
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# Development environment
*.pyc
*.sublime-*
venv-*/
pyvenv.cfg
tasks.py
# Package building
*.egg-info/
.cache/
.eggs/
build/
dist/
wheelhouse/
# Automatically generated files
ocrmypdf/lib/_*.py
ocrmypdf/version.py
docs/_build/
docs/_static/
docs/_templates/
# Code coverage
.coverage
htmlcov/
# Testing
log/
/*.pdf
.ipynb_checkpoints/
tests/cache/
tests/output/
tests/resources/private/
tmp/
+22 -38
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@@ -1,45 +1,29 @@
language: generic
sudo: required
dist: trusty
language: python
cache: pip
cache:
directories:
- $HOME/.ccache
- packages
- tests/cache
python:
- 3.4
- 3.5
before_cache:
- rm -f $HOME/.cache/pip/log/debug.log
before_install:
# Ubuntu packages
- sudo add-apt-repository ppa:vshn/ghostscript -y # for ghostscript 9.16 (trusty has 9.10)
- sudo add-apt-repository ppa:heyarje/libav-11 -y # for libav11, which is for unpaper
- sudo apt-get update -qq # must go after all add-apt-repo
- sudo apt-get install -y ghostscript tesseract-ocr tesseract-ocr-deu tesseract-ocr-eng tesseract-ocr-fra qpdf poppler-utils libavformat56 libavcodec56 libavutil54 libffi-dev
# pip
- pip install --upgrade pip
# Download, make and install unpaper (using ccache)
- mkdir -p packages
- "[ -f packages/unpaper_6.1-1.deb ] || wget -q https://dl.dropboxusercontent.com/u/28971240/unpaper_6.1-1.deb -O packages/unpaper_6.1-1.deb"
- sudo dpkg -i packages/unpaper_6.1-1.deb
install:
- pip install -r requirements.txt
- pip install -r test_requirements.txt
- sudo add-apt-repository ppa:heyarje/libav-11 -y
- sudo add-apt-repository ppa:alex-p/tesseract-ocr -y
- sudo add-apt-repository ppa:evl.ms/evil -y # for a newer version (2.5.0) of pngquant
- sudo apt-get update -qq
- sudo apt-get install libleptonica-dev -y # required to build jbig2enc
- sudo apt-get install zlib1g-dev -y # required to build jbig2enc
# - sudo apt-get install imagemagick -y # required to convert logo to desktop icon
script:
- python setup.py clean
- python setup.py install
- python setup.py test
- export OCRMYPDF_VERSION=8.3.2
- bash build-appimage.sh
# remove previous installed libraries to ensure that the tests use the libraries of the AppImage
- sudo apt-get remove libleptonica-dev zlib1g-dev -y
- bash test/test-appimage.sh
- wget https://github.com/probonopd/uploadtool/raw/master/upload.sh
os:
- linux
after_success:
- bash upload.sh OCRmyPDF*.AppImage
branches:
except:
# Do not build tags that we create when we upload to GitHub Releases
- /^(?i:continuous)/
-91
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# OCRmyPDF
#
# VERSION 3.2
FROM debian:stretch
MAINTAINER James R. Barlow <jim@purplerock.ca>
# Add unprivileged user
RUN useradd docker \
&& mkdir /home/docker \
&& chown docker:docker /home/docker
# Update system and install our dependencies
# If this command takes too Docker hub's automated build will timeout,
# so try it in portions
RUN apt-get update && apt-get install -y --no-install-recommends \
locales \
python3 \
python3-pip \
python3-venv \
python3-reportlab \
python3-pil \
python3-wheel
RUN apt-get install -y --no-install-recommends \
unpaper \
qpdf \
poppler-utils \
tesseract-ocr \
tesseract-ocr-deu tesseract-ocr-spa tesseract-ocr-eng tesseract-ocr-fra
RUN apt-get install -qy --no-install-recommends \
libffi-dev \
libpython3-dev \
gcc
# Install Ghostscript from Debian sid to work around JPEG 2000 issue in
# Debian stretch libgs9 or gs 9.16~dfsg-2.1
COPY ./share/etc-apt-sources.list /etc/apt/sources.list
RUN apt-get update && apt-get install -y ghostscript/sid
# Enforce UTF-8
# Borrowed from https://index.docker.io/u/crosbymichael/python/
RUN dpkg-reconfigure locales && \
locale-gen C.UTF-8 && \
/usr/sbin/update-locale LANG=C.UTF-8
ENV LC_ALL C.UTF-8
# Set up a Python virtualenv and take all of the system packages, so we can
# rely on the platform packages rather than importing GCC and compiling them
RUN pyvenv /appenv \
&& pyvenv --system-site-packages /appenv
COPY . /application/
# Replace stock Tesseract 3.04.00 font with improved sharp2.ttf that resolves
# issues in many PDF viewers.
# Discussion is in https://github.com/tesseract-ocr/tesseract/issues/182
COPY ./share/sharp2.ttf /usr/share/tesseract-ocr/tessdata/pdf.ttf
RUN chmod 644 /usr/share/tesseract-ocr/tessdata/pdf.ttf
# Set this here to force a docker version, allowing non-tagged versions to
# be built
# ENV SETUPTOOLS_SCM_PRETEND_VERSION=v3.3.0
# Install application and dependencies
# In this arrangement Pillow and reportlab will be provided by the system
# Even though ocrmypdf is locally present, pull from PyPI because
# Dockerhub and setuptools_scm clash
RUN . /appenv/bin/activate; \
pip install --upgrade pip \
&& pip install ocrmypdf \
&& pip install --no-cache-dir -r /application/test_requirements.txt
# Remove the junk
RUN apt-get remove -qy gcc
RUN apt-get autoremove -y && apt-get clean -y
RUN rm -rf /var/lib/apt/lists/* /tmp/* /var/tmp/* /root/*
USER docker
WORKDIR /home/docker
ENV OCRMYPDF_TEST_OUTPUT=/tmp/test-output
ENV OCRMYPDF_SHARP_TTF=1
# Must use array form of ENTRYPOINT
# Non-array form does not append other arguments, because that is "intuitive"
ENTRYPOINT ["/application/docker-wrapper.sh"]
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# OCRmyPDF polyglot
#
# VERSION 3.2
FROM jbarlow83/ocrmypdf:latest
MAINTAINER James R. Barlow <jim@purplerock.ca>
# Update system and install our dependencies
USER root
RUN apt-get update && apt-get install -y --no-install-recommends \
tesseract-ocr-all
USER docker
# Must use array form of ENTRYPOINT
# Non-array form does not append other arguments, because that is "intuitive"
ENTRYPOINT ["/application/docker-wrapper.sh"]
-20
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Copyright (c) 2013-2016, The OCRmyPDF Authors
Permission is hereby granted, free of charge, to any person obtaining a
copy of this software and associated documentation files (the
"Software"), to deal in the Software without restriction, including
without limitation the rights to use, copy, modify, merge, publish,
distribute, sublicense, and/or sell copies of the Software, and to
permit persons to whom the Software is furnished to do so, subject to
the following conditions:
The above copyright notice and this permission notice shall be included
in all copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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# requirements
include requirements.txt
include test_requirements.txt
include dev_requirements.txt
# git
include .git_archival.txt
# docker
include Dockerfile
include Dockerfile.polyglot
include .dockerignore
# tests
include pytest.ini
recursive-include tests *.jpg
recursive-include tests *.pdf
recursive-include tests *.py
recursive-include tests *.rst
recursive-include tests *.txt
recursive-exclude tests/output *
recursive-exclude tests/output_pageinfo *
recursive-exclude tests/resources/private *
recursive-exclude tests/cache *
# documentation
include *.rst
include pipeline.svg
recursive-exclude .github *
recursive-include docs *.py
recursive-include docs *.rst
recursive-include docs *.svg
recursive-exclude docs/_build *
# support files
recursive-include ocrmypdf/data *
recursive-include share *
include *.py
exclude tasks.py
# code
recursive-include ocrmypdf *.py
exclude ocrmypdf/lib/_leptonica.py
include OCRmyPDF.sh
include docker-wrapper.sh
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#!/bin/sh
##############################################################################
# Copyright (c) 2013-14: fritz-hh from Github (https://github.com/fritz-hh)
##############################################################################
echo "This script is deprecated. Use 'ocrmypdf' instead."
python3 -m ocrmypdf.main "$@"
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# OCRmyPDF-AppImage [![Build Status](https://travis-ci.com/FPille/OCRmyPDF-AppImage.svg?branch=master)](https://travis-ci.com/FPille/OCRmyPDF-AppImage)
[AppImage][APPIMAGE] for [OCRmyPDF][OCRMYPDF]
## Usage
Download OCRmyPDF*.AppImage, make it executable and run it.
```
wget https://github.com/FPille/OCRmyPDF-AppImage/releases/download/continuous/OCRmyPDF-8.3.2-x86_64.AppImage
chmod +x OCRmyPDF*.AppImage
./OCRmyPDF*.AppImage --help
```
Beside OCRmyPDF additional command line programs can be run with this AppImage like:
* ghostscript
* img2pdf
* pngquant
* python3.6
* qpdf
* tesseract
* unpaper
Just use the program name as first parameter plus options:
```
./OCRmyPDF*.AppImage tesseract -v
tesseract 4.1.0
leptonica-1.76.0
libjpeg 8d (libjpeg-turbo 1.3.0) : libpng 1.2.50 : libtiff 4.0.3 : zlib 1.2.11 : libwebp 0.4.0 : libopenjp2 2.3.0
Found AVX2
Found AVX
Found SSE
```
Or create a symlink for the corresponding program:
```
ln -s OCRmyPDF*.AppImage tesseract
./tesseract --list-langs
```
[APPIMAGE]: https://appimage.org
[OCRMYPDF]: https://github.com/jbarlow83/OCRmyPDF
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OCRmyPDF
========
OCRmyPDF adds an OCR text layer to scanned PDF files, allowing them to
be searched or copy-pasted.
.. code-block:: bash
ocrmypdf # it's a scriptable command line program
-l eng+fra # it supports multiple languages
--rotate-pages # it can fix pages that are misrotated
--deskew # it can deskew crooked PDFs!
--title "My PDF" # it can change output metadata
--jobs 4 # it uses multiple cores by default
--output-type pdfa # it produces PDF/A by default
input_scanned.pdf # takes PDF input (or images)
output_searchable.pdf # produces validated PDF output
Main features
-------------
- Generates a searchable
`PDF/A <https://en.wikipedia.org/?title=PDF/A>`_ file from a regular PDF
- Places OCR text accurately below the image to ease copy / paste
- Keeps the exact resolution of the original embedded images
- When possible, inserts OCR information as a "lossless" operation without rendering vector information
- Keeps file size about the same
- If requested deskews and/or cleans the image before performing OCR
- Validates input and output files
- Provides debug mode to enable easy verification of the OCR results
- Processes pages in parallel when more than one CPU core is
available
- Uses `Tesseract OCR <https://github.com/tesseract-ocr/tesseract>`_ engine
- Supports more than `100 languages <https://github.com/tesseract-ocr/tessdata>`_ recognized by Tesseract
- Battle-tested on thousands of PDFs, a test suite and continuous integration
For details: please consult the `release notes <RELEASE_NOTES.rst>`_.
Motivation
----------
I searched the web for a free command line tool to OCR PDF files on
Linux/UNIX: I found many, but none of them were really satisfying.
- Either they produced PDF files with misplaced text under the image (making copy/paste impossible)
- Or they did not handle accents and multilingual characters
- Or they changed the resolution of the embedded images
- Or they generated ridiculously large PDF files
- Or they crashed when trying to OCR some of my PDF files
- Or they did not produce valid PDF files (even though they were readable with my current PDF reader)
- On top of that none of them produced PDF/A files (format dedicated for long time storage)
...so I decided to develop my own tool (using various existing scripts
as an inspiration).
Installation
------------
Linux, UNIX, and macOS are supported. Windows is not directly supported but there is a Docker image available that runs on Windows.
Users of Debian 9 or later or Ubuntu 16.10 or later may simply
``apt-get install ocrmypdf``.
For everyone else, `see our documentation <https://ocrmypdf.readthedocs.io/en/latest/installation.html>`_ for installation steps.
Languages
---------
OCRmyPDF uses Tesseract for OCR, and relies on its language packs. For Linux users,
you can often find packages that provide language packs:
.. code-block:: bash
# Display a list of all Tesseract language packs
apt-cache search tesseract-ocr
# Debian/Ubuntu users
apt-get install tesseract-ocr-chi-sim # Example: Install Chinese Simplified language back
You can then pass the ``-l LANG`` argument to OCRmyPDF to give a hint as to what languages it should search for. Multiple
languages can be requested.
Documentation and support
-------------------------
Once ocrmypdf is installed, the built-in help which explains the command syntax and options can be accessed via:
.. code-block:: bash
ocrmypdf --help
Our `documentation is served on Read the Docs <https://ocrmypdf.readthedocs.io/en/latest/index.html>`_.
If you detect an issue, please:
- Check whether your issue is already known
- If no problem report exists on github, please create one here:
https://github.com/jbarlow83/OCRmyPDF/issues
- Describe your problem thoroughly
- Append the console output of the script when running the debug mode
(``-v 1`` option)
- If possible provide your input PDF file as well as the content of the
temporary folder (using a file sharing service like Dropbox)
Press & Media
-------------
- `c't 1-2014, page 59 <http://heise.de/-2279695>`_:
Detailed presentation of OCRmyPDF v1.0 in the leading German IT
magazine c't
- `heise Open Source, 09/2014: Texterkennung mit
OCRmyPDF <http://heise.de/-2356670>`_
Disclaimer
----------
The software is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR
CONDITIONS OF ANY KIND, either express or implied.
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RELEASE NOTES
=============
OCRmyPDF uses `semantic versioning <http://semver.org/>`_.
v4.3.2:
=======
- Fixed a PDF/A creation issue with Ghostscript 9.20
v4.3.1:
=======
- Fixed an issue where pages produced by the "hocr" renderer after a Tesseract timeout would be rotated incorrectly if the input page was rotated with a /Rotate marker
- Fixed a file handle leak in LeptonicaErrorTrap that would cause a "too many open files" error for files around hundred pages of pages long when ``--deskew`` or ``--remove-background`` or other Leptonica based image processing features were in use, depending on the system value of ``ulimit -n``
- Ability to specify multiple languages for multilingual documents is now advertised in documentation
- Reduced the file sizes of some test resources
- Cleaned up debug output
- Tesseract caching in test cases is now more cautious about false cache hits and reproducing exact output, not that any problems were observed
v4.3:
=====
- New feature ``--remove-background`` to detect and erase the background of color and grayscale images
- Better documentation
- Fixed an issue with PDFs that draw images when the raster stack depth is zero
- ocrmypdf can now redirect its output to stdout for use in a shell pipeline
+ This does not improve performance since temporary files are still used for buffering
+ Some output validation is disabled in this mode
v4.2.5:
=======
- Fixed an issue (#100) with PDFs that omit the optional /BitsPerComponent parameter on images
- Removed non-free file milk.pdf
v4.2.4:
=======
- Fixed an error (#90) caused by PDFs that use stencil masks properly
- Fixed handling of PDFs that try to draw images or stencil masks without properly setting up the graphics state (such images are now ignored for the purposes of calculating DPI)
v4.2.3:
=======
- Fixed an issue with PDFs that store page rotation (/Rotate) in an indirect object
- Integrated a few fixes to simplify downstream packaging (Debian)
+ The test suite no longer assumes it is installed
+ If running Linux, skip a test that passes Unicode on the command line
- Added a test case to check explicit masks and stencil masks
- Added a test case for indirect objects and linearized PDFs
- Deprecated the OCRmyPDF.sh shell script
v4.2.2:
=======
- Improvements to documentation
v4.2.1:
=======
- Fixed an issue where PDF pages that contained stencil masks would report an incorrect DPI and cause Ghostscript to abort
- Implemented stdin streaming
v4.2:
=====
- ocrmypdf will now try to convert single image files to PDFs if they are provided as input (#15)
+ This is a basic convenience feature. It only supports a single image and always makes the image fill the whole page.
+ For better control over image to PDF conversion, use ``img2pdf`` (one of ocrmypdf's dependencies)
- New argument ``--output-type {pdf|pdfa}`` allows disabling Ghostscript PDF/A generation
+ ``pdfa`` is the default, consistent with past behavior
+ ``pdf`` provides a workaround for users concerned about the increase in file size from Ghostscript forcing JBIG2 images to CCITT and transcoding JPEGs
+ ``pdf`` preserves as much as it can about the original file, including problems that PDF/A conversion fixes
- PDFs containing images with "non-square" pixel aspect ratios, such as 200x100 DPI, are now handled and converted properly (fixing a bug that caused to be cropped)
- ``--force-ocr`` rasterizes pages even if they contain no images
+ supports users who want to use OCRmyPDF to reconstruct text information in PDFs with damaged Unicode maps (copy and paste text does not match displayed text)
+ supports reinterpreting PDFs where text was rendered as curves for printing, and text needs to be recovered
+ fixes issue #82
- Fixes an issue where, with certain settings, monochrome images in PDFs would be converted to 8-bit grayscale, increasing file size (#79)
- Support for Ubuntu 12.04 LTS "precise" has been dropped in favor of (roughly) Ubuntu 14.04 LTS "trusty"
+ Some Ubuntu "PPAs" (backports) are needed to make it work
- Support for some older dependencies dropped
+ Ghostscript 9.15 or later is now required (available in Ubuntu trusty with backports)
+ Tesseract 3.03 or later is now required (available in Ubuntu trusty)
- Ghostscript now runs in "safer" mode where possible
v4.1.4:
=======
- Bug fix: monochrome images with an ICC profile attached were incorrectly converted to full color images if lossless reconstruction was not possible due to other settings; consequence was increased file size for these images
v4.1.3:
=======
- More helpful error message for PDFs with version 4 security handler
- Update usage instructions for Windows/Docker users
- Fix order of operations for matrix multiplication (no effect on most users)
- Add a few leptonica wrapper functions (no effect on most users)
v4.1.2:
=======
- Replace IEC sRGB ICC profile with Debian's sRGB (from icc-profiles-free) which is more compatible with the MIT license
- More helpful error message for an error related to certain types of malformed PDFs
v4.1:
=====
- ``--rotate-pages`` now only rotates pages when reasonably confidence in the orientation. This behavior can be adjusted with the new argument ``--rotate-pages-threshold``
- Fixed problems in error checking if ``unpaper`` is uninstalled or missing at run-time
- Fixed problems with "RethrownJobError" errors during error handling that suppressed the useful error messages
v4.0.7:
=======
- Minor correction to Ghostscript output settings
v4.0.6:
=======
- Update install instructions
- Provide a sRGB profile instead of using Ghostscript's
v4.0.5:
=======
- Remove some verbose debug messages from v4.0.4
- Fixed temporary that wasn't being deleted
- DPI is now calculated correctly for cropped images, along with other image transformations
- Inline images are now checked during DPI calculation instead of rejecting the image
v4.0.4:
=======
Released with verbose debug message turned on. Do not use. Skip to v4.0.5.
v4.0.3:
=======
New features
------------
- Page orientations detected are now reported in a summary comment
Fixes
-----
- Show stack trace if unexpected errors occur
- Treat "too few characters" error message from Tesseract as a reason to skip that page rather than
abort the file
- Docker: fix blank JPEG2000 issue by insisting on Ghostscript versions that have this fixed
v4.0.2:
=======
Fixes
-----
- Fixed compatibility with Tesseract 3.04.01 release, particularly its different way of outputting
orientation information
- Improved handling of Tesseract errors and crashes
- Fixed use of chmod on Docker that broke most test cases
v4.0.1:
=======
Fixes
-----
- Fixed a KeyError if tesseract fails to find page orientation information
v4.0:
=====
New features
------------
- Automatic page rotation (``-r``) is now available. It uses ignores any prior rotation information
on PDFs and sets rotation based on the dominant orientation of detectable text. This feature is
fairly reliable but some false positives occur especially if there is not much text to work with. (#4)
- Deskewing is now performed using Leptonica instead of unpaper. Leptonica is faster and more reliable
at image deskewing than unpaper.
Fixes
-----
- Fixed an issue where lossless reconstruction could cause some pages to be appear incorrectly
if the page was rotated by the user in Acrobat after being scanned (specifically if it a /Rotate tag)
- Fixed an issue where lossless reconstruction could misalign the graphics layer with respect to
text layer if the page had been cropped such that its origin is not (0, 0) (#49)
Changes
-------
- Logging output is now much easier to read
- ``--deskew`` is now performed by Leptonica instead of unpaper (#25)
- libffi is now required
- Some changes were made to the Docker and Travis build environments to support libffi
- ``--pdf-renderer=tesseract`` now displays a warning if the Tesseract version is less than 3.04.01,
the planned release that will include fixes to an important OCR text rendering bug in Tesseract 3.04.00.
You can also manually install ./share/sharp2.ttf on top of pdf.ttf in your Tesseract tessdata folder
to correct the problem.
v3.2.1:
=======
Changes
-------
- Fixed issue #47 "convert() got and unexpected keyword argument 'dpi'" by upgrading to img2pdf 0.2
- Tweaked the Dockerfiles
v3.2:
=====
New features
------------
- Lossless reconstruction: when possible, OCRmyPDF will inject text layers without
otherwise manipulating the content and layout of a PDF page. For example, a PDF containing a mix
of vector and raster content would see the vector content preserved. Images may still be transcoded
during PDF/A conversion. (``--deskew`` and ``--clean-final`` disable this mode, necessarily.)
- New argument ``--tesseract-pagesegmode`` allows you to pass page segmentation arguments to Tesseract OCR.
This helps for two column text and other situations that confuse Tesseract.
- Added a new "polyglot" version of the Docker image, that generates Tesseract with all languages packs installed,
for the polyglots among us. It is much larger.
Changes
-------
- JPEG transcoding quality is now 95 instead of the default 75. Bigger file sizes for less degradation.
v3.1.1:
=======
Changes
-------
- Fixed bug that caused incorrect page size and DPI calculations on documents with mixed page sizes
v3.1:
=====
Changes
-------
- Default output format is now PDF/A-2b instead of PDF/A-1b
- Python 3.5 and OS X El Capitan are now supported platforms - no changes were
needed to implement support
- Improved some error messages related to missing input files
- Fixed issue #20 - uppercase .PDF extension not accepted
- Fixed an issue where OCRmyPDF failed to text that certain pages contained previously OCR'ed text,
such as OCR text produced by Tesseract 3.04
- Inserts /Creator tag into PDFs so that errors can be traced back to this project
- Added new option ``--pdf-renderer=auto``, to let OCRmyPDF pick the best PDF renderer.
Currently it always chooses the 'hocrtransform' renderer but that behavior may change.
- Set up Travis CI automatic integration testing
v3.0:
=====
New features
------------
- Easier installation with a Docker container or Python's ``pip`` package manager
- Eliminated many external dependencies, so it's easier to setup
- Now installs ``ocrmypdf`` to ``/usr/local/bin`` or equivalent for system-wide
access and easier typing
- Improved command line syntax and usage help (``--help``)
- Tesseract 3.03+ PDF page rendering can be used instead for better positioning
of recognized text (``--pdf-renderer tesseract``)
- PDF metadata (title, author, keywords) are now transferred to the
output PDF
- PDF metadata can also be set from the command line (``--title``, etc.)
- Automatic repairs malformed input PDFs if possible
- Added test cases to confirm everything is working
- Added option to skip extremely large pages that take too long to OCR and are
often not OCRable (e.g. large scanned maps or diagrams); other pages are still
processed (``--skip-big``)
- Added option to kill Tesseract OCR process if it seems to be taking too long on
a page, while still processing other pages (``--tesseract-timeout``)
- Less common colorspaces (CMYK, palette) are now supported by conversion to RGB
- Multiple images on the same PDF page are now supported
Changes
-------
- New, robust rewrite in Python 3.4+ with ruffus_ pipelines
- Now uses Ghostscript 9.14's improved color conversion model to preserve PDF colors
- OCR text is now rendered in the PDF as invisible text. Previous versions of OCRmyPDF
incorrectly rendered visible text with an image on top.
- All "tasks" in the pipeline can be executed in parallel on any
available CPUs, increasing performance
- The ``-o DPI`` argument has been phased out, in favor of ``--oversample DPI``, in
case we need ``-o OUTPUTFILE`` in the future
- Removed several dependencies, so it's easier to install. We no
longer use:
- GNU parallel_
- ImageMagick_
- Python 2.7
- Poppler
- MuPDF_ tools
- shell scripts
- Java and JHOVE_
- libxml2
- Some new external dependencies are required or optional, compared to v2.x:
- Ghostscript 9.14+
- qpdf_ 5.0.0+
- Unpaper_ 6.1 (optional)
- some automatically managed Python packages
.. _ruffus: http://www.ruffus.org.uk/index.html
.. _parallel: https://www.gnu.org/software/parallel/
.. _ImageMagick: http://www.imagemagick.org/script/index.php
.. _MuPDF: http://mupdf.com/docs/
.. _qpdf: http://qpdf.sourceforge.net/
.. _Unpaper: https://github.com/Flameeyes/unpaper
.. _JHOVE: http://jhove.sourceforge.net/
Release candidates
------------------
- rc9:
- fix issue #118: report error if ghostscript iccprofiles are missing
- fixed another issue related to #111: PDF rasterized to palette file
- add support image files with a palette
- don't try to validate PDF file after an exception occurs
- rc8:
- fix issue #111: exception thrown if PDF is missing DocumentInfo dictionary
- rc7:
- fix error when installing direct from pip, "no such file 'requirements.txt'"
- rc6:
- dropped libxml2 (Python lxml) since Python 3's internal XML parser is sufficient
- set up Docker container
- fix Unicode errors if recognized text contains Unicode characters and system locale is not UTF-8
- rc5:
- dropped Java and JHOVE in favour of qpdf
- improved command line error output
- additional tests and bug fixes
- tested on Ubuntu 14.04 LTS
- rc4:
- dropped MuPDF in favour of qpdf
- fixed some installer issues and errors in installation instructions
- improve performance: run Ghostscript with multithreaded rendering
- improve performance: use multiple cores by default
- bug fix: checking for wrong exception on process timeout
- rc3: skipping version number intentionally to avoid confusion with Tesseract
- rc2: first release for public testing to test-PyPI, Github
- rc1: testing release process
Compatibility notes
-------------------
- ``./OCRmyPDF.sh`` script is still available for now
- Stacking the verbosity option like ``-vvv`` is no longer supported
- The configuration file ``config.sh`` has been removed. Instead, you can
feed a file to the arguments for common settings:
::
ocrmypdf input.pdf output.pdf @settings.txt
where ``settings.txt`` contains *one argument per line*, for example:
::
-l
deu
--author
A. Merkel
--pdf-renderer
tesseract
Fixes
-----
- Handling of filenames containing spaces: fixed
Notes and known issues
----------------------
- Some dependencies may work with lower versions than tested, so try
overriding dependencies if they are "in the way" to see if they work.
- ``--pdf-renderer tesseract`` will output files with an incorrect page size in Tesseract 3.03,
due to a bug in Tesseract.
- PDF files containing "inline images" are not supported and won't be for the 3.0 release. Scanned
images almost never contain inline images.
v2.2-stable (2014-09-29):
=========================
OCRmyPDF versions 1 and 2 were implemented as shell scripts. OCRmyPDF 3.0+ is a fork that gradually replaced all shell scripts with Python while maintaining the existing command line arguments. No one is maintaining old versions.
For details on older versions, see the `final version of its release notes <https://github.com/fritz-hh/OCRmyPDF/blob/7fd3dbdf42ca53a619412ce8add7532c5e81a9d1/RELEASE_NOTES.md>`_.
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#! /bin/bash
HERE="$(dirname "$(readlink -f "${0}")")"
export PATH="$HERE/usr/bin:$HERE/usr/local/bin:$HERE/usr/python/bin:$PATH"
export LD_PRELOAD="$HERE/usr/lib/liblept.so.5"
export LD_LIBRARY_PATH="$HERE/usr/lib:$HERE/usr/lib/x86_64-linux-gnu:$LD_LIBRARY_PATH"
export TESSDATA_PREFIX="$HERE/usr/share/tesseract-ocr/4.00/tessdata"
export GS_LIB="$HERE/usr/share/ghostscript/9.26/lib:$HERE/usr/share/ghostscript/9.26/Resource:$HERE/usr/share/ghostscript/9.26/Resource/Init"
# Allow the AppImage to be symlinked to e.g., /usr/bin/commandname
# or called with ./Some*.AppImage commandname ...
# refer to https://github.com/AppImage/AppImageKit/wiki/Bundling-command-line-tools
if [ ! -z "$APPIMAGE" ] ; then
BINARY_NAME=$(basename "$ARGV0")
else
BINARY_NAME=$(basename "$0")
export APPDIR="$HERE" # required for the wrapper scripts of linuxdeploy-plugin-python
fi
usage() {
echo "
==============================================================================
AppImage for OCRmyPDF
==============================================================================
OCRmyPDF adds an OCR text layer to scanned PDF files, allowing them to be
searched or copy-pasted.
usage:
$ARGV0 [ocrmypdf] [--help] [--list-programs]
[--list-licenses] [--show-license]
ocrmypdf execute OCRmyPDF
--help show this help message
--list-programs list all programs contained in this AppImage
--list-licenses list all licenses contained in this AppImage
--show-license [LICENSE] show content of license file
"
}
if [ "$1" == "--help" ] ; then
usage
exit $?
fi
if [ "$1" == "--list-programs" ] ; then
pushd "$HERE"
echo ""
echo "Run \"$ARGV0\" with one of the following arguments to run the respective program."
echo ""
find . -type f -perm /111 ! -path '*/lib/*' -execdir basename {} ";" | sort -u | column
echo ""
exit $?
fi
if [ "$1" == "--list-licenses" ] ; then
pushd "$HERE"
echo ""
echo "Run \"$ARGV0\" with one of the following arguments to display the respective license file."
echo ""
find . -type f \( ! -path '*/tesseract-ocr-*' -o -path '*/tesseract-ocr-eng/*' \) \
\( -iname "license*" -o -iname "*copyright*" -o -iname "*copying*" \) -printf "--show-license %P\n" | sort | column
echo ""
exit $?
fi
if [ "$1" == "--show-license" ] ; then
pushd "$HERE"
shift
if [ -f "$1" ] ; then
less -N "$1"
exit $?
else
echo "\"$1\" is not a valid license file path."
exit 1
fi
fi
if [ ! -z "$1" ] && [ -e "$HERE/bin/$1" ] ; then
MAIN="$HERE/bin/$1" ; shift
elif [ ! -z "$1" ] && [ -e "$HERE/usr/bin/$1" ] ; then
MAIN="$HERE/usr/bin/$1" ; shift
elif [ ! -z "$1" ] && [ -e "$HERE/usr/python/bin/$1" ] ; then
MAIN="$HERE/usr/python/bin/$1" ; shift
elif [ ! -z "$1" ] && [ -e "$HERE/usr/local/bin/$1" ] ; then
MAIN="$HERE/usr/local/bin/$1" ; shift
elif [ -e "$HERE/bin/$BINARY_NAME" ] ; then
MAIN="$HERE/bin/$BINARY_NAME"
elif [ -e "$HERE/usr/bin/$BINARY_NAME" ] ; then
MAIN="$HERE/usr/bin/$BINARY_NAME"
elif [ -e "$HERE/usr/python/bin/$BINARY_NAME" ] ; then
MAIN="$HERE/usr/python/bin/$BINARY_NAME"
elif [ -e "$HERE/usr/local/bin/$BINARY_NAME" ] ; then
MAIN="$HERE/usr/local/bin/$BINARY_NAME"
else
usage
exit $?
fi
exec "${MAIN}" "$@"
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#! /bin/bash
set -x
set -e
# use RAM disk if possible
if [ "$CI" == "" ] && [ -d /dev/shm ]; then
TEMP_BASE=/dev/shm
else
TEMP_BASE=/tmp
fi
BUILD_DIR=$(mktemp -d -p "$TEMP_BASE" OCRmyPDF-AppImage-build-XXXXXX)
cleanup () {
if [ -d "$BUILD_DIR" ]; then
rm -rf "$BUILD_DIR"
fi
}
trap cleanup EXIT
# store repo root as variable
REPO_ROOT=$(readlink -f "$(dirname "$(dirname "$0")")")
OLD_CWD=$(readlink -f .)
pushd "$BUILD_DIR"
mkdir -p AppDir
mkdir -p PackageDir
mkdir -p jbig2
# download linuxdeploy AppImage and linuxdeploy-plugin-python AppImage
wget https://github.com/TheAssassin/linuxdeploy/releases/download/continuous/linuxdeploy-x86_64.AppImage
# wget https://github.com/niess/linuxdeploy-plugin-python/releases/download/continuous/linuxdeploy-plugin-python-x86_64.AppImage
# use adapted linuxdeploy-plugin-python instead of the original one (otherwise OCRmyPDF breaks)
wget https://github.com/FPille/linuxdeploy-plugin-python/releases/download/continuous/linuxdeploy-plugin-python-x86_64.AppImage
chmod +x linuxdeploy*.AppImage
ARCH=$(uname -i)
export ARCH
# .desktop file
cat > ocrmypdf.desktop <<\EOF
[Desktop Entry]
Name=ocrmypdf
Type=Application
Exec=ocrmypdf
Icon=ocrmypdf
Terminal=true
Comment=OCRmyPDF adds an OCR text layer to scanned PDF files, allowing them to be searched
Categories=Graphics;Scanning;OCR;
EOF
# download logo and convert it to desktop icon
# requires Imagemagick (convert)
wget https://raw.githubusercontent.com/jbarlow83/OCRmyPDF/master/docs/images/logo-social.png
convert logo-social.png -resize 512x512\> -size 512x512 xc:white +swap -gravity center -composite ocrmypdf.png
# download and intsall packages required by OCRmyPDF
pushd PackageDir
packages=(tesseract-ocr tesseract-ocr-all libavformat56 ghostscript qpdf pngquant)
for i in "${packages[@]}"
do
apt-get -d -o dir::cache="$PWD" -o Debug::NoLocking=1 --reinstall install "$i" -y
done
wget -q 'https://www.dropbox.com/s/vaq0kbwi6e6au80/unpaper_6.1-1.deb?raw=1' -O unpaper_6.1-1.deb
find . -type f -name \*.deb -exec dpkg-deb -X {} "$BUILD_DIR"/AppDir \;
popd
# compile and install jbig2
# requires libleptonica-dev, zlib1g-dev
wget -q https://github.com/agl/jbig2enc/archive/0.29.tar.gz -O - | \
tar xz -C jbig2 --strip-components=1
pushd jbig2
./autogen.sh
./configure --prefix="$BUILD_DIR"/AppDir/usr
make && make install
popd
pushd "$BUILD_DIR"/AppDir
# add some tools to AppDir
#cp -f /usr/bin/column ./usr/bin/
#cp -f /bin/less ./usr/bin/
# remove unnecessary data from AppDir
[ -d bin ] && rm -rf ./bin
[ -d etc ] && rm -rf ./etc
[ -d var ] && rm -rf ./var
popd
# export LD_LIBRARY_PATH so that dependencies of shared libraries can be deployed by linuxdeploy-x86_64.AppImage
export LD_LIBRARY_PATH="$BUILD_DIR/AppDir/usr/lib:$BUILD_DIR/AppDir/usr/lib/x86_64-linux-gnu:$LD_LIBRARY_PATH"
#OCRMYPDF_VERSION=8.3.2 # exported in .travis.yml file
export PIP_REQUIREMENTS="ocrmypdf==$OCRMYPDF_VERSION"
export VERSION="$OCRMYPDF_VERSION"
export OUTPUT=OCRmyPDF-"$VERSION"-"$ARCH".AppImage
export PYTHON_SOURCE=https://www.python.org/ftp/python/3.6.8/Python-3.6.8.tgz
./linuxdeploy-x86_64.AppImage --appdir AppDir --plugin python \
-d ocrmypdf.desktop -i ocrmypdf.png \
--custom-apprun "$REPO_ROOT"/appimage/AppRun.sh --output appimage
# move AppImage back to old CWD
mv "$OUTPUT" "$OLD_CWD"/
popd
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@@ -1,4 +0,0 @@
check-manifest>=0.33
setuptools-scm>=1.11.1
twine>=1.8.1
coverage>=4.2
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#!/bin/bash
. /appenv/bin/activate
cd /home/docker
exec ocrmypdf "$@"
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<?xml version="1.0" encoding="UTF-8"?>
<svg xmlns="http://www.w3.org/2000/svg" width="100%" height="100%" viewBox="0 0 915 585" xmlns:xlink="http://www.w3.org/1999/xlink">
<defs>
<linearGradient id="b" y2="445" gradientUnits="userSpaceOnUse" y1="179" gradientTransform="translate(0 -2.06)" x2="-29.7" x1="322">
<stop stop-color="#333" offset="0"/>
<stop stop-color="#fff" stop-opacity="0" offset="1"/>
</linearGradient>
<linearGradient id="a" y2="414" gradientUnits="userSpaceOnUse" y1="159" x2="490" x1="815">
<stop stop-color="#33f" offset="0"/>
<stop stop-color="#3f3fff" stop-opacity="0" offset="1"/>
</linearGradient>
</defs>
<path fill="url(#b)" d="m403 247c-12 115-135 122-368 123-4.3-1.07-7.32-7.33-6-41 76-37 151-124 167-236 93 123 201 40.9 207 154z"/>
<g stroke-width="3.45" fill="none">
<path stroke="#000" d="m11.8 11.8h411v411l-411 0.01v-411z"/>
<path stroke="#448" d="m489 11.7h415v411h-415v-411z"/>
</g>
<path d="m876 244c-12 115-133 120-366 121-6-14-10-40-3-43 76-37.3 136-106 152-218 38 48 209 101 217 140z" fill="url(#a)"/>
<g id="RasterLarge" transform="matrix(1.36 0 0 1.28 -161 -636)">
<path fill="#999" d="m287 730h-30v-60h20v20h10v10h10v10h20v10h40v-10h20v-20h10v-20h-10v-10h-10v-10h-40v-10h-30v-10h-20v-10h-10v-10h-10v-60h10v-10h10v-10h10v-10h90v10h30v60h-20v-10h-10v-20h-10v-10h-20v-10h-30v10h-20v10h-10v20h10v20h30v10h30v10h30v10h10v10h10v10h10v60h-10v10h-10v10h-10v10h-100v-10z"/>
<path fill="#555" d="m297 730h-30v-10h-10v-50h20v20h10v20h10 10v10h60v-10h10v-10h10v-40h-20v-10h-20v-10h-40v-10h-20v-10h-20v-20h-10v-50h10v-10h10v-10h20v-10h70v10h30v10h10v50h-20v-20h-10v-20h-20v-10h-50v10h-10v10h-10v30h10v10h20v10h30v10h30v10h20v10h10v10h10v50h-10v20h-10v10h-20v10h-80z"/>
<path d="m307 730h-30v-10h-20v-50h20v30h10v10h10v10h70v-10h20v-50h-10v-10h-20v-10h-40v-10h-30v-10h-10v-10h-10v-20h-10v-30h10v-20h20v-10h20v-10h50v10h30v10h20v50h-20v-30h-10v-10h-10v-10h-70v10h-10v40h10v10h10v10h30v10h40v10h20v10h10v20h10v40h-10v20h-20v10h-30v10h-50v-10z"/>
</g>
<g font-size="40" font-family="sans-serif" text-anchor="middle">
<g font-size="100">
<text y="518" x="210">Raster</text>
<text y="518" x="695" fill="#338">Vector</text>
</g>
<text y="563" x="210">.jpeg .gif .png</text>
<text y="563" x="696" fill="#338">.svg</text>
</g>
<path id="VectorLarge" fill="#005" d="m661 294v-62.5l23.4 0.184c0.678 20.8 7.32 36.3 19.9 46.4 12.7 9.93 32.1 14.9 57.9 14.9 24.1 0 42.5-4.29 55.1-12.9 12.7-8.71 19.1-21.3 19.1-37.9 0-13.2-3.86-23.4-11.6-30.5-7.59-7.11-23.7-14-48.4-20.8l-40.1-10.9c-29-7.97-49.5-17.9-61.4-29.8-11.8-11.9-17.7-28.2-17.7-48.9 0-23.3 9.15-41.4 27.4-54.3 18.3-12.9 44-19.3 77.1-19.3 14.1 0 29.6 1.41 46.4 4.23 16.8 2.7 34.7 6.68 53.7 12v58.5h-23c-2.3-19.4-9.49-33.4-21.6-41.9-11.9-8.71-30.2-13.1-54.7-13.1-21.4 0-37.7 3.99-49 12-11.1 7.85-16.7 19.3-16.7 34.4 0 13.1 4.2 23.4 12.6 30.9 8.4 7.48 26.2 14.9 53.5 22.3l37.6 10.1c27.5 7.48 47.1 17 58.8 28.7 11.8 11.5 17.7 27 17.7 46.5 0 26.6-9.42 46.7-28.3 60.2s-46.9 20.2-84.2 20.2c-16.7 0-33.7-1.53-51-4.6-18-3-35-7-53-13z"/>
<use xlink:href="#VectorLarge" transform="matrix(.17 0 0 .17 392 313)"/>
<use xlink:href="#RasterLarge" transform="matrix(.173 0 0 .173 -8.25 314)" height="100%" width="100%" y="0" x="0"/>
</svg>

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@@ -1,350 +0,0 @@
#!/usr/bin/env python3
# -*- coding: utf-8 -*-
#
# ocrmypdf documentation build configuration file, created by
# sphinx-quickstart on Sun Sep 4 14:29:43 2016.
#
# This file is execfile()d with the current directory set to its
# containing dir.
#
# Note that not all possible configuration values are present in this
# autogenerated file.
#
# All configuration values have a default; values that are commented out
# serve to show the default.
# If extensions (or modules to document with autodoc) are in another directory,
# add these directories to sys.path here. If the directory is relative to the
# documentation root, use os.path.abspath to make it absolute, like shown here.
#
# import os
# import sys
# sys.path.insert(0, os.path.abspath('.'))
# -- General configuration ------------------------------------------------
# If your documentation needs a minimal Sphinx version, state it here.
#
# needs_sphinx = '1.0'
# Add any Sphinx extension module names here, as strings. They can be
# extensions coming with Sphinx (named 'sphinx.ext.*') or your custom
# ones.
extensions = [
# 'sphinx.ext.mathjax',
]
# Add any paths that contain templates here, relative to this directory.
templates_path = ['_templates']
# The suffix(es) of source filenames.
# You can specify multiple suffix as a list of string:
#
# source_suffix = ['.rst', '.md']
source_suffix = '.rst'
# The encoding of source files.
#
# source_encoding = 'utf-8-sig'
# The master toctree document.
master_doc = 'index'
# General information about the project.
project = 'ocrmypdf'
copyright = '2016, James R. Barlow'
author = 'James R. Barlow'
# The version info for the project you're documenting, acts as replacement for
# |version| and |release|, also used in various other places throughout the
# built documents.
#
# The short X.Y version.
from ocrmypdf import VERSION as OCRMYPDF_VERSION
_version_parts = OCRMYPDF_VERSION.split('.')
version = '.'.join(_version_parts[0:2])
# The full version, including alpha/beta/rc tags.
release = OCRMYPDF_VERSION
# The language for content autogenerated by Sphinx. Refer to documentation
# for a list of supported languages.
#
# This is also used if you do content translation via gettext catalogs.
# Usually you set "language" from the command line for these cases.
language = None
# There are two options for replacing |today|: either, you set today to some
# non-false value, then it is used:
#
# today = ''
#
# Else, today_fmt is used as the format for a strftime call.
#
today_fmt = '%Y-%m-%d'
# List of patterns, relative to source directory, that match files and
# directories to ignore when looking for source files.
# This patterns also effect to html_static_path and html_extra_path
exclude_patterns = ['_build', 'Thumbs.db', '.DS_Store']
# The reST default role (used for this markup: `text`) to use for all
# documents.
#
# default_role = None
# If true, '()' will be appended to :func: etc. cross-reference text.
#
# add_function_parentheses = True
# If true, the current module name will be prepended to all description
# unit titles (such as .. function::).
#
# add_module_names = True
# If true, sectionauthor and moduleauthor directives will be shown in the
# output. They are ignored by default.
#
# show_authors = False
# The name of the Pygments (syntax highlighting) style to use.
pygments_style = 'sphinx'
# A list of ignored prefixes for module index sorting.
# modindex_common_prefix = []
# If true, keep warnings as "system message" paragraphs in the built documents.
# keep_warnings = False
# If true, `todo` and `todoList` produce output, else they produce nothing.
todo_include_todos = False
# -- Options for HTML output ----------------------------------------------
import sphinx_rtd_theme
# The theme to use for HTML and HTML Help pages. See the documentation for
# a list of builtin themes.
#
html_theme = 'sphinx_rtd_theme'
html_theme_path = [sphinx_rtd_theme.get_html_theme_path()]
# Theme options are theme-specific and customize the look and feel of a theme
# further. For a list of options available for each theme, see the
# documentation.
#
html_theme_options = {
'display_version': False
}
# Add any paths that contain custom themes here, relative to this directory.
# html_theme_path = []
# The name for this set of Sphinx documents.
# "<project> v<release> documentation" by default.
#
# html_title = 'ocrmypdf v4.2'
# A shorter title for the navigation bar. Default is the same as html_title.
#
# html_short_title = None
# The name of an image file (relative to this directory) to place at the top
# of the sidebar.
#
# html_logo = None
# The name of an image file (relative to this directory) to use as a favicon of
# the docs. This file should be a Windows icon file (.ico) being 16x16 or 32x32
# pixels large.
#
# html_favicon = None
# Add any paths that contain custom static files (such as style sheets) here,
# relative to this directory. They are copied after the builtin static files,
# so a file named "default.css" will overwrite the builtin "default.css".
html_static_path = ['_static']
# Add any extra paths that contain custom files (such as robots.txt or
# .htaccess) here, relative to this directory. These files are copied
# directly to the root of the documentation.
#
# html_extra_path = []
# If not None, a 'Last updated on:' timestamp is inserted at every page
# bottom, using the given strftime format.
# The empty string is equivalent to '%b %d, %Y'.
#
# html_last_updated_fmt = None
# If true, SmartyPants will be used to convert quotes and dashes to
# typographically correct entities.
#
# html_use_smartypants = True
# Custom sidebar templates, maps document names to template names.
#
# html_sidebars = {}
# Additional templates that should be rendered to pages, maps page names to
# template names.
#
# html_additional_pages = {}
# If false, no module index is generated.
#
# html_domain_indices = True
# If false, no index is generated.
#
# html_use_index = True
# If true, the index is split into individual pages for each letter.
#
# html_split_index = False
# If true, links to the reST sources are added to the pages.
#
# html_show_sourcelink = True
# If true, "Created using Sphinx" is shown in the HTML footer. Default is True.
#
# html_show_sphinx = True
# If true, "(C) Copyright ..." is shown in the HTML footer. Default is True.
#
# html_show_copyright = True
# If true, an OpenSearch description file will be output, and all pages will
# contain a <link> tag referring to it. The value of this option must be the
# base URL from which the finished HTML is served.
#
# html_use_opensearch = ''
# This is the file name suffix for HTML files (e.g. ".xhtml").
# html_file_suffix = None
# Language to be used for generating the HTML full-text search index.
# Sphinx supports the following languages:
# 'da', 'de', 'en', 'es', 'fi', 'fr', 'h', 'it', 'ja'
# 'nl', 'no', 'pt', 'ro', 'r', 'sv', 'tr', 'zh'
#
# html_search_language = 'en'
# A dictionary with options for the search language support, empty by default.
# 'ja' uses this config value.
# 'zh' user can custom change `jieba` dictionary path.
#
# html_search_options = {'type': 'default'}
# The name of a javascript file (relative to the configuration directory) that
# implements a search results scorer. If empty, the default will be used.
#
# html_search_scorer = 'scorer.js'
# Output file base name for HTML help builder.
htmlhelp_basename = 'ocrmypdfdoc'
# -- Options for LaTeX output ---------------------------------------------
latex_elements = {
# The paper size ('letterpaper' or 'a4paper').
#
# 'papersize': 'letterpaper',
# The font size ('10pt', '11pt' or '12pt').
#
# 'pointsize': '10pt',
# Additional stuff for the LaTeX preamble.
#
# 'preamble': '',
# Latex figure (float) alignment
#
# 'figure_align': 'htbp',
}
# Grouping the document tree into LaTeX files. List of tuples
# (source start file, target name, title,
# author, documentclass [howto, manual, or own class]).
latex_documents = [
(master_doc, 'ocrmypdf.tex', 'ocrmypdf Documentation',
'James R. Barlow', 'manual'),
]
# The name of an image file (relative to this directory) to place at the top of
# the title page.
#
# latex_logo = None
# For "manual" documents, if this is true, then toplevel headings are parts,
# not chapters.
#
# latex_use_parts = False
# If true, show page references after internal links.
#
# latex_show_pagerefs = False
# If true, show URL addresses after external links.
#
# latex_show_urls = False
# Documents to append as an appendix to all manuals.
#
# latex_appendices = []
# It false, will not define \strong, \code, itleref, \crossref ... but only
# \sphinxstrong, ..., \sphinxtitleref, ... To help avoid clash with user added
# packages.
#
# latex_keep_old_macro_names = True
# If false, no module index is generated.
#
# latex_domain_indices = True
# -- Options for manual page output ---------------------------------------
# One entry per manual page. List of tuples
# (source start file, name, description, authors, manual section).
man_pages = [
(master_doc, 'ocrmypdf', 'ocrmypdf Documentation',
[author], 1)
]
# If true, show URL addresses after external links.
#
# man_show_urls = False
# -- Options for Texinfo output -------------------------------------------
# Grouping the document tree into Texinfo files. List of tuples
# (source start file, target name, title, author,
# dir menu entry, description, category)
texinfo_documents = [
(master_doc, 'ocrmypdf', 'ocrmypdf Documentation',
author, 'ocrmypdf', 'One line description of project.',
'Miscellaneous'),
]
# Documents to append as an appendix to all manuals.
#
# texinfo_appendices = []
# If false, no module index is generated.
#
# texinfo_domain_indices = True
# How to display URL addresses: 'footnote', 'no', or 'inline'.
#
# texinfo_show_urls = 'footnote'
# If true, do not generate a @detailmenu in the "Top" node's menu.
#
# texinfo_no_detailmenu = False
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Cookbook
========
Basic examples
--------------
Help!
"""""
ocrmypdf has built-in help.
.. code-block:: bash
ocrmypdf --help
Add an OCR layer and convert to PDF/A
"""""""""""""""""""""""""""""""""""""
.. code-block:: bash
ocrmypdf input.pdf output.pdf
Add an OCR layer and output a standard PDF
""""""""""""""""""""""""""""""""""""""""""
.. code-block:: bash
ocrmypdf --output-type pdf input.pdf output.pdf
Modify a file in place
""""""""""""""""""""""
The file will only be overwritten if OCRmyPDF is successful.
.. code-block:: bash
ocrmypdf myfile.pdf myfile.pdf
Correct page rotation
"""""""""""""""""""""
OCR will attempt to automatic correct the rotation of each page. This can help fix a scanning job that contains a mix of landscape and portrait pages.
.. code-block:: bash
ocrmypdf --rotate-pages myfile.pdf myfile.pdf
You can increase (decrease) the parameter ``--rotate-pages-threshold`` to make page rotation more (less) aggressive.
OCR languages other than English
""""""""""""""""""""""""""""""""
By default OCRmyPDF assumes the document is English.
.. code-block:: bash
ocrmypdf -l fre LeParisien.pdf LeParisien.pdf
ocrmypdf -l eng+fre Bilingual-English-French.pdf Bilingual-English-French.pdf
Language packs must be installed for all languages specified. See :ref:`Installing additional language packs <lang-packs>`.
OCR images, not PDFs
--------------------
Use a program like `img2pdf <https://gitlab.mister-muffin.de/josch/img2pdf>`_ to convert your images to PDFs, and then pipe the results to run ocrmypdf:
.. code-block:: bash
img2pdf my-images*.jpg | ocrmypdf - myfile.pdf
If given a single image as input, OCRmyPDF will try converting it to a PDF on its own. This feature may be removed at some point, because OCRmyPDF does not specialize in converting images to PDFs.
You can also use Tesseract 3.04+ directly to convert single page images or multi-page TIFFs to PDF:
.. code-block:: bash
tesseract my-image.jpg output-prefix pdf
Image processing
----------------
OCRmyPDF perform some image processing on each page of a PDF, if desired. The same processing is applied to each page. It is suggested that the user review files after image processing as these commands might remove desirable content, especially from poor quality scans.
* ``--rotate-pages`` attempts to determine the correct orientation for each page and rotates the page if necessary.
* ``--remove-background`` attempts to detect and remove a noisy background from grayscale or color images. Monochrome images are ignored. This should not be used on documents that contain color photos as it may remove them.
* ``--deskew`` will correct pages were scanned at a skewed angle by rotating them back into place. Skew determination and correction is performed using `Postl's variance of line sums <http://www.leptonica.com/skew-measurement.html>`_ algorithm as implemented in `Leptonica <http://www.leptonica.com/index.html>`_.
* ``--clean`` uses `unpaper <https://www.flameeyes.eu/projects/unpaper>`_ to clean up pages before OCR, but does not alter the final output. This makes it less likely that OCR will try to find text in background noise.
* ``--clean-final`` uses unpaper to clean up pages before OCR and inserts the page into the final output. You will want to review each page to ensure that unpaper did not remove something important.
OCR and correct document skew (crooked scan)
""""""""""""""""""""""""""""""""""""""""""""
.. code-block:: bash
ocrmypdf --deskew input.pdf output.pdf
Hot (watched) folders
---------------------
To set up a "hot folder" that will trigger an OCR operation for every file inserted, use a program like Python `watchdog <https://pypi.python.org/pypi/watchdog>`_ (supports all major OS).
.. code-block:: bash
pip install watchdog
watchdog installs the command line program ``watchmedo``, which can be told to run ``ocrmypdf`` on any .pdf added to the current directory (``.``) and place the result in the previously created ``out/`` folder.
.. code-block:: bash
cd hot-folder
mkdir out
watchmedo shell-command \
--patterns="*.pdf" \
--ignore-directories \
--command='ocrmypdf "${watch_src_path}" "out/${watch_src_path}" ' \
. # don't forget the final dot
For more complex behavior you can write a Python script around to use the watchdog API.
On file servers, you could configure watchmedo as a system service so it will run all the time.
Caveats
"""""""
* ``watchmedo`` may not work properly on a networked file system, depending on the capabilities of the file system client and server.
* This simple recipe does not filter for the type of file system event, so file copies, deletes and moves, and directory operations, will all be sent to ocrmypdf, producing errors in several cases. Disable your watched folder if you are doing anything other than copying files to it.
* If the source and destination directory are the same, watchmedo may create an infinite loop.
Batch jobs
----------
Consider using the excellent `GNU Parallel <https://www.gnu.org/software/parallel/>`_ to apply OCRmyPDF to multiple files at once.
Both ``parallel`` and ``ocrmypdf`` will try to use all available processors. To maximize parallelism without overloading your system with processes, consider using ``parallel -j 2`` to limit parallel to running two jobs at once.
This command will run all ocrmypdf all files named ``*.pdf`` in the current directory and write them to the previous created ``output/`` folder.
.. code-block:: bash
parallel -j 2 ocrmypdf '{}' 'output/{}' ::: *.pdf
If you have thousands of files to work with, contact the author.
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Common error messages
=====================
Page already has text
---------------------
.. code::
ERROR - 1: page already has text! aborting (use --force-ocr to force OCR)
You ran ocrmypdf on a file that already contains printable text or a hidden OCR text layer (it can't quite tell the difference). You probably don't want to do this, because the file is already searchable.
As the error message suggests, your options are:
- ``ocrmypdf --force-ocr`` to :ref:`rasterize <raster-vector>` all vector content and run OCR on the images. This is useful if a previous OCR program failed, or if the document contains a text watermark.
- ``ocrmypdf --skip-text`` to skip OCR and other processing on any pages that contain text. Text pages will be copied into the output PDF without modification.
Input file 'filename' is not a valid PDF
----------------------------------------
OCRmyPDF passes files through qpdf, a program that fixes errors in PDFs, before it tries to work on them. In most cases this happens because the PDF is corrupt and
truncated (incomplete file copying) and not much can be done.
You can try rewriting the file with Ghostscript or pdftk:
- ``gs -o output.pdf -dSAFER -sDEVICE=pdfwrite input.pdf``
- ``pdftk input.pdf cat output output.pdf``
Sometimes Acrobat can repair PDFs with its `Preflight tool <https://helpx.adobe.com/acrobat/using/correcting-problem-areas-preflight-tool.html>`_.
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.. ocrmypdf documentation master file, created by
sphinx-quickstart on Sun Sep 4 14:29:43 2016.
You can adapt this file completely to your liking, but it should at least
contain the root `toctree` directive.
OCRmyPDF documentation
======================
OCRmyPDF adds an OCR text layer to scanned PDF files, allowing them to
be searched.
PDFs are the best format for scanned documents. Unfortunately, PDFs can be difficult to work with. OCRmyPDF makes it easy to apply image processing and OCR to existing PDFs.
Contents:
.. toctree::
:maxdepth: 2
introduction
installation
languages
cookbook
errors
Indices and tables
==================
* :ref:`genindex`
* :ref:`modindex`
* :ref:`search`
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Installation
============
Installing on Debian and Ubuntu
-------------------------------
Users of Debian 9 ("stretch") or later or Ubuntu 16.10 or later may simply
.. code-block:: bash
apt-get install ocrmypdf
.. _Docker:
Installing the Docker image
---------------------------
For many users, installing the Docker image will be easier than installing all of OCRmyPDF's dependencies. For Windows, it is the only option.
If you have `Docker <https://docs.docker.com/>`_ installed on your system, you can install
a Docker image of the latest release.
Follow the Docker installation instructions for your platform. If you can run this command
successfully, your system is ready to download and execute the image:
.. code-block:: bash
docker run hello-world
OCRmyPDF will use all available CPU cores. By default, the VirtualBox machine instance on Windows and OS X has only a single CPU core enabled. Use the VirtualBox Manager to determine the name of your Docker engine host, and then follow these optional steps to enable multiple CPUs:
.. code-block:: bash
# Optional step for Mac OS X users
docker-machine stop "yourVM"
VBoxManage modifyvm "yourVM" --cpus 2 # or whatever number of core is desired
docker-machine start "yourVM"
eval $(docker-machine env "yourVM")
Assuming you have a Docker engine running somewhere, you can run these commands to download
the image:
.. code-block:: bash
docker pull jbarlow83/ocrmypdf
Then tag it to give a more convenient name, just ocrmypdf:
.. code-block:: bash
docker tag jbarlow83/ocrmypdf ocrmypdf
.. _docker-polyglot:
This image contains language packs for English, French, Spanish and German. The alternative "polyglot" image provides `all available language packs <https://github.com/tesseract-ocr/tesseract/blob/master/doc/tesseract.1.asc#languages>`_:
.. code-block:: bash
# Alternative step: If you need all language packs
docker pull jbarlow83/ocrmypdf-polyglot
docker tag jbarlow83/ocrmypdf-polyglot ocrmypdf
You can then run ocrmypdf using the command:
.. code-block:: bash
docker run --rm ocrmypdf --help
To execute the OCRmyPDF on a local file, you must `provide a writable volume to the Docker image <https://docs.docker.com/userguide/dockervolumes/>`_, and both the input and output file must be inside the writable volume. This example command uses the current working directory as the writable volume:
.. code-block:: bash
docker run --rm -v "$(pwd):/home/docker" <other docker arguments> ocrmypdf <your arguments to ocrmypdf>
In this worked example, the current working directory contains an input file called ``test.pdf`` and the output will go to ``output.pdf``:
.. code-block:: bash
docker run --rm -v "$(pwd):/home/docker" ocrmypdf --skip-text test.pdf output.pdf
Note that ``ocrmypdf`` has its own separate ``-v VERBOSITYLEVEL`` argument to control debug verbosity. All Docker arguments should before the ``ocrmypdf`` image name and all arguments to ``ocrmypdf`` should be listed after.
Installing on macOS (formerly Mac OS X)
---------------------------------------
These instructions probably work on all macOS supported by Homebrew. OCRmyPDF is known to work on Yosemite and El Capitan, and regularly tested on El Capitan.
If it's not already present, `install Homebrew <http://brew.sh/>`_.
Update Homebrew:
.. code-block:: bash
brew update
Install or upgrade the required Homebrew packages, if any are missing:
.. code-block:: bash
brew install libpng openjpeg jbig2dec libtiff # image libraries
brew install qpdf
brew install ghostscript
brew install python3
brew install libxml2 libffi leptonica
brew install unpaper # optional
Install the required Tesseract OCR engine with the language packs you plan to use:
.. code-block:: bash
brew install tesseract # Option 1: for English, French, German, Spanish
.. _macos-all-languages:
.. code-block:: bash
brew install tesseract --with-all-languages # Option 2: for all language packs
Update the homebrew pip and install Pillow:
.. code-block:: bash
pip3 install --upgrade pip
pip3 install --upgrade pillow
You can then install OCRmyPDF from PyPI:
.. code-block:: bash
pip3 install ocrmypdf
The command line program should now be available:
.. code-block:: bash
ocrmypdf --help
Installing on Ubuntu 14.04 LTS
------------------------------
Installing on Ubuntu 14.04 LTS (trusty) is more difficult than some other options, because of bugs in Python package installation.
Add new "apt" repositories needed for backports of Ghostscript 9.16 and libav-11, which supports unpaper 6.1. This will replace Ghostscript on your system.
.. code-block:: bash
sudo add-apt-repository ppa:vshn/ghostscript -y
sudo add-apt-repository ppa:heyarje/libav-11 -y
Update apt-get:
.. code-block:: bash
sudo apt-get update
sudo apt-get upgrade
Install system dependencies:
.. code-block:: bash
sudo apt-get install \
zlib1g-dev \
libjpeg-dev \
libffi-dev \
libavformat56 libavcodec56 libavutil54 \
ghostscript \
tesseract-ocr \
qpdf \
python3-pip \
python3-pil \
python3-pytest \
python3-reportlab
If you wish install OCRmyPDF to the system Python, then install as follows (note this installs new packages
into your system Python, which could interfere with other programs):
.. code-block:: bash
sudo pip3 install ocrmypdf
If you wish to install OCRmyPDF to a virtual environment to isolate the system Python, you can
follow these steps. This includes a workaround `for a known, unresolved issue in Ubuntu 14.04's ensurepip
package <http://www.thefourtheye.in/2014/12/Python-venv-problem-with-ensurepip-in-Ubuntu.html>`_:
.. code-block:: bash
sudo apt-get install python3-venv
python3 -m venv venv-ocrmypdf --without-pip
source venv-ocrmypdf/bin/activate
wget -O - -o /dev/null https://bootstrap.pypa.io/get-pip.py | python
deactivate
python3 -m venv --system-site-packages venv-ocrmypdf
source venv-ocrmypdf/bin/activate
pip install ocrmypdf
These installation instructions omit the optional dependency ``unpaper``, which is only available at version 0.4.2 in Ubuntu 14.04. The author could not find a backport of ``unpaper``, and created a .deb package to do the job of installing unpaper 6.1 (for x86 64-bit only):
.. code-block:: bash
wget -q https://dl.dropboxusercontent.com/u/28971240/unpaper_6.1-1.deb -O unpaper_6.1-1.deb
sudo dpkg -i unpaper_6.1-1.deb
Installing on Windows
---------------------
Direct installation on Windows is not possible. Install the _`Docker` container as described above. Ensure that your command prompt can run the docker "hello world" container.
Running on Windows
~~~~~~~~~~~~~~~~~~
The command line syntax to run ocrmypdf from a command prompt will resemble:
.. code-block:: bat
docker run -v /c/Users/sampleuser:/home/docker ocrmypdf --skip-text test.pdf output.pdf
where /c/Users/sampleuser is a Unix representation of the Windows path C:\\Users\\sampleuser, assuming a user named "sampleuser" is running ocrmypdf on a file in their home directory, and the files "test.pdf" and "output.pdf" are in the sampleuser folder. The Windows user must have read and write permissions.
Installing HEAD revision from sources
-------------------------------------
If you have ``git`` and ``python3.4`` or ``python3.5`` installed, you can install from source. When the ``pip`` installer runs,
it will alert you if dependencies are missing.
To install the HEAD revision from sources in the current Python 3 environment:
.. code-block:: bash
pip3 install git+https://github.com/jbarlow83/OCRmyPDF.git
Or, to install in `development mode <https://pythonhosted.org/setuptools/setuptools.html#development-mode>`_, allowing customization of OCRmyPDF, use the ``-e`` flag:
.. code-block:: bash
pip3 install -e git+https://github.com/jbarlow83/OCRmyPDF.git
On certain Linux distributions such as Ubuntu, you may need to use
run the install command as superuser:
.. code-block:: bash
sudo pip3 install [-e] git+https://github.com/jbarlow83/OCRmyPDF.git
Note that this will alter your system's Python distribution. If you prefer
to not install as superuser, you can install the package in a Python virtual environment:
.. code-block:: bash
git clone -b master https://github.com/jbarlow83/OCRmyPDF.git
python3 -m venv
source venv/bin/activate
cd OCRmyPDF
pip3 install .
However, ``ocrmypdf`` will only be accessible on the system PATH after
you activate the virtual environment.
To run the program:
.. code-block:: bash
ocrmypdf --help
If not yet installed, the script will notify you about dependencies that
need to be installed. The script requires specific versions of the
dependencies. Older version than the ones mentioned in the release notes
are likely not to be compatible to OCRmyPDF.
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Introduction
============
OCRmyPDF is a Python 3 package that adds OCR layers to PDFs.
About OCR
---------
`Optical character recognition <https://en.wikipedia.org/wiki/Optical_character_recognition>`_ is technology that converts images of typed or handwritten text, such as in a scanned document, to computer text that can be searched and copied.
OCRmyPDF uses `Tesseract <https://github.com/tesseract-ocr/tesseract>`_, the best available open source OCR engine, to perform OCR.
.. _raster-vector:
About PDFs
----------
PDFs are page description files that attempts to preserve a layout exactly. They can contain `vector graphic files <http://vector-conversions.com/vectorizing/raster_vs_vector.html>`_ that can contain raster objects such as scanned images. Because PDFs can contain multiple pages (unlike many image formats) and can contain fonts and text, it is a good formats for exchanging scanned documents.
.. image:: bitmap_vs_svg.svg
A PDF page might contain multiple images, even if it only appears to have one image. Some scanners or scanning software will segment pages into monochromatic text and color regions for example, to improve the compression ratio and appearance of the page.
Rasterizing a PDF is the process of generating an image suitable for display or analyzing with an OCR engine. OCR engines like Tesseract work with images, not vector objects.
About PDF/A
-----------
`PDF/A <https://en.wikipedia.org/wiki/PDF/A>`_ is an ISO-standardized subset of the full PDF specification that is designed for archiving (the 'A' stands for Archive). PDF/A differs from PDF primarily by omitting features that would make it difficult to read the file in the future, such as embedded Javascript, video, audio and references to external fonts. All fonts and resources needed to interpret the PDF must be contained within it. Because PDF/A disables Javascript and other types of embedded content, it is probably more secure.
There are various conformance levels and versions, such as "PDF/A-2b".
Generally speaking, the best format for scanned documents is PDF/A. Some governments and jurisdictions, US Courts in particular, `mandate the use of PDF/A <https://pdfblog.com/2012/02/13/what-is-pdfa/>`_ for scanned documents.
Since most people who scan documents are interested in reading them indefinitely into the future, OCRmyPDF generates PDF/A-2b by default.
PDF/A has a few drawbacks. Some PDF viewers include an alert that the file is a PDF/A, which may confuse some users. It also tends to produce larger files than PDF, because it embeds certain resources even if they are commonly available. PDF/A files can be digitally signed, but may not be encrypted, to ensure they can be read in the future. Fortunately, converting from PDF/A to a regular PDF is trivial, and any PDF viewer can view PDF/A.
What OCRmyPDF does
------------------
OCRmyPDF analyzes each page of a PDF to determine the colorspace and resolution (DPI) needed to capture all of the information on that page without losing content. It uses `Ghostscript <http://ghostscript.com/>`_ to rasterize the page, and then performs on OCR on the rasterized image. It is not enough to simply extract the images from each page and run OCR on them individually. Of course one could use Ghostscript or another PDF rasterizer and then pass the image to Tesseract. OCRmyPDF automates this process and produces a minimally changed output file that contains the same information, colorspace and resolution.
The Tesseract OCR engine can output 'hOCR' files, which are XML files that contain a description of the text it found on the page. OCRmyPDF will render a new PDF that contains only the hidden text layer, and merge this with the original page.
Alternately, OCRmyPDF can use the Tesseract OCR engine to directly output PDFs for each page, then merge them.
By default, OCRmyPDF will convert the file to a PDF/A. This behavior can be disabled with the ``--output-type pdf`` argument.
Depending on the settings selected, OCRmyPDF may "graft" the OCR layer into the existing PDF, or reconstruct a visually equivalent new PDF.
Limitations
-----------
OCRmyPDF is limited by the Tesseract OCR engine. As such it experiences these limitations, as do any other programs that rely on Tesseract:
* The OCR is not as accurate as commercial solutions such as Abbyy.
* It is not capable of recognizing handwriting.
* It may find gibberish and report this as OCR output.
* If a document contains languages outside of those given in the ``-l LANG`` arguments, results may be poor.
* It is not always good at analyzing the natural reading order of documents. For example, it may fail to recognize that a document contains two columns and join text across the columns.
* Poor quality scans may produce poor quality OCR. Garbage in, garbage out.
OCRmyPDF is also limited by the PDF specification:
* PDF encodes the position of text glyphs but does not encode document structure. There is no markup that divides a document in sections, paragraphs, sentences, or even words (since blank spaces are not represented). As such all elements of document structure including the spaces between words must be derived heuristically. Some PDF viewers do a better job of this than others.
Ghostscript also imposes some limitations:
* PDFs containing JBIG2-encoded content will be converted to CCITT Group4 encoding, which has lower compression ratios, if Ghostscript PDF/A is enabled.
OCRmyPDF is currently not designed to be used as a Python API; it is designed to be run as a command line tool. ``import ocrmypf`` currently attempts to process the command line on ``sys.argv`` at import time so it has side effects that will interfere with its use as a package. The API it presents should not be considered stable.
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.. _lang-packs:
Installing additional language packs
====================================
OCRmyPDF uses Tesseract for OCR, and relies on its language packs for languages other than English.
Tesseract supports `most languages <https://github.com/tesseract-ocr/tesseract/blob/master/doc/tesseract.1.asc#languages>`_.
For Linux users, you can often find packages that provide language packs:
Debian and Ubuntu users
-----------------------
.. code-block:: bash
# Display a list of all Tesseract language packs
apt-cache search tesseract-ocr
# Debian/Ubuntu users
apt-get install tesseract-ocr-chi-sim # Example: Install Chinese Simplified language back
You can then pass the ``-l LANG`` argument to OCRmyPDF to give a hint as to what languages it should search for. Multiple
languages can be requested using either ``-l eng+fre`` (English and French) or ``-l eng -l fre``.
Mac OS X (macOS) users
----------------------
You can install additional language packs by :ref:`installing Tesseract using Homebrew with all language packs <macos-all-languages>`.
Docker users
------------
Users of the Docker image may use the alternative :ref:`"polyglot" container <docker-polyglot>` which includes all languages.
Known limitations
-----------------
As of v4.2, users of ocrmypdf working languages outside the Latin alphabet should use the following syntax:
.. code-block:: bash
ocrmypdf -l eng+gre --output-type pdf --pdf-renderer tesseract
The reasons for this are:
* The latest version of Ghostscript (9.19 as of this writing) has unfixed bugs in Unicode handling that generate invalid character maps, so Ghostscript cannot be used for PDF/A conversion
* The default "hocr" PDF renderer does not handle Asian fonts properly
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from enum import IntEnum
import os
from collections.abc import Iterable
import pkg_resources
VERSION = pkg_resources.get_distribution('ocrmypdf').version
class ExitCode(IntEnum):
ok = 0
bad_args = 1
input_file = 2
missing_dependency = 3
invalid_output_pdf = 4
file_access_error = 5
already_done_ocr = 6
child_process_error = 7
encrypted_pdf = 8
other_error = 15
ctrl_c = 130
def get_program(name):
envvar = 'OCRMYPDF_' + name.upper()
return os.environ.get(envvar, name)
def page_number(input_file):
return int(os.path.basename(input_file)[0:6])
def is_iterable_notstr(thing):
return isinstance(thing, Iterable) and not isinstance(thing, str)
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#!/usr/bin/env python3
# © 2015 James R. Barlow: github.com/jbarlow83
from tempfile import NamedTemporaryFile
from subprocess import Popen, PIPE, check_call
from shutil import copy
from . import get_program
from .pdfa import SRGB_ICC_PROFILE
def rasterize_pdf(input_file, output_file, xres, yres, raster_device, log,
pageno=1):
with NamedTemporaryFile(delete=True) as tmp:
args_gs = [
get_program('gs'),
'-dQUIET',
'-dSAFER',
'-dBATCH',
'-dNOPAUSE',
'-sDEVICE=%s' % raster_device,
'-dFirstPage=%i' % pageno,
'-dLastPage=%i' % pageno,
'-o', tmp.name,
'-r{0}x{1}'.format(str(round(xres)), str(round(yres))),
input_file
]
p = Popen(args_gs, close_fds=True, stdout=PIPE, stderr=PIPE,
universal_newlines=True)
stdout, stderr = p.communicate()
if stdout:
if 'error' in stdout:
log.error(stdout) # Ghostscript puts errors in stdout
else:
log.debug(stdout)
if stderr:
log.error(stderr)
if p.returncode == 0:
copy(tmp.name, output_file)
else:
log.error('Ghostscript rendering failed')
def generate_pdfa(pdf_pages, output_file, threads=1):
with NamedTemporaryFile(delete=True) as gs_pdf:
args_gs = [
get_program("gs"),
"-dQUIET",
"-dBATCH",
"-dNOPAUSE",
'-dNumRenderingThreads=' + str(threads),
"-sDEVICE=pdfwrite",
"-dAutoRotatePages=/None",
"-sColorConversionStrategy=/RGB",
"-sProcessColorModel=DeviceRGB",
"-dJPEGQ=95",
"-dPDFA=2",
"-sPDFACompatibilityPolicy=1",
"-sOutputFile=" + gs_pdf.name,
]
args_gs.extend(pdf_pages)
check_call(args_gs)
copy(gs_pdf.name, output_file)
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#!/usr/bin/env python3
##############################################################################
# Copyright (c) 2013-14: fritz-hh from Github
# (https://github.com/fritz-hh)
#
# Copyright (c) 2010: Jonathan Brinley from Github
# (https://github.com/jbrinley/HocrConverter)
# Initial version by Jonathan Brinley, jonathanbrinley@gmail.com
##############################################################################
from reportlab.pdfgen.canvas import Canvas
from reportlab.lib.units import inch
from xml.etree import ElementTree
from PIL import Image
from collections import namedtuple
import re
import argparse
Rect = namedtuple('Rect', ['x1', 'y1', 'x2', 'y2'])
class HocrTransformError(Exception):
pass
class HocrTransform():
"""
A class for converting documents from the hOCR format.
For details of the hOCR format, see:
http://docs.google.com/View?docid=dfxcv4vc_67g844kf
"""
def __init__(self, hocrFileName, dpi):
self.dpi = dpi
self.boxPattern = re.compile(r'bbox((\s+\d+){4})')
self.hocr = ElementTree.parse(hocrFileName)
# if the hOCR file has a namespace, ElementTree requires its use to
# find elements
matches = re.match(r'({.*})html', self.hocr.getroot().tag)
self.xmlns = ''
if matches:
self.xmlns = matches.group(1)
# get dimension in pt (not pixel!!!!) of the OCRed image
self.width, self.height = None, None
for div in self.hocr.findall(
".//%sdiv[@class='ocr_page']" % (self.xmlns)):
coords = self.element_coordinates(div)
pt_coords = self.pt_from_pixel(coords)
self.width = pt_coords.x2 - pt_coords.x1
self.height = pt_coords.y2 - pt_coords.y1
# there shouldn't be more than one, and if there is, we don't want
# it
break
if self.width is None or self.height is None:
raise HocrTransformError("hocr file is missing page dimensions")
def __str__(self):
"""
Return the textual content of the HTML body
"""
if self.hocr is None:
return ''
body = self.hocr.find(".//%sbody" % (self.xmlns))
if body:
return self._get_element_text(body)
else:
return ''
def _get_element_text(self, element):
"""
Return the textual content of the element and its children
"""
text = ''
if element.text is not None:
text += element.text
for child in element.getchildren():
text += self._get_element_text(child)
if element.tail is not None:
text += element.tail
return text
def element_coordinates(self, element):
"""
Returns a tuple containing the coordinates of the bounding box around
an element
"""
out = (0, 0, 0, 0)
if 'title' in element.attrib:
matches = self.boxPattern.search(element.attrib['title'])
if matches:
coords = matches.group(1).split()
out = Rect._make(int(coords[n]) for n in range(4))
return out
def pt_from_pixel(self, pxl):
"""
Returns the quantity in PDF units (pt) given quantity in pixels
"""
return Rect._make(
(c / self.dpi * inch) for c in pxl)
def replace_unsupported_chars(self, s):
"""
Given an input string, returns the corresponding string that:
- is available in the helvetica facetype
- does not contain any ligature (to allow easy search in the PDF file)
"""
# The 'u' before the character to replace indicates that it is a
# unicode character
s = s.replace(u"", "fl")
s = s.replace(u"", "fi")
return s
def to_pdf(self, outFileName, imageFileName=None, showBoundingboxes=False,
fontname="Helvetica", invisibleText=False):
"""
Creates a PDF file with an image superimposed on top of the text.
Text is positioned according to the bounding box of the lines in
the hOCR file.
The image need not be identical to the image used to create the hOCR
file.
It can have a lower resolution, different color mode, etc.
"""
# create the PDF file
# page size in points (1/72 in.)
pdf = Canvas(
outFileName, pagesize=(self.width, self.height), pageCompression=1)
# draw bounding box for each paragraph
# light blue for bounding box of paragraph
pdf.setStrokeColorRGB(0, 1, 1)
# light blue for bounding box of paragraph
pdf.setFillColorRGB(0, 1, 1)
pdf.setLineWidth(0) # no line for bounding box
for elem in self.hocr.findall(
".//%sp[@class='%s']" % (self.xmlns, "ocr_par")):
elemtxt = self._get_element_text(elem).rstrip()
if len(elemtxt) == 0:
continue
pxl_coords = self.element_coordinates(elem)
pt = self.pt_from_pixel(pxl_coords)
# draw the bbox border
if showBoundingboxes:
pdf.rect(
pt.x1, self.height - pt.y2, pt.x2 - pt.x1, pt.y2 - pt.y1,
fill=1)
# check if element with class 'ocrx_word' are available
# otherwise use 'ocr_line' as fallback
elemclass = "ocr_line"
if self.hocr.find(
".//%sspan[@class='ocrx_word']" % (self.xmlns)) is not None:
elemclass = "ocrx_word"
# itterate all text elements
# light green for bounding box of word/line
pdf.setStrokeColorRGB(1, 0, 0)
pdf.setLineWidth(0.5) # bounding box line width
pdf.setDash(6, 3) # bounding box is dashed
pdf.setFillColorRGB(0, 0, 0) # text in black
for elem in self.hocr.findall(
".//%sspan[@class='%s']" % (self.xmlns, elemclass)):
elemtxt = self._get_element_text(elem).rstrip()
elemtxt = self.replace_unsupported_chars(elemtxt)
if len(elemtxt) == 0:
continue
pxl_coords = self.element_coordinates(elem)
pt = self.pt_from_pixel(pxl_coords)
# draw the bbox border
if showBoundingboxes:
pdf.rect(
pt.x1, self.height - pt.y2, pt.x2 - pt.x1, pt.y2 - pt.y1,
fill=0)
text = pdf.beginText()
fontsize = pt.y2 - pt.y1
text.setFont(fontname, fontsize)
if invisibleText:
text.setTextRenderMode(3) # Invisible (indicates OCR text)
# set cursor to bottom left corner of bbox (adjust for dpi)
text.setTextOrigin(pt.x1, self.height - pt.y2)
# scale the width of the text to fill the width of the bbox
text.setHorizScale(
100 * (pt.x2 - pt.x1) / pdf.stringWidth(
elemtxt, fontname, fontsize))
# write the text to the page
text.textLine(elemtxt)
pdf.drawText(text)
# put the image on the page, scaled to fill the page
if imageFileName is not None:
pdf.drawImage(imageFileName, 0, 0,
width=self.width, height=self.height)
# finish up the page and save it
pdf.showPage()
pdf.save()
if __name__ == "__main__":
parser = argparse.ArgumentParser(description='Convert hocr file to PDF')
parser.add_argument('-b', '--boundingboxes', action="store_true",
default=False, help='Show bounding boxes borders')
parser.add_argument('-r', '--resolution', type=int,
default=300,
help='Resolution of the image that was OCRed')
parser.add_argument('-i', '--image', default=None,
help='Path to the image to be placed above the text')
parser.add_argument('hocrfile', help='Path to the hocr file to be parsed')
parser.add_argument(
'outputfile', help='Path to the PDF file to be generated')
args = parser.parse_args()
hocr = HocrTransform(args.hocrfile, args.resolution)
hocr.to_pdf(args.outputfile, args.image, args.boundingboxes)
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#!/usr/bin/env python3
# -*- coding: utf-8 -*-
#
# © 2013-16: jbarlow83 from Github (https://github.com/jbarlow83)
#
# Python FFI wrapper for Leptonica library
import argparse
import sys
import os
import logging
from tempfile import TemporaryFile
from ctypes.util import find_library
from .lib._leptonica import ffi
from functools import lru_cache
from enum import Enum
lept = ffi.dlopen(find_library('lept'))
logger = logging.getLogger(__name__)
def stderr(*objs):
"""Python 2/3 compatible print to stderr.
"""
print("leptonica.py:", *objs, file=sys.stderr)
class LeptonicaErrorTrap(object):
"""Context manager to trap errors reported by Leptonica.
Leptonica's error return codes are unreliable to the point of being
almost useless. It does, however, write errors to stderr provided that is
not disabled at its compile time. Fortunately this is done using error
macros so it is very self-consistent.
This context manager redirects stderr to a temporary file which is then
read and parsed for error messages. As a side benefit, debug messages
from Leptonica are also suppressed.
"""
def __enter__(self):
from io import UnsupportedOperation
self.tmpfile = TemporaryFile()
# Save the old stderr, and redirect stderr to temporary file
sys.stderr.flush()
try:
self.copy_of_stderr = os.dup(sys.stderr.fileno())
os.dup2(self.tmpfile.fileno(), sys.stderr.fileno(),
inheritable=False)
except UnsupportedOperation:
self.copy_of_stderr = None
return
def __exit__(self, exc_type, exc_value, traceback):
# Restore old stderr
sys.stderr.flush()
if self.copy_of_stderr is not None:
os.dup2(self.copy_of_stderr, sys.stderr.fileno())
os.close(self.copy_of_stderr)
# Get data from tmpfile (in with block to ensure it is closed)
with self.tmpfile as tmpfile:
tmpfile.seek(0) # Cursor will be at end, so move back to beginning
leptonica_output = tmpfile.read().decode(errors='replace')
assert self.tmpfile.closed
assert not sys.stderr.closed
# If there are Python errors, let them bubble up
if exc_type:
logger.warning(leptonica_output)
return False
# If there are Leptonica errors, wrap them in Python excpetions
if 'Error' in leptonica_output:
if 'image file not found' in leptonica_output:
raise FileNotFoundError()
if 'pixWrite: stream not opened' in leptonica_output:
raise LeptonicaIOError()
raise LeptonicaError(leptonica_output)
return False
class LeptonicaError(Exception):
pass
class LeptonicaIOError(LeptonicaError):
pass
class RemoveColormap(Enum):
to_binary = 0
to_grayscale = 1
to_full_color = 2
based_on_src = 3
class Pix:
"""Wrapper around leptonica's PIX object.
Leptonica uses referencing counting on PIX objects. Also, many Leptonica
functions return the original object with an increased reference count
if the operation had no effect (for example, image skew was found to be 0).
This has complications for memory management in Python. Whenever Leptonica
returns a PIX object (new or old), we wrap it in this class, which
registers it with the FFI garbage collector. pixDestroy() decrements the
reference count and only destroys when the last reference is removed.
Leptonica's reference counting is not threadsafe. This class can be used
in a threadsafe manner if a Python threading.Lock protects the data.
This class treats Pix objects as immutable. All methods return new
modified objects. This allows convenient chaining:
>>> Pix.read('filename.jpg').scale((0.5, 0.5)).deskew().show()
"""
def __init__(self, pix):
self._pix = ffi.gc(pix, Pix._pix_destroy)
def __repr__(self):
if self._pix:
s = "<leptonica.Pix image size={0}x{1} depth={2} at 0x{3:x}>"
return s.format(self._pix.w, self._pix.h, self._pix.d,
int(ffi.cast("intptr_t", self._pix)))
else:
return "<leptonica.Pix image NULL>"
def _repr_png_(self):
"""iPython display hook
returns png version of image
"""
data = ffi.new('l_uint8 **')
size = ffi.new('size_t *')
err = lept.pixWriteMemPng(data, size, self._pix, 0)
if err != 0:
raise LeptonicaIOError("pixWriteMemPng")
char_data = ffi.cast('char *', data[0])
return ffi.buffer(char_data, size[0])[:]
def __getstate__(self):
data = ffi.new('l_uint32 **')
size = ffi.new('size_t *')
err = lept.pixSerializeToMemory(self._pix, data, size)
if err != 0:
raise LeptonicaIOError("pixSerializeToMemory")
char_data = ffi.cast('char *', data[0])
# Copy from C bytes to python bytes()
data_bytes = ffi.buffer(char_data, size[0])[:]
# Can now free C bytes
lept.lept_free(char_data)
return dict(data=data_bytes)
def __setstate__(self, state):
cdata_bytes = ffi.new('char[]', state['data'])
cdata_uint32 = ffi.cast('l_uint32 *', cdata_bytes)
pix = lept.pixDeserializeFromMemory(
cdata_uint32, len(state['data']))
Pix.__init__(self, pix)
def __eq__(self, other):
return self.__getstate__() == other.__getstate__()
@property
def width(self):
return self._pix.w
@property
def height(self):
return self._pix.h
@property
def depth(self):
return self._pix.d
@property
def size(self):
return (self._pix.w, self._pix.h)
@property
def info(self):
return {'dpi': (self._pix.xres, self._pix.yres)}
@property
def mode(self):
"Return mode like PIL.Image"
if self.depth == 1:
return '1'
elif self.depth >= 16:
return 'RGB'
elif not self._pix.colormap:
return 'L'
else:
return 'P'
@classmethod
def read(cls, filename):
"""Load an image file into a PIX object.
Leptonica can load TIFF, PNM (PBM, PGM, PPM), PNG, and JPEG. If
loading fails then the object will wrap a C null pointer.
"""
with LeptonicaErrorTrap():
return cls(lept.pixRead(
filename.encode(sys.getfilesystemencoding())))
def write_implied_format(
self, filename, jpeg_quality=0, jpeg_progressive=0):
"""Write pix to the filename, with the extension indicating format.
jpeg_quality -- quality (iff JPEG; 1 - 100, 0 for default)
jpeg_progressive -- (iff JPEG; 0 for baseline seq., 1 for progressive)
"""
with LeptonicaErrorTrap():
lept.pixWriteImpliedFormat(
filename.encode(sys.getfilesystemencoding()),
self._pix, jpeg_quality, jpeg_progressive)
def topil(self):
"Returns a PIL.Image version of this Pix"
from PIL import Image
# Leptonica manages data in words, so it implicitly does an endian
# swap. Tell Pillow about this when it reads the data.
pix = self
if sys.byteorder == 'little':
if self.mode == 'RGB':
raw_mode = 'XBGR'
elif self.mode == 'RGBA':
raw_mode = 'ABGR'
elif self.mode == '1':
raw_mode = '1;I'
pix = Pix(lept.pixEndianByteSwapNew(pix._pix))
else:
raw_mode = self.mode
pix = Pix(lept.pixEndianByteSwapNew(pix._pix))
else:
raw_mode = self.mode # no endian swap needed
size = (pix._pix.w, pix._pix.h)
bytecount = pix._pix.wpl * 4 * pix._pix.h
buf = ffi.buffer(pix._pix.data, bytecount)
stride = pix._pix.wpl * 4
im = Image.frombytes(self.mode, size, buf, 'raw', raw_mode, stride)
return im
def show(self):
return self.topil().show()
def deskew(self, reduction_factor=0):
"""Returns the deskewed pix object.
A clone of the original is returned when the algorithm cannot find a
skew angle with sufficient confidence.
reduction_factor -- amount to downsample (0 for default) when searching
for skew angle
"""
with LeptonicaErrorTrap():
return Pix(lept.pixDeskew(self._pix, reduction_factor))
def scale(self, scale_xy):
"Returns the pix object rescaled according to the proportions given."
with LeptonicaErrorTrap():
return Pix(lept.pixScale(self._pix, scale_xy[0], scale_xy[1]))
def rotate180(self):
with LeptonicaErrorTrap():
return Pix(lept.pixRotate180(ffi.NULL, self._pix))
def rotate_orth(self, quads):
"Orthographic rotation, quads: 0-3, number of clockwise rotations"
with LeptonicaErrorTrap():
return Pix(lept.pixRotateOrth(self._pix, quads))
def find_skew(self):
"""Returns a tuple (deskew angle in degrees, confidence value).
Returns (None, None) if no angle is available.
"""
with LeptonicaErrorTrap():
angle = ffi.new('float *', 0.0)
confidence = ffi.new('float *', 0.0)
result = lept.pixFindSkew(self._pix, angle, confidence)
if result == 0:
return (angle[0], confidence[0])
else:
return (None, None)
def convert_rgb_to_luminance(self):
with LeptonicaErrorTrap():
gray_pix = lept.pixConvertRGBToLuminance(self._pix)
if gray_pix:
return Pix(gray_pix)
return None
def remove_colormap(self, removal_type):
"""Remove a palette
removal_type - RemovalColormap()
"""
with LeptonicaErrorTrap():
return Pix(lept.pixRemoveColormap(self._pix, removal_type))
def otsu_adaptive_threshold(
self, tile_size=(300, 300), kernel_size=(4, 4), scorefract=0.1):
with LeptonicaErrorTrap():
sx, sy = tile_size
smoothx, smoothy = kernel_size
p_pix = ffi.new('PIX **')
result = lept.pixOtsuAdaptiveThreshold(
self._pix,
sx, sy,
smoothx, smoothy,
scorefract,
ffi.NULL,
p_pix)
if result == 0:
return Pix(p_pix[0])
else:
return None
def otsu_threshold_on_background_norm(
self, mask=None, tile_size=(10, 15), thresh=100, mincount=50,
bgval=255, kernel_size=(2, 2), scorefract=0.1):
with LeptonicaErrorTrap():
sx, sy = tile_size
smoothx, smoothy = kernel_size
if mask is None:
mask = ffi.NULL
if isinstance(mask, Pix):
mask = mask._pix
thresh_pix = lept.pixOtsuThreshOnBackgroundNorm(
self._pix,
mask,
sx, sy,
thresh, mincount, bgval,
smoothx, smoothy,
scorefract,
ffi.NULL
)
if thresh_pix == ffi.NULL:
return None
return Pix(thresh_pix)
def crop_to_foreground(
self, threshold=128, mindist=70, erasedist=30, pagenum=0,
showmorph=0, display=0, pdfdir=ffi.NULL):
with LeptonicaErrorTrap():
cropbox = Box(lept.pixFindPageForeground(
self._pix,
threshold,
mindist,
erasedist,
pagenum,
showmorph,
display,
pdfdir))
print(repr(cropbox))
cropped_pix = lept.pixClipRectangle(
self._pix,
cropbox._box,
ffi.NULL)
return Pix(cropped_pix)
def clean_background_to_white(
self, mask=None, grayscale=None, gamma=1.0, black=0, white=255):
with LeptonicaErrorTrap():
return Pix(lept.pixCleanBackgroundToWhite(
self._pix,
mask or ffi.NULL,
grayscale or ffi.NULL,
gamma,
black,
white))
def gamma_trc(self, gamma=1.0, minval=0, maxval=255):
with LeptonicaErrorTrap():
return Pix(lept.pixGammaTRC(
ffi.NULL,
self._pix,
gamma,
minval,
maxval
))
def background_norm(
self, mask=None, grayscale=None, tile_size=(10, 15), fg_threshold=60,
min_count=40, bg_val=200, smooth_kernel=(2, 1)):
with LeptonicaErrorTrap():
return Pix(lept.pixBackgroundNorm(
self._pix,
mask or ffi.NULL,
grayscale or ffi.NULL,
tile_size[0],
tile_size[1],
fg_threshold,
min_count,
bg_val,
smooth_kernel[0],
smooth_kernel[1]
))
@staticmethod
@lru_cache(maxsize=1)
def make_pixel_sum_tab8():
return lept.makePixelSumTab8()
@staticmethod
def correlation_binary(pix1, pix2):
if get_leptonica_version() < 'leptonica-1.72':
# Older versions of Leptonica (pre-1.72) have a buggy
# implementation of pixCorrelationBinary that overflows on larger
# images. Ubuntu trusty has 1.70. Ubuntu PPA
# ppa:rebuntu16/avidemux+unofficial has "leptonlib" 1.73.
pix1_count = ffi.new('l_int32 *')
pix2_count = ffi.new('l_int32 *')
pixn_count = ffi.new('l_int32 *')
tab8 = Pix.make_pixel_sum_tab8()
lept.pixCountPixels(pix1._pix, pix1_count, tab8)
lept.pixCountPixels(pix2._pix, pix2_count, tab8)
pixn = Pix(lept.pixAnd(ffi.NULL, pix1._pix, pix2._pix))
lept.pixCountPixels(pixn._pix, pixn_count, tab8)
# Python converts these int32s to larger units as needed
# to avoid overflow. Overflow happens easily here.
correlation = (
(pixn_count[0] * pixn_count[0]) /
(pix1_count[0] * pix2_count[0])
)
return correlation
else:
correlation = ffi.new('float *', 0.0)
result = lept.pixCorrelationBinary(pix1._pix, pix2._pix,
correlation)
if result != 0:
raise LeptonicaError("Correlation failed")
return correlation[0]
@staticmethod
def _pix_destroy(pix):
p_pix = ffi.new('PIX **', pix)
lept.pixDestroy(p_pix)
# print('pix destroy ' + repr(pix))
class Box:
"""Wrapper around Leptonica's BOX objects.
See class Pix for notes about reference counting.
"""
def __init__(self, box):
self._box = ffi.gc(box, Box._box_destroy)
def __repr__(self):
if self._box:
return '<leptonica.Box x={0} y={1} w={2} h={3}>'.format(
self.x, self.y, self.w, self.h)
return '<leptonica.Box NULL>'
@property
def x(self):
return self._box.x
@property
def y(self):
return self._box.y
@property
def w(self):
return self._box.w
@property
def h(self):
return self._box.h
@staticmethod
def _box_destroy(box):
p_box = ffi.new('BOX **', box)
lept.boxDestroy(p_box)
@lru_cache(maxsize=1)
def get_leptonica_version():
"""Get Leptonica version string.
Caveat: Leptonica expects the caller to free this memory. We don't,
since that would involve binding to libc to access libc.free(),
a pointless effort to reclaim 100 bytes of memory.
"""
return ffi.string(lept.getLeptonicaVersion()).decode()
def deskew(infile, outfile, dpi):
try:
pix_source = Pix.read(infile)
except LeptonicaIOError:
raise LeptonicaIOError("Failed to open file: %s" % infile)
if dpi < 150:
reduction_factor = 1 # Don't downsample too much if DPI is already low
else:
reduction_factor = 0 # Use default
pix_deskewed = pix_source.deskew(reduction_factor)
try:
pix_deskewed.write_implied_format(outfile)
except LeptonicaIOError:
raise LeptonicaIOError("Failed to open destination file: %s" % outfile)
def remove_background(infile, outfile, tile_size=(40, 60), gamma=1.0,
black_threshold=70, white_threshold=190):
try:
pix = Pix.read(infile)
except LeptonicaIOError:
raise LeptonicaIOError("Failed to open file: %s" % infile)
pix = pix.background_norm(tile_size=tile_size).gamma_trc(
gamma, black_threshold, white_threshold)
try:
pix.write_implied_format(outfile)
except LeptonicaIOError:
raise LeptonicaIOError("Failed to open destination file: %s" % outfile)
if __name__ == '__main__':
parser = argparse.ArgumentParser(
description="Python wrapper to access Leptonica")
subparsers = parser.add_subparsers(title='commands',
description='supported operations')
parser_deskew = subparsers.add_parser('deskew')
parser_deskew.add_argument('-r', '--dpi', dest='dpi', action='store',
type=int, default=300, help='input resolution')
parser_deskew.add_argument('infile', help='image to deskew')
parser_deskew.add_argument('outfile', help='deskewed output image')
parser_deskew.set_defaults(func=deskew)
args = parser.parse_args()
if get_leptonica_version() != u'leptonica-1.69':
print("Unexpected leptonica version: %s" % getLeptonicaVersion())
args.func(args)
def test_skew_angle():
from PIL import Image, ImageDraw
from tempfile import NamedTemporaryFile
im = Image.new(mode='1', size=(1000, 1000), color=1)
draw = ImageDraw.Draw(im)
for n in range(20):
draw.line([(50, 25 + 50*n), (950, 25 + 50*n)], width=1)
del draw
test_angles = [0.1 * ang for ang in range(1, 10)] + \
[float(ang) for ang in range(1, 7)]
test_angles += [-ang for ang in test_angles]
test_angles = sorted(test_angles)
for rotate_angle in test_angles:
rotated_im = im.rotate(rotate_angle)
with NamedTemporaryFile(prefix='lept-skew', suffix='.png', delete=True) as tmpfile:
rotated_im.save(tmpfile)
pix = pixRead(tmpfile.name)
angle, confidence = pixFindSkew(pix)
print('{0} {1} {2}'.format(rotate_angle, angle, confidence), file=sys.stderr)
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@@ -1,192 +0,0 @@
from cffi import FFI
ffi = FFI()
ffi.set_source("ocrmypdf.lib._leptonica", None)
ffi.cdef("""
typedef signed char l_int8;
typedef unsigned char l_uint8;
typedef short l_int16;
typedef unsigned short l_uint16;
typedef int l_int32;
typedef unsigned int l_uint32;
typedef float l_float32;
typedef double l_float64;
typedef long long l_int64;
typedef unsigned long long l_uint64;
struct Pix
{
l_uint32 w; /* width in pixels */
l_uint32 h; /* height in pixels */
l_uint32 d; /* depth in bits (bpp) */
l_uint32 spp; /* number of samples per pixel */
l_uint32 wpl; /* 32-bit words/line */
l_uint32 refcount; /* reference count (1 if no clones) */
l_int32 xres; /* image res (ppi) in x direction */
/* (use 0 if unknown) */
l_int32 yres; /* image res (ppi) in y direction */
/* (use 0 if unknown) */
l_int32 informat; /* input file format, IFF_* */
l_int32 special; /* special instructions for I/O, etc */
char *text; /* text string associated with pix */
struct PixColormap *colormap; /* colormap (may be null) */
l_uint32 *data; /* the image data */
};
typedef struct Pix PIX;
struct PixColormap
{
void *array; /* colormap table (array of RGBA_QUAD) */
l_int32 depth; /* of pix (1, 2, 4 or 8 bpp) */
l_int32 nalloc; /* number of color entries allocated */
l_int32 n; /* number of color entries used */
};
typedef struct PixColormap PIXCMAP;
struct Box
{
l_int32 x;
l_int32 y;
l_int32 w;
l_int32 h;
l_uint32 refcount; /* reference count (1 if no clones) */
};
typedef struct Box BOX;
""")
ffi.cdef("""
PIX * pixRead ( const char *filename );
PIX * pixScale ( PIX *pixs, l_float32 scalex, l_float32 scaley );
l_int32 pixFindSkew ( PIX *pixs, l_float32 *pangle, l_float32 *pconf );
l_int32 pixWriteImpliedFormat ( const char *filename, PIX *pix, l_int32 quality, l_int32 progressive );
l_int32
pixWriteMemPng(l_uint8 **pdata,
size_t *psize,
PIX *pix,
l_float32 gamma);
void pixDestroy ( PIX **ppix );
PIX *
pixEndianByteSwapNew(PIX *pixs);
PIX * pixDeskew ( PIX *pixs, l_int32 redsearch );
char * getLeptonicaVersion ( );
l_int32 pixCorrelationBinary(PIX *pix1, PIX *pix2, l_float32 *pval);
PIX *pixRotate180(PIX *pixd, PIX *pixs);
PIX *
pixRotateOrth(PIX *pixs,
l_int32 quads);
l_int32 pixCountPixels ( PIX *pix, l_int32 *pcount, l_int32 *tab8 );
PIX * pixAnd ( PIX *pixd, PIX *pixs1, PIX *pixs2 );
l_int32 * makePixelSumTab8 ( void );
PIX * pixDeserializeFromMemory ( const l_uint32 *data, size_t nbytes );
l_int32 pixSerializeToMemory ( PIX *pixs, l_uint32 **pdata, size_t *pnbytes );
PIX * pixConvertRGBToLuminance(PIX *pixs);
PIX * pixRemoveColormap(PIX *pixs, l_int32 type);
l_int32
pixOtsuAdaptiveThreshold(PIX *pixs,
l_int32 sx,
l_int32 sy,
l_int32 smoothx,
l_int32 smoothy,
l_float32 scorefract,
PIX **ppixth,
PIX **ppixd);
PIX *
pixOtsuThreshOnBackgroundNorm(PIX *pixs,
PIX *pixim,
l_int32 sx,
l_int32 sy,
l_int32 thresh,
l_int32 mincount,
l_int32 bgval,
l_int32 smoothx,
l_int32 smoothy,
l_float32 scorefract,
l_int32 *pthresh);
PIX *
pixCleanBackgroundToWhite(PIX *pixs,
PIX *pixim,
PIX *pixg,
l_float32 gamma,
l_int32 blackval,
l_int32 whiteval);
BOX *
pixFindPageForeground(PIX *pixs,
l_int32 threshold,
l_int32 mindist,
l_int32 erasedist,
l_int32 pagenum,
l_int32 showmorph,
l_int32 display,
const char *pdfdir);
PIX *
pixClipRectangle(PIX *pixs,
BOX *box,
BOX **pboxc);
PIX *
pixBackgroundNorm(PIX *pixs,
PIX *pixim,
PIX *pixg,
l_int32 sx,
l_int32 sy,
l_int32 thresh,
l_int32 mincount,
l_int32 bgval,
l_int32 smoothx,
l_int32 smoothy);
PIX *
pixGammaTRC(PIX *pixd,
PIX *pixs,
l_float32 gamma,
l_int32 minval,
l_int32 maxval);
l_int32
pixNumSignificantGrayColors(PIX *pixs,
l_int32 darkthresh,
l_int32 lightthresh,
l_float32 minfract,
l_int32 factor,
l_int32 *pncolors);
l_int32
pixColorFraction(PIX *pixs,
l_int32 darkthresh,
l_int32 lightthresh,
l_int32 diffthresh,
l_int32 factor,
l_float32 *ppixfract,
l_float32 *pcolorfract);
PIX *
pixColorMagnitude(PIX *pixs,
l_int32 rwhite,
l_int32 gwhite,
l_int32 bwhite,
l_int32 type);
void
boxDestroy(BOX **pbox);
void lept_free(void *ptr);
""")
if __name__ == '__main__':
ffi.compile()
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@@ -1,7 +0,0 @@
#!/usr/bin/env python3
# © 2015-16 James R. Barlow: github.com/jbarlow83
# This file is now an alias for __main__
# Consider removing in future releases
from ocrmypdf.__main__ import *
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#!/usr/bin/env python3
# © 2015 James R. Barlow: github.com/jbarlow83
from subprocess import Popen, PIPE
from decimal import Decimal, getcontext
from math import hypot
import re
import sys
import PyPDF2 as pypdf
from collections import namedtuple
try:
from math import isclose
except ImportError:
def isclose(a, b, rel_tol=1e-9):
"Python 3.4 does not have math.isclose()"
diff = abs(b - a)
return diff <= abs(rel_tol * b) or diff <= abs(rel_tol * a)
matrix_mult = pypdf.pdf.utils.matrixMultiply
FRIENDLY_COLORSPACE = {
'/DeviceGray': 'gray',
'/CalGray': 'gray',
'/DeviceRGB': 'rgb',
'/CalRGB': 'rgb',
'/DeviceCMYK': 'cmyk',
'/Lab': 'lab',
'/ICCBased': 'icc',
'/Indexed': 'index',
'/Separation': 'sep',
'/DeviceN': 'devn',
'/Pattern': '-',
'/G': 'gray', # Abbreviations permitted in inline images
'/RGB': 'rgb',
'/CMYK': 'cmyk',
'/I': 'index',
}
FRIENDLY_ENCODING = {
'/CCITTFaxDecode': 'ccitt',
'/DCTDecode': 'jpeg',
'/JPXDecode': 'jpx',
'/JBIG2Decode': 'jbig2',
'/CCF': 'ccitt', # Abbreviations permitted in inline images
'/DCT': 'jpeg',
'/AHx': 'asciihex',
'/A85': 'ascii85',
'/LZW': 'lzw',
'/Fl': 'flate',
'/RL': 'runlength'
}
FRIENDLY_COMP = {
'gray': 1,
'rgb': 3,
'cmyk': 4,
'lab': 3,
'index': 1
}
UNIT_SQUARE = (1.0, 0.0, 0.0, 1.0, 0.0, 0.0)
def _matrix_from_shorthand(shorthand):
"""Convert from PDF matrix shorthand to full matrix
PDF 1.7 spec defines a shorthand for describing the entries of a matrix
since the last column is always (0, 0, 1).
"""
a, b, c, d, e, f = map(float, shorthand)
return ((a, b, 0),
(c, d, 0),
(e, f, 1))
def _shorthand_from_matrix(matrix):
"""Convert from transformation matrix to PDF shorthand."""
a, b = matrix[0][0], matrix[0][1]
c, d = matrix[1][0], matrix[1][1]
e, f = matrix[2][0], matrix[2][1]
return tuple(map(float, (a, b, c, d, e, f)))
def _is_unit_square(shorthand):
values = map(float, shorthand)
pairwise = zip(values, UNIT_SQUARE)
return all([isclose(a, b, rel_tol=1e-3) for a, b in pairwise])
RasterSettings = namedtuple('RasterSettings',
['name', 'shorthand', 'stack_depth'])
InlineSettings = namedtuple('InlineSettings',
['settings', 'shorthand', 'stack_depth'])
ContentsInfo = namedtuple('ContentsInfo', ['raster_settings', 'inline_images'])
def _interpret_contents(contentstream):
"""Interpret the PDF content stream
The stack represents the state of the PDF graphics stack. We are only
interested in the current transformation matrix (CTM) so we only track
this object; a full implementation would need to track many other items.
The CTM is initialized to the mapping from user space to device space.
PDF units are 1/72". In a PDF viewer or printer this matrix is initialized
to the transformation to device space. For example if set to
(1/72, 0, 0, 1/72, 0, 0) then all units would be calculated in inches.
Images are always considered to be (0, 0) -> (1, 1). Before drawing an
image there should be a 'cm' that sets up an image coordinate system
where drawing from (0, 0) -> (1, 1) will draw on the desired area of the
page.
PDF units suit our needs so we initialize ctm to the identity matrix.
PyPDF2 replaces inline images with a fake "INLINE IMAGE" operator.
"""
operations = contentstream.operations
stack = []
ctm = _matrix_from_shorthand(UNIT_SQUARE)
image_raster_settings = []
inline_images = []
for op in operations:
operands, command = op
if command == b'q':
stack.append(ctm)
if len(stack) > 32:
raise RuntimeError("PDF graphics stack overflow")
elif command == b'Q':
ctm = stack.pop()
elif command == b'cm':
ctm = matrix_mult(
_matrix_from_shorthand(operands), ctm)
elif command == b'Do':
image_name = operands[0]
raster = RasterSettings(
name=image_name, shorthand=_shorthand_from_matrix(ctm),
stack_depth=len(stack))
image_raster_settings.append(raster)
elif command == b'INLINE IMAGE':
settings = operands['settings']
inline = InlineSettings(
settings=settings, shorthand=_shorthand_from_matrix(ctm),
stack_depth=len(stack))
inline_images.append(inline)
return ContentsInfo(
raster_settings=image_raster_settings,
inline_images=inline_images)
def _get_dpi(ctm_shorthand, image_size):
"""Given the transformation matrix and image size, find the image DPI.
PDFs do not include image resolution information within image data.
Instead, the PDF page content stream describes the location where the
image will be rasterized, and the effective resolution is the ratio of the
pixel size to raster target size.
Normally a scanned PDF has the paper size set appropriately but this is
not guaranteed. The most common case is a cropped image will change the
page size (/CropBox) without altering the page content stream. That means
it is not sufficient to assume that the image fills the page, even though
that is the most common case.
A PDF image may be scaled (always), cropped, translated, rotated in place
to an arbitrary angle (rarely) and skewed. Only equal area mappings can
be expressed, that is, it is not necessary to consider distortions where
the effective DPI varies with position.
To determine the image scale, transform an offset axis vector v0 (0, 0),
width-axis vector v0 (1, 0), height-axis vector vh (0, 1) with the matrix,
which gives the dimensions of the image in PDF units. From there we can
compare to actual image dimensions. PDF uses
row vector * matrix_tranposed unlike the traditional
matrix * column vector.
The offset, width and height vectors can be combined in a matrix and
multiplied by the transform matrix. Then we want to calculated
magnitude(width_vector - offset_vector)
and
magnitude(height_vector - offset_vector)
When the above is worked out algebraically, the effect of translation
cancels out, and the vector magnitudes become functions of the nonzero
transformation matrix indices. The results of the derivation are used
in this code.
pdfimages -list does calculate the DPI in some way that is not completely
naive, but it does not get the DPI of rotated images right, so cannot be
used anymore to validate this. Photoshop works, or using Acrobat to
rotate the image back to normal.
It does not matter if the image is partially cropped, or even out of the
/MediaBox.
"""
a, b, c, d, _, _ = ctm_shorthand
# Calculate the width and height of the image in PDF units
image_drawn_width = hypot(a, b)
image_drawn_height = hypot(c, d)
# The scale of the image is pixels per PDF unit (1/72")
scale_w = image_size[0] / image_drawn_width
scale_h = image_size[1] / image_drawn_height
# DPI = scale * 72
dpi_w = scale_w * 72.0
dpi_h = scale_h * 72.0
return (dpi_w, dpi_h)
def _find_page_inline_images(page, pageinfo, contentsinfo):
"Find inline images on the page"
for n, inline in enumerate(contentsinfo.inline_images):
image = {}
image['name'] = str('inline-%02d' % n)
image['width'] = inline.settings['/W']
image['height'] = inline.settings['/H']
if '/BPC' in inline.settings:
image['bpc'] = inline.settings['/BPC']
else:
image['bpc'] = 8
image['color'] = FRIENDLY_COLORSPACE.get(inline.settings['/CS'], '-')
image['comp'] = FRIENDLY_COMP.get(image['color'], '?')
if '/F' in inline.settings:
filter_ = inline.settings['/F']
if isinstance(filter_, pypdf.generic.ArrayObject):
filter_ = filter_[0]
image['enc'] = FRIENDLY_ENCODING.get(filter_, 'image')
else:
image['enc'] = 'image'
dpi_w, dpi_h = _get_dpi(
inline.shorthand, (image['width'], image['height']))
image['dpi_w'], image['dpi_h'] = Decimal(dpi_w), Decimal(dpi_h)
yield image
def _find_page_regular_images(page, pageinfo, contentsinfo):
"Find images stored in XObject resources"
try:
page['/Resources']['/XObject']
except KeyError:
return
for xobj in page['/Resources']['/XObject']:
# PyPDF2 returns the keys as an iterator
pdfimage = page['/Resources']['/XObject'][xobj]
if pdfimage['/Subtype'] != '/Image':
continue
image = {}
image['name'] = str(xobj)
image['width'] = pdfimage['/Width']
image['height'] = pdfimage['/Height']
if '/BitsPerComponent' in pdfimage:
image['bpc'] = pdfimage['/BitsPerComponent']
else:
image['bpc'] = 8
# Fixme: this is incorrectly treats explicit masks as stencil masks,
# but good enough for now. Explicit masks have /ImageMask true but are
# never called for in content stream, instead are drawn as a /Mask on
# other images. For our purposes finding out the details of /Mask
# will seldom matter.
if '/ImageMask' in pdfimage:
image['type'] = 'stencil' if pdfimage['/ImageMask'].value \
else 'image'
else:
image['type'] = 'image'
if '/Filter' in pdfimage:
filter_ = pdfimage['/Filter']
if isinstance(filter_, pypdf.generic.ArrayObject):
filter_ = filter_[0]
image['enc'] = FRIENDLY_ENCODING.get(filter_, 'image')
else:
image['enc'] = 'image'
if '/ColorSpace' in pdfimage:
cs = pdfimage['/ColorSpace']
if isinstance(cs, pypdf.generic.ArrayObject):
cs = cs[0]
image['color'] = FRIENDLY_COLORSPACE.get(cs, '-')
else:
image['color'] = 'jpx' if image['enc'] == 'jpx' else '?'
image['comp'] = FRIENDLY_COMP.get(image['color'], '?')
# Bit of a hack... infer grayscale if component count is uncertain
# but encoding must be monochrome. This happens if a monochrome image
# has an ICC profile attached. Better solution would be to examine
# the ICC profile.
if image['comp'] == '?' and image['enc'] in ('ccitt', 'jbig2'):
image['comp'] = FRIENDLY_COMP['gray']
image['dpi_w'] = image['dpi_h'] = 0
for raster in contentsinfo.raster_settings:
# Loop in case the same image is display multiple times on a page
if raster.name != image['name']:
continue
if raster.stack_depth == 0 and _is_unit_square(raster.shorthand):
# At least one PDF in the wild (and test suite) draws an image
# when the graphics stack depth is 0, meaning that the image
# gets drawn into a square of 1x1 PDF units (or 1/72",
# or 0.35 mm). The equivalent DPI will be >100,000. Exclude
# these from our DPI calculation for the page.
continue
dpi_w, dpi_h = _get_dpi(
raster.shorthand, (image['width'], image['height']))
# When image is used multiple times take the highest DPI it is
# rendered at
image['dpi_w'] = max(dpi_w, image.get('dpi_w', 0))
image['dpi_h'] = max(dpi_h, image.get('dpi_h', 0))
DPI_PREC = Decimal('1.000')
image['dpi_w'] = Decimal(image['dpi_w']).quantize(DPI_PREC)
image['dpi_h'] = Decimal(image['dpi_h']).quantize(DPI_PREC)
dpi = Decimal(image['dpi_w'] * image['dpi_h']).sqrt()
image['dpi'] = dpi.quantize(DPI_PREC)
yield image
def _find_page_images(page, pageinfo, contentsinfo):
yield from _find_page_inline_images(page, pageinfo, contentsinfo)
yield from _find_page_regular_images(page, pageinfo, contentsinfo)
def _page_has_text(pdf, page):
# Simple test
text = page.extractText()
if text.strip() != '':
return True
# More nuanced test to deal with quirks of Tesseract PDF generation
# Check if there's a Glyphless font
try:
font = page['/Resources']['/Font']
except KeyError:
pass
else:
font_objects = list(font.keys())
for font_object in font_objects:
basefont = font[font_object]['/BaseFont']
if basefont.endswith('GlyphLessFont'):
return True
return False
def _pdf_get_pageinfo(infile, pageno: int):
pageinfo = {}
pageinfo['pageno'] = pageno
pageinfo['images'] = []
pdf = pypdf.PdfFileReader(infile)
page = pdf.pages[pageno]
pageinfo['has_text'] = _page_has_text(pdf, page)
width_pt = page.mediaBox.getWidth()
height_pt = page.mediaBox.getHeight()
pageinfo['width_inches'] = width_pt / Decimal(72.0)
pageinfo['height_inches'] = height_pt / Decimal(72.0)
try:
pageinfo['rotate'] = int(page['/Rotate'])
except KeyError:
pageinfo['rotate'] = 0
try:
contentstream = pypdf.pdf.ContentStream(page.getContents(), pdf)
except AttributeError as e:
return pageinfo
contentsinfo = _interpret_contents(contentstream)
pageinfo['images'] = [im for im in _find_page_images(
page, pageinfo, contentsinfo)]
if pageinfo['images']:
xres = max(image['dpi_w'] for image in pageinfo['images'])
yres = max(image['dpi_h'] for image in pageinfo['images'])
pageinfo['xres'], pageinfo['yres'] = xres, yres
pageinfo['width_pixels'] = \
int(round(xres * pageinfo['width_inches']))
pageinfo['height_pixels'] = \
int(round(yres * pageinfo['height_inches']))
return pageinfo
def pdf_get_all_pageinfo(infile):
pdf = pypdf.PdfFileReader(infile)
getcontext().prec = 6
return [_pdf_get_pageinfo(infile, n) for n in range(pdf.numPages)]
def main():
import argparse
parser = argparse.ArgumentParser()
parser.add_argument('infile')
args = parser.parse_args()
info = pdf_get_all_pageinfo(args.infile)
from pprint import pprint
pprint(info)
if __name__ == '__main__':
main()
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#!/usr/bin/env python3
# © 2015 James R. Barlow: github.com/jbarlow83
#
# Generate a PDFA_def.ps file for Ghostscript >= 9.14
from __future__ import print_function, absolute_import, division
from string import Template
import codecs
import pkg_resources
import PyPDF2 as pypdf
ICC_PROFILE_RELPATH = 'data/sRGB.icc'
SRGB_ICC_PROFILE = pkg_resources.resource_filename(
'ocrmypdf', ICC_PROFILE_RELPATH)
# This is a template written in PostScript which is needed to create PDF/A
# files, from the Ghostscript documentation. Lines beginning with % are
# comments. Python substitution variables have a '$' prefix.
pdfa_def_template = u"""%!
% This is a sample prefix file for creating a PDF/A document.
% Feel free to modify entries marked with "Customize".
% This assumes an ICC profile to reside in the file (ISO Coated sb.icc),
% unless the user modifies the corresponding line below.
% Define entries in the document Info dictionary :
/ICCProfile ($icc_profile)
def
[ /Title <$title>
/Author <$author>
/Subject <$subject>
/Keywords <$keywords>
/Creator <$creator>
/DOCINFO pdfmark
% Define an ICC profile :
[/_objdef {icc_PDFA} /type /stream /OBJ pdfmark
[{icc_PDFA}
<<
/N currentpagedevice /ProcessColorModel known {
currentpagedevice /ProcessColorModel get dup /DeviceGray eq
{pop 1} {
/DeviceRGB eq
{3}{4} ifelse
} ifelse
} {
(ERROR, unable to determine ProcessColorModel) == flush
} ifelse
>> /PUT pdfmark
[{icc_PDFA} ICCProfile (r) file /PUT pdfmark
% Define the output intent dictionary :
[/_objdef {OutputIntent_PDFA} /type /dict /OBJ pdfmark
[{OutputIntent_PDFA} <<
/Type /OutputIntent % Must be so (the standard requires).
/S /GTS_PDFA1 % Must be so (the standard requires).
/DestOutputProfile {icc_PDFA} % Must be so (see above).
/OutputConditionIdentifier ($icc_identifier)
>> /PUT pdfmark
[{Catalog} <</OutputIntents [ {OutputIntent_PDFA} ]>> /PUT pdfmark
"""
def encode_text_string(s: str) -> str:
'''Encode text string to hex string for use in a PDF
From PDF 32000-1:2008 a string object may be included in hexademical form
if it is enclosed in angle brackets. For general Unicode the string should
be UTF-16 (big endian) with byte order marks. Many strings including all
ASCII strings fall could be encoded as PdfDocEncoding literals provided
that certain Postscript sequences are escaped. But it's far simpler to
encode everything as UTF-16.
'''
# Sometimes lazy C programmers leave their NULs at the end of strings they
# insert into PDFs
# tests/resources/aspect.pdf is one example (created by ImageMagick)
s = s.replace('\x00', '')
if s == '':
return ''
utf16_bytes = s.encode('utf-16be')
ascii_hex_bytes = codecs.encode(b'\xfe\xff' + utf16_bytes, 'hex')
ascii_hex_str = ascii_hex_bytes.decode('ascii').lower()
return ascii_hex_str
def _get_pdfa_def(icc_profile, icc_identifier, pdfmark):
pdfmark_utf16 = {k: encode_text_string(v) for k, v in pdfmark.items()}
t = Template(pdfa_def_template)
result = t.substitute(icc_profile=icc_profile,
icc_identifier=icc_identifier,
title=pdfmark_utf16.get('/Title', ''),
author=pdfmark_utf16.get('/Author', ''),
subject=pdfmark_utf16.get('/Subject', ''),
creator=pdfmark_utf16.get('/Creator', ''),
keywords=pdfmark_utf16.get('/Keywords', ''))
return result
def generate_pdfa_def(target_filename, pdfmark, icc='sRGB'):
if icc == 'sRGB':
icc_profile = SRGB_ICC_PROFILE
else:
raise NotImplementedError("Only supporting sRGB")
ps = _get_pdfa_def(icc_profile, icc, pdfmark)
# We should have encoded everything to pure ASCII by this point, and
# to be safe, only allow ASCII in PostScript
with open(target_filename, 'w', encoding='ascii') as f:
f.write(ps)
def file_claims_pdfa(filename):
"""Determines if the file claims to be PDF/A compliant
Checking if a file is a truly compliant PDF/A is a massive undertaking
that no open source tool does properly. Some commercial tools are
generally reliable (Acrobat).
This checks if the XMP metadata contains a PDF/A marker.
"""
pdf = pypdf.PdfFileReader(filename)
xmp = pdf.getXmpMetadata()
try:
pdfa_nodes = xmp.getNodesInNamespace(
aboutUri='',
namespace='http://www.aiim.org/pdfa/ns/id/')
except AttributeError:
return {'pass': False, 'output': 'pdf',
'conformance': 'No XMP metadata'}
pdfa_dict = {attr.localName: attr.value for attr in pdfa_nodes}
if not pdfa_dict:
return {'pass': False, 'output': 'pdf',
'conformance': 'No XMP metadata'}
part_conformance = pdfa_dict['part'] + pdfa_dict['conformance']
valid_part_conforms = {'1A', '1B', '2A', '2B', '2U', '3A', '3B', '3U'}
conformance = 'PDF/A-{}'.format(
part_conformance)
if part_conformance in valid_part_conforms:
pdfa_dict['pass'] = True
pdfa_dict['output'] = 'pdfa'
pdfa_dict['conformance'] = conformance
return pdfa_dict
-119
View File
@@ -1,119 +0,0 @@
#!/usr/bin/env python3
# © 2015 James R. Barlow: github.com/jbarlow83
from subprocess import CalledProcessError, check_output, STDOUT, check_call
from functools import lru_cache
import sys
import os
import re
from . import ExitCode, get_program
@lru_cache(maxsize=1)
def version():
args_qpdf = [
get_program('qpdf'),
'--version'
]
try:
versions = check_output(
args_qpdf, close_fds=True, universal_newlines=True,
stderr=STDOUT)
except CalledProcessError:
print("Could not find qpdf executable on system PATH.")
sys.exit(ExitCode.missing_dependency)
qpdf_version = re.match(r'qpdf version (.+)', versions).group(1)
return qpdf_version
def check(input_file, log):
args_qpdf = [
get_program('qpdf'),
'--check',
input_file
]
try:
check_output(args_qpdf, stderr=STDOUT, universal_newlines=True)
except CalledProcessError as e:
if e.returncode == 2:
log.error("{0}: not a valid PDF, and could not repair it.".format(
input_file))
log.error("Details:")
log.error(e.output)
elif e.returncode == 3:
log.info("qpdf --check returned warnings:")
log.info(e.output)
else:
log.warning(e.output)
return False
return True
def repair(input_file, output_file, log):
args_qpdf = [
get_program('qpdf'), input_file, output_file
]
try:
check_output(args_qpdf, stderr=STDOUT, universal_newlines=True)
except CalledProcessError as e:
if e.returncode == 3 and e.output.find("operation succeeded"):
log.debug('qpdf found and fixed errors: ' + e.output)
log.debug(e.output)
return
if e.returncode == 2 and e.output.find("invalid password"):
log.error("{0}: this PDF is password-protected - password must "
"be removed for OCR".format(input_file))
sys.exit(ExitCode.input_file)
elif e.returncode == 2:
log.error("{0}: not a valid PDF, and could not repair it.".format(
input_file))
log.error("Details: " + e.output)
sys.exit(ExitCode.input_file)
else:
log.error("{0}: unknown error".format(
input_file))
log.error(e.output)
sys.exit(ExitCode.unknown)
def get_npages(input_file, log):
try:
pages = check_output(
[get_program('qpdf'), '--show-npages', input_file],
universal_newlines=True, close_fds=True)
except CalledProcessError as e:
if e.returncode == 2 and e.output.find('No such file'):
log.error(e.output)
sys.exit(ExitCode.input_file)
return int(pages)
def split_pages(input_file, work_folder, npages):
"""Split multipage PDF into individual pages.
Incredibly enough, this multiple process approach is about 70 times
faster than using Ghostscript.
"""
for n in range(int(npages)):
args_qpdf = [
get_program('qpdf'), input_file,
'--pages', input_file, '{0}'.format(n + 1), '--',
os.path.join(work_folder, '{0:06d}.page.pdf'.format(n + 1))
]
check_call(args_qpdf)
def merge(input_files, output_file):
"""Merge the list of input files (all filenames) into the output file.
The input files may contain one or more pages.
"""
args_qpdf = [
get_program('qpdf'), input_files[0], '--pages'
] + input_files + ['--', output_file]
check_call(args_qpdf)
-261
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@@ -1,261 +0,0 @@
#!/usr/bin/env python3
# © 2015 James R. Barlow: github.com/jbarlow83
import sys
import os
import re
import shutil
from functools import lru_cache
from . import ExitCode, get_program, page_number
from collections import namedtuple
from subprocess import Popen, PIPE, CalledProcessError, \
TimeoutExpired, check_output, STDOUT, DEVNULL
OrientationConfidence = namedtuple(
'OrientationConfidence',
('angle', 'confidence'))
HOCR_TEMPLATE = '''<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE html PUBLIC "-//W3C//DTD XHTML 1.0 Transitional//EN"
"http://www.w3.org/TR/xhtml1/DTD/xhtml1-transitional.dtd">
<html xmlns="http://www.w3.org/1999/xhtml" xml:lang="en" lang="en">
<head>
<title></title>
<meta http-equiv="Content-Type" content="text/html; charset=utf-8" />
<meta name='ocr-system' content='tesseract 3.02.02' />
<meta name='ocr-capabilities' content='ocr_page ocr_carea ocr_par ocr_line ocrx_word'/>
</head>
<body>
<div class='ocr_page' id='page_1' title='image "x.tif"; bbox 0 0 {0} {1}; ppageno 0'>
<div class='ocr_carea' id='block_1_1' title="bbox 0 1 {0} {1}">
<p class='ocr_par' dir='ltr' id='par_1' title="bbox 0 1 {0} {1}">
<span class='ocr_line' id='line_1' title="bbox 0 1 {0} {1}"><span class='ocrx_word' id='word_1' title="bbox 0 1 {0} {1}"> </span>
</span>
</p>
</div>
</div>
</body>
</html>'''
@lru_cache(maxsize=1)
def version():
args_tess = [
get_program('tesseract'),
'--version'
]
try:
versions = check_output(
args_tess, close_fds=True, universal_newlines=True,
stderr=STDOUT)
except CalledProcessError:
print("Could not find Tesseract executable on system PATH.")
sys.exit(ExitCode.missing_dependency)
tesseract_version = re.match(r'tesseract\s(.+)', versions).group(1)
return tesseract_version
@lru_cache(maxsize=1)
def languages():
args_tess = [
get_program('tesseract'),
'--list-langs'
]
try:
langs = check_output(
args_tess, close_fds=True, universal_newlines=True,
stderr=STDOUT)
except CalledProcessError as e:
print("Tesseract failed to report available languages.")
print("Output from Tesseract:")
print("-" * 40)
print(e.output)
sys.exit(ExitCode.missing_dependency)
return set(lang.strip() for lang in langs.splitlines()[1:])
def get_orientation(input_file, language: list, timeout: float, log):
args_tesseract = [
get_program('tesseract'),
'-l', '+'.join(language),
'-psm', '0',
input_file,
'stdout'
]
try:
stdout = check_output(
args_tesseract, close_fds=True, stderr=STDOUT,
universal_newlines=True, timeout=timeout)
except TimeoutExpired:
return OrientationConfidence(angle=0, confidence=0.0)
except CalledProcessError as e:
tesseract_log_output(log, e.output, input_file)
if ('Too few characters. Skipping this page' in e.output or
'Image too large' in e.output):
return OrientationConfidence(0, 0)
raise e from e
else:
osd = {}
for line in stdout.splitlines():
line = line.strip()
parts = line.split(':', maxsplit=2)
if len(parts) == 2:
osd[parts[0].strip()] = parts[1].strip()
angle = int(osd.get('Orientation in degrees', 0))
if 'Orientation' in osd:
# Tesseract < 3.04.01
# reports "Orientation in degrees" as a counterclockwise angle
# We keep it clockwise
assert 'Rotate' not in osd
angle = -angle % 360
else:
# Tesseract == 3.04.01, hopefully also Tesseract > 3.04.01
# reports "Orientation in degrees" as a clockwise angle
assert 'Rotate' in osd
oc = OrientationConfidence(
angle=angle,
confidence=float(osd.get('Orientation confidence', 0)))
return oc
def tesseract_log_output(log, stdout, input_file):
lines = stdout.splitlines()
prefix = "{0:4d}: [tesseract] ".format(page_number(input_file))
for line in lines:
if line.startswith("Tesseract Open Source"):
continue
elif line.startswith("Warning in pixReadMem"):
continue
elif 'diacritics' in line:
log.warning(prefix + "lots of diacritics - possibly poor OCR")
elif line.startswith('OSD: Weak margin'):
log.warning(prefix + "unsure about page orientation")
elif 'error' in line.lower() or 'exception' in line.lower():
log.error(prefix + line.strip())
else:
log.info(prefix + line.strip())
def page_timedout(log, input_file):
prefix = "{0:4d}: [tesseract] ".format(page_number(input_file))
log.warning(prefix + " took too long to OCR - skipping")
def _generate_null_hocr(output_hocr, image):
"""Produce a .hocr file that reports no text detected on a page that is
the same size as the input image."""
from PIL import Image
im = Image.open(image)
w, h = im.size
with open(output_hocr, 'w', encoding="utf-8") as f:
f.write(HOCR_TEMPLATE.format(w, h))
def generate_hocr(input_file, output_hocr, language: list, tessconfig: list,
timeout: float, pageinfo_getter, pagesegmode: int, log):
badxml = os.path.splitext(output_hocr)[0] + '.badxml'
args_tesseract = [
get_program('tesseract'),
'-l', '+'.join(language)
]
if pagesegmode is not None:
args_tesseract.extend(['-psm', str(pagesegmode)])
args_tesseract.extend([
input_file,
badxml,
'hocr'
] + tessconfig)
try:
stdout = check_output(
args_tesseract, close_fds=True, stderr=STDOUT,
universal_newlines=True, timeout=timeout)
except TimeoutExpired:
# Generate a HOCR file with no recognized text if tesseract times out
# Temporary workaround to hocrTransform not being able to function if
# it does not have a valid hOCR file.
page_timedout(log, input_file)
_generate_null_hocr(output_hocr, input_file)
except CalledProcessError as e:
tesseract_log_output(log, e.output, input_file)
if 'Image too large' in e.output:
_generate_null_hocr(output_hocr, input_file)
return
raise e from e
else:
tesseract_log_output(log, stdout, input_file)
if os.path.exists(badxml + '.html'):
# Tesseract 3.02 appends suffix ".html" on its own (.badxml.html)
shutil.move(badxml + '.html', badxml)
elif os.path.exists(badxml + '.hocr'):
# Tesseract 3.03 appends suffix ".hocr" on its own (.badxml.hocr)
shutil.move(badxml + '.hocr', badxml)
# Tesseract 3.03 inserts source filename into hocr file without
# escaping it, creating invalid XML and breaking the parser.
# As a workaround, rewrite the hocr file, replacing the filename
# with a space. Don't know if Tesseract 3.02 does the same.
regex_nested_single_quotes = re.compile(
r"""title='image "([^"]*)";""")
with open(badxml, mode='r', encoding='utf-8') as f_in, \
open(output_hocr, mode='w', encoding='utf-8') as f_out:
for line in f_in:
line = regex_nested_single_quotes.sub(
r"""title='image " ";""", line)
f_out.write(line)
def generate_pdf(input_image, skip_pdf, output_pdf, language: list,
tessconfig: list, timeout: float, pagesegmode: int, log):
'''Use Tesseract to render a PDF.
input_image -- image to analyze
skip_pdf -- if we time out, use this file as output
language -- list of languages to consider
tessconfig -- tesseract configuration
timeout -- timeout (seconds)
log -- logger object
'''
args_tesseract = [
get_program('tesseract'),
'-l', '+'.join(language)
]
if pagesegmode is not None:
args_tesseract.extend(['-psm', str(pagesegmode)])
args_tesseract.extend([
input_image,
os.path.splitext(output_pdf)[0], # Tesseract appends suffix
'pdf'
] + tessconfig)
try:
stdout = check_output(
args_tesseract, close_fds=True, stderr=STDOUT,
universal_newlines=True, timeout=timeout)
except TimeoutExpired:
page_timedout(log, input_image)
shutil.copy(skip_pdf, output_pdf)
except CalledProcessError as e:
tesseract_log_output(log, e.output, input_image)
if 'Image too large' in e.output:
shutil.copy(skip_pdf, output_pdf)
return
raise e from e
else:
tesseract_log_output(log, stdout, input_image)
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@@ -1,103 +0,0 @@
#!/usr/bin/env python3
# © 2015 James R. Barlow: github.com/jbarlow83
# unpaper documentation:
# https://github.com/Flameeyes/unpaper/blob/master/doc/basic-concepts.md
from subprocess import CalledProcessError, STDOUT, check_output, check_call
from tempfile import NamedTemporaryFile
import sys
import os
from functools import lru_cache
from . import ExitCode, get_program
@lru_cache(maxsize=1)
def version():
args_unpaper = [
get_program('unpaper'),
'--version'
]
version = check_output(
args_unpaper, close_fds=True, universal_newlines=True,
stderr=STDOUT, timeout=5)
return version.strip()
try:
from PIL import Image
except ImportError:
print("Could not find Python3 imaging library", file=sys.stderr)
raise
def run(input_file, output_file, dpi, log, mode_args):
args_unpaper = [
get_program('unpaper'),
'-v',
'--dpi', str(dpi)
] + mode_args
SUFFIXES = {'1': '.pbm', 'L': '.pgm', 'RGB': '.ppm'}
im = Image.open(input_file)
if im.mode not in SUFFIXES.keys():
log.info("Converting image to other colorspace")
try:
if im.mode == 'P' and len(im.getcolors()) == 2:
im = im.convert(mode='1')
else:
im = im.convert(mode='RGB')
except IOError:
log.error(
"Could not convert image with type " + im.mode)
sys.exit(ExitCode.missing_dependency)
try:
suffix = SUFFIXES[im.mode]
except KeyError:
log.error(
"Failed to convert image to a supported format.")
sys.exit(ExitCode.missing_dependency)
with NamedTemporaryFile(suffix=suffix) as input_pnm, \
NamedTemporaryFile(suffix=suffix, mode="r+b") as output_pnm:
im.save(input_pnm, format='PPM')
im.close()
os.unlink(output_pnm.name)
args_unpaper.extend([input_pnm.name, output_pnm.name])
try:
stdout = check_output(
args_unpaper, close_fds=True,
universal_newlines=True, stderr=STDOUT,
)
except CalledProcessError as e:
log.debug(e.output)
raise e from e
else:
log.debug(stdout)
Image.open(output_pnm.name).save(output_file)
def deskew(input_file, output_file, dpi, log):
run(input_file, output_file, dpi, log, [
'--mask-scan-size', '100', # don't blank out narrow columns
'--no-border-align', # don't align visible content to borders
'--no-mask-center', # don't center visible content within page
'--no-grayfilter', # don't remove light gray areas
'--no-blackfilter', # don't remove solid black areas
'--no-noisefilter', # don't remove salt and pepper noise
'--no-blurfilter' # don't remove blurry objects/debris
])
def clean(input_file, output_file, dpi, log):
run(input_file, output_file, dpi, log, [
'--mask-scan-size', '100', # don't blank out narrow columns
'--no-border-align', # don't align visible content to borders
'--no-mask-center', # don't center visible content within page
'--no-grayfilter', # don't remove light gray areas
'--no-blackfilter', # don't remove solid black areas
'--no-deskew', # don't deskew
])
-338
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@@ -1,338 +0,0 @@
<?xml version="1.0" encoding="UTF-8" standalone="no"?>
<!DOCTYPE svg PUBLIC "-//W3C//DTD SVG 1.1//EN"
"http://www.w3.org/Graphics/SVG/1.1/DTD/svg11.dtd">
<!-- Generated by graphviz version 2.38.0 (20140413.2041)
-->
<!-- Title: Pipeline: Pages: 1 -->
<svg width="1444pt" height="973pt"
viewBox="0.00 0.00 1444.00 973.18" xmlns="http://www.w3.org/2000/svg" xmlns:xlink="http://www.w3.org/1999/xlink">
<g id="graph0" class="graph" transform="scale(1 1) rotate(0) translate(4 969.181)">
<title>Pipeline:</title>
<polygon fill="white" stroke="none" points="-4,4 -4,-969.181 1440,-969.181 1440,4 -4,4"/>
<g id="clust1" class="cluster"><title>clustertasks</title>
<polygon fill="none" stroke="black" points="8,-8 8,-957.181 1428,-957.181 1428,-8 8,-8"/>
<text text-anchor="middle" x="718" y="-929.181" font-family="Times,serif" font-size="30.00" fill="#ff3232">Pipeline:</text>
</g>
<!-- t0 -->
<g id="node1" class="node"><title>t0</title>
<polygon fill="#efa03b" stroke="black" points="1219.77,-911.181 1034.23,-911.181 1030.23,-907.181 1030.23,-875.181 1215.77,-875.181 1219.77,-879.181 1219.77,-911.181"/>
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<text text-anchor="middle" x="1125" y="-887.181" font-family="Times,serif" font-size="20.00">triage</text>
</g>
<!-- t1 -->
<g id="node2" class="node"><title>t1</title>
<polygon fill="#efa03b" stroke="black" points="1238.54,-853.181 1015.46,-853.181 1011.46,-849.181 1011.46,-817.181 1234.54,-817.181 1238.54,-821.181 1238.54,-853.181"/>
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<text text-anchor="middle" x="1125" y="-829.181" font-family="Times,serif" font-size="20.00">repair_pdf</text>
</g>
<!-- t0&#45;&gt;t1 -->
<g id="edge1" class="edge"><title>t0&#45;&gt;t1</title>
<path fill="none" stroke="#0044a0" d="M1125,-875.075C1125,-871.384 1125,-867.394 1125,-863.424"/>
<polygon fill="#0044a0" stroke="#0044a0" points="1128.5,-863.182 1125,-853.182 1121.5,-863.182 1128.5,-863.182"/>
</g>
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<g id="node3" class="node"><title>t2</title>
<polygon fill="#efa03b" stroke="black" points="1329.11,-774.253 1125,-791.156 920.888,-774.253 921.078,-746.905 1328.92,-746.905 1329.11,-774.253"/>
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<text text-anchor="middle" x="1125" y="-760.694" font-family="Times,serif" font-size="20.00">split_pages</text>
</g>
<!-- t1&#45;&gt;t2 -->
<g id="edge2" class="edge"><title>t1&#45;&gt;t2</title>
<path fill="none" stroke="#0044a0" d="M1125,-817.059C1125,-813.44 1125,-809.484 1125,-805.438"/>
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<g id="node17" class="node"><title>t15</title>
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<text text-anchor="middle" x="461" y="-692.208" font-family="Times,serif" font-size="20.00">generate_postscript_stub</text>
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Before

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[pytest]
norecursedirs = lib .pc .git
-9
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# requirements.txt can be used to replicate the developer's build environment
# setup.py lists a separate set of requirements that are looser to simplify
# installation
ruffus==2.6.3
Pillow==3.3.0
reportlab==3.2.0
PyPDF2==1.26
img2pdf==0.2.1
cffi==1.5.2
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[bdist_wheel]
python-tag = py34
[aliases]
test=pytest
[check-manifest]
ignore =
.github
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#!/usr/bin/env python3
# -*- coding: utf-8 -*-
# © 2015 James R. Barlow: github.com/jbarlow83
from __future__ import print_function, unicode_literals
import sys
if sys.version_info < (3, 4):
print("Python 3.4 or newer is required", file=sys.stderr)
sys.exit(1)
from setuptools import setup # nopep8
from subprocess import STDOUT, check_output, CalledProcessError # nopep8
from collections.abc import Mapping # nopep8
import re # nopep8
missing_program = '''
The program '{program}' could not be executed or was not found on your
system PATH.
'''
unknown_version = '''
OCRmyPDF requires '{program}' {need_version} or higher. Your system has
'{program}' but we cannot tell what version is installed. Contact the
package maintainer.
'''
old_version = '''
OCRmyPDF requires '{program}' {need_version} or higher. Your system appears
to have {found_version}. Please update this program.
'''
okay_its_optional = '''
This program is OPTIONAL, so installation of OCRmyPDF can proceed, but
some functionality may be missing.
'''
not_okay_its_required = '''
This program is REQUIRED for OCRmyPDF to work. Installation will abort.
'''
osx_install_advice = '''
If you have homebrew installed, try these command to install the missing
packages:
brew update
brew upgrade
brew install {package}
'''
linux_install_advice = '''
On systems with the aptitude package manager (Debian, Ubuntu), try these
commands:
sudo apt-get update
sudo apt-get install {package}
On RPM-based systems (Red Hat, Fedora), search for instructions on
installing the RPM for {program}.
'''
def get_platform():
if sys.platform.startswith('freebsd'):
return 'freebsd'
elif sys.platform.startswith('linux'):
return 'linux'
return sys.platform
def _error_trailer(program, package, optional, **kwargs):
if optional:
print(okay_its_optional.format(**locals()), file=sys.stderr)
else:
print(not_okay_its_required.format(**locals()), file=sys.stderr)
if isinstance(package, Mapping):
package = package[get_platform()]
if get_platform() == 'darwin':
print(osx_install_advice.format(**locals()), file=sys.stderr)
elif get_platform() == 'linux':
print(linux_install_advice.format(**locals()), file=sys.stderr)
def error_missing_program(
program,
package,
optional
):
print(missing_program.format(**locals()), file=sys.stderr)
_error_trailer(**locals())
def error_unknown_version(
program,
package,
optional,
need_version
):
print(unknown_version.format(**locals()), file=sys.stderr)
_error_trailer(**locals())
def error_old_version(
program,
package,
optional,
need_version,
found_version
):
print(old_version.format(**locals()), file=sys.stderr)
_error_trailer(**locals())
def check_external_program(
program,
need_version,
package,
version_check_args=['--version'],
version_scrape_regex=re.compile(r'(\d+\.\d+(?:\.\d+)?)'),
optional=False):
print('Checking for {program} >= {need_version}...'.format(
program=program, need_version=need_version))
try:
result = check_output(
[program] + version_check_args,
universal_newlines=True, stderr=STDOUT)
except (CalledProcessError, FileNotFoundError):
error_missing_program(program, package, optional)
if not optional:
sys.exit(1)
print('Continuing install without {program}'.format(program=program))
return
try:
found_version = version_scrape_regex.search(result).group(1)
except AttributeError:
error_unknown_version(program, package, optional, need_version)
sys.exit(1)
if found_version < need_version:
error_old_version(program, package, optional, need_version,
found_version)
print('Found {program} {found_version}'.format(
program=program, found_version=found_version))
command = next((arg for arg in sys.argv[1:] if not arg.startswith('-')), '')
forced = ('--force' in sys.argv)
if not forced and command.startswith('install') or \
command in ['check', 'test', 'nosetests', 'easy_install']:
check_external_program(
program='tesseract',
need_version='3.03', # limited by Travis CI / Ubuntu 12.04 backports
package={'darwin': 'tesseract', 'linux': 'tesseract-ocr'}
)
check_external_program(
program='gs',
need_version='9.15', # limited by Travis CI / Ubuntu 12.04 backports
package='ghostscript'
)
check_external_program(
program='unpaper',
need_version='6.1', # latest sane version
package='unpaper',
optional=True
)
check_external_program(
program='qpdf',
need_version='5.0.0', # limited by Travis CI / Ubuntu 12.04 backports
package='qpdf',
version_check_args=['--version']
)
else:
print('Skipping external program tests because of --force')
if 'upload' in sys.argv[1:]:
print('Use twine to upload the package - setup.py upload is insecure')
sys.exit(1)
tests_require = open('test_requirements.txt').read().splitlines()
setup(
name='ocrmypdf',
description='OCRmyPDF adds an OCR text layer to scanned PDF files, allowing them to be searched',
url='https://github.com/jbarlow83/OCRmyPDF',
author='James R. Barlow',
author_email='jim@purplerock.ca',
license='Public Domain',
packages=['ocrmypdf'],
keywords=['PDF', 'OCR', 'optical character recognition', 'PDF/A', 'scanning'],
classifiers=[
"Programming Language :: Python :: 3",
"Development Status :: 5 - Production/Stable",
"Environment :: Console",
"Intended Audience :: End Users/Desktop",
"Intended Audience :: Science/Research",
"Intended Audience :: System Administrators",
"License :: OSI Approved :: MIT License",
"Operating System :: MacOS :: MacOS X",
"Operating System :: POSIX",
"Operating System :: POSIX :: BSD",
"Operating System :: POSIX :: Linux",
"Topic :: Scientific/Engineering :: Image Recognition",
"Topic :: Text Processing :: Indexing",
"Topic :: Text Processing :: Linguistic",
],
setup_requires=[
'setuptools_scm',
'cffi>=1.5.0',
'pytest-runner'
],
use_scm_version={'version_scheme': 'post-release'},
cffi_modules=[
'ocrmypdf/lib/compile_leptonica.py:ffi'
],
install_requires=[
'ruffus==2.6.3', # pinned - ocrmypdf implements a 2.6.3 workaround
'Pillow>=3.1.0', # Pillow is pretty stable
'reportlab>=3.2.0', # oldest released version with sane image handling
'PyPDF2>=1.26', # pure Python, so track HEAD closely
'img2pdf>=0.2.1', # pure Python, so track HEAD closely
'cffi>=1.5.0' # oldest version ever tested
],
tests_require=tests_require,
entry_points={
'console_scripts': [
'ocrmypdf = ocrmypdf.__main__:run_pipeline'
],
},
package_data={'ocrmypdf': ['data/sRGB.icc']},
include_package_data=True,
zip_safe=False)
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deb http://httpredir.debian.org/debian stretch main
deb http://httpredir.debian.org/debian stretch-updates main
deb http://security.debian.org stretch/updates main
deb http://ftp.de.debian.org/debian sid main contrib non-free
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#! /bin/bash
set -x
set -e
chmod +x OCRmyPDF*.AppImage
# run OCRmyPDF to test if the AppImage can ocr a test file
run_appimage()
{
echo ""
./OCRmyPDF*.AppImage --help
echo ""
./OCRmyPDF*.AppImage --list-programs
echo ""
./OCRmyPDF*.AppImage --list-licenses
echo ""
./OCRmyPDF*.AppImage ocrmypdf -l deu -s -d --jbig2-lossy --optimize 1 "$TRAVIS_BUILD_DIR"/test/test.pdf output.pdf
echo ""
}
# check AppImage for common issues
run_appimagelint()
{
wget https://github.com/TheAssassin/appimagelint/releases/download/continuous/appimagelint-x86_64.AppImage
chmod +x appimagelint-x86_64.AppImage
./appimagelint-x86_64.AppImage OCRmyPDF*.AppImage
}
# extract the OCRmyPDF AppImage, install pytest & test requirements and run pytest
run_pytest()
{
git clone --depth=1 --branch "v$OCRMYPDF_VERSION" https://github.com/jbarlow83/OCRmyPDF.git
./OCRmyPDF*.AppImage --appimage-extract
pushd squashfs-root
./AppRun python3 -m pip install pytest
./AppRun python3 -m pip install -r ../OCRmyPDF/requirements/test.txt
./AppRun python3 -m pytest ../OCRmyPDF -n auto
popd
}
run_appimage
run_appimagelint
# run_pytest
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pytest>=2.7.2
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These test files are used in OCRmyPDF's test suite. They do not necessarily produce OCR results
at all and are not meant as examples of OCR output. Some are even invalid PDFs that might
crash certain PDF viewers.
Files derived from free sources
===============================
These test resources come from free sources, under either public domain or Creative Commons licenses.
In some cases they were converted from one image format to another without other changes.
.. list-table::
:widths: 20 50 30
:header-rows: 1
* - File
- Source
- License
* - c02-22.pdf
- `Project Gutenberg`_, Adventures of Huckleberry Finn, page 22
- Public Domain
* - congress.jpg
- `US Congressional Records`_
- Public Domain
* - graph.pdf
- `Wikimedia: Pandas text analysis.png`_
- Public Domain
* - lichtenstein.pdf
- `Wikimedia: JPEG2000 Lichtenstein`_
- Creative Commons BY-SA 3.0
* - LinnSequencer.jpg, linn.pdf, linn.txt
- `Wikimedia: LinnSequencer`_
- Creative Commons BY-SA 3.0
Files generated for this project
================================
The following test resources were crafted specifically for this project, and can be used
under the terms of the license in LICENSE.rst.
.. list-table::
:widths: 20 20 60
:header-rows: 1
* - File
- Contributor
- Purpose
* - aspect.pdf
- @jbarlow83
- test image with 200 x 100 DPI resolution
* - blank.pdf
- @jbarlow83
- blank PDF
* - cmyk.pdf
- @jbarlow83
- a CMYK image created in Photoshop
* - enormous.pdf
- @jbarlow83
- very large PDF page
* - epson.pdf
- @lowesjam
- a linearized PDF containing some unusual indirect objects, created by an Epson printer; printout of a Wikipedia article (CC BY-SA)
* - francais.pdf
- @jbarlow83
- a page containing French accents (diacritics)
* - hugemono.pdf
- @jbarlow83
- large monochrome 35000x35000 image in JBIG2 encoding
* - invalid.pdf
- @jbarlow83
- a PDF file header followed by EOF marker
* - masks.pdf
- @supergrobi
- file containing explicit masks and a stencil mask drawn without a proper transformation matrix; printout of a German Wikipedia article (CC BY-SA)
* - missing_docinfo.pdf
- @jbarlow83
- PDF file with no /DocumentInfo section
Assemblies
==========
These test resources are assemblies from other previously mentioned files, released under the same license terms as their input files.
- cardinal.pdf (four cardinal directions, baked-in rotated copies of LinnSequencer.jpg)
- ccitt.pdf (LinnSequencer.jpg, converted to CCITT encoding)
- encrypted_algo4.pdf (congress.jpg, encrypted with algorithm 4 - not supported by PyPDF2)
- graph_ocred.pdf (from graph.pdf)
- jbig2.pdf (congress.jpg, converted to JBIG2 encoding)
- multipage.pdf (from several other files)
- palette.pdf (congress.jpg, converted to a 256-color palette)
- rotated_skew.pdf (a /Rotate'd and skewed document from LinnSequencer.jpg)
- skew.pdf (from LinnSequencer.jpg, skew simulated by adjusting the transformation matrix)
- skew-encrypted.pdf (skew.pdf with encryption - access supported by PyPDF2)
.. _`Wikimedia: LinnSequencer`: https://upload.wikimedia.org/wikipedia/en/b/b7/LinnSequencer_hardware_MIDI_sequencer_brochure_page_2_300dpi.jpg
.. _`Project Gutenberg`: https://www.gutenberg.org/files/76/76-h/76-h.htm#c2
.. _`US Congressional Records`: http://www.baxleystamps.com/litho/meiji/courts_1871.jpg
.. _`Wikimedia: Pandas text analysis.png`: https://en.wikipedia.org/wiki/File:Pandas_text_analysis.png
.. _`Wikimedia: JPEG2000 Lichtenstein`: https://en.wikipedia.org/wiki/JPEG_2000#/media/File:Jpeg2000_2-level_wavelet_transform-lichtenstein.png
.. _`Linux (Wikipedia Article)`: https://de.wikipedia.org/wiki/Linux
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%PDF-1.3
This is not a valid PDF file
%%EOF
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The LinnSequencer
32 Track MIDI Sequence Recorder
The LinnSequencer is a state—of—the-art composition and performance tool for the professional musician. It is
extremely powerful, yet amazingly simple to learn and use. Its many remarkable features include:
0 Operation is similar to multi-track tape recorder with PLAY, STOP, RECORD, FAST
FORWARD, REWIND, and LOCATE controls.
0 Each of the 100 sequences contains 32 simultaneous, polyphonic tracks. Each track may
be assigned to one of 16 MIDI channels. Simultaneously plays up to 16 polyphonic
synthesizers !
0 Ultra-fast 3 1/2 ” disk drive stores complex songs in seconds and holds over 110,000 notes
per disk!
0 One or all tracks may be TRANSPOSED at the touch of a key.
0 Exclusive real—time ERASE function makes editing FAST.
0 Exclusive REPEAT function automatically repeats any held notes at a pre-selected
rhythmic value.
0 TIMING CORRECTION works during playback and operates without chopping notes.
0 Optional SMPTE time code synchronization.
0 Optional remote control.
Recording a Sequence
To record a sequence, simply press RECORD and PLAY,
then play your MIDI keyboard in time to the Sequencers
click track. When the sequence loops back around to bar 1,
youll hear what you played—only all timing errors will be
corrected! (Timing correction may be adjusted 0r defeated).
Any additional notes played will be added into the track
—existing notes are not erased while recording!
FAST FORWARD, REWIND, and LOCATE controls
may be used at any time to quickly access any location in
your sequence for spot-recording. To overdub a new part,
select a different track and start recording—while you
record, the firsttrack will play in perfect sync (unless you
MUTE it, or SOLO another track). In this way, up to 32
tracks may be overdubbed! All MIDI effects are recorded
including pitch bend, modulation, velocity, aftertouch,
sustain pedal, and program changes!
Editing
To erase a wrong note, simply hold ERASE and press
the note to be erased just before it plays in the sequence-—
when played back, it will be gone. Notes may also be
added, erased, or changed using the SINGLE STEP func-
tion. To overdub notes at specific points within a sequence,
Additional Features
simply use LOCATE, FAST FORWARD, or REWIND to
find the desired bar number, then start recording.
The INSERT/ COPY function allows you to move bars
from one location to another—in the same sequence or a
different one. For example, you might insert a copy of the
first verse between the second chorus and the bridge.
DELETE BARS operates the same way to remove
unwanted sections.
Creating a Song
One way to create a song is to record each track all the
way through (up to 999 bars). Another way is to record
each basic section (verse, chorus, etc.) in individual
sequences, then use the CREATE SONG function to “chain”
them together. CREATE SONG will then automatically
copy all the parts into a new sequence. If desired, you can
even set the last few bars to repeat infinitely, for a fadeout.
Composition Without Compromise
The technology you use should never be so complex that
it interferes with the creative process. Thats precisely why
the LinnSequencer is designed to let you compose, record
and edit while devoting your undivided attention to your
music. See your Linn dealer today for a demonstration!
0 Simple, easy to learn operation—the 32 character LCD display clearly guides you through all operations. If needed, the
HELP button displays additional explanations.
0 Non-destructive recording—existing notes are not erased while recording.
0 Two FOOTSWIT CH INPUTS may be assigned to remotely control many of the commonly used functions, including
ERASE, REPEAT, PLAY/ STOP, or LOCATE.
0 Two TRIGGER OUTPUTS may be programmed to output pulses at any selected note value.
0 Will sync to standard LinnDrum or Linn 9000 sync tone.
0 Utilizes ultra high—speed, 8 MHZ 80186 16 bit computer internally for FAST operation.
0 TEMPO may be specified in BEATS-PER—MINUTE or FRAMES-PER—BEAT at 24, 25, or 30 frames per second,
(even drop frame!)
0 TEMPO may be entered numerically, adjustable in tenths of a Beat-Per-Minute increments, or by tapping quarter notes
on the TAP TEMPO button.
0 TEMPO CHANGES may be programmed into a sequence, with smooth transitions if desired.
0 Any TIME SIGNATURE may be used, and may be changed within a song.
EDI]
Linn Electronics, Inc.
18720 Oxnard Street, Tarzana, CA 91356
(818) 708-8131 TELEX #298949 LINN UR
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%PDF-1.3
%¿÷¢þ
1 0 obj
<< /Outlines 2 0 R /PageMode /UseNone /Pages 3 0 R /Type /Catalog >>
endobj
2 0 obj
<< /Count 0 /Type /Outlines >>
endobj
3 0 obj
<< /Count 1 /Kids [ 4 0 R ] /Type /Pages >>
endobj
4 0 obj
<< /Contents 5 0 R /MediaBox [ 0 0 595.2756 841.8898 ] /Parent 3 0 R /Resources << /Font 6 0 R /ProcSet [ /PDF /Text /ImageB /ImageC /ImageI ] >> /Rotate 0 /Trans << >> /Type /Page >>
endobj
5 0 obj
<< /Length 104 /Filter /FlateDecode >>
stream
xœ-Œ1
ƒ@{O1e´ˆûEI¢ Xþ è⢉»[¨÷Wƒ<˜bž`ÎÉŸÖÃ[ÉA
Ô!å³D;jMN/w*Æðª êyè4¯¸y™ú•É?Ñî~ [\dX¢ý¥èÍ®™… endstream
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6 0 obj
<< /F1 7 0 R >>
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<< /BaseFont /Helvetica /Encoding /WinAnsiEncoding /Name /F1 /Subtype /Type1 /Type /Font >>
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xref
0 8
0000000000 65535 f
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0000000145 00000 n
0000000204 00000 n
0000000403 00000 n
0000000578 00000 n
0000000609 00000 n
trailer << /Root 1 0 R /Size 8 /ID [<85bf6c3c41ed927eb43bdfdfff4c0cb5><0304c5f87e589cb7b06f6f52dc6e6707>] >>
startxref
716
%%EOF
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#!/usr/bin/env python3
import sys
def main():
print('qpdf dummy')
sys.exit(2)
if __name__ == '__main__':
main()
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#!/usr/bin/env python3
import sys
VERSION_STRING = '''tesseract 3.04.00
leptonica-1.72
libjpeg 8d : libpng 1.6.19 : libtiff 4.0.6 : zlib 1.2.5
SPOOFED: return error claiming image too big
'''
"""Simulates an error of Tesseract failing on attempts to process large images
"""
def main():
if sys.argv[1] == '--version':
print(VERSION_STRING, file=sys.stderr)
sys.exit(0)
elif sys.argv[1] == '--list-langs':
print('List of available languages (1):\neng', file=sys.stderr)
sys.exit(0)
elif sys.argv[-1] == 'hocr':
print("Image too large: (33830, 14959)\n"
"Error during processing.", file=sys.stderr)
sys.exit(1)
elif sys.argv[-1] == 'pdf':
print("Image too large: (33830, 14959)\n"
"Error during processing.", file=sys.stderr)
sys.exit(1)
elif sys.argv[-1] == 'stdout':
print("Image too large: (33830, 14959)\n"
"Error during processing.", file=sys.stderr)
sys.exit(1)
else:
print("Spoof doesn't understand arguments", file=sys.stderr)
print(sys.argv, file=sys.stderr)
sys.exit(1)
sys.exit(0)
if __name__ == '__main__':
main()
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#!/usr/bin/env python3
import sys
import os
import hashlib
import shutil
import subprocess
"""Cache output of tesseract to speed up test suite
The cache is keyed by a hash that includes the tesseract version, some of
the command line, and the binary dump of the input file. The output file,
stdout, and stderr are replicated on a cache hit.
Page orientation checks are also cached (-psm 0 stdout)
Errors and crashes are not cached.
Things not checked:
-changes to tesseract installation that don't affect --version
Will fail on Tesseract 3.02.02 in "hocr" mode because it doesn't produce
the incorrect file extension.
"""
CACHE_PATH = os.path.abspath(os.path.join(
os.path.dirname(__file__), '..', 'cache'))
def real_tesseract():
tess_args = ['tesseract'] + sys.argv[1:]
os.execvp("tesseract", tess_args)
return # Not reachable
def main():
operation = sys.argv[-1]
# For anything unexpected operation, defer to real tesseract binary
if operation != 'hocr' and operation != 'pdf' and operation != 'stdout':
real_tesseract()
return # Not reachable
try:
os.makedirs(CACHE_PATH)
except FileExistsError:
pass
m = hashlib.sha1()
tess_version = subprocess.check_output(
['tesseract', '--version'],
stderr=subprocess.STDOUT)
m.update(tess_version)
# Insert this source file into the hash function, to ensure that any
# changes to this file invalidate previous hashes
with open(__file__, 'rb') as f:
m.update(f.read())
m.update(operation.encode())
try:
lang = sys.argv[sys.argv.index('-l') + 1]
m.update(lang.encode())
except ValueError:
pass
try:
psm = sys.argv[sys.argv.index('-psm') + 1]
m.update(psm.encode())
except ValueError:
pass
if operation == 'stdout' and psm != '0':
real_tesseract()
return
if operation == 'stdout':
input_file = sys.argv[-2]
output_file = 'stdout'
else:
input_file = sys.argv[-3]
output_file = sys.argv[-2]
if operation == 'hocr':
output_file += '.hocr'
elif operation == 'pdf':
output_file += '.pdf'
with open(input_file, 'rb') as f:
m.update(f.read())
cache_name = os.path.join(CACHE_PATH, m.hexdigest())
print(cache_name)
if os.path.exists(cache_name):
# Cache hit
print("Tesseract cache hit", file=sys.stderr)
if operation != 'stdout':
shutil.copy(cache_name, output_file)
# Replicate output
with open(cache_name + '.stdout', 'rb') as f:
sys.stdout.buffer.write(f.read())
with open(cache_name + '.stderr', 'rb') as f:
sys.stderr.buffer.write(f.read())
sys.exit(0)
# Cache miss
print("Tesseract cache miss", file=sys.stderr)
# Call tesseract
p = subprocess.Popen(
['tesseract'] + sys.argv[1:],
stdout=subprocess.PIPE, stderr=subprocess.PIPE)
stdout, stderr = p.communicate()
if p.returncode != 0:
# Do not cache errors or crashes
print("Tesseract error", file=sys.stderr)
sys.stdout.buffer.write(stdout)
sys.stderr.buffer.write(stderr)
return p.returncode
with open(cache_name + '.stdout', 'wb') as f:
f.write(stdout)
with open(cache_name + '.stderr', 'wb') as f:
f.write(stderr)
sys.stdout.buffer.write(stdout)
sys.stderr.buffer.write(stderr)
# Insert file into cache
if output_file != 'stdout':
if os.path.exists(output_file):
shutil.copy(output_file, cache_name)
else:
print("Could not find output file", file=sys.stderr)
else:
open(cache_name, 'w').close()
if __name__ == '__main__':
main()
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#!/usr/bin/env python3
import sys
import os
import signal
VERSION_STRING = '''tesseract 3.04.00
leptonica-1.72
libjpeg 8d : libpng 1.6.19 : libtiff 4.0.6 : zlib 1.2.5
SPOOFED: CRASH ON OCR or -psm 0
'''
"""Simulates a Tesseract crash when asked to run OCR
It isn't strictly necessary to crash the process and that has unwanted
side effects like triggering core dumps or error reporting, logging and such.
It's enough to dump some text to stderr and return an error code.
Follows the POSIX(?) convention of returning 128 + signal number.
"""
def main():
if sys.argv[1] == '--version':
print(VERSION_STRING, file=sys.stderr)
sys.exit(0)
elif sys.argv[1] == '--list-langs':
print('List of available languages (1):\neng', file=sys.stderr)
sys.exit(0)
elif sys.argv[-1] == 'hocr':
print("KABOOM! Tesseract failed for some reason", file=sys.stderr)
sys.exit(128 + signal.SIGSEGV)
elif sys.argv[-1] == 'pdf':
print("KABOOM! Tesseract failed for some reason", file=sys.stderr)
sys.exit(128 + signal.SIGSEGV)
elif sys.argv[-1] == 'stdout':
print("libc++abi.dylib: terminating with uncaught exception of type "
"std::bad_alloc: std::bad_alloc", file=sys.stderr)
sys.exit(128 + signal.SIGABRT)
else:
print("Spoof doesn't understand arguments", file=sys.stderr)
print(sys.argv, file=sys.stderr)
sys.exit(1)
sys.exit(0)
if __name__ == '__main__':
main()
-84
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@@ -1,84 +0,0 @@
#!/usr/bin/env python3
import sys
import img2pdf
from PIL import Image
"""Tesseract no-op spoof
To quickly run tests where getting OCR output is not necessary.
In 'hocr' mode, create a .hocr file that specifies no text found.
In 'pdf' mode, convert the image to PDF using another program.
In orientation check mode, report the orientation is upright.
"""
VERSION_STRING = '''tesseract 3.04.00
leptonica-1.72
libjpeg 8d : libpng 1.6.19 : libtiff 4.0.6 : zlib 1.2.5
SPOOFED
'''
HOCR_TEMPLATE = '''<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE html PUBLIC "-//W3C//DTD XHTML 1.0 Transitional//EN"
"http://www.w3.org/TR/xhtml1/DTD/xhtml1-transitional.dtd">
<html xmlns="http://www.w3.org/1999/xhtml" xml:lang="en" lang="en">
<head>
<title></title>
<meta http-equiv="Content-Type" content="text/html; charset=utf-8" />
<meta name='ocr-system' content='tesseract 3.02.02' />
<meta name='ocr-capabilities' content='ocr_page ocr_carea ocr_par ocr_line ocrx_word'/>
</head>
<body>
<div class='ocr_page' id='page_1' title='image "x.tif"; bbox 0 0 {0} {1}; ppageno 0'>
<div class='ocr_carea' id='block_1_1' title="bbox 0 1 {0} {1}">
<p class='ocr_par' dir='ltr' id='par_1' title="bbox 0 1 {0} {1}">
<span class='ocr_line' id='line_1' title="bbox 0 1 {0} {1}"><span class='ocrx_word' id='word_1' title="bbox 0 1 {0} {1}"> </span>
</span>
</p>
</div>
</div>
</body>
</html>'''
def main():
if sys.argv[1] == '--version':
print(VERSION_STRING, file=sys.stderr)
sys.exit(0)
elif sys.argv[1] == '--list-langs':
print('List of available languages (1):\neng', file=sys.stderr)
sys.exit(0)
elif sys.argv[-1] == 'hocr':
inputf = sys.argv[-3]
output = sys.argv[-2]
with Image.open(inputf) as im, \
open(output + '.hocr', 'w', encoding='utf-8') as f:
w, h = im.size
f.write(HOCR_TEMPLATE.format(str(w), str(h)))
elif sys.argv[-1] == 'pdf':
inputf = sys.argv[-3]
output = sys.argv[-2]
pdf_bytes = img2pdf.convert([inputf], dpi=300)
with open(output + '.pdf', 'wb') as f:
f.write(pdf_bytes)
elif sys.argv[-1] == 'stdout':
inputf = sys.argv[-2]
print("""Orientation: 0
Orientation in degrees: 0
Orientation confidence: 100.00
Script: 1
Script confidence: 100.00""", file=sys.stderr)
else:
print("Spoof doesn't understand arguments", file=sys.stderr)
print(sys.argv, file=sys.stderr)
sys.exit(1)
sys.exit(0)
if __name__ == '__main__':
main()
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@@ -1,14 +0,0 @@
#!/usr/bin/env python3
import sys
def main():
if sys.argv[1] == '--version':
print('0.5')
sys.exit(0)
print("Only supports --version")
sys.exit(1)
if __name__ == '__main__':
main()
-61
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@@ -1,61 +0,0 @@
#!/usr/bin/env python3
# © 2015 James R. Barlow: github.com/jbarlow83
from ocrmypdf import hocrtransform
from ocrmypdf.tesseract import HOCR_TEMPLATE
from reportlab.pdfgen.canvas import Canvas
from PIL import Image
from tempfile import NamedTemporaryFile
from contextlib import suppress
import os
import shutil
import pytest
import img2pdf
import pytest
import sys
if sys.version_info.major < 3:
print("Requires Python 3.4+")
sys.exit(1)
TESTS_ROOT = os.path.abspath(os.path.dirname(__file__))
SPOOF_PATH = os.path.join(TESTS_ROOT, 'spoof')
PROJECT_ROOT = os.path.dirname(TESTS_ROOT)
OCRMYPDF = os.path.join(PROJECT_ROOT, 'OCRmyPDF.sh')
TEST_RESOURCES = os.path.join(PROJECT_ROOT, 'tests', 'resources')
TEST_OUTPUT = os.environ.get(
'OCRMYPDF_TEST_OUTPUT',
default=os.path.join(PROJECT_ROOT, 'tests', 'output', 'hocrtransform'))
def setup_module():
with suppress(FileNotFoundError):
shutil.rmtree(TEST_OUTPUT)
with suppress(FileExistsError):
os.makedirs(TEST_OUTPUT)
with open(_make_output('blank.hocr'), 'w') as f:
f.write(HOCR_TEMPLATE)
def _make_input(input_basename):
return os.path.join(TEST_RESOURCES, input_basename)
def _make_output(output_basename):
return os.path.join(TEST_OUTPUT, output_basename)
def test_mono_image():
im = Image.new('1', (8, 8), 0)
for n in range(8):
im.putpixel((n, n), 1)
im.save(_make_output('mono.tif'), format='TIFF')
hocr = hocrtransform.HocrTransform(_make_output('blank.hocr'), 300)
hocr.to_pdf(_make_output('mono.pdf'), imageFileName=_make_output('mono.tif'))
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@@ -1,724 +0,0 @@
#!/usr/bin/env python3
# © 2015 James R. Barlow: github.com/jbarlow83
from __future__ import print_function
from subprocess import Popen, PIPE, check_output, check_call, DEVNULL
import os
import shutil
from contextlib import suppress
import sys
import pytest
from ocrmypdf.pageinfo import pdf_get_all_pageinfo
import PyPDF2 as pypdf
from ocrmypdf import ExitCode
from ocrmypdf import leptonica
from ocrmypdf.pdfa import file_claims_pdfa
import platform
if sys.version_info.major < 3:
print("Requires Python 3.4+")
sys.exit(1)
TESTS_ROOT = os.path.abspath(os.path.dirname(__file__))
SPOOF_PATH = os.path.join(TESTS_ROOT, 'spoof')
PROJECT_ROOT = os.path.dirname(TESTS_ROOT)
TEST_RESOURCES = os.path.join(PROJECT_ROOT, 'tests', 'resources')
TEST_OUTPUT = os.environ.get(
'OCRMYPDF_TEST_OUTPUT',
default=os.path.join(PROJECT_ROOT, 'tests', 'output', 'main'))
OCRMYPDF = [sys.executable, '-m', 'ocrmypdf']
def running_in_docker():
# Docker creates a file named /.dockerinit
return os.path.exists('/.dockerinit')
def is_linux():
return platform.system() == 'Linux'
def setup_module():
with suppress(FileNotFoundError):
shutil.rmtree(TEST_OUTPUT)
with suppress(FileExistsError):
os.makedirs(TEST_OUTPUT)
def _infile(input_basename):
return os.path.join(TEST_RESOURCES, input_basename)
def _outfile(output_basename):
return os.path.join(TEST_OUTPUT, os.path.basename(output_basename))
def check_ocrmypdf(input_basename, output_basename, *args, env=None):
"Run ocrmypdf and confirmed that a valid file was created"
input_file = _infile(input_basename)
output_file = _outfile(output_basename)
p, out, err = run_ocrmypdf(input_basename, output_basename, *args, env=env)
if p.returncode != 0:
print('stdout\n======')
print(out)
print('stderr\n======')
print(err)
assert p.returncode == 0
assert os.path.exists(output_file), "Output file not created"
assert os.stat(output_file).st_size > 100, "PDF too small or empty"
assert out == "", \
"The following was written to stdout and should not have been: \n" + \
"<stdout>\n" + out + "\n</stdout>"
return output_file
def run_ocrmypdf(input_basename, output_basename, *args, env=None):
"Run ocrmypdf and let caller deal with results"
input_file = _infile(input_basename)
output_file = _outfile(output_basename)
if env is None:
env = os.environ
p_args = OCRMYPDF + list(args) + [input_file, output_file]
p = Popen(
p_args, close_fds=True, stdout=PIPE, stderr=PIPE,
universal_newlines=True, env=env)
out, err = p.communicate()
return p, out, err
def spoof(replace_program, with_spoof):
"""Modify environment variables to override subprocess executables
Before running any executable, ocrmypdf checks the environment variable
OCRMYPDF_PROGRAMNAME to override default program name/location, e.g.
OCRMYPDF_GS redirects from the system path Ghostscript ("gs") to elsewhere.
"""
env = os.environ.copy()
spoofer = os.path.join(SPOOF_PATH, with_spoof)
if not os.access(spoofer, os.X_OK):
os.chmod(spoofer, 0o755)
env['OCRMYPDF_' + replace_program.upper()] = spoofer
return env
@pytest.fixture
def spoof_tesseract_noop():
return spoof('tesseract', 'tesseract_noop.py')
@pytest.fixture
def spoof_tesseract_cache():
if running_in_docker():
return os.environ.copy()
return spoof('tesseract', "tesseract_cache.py")
@pytest.fixture
def spoof_tesseract_crash():
return spoof('tesseract', 'tesseract_crash.py')
@pytest.fixture
def spoof_tesseract_big_image_error():
return spoof('tesseract', 'tesseract_big_image_error.py')
def test_quick(spoof_tesseract_cache):
check_ocrmypdf('ccitt.pdf', 'test_quick.pdf', env=spoof_tesseract_cache)
def test_deskew(spoof_tesseract_noop):
# Run with deskew
deskewed_pdf = check_ocrmypdf(
'skew.pdf', 'test_deskew.pdf', '-d', '-v', '1', env=spoof_tesseract_noop)
# Now render as an image again and use Leptonica to find the skew angle
# to confirm that it was deskewed
from ocrmypdf.ghostscript import rasterize_pdf
import logging
log = logging.getLogger()
deskewed_png = _outfile('deskewed.png')
rasterize_pdf(
deskewed_pdf,
deskewed_png,
xres=150,
yres=150,
raster_device='pngmono',
log=log)
from ocrmypdf.leptonica import Pix
pix = Pix.read(deskewed_png)
skew_angle, skew_confidence = pix.find_skew()
print(skew_angle)
assert -0.5 < skew_angle < 0.5, "Deskewing failed"
def test_clean(spoof_tesseract_noop):
check_ocrmypdf('skew.pdf', 'test_clean.pdf', '-c',
env=spoof_tesseract_noop)
def test_remove_background(spoof_tesseract_noop):
from PIL import Image
# Ensure the input image does not contain pure white/black
im = Image.open(_infile('congress.jpg'))
assert im.getextrema() != ((0, 255), (0, 255), (0, 255))
output_pdf = check_ocrmypdf(
'congress.jpg', 'test_remove_bg.pdf', '--remove-background',
'--image-dpi', '150',
env=spoof_tesseract_noop)
from ocrmypdf.ghostscript import rasterize_pdf
import logging
log = logging.getLogger()
output_png = _outfile('remove_bg.png')
rasterize_pdf(
output_pdf,
output_png,
xres=100,
yres=100,
raster_device='png16m',
log=log)
# The output image should contain pure white and black
im = Image.open(output_png)
assert im.getextrema() == ((0, 255), (0, 255), (0, 255))
# This will run 5 * 2 * 2 = 20 test cases
@pytest.mark.parametrize(
"pdf",
['palette.pdf', 'cmyk.pdf', 'ccitt.pdf', 'jbig2.pdf', 'lichtenstein.pdf'])
@pytest.mark.parametrize("renderer", ['hocr', 'tesseract'])
@pytest.mark.parametrize("output_type", ['pdf', 'pdfa'])
def test_exotic_image(spoof_tesseract_cache, pdf, renderer, output_type):
check_ocrmypdf(
pdf,
'test_{0}_{1}.pdf'.format(pdf, renderer),
'-dc',
'-v', '1',
'--output-type', output_type,
'--pdf-renderer', renderer, env=spoof_tesseract_cache)
@pytest.mark.parametrize("output_type", [
'pdfa', 'pdf'
])
def test_preserve_metadata(spoof_tesseract_noop, output_type):
pdf_before = pypdf.PdfFileReader(_infile('graph.pdf'))
output = check_ocrmypdf('graph.pdf', 'test_metadata_preserve.pdf',
'--output-type', output_type,
env=spoof_tesseract_noop)
pdf_after = pypdf.PdfFileReader(output)
for key in ('/Title', '/Author'):
assert pdf_before.documentInfo[key] == pdf_after.documentInfo[key]
pdfa_info = file_claims_pdfa(output)
assert pdfa_info['output'] == output_type
@pytest.mark.skipif(
is_linux() and not running_in_docker(),
reason="likely to fail if Linux locale is not configured correctly")
@pytest.mark.parametrize("output_type", [
'pdfa', 'pdf'
])
def test_override_metadata(spoof_tesseract_noop, output_type):
input_file = _infile('c02-22.pdf')
output_file = _outfile('test_override_metadata.pdf')
german = 'Du siehst den Wald vor lauter Bäumen nicht.'
chinese = '孔子'
high_unicode = 'U+1030C is: 𐌌'
p, out, err = run_ocrmypdf(
input_file, output_file,
'--title', german,
'--author', chinese,
'--subject', high_unicode,
'--output-type', output_type,
env=spoof_tesseract_noop)
assert p.returncode == ExitCode.ok
pdf = output_file
out_pdfinfo = check_output(['pdfinfo', pdf], universal_newlines=True)
lines_pdfinfo = out_pdfinfo.splitlines()
pdfinfo = {}
for line in lines_pdfinfo:
k, v = line.strip().split(':', maxsplit=1)
pdfinfo[k.strip()] = v.strip()
assert pdfinfo['Title'] == german
assert pdfinfo['Author'] == chinese
assert pdfinfo['Subject'] == high_unicode
assert pdfinfo.get('Keywords', '') == ''
pdfa_info = file_claims_pdfa(output_file)
assert pdfa_info['output'] == output_type
@pytest.mark.parametrize('renderer', [
'hocr',
'tesseract',
])
def test_oversample(spoof_tesseract_cache, renderer):
oversampled_pdf = check_ocrmypdf(
'skew.pdf', 'test_oversample_%s.pdf' % renderer, '--oversample', '350',
'-f',
'--pdf-renderer', renderer, env=spoof_tesseract_cache)
pdfinfo = pdf_get_all_pageinfo(oversampled_pdf)
print(pdfinfo[0]['xres'])
assert abs(pdfinfo[0]['xres'] - 350) < 1
def test_repeat_ocr():
p, _, _ = run_ocrmypdf('graph_ocred.pdf', 'wontwork.pdf')
assert p.returncode != 0
def test_force_ocr(spoof_tesseract_cache):
out = check_ocrmypdf('graph_ocred.pdf', 'test_force.pdf', '-f',
env=spoof_tesseract_cache)
pdfinfo = pdf_get_all_pageinfo(out)
assert pdfinfo[0]['has_text']
def test_skip_ocr(spoof_tesseract_cache):
check_ocrmypdf('graph_ocred.pdf', 'test_skip.pdf', '-s',
env=spoof_tesseract_cache)
def test_argsfile(spoof_tesseract_noop):
with open(_outfile('test_argsfile.txt'), 'w') as argsfile:
print('--title', 'ArgsFile Test', '--author', 'Test Cases',
sep='\n', end='\n', file=argsfile)
check_ocrmypdf('graph.pdf', 'test_argsfile.pdf',
'@' + _outfile('test_argsfile.txt'),
env=spoof_tesseract_noop)
def check_monochrome_correlation(
reference_pdf, reference_pageno, test_pdf, test_pageno):
import ocrmypdf.ghostscript as ghostscript
import logging
gslog = logging.getLogger()
reference_png = _outfile('{}.ref{:04d}.png'.format(
reference_pdf, reference_pageno))
test_png = _outfile('{}.test{:04d}.png'.format(
test_pdf, test_pageno))
def rasterize(pdf, pageno, png):
if os.path.exists(png):
print(png)
return
ghostscript.rasterize_pdf(
pdf,
png,
xres=100, yres=100,
raster_device='pngmono', log=gslog, pageno=pageno)
rasterize(reference_pdf, reference_pageno, reference_png)
rasterize(test_pdf, test_pageno, test_png)
pix_ref = leptonica.Pix.read(reference_png)
pix_test = leptonica.Pix.read(test_png)
return leptonica.Pix.correlation_binary(pix_ref, pix_test)
def test_monochrome_correlation():
# Verify leptonica: check that an incorrect rotated image has poor
# correlation with reference
corr = check_monochrome_correlation(
reference_pdf=_infile('cardinal.pdf'),
reference_pageno=1, # north facing page
test_pdf=_infile('cardinal.pdf'),
test_pageno=3, # south facing page
)
assert corr < 0.10
corr = check_monochrome_correlation(
reference_pdf=_infile('cardinal.pdf'),
reference_pageno=2,
test_pdf=_infile('cardinal.pdf'),
test_pageno=2,
)
assert corr > 0.90
@pytest.mark.parametrize('renderer', [
'hocr',
'tesseract',
])
def test_autorotate(spoof_tesseract_cache, renderer):
# cardinal.pdf contains four copies of an image rotated in each cardinal
# direction - these ones are "burned in" not tagged with /Rotate
out = check_ocrmypdf('cardinal.pdf', 'test_autorotate_%s.pdf' % renderer,
'-r', '-v', '1', env=spoof_tesseract_cache)
for n in range(1, 4+1):
correlation = check_monochrome_correlation(
reference_pdf=_infile('cardinal.pdf'),
reference_pageno=1,
test_pdf=out,
test_pageno=n)
assert correlation > 0.80
def test_autorotate_threshold_low(spoof_tesseract_cache):
out = check_ocrmypdf('cardinal.pdf', 'test_autorotate_threshold_low.pdf',
'--rotate-pages-threshold', '1',
'-r', '-v', '1', env=spoof_tesseract_cache)
# Low threshold -> always rotate -> expect high correlation between
# reference page and test page
correlation = check_monochrome_correlation(
reference_pdf=_infile('cardinal.pdf'),
reference_pageno=1,
test_pdf=out,
test_pageno=3)
assert correlation > 0.80
def test_autorotate_threshold_high(spoof_tesseract_cache):
out = check_ocrmypdf('cardinal.pdf', 'test_autorotate_threshold_high.pdf',
'--rotate-pages-threshold', '99',
'-r', '-v', '1', env=spoof_tesseract_cache)
# High threshold -> never rotate -> expect low correlation since
# test page will not be rotated
correlation = check_monochrome_correlation(
reference_pdf=_infile('cardinal.pdf'),
reference_pageno=1,
test_pdf=out,
test_pageno=3)
assert correlation < 0.10
@pytest.mark.parametrize('renderer', [
'hocr',
'tesseract',
])
def test_ocr_timeout(renderer):
out = check_ocrmypdf('skew.pdf', 'test_timeout_%s.pdf' % renderer,
'--tesseract-timeout', '1.0')
pdfinfo = pdf_get_all_pageinfo(out)
assert not pdfinfo[0]['has_text']
def test_skip_big(spoof_tesseract_cache):
out = check_ocrmypdf('enormous.pdf', 'test_enormous.pdf',
'--skip-big', '10', env=spoof_tesseract_cache)
pdfinfo = pdf_get_all_pageinfo(out)
assert not pdfinfo[0]['has_text']
@pytest.mark.parametrize('renderer', ['hocr', 'tesseract'])
@pytest.mark.parametrize('output_type', ['pdf', 'pdfa'])
def test_maximum_options(spoof_tesseract_cache, renderer, output_type):
check_ocrmypdf(
'multipage.pdf', 'test_multipage%s.pdf' % renderer,
'-d', '-c', '-i', '-g', '-f', '-k', '--oversample', '300',
'--remove-background',
'--skip-big', '10', '--title', 'Too Many Weird Files',
'--author', 'py.test', '--pdf-renderer', renderer,
'--output-type', output_type,
env=spoof_tesseract_cache)
def test_tesseract_missing_tessdata():
env = os.environ.copy()
env['TESSDATA_PREFIX'] = '/tmp'
p, _, err = run_ocrmypdf(
'graph_ocred.pdf', 'not_a_pdfa.pdf', '-v', '1', '--skip-text', env=env)
assert p.returncode == ExitCode.missing_dependency, err
def test_invalid_input_pdf():
p, out, err = run_ocrmypdf(
'invalid.pdf', 'wont_be_created.pdf')
assert p.returncode == ExitCode.input_file, err
def test_blank_input_pdf():
p, out, err = run_ocrmypdf(
'blank.pdf', 'still_blank.pdf')
assert p.returncode == ExitCode.ok
def test_force_ocr_on_pdf_with_no_images(spoof_tesseract_crash):
# As a correctness test, make sure that --force-ocr on a PDF with no
# content still triggers tesseract. If tesseract crashes, then it was
# called.
p, _, err = run_ocrmypdf(
'blank.pdf', 'wont_be_created.pdf', '--force-ocr',
env=spoof_tesseract_crash)
assert p.returncode == ExitCode.child_process_error, err
assert not os.path.exists(_outfile('wontwork.pdf'))
def test_french(spoof_tesseract_cache):
p, out, err = run_ocrmypdf(
'francais.pdf', 'francais.pdf', '-l', 'fra', env=spoof_tesseract_cache)
assert p.returncode == ExitCode.ok, \
"This test may fail if Tesseract language packs are missing"
def test_klingon():
p, out, err = run_ocrmypdf(
'francais.pdf', 'francais.pdf', '-l', 'klz')
assert p.returncode == ExitCode.bad_args
def test_missing_docinfo(spoof_tesseract_noop):
p, out, err = run_ocrmypdf(
'missing_docinfo.pdf', 'missing_docinfo.pdf', '-l', 'eng', '-c',
env=spoof_tesseract_noop)
assert p.returncode == ExitCode.ok, err
@pytest.mark.skipif(running_in_docker(),
reason="writes to tests/resources")
def test_uppercase_extension(spoof_tesseract_noop):
shutil.copy(_infile("skew.pdf"), _infile("UPPERCASE.PDF"))
try:
check_ocrmypdf("UPPERCASE.PDF", "UPPERCASE_OUT.PDF",
env=spoof_tesseract_noop)
finally:
os.unlink(_infile("UPPERCASE.PDF"))
def test_input_file_not_found():
input_file = "does not exist.pdf"
p, out, err = run_ocrmypdf(
_infile(input_file),
_outfile("will not happen.pdf"))
assert p.returncode == ExitCode.input_file
assert (input_file in out or input_file in err)
def test_input_file_not_a_pdf():
input_file = __file__ # Try to OCR this file
p, out, err = run_ocrmypdf(
_infile(input_file),
_outfile("will not happen.pdf"))
assert p.returncode == ExitCode.input_file
assert (input_file in out or input_file in err)
def test_qpdf_repair_fails():
env = os.environ.copy()
env['OCRMYPDF_QPDF'] = os.path.abspath('./spoof/qpdf_dummy_return2.py')
p, out, err = run_ocrmypdf(
'-v', '1',
'c02-22.pdf', 'wont_be_created.pdf', env=env)
print(out)
print(err)
assert p.returncode == ExitCode.input_file
def test_encrypted():
p, out, err = run_ocrmypdf('skew-encrypted.pdf', 'wont_be_created.pdf')
assert p.returncode == ExitCode.input_file
assert out.find('password')
@pytest.mark.parametrize('renderer', [
'hocr',
'tesseract',
])
def test_pagesegmode(renderer, spoof_tesseract_cache):
check_ocrmypdf(
'skew.pdf', 'test_psm_%s.pdf' % renderer,
'--tesseract-pagesegmode', '7',
'-v', '1',
'--pdf-renderer', renderer, env=spoof_tesseract_cache)
@pytest.mark.parametrize('renderer', [
'hocr',
'tesseract',
])
def test_tesseract_crash(renderer, spoof_tesseract_crash):
p, out, err = run_ocrmypdf(
'ccitt.pdf', 'wontwork.pdf', '-v', '1',
'--pdf-renderer', renderer, env=spoof_tesseract_crash)
assert p.returncode == ExitCode.child_process_error
assert not os.path.exists(_outfile('wontwork.pdf'))
assert "ERROR" in err
def test_tesseract_crash_autorotate(spoof_tesseract_crash):
p, out, err = run_ocrmypdf(
'ccitt.pdf', 'wontwork.pdf',
'-r', env=spoof_tesseract_crash)
assert p.returncode == ExitCode.child_process_error
assert not os.path.exists(_outfile('wontwork.pdf'))
assert "ERROR" in err
print(out)
print(err)
@pytest.mark.parametrize('renderer', [
'hocr',
'tesseract',
])
def test_tesseract_image_too_big(renderer, spoof_tesseract_big_image_error):
check_ocrmypdf(
'hugemono.pdf', 'hugemono_%s.pdf' % renderer, '-r',
'--pdf-renderer', renderer, env=spoof_tesseract_big_image_error)
def test_no_unpaper():
env = os.environ.copy()
env['OCRMYPDF_UNPAPER'] = os.path.abspath('./spoof/no_unpaper_here.py')
p, out, err = run_ocrmypdf(
'c02-22.pdf', 'wont_be_created.pdf', '--clean', env=env)
assert p.returncode == ExitCode.missing_dependency
def test_old_unpaper():
env = os.environ.copy()
env['OCRMYPDF_UNPAPER'] = os.path.abspath('./spoof/unpaper_oldversion.py')
p, out, err = run_ocrmypdf(
'c02-22.pdf', 'wont_be_created.pdf', '--clean', env=env)
assert p.returncode == ExitCode.missing_dependency
def test_algo4():
p, _, _ = run_ocrmypdf('encrypted_algo4.pdf', 'wontwork.pdf')
assert p.returncode == ExitCode.encrypted_pdf
@pytest.mark.parametrize('renderer', [
'hocr']) # tesseract cannot pass this test - resamples to square image
def test_non_square_resolution(renderer, spoof_tesseract_cache):
# Confirm input image is non-square resolution
in_pageinfo = pdf_get_all_pageinfo(_infile('aspect.pdf'))
assert in_pageinfo[0]['xres'] != in_pageinfo[0]['yres']
out = 'aspect_%s.pdf' % renderer
check_ocrmypdf(
'aspect.pdf', out,
'--pdf-renderer', renderer, env=spoof_tesseract_cache)
out_pageinfo = pdf_get_all_pageinfo(_outfile(out))
# Confirm resolution was kept the same
assert in_pageinfo[0]['xres'] == out_pageinfo[0]['xres']
assert in_pageinfo[0]['yres'] == out_pageinfo[0]['yres']
def test_image_to_pdf(spoof_tesseract_noop):
check_ocrmypdf(
'LinnSequencer.jpg', 'image_to_pdf.pdf', '--image-dpi', '200',
env=spoof_tesseract_noop)
def test_jbig2_passthrough(spoof_tesseract_cache):
out = check_ocrmypdf(
'jbig2.pdf', 'jbig2_out.pdf',
'--output-type', 'pdf',
'--pdf-renderer', 'hocr',
env=spoof_tesseract_cache)
out_pageinfo = pdf_get_all_pageinfo(out)
assert out_pageinfo[0]['images'][0]['enc'] == 'jbig2'
def test_stdin(spoof_tesseract_noop):
input_file = _infile('francais.pdf')
output_file = _outfile('test_stdin.pdf')
# Runs: ocrmypdf - output.pdf < testfile.pdf
with open(input_file, 'rb') as input_stream:
p_args = OCRMYPDF + ['-', output_file]
p = Popen(
p_args, close_fds=True, stdout=PIPE, stderr=PIPE,
stdin=input_stream, env=spoof_tesseract_noop)
out, err = p.communicate()
assert p.returncode == ExitCode.ok
def test_stdout(spoof_tesseract_noop):
input_file = _infile('francais.pdf')
output_file = _outfile('test_stdout.pdf')
# Runs: ocrmypdf francais.pdf - > test_stdout.pdf
with open(output_file, 'wb') as output_stream:
p_args = OCRMYPDF + [input_file, '-']
p = Popen(
p_args, close_fds=True, stdout=output_stream, stderr=PIPE,
stdin=DEVNULL, env=spoof_tesseract_noop)
out, err = p.communicate()
assert p.returncode == ExitCode.ok
from ocrmypdf import qpdf
assert qpdf.check(output_file, log=None)
def test_masks(spoof_tesseract_noop):
check_ocrmypdf('masks.pdf', 'test_masks.pdf', env=spoof_tesseract_noop)
def test_linearized_pdf_and_indirect_object(spoof_tesseract_noop):
check_ocrmypdf(
'epson.pdf', 'test_epson.pdf',
env=spoof_tesseract_noop)
def test_rotated_skew_timeout():
"""This document contains an image that is rotated 90 into place with a
/Rotate tag and intentionally skewed by altering the transformation matrix.
This tests for a bug where the combinatino of preprocessing and a tesseract
timeout produced a page whose dimensions did not match the original's.
"""
input_file = _infile('rotated_skew.pdf')
in_pageinfo = pdf_get_all_pageinfo(input_file)[0]
assert in_pageinfo['height_pixels'] < in_pageinfo['width_pixels'], \
"Expected the input page to be landscape"
assert in_pageinfo['rotate'] == 90, "Expected a rotated page"
out = check_ocrmypdf(
'rotated_skew.pdf', 'test_rotated_skew.pdf',
'--pdf-renderer', 'hocr',
'--deskew', '--tesseract-timeout', '0')
out_pageinfo = pdf_get_all_pageinfo(out)[0]
assert out_pageinfo['height_pixels'] > out_pageinfo['width_pixels'], \
"Expected the output page to be portrait"
assert out_pageinfo['rotate'] == 0, \
"Expected no page rotation for output"
assert in_pageinfo['width_pixels'] == out_pageinfo['height_pixels'] and \
in_pageinfo['height_pixels'] == out_pageinfo['width_pixels'], \
"Expected page rotation to be baked in"
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@@ -1,134 +0,0 @@
#!/usr/bin/env python3
# © 2015 James R. Barlow: github.com/jbarlow83
from ocrmypdf import pageinfo
from reportlab.pdfgen.canvas import Canvas
from PIL import Image
from tempfile import NamedTemporaryFile
from contextlib import suppress
import os
import shutil
import pytest
import img2pdf
import pytest
import sys
if sys.version_info.major < 3:
print("Requires Python 3.4+")
sys.exit(1)
TESTS_ROOT = os.path.abspath(os.path.dirname(__file__))
SPOOF_PATH = os.path.join(TESTS_ROOT, 'spoof')
PROJECT_ROOT = os.path.dirname(TESTS_ROOT)
OCRMYPDF = os.path.join(PROJECT_ROOT, 'OCRmyPDF.sh')
TEST_RESOURCES = os.path.join(PROJECT_ROOT, 'tests', 'resources')
TEST_OUTPUT = os.environ.get(
'OCRMYPDF_TEST_OUTPUT',
default=os.path.join(PROJECT_ROOT, 'tests', 'output', 'pageinfo'))
def setup_module():
with suppress(FileNotFoundError):
shutil.rmtree(TEST_OUTPUT)
with suppress(FileExistsError):
os.makedirs(TEST_OUTPUT)
def _make_input(input_basename):
return os.path.join(TEST_RESOURCES, input_basename)
def _make_output(output_basename):
return os.path.join(TEST_OUTPUT, output_basename)
def test_single_page_text():
filename = os.path.join(TEST_OUTPUT, 'text.pdf')
pdf = Canvas(filename, pagesize=(8*72, 6*72))
text = pdf.beginText()
text.setFont('Helvetica', 12)
text.setTextOrigin(1*72, 3*72)
text.textLine("Methink'st thou art a general offence and every"
" man should beat thee.")
pdf.drawText(text)
pdf.showPage()
pdf.save()
pdfinfo = pageinfo.pdf_get_all_pageinfo(filename)
assert len(pdfinfo) == 1
page = pdfinfo[0]
assert page['has_text']
assert len(page['images']) == 0
def test_single_page_image():
filename = os.path.join(TEST_OUTPUT, 'image-mono.pdf')
with NamedTemporaryFile(mode='wb+', suffix='.png') as im_tmp:
im = Image.new('1', (8, 8), 0)
for n in range(8):
im.putpixel((n, n), 1)
im.save(im_tmp.name, format='PNG')
imgsize = ((img2pdf.ImgSize.dpi, 8), (img2pdf.ImgSize.dpi, 8))
layout_fun = img2pdf.get_layout_fun(None, imgsize, None, None, None)
im_tmp.seek(0)
im_bytes = im_tmp.read()
pdf_bytes = img2pdf.convert(
im_bytes, producer="img2pdf", with_pdfrw=False,
layout_fun=layout_fun)
with open(filename, 'wb') as pdf:
pdf.write(pdf_bytes)
pdfinfo = pageinfo.pdf_get_all_pageinfo(filename)
assert len(pdfinfo) == 1
page = pdfinfo[0]
assert not page['has_text']
assert len(page['images']) == 1
pdfimage = page['images'][0]
assert pdfimage['width'] == 8
assert pdfimage['color'] == 'gray'
# DPI in a 1"x1" is the image width
assert abs(pdfimage['dpi_w'] - 8) < 1e-5
assert abs(pdfimage['dpi_h'] - 8) < 1e-5
def test_single_page_inline_image():
filename = os.path.join(TEST_OUTPUT, 'image-mono-inline.pdf')
pdf = Canvas(filename, pagesize=(8*72, 6*72))
with NamedTemporaryFile() as im_tmp:
im = Image.new('1', (8, 8), 0)
for n in range(8):
im.putpixel((n, n), 1)
im.save(im_tmp.name, format='PNG')
# Draw image in a 72x72 pt or 1"x1" area
pdf.drawInlineImage(im_tmp.name, 0, 0, width=72, height=72)
pdf.showPage()
pdf.save()
pdfinfo = pageinfo.pdf_get_all_pageinfo(filename)
print(pdfinfo)
pdfimage = pdfinfo[0]['images'][0]
assert (pdfimage['dpi_w'] - 8) < 1e-5
assert pdfimage['color'] != '-'
assert pdfimage['width'] == 8
def test_jpeg():
filename = _make_input('c02-22.pdf')
pdfinfo = pageinfo.pdf_get_all_pageinfo(filename)
pdfimage = pdfinfo[0]['images'][0]
assert pdfimage['enc'] == 'jpeg'
assert (pdfimage['dpi_w'] - 150) < 1e-5