Wang–Müller line simplification algorithm in PostGIS
 
 
 
 
 
 
Go to file
Motiejus Jakštys 8ee777f958 Add license 2021-05-19 23:10:04 +03:00
.gitignore add .gitignore 2021-05-19 22:58:56 +03:00
COPYING Add license 2021-05-19 23:10:04 +03:00
Dockerfile clean up files 2021-05-19 22:57:50 +03:00
Makefile re-add missing tl to the makefile 2021-05-19 22:57:52 +03:00
README.md update README and docs 2021-05-19 23:09:05 +03:00
aggregate-rivers.sql also import GDR50 and GDR250 2021-05-19 22:57:51 +03:00
amalgamate1.png amalgamation 2021-05-19 22:57:48 +03:00
bib.bib acknowledgments 2021-05-19 22:57:51 +03:00
db support in-container make 2021-05-19 22:57:50 +03:00
extract-and-generate gentler remove 2021-05-19 22:57:48 +03:00
gdr2pgsql also import GDR50 and GDR250 2021-05-19 22:57:51 +03:00
in-container pre-warm matplotlib font cache 2021-05-19 22:57:50 +03:00
init.sql use smaller number of rivers during development 2021-05-19 22:57:49 +03:00
layer2img.py more consistent figure names 2021-05-19 22:57:52 +03:00
mj-msc.tex layout 2021-05-19 22:57:52 +03:00
notes.txt self-crossing bugfix 2021-05-19 22:57:47 +03:00
openmap-wm-bad.png test harness 2021-05-19 22:57:51 +03:00
openmap-wm-good.png test harness 2021-05-19 22:57:51 +03:00
rivers-10.sql update all rivers from the new data source 2021-05-19 22:57:51 +03:00
rivers-50.sql update all rivers from the new data source 2021-05-19 22:57:51 +03:00
rivers-250.sql update all rivers from the new data source 2021-05-19 22:57:51 +03:00
slides-2021-03-29.txt remove demo 2021-05-19 22:57:46 +03:00
test-rivers.sql update README and docs 2021-05-19 23:09:05 +03:00
test.sql fix remaining bugs. gone from debug mode. 2021-05-19 22:57:51 +03:00
vars.awk test harness 2021-05-19 22:57:51 +03:00
visuals.sql more consistent figure naming 2021-05-19 22:57:52 +03:00
vu.pdf add generated vu.pdf 2021-05-19 22:57:49 +03:00
wang125.png add wang125 2021-05-19 22:57:50 +03:00
wm.sql explain heuristic 2021-05-19 22:57:52 +03:00

README.md

WangMüller algorithm in PostGIS

This is WangMüller line generalization algorithm implementation in PostGIS. Following "Line generalization based on analysis of shape characteristics" by the same author, 1998.

Status

It mostly works. Read mj-msc-full.pdf for visual examples and possible gotchas.

Structure

There are be 2 deliverables:

  • wm.sql, the implementation.
  • paper mj-msc-full.pdf, a MSc thesis, explaining it.

It contains a few supporting files, notably:

  • tests.sql synthetic unit tests.
  • test-rivers.sql tests with real rivers.
  • Makefile glues everything together.
  • layer2img.py converts a PostGIS layer to an embeddable image.
  • aggregate-rivers.sql combines multiple river objects (linestrings or multilinestrings) to a single one.
  • init.sql initializes PostGIS database for running the tests.
  • rivers-*.sql are national dataset snapshots of rivers (Makefile contains code to update them).
  • ... and a few more files necessary to build the paper.

Running

make help lists the select commands for humans. As of writing:

# make help
mj-msc-full.pdf    Thesis for publishing
test               Unit tests (fast)
test-rivers        Rivers tests (slow)
clean              Clean the current working directory
clean-tables       Remove tables created during unit or rivers tests
help               Print this help message
wc                 Character and page count
refresh-rivers     Refresh rivers-*.sql from Open Street Maps

To execute the algorithm, run:

  • make test for tests with synthetic data.
  • make test-rivers for tests with real rivers. You may adjust the rivers and data source (e.g. use a different country instead of Lithuania) by changing the Makefile and the test files. Left as an exercise for the reader.

N.B. the make test-rivers fails (see test-rivers.sql), because with higher dhalfcircle values, the unionized river (salvis) is going on top of itself, making the resulting geometry invalid.

Building the paper (pdf)

# make -j$(nproc) mj-msc-full.pdf

mj-msc.tex results in mj-msc-full.pdf, which will be at some point published to this repo. It needs quite a few dependencies, including a functioning Docker environment, postgresql client, geopandas, pygments, osm2pgsql, poppler, and a "quite extensive" LaTeX installation. Tested on Debian 11.

Contributing

This repository is frozen and will not accept contributions. Please fork it. If fork has improved the algorithm substantially, feel free to ping me, I will link to it in this README.

License

GPLv2 or later.