ADDED new rectangle graphics tool for PCBNew and Footprint Editor.
Also adds rectangle tool to both Footprint Editor and PCBNew Place
menus.
The Aux Origin tool can come back once we have multi-select toobar
buttons.
Also collapses an unnecessary level out of the auxOrigin and gridOrigin
settings.
Fixes https://gitlab.com/kicad/code/kicad/issues/2246
There were a lot of plotters, exporters, etc. that were rolling their
own implementations.
This also introduces a lazily-built set of SHAPE objects for doing
collision detection and some forms of rendering (and later DRC).
Previously, all overlapping polygons (pads and min thickness areas to remove) were
merged.
Drawback: pads attributes are lost. In Gerber this is annoying.
Now the pads are plot as flashed or Regions items, and min thickness areas are added
but shapes are not merged and keep their attributes.
CHANGED: Settings are now stored in versioned sub-directories
ADDED: First-run dialog for migrating settings from a previous version
CHANGED: Settings are now stored as JSON files instead of wxConfig-style INI files
CHANGED: Color settings are now all stored in a separate settings file
CHANGED: The symbol editor and footprint editor now have their own settings files
CHANGED: Color settings are no longer exposed through BOARD object
CHANGED: Page layout editor now uses Eeschema's color scheme
Settings are now managed through a central SETTINGS_MANAGER held by PGM_BASE.
Existing settings will be migrated from the wxConfig format on first run of each application.
Per-application settings are now stored in one class for each application.
* Split up the thirdparty code into the thirdparty folder (#3637)
* Create a new kimath static library containing all the math functions
This is part of cleaning the build system for #1906.
The fracture routine introduces degenerate points that are healed by the
Clipper Polygon simplify command. This is normally fine but in the case
of hatched areas, there are thousands of degenerate points, which is
very slow in Clipper. Healing the degenerate points first before
simplifying and fracturing is much faster.
Fixes: lp:1847764
* https://bugs.launchpad.net/kicad/+bug/1847764
Previously, zones of the same net were merged for plotting,
regardless the fact the outline thickness can be different between the zones,
creating incorrect solid areas.
Fixes: lp:1840695
https://bugs.launchpad.net/kicad/+bug/1840695
This bug was seen only with some shapes, not all, and only for layers having a negative margin.
Fixes: lp:1831941
https://bugs.launchpad.net/kicad/+bug/
This places the arc approximation setting in the kicad_pcb file and uses
it for all parts of the board rendering where arcs are converted to
segments. This allows the user to customize their speed vs. accuracy
tradeoff. The default setting of maximum error of 0.005mm is acceptable
for small boards on moderate systems.
This removes the remaining hard-coded segments counts and replaces them
with the relative error calculation where the segments per arc is
determined by the maximum error we allow (smaller arcs = fewer segments)
This is mainly the solder paste layer that shows this issue.
This is due to the fact SHAPE_POLY_SET::Inflate does not work fine with polygons with linked holes.
SHAPE_POLY_SET::InflateWithLinkedHoles it added to fix this issue.
Fixes: lp:1828287
https://bugs.launchpad.net/kicad/+bug/1828287
Give the user the option of cancelling a file open if there are
segment zones; otherwise they're converted to polygon fills.
Fixes: lp:1823087
* https://bugs.launchpad.net/kicad/+bug/1823087
Allows 0 to 4 chamfered corners, not only one.
A custom shape allow this kind of shape. However because it is a primitive,
it is easier to edit and it support thermal reliefs.
Plotting mask layers, we expand by a minimum width before performing a
boolean add of the separate regions. The boolean add has a separation
condition that includes equality. Since we are looking for the
complement of the mask, we would like the equality applied to the other
side. Removing a unit value provides the separation.
Fixes: lp:1698457
* https://bugs.launchpad.net/kicad/+bug/1698457
The standard DIM() macro was not typesafe as it happily deferred errors
to runtime that can be caught at compile time. Replacing it with a
generic C++11 constexpr allows for typecasting, comparison and compile
time error checking.