Replace SEVERITY_ERROR by RPT_SEVERITY_ERROR to avoid collision with a system definition.
Replace other SEVERITY_XXX by RPT_SEVERITY_XX for consistency.
Fix compil warnings and some other compil issues.
The symbol check output the HTML message for each item. This is _very_
slow and can lock the system reponsiveness. Changing to a queue/flush
method is much faster
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.
When searching for fields, the code was sometimes comparing translated and not translated names.
This is an issue for mandatory fields, in non English languages.
Translated field names should be used only in messages.
The immediate action option clears (or not) the position of the events.
We use this to determine if the command should start at the given
position or merely activate the tool. This was being checked in the
menu options, which only activated for tool commands in the context
menu. Moving to the process event, we catch hotkeys as well.
This also restores the previous logic in eeschema that used a static
variable for storing wires rather than the private class variable.
Starting the draw event now picks up from the existing wires when
activated in immediate mode.
Fixes#3891 | https://gitlab.com/kicad/code/kicad/issues/3891
The parents are the only items that live in the RTree, so the rebuild
check needs to recurse into the sub structure to check for selection
Fixes https://gitlab.com/kicad/code/kicad/issues/3858
ADDED: Back annotation algorithm,
eeschema back annotation dialog
CHANGED: added some minor helper methods to SCH_REFERENCE_LIST and SCH_REFERENCE,
split SCH_REFERENCE_LIST::CheckAnnotation on 2 parts to reuse code
Bus submenus weren't sending events because tool wasn't set.
Net names need to be unescaped for display.
Unfolding wasn't drawing the new wire segments.
SCH_LINE_WIRE_BUS_TOOL could get caught in an infinite event handling loop.
Fixes https://gitlab.com/kicad/code/kicad/issues/3796
Scope: NETLIST_ITEM, CONNECTION_TYPE, ELECTRICAL_PINTYPE,
NET_CONNECTION, NETLIST_ITEM, GRAPHIC_PINSHAPE
Note, the pin type enum had PT_ added to the front to prevent
shadowing of the INPUT symbol on msys2 (see discussion at
c17c9960d8)
dynamic_cast could not resolve the cast chain leading to a null undo
point. Since we know the item to be LIB_ITEM, we can use static_cast
anyway and avoid the overhead.
Fixes#3771 | https://gitlab.com/kicad/code/kicad/issues/3771
This also removes vector cover types which do nothing except obfuscate
the underlying implementation.
Mainly changes SCH_SHEET_PINS and CONFIG_PARAM_ARRAY (which will soon
be replaced by Jon's new stuff).
* Ensure the lib edit undo checks for pointer validity
* Assert that the frames are the correct type (satisfies coverity)
* Convert C casts to C++ casts
It served us (mostly) well for more than a decade. It helped KiCad grow
before the std:: came into decent shape or speed. It was a good little
list.
RIP DLIST 2008-2020
This moves EESchema DLIST structures to rtree. These changes are more
fundamental than the pcbnew changes from 9163ac543888c01d11d1877d7c1
and 961b22d60 as eeschema operations were more dependent on passing
drawing list references around with SCH_ITEM* objects.
For legacy reasons, it stored left and right "spin" as flipped integers in the file format.
But the code handled the flip in multiple locations rather than just doing it on file io.
This change unifies the internal code and does the mapping in the file I/O.
* 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.