kicad/qa/eeschema/CMakeLists.txt

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#
# This program source code file is part of KiCad, a free EDA CAD application.
#
# Copyright (C) 2017 CERN
# @author Alejandro García Montoro <alejandro.garciamontoro@gmail.com>
#
# This program is free software; you can redistribute it and/or
# modify it under the terms of the GNU General Public License
# as published by the Free Software Foundation; either version 2
# of the License, or (at your option) any later version.
#
# This program is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
#
# You should have received a copy of the GNU General Public License
# along with this program; if not, you may find one here:
# http://www.gnu.org/licenses/old-licenses/gpl-2.0.html
# or you may search the http://www.gnu.org website for the version 2 license,
# or you may write to the Free Software Foundation, Inc.,
# 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA
include_directories( BEFORE ${INC_BEFORE} )
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include_directories(
${CMAKE_SOURCE_DIR}
${CMAKE_SOURCE_DIR}/include
${CMAKE_SOURCE_DIR}/pcbnew
${INC_AFTER}
)
set( QA_EESCHEMA_SRCS
# need the mock Pgm for many functions
mocks_eeschema.cpp
eeschema_test_utils.cpp
uuid_test_utils.cpp
# The main test entry points
test_module.cpp
# Base internal units (1=100nm) testing.
test_sch_biu.cpp
# Shared between programs, but dependent on the BIU
${CMAKE_SOURCE_DIR}/qa/common/test_format_units.cpp
${CMAKE_SOURCE_DIR}/qa/common/test_array_options.cpp
sch_plugins/altium/test_altium_parser_sch.cpp
test_eagle_plugin.cpp
test_lib_part.cpp
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test_netlists.cpp
test_sch_pin.cpp
test_sch_rtree.cpp
test_sch_sheet.cpp
test_sch_sheet_path.cpp
test_sch_sheet_list.cpp
Make the new schematic and symbol library file formats the default. This is a very large and potentially disruptive change so this will be an unusually long and detailed commit message. The new file formats are now the default in both the schematic and symbol library editors. Existing symbol libraries will be saved in their current format until new features are added to library symbols. Once this happens, both the legacy schematic and symbol file formats will be no longer be savable and existing libraries will have to be converted. Saving to the legacy file formats is still available for round robin testing and should not be used for normal editing. When loading the legacy schematic file, it is imperative that the schematic library symbols are rescued and/or remapped to valid library identifiers. Otherwise, there will be no way to link to the original library symbol and the user will be required manually set the library identifier. The cached symbol will be saved in the schematic file so the last library symbol in the cache will still be used but there will be no way to update it from the original library. The next save after loading a legacy schematic file will be converted to the s-expression file format. Schematics with hierarchical sheets will automatically have all sheet file name extensions changed to .kicad_sym and saved to the new format as well. Appending schematics requires that the schematic to append has already been converted to the new file format. This is required to ensure that library symbols are guaranteed to be valid for the appended schematic. The schematic symbol library symbol link resolution has been moved out of the SCH_COMPONENT object and move into the SCH_SCREEN object that owns the symbol. This was done to ensure that there is a single place where the library symbol links get resolved rather than the dozen or so different code paths that previously existed. It also removes the necessity of the SCH_COMPONENT object of requiring any knowledge of the symbol library table and/or the cache library. When opening an s-expression schematic, the legacy cache library is not loaded so any library symbols not rescued cannot be loaded. Broken library symbol links will have to be manually resolved by adding the cache library to the symbol library table and changing the links in the schematic symbol. Now that the library symbols are embedded in the schematic file, the SCH_SCREEN object maintains the list of library symbols for the schematic automatically. No external manipulation of this library cache should ever occur. ADDED: S-expression schematic and symbol library file formats.
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test_sch_symbol.cpp
)
# Spice specific testing routine
if( KICAD_SPICE )
set( QA_EESCHEMA_SRCS
${QA_EESCHEMA_SRCS}
# Simulation tests
sim/test_netlist_exporter_pspice_sim.cpp
)
endif()
add_executable( qa_eeschema
${QA_EESCHEMA_SRCS}
# Older CMakes cannot link OBJECT libraries
# https://cmake.org/pipermail/cmake/2013-November/056263.html
$<TARGET_OBJECTS:eeschema_kiface_objects>
)
# Anytime we link to the kiface_objects, we have to add a dependency on the last object
# to ensure that the generated lexer files are finished being used before the qa runs in a
# multi-threaded build
add_dependencies( qa_eeschema eeschema )
target_link_libraries( qa_eeschema
common
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pcbcommon
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scripting
kimath
qa_utils
markdown_lib
${GDI_PLUS_LIBRARIES}
${Boost_LIBRARIES}
)
target_include_directories( qa_eeschema PUBLIC
# Paths for eeschema lib usage (should really be in eeschema/common
# target_include_directories and made PUBLIC)
$<TARGET_PROPERTY:eeschema_kiface_objects,INCLUDE_DIRECTORIES>
)
# Eeschema tests, so pretend to be eeschema (for units, etc)
target_compile_definitions( qa_eeschema
PUBLIC EESCHEMA
)
# Pass in the default data location
set_source_files_properties( eeschema_test_utils.cpp PROPERTIES
COMPILE_DEFINITIONS "QA_EESCHEMA_DATA_LOCATION=(\"${CMAKE_CURRENT_SOURCE_DIR}/data\")"
)
kicad_add_boost_test( qa_eeschema qa_eeschema )
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