This merge brings the WSPR feature development into the main line
ready for release in a future v1.6 release.
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Since the FFTW3 includes have been fixed for C/C++, Hamlib library headers
other than the found ones were being incorrectly picked up. This has been
resolved by ensuring that the Hamlib include directory is passed to the
compilers first.
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Also added Tx status to status UDP message.
Added the above features to the reference UDP server
message_aggregator.
Merged from the wsjtx-1.5 branch.
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The user guide is now installed with the product version in the name
so serving the same file from the project web server will allow
multiple manual versions to be easily supported.
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These documentation source files are not the one true version, just a
copy for testing purposes. DO NOT EDIT THESE FILES.
To use this on Windows you will need a working asciidoc installation
and the path to it must be included in your CMAKE_PREFIX_PATH
(probably via a local CMake tool chain file). At the time of writing
the official asciidoc package does not work on Windows. The latest
development master does however work, it can be downloaded as a
snapshot ZIP archive from here:
https://github.com/asciidoc/asciidoc/archive/master.zip
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Release builds were incrorrectly selecting a high level of Hamlib
trace verbosity.
Added a new CMake option to turn on maximum Hamlib trace verbosity
when required (WSJT_HAMLIB_VERBOSE_TRACE default=OFF). The current
WSJT_HAMLIB_TRACE (default=OFF) now only turns on tracing at warning
level and above, this option must be set ON before the
WSJT_HAMLIB_VERBOSE_TRACE option becomes available. Release
configuration builds use a Hamlib trace level of error or above by
default.
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The CMake option WSJT_CREATE_WINMAIN is now available for both release
and debug configuration builds so it may be disabled in any Windows
build configuration if required.
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Don't make proper Windows applications in debug builds. This means
that the debug output now goes to the console and the program
(wsjtx.exe) no longer detaches from the console.
If you require a proper Windows executable, for instance if you are
getting the debug output via the normal method of attaching a
debugger, you can still do so by setting the CMake configuration
option WSJT_CREATE_WINMAIN to ON for your debug build configuration on
Windows.
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We now have a dependency on libQt5SerialPort and require Qt v5.2 or
newer.
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To facilitate interaction with other applications WSJT-X now sends
status updates to a predefined UDP server or multicast group
address. The status updates include the information currently posted
to the decodes.txt and wsjtx_status.txt files. An optional back
communications channel is also implemented allowing the UDP server
application to control some basic actions in WSJT-X.
A reference implementaion of a typical UDP server written in C++ using
Qt is provided to demonstrate these facilities. This application is
not intended as a user tool but only as an example of how a third
party application may interact with WSJT-X.
The UDP messages Use QDataStream based serialization. Messages are
documented in NetworkMessage.hpp along with some helper classes that
simplify the building and decoding of messages.
Two message handling classes are introduced, MessageClient and
MessageServer. WSJT-X uses the MessageClient class to manage outgoing
and incoming UDP messages that allow communication with other
applications. The MessageServer class implements the kind of code
that a potential cooperating application might use. Although these
classes use Qt serialization facilities, the message formats are
easily read and written by applications that do not use the Qt
framework.
MessageAggregator is a demonstration application that uses
MessageServer and presents a GUI that displays messages from one or
more WSJT-X instances and allows sending back a CQ or QRZ reply
invocation by double clicking a decode. This application is not
intended as a user facing tool but rather as a demonstration of the
WSJT-X UDP messaging facility. It also demonstrates being a multicast
UDP server by allowing multiple instances to run concurrently. This is
enabled by using an appropriate multicast group address as the server
address. Cooperating applications need not implement multicast
techniques but it is recomended otherwise only a single appliaction
can act as a broadcast message (from WSJT-X) recipient.
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This fixes a defect where station detail changes are not saved.
The Qt sort and filter proxy models utilize an item cache that must be
flushed by callig submit() before accessing the underlying model if
the proxy model has been used for updates.
Also separated the item model candidate key filter from the
implementation internals of the foreign key item delegate so that
candidate key filtered models can be used directly as view models.
Make the insert new station details band combo box use a candidate key
filtered item model to avoid constraint violations. Constraint is zero
or one station records per band.
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This file is created at run time and is not needed in the deployment
package. Also removed from source control to avoid further
misunderstandings.
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This change generates all the resources using a CMake function
add_resources() and substitution into a template .qrc file. The
location of resource files in the source tree is no longer related to
the path of the resources in the embedded executable resources file
system. Instead the roesources are embedded with predetermined paths
e.g. :/, :/Palettes/ and, :/samples/ .
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The compilation of the WSJT-X resources file requires a lot of virtual
memory because of the large .WAV files included. For developers
building on very limited resource machines like single board embedded
platforms there is now an option WSJT_EMBED_SAMPLES which can be set
to OFF to skip the inclusion of the sample files in the WSJT_X binary.
The sample files may still be added manually to the target machine if
required.
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The temporary development version of jt9 called jt9_omp is now the
default jt9. This means that parallel decoding of JT65 and JT9 is the
default on platforms that support OpenMP.
If parallel decoding is not required or desired, it can be constrained
by setting the environment variable OMP_THREAD_LIMIT=1. In dual mode
operating this will deliver all decodes of the current mode before any
decodes of the other with the potential impact of taking up to twice
as long to finish decoding.
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Colours behave like other configuration items and changes are only
applied when the Settings UI is dismissed via the "OK" button.
Simplified font settings and use style sheets consistently to set the
application and decoded text fonts. This is necessary because any UI
widget that has a style sheet applied does not honor a font set by
QWidget::setFont() even if there is no font setting in the style
sheet, this is broken behaviour IMHO but that is the way Qt currently
works.
Use a style sheet to style the frequency display and clock. This is
necessary to allow fonts to be cascaded through parent style sheets
and still be overridden on these widgets.
Simplify the decoded text widgets, there is no need to use the
QTextBrowser as a super class since the simpler QTextEdit set as
read-only is sufficient. Also removed colour setting via a background
brush as it doesn't work and the HTML 'bgcolor' attribute works
correctly.
Change to UI properties of the decoded text widgets to allow
horizontal scrolling if required, this allows larger fonts to be used
without truncating decoded messages.
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procedure; better window functions for some FFTs, resulting in
better decoder performance; User-selectable colors for backgrounds
of decoded messages. NB: more testing is desirable!
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The native Mac C/C++ compilers (Clang) do not support OpenMP so CMake by
default disables OpenMP for the project since it requires all project compilers
to support it. This means that we have to hack the build script on Mac to
compile the Fortran sources with OpenMP turned on and manually link in the
required OpenMP run time support to the executables.
This hack presumes that the Fortran compiler on Mac is gfortran.
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Also moved the same large array from stack to heap which along with
other prior changes now allows the Windows jt9 OpenMP executable to
run with a default stack size again.
This also removes a crash on the Mac version which was probably due to
excessive stack usage.
Net result is an even faster JT9 decoder.
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Set the CMake variables CMAKE_OSX_SYSROOT and CMAKE_OSX_DEPLOYMENT_TARGET
must be set before the project() command since they can effect compiler
detection and capability tests.
Only use the -stdlib=libc++ option on Mac OS X when using Clang tools.
On other platforms with Clang tools libc+ is not currently the best choice.
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More detailed message to come, with comparative timing statistics.
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This change introduces the program jt9_omp which is a testbed for a
multi-threaded version of the jt9 decoder program. The program jt9_omp
should be a directly substitutable for jt9 except that JT65 and JT9
decodes are computed in parallel.
Also enable the OpenMP directives in decoder.f90 - note this is not
yet a working multi-threaded decoder and the existing jt9 is still the
correct decoder to be used in WSJT-X.
Increased the available stack size for jt9_omp.exe as this is a hard
limit on Windows and the default is not big enough for the OpenMP
version of jt9.
Also Fortran array bounds checking is now disabled for Release
configuration builds so as to improve performance a little.
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The long FFTs can now use the multi-threaded FFTW routines.
Subroutine decode9.f90 was renamed jt9fano.f90.
The JT9 decoder's top-level functions were removed from decoder.f90
and put into a separate subroutine decjt90.f90.
Subroutine decoder.f90 is now configured for possible use of OpenMP
SECTIONS, with the JT9 and JT65 decoders running concurrently on
a multi-core machine. Note, however, that this concurrent processing
is not yet fully implemented. Probably calls to timer need to be removed;
some variables used in calls to jt65a and decjt9 may need to be
declared PRIVATE in decoder; some sections probably need to be declared
CRITICAL; probably some SAVE statements in downstream routines have
made them not thread-safe; etc., etc.
I'm a neophyte at using OpenMP. Comments, suggestions, and/or tests by
others will be welcome!
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New command-line option for jt9: [-m nthreads]. Default is nthreads=1.
Also refactored a loop in filbig.f90 that was taking far too much
time.
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The kvasd binary need only be downloaded if the MD5 hash for it has
changed.
Also fixed a defect in the status check of the MD5 hash download.
Also switched to HTTP protocol as it is quick and gives clearer error
messages.
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The rigctl program is not used directly by WSJT-X but it does contain
the same Hamlib code from the Hamlib v3 fork as WSJT-X and
rigctld-wsjtx. So it makes sense to distribute it as a testing tool or
for any user that needs it to converse with the rigctld-wsjtx server.
Merged from wsjtx-1.4 branch.
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Pass the temporary directory to jt9 and use it to give the correct
paths to temporary files. Also jt9 passes the absolute path to
kvasd.dat in the temporary directory to kvasd.
Clear out all the annoying cruft that has accumulated due to having to
run with $CWD as the temporary directory.
Use QStandardPaths to find the writable data directory where needed
rather than passing it around between objects. This now works because
the $CWD hasn't been changed.
Do away with the CMake option WSJT_STANDARD_FILE_LOCATIONS as it is no
longer needed.
Fix astro status file azel.dat formatting.
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To comply with the WSJT_X GPL v3 license, the closed source KVASD
executable must be delivered separately and optionally to end
users. To facilitate this a new install option has been added to the
Windows installer to install KVASD by downloading it at install
time. The installer first downloads the KVASD EULA from the Internet
and presents it to the user for reading and agreement. If agreement
is given the KVASD binary is downloaded from the Internet and
checksummed using an MD5 hash, if that passes, it is installed along
with WSJT-X. An uninstall record is also written to ensure that, if
installed, KVASD will be un-installed if WSJT-X is un-installed.
To facilitate this enhancment to the NSIS installer the standard CPack
NSIS installer script template has been overridden with a project
specific version. This version also implements the more modern and
recomended nsDialogs mechanism for installer custom page construction
including the install options page. See CMake/Modules/NSIS.template.in
for details and CMakeCPackOptions.cmake.in for usage in this
installer.
Merged from branch wsjtx-1.4.
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Also complete the wrapper code in wisdom.c.
TBD: should be possible to use fftw3f.f03 instead of the ad hoc wisdom.c.
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To allow personal builds on Mac OS X on 10.7 where no 10.9 SDK is
available, the key options have been made CMake ached variables so
that they may be overridden at configure time.
Merged from wsjtx-1.4 branch.
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In order to support the WSJT-X super build in LOCAL mode the location
of the User Guide needs to be specified.
A CMake cache variable WSJT_MANUAL_DIRECTORY has been added to allow
the URI of the User Guide directory to be specified at configure time.
The default value remains as the project web site.
Merged from branch wsjtx-1.4.
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CMake v3 complains about missing dependencies so the manpages
dependency must not be added to the wsjtx target unless it exists.
Merged from wsjtx-1.4 branch.
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The debian target was being added as a dependency to teh wsjtx target
even when it doesn't exist. This isn't allowed in CMake v3 so it no
longer added if it doesn't exist.
Merged from wsjtx-1.4 branch.
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The minimum OS X version supported and SDK selection compiler options
were not being set for Fortran compiles on Mac.
As CMake 3.0.2 is the current release the facilities obsoleted by
CMake 3.0 have been removed. This also entails making CMake 2.8.10 the
minimum supported version.
Merged from wsjtx-1.4 branch.
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The normal way to view console output from a Windows GUI application
(i.e. with a WinMain entry point) is to attach a debugger which will
then receive the application console output in its own console.
If it is required to build wsjtx.exe as a console application it may
be done by setting the new WSJT_CREATE_WINMAIN CMake option to
OFF. This option is only available for Debug configuration builds to
avoid accidental shipping of non-Debug configuration builds as a
console application.
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