Build now creates and installs a UDP library that contains the server
side of the UDP messaging facility. This library is used by the
udp_daemon and message_aggregator reference examples. The new library
is currently a static archive but can also be built as a shared
library. The library allows third party Qt applications to easily
access UDP messages from WSJT-X.
Refactored the message_aggregator reference example to split out
classes into separate translation units. Added new functionality to
exercise the new UDP status fields, highlight own call, CQ/QRZ
messages and decodes near Rx DF.
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Static storage variables that should have been class members are made
so. This ensures that if they are used as initialization one time
switches then they will operate correctly when their class
instantiated more than once. This now happoens for most classes due to
the configurations switching facility which destroys all windows and
re-instantiates them.
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Changing configuration causes WSJT-X and JTAlert to get into a fight
for the temporary directory. By moving the creation and clearup of the
temporary directory outside of the configurations loop this issue is
minimized to no worse than before multiple configurations were added.
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Multiple configurations are accessed and maintained from a new main
window menu bar pop up menu "Configurations". The prior settings are
the "Default" entry. New configurations may be added by cloning
existing ones. Maintenance and navigation is via sub menus for each
configuration.
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The concept of a nominal receive and transmit frequency has been
introduced. This is used as a base frequency for Doppler correction,
frequency setting and reporting. The start up frequency is now zero
which is updated by the first rig control status report. This needs
more work to accommodate calling frequency plus working frequency
operation as is used for random MS operation etc..
The main window frequency display now shows the transmit dial
frequency while transmitting.
The mode changing logic sequence has been changed such that the rig is
correctly put into and taken out of split mode as required by the
target mode. This also avoids the "other" VFO having its frequency
changed when entering a mode that does not use split operating like
WSPR.
The main window band combo box edit may now be used to input an kHz
offset from the current MHz dial frequency. This is intended for
setting a sked or working frequency on the VHF and up bands. For
example the working frequency for 23cms might be set to 1296MHz and a
working frequency of 1296.3MHz would be selected by selecting the
23cms band with the combo box drop down list and then entering 300k
into the band combo box edit widget.
When using JT4 modes a CTRL+Click on the waterfall adjusts the nominal
frequency such that the frequency clicked on becomes the Tx and Rx
frequency using the fixed 1000Hz DF that JT4 modes use. This will
probably be extended to all QSO modes when used in VHF & up mode. This
assumes that 1000Hz is an optimal DF for both Tx and Rx and therefore
one can "net" to an off frequency, but visible on the waterfall,
caller with one click.
Improvements to OmniRig rig control including use of the serial port
control lines RTS or DTR, on the CAT serial port used by OmniRig, for
PTT control.
Incrementing transaction sequence numbers added to messages to and from
the rig control thread. This enables round trip status to be tracked
and associated with a request. For example a command that might cause
several asynchronous status updates can now be tracked in the
originating thread such that it is clear which updates are caused by
executing the request. This in turn allows updates to be held until
the request is complete i.e. the state is consistent with the results
of the request.
Messages to the rig control thread are now posted as a new state
(Transceiver::TransceiverState) object. The rig control thread tracks
requests and actions any differences between the prior requests and
the new state.
The rig control thread is now stored on the heap so that it can be
closed down and released as needed. Along with this the rig control
close down semantics are better defined avoiding some potential
deadlock situations.
If the rig is placed into split mode it will be reverted to simplex
mode when the rig connection is closed.
When using direct rig control via Hamlib, rigs that have A/B VFO
arrangements and no method to query the current VFO like many Icoms
and the Yaesu FT-817/857/897(D) series now have smarted frequency
updating requiring no VFO changes when changing the frequency. This
is particularly important when doing Tx Doppler correction to avoid
glitches.
The implementation of emulated split operating mode ("Fake It") is
simplified and improved.
A dummy Hamlib transceiver for PTT control on a separate port is no
long instantiated if CAT or VOX PTT control is selected.
The resolution and any rounding of the rig CAT frequency set and get
commands is determined automatically upon opening the rig connection.
This is needed to determine the rate of frequency updates for Doppler
tracking. It also allows the rig to be more accurately controlled.
Frequency calibration is calculated separately for the receive and
transmit frequencies.
Whether the rig modulation mode should be controlled is now a
constructor argument rather than being passed with individual rig
control requests.
Doppler shift correction is considerably enhanced with simpler
controls and much better rig control. A new mode of tracking called
"receive only" is introduced for those with rigs that cannot be QSY:ed
via CAT when transmitting. Such rigs have a Doppler correction
calculated for the middle of the next transmit period just before
transmission starts. While using Doppler tracking it is now possible
to adjust the sked frequency either using the new kHz offset feature
of the main window band combo box or by directly tuning the rig VFO
knob while holding down the CTRL key.
The astronomical data window that includes Doppler tracking control is
now opened and closed using a checkable menu item to avoid it being
accidentally closed.
Debug configuration rig control diagnostic messages now have a
facility argument for clearer and more standardized trace messages.
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Samples are downloaded from a web server, currently the SF download
server. The samples are stored in the source controlled samples
directory and the CMake script there builds a suitable directory tree
for upload to the web server under samples/web containing the samples
hierarchy and the generated JSON contents database file. The samples
CMake script also defines an 'upload-samples' target that uses rsync
to efficiently upload the samples and the accompanying contents JSON
database file.
Any directory structure under the samples directory may be created, to
add a new sample file simply add the file to source control and amend
the list of sample files (SAMPLE_FILES) in samples/CMakeLists.txt.
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Also use correct C binding and have compilers determine sizes and
offsets.
The wsjtx.exe program now owns the decoder shared data that is shared
with symspec. It is now in struct dec_data, still a global variable
for now but hopefully a MainWindow member variable soon.
The struct dec_data (in both C/C++ and Fortran) has a sub structure
with the decoder parameters which enables copying and manipulating a
lot cleaner.
New of changed types of shared data must still be modified in
commons.h and a new file lib/jt9com.f90, they must stay in sync as a
pointer to the structure is passed between C and Fortran.
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Set tune power with SHIFT + "Pwr" slider. SHIFT + "Pwr" slider to top
cancels separate power level for tune. Smarter tool tip for "Pwr"
slider.
Needs User Guide update if change is acceptable.
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The message_aggregator (MessageAggregator.cpp) has been updated to do
something with WSPR decodes.
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There are several object lifetime issues that can cause crashes on
application close down. This change is the first phase of addressing
these issues.
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The Rx meter is now a better Qt citizen and can be resized. Added a
more obvious peak signal indicator. It is now a custom widget derived
from QFrame and is now directly added via promotion in Designer.
Added a custom widget to act as a letter spin box, this is used for
sub mode control. Switched the frequency tolerance widget to a combo
box with preset values so that it is more uniform across systems and
font sizes.
Added container widgets for group control of various UI widgets such
as QSO controls, DX call controls and WSPR controls. Introduced a
stacked widget to allow the WSPR controls to be swapped in in place of
the "QSO" controls. The "QSO" controls are are the Rx, Tx and related
controls along with the main tab widget with the message buttons and
fields. This means that the WSPR version of the main window (and EME
Echo mode) are now much cleaner.
Increased the size of the rig control widget and styled its colour
using a dynamic property so that it can be defined in the Designer UI
definition. Reinstated it as a push button to do a rig control reset
and retry after an error.
Reset most UI widgets to default properties, particularly removing any
fixed sizes so that they can resize freely when fonts are changed. The
overall layout is now controlled almost exclusively by stretch factors
on some of the rows and columns of the various grid layout managers.
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For possible statistical analysis. N is the number of decoded signals.
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visible in Echo mode. Reset nsum=0 when Tx Enable is toggled ON in Echo mode.
Don't restart Monitor after finishing a sequence of Echo transmissions.
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Improved astronomical data and Doppler tracking control window widgets
and layout management to make it more platform independent and font
change tolerant.
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Make WSPRnet.org spot uploads tolerant of network issues, spots still
get discarded for any period that has problems but now uploading
resumes on the next period.
Ensure that decoded text starts with correct font by not using the
base class append method directly.
Fixed a major memory leak in the WSPRNet class which was not freeing
processed request reply objects.
Added some helpful debug prints in WSPRnet.org spot processing.
Also tidied up a number of class implementations that were not
including he MOC generated code.
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Also used it to implement the prefixes, shortcuts and mouse help
windows.
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Also use a style sheet to set the font as widget level font settings
are overriden when the global default font is changed in settings.
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Provide a dialog for band hopping scheduling which replaces tab
four. Ensure that split mode is not used for WSPR. Select the correct
tab for WSPR operation. Shift WSPR band hopping code out of the
MainWindow class.
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Start to rationalize the new WSPR code with the data models.
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Forbid consecutive Tx sequences.
Mark Tx sequences with horizontal yellow line in waterfall.
Reduce the wait time in msleep() command (mainwindow.cpp line 4342).
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Working frequencies are mode dependent and a reset to defaults button
has been added.
Also re-factored much of the model and item delegate code to simplify
several of the model implementations. Introduced a single routine
called from main to register the custom types with Qt.
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The generated and free text radio buttons now refresh the sent message
even if teh clicked radio button is already checked.
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This merge brings the WSPR feature development into the main line
ready for release in a future v1.6 release.
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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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The feature to set the next message to be sent to auto generated
message number 6 (CQ) is now only trggered when a transmission of a 73
message is made for the first time in a QSO. If a second 73 message is
required, for example when a QSO partner repeats an RRR message after
your 73 message, simply double clicking the RRR message will initiate
another 73 message without triggering a log QSO dialog or setting the
next message to CQ.
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More consistent and accurate processing of compund callsigns including
recognizing the user's call in both base and fully qualified form,
extracting reports from special type one and type two compound call
messages. Ensure that "CQ DX" message prefixes are recognized and
processd correctly.
The cycle of double clicking through a QSO has been enhanced to
recognoize the standard messages correctly and use the correct next
message. The automatic transmission button "Enable Tx" now does what
it says and does not double as a stop transmit button. This allows the
current transmission to complete even if the automatic transmission
feature is disabled. In line with this the "stop sending after a 73
message is sent" feature turns off the automatic transmission enable
at the start of the sending of a 73 message and also the next message
is now set up as the CQ message automatically in this scenario. A 73
message is now either a standard message containing the word "73" or
any free text message containing "73" (not necessarily as a distinct
word").
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Wrapping the Ui:: UI class in a QScopedPointer, a perfectly proper
thing to do, causes QtDesigner to fail to grok the code.
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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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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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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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Routine packmsg now tries the shortlist (Type 1 prefix or suffix) first.
Then it tries to to make a valid message using a Type 2 prefix or suffix.
If both fail, it packs the first 13 characters as a free-text message.
The GUI now generates the most useful messages with compound callsigns
of all valid types.
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Since the log files have moved to a hidden directory a menu action to
open the logs directory in a suitable system applicaiton is needed.
Added "Open log directory" to File manu bar pop up menu.
Merged from wsjtx-1.4 branch.
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Because of confilicts using the shared memory to communicate with jt9
only one instance of WSJT-X may run with each unique key (rig name).
Added a QLockFile for each unique key in the temp directory and logic
to deal with stale locks and retries.
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So that a manual can be viewed without an Internet connection a second
manual action has been added to the WSJT_X help menu. This shells out
to the default web browser with a local file target.
The build has been enhanced to install and package the current version
of the HTML user manual as downloaded from the project web site at
build time
The package file locations have been adjusted to be compatible with
the QStandardPaths class so that its locate() method can be used to
portably access resources like this local help file
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Some rigs either do not honour some CAT commands while transmitting or
interpret them incorrectly. To deal with this a settings option to
allow TX frequency changes while transmitting has been added with a
default value of off.
Any UI actions that directly or indirectly change the TX frequency are
guarded according to this new option. As well as this band changes and
use of the +2kHz check box are disabled and guarded respectively in
transmit mode.
Mode changes via the menu are now disabled while transmitting.
When TX frequency changes are allowed; frequency changes are correctly
implemented while in tune mode.
Double clicking decodes while transmitting now correctly regenerate
and change the message sent on the fly.
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The Qt test mode that uses special paths for writeable files (via
QtStandardPaths) doesn't make a special temporary file path. This
change appends " - test_mode" to the WSJT-X unique temporary file path
so that an application run in test mode will not interact with another
running in normal mode.
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Some non-modal help windows were not being automatically closed on
application exit.
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all types of build.
CMake builds use 'svn info' (the git-svn equivalent is also supported)
to get the real latest revision of the workspace that is used to
source a build. If the sources are not in VCS workspace (build from
source snapshot archive for example) then the $Rev$ svn keyword
expansion in mainwindow.cpp is used despite its issues with accuracy.
Non-CMake builds use the $Rev$ keyword expansion where possible.
If a CMake build is from a VCS workspace with local modifications; a
'-dirty' suffix is added to the revision number to denote that.
If no revision number information can be found the word 'local' is
used as a revision number.
The revision specification is used in the WSJT-X "about" box and is
sent to PSKReporter.info as part of the local station information
(this can be viewed at the statistics page
http://pskreporter.info/cgi-bin/pskstats.pl).
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Simplified some of the TX logic and removed some redundant code.
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No longer any need to have a mute mechanism since the TX shutdown
mechanism is sufficient.
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In an effort to reduce the processing overhead when transmitting I
have suspended the audio input stream at source instead of the prior
behavior that simply idled skipping received samples.
This is in response to high activity levels, especially with JTAlert
also running, when decode processing rolls over into the next TX
period.
Tests show a reduction in CPU loading from ~5% to ~1.5% in the above
scenario. Hopefully this will reduce the likelyhood of TX audio
glitches when other system activity spikes.
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default).
Reorganized Modulator interface so that it can control the stream
it writes to.
Make sure only QAudioOutput::stop is called at the end of sending
rather than QAudioOutput::reset which discards pending samples.
Added a quick close option to the Modulator::stop slot to discard
pending buffers if required.
Fix issue in CW synthesizer that was causing CW to be inverted
occasionally.
Made global arrays of symbols volatile because compiler waa
optimizing away reads in sound thread. These global variables
must go eventually as they are a multi-threading hazard.
Simplified TX sequencing to remove some duplicate signals.
Increased range of TX attenuator from 10dB to 30dB. This is mainly for
non-Windows platforms where the attenuator isn't linearized correctly.
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The code was starting streams linked to closed devices which may be
causing issues on the Mac version. I have refactored to ensure that
devices are always opened before related audio streams are started.
Made .h C++ headers emacs friendly.
Removed some code in the MainWindow contructor that read the log file
but failed to check if the file exists and didn't do anything with the
data anyway.
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Svn revision number displayed in about window and sent PSKReporter
only.
About box text centred and uses Copyright symbol.
Window title on "Log QSO" dialog includes rig-name where
multi-instance support is enabled. This is necessary since the "Log
QSO" dialog is not modal.
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This allows writable files to be located in the "correct"
location for each platform rather than in the directory of
the executable which, in general, is not recommended or
allowed in some cases.
A preprocessor macro WSJT_STANDARD_FILE_LOCATIONS is used to
switch be tween old and new functionality, currently it is on
by default. It can be turned off by defining it to a false
value (0) or more simply with cmake-gui setting the option
with the same name. JTAlert can only work with the old
non-standard file locations until Laurie VK3AMA chooses to
support the new file locations.
Even if the above is not enabled; the QSettings file is
written to a user specific location so it will be shared by
all instances of the program (i.e. across upgrades). See
below for multiple concurrent instance support changes.
Added a command line parser module for Fortran.
Added 'lib/options.f90' to facilitate more complex argument
passing to jt9 to cover explicit file locations.
Changed the way multiple concurrent instances are handled.
This is to allow the program to be run multiple times from
the same installation directory.
A new wsjtx command line optional argument is available "-r"
or "--rig" which enables multiple concurrent instance
support. The parameter of the new option is a unique name
signifying a rig or equivalent. The name is used as the
shared memory segment key and in window titles. The name is
also used to access unique settings files and writable data
files like ALL.TXT and log files. No attempt has been made
to share these files between concurrent instances.
If "-r" or "--rig" is used without a parameter it still
enables multiple concurrent instance support for that
instance. All instances must use a unique parameter, one of
which may be empty.
The rig name is appended the
QCoreApplication::applicationName() for convenient usage like
window titles.
Set non Qt locale to "C".
This ensures that C library functions give consistent results
whatever the system locale is set to. QApplication follows
the system locale as before. Thus using QApplication and its
descendants like widgets and QString for all user visible
formating will give correct l10n and using C/C++ library will
give consistent formatting across locales.
Added top level C++ exception handling to main.cpp.
Because the new transceiver framework uses exceptions
internally, the main function now handles any exceptions that
aren't caught.
Retired devsetup, replaced with Configuration.
Configuration is a class that encapsulates most of the
configuration behavior. Because rig configuration is so
closely coupled with rig operation, Configuration serves as a
proxy for access to the rig control functions. See
Configuration.hpp for more details of the Configuration
interface.
Menu changes.
Various checkable menu actions moved from main menu to the
Configuration dialog. The whole settings menu has been
retired with the single "Settings..." action moved to the
file menu for consistency on Mac where it appears as
"Preferences" in line with Mac guidelines.
New data models for data used by the application.
ADIF amateur band parameters, free text message macros, spot
working frequencies and, station information (station
descriptions and transverter offsets per band) each implement
the QAbstractItemModel interface allowing them to be used
directly with Qt view widgets (Bands.hpp, FrequencyList.hpp
and, StationList.hpp). Configuration manages maintenance of
an instance of all but the former of the above models. The
ADIF band model is owned by Configuration but requires no
user maintenance as it is immutable.
Band combo box gets more functionality.
This widget is now an editable QComboBox with some extra
input capabilities.
The popup list is still the list of spot working frequencies,
now showing the actual frequency decorated with the band
name. This allows multiple spot frequencies on a band if
required.
The line edit allows direct frequency entry in mega-Hertz
with a completer built in to suggest the available spot
working frequencies. It also allows band name entry where
the first available spot working frequency is selected.
Recognized band names are those that are defined by the ADIF
specification and can be found in in the implementation of
the ADIF bands model (Bands.cpp).
If an out of band frequency is chosen, the line edit shows a
warning red background and the text "OOB". Out of band is
only defined by the ADIF band limits which in general are
wider than any entities regulations.
Qt 5.2 now supports default audio i/p and o/p devices.
These devices are placeholders for whatever the user defines
as the default device. Because of this they need special
treatment as the actual device used is chosen at open time
behind the scenes.
Close-down behavior is simplified.
The close-down semantics were broken such that some objects
were not being shut down cleanly, this required amendments to
facilitate correct close down of threads.
User font selection added to Configuration UI.
Buttons to set the application font and the font for the band
and Rx frequency activity widgets have been added to the
Configuration UI to replace the file based font size control.
Free text macros now selected directly.
The free text line edit widgets are now editable combo boxes
that have the current free text macro definitions as their
popup list. The old context menu to do this has been
retired.
Astronomical data window dynamically formatted and has font a chooser.
This window is now autonomous, has its own font chooser and,
dynamically resizes to cover the contents.
Double click to Tx enabled now has its own widget in the status bar.
QDir used for portable path and file name handling throughout.
The "Monitor", "Decode", "Enable Tx" and, "Tune" buttons are now
checkable.
Being checkable allows these buttons control their own state
and rendering.
Calls to PSK Reporter interface simplified.
In mainwindow.cpp the calls to this interface are
rationalized to just 3 locations.
Manipulation of ALL.TXT simplified.
Moved, where possible, to common functions.
Elevated frequency types to be Qt types.
Frequency and FrequencyDelta defined as Qt types in their
meta-type system (Radio.hpp). They are integral types for
maximum accuracy.
Re-factored rig control calls in mainwindow.cpp.
The new Configuration proxy access to rig control required
many changes (mostly simplifications) to the MainWindow rig
control code. Some common code has been gathered in member
functions like qsy(), monitor(), band_changed() and
auto_tx_mode().
Rig control enhancements.
The rig control for clients interface is declared as an
abstract interface (See Transceiver.hpp). Concrete
implementations of this interface are provided for the Hamlib
rig control library, DX Lab Suite Commander via a TCP/IP
command channel, Ham Radio Deluxe also via a TCP/IP command
channel and, OmniRig via its Windows COM server interface.
Concrete Transceiver implementations are expected to be moved
to a separate thread after construction since many operations
are blocking and not suitable for running in a GUI thread.
To facilitate this all instantiation of concrete Transceiver
instances are handled by Configuration using a factory class
(TransceiverFactory) for configuration parameter based
instantiation.
Various common functionality shared by different rig
interface implementations are factored out into helper base
classes that implement or delegate parts of the Transceiver
interface. They are TransceiverBase which caches state to
minimize expensive rig commands, it also maps the Transceiver
interface into a more convenient form for implementation
(template methods). PollingTransceiver that provides a state
polling mechanism that only reports actual changes.
EmulateSplitTransceiver that provides split operation by
QSYing on PTT state changes.
EmulateSplitTransceiver can be used with any implementation
as it follows the GoF Decorator pattern and can wrap any
Transceiver implementation.
OmniRigTransceiver is derived directly from TransceiverBase
since it doesn't require polling due to its asynchronous
nature. OmniRigTransceiver is only built on Windows as it is
a COM server client. To build it you must first install the
OmniRig client on the development machine
(http://www.dxatlas.com/omnirig/).
DXLabSuiteCommanderTransceiver derives from
PollingTransceiver since it is a synchronous communications
channel. No third party library is required for this
interface.
HRDTransceiver also derives from PollingTransceiver. The HRD
interface library has been reverse engineered to provide
functionality with all available versions of HRD. No third
party libraries are required.
HamlibTransceiver likewise derives from PollingTransceiver
since the Hamlib asynchronous interface is non-functional.
Although this class will interface with the release version
of Hamlib (1.2.15.3); for correct operation on most rigs it
needs to run with the latest master branch code of Hamlib.
During development many changes to Hamlib have been submitted
and accepted, hence this requirement. Hamlib source can be
obtained from git://git.code.sf.net/p/hamlib/code and at the
time of writing he master branch was at SHA 6e4432.
The Hamlib interface directly calls the "C" interface and the
modified rigclass.{h,cpp} files have been retired.
There is a rig type selection of "None" which may be used for
non-CAT rigs, this is actually a connection to the dummy
Hamlib device.
PollingTransvceiver derives from TransceiverBase and
TransceiverBase derives from the Transceiver interface.
Each interface implementation offers some possibility of PTT
control via a different serial port than the CAT port. We
also support PTT control directly via a second serial port.
This is done by delegating to a dummy Hamlib instance which
is only used for PTT control. This means that
DXLabSuiteCommanderTransceiver, HRDTransceiver and
OmniRigTransceiver always wrap a dummy HamlibTransceiver
instance. The factory class TransceiverFactory manages all
these constructional complexities.
Serial port selection combo boxes are now editable with a
manually entered value being saved to the settings file.
This allows a non-standard port device to be used without
having to edit the settings file manually.
For TCP/IP network CAT interfaces; the network address and
port may be specified allowing the target device to be
located on a different machine from the one running wsjtx if
required. The default used when the address field is left
blank is the correct one for normal usage on the local host.
Selecting a polling interval of zero is no longer possible,
this is because the rig control capability can no longer
support one way connection. This is in line with most other
CAT control software.
In the Configuration dialog there are options to select split
mode control by the software and mode control by the
software. For the former "None", "Rig" and "Fake it" are
available, for the latter "None", "USB" and, "Data" are
available. Because tone generation is implicitly linked to
split mode operation; it is no longer possible to have the
software in split mode and the rig not or vice versa. This
may mean some rigs cannot be used in split mode and therefore
not in dual JT65+JT9 until issues with CAT control with that
rig are resolved. Single mode with VOX keying and no CAT
control are still possible so even the most basic transceiver
setup is supported as before.
Configuration now supports a frequency offset suitable for
transverter operation. The station details model
(StationList.hpp) includes a column to store an offset for
each band if required.
CMake build script improvements.
The CMakeLists.txt from the 'lib' directory has been retired
with its contents merged into the top level CMakeLists.txt.
Install target support has been greatly improved with the
Release build configuration now building a fully standalone
installation on Mac and Windows. The Debug configuration
still builds an installation that has environment
dependencies for external libraries, which is desirable for
testing and debugging.
Package target support is largely complete for Mac, Windows
and, Linux, it should be possible to build release installers
directly from CMake/CPack.
Cmake FindXXXX.cmake modules have been added to improve the
location of fftw-3 and Hamlib packages.
Version numbers are now stored in Versions.cmake and work in
concert with automatic svn revision lookup during build. The
version string becomes 'rlocal'± if there are any uncommitted
changes in the build source tree.
Moved resource like files to Qt resources.
Because location of resource files (when they cannot go into
the installation directory because of packaging rules) is
hard to standardize. I have used the Qt resource system for
all ancillary data files. Some like kvasd.dat are dumped out
to the temp (working directory) because they are accessed by
an external program, others like the audio samples are copied
out so they appear in the data directory under the default
save directory.
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Note to developers: Not sure about the makefiles...
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compound callsigns, as required.
TO DO: Now that the fixed "short list" of common prefixes and suffixes
is compiled into the code, would be better to remove the requirement for
file prefixes.txt.
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"Type 1" or "Type 2" messages when a compound callsign is present.
This is not yet finished!
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bad data.
2. Fix a bug that could allow a Koetter-Vardy false decode instead of
a valid Berlekamp-Massey decode, sometimes leading to program crash.
3. Many more edits in the User's Guide, *.adoc files.
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Windows Vista has a broken rate converter which gets invoked when an
input audio stream at 48kHz sampel rate is requested. I've no idea why
our application can't get exclusive access to the audio input device
and have a unconverted stream direct at 48kHz.
To get around this our down sampling filter for audio input from 48kHz
to 12kHz is disaabled by default on Windows Vista, instead we request
a 12kHz stream and process it directly.
This default behviour can be overriden by specifying the following
settings value:
[Tune]
Audio\DisableInputResampling=false
This settings value defaults to true on Windows Vista and false
everywhere else so normally needn't be present.
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48kHz to 12kHz down sampler routine.
Added assert to disallow stereo processing of i/p samples
until fil4.f90 can deal with interleaved stereo streams.
Added QProcess error to jt9 error handler, not that anything
is done with the error code yet but at least it can be examined
in the debugger if required.
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By adding the following section to the initialisation file the audio buffer
sizes and audio thread priority may be adjusted.
[Tune]
Audio\InputBufferFrames=1200
Audio\OutputBufferMs=1000
Audio\ThreadPriority=4
The values above are the program defaults that will be used if the
initialisation parameters are omitted.
Thread prioritis are the QThread::Priority enumumeration values.
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2. The main window can be expanded wider to allow those with large screens to use larger fonts
3. New class DecodedText handles the formatted text from decoder.f90.
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Change source URLs in teh CMake scripts for the kvasd binaries.
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Make the two sliders on main window have similar appearance.
Remove unused #ifdef block.
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Audio input can be mono, left of stereo pair or, right of stereo
pair. Audio output can be mono, left of stereo pair, right of stereo
pair or, both of stereo pair (the same output goes to both channels in
both mode). Settings are remembered between sessions.
Stream channel suport is implemented mainly in the new AudioDevice
class which is now the base class of Modulator and Detector.
Audio channels are selected on the configuration screen. Only
supported channel configurations per device can be selected.
Audio output volume (actually attenuation) is now possible from the
GUI. I have added a slider control to the main window; I don't
necessarily propose this as a final release location for the widget as
I understand that changes to the main screen are sensitive. This
location is just a starting suggestion for a trial. The volume
(attenuation) setting is remembered between sessions and is not device
dependent. This addresses all issues of volume setting on *nix
versions since there is no need to use pavucontrol to set audio
levels. The volume (attenuation) action is logarithmic.
Shaped CW keying has been implemented in Modulator although it is
currently disabled as I am not 100% happy wth the implementation. If
you want to try it define the C++ preprocessor macro WSJT_SOFT_KEYING
in your build.
The Modulator instance has been moved to the same thread as the
SoundOutput instance as it should have been since the output callback
already operates in that thread. Cross thread slots are now correctly
called in a thread safe way as a result.
A number of files where in the SVN repository with DOS line endings
which I have removed. SVN users on Windows need set the config for
native line endings so that DOS line endings are automatically
stripped on checkin.
The DevSetup class now holds it's UI o the heap to reduce imapact on
build dependencies.
The application settings are now passed to objects from the main.cpp
file. Management of settings are moved to the responsible classes (top
level windows). This has involved a few settings moving groups so
users will see some settings reverting to default values on the first
run of an update.
Persistance of top level windows geometry and position is now handled
in the recommened manner (constructor for load, closeEvent for store
in modal windows and, hideEvent for store in modeless dialogs).
The MainWindow class now holds its children as members rather than
global variables.
The LogQSO class now hides its implementation and takes responsibility
for its own settings and widows rendering parameters. A new settings
file group is implemented to persist the LogQSO class settings.
The WideGraph class now hides its implementation and manages its own
settings and window rendering parameters.
--This line, and those below, will be ignored--
M Modulator.cpp
M rigclass.cpp
M widegraph.cpp
M signalmeter.cpp
M soundin.cpp
M soundout.cpp
M mainwindow.h
M main.cpp
M meterwidget.h
M devsetup.cpp
M mainwindow.ui
M Detector.cpp
M logqso.h
M rigclass.h
M mainwindow.cpp
M meterwidget.cpp
M soundin.h
M devsetup.ui
M wsjtx.pro
M devsetup.h
M logqso.cpp
M Modulator.hpp
M psk_reporter.cpp
M killbyname.cpp
M Detector.hpp
M signalmeter.h
M widegraph.h
M psk_reporter.h
M soundout.h
M PSKReporter.h
M lib/afc65b.f90
M lib/gran.c
M lib/usleep.c
M lib/afc9.f90
M lib/wrapkarn.c
A AudioDevice.hpp
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Currently only Qt5 or above is known to work with this code. It may be
possible to backport it to Qt4 if required.
Audio output goes back to a separate thread to try and minimize
stutters in streaming on Windows particularly.
A crash on Linux due to mishandling of stereo audio output has been
fixed and both left and right channels are now correctly synthesised
with identical contents.
Rigs are enumerated directly from hamlib API rather than running a sub
process reading output of rigctl -l. This was initially done to get
rid of some GUI thread blocking in the configuration dialog, but is
generally a better way of doing it anyway.
Some refactoring in MainWindow to accomodate the audio streaming,
modulation and detecting classes.
Exit handling for application refactored to use signals rather than
brute force event loop exit. This was required to get correct thread
shutdown semantics.
The GUI update timer is now stopped during application shutdown which
is necessary to stop crashes when shutting down gracefully with
signals and window close() calls.
There is an outstanding issue with Linux audio streams; the QAudio
Input/Output classes create a new stream name each time a stream is
started. This doesn't play well with PulseAudio utilities such as
pavucontrol to set stream volume as settings are lost every tx
period. I have tried to keep a single stream for all output but there
are problems restarting it that haven't been resolved yet.
The QtCreator project file has been rearranged a little because it
passes all the object files to the linker rather than using an archive
library. Since the GNU linker is single pass; the object files need to
be in a logical order with definitions appearing afer references to
them. This was required to avoid a linking error.
The lib/Makefile.linux has been enhanced to use the fortran compiler
to locate the correct version of the Fortran library to use. This is
necessary on the latest Linux distros because the unversioned symlink
to compiler support libraries is no longer provided. This only an
issue with mixed programming language links where the linker driver
for one language has to link support libraraies for another language.
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Qt's built-in QAudio calls rather than PortAudio. Also includes some
refactoring of the arrangement for these calls, and more use of C++ style.
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the main GUI thread (thanks to G4WJS).
2.. Also, for the record, some example code for using QAudioInput instead
of PortAudio. This code is not presently active, and will need to be
changed to accommodate the changes in #1, above. But the basic ideas
are here...
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submitted by G4WJS.
2. Improved(???) means of multiple tries when polling radio for frequency.
3. Minor tweaks to widget sizes on devsetup screen.
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Use ptt_() function included in getfile.cpp.
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2. Added option to retain between QSOs the Comments field for ADIF and
wsjtx logs.
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2. Removed all vestiges of NB code and controls.
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memory region smaller by some 150 MB.)
2. Some code cleanup (removing unused lstrong, etc.)...
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2. Re-establish the pxdb measurement for Thermo.
3. Double-click on decoded line copies it to QSO window (unless it's
already there).
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is now a button. It is enabled only when Orange, which means CAT
control is essentially Program to Radio only. Clicking the button
causes a one-time read of the radio's dial frequency.
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I have changed the declarations of the Rig class functions we use:
open()
setConf()
getFreq()
setFreq()
setPTT()
close()
... so that each one returns the (negative) error code returned by
hamlib. These functions no longer throw exceptions.
Initial tests seem to show things working well. I have found one
condition that causes a crash. The rig is initially opened and is
running OK (in this case, with the Polling interval set to 1 s). Then
the radio is turned off. The next call to getFreq() never returns.
Probably we need to set a timeout limit?
The code is kinda on the quick-and-dirty side. Improvements will be
welcom!
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2. Rationalize tab-order on main window.
3. Tweak the GUI appearance around DxCall, DxGrid. (Hope it's still OK
in Linux!
4. Add helpful displays of Keyboard Shortcuts (F3) and Special Mouse
Commands (F4).
5. Bump version number to 0.95.
6. Update the Windows packaging script.
7. Update ChangeLog in preparation for possible release of v0.95 r3226.
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functions.
2. Restored "Test CAT Control" and "Test PTT" buttons on the
Setup | Configuration screen.
These features need thorough testing!
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*** This code is not finished, and may not work correctly! ***
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2. New Setup options: "Tx disabled after sending 73" and "Runaway Tx watchdog".
3. Keyboard shortcuts:
Alt-D: decode again at QSO frequency (same as Decode() button)
Shift-D: full decode again, both windows
Alt-E: Erase()
Ctrl-F: Edit free text message
Alt-H: Halt Tx()
Alt M: Monitor()
Alt-N: Enable Tx()
Alt-Q: Log QSO
Alt-S: Stop()
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1. The "WSJT Traditional" setof six line-edit fields, radio buttons,
and Tx# buttons;
2. New configuration with buttons that generate each message for the
standard minimum QSO, one at a time.
NB: the logic for these buttons is not yet complete.
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2. Adjusted mainwindow layout.
3. Added label at top level of decoded text widgets.
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for everything else.
NB: I have screwed up the vertical expansion of mainwindow: growth occurs
at the bottom, rather than in the text boxes. Help!
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Option to display distance in miles.
Remove (or reduce?) negative red spikes at start of Rx period.
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2. "CQ DX" is now treated properly when the decoded line is double.clicked.
3. Displayed sync values reduced by 1/2.
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Clear DXCall and DXGrid boxes after logging a QSO.
Add instruction at top of "confirm LogQSO" screen; increase font size on
its labels.
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2. Add a tab for Default Frequencies on Setup window.
3. Update Makefile.MinGW
4. Bump version number to 0.8.
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Signal reports 0 dB and above now displayed as "+03", "+16", etc.
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Changed "Tx = QSO Freq" button to a band-change ComboBox.
Rig control of frequency setting and T/R now works on TS-2000.
T/R sequencing is not yet correct, but I thimnk it still works OK in the
DTR/RTS switching mode.
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and run with PTT control via DTR/RTS.
Will need to replace a "labAzDist" label in mainwindow.ui.
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2. Decoding now starts at t=50 s rather than t=52 s.
3. Label on "Auto is On/Off" button changed to "Enable Tx".
4. Three new options on the Setup menu, to help importing ADIF log into some
fussy loggers:
- Log HT9 without submode
- Convert JT9-x to RTTY for logging
- Log dB reports to Comments
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Tx macros are now enabled.
Bug in decoder fixed.
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Double-click on decoded line copies valid grid to dxGrid box.
Add button workd with an empty call3.txt file.
QSO start/stop times rationalized (somewhat).
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Change "double-click on callsign" so that you can click anywhere on the line,
and make it set TxFreq accordingly.
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Some code cleanup; remove unused code.
Add sub-mode number to wsjtx_rx.log.
git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/branches/wsjtx@2767 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
Include # channels in audio device offerings.
Start implementing "msgsent" correctly. (Not finished!)
Include Date in UTC display.
Use the properly computer snrdb.
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Double-click on waterfall sets Tol to a reduced (mode-dependent) value.
Tol is saved/restored on program restart.
Added digital gain slider for setting input level.
Garbage decode "15P6715P67WCV" is rejected.
Arrays ss and c0 are copied and saved when newdat=1. Further processing is
done on the copies.
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Improve the way pctile gets an estimate of array median.
Put info for mettab() into a data statement.
Attempt decoding near all freqs that give sync >= 1.0
Remove killbyname
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Disable some presently un-implemented controls.
Begin implemnting "Save Synced" and "Save Decoded".
Set compilation to CONSOLE mode.
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Move the ptt function into the Qt-managed code.
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request fails. Then 3rd one is OK, 4th fails, etc., etc.
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displayed range to 1000 Hz.) Noise blanking may be working -- needs
tests. Tx has been implemented.
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