| Commit message (Collapse) | Author | Age | Files | Lines |
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Note: template_lvbitx.{cpp,hpp} need to be excluded from the list of
files that clang-format gets applied against.
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Note: Replacing everything with a lambda would be even better, but that
can't be easily scripted so we'll do this as a first step to reduce the
Boost footprint.
This also removes occurences of #include <boost/bind.hpp>, and makes
sure all usages of std::bind have an #include <functional>. clang-format
wasn't always applied to minimize the changeset in this commit, however,
it was applied to the blocks of #includes.
Due to conflicts with other Boost libraries, the placeholders _1, _2,
etc. could not be directly used, but had to be explicitly called out
(as std::placeholders::_1, etc.). This makes the use of std::bind even
uglier, which serves as another reminder that using std::bind (and even
more so, boost::bind) should be avoided.
nirio/rpc/rpc_client.cpp still contains a reference to boost::bind. It
was not possible to remove it by simply doing a search and replace, so
it will be removed in a separate commit.
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To avoid the proliferation of additional include directories and
multiple ways of including project-local headers, we now default to
moving all headers that are used across UHD into the uhdlib/
subdirectory.
Some #include statements were also reordered as they were modified for
closer compliance with the coding guidelines.
Internal cpp source files should now include files like this:
#include <uhdlib/rfnoc/ctrl_iface.hpp>
Reviewed-by: Ashish Chaudhari <ashish.chaudhari@ettus.com>
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All copyright is now attributed to "Ettus Research, a National
Instruments company".
SPDX headers were also updated to latest version 3.0.
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- uhd::usrp::mboard_eeprom_t is now simply a map. Its commit() method
has no utility being a public API call, because the user never gets
access to the appropriate I2C object (Minor API breakage)
- The central mboard_eeprom.cpp file was broken up and put into many
smaller compilation units in every device's implementation folder.
- Renamed some of the constants (e.g. B000_* -> USRP1_*, N100_* ->
N200_*)
- Removed the N000_* EEPROM code, because, well, you know, there's no
such device
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Note: This is the first commit that uses for-range, and range-based
for-loops are now usable for UHD development.
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types)
- Also removes all references to boost/cstdint.hpp and replaces it with
stdint.h (The 'correct' replacement would be <cstdint>, but not all of our
compilers support that).
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- Moved dboard iface initialization to dboard_manager
- Added a restricted register function. Restricted dboards
don't expose their control iface in the property tree
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- Added desired and coerced values and accessors to property
- Added support to register desired subscribers
- set APIs don't reallocate storage for a property value
- Renamed callback method registration APIs
- Registering 2 coercers or publishers for a property will throw
- Registering a coercer and a publisher for the same property will throw
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Also includes NI-USRP Windows Registry Key fixes.
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* Add "ignore-cal-file" to the uhd::device_addr_t arguments
* Added documentation for new feature
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* OctoClock can communicate with UHD over Ethernet
* Can read NMEA strings from GPSDO and send to host
* Added multi_usrp_clock class for clock devices
* uhd::device can now filter to return only USRP devices or clock devices
* New OctoClock bootloader can accept firmware download over Ethernet
* Added octoclock_burn_eeprom,octoclock_firmware_burner utilities
* Added test_clock_synch example to show clock API
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Fixing unsafe sscanf call.
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* since its only used internally in b100
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Conflicts:
host/lib/usrp/b100/b100_impl.cpp
host/lib/usrp/usrp1/usrp1_impl.hpp
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* Removed all host code dependencies on firmware headers
* Put in CMake settings for CPack source
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This uses the new b100/e100 common core and FIFO control modules.
Subsequent commit will be the compatible FPGA merge.
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the current host code and places them in the images directory
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dboard subdev names are more descriptive (RFX RX is now RFX1200 RX, etc)
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"stuffing zeroes" problem and improves transport reliability.
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Must zero out the default IQ correction to have zero effect by default.
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Determine state of control endpoint,
re-enumerate to put in a known state,
rerun some initialization code.
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