Commit Graph

20 Commits

Author SHA1 Message Date
Jon Szymaniak 8d9e6b58bb bladeRF: Fixed incorrectly placed 'else'
This addresses a defect introduced in 6e75abf which causes the
_consecutive_failures count to get reset with every failure, rather
then upon a successful return value.
2014-11-06 21:30:32 +01:00
Jon Szymaniak 6e75abf198 bladeRF: Don't fail out until 3 consecutive errors have occurred
This change is intended to make the bladeRF source/sink implementations
slightly more resilient to any transient issues in a flow graph.

For poor choices of buffers/transfers or under high CPU load, an RX or
TX operation might time out. Instead of immediately reporting WORK_DONE
and bailing out, an error message is now printed and the device will
attempt to continue transmitting/receiving samples.

After 3 consecutive errors have occurred on an RX/TX operation, the
device will report WORK_DONE; in this situation, something is likely
very wrong.
2014-11-03 23:24:04 +01:00
Jon Szymaniak 23b1b9cdb1 bladeRF: Removed unused bladerf_metadata parameter from rx/tx calls
It is safe (and preferred) to pass NULL for the metadata paremeter when
using a format that does utilize the metadata structure.
2014-11-03 23:23:54 +01:00
Brian Padalino 4e0a2c28e3 bladerf: Updated source/sink to use libbladeRF's sync interface 2014-03-10 15:34:19 +01:00
Brian Padalino d960d1119c bladeRF: Modifying correction calls.
Modifying correction function calls to match libbladeRF API.
2014-01-18 20:20:19 +01:00
Jon Szymaniak 4a0d74f059 bladerf: Updates for libbladeRF v0.11.0 API changes 2014-01-13 17:31:07 +01:00
Jon Szymaniak 748ac00b25 bladerf: Use rational sample rate functions
libbladeRF provides accessors for rational sample rates, which the
integer sample rate functions use under the hood. Therefore, there's no
need to check if the requested rate contains a fractional portion and
switch between the two sets of functions.
2014-01-13 17:30:32 +01:00
Jon Szymaniak 8bbd2b5bb5 bladerf: Added start()/stop() implementations 2014-01-13 17:19:44 +01:00
Dimitri Stolnikov e68f8505df bladerf: implement DC offset and IQ imbalance correction
This patch has been provided by Brent J.
2014-01-11 08:57:49 +01:00
Jon Szymaniak 44bd325a86 bladerf: Moved initializations to bladerf_common.c, misc. cleanup
Common parameter handling has been moved into bladerf_common::init().

The buflen parameter is now in units of samples, not bytes. This
deviates from the other gr-osmosdr items. However, with the requirement
that buffers be in multiples of 1024 samples, this makes specifying this
parameter a bit easier. The user shouldn't need to know we're operating
on SC16Q12 values under the hood, and have to calculate accordingly.

To avoid confusion when both a bladeRF source and sink are in a flow
graph a [bladeRF source/sink] prefix has been added to output. Error
number have been replaced with bladeRF string representations of these
error values.

Firmware flashing has been removed. The bladeRF-cli or bladeRF-flash
tools are the preferred route for firmware upgrades.
2013-10-30 18:59:54 +01:00
Jon Szymaniak 03c42ef320 bladerf: Moved no longer "common" items out of bladerf_common
The gr_complex FIFO is no longer used on the TX side, so it doesn't
really make sense to have it in bladerf_common. The associated items
have been moved into bladerf_source, and some renaming has been done in
bladerf_sink to tidy up.

Pending further performance tests of the bladerf_source, the _fifo
member (boost::circular_buffer) may need to be replaced.
2013-10-30 18:59:48 +01:00
Daniel Gröber 46a241624a bladerf: Added device caching, this enables full-duplex operation. 2013-10-29 23:20:21 +01:00
Dimitri Stolnikov c744a7b35a remove unused variables 2013-10-25 23:32:13 +02:00
Dimitri Stolnikov 6f4e16ff28 bladerf: use newstyle version getters 2013-10-04 18:32:34 +02:00
Dimitri Stolnikov f057decd1c bladerf: implement automatic bandwidth selection 2013-09-28 13:49:13 +02:00
Jon Szymaniak 9b41c6aa20 bladeRF: Refactored buffering scheme in sink
Removed the use of an intermediate sample FIFO in the sink
implementation. Note the the FIFO has not been moved out of
bladerf_common --> bladerf_source_c in this commit.

work() now handles converting samples from complex to SC16_Q12, and filling
"transmit-ready" buffers. The callbacks are now only responsible for
marking the provided buffer free, and returning the next buffer.

It appears that a small deadlock issues remains in this changest, which
can be induced by:
 1: Using a small sample rate (160Khz)
 2: Switching back and forth between sinusoid <-> GSM burst

 In this case, it appears that work() is blocked waiting for a buffer to
 become free. More investigation here is required...
2013-09-28 00:07:55 +02:00
Dimitri Stolnikov ba7188727c bladerf: migration to async api (WIP)
receive works, transmit locks up in work() after few seconds
2013-09-28 00:07:49 +02:00
Dimitri Stolnikov 265de87c45 bladerf: follow recent API changes
tested against aea04c5f119288370166ece05166a8a4157da6fa
2013-08-27 22:41:54 +02:00
Dimitri Stolnikov 93ad959d8d bladerf: migrate to new api to enable/disable TX/RX modules
TX support has been verified with osmocom_siggen and fpga image from git
f6c6a3abcb22d2794946e5adbc556805a73788a3
2013-07-26 21:46:47 +02:00
Dimitri Stolnikov e5f7b28093 bladerf: add support for nuand LLC bladeRF (WIP)
This is based on the original work (https://github.com/Nuand/gr-osmosdr)
done by folks at nuand LLC for the gr3.6 branch of gr-osmosdr.

The following modifications have been done in this commit:

* port to gr-osmosdr master codebase (gr3.7)
* moved shared properties to bladerf_common
* added & verified IF filter bandwidth setters
* set LMS6002D registers with values taken from FAQ 5.27
* print device information (serial/versions) on startup
* added fpga= and fw= device arguments to program MCU/FPGA
* added bladerf=# dev. arg. to select a specific bladeRF
* grc gain field controls RF path VGA for RX/TX
* grc BB gain field controls BB path VGA for RX/TX

Usage example:

osmocom_fft -a "bladerf,fpga=/tmp/hostedx115.rbf"

The following RX named gain stages are available:

LNA: 0 to 6 dB, in 3dB steps
VGA1: 5 to 30 dB, in 1dB steps; nonlinear mapping done inside the lib
VGA2: 0 to 60 dB, in 3dB steps; not recommended to be used above 30dB

The following TX named gain stages are available:

VGA1: -35 to -4 dB, in 1dB steps, BB side
VGA2: 0 to 25 dB, in 1dB steps, RF side

Thanks a lot to the team of nuand LLC for this major contribution.
2013-07-21 11:59:22 +02:00