The FIR filter applied gain. Removing it caused incorrect scaling and
signals where every other sample was zero. Also parameterized heterodyne
frontend processing so it would not use resources in images not
requiring it.
Signed-off-by: michael-west <michael.west@ettus.com>
Original-commit: c27519624ec0f3a44ac1130635a03dafcf2e7f13
This adds time alignment to the radio, so that the first transmitted or
received sample gets shifted into the position corresponding to its
timestamp. The applies only to configurations in which SPC > 1.
For example, if the radio time is incrementing by 4 samples per cycle
(SPC = 4) starting at time 0, and a packet is supposed to be
transmitted at time 201, then the data must be left-shifted by one
sample (201 % 4 = 1), so that the first sample of the packet correctly
aligns with the radio sample corresponding to time 201. Things get more
complicated if the radio time is not a multiple of the SPC (i.e., the
radio time started at time 1, 2, or 3 instead of 0).
Original-commit: 9afa6be7b270047cb03cbd5a16482e5d19edc3dd
This module supports timed sample alignment by shifting radio words
with multiple samples per cycle to put the first sample into the
correct position for the required timestamp.
Original-commit: 0a13db4afaaf88dda3bd194bbf20271c690d5c7f
The 1/4-rate downconverter naively negated the input signals (y = -x)
which doesn't work when the signal is at full scale. In particular,
signals that are at full negative scale get converted to zeros (even
though 2's complement would be to return the same number, although that
would also be incorrect).
This fix changes it such that the smallest negative value gets converted
to the largest positive value.
This is not a mathematical correction inversion, but a minor amplitude
distortion. However, since we're already at full scale, and thus
probably clipping, this is preferable to the incorrect resolution of the
regular inversion. Put differently, there is no better value in this
case.
Original-commit: 8bd982745e6247cf3cf3da52925c65126287428a
This adds several features to the SystemVerilog Eth/IPv4/UDP transport
adaptor including:
- Compat register
- NODE_INST register
- Capabilities register
- KV map access for custom routing on RX data paths
- CHDR header removal for raw payloads to be sent over UDP
Also adds xport_adapter_ctrl.py, which allows controlling the new
registers.
Co-authored-by: Martin Braun <martin.braun@ettus.com>
Original-commit: 3c3da4c62f33d02bb05bcdc38e8929cbf2cdd9a3
The NODE_INST parameter was set to 0. This adds it as a parameter so
that each transport adapter can have a unique node instance number.
Original-commit: c6bfd2e7f8313d727c2e557958f1b1ac2f674d98
The NET_CHDR_W parameter tells the transport adapter what CHDR width
is used in transport packets, such as Ethernet packets. By default the
CHDR width used by the transport and RFNoC core will be the same. The
NET_CHDR_W parameter can be used in situations where the RFNoC core
expects a CHDR width from the transport adapter that is different from
that used over the network. In this situation, the transport adapter
will rewrite the CHDR packets so that each side gets the expected CHDR
width.
Original-commit: a9e49b7c587ef778ee0fe327e8bdcb15e0b0fc95
In Vivado 2021.1, it is no longer allowed to use "default: 0" to
initialize an enum within a packed struct. So we must initalize enum
data members explicitly now.
Original-commit: 8007b6b4dff5b64d476b2e3ccb68a777c2f02c8b
This adds the ability to do IP generation and FPGA builds using the
--jobs (-j) option with Make. For example, rather than generating each
IP one after another, you can generate up to N at a time using N Vivado
instances. This greatly reduces the IP generation time. Similarly,
parallel jobs can be used to easily build different FPGA variants
simultaneously.
Because FPGA builds can consume a lot of memory, care must be taken to
ensure that the number of jobs is not too high for the amount of memory
available.
New IP make targets were added for each USRP so that IP can be built
separately from the FPGA. The IP targets are now a dependency on each
FPGA target.
For example, you can generate the IP for X310 using 4 parallel jobs
using the following command:
make -j4 X310_IP
Or, build two X310 bitstreams simultaneously:
make -j2 X310_XG X310_HG
Original-commit: 4b03e237a96ee277eefff257d65b08708c38662c
This fixes warnings regarding the first argument to $fatal(), which is
supposed to be a number indicating what diagnostics to display. 1
corresponds to "Prints simulation time and location".
Original-commit: 58763bdfdaa276155ec6b79a3e5420de17172c7a
- Added command time to readback of time from Radio block.
- Added wait for time to readback of shared registers in Radio block.
Signed-off-by: michael-west <michael.west@ettus.com>
Original-commit: 8daa80c05f8006697aea05fea4ac5cd4dabbaef1
- Add registers to read current record and play positions.
- Add register to read current space in play command FIFO to allow
software to avoid overflowing the FIFO.
- Cache base address and size with play command in command FIFO.
- Fix timestamp logic. Timestamp is only for the first packet of a
burst. The increment of 1 for each sample is not accurate because
it assumed the Replay block was playing at the same rate as the
Radio, which cannot be assumed.
Maintained backwards compatibility with older API.
Signed-off-by: michael-west <michael.west@ettus.com>
Original-commit: 1545d3ff05f14b8dd175736b326fe6cae7dc830d
Before this change, the packet size output by the Replay block during
playback was limited to length of a full memory burst transaction.
This led to relatively small packets during playback (typically
2 KiB) and had other side effects, such as simultaneous playback from
two different memory locations using different packet sizes because of
differences in memory alignment.
With this change, the configured packet size, as set by the register
REG_PLAY_WORDS_PER_PKT, is used for all packets except the last
packet of playback, which can of course be smaller.
Original-commit: 082a733c326d6332d581d5b7bf9ee86a503ba502
This sets the Replay block's counter width so that memory bursts are
up to 2 KiB. Previously, the counter width was fixed, which meant
that wide memories would require especially large buffers and could
exceed the 4 KiB limit imposed by AXI.
Original-commit: 08d03f881e2767f45ab7fc18c8003c9739b0ffb2
Change AWIDTH to be the same as MEM_ADDR_W by default. Current USRPs
assume the AXI address width is the same as MEM_ADDR_W.
Original-commit: 6936a9ac664cbc312fd17a5ebab9b40069615f7a
Some comments describing data flow direction were wrong. This commit
updates the Mako files and updates the noc_shell modules with newly
generated versions.
Original-commit: 270a7e13c365d05ba04ab44a2f844d96ba15f43b
Added registers to read back radio time. Bumped minor compat.
Signed-off-by: michael-west <michael.west@ettus.com>
Original-commit: 43ab4c8b43d8407fc9f345ca4b13634f03ad4a43