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506 lines
20 KiB
C++
506 lines
20 KiB
C++
//
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// Copyright 2010-2011 Ettus Research LLC
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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//
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#include "validate_subdev_spec.hpp"
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#include "../../transport/super_recv_packet_handler.hpp"
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#include "../../transport/super_send_packet_handler.hpp"
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#include "usrp2_impl.hpp"
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#include "usrp2_regs.hpp"
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#include <uhd/utils/log.hpp>
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#include <uhd/utils/msg.hpp>
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#include <uhd/utils/tasks.hpp>
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#include <uhd/exception.hpp>
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#include <uhd/utils/byteswap.hpp>
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#include <uhd/utils/thread_priority.hpp>
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#include <uhd/transport/bounded_buffer.hpp>
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#include <boost/thread/thread.hpp>
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#include <boost/format.hpp>
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#include <boost/bind.hpp>
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#include <boost/thread/mutex.hpp>
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#include <boost/make_shared.hpp>
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#include <iostream>
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using namespace uhd;
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using namespace uhd::usrp;
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using namespace uhd::transport;
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namespace asio = boost::asio;
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namespace pt = boost::posix_time;
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/***********************************************************************
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* helpers
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**********************************************************************/
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static UHD_INLINE pt::time_duration to_time_dur(double timeout){
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return pt::microseconds(long(timeout*1e6));
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}
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static UHD_INLINE double from_time_dur(const pt::time_duration &time_dur){
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return 1e-6*time_dur.total_microseconds();
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}
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/***********************************************************************
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* constants
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**********************************************************************/
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static const size_t vrt_send_header_offset_words32 = 1;
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/***********************************************************************
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* flow control monitor for a single tx channel
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* - the pirate thread calls update
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* - the get send buffer calls check
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**********************************************************************/
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class flow_control_monitor{
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public:
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typedef boost::uint32_t seq_type;
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typedef boost::shared_ptr<flow_control_monitor> sptr;
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/*!
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* Make a new flow control monitor.
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* \param max_seqs_out num seqs before throttling
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*/
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flow_control_monitor(seq_type max_seqs_out):_max_seqs_out(max_seqs_out){
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this->clear();
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_ready_fcn = boost::bind(&flow_control_monitor::ready, this);
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}
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//! Clear the monitor, Ex: when a streamer is created
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void clear(void){
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_last_seq_out = 0;
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_last_seq_ack = 0;
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}
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/*!
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* Gets the current sequence number to go out.
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* Increments the sequence for the next call
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* \return the sequence to be sent to the dsp
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*/
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UHD_INLINE seq_type get_curr_seq_out(void){
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return _last_seq_out++;
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}
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/*!
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* Check the flow control condition.
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* \param timeout the timeout in seconds
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* \return false on timeout
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*/
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UHD_INLINE bool check_fc_condition(double timeout){
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boost::mutex::scoped_lock lock(_fc_mutex);
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if (this->ready()) return true;
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boost::this_thread::disable_interruption di; //disable because the wait can throw
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return _fc_cond.timed_wait(lock, to_time_dur(timeout), _ready_fcn);
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}
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/*!
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* Update the flow control condition.
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* \param seq the last sequence number to be ACK'd
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*/
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UHD_INLINE void update_fc_condition(seq_type seq){
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boost::mutex::scoped_lock lock(_fc_mutex);
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_last_seq_ack = seq;
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lock.unlock();
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_fc_cond.notify_one();
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}
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private:
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bool ready(void){
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return seq_type(_last_seq_out -_last_seq_ack) < _max_seqs_out;
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}
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boost::mutex _fc_mutex;
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boost::condition _fc_cond;
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seq_type _last_seq_out, _last_seq_ack;
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const seq_type _max_seqs_out;
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boost::function<bool(void)> _ready_fcn;
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};
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/***********************************************************************
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* io impl details (internal to this file)
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* - pirate crew
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* - alignment buffer
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* - thread loop
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* - vrt packet handler states
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**********************************************************************/
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struct usrp2_impl::io_impl{
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io_impl(void):
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async_msg_fifo(100/*messages deep*/)
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{
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/* NOP */
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}
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~io_impl(void){
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//Manually deconstuct the tasks, since this was not happening automatically.
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pirate_tasks.clear();
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}
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managed_send_buffer::sptr get_send_buff(size_t chan, double timeout){
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flow_control_monitor &fc_mon = *fc_mons[chan];
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//wait on flow control w/ timeout
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if (not fc_mon.check_fc_condition(timeout)) return managed_send_buffer::sptr();
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//get a buffer from the transport w/ timeout
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managed_send_buffer::sptr buff = tx_xports[chan]->get_send_buff(timeout);
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//write the flow control word into the buffer
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if (buff.get()) buff->cast<boost::uint32_t *>()[0] = uhd::htonx(fc_mon.get_curr_seq_out());
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return buff;
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}
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//tx dsp: xports and flow control monitors
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std::vector<zero_copy_if::sptr> tx_xports;
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std::vector<flow_control_monitor::sptr> fc_mons;
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//methods and variables for the pirate crew
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void recv_pirate_loop(zero_copy_if::sptr, size_t);
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std::list<task::sptr> pirate_tasks;
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bounded_buffer<async_metadata_t> async_msg_fifo;
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double tick_rate;
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};
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/***********************************************************************
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* Receive Pirate Loop
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* - while raiding, loot for message packet
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* - update flow control condition count
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* - put async message packets into queue
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**********************************************************************/
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void usrp2_impl::io_impl::recv_pirate_loop(
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zero_copy_if::sptr err_xport, size_t index
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){
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set_thread_priority_safe();
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//store a reference to the flow control monitor (offset by max dsps)
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flow_control_monitor &fc_mon = *(this->fc_mons[index]);
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while (not boost::this_thread::interruption_requested()){
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managed_recv_buffer::sptr buff = err_xport->get_recv_buff();
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if (not buff.get()) continue; //ignore timeout/error buffers
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try{
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//extract the vrt header packet info
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vrt::if_packet_info_t if_packet_info;
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if_packet_info.num_packet_words32 = buff->size()/sizeof(boost::uint32_t);
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const boost::uint32_t *vrt_hdr = buff->cast<const boost::uint32_t *>();
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vrt::if_hdr_unpack_be(vrt_hdr, if_packet_info);
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//handle a tx async report message
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if (if_packet_info.sid == USRP2_TX_ASYNC_SID and if_packet_info.packet_type != vrt::if_packet_info_t::PACKET_TYPE_DATA){
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//fill in the async metadata
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async_metadata_t metadata;
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metadata.channel = index;
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metadata.has_time_spec = if_packet_info.has_tsi and if_packet_info.has_tsf;
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metadata.time_spec = time_spec_t(
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time_t(if_packet_info.tsi), size_t(if_packet_info.tsf), tick_rate
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);
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metadata.event_code = async_metadata_t::event_code_t(sph::get_context_code(vrt_hdr, if_packet_info));
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//catch the flow control packets and react
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if (metadata.event_code == 0){
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boost::uint32_t fc_word32 = (vrt_hdr + if_packet_info.num_header_words32)[1];
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fc_mon.update_fc_condition(uhd::ntohx(fc_word32));
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continue;
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}
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//else UHD_MSG(often) << "metadata.event_code " << metadata.event_code << std::endl;
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async_msg_fifo.push_with_pop_on_full(metadata);
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if (metadata.event_code &
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( async_metadata_t::EVENT_CODE_UNDERFLOW
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| async_metadata_t::EVENT_CODE_UNDERFLOW_IN_PACKET)
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) UHD_MSG(fastpath) << "U";
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else if (metadata.event_code &
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( async_metadata_t::EVENT_CODE_SEQ_ERROR
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| async_metadata_t::EVENT_CODE_SEQ_ERROR_IN_BURST)
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) UHD_MSG(fastpath) << "S";
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else if (metadata.event_code &
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async_metadata_t::EVENT_CODE_TIME_ERROR
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) UHD_MSG(fastpath) << "L";
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}
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else{
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//TODO unknown received packet, may want to print error...
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}
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}catch(const std::exception &e){
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UHD_MSG(error) << "Error in recv pirate loop: " << e.what() << std::endl;
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}
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}
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}
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/***********************************************************************
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* Helper Functions
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**********************************************************************/
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void usrp2_impl::io_init(void){
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//create new io impl
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_io_impl = UHD_PIMPL_MAKE(io_impl, ());
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//init first so we dont have an access race
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BOOST_FOREACH(const std::string &mb, _mbc.keys()){
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//init the tx xport and flow control monitor
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_io_impl->tx_xports.push_back(_mbc[mb].tx_dsp_xport);
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_io_impl->fc_mons.push_back(flow_control_monitor::sptr(new flow_control_monitor(
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USRP2_SRAM_BYTES/_mbc[mb].tx_dsp_xport->get_send_frame_size()
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)));
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}
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//allocate streamer weak ptrs containers
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BOOST_FOREACH(const std::string &mb, _mbc.keys()){
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_mbc[mb].rx_streamers.resize(_mbc[mb].rx_dsps.size());
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_mbc[mb].tx_streamers.resize(1/*known to be 1 dsp*/);
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}
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//create a new pirate thread for each zc if (yarr!!)
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size_t index = 0;
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BOOST_FOREACH(const std::string &mb, _mbc.keys()){
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//spawn a new pirate to plunder the recv booty
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_io_impl->pirate_tasks.push_back(task::make(boost::bind(
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&usrp2_impl::io_impl::recv_pirate_loop, _io_impl.get(),
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_mbc[mb].tx_dsp_xport, index++
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)));
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}
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}
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void usrp2_impl::update_tick_rate(const double rate){
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_io_impl->tick_rate = rate; //shadow for async msg
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//update the tick rate on all existing streamers -> thread safe
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BOOST_FOREACH(const std::string &mb, _mbc.keys()){
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for (size_t i = 0; i < _mbc[mb].rx_streamers.size(); i++){
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boost::shared_ptr<sph::recv_packet_streamer> my_streamer =
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boost::dynamic_pointer_cast<sph::recv_packet_streamer>(_mbc[mb].rx_streamers[i].lock());
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if (my_streamer.get() == NULL) continue;
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my_streamer->set_tick_rate(rate);
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}
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for (size_t i = 0; i < _mbc[mb].tx_streamers.size(); i++){
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boost::shared_ptr<sph::send_packet_streamer> my_streamer =
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boost::dynamic_pointer_cast<sph::send_packet_streamer>(_mbc[mb].tx_streamers[i].lock());
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if (my_streamer.get() == NULL) continue;
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my_streamer->set_tick_rate(rate);
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}
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}
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}
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void usrp2_impl::update_rx_samp_rate(const std::string &mb, const size_t dsp, const double rate){
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boost::shared_ptr<sph::recv_packet_streamer> my_streamer =
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boost::dynamic_pointer_cast<sph::recv_packet_streamer>(_mbc[mb].rx_streamers[dsp].lock());
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if (my_streamer.get() == NULL) return;
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my_streamer->set_samp_rate(rate);
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const double adj = _mbc[mb].rx_dsps[dsp]->get_scaling_adjustment();
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my_streamer->set_scale_factor(adj);
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}
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void usrp2_impl::update_tx_samp_rate(const std::string &mb, const size_t dsp, const double rate){
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boost::shared_ptr<sph::send_packet_streamer> my_streamer =
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boost::dynamic_pointer_cast<sph::send_packet_streamer>(_mbc[mb].tx_streamers[dsp].lock());
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if (my_streamer.get() == NULL) return;
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my_streamer->set_samp_rate(rate);
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}
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void usrp2_impl::update_rates(void){
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BOOST_FOREACH(const std::string &mb, _mbc.keys()){
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fs_path root = "/mboards/" + mb;
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_tree->access<double>(root / "tick_rate").update();
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//and now that the tick rate is set, init the host rates to something
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BOOST_FOREACH(const std::string &name, _tree->list(root / "rx_dsps")){
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_tree->access<double>(root / "rx_dsps" / name / "rate" / "value").update();
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}
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BOOST_FOREACH(const std::string &name, _tree->list(root / "tx_dsps")){
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_tree->access<double>(root / "tx_dsps" / name / "rate" / "value").update();
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}
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}
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}
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void usrp2_impl::update_rx_subdev_spec(const std::string &which_mb, const subdev_spec_t &spec){
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fs_path root = "/mboards/" + which_mb + "/dboards";
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//sanity checking
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validate_subdev_spec(_tree, spec, "rx", which_mb);
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//setup mux for this spec
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bool fe_swapped = false;
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for (size_t i = 0; i < spec.size(); i++){
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const std::string conn = _tree->access<std::string>(root / spec[i].db_name / "rx_frontends" / spec[i].sd_name / "connection").get();
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if (i == 0 and (conn == "QI" or conn == "Q")) fe_swapped = true;
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_mbc[which_mb].rx_dsps[i]->set_mux(conn, fe_swapped);
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}
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_mbc[which_mb].rx_fe->set_mux(fe_swapped);
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//compute the new occupancy and resize
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_mbc[which_mb].rx_chan_occ = spec.size();
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size_t nchan = 0;
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BOOST_FOREACH(const std::string &mb, _mbc.keys()) nchan += _mbc[mb].rx_chan_occ;
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}
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void usrp2_impl::update_tx_subdev_spec(const std::string &which_mb, const subdev_spec_t &spec){
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fs_path root = "/mboards/" + which_mb + "/dboards";
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//sanity checking
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validate_subdev_spec(_tree, spec, "tx", which_mb);
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//set the mux for this spec
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const std::string conn = _tree->access<std::string>(root / spec[0].db_name / "tx_frontends" / spec[0].sd_name / "connection").get();
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_mbc[which_mb].tx_fe->set_mux(conn);
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//compute the new occupancy and resize
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_mbc[which_mb].tx_chan_occ = spec.size();
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size_t nchan = 0;
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BOOST_FOREACH(const std::string &mb, _mbc.keys()) nchan += _mbc[mb].tx_chan_occ;
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}
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/***********************************************************************
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* Async Data
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**********************************************************************/
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bool usrp2_impl::recv_async_msg(
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async_metadata_t &async_metadata, double timeout
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){
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boost::this_thread::disable_interruption di; //disable because the wait can throw
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return _io_impl->async_msg_fifo.pop_with_timed_wait(async_metadata, timeout);
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}
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/***********************************************************************
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* Receive streamer
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**********************************************************************/
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rx_streamer::sptr usrp2_impl::get_rx_stream(const uhd::stream_args_t &args_){
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stream_args_t args = args_;
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//setup defaults for unspecified values
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args.otw_format = args.otw_format.empty()? "sc16" : args.otw_format;
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args.channels = args.channels.empty()? std::vector<size_t>(1, 0) : args.channels;
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const unsigned sc8_scalar = unsigned(args.args.cast<double>("scalar", 0x400));
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//calculate packet size
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static const size_t hdr_size = 0
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+ vrt::max_if_hdr_words32*sizeof(boost::uint32_t)
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+ sizeof(vrt::if_packet_info_t().tlr) //forced to have trailer
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- sizeof(vrt::if_packet_info_t().cid) //no class id ever used
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;
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const size_t bpp = _mbc[_mbc.keys().front()].rx_dsp_xports[0]->get_recv_frame_size() - hdr_size;
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const size_t bpi = convert::get_bytes_per_item(args.otw_format);
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const size_t spp = unsigned(args.args.cast<double>("spp", bpp/bpi));
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//make the new streamer given the samples per packet
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boost::shared_ptr<sph::recv_packet_streamer> my_streamer = boost::make_shared<sph::recv_packet_streamer>(spp);
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//init some streamer stuff
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my_streamer->resize(args.channels.size());
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my_streamer->set_vrt_unpacker(&vrt::if_hdr_unpack_be);
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//set the converter
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uhd::convert::id_type id;
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id.input_format = args.otw_format + "_item32_be";
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id.num_inputs = 1;
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id.output_format = args.cpu_format;
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id.num_outputs = 1;
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my_streamer->set_converter(id);
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//bind callbacks for the handler
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for (size_t chan_i = 0; chan_i < args.channels.size(); chan_i++){
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const size_t chan = args.channels[chan_i];
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size_t num_chan_so_far = 0;
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BOOST_FOREACH(const std::string &mb, _mbc.keys()){
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num_chan_so_far += _mbc[mb].rx_chan_occ;
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if (chan < num_chan_so_far){
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const size_t dsp = chan + _mbc[mb].rx_chan_occ - num_chan_so_far;
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_mbc[mb].rx_dsps[dsp]->set_nsamps_per_packet(spp); //seems to be a good place to set this
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if (not args.args.has_key("noclear")) _mbc[mb].rx_dsps[dsp]->clear();
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_mbc[mb].rx_dsps[dsp]->set_format(args.otw_format, sc8_scalar);
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my_streamer->set_xport_chan_get_buff(chan_i, boost::bind(
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&zero_copy_if::get_recv_buff, _mbc[mb].rx_dsp_xports[dsp], _1
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), true /*flush*/);
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_mbc[mb].rx_streamers[dsp] = my_streamer; //store weak pointer
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break;
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}
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}
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}
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//set the packet threshold to be an entire socket buffer's worth
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const size_t packets_per_sock_buff = size_t(50e6/_mbc[_mbc.keys().front()].rx_dsp_xports[0]->get_recv_frame_size());
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my_streamer->set_alignment_failure_threshold(packets_per_sock_buff);
|
|
|
|
//sets all tick and samp rates on this streamer
|
|
this->update_rates();
|
|
|
|
return my_streamer;
|
|
}
|
|
|
|
/***********************************************************************
|
|
* Transmit streamer
|
|
**********************************************************************/
|
|
tx_streamer::sptr usrp2_impl::get_tx_stream(const uhd::stream_args_t &args_){
|
|
stream_args_t args = args_;
|
|
|
|
//setup defaults for unspecified values
|
|
args.otw_format = args.otw_format.empty()? "sc16" : args.otw_format;
|
|
args.channels = args.channels.empty()? std::vector<size_t>(1, 0) : args.channels;
|
|
|
|
if (args.otw_format != "sc16"){
|
|
throw uhd::value_error("USRP TX cannot handle requested wire format: " + args.otw_format);
|
|
}
|
|
|
|
//calculate packet size
|
|
static const size_t hdr_size = 0
|
|
+ vrt::max_if_hdr_words32*sizeof(boost::uint32_t)
|
|
+ vrt_send_header_offset_words32*sizeof(boost::uint32_t)
|
|
- sizeof(vrt::if_packet_info_t().cid) //no class id ever used
|
|
;
|
|
const size_t bpp = _mbc[_mbc.keys().front()].tx_dsp_xport->get_send_frame_size() - hdr_size;
|
|
const size_t spp = bpp/convert::get_bytes_per_item(args.otw_format);
|
|
|
|
//make the new streamer given the samples per packet
|
|
boost::shared_ptr<sph::send_packet_streamer> my_streamer = boost::make_shared<sph::send_packet_streamer>(spp);
|
|
|
|
//init some streamer stuff
|
|
my_streamer->resize(args.channels.size());
|
|
my_streamer->set_vrt_packer(&vrt::if_hdr_pack_be, vrt_send_header_offset_words32);
|
|
|
|
//set the converter
|
|
uhd::convert::id_type id;
|
|
id.input_format = args.cpu_format;
|
|
id.num_inputs = 1;
|
|
id.output_format = args.otw_format + "_item32_be";
|
|
id.num_outputs = 1;
|
|
my_streamer->set_converter(id);
|
|
|
|
//bind callbacks for the handler
|
|
for (size_t chan_i = 0; chan_i < args.channels.size(); chan_i++){
|
|
const size_t chan = args.channels[chan_i];
|
|
size_t num_chan_so_far = 0;
|
|
size_t abs = 0;
|
|
BOOST_FOREACH(const std::string &mb, _mbc.keys()){
|
|
num_chan_so_far += _mbc[mb].tx_chan_occ;
|
|
if (chan < num_chan_so_far){
|
|
const size_t dsp = chan + _mbc[mb].tx_chan_occ - num_chan_so_far;
|
|
if (not args.args.has_key("noclear")){
|
|
_mbc[mb].tx_dsp->clear();
|
|
_io_impl->fc_mons[abs]->clear();
|
|
}
|
|
if (args.args.has_key("underflow_policy")) _mbc[mb].tx_dsp->set_underflow_policy(args.args["underflow_policy"]);
|
|
my_streamer->set_xport_chan_get_buff(chan_i, boost::bind(
|
|
&usrp2_impl::io_impl::get_send_buff, _io_impl.get(), abs, _1
|
|
));
|
|
_mbc[mb].tx_streamers[dsp] = my_streamer; //store weak pointer
|
|
break;
|
|
}
|
|
abs += 1; //assume 1 tx dsp
|
|
}
|
|
}
|
|
|
|
//sets all tick and samp rates on this streamer
|
|
this->update_rates();
|
|
|
|
return my_streamer;
|
|
}
|