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path: root/host/lib/rfnoc/ctrlport_endpoint.cpp
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-rw-r--r--host/lib/rfnoc/ctrlport_endpoint.cpp45
1 files changed, 29 insertions, 16 deletions
diff --git a/host/lib/rfnoc/ctrlport_endpoint.cpp b/host/lib/rfnoc/ctrlport_endpoint.cpp
index c544a3d4e..2078ecce1 100644
--- a/host/lib/rfnoc/ctrlport_endpoint.cpp
+++ b/host/lib/rfnoc/ctrlport_endpoint.cpp
@@ -10,7 +10,7 @@
#include <uhdlib/rfnoc/chdr_packet_writer.hpp>
#include <uhdlib/rfnoc/ctrlport_endpoint.hpp>
#include <condition_variable>
-#include <boost/format.hpp>
+#include <boost/optional.hpp>
#include <deque>
#include <mutex>
#include <numeric>
@@ -67,9 +67,8 @@ public:
// Send request
auto request = send_request_packet(OP_WRITE, addr, {data}, timestamp);
// Optionally wait for an ACK
- if (ack || _policy.force_acks) {
- wait_for_ack(request);
- }
+ const bool require_ack = ack || _policy.force_acks;
+ wait_for_ack(request, require_ack);
}
void multi_poke32(const std::vector<uint32_t> addrs,
@@ -104,9 +103,8 @@ public:
// Send request
auto request = send_request_packet(OP_BLOCK_WRITE, first_addr, data, timestamp);
// Optionally wait for an ACK
- if (ack || _policy.force_acks) {
- wait_for_ack(request);
- }
+ const bool require_ack = ack || _policy.force_acks;
+ wait_for_ack(request, require_ack);
*/
}
@@ -117,7 +115,7 @@ public:
auto request = send_request_packet(OP_READ, addr, {uint32_t(0)}, timestamp);
// Wait for an ACK
- auto response = wait_for_ack(request);
+ auto response = wait_for_ack(request, true).get();
return response.data_vtr[0];
}
@@ -140,7 +138,7 @@ public:
timestamp);
// Wait for an ACK
- auto response = wait_for_ack(request);
+ auto response = wait_for_ack(request, true).get();
return response.data_vtr;
*/
}
@@ -164,9 +162,8 @@ public:
timestamp);
// Optionally wait for an ACK
- if (ack || _policy.force_acks) {
- wait_for_ack(request);
- }
+ const bool require_ack = ack || _policy.force_acks;
+ wait_for_ack(request, require_ack);
}
void sleep(uhd::time_spec_t duration, bool ack = false) override
@@ -178,9 +175,8 @@ public:
uhd::time_spec_t::ASAP);
// Optionally wait for an ACK
- if (ack || _policy.force_acks) {
- wait_for_ack(request);
- }
+ const bool require_ack = ack || _policy.force_acks;
+ wait_for_ack(request, require_ack);
}
void register_async_msg_validator(async_msg_validator_t callback_f) override
@@ -415,13 +411,30 @@ private:
}
//! Waits for and returns the ACK for the specified request
- const ctrl_payload wait_for_ack(const ctrl_payload& request)
+ //
+ // \param request The request for which we are awaiting the response
+ // \param require_ack A Boolean flag which indicates if we really need that
+ // response. If false, we reduce the timeout to zero
+ // and return an empty control payload if we can't find
+ // the relevant ACK. This can be used to help clear the
+ // response queue without waiting.
+ // \returns The response payload corresponding to \p requst. If \p require_ack
+ // is false, this may also be an empty ctrl_payload object with no
+ // meaningful content.
+ // \throws uhd::op_timeout if require_ack is true, and we exceed the timeout
+ // set by the current policy. Throws various other uhd::rfnoc_error
+ // when there was a communication issue (see the code for details).
+ const boost::optional<ctrl_payload> wait_for_ack(
+ const ctrl_payload& request, const bool require_ack)
{
auto resp_ready = [this]() -> bool { return !_resp_queue.empty(); };
while (true) {
std::unique_lock<std::mutex> lock(_mutex);
// Wait until there is a response in the response queue
if (!resp_ready()) {
+ if (!require_ack) {
+ return {};
+ }
// If we're waiting for a timed command or if we have a
// command in the queue, use the MASSIVE_TIMEOUT instead
auto timeout_time = start_timeout(