mirror of
https://github.com/saymrwulf/uhd.git
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Applying formatting changes to all .cpp and .hpp files in the following
directories:
```
find host/examples/ -iname *.hpp -o -iname *.cpp | \
xargs clang-format -i -style=file
find host/tests/ -iname *.hpp -o -iname *.cpp | \
xargs clang-format -i -style=file
find host/lib/usrp/dboard/neon/ -iname *.hpp -o -iname *.cpp | \
xargs clang-format -i -style=file
find host/lib/usrp/dboard/magnesium/ -iname *.hpp -o -iname *.cpp | \
xargs clang-format -i -style=file
find host/lib/usrp/device3/ -iname *.hpp -o -iname *.cpp | \
xargs clang-format -i -style=file
find host/lib/usrp/mpmd/ -iname *.hpp -o -iname *.cpp | \
xargs clang-format -i -style=file
find host/lib/usrp/x300/ -iname *.hpp -o -iname *.cpp | \
xargs clang-format -i -style=file
find host/utils/ -iname *.hpp -o -iname *.cpp | \
xargs clang-format -i -style=file
find mpm/ -iname *.hpp -o -iname *.cpp | \
xargs clang-format -i -style=file
```
Also formatted host/include/, except Cpp03 was used as a the language
standard instead of Cpp11.
```
sed -i 's/ Cpp11/ Cpp03/g' .clang-format
find host/include/ -iname *.hpp -o -iname *.cpp | \
xargs clang-format -i -style=file
```
Formatting style was designated by the .clang-format file.
161 lines
4.9 KiB
C++
161 lines
4.9 KiB
C++
//
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// Copyright 2014-2016 Ettus Research LLC
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// Copyright 2018 Ettus Research, a National Instruments Company
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//
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// SPDX-License-Identifier: GPL-3.0-or-later
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//
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#include "graph.hpp"
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#include <boost/test/unit_test.hpp>
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#include <iostream>
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using namespace uhd::rfnoc;
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// test class derived, this is what we search for
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class result_node : public test_node
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{
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public:
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typedef boost::shared_ptr<result_node> sptr;
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result_node(const std::string& test_id) : test_node(test_id){};
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}; /* class result_node */
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#define MAKE_RESULT_NODE(name) result_node::sptr name(new result_node(#name));
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BOOST_AUTO_TEST_CASE(test_simplest_downstream_search)
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{
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MAKE_NODE(node_A);
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MAKE_NODE(node_B);
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// Simplest possible scenario: Connect B downstream of A and let
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// A find B
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connect_nodes(node_A, node_B);
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test_node::sptr result = node_A->find_downstream_node<test_node>()[0];
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BOOST_REQUIRE(result);
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BOOST_CHECK_EQUAL(result->get_test_id(), "node_B");
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}
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BOOST_AUTO_TEST_CASE(test_simple_downstream_search)
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{
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MAKE_NODE(node_A);
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MAKE_NODE(node_B0);
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MAKE_NODE(node_B1);
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// Simple scenario: Connect both B{1,2} downstream of A and let
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// it find them
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connect_nodes(node_A, node_B0);
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connect_nodes(node_A, node_B1);
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// We're still searching for test_node, so any downstream block will match
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std::vector<test_node::sptr> result = node_A->find_downstream_node<test_node>();
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BOOST_REQUIRE(result.size() == 2);
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BOOST_CHECK(
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(result[0]->get_test_id() == "node_B0" and result[1]->get_test_id() == "node_B1")
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or (result[1]->get_test_id() == "node_B0"
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and result[0]->get_test_id() == "node_B1"));
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BOOST_CHECK(result[0] == node_B0 or result[0] == node_B1);
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}
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BOOST_AUTO_TEST_CASE(test_linear_downstream_search)
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{
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MAKE_NODE(node_A);
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MAKE_RESULT_NODE(node_B);
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MAKE_RESULT_NODE(node_C);
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// Slightly more complex graph:
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connect_nodes(node_A, node_B);
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connect_nodes(node_B, node_C);
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// This time, we search for result_node
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std::vector<result_node::sptr> result = node_A->find_downstream_node<result_node>();
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std::cout << "size: " << result.size() << std::endl;
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BOOST_CHECK_EQUAL(result.size(), 1);
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BOOST_CHECK_EQUAL(result[0]->get_test_id(), "node_B");
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for (const result_node::sptr& node : result) {
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std::cout << node->get_test_id() << std::endl;
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}
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}
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BOOST_AUTO_TEST_CASE(test_multi_iter_downstream_search)
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{
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MAKE_NODE(node_A);
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MAKE_NODE(node_B0);
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MAKE_NODE(node_B1);
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MAKE_NODE(node_C0);
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MAKE_RESULT_NODE(node_C1);
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MAKE_RESULT_NODE(node_C2);
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MAKE_RESULT_NODE(node_C3);
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MAKE_RESULT_NODE(node_D0);
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// Slightly more complex graph:
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connect_nodes(node_A, node_B0);
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connect_nodes(node_A, node_B1);
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connect_nodes(node_B0, node_C0);
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connect_nodes(node_B0, node_C1);
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connect_nodes(node_B1, node_C2);
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connect_nodes(node_B1, node_C3);
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connect_nodes(node_C0, node_D0);
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// This time, we search for result_node
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std::vector<result_node::sptr> result = node_A->find_downstream_node<result_node>();
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BOOST_REQUIRE(result.size() == 4);
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for (const result_node::sptr& node : result) {
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std::cout << node->get_test_id() << std::endl;
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}
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}
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BOOST_AUTO_TEST_CASE(test_multi_iter_cycle_downstream_search)
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{
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MAKE_NODE(node_A);
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MAKE_NODE(node_B0);
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MAKE_NODE(node_B1);
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MAKE_NODE(node_C0);
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MAKE_RESULT_NODE(node_C1);
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MAKE_RESULT_NODE(node_C2);
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MAKE_RESULT_NODE(node_C3);
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MAKE_RESULT_NODE(node_D0);
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// Slightly more complex graph:
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connect_nodes(node_A, node_B0);
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// This connection goes both ways, causing a cycle
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connect_nodes(node_A, node_B1);
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connect_nodes(node_B1, node_A);
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connect_nodes(node_B0, node_C0);
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connect_nodes(node_B0, node_C1);
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connect_nodes(node_B1, node_C2);
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connect_nodes(node_B1, node_C3);
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connect_nodes(node_C0, node_D0);
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// This time, we search for result_node
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std::vector<result_node::sptr> result = node_A->find_downstream_node<result_node>();
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BOOST_REQUIRE(result.size() == 4);
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for (const result_node::sptr& node : result) {
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std::cout << node->get_test_id() << std::endl;
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}
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}
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BOOST_AUTO_TEST_CASE(test_mini_cycle_downstream_and_upstream)
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{
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MAKE_NODE(node_A);
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MAKE_NODE(node_B);
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// Connect them in a loop
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connect_nodes(node_A, node_B);
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connect_nodes(node_B, node_A);
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std::vector<test_node::sptr> result;
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result = node_A->find_downstream_node<test_node>();
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BOOST_REQUIRE_EQUAL(result.size(), 1);
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BOOST_REQUIRE(result[0] == node_B);
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result = node_B->find_downstream_node<test_node>();
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BOOST_REQUIRE_EQUAL(result.size(), 1);
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BOOST_REQUIRE(result[0] == node_A);
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result = node_A->find_upstream_node<test_node>();
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BOOST_REQUIRE_EQUAL(result.size(), 1);
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BOOST_REQUIRE(result[0] == node_B);
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result = node_B->find_upstream_node<test_node>();
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BOOST_REQUIRE_EQUAL(result.size(), 1);
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BOOST_REQUIRE(result[0] == node_A);
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}
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