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// Copyright(c) 2017-2018, Intel Corporation
//
// Redistribution  and  use  in source  and  binary  forms,  with  or  without
// modification, are permitted provided that the following conditions are met:
//
// * Redistributions of  source code  must retain the  above copyright notice,
//   this list of conditions and the following disclaimer.
// * Redistributions in binary form must reproduce the above copyright notice,
//   this list of conditions and the following disclaimer in the documentation
//   and/or other materials provided with the distribution.
// * Neither the name  of Intel Corporation  nor the names of its contributors
//   may be used to  endorse or promote  products derived  from this  software
//   without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
// AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING,  BUT NOT LIMITED TO,  THE
// IMPLIED WARRANTIES OF  MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
// ARE DISCLAIMED.  IN NO EVENT  SHALL THE COPYRIGHT OWNER  OR CONTRIBUTORS BE
// LIABLE  FOR  ANY  DIRECT,  INDIRECT,  INCIDENTAL,  SPECIAL,  EXEMPLARY,  OR
// CONSEQUENTIAL  DAMAGES  (INCLUDING,  BUT  NOT LIMITED  TO,  PROCUREMENT  OF
// SUBSTITUTE GOODS OR SERVICES;  LOSS OF USE,  DATA, OR PROFITS;  OR BUSINESS
// INTERRUPTION)  HOWEVER CAUSED  AND ON ANY THEORY  OF LIABILITY,  WHETHER IN
// CONTRACT,  STRICT LIABILITY,  OR TORT  (INCLUDING NEGLIGENCE  OR OTHERWISE)
// ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE,  EVEN IF ADVISED OF THE
// POSSIBILITY OF SUCH DAMAGE.

#include "types_int.h"
#include "xfpga.h"
#include "intel-fpga.h"
#include "fpga-dfl.h"
#include "gtest/gtest.h"
#include "mock/test_system.h"
#include "sysfs_int.h"
#include <linux/ioctl.h>

extern "C" {
int xfpga_plugin_initialize(void);
int xfpga_plugin_finalize(void);
}

using namespace opae::testing;

class reset_c_p
    : public ::testing::TestWithParam<std::string> {
 protected:
  reset_c_p()
  : handle_(nullptr),
    tokens_{{nullptr, nullptr}} {}

  virtual void SetUp() override {
    ASSERT_TRUE(test_platform::exists(GetParam()));
    platform_ = test_platform::get(GetParam());
    system_ = test_system::instance();
    system_->initialize();
    system_->prepare_syfs(platform_);

    ASSERT_EQ(xfpga_plugin_initialize(), FPGA_OK);
    ASSERT_EQ(xfpga_fpgaGetProperties(nullptr, &filter_), FPGA_OK);
    ASSERT_EQ(fpgaPropertiesSetObjectType(filter_, FPGA_ACCELERATOR), FPGA_OK);
    ASSERT_EQ(xfpga_fpgaEnumerate(&filter_, 1, tokens_.data(), tokens_.size(),
                            &num_matches_),
              FPGA_OK);
    ASSERT_EQ(xfpga_fpgaOpen(tokens_[0], &handle_, 0), FPGA_OK);
  }

  virtual void TearDown() override {
    EXPECT_EQ(fpgaDestroyProperties(&filter_), FPGA_OK);
    if (handle_ != nullptr) { EXPECT_EQ(xfpga_fpgaClose(handle_), FPGA_OK); }
    for (auto &t : tokens_) {
      if (t) {
        EXPECT_EQ(xfpga_fpgaDestroyToken(&t), FPGA_OK);
        t = nullptr;
      }
    }
    xfpga_plugin_finalize();
    system_->finalize();
  }

  fpga_handle handle_;
  std::array<fpga_token, 2> tokens_;
  fpga_properties filter_;
  uint32_t num_matches_;
  test_platform platform_;
  test_system *system_;
};

/**
 * @test       reset_c
 * @brief      test_port_drv_reset
 * @details    When the parameters are invalid and the drivers are loaded,
 *             xfpga_fpgaReset returns FPGA_INVALID_PARAM.
 *
 */
TEST_P(reset_c_p, test_port_drv_reset) {
  EXPECT_EQ(FPGA_INVALID_PARAM, xfpga_fpgaReset(NULL));
}

/**
 * @test       reset_c
 * @brief      test_port_drv_reset_02
 * @details    When the parameters are invalid and the drivers are
 *             loaded, xfpga_fpgaReset return error.
 *
 */
TEST_P(reset_c_p, test_port_drv_reset_02) {

  // Reset slot
  EXPECT_EQ(FPGA_INVALID_PARAM, xfpga_fpgaReset(NULL));

  struct _fpga_handle* _handle = (struct _fpga_handle*)handle_;
  _handle->magic = 0x123;

  EXPECT_NE(FPGA_OK, xfpga_fpgaReset(handle_));

  _handle->magic = FPGA_HANDLE_MAGIC;
}

/**
 * @test       reset_c
 * @brief      test_port_drv_reset_03
 * @details    When the fddev is invalid and the drivers are
 *             loaded, xfpga_fpgaReset return error.
 *
 */
TEST_P(reset_c_p, test_port_drv_reset_03) {
  int fddev = -1;
  struct _fpga_handle* _handle = (struct _fpga_handle*)handle_;

#ifndef BUILD_ASE
  fddev = _handle->fddev;
  _handle->fddev = -1;

  EXPECT_NE(FPGA_OK, xfpga_fpgaReset(handle_));
#else
  EXPECT_EQ(FPGA_OK, xfpga_fpgaReset(handle_));
#endif
  _handle->fddev = fddev;
}

/**
 * @test       reset_c
 * @brief      valid_port_reset
 * @details    When the handle is valid and the drivers are
 *             loaded, xfpga_fpgaReset return FPGA_OK.
 *
 */
TEST_P(reset_c_p, valid_port_reset) {
  EXPECT_EQ(FPGA_OK, xfpga_fpgaReset(handle_));
} 

INSTANTIATE_TEST_CASE_P(reset_c, reset_c_p, ::testing::ValuesIn(test_platform::keys(true)));

class reset_c_mock_p : public reset_c_p {
 protected:
  reset_c_mock_p() {}
};

/**
 * @test       reset_c
 * @brief      test_port_drv_reset_01
 * @details    When the parameters are valid and the drivers are loaded,
 *             xfpga_fpgaReset returns FPGA_EXCEPTION.
 *
 */
TEST_P(reset_c_mock_p, test_port_drv_reset_01) {
  system_->register_ioctl_handler(FPGA_PORT_RESET,dummy_ioctl<-1,EINVAL>);
  system_->register_ioctl_handler(DFL_FPGA_PORT_RESET, dummy_ioctl<-1, EINVAL>);
  EXPECT_EQ(FPGA_INVALID_PARAM, xfpga_fpgaReset(handle_));
}

INSTANTIATE_TEST_CASE_P(reset_c, reset_c_mock_p,
                        ::testing::ValuesIn(test_platform::mock_platforms()));