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Reviewed-on: #21
277 lines
9.0 KiB
C++
277 lines
9.0 KiB
C++
/*
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ptrnt - print labels on linux
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Copyright (C) 2025 Moritz Martinius
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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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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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You should have received a copy of the GNU General Public License
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along with this program. If not, see <https://www.gnu.org/licenses/>.
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*/
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#include <gmock/gmock.h>
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#include <gtest/gtest.h>
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#include <memory>
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#include "libusb.h"
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#include "libusbwrap/LibUsbTypes.hpp"
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#include "libusbwrap/UsbDevice.hpp"
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#include "mocks/MockLibUsbWrapper.hpp"
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using ::testing::_;
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using ::testing::DoAll;
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using ::testing::NiceMock;
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using ::testing::Return;
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using ::testing::SetArgPointee;
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namespace libusbwrap {
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// Test fixture for UsbDevice tests
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class UsbDeviceTest : public ::testing::Test {
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protected:
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void SetUp() override {
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mockLibUsb = std::make_shared<NiceMock<MockLibUsbWrapper>>();
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// Create mock device pointer
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mockDevice = reinterpret_cast<libusb_device*>(0x1000);
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// Create mock device handle
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mockHandle = reinterpret_cast<libusb_device_handle*>(0x2000);
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// Setup device descriptor
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desc.idVendor = 0x04f9; // Brother vendor ID
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desc.idProduct = 0x2042; // P700 product ID
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// Default behaviors
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ON_CALL(*mockLibUsb, open(_, _)).WillByDefault(DoAll(SetArgPointee<1>(mockHandle), Return(0)));
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ON_CALL(*mockLibUsb, getSpeed(_)).WillByDefault(Return(LIBUSB_SPEED_FULL));
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ON_CALL(*mockLibUsb, getBusNumber(_)).WillByDefault(Return(1));
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ON_CALL(*mockLibUsb, getPortNumber(_)).WillByDefault(Return(2));
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ON_CALL(*mockLibUsb, errorName(_)).WillByDefault(Return("LIBUSB_SUCCESS"));
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}
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std::shared_ptr<MockLibUsbWrapper> mockLibUsb;
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libusb_device* mockDevice;
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libusb_device_handle* mockHandle;
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libusb_device_descriptor desc{};
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};
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// Constructor tests
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TEST_F(UsbDeviceTest, ConstructorWithValidDevice) {
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EXPECT_NO_THROW({
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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EXPECT_NE(device, nullptr);
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});
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}
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TEST_F(UsbDeviceTest, ConstructorWithNullptrThrows) {
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EXPECT_THROW({ auto device = std::make_unique<UsbDevice>(nullptr, desc, mockLibUsb); }, std::invalid_argument);
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}
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// Open/Close tests
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TEST_F(UsbDeviceTest, OpenSuccess) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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EXPECT_CALL(*mockLibUsb, open(mockDevice, _)).WillOnce(DoAll(SetArgPointee<1>(mockHandle), Return(0)));
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EXPECT_TRUE(device->open());
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}
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TEST_F(UsbDeviceTest, OpenFailure) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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EXPECT_CALL(*mockLibUsb, open(mockDevice, _)).WillOnce(Return(LIBUSB_ERROR_ACCESS));
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EXPECT_FALSE(device->open());
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EXPECT_EQ(device->getLastError(), Error::ACCESS);
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}
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TEST_F(UsbDeviceTest, CloseWithOpenDevice) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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device->open();
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EXPECT_CALL(*mockLibUsb, close(mockHandle)).Times(1);
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device->close();
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}
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TEST_F(UsbDeviceTest, CloseWithoutOpenDevice) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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// Should not call close if device was never opened
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EXPECT_CALL(*mockLibUsb, close(_)).Times(0);
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device->close();
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}
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TEST_F(UsbDeviceTest, DestructorClosesOpenDevice) {
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EXPECT_CALL(*mockLibUsb, close(mockHandle)).Times(1);
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{
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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device->open();
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// Device goes out of scope, destructor should call close
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}
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}
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// Kernel driver tests
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TEST_F(UsbDeviceTest, DetachKernelDriverWhenActive) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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device->open();
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EXPECT_CALL(*mockLibUsb, kernelDriverActive(mockHandle, 0)).WillOnce(Return(1)); // Active
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EXPECT_CALL(*mockLibUsb, detachKernelDriver(mockHandle, 0)).WillOnce(Return(0)); // Success
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EXPECT_TRUE(device->detachKernelDriver(0));
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}
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TEST_F(UsbDeviceTest, DetachKernelDriverWhenNotActive) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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device->open();
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EXPECT_CALL(*mockLibUsb, kernelDriverActive(mockHandle, 0)).WillOnce(Return(0)); // Not active
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EXPECT_CALL(*mockLibUsb, detachKernelDriver(_, _)).Times(0); // Should not call detach
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EXPECT_TRUE(device->detachKernelDriver(0));
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}
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TEST_F(UsbDeviceTest, DetachKernelDriverFailure) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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device->open();
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EXPECT_CALL(*mockLibUsb, kernelDriverActive(mockHandle, 0)).WillOnce(Return(1)); // Active
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EXPECT_CALL(*mockLibUsb, detachKernelDriver(mockHandle, 0)).WillOnce(Return(LIBUSB_ERROR_NOT_FOUND));
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EXPECT_FALSE(device->detachKernelDriver(0));
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EXPECT_EQ(device->getLastError(), Error::NOT_FOUND);
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}
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// Interface tests
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TEST_F(UsbDeviceTest, ClaimInterfaceSuccess) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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device->open();
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EXPECT_CALL(*mockLibUsb, claimInterface(mockHandle, 0)).WillOnce(Return(0));
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EXPECT_TRUE(device->claimInterface(0));
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}
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TEST_F(UsbDeviceTest, ClaimInterfaceFailure) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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device->open();
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EXPECT_CALL(*mockLibUsb, claimInterface(mockHandle, 0)).WillOnce(Return(LIBUSB_ERROR_BUSY));
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EXPECT_FALSE(device->claimInterface(0));
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EXPECT_EQ(device->getLastError(), Error::BUSY);
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}
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TEST_F(UsbDeviceTest, ReleaseInterfaceSuccess) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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device->open();
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EXPECT_CALL(*mockLibUsb, releaseInterface(mockHandle, 0)).WillOnce(Return(0));
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EXPECT_TRUE(device->releaseInterface(0));
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}
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TEST_F(UsbDeviceTest, ReleaseInterfaceFailure) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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device->open();
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EXPECT_CALL(*mockLibUsb, releaseInterface(mockHandle, 0)).WillOnce(Return(LIBUSB_ERROR_NOT_FOUND));
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EXPECT_FALSE(device->releaseInterface(0));
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EXPECT_EQ(device->getLastError(), Error::NOT_FOUND);
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}
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// Bulk transfer tests
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TEST_F(UsbDeviceTest, BulkTransferSuccess) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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device->open();
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std::vector<uint8_t> data = {0x01, 0x02, 0x03};
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int transferred = 0;
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EXPECT_CALL(*mockLibUsb, bulkTransfer(mockHandle, 0x02, _, 3, _, 1000))
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.WillOnce(DoAll(SetArgPointee<4>(3), Return(0)));
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EXPECT_TRUE(device->bulkTransfer(0x02, data, &transferred, 1000));
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}
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TEST_F(UsbDeviceTest, BulkTransferFailure) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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device->open();
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std::vector<uint8_t> data = {0x01, 0x02, 0x03};
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int transferred = 0;
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EXPECT_CALL(*mockLibUsb, bulkTransfer(mockHandle, 0x02, _, 3, _, 1000)).WillOnce(Return(LIBUSB_ERROR_TIMEOUT));
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EXPECT_FALSE(device->bulkTransfer(0x02, data, &transferred, 1000));
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EXPECT_EQ(device->getLastError(), Error::TIMEOUT);
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}
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// Getter tests
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TEST_F(UsbDeviceTest, GetUsbId) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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auto usbId = device->getUsbId();
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EXPECT_EQ(usbId.first, 0x04f9); // vid
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EXPECT_EQ(usbId.second, 0x2042); // pid
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}
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TEST_F(UsbDeviceTest, GetSpeed) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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EXPECT_CALL(*mockLibUsb, getSpeed(mockDevice)).WillOnce(Return(LIBUSB_SPEED_HIGH));
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EXPECT_EQ(device->getSpeed(), device::Speed::HIGH);
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}
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TEST_F(UsbDeviceTest, GetBusNumber) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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EXPECT_CALL(*mockLibUsb, getBusNumber(mockDevice)).WillOnce(Return(5));
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EXPECT_EQ(device->getBusNumber(), 5);
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}
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TEST_F(UsbDeviceTest, GetPortNumber) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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EXPECT_CALL(*mockLibUsb, getPortNumber(mockDevice)).WillOnce(Return(3));
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EXPECT_EQ(device->getPortNumber(), 3);
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}
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TEST_F(UsbDeviceTest, GetLastError) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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// Initially no error
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EXPECT_EQ(device->getLastError(), Error::SUCCESS);
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// After a failed operation
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EXPECT_CALL(*mockLibUsb, open(_, _)).WillOnce(Return(LIBUSB_ERROR_NO_DEVICE));
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device->open();
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EXPECT_EQ(device->getLastError(), Error::NO_DEVICE);
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}
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TEST_F(UsbDeviceTest, GetLastErrorString) {
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auto device = std::make_unique<UsbDevice>(mockDevice, desc, mockLibUsb);
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EXPECT_CALL(*mockLibUsb, errorName(static_cast<int>(Error::SUCCESS))).WillOnce(Return("LIBUSB_SUCCESS"));
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EXPECT_EQ(device->getLastErrorString(), "LIBUSB_SUCCESS");
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}
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} // namespace libusbwrap
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