Linux kernel mirror (for testing) git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
kernel os linux

vfio: sefltests: Add vfio_pci_driver_test

Add a new selftest that tests all driver operations. This test serves
both as a demonstration of the driver framework, and also as a
correctness test for future drivers.

Acked-by: Shuah Khan <skhan@linuxfoundation.org>
Signed-off-by: David Matlack <dmatlack@google.com>
Link: https://lore.kernel.org/r/20250822212518.4156428-14-dmatlack@google.com
Signed-off-by: Alex Williamson <alex.williamson@redhat.com>

authored by

David Matlack and committed by
Alex Williamson
fded8da4 1b197032

+234
+1
tools/testing/selftests/vfio/Makefile
··· 2 2 TEST_GEN_PROGS += vfio_dma_mapping_test 3 3 TEST_GEN_PROGS += vfio_iommufd_setup_test 4 4 TEST_GEN_PROGS += vfio_pci_device_test 5 + TEST_GEN_PROGS += vfio_pci_driver_test 5 6 include ../lib.mk 6 7 include lib/libvfio.mk 7 8
+233
tools/testing/selftests/vfio/vfio_pci_driver_test.c
··· 1 + // SPDX-License-Identifier: GPL-2.0-only 2 + #include <sys/ioctl.h> 3 + #include <sys/mman.h> 4 + 5 + #include <linux/sizes.h> 6 + #include <linux/vfio.h> 7 + 8 + #include <vfio_util.h> 9 + 10 + #include "../kselftest_harness.h" 11 + 12 + static const char *device_bdf; 13 + 14 + #define ASSERT_NO_MSI(_eventfd) do { \ 15 + u64 __value; \ 16 + \ 17 + ASSERT_EQ(-1, read(_eventfd, &__value, 8)); \ 18 + ASSERT_EQ(EAGAIN, errno); \ 19 + } while (0) 20 + 21 + static void region_setup(struct vfio_pci_device *device, 22 + struct vfio_dma_region *region, u64 size) 23 + { 24 + const int flags = MAP_SHARED | MAP_ANONYMOUS; 25 + const int prot = PROT_READ | PROT_WRITE; 26 + void *vaddr; 27 + 28 + vaddr = mmap(NULL, size, prot, flags, -1, 0); 29 + VFIO_ASSERT_NE(vaddr, MAP_FAILED); 30 + 31 + region->vaddr = vaddr; 32 + region->iova = (u64)vaddr; 33 + region->size = size; 34 + 35 + vfio_pci_dma_map(device, region); 36 + } 37 + 38 + static void region_teardown(struct vfio_pci_device *device, 39 + struct vfio_dma_region *region) 40 + { 41 + vfio_pci_dma_unmap(device, region); 42 + VFIO_ASSERT_EQ(munmap(region->vaddr, region->size), 0); 43 + } 44 + 45 + FIXTURE(vfio_pci_driver_test) { 46 + struct vfio_pci_device *device; 47 + struct vfio_dma_region memcpy_region; 48 + void *vaddr; 49 + int msi_fd; 50 + 51 + u64 size; 52 + void *src; 53 + void *dst; 54 + iova_t src_iova; 55 + iova_t dst_iova; 56 + iova_t unmapped_iova; 57 + }; 58 + 59 + FIXTURE_SETUP(vfio_pci_driver_test) 60 + { 61 + struct vfio_pci_driver *driver; 62 + 63 + self->device = vfio_pci_device_init(device_bdf, VFIO_TYPE1_IOMMU); 64 + 65 + driver = &self->device->driver; 66 + 67 + region_setup(self->device, &self->memcpy_region, SZ_1G); 68 + region_setup(self->device, &driver->region, SZ_2M); 69 + 70 + /* Any IOVA that doesn't overlap memcpy_region and driver->region. */ 71 + self->unmapped_iova = 8UL * SZ_1G; 72 + 73 + vfio_pci_driver_init(self->device); 74 + self->msi_fd = self->device->msi_eventfds[driver->msi]; 75 + 76 + /* 77 + * Use the maximum size supported by the device for memcpy operations, 78 + * slimmed down to fit into the memcpy region (divided by 2 so src and 79 + * dst regions do not overlap). 80 + */ 81 + self->size = self->device->driver.max_memcpy_size; 82 + self->size = min(self->size, self->memcpy_region.size / 2); 83 + 84 + self->src = self->memcpy_region.vaddr; 85 + self->dst = self->src + self->size; 86 + 87 + self->src_iova = to_iova(self->device, self->src); 88 + self->dst_iova = to_iova(self->device, self->dst); 89 + } 90 + 91 + FIXTURE_TEARDOWN(vfio_pci_driver_test) 92 + { 93 + struct vfio_pci_driver *driver = &self->device->driver; 94 + 95 + vfio_pci_driver_remove(self->device); 96 + 97 + region_teardown(self->device, &self->memcpy_region); 98 + region_teardown(self->device, &driver->region); 99 + 100 + vfio_pci_device_cleanup(self->device); 101 + } 102 + 103 + TEST_F(vfio_pci_driver_test, init_remove) 104 + { 105 + int i; 106 + 107 + for (i = 0; i < 10; i++) { 108 + vfio_pci_driver_remove(self->device); 109 + vfio_pci_driver_init(self->device); 110 + } 111 + } 112 + 113 + TEST_F(vfio_pci_driver_test, memcpy_success) 114 + { 115 + fcntl_set_nonblock(self->msi_fd); 116 + 117 + memset(self->src, 'x', self->size); 118 + memset(self->dst, 'y', self->size); 119 + 120 + ASSERT_EQ(0, vfio_pci_driver_memcpy(self->device, 121 + self->src_iova, 122 + self->dst_iova, 123 + self->size)); 124 + 125 + ASSERT_EQ(0, memcmp(self->src, self->dst, self->size)); 126 + ASSERT_NO_MSI(self->msi_fd); 127 + } 128 + 129 + TEST_F(vfio_pci_driver_test, memcpy_from_unmapped_iova) 130 + { 131 + fcntl_set_nonblock(self->msi_fd); 132 + 133 + /* 134 + * Ignore the return value since not all devices will detect and report 135 + * accesses to unmapped IOVAs as errors. 136 + */ 137 + vfio_pci_driver_memcpy(self->device, self->unmapped_iova, 138 + self->dst_iova, self->size); 139 + 140 + ASSERT_NO_MSI(self->msi_fd); 141 + } 142 + 143 + TEST_F(vfio_pci_driver_test, memcpy_to_unmapped_iova) 144 + { 145 + fcntl_set_nonblock(self->msi_fd); 146 + 147 + /* 148 + * Ignore the return value since not all devices will detect and report 149 + * accesses to unmapped IOVAs as errors. 150 + */ 151 + vfio_pci_driver_memcpy(self->device, self->src_iova, 152 + self->unmapped_iova, self->size); 153 + 154 + ASSERT_NO_MSI(self->msi_fd); 155 + } 156 + 157 + TEST_F(vfio_pci_driver_test, send_msi) 158 + { 159 + u64 value; 160 + 161 + vfio_pci_driver_send_msi(self->device); 162 + ASSERT_EQ(8, read(self->msi_fd, &value, 8)); 163 + ASSERT_EQ(1, value); 164 + } 165 + 166 + TEST_F(vfio_pci_driver_test, mix_and_match) 167 + { 168 + u64 value; 169 + int i; 170 + 171 + for (i = 0; i < 10; i++) { 172 + memset(self->src, 'x', self->size); 173 + memset(self->dst, 'y', self->size); 174 + 175 + ASSERT_EQ(0, vfio_pci_driver_memcpy(self->device, 176 + self->src_iova, 177 + self->dst_iova, 178 + self->size)); 179 + 180 + ASSERT_EQ(0, memcmp(self->src, self->dst, self->size)); 181 + 182 + vfio_pci_driver_memcpy(self->device, 183 + self->unmapped_iova, 184 + self->dst_iova, 185 + self->size); 186 + 187 + vfio_pci_driver_send_msi(self->device); 188 + ASSERT_EQ(8, read(self->msi_fd, &value, 8)); 189 + ASSERT_EQ(1, value); 190 + } 191 + } 192 + 193 + TEST_F_TIMEOUT(vfio_pci_driver_test, memcpy_storm, 60) 194 + { 195 + struct vfio_pci_driver *driver = &self->device->driver; 196 + u64 total_size; 197 + u64 count; 198 + 199 + fcntl_set_nonblock(self->msi_fd); 200 + 201 + /* 202 + * Perform up to 250GiB worth of DMA reads and writes across several 203 + * memcpy operations. Some devices can support even more but the test 204 + * will take too long. 205 + */ 206 + total_size = 250UL * SZ_1G; 207 + count = min(total_size / self->size, driver->max_memcpy_count); 208 + 209 + printf("Kicking off %lu memcpys of size 0x%lx\n", count, self->size); 210 + vfio_pci_driver_memcpy_start(self->device, 211 + self->src_iova, 212 + self->dst_iova, 213 + self->size, count); 214 + 215 + ASSERT_EQ(0, vfio_pci_driver_memcpy_wait(self->device)); 216 + ASSERT_NO_MSI(self->msi_fd); 217 + } 218 + 219 + int main(int argc, char *argv[]) 220 + { 221 + struct vfio_pci_device *device; 222 + 223 + device_bdf = vfio_selftests_get_bdf(&argc, argv); 224 + 225 + device = vfio_pci_device_init(device_bdf, VFIO_TYPE1_IOMMU); 226 + if (!device->driver.ops) { 227 + fprintf(stderr, "No driver found for device %s\n", device_bdf); 228 + return KSFT_SKIP; 229 + } 230 + vfio_pci_device_cleanup(device); 231 + 232 + return test_harness_run(argc, argv); 233 + }