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https://git.kernel.org/pub/scm/linux/kernel/git/netdev/net.git/
synced 2026-04-06 08:47:40 -04:00
PCI: endpoint: pci-epf-test: Add BAR subrange mapping test support
Extend pci-epf-test so that pci_endpoint_test can exercise BAR subrange mapping end-to-end. Add BAR_SUBRANGE_SETUP/CLEAR commands that program (and tear down) a simple 2-subrange layout for a selected BAR. The endpoint deliberately permutes the physical backing regions (swap the halves) and writes a deterministic signature byte per subrange. This allows the RC to verify that the submap order is actually applied, not just that reads/writes work with an identity mapping. Advertise CAP_SUBRANGE_MAPPING only when the underlying EPC supports dynamic_inbound_mapping and subrange_mapping. Also bump the default BAR sizes (BAR0-4) to 128 KiB so that split subranges are large enough to satisfy common inbound-translation alignment constraints. E.g. for DWC EP, the default and maximum CX_ATU_MIN_REGION_SIZE is 64 kB, so 128 KiB is sufficient for DWC-based EP platforms for 2-subrange testing. Signed-off-by: Koichiro Den <den@valinux.co.jp> Signed-off-by: Manivannan Sadhasivam <mani@kernel.org> Signed-off-by: Bjorn Helgaas <bhelgaas@google.com> Link: https://patch.msgid.link/20260124145012.2794108-7-den@valinux.co.jp
This commit is contained in:
committed by
Bjorn Helgaas
parent
dd3ce1667a
commit
6c5e610142
@@ -33,6 +33,8 @@
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#define COMMAND_COPY BIT(5)
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#define COMMAND_ENABLE_DOORBELL BIT(6)
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#define COMMAND_DISABLE_DOORBELL BIT(7)
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#define COMMAND_BAR_SUBRANGE_SETUP BIT(8)
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#define COMMAND_BAR_SUBRANGE_CLEAR BIT(9)
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#define STATUS_READ_SUCCESS BIT(0)
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#define STATUS_READ_FAIL BIT(1)
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@@ -48,6 +50,10 @@
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#define STATUS_DOORBELL_ENABLE_FAIL BIT(11)
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#define STATUS_DOORBELL_DISABLE_SUCCESS BIT(12)
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#define STATUS_DOORBELL_DISABLE_FAIL BIT(13)
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#define STATUS_BAR_SUBRANGE_SETUP_SUCCESS BIT(14)
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#define STATUS_BAR_SUBRANGE_SETUP_FAIL BIT(15)
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#define STATUS_BAR_SUBRANGE_CLEAR_SUCCESS BIT(16)
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#define STATUS_BAR_SUBRANGE_CLEAR_FAIL BIT(17)
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#define FLAG_USE_DMA BIT(0)
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@@ -57,6 +63,9 @@
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#define CAP_MSI BIT(1)
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#define CAP_MSIX BIT(2)
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#define CAP_INTX BIT(3)
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#define CAP_SUBRANGE_MAPPING BIT(4)
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#define PCI_EPF_TEST_BAR_SUBRANGE_NSUB 2
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static struct workqueue_struct *kpcitest_workqueue;
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@@ -102,7 +111,7 @@ static struct pci_epf_header test_header = {
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.interrupt_pin = PCI_INTERRUPT_INTA,
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};
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static size_t bar_size[] = { 512, 512, 1024, 16384, 131072, 1048576 };
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static size_t bar_size[] = { 131072, 131072, 131072, 131072, 131072, 1048576 };
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static void pci_epf_test_dma_callback(void *param)
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{
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@@ -806,6 +815,155 @@ set_status_err:
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reg->status = cpu_to_le32(status);
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}
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static u8 pci_epf_test_subrange_sig_byte(enum pci_barno barno,
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unsigned int subno)
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{
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return 0x50 + (barno * 8) + subno;
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}
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static void pci_epf_test_bar_subrange_setup(struct pci_epf_test *epf_test,
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struct pci_epf_test_reg *reg)
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{
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struct pci_epf_bar_submap *submap, *old_submap;
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struct pci_epf *epf = epf_test->epf;
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struct pci_epc *epc = epf->epc;
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struct pci_epf_bar *bar;
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unsigned int nsub = PCI_EPF_TEST_BAR_SUBRANGE_NSUB, old_nsub;
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/* reg->size carries BAR number for BAR_SUBRANGE_* commands. */
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enum pci_barno barno = le32_to_cpu(reg->size);
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u32 status = le32_to_cpu(reg->status);
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unsigned int i, phys_idx;
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size_t sub_size;
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u8 *addr;
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int ret;
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if (barno >= PCI_STD_NUM_BARS) {
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dev_err(&epf->dev, "Invalid barno: %d\n", barno);
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goto err;
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}
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/* Host side should've avoided test_reg_bar, this is a safeguard. */
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if (barno == epf_test->test_reg_bar) {
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dev_err(&epf->dev, "test_reg_bar cannot be used for subrange test\n");
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goto err;
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}
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if (!epf_test->epc_features->dynamic_inbound_mapping ||
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!epf_test->epc_features->subrange_mapping) {
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dev_err(&epf->dev, "epc driver does not support subrange mapping\n");
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goto err;
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}
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bar = &epf->bar[barno];
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if (!bar->size || !bar->addr) {
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dev_err(&epf->dev, "bar size/addr (%zu/%p) is invalid\n",
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bar->size, bar->addr);
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goto err;
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}
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if (bar->size % nsub) {
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dev_err(&epf->dev, "BAR size %zu is not divisible by %u\n",
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bar->size, nsub);
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goto err;
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}
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sub_size = bar->size / nsub;
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submap = kcalloc(nsub, sizeof(*submap), GFP_KERNEL);
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if (!submap)
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goto err;
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for (i = 0; i < nsub; i++) {
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/* Swap the two halves so RC can verify ordering. */
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phys_idx = i ^ 1;
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submap[i].phys_addr = bar->phys_addr + (phys_idx * sub_size);
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submap[i].size = sub_size;
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}
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old_submap = bar->submap;
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old_nsub = bar->num_submap;
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bar->submap = submap;
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bar->num_submap = nsub;
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ret = pci_epc_set_bar(epc, epf->func_no, epf->vfunc_no, bar);
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if (ret) {
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dev_err(&epf->dev, "pci_epc_set_bar() failed: %d\n", ret);
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bar->submap = old_submap;
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bar->num_submap = old_nsub;
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kfree(submap);
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goto err;
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}
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kfree(old_submap);
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/*
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* Fill deterministic signatures into the physical regions that
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* each BAR subrange maps to. RC verifies these to ensure the
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* submap order is really applied.
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*/
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addr = (u8 *)bar->addr;
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for (i = 0; i < nsub; i++) {
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phys_idx = i ^ 1;
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memset(addr + (phys_idx * sub_size),
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pci_epf_test_subrange_sig_byte(barno, i),
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sub_size);
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}
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status |= STATUS_BAR_SUBRANGE_SETUP_SUCCESS;
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reg->status = cpu_to_le32(status);
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return;
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err:
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status |= STATUS_BAR_SUBRANGE_SETUP_FAIL;
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reg->status = cpu_to_le32(status);
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}
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static void pci_epf_test_bar_subrange_clear(struct pci_epf_test *epf_test,
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struct pci_epf_test_reg *reg)
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{
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struct pci_epf *epf = epf_test->epf;
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struct pci_epf_bar_submap *submap;
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struct pci_epc *epc = epf->epc;
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/* reg->size carries BAR number for BAR_SUBRANGE_* commands. */
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enum pci_barno barno = le32_to_cpu(reg->size);
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u32 status = le32_to_cpu(reg->status);
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struct pci_epf_bar *bar;
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unsigned int nsub;
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int ret;
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if (barno >= PCI_STD_NUM_BARS) {
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dev_err(&epf->dev, "Invalid barno: %d\n", barno);
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goto err;
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}
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bar = &epf->bar[barno];
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submap = bar->submap;
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nsub = bar->num_submap;
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if (!submap || !nsub)
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goto err;
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bar->submap = NULL;
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bar->num_submap = 0;
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ret = pci_epc_set_bar(epc, epf->func_no, epf->vfunc_no, bar);
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if (ret) {
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bar->submap = submap;
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bar->num_submap = nsub;
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dev_err(&epf->dev, "pci_epc_set_bar() failed: %d\n", ret);
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goto err;
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}
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kfree(submap);
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status |= STATUS_BAR_SUBRANGE_CLEAR_SUCCESS;
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reg->status = cpu_to_le32(status);
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return;
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err:
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status |= STATUS_BAR_SUBRANGE_CLEAR_FAIL;
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reg->status = cpu_to_le32(status);
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}
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static void pci_epf_test_cmd_handler(struct work_struct *work)
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{
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u32 command;
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@@ -861,6 +1019,14 @@ static void pci_epf_test_cmd_handler(struct work_struct *work)
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pci_epf_test_disable_doorbell(epf_test, reg);
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pci_epf_test_raise_irq(epf_test, reg);
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break;
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case COMMAND_BAR_SUBRANGE_SETUP:
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pci_epf_test_bar_subrange_setup(epf_test, reg);
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pci_epf_test_raise_irq(epf_test, reg);
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break;
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case COMMAND_BAR_SUBRANGE_CLEAR:
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pci_epf_test_bar_subrange_clear(epf_test, reg);
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pci_epf_test_raise_irq(epf_test, reg);
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break;
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default:
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dev_err(dev, "Invalid command 0x%x\n", command);
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break;
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@@ -933,6 +1099,10 @@ static void pci_epf_test_set_capabilities(struct pci_epf *epf)
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if (epf_test->epc_features->intx_capable)
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caps |= CAP_INTX;
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if (epf_test->epc_features->dynamic_inbound_mapping &&
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epf_test->epc_features->subrange_mapping)
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caps |= CAP_SUBRANGE_MAPPING;
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reg->caps = cpu_to_le32(caps);
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}
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