PCI: hv: Fix interrupt mapping for multi-MSI
According to Dexuan, the hypervisor folks beleive that multi-msi allocations are not correct. compose_msi_msg() will allocate multi-msi one by one. However, multi-msi is a block of related MSIs, with alignment requirements. In order for the hypervisor to allocate properly aligned and consecutive entries in the IOMMU Interrupt Remapping Table, there should be a single mapping request that requests all of the multi-msi vectors in one shot. Dexuan suggests detecting the multi-msi case and composing a single request related to the first MSI. Then for the other MSIs in the same block, use the cached information. This appears to be viable, so do it. Suggested-by: Dexuan Cui <decui@microsoft.com> Signed-off-by: Jeffrey Hugo <quic_jhugo@quicinc.com> Reviewed-by: Dexuan Cui <decui@microsoft.com> Tested-by: Michael Kelley <mikelley@microsoft.com> Link: https://lore.kernel.org/r/1652282599-21643-1-git-send-email-quic_jhugo@quicinc.com Signed-off-by: Wei Liu <wei.liu@kernel.org>
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@ -1525,6 +1525,10 @@ static void hv_int_desc_free(struct hv_pci_dev *hpdev,
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u8 buffer[sizeof(struct pci_delete_interrupt)];
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} ctxt;
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if (!int_desc->vector_count) {
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kfree(int_desc);
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return;
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}
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memset(&ctxt, 0, sizeof(ctxt));
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int_pkt = (struct pci_delete_interrupt *)&ctxt.pkt.message;
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int_pkt->message_type.type =
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@ -1609,12 +1613,12 @@ static void hv_pci_compose_compl(void *context, struct pci_response *resp,
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static u32 hv_compose_msi_req_v1(
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struct pci_create_interrupt *int_pkt, struct cpumask *affinity,
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u32 slot, u8 vector)
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u32 slot, u8 vector, u8 vector_count)
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{
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int_pkt->message_type.type = PCI_CREATE_INTERRUPT_MESSAGE;
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int_pkt->wslot.slot = slot;
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int_pkt->int_desc.vector = vector;
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int_pkt->int_desc.vector_count = 1;
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int_pkt->int_desc.vector_count = vector_count;
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int_pkt->int_desc.delivery_mode = DELIVERY_MODE;
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/*
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@ -1637,14 +1641,14 @@ static int hv_compose_msi_req_get_cpu(struct cpumask *affinity)
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static u32 hv_compose_msi_req_v2(
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struct pci_create_interrupt2 *int_pkt, struct cpumask *affinity,
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u32 slot, u8 vector)
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u32 slot, u8 vector, u8 vector_count)
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{
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int cpu;
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int_pkt->message_type.type = PCI_CREATE_INTERRUPT_MESSAGE2;
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int_pkt->wslot.slot = slot;
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int_pkt->int_desc.vector = vector;
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int_pkt->int_desc.vector_count = 1;
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int_pkt->int_desc.vector_count = vector_count;
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int_pkt->int_desc.delivery_mode = DELIVERY_MODE;
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cpu = hv_compose_msi_req_get_cpu(affinity);
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int_pkt->int_desc.processor_array[0] =
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@ -1656,7 +1660,7 @@ static u32 hv_compose_msi_req_v2(
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static u32 hv_compose_msi_req_v3(
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struct pci_create_interrupt3 *int_pkt, struct cpumask *affinity,
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u32 slot, u32 vector)
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u32 slot, u32 vector, u8 vector_count)
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{
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int cpu;
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@ -1664,7 +1668,7 @@ static u32 hv_compose_msi_req_v3(
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int_pkt->wslot.slot = slot;
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int_pkt->int_desc.vector = vector;
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int_pkt->int_desc.reserved = 0;
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int_pkt->int_desc.vector_count = 1;
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int_pkt->int_desc.vector_count = vector_count;
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int_pkt->int_desc.delivery_mode = DELIVERY_MODE;
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cpu = hv_compose_msi_req_get_cpu(affinity);
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int_pkt->int_desc.processor_array[0] =
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@ -1695,6 +1699,8 @@ static void hv_compose_msi_msg(struct irq_data *data, struct msi_msg *msg)
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struct cpumask *dest;
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struct compose_comp_ctxt comp;
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struct tran_int_desc *int_desc;
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struct msi_desc *msi_desc;
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u8 vector, vector_count;
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struct {
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struct pci_packet pci_pkt;
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union {
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@ -1716,7 +1722,8 @@ static void hv_compose_msi_msg(struct irq_data *data, struct msi_msg *msg)
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return;
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}
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pdev = msi_desc_to_pci_dev(irq_data_get_msi_desc(data));
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msi_desc = irq_data_get_msi_desc(data);
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pdev = msi_desc_to_pci_dev(msi_desc);
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dest = irq_data_get_effective_affinity_mask(data);
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pbus = pdev->bus;
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hbus = container_of(pbus->sysdata, struct hv_pcibus_device, sysdata);
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@ -1729,6 +1736,36 @@ static void hv_compose_msi_msg(struct irq_data *data, struct msi_msg *msg)
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if (!int_desc)
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goto drop_reference;
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if (!msi_desc->pci.msi_attrib.is_msix && msi_desc->nvec_used > 1) {
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/*
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* If this is not the first MSI of Multi MSI, we already have
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* a mapping. Can exit early.
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*/
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if (msi_desc->irq != data->irq) {
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data->chip_data = int_desc;
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int_desc->address = msi_desc->msg.address_lo |
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(u64)msi_desc->msg.address_hi << 32;
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int_desc->data = msi_desc->msg.data +
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(data->irq - msi_desc->irq);
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msg->address_hi = msi_desc->msg.address_hi;
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msg->address_lo = msi_desc->msg.address_lo;
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msg->data = int_desc->data;
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put_pcichild(hpdev);
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return;
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}
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/*
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* The vector we select here is a dummy value. The correct
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* value gets sent to the hypervisor in unmask(). This needs
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* to be aligned with the count, and also not zero. Multi-msi
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* is powers of 2 up to 32, so 32 will always work here.
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*/
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vector = 32;
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vector_count = msi_desc->nvec_used;
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} else {
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vector = hv_msi_get_int_vector(data);
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vector_count = 1;
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}
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memset(&ctxt, 0, sizeof(ctxt));
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init_completion(&comp.comp_pkt.host_event);
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ctxt.pci_pkt.completion_func = hv_pci_compose_compl;
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@ -1739,7 +1776,8 @@ static void hv_compose_msi_msg(struct irq_data *data, struct msi_msg *msg)
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size = hv_compose_msi_req_v1(&ctxt.int_pkts.v1,
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dest,
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hpdev->desc.win_slot.slot,
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hv_msi_get_int_vector(data));
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vector,
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vector_count);
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break;
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case PCI_PROTOCOL_VERSION_1_2:
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@ -1747,14 +1785,16 @@ static void hv_compose_msi_msg(struct irq_data *data, struct msi_msg *msg)
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size = hv_compose_msi_req_v2(&ctxt.int_pkts.v2,
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dest,
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hpdev->desc.win_slot.slot,
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hv_msi_get_int_vector(data));
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vector,
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vector_count);
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break;
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case PCI_PROTOCOL_VERSION_1_4:
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size = hv_compose_msi_req_v3(&ctxt.int_pkts.v3,
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dest,
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hpdev->desc.win_slot.slot,
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hv_msi_get_int_vector(data));
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vector,
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vector_count);
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break;
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default:
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