Re-write bhyve's I/O MMU handling in terms of PCI RIDs

Reviewed by:	neel
Sponsored by:	Sandvine Inc
This commit is contained in:
Ryan Stone 2014-04-01 14:54:43 +00:00
parent b5eb8abe3e
commit 956ed3830c
Notes: svn2git 2020-12-20 02:59:44 +00:00
svn path=/head/; revision=264003
5 changed files with 30 additions and 33 deletions

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@ -242,14 +242,14 @@ amd_iommu_remove_mapping(void *domain, vm_paddr_t gpa, uint64_t len)
}
static void
amd_iommu_add_device(void *domain, int bus, int slot, int func)
amd_iommu_add_device(void *domain, uint16_t rid)
{
printf("amd_iommu_add_device: not implemented\n");
}
static void
amd_iommu_remove_device(void *domain, int bus, int slot, int func)
amd_iommu_remove_device(void *domain, uint16_t rid)
{
printf("amd_iommu_remove_device: not implemented\n");

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@ -99,6 +99,8 @@ struct vtdmap {
#define VTD_PTE_SUPERPAGE (1UL << 7)
#define VTD_PTE_ADDR_M (0x000FFFFFFFFFF000UL)
#define VTD_RID2IDX(rid) (((rid) & 0xff) * 2)
struct domain {
uint64_t *ptp; /* first level page table page */
int pt_levels; /* number of page table levels */
@ -360,27 +362,24 @@ vtd_disable(void)
}
static void
vtd_add_device(void *arg, int bus, int slot, int func)
vtd_add_device(void *arg, uint16_t rid)
{
int idx;
uint64_t *ctxp;
struct domain *dom = arg;
vm_paddr_t pt_paddr;
struct vtdmap *vtdmap;
if (bus < 0 || bus > PCI_BUSMAX ||
slot < 0 || slot > PCI_SLOTMAX ||
func < 0 || func > PCI_FUNCMAX)
panic("vtd_add_device: invalid bsf %d/%d/%d", bus, slot, func);
uint8_t bus;
vtdmap = vtdmaps[0];
bus = PCI_RID2BUS(rid);
ctxp = ctx_tables[bus];
pt_paddr = vtophys(dom->ptp);
idx = (slot << 3 | func) * 2;
idx = VTD_RID2IDX(rid);
if (ctxp[idx] & VTD_CTX_PRESENT) {
panic("vtd_add_device: device %d/%d/%d is already owned by "
"domain %d", bus, slot, func,
panic("vtd_add_device: device %x is already owned by "
"domain %d", rid,
(uint16_t)(ctxp[idx + 1] >> 8));
}
@ -404,19 +403,16 @@ vtd_add_device(void *arg, int bus, int slot, int func)
}
static void
vtd_remove_device(void *arg, int bus, int slot, int func)
vtd_remove_device(void *arg, uint16_t rid)
{
int i, idx;
uint64_t *ctxp;
struct vtdmap *vtdmap;
uint8_t bus;
if (bus < 0 || bus > PCI_BUSMAX ||
slot < 0 || slot > PCI_SLOTMAX ||
func < 0 || func > PCI_FUNCMAX)
panic("vtd_add_device: invalid bsf %d/%d/%d", bus, slot, func);
bus = PCI_RID2BUS(rid);
ctxp = ctx_tables[bus];
idx = (slot << 3 | func) * 2;
idx = VTD_RID2IDX(rid);
/*
* Order is important. The 'present' bit is must be cleared first.

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@ -109,19 +109,19 @@ IOMMU_REMOVE_MAPPING(void *domain, vm_paddr_t gpa, uint64_t len)
}
static __inline void
IOMMU_ADD_DEVICE(void *domain, int bus, int slot, int func)
IOMMU_ADD_DEVICE(void *domain, uint16_t rid)
{
if (ops != NULL && iommu_avail)
(*ops->add_device)(domain, bus, slot, func);
(*ops->add_device)(domain, rid);
}
static __inline void
IOMMU_REMOVE_DEVICE(void *domain, int bus, int slot, int func)
IOMMU_REMOVE_DEVICE(void *domain, uint16_t rid)
{
if (ops != NULL && iommu_avail)
(*ops->remove_device)(domain, bus, slot, func);
(*ops->remove_device)(domain, rid);
}
static __inline void
@ -196,7 +196,8 @@ iommu_init(void)
continue;
/* everything else belongs to the host domain */
iommu_add_device(host_domain, bus, slot, func);
iommu_add_device(host_domain,
pci_get_rid(dev));
}
}
}
@ -263,17 +264,17 @@ iommu_host_domain(void)
}
void
iommu_add_device(void *dom, int bus, int slot, int func)
iommu_add_device(void *dom, uint16_t rid)
{
IOMMU_ADD_DEVICE(dom, bus, slot, func);
IOMMU_ADD_DEVICE(dom, rid);
}
void
iommu_remove_device(void *dom, int bus, int slot, int func)
iommu_remove_device(void *dom, uint16_t rid)
{
IOMMU_REMOVE_DEVICE(dom, bus, slot, func);
IOMMU_REMOVE_DEVICE(dom, rid);
}
void

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@ -39,8 +39,8 @@ typedef uint64_t (*iommu_create_mapping_t)(void *domain, vm_paddr_t gpa,
vm_paddr_t hpa, uint64_t len);
typedef uint64_t (*iommu_remove_mapping_t)(void *domain, vm_paddr_t gpa,
uint64_t len);
typedef void (*iommu_add_device_t)(void *domain, int bus, int slot, int func);
typedef void (*iommu_remove_device_t)(void *dom, int bus, int slot, int func);
typedef void (*iommu_add_device_t)(void *domain, uint16_t rid);
typedef void (*iommu_remove_device_t)(void *dom, uint16_t rid);
typedef void (*iommu_invalidate_tlb_t)(void *dom);
struct iommu_ops {
@ -69,7 +69,7 @@ void iommu_destroy_domain(void *dom);
void iommu_create_mapping(void *dom, vm_paddr_t gpa, vm_paddr_t hpa,
size_t len);
void iommu_remove_mapping(void *dom, vm_paddr_t gpa, size_t len);
void iommu_add_device(void *dom, int bus, int slot, int func);
void iommu_remove_device(void *dom, int bus, int slot, int func);
void iommu_add_device(void *dom, uint16_t rid);
void iommu_remove_device(void *dom, uint16_t rid);
void iommu_invalidate_tlb(void *domain);
#endif

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@ -346,7 +346,7 @@ ppt_assign_device(struct vm *vm, int bus, int slot, int func)
return (EBUSY);
ppt->vm = vm;
iommu_add_device(vm_iommu_domain(vm), bus, slot, func);
iommu_add_device(vm_iommu_domain(vm), pci_get_rid(ppt->dev));
return (0);
}
return (ENOENT);
@ -367,7 +367,7 @@ ppt_unassign_device(struct vm *vm, int bus, int slot, int func)
ppt_unmap_mmio(vm, ppt);
ppt_teardown_msi(ppt);
ppt_teardown_msix(ppt);
iommu_remove_device(vm_iommu_domain(vm), bus, slot, func);
iommu_remove_device(vm_iommu_domain(vm), pci_get_rid(ppt->dev));
ppt->vm = NULL;
return (0);
}