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authorLinus Torvalds <torvalds@linux-foundation.org>2025-12-06 10:15:41 -0800
committerLinus Torvalds <torvalds@linux-foundation.org>2025-12-06 10:15:41 -0800
commit249872f53d64441690927853e9d3af36394802d5 (patch)
treea2f4b88ba236fce2ac8ec23edc7d30658ea7c809 /include/linux/pci.h
parentfbff94967958e46f7404b2dfbcf3b19e96aaaae2 (diff)
parent7dfbe9a6751973c17138ddc0d33deff5f5f35b94 (diff)
downloadlinux-next-249872f53d64441690927853e9d3af36394802d5.tar.gz
linux-next-249872f53d64441690927853e9d3af36394802d5.zip
Merge tag 'tsm-for-6.19' of git://git.kernel.org/pub/scm/linux/kernel/git/devsec/tsm
Pull PCIe Link Encryption and Device Authentication from Dan Williams: "New PCI infrastructure and one architecture implementation for PCIe link encryption establishment via platform firmware services. This work is the result of multiple vendors coming to consensus on some core infrastructure (thanks Alexey, Yilun, and Aneesh!), and three vendor implementations, although only one is included in this pull. The PCI core changes have an ack from Bjorn, the crypto/ccp/ changes have an ack from Tom, and the iommu/amd/ changes have an ack from Joerg. PCIe link encryption is made possible by the soup of acronyms mentioned in the shortlog below. Link Integrity and Data Encryption (IDE) is a protocol for installing keys in the transmitter and receiver at each end of a link. That protocol is transported over Data Object Exchange (DOE) mailboxes using PCI configuration requests. The aspect that makes this a "platform firmware service" is that the key provisioning and protocol is coordinated through a Trusted Execution Envrionment (TEE) Security Manager (TSM). That is either firmware running in a coprocessor (AMD SEV-TIO), or quasi-hypervisor software (Intel TDX Connect / ARM CCA) running in a protected CPU mode. Now, the only reason to ask a TSM to run this protocol and install the keys rather than have a Linux driver do the same is so that later, a confidential VM can ask the TSM directly "can you certify this device?". That precludes host Linux from provisioning its own keys, because host Linux is outside the trust domain for the VM. It also turns out that all architectures, save for one, do not publish a mechanism for an OS to establish keys in the root port. So "TSM-established link encryption" is the only cross-architecture path for this capability for the foreseeable future. This unblocks the other arch implementations to follow in v6.20/v7.0, once they clear some other dependencies, and it unblocks the next phase of work to implement the end-to-end flow of confidential device assignment. The PCIe specification calls this end-to-end flow Trusted Execution Environment (TEE) Device Interface Security Protocol (TDISP). In the meantime, Linux gets a link encryption facility which has practical benefits along the same lines as memory encryption. It authenticates devices via certificates and may protect against interposer attacks trying to capture clear-text PCIe traffic. Summary: - Introduce the PCI/TSM core for the coordination of device authentication, link encryption and establishment (IDE), and later management of the device security operational states (TDISP). Notify the new TSM core layer of PCI device arrival and departure - Add a low level TSM driver for the link encryption establishment capabilities of the AMD SEV-TIO architecture - Add a library of helpers TSM drivers to use for IDE establishment and the DOE transport - Add skeleton support for 'bind' and 'guest_request' operations in support of TDISP" * tag 'tsm-for-6.19' of git://git.kernel.org/pub/scm/linux/kernel/git/devsec/tsm: (23 commits) crypto/ccp: Fix CONFIG_PCI=n build virt: Fix Kconfig warning when selecting TSM without VIRT_DRIVERS crypto/ccp: Implement SEV-TIO PCIe IDE (phase1) iommu/amd: Report SEV-TIO support psp-sev: Assign numbers to all status codes and add new ccp: Make snp_reclaim_pages and __sev_do_cmd_locked public PCI/TSM: Add 'dsm' and 'bound' attributes for dependent functions PCI/TSM: Add pci_tsm_guest_req() for managing TDIs PCI/TSM: Add pci_tsm_bind() helper for instantiating TDIs PCI/IDE: Initialize an ID for all IDE streams PCI/IDE: Add Address Association Register setup for downstream MMIO resource: Introduce resource_assigned() for discerning active resources PCI/TSM: Drop stub for pci_tsm_doe_transfer() drivers/virt: Drop VIRT_DRIVERS build dependency PCI/TSM: Report active IDE streams PCI/IDE: Report available IDE streams PCI/IDE: Add IDE establishment helpers PCI: Establish document for PCI host bridge sysfs attributes PCI: Add PCIe Device 3 Extended Capability enumeration PCI/TSM: Establish Secure Sessions and Link Encryption ...
Diffstat (limited to 'include/linux/pci.h')
-rw-r--r--include/linux/pci.h34
1 files changed, 34 insertions, 0 deletions
diff --git a/include/linux/pci.h b/include/linux/pci.h
index b16127c6a7b4..864775651c6f 100644
--- a/include/linux/pci.h
+++ b/include/linux/pci.h
@@ -452,6 +452,7 @@ struct pci_dev {
unsigned int pasid_enabled:1; /* Process Address Space ID */
unsigned int pri_enabled:1; /* Page Request Interface */
unsigned int tph_enabled:1; /* TLP Processing Hints */
+ unsigned int fm_enabled:1; /* Flit Mode (segment captured) */
unsigned int is_managed:1; /* Managed via devres */
unsigned int is_msi_managed:1; /* MSI release via devres installed */
unsigned int needs_freset:1; /* Requires fundamental reset */
@@ -544,6 +545,18 @@ struct pci_dev {
#ifdef CONFIG_PCI_NPEM
struct npem *npem; /* Native PCIe Enclosure Management */
#endif
+#ifdef CONFIG_PCI_IDE
+ u16 ide_cap; /* Link Integrity & Data Encryption */
+ u8 nr_ide_mem; /* Address association resources for streams */
+ u8 nr_link_ide; /* Link Stream count (Selective Stream offset) */
+ u16 nr_sel_ide; /* Selective Stream count (register block allocator) */
+ struct ida ide_stream_ida;
+ unsigned int ide_cfg:1; /* Config cycles over IDE */
+ unsigned int ide_tee_limit:1; /* Disallow T=0 traffic over IDE */
+#endif
+#ifdef CONFIG_PCI_TSM
+ struct pci_tsm *tsm; /* TSM operation state */
+#endif
u16 acs_cap; /* ACS Capability offset */
u8 supported_speeds; /* Supported Link Speeds Vector */
phys_addr_t rom; /* Physical address if not from BAR */
@@ -579,6 +592,8 @@ struct pci_dev *pci_alloc_dev(struct pci_bus *bus);
#define to_pci_dev(n) container_of(n, struct pci_dev, dev)
#define for_each_pci_dev(d) while ((d = pci_get_device(PCI_ANY_ID, PCI_ANY_ID, d)) != NULL)
+#define for_each_pci_dev_reverse(d) \
+ while ((d = pci_get_device_reverse(PCI_ANY_ID, PCI_ANY_ID, d)) != NULL)
static inline int pci_channel_offline(struct pci_dev *pdev)
{
@@ -605,6 +620,11 @@ struct pci_host_bridge {
int domain_nr;
struct list_head windows; /* resource_entry */
struct list_head dma_ranges; /* dma ranges resource list */
+#ifdef CONFIG_PCI_IDE
+ u16 nr_ide_streams; /* Max streams possibly active in @ide_stream_ida */
+ struct ida ide_stream_ida;
+ struct ida ide_stream_ids_ida; /* track unique ids per domain */
+#endif
u8 (*swizzle_irq)(struct pci_dev *, u8 *); /* Platform IRQ swizzler */
int (*map_irq)(const struct pci_dev *, u8, u8);
void (*release_fn)(struct pci_host_bridge *);
@@ -857,6 +877,11 @@ struct pci_bus_region {
pci_bus_addr_t end;
};
+static inline pci_bus_addr_t pci_bus_region_size(const struct pci_bus_region *region)
+{
+ return region->end - region->start + 1;
+}
+
struct pci_dynids {
spinlock_t lock; /* Protects list, index */
struct list_head list; /* For IDs added at runtime */
@@ -1241,6 +1266,8 @@ u64 pci_get_dsn(struct pci_dev *dev);
struct pci_dev *pci_get_device(unsigned int vendor, unsigned int device,
struct pci_dev *from);
+struct pci_dev *pci_get_device_reverse(unsigned int vendor, unsigned int device,
+ struct pci_dev *from);
struct pci_dev *pci_get_subsys(unsigned int vendor, unsigned int device,
unsigned int ss_vendor, unsigned int ss_device,
struct pci_dev *from);
@@ -1660,6 +1687,8 @@ int pci_scan_bridge(struct pci_bus *bus, struct pci_dev *dev, int max,
void pci_walk_bus(struct pci_bus *top, int (*cb)(struct pci_dev *, void *),
void *userdata);
+void pci_walk_bus_reverse(struct pci_bus *top,
+ int (*cb)(struct pci_dev *, void *), void *userdata);
int pci_cfg_space_size(struct pci_dev *dev);
unsigned char pci_bus_max_busnr(struct pci_bus *bus);
resource_size_t pcibios_window_alignment(struct pci_bus *bus,
@@ -2055,6 +2084,11 @@ static inline struct pci_dev *pci_get_device(unsigned int vendor,
struct pci_dev *from)
{ return NULL; }
+static inline struct pci_dev *pci_get_device_reverse(unsigned int vendor,
+ unsigned int device,
+ struct pci_dev *from)
+{ return NULL; }
+
static inline struct pci_dev *pci_get_subsys(unsigned int vendor,
unsigned int device,
unsigned int ss_vendor,