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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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e0d9d30b73
Perform conversion to little-endian before every write to configuration space and convert it back to CPU endianness on reads. Additionally, initialise every multiple byte field of config space with the cpu_to_le* macro, which is required since the structure describing config space of emulated bridge assumes little-endian convention. Signed-off-by: Grzegorz Jaszczyk <jaz@semihalf.com> Signed-off-by: Lorenzo Pieralisi <lorenzo.pieralisi@arm.com>
136 lines
3.3 KiB
C
136 lines
3.3 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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#ifndef __PCI_BRIDGE_EMUL_H__
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#define __PCI_BRIDGE_EMUL_H__
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#include <linux/kernel.h>
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/* PCI configuration space of a PCI-to-PCI bridge. */
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struct pci_bridge_emul_conf {
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__le16 vendor;
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__le16 device;
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__le16 command;
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__le16 status;
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__le32 class_revision;
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u8 cache_line_size;
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u8 latency_timer;
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u8 header_type;
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u8 bist;
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__le32 bar[2];
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u8 primary_bus;
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u8 secondary_bus;
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u8 subordinate_bus;
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u8 secondary_latency_timer;
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u8 iobase;
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u8 iolimit;
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__le16 secondary_status;
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__le16 membase;
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__le16 memlimit;
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__le16 pref_mem_base;
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__le16 pref_mem_limit;
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__le32 prefbaseupper;
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__le32 preflimitupper;
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__le16 iobaseupper;
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__le16 iolimitupper;
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u8 capabilities_pointer;
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u8 reserve[3];
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__le32 romaddr;
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u8 intline;
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u8 intpin;
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__le16 bridgectrl;
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};
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/* PCI configuration space of the PCIe capabilities */
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struct pci_bridge_emul_pcie_conf {
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u8 cap_id;
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u8 next;
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__le16 cap;
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__le32 devcap;
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__le16 devctl;
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__le16 devsta;
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__le32 lnkcap;
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__le16 lnkctl;
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__le16 lnksta;
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__le32 slotcap;
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__le16 slotctl;
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__le16 slotsta;
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__le16 rootctl;
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__le16 rsvd;
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__le32 rootsta;
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__le32 devcap2;
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__le16 devctl2;
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__le16 devsta2;
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__le32 lnkcap2;
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__le16 lnkctl2;
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__le16 lnksta2;
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__le32 slotcap2;
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__le16 slotctl2;
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__le16 slotsta2;
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};
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struct pci_bridge_emul;
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typedef enum { PCI_BRIDGE_EMUL_HANDLED,
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PCI_BRIDGE_EMUL_NOT_HANDLED } pci_bridge_emul_read_status_t;
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struct pci_bridge_emul_ops {
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/*
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* Called when reading from the regular PCI bridge
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* configuration space. Return PCI_BRIDGE_EMUL_HANDLED when the
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* operation has handled the read operation and filled in the
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* *value, or PCI_BRIDGE_EMUL_NOT_HANDLED when the read should
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* be emulated by the common code by reading from the
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* in-memory copy of the configuration space.
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*/
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pci_bridge_emul_read_status_t (*read_base)(struct pci_bridge_emul *bridge,
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int reg, u32 *value);
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/*
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* Same as ->read_base(), except it is for reading from the
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* PCIe capability configuration space.
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*/
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pci_bridge_emul_read_status_t (*read_pcie)(struct pci_bridge_emul *bridge,
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int reg, u32 *value);
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/*
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* Called when writing to the regular PCI bridge configuration
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* space. old is the current value, new is the new value being
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* written, and mask indicates which parts of the value are
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* being changed.
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*/
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void (*write_base)(struct pci_bridge_emul *bridge, int reg,
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u32 old, u32 new, u32 mask);
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/*
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* Same as ->write_base(), except it is for writing from the
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* PCIe capability configuration space.
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*/
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void (*write_pcie)(struct pci_bridge_emul *bridge, int reg,
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u32 old, u32 new, u32 mask);
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};
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struct pci_bridge_reg_behavior;
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struct pci_bridge_emul {
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struct pci_bridge_emul_conf conf;
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struct pci_bridge_emul_pcie_conf pcie_conf;
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struct pci_bridge_emul_ops *ops;
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struct pci_bridge_reg_behavior *pci_regs_behavior;
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struct pci_bridge_reg_behavior *pcie_cap_regs_behavior;
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void *data;
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bool has_pcie;
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};
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enum {
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PCI_BRIDGE_EMUL_NO_PREFETCHABLE_BAR = BIT(0),
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};
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int pci_bridge_emul_init(struct pci_bridge_emul *bridge,
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unsigned int flags);
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void pci_bridge_emul_cleanup(struct pci_bridge_emul *bridge);
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int pci_bridge_emul_conf_read(struct pci_bridge_emul *bridge, int where,
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int size, u32 *value);
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int pci_bridge_emul_conf_write(struct pci_bridge_emul *bridge, int where,
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int size, u32 value);
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#endif /* __PCI_BRIDGE_EMUL_H__ */
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