genirq/msi: Provide struct msi_parent_ops
MSI parent domains must have some control over the MSI domains which are built on top. On domain creation they need to fill in e.g. architecture specific chip callbacks or msi domain ops to make the outermost domain parent agnostic which is obviously required for architecture independence etc. The structure contains: 1) A bitfield which exposes the supported functional features. This allows to check for features and is also used in the initialization callback to mask out unsupported features when the actual domain implementation requests a broader range, e.g. on x86 PCI multi-MSI is only supported by remapping domains but not by the underlying vector domain. The PCI/MSI code can then always request multi-MSI support, but the resulting feature set after creation might not have it set. 2) An optional string prefix which is put in front of domain and chip names during creation of the MSI domain. That allows to keep the naming schemes e.g. on x86 where PCI-MSI domains have a IR- prefix when interrupt remapping is enabled. 3) An initialization callback to sanity check the domain info of the to be created MSI domain, to restrict features and to apply changes in MSI ops and interrupt chip callbacks to accomodate to the particular MSI parent implementation and/or the underlying hierarchy. Add a conveniance function to delegate the initialization from the MSI parent domain to an underlying domain in the hierarchy. Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Reviewed-by: Kevin Tian <kevin.tian@intel.com> Acked-by: Marc Zyngier <maz@kernel.org> Link: https://lore.kernel.org/r/20221124232325.382485843@linutronix.de
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@ -46,6 +46,7 @@ struct irq_desc;
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struct cpumask;
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struct seq_file;
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struct irq_affinity_desc;
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struct msi_parent_ops;
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#define IRQ_DOMAIN_IRQ_SPEC_PARAMS 16
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@ -134,6 +135,7 @@ struct irq_domain_chip_generic;
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* @pm_dev: Pointer to a device that can be utilized for power management
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* purposes related to the irq domain.
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* @parent: Pointer to parent irq_domain to support hierarchy irq_domains
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* @msi_parent_ops: Pointer to MSI parent domain methods for per device domain init
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*
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* Revmap data, used internally by the irq domain code:
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* @revmap_size: Size of the linear map table @revmap[]
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@ -157,6 +159,9 @@ struct irq_domain {
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#ifdef CONFIG_IRQ_DOMAIN_HIERARCHY
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struct irq_domain *parent;
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#endif
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#ifdef CONFIG_GENERIC_MSI_IRQ
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const struct msi_parent_ops *msi_parent_ops;
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#endif
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/* reverse map data. The linear map gets appended to the irq_domain */
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irq_hw_number_t hwirq_max;
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@ -500,6 +500,27 @@ enum {
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};
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/**
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* struct msi_parent_ops - MSI parent domain callbacks and configuration info
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*
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* @supported_flags: Required: The supported MSI flags of the parent domain
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* @prefix: Optional: Prefix for the domain and chip name
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* @init_dev_msi_info: Required: Callback for MSI parent domains to setup parent
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* domain specific domain flags, domain ops and interrupt chip
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* callbacks when a per device domain is created.
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*/
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struct msi_parent_ops {
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u32 supported_flags;
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const char *prefix;
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bool (*init_dev_msi_info)(struct device *dev, struct irq_domain *domain,
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struct irq_domain *msi_parent_domain,
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struct msi_domain_info *msi_child_info);
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};
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bool msi_parent_init_dev_msi_info(struct device *dev, struct irq_domain *domain,
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struct irq_domain *msi_parent_domain,
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struct msi_domain_info *msi_child_info);
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int msi_domain_set_affinity(struct irq_data *data, const struct cpumask *mask,
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bool force);
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@ -788,6 +788,47 @@ struct irq_domain *msi_create_irq_domain(struct fwnode_handle *fwnode,
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return domain;
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}
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/**
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* msi_parent_init_dev_msi_info - Delegate initialization of device MSI info down
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* in the domain hierarchy
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* @dev: The device for which the domain should be created
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* @domain: The domain in the hierarchy this op is being called on
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* @msi_parent_domain: The IRQ_DOMAIN_FLAG_MSI_PARENT domain for the child to
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* be created
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* @msi_child_info: The MSI domain info of the IRQ_DOMAIN_FLAG_MSI_DEVICE
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* domain to be created
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*
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* Return: true on success, false otherwise
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*
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* This is the most complex problem of per device MSI domains and the
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* underlying interrupt domain hierarchy:
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*
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* The device domain to be initialized requests the broadest feature set
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* possible and the underlying domain hierarchy puts restrictions on it.
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*
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* That's trivial for a simple parent->child relationship, but it gets
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* interesting with an intermediate domain: root->parent->child. The
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* intermediate 'parent' can expand the capabilities which the 'root'
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* domain is providing. So that creates a classic hen and egg problem:
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* Which entity is doing the restrictions/expansions?
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*
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* One solution is to let the root domain handle the initialization that's
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* why there is the @domain and the @msi_parent_domain pointer.
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*/
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bool msi_parent_init_dev_msi_info(struct device *dev, struct irq_domain *domain,
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struct irq_domain *msi_parent_domain,
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struct msi_domain_info *msi_child_info)
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{
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struct irq_domain *parent = domain->parent;
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if (WARN_ON_ONCE(!parent || !parent->msi_parent_ops ||
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!parent->msi_parent_ops->init_dev_msi_info))
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return false;
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return parent->msi_parent_ops->init_dev_msi_info(dev, parent, msi_parent_domain,
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msi_child_info);
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}
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int msi_domain_prepare_irqs(struct irq_domain *domain, struct device *dev,
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int nvec, msi_alloc_info_t *arg)
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{
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