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PCI: endpoint: Remove "core_init_notifier" flag
"core_init_notifier" flag is set by the glue drivers requiring refclk from the host to complete the DWC core initialization. Also, those drivers will send a notification to the EPF drivers once the initialization is fully completed using the pci_epc_init_notify() API. Only then, the EPF drivers will start functioning. For the rest of the drivers generating refclk locally, EPF drivers will start functioning post binding with them. EPF drivers rely on the 'core_init_notifier' flag to differentiate between the drivers. Unfortunately, this creates two different flows for the EPF drivers. So to avoid that, let's get rid of the "core_init_notifier" flag and follow a single initialization flow for the EPF drivers. This is done by calling the dw_pcie_ep_init_notify() from all glue drivers after the completion of dw_pcie_ep_init_registers() API. This will allow all the glue drivers to send the notification to the EPF drivers once the initialization is fully completed. Only difference here is that, the drivers requiring refclk from host will send the notification once refclk is received, while others will send it during probe time itself. But this also requires the EPC core driver to deliver the notification after EPF driver bind. Because, the glue driver can send the notification before the EPF drivers bind() and in those cases the EPF drivers will miss the event. To accommodate this, EPC core is now caching the state of the EPC initialization in 'init_complete' flag and pci-ep-cfs driver sends the notification to EPF drivers based on that after each EPF driver bind. Link: https://lore.kernel.org/linux-pci/20240327-pci-dbi-rework-v12-8-082625472414@linaro.org Tested-by: Niklas Cassel <cassel@kernel.org> Signed-off-by: Manivannan Sadhasivam <manivannan.sadhasivam@linaro.org> Signed-off-by: Krzysztof Wilczyński <kwilczynski@kernel.org> Reviewed-by: Frank Li <Frank.Li@nxp.com> Reviewed-by: Niklas Cassel <cassel@kernel.org>
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@ -746,6 +746,8 @@ int cdns_pcie_ep_setup(struct cdns_pcie_ep *ep)
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spin_lock_init(&ep->lock);
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pci_epc_init_notify(epc);
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return 0;
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free_epc_mem:
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@ -474,6 +474,8 @@ static int dra7xx_add_pcie_ep(struct dra7xx_pcie *dra7xx,
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return ret;
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}
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dw_pcie_ep_init_notify(ep);
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return 0;
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}
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@ -1131,6 +1131,8 @@ static int imx6_add_pcie_ep(struct imx6_pcie *imx6_pcie,
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return ret;
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}
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dw_pcie_ep_init_notify(ep);
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/* Start LTSSM. */
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imx6_pcie_ltssm_enable(dev);
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@ -1293,6 +1293,8 @@ static int ks_pcie_probe(struct platform_device *pdev)
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goto err_ep_init;
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}
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dw_pcie_ep_init_notify(&pci->ep);
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break;
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default:
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dev_err(dev, "INVALID device type %d\n", mode);
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@ -286,6 +286,8 @@ static int __init ls_pcie_ep_probe(struct platform_device *pdev)
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return ret;
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}
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dw_pcie_ep_init_notify(&pci->ep);
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return ls_pcie_ep_interrupt_init(pcie, pdev);
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}
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@ -452,6 +452,8 @@ static int artpec6_pcie_probe(struct platform_device *pdev)
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return ret;
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}
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dw_pcie_ep_init_notify(&pci->ep);
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break;
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default:
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dev_err(dev, "INVALID device type %d\n", artpec6_pcie->mode);
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@ -632,6 +632,7 @@ void dw_pcie_ep_cleanup(struct dw_pcie_ep *ep)
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struct dw_pcie *pci = to_dw_pcie_from_ep(ep);
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dw_pcie_edma_remove(pci);
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ep->epc->init_complete = false;
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}
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EXPORT_SYMBOL_GPL(dw_pcie_ep_cleanup);
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@ -154,6 +154,8 @@ static int dw_plat_pcie_probe(struct platform_device *pdev)
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dw_pcie_ep_deinit(&pci->ep);
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}
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dw_pcie_ep_init_notify(&pci->ep);
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break;
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default:
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dev_err(dev, "INVALID device type %d\n", dw_plat_pcie->mode);
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@ -442,6 +442,8 @@ static int keembay_pcie_probe(struct platform_device *pdev)
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return ret;
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}
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dw_pcie_ep_init_notify(&pci->ep);
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break;
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default:
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dev_err(dev, "Invalid device type %d\n", pcie->mode);
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@ -775,7 +775,6 @@ static void qcom_pcie_ep_init_debugfs(struct qcom_pcie_ep *pcie_ep)
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static const struct pci_epc_features qcom_pcie_epc_features = {
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.linkup_notifier = true,
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.core_init_notifier = true,
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.msi_capable = true,
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.msix_capable = false,
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.align = SZ_4K,
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@ -437,6 +437,8 @@ static int rcar_gen4_add_dw_pcie_ep(struct rcar_gen4_pcie *rcar)
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rcar_gen4_pcie_ep_deinit(rcar);
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}
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dw_pcie_ep_init_notify(ep);
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return ret;
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}
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@ -2006,7 +2006,6 @@ static int tegra_pcie_ep_raise_irq(struct dw_pcie_ep *ep, u8 func_no,
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static const struct pci_epc_features tegra_pcie_epc_features = {
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.linkup_notifier = true,
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.core_init_notifier = true,
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.msi_capable = false,
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.msix_capable = false,
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.bar[BAR_0] = { .type = BAR_FIXED, .fixed_size = SZ_1M,
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@ -410,6 +410,8 @@ static int uniphier_pcie_ep_probe(struct platform_device *pdev)
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return ret;
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}
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dw_pcie_ep_init_notify(&priv->pci.ep);
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return 0;
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}
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@ -542,6 +542,8 @@ static int rcar_pcie_ep_probe(struct platform_device *pdev)
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goto err_pm_put;
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}
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pci_epc_init_notify(epc);
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return 0;
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err_pm_put:
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@ -609,6 +609,8 @@ static int rockchip_pcie_ep_probe(struct platform_device *pdev)
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rockchip_pcie_write(rockchip, PCIE_CLIENT_CONF_ENABLE,
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PCIE_CLIENT_CONFIG);
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pci_epc_init_notify(epc);
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return 0;
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err_epc_mem_exit:
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pci_epc_mem_exit(epc);
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@ -753,6 +753,7 @@ static int pci_epf_test_core_init(struct pci_epf *epf)
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const struct pci_epc_features *epc_features;
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struct pci_epc *epc = epf->epc;
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struct device *dev = &epf->dev;
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bool linkup_notifier = false;
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bool msix_capable = false;
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bool msi_capable = true;
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int ret;
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@ -795,6 +796,10 @@ static int pci_epf_test_core_init(struct pci_epf *epf)
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}
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}
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linkup_notifier = epc_features->linkup_notifier;
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if (!linkup_notifier)
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queue_work(kpcitest_workqueue, &epf_test->cmd_handler.work);
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return 0;
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}
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@ -890,8 +895,6 @@ static int pci_epf_test_bind(struct pci_epf *epf)
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const struct pci_epc_features *epc_features;
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enum pci_barno test_reg_bar = BAR_0;
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struct pci_epc *epc = epf->epc;
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bool linkup_notifier = false;
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bool core_init_notifier = false;
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if (WARN_ON_ONCE(!epc))
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return -EINVAL;
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@ -902,8 +905,6 @@ static int pci_epf_test_bind(struct pci_epf *epf)
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return -EOPNOTSUPP;
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}
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linkup_notifier = epc_features->linkup_notifier;
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core_init_notifier = epc_features->core_init_notifier;
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test_reg_bar = pci_epc_get_first_free_bar(epc_features);
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if (test_reg_bar < 0)
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return -EINVAL;
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@ -916,21 +917,12 @@ static int pci_epf_test_bind(struct pci_epf *epf)
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if (ret)
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return ret;
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if (!core_init_notifier) {
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ret = pci_epf_test_core_init(epf);
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if (ret)
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return ret;
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}
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epf_test->dma_supported = true;
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ret = pci_epf_test_init_dma_chan(epf_test);
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if (ret)
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epf_test->dma_supported = false;
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if (!linkup_notifier && !core_init_notifier)
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queue_work(kpcitest_workqueue, &epf_test->cmd_handler.work);
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return 0;
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}
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@ -64,6 +64,9 @@ static int pci_secondary_epc_epf_link(struct config_item *epf_item,
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return ret;
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}
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/* Send any pending EPC initialization complete to the EPF driver */
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pci_epc_notify_pending_init(epc, epf);
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return 0;
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}
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@ -125,6 +128,9 @@ static int pci_primary_epc_epf_link(struct config_item *epf_item,
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return ret;
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}
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/* Send any pending EPC initialization complete to the EPF driver */
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pci_epc_notify_pending_init(epc, epf);
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return 0;
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}
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@ -230,6 +236,9 @@ static int pci_epc_epf_link(struct config_item *epc_item,
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return ret;
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}
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/* Send any pending EPC initialization complete to the EPF driver */
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pci_epc_notify_pending_init(epc, epf);
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return 0;
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}
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@ -748,10 +748,32 @@ void pci_epc_init_notify(struct pci_epc *epc)
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epf->event_ops->core_init(epf);
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mutex_unlock(&epf->lock);
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}
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epc->init_complete = true;
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mutex_unlock(&epc->list_lock);
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}
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EXPORT_SYMBOL_GPL(pci_epc_init_notify);
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/**
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* pci_epc_notify_pending_init() - Notify the pending EPC device initialization
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* complete to the EPF device
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* @epc: the EPC device whose core initialization is pending to be notified
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* @epf: the EPF device to be notified
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*
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* Invoke to notify the pending EPC device initialization complete to the EPF
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* device. This is used to deliver the notification if the EPC initialization
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* got completed before the EPF driver bind.
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*/
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void pci_epc_notify_pending_init(struct pci_epc *epc, struct pci_epf *epf)
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{
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if (epc->init_complete) {
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mutex_lock(&epf->lock);
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if (epf->event_ops && epf->event_ops->core_init)
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epf->event_ops->core_init(epf);
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mutex_unlock(&epf->lock);
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}
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}
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EXPORT_SYMBOL_GPL(pci_epc_notify_pending_init);
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/**
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* pci_epc_bme_notify() - Notify the EPF device that the EPC device has received
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* the BME event from the Root complex
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@ -128,6 +128,8 @@ struct pci_epc_mem {
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* @group: configfs group representing the PCI EPC device
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* @lock: mutex to protect pci_epc ops
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* @function_num_map: bitmap to manage physical function number
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* @init_complete: flag to indicate whether the EPC initialization is complete
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* or not
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*/
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struct pci_epc {
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struct device dev;
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@ -143,6 +145,7 @@ struct pci_epc {
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/* mutex to protect against concurrent access of EP controller */
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struct mutex lock;
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unsigned long function_num_map;
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bool init_complete;
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};
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/**
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@ -179,8 +182,6 @@ struct pci_epc_bar_desc {
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/**
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* struct pci_epc_features - features supported by a EPC device per function
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* @linkup_notifier: indicate if the EPC device can notify EPF driver on link up
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* @core_init_notifier: indicate cores that can notify about their availability
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* for initialization
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* @msi_capable: indicate if the endpoint function has MSI capability
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* @msix_capable: indicate if the endpoint function has MSI-X capability
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* @bar: array specifying the hardware description for each BAR
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@ -188,7 +189,6 @@ struct pci_epc_bar_desc {
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*/
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struct pci_epc_features {
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unsigned int linkup_notifier : 1;
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unsigned int core_init_notifier : 1;
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unsigned int msi_capable : 1;
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unsigned int msix_capable : 1;
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struct pci_epc_bar_desc bar[PCI_STD_NUM_BARS];
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@ -225,6 +225,7 @@ int pci_epc_add_epf(struct pci_epc *epc, struct pci_epf *epf,
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void pci_epc_linkup(struct pci_epc *epc);
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void pci_epc_linkdown(struct pci_epc *epc);
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void pci_epc_init_notify(struct pci_epc *epc);
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void pci_epc_notify_pending_init(struct pci_epc *epc, struct pci_epf *epf);
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void pci_epc_bme_notify(struct pci_epc *epc);
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void pci_epc_remove_epf(struct pci_epc *epc, struct pci_epf *epf,
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enum pci_epc_interface_type type);
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