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The PFVF protocol "enable" functions are direction specific but not device specific. Move the protocol enable function for the PF into the PF specific protocol file for better file organization and duplicated code reduction. NOTE: the patch keeps gen4 disabled as it doesn't have full PFVF support yet. Signed-off-by: Marco Chiappero <marco.chiappero@intel.com> Co-developed-by: Giovanni Cabiddu <giovanni.cabiddu@intel.com> Signed-off-by: Giovanni Cabiddu <giovanni.cabiddu@intel.com> Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
417 lines
12 KiB
C
417 lines
12 KiB
C
// SPDX-License-Identifier: (BSD-3-Clause OR GPL-2.0-only)
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/* Copyright(c) 2015 - 2020 Intel Corporation */
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#include <linux/delay.h>
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#include "adf_accel_devices.h"
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#include "adf_common_drv.h"
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#include "adf_pf2vf_msg.h"
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#define ADF_PFVF_MSG_COLLISION_DETECT_DELAY 10
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#define ADF_PFVF_MSG_ACK_DELAY 2
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#define ADF_PFVF_MSG_ACK_MAX_RETRY 100
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#define ADF_PFVF_MSG_RETRY_DELAY 5
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#define ADF_PFVF_MSG_MAX_RETRIES 3
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#define ADF_PFVF_MSG_RESP_TIMEOUT (ADF_PFVF_MSG_ACK_DELAY * \
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ADF_PFVF_MSG_ACK_MAX_RETRY + \
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ADF_PFVF_MSG_COLLISION_DETECT_DELAY)
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void adf_enable_vf2pf_interrupts(struct adf_accel_dev *accel_dev, u32 vf_mask)
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{
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struct adf_hw_device_data *hw_data = accel_dev->hw_device;
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u32 misc_bar_id = hw_data->get_misc_bar_id(hw_data);
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struct adf_bar *pmisc = &GET_BARS(accel_dev)[misc_bar_id];
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void __iomem *pmisc_addr = pmisc->virt_addr;
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unsigned long flags;
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spin_lock_irqsave(&accel_dev->pf.vf2pf_ints_lock, flags);
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hw_data->enable_vf2pf_interrupts(pmisc_addr, vf_mask);
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spin_unlock_irqrestore(&accel_dev->pf.vf2pf_ints_lock, flags);
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}
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void adf_disable_vf2pf_interrupts(struct adf_accel_dev *accel_dev, u32 vf_mask)
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{
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struct adf_hw_device_data *hw_data = accel_dev->hw_device;
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u32 misc_bar_id = hw_data->get_misc_bar_id(hw_data);
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struct adf_bar *pmisc = &GET_BARS(accel_dev)[misc_bar_id];
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void __iomem *pmisc_addr = pmisc->virt_addr;
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unsigned long flags;
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spin_lock_irqsave(&accel_dev->pf.vf2pf_ints_lock, flags);
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hw_data->disable_vf2pf_interrupts(pmisc_addr, vf_mask);
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spin_unlock_irqrestore(&accel_dev->pf.vf2pf_ints_lock, flags);
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}
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void adf_disable_vf2pf_interrupts_irq(struct adf_accel_dev *accel_dev,
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u32 vf_mask)
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{
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struct adf_hw_device_data *hw_data = accel_dev->hw_device;
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u32 misc_bar_id = hw_data->get_misc_bar_id(hw_data);
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struct adf_bar *pmisc = &GET_BARS(accel_dev)[misc_bar_id];
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void __iomem *pmisc_addr = pmisc->virt_addr;
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spin_lock(&accel_dev->pf.vf2pf_ints_lock);
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hw_data->disable_vf2pf_interrupts(pmisc_addr, vf_mask);
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spin_unlock(&accel_dev->pf.vf2pf_ints_lock);
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}
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static int __adf_iov_putmsg(struct adf_accel_dev *accel_dev, u32 msg, u8 vf_nr)
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{
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struct adf_accel_pci *pci_info = &accel_dev->accel_pci_dev;
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struct adf_hw_device_data *hw_data = accel_dev->hw_device;
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void __iomem *pmisc_bar_addr =
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pci_info->pci_bars[hw_data->get_misc_bar_id(hw_data)].virt_addr;
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u32 val, pf2vf_offset, count = 0;
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u32 local_in_use_mask, local_in_use_pattern;
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u32 remote_in_use_mask, remote_in_use_pattern;
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struct mutex *lock; /* lock preventing concurrent acces of CSR */
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u32 int_bit;
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int ret = 0;
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if (accel_dev->is_vf) {
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pf2vf_offset = hw_data->get_pf2vf_offset(0);
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lock = &accel_dev->vf.vf2pf_lock;
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local_in_use_mask = ADF_VF2PF_IN_USE_BY_VF_MASK;
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local_in_use_pattern = ADF_VF2PF_IN_USE_BY_VF;
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remote_in_use_mask = ADF_PF2VF_IN_USE_BY_PF_MASK;
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remote_in_use_pattern = ADF_PF2VF_IN_USE_BY_PF;
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int_bit = ADF_VF2PF_INT;
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} else {
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pf2vf_offset = hw_data->get_pf2vf_offset(vf_nr);
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lock = &accel_dev->pf.vf_info[vf_nr].pf2vf_lock;
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local_in_use_mask = ADF_PF2VF_IN_USE_BY_PF_MASK;
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local_in_use_pattern = ADF_PF2VF_IN_USE_BY_PF;
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remote_in_use_mask = ADF_VF2PF_IN_USE_BY_VF_MASK;
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remote_in_use_pattern = ADF_VF2PF_IN_USE_BY_VF;
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int_bit = ADF_PF2VF_INT;
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}
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mutex_lock(lock);
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/* Check if the PFVF CSR is in use by remote function */
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val = ADF_CSR_RD(pmisc_bar_addr, pf2vf_offset);
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if ((val & remote_in_use_mask) == remote_in_use_pattern) {
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dev_dbg(&GET_DEV(accel_dev),
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"PFVF CSR in use by remote function\n");
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ret = -EBUSY;
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goto out;
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}
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msg &= ~local_in_use_mask;
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msg |= local_in_use_pattern;
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/* Attempt to get ownership of the PFVF CSR */
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ADF_CSR_WR(pmisc_bar_addr, pf2vf_offset, msg | int_bit);
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/* Wait for confirmation from remote func it received the message */
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do {
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msleep(ADF_PFVF_MSG_ACK_DELAY);
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val = ADF_CSR_RD(pmisc_bar_addr, pf2vf_offset);
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} while ((val & int_bit) && (count++ < ADF_PFVF_MSG_ACK_MAX_RETRY));
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if (val != msg) {
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dev_dbg(&GET_DEV(accel_dev),
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"Collision - PFVF CSR overwritten by remote function\n");
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ret = -EIO;
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goto out;
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}
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if (val & int_bit) {
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dev_dbg(&GET_DEV(accel_dev), "ACK not received from remote\n");
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val &= ~int_bit;
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ret = -EIO;
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}
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/* Finished with the PFVF CSR; relinquish it and leave msg in CSR */
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ADF_CSR_WR(pmisc_bar_addr, pf2vf_offset, val & ~local_in_use_mask);
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out:
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mutex_unlock(lock);
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return ret;
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}
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/**
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* adf_iov_putmsg() - send PFVF message
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* @accel_dev: Pointer to acceleration device.
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* @msg: Message to send
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* @vf_nr: VF number to which the message will be sent if on PF, ignored
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* otherwise
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*
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* Function sends a message through the PFVF channel
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*
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* Return: 0 on success, error code otherwise.
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*/
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static int adf_iov_putmsg(struct adf_accel_dev *accel_dev, u32 msg, u8 vf_nr)
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{
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u32 count = 0;
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int ret;
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do {
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ret = __adf_iov_putmsg(accel_dev, msg, vf_nr);
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if (ret)
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msleep(ADF_PFVF_MSG_RETRY_DELAY);
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} while (ret && (count++ < ADF_PFVF_MSG_MAX_RETRIES));
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return ret;
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}
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/**
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* adf_send_pf2vf_msg() - send PF to VF message
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* @accel_dev: Pointer to acceleration device
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* @vf_nr: VF number to which the message will be sent
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* @msg: Message to send
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*
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* This function allows the PF to send a message to a specific VF.
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*
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* Return: 0 on success, error code otherwise.
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*/
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static int adf_send_pf2vf_msg(struct adf_accel_dev *accel_dev, u8 vf_nr, u32 msg)
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{
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return adf_iov_putmsg(accel_dev, msg, vf_nr);
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}
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/**
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* adf_send_vf2pf_msg() - send VF to PF message
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* @accel_dev: Pointer to acceleration device
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* @msg: Message to send
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*
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* This function allows the VF to send a message to the PF.
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*
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* Return: 0 on success, error code otherwise.
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*/
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int adf_send_vf2pf_msg(struct adf_accel_dev *accel_dev, u32 msg)
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{
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return adf_iov_putmsg(accel_dev, msg, 0);
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}
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/**
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* adf_send_vf2pf_req() - send VF2PF request message
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* @accel_dev: Pointer to acceleration device.
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* @msg: Request message to send
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*
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* This function sends a message that requires a response from the VF to the PF
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* and waits for a reply.
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*
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* Return: 0 on success, error code otherwise.
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*/
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static int adf_send_vf2pf_req(struct adf_accel_dev *accel_dev, u32 msg)
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{
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unsigned long timeout = msecs_to_jiffies(ADF_PFVF_MSG_RESP_TIMEOUT);
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int ret;
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reinit_completion(&accel_dev->vf.iov_msg_completion);
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/* Send request from VF to PF */
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ret = adf_send_vf2pf_msg(accel_dev, msg);
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if (ret) {
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dev_err(&GET_DEV(accel_dev),
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"Failed to send request msg to PF\n");
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return ret;
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}
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/* Wait for response */
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if (!wait_for_completion_timeout(&accel_dev->vf.iov_msg_completion,
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timeout)) {
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dev_err(&GET_DEV(accel_dev),
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"PFVF request/response message timeout expired\n");
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return -EIO;
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}
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return 0;
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}
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void adf_vf2pf_req_hndl(struct adf_accel_vf_info *vf_info)
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{
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struct adf_accel_dev *accel_dev = vf_info->accel_dev;
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struct adf_hw_device_data *hw_data = accel_dev->hw_device;
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int bar_id = hw_data->get_misc_bar_id(hw_data);
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struct adf_bar *pmisc = &GET_BARS(accel_dev)[bar_id];
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void __iomem *pmisc_addr = pmisc->virt_addr;
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u32 msg, resp = 0, vf_nr = vf_info->vf_nr;
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/* Read message from the VF */
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msg = ADF_CSR_RD(pmisc_addr, hw_data->get_pf2vf_offset(vf_nr));
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if (!(msg & ADF_VF2PF_INT)) {
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dev_info(&GET_DEV(accel_dev),
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"Spurious VF2PF interrupt, msg %X. Ignored\n", msg);
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goto out;
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}
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/* To ACK, clear the VF2PFINT bit */
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msg &= ~ADF_VF2PF_INT;
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ADF_CSR_WR(pmisc_addr, hw_data->get_pf2vf_offset(vf_nr), msg);
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if (!(msg & ADF_VF2PF_MSGORIGIN_SYSTEM))
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/* Ignore legacy non-system (non-kernel) VF2PF messages */
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goto err;
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switch ((msg & ADF_VF2PF_MSGTYPE_MASK) >> ADF_VF2PF_MSGTYPE_SHIFT) {
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case ADF_VF2PF_MSGTYPE_COMPAT_VER_REQ:
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{
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u8 vf_compat_ver = msg >> ADF_VF2PF_COMPAT_VER_REQ_SHIFT;
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resp = (ADF_PF2VF_MSGORIGIN_SYSTEM |
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(ADF_PF2VF_MSGTYPE_VERSION_RESP <<
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ADF_PF2VF_MSGTYPE_SHIFT) |
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(ADF_PFVF_COMPAT_THIS_VERSION <<
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ADF_PF2VF_VERSION_RESP_VERS_SHIFT));
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dev_dbg(&GET_DEV(accel_dev),
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"Compatibility Version Request from VF%d vers=%u\n",
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vf_nr + 1, vf_compat_ver);
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if (vf_compat_ver < hw_data->min_iov_compat_ver) {
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dev_err(&GET_DEV(accel_dev),
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"VF (vers %d) incompatible with PF (vers %d)\n",
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vf_compat_ver, ADF_PFVF_COMPAT_THIS_VERSION);
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resp |= ADF_PF2VF_VF_INCOMPATIBLE <<
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ADF_PF2VF_VERSION_RESP_RESULT_SHIFT;
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} else if (vf_compat_ver > ADF_PFVF_COMPAT_THIS_VERSION) {
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dev_err(&GET_DEV(accel_dev),
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"VF (vers %d) compat with PF (vers %d) unkn.\n",
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vf_compat_ver, ADF_PFVF_COMPAT_THIS_VERSION);
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resp |= ADF_PF2VF_VF_COMPAT_UNKNOWN <<
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ADF_PF2VF_VERSION_RESP_RESULT_SHIFT;
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} else {
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dev_dbg(&GET_DEV(accel_dev),
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"VF (vers %d) compatible with PF (vers %d)\n",
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vf_compat_ver, ADF_PFVF_COMPAT_THIS_VERSION);
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resp |= ADF_PF2VF_VF_COMPATIBLE <<
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ADF_PF2VF_VERSION_RESP_RESULT_SHIFT;
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}
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}
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break;
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case ADF_VF2PF_MSGTYPE_VERSION_REQ:
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dev_dbg(&GET_DEV(accel_dev),
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"Legacy VersionRequest received from VF%d 0x%x\n",
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vf_nr + 1, msg);
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resp = (ADF_PF2VF_MSGORIGIN_SYSTEM |
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(ADF_PF2VF_MSGTYPE_VERSION_RESP <<
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ADF_PF2VF_MSGTYPE_SHIFT) |
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(ADF_PFVF_COMPAT_THIS_VERSION <<
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ADF_PF2VF_VERSION_RESP_VERS_SHIFT));
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resp |= ADF_PF2VF_VF_COMPATIBLE <<
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ADF_PF2VF_VERSION_RESP_RESULT_SHIFT;
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/* Set legacy major and minor version num */
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resp |= 1 << ADF_PF2VF_MAJORVERSION_SHIFT |
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1 << ADF_PF2VF_MINORVERSION_SHIFT;
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break;
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case ADF_VF2PF_MSGTYPE_INIT:
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{
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dev_dbg(&GET_DEV(accel_dev),
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"Init message received from VF%d 0x%x\n",
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vf_nr + 1, msg);
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vf_info->init = true;
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}
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break;
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case ADF_VF2PF_MSGTYPE_SHUTDOWN:
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{
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dev_dbg(&GET_DEV(accel_dev),
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"Shutdown message received from VF%d 0x%x\n",
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vf_nr + 1, msg);
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vf_info->init = false;
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}
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break;
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default:
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goto err;
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}
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if (resp && adf_send_pf2vf_msg(accel_dev, vf_nr, resp))
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dev_err(&GET_DEV(accel_dev), "Failed to send response to VF\n");
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out:
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/* re-enable interrupt on PF from this VF */
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adf_enable_vf2pf_interrupts(accel_dev, (1 << vf_nr));
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return;
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err:
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dev_dbg(&GET_DEV(accel_dev), "Unknown message from VF%d (0x%x);\n",
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vf_nr + 1, msg);
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}
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void adf_pf2vf_notify_restarting(struct adf_accel_dev *accel_dev)
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{
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struct adf_accel_vf_info *vf;
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u32 msg = (ADF_PF2VF_MSGORIGIN_SYSTEM |
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(ADF_PF2VF_MSGTYPE_RESTARTING << ADF_PF2VF_MSGTYPE_SHIFT));
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int i, num_vfs = pci_num_vf(accel_to_pci_dev(accel_dev));
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for (i = 0, vf = accel_dev->pf.vf_info; i < num_vfs; i++, vf++) {
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if (vf->init && adf_send_pf2vf_msg(accel_dev, i, msg))
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dev_err(&GET_DEV(accel_dev),
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"Failed to send restarting msg to VF%d\n", i);
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}
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}
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static int adf_vf2pf_request_version(struct adf_accel_dev *accel_dev)
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{
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struct adf_hw_device_data *hw_data = accel_dev->hw_device;
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u32 msg = 0;
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int ret;
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msg = ADF_VF2PF_MSGORIGIN_SYSTEM;
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msg |= ADF_VF2PF_MSGTYPE_COMPAT_VER_REQ << ADF_VF2PF_MSGTYPE_SHIFT;
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msg |= ADF_PFVF_COMPAT_THIS_VERSION << ADF_VF2PF_COMPAT_VER_REQ_SHIFT;
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BUILD_BUG_ON(ADF_PFVF_COMPAT_THIS_VERSION > 255);
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ret = adf_send_vf2pf_req(accel_dev, msg);
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if (ret) {
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dev_err(&GET_DEV(accel_dev),
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"Failed to send Compatibility Version Request.\n");
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return ret;
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}
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/* Response from PF received, check compatibility */
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switch (accel_dev->vf.compatible) {
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case ADF_PF2VF_VF_COMPATIBLE:
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break;
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case ADF_PF2VF_VF_COMPAT_UNKNOWN:
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/* VF is newer than PF and decides whether it is compatible */
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if (accel_dev->vf.pf_version >= hw_data->min_iov_compat_ver) {
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accel_dev->vf.compatible = ADF_PF2VF_VF_COMPATIBLE;
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break;
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}
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fallthrough;
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case ADF_PF2VF_VF_INCOMPATIBLE:
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dev_err(&GET_DEV(accel_dev),
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"PF (vers %d) and VF (vers %d) are not compatible\n",
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accel_dev->vf.pf_version,
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ADF_PFVF_COMPAT_THIS_VERSION);
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return -EINVAL;
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default:
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dev_err(&GET_DEV(accel_dev),
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"Invalid response from PF; assume not compatible\n");
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return -EINVAL;
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}
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return ret;
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}
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/**
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* adf_enable_vf2pf_comms() - Function enables communication from vf to pf
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*
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* @accel_dev: Pointer to acceleration device virtual function.
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*
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* Return: 0 on success, error code otherwise.
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*/
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int adf_enable_vf2pf_comms(struct adf_accel_dev *accel_dev)
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{
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adf_enable_pf2vf_interrupts(accel_dev);
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return adf_vf2pf_request_version(accel_dev);
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}
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EXPORT_SYMBOL_GPL(adf_enable_vf2pf_comms);
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/**
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* adf_enable_pf2vf_comms() - Function enables communication from pf to vf
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*
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* @accel_dev: Pointer to acceleration device virtual function.
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*
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* This function carries out the necessary steps to setup and start the PFVF
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* communication channel, if any.
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*
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* Return: 0 on success, error code otherwise.
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*/
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int adf_enable_pf2vf_comms(struct adf_accel_dev *accel_dev)
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{
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spin_lock_init(&accel_dev->pf.vf2pf_ints_lock);
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return 0;
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}
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EXPORT_SYMBOL_GPL(adf_enable_pf2vf_comms);
|