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hisi_acc_vfio_pci: register debugfs for hisilicon migration driver
On the debugfs framework of VFIO, if the CONFIG_VFIO_DEBUGFS macro is enabled, the debug function is registered for the live migration driver of the HiSilicon accelerator device. After registering the HiSilicon accelerator device on the debugfs framework of live migration of vfio, a directory file "hisi_acc" of debugfs is created, and then three debug function files are created in this directory: vfio | +---<dev_name1> | +---migration | +--state | +--hisi_acc | +--dev_data | +--migf_data | +--cmd_state | +---<dev_name2> +---migration +--state +--hisi_acc +--dev_data +--migf_data +--cmd_state dev_data file: read device data that needs to be migrated from the current device in real time migf_data file: read the migration data of the last live migration from the current driver. cmd_state: used to get the cmd channel state for the device. +----------------+ +--------------+ +---------------+ | migration dev | | src dev | | dst dev | +-------+--------+ +------+-------+ +-------+-------+ | | | | +------v-------+ +-------v-------+ | | saving_migf | | resuming_migf | read | | file | | file | | +------+-------+ +-------+-------+ | | copy | | +------------+----------+ | | +-------v--------+ +-------v--------+ | data buffer | | debug_migf | +-------+--------+ +-------+--------+ | | cat | cat | +-------v--------+ +-------v--------+ | dev_data | | migf_data | +----------------+ +----------------+ When accessing debugfs, user can obtain the most recent status data of the device through the "dev_data" file. It can read recent complete status data of the device. If the current device is being migrated, it will wait for it to complete. The data for the last completed migration function will be stored in debug_migf. Users can read it via "migf_data". Signed-off-by: Longfang Liu <liulongfang@huawei.com> Reviewed-by: Shameer Kolothum <shameerali.kolothum.thodi@huawei.com> Link: https://lore.kernel.org/r/20241112073322.54550-4-liulongfang@huawei.com Signed-off-by: Alex Williamson <alex.williamson@redhat.com>
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@ -627,15 +627,31 @@ static void hisi_acc_vf_disable_fd(struct hisi_acc_vf_migration_file *migf)
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mutex_unlock(&migf->lock);
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}
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static void
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hisi_acc_debug_migf_copy(struct hisi_acc_vf_core_device *hisi_acc_vdev,
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struct hisi_acc_vf_migration_file *src_migf)
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{
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struct hisi_acc_vf_migration_file *dst_migf = hisi_acc_vdev->debug_migf;
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if (!dst_migf)
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return;
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dst_migf->total_length = src_migf->total_length;
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memcpy(&dst_migf->vf_data, &src_migf->vf_data,
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sizeof(struct acc_vf_data));
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}
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static void hisi_acc_vf_disable_fds(struct hisi_acc_vf_core_device *hisi_acc_vdev)
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{
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if (hisi_acc_vdev->resuming_migf) {
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hisi_acc_debug_migf_copy(hisi_acc_vdev, hisi_acc_vdev->resuming_migf);
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hisi_acc_vf_disable_fd(hisi_acc_vdev->resuming_migf);
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fput(hisi_acc_vdev->resuming_migf->filp);
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hisi_acc_vdev->resuming_migf = NULL;
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}
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if (hisi_acc_vdev->saving_migf) {
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hisi_acc_debug_migf_copy(hisi_acc_vdev, hisi_acc_vdev->saving_migf);
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hisi_acc_vf_disable_fd(hisi_acc_vdev->saving_migf);
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fput(hisi_acc_vdev->saving_migf->filp);
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hisi_acc_vdev->saving_migf = NULL;
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@ -1292,6 +1308,129 @@ static long hisi_acc_vfio_pci_ioctl(struct vfio_device *core_vdev, unsigned int
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return vfio_pci_core_ioctl(core_vdev, cmd, arg);
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}
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static int hisi_acc_vf_debug_check(struct seq_file *seq, struct vfio_device *vdev)
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{
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struct hisi_acc_vf_core_device *hisi_acc_vdev = hisi_acc_get_vf_dev(vdev);
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struct hisi_qm *vf_qm = &hisi_acc_vdev->vf_qm;
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int ret;
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lockdep_assert_held(&hisi_acc_vdev->open_mutex);
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/*
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* When the device is not opened, the io_base is not mapped.
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* The driver cannot perform device read and write operations.
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*/
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if (!hisi_acc_vdev->dev_opened) {
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seq_puts(seq, "device not opened!\n");
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return -EINVAL;
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}
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ret = qm_wait_dev_not_ready(vf_qm);
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if (ret) {
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seq_puts(seq, "VF device not ready!\n");
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return -EBUSY;
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}
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return 0;
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}
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static int hisi_acc_vf_debug_cmd(struct seq_file *seq, void *data)
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{
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struct device *vf_dev = seq->private;
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struct vfio_pci_core_device *core_device = dev_get_drvdata(vf_dev);
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struct vfio_device *vdev = &core_device->vdev;
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struct hisi_acc_vf_core_device *hisi_acc_vdev = hisi_acc_get_vf_dev(vdev);
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struct hisi_qm *vf_qm = &hisi_acc_vdev->vf_qm;
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u64 value;
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int ret;
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mutex_lock(&hisi_acc_vdev->open_mutex);
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ret = hisi_acc_vf_debug_check(seq, vdev);
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if (ret) {
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mutex_unlock(&hisi_acc_vdev->open_mutex);
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return ret;
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}
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value = readl(vf_qm->io_base + QM_MB_CMD_SEND_BASE);
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if (value == QM_MB_CMD_NOT_READY) {
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mutex_unlock(&hisi_acc_vdev->open_mutex);
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seq_puts(seq, "mailbox cmd channel not ready!\n");
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return -EINVAL;
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}
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mutex_unlock(&hisi_acc_vdev->open_mutex);
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seq_puts(seq, "mailbox cmd channel ready!\n");
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return 0;
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}
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static int hisi_acc_vf_dev_read(struct seq_file *seq, void *data)
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{
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struct device *vf_dev = seq->private;
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struct vfio_pci_core_device *core_device = dev_get_drvdata(vf_dev);
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struct vfio_device *vdev = &core_device->vdev;
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struct hisi_acc_vf_core_device *hisi_acc_vdev = hisi_acc_get_vf_dev(vdev);
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size_t vf_data_sz = offsetofend(struct acc_vf_data, padding);
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struct acc_vf_data *vf_data;
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int ret;
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mutex_lock(&hisi_acc_vdev->open_mutex);
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ret = hisi_acc_vf_debug_check(seq, vdev);
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if (ret) {
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mutex_unlock(&hisi_acc_vdev->open_mutex);
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return ret;
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}
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mutex_lock(&hisi_acc_vdev->state_mutex);
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vf_data = kzalloc(sizeof(*vf_data), GFP_KERNEL);
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if (!vf_data) {
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ret = -ENOMEM;
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goto mutex_release;
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}
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vf_data->vf_qm_state = hisi_acc_vdev->vf_qm_state;
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ret = vf_qm_read_data(&hisi_acc_vdev->vf_qm, vf_data);
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if (ret)
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goto migf_err;
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seq_hex_dump(seq, "Dev Data:", DUMP_PREFIX_OFFSET, 16, 1,
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(const void *)vf_data, vf_data_sz, false);
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seq_printf(seq,
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"guest driver load: %u\n"
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"data size: %lu\n",
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hisi_acc_vdev->vf_qm_state,
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sizeof(struct acc_vf_data));
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migf_err:
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kfree(vf_data);
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mutex_release:
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mutex_unlock(&hisi_acc_vdev->state_mutex);
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mutex_unlock(&hisi_acc_vdev->open_mutex);
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return ret;
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}
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static int hisi_acc_vf_migf_read(struct seq_file *seq, void *data)
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{
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struct device *vf_dev = seq->private;
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struct vfio_pci_core_device *core_device = dev_get_drvdata(vf_dev);
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struct vfio_device *vdev = &core_device->vdev;
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struct hisi_acc_vf_core_device *hisi_acc_vdev = hisi_acc_get_vf_dev(vdev);
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size_t vf_data_sz = offsetofend(struct acc_vf_data, padding);
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struct hisi_acc_vf_migration_file *debug_migf = hisi_acc_vdev->debug_migf;
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/* Check whether the live migration operation has been performed */
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if (debug_migf->total_length < QM_MATCH_SIZE) {
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seq_puts(seq, "device not migrated!\n");
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return -EAGAIN;
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}
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seq_hex_dump(seq, "Mig Data:", DUMP_PREFIX_OFFSET, 16, 1,
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(const void *)&debug_migf->vf_data, vf_data_sz, false);
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seq_printf(seq, "migrate data length: %lu\n", debug_migf->total_length);
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return 0;
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}
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static int hisi_acc_vfio_pci_open_device(struct vfio_device *core_vdev)
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{
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struct hisi_acc_vf_core_device *hisi_acc_vdev = hisi_acc_get_vf_dev(core_vdev);
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@ -1303,12 +1442,16 @@ static int hisi_acc_vfio_pci_open_device(struct vfio_device *core_vdev)
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return ret;
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if (core_vdev->mig_ops) {
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mutex_lock(&hisi_acc_vdev->open_mutex);
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ret = hisi_acc_vf_qm_init(hisi_acc_vdev);
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if (ret) {
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mutex_unlock(&hisi_acc_vdev->open_mutex);
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vfio_pci_core_disable(vdev);
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return ret;
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}
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hisi_acc_vdev->mig_state = VFIO_DEVICE_STATE_RUNNING;
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hisi_acc_vdev->dev_opened = true;
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mutex_unlock(&hisi_acc_vdev->open_mutex);
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}
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vfio_pci_core_finish_enable(vdev);
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@ -1320,7 +1463,10 @@ static void hisi_acc_vfio_pci_close_device(struct vfio_device *core_vdev)
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struct hisi_acc_vf_core_device *hisi_acc_vdev = hisi_acc_get_vf_dev(core_vdev);
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struct hisi_qm *vf_qm = &hisi_acc_vdev->vf_qm;
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mutex_lock(&hisi_acc_vdev->open_mutex);
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hisi_acc_vdev->dev_opened = false;
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iounmap(vf_qm->io_base);
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mutex_unlock(&hisi_acc_vdev->open_mutex);
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vfio_pci_core_close_device(core_vdev);
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}
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@ -1340,6 +1486,7 @@ static int hisi_acc_vfio_pci_migrn_init_dev(struct vfio_device *core_vdev)
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hisi_acc_vdev->pf_qm = pf_qm;
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hisi_acc_vdev->vf_dev = pdev;
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mutex_init(&hisi_acc_vdev->state_mutex);
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mutex_init(&hisi_acc_vdev->open_mutex);
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core_vdev->migration_flags = VFIO_MIGRATION_STOP_COPY | VFIO_MIGRATION_PRE_COPY;
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core_vdev->mig_ops = &hisi_acc_vfio_pci_migrn_state_ops;
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@ -1385,6 +1532,47 @@ static const struct vfio_device_ops hisi_acc_vfio_pci_ops = {
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.detach_ioas = vfio_iommufd_physical_detach_ioas,
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};
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static void hisi_acc_vfio_debug_init(struct hisi_acc_vf_core_device *hisi_acc_vdev)
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{
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struct vfio_device *vdev = &hisi_acc_vdev->core_device.vdev;
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struct hisi_acc_vf_migration_file *migf;
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struct dentry *vfio_dev_migration;
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struct dentry *vfio_hisi_acc;
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struct device *dev = vdev->dev;
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if (!debugfs_initialized() ||
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!IS_ENABLED(CONFIG_VFIO_DEBUGFS))
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return;
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if (vdev->ops != &hisi_acc_vfio_pci_migrn_ops)
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return;
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vfio_dev_migration = debugfs_lookup("migration", vdev->debug_root);
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if (!vfio_dev_migration) {
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dev_err(dev, "failed to lookup migration debugfs file!\n");
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return;
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}
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migf = kzalloc(sizeof(*migf), GFP_KERNEL);
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if (!migf)
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return;
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hisi_acc_vdev->debug_migf = migf;
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vfio_hisi_acc = debugfs_create_dir("hisi_acc", vfio_dev_migration);
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debugfs_create_devm_seqfile(dev, "dev_data", vfio_hisi_acc,
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hisi_acc_vf_dev_read);
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debugfs_create_devm_seqfile(dev, "migf_data", vfio_hisi_acc,
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hisi_acc_vf_migf_read);
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debugfs_create_devm_seqfile(dev, "cmd_state", vfio_hisi_acc,
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hisi_acc_vf_debug_cmd);
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}
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static void hisi_acc_vf_debugfs_exit(struct hisi_acc_vf_core_device *hisi_acc_vdev)
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{
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kfree(hisi_acc_vdev->debug_migf);
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hisi_acc_vdev->debug_migf = NULL;
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}
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static int hisi_acc_vfio_pci_probe(struct pci_dev *pdev, const struct pci_device_id *id)
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{
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struct hisi_acc_vf_core_device *hisi_acc_vdev;
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@ -1411,6 +1599,8 @@ static int hisi_acc_vfio_pci_probe(struct pci_dev *pdev, const struct pci_device
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ret = vfio_pci_core_register_device(&hisi_acc_vdev->core_device);
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if (ret)
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goto out_put_vdev;
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hisi_acc_vfio_debug_init(hisi_acc_vdev);
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return 0;
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out_put_vdev:
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@ -1423,6 +1613,7 @@ static void hisi_acc_vfio_pci_remove(struct pci_dev *pdev)
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struct hisi_acc_vf_core_device *hisi_acc_vdev = hisi_acc_drvdata(pdev);
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vfio_pci_core_unregister_device(&hisi_acc_vdev->core_device);
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hisi_acc_vf_debugfs_exit(hisi_acc_vdev);
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vfio_put_device(&hisi_acc_vdev->core_device.vdev);
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}
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@ -32,6 +32,7 @@
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#define QM_SQC_VFT_BASE_MASK_V2 GENMASK(15, 0)
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#define QM_SQC_VFT_NUM_SHIFT_V2 45
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#define QM_SQC_VFT_NUM_MASK_V2 GENMASK(9, 0)
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#define QM_MB_CMD_NOT_READY 0xffffffff
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/* RW regs */
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#define QM_REGS_MAX_LEN 7
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@ -99,6 +100,13 @@ struct hisi_acc_vf_migration_file {
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struct hisi_acc_vf_core_device {
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struct vfio_pci_core_device core_device;
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u8 match_done;
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/*
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* io_base is only valid when dev_opened is true,
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* which is protected by open_mutex.
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*/
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bool dev_opened;
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/* Ensure the accuracy of dev_opened operation */
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struct mutex open_mutex;
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/* For migration state */
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struct mutex state_mutex;
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@ -107,9 +115,20 @@ struct hisi_acc_vf_core_device {
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struct pci_dev *vf_dev;
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struct hisi_qm *pf_qm;
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struct hisi_qm vf_qm;
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/*
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* vf_qm_state represents the QM_VF_STATE register value.
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* It is set by Guest driver for the ACC VF dev indicating
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* the driver has loaded and configured the dev correctly.
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*/
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u32 vf_qm_state;
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int vf_id;
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struct hisi_acc_vf_migration_file *resuming_migf;
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struct hisi_acc_vf_migration_file *saving_migf;
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/*
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* It holds migration data corresponding to the last migration
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* and is used by the debugfs interface to report it.
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*/
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struct hisi_acc_vf_migration_file *debug_migf;
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};
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#endif /* HISI_ACC_VFIO_PCI_H */
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