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@@ -28,30 +28,11 @@
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#define HID_SENSOR_HUB_ENUM_QUIRK 0x01
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-/**
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- * struct sensor_hub_pending - Synchronous read pending information
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- * @status: Pending status true/false.
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- * @ready: Completion synchronization data.
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- * @usage_id: Usage id for physical device, E.g. Gyro usage id.
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- * @attr_usage_id: Usage Id of a field, E.g. X-AXIS for a gyro.
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- * @raw_size: Response size for a read request.
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- * @raw_data: Place holder for received response.
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- */
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-struct sensor_hub_pending {
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- bool status;
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- struct completion ready;
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- u32 usage_id;
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- u32 attr_usage_id;
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- int raw_size;
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- u8 *raw_data;
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-};
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-
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/**
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* struct sensor_hub_data - Hold a instance data for a HID hub device
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* @hsdev: Stored hid instance for current hub device.
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* @mutex: Mutex to serialize synchronous request.
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* @lock: Spin lock to protect pending request structure.
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- * @pending: Holds information of pending sync read request.
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* @dyn_callback_list: Holds callback function
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* @dyn_callback_lock: spin lock to protect callback list
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* @hid_sensor_hub_client_devs: Stores all MFD cells for a hub instance.
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@@ -61,7 +42,6 @@ struct sensor_hub_pending {
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struct sensor_hub_data {
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struct mutex mutex;
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spinlock_t lock;
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- struct sensor_hub_pending pending;
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struct list_head dyn_callback_list;
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spinlock_t dyn_callback_lock;
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struct mfd_cell *hid_sensor_hub_client_devs;
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@@ -264,40 +244,42 @@ int sensor_hub_input_attr_get_raw_value(struct hid_sensor_hub_device *hsdev,
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struct hid_report *report;
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int ret_val = 0;
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- mutex_lock(&data->mutex);
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- memset(&data->pending, 0, sizeof(data->pending));
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- init_completion(&data->pending.ready);
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- data->pending.usage_id = usage_id;
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- data->pending.attr_usage_id = attr_usage_id;
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- data->pending.raw_size = 0;
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+ mutex_lock(&hsdev->mutex);
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+ memset(&hsdev->pending, 0, sizeof(hsdev->pending));
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+ init_completion(&hsdev->pending.ready);
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+ hsdev->pending.usage_id = usage_id;
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+ hsdev->pending.attr_usage_id = attr_usage_id;
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+ hsdev->pending.raw_size = 0;
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spin_lock_irqsave(&data->lock, flags);
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- data->pending.status = true;
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+ hsdev->pending.status = true;
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spin_unlock_irqrestore(&data->lock, flags);
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report = sensor_hub_report(report_id, hsdev->hdev, HID_INPUT_REPORT);
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if (!report)
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goto err_free;
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+ mutex_lock(&data->mutex);
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hid_hw_request(hsdev->hdev, report, HID_REQ_GET_REPORT);
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- wait_for_completion_interruptible_timeout(&data->pending.ready, HZ*5);
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- switch (data->pending.raw_size) {
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+ mutex_unlock(&data->mutex);
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+ wait_for_completion_interruptible_timeout(&hsdev->pending.ready, HZ*5);
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+ switch (hsdev->pending.raw_size) {
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case 1:
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- ret_val = *(u8 *)data->pending.raw_data;
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+ ret_val = *(u8 *)hsdev->pending.raw_data;
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break;
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case 2:
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- ret_val = *(u16 *)data->pending.raw_data;
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+ ret_val = *(u16 *)hsdev->pending.raw_data;
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break;
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case 4:
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- ret_val = *(u32 *)data->pending.raw_data;
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+ ret_val = *(u32 *)hsdev->pending.raw_data;
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break;
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default:
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ret_val = 0;
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}
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- kfree(data->pending.raw_data);
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+ kfree(hsdev->pending.raw_data);
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err_free:
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- data->pending.status = false;
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- mutex_unlock(&data->mutex);
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+ hsdev->pending.status = false;
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+ mutex_unlock(&hsdev->mutex);
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return ret_val;
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}
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@@ -453,16 +435,6 @@ static int sensor_hub_raw_event(struct hid_device *hdev,
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report->field[i]->report_count)/8);
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sz = (report->field[i]->report_size *
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report->field[i]->report_count)/8;
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- if (pdata->pending.status && pdata->pending.attr_usage_id ==
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- report->field[i]->usage->hid) {
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- hid_dbg(hdev, "data was pending ...\n");
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- pdata->pending.raw_data = kmemdup(ptr, sz, GFP_ATOMIC);
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- if (pdata->pending.raw_data)
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- pdata->pending.raw_size = sz;
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- else
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- pdata->pending.raw_size = 0;
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- complete(&pdata->pending.ready);
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- }
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collection = &hdev->collection[
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report->field[i]->usage->collection_index];
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hid_dbg(hdev, "collection->usage %x\n",
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@@ -472,8 +444,21 @@ static int sensor_hub_raw_event(struct hid_device *hdev,
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report->field[i]->physical,
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report->field[i]->usage[0].collection_index,
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&hsdev, &priv);
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-
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- if (callback && callback->capture_sample) {
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+ if (!callback) {
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+ ptr += sz;
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+ continue;
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+ }
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+ if (hsdev->pending.status && hsdev->pending.attr_usage_id ==
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+ report->field[i]->usage->hid) {
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+ hid_dbg(hdev, "data was pending ...\n");
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+ hsdev->pending.raw_data = kmemdup(ptr, sz, GFP_ATOMIC);
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+ if (hsdev->pending.raw_data)
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+ hsdev->pending.raw_size = sz;
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+ else
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+ hsdev->pending.raw_size = 0;
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+ complete(&hsdev->pending.ready);
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+ }
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+ if (callback->capture_sample) {
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if (report->field[i]->logical)
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callback->capture_sample(hsdev,
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report->field[i]->logical, sz, ptr,
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@@ -628,6 +613,8 @@ static int sensor_hub_probe(struct hid_device *hdev,
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hsdev->hdev = hdev;
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hsdev->vendor_id = hdev->vendor;
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hsdev->product_id = hdev->product;
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+ hsdev->usage = collection->usage;
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+ mutex_init(&hsdev->mutex);
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hsdev->start_collection_index = i;
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if (last_hsdev)
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last_hsdev->end_collection_index = i;
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@@ -674,13 +661,18 @@ static void sensor_hub_remove(struct hid_device *hdev)
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{
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struct sensor_hub_data *data = hid_get_drvdata(hdev);
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unsigned long flags;
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+ int i;
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hid_dbg(hdev, " hardware removed\n");
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hid_hw_close(hdev);
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hid_hw_stop(hdev);
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spin_lock_irqsave(&data->lock, flags);
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- if (data->pending.status)
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- complete(&data->pending.ready);
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+ for (i = 0; i < data->hid_sensor_client_cnt; ++i) {
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+ struct hid_sensor_hub_device *hsdev =
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+ data->hid_sensor_hub_client_devs[i].platform_data;
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+ if (hsdev->pending.status)
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+ complete(&hsdev->pending.ready);
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+ }
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spin_unlock_irqrestore(&data->lock, flags);
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mfd_remove_devices(&hdev->dev);
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hid_set_drvdata(hdev, NULL);
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