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https://git.kernel.org/pub/scm/linux/kernel/git/next/linux-next.git
synced 2025-01-13 09:20:17 +00:00
staging: tidspbridge: Remove cfg_get_object()
As the services directory is going to be removed, the cfg_get_object function has also to be removed. Since the driver object handle is retrieved from the drv_data structure, then the word "Registry" is replaced by "driver data" in the comments. Also, the hdrv_obj is not used in function omap34_xx_bridge_remove(), so it is removed. Signed-off-by: Ivan Gomez Castellanos <ivan.gomez@ti.com> Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
This commit is contained in:
parent
315a1a20aa
commit
73b87a9166
@ -40,23 +40,6 @@
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*/
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extern int cfg_get_cd_version(u32 *version);
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/*
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* ======== cfg_get_object ========
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* Purpose:
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* Retrieve the Driver Object handle From the Registry
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* Parameters:
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* value: Ptr to location to store the value.
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* dw_type Type of Object to Get
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* Returns:
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* 0: Success.
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* Requires:
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* CFG initialized.
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* Ensures:
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* 0: *value is set to the retrieved u32(non-Zero).
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* else: *value is set to 0L.
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*/
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extern int cfg_get_object(u32 *value, u8 dw_type);
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/*
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* ======== cfg_get_perf_value ========
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* Purpose:
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@ -148,6 +148,7 @@ int dev_create_device(struct dev_object **device_obj,
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struct io_attrs io_mgr_attrs;
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u32 num_windows;
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struct drv_object *hdrv_obj = NULL;
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struct drv_data *drv_datap = dev_get_drvdata(bridge);
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int status = 0;
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DBC_REQUIRE(refs > 0);
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DBC_REQUIRE(device_obj != NULL);
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@ -163,10 +164,15 @@ int dev_create_device(struct dev_object **device_obj,
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/* Get the Bridge driver interface functions */
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bridge_drv_entry(&drv_fxns, driver_file_name);
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if (cfg_get_object((u32 *) &hdrv_obj, REG_DRV_OBJECT)) {
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/* don't propogate CFG errors from this PROC function */
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/* Retrieve the Object handle from the driver data */
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if (drv_datap && drv_datap->drv_object) {
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hdrv_obj = drv_datap->drv_object;
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} else {
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status = -EPERM;
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pr_err("%s: Failed to retrieve the object handle\n", __func__);
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}
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/* Create the device object, and pass a handle to the Bridge driver for
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* storage. */
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if (!status) {
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@ -438,11 +438,15 @@ u32 drv_get_first_dev_object(void)
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{
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u32 dw_dev_object = 0;
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struct drv_object *pdrv_obj;
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struct drv_data *drv_datap = dev_get_drvdata(bridge);
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if (!cfg_get_object((u32 *) &pdrv_obj, REG_DRV_OBJECT)) {
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if (drv_datap && drv_datap->drv_object) {
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pdrv_obj = drv_datap->drv_object;
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if ((pdrv_obj->dev_list != NULL) &&
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!LST_IS_EMPTY(pdrv_obj->dev_list))
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dw_dev_object = (u32) lst_first(pdrv_obj->dev_list);
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} else {
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pr_err("%s: Failed to retrieve the object handle\n", __func__);
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}
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return dw_dev_object;
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@ -458,14 +462,17 @@ u32 drv_get_first_dev_extension(void)
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{
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u32 dw_dev_extension = 0;
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struct drv_object *pdrv_obj;
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struct drv_data *drv_datap = dev_get_drvdata(bridge);
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if (!cfg_get_object((u32 *) &pdrv_obj, REG_DRV_OBJECT)) {
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if (drv_datap && drv_datap->drv_object) {
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pdrv_obj = drv_datap->drv_object;
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if ((pdrv_obj->dev_node_string != NULL) &&
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!LST_IS_EMPTY(pdrv_obj->dev_node_string)) {
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dw_dev_extension =
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(u32) lst_first(pdrv_obj->dev_node_string);
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}
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} else {
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pr_err("%s: Failed to retrieve the object handle\n", __func__);
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}
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return dw_dev_extension;
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@ -482,18 +489,22 @@ u32 drv_get_next_dev_object(u32 hdev_obj)
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{
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u32 dw_next_dev_object = 0;
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struct drv_object *pdrv_obj;
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struct drv_data *drv_datap = dev_get_drvdata(bridge);
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DBC_REQUIRE(hdev_obj != 0);
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if (!cfg_get_object((u32 *) &pdrv_obj, REG_DRV_OBJECT)) {
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if (drv_datap && drv_datap->drv_object) {
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pdrv_obj = drv_datap->drv_object;
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if ((pdrv_obj->dev_list != NULL) &&
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!LST_IS_EMPTY(pdrv_obj->dev_list)) {
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dw_next_dev_object = (u32) lst_next(pdrv_obj->dev_list,
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(struct list_head *)
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hdev_obj);
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}
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} else {
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pr_err("%s: Failed to retrieve the object handle\n", __func__);
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}
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return dw_next_dev_object;
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}
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@ -509,16 +520,20 @@ u32 drv_get_next_dev_extension(u32 dev_extension)
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{
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u32 dw_dev_extension = 0;
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struct drv_object *pdrv_obj;
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struct drv_data *drv_datap = dev_get_drvdata(bridge);
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DBC_REQUIRE(dev_extension != 0);
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if (!cfg_get_object((u32 *) &pdrv_obj, REG_DRV_OBJECT)) {
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if (drv_datap && drv_datap->drv_object) {
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pdrv_obj = drv_datap->drv_object;
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if ((pdrv_obj->dev_node_string != NULL) &&
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!LST_IS_EMPTY(pdrv_obj->dev_node_string)) {
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dw_dev_extension =
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(u32) lst_next(pdrv_obj->dev_node_string,
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(struct list_head *)dev_extension);
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}
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} else {
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pr_err("%s: Failed to retrieve the object handle\n", __func__);
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}
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return dw_dev_extension;
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@ -616,6 +631,7 @@ int drv_request_resources(u32 dw_context, u32 *dev_node_strg)
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int status = 0;
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struct drv_object *pdrv_object;
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struct drv_ext *pszdev_node;
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struct drv_data *drv_datap = dev_get_drvdata(bridge);
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DBC_REQUIRE(dw_context != 0);
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DBC_REQUIRE(dev_node_strg != NULL);
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@ -626,7 +642,11 @@ int drv_request_resources(u32 dw_context, u32 *dev_node_strg)
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* list.
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*/
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status = cfg_get_object((u32 *) &pdrv_object, REG_DRV_OBJECT);
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if (!drv_datap || !drv_datap->drv_object)
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status = -ENODATA;
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else
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pdrv_object = drv_datap->drv_object;
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if (!status) {
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pszdev_node = kzalloc(sizeof(struct drv_ext), GFP_KERNEL);
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if (pszdev_node) {
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@ -394,11 +394,14 @@ static int __devexit omap34_xx_bridge_remove(struct platform_device *pdev)
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dev_t devno;
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bool ret;
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int status = 0;
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void *hdrv_obj = NULL;
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struct drv_data *drv_datap = dev_get_drvdata(bridge);
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status = cfg_get_object((u32 *) &hdrv_obj, REG_DRV_OBJECT);
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if (status)
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/* Retrieve the Object handle from the driver data */
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if (!drv_datap || !drv_datap->drv_object) {
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status = -ENODATA;
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pr_err("%s: Failed to retrieve the object handle\n", __func__);
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goto func_cont;
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}
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#ifdef CONFIG_TIDSPBRIDGE_DVFS
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if (cpufreq_unregister_notifier(&iva_clk_notifier,
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@ -121,6 +121,7 @@ bool dsp_deinit(u32 device_context)
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bool ret = true;
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u32 device_node;
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struct mgr_object *mgr_obj = NULL;
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struct drv_data *drv_datap = dev_get_drvdata(bridge);
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while ((device_node = drv_get_first_dev_extension()) != 0) {
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(void)dev_remove_device((struct cfg_devnode *)device_node);
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@ -131,10 +132,14 @@ bool dsp_deinit(u32 device_context)
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(void)drv_destroy((struct drv_object *)device_context);
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/* Get the Manager Object from Registry
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/* Get the Manager Object from driver data
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* MGR Destroy will unload the DCD dll */
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if (!cfg_get_object((u32 *) &mgr_obj, REG_MGR_OBJECT))
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if (drv_datap && drv_datap->mgr_object) {
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mgr_obj = drv_datap->mgr_object;
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(void)mgr_destroy(mgr_obj);
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} else {
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pr_err("%s: Failed to retrieve the object handle\n", __func__);
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}
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api_exit();
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@ -123,6 +123,7 @@ int mgr_enum_node_info(u32 node_id, struct dsp_ndbprops *pndb_props,
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u32 node_index = 0;
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struct dcd_genericobj gen_obj;
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struct mgr_object *pmgr_obj = NULL;
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struct drv_data *drv_datap = dev_get_drvdata(bridge);
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DBC_REQUIRE(pndb_props != NULL);
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DBC_REQUIRE(pu_num_nodes != NULL);
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@ -130,10 +131,14 @@ int mgr_enum_node_info(u32 node_id, struct dsp_ndbprops *pndb_props,
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DBC_REQUIRE(refs > 0);
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*pu_num_nodes = 0;
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/* Get The Manager Object from the Registry */
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status = cfg_get_object((u32 *) &pmgr_obj, REG_MGR_OBJECT);
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if (status)
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/* Get the Manager Object from the driver data */
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if (!drv_datap || !drv_datap->mgr_object) {
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status = -ENODATA;
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pr_err("%s: Failed to retrieve the object handle\n", __func__);
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goto func_cont;
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} else {
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pmgr_obj = drv_datap->mgr_object;
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}
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DBC_ASSERT(pmgr_obj);
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/* Forever loop till we hit failed or no more items in the
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@ -195,6 +200,7 @@ int mgr_enum_processor_info(u32 processor_id,
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struct drv_object *hdrv_obj;
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u8 dev_type;
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struct cfg_devnode *dev_node;
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struct drv_data *drv_datap = dev_get_drvdata(bridge);
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bool proc_detect = false;
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DBC_REQUIRE(processor_info != NULL);
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@ -203,7 +209,15 @@ int mgr_enum_processor_info(u32 processor_id,
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DBC_REQUIRE(refs > 0);
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*pu_num_procs = 0;
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status = cfg_get_object((u32 *) &hdrv_obj, REG_DRV_OBJECT);
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/* Retrieve the Object handle from the driver data */
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if (!drv_datap || !drv_datap->drv_object) {
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status = -ENODATA;
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pr_err("%s: Failed to retrieve the object handle\n", __func__);
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} else {
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hdrv_obj = drv_datap->drv_object;
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}
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if (!status) {
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status = drv_get_dev_object(processor_id, hdrv_obj, &hdev_obj);
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if (!status) {
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@ -219,8 +233,10 @@ int mgr_enum_processor_info(u32 processor_id,
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if (status)
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goto func_end;
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/* Get The Manager Object from the Registry */
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if (cfg_get_object((u32 *) &pmgr_obj, REG_MGR_OBJECT)) {
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/* Get The Manager Object from the driver data */
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if (drv_datap && drv_datap->mgr_object) {
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pmgr_obj = drv_datap->mgr_object;
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} else {
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dev_dbg(bridge, "%s: Failed to get MGR Object\n", __func__);
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goto func_end;
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}
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@ -280,6 +280,7 @@ proc_attach(u32 processor_id,
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struct proc_object *p_proc_object = NULL;
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struct mgr_object *hmgr_obj = NULL;
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struct drv_object *hdrv_obj = NULL;
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struct drv_data *drv_datap = dev_get_drvdata(bridge);
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u8 dev_type;
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DBC_REQUIRE(refs > 0);
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@ -291,9 +292,13 @@ proc_attach(u32 processor_id,
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}
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/* Get the Driver and Manager Object Handles */
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status = cfg_get_object((u32 *) &hdrv_obj, REG_DRV_OBJECT);
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if (!status)
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status = cfg_get_object((u32 *) &hmgr_obj, REG_MGR_OBJECT);
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if (!drv_datap || !drv_datap->drv_object || !drv_datap->mgr_object) {
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status = -ENODATA;
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pr_err("%s: Failed to get object handles\n", __func__);
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} else {
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hdrv_obj = drv_datap->drv_object;
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hmgr_obj = drv_datap->mgr_object;
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}
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if (!status) {
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/* Get the Device Object */
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@ -440,6 +445,7 @@ int proc_auto_start(struct cfg_devnode *dev_node_obj,
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char sz_exec_file[MAXCMDLINELEN];
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char *argv[2];
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struct mgr_object *hmgr_obj = NULL;
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struct drv_data *drv_datap = dev_get_drvdata(bridge);
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u8 dev_type;
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DBC_REQUIRE(refs > 0);
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@ -447,9 +453,13 @@ int proc_auto_start(struct cfg_devnode *dev_node_obj,
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DBC_REQUIRE(hdev_obj != NULL);
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/* Create a Dummy PROC Object */
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status = cfg_get_object((u32 *) &hmgr_obj, REG_MGR_OBJECT);
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if (status)
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if (!drv_datap || !drv_datap->mgr_object) {
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status = -ENODATA;
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pr_err("%s: Failed to retrieve the object handle\n", __func__);
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goto func_end;
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} else {
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hmgr_obj = drv_datap->mgr_object;
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}
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p_proc_object = kzalloc(sizeof(struct proc_object), GFP_KERNEL);
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if (p_proc_object == NULL) {
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@ -30,50 +30,6 @@
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#include <dspbridge/cfg.h>
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#include <dspbridge/drv.h>
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/*
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* ======== cfg_get_object ========
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* Purpose:
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* Retrieve the Object handle from the Registry
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*/
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int cfg_get_object(u32 *value, u8 dw_type)
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{
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int status = -EINVAL;
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struct drv_data *drv_datap = dev_get_drvdata(bridge);
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DBC_REQUIRE(value != NULL);
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if (!drv_datap)
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return -EPERM;
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switch (dw_type) {
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case (REG_DRV_OBJECT):
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if (drv_datap->drv_object) {
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*value = (u32)drv_datap->drv_object;
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status = 0;
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} else {
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status = -ENODATA;
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}
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break;
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case (REG_MGR_OBJECT):
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if (drv_datap->mgr_object) {
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*value = (u32)drv_datap->mgr_object;
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status = 0;
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} else {
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status = -ENODATA;
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}
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break;
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default:
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break;
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}
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if (status) {
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*value = 0;
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pr_err("%s: Failed, status 0x%x\n", __func__, status);
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}
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DBC_ENSURE((!status && *value != 0) || (status && *value == 0));
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return status;
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}
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/*
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* ======== cfg_set_dev_object ========
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* Purpose:
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