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usb: gadget: f_tcm: convert to new function interface with backward compatibility
Converting tcm to the new function interface requires converting USB tcm's function code and its users. This patch converts the f_tcm.c to the new function interface. The file can be now compiled into a separate module usb_f_tcm.ko. The old function interface is provided by means of preprocessor conditional directives. After all users are converted, the old interface can be removed. Signed-off-by: Andrzej Pietrasiewicz <andrzej.p@samsung.com> Acked-by: Sebastian Andrzej Siewior <bigeasy@linutronix.de> Signed-off-by: Nicholas Bellinger <nab@linux-iscsi.org>
This commit is contained in:
parent
08a1cb0f65
commit
dc8c46a5ae
@ -199,6 +199,9 @@ config USB_F_HID
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config USB_F_PRINTER
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tristate
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config USB_F_TCM
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tristate
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choice
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tristate "USB Gadget Drivers"
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default USB_ETH
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@ -44,3 +44,5 @@ usb_f_hid-y := f_hid.o
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obj-$(CONFIG_USB_F_HID) += usb_f_hid.o
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usb_f_printer-y := f_printer.o
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obj-$(CONFIG_USB_F_PRINTER) += usb_f_printer.o
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usb_f_tcm-y := f_tcm.o
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obj-$(CONFIG_USB_F_TCM) += usb_f_tcm.o
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@ -22,6 +22,21 @@
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#include <asm/unaligned.h>
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#include "tcm.h"
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#include "u_tcm.h"
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#ifndef USBF_TCM_INCLUDED
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#define TPG_INSTANCES 1
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struct tpg_instance {
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struct usb_function_instance *func_inst;
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struct usbg_tpg *tpg;
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};
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static struct tpg_instance tpg_instances[TPG_INSTANCES];
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static DEFINE_MUTEX(tpg_instances_lock);
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#endif
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static inline struct f_uas *to_f_uas(struct usb_function *f)
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{
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@ -1371,6 +1386,10 @@ static struct se_portal_group *usbg_make_tpg(
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struct usbg_tpg *tpg;
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unsigned long tpgt;
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int ret;
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#ifndef USBF_TCM_INCLUDED
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struct f_tcm_opts *opts;
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unsigned i;
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#endif
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if (strstr(name, "tpgt_") != name)
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return ERR_PTR(-EINVAL);
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@ -1381,14 +1400,40 @@ static struct se_portal_group *usbg_make_tpg(
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pr_err("gadgets, you can't do this here.\n");
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return ERR_PTR(-EBUSY);
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}
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#ifndef USBF_TCM_INCLUDED
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ret = -ENODEV;
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mutex_lock(&tpg_instances_lock);
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for (i = 0; i < TPG_INSTANCES; ++i)
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if (tpg_instances[i].func_inst && !tpg_instances[i].tpg)
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break;
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if (i == TPG_INSTANCES)
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goto unlock_inst;
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opts = container_of(tpg_instances[i].func_inst, struct f_tcm_opts,
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func_inst);
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mutex_lock(&opts->dep_lock);
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if (!opts->ready)
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goto unlock_dep;
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if (opts->has_dep && !try_module_get(opts->dependent))
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goto unlock_dep;
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#endif
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tpg = kzalloc(sizeof(struct usbg_tpg), GFP_KERNEL);
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ret = -ENOMEM;
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if (!tpg)
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#ifdef USBF_TCM_INCLUDED
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return ERR_PTR(-ENOMEM);
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#else
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goto unref_dep;
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#endif
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mutex_init(&tpg->tpg_mutex);
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atomic_set(&tpg->tpg_port_count, 0);
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tpg->workqueue = alloc_workqueue("tcm_usb_gadget", 0, 1);
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if (!tpg->workqueue) {
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#ifndef USBF_TCM_INCLUDED
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goto free_tpg;
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#endif
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kfree(tpg);
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return NULL;
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}
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@ -1402,12 +1447,35 @@ static struct se_portal_group *usbg_make_tpg(
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*/
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ret = core_tpg_register(wwn, &tpg->se_tpg, SCSI_PROTOCOL_SAS);
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if (ret < 0) {
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#ifndef USBF_TCM_INCLUDED
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goto free_workqueue;
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#endif
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destroy_workqueue(tpg->workqueue);
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kfree(tpg);
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return NULL;
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}
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#ifndef USBF_TCM_INCLUDED
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tpg_instances[i].tpg = tpg;
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tpg->fi = tpg_instances[i].func_inst;
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mutex_unlock(&opts->dep_lock);
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mutex_unlock(&tpg_instances_lock);
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#endif
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the_only_tpg_I_currently_have = tpg;
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return &tpg->se_tpg;
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#ifndef USBF_TCM_INCLUDED
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free_workqueue:
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destroy_workqueue(tpg->workqueue);
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free_tpg:
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kfree(tpg);
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unref_dep:
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module_put(opts->dependent);
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unlock_dep:
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mutex_unlock(&opts->dep_lock);
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unlock_inst:
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mutex_unlock(&tpg_instances_lock);
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return ERR_PTR(ret);
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#endif
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}
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static int tcm_usbg_drop_nexus(struct usbg_tpg *);
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@ -1416,10 +1484,29 @@ static void usbg_drop_tpg(struct se_portal_group *se_tpg)
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{
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struct usbg_tpg *tpg = container_of(se_tpg,
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struct usbg_tpg, se_tpg);
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#ifndef USBF_TCM_INCLUDED
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unsigned i;
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struct f_tcm_opts *opts;
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#endif
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tcm_usbg_drop_nexus(tpg);
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core_tpg_deregister(se_tpg);
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destroy_workqueue(tpg->workqueue);
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#ifndef USBF_TCM_INCLUDED
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mutex_lock(&tpg_instances_lock);
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for (i = 0; i < TPG_INSTANCES; ++i)
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if (tpg_instances[i].tpg == tpg)
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break;
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if (i < TPG_INSTANCES)
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tpg_instances[i].tpg = NULL;
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opts = container_of(tpg_instances[i].func_inst,
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struct f_tcm_opts, func_inst);
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mutex_lock(&opts->dep_lock);
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module_put(opts->dependent);
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mutex_unlock(&opts->dep_lock);
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mutex_unlock(&tpg_instances_lock);
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#endif
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kfree(tpg);
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the_only_tpg_I_currently_have = NULL;
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}
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@ -1440,6 +1527,7 @@ static struct se_wwn *usbg_make_tport(
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tport = kzalloc(sizeof(struct usbg_tport), GFP_KERNEL);
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if (!(tport))
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return ERR_PTR(-ENOMEM);
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tport->tport_wwpn = wwpn;
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snprintf(tport->tport_name, sizeof(tport->tport_name), "%s", wnn_name);
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return &tport->tport_wwn;
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@ -1978,9 +2066,32 @@ static int tcm_bind(struct usb_configuration *c, struct usb_function *f)
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struct f_uas *fu = to_f_uas(f);
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struct usb_gadget *gadget = c->cdev->gadget;
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struct usb_ep *ep;
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#ifndef USBF_TCM_INCLUDED
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struct f_tcm_opts *opts;
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#endif
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int iface;
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int ret;
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#ifndef USBF_TCM_INCLUDED
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opts = container_of(f->fi, struct f_tcm_opts, func_inst);
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mutex_lock(&opts->dep_lock);
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if (!opts->can_attach) {
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mutex_unlock(&opts->dep_lock);
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return -ENODEV;
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}
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mutex_unlock(&opts->dep_lock);
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#endif
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if (tcm_us_strings[0].id == 0) {
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ret = usb_string_ids_tab(c->cdev, tcm_us_strings);
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if (ret < 0)
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return ret;
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bot_intf_desc.iInterface = tcm_us_strings[USB_G_STR_INT_BBB].id;
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uasp_intf_desc.iInterface =
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tcm_us_strings[USB_G_STR_INT_UAS].id;
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}
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iface = usb_interface_id(c, f);
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if (iface < 0)
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return iface;
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@ -2038,7 +2149,9 @@ ep_fail:
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return -ENOTSUPP;
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}
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static void tcm_unbind(struct usb_configuration *c, struct usb_function *f)
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#ifdef USBF_TCM_INCLUDED
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static void tcm_old_unbind(struct usb_configuration *c, struct usb_function *f)
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{
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struct f_uas *fu = to_f_uas(f);
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@ -2046,6 +2159,8 @@ static void tcm_unbind(struct usb_configuration *c, struct usb_function *f)
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kfree(fu);
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}
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#endif
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struct guas_setup_wq {
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struct work_struct work;
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struct f_uas *fu;
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@ -2114,6 +2229,8 @@ static int tcm_setup(struct usb_function *f,
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return usbg_bot_setup(f, ctrl);
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}
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#ifdef USBF_TCM_INCLUDED
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static int tcm_bind_config(struct usb_configuration *c)
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{
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struct f_uas *fu;
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@ -2124,16 +2241,13 @@ static int tcm_bind_config(struct usb_configuration *c)
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return -ENOMEM;
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fu->function.name = "Target Function";
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fu->function.bind = tcm_bind;
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fu->function.unbind = tcm_unbind;
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fu->function.unbind = tcm_old_unbind;
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fu->function.set_alt = tcm_set_alt;
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fu->function.setup = tcm_setup;
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fu->function.disable = tcm_disable;
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fu->function.strings = tcm_strings;
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fu->tpg = the_only_tpg_I_currently_have;
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bot_intf_desc.iInterface = tcm_us_strings[USB_G_STR_INT_BBB].id;
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uasp_intf_desc.iInterface = tcm_us_strings[USB_G_STR_INT_UAS].id;
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ret = usb_add_function(c, &fu->function);
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if (ret)
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goto err;
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@ -2143,3 +2257,165 @@ err:
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kfree(fu);
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return ret;
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}
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#else
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static void tcm_free_inst(struct usb_function_instance *f)
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{
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struct f_tcm_opts *opts;
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unsigned i;
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opts = container_of(f, struct f_tcm_opts, func_inst);
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mutex_lock(&tpg_instances_lock);
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for (i = 0; i < TPG_INSTANCES; ++i)
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if (tpg_instances[i].func_inst == f)
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break;
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if (i < TPG_INSTANCES)
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tpg_instances[i].func_inst = NULL;
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mutex_unlock(&tpg_instances_lock);
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kfree(opts);
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}
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static int usbg_attach(struct usbg_tpg *tpg)
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{
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struct usb_function_instance *f = tpg->fi;
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struct f_tcm_opts *opts = container_of(f, struct f_tcm_opts, func_inst);
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if (opts->tcm_register_callback)
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return opts->tcm_register_callback(f);
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return 0;
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}
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static void usbg_detach(struct usbg_tpg *tpg)
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{
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struct usb_function_instance *f = tpg->fi;
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struct f_tcm_opts *opts = container_of(f, struct f_tcm_opts, func_inst);
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if (opts->tcm_unregister_callback)
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opts->tcm_unregister_callback(f);
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}
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static int tcm_set_name(struct usb_function_instance *f, const char *name)
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{
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struct f_tcm_opts *opts = container_of(f, struct f_tcm_opts, func_inst);
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pr_debug("tcm: Activating %s\n", name);
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mutex_lock(&opts->dep_lock);
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opts->ready = true;
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mutex_unlock(&opts->dep_lock);
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return 0;
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}
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static struct usb_function_instance *tcm_alloc_inst(void)
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{
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struct f_tcm_opts *opts;
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int i;
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opts = kzalloc(sizeof(*opts), GFP_KERNEL);
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if (!opts)
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return ERR_PTR(-ENOMEM);
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mutex_lock(&tpg_instances_lock);
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for (i = 0; i < TPG_INSTANCES; ++i)
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if (!tpg_instances[i].func_inst)
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break;
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if (i == TPG_INSTANCES) {
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mutex_unlock(&tpg_instances_lock);
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kfree(opts);
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return ERR_PTR(-EBUSY);
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}
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tpg_instances[i].func_inst = &opts->func_inst;
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mutex_unlock(&tpg_instances_lock);
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mutex_init(&opts->dep_lock);
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opts->func_inst.set_inst_name = tcm_set_name;
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opts->func_inst.free_func_inst = tcm_free_inst;
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return &opts->func_inst;
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}
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static void tcm_free(struct usb_function *f)
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{
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struct f_uas *tcm = to_f_uas(f);
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kfree(tcm);
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}
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static void tcm_unbind(struct usb_configuration *c, struct usb_function *f)
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{
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usb_free_all_descriptors(f);
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}
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static struct usb_function *tcm_alloc(struct usb_function_instance *fi)
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{
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struct f_uas *fu;
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struct f_tcm_opts *opts;
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unsigned i;
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mutex_lock(&tpg_instances_lock);
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for (i = 0; i < TPG_INSTANCES; ++i)
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if (tpg_instances[i].func_inst == fi)
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break;
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if (i == TPG_INSTANCES) {
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mutex_unlock(&tpg_instances_lock);
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return ERR_PTR(-ENODEV);
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}
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opts = container_of(fi, struct f_tcm_opts, func_inst);
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fu = kzalloc(sizeof(*fu), GFP_KERNEL);
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if (!fu) {
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mutex_unlock(&tpg_instances_lock);
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return ERR_PTR(-ENOMEM);
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}
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fu->function.name = "Target Function";
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fu->function.bind = tcm_bind;
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fu->function.unbind = tcm_unbind;
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fu->function.set_alt = tcm_set_alt;
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fu->function.setup = tcm_setup;
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fu->function.disable = tcm_disable;
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fu->function.strings = tcm_strings;
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fu->function.free_func = tcm_free;
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fu->tpg = tpg_instances[i].tpg;
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mutex_unlock(&tpg_instances_lock);
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return &fu->function;
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}
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DECLARE_USB_FUNCTION(tcm, tcm_alloc_inst, tcm_alloc);
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static int tcm_init(void)
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{
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int ret;
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ret = usb_function_register(&tcmusb_func);
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if (ret)
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return ret;
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ret = target_register_template(&usbg_ops);
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if (ret)
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usb_function_unregister(&tcmusb_func);
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return ret;
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}
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module_init(tcm_init);
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static void tcm_exit(void)
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{
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target_unregister_template(&usbg_ops);
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usb_function_unregister(&tcmusb_func);
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}
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module_exit(tcm_exit);
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MODULE_LICENSE("GPL");
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MODULE_AUTHOR("Sebastian Andrzej Siewior");
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#endif
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@ -39,6 +39,8 @@ struct usbg_tpg {
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u32 gadget_connect;
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struct tcm_usbg_nexus *tpg_nexus;
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atomic_t tpg_port_count;
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struct usb_function_instance *fi;
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};
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struct usbg_tport {
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50
drivers/usb/gadget/function/u_tcm.h
Normal file
50
drivers/usb/gadget/function/u_tcm.h
Normal file
@ -0,0 +1,50 @@
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/*
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* u_tcm.h
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*
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* Utility definitions for the tcm function
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*
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* Copyright (c) 2015 Samsung Electronics Co., Ltd.
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* http://www.samsung.com
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*
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* Author: Andrzej Pietrasiewicz <andrzej.p@xxxxxxxxxxx>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 as
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* published by the Free Software Foundation.
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*/
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#ifndef U_TCM_H
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#define U_TCM_H
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#include <linux/usb/composite.h>
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/**
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* @dependent: optional dependent module. Meant for legacy gadget.
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* If non-null its refcount will be increased when a tpg is created and
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* decreased when tpg is dropped.
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* @dep_lock: lock for dependent module operations.
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* @ready: true if the dependent module information is set.
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* @can_attach: true a function can be bound to gadget
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* @has_dep: true if there is a dependent module
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*
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*/
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struct f_tcm_opts {
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struct usb_function_instance func_inst;
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struct module *dependent;
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struct mutex dep_lock;
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bool ready;
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bool can_attach;
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bool has_dep;
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/*
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||||
* Callbacks to be removed when legacy tcm gadget disappears.
|
||||
*
|
||||
* If you use the new function registration interface
|
||||
* programmatically, you MUST set these callbacks to
|
||||
* something sensible (e.g. probe/remove the composite).
|
||||
*/
|
||||
int (*tcm_register_callback)(struct usb_function_instance *);
|
||||
void (*tcm_unregister_callback)(struct usb_function_instance *);
|
||||
};
|
||||
|
||||
#endif /* U_TCM_H */
|
@ -24,6 +24,7 @@
|
||||
USB_GADGET_COMPOSITE_OPTIONS();
|
||||
|
||||
/* #include to be removed when new function registration interface is used */
|
||||
#define USBF_TCM_INCLUDED
|
||||
#include "../function/f_tcm.c"
|
||||
|
||||
#define UAS_VENDOR_ID 0x0525 /* NetChip */
|
||||
|
Loading…
Reference in New Issue
Block a user