mirror of
https://github.com/hathach/tinyusb.git
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431 lines
13 KiB
C
431 lines
13 KiB
C
/*
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* The MIT License (MIT)
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*
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* Copyright (c) 2019 Ha Thach (tinyusb.org)
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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* THE SOFTWARE.
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*
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* This file is part of the TinyUSB stack.
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*/
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#include "tusb_option.h"
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#if (CFG_TUH_ENABLED && CFG_TUH_HUB)
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#include "hcd.h"
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#include "usbh.h"
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#include "usbh_classdriver.h"
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#include "hub.h"
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//--------------------------------------------------------------------+
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// MACRO CONSTANT TYPEDEF
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//--------------------------------------------------------------------+
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typedef struct
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{
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uint8_t itf_num;
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uint8_t ep_in;
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uint8_t port_count;
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uint8_t status_change; // data from status change interrupt endpoint
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hub_port_status_response_t port_status;
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} hub_interface_t;
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CFG_TUSB_MEM_SECTION static hub_interface_t hub_data[CFG_TUH_HUB];
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CFG_TUSB_MEM_SECTION TU_ATTR_ALIGNED(4) static uint8_t _hub_buffer[sizeof(descriptor_hub_desc_t)];
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TU_ATTR_ALWAYS_INLINE
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static inline hub_interface_t* get_itf(uint8_t dev_addr)
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{
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return &hub_data[dev_addr-1-CFG_TUH_DEVICE_MAX];
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}
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#if CFG_TUSB_DEBUG >= 2
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static char const* const _hub_feature_str[] =
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{
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[HUB_FEATURE_PORT_CONNECTION ] = "PORT_CONNECTION",
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[HUB_FEATURE_PORT_ENABLE ] = "PORT_ENABLE",
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[HUB_FEATURE_PORT_SUSPEND ] = "PORT_SUSPEND",
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[HUB_FEATURE_PORT_OVER_CURRENT ] = "PORT_OVER_CURRENT",
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[HUB_FEATURE_PORT_RESET ] = "PORT_RESET",
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[HUB_FEATURE_PORT_POWER ] = "PORT_POWER",
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[HUB_FEATURE_PORT_LOW_SPEED ] = "PORT_LOW_SPEED",
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[HUB_FEATURE_PORT_CONNECTION_CHANGE ] = "PORT_CONNECTION_CHANGE",
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[HUB_FEATURE_PORT_ENABLE_CHANGE ] = "PORT_ENABLE_CHANGE",
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[HUB_FEATURE_PORT_SUSPEND_CHANGE ] = "PORT_SUSPEND_CHANGE",
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[HUB_FEATURE_PORT_OVER_CURRENT_CHANGE ] = "PORT_OVER_CURRENT_CHANGE",
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[HUB_FEATURE_PORT_RESET_CHANGE ] = "PORT_RESET_CHANGE",
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[HUB_FEATURE_PORT_TEST ] = "PORT_TEST",
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[HUB_FEATURE_PORT_INDICATOR ] = "PORT_INDICATOR",
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};
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#endif
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//--------------------------------------------------------------------+
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// HUB
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//--------------------------------------------------------------------+
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bool hub_port_clear_feature(uint8_t hub_addr, uint8_t hub_port, uint8_t feature,
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tuh_xfer_cb_t complete_cb, uintptr_t user_data)
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{
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tusb_control_request_t const request =
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{
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.bmRequestType_bit =
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{
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.recipient = TUSB_REQ_RCPT_OTHER,
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.type = TUSB_REQ_TYPE_CLASS,
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.direction = TUSB_DIR_OUT
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},
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.bRequest = HUB_REQUEST_CLEAR_FEATURE,
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.wValue = feature,
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.wIndex = hub_port,
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.wLength = 0
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};
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tuh_xfer_t xfer =
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{
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.daddr = hub_addr,
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.ep_addr = 0,
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.setup = &request,
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.buffer = NULL,
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.complete_cb = complete_cb,
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.user_data = user_data
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};
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TU_LOG2("HUB Clear Feature: %s, addr = %u port = %u\r\n", _hub_feature_str[feature], hub_addr, hub_port);
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TU_ASSERT( tuh_control_xfer(&xfer) );
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return true;
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}
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bool hub_port_set_feature(uint8_t hub_addr, uint8_t hub_port, uint8_t feature,
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tuh_xfer_cb_t complete_cb, uintptr_t user_data)
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{
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tusb_control_request_t const request =
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{
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.bmRequestType_bit =
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{
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.recipient = TUSB_REQ_RCPT_OTHER,
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.type = TUSB_REQ_TYPE_CLASS,
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.direction = TUSB_DIR_OUT
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},
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.bRequest = HUB_REQUEST_SET_FEATURE,
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.wValue = feature,
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.wIndex = hub_port,
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.wLength = 0
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};
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tuh_xfer_t xfer =
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{
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.daddr = hub_addr,
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.ep_addr = 0,
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.setup = &request,
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.buffer = NULL,
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.complete_cb = complete_cb,
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.user_data = user_data
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};
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TU_LOG2("HUB Set Feature: %s, addr = %u port = %u\r\n", _hub_feature_str[feature], hub_addr, hub_port);
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TU_ASSERT( tuh_control_xfer(&xfer) );
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return true;
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}
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bool hub_port_get_status(uint8_t hub_addr, uint8_t hub_port, void* resp,
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tuh_xfer_cb_t complete_cb, uintptr_t user_data)
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{
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tusb_control_request_t const request =
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{
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.bmRequestType_bit =
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{
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.recipient = TUSB_REQ_RCPT_OTHER,
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.type = TUSB_REQ_TYPE_CLASS,
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.direction = TUSB_DIR_IN
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},
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.bRequest = HUB_REQUEST_GET_STATUS,
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.wValue = 0,
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.wIndex = hub_port,
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.wLength = 4
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};
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tuh_xfer_t xfer =
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{
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.daddr = hub_addr,
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.ep_addr = 0,
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.setup = &request,
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.buffer = resp,
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.complete_cb = complete_cb,
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.user_data = user_data
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};
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TU_LOG2("HUB Get Port Status: addr = %u port = %u\r\n", hub_addr, hub_port);
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TU_VERIFY( tuh_control_xfer(&xfer) );
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return true;
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}
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//--------------------------------------------------------------------+
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// CLASS-USBH API (don't require to verify parameters)
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//--------------------------------------------------------------------+
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void hub_init(void)
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{
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tu_memclr(hub_data, sizeof(hub_data));
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}
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bool hub_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *itf_desc, uint16_t max_len)
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{
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(void) rhport;
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TU_VERIFY(TUSB_CLASS_HUB == itf_desc->bInterfaceClass &&
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0 == itf_desc->bInterfaceSubClass);
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// hub driver does not support multiple TT yet
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TU_VERIFY(itf_desc->bInterfaceProtocol <= 1);
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// msc driver length is fixed
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uint16_t const drv_len = sizeof(tusb_desc_interface_t) + sizeof(tusb_desc_endpoint_t);
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TU_ASSERT(drv_len <= max_len);
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//------------- Interrupt Status endpoint -------------//
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tusb_desc_endpoint_t const *desc_ep = (tusb_desc_endpoint_t const *) tu_desc_next(itf_desc);
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TU_ASSERT(TUSB_DESC_ENDPOINT == desc_ep->bDescriptorType &&
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TUSB_XFER_INTERRUPT == desc_ep->bmAttributes.xfer, 0);
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TU_ASSERT(tuh_edpt_open(dev_addr, desc_ep));
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hub_interface_t* p_hub = get_itf(dev_addr);
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p_hub->itf_num = itf_desc->bInterfaceNumber;
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p_hub->ep_in = desc_ep->bEndpointAddress;
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return true;
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}
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void hub_close(uint8_t dev_addr)
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{
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TU_VERIFY(dev_addr > CFG_TUH_DEVICE_MAX, );
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hub_interface_t* p_hub = get_itf(dev_addr);
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if (p_hub->ep_in) tu_memclr(p_hub, sizeof( hub_interface_t));
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}
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bool hub_edpt_status_xfer(uint8_t dev_addr)
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{
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hub_interface_t* hub_itf = get_itf(dev_addr);
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return usbh_edpt_xfer(dev_addr, hub_itf->ep_in, &hub_itf->status_change, 1);
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}
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//--------------------------------------------------------------------+
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// Set Configure
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//--------------------------------------------------------------------+
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static void config_set_port_power (tuh_xfer_t* xfer);
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static void config_port_power_complete (tuh_xfer_t* xfer);
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bool hub_set_config(uint8_t dev_addr, uint8_t itf_num)
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{
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hub_interface_t* p_hub = get_itf(dev_addr);
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TU_ASSERT(itf_num == p_hub->itf_num);
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// Get Hub Descriptor
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tusb_control_request_t const request =
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{
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.bmRequestType_bit =
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{
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.recipient = TUSB_REQ_RCPT_DEVICE,
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.type = TUSB_REQ_TYPE_CLASS,
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.direction = TUSB_DIR_IN
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},
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.bRequest = HUB_REQUEST_GET_DESCRIPTOR,
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.wValue = 0,
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.wIndex = 0,
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.wLength = sizeof(descriptor_hub_desc_t)
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};
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tuh_xfer_t xfer =
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{
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.daddr = dev_addr,
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.ep_addr = 0,
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.setup = &request,
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.buffer = _hub_buffer,
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.complete_cb = config_set_port_power,
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.user_data = 0
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};
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TU_ASSERT( tuh_control_xfer(&xfer) );
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return true;
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}
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static void config_set_port_power (tuh_xfer_t* xfer)
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{
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TU_ASSERT(XFER_RESULT_SUCCESS == xfer->result, );
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uint8_t const daddr = xfer->daddr;
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hub_interface_t* p_hub = get_itf(daddr);
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// only use number of ports in hub descriptor
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descriptor_hub_desc_t const* desc_hub = (descriptor_hub_desc_t const*) _hub_buffer;
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p_hub->port_count = desc_hub->bNbrPorts;
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// May need to GET_STATUS
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// Set Port Power to be able to detect connection, starting with port 1
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uint8_t const hub_port = 1;
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hub_port_set_feature(daddr, hub_port, HUB_FEATURE_PORT_POWER, config_port_power_complete, 0);
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}
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static void config_port_power_complete (tuh_xfer_t* xfer)
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{
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TU_ASSERT(XFER_RESULT_SUCCESS == xfer->result, );
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uint8_t const daddr = xfer->daddr;
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hub_interface_t* p_hub = get_itf(daddr);
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if (xfer->setup->wIndex == p_hub->port_count)
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{
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// All ports are power -> queue notification status endpoint and
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// complete the SET CONFIGURATION
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TU_ASSERT( usbh_edpt_xfer(daddr, p_hub->ep_in, &p_hub->status_change, 1), );
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usbh_driver_set_config_complete(daddr, p_hub->itf_num);
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}else
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{
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// power next port
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uint8_t const hub_port = (uint8_t) (xfer->setup->wIndex + 1);
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hub_port_set_feature(daddr, hub_port, HUB_FEATURE_PORT_POWER, config_port_power_complete, 0);
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}
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}
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//--------------------------------------------------------------------+
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// Connection Changes
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//--------------------------------------------------------------------+
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static void connection_get_status_complete (tuh_xfer_t* xfer);
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static void connection_clear_conn_change_complete (tuh_xfer_t* xfer);
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static void connection_port_reset_complete (tuh_xfer_t* xfer);
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// callback as response of interrupt endpoint polling
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bool hub_xfer_cb(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes)
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{
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(void) xferred_bytes; // TODO can be more than 1 for hub with lots of ports
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(void) ep_addr;
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TU_ASSERT(result == XFER_RESULT_SUCCESS);
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hub_interface_t* p_hub = get_itf(dev_addr);
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TU_LOG2(" Port Status Change = 0x%02X\r\n", p_hub->status_change);
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// Hub ignore bit0 in status change
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for (uint8_t port=1; port <= p_hub->port_count; port++)
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{
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if ( tu_bit_test(p_hub->status_change, port) )
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{
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if (hub_port_get_status(dev_addr, port, &p_hub->port_status, connection_get_status_complete, 0) == false)
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{
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//Hub status control transfer failed, retry
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hub_edpt_status_xfer(dev_addr);
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}
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break;
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}
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}
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// NOTE: next status transfer is queued by usbh.c after handling this request
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return true;
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}
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static void connection_get_status_complete (tuh_xfer_t* xfer)
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{
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TU_ASSERT(xfer->result == XFER_RESULT_SUCCESS, );
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uint8_t const daddr = xfer->daddr;
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hub_interface_t* p_hub = get_itf(daddr);
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uint8_t const port_num = (uint8_t) tu_le16toh(xfer->setup->wIndex);
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// Connection change
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if (p_hub->port_status.change.connection)
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{
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// Port is powered and enabled
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//TU_VERIFY(port_status.status_current.port_power && port_status.status_current.port_enable, );
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// Acknowledge Port Connection Change
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hub_port_clear_feature(daddr, port_num, HUB_FEATURE_PORT_CONNECTION_CHANGE, connection_clear_conn_change_complete, 0);
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}else
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{
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// Other changes are: Enable, Suspend, Over Current, Reset, L1 state
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// TODO clear change
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// prepare for next hub status
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// TODO continue with status_change, or maybe we can do it again with status
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hub_edpt_status_xfer(daddr);
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}
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}
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static void connection_clear_conn_change_complete (tuh_xfer_t* xfer)
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{
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TU_ASSERT(xfer->result == XFER_RESULT_SUCCESS, );
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uint8_t const daddr = xfer->daddr;
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hub_interface_t* p_hub = get_itf(daddr);
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uint8_t const port_num = (uint8_t) tu_le16toh(xfer->setup->wIndex);
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if ( p_hub->port_status.status.connection )
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{
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// Reset port if attach event
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hub_port_reset(daddr, port_num, connection_port_reset_complete, 0);
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}else
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{
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// submit detach event
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hcd_event_t event =
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{
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.rhport = usbh_get_rhport(daddr),
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.event_id = HCD_EVENT_DEVICE_REMOVE,
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.connection =
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{
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.hub_addr = daddr,
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.hub_port = port_num
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}
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};
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hcd_event_handler(&event, false);
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}
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}
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static void connection_port_reset_complete (tuh_xfer_t* xfer)
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{
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TU_ASSERT(xfer->result == XFER_RESULT_SUCCESS, );
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uint8_t const daddr = xfer->daddr;
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// hub_interface_t* p_hub = get_itf(daddr);
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uint8_t const port_num = (uint8_t) tu_le16toh(xfer->setup->wIndex);
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// submit attach event
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hcd_event_t event =
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{
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.rhport = usbh_get_rhport(daddr),
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.event_id = HCD_EVENT_DEVICE_ATTACH,
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.connection =
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{
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.hub_addr = daddr,
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.hub_port = port_num
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}
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};
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hcd_event_handler(&event, false);
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}
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#endif
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