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			427 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C
		
	
	
			
		
		
	
	
			427 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C
		
	
	
/**
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 * @file
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 * Point To Point Protocol Sequential API module
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 *
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 */
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/*
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 * Redistribution and use in source and binary forms, with or without modification,
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 * are permitted provided that the following conditions are met:
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 *
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 * 1. Redistributions of source code must retain the above copyright notice,
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 *    this list of conditions and the following disclaimer.
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 * 2. Redistributions in binary form must reproduce the above copyright notice,
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 *    this list of conditions and the following disclaimer in the documentation
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 *    and/or other materials provided with the distribution.
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 * 3. The name of the author may not be used to endorse or promote products
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 *    derived from this software without specific prior written permission.
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 *
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 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
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 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT
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 * SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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 * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT
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 * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
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 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY
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 * OF SUCH DAMAGE.
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 *
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 * This file is part of the lwIP TCP/IP stack.
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 *
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 */
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#include "ppp_opts.h"
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#if PPP_API
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#include "pppapi.h"
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#include "pppoe.h"
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#include "pppol2tp.h"
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#include "pppos.h"
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#if PPP_MPU_COMPATIBLE
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PPP_MEMPOOL_DECLARE(PPPAPI_MSG, MEMP_NUM_PPP_API_MSG, sizeof(struct pppapi_msg), "PPPAPI_MSG")
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#endif
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#define PPPAPI_VAR_REF(name)               API_VAR_REF(name)
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#define PPPAPI_VAR_DECLARE(name)           API_VAR_DECLARE(struct pppapi_msg, name)
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#define PPPAPI_VAR_ALLOC(name)             API_VAR_ALLOC_POOL(struct pppapi_msg, PPPAPI_MSG, name, ERR_MEM)
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#define PPPAPI_VAR_ALLOC_RETURN_NULL(name) API_VAR_ALLOC_POOL(struct pppapi_msg, PPPAPI_MSG, name, NULL)
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#define PPPAPI_VAR_FREE(name)              API_VAR_FREE_POOL(PPPAPI_MSG, name)
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/**
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 * Call ppp_set_default() inside the tcpip_thread context.
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 */
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static err_t
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pppapi_do_ppp_set_default(struct tcpip_api_call_data *m)
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{
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  /* cast through void* to silence alignment warnings. 
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   * We know it works because the structs have been instantiated as struct pppapi_msg */
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  struct pppapi_msg *msg = (struct pppapi_msg *)(void*)m;
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  ppp_set_default(msg->msg.ppp);
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  return ERR_OK;
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}
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/**
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 * Call ppp_set_default() in a thread-safe way by running that function inside the
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 * tcpip_thread context.
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 */
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err_t
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pppapi_set_default(ppp_pcb *pcb)
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{
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  err_t err;
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  PPPAPI_VAR_DECLARE(msg);
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  PPPAPI_VAR_ALLOC(msg);
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  PPPAPI_VAR_REF(msg).msg.ppp = pcb;
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  err = tcpip_api_call(pppapi_do_ppp_set_default, &PPPAPI_VAR_REF(msg).call);
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  PPPAPI_VAR_FREE(msg);
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  return err;
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}
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#if PPP_NOTIFY_PHASE
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/**
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 * Call ppp_set_notify_phase_callback() inside the tcpip_thread context.
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 */
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static err_t
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pppapi_do_ppp_set_notify_phase_callback(struct tcpip_api_call_data *m)
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{
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  /* cast through void* to silence alignment warnings. 
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   * We know it works because the structs have been instantiated as struct pppapi_msg */
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   struct pppapi_msg *msg = (struct pppapi_msg *)(void*)m;
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  ppp_set_notify_phase_callback(msg->msg.ppp, msg->msg.msg.setnotifyphasecb.notify_phase_cb);
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  return ERR_OK;
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}
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/**
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 * Call ppp_set_notify_phase_callback() in a thread-safe way by running that function inside the
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 * tcpip_thread context.
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 */
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err_t
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pppapi_set_notify_phase_callback(ppp_pcb *pcb, ppp_notify_phase_cb_fn notify_phase_cb)
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{
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  err_t err;
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  PPPAPI_VAR_DECLARE(msg);
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  PPPAPI_VAR_ALLOC(msg);
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  PPPAPI_VAR_REF(msg).msg.ppp = pcb;
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  PPPAPI_VAR_REF(msg).msg.msg.setnotifyphasecb.notify_phase_cb = notify_phase_cb;
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  err = tcpip_api_call(pppapi_do_ppp_set_notify_phase_callback, &PPPAPI_VAR_REF(msg).call);
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  PPPAPI_VAR_FREE(msg);
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  return err;
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}
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#endif /* PPP_NOTIFY_PHASE */
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#if PPPOS_SUPPORT
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/**
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 * Call pppos_create() inside the tcpip_thread context.
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 */
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static err_t
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pppapi_do_pppos_create(struct tcpip_api_call_data *m)
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{
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  /* cast through void* to silence alignment warnings. 
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   * We know it works because the structs have been instantiated as struct pppapi_msg */
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  struct pppapi_msg *msg = (struct pppapi_msg *)(void*)m;
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  msg->msg.ppp = pppos_create(msg->msg.msg.serialcreate.pppif, msg->msg.msg.serialcreate.output_cb,
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    msg->msg.msg.serialcreate.link_status_cb, msg->msg.msg.serialcreate.ctx_cb);
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  return ERR_OK;
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}
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/**
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 * Call pppos_create() in a thread-safe way by running that function inside the
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 * tcpip_thread context.
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 */
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ppp_pcb*
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pppapi_pppos_create(struct netif *pppif, pppos_output_cb_fn output_cb,
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               ppp_link_status_cb_fn link_status_cb, void *ctx_cb)
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{
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  ppp_pcb* result;
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  PPPAPI_VAR_DECLARE(msg);
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  PPPAPI_VAR_ALLOC_RETURN_NULL(msg);
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  PPPAPI_VAR_REF(msg).msg.ppp = NULL;
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  PPPAPI_VAR_REF(msg).msg.msg.serialcreate.pppif = pppif;
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  PPPAPI_VAR_REF(msg).msg.msg.serialcreate.output_cb = output_cb;
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  PPPAPI_VAR_REF(msg).msg.msg.serialcreate.link_status_cb = link_status_cb;
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  PPPAPI_VAR_REF(msg).msg.msg.serialcreate.ctx_cb = ctx_cb;
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  tcpip_api_call(pppapi_do_pppos_create, &PPPAPI_VAR_REF(msg).call);
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  result = PPPAPI_VAR_REF(msg).msg.ppp;
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  PPPAPI_VAR_FREE(msg);
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  return result;
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}
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#endif /* PPPOS_SUPPORT */
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#if PPPOE_SUPPORT
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/**
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 * Call pppoe_create() inside the tcpip_thread context.
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 */
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static err_t
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pppapi_do_pppoe_create(struct tcpip_api_call_data *m)
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{
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  /* cast through void* to silence alignment warnings. 
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   * We know it works because the structs have been instantiated as struct pppapi_msg */
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  struct pppapi_msg *msg = (struct pppapi_msg *)(void*)m;
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  msg->msg.ppp = pppoe_create(msg->msg.msg.ethernetcreate.pppif, msg->msg.msg.ethernetcreate.ethif,
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    msg->msg.msg.ethernetcreate.service_name, msg->msg.msg.ethernetcreate.concentrator_name,
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    msg->msg.msg.ethernetcreate.link_status_cb, msg->msg.msg.ethernetcreate.ctx_cb);
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  return ERR_OK;
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}
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/**
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 * Call pppoe_create() in a thread-safe way by running that function inside the
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 * tcpip_thread context.
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 */
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ppp_pcb*
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pppapi_pppoe_create(struct netif *pppif, struct netif *ethif, const char *service_name,
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                            const char *concentrator_name, ppp_link_status_cb_fn link_status_cb,
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                            void *ctx_cb)
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{
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  ppp_pcb* result;
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  PPPAPI_VAR_DECLARE(msg);
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  PPPAPI_VAR_ALLOC_RETURN_NULL(msg);
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  PPPAPI_VAR_REF(msg).msg.ppp = NULL;
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  PPPAPI_VAR_REF(msg).msg.msg.ethernetcreate.pppif = pppif;
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  PPPAPI_VAR_REF(msg).msg.msg.ethernetcreate.ethif = ethif;
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  PPPAPI_VAR_REF(msg).msg.msg.ethernetcreate.service_name = service_name;
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  PPPAPI_VAR_REF(msg).msg.msg.ethernetcreate.concentrator_name = concentrator_name;
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  PPPAPI_VAR_REF(msg).msg.msg.ethernetcreate.link_status_cb = link_status_cb;
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  PPPAPI_VAR_REF(msg).msg.msg.ethernetcreate.ctx_cb = ctx_cb;
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  tcpip_api_call(pppapi_do_pppoe_create, &PPPAPI_VAR_REF(msg).call);
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  result = PPPAPI_VAR_REF(msg).msg.ppp;
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  PPPAPI_VAR_FREE(msg);
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  return result;
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}
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#endif /* PPPOE_SUPPORT */
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#if PPPOL2TP_SUPPORT
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/**
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 * Call pppol2tp_create() inside the tcpip_thread context.
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 */
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static err_t
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pppapi_do_pppol2tp_create(struct tcpip_api_call_data *m)
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{
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  /* cast through void* to silence alignment warnings. 
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   * We know it works because the structs have been instantiated as struct pppapi_msg */
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  struct pppapi_msg *msg = (struct pppapi_msg *)(void*)m;
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  msg->msg.ppp = pppol2tp_create(msg->msg.msg.l2tpcreate.pppif,
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    msg->msg.msg.l2tpcreate.netif, API_EXPR_REF(msg->msg.msg.l2tpcreate.ipaddr), msg->msg.msg.l2tpcreate.port,
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#if PPPOL2TP_AUTH_SUPPORT
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    msg->msg.msg.l2tpcreate.secret,
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    msg->msg.msg.l2tpcreate.secret_len,
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#else /* PPPOL2TP_AUTH_SUPPORT */
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    NULL,
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    0,
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#endif /* PPPOL2TP_AUTH_SUPPORT */
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    msg->msg.msg.l2tpcreate.link_status_cb, msg->msg.msg.l2tpcreate.ctx_cb);
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  return ERR_OK;
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}
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/**
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 * Call pppol2tp_create() in a thread-safe way by running that function inside the
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 * tcpip_thread context.
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 */
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ppp_pcb*
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pppapi_pppol2tp_create(struct netif *pppif, struct netif *netif, ip_addr_t *ipaddr, u16_t port,
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                        const u8_t *secret, u8_t secret_len,
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                        ppp_link_status_cb_fn link_status_cb, void *ctx_cb)
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{
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  ppp_pcb* result;
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  PPPAPI_VAR_DECLARE(msg);
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  PPPAPI_VAR_ALLOC_RETURN_NULL(msg);
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#if !PPPOL2TP_AUTH_SUPPORT
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  PPP_UNUSED_ARG(secret);
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  PPP_UNUSED_ARG(secret_len);
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#endif /* !PPPOL2TP_AUTH_SUPPORT */
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  PPPAPI_VAR_REF(msg).msg.ppp = NULL;
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  PPPAPI_VAR_REF(msg).msg.msg.l2tpcreate.pppif = pppif;
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  PPPAPI_VAR_REF(msg).msg.msg.l2tpcreate.netif = netif;
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  PPPAPI_VAR_REF(msg).msg.msg.l2tpcreate.ipaddr = PPPAPI_VAR_REF(ipaddr);
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  PPPAPI_VAR_REF(msg).msg.msg.l2tpcreate.port = port;
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#if PPPOL2TP_AUTH_SUPPORT
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  PPPAPI_VAR_REF(msg).msg.msg.l2tpcreate.secret = secret;
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  PPPAPI_VAR_REF(msg).msg.msg.l2tpcreate.secret_len = secret_len;
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#endif /* PPPOL2TP_AUTH_SUPPORT */
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  PPPAPI_VAR_REF(msg).msg.msg.l2tpcreate.link_status_cb = link_status_cb;
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  PPPAPI_VAR_REF(msg).msg.msg.l2tpcreate.ctx_cb = ctx_cb;
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  tcpip_api_call(pppapi_do_pppol2tp_create, &PPPAPI_VAR_REF(msg).call);
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  result = PPPAPI_VAR_REF(msg).msg.ppp;
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  PPPAPI_VAR_FREE(msg);
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  return result;
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}
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#endif /* PPPOL2TP_SUPPORT */
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/**
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 * Call ppp_connect() inside the tcpip_thread context.
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 */
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static err_t
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pppapi_do_ppp_connect(struct tcpip_api_call_data *m)
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{
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  /* cast through void* to silence alignment warnings. 
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   * We know it works because the structs have been instantiated as struct pppapi_msg */
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  struct pppapi_msg *msg = (struct pppapi_msg *)(void*)m;
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  return ppp_connect(msg->msg.ppp, msg->msg.msg.connect.holdoff);
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}
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/**
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 * Call ppp_connect() in a thread-safe way by running that function inside the
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 * tcpip_thread context.
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 */
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err_t
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pppapi_connect(ppp_pcb *pcb, u16_t holdoff)
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{
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  err_t err;
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  PPPAPI_VAR_DECLARE(msg);
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  PPPAPI_VAR_ALLOC(msg);
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  PPPAPI_VAR_REF(msg).msg.ppp = pcb;
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  PPPAPI_VAR_REF(msg).msg.msg.connect.holdoff = holdoff;
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  err = tcpip_api_call(pppapi_do_ppp_connect, &PPPAPI_VAR_REF(msg).call);
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  PPPAPI_VAR_FREE(msg);
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  return err;
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}
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#if PPP_SERVER
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/**
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 * Call ppp_listen() inside the tcpip_thread context.
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 */
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static err_t
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pppapi_do_ppp_listen(struct tcpip_api_call_data *m)
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{
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  /* cast through void* to silence alignment warnings. 
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   * We know it works because the structs have been instantiated as struct pppapi_msg */
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  struct pppapi_msg *msg = (struct pppapi_msg *)(void*)m;
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  return ppp_listen(msg->msg.ppp);
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}
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/**
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 * Call ppp_listen() in a thread-safe way by running that function inside the
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 * tcpip_thread context.
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 */
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err_t
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pppapi_listen(ppp_pcb *pcb)
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{
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  err_t err;
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  PPPAPI_VAR_DECLARE(msg);
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  PPPAPI_VAR_ALLOC(msg);
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  PPPAPI_VAR_REF(msg).msg.ppp = pcb;
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  err = tcpip_api_call(pppapi_do_ppp_listen, &PPPAPI_VAR_REF(msg).call);
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  PPPAPI_VAR_FREE(msg);
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  return err;
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}
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#endif /* PPP_SERVER */
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/**
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 * Call ppp_close() inside the tcpip_thread context.
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 */
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static err_t
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pppapi_do_ppp_close(struct tcpip_api_call_data *m)
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{
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  /* cast through void* to silence alignment warnings. 
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   * We know it works because the structs have been instantiated as struct pppapi_msg */
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  struct pppapi_msg *msg = (struct pppapi_msg *)(void*)m;
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  return ppp_close(msg->msg.ppp, msg->msg.msg.close.nocarrier);
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}
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/**
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 * Call ppp_close() in a thread-safe way by running that function inside the
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 * tcpip_thread context.
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 */
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err_t
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pppapi_close(ppp_pcb *pcb, u8_t nocarrier)
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{
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  err_t err;
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  PPPAPI_VAR_DECLARE(msg);
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  PPPAPI_VAR_ALLOC(msg);
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  PPPAPI_VAR_REF(msg).msg.ppp = pcb;
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  PPPAPI_VAR_REF(msg).msg.msg.close.nocarrier = nocarrier;
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  err = tcpip_api_call(pppapi_do_ppp_close, &PPPAPI_VAR_REF(msg).call);
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  PPPAPI_VAR_FREE(msg);
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  return err;
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}
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/**
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 * Call ppp_free() inside the tcpip_thread context.
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 */
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static err_t
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pppapi_do_ppp_free(struct tcpip_api_call_data *m)
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{
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  /* cast through void* to silence alignment warnings. 
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   * We know it works because the structs have been instantiated as struct pppapi_msg */
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  struct pppapi_msg *msg = (struct pppapi_msg *)(void*)m;
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  return ppp_free(msg->msg.ppp);
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}
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/**
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 * Call ppp_free() in a thread-safe way by running that function inside the
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 * tcpip_thread context.
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 */
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err_t
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pppapi_free(ppp_pcb *pcb)
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{
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  err_t err;
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  PPPAPI_VAR_DECLARE(msg);
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  PPPAPI_VAR_ALLOC(msg);
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  PPPAPI_VAR_REF(msg).msg.ppp = pcb;
 | 
						|
  err = tcpip_api_call(pppapi_do_ppp_free, &PPPAPI_VAR_REF(msg).call);
 | 
						|
  PPPAPI_VAR_FREE(msg);
 | 
						|
  return err;
 | 
						|
}
 | 
						|
 | 
						|
 | 
						|
/**
 | 
						|
 * Call ppp_ioctl() inside the tcpip_thread context.
 | 
						|
 */
 | 
						|
static err_t
 | 
						|
pppapi_do_ppp_ioctl(struct tcpip_api_call_data *m)
 | 
						|
{
 | 
						|
  /* cast through void* to silence alignment warnings. 
 | 
						|
   * We know it works because the structs have been instantiated as struct pppapi_msg */
 | 
						|
  struct pppapi_msg *msg = (struct pppapi_msg *)(void*)m;
 | 
						|
 | 
						|
  return ppp_ioctl(msg->msg.ppp, msg->msg.msg.ioctl.cmd, msg->msg.msg.ioctl.arg);
 | 
						|
}
 | 
						|
 | 
						|
/**
 | 
						|
 * Call ppp_ioctl() in a thread-safe way by running that function inside the
 | 
						|
 * tcpip_thread context.
 | 
						|
 */
 | 
						|
err_t
 | 
						|
pppapi_ioctl(ppp_pcb *pcb, u8_t cmd, void *arg)
 | 
						|
{
 | 
						|
  err_t err;
 | 
						|
  PPPAPI_VAR_DECLARE(msg);
 | 
						|
  PPPAPI_VAR_ALLOC(msg);
 | 
						|
 | 
						|
  PPPAPI_VAR_REF(msg).msg.ppp = pcb;
 | 
						|
  PPPAPI_VAR_REF(msg).msg.msg.ioctl.cmd = cmd;
 | 
						|
  PPPAPI_VAR_REF(msg).msg.msg.ioctl.arg = arg;
 | 
						|
  err = tcpip_api_call(pppapi_do_ppp_ioctl, &PPPAPI_VAR_REF(msg).call);
 | 
						|
  PPPAPI_VAR_FREE(msg);
 | 
						|
  return err;
 | 
						|
}
 | 
						|
 | 
						|
#endif
 |