mirror of https://github.com/ARMmbed/mbed-os.git
523 lines
21 KiB
C++
523 lines
21 KiB
C++
/* mbed Microcontroller Library
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* Copyright (c) 2017 ARM Limited
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef LWIPSTACK_H_
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#define LWIPSTACK_H_
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#include "lwip/tcpip.h"
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#include "lwip/tcp.h"
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#include "lwip/ip.h"
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#include "lwip/api.h"
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#include "netif/etharp.h"
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#include "lwip/ethip6.h"
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#include "netsocket/nsapi_types.h"
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#include "netsocket/EMAC.h"
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#include "netsocket/OnboardNetworkStack.h"
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#include "LWIPMemoryManager.h"
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class LWIP : public OnboardNetworkStack, private mbed::NonCopyable<LWIP> {
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public:
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static LWIP &get_instance();
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class Interface : public OnboardNetworkStack::Interface {
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public:
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/** Connect the interface to the network
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*
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* Sets up a connection on specified network interface, using DHCP or provided network details. If the @a dhcp is set to
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* true all the remaining parameters are ignored.
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*
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* @param dhcp true if the network details should be acquired using DHCP
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* @param ip IP address to be used for the interface as "W:X:Y:Z" or NULL
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* @param netmask Net mask to be used for the interface as "W:X:Y:Z" or NULL
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* @param gw Gateway address to be used for the interface as "W:X:Y:Z" or NULL
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* @param stack Allow manual selection of IPv4 and/or IPv6.
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* @param blocking Specify whether bringup blocks for connection completion.
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* @return NSAPI_ERROR_OK on success, or error code
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*/
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virtual nsapi_error_t bringup(bool dhcp, const char *ip,
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const char *netmask, const char *gw,
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nsapi_ip_stack_t stack = DEFAULT_STACK,
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bool blocking = true
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);
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/** Disconnect interface from the network
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*
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* After this call the network interface is inactive, to use it again user needs to call @a mbed_ipstack_bringup again.
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*
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* @return NSAPI_ERROR_OK on success, or error code
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*/
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virtual nsapi_error_t bringdown();
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/** Register callback for status reporting
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*
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* The specified status callback function will be called on status changes
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* on the network. The parameters on the callback are the event type and
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* event-type dependent reason parameter.
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*
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* @param status_cb The callback for status changes
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*/
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virtual void attach(mbed::Callback<void(nsapi_event_t, intptr_t)> status_cb);
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/** Get the connection status
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*
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* @return The connection status according to ConnectionStatusType
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*/
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virtual nsapi_connection_status_t get_connection_status() const;
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/** Return MAC address of the network interface
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*
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* @return MAC address as "V:W:X:Y:Z"
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*/
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virtual char *get_mac_address(char *buf, nsapi_size_t buflen);
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/** Copies IP address of the network interface to user supplied buffer
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*
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* @param emac EMAC HAL implementation for this network interface
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* @param buf buffer to which IP address will be copied as "W:X:Y:Z"
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* @param buflen size of supplied buffer
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* @return Pointer to a buffer, or NULL if the buffer is too small
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*/
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virtual char *get_ip_address(char *buf, nsapi_size_t buflen);
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/** Copies netmask of the network interface to user supplied buffer
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*
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* @param buf buffer to which netmask will be copied as "W:X:Y:Z"
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* @param buflen size of supplied buffer
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* @return Pointer to a buffer, or NULL if the buffer is too small
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*/
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virtual char *get_netmask(char *buf, nsapi_size_t buflen);
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/** Copies gateway address of the network interface to user supplied buffer
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*
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* @param buf buffer to which gateway address will be copied as "W:X:Y:Z"
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* @param buflen size of supplied buffer
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* @return Pointer to a buffer, or NULL if the buffer is too small
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*/
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virtual char *get_gateway(char *buf, nsapi_size_t buflen);
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private:
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friend LWIP;
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Interface();
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nsapi_error_t set_dhcp();
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static void netif_link_irq(struct netif *netif);
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static void netif_status_irq(struct netif *netif);
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static Interface *our_if_from_netif(struct netif *netif);
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#if LWIP_ETHERNET
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static err_t emac_low_level_output(struct netif *netif, struct pbuf *p);
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void emac_input(emac_mem_buf_t *buf);
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void emac_state_change(bool up);
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#if LWIP_IGMP
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static err_t emac_igmp_mac_filter(struct netif *netif, const ip4_addr_t *group, enum netif_mac_filter_action action);
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#endif
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#if LWIP_IPV6_MLD
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static err_t emac_mld_mac_filter(struct netif *netif, const ip6_addr_t *group, enum netif_mac_filter_action action);
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#endif
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static err_t emac_if_init(struct netif *netif);
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#endif
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union {
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#if LWIP_ETHERNET
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EMAC *emac; /**< HW specific emac implementation */
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#endif
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void *hw; /**< alternative implementation pointer - used for PPP */
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};
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mbed_rtos_storage_semaphore_t linked_sem;
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osSemaphoreId_t linked;
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mbed_rtos_storage_semaphore_t unlinked_sem;
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osSemaphoreId_t unlinked;
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mbed_rtos_storage_semaphore_t has_any_addr_sem;
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osSemaphoreId_t has_any_addr;
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#define HAS_ANY_ADDR 1
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#if PREF_ADDR_TIMEOUT
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mbed_rtos_storage_semaphore_t has_pref_addr_sem;
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osSemaphoreId_t has_pref_addr;
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#define HAS_PREF_ADDR 2
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#endif
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#if BOTH_ADDR_TIMEOUT
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mbed_rtos_storage_semaphore_t has_both_addr_sem;
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osSemaphoreId_t has_both_addr;
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#define HAS_BOTH_ADDR 4
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#endif
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char has_addr_state;
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nsapi_connection_status_t connected;
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bool dhcp_started;
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bool dhcp_has_to_be_set;
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bool blocking;
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bool ppp;
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mbed::Callback<void(nsapi_event_t, intptr_t)> client_callback;
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struct netif netif;
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static Interface *list;
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Interface *next;
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LWIPMemoryManager *memory_manager;
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};
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/** Register a network interface with the IP stack
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*
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* Connects EMAC layer with the IP stack and initializes all the required infrastructure.
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* This function should be called only once for each available interface.
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*
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* @param emac EMAC HAL implementation for this network interface
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* @param default_if true if the interface should be treated as the default one
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* @param[out] interface_out pointer to stack interface object controlling the EMAC
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* @return NSAPI_ERROR_OK on success, or error code
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*/
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virtual nsapi_error_t add_ethernet_interface(EMAC &emac, bool default_if, OnboardNetworkStack::Interface **interface_out);
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/** Register a PPP interface with the IP stack
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*
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* Connects PPP layer with the IP stack and initializes all the required infrastructure.
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* This function should be called only once for each available interface.
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*
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* This is an internal function that links ppp_lwip.cpp to mbed_ipstack_lwip.cpp,
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* once a driver starts it via the nsapi_ppp.h API.
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*
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* Ultimately the nsapi_ppp.h API will be deprecated, and there will be a
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* mbed_ipstack_add_ppp_interface() replacing nsapi_ppp_connect().
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*
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* @param pcb PPP implementation specific user data; will be passed to PPP callbacks
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* @param default_if true if the interface should be treated as the default one
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* @param stack Allow manual selection of IPv4 and/or IPv6
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* @param[out] interface_out set to interface handle that must be passed to subsequent mbed_stack calls
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* @return NSAPI_ERROR_OK on success, or error code
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*/
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nsapi_error_t _add_ppp_interface(void *pcb, bool default_if, nsapi_ip_stack_t stack, LWIP::Interface **interface_out);
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/** Get a domain name server from a list of servers to query
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*
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* Returns a DNS server address for a index. If returns error no more
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* DNS servers to read.
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*
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* @param index Index of the DNS server, starts from zero
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* @param address Destination for the host address
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* @return 0 on success, negative error code on failure
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*/
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virtual nsapi_error_t get_dns_server(int index, SocketAddress *address);
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/** Get the local IP address
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*
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* @return Null-terminated representation of the local IP address
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* or null if not yet connected
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*/
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virtual const char *get_ip_address();
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protected:
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LWIP();
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virtual ~LWIP() {}
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/** Opens a socket
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*
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* Creates a network socket and stores it in the specified handle.
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* The handle must be passed to following calls on the socket.
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*
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* A stack may have a finite number of sockets, in this case
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* NSAPI_ERROR_NO_SOCKET is returned if no socket is available.
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*
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* @param handle Destination for the handle to a newly created socket
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* @param proto Protocol of socket to open, NSAPI_TCP or NSAPI_UDP
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* @return 0 on success, negative error code on failure
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*/
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virtual nsapi_error_t socket_open(nsapi_socket_t *handle, nsapi_protocol_t proto);
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/** Close the socket
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*
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* Closes any open connection and deallocates any memory associated
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* with the socket.
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*
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* @param handle Socket handle
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* @return 0 on success, negative error code on failure
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*/
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virtual nsapi_error_t socket_close(nsapi_socket_t handle);
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/** Bind a specific address to a socket
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*
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* Binding a socket specifies the address and port on which to recieve
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* data. If the IP address is zeroed, only the port is bound.
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*
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* @param handle Socket handle
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* @param address Local address to bind
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* @return 0 on success, negative error code on failure.
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*/
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virtual nsapi_error_t socket_bind(nsapi_socket_t handle, const SocketAddress &address);
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/** Listen for connections on a TCP socket
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*
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* Marks the socket as a passive socket that can be used to accept
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* incoming connections.
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*
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* @param handle Socket handle
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* @param backlog Number of pending connections that can be queued
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* simultaneously
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* @return 0 on success, negative error code on failure
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*/
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virtual nsapi_error_t socket_listen(nsapi_socket_t handle, int backlog);
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/** Connects TCP socket to a remote host
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*
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* Initiates a connection to a remote server specified by the
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* indicated address.
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*
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* @param handle Socket handle
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* @param address The SocketAddress of the remote host
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* @return 0 on success, negative error code on failure
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*/
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virtual nsapi_error_t socket_connect(nsapi_socket_t handle, const SocketAddress &address);
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/** Accepts a connection on a TCP socket
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*
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* The server socket must be bound and set to listen for connections.
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* On a new connection, creates a network socket and stores it in the
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* specified handle. The handle must be passed to following calls on
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* the socket.
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*
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* A stack may have a finite number of sockets, in this case
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* NSAPI_ERROR_NO_SOCKET is returned if no socket is available.
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*
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* This call is non-blocking. If accept would block,
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* NSAPI_ERROR_WOULD_BLOCK is returned immediately.
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*
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* @param server Socket handle to server to accept from
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* @param handle Destination for a handle to the newly created socket
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* @param address Destination for the remote address or NULL
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* @return 0 on success, negative error code on failure
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*/
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virtual nsapi_error_t socket_accept(nsapi_socket_t server,
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nsapi_socket_t *handle, SocketAddress *address=0);
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/** Send data over a TCP socket
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*
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* The socket must be connected to a remote host. Returns the number of
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* bytes sent from the buffer.
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*
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* This call is non-blocking. If send would block,
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* NSAPI_ERROR_WOULD_BLOCK is returned immediately.
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*
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* @param handle Socket handle
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* @param data Buffer of data to send to the host
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* @param size Size of the buffer in bytes
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* @return Number of sent bytes on success, negative error
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* code on failure
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*/
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virtual nsapi_size_or_error_t socket_send(nsapi_socket_t handle,
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const void *data, nsapi_size_t size);
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/** Receive data over a TCP socket
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*
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* The socket must be connected to a remote host. Returns the number of
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* bytes received into the buffer.
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*
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* This call is non-blocking. If recv would block,
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* NSAPI_ERROR_WOULD_BLOCK is returned immediately.
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*
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* @param handle Socket handle
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* @param data Destination buffer for data received from the host
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* @param size Size of the buffer in bytes
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* @return Number of received bytes on success, negative error
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* code on failure
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*/
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virtual nsapi_size_or_error_t socket_recv(nsapi_socket_t handle,
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void *data, nsapi_size_t size);
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/** Send a packet over a UDP socket
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*
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* Sends data to the specified address. Returns the number of bytes
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* sent from the buffer.
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*
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* This call is non-blocking. If sendto would block,
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* NSAPI_ERROR_WOULD_BLOCK is returned immediately.
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*
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* @param handle Socket handle
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* @param address The SocketAddress of the remote host
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* @param data Buffer of data to send to the host
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* @param size Size of the buffer in bytes
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* @return Number of sent bytes on success, negative error
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* code on failure
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*/
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virtual nsapi_size_or_error_t socket_sendto(nsapi_socket_t handle, const SocketAddress &address,
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const void *data, nsapi_size_t size);
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/** Receive a packet over a UDP socket
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*
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* Receives data and stores the source address in address if address
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* is not NULL. Returns the number of bytes received into the buffer.
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*
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* This call is non-blocking. If recvfrom would block,
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* NSAPI_ERROR_WOULD_BLOCK is returned immediately.
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*
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* @param handle Socket handle
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* @param address Destination for the source address or NULL
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* @param buffer Destination buffer for data received from the host
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* @param size Size of the buffer in bytes
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* @return Number of received bytes on success, negative error
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* code on failure
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*/
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virtual nsapi_size_or_error_t socket_recvfrom(nsapi_socket_t handle, SocketAddress *address,
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void *buffer, nsapi_size_t size);
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/** Register a callback on state change of the socket
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*
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* The specified callback will be called on state changes such as when
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* the socket can recv/send/accept successfully and on when an error
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* occurs. The callback may also be called spuriously without reason.
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*
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* The callback may be called in an interrupt context and should not
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* perform expensive operations such as recv/send calls.
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*
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* @param handle Socket handle
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* @param callback Function to call on state change
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* @param data Argument to pass to callback
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*/
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virtual void socket_attach(nsapi_socket_t handle, void (*callback)(void *), void *data);
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/* Set stack-specific socket options
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*
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* The setsockopt allow an application to pass stack-specific hints
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* to the underlying stack. For unsupported options,
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* NSAPI_ERROR_UNSUPPORTED is returned and the socket is unmodified.
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*
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* @param handle Socket handle
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* @param level Stack-specific protocol level
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* @param optname Stack-specific option identifier
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* @param optval Option value
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* @param optlen Length of the option value
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* @return 0 on success, negative error code on failure
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*/
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virtual nsapi_error_t setsockopt(nsapi_socket_t handle, int level,
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int optname, const void *optval, unsigned optlen);
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/* Get stack-specific socket options
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*
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* The getstackopt allow an application to retrieve stack-specific hints
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* from the underlying stack. For unsupported options,
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* NSAPI_ERROR_UNSUPPORTED is returned and optval is unmodified.
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*
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* @param handle Socket handle
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* @param level Stack-specific protocol level
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* @param optname Stack-specific option identifier
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* @param optval Destination for option value
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* @param optlen Length of the option value
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* @return 0 on success, negative error code on failure
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*/
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virtual nsapi_error_t getsockopt(nsapi_socket_t handle, int level,
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int optname, void *optval, unsigned *optlen);
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private:
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/** Call in callback
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*
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* Callback is used to call the call in method of the network stack.
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*/
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typedef mbed::Callback<nsapi_error_t (int delay_ms, mbed::Callback<void()> user_cb)> call_in_callback_cb_t;
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/** Get a call in callback
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*
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* Get a call in callback from the network stack context.
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*
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* Callback should not take more than 10ms to execute, otherwise it might
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* prevent underlying thread processing. A portable user of the callback
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* should not make calls to network operations due to stack size limitations.
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* The callback should not perform expensive operations such as socket recv/send
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* calls or blocking operations.
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*
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* @return Call in callback
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*/
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virtual call_in_callback_cb_t get_call_in_callback();
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/** Call a callback after a delay
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*
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* Call a callback from the network stack context after a delay. If function
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* returns error callback will not be called.
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*
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* @param delay Delay in milliseconds
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* @param func Callback to be called
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* @return 0 on success, negative error code on failure
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*/
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nsapi_error_t call_in(int delay, mbed::Callback<void()> func);
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struct mbed_lwip_socket {
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bool in_use;
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struct netconn *conn;
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struct netbuf *buf;
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u16_t offset;
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void (*cb)(void *);
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void *data;
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// Track multicast addresses subscribed to by this socket
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nsapi_ip_mreq_t *multicast_memberships;
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uint32_t multicast_memberships_count;
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uint32_t multicast_memberships_registry;
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};
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struct lwip_callback {
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unsigned int delay;
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mbed::Callback<void()> callback;
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};
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static nsapi_error_t err_remap(err_t err);
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static bool is_local_addr(const ip_addr_t *ip_addr);
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static const ip_addr_t *get_ip_addr(bool any_addr, const struct netif *netif);
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static const ip_addr_t *get_ipv4_addr(const struct netif *netif);
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static const ip_addr_t *get_ipv6_addr(const struct netif *netif);
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static void add_dns_addr(struct netif *lwip_netif);
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/* Static arena of sockets */
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struct mbed_lwip_socket arena[MEMP_NUM_NETCONN];
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void arena_init(void);
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struct mbed_lwip_socket *arena_alloc();
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void arena_dealloc(struct mbed_lwip_socket *s);
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static uint32_t next_registered_multicast_member(const struct mbed_lwip_socket *s, uint32_t index) {
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while (!(s->multicast_memberships_registry & (0x0001 << index))) { index++; }
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return index;
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}
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static uint32_t next_free_multicast_member(const struct mbed_lwip_socket *s, uint32_t index) {
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while ((s->multicast_memberships_registry & (0x0001 << index))) { index++; }
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return index;
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}
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static void set_multicast_member_registry_bit(struct mbed_lwip_socket *s, uint32_t index) {
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s->multicast_memberships_registry |= (0x0001 << index);
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}
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static void clear_multicast_member_registry_bit(struct mbed_lwip_socket *s, uint32_t index) {
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s->multicast_memberships_registry &= ~(0x0001 << index);
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}
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static int32_t find_multicast_member(const struct mbed_lwip_socket *s, const nsapi_ip_mreq_t *imr);
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static void socket_callback(struct netconn *nc, enum netconn_evt eh, u16_t len);
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static void tcpip_init_irq(void *handle);
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static void tcpip_thread_callback(void *ptr);
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char ip_address[40];
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rtos::Semaphore tcpip_inited;
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Interface *default_interface;
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LWIPMemoryManager memory_manager;
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osThreadId tcpip_thread_id;
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rtos::Mutex adaptation;
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};
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#endif /* LWIPSTACK_H_ */
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