1*10465441SEvalZero /*
2*10465441SEvalZero * Copyright (c) 2001-2004 Swedish Institute of Computer Science.
3*10465441SEvalZero * COPYRIGHT (C) 2006-2018, RT-Thread Development Team
4*10465441SEvalZero * All rights reserved.
5*10465441SEvalZero *
6*10465441SEvalZero * Redistribution and use in source and binary forms, with or without modification,
7*10465441SEvalZero * are permitted provided that the following conditions are met:
8*10465441SEvalZero *
9*10465441SEvalZero * 1. Redistributions of source code must retain the above copyright notice,
10*10465441SEvalZero * this list of conditions and the following disclaimer.
11*10465441SEvalZero * 2. Redistributions in binary form must reproduce the above copyright notice,
12*10465441SEvalZero * this list of conditions and the following disclaimer in the documentation
13*10465441SEvalZero * and/or other materials provided with the distribution.
14*10465441SEvalZero * 3. The name of the author may not be used to endorse or promote products
15*10465441SEvalZero * derived from this software without specific prior written permission.
16*10465441SEvalZero *
17*10465441SEvalZero * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
18*10465441SEvalZero * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
19*10465441SEvalZero * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT
20*10465441SEvalZero * SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
21*10465441SEvalZero * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT
22*10465441SEvalZero * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
23*10465441SEvalZero * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
24*10465441SEvalZero * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
25*10465441SEvalZero * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY
26*10465441SEvalZero * OF SUCH DAMAGE.
27*10465441SEvalZero *
28*10465441SEvalZero * This file is part of the lwIP TCP/IP stack.
29*10465441SEvalZero *
30*10465441SEvalZero * Author: Adam Dunkels <[email protected]>
31*10465441SEvalZero *
32*10465441SEvalZero * Change Logs:
33*10465441SEvalZero * Date Author Notes
34*10465441SEvalZero * 2010-07-07 Bernard fix send mail to mailbox issue.
35*10465441SEvalZero * 2011-07-30 mbbill port lwIP 1.4.0 to RT-Thread
36*10465441SEvalZero * 2012-04-10 Bernard add more compatible with RT-Thread.
37*10465441SEvalZero * 2012-11-12 Bernard The network interface can be initialized
38*10465441SEvalZero * after lwIP initialization.
39*10465441SEvalZero * 2013-02-28 aozima fixed list_tcps bug: ipaddr_ntoa isn't reentrant.
40*10465441SEvalZero * 2016-08-18 Bernard port to lwIP 2.0.0
41*10465441SEvalZero * 2018-11-02 MurphyZhao port to lwIP 2.1.0
42*10465441SEvalZero */
43*10465441SEvalZero
44*10465441SEvalZero #include "lwip/opt.h"
45*10465441SEvalZero
46*10465441SEvalZero #include "lwip/opt.h"
47*10465441SEvalZero #include "lwip/debug.h"
48*10465441SEvalZero #include "lwip/def.h"
49*10465441SEvalZero #include "lwip/mem.h"
50*10465441SEvalZero #include "lwip/pbuf.h"
51*10465441SEvalZero #include "lwip/sys.h"
52*10465441SEvalZero #include "lwip/netif.h"
53*10465441SEvalZero #include "lwip/stats.h"
54*10465441SEvalZero #include "lwip/tcpip.h"
55*10465441SEvalZero #include "lwip/dhcp.h"
56*10465441SEvalZero #include "lwip/netifapi.h"
57*10465441SEvalZero
58*10465441SEvalZero #include "netif/etharp.h"
59*10465441SEvalZero #include "netif/ethernetif.h"
60*10465441SEvalZero
61*10465441SEvalZero #include "lwip/inet.h"
62*10465441SEvalZero
63*10465441SEvalZero #if LWIP_IPV6
64*10465441SEvalZero #include "lwip/ethip6.h"
65*10465441SEvalZero #endif /* LWIP_IPV6 */
66*10465441SEvalZero
67*10465441SEvalZero #define netifapi_netif_set_link_up(n) netifapi_netif_common(n, netif_set_link_up, NULL)
68*10465441SEvalZero #define netifapi_netif_set_link_down(n) netifapi_netif_common(n, netif_set_link_down, NULL)
69*10465441SEvalZero
70*10465441SEvalZero #ifndef RT_LWIP_ETHTHREAD_PRIORITY
71*10465441SEvalZero #define RT_ETHERNETIF_THREAD_PREORITY 0x90
72*10465441SEvalZero #else
73*10465441SEvalZero #define RT_ETHERNETIF_THREAD_PREORITY RT_LWIP_ETHTHREAD_PRIORITY
74*10465441SEvalZero #endif
75*10465441SEvalZero
76*10465441SEvalZero #ifndef LWIP_NO_TX_THREAD
77*10465441SEvalZero /**
78*10465441SEvalZero * Tx message structure for Ethernet interface
79*10465441SEvalZero */
80*10465441SEvalZero struct eth_tx_msg
81*10465441SEvalZero {
82*10465441SEvalZero struct netif *netif;
83*10465441SEvalZero struct pbuf *buf;
84*10465441SEvalZero };
85*10465441SEvalZero
86*10465441SEvalZero static struct rt_mailbox eth_tx_thread_mb;
87*10465441SEvalZero static struct rt_thread eth_tx_thread;
88*10465441SEvalZero #ifndef RT_LWIP_ETHTHREAD_MBOX_SIZE
89*10465441SEvalZero static char eth_tx_thread_mb_pool[32 * 4];
90*10465441SEvalZero static char eth_tx_thread_stack[512];
91*10465441SEvalZero #else
92*10465441SEvalZero static char eth_tx_thread_mb_pool[RT_LWIP_ETHTHREAD_MBOX_SIZE * 4];
93*10465441SEvalZero static char eth_tx_thread_stack[RT_LWIP_ETHTHREAD_STACKSIZE];
94*10465441SEvalZero #endif
95*10465441SEvalZero #endif
96*10465441SEvalZero
97*10465441SEvalZero #ifndef LWIP_NO_RX_THREAD
98*10465441SEvalZero static struct rt_mailbox eth_rx_thread_mb;
99*10465441SEvalZero static struct rt_thread eth_rx_thread;
100*10465441SEvalZero #ifndef RT_LWIP_ETHTHREAD_MBOX_SIZE
101*10465441SEvalZero static char eth_rx_thread_mb_pool[48 * 4];
102*10465441SEvalZero static char eth_rx_thread_stack[1024];
103*10465441SEvalZero #else
104*10465441SEvalZero static char eth_rx_thread_mb_pool[RT_LWIP_ETHTHREAD_MBOX_SIZE * 4];
105*10465441SEvalZero static char eth_rx_thread_stack[RT_LWIP_ETHTHREAD_STACKSIZE];
106*10465441SEvalZero #endif
107*10465441SEvalZero #endif
108*10465441SEvalZero
ethernetif_linkoutput(struct netif * netif,struct pbuf * p)109*10465441SEvalZero static err_t ethernetif_linkoutput(struct netif *netif, struct pbuf *p)
110*10465441SEvalZero {
111*10465441SEvalZero #ifndef LWIP_NO_TX_THREAD
112*10465441SEvalZero struct eth_tx_msg msg;
113*10465441SEvalZero struct eth_device* enetif;
114*10465441SEvalZero
115*10465441SEvalZero RT_ASSERT(netif != RT_NULL);
116*10465441SEvalZero enetif = (struct eth_device*)netif->state;
117*10465441SEvalZero
118*10465441SEvalZero /* send a message to eth tx thread */
119*10465441SEvalZero msg.netif = netif;
120*10465441SEvalZero msg.buf = p;
121*10465441SEvalZero if (rt_mb_send(ð_tx_thread_mb, (rt_uint32_t) &msg) == RT_EOK)
122*10465441SEvalZero {
123*10465441SEvalZero /* waiting for ack */
124*10465441SEvalZero rt_sem_take(&(enetif->tx_ack), RT_WAITING_FOREVER);
125*10465441SEvalZero }
126*10465441SEvalZero #else
127*10465441SEvalZero struct eth_device* enetif;
128*10465441SEvalZero
129*10465441SEvalZero RT_ASSERT(netif != RT_NULL);
130*10465441SEvalZero enetif = (struct eth_device*)netif->state;
131*10465441SEvalZero
132*10465441SEvalZero if (enetif->eth_tx(&(enetif->parent), p) != RT_EOK)
133*10465441SEvalZero {
134*10465441SEvalZero return ERR_IF;
135*10465441SEvalZero }
136*10465441SEvalZero #endif
137*10465441SEvalZero return ERR_OK;
138*10465441SEvalZero }
139*10465441SEvalZero
eth_netif_device_init(struct netif * netif)140*10465441SEvalZero static err_t eth_netif_device_init(struct netif *netif)
141*10465441SEvalZero {
142*10465441SEvalZero struct eth_device *ethif;
143*10465441SEvalZero
144*10465441SEvalZero ethif = (struct eth_device*)netif->state;
145*10465441SEvalZero if (ethif != RT_NULL)
146*10465441SEvalZero {
147*10465441SEvalZero rt_device_t device;
148*10465441SEvalZero
149*10465441SEvalZero /* get device object */
150*10465441SEvalZero device = (rt_device_t) ethif;
151*10465441SEvalZero if (rt_device_init(device) != RT_EOK)
152*10465441SEvalZero {
153*10465441SEvalZero return ERR_IF;
154*10465441SEvalZero }
155*10465441SEvalZero
156*10465441SEvalZero /* copy device flags to netif flags */
157*10465441SEvalZero netif->flags = (ethif->flags & 0xff);
158*10465441SEvalZero netif->mtu = ETHERNET_MTU;
159*10465441SEvalZero
160*10465441SEvalZero #if LWIP_IPV6
161*10465441SEvalZero netif->output_ip6 = ethip6_output;
162*10465441SEvalZero netif->ip6_autoconfig_enabled = 1;
163*10465441SEvalZero netif_create_ip6_linklocal_address(netif, 1);
164*10465441SEvalZero
165*10465441SEvalZero #if LWIP_IPV6_MLD
166*10465441SEvalZero netif->flags |= NETIF_FLAG_MLD6;
167*10465441SEvalZero
168*10465441SEvalZero /*
169*10465441SEvalZero * For hardware/netifs that implement MAC filtering.
170*10465441SEvalZero * All-nodes link-local is handled by default, so we must let the hardware know
171*10465441SEvalZero * to allow multicast packets in.
172*10465441SEvalZero * Should set mld_mac_filter previously. */
173*10465441SEvalZero if (netif->mld_mac_filter != NULL)
174*10465441SEvalZero {
175*10465441SEvalZero ip6_addr_t ip6_allnodes_ll;
176*10465441SEvalZero ip6_addr_set_allnodes_linklocal(&ip6_allnodes_ll);
177*10465441SEvalZero netif->mld_mac_filter(netif, &ip6_allnodes_ll, NETIF_ADD_MAC_FILTER);
178*10465441SEvalZero }
179*10465441SEvalZero #endif /* LWIP_IPV6_MLD */
180*10465441SEvalZero
181*10465441SEvalZero #endif /* LWIP_IPV6 */
182*10465441SEvalZero
183*10465441SEvalZero /* set default netif */
184*10465441SEvalZero if (netif_default == RT_NULL)
185*10465441SEvalZero netif_set_default(ethif->netif);
186*10465441SEvalZero
187*10465441SEvalZero #if LWIP_DHCP
188*10465441SEvalZero /* set interface up */
189*10465441SEvalZero netif_set_up(ethif->netif);
190*10465441SEvalZero /* if this interface uses DHCP, start the DHCP client */
191*10465441SEvalZero dhcp_start(ethif->netif);
192*10465441SEvalZero #else
193*10465441SEvalZero /* set interface up */
194*10465441SEvalZero netif_set_up(ethif->netif);
195*10465441SEvalZero #endif
196*10465441SEvalZero
197*10465441SEvalZero if (ethif->flags & ETHIF_LINK_PHYUP)
198*10465441SEvalZero {
199*10465441SEvalZero /* set link_up for this netif */
200*10465441SEvalZero netif_set_link_up(ethif->netif);
201*10465441SEvalZero }
202*10465441SEvalZero
203*10465441SEvalZero return ERR_OK;
204*10465441SEvalZero }
205*10465441SEvalZero
206*10465441SEvalZero return ERR_IF;
207*10465441SEvalZero }
208*10465441SEvalZero
209*10465441SEvalZero /* Keep old drivers compatible in RT-Thread */
eth_device_init_with_flag(struct eth_device * dev,char * name,rt_uint16_t flags)210*10465441SEvalZero rt_err_t eth_device_init_with_flag(struct eth_device *dev, char *name, rt_uint16_t flags)
211*10465441SEvalZero {
212*10465441SEvalZero struct netif* netif;
213*10465441SEvalZero
214*10465441SEvalZero netif = (struct netif*) rt_malloc (sizeof(struct netif));
215*10465441SEvalZero if (netif == RT_NULL)
216*10465441SEvalZero {
217*10465441SEvalZero rt_kprintf("malloc netif failed\n");
218*10465441SEvalZero return -RT_ERROR;
219*10465441SEvalZero }
220*10465441SEvalZero rt_memset(netif, 0, sizeof(struct netif));
221*10465441SEvalZero
222*10465441SEvalZero /* set netif */
223*10465441SEvalZero dev->netif = netif;
224*10465441SEvalZero /* device flags, which will be set to netif flags when initializing */
225*10465441SEvalZero dev->flags = flags;
226*10465441SEvalZero /* link changed status of device */
227*10465441SEvalZero dev->link_changed = 0x00;
228*10465441SEvalZero dev->parent.type = RT_Device_Class_NetIf;
229*10465441SEvalZero /* register to RT-Thread device manager */
230*10465441SEvalZero rt_device_register(&(dev->parent), name, RT_DEVICE_FLAG_RDWR);
231*10465441SEvalZero rt_sem_init(&(dev->tx_ack), name, 0, RT_IPC_FLAG_FIFO);
232*10465441SEvalZero
233*10465441SEvalZero /* set name */
234*10465441SEvalZero netif->name[0] = name[0];
235*10465441SEvalZero netif->name[1] = name[1];
236*10465441SEvalZero
237*10465441SEvalZero /* set hw address to 6 */
238*10465441SEvalZero netif->hwaddr_len = 6;
239*10465441SEvalZero /* maximum transfer unit */
240*10465441SEvalZero netif->mtu = ETHERNET_MTU;
241*10465441SEvalZero
242*10465441SEvalZero /* get hardware MAC address */
243*10465441SEvalZero rt_device_control(&(dev->parent), NIOCTL_GADDR, netif->hwaddr);
244*10465441SEvalZero
245*10465441SEvalZero #if LWIP_NETIF_HOSTNAME
246*10465441SEvalZero /* Initialize interface hostname */
247*10465441SEvalZero netif->hostname = "rtthread";
248*10465441SEvalZero #endif /* LWIP_NETIF_HOSTNAME */
249*10465441SEvalZero
250*10465441SEvalZero /* if tcp thread has been started up, we add this netif to the system */
251*10465441SEvalZero if (rt_thread_find("tcpip") != RT_NULL)
252*10465441SEvalZero {
253*10465441SEvalZero ip4_addr_t ipaddr, netmask, gw;
254*10465441SEvalZero
255*10465441SEvalZero #if !LWIP_DHCP
256*10465441SEvalZero ipaddr.addr = inet_addr(RT_LWIP_IPADDR);
257*10465441SEvalZero gw.addr = inet_addr(RT_LWIP_GWADDR);
258*10465441SEvalZero netmask.addr = inet_addr(RT_LWIP_MSKADDR);
259*10465441SEvalZero #else
260*10465441SEvalZero IP4_ADDR(&ipaddr, 0, 0, 0, 0);
261*10465441SEvalZero IP4_ADDR(&gw, 0, 0, 0, 0);
262*10465441SEvalZero IP4_ADDR(&netmask, 0, 0, 0, 0);
263*10465441SEvalZero #endif
264*10465441SEvalZero netifapi_netif_add(netif, &ipaddr, &netmask, &gw, dev, eth_netif_device_init, tcpip_input);
265*10465441SEvalZero
266*10465441SEvalZero /* set output */
267*10465441SEvalZero netif->output = etharp_output;
268*10465441SEvalZero netif->linkoutput = ethernetif_linkoutput;
269*10465441SEvalZero }
270*10465441SEvalZero
271*10465441SEvalZero return RT_EOK;
272*10465441SEvalZero }
273*10465441SEvalZero
eth_device_init(struct eth_device * dev,char * name)274*10465441SEvalZero rt_err_t eth_device_init(struct eth_device * dev, char *name)
275*10465441SEvalZero {
276*10465441SEvalZero rt_uint16_t flags = NETIF_FLAG_BROADCAST | NETIF_FLAG_ETHARP;
277*10465441SEvalZero
278*10465441SEvalZero #if LWIP_IGMP
279*10465441SEvalZero /* IGMP support */
280*10465441SEvalZero flags |= NETIF_FLAG_IGMP;
281*10465441SEvalZero #endif
282*10465441SEvalZero
283*10465441SEvalZero return eth_device_init_with_flag(dev, name, flags);
284*10465441SEvalZero }
285*10465441SEvalZero
286*10465441SEvalZero #ifndef LWIP_NO_RX_THREAD
eth_device_ready(struct eth_device * dev)287*10465441SEvalZero rt_err_t eth_device_ready(struct eth_device* dev)
288*10465441SEvalZero {
289*10465441SEvalZero if (dev->netif)
290*10465441SEvalZero /* post message to Ethernet thread */
291*10465441SEvalZero return rt_mb_send(ð_rx_thread_mb, (rt_uint32_t)dev);
292*10465441SEvalZero else
293*10465441SEvalZero return ERR_OK; /* netif is not initialized yet, just return. */
294*10465441SEvalZero }
295*10465441SEvalZero
eth_device_linkchange(struct eth_device * dev,rt_bool_t up)296*10465441SEvalZero rt_err_t eth_device_linkchange(struct eth_device* dev, rt_bool_t up)
297*10465441SEvalZero {
298*10465441SEvalZero rt_uint32_t level;
299*10465441SEvalZero
300*10465441SEvalZero RT_ASSERT(dev != RT_NULL);
301*10465441SEvalZero
302*10465441SEvalZero level = rt_hw_interrupt_disable();
303*10465441SEvalZero dev->link_changed = 0x01;
304*10465441SEvalZero if (up == RT_TRUE)
305*10465441SEvalZero dev->link_status = 0x01;
306*10465441SEvalZero else
307*10465441SEvalZero dev->link_status = 0x00;
308*10465441SEvalZero rt_hw_interrupt_enable(level);
309*10465441SEvalZero
310*10465441SEvalZero /* post message to ethernet thread */
311*10465441SEvalZero return rt_mb_send(ð_rx_thread_mb, (rt_uint32_t)dev);
312*10465441SEvalZero }
313*10465441SEvalZero #else
314*10465441SEvalZero /* NOTE: please not use it in interrupt when no RxThread exist */
eth_device_linkchange(struct eth_device * dev,rt_bool_t up)315*10465441SEvalZero rt_err_t eth_device_linkchange(struct eth_device* dev, rt_bool_t up)
316*10465441SEvalZero {
317*10465441SEvalZero if (up == RT_TRUE)
318*10465441SEvalZero netifapi_netif_set_link_up(dev->netif);
319*10465441SEvalZero else
320*10465441SEvalZero netifapi_netif_set_link_down(dev->netif);
321*10465441SEvalZero
322*10465441SEvalZero return RT_EOK;
323*10465441SEvalZero }
324*10465441SEvalZero #endif
325*10465441SEvalZero
326*10465441SEvalZero #ifndef LWIP_NO_TX_THREAD
327*10465441SEvalZero /* Ethernet Tx Thread */
eth_tx_thread_entry(void * parameter)328*10465441SEvalZero static void eth_tx_thread_entry(void* parameter)
329*10465441SEvalZero {
330*10465441SEvalZero struct eth_tx_msg* msg;
331*10465441SEvalZero
332*10465441SEvalZero while (1)
333*10465441SEvalZero {
334*10465441SEvalZero if (rt_mb_recv(ð_tx_thread_mb, (rt_uint32_t*)&msg, RT_WAITING_FOREVER) == RT_EOK)
335*10465441SEvalZero {
336*10465441SEvalZero struct eth_device* enetif;
337*10465441SEvalZero
338*10465441SEvalZero RT_ASSERT(msg->netif != RT_NULL);
339*10465441SEvalZero RT_ASSERT(msg->buf != RT_NULL);
340*10465441SEvalZero
341*10465441SEvalZero enetif = (struct eth_device*)msg->netif->state;
342*10465441SEvalZero if (enetif != RT_NULL)
343*10465441SEvalZero {
344*10465441SEvalZero /* call driver's interface */
345*10465441SEvalZero if (enetif->eth_tx(&(enetif->parent), msg->buf) != RT_EOK)
346*10465441SEvalZero {
347*10465441SEvalZero /* transmit eth packet failed */
348*10465441SEvalZero }
349*10465441SEvalZero }
350*10465441SEvalZero
351*10465441SEvalZero /* send ACK */
352*10465441SEvalZero rt_sem_release(&(enetif->tx_ack));
353*10465441SEvalZero }
354*10465441SEvalZero }
355*10465441SEvalZero }
356*10465441SEvalZero #endif
357*10465441SEvalZero
358*10465441SEvalZero #ifndef LWIP_NO_RX_THREAD
359*10465441SEvalZero /* Ethernet Rx Thread */
eth_rx_thread_entry(void * parameter)360*10465441SEvalZero static void eth_rx_thread_entry(void* parameter)
361*10465441SEvalZero {
362*10465441SEvalZero struct eth_device* device;
363*10465441SEvalZero
364*10465441SEvalZero while (1)
365*10465441SEvalZero {
366*10465441SEvalZero if (rt_mb_recv(ð_rx_thread_mb, (rt_uint32_t*)&device, RT_WAITING_FOREVER) == RT_EOK)
367*10465441SEvalZero {
368*10465441SEvalZero struct pbuf *p;
369*10465441SEvalZero
370*10465441SEvalZero /* check link status */
371*10465441SEvalZero if (device->link_changed)
372*10465441SEvalZero {
373*10465441SEvalZero int status;
374*10465441SEvalZero rt_uint32_t level;
375*10465441SEvalZero
376*10465441SEvalZero level = rt_hw_interrupt_disable();
377*10465441SEvalZero status = device->link_status;
378*10465441SEvalZero device->link_changed = 0x00;
379*10465441SEvalZero rt_hw_interrupt_enable(level);
380*10465441SEvalZero
381*10465441SEvalZero if (status)
382*10465441SEvalZero netifapi_netif_set_link_up(device->netif);
383*10465441SEvalZero else
384*10465441SEvalZero netifapi_netif_set_link_down(device->netif);
385*10465441SEvalZero }
386*10465441SEvalZero
387*10465441SEvalZero /* receive all of buffer */
388*10465441SEvalZero while (1)
389*10465441SEvalZero {
390*10465441SEvalZero if(device->eth_rx == RT_NULL) break;
391*10465441SEvalZero
392*10465441SEvalZero p = device->eth_rx(&(device->parent));
393*10465441SEvalZero if (p != RT_NULL)
394*10465441SEvalZero {
395*10465441SEvalZero /* notify to upper layer */
396*10465441SEvalZero if( device->netif->input(p, device->netif) != ERR_OK )
397*10465441SEvalZero {
398*10465441SEvalZero LWIP_DEBUGF(NETIF_DEBUG, ("ethernetif_input: Input error\n"));
399*10465441SEvalZero pbuf_free(p);
400*10465441SEvalZero p = NULL;
401*10465441SEvalZero }
402*10465441SEvalZero }
403*10465441SEvalZero else break;
404*10465441SEvalZero }
405*10465441SEvalZero }
406*10465441SEvalZero else
407*10465441SEvalZero {
408*10465441SEvalZero LWIP_ASSERT("Should not happen!\n",0);
409*10465441SEvalZero }
410*10465441SEvalZero }
411*10465441SEvalZero }
412*10465441SEvalZero #endif
413*10465441SEvalZero
414*10465441SEvalZero /* this function does not need,
415*10465441SEvalZero * use eth_system_device_init_private()
416*10465441SEvalZero * call by lwip_system_init().
417*10465441SEvalZero */
eth_system_device_init(void)418*10465441SEvalZero int eth_system_device_init(void)
419*10465441SEvalZero {
420*10465441SEvalZero return 0;
421*10465441SEvalZero }
422*10465441SEvalZero
eth_system_device_init_private(void)423*10465441SEvalZero int eth_system_device_init_private(void)
424*10465441SEvalZero {
425*10465441SEvalZero rt_err_t result = RT_EOK;
426*10465441SEvalZero
427*10465441SEvalZero /* initialize Rx thread. */
428*10465441SEvalZero #ifndef LWIP_NO_RX_THREAD
429*10465441SEvalZero /* initialize mailbox and create Ethernet Rx thread */
430*10465441SEvalZero result = rt_mb_init(ð_rx_thread_mb, "erxmb",
431*10465441SEvalZero ð_rx_thread_mb_pool[0], sizeof(eth_rx_thread_mb_pool)/4,
432*10465441SEvalZero RT_IPC_FLAG_FIFO);
433*10465441SEvalZero RT_ASSERT(result == RT_EOK);
434*10465441SEvalZero
435*10465441SEvalZero result = rt_thread_init(ð_rx_thread, "erx", eth_rx_thread_entry, RT_NULL,
436*10465441SEvalZero ð_rx_thread_stack[0], sizeof(eth_rx_thread_stack),
437*10465441SEvalZero RT_ETHERNETIF_THREAD_PREORITY, 16);
438*10465441SEvalZero RT_ASSERT(result == RT_EOK);
439*10465441SEvalZero result = rt_thread_startup(ð_rx_thread);
440*10465441SEvalZero RT_ASSERT(result == RT_EOK);
441*10465441SEvalZero #endif
442*10465441SEvalZero
443*10465441SEvalZero /* initialize Tx thread */
444*10465441SEvalZero #ifndef LWIP_NO_TX_THREAD
445*10465441SEvalZero /* initialize mailbox and create Ethernet Tx thread */
446*10465441SEvalZero result = rt_mb_init(ð_tx_thread_mb, "etxmb",
447*10465441SEvalZero ð_tx_thread_mb_pool[0], sizeof(eth_tx_thread_mb_pool)/4,
448*10465441SEvalZero RT_IPC_FLAG_FIFO);
449*10465441SEvalZero RT_ASSERT(result == RT_EOK);
450*10465441SEvalZero
451*10465441SEvalZero result = rt_thread_init(ð_tx_thread, "etx", eth_tx_thread_entry, RT_NULL,
452*10465441SEvalZero ð_tx_thread_stack[0], sizeof(eth_tx_thread_stack),
453*10465441SEvalZero RT_ETHERNETIF_THREAD_PREORITY, 16);
454*10465441SEvalZero RT_ASSERT(result == RT_EOK);
455*10465441SEvalZero
456*10465441SEvalZero result = rt_thread_startup(ð_tx_thread);
457*10465441SEvalZero RT_ASSERT(result == RT_EOK);
458*10465441SEvalZero #endif
459*10465441SEvalZero
460*10465441SEvalZero return (int)result;
461*10465441SEvalZero }
462*10465441SEvalZero
463*10465441SEvalZero #ifdef RT_USING_FINSH
464*10465441SEvalZero #include <finsh.h>
set_if(char * netif_name,char * ip_addr,char * gw_addr,char * nm_addr)465*10465441SEvalZero void set_if(char* netif_name, char* ip_addr, char* gw_addr, char* nm_addr)
466*10465441SEvalZero {
467*10465441SEvalZero ip4_addr_t *ip;
468*10465441SEvalZero ip4_addr_t addr;
469*10465441SEvalZero struct netif * netif = netif_list;
470*10465441SEvalZero
471*10465441SEvalZero if(strlen(netif_name) > sizeof(netif->name))
472*10465441SEvalZero {
473*10465441SEvalZero rt_kprintf("network interface name too long!\r\n");
474*10465441SEvalZero return;
475*10465441SEvalZero }
476*10465441SEvalZero
477*10465441SEvalZero while(netif != RT_NULL)
478*10465441SEvalZero {
479*10465441SEvalZero if(strncmp(netif_name, netif->name, sizeof(netif->name)) == 0)
480*10465441SEvalZero break;
481*10465441SEvalZero
482*10465441SEvalZero netif = netif->next;
483*10465441SEvalZero if( netif == RT_NULL )
484*10465441SEvalZero {
485*10465441SEvalZero rt_kprintf("network interface: %s not found!\r\n", netif_name);
486*10465441SEvalZero return;
487*10465441SEvalZero }
488*10465441SEvalZero }
489*10465441SEvalZero
490*10465441SEvalZero ip = (ip4_addr_t *)&addr;
491*10465441SEvalZero
492*10465441SEvalZero /* set ip address */
493*10465441SEvalZero if ((ip_addr != RT_NULL) && ip4addr_aton(ip_addr, &addr))
494*10465441SEvalZero {
495*10465441SEvalZero netif_set_ipaddr(netif, ip);
496*10465441SEvalZero }
497*10465441SEvalZero
498*10465441SEvalZero /* set gateway address */
499*10465441SEvalZero if ((gw_addr != RT_NULL) && ip4addr_aton(gw_addr, &addr))
500*10465441SEvalZero {
501*10465441SEvalZero netif_set_gw(netif, ip);
502*10465441SEvalZero }
503*10465441SEvalZero
504*10465441SEvalZero /* set netmask address */
505*10465441SEvalZero if ((nm_addr != RT_NULL) && ip4addr_aton(nm_addr, &addr))
506*10465441SEvalZero {
507*10465441SEvalZero netif_set_netmask(netif, ip);
508*10465441SEvalZero }
509*10465441SEvalZero }
510*10465441SEvalZero FINSH_FUNCTION_EXPORT(set_if, set network interface address);
511*10465441SEvalZero
512*10465441SEvalZero #if LWIP_DNS
513*10465441SEvalZero #include <lwip/dns.h>
set_dns(char * dns_server)514*10465441SEvalZero void set_dns(char* dns_server)
515*10465441SEvalZero {
516*10465441SEvalZero ip_addr_t addr;
517*10465441SEvalZero
518*10465441SEvalZero if ((dns_server != RT_NULL) && ipaddr_aton(dns_server, &addr))
519*10465441SEvalZero {
520*10465441SEvalZero dns_setserver(0, &addr);
521*10465441SEvalZero }
522*10465441SEvalZero }
523*10465441SEvalZero FINSH_FUNCTION_EXPORT(set_dns, set DNS server address);
524*10465441SEvalZero #endif
525*10465441SEvalZero
list_if(void)526*10465441SEvalZero void list_if(void)
527*10465441SEvalZero {
528*10465441SEvalZero rt_ubase_t index;
529*10465441SEvalZero struct netif * netif;
530*10465441SEvalZero
531*10465441SEvalZero rt_enter_critical();
532*10465441SEvalZero
533*10465441SEvalZero netif = netif_list;
534*10465441SEvalZero
535*10465441SEvalZero while( netif != RT_NULL )
536*10465441SEvalZero {
537*10465441SEvalZero rt_kprintf("network interface: %c%c%s\n",
538*10465441SEvalZero netif->name[0],
539*10465441SEvalZero netif->name[1],
540*10465441SEvalZero (netif == netif_default)?" (Default)":"");
541*10465441SEvalZero rt_kprintf("MTU: %d\n", netif->mtu);
542*10465441SEvalZero rt_kprintf("MAC: ");
543*10465441SEvalZero for (index = 0; index < netif->hwaddr_len; index ++)
544*10465441SEvalZero rt_kprintf("%02x ", netif->hwaddr[index]);
545*10465441SEvalZero rt_kprintf("\nFLAGS:");
546*10465441SEvalZero if (netif->flags & NETIF_FLAG_UP) rt_kprintf(" UP");
547*10465441SEvalZero else rt_kprintf(" DOWN");
548*10465441SEvalZero if (netif->flags & NETIF_FLAG_LINK_UP) rt_kprintf(" LINK_UP");
549*10465441SEvalZero else rt_kprintf(" LINK_DOWN");
550*10465441SEvalZero if (netif->flags & NETIF_FLAG_ETHARP) rt_kprintf(" ETHARP");
551*10465441SEvalZero if (netif->flags & NETIF_FLAG_BROADCAST) rt_kprintf(" BROADCAST");
552*10465441SEvalZero if (netif->flags & NETIF_FLAG_IGMP) rt_kprintf(" IGMP");
553*10465441SEvalZero rt_kprintf("\n");
554*10465441SEvalZero rt_kprintf("ip address: %s\n", ipaddr_ntoa(&(netif->ip_addr)));
555*10465441SEvalZero rt_kprintf("gw address: %s\n", ipaddr_ntoa(&(netif->gw)));
556*10465441SEvalZero rt_kprintf("net mask : %s\n", ipaddr_ntoa(&(netif->netmask)));
557*10465441SEvalZero #if LWIP_IPV6
558*10465441SEvalZero {
559*10465441SEvalZero ip6_addr_t *addr;
560*10465441SEvalZero int addr_state;
561*10465441SEvalZero int i;
562*10465441SEvalZero
563*10465441SEvalZero addr = (ip6_addr_t *)&netif->ip6_addr[0];
564*10465441SEvalZero addr_state = netif->ip6_addr_state[0];
565*10465441SEvalZero
566*10465441SEvalZero rt_kprintf("\nipv6 link-local: %s state:%02X %s\n", ip6addr_ntoa(addr),
567*10465441SEvalZero addr_state, ip6_addr_isvalid(addr_state)?"VALID":"INVALID");
568*10465441SEvalZero
569*10465441SEvalZero for(i=1; i<LWIP_IPV6_NUM_ADDRESSES; i++)
570*10465441SEvalZero {
571*10465441SEvalZero addr = (ip6_addr_t *)&netif->ip6_addr[i];
572*10465441SEvalZero addr_state = netif->ip6_addr_state[i];
573*10465441SEvalZero
574*10465441SEvalZero rt_kprintf("ipv6[%d] address: %s state:%02X %s\n", i, ip6addr_ntoa(addr),
575*10465441SEvalZero addr_state, ip6_addr_isvalid(addr_state)?"VALID":"INVALID");
576*10465441SEvalZero }
577*10465441SEvalZero
578*10465441SEvalZero }
579*10465441SEvalZero rt_kprintf("\r\n");
580*10465441SEvalZero #endif /* LWIP_IPV6 */
581*10465441SEvalZero netif = netif->next;
582*10465441SEvalZero }
583*10465441SEvalZero
584*10465441SEvalZero #if LWIP_DNS
585*10465441SEvalZero {
586*10465441SEvalZero const ip_addr_t *ip_addr;
587*10465441SEvalZero
588*10465441SEvalZero for(index=0; index<DNS_MAX_SERVERS; index++)
589*10465441SEvalZero {
590*10465441SEvalZero ip_addr = dns_getserver(index);
591*10465441SEvalZero rt_kprintf("dns server #%d: %s\n", index, ipaddr_ntoa(ip_addr));
592*10465441SEvalZero }
593*10465441SEvalZero }
594*10465441SEvalZero #endif /**< #if LWIP_DNS */
595*10465441SEvalZero
596*10465441SEvalZero rt_exit_critical();
597*10465441SEvalZero }
598*10465441SEvalZero FINSH_FUNCTION_EXPORT(list_if, list network interface information);
599*10465441SEvalZero
600*10465441SEvalZero #if LWIP_TCP
601*10465441SEvalZero #include <lwip/tcp.h>
602*10465441SEvalZero #include <lwip/priv/tcp_priv.h>
603*10465441SEvalZero
list_tcps(void)604*10465441SEvalZero void list_tcps(void)
605*10465441SEvalZero {
606*10465441SEvalZero rt_uint32_t num = 0;
607*10465441SEvalZero struct tcp_pcb *pcb;
608*10465441SEvalZero char local_ip_str[16];
609*10465441SEvalZero char remote_ip_str[16];
610*10465441SEvalZero
611*10465441SEvalZero extern struct tcp_pcb *tcp_active_pcbs;
612*10465441SEvalZero extern union tcp_listen_pcbs_t tcp_listen_pcbs;
613*10465441SEvalZero extern struct tcp_pcb *tcp_tw_pcbs;
614*10465441SEvalZero
615*10465441SEvalZero rt_enter_critical();
616*10465441SEvalZero rt_kprintf("Active PCB states:\n");
617*10465441SEvalZero for(pcb = tcp_active_pcbs; pcb != NULL; pcb = pcb->next)
618*10465441SEvalZero {
619*10465441SEvalZero strcpy(local_ip_str, ipaddr_ntoa(&(pcb->local_ip)));
620*10465441SEvalZero strcpy(remote_ip_str, ipaddr_ntoa(&(pcb->remote_ip)));
621*10465441SEvalZero
622*10465441SEvalZero rt_kprintf("#%d %s:%d <==> %s:%d snd_nxt 0x%08X rcv_nxt 0x%08X ",
623*10465441SEvalZero num++,
624*10465441SEvalZero local_ip_str,
625*10465441SEvalZero pcb->local_port,
626*10465441SEvalZero remote_ip_str,
627*10465441SEvalZero pcb->remote_port,
628*10465441SEvalZero pcb->snd_nxt,
629*10465441SEvalZero pcb->rcv_nxt);
630*10465441SEvalZero rt_kprintf("state: %s\n", tcp_debug_state_str(pcb->state));
631*10465441SEvalZero }
632*10465441SEvalZero
633*10465441SEvalZero rt_kprintf("Listen PCB states:\n");
634*10465441SEvalZero num = 0;
635*10465441SEvalZero for(pcb = (struct tcp_pcb *)tcp_listen_pcbs.pcbs; pcb != NULL; pcb = pcb->next)
636*10465441SEvalZero {
637*10465441SEvalZero rt_kprintf("#%d local port %d ", num++, pcb->local_port);
638*10465441SEvalZero rt_kprintf("state: %s\n", tcp_debug_state_str(pcb->state));
639*10465441SEvalZero }
640*10465441SEvalZero
641*10465441SEvalZero rt_kprintf("TIME-WAIT PCB states:\n");
642*10465441SEvalZero num = 0;
643*10465441SEvalZero for(pcb = tcp_tw_pcbs; pcb != NULL; pcb = pcb->next)
644*10465441SEvalZero {
645*10465441SEvalZero strcpy(local_ip_str, ipaddr_ntoa(&(pcb->local_ip)));
646*10465441SEvalZero strcpy(remote_ip_str, ipaddr_ntoa(&(pcb->remote_ip)));
647*10465441SEvalZero
648*10465441SEvalZero rt_kprintf("#%d %s:%d <==> %s:%d snd_nxt 0x%08X rcv_nxt 0x%08X ",
649*10465441SEvalZero num++,
650*10465441SEvalZero local_ip_str,
651*10465441SEvalZero pcb->local_port,
652*10465441SEvalZero remote_ip_str,
653*10465441SEvalZero pcb->remote_port,
654*10465441SEvalZero pcb->snd_nxt,
655*10465441SEvalZero pcb->rcv_nxt);
656*10465441SEvalZero rt_kprintf("state: %s\n", tcp_debug_state_str(pcb->state));
657*10465441SEvalZero }
658*10465441SEvalZero rt_exit_critical();
659*10465441SEvalZero }
660*10465441SEvalZero FINSH_FUNCTION_EXPORT(list_tcps, list all of tcp connections);
661*10465441SEvalZero #endif /* LWIP_TCP */
662*10465441SEvalZero
663*10465441SEvalZero #if LWIP_UDP
664*10465441SEvalZero #include "lwip/udp.h"
list_udps(void)665*10465441SEvalZero void list_udps(void)
666*10465441SEvalZero {
667*10465441SEvalZero struct udp_pcb *pcb;
668*10465441SEvalZero rt_uint32_t num = 0;
669*10465441SEvalZero char local_ip_str[16];
670*10465441SEvalZero char remote_ip_str[16];
671*10465441SEvalZero
672*10465441SEvalZero rt_enter_critical();
673*10465441SEvalZero rt_kprintf("Active UDP PCB states:\n");
674*10465441SEvalZero for (pcb = udp_pcbs; pcb != NULL; pcb = pcb->next)
675*10465441SEvalZero {
676*10465441SEvalZero strcpy(local_ip_str, ipaddr_ntoa(&(pcb->local_ip)));
677*10465441SEvalZero strcpy(remote_ip_str, ipaddr_ntoa(&(pcb->remote_ip)));
678*10465441SEvalZero
679*10465441SEvalZero rt_kprintf("#%d %d %s:%d <==> %s:%d \n",
680*10465441SEvalZero num, (int)pcb->flags,
681*10465441SEvalZero local_ip_str,
682*10465441SEvalZero pcb->local_port,
683*10465441SEvalZero remote_ip_str,
684*10465441SEvalZero pcb->remote_port);
685*10465441SEvalZero
686*10465441SEvalZero num++;
687*10465441SEvalZero }
688*10465441SEvalZero rt_exit_critical();
689*10465441SEvalZero }
690*10465441SEvalZero FINSH_FUNCTION_EXPORT(list_udps, list all of udp connections);
691*10465441SEvalZero #endif /* LWIP_UDP */
692*10465441SEvalZero
693*10465441SEvalZero #endif
694