dca25a1b39
The server implements inet-like interface to vfs and drivers. The core functionality is contained in the liblwip.
135 lines
4 KiB
C
135 lines
4 KiB
C
#ifndef __LWIP_SERVER_SOCKET_H__
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#define __LWIP_SERVER_SOCKET_H__
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#include <minix/ipc.h>
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#include <minix/endpoint.h>
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#include "inet_config.h"
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#include "proto.h"
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#define SOCK_TYPE_IP 0
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#define SOCK_TYPE_TCP 1
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#define SOCK_TYPE_UDP 2
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#define SOCK_TYPES 3
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struct socket;
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typedef void (* sock_op_t)(struct socket *, message *);
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typedef int (* sock_op_open_t)(struct socket *, message *);
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struct sock_ops {
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sock_op_open_t open;
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sock_op_t close;
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sock_op_t read;
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sock_op_t write;
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sock_op_t ioctl;
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sock_op_t select;
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sock_op_t select_reply;
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};
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struct recv_q {
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struct recv_q * next;
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void * data;
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};
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#define SOCK_FLG_OP_PENDING 0x1
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#define SOCK_FLG_OP_REVIVING 0x2
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#define SOCK_FLG_OP_SUSPENDED 0x4 /* set when processing a suspended op */
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#define SOCK_FLG_OP_LISTENING 0x100 /* tcp socket is in a listening mode */
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#define SOCK_FLG_OP_CONNECTING 0x200 /* set when waiting for a connect */
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#define SOCK_FLG_OP_READING 0x400 /* reading operation in progress */
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#define SOCK_FLG_OP_WRITING 0x800 /* writing operation in progress */
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#define SOCK_FLG_CLOSED 0x1000 /* tcp socket has been closed do not
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expect any more data */
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/* select() flags - they say what action do we monitor */
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#define SOCK_FLG_SEL_WRITE 0x100000
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#define SOCK_FLG_SEL_READ 0x200000
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#define SOCK_FLG_SEL_ERROR 0x400000
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#define SOCK_FLG_SEL_CHECK 0x800000 /* select satisfied, go and check it */
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#define sock_select_set(sock) ((sock)->flags & (SOCK_FLG_SEL_WRITE | \
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SOCK_FLG_SEL_READ | SOCK_FLG_SEL_ERROR))
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#define sock_select_read_set(sock) ((sock)->flags & SOCK_FLG_SEL_READ)
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#define sock_select_write_set(sock) ((sock)->flags & SOCK_FLG_SEL_WRITE)
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#define sock_select_rw_set(sock) ((sock)->flags & (SOCK_FLG_SEL_READ | \
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SOCK_FLG_SEL_WRITE))
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#define sock_select_error_set(sock) ((sock)->flags & SOCK_FLG_SEL_ERROR)
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#define sock_select_check_set(sock) ((sock)->flags & SOCK_FLG_SEL_CHECK)
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#define sock_clear_select(sock) do { \
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(sock)->flags &= ~(SOCK_FLG_SEL_READ | SOCK_FLG_SEL_WRITE | \
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SOCK_FLG_SEL_ERROR | SOCK_FLG_SEL_CHECK); \
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} while (0)
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struct socket {
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int type;
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u32_t flags;
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unsigned long usr_flags;
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void * pcb;
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struct sock_ops * ops;
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void * buf;
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size_t buf_size;
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message mess; /* store the message which initiated the
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last operation on this socket in case
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we have to suspend the operation */
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endpoint_t select_ep;
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struct recv_q * recv_head;
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struct recv_q * recv_tail;
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unsigned recv_data_size; /* sum of data enqueued */
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void * data;
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};
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extern struct sock_ops sock_udp_ops;
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extern struct sock_ops sock_tcp_ops;
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extern struct sock_ops sock_raw_ip_ops;
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#define get_sock_num(x) ((long int) ((x) - socket))
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#define is_valid_sock_num(x) (x < MAX_SOCKETS)
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#define get_sock(x) &socket[x]
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#define MAX_SOCKETS 255 /* FIXME as log as the sockets are identified by the
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minor device number 255 is ok */
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#define MAX_DEVS 5
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#define RESERVED (SOCK_TYPES + MAX_DEVS) /* rounded to 8 */
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extern struct socket socket[MAX_SOCKETS];
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void socket_request(message * m);
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void mq_process(void);
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struct socket * get_unused_sock(void);
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struct socket * get_nic_sock(unsigned dev);
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void send_reply(message * m, int status);
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void sock_reply(struct socket * sock, int status);
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void sock_revive(struct socket * sock, int status);
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typedef void (* recv_data_free_fn)(void *);
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int sock_enqueue_data(struct socket * sock, void * data, unsigned size);
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void * sock_dequeue_data(struct socket * sock);
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void sock_dequeue_data_all(struct socket * sock,
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recv_data_free_fn data_free);
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void sock_select_notify(struct socket * sock);
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static inline void * debug_malloc(size_t s)
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{
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void * ret;
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ret = malloc(s);
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// printf("allocated %p size %d\n", ret, s);
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return ret;
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}
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#define debug_free(x) do { \
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if (0) \
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printf("free called from %s:%d %s freeing %p\n", __FILE__, \
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__LINE__, __func__, (x)); \
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free(x); \
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} while(0)
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void generic_op_select(struct socket * sock, message * m);
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void generic_op_select_reply(struct socket * sock, message * m);
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#endif /* __LWIP_SERVER_SOCKET_H__ */
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