mirror of
https://gitee.com/acl-dev/acl.git
synced 2024-12-15 01:10:52 +08:00
331 lines
7.2 KiB
C++
331 lines
7.2 KiB
C++
#include "stdafx.h"
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <unistd.h>
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#include "fiber/lib_fiber.h"
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#include "user_client.h"
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#define STACK_SIZE 128000
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static void client_read_callback(int type, ACL_EVENT *event,
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ACL_VSTREAM *conn, void *ctx);
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static int __rw_timeout = 0;
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static int __stop = 0;
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static int __use_kernel = 0;
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static std::map<acl::string, user_client*> __users;
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static void remove_user(user_client* uc)
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{
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const char* name = uc->get_name();
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if (name == NULL || *name == 0)
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{
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printf("no name!\r\n");
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return;
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}
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std::map<acl::string, user_client*>::iterator it = __users.find(name);
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if (it == __users.end())
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printf("not exist, name: %s\r\n", name);
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else
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{
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__users.erase(it);
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printf("delete user ok, name: %s\r\n", name);
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}
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}
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static bool client_login(user_client* uc, ACL_ARGV* tokens)
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{
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if (tokens->argc < 2)
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{
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acl::string tmp;
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tmp.format("invalid argc: %d < 2\r\n", tokens->argc);
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printf("%s", tmp.c_str());
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return acl_vstream_writen(uc->get_stream(), tmp.c_str(),
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(int) tmp.size()) != ACL_VSTREAM_EOF;
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}
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acl::string msg;
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const char* name = tokens->argv[1];
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std::map<acl::string, user_client*>::iterator it = __users.find(name);
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if (it == __users.end())
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{
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__users[name] = uc;
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uc->set_name(name);
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msg.format("user %s login ok\r\n", name);
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}
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else
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msg.format("user %s already login\r\n", name);
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printf("%s", msg.c_str());
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return acl_vstream_writen(uc->get_stream(), msg.c_str(),
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(int) msg.size()) != ACL_VSTREAM_EOF;
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}
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static bool client_chat(user_client* uc, ACL_ARGV* tokens)
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{
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if (tokens->argc < 3)
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{
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acl::string tmp;
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tmp.format("invalid argc: %d < 3\r\n", tokens->argc);
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printf("%s", tmp.c_str());
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return acl_vstream_writen(uc->get_stream(), tmp.c_str(),
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(int) tmp.size()) != ACL_VSTREAM_EOF;
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}
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const char* to = tokens->argv[1];
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const char* msg = tokens->argv[2];
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std::map<acl::string, user_client*>::iterator it = __users.find(to);
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if (it == __users.end())
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{
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acl::string tmp;
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tmp.format("from user: %s, to user: %s not exist\r\n",
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uc->get_name(), to);
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printf("%s", tmp.c_str());
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return acl_vstream_writen(uc->get_stream(), tmp.c_str(),
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(int) tmp.size()) != ACL_VSTREAM_EOF;
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}
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else
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{
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it->second->push(msg);
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return true;
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}
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}
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static void fiber_client_read(ACL_FIBER *fiber acl_unused, void *ctx)
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{
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user_client* uc = (user_client*) ctx;
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ACL_VSTREAM *conn = uc->get_stream();
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ACL_EVENT *event = uc->get_event();
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char buf[8192];
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int ret = acl_vstream_gets_nonl(conn, buf, sizeof(buf) - 1);
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printf(">>>ret: %d\r\n", ret);
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if (ret == ACL_VSTREAM_EOF)
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{
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if (uc->already_login())
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remove_user(uc);
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acl_vstream_close(conn);
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delete uc;
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return;
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}
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buf[ret] = 0;
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printf("gets: %s\r\n", buf);
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bool status;
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ACL_ARGV* tokens = acl_argv_split(buf, "|");
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if (strcasecmp(tokens->argv[0], "login") == 0)
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{
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if (uc->already_login())
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{
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status = true;
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printf("user: %s already logined\r\n", uc->get_name());
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}
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else
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status = client_login(uc, tokens);
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}
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else if (!uc->already_login())
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{
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acl::string tmp;
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tmp.format("you're not login yet!\r\n");
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printf("%s", tmp.c_str());
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status = acl_vstream_writen(conn, tmp.c_str(), (int) tmp.size())
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== ACL_VSTREAM_EOF ? false : true;
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}
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else if (strcasecmp(tokens->argv[0], "chat") == 0)
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status = client_chat(uc, tokens);
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else
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{
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acl::string tmp;
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tmp.format("invalid data: %s\r\n", buf);
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printf("%s", tmp.c_str());
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status = acl_vstream_writen(conn, tmp.c_str(), (int) tmp.size())
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== ACL_VSTREAM_EOF ? false : true;
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}
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acl_argv_free(tokens);
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if (status == false)
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{
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if (uc->already_login())
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remove_user(uc);
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acl_vstream_close(conn);
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delete uc;
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return;
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}
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acl_event_enable_read(event, conn, 120, client_read_callback, uc);
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}
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static void client_read_callback(int type acl_unused, ACL_EVENT *event,
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ACL_VSTREAM *conn, void *ctx)
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{
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user_client* uc = (user_client*) ctx;
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acl_event_disable_readwrite(event, conn);
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acl_fiber_create(fiber_client_read, uc, STACK_SIZE);
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}
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static void listen_callback(int type acl_unused, ACL_EVENT *event,
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ACL_VSTREAM *sstream, void *ctx acl_unused)
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{
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char ip[64];
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ACL_VSTREAM *conn = acl_vstream_accept(sstream, ip, sizeof(ip));
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if (conn == NULL) {
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printf("accept error %s\r\n", acl_last_serror());
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return;
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}
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printf(">>>accept one, fd: %d\r\n", ACL_VSTREAM_SOCK(conn));
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user_client* uc = new user_client(event, conn);
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acl_event_enable_read(event, conn, 120, client_read_callback, uc);
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}
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static void fiber_flush(ACL_FIBER* fiber acl_unused, void* ctx)
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{
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user_client* uc = (user_client*) ctx;
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ACL_EVENT* event = uc->get_event();
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ACL_VSTREAM* conn = uc->get_stream();
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acl::string* msg;
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uc->set_busy(true);
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while ((msg = uc->pop()) != NULL)
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{
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if (acl_vstream_writen(conn, msg->c_str(), (int) msg->size())
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== ACL_VSTREAM_EOF)
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{
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printf("flush to user: %s error\r\n", uc->get_name());
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delete msg;
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break;
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// don't delete uc here, which will be remove in
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// read callback
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//acl_vstream_close(conn);
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//delete uc;
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//return;
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}
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}
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uc->set_busy(false);
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acl_event_enable_read(event, conn, 120, client_read_callback, uc);
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}
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static void fflush_all(void)
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{
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std::map<acl::string, user_client*>::iterator it = __users.begin();
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std::map<acl::string, user_client*>::iterator next = it;
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for (; it != __users.end(); it = next)
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{
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++next;
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if (it->second->empty() || it->second->is_busy())
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continue;
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ACL_EVENT* event = it->second->get_event();
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ACL_VSTREAM* conn = it->second->get_stream();
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acl_event_disable_readwrite(event, conn);
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acl_fiber_create(fiber_flush, it->second, STACK_SIZE);
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}
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}
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static void fiber_event(ACL_FIBER *fiber acl_unused, void *ctx)
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{
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ACL_VSTREAM *sstream = (ACL_VSTREAM *) ctx;
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ACL_EVENT *event;
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time_t last_ping = time(NULL);
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if (__use_kernel)
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event = acl_event_new(ACL_EVENT_KERNEL, 0, 0, 100000);
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else
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event = acl_event_new(ACL_EVENT_POLL, 0, 0, 100000);
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printf(">>>enable read fd: %d\r\n", ACL_VSTREAM_SOCK(sstream));
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acl_event_enable_listen(event, sstream, 0, listen_callback, NULL);
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while (!__stop)
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{
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acl_event_loop(event);
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fflush_all();
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if (time(NULL) - last_ping >= 1)
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{
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//ping_all();
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last_ping = time(NULL);
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}
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}
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acl_vstream_close(sstream);
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acl_event_free(event);
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acl_fiber_schedule_stop();
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}
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static void usage(const char *procname)
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{
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printf("usage: %s -h [help] -s listen_addr\r\n"
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" -r rw_timeout\r\n"
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" -R [use real http]\r\n"
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" -k [use kernel event]\r\n", procname);
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}
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int main(int argc, char *argv[])
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{
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char addr[64];
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ACL_VSTREAM *sstream;
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int ch;
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acl::log::stdout_open(true);
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snprintf(addr, sizeof(addr), "%s", "127.0.0.1:9002");
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while ((ch = getopt(argc, argv, "hs:r:k")) > 0) {
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switch (ch) {
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case 'h':
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usage(argv[0]);
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return 0;
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case 's':
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snprintf(addr, sizeof(addr), "%s", optarg);
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break;
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case 'r':
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__rw_timeout = atoi(optarg);
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break;
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case 'k':
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__use_kernel = 1;
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break;
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default:
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break;
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}
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}
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sstream = acl_vstream_listen(addr, 128);
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if (sstream == NULL) {
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printf("acl_vstream_listen error %s\r\n", acl_last_serror());
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return 1;
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}
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printf("listen %s ok\r\n", addr);
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printf("%s: call fiber_creater\r\n", __FUNCTION__);
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acl_fiber_create(fiber_event, sstream, STACK_SIZE);
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printf("call fiber_schedule\r\n");
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acl_fiber_schedule();
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return 0;
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}
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