fix: 重构基础通信框架为异步事件循环,并修复 KCP conv 错位与接收漏斗堵塞问题

This commit is contained in:
meiqi
2026-03-13 21:00:38 +08:00
parent cf629fa722
commit 4d475f8c92
4 changed files with 251 additions and 211 deletions

View File

@@ -1,161 +1,177 @@
/*
* test_main.c
* 简单测试程序:客户端/服务端双向传输 + 日志观测
*
* 使用方式示例(同一机器上,两个终端):
* 终端1./omni_test -r server -p tcp -P 9000
* 终端2./omni_test -r client -p tcp -P 9000 -H 127.0.0.1
*
* 协议可选tcp / udp / kcp
*/
#include "common.h"
#include "network.h"
#include "logger.h"
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
static void usage(const char *prog)
{
fprintf(stderr,
"Usage:\n"
" %s -r server -p tcp|udp|kcp -P <port>\n"
" %s -r client -p tcp|udp|kcp -P <port> -H <host>\n",
prog, prog);
}
static OmniProtocol parse_proto(const char *s)
{
if (strcmp(s, "tcp") == 0) return OMNI_PROTO_TCP;
if (strcmp(s, "udp") == 0) return OMNI_PROTO_UDP;
if (strcmp(s, "kcp") == 0) return OMNI_PROTO_KCP;
return OMNI_PROTO_TCP;
}
static void run_server(OmniProtocol proto, uint16_t port)
{
OmniContext *ctx = omni_init(OMNI_ROLE_SERVER, proto,
NULL, port,
NULL, 0);
if (!ctx) {
fprintf(stderr, "server: omni_init failed\n");
return;
}
logger_log("INFO", "test", "server_started proto=%d port=%u",
(int)proto, (unsigned)port);
char buf[4096];
for (;;) {
ssize_t n = omni_recv(ctx, buf, sizeof(buf));
if (n <= 0) {
logger_log("INFO", "test", "server_recv_end n=%zd", n);
break;
}
logger_log("INFO", "test", "server_recv bytes=%zd", n);
/* 简单 echo 回客户端,验证双向通信 */
ssize_t m = omni_send(ctx, buf, (size_t)n);
logger_log("INFO", "test", "server_echo bytes=%zd", m);
}
omni_close(ctx);
}
static void run_client(OmniProtocol proto, const char *host, uint16_t port)
{
if (!host) {
fprintf(stderr, "client: host is required\n");
return;
}
OmniContext *ctx = omni_init(OMNI_ROLE_CLIENT, proto,
NULL, 0,
host, port);
if (!ctx) {
fprintf(stderr, "client: omni_init failed\n");
return;
}
logger_log("INFO", "test", "client_started proto=%d host=%s port=%u",
(int)proto, host, (unsigned)port);
char send_buf[2048];
char recv_buf[4096];
for (int i = 0; i < 100; ++i) {
int len = snprintf(send_buf, sizeof(send_buf),
"msg=%d time_ms=%llu payload_size=%zu",
i,
(unsigned long long)omni_now_ms(),
sizeof(send_buf));
ssize_t n = omni_send(ctx, send_buf, (size_t)len);
logger_log("INFO", "test", "client_send i=%d bytes=%zd", i, n);
if (n <= 0) break;
ssize_t m = omni_recv(ctx, recv_buf, sizeof(recv_buf));
if (m <= 0) {
logger_log("INFO", "test", "client_recv_end i=%d bytes=%zd", i, m);
break;
}
logger_log("INFO", "test",
"client_recv_echo i=%d bytes=%zd first_bytes=\"%.32s\"",
i, m, recv_buf);
usleep(10 * 1000); /* 10ms 间隔,模拟稳定流量 */
}
omni_close(ctx);
}
int main(int argc, char **argv)
{
const char *role_str = NULL;
const char *proto_str = "tcp";
const char *host = NULL;
int port = 0;
int opt;
while ((opt = getopt(argc, argv, "r:p:P:H:")) != -1) {
switch (opt) {
case 'r':
role_str = optarg;
break;
case 'p':
proto_str = optarg;
break;
case 'P':
port = atoi(optarg);
break;
case 'H':
host = optarg;
break;
default:
usage(argv[0]);
return 1;
}
}
if (!role_str || port <= 0) {
usage(argv[0]);
return 1;
}
OmniProtocol proto = parse_proto(proto_str);
if (strcmp(role_str, "server") == 0) {
run_server(proto, (uint16_t)port);
} else if (strcmp(role_str, "client") == 0) {
run_client(proto, host, (uint16_t)port);
} else {
usage(argv[0]);
return 1;
}
return 0;
}
/*
* test_main.c
* 简单测试程序:客户端/服务端双向传输 + 日志观测
*
* 使用方式示例(同一机器上,两个终端):
* 终端1./omni_test -r server -p tcp -P 9000
* 终端2./omni_test -r client -p tcp -P 9000 -H 127.0.0.1
*
* 协议可选tcp / udp / kcp
*/
#include "common.h"
#include "network.h"
#include "logger.h"
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
static void usage(const char *prog)
{
fprintf(stderr,
"Usage:\n"
" %s -r server -p tcp|udp|kcp -P <port>\n"
" %s -r client -p tcp|udp|kcp -P <port> -H <host>\n",
prog, prog);
}
static OmniProtocol parse_proto(const char *s)
{
if (strcmp(s, "tcp") == 0) return OMNI_PROTO_TCP;
if (strcmp(s, "udp") == 0) return OMNI_PROTO_UDP;
if (strcmp(s, "kcp") == 0) return OMNI_PROTO_KCP;
return OMNI_PROTO_TCP;
}
static void run_server(OmniProtocol proto, uint16_t port)
{
OmniContext *ctx = omni_init(OMNI_ROLE_SERVER, proto,
NULL, port,
NULL, 0);
if (!ctx) {
fprintf(stderr, "server: omni_init failed\n");
return;
}
logger_log("INFO", "test", "server_started proto=%d port=%u",
(int)proto, (unsigned)port);
char buf[4096];
for (;;) {
ssize_t n = omni_recv(ctx, buf, sizeof(buf));
if (n < 0) {
logger_log("INFO", "test", "server_recv_end n=%zd", n);
break;
}
if (n == 0) {
if (proto == OMNI_PROTO_KCP) {
usleep(10 * 1000);
continue;
}
logger_log("INFO", "test", "server_recv_end n=%zd", n);
break;
}
logger_log("INFO", "test", "server_recv bytes=%zd", n);
/* 简单 echo 回客户端,验证双向通信 */
ssize_t m = omni_send(ctx, buf, (size_t)n);
logger_log("INFO", "test", "server_echo bytes=%zd", m);
}
omni_close(ctx);
}
static void run_client(OmniProtocol proto, const char *host, uint16_t port)
{
if (!host) {
fprintf(stderr, "client: host is required\n");
return;
}
OmniContext *ctx = omni_init(OMNI_ROLE_CLIENT, proto,
NULL, 0,
host, port);
if (!ctx) {
fprintf(stderr, "client: omni_init failed\n");
return;
}
logger_log("INFO", "test", "client_started proto=%d host=%s port=%u",
(int)proto, host, (unsigned)port);
char send_buf[2048];
char recv_buf[4096];
for (int i = 0; i < 100; ++i) {
int len = snprintf(send_buf, sizeof(send_buf),
"msg=%d time_ms=%llu payload_size=%zu",
i,
(unsigned long long)omni_now_ms(),
sizeof(send_buf));
ssize_t n = omni_send(ctx, send_buf, (size_t)len);
logger_log("INFO", "test", "client_send i=%d bytes=%zd", i, n);
if (n <= 0) break;
ssize_t m = omni_recv(ctx, recv_buf, sizeof(recv_buf));
if (m < 0) {
logger_log("INFO", "test", "client_recv_end i=%d bytes=%zd", i, m);
break;
}
if (m == 0) {
if (proto == OMNI_PROTO_KCP) {
usleep(10 * 1000);
--i;
continue;
}
logger_log("INFO", "test", "client_recv_end i=%d bytes=%zd", i, m);
break;
}
logger_log("INFO", "test",
"client_recv_echo i=%d bytes=%zd first_bytes=\"%.32s\"",
i, m, recv_buf);
usleep(10 * 1000); /* 10ms 间隔,模拟稳定流量 */
}
omni_close(ctx);
}
int main(int argc, char **argv)
{
const char *role_str = NULL;
const char *proto_str = "tcp";
const char *host = NULL;
int port = 0;
int opt;
while ((opt = getopt(argc, argv, "r:p:P:H:")) != -1) {
switch (opt) {
case 'r':
role_str = optarg;
break;
case 'p':
proto_str = optarg;
break;
case 'P':
port = atoi(optarg);
break;
case 'H':
host = optarg;
break;
default:
usage(argv[0]);
return 1;
}
}
if (!role_str || port <= 0) {
usage(argv[0]);
return 1;
}
OmniProtocol proto = parse_proto(proto_str);
if (strcmp(role_str, "server") == 0) {
run_server(proto, (uint16_t)port);
} else if (strcmp(role_str, "client") == 0) {
run_client(proto, host, (uint16_t)port);
} else {
usage(argv[0]);
return 1;
}
return 0;
}

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@@ -6,20 +6,32 @@
#include "logger.h"
#include "common.h"
#include <stdio.h>
#include <stdarg.h>
#include <string.h>
#include <inttypes.h>
#include <stdio.h>
#include <stdarg.h>
#include <string.h>
#include <inttypes.h>
#include <stdlib.h>
static OmniStats g_stats;
static FILE *g_json_fp = NULL;
static OmniStats g_stats;
static FILE *g_json_fp = NULL;
static int g_min_level = 1; /* default INFO */
static uint64_t now_ms(void)
{
return omni_now_ms();
}
static void ewma_update(double *avg, double sample, double alpha)
static uint64_t now_ms(void)
{
return omni_now_ms();
}
static int level_to_int(const char *level)
{
if (!level) return 1;
if (strcmp(level, "DEBUG") == 0) return 0;
if (strcmp(level, "INFO") == 0) return 1;
if (strcmp(level, "WARN") == 0) return 2;
if (strcmp(level, "ERROR") == 0) return 3;
return 1;
}
static void ewma_update(double *avg, double sample, double alpha)
{
if (*avg <= 0.0) {
*avg = sample;
@@ -28,18 +40,21 @@ static void ewma_update(double *avg, double sample, double alpha)
*avg = (*avg) * (1.0 - alpha) + sample * alpha;
}
void logger_init(void)
{
memset(&g_stats, 0, sizeof(g_stats));
g_stats.start_ms = now_ms();
g_stats.last_report_ms = g_stats.start_ms;
g_stats.send_call_min_ms = UINT64_MAX;
g_stats.recv_call_min_ms = UINT64_MAX;
if (!g_json_fp) {
g_json_fp = fopen("omni_logs.jsonl", "a");
}
}
void logger_init(void)
{
memset(&g_stats, 0, sizeof(g_stats));
g_stats.start_ms = now_ms();
g_stats.last_report_ms = g_stats.start_ms;
g_stats.send_call_min_ms = UINT64_MAX;
g_stats.recv_call_min_ms = UINT64_MAX;
const char *lvl_env = getenv("OMNI_LOG_LEVEL");
g_min_level = level_to_int(lvl_env);
if (!g_json_fp) {
g_json_fp = fopen("omni_logs.jsonl", "a");
}
}
void logger_on_send(size_t bytes)
{
@@ -224,14 +239,18 @@ void logger_print_performance_log(const char *tag)
}
}
void logger_log(const char *level, const char *component,
const char *fmt, ...)
{
const char *lvl = level ? level : "INFO";
const char *comp = component ? component : "general";
FILE *fp = stderr;
print_timestamp(fp);
void logger_log(const char *level, const char *component,
const char *fmt, ...)
{
const char *lvl = level ? level : "INFO";
const char *comp = component ? component : "general";
if (level_to_int(lvl) < g_min_level) {
return;
}
FILE *fp = stderr;
print_timestamp(fp);
fprintf(fp, "level=%s component=%s ", lvl, comp);
char msg_buf[1024];

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@@ -96,6 +96,9 @@ ssize_t omni_send(OmniContext *ctx, const void *buf, size_t len)
}
logger_log("DEBUG", "network", "omni_send proto=%d bytes=%zd call_ms=%llu",
(int)ctx->proto, n, (unsigned long long)(t1 - t0));
if (n > 0) {
logger_print_performance_log("on_send");
}
return n;
}
@@ -114,6 +117,9 @@ ssize_t omni_recv(OmniContext *ctx, void *buf, size_t len)
}
logger_log("DEBUG", "network", "omni_recv proto=%d bytes=%zd call_ms=%llu",
(int)ctx->proto, n, (unsigned long long)(t1 - t0));
if (n > 0) {
logger_print_performance_log("on_recv");
}
return n;
}
@@ -126,4 +132,3 @@ void omni_close(OmniContext *ctx)
logger_print_performance_log("final");
free(ctx);
}

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@@ -38,16 +38,14 @@ static int kcp_output(const char *buf, int len, ikcpcb *kcp, void *user)
return 0;
}
static OmniContext *kcp_init(OmniRole role,
const char *bind_ip,
uint16_t bind_port,
const char *peer_ip,
uint16_t peer_port)
{
(void)role;
struct KcpContext *ctx = (struct KcpContext *)calloc(1, sizeof(*ctx));
if (!ctx) return NULL;
static OmniContext *kcp_init(OmniRole role,
const char *bind_ip,
uint16_t bind_port,
const char *peer_ip,
uint16_t peer_port)
{
struct KcpContext *ctx = (struct KcpContext *)calloc(1, sizeof(*ctx));
if (!ctx) return NULL;
int fd = socket(AF_INET, SOCK_DGRAM, 0);
if (fd < 0) {
@@ -78,8 +76,9 @@ static OmniContext *kcp_init(OmniRole role,
ctx->fd = fd;
/* conv 可简单使用端口号 */
IUINT32 conv = (IUINT32)peer_port;
/* conv 必须两端一致server 用 bind_portclient 用 peer_port */
IUINT32 conv = (role == OMNI_ROLE_SERVER) ? (IUINT32)bind_port
: (IUINT32)peer_port;
ikcpcb *kcp = ikcp_create(conv, ctx);
if (!kcp) {
logger_log("ERROR", "kcp", "ikcp_create_failed");
@@ -94,11 +93,12 @@ static OmniContext *kcp_init(OmniRole role,
ikcp_nodelay(kcp, 1, 10, 2, 1);
ikcp_wndsize(kcp, 128, 128);
logger_log("INFO", "kcp",
"init bind_port=%u peer_ip=%s peer_port=%u",
(unsigned)bind_port,
peer_ip ? peer_ip : "NULL",
(unsigned)peer_port);
logger_log("INFO", "kcp",
"init bind_port=%u peer_ip=%s peer_port=%u conv=%u",
(unsigned)bind_port,
peer_ip ? peer_ip : "NULL",
(unsigned)peer_port,
(unsigned)conv);
return (OmniContext *)ctx;
}