595 lines
22 KiB
C
595 lines
22 KiB
C
#include "cell.h"
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#include <enet/enet.h>
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#include <stdio.h>
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#include <string.h>
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#include <math.h>
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static JSClassID enet_host_id;
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static JSClassID enet_peer_class_id;
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static void js_enet_host_finalizer(JSRuntime *rt, JSValue val)
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{
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ENetHost *host = JS_GetOpaque(val, enet_host_id);
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if (host) enet_host_destroy(host);
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}
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static void js_enet_peer_mark(JSRuntime *rt, JSValueConst val, JS_MarkFunc *mark_func)
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{
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ENetPeer *peer = JS_GetOpaque(val, enet_peer_class_id);
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JS_MarkValue(rt, *(JSValue*)peer->data, mark_func);
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}
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static void js_enet_peer_finalizer(JSRuntime *rt, JSValue val)
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{
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ENetPeer *peer = JS_GetOpaque(val, enet_peer_class_id);
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JS_FreeValueRT(rt, *(JSValue*)peer->data);
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free(peer->data);
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}
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// Initialize the ENet library. Must be called before using any ENet functionality.
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static JSValue js_enet_initialize(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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if (enet_initialize() != 0) return JS_ThrowInternalError(ctx, "Error initializing ENet");
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return JS_NULL;
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}
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// Deinitialize the ENet library, cleaning up all resources. Call this when you no longer
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// need any ENet functionality.
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static JSValue js_enet_deinitialize(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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enet_deinitialize();
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return JS_NULL;
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}
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// Create an ENet host for either a client-like unbound host or a server bound to a specific
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// address and port:
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//
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// - If no argument is provided, creates an unbound "client-like" host with default settings
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// (maximum 32 peers, 2 channels, unlimited bandwidth).
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// - If you pass an "ip:port" string (e.g. "127.0.0.1:7777"), it creates a server bound to
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// that address. The server supports up to 32 peers, 2 channels, and unlimited bandwidth.
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//
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// Throws an error if host creation fails for any reason.
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static JSValue js_enet_host_create(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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ENetHost *host;
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ENetAddress address;
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ENetAddress *send = &address;
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size_t peer_count = 1000;
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size_t channel_limit = 0;
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enet_uint32 incoming_bandwidth = 0;
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enet_uint32 outgoing_bandwidth = 0;
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JSValue obj;
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if (argc < 1 || !JS_IsObject(argv[0])) {
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host = enet_host_create(NULL, peer_count, channel_limit, incoming_bandwidth, outgoing_bandwidth);
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if (!host) return JS_ThrowInternalError(ctx, "Failed to create ENet client host");
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goto wrap;
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}
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JSValue config_obj = argv[0];
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JSValue addr_val = JS_GetPropertyStr(ctx, config_obj, "address");
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const char *addr_str = JS_IsString(addr_val) ? JS_ToCString(ctx, addr_val) : NULL;
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JS_FreeValue(ctx, addr_val);
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if (!addr_str)
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send = NULL;
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else {
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JSValue port_val = JS_GetPropertyStr(ctx, config_obj, "port");
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int32_t port32 = 0;
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JS_ToInt32(ctx, &port32, port_val);
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JS_FreeValue(ctx, port_val);
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if (strcmp(addr_str, "any") == 0)
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address.host = ENET_HOST_ANY;
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else if (strcmp(addr_str, "broadcast") == 0)
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address.host = ENET_HOST_BROADCAST;
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else {
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int err = enet_address_set_host_ip(&address, addr_str);
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if (err != 0) {
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JS_FreeCString(ctx, addr_str);
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return JS_ThrowInternalError(ctx, "Failed to set host IP from '%s'. Error: %d", addr_str, err);
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}
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}
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address.port = (enet_uint16)port32;
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JS_FreeCString(ctx, addr_str);
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}
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JSValue chan_val = JS_GetPropertyStr(ctx, config_obj, "channels");
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JS_ToUint32(ctx, &channel_limit, chan_val);
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JS_FreeValue(ctx, chan_val);
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JSValue in_bw_val = JS_GetPropertyStr(ctx, config_obj, "incoming_bandwidth");
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JS_ToUint32(ctx, &incoming_bandwidth, in_bw_val);
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JS_FreeValue(ctx, in_bw_val);
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JSValue out_bw_val = JS_GetPropertyStr(ctx, config_obj, "outgoing_bandwidth");
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JS_ToUint32(ctx, &outgoing_bandwidth, out_bw_val);
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JS_FreeValue(ctx, out_bw_val);
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host = enet_host_create(send, peer_count, channel_limit, incoming_bandwidth, outgoing_bandwidth);
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if (!host) return JS_ThrowInternalError(ctx, "Failed to create ENet host");
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wrap:
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obj = JS_NewObjectClass(ctx, enet_host_id);
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if (JS_IsException(obj)) {
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enet_host_destroy(host);
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return obj;
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}
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JS_SetOpaque(obj, host);
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return obj;
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}
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// Helper function to get a JSValue for an ENetPeer.
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static JSValue peer_get_value(JSContext *ctx, ENetPeer *peer)
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{
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if (!peer->data) {
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peer->data = malloc(sizeof(JSValue));
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*(JSValue*)peer->data = JS_NewObjectClass(ctx, enet_peer_class_id);
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JS_SetOpaque(*(JSValue*)peer->data, peer);
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}
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return JS_DupValue(ctx, *(JSValue*)peer->data);
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}
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// Poll for and process any available network events (connect, receive, disconnect, or none)
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// from this host, calling the provided callback for each event. This function loops until
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// no more events are available in the current timeframe.
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//
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// :param callback: A function called once for each available event, receiving an event
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// object as its single argument.
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// :param timeout: (optional) Timeout in milliseconds. Defaults to 0 (non-blocking).
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// :return: None
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static JSValue js_enet_host_service(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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ENetHost *host = JS_GetOpaque(this_val, enet_host_id);
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if (!host) return JS_EXCEPTION;
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if (argc < 1 || !JS_IsFunction(ctx, argv[0])) return JS_ThrowTypeError(ctx, "Expected a callback function as first argument");
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JSValue callback = JS_DupValue(ctx, argv[0]);
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double secs;
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JS_ToFloat64(ctx, &secs, argv[1]);
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ENetEvent event;
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while (enet_host_service(host, &event, secs*1000.0f) > 0) {
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JSValue event_obj = JS_NewObject(ctx);
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JS_SetPropertyStr(ctx, event_obj, "peer", peer_get_value(ctx, event.peer));
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switch (event.type) {
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case ENET_EVENT_TYPE_CONNECT:
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JS_SetPropertyStr(ctx, event_obj, "type", JS_NewString(ctx, "connect"));
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break;
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case ENET_EVENT_TYPE_RECEIVE:
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JS_SetPropertyStr(ctx, event_obj, "type", JS_NewString(ctx, "receive"));
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JS_SetPropertyStr(ctx, event_obj, "channelID", JS_NewInt32(ctx, event.channelID));
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// Pass raw data as string or ArrayBuffer
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if (event.packet->dataLength > 0) {
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JSValue data_val = js_new_blob_stoned_copy(ctx, event.packet->data, event.packet->dataLength);
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JS_SetPropertyStr(ctx, event_obj, "data", data_val);
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}
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enet_packet_destroy(event.packet);
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break;
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case ENET_EVENT_TYPE_DISCONNECT:
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JS_SetPropertyStr(ctx, event_obj, "type", JS_NewString(ctx, "disconnect"));
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break;
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case ENET_EVENT_TYPE_NONE:
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JS_SetPropertyStr(ctx, event_obj, "type", JS_NewString(ctx, "none"));
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break;
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}
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uncaught_exception(ctx, JS_Call(ctx, callback, JS_NULL, 1, &event_obj));
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JS_FreeValue(ctx, event_obj);
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}
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JS_FreeValue(ctx, callback);
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return JS_NULL;
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}
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// Initiate a connection from this host to a remote server. Throws an error if the
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// connection cannot be started.
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//
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// :param hostname: The hostname or IP address of the remote server (e.g. "example.com" or "127.0.0.1").
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// :param port: The port number to connect to.
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// :return: An ENetPeer object representing the connection.
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static JSValue js_enet_host_connect(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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ENetHost *host = JS_GetOpaque(this_val, enet_host_id);
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if (!host) return JS_EXCEPTION;
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if (argc < 2) return JS_ThrowTypeError(ctx, "Expected 2 arguments: hostname, port");
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const char *hostname = JS_ToCString(ctx, argv[0]);
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if (!hostname) return JS_EXCEPTION;
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int port;
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JS_ToInt32(ctx, &port, argv[1]);
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ENetAddress address;
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enet_address_set_host(&address, hostname);
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JS_FreeCString(ctx, hostname);
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address.port = port;
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ENetPeer *peer = enet_host_connect(host, &address, 2, 0);
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if (!peer) return JS_ThrowInternalError(ctx, "No available peers for initiating an ENet connection");
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return peer_get_value(ctx, peer);
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}
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// Flush all pending outgoing packets for this host immediately.
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//
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// :return: None
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static JSValue js_enet_host_flush(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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ENetHost *host = JS_GetOpaque(this_val, enet_host_id);
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if (!host) return JS_EXCEPTION;
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enet_host_flush(host);
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return JS_NULL;
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}
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// Broadcast a string or ArrayBuffer to all connected peers on channel 0.
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//
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// :param data: A string or ArrayBuffer to broadcast to all peers.
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// :return: None
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static JSValue js_enet_host_broadcast(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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ENetHost *host = JS_GetOpaque(this_val, enet_host_id);
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if (!host) return JS_EXCEPTION;
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if (argc < 1) return JS_ThrowTypeError(ctx, "Expected a string or ArrayBuffer to broadcast");
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const char *data_str = NULL;
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size_t data_len = 0;
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uint8_t *buf = NULL;
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if (JS_IsString(argv[0])) {
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data_str = JS_ToCStringLen(ctx, &data_len, argv[0]);
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if (!data_str) return JS_EXCEPTION;
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} else if (js_is_blob(ctx,argv[0])) {
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buf = js_get_blob_data(ctx, &data_len, argv[0]);
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if (!buf) return JS_EXCEPTION;
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} else {
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return JS_ThrowTypeError(ctx, "broadcast() only accepts a string or ArrayBuffer");
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}
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ENetPacket *packet = enet_packet_create(data_str ? data_str : buf, data_len, ENET_PACKET_FLAG_RELIABLE);
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if (data_str) JS_FreeCString(ctx, data_str);
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if (!packet) return JS_ThrowInternalError(ctx, "Failed to create ENet packet");
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enet_host_broadcast(host, 0, packet);
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return JS_NULL;
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}
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static JSValue js_enet_host_get_port(JSContext *js, JSValueConst self, int argc, JSValueConst *argv)
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{
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ENetHost *host = JS_GetOpaque(self, enet_host_id);
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if (!host) return JS_EXCEPTION;
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return JS_NewInt32(js, host->address.port);
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}
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static JSValue js_enet_host_get_address(JSContext *js, JSValueConst self, int argc, JSValueConst *argv)
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{
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ENetHost *me = JS_GetOpaque(self, enet_host_id);
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if (!me) return JS_EXCEPTION;
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uint32_t host = ntohl(me->address.host);
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if (host == 0x7F000001) return JS_NewString(js, "localhost");
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char ip_str[16];
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snprintf(ip_str, sizeof(ip_str), "%u.%u.%u.%u",
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(host >> 24) & 0xFF,
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(host >> 16) & 0xFF,
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(host >> 8) & 0xFF,
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host & 0xFF);
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return JS_NewString(js, ip_str);
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}
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// Peer-level operations
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// Request a graceful disconnection from this peer. The connection will close after
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// pending data is sent.
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//
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// :return: None
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static JSValue js_enet_peer_disconnect(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
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if (!peer) return JS_EXCEPTION;
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enet_peer_disconnect(peer, 0);
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return JS_NULL;
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}
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// Send a string or ArrayBuffer to this peer on channel 0.
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//
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// :param data: A string or ArrayBuffer to send.
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// :return: None
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static JSValue js_enet_peer_send(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
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if (!peer) return JS_EXCEPTION;
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if (argc < 1) return JS_ThrowTypeError(ctx, "Expected a string or ArrayBuffer to send");
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const char *data_str = NULL;
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size_t data_len = 0;
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uint8_t *buf = NULL;
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if (JS_IsString(argv[0])) {
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data_str = JS_ToCStringLen(ctx, &data_len, argv[0]);
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if (!data_str) return JS_EXCEPTION;
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} else if (js_is_blob(ctx,argv[0])) {
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buf = js_get_blob_data(ctx, &data_len, argv[0]);
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if (!buf) return JS_EXCEPTION;
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} else {
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return JS_ThrowTypeError(ctx, "send() only accepts a string or ArrayBuffer");
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}
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ENetPacket *packet = enet_packet_create(data_str ? data_str : buf, data_len, ENET_PACKET_FLAG_RELIABLE);
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if (data_str) JS_FreeCString(ctx, data_str);
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if (!packet) return JS_ThrowInternalError(ctx, "Failed to create ENet packet");
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if (enet_peer_send(peer, 0, packet) < 0) return JS_ThrowInternalError(ctx, "Unable to send packet");
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return JS_NULL;
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}
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// Immediately terminate the connection to this peer, discarding any pending data.
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//
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// :return: None
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static JSValue js_enet_peer_disconnect_now(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
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if (!peer) return JS_EXCEPTION;
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enet_peer_disconnect_now(peer, 0);
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return JS_NULL;
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}
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// Request a disconnection from this peer after all queued packets are sent.
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//
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// :return: None
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static JSValue js_enet_peer_disconnect_later(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
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if (!peer) return JS_EXCEPTION;
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enet_peer_disconnect_later(peer, 0);
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return JS_NULL;
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}
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// Reset this peer's connection, immediately dropping it and clearing its internal state.
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//
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// :return: None
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static JSValue js_enet_peer_reset(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
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if (!peer) return JS_EXCEPTION;
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enet_peer_reset(peer);
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return JS_NULL;
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}
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// Send a ping request to this peer to measure latency.
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//
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// :return: None
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static JSValue js_enet_peer_ping(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
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if (!peer) return JS_EXCEPTION;
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enet_peer_ping(peer);
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return JS_NULL;
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}
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// Configure the throttling behavior for this peer, controlling how ENet adjusts its sending
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// rate based on packet loss or congestion.
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//
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// :param interval: The interval (ms) between throttle adjustments.
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// :param acceleration: The factor to increase sending speed when conditions improve.
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// :param deceleration: The factor to decrease sending speed when conditions worsen.
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// :return: None
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static JSValue js_enet_peer_throttle_configure(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
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if (!peer) return JS_EXCEPTION;
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int interval, acceleration, deceleration;
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if (argc < 3 || JS_ToInt32(ctx, &interval, argv[0]) || JS_ToInt32(ctx, &acceleration, argv[1]) || JS_ToInt32(ctx, &deceleration, argv[2]))
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return JS_ThrowTypeError(ctx, "Expected 3 int arguments: interval, acceleration, deceleration");
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enet_peer_throttle_configure(peer, interval, acceleration, deceleration);
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return JS_NULL;
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}
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static JSValue js_enet_peer_timeout(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
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{
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ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
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if (!peer) return JS_EXCEPTION;
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int timeout_limit, timeout_min, timeout_max;
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if (argc < 3 || JS_ToInt32(ctx, &timeout_limit, argv[0]) || JS_ToInt32(ctx, &timeout_min, argv[1]) || JS_ToInt32(ctx, &timeout_max, argv[2]))
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return JS_ThrowTypeError(ctx, "Expected 3 integer arguments: timeout_limit, timeout_min, timeout_max");
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enet_peer_timeout(peer, timeout_limit, timeout_min, timeout_max);
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return JS_NULL;
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}
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// Class definitions
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static JSClassDef enet_host = {
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"ENetHost",
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.finalizer = js_enet_host_finalizer,
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};
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static JSClassDef enet_peer_class = {
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"ENetPeer",
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.finalizer = js_enet_peer_finalizer,
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.gc_mark = js_enet_peer_mark
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};
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JSValue js_enet_resolve_hostname(JSContext *js, JSValue self, int argc, JSValue *argv)
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{
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// TODO: implement
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const char *hostname = JS_ToCString(js, argv[0]);
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JS_FreeCString(js, hostname);
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return JS_NULL;
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}
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static const JSCFunctionListEntry js_enet_funcs[] = {
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JS_CFUNC_DEF("initialize", 0, js_enet_initialize),
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JS_CFUNC_DEF("deinitialize", 0, js_enet_deinitialize),
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JS_CFUNC_DEF("create_host", 1, js_enet_host_create),
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JS_CFUNC_DEF("resolve_hostname", 1, js_enet_resolve_hostname),
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};
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static const JSCFunctionListEntry js_enet_host_funcs[] = {
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JS_CFUNC_DEF("service", 2, js_enet_host_service),
|
|
JS_CFUNC_DEF("connect", 2, js_enet_host_connect),
|
|
JS_CFUNC_DEF("flush", 0, js_enet_host_flush),
|
|
JS_CFUNC_DEF("broadcast", 1, js_enet_host_broadcast),
|
|
JS_CGETSET_DEF("port", js_enet_host_get_port, NULL),
|
|
JS_CGETSET_DEF("address", js_enet_host_get_address, NULL),
|
|
};
|
|
|
|
static JSValue js_enet_peer_get_rtt(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
|
|
{
|
|
ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
|
|
if (!peer) return JS_EXCEPTION;
|
|
return JS_NewInt32(ctx, peer->roundTripTime);
|
|
}
|
|
|
|
static JSValue js_enet_peer_get_incoming_bandwidth(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
|
|
{
|
|
ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
|
|
if (!peer) return JS_EXCEPTION;
|
|
if (peer->incomingBandwidth == 0) return JS_NewFloat64(ctx, INFINITY);
|
|
return JS_NewInt32(ctx, peer->incomingBandwidth);
|
|
}
|
|
|
|
static JSValue js_enet_peer_get_outgoing_bandwidth(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
|
|
{
|
|
ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
|
|
if (!peer) return JS_EXCEPTION;
|
|
if (peer->outgoingBandwidth == 0) return JS_NewFloat64(ctx, INFINITY);
|
|
return JS_NewInt32(ctx, peer->outgoingBandwidth);
|
|
}
|
|
|
|
static JSValue js_enet_peer_get_last_send_time(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
|
|
{
|
|
ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
|
|
if (!peer) return JS_EXCEPTION;
|
|
return JS_NewInt32(ctx, peer->lastSendTime);
|
|
}
|
|
|
|
static JSValue js_enet_peer_get_last_receive_time(JSContext *ctx, JSValueConst this_val, int argc, JSValueConst *argv)
|
|
{
|
|
ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
|
|
if (!peer) return JS_EXCEPTION;
|
|
return JS_NewInt32(ctx, peer->lastReceiveTime);
|
|
}
|
|
|
|
static JSValue js_enet_peer_get_mtu(JSContext *ctx, JSValueConst this_val)
|
|
{
|
|
ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
|
|
if (!peer) return JS_NewFloat64(ctx, INFINITY);
|
|
return JS_NewInt32(ctx, peer->mtu);
|
|
}
|
|
|
|
static JSValue js_enet_peer_get_outgoing_data_total(JSContext *ctx, JSValueConst this_val)
|
|
{
|
|
ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
|
|
if (!peer) return JS_NewFloat64(ctx, INFINITY);
|
|
return JS_NewInt32(ctx, peer->outgoingDataTotal);
|
|
}
|
|
|
|
static JSValue js_enet_peer_get_incoming_data_total(JSContext *ctx, JSValueConst this_val)
|
|
{
|
|
ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
|
|
if (!peer) return JS_NewFloat64(ctx, INFINITY);
|
|
return JS_NewInt32(ctx, peer->incomingDataTotal);
|
|
}
|
|
|
|
static JSValue js_enet_peer_get_rtt_variance(JSContext *ctx, JSValueConst this_val)
|
|
{
|
|
ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
|
|
if (!peer) return JS_NewFloat64(ctx, INFINITY);
|
|
return JS_NewInt32(ctx, peer->roundTripTimeVariance);
|
|
}
|
|
|
|
static JSValue js_enet_peer_get_packet_loss(JSContext *ctx, JSValueConst this_val)
|
|
{
|
|
ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
|
|
if (!peer) return JS_NewFloat64(ctx, INFINITY);
|
|
return JS_NewInt32(ctx, peer->packetLoss);
|
|
}
|
|
|
|
static JSValue js_enet_peer_get_state(JSContext *ctx, JSValueConst this_val)
|
|
{
|
|
ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
|
|
if (!peer) return JS_NewInt32(ctx, -1);
|
|
return JS_NewInt32(ctx, peer->state);
|
|
}
|
|
|
|
static JSValue js_enet_peer_get_reliable_data_in_transit(JSContext *ctx, JSValueConst this_val)
|
|
{
|
|
ENetPeer *peer = JS_GetOpaque(this_val, enet_peer_class_id);
|
|
if (!peer) return JS_NewFloat64(ctx, INFINITY);
|
|
return JS_NewInt32(ctx, peer->reliableDataInTransit);
|
|
}
|
|
|
|
static JSValue js_enet_peer_get_port(JSContext *js, JSValueConst self)
|
|
{
|
|
ENetPeer *peer = JS_GetOpaque(self, enet_peer_class_id);
|
|
return JS_NewUint32(js, peer->address.port);
|
|
}
|
|
|
|
static JSValue js_enet_peer_get_address(JSContext *js, JSValueConst self)
|
|
{
|
|
ENetPeer *peer = JS_GetOpaque(self, enet_peer_class_id);
|
|
uint32_t host = ntohl(peer->address.host);
|
|
if (host == 0x7F000001) return JS_NewString(js, "localhost");
|
|
|
|
char ip_str[16];
|
|
snprintf(ip_str, sizeof(ip_str), "%u.%u.%u.%u",
|
|
(host >> 24) & 0xFF,
|
|
(host >> 16) & 0xFF,
|
|
(host >> 8) & 0xFF,
|
|
host & 0xFF);
|
|
return JS_NewString(js, ip_str);
|
|
}
|
|
|
|
static const JSCFunctionListEntry js_enet_peer_funcs[] = {
|
|
JS_CFUNC_DEF("send", 1, js_enet_peer_send),
|
|
JS_CFUNC_DEF("disconnect", 0, js_enet_peer_disconnect),
|
|
JS_CFUNC_DEF("disconnect_now", 0, js_enet_peer_disconnect_now),
|
|
JS_CFUNC_DEF("disconnect_later", 0, js_enet_peer_disconnect_later),
|
|
JS_CFUNC_DEF("reset", 0, js_enet_peer_reset),
|
|
JS_CFUNC_DEF("ping", 0, js_enet_peer_ping),
|
|
JS_CFUNC_DEF("throttle_configure", 3, js_enet_peer_throttle_configure),
|
|
JS_CFUNC_DEF("timeout", 3, js_enet_peer_timeout),
|
|
JS_CGETSET_DEF("rtt", js_enet_peer_get_rtt, NULL),
|
|
JS_CGETSET_DEF("incoming_bandwidth", js_enet_peer_get_incoming_bandwidth, NULL),
|
|
JS_CGETSET_DEF("outgoing_bandwidth", js_enet_peer_get_outgoing_bandwidth, NULL),
|
|
JS_CGETSET_DEF("last_send_time", js_enet_peer_get_last_send_time, NULL),
|
|
JS_CGETSET_DEF("last_receive_time", js_enet_peer_get_last_receive_time, NULL),
|
|
JS_CGETSET_DEF("mtu", js_enet_peer_get_mtu, NULL),
|
|
JS_CGETSET_DEF("outgoing_data_total", js_enet_peer_get_outgoing_data_total, NULL),
|
|
JS_CGETSET_DEF("incoming_data_total", js_enet_peer_get_incoming_data_total, NULL),
|
|
JS_CGETSET_DEF("rtt_variance", js_enet_peer_get_rtt_variance, NULL),
|
|
JS_CGETSET_DEF("packet_loss", js_enet_peer_get_packet_loss, NULL),
|
|
JS_CGETSET_DEF("state", js_enet_peer_get_state, NULL),
|
|
JS_CGETSET_DEF("reliable_data_in_transit", js_enet_peer_get_reliable_data_in_transit, NULL),
|
|
JS_CGETSET_DEF("port", js_enet_peer_get_port, NULL),
|
|
JS_CGETSET_DEF("address", js_enet_peer_get_address, NULL),
|
|
};
|
|
|
|
JSValue js_enet_use(JSContext *ctx)
|
|
{
|
|
JS_NewClassID(&enet_host_id);
|
|
JS_NewClass(JS_GetRuntime(ctx), enet_host_id, &enet_host);
|
|
JSValue host_proto = JS_NewObject(ctx);
|
|
JS_SetPropertyFunctionList(ctx, host_proto, js_enet_host_funcs, countof(js_enet_host_funcs));
|
|
JS_SetClassProto(ctx, enet_host_id, host_proto);
|
|
|
|
JS_NewClassID(&enet_peer_class_id);
|
|
JS_NewClass(JS_GetRuntime(ctx), enet_peer_class_id, &enet_peer_class);
|
|
JSValue peer_proto = JS_NewObject(ctx);
|
|
JS_SetPropertyFunctionList(ctx, peer_proto, js_enet_peer_funcs, countof(js_enet_peer_funcs));
|
|
JS_SetClassProto(ctx, enet_peer_class_id, peer_proto);
|
|
|
|
JSValue export_obj = JS_NewObject(ctx);
|
|
JS_SetPropertyFunctionList(ctx, export_obj, js_enet_funcs, countof(js_enet_funcs));
|
|
return export_obj;
|
|
}
|