mirror of https://github.com/cy384/ssheven.git
334 lines
8.6 KiB
C
334 lines
8.6 KiB
C
/*
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* ssheven
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*
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* Copyright (c) 2020 by cy384 <cy384@cy384.com>
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* See LICENSE file for details
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*/
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// retro68 stdio/console library
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#include <stdio.h>
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// open transport
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#include <OpenTransport.h>
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#include <OpenTptInternet.h>
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// mac os threads
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#include <Threads.h>
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// libssh2
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#include <libssh2.h>
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const char* libssh2_error_string(int i)
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{
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switch (i)
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{
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case LIBSSH2_ERROR_NONE:
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return "no error (LIBSSH2_ERROR_NONE)";
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case LIBSSH2_ERROR_BANNER_RECV:
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return "LIBSSH2_ERROR_BANNER_RECV";
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case LIBSSH2_ERROR_BANNER_SEND:
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return "LIBSSH2_ERROR_BANNER_SEND";
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case LIBSSH2_ERROR_INVALID_MAC:
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return "LIBSSH2_ERROR_INVALID_MAC";
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case LIBSSH2_ERROR_KEX_FAILURE:
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return "LIBSSH2_ERROR_KEX_FAILURE";
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case LIBSSH2_ERROR_ALLOC:
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return "LIBSSH2_ERROR_ALLOC";
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case LIBSSH2_ERROR_SOCKET_SEND:
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return "LIBSSH2_ERROR_SOCKET_SEND";
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case LIBSSH2_ERROR_KEY_EXCHANGE_FAILURE:
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return "LIBSSH2_ERROR_KEY_EXCHANGE_FAILURE";
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case LIBSSH2_ERROR_TIMEOUT:
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return "LIBSSH2_ERROR_TIMEOUT";
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case LIBSSH2_ERROR_HOSTKEY_INIT:
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return "LIBSSH2_ERROR_HOSTKEY_INIT";
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case LIBSSH2_ERROR_HOSTKEY_SIGN:
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return "LIBSSH2_ERROR_HOSTKEY_SIGN";
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case LIBSSH2_ERROR_DECRYPT:
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return "LIBSSH2_ERROR_DECRYPT";
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case LIBSSH2_ERROR_SOCKET_DISCONNECT:
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return "LIBSSH2_ERROR_SOCKET_DISCONNECT";
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case LIBSSH2_ERROR_PROTO:
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return "LIBSSH2_ERROR_PROTO";
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case LIBSSH2_ERROR_PASSWORD_EXPIRED:
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return "LIBSSH2_ERROR_PASSWORD_EXPIRED";
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case LIBSSH2_ERROR_FILE:
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return "LIBSSH2_ERROR_FILE";
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case LIBSSH2_ERROR_METHOD_NONE:
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return "LIBSSH2_ERROR_METHOD_NONE";
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case LIBSSH2_ERROR_AUTHENTICATION_FAILED:
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return "LIBSSHLIBSSH2_ERROR_AUTHENTICATION_FAILED2_ERROR_NONE";
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case LIBSSH2_ERROR_PUBLICKEY_UNVERIFIED:
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return "LIBSSH2_ERROR_PUBLICKEY_UNVERIFIED";
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case LIBSSH2_ERROR_CHANNEL_OUTOFORDER:
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return "LIBSSH2_ERROR_CHANNEL_OUTOFORDER";
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case LIBSSH2_ERROR_CHANNEL_FAILURE:
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return "LIBSSH2_ERROR_CHANNEL_FAILURE";
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case LIBSSH2_ERROR_CHANNEL_REQUEST_DENIED:
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return "LIBSSH2_ERROR_CHANNEL_REQUEST_DENIED";
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case LIBSSH2_ERROR_CHANNEL_UNKNOWN:
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return "LIBSSH2_ERROR_CHANNEL_UNKNOWN";
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case LIBSSH2_ERROR_CHANNEL_WINDOW_EXCEEDED:
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return "LIBSSH2_ERROR_CHANNEL_WINDOW_EXCEEDED";
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case LIBSSH2_ERROR_CHANNEL_PACKET_EXCEEDED:
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return "LIBSSH2_ERROR_CHANNEL_PACKET_EXCEEDED";
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case LIBSSH2_ERROR_CHANNEL_CLOSED:
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return "LIBSSH2_ERROR_CHANNEL_CLOSED";
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case LIBSSH2_ERROR_CHANNEL_EOF_SENT:
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return "LIBSSH2_ERROR_CHANNEL_EOF_SENT";
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case LIBSSH2_ERROR_SCP_PROTOCOL:
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return "LIBSSH2_ERROR_SCP_PROTOCOL";
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case LIBSSH2_ERROR_ZLIB:
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return "LIBSSH2_ERROR_ZLIB";
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case LIBSSH2_ERROR_SOCKET_TIMEOUT:
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return "LIBSSH2_ERROR_SOCKET_TIMEOUT";
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case LIBSSH2_ERROR_SFTP_PROTOCOL:
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return "LIBSSH2_ERROR_SFTP_PROTOCOL";
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case LIBSSH2_ERROR_REQUEST_DENIED:
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return "LIBSSH2_ERROR_REQUEST_DENIED";
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case LIBSSH2_ERROR_METHOD_NOT_SUPPORTED:
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return "LIBSSH2_ERROR_METHOD_NOT_SUPPORTED";
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case LIBSSH2_ERROR_INVAL:
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return "LIBSSH2_ERROR_INVAL";
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case LIBSSH2_ERROR_INVALID_POLL_TYPE:
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return "LIBSSH2_ERROR_INVALID_POLL_TYPE";
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case LIBSSH2_ERROR_PUBLICKEY_PROTOCOL:
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return "LIBSSH2_ERROR_PUBLICKEY_PROTOCOL";
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case LIBSSH2_ERROR_EAGAIN:
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return "LIBSSH2_ERROR_EAGAIN";
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case LIBSSH2_ERROR_BUFFER_TOO_SMALL:
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return "LIBSSH2_ERROR_BUFFER_TOO_SMALL";
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case LIBSSH2_ERROR_BAD_USE:
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return "LIBSSH2_ERROR_BAD_USE";
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case LIBSSH2_ERROR_COMPRESS:
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return "LIBSSH2_ERROR_COMPRESS";
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case LIBSSH2_ERROR_OUT_OF_BOUNDARY:
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return "LIBSSH2_ERROR_OUT_OF_BOUNDARY";
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case LIBSSH2_ERROR_AGENT_PROTOCOL:
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return "LIBSSH2_ERROR_SOCKET_RECV";
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case LIBSSH2_ERROR_SOCKET_RECV:
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return "LIBSSH2_ERROR_ENCRYPT";
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case LIBSSH2_ERROR_ENCRYPT:
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return "LIBSSH2_ERROR_ENCRYPT";
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case LIBSSH2_ERROR_BAD_SOCKET:
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return "LIBSSH2_ERROR_BAD_SOCKET";
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case LIBSSH2_ERROR_KNOWN_HOSTS:
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return "LIBSSH2_ERROR_KNOWN_HOSTS";
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case LIBSSH2_ERROR_CHANNEL_WINDOW_FULL:
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return "LIBSSH2_ERROR_CHANNEL_WINDOW_FULL";
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case LIBSSH2_ERROR_KEYFILE_AUTH_FAILED:
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return "LIBSSH2_ERROR_KEYFILE_AUTH_FAILED";
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default:
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return "unknown error number";
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}
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return "what???";
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}
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enum { buffer_size = 4096 };
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void assertp(char* message, int b)
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{
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if (!b) printf("assert fail: %s (%d)\n", message, b);
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}
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// event handler to yield whenever we're blocked
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static pascal void yield_notifier(void* contextPtr, OTEventCode code, OTResult result, void* cookie)
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{
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switch (code)
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{
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case kOTSyncIdleEvent:
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YieldToAnyThread();
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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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void do_ssh_connection(void)
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{
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char* hostname = "10.0.2.2:22";
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char* username = "ssheven";
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char* password = "password";
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char* command = "uname -a";
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LIBSSH2_CHANNEL* channel;
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LIBSSH2_SESSION* session;
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int rc;
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// make and set up OT connection
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OSStatus err = noErr;
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Ptr buffer = nil;
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EndpointRef endpoint = kOTInvalidEndpointRef;
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TCall sndCall;
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DNSAddress hostDNSAddress;
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// allocate buffer
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buffer = OTAllocMem(buffer_size);
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if (buffer == nil)
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{
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printf("could not get memory!!!\n");
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return;
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}
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else
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{
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printf("got OT buffer\n");
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}
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// open TCP endpoint
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endpoint = OTOpenEndpoint(OTCreateConfiguration(kTCPName), 0, nil, &err);
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assertp("endpoint opened", err == noErr);
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if (err != noErr) return;
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// configure the endpoint
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// synchronous and blocking, and we yield until we get a result
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OSStatus result;
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result = OTSetSynchronous(endpoint);
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assertp("OTSetSynchronous failed", result == noErr);
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result = OTSetBlocking(endpoint);
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assertp("OTSetBlocking failed", result == noErr);
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result = OTInstallNotifier(endpoint, yield_notifier, nil);
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assertp("OTInstallNotifier failed", result == noErr);
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result = OTUseSyncIdleEvents(endpoint, true);
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assertp("OTUseSyncIdleEvents failed", result == noErr);
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err = OTBind(endpoint, nil, nil);
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assertp("OTBind failed", err == noErr);
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if (err != noErr) return;
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// set up address struct and connect
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OTMemzero(&sndCall, sizeof(TCall));
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sndCall.addr.buf = (UInt8 *) &hostDNSAddress;
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sndCall.addr.len = OTInitDNSAddress(&hostDNSAddress, (char *) hostname);
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err = OTConnect(endpoint, &sndCall, nil);
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assertp("OTConnect failed", err == noErr);
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if (err != noErr) return;
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printf("OT setup done, endpoint: %d, (should not be %d for libssh2, should not be %d for OT)\n", (int) endpoint, (int) LIBSSH2_INVALID_SOCKET, (int) kOTInvalidEndpointRef);
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// init libssh2
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rc = libssh2_init(0);
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printf("init rc %s\n", libssh2_error_string(rc));
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session = libssh2_session_init();
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if (session != 0)
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{
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printf("session ok\n");
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}
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else
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{
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printf("session fail\n");
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return;
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}
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rc = libssh2_session_handshake(session, endpoint);
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printf("handshake rc %s\n", libssh2_error_string(rc));
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if (rc != LIBSSH2_ERROR_NONE) return;
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rc = libssh2_userauth_password(session, username, password);
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printf("authenticate rc %s\n", libssh2_error_string(rc));
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if (rc != LIBSSH2_ERROR_NONE) return;
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channel = libssh2_channel_open_session(session);
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printf("channel open: %d\n", channel);
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printf("sending command \"%s\"\n", command);
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rc = libssh2_channel_exec(channel, command);
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printf("libssh2_channel_exec rc %s\n", libssh2_error_string(rc));
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// read from the channel
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rc = libssh2_channel_read(channel, buffer, buffer_size);
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if (rc > 0)
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{
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printf("got %d bytes:\n", rc);
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for(int i = 0; i < rc; ++i) printf("%c", buffer[i]);
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printf("\n");
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}
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else
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{
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printf("channel read error: %s\n", libssh2_error_string(rc));
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}
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rc = libssh2_channel_close(channel);
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printf("libssh2_channel_close rc %s\n", libssh2_error_string(rc));
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libssh2_channel_free(channel);
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libssh2_session_disconnect(session, "Normal Shutdown, Thank you for playing");
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libssh2_session_free(session);
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libssh2_exit();
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// request to close the TCP connection
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rc = OTSndOrderlyDisconnect(endpoint);
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assertp("OTSndOrderlyDisconnect failed", rc == noErr);
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// get any remaining data so we can finish closing the connection
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OTFlags ot_flags;
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rc = 1;
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while (rc != kOTLookErr)
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{
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rc = OTRcv(endpoint, buffer, 1, &ot_flags);
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}
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// finish closing the TCP connection
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OTResult look_result = OTLook(endpoint);
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switch (look_result)
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{
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case T_DISCONNECT:
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err = OTRcvDisconnect(endpoint, nil);
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break;
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default:
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printf("other connection error: %d\n", look_result);
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break;
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}
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// release endpoint
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result = OTUnbind(endpoint);
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assertp("OTUnbind failed", result == noErr);
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result = OTCloseProvider(endpoint);
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assertp("OTCloseProvider failed", result == noErr);
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// if we got a buffer, release it
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if (buffer != nil) OTFreeMem(buffer);
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return;
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}
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int main(int argc, char** argv)
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{
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printf("starting up\n");
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if (InitOpenTransport() != noErr)
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{
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printf("failed to init OT \n");
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return 0;
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}
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do_ssh_connection();
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CloseOpenTransport();
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printf("\n(a to exit)\n");
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while (getchar() != 'a');
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return 0;
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}
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