R_API int r_core_visual_prompt (RCore *core) { char buf[1024]; int ret; #if __UNIX__ r_line_set_prompt (Color_RESET":> "); #else r_line_set_prompt (":> "); #endif showcursor (core, true); r_cons_fgets (buf, sizeof (buf), 0, NULL); if (!strcmp (buf, "q")) { ret = false; } else if (*buf) { r_line_hist_add (buf); r_core_cmd (core, buf, 0); r_cons_flush (); ret = true; } else { ret = false; //r_cons_any_key (NULL); r_cons_clear00 (); showcursor (core, false); } return ret; }
R_API int r_core_visual_prompt (RCore *core) { char buf[1024]; int ret; ut64 oseek = core->offset; #if __UNIX__ r_line_set_prompt (Color_RESET":> "); #else r_line_set_prompt (":> "); #endif showcursor (core, R_TRUE); r_cons_fgets (buf, sizeof (buf), 0, NULL); if (*buf) { r_line_hist_add (buf); r_core_cmd (core, buf, 0); r_cons_flush (); ret = R_TRUE; } else { ret = R_FALSE; //r_cons_any_key (); r_cons_clear00 (); showcursor (core, R_FALSE); } if (curset) r_core_seek (core, oseek, 1); return ret; }
R_API void r_core_visual_prompt (RCore *core) { char buf[1024]; ut64 oseek = core->offset; #if __UNIX__ r_line_set_prompt (Color_RESET":> "); #else r_line_set_prompt (":> "); #endif r_cons_show_cursor (R_TRUE); r_cons_fgets (buf, sizeof (buf), 0, NULL); r_line_hist_add (buf); r_core_cmd (core, buf, 0); r_cons_any_key (); r_cons_clear00 (); r_cons_show_cursor (R_FALSE); if (curset) r_core_seek (core, oseek, 1); }
int main() { const char *str; RLine *line = r_line_new (); r_cons_new (); line->completion.run = (RLineCallback) complete; #if 0 if (!r_line_init ()) { printf ("Cannot initizalize r_line\n"); return 0; } #endif for (;;) { str = r_line_readline (0, NULL); if (str == NULL) // catch eof break; printf ("%s\n", str); r_line_hist_add (str); } r_line_free (); return 0; }
R_API void r_core_rtr_add(RCore *core, const char *_input) { char *port, input[1024], *host = NULL, *file = NULL, *ptr = NULL, buf[1024]; int proto, i, timeout, ret; RSocket *fd; timeout = r_config_get_i (core->config, "http.timeout"); strncpy (input, _input, sizeof (input)-4); /* Parse uri */ if ((ptr = strstr (input, "tcp://"))) { proto = RTR_PROT_TCP; host = ptr+6; } else if ((ptr = strstr(input, "http://"))) { proto = RTR_PROT_HTTP; host = ptr+7; } else if ((ptr = strstr(input, "udp://"))) { proto = RTR_PROT_UDP; host = ptr+6; } else if ((ptr = strstr(input, "rap://"))) { proto = RTR_PROT_RAP; host = ptr+6; } else { proto = RTR_PROT_RAP; host = input; } while (*host && iswhitechar (*host)) host++; if (!(ptr = strchr (host, ':'))) { ptr = host; port = "80"; } else { *ptr++ = '\0'; port = ptr; } if (!(file = strchr (ptr, '/'))) { eprintf("Error: Missing '/'\n"); return; } *file++ = 0; port = r_str_chop (port); while (*file==' ') file++; if (r_sandbox_enable (0)) { eprintf ("sandbox: connect disabled\n"); return; } fd = r_socket_new (R_FALSE); if (!fd) { eprintf ("Error: Cannot create new socket\n"); return; } switch (proto) { case RTR_PROT_HTTP: { char uri[1024], prompt[64]; int len; char *str, *res; if (file[strlen (file)-1]=='/') { snprintf (prompt, sizeof (prompt), "[http://%s:%s/%s]> ", host, port, file); r_line_set_prompt (prompt); for (;;) { char *ptr, *str = r_line_readline (); if (!str || !*str) break; if (*str == 'q') break; ptr = r_str_uri_encode (str); if (ptr) str = ptr; snprintf (uri, sizeof (uri), "http://%s:%s/%s%s", host, port, file, str); if (ptr == str) free (ptr); str = r_socket_http_get (uri, NULL, &len); if (str) { str[len] = 0; res = strstr (str, "\n\n"); if (res) res = strstr (res+1, "\n\n"); if (res) res += 2; else res = str; printf ("%s%s", res, (res[strlen (res)-1]=='\n')?"":"\n"); r_line_hist_add (str); free (str); } } r_socket_free (fd); return; } snprintf (uri, sizeof (uri), "http://%s:%s/%s", host, port, file); str = r_socket_http_get (uri, NULL, &len); if (str) { str[len] = 0; res = strstr (str, "\n\n"); if (res) res = strstr (res+1, "\n\n"); if (res) res += 2; else res = str; printf ("%s", res); free (str); } else eprintf ("HTTP connection has failed\n"); // do not add connection. wtf return; } break; case RTR_PROT_RAP: if (!r_socket_connect_tcp (fd, host, port, timeout)) { //TODO: Use rap.ssl eprintf ("Error: Cannot connect to '%s' (%s)\n", host, port); return; } eprintf ("Connected to %s at port %s\n", host, port); /* send */ buf[0] = RTR_RAP_OPEN; buf[1] = 0; buf[2] = (ut8)(strlen (file)+1); memcpy (buf+3, file, buf[2]); r_socket_write(fd, buf, 3+buf[2]); /* read */ eprintf ("waiting... "); fflush(stdout); r_socket_read (fd, (ut8*)buf, 5); r_mem_copyendian ((ut8 *)&i, (ut8*)buf+1, 4, core->assembler->big_endian); if (buf[0] != (char)(RTR_RAP_OPEN|RTR_RAP_REPLY) || i<= 0) { eprintf ("Error: Wrong reply\n"); return; } eprintf ("ok\n"); break; case RTR_PROT_TCP: if (!r_socket_connect_tcp (fd, host, port, timeout)) { //TODO: Use rap.ssl core->num->value = 1; eprintf("Error: Cannot connect to '%s' (%s)\n", host, port); return; } core->num->value = 0; eprintf ("Connected to: %s at port %s\n", host, port); break; case RTR_PROT_UDP: if (!r_socket_connect_udp (fd, host, port, timeout)) { //TODO: Use rap.ssl core->num->value = 1; eprintf ("Error: Cannot connect to '%s' (%s)\n", host, port); return; } core->num->value = 0; eprintf("Connected to: %s at port %s\n", host, port); break; } ret = core->num->value; for (i = 0; i < RTR_MAX_HOSTS; i++) if (!rtr_host[i].fd) { rtr_host[i].proto = proto; memcpy (rtr_host[i].host, host, 512); rtr_host[i].port = r_num_get (core->num, port); memcpy (rtr_host[i].file, file, 1024); rtr_host[i].fd = fd; rtr_n = i; break; } core->num->value = ret; r_socket_free(fd); //r_core_rtr_list (core); }