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/*
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* Copyright 2014 Andrew Smith
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* Copyright 2014 Con Kolivas
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the Free
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* Software Foundation; either version 3 of the License, or (at your option)
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* any later version. See COPYING for more details.
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*/
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#include "ckdb.h"
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#define BTCKEY ((const char *)"result")
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#define GETBLOCKHASHCMD "getblockhash"
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#define GETBLOCKHASH "{\"method\":\"" GETBLOCKHASHCMD "\",\"params\":[%d],\"id\":1}"
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#define GETBLOCKHASHKEY NULL
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#define GETBLOCKCMD "getblock"
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#define GETBLOCK "{\"method\":\"" GETBLOCKCMD "\",\"params\":[\"%s\"],\"id\":1}"
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#define GETBLOCKCONFKEY ((const char *)"confirmations")
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static char *btc_data(char *json, size_t *len)
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{
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size_t off;
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char tmp[1024];
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char *buf;
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APPEND_REALLOC_INIT(buf, off, *len);
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APPEND_REALLOC(buf, off, *len, "POST / HTTP/1.1\n");
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snprintf(tmp, sizeof(tmp), "Authorization: Basic %s\n", btc_auth);
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APPEND_REALLOC(buf, off, *len, tmp);
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snprintf(tmp, sizeof(tmp), "Host: %s/\n", btc_server);
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APPEND_REALLOC(buf, off, *len, tmp);
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APPEND_REALLOC(buf, off, *len, "Content-Type: application/json\n");
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snprintf(tmp, sizeof(tmp), "Content-Length: %d\n\n", (int)strlen(json));
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APPEND_REALLOC(buf, off, *len, tmp);
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APPEND_REALLOC(buf, off, *len, json);
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return buf;
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}
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#define SOCK_READ 8192
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static int read_socket(int fd, char **buf, int timeout)
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{
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char tmp[SOCK_READ+1];
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int ret, off, len;
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tv_t tv_timeout;
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fd_set readfs;
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len = SOCK_READ;
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*buf = malloc(len+1);
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if (!(*buf))
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quithere(1, "malloc (%d) OOM", len+1);
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off = 0;
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while (42) {
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tv_timeout.tv_sec = timeout;
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tv_timeout.tv_usec = 0;
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FD_ZERO(&readfs);
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FD_SET(fd, &readfs);
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ret = select(fd + 1, &readfs, NULL, NULL, &tv_timeout);
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if (ret == 0)
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break;
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if (ret < 0) {
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LOGERR("%s() btc socket select error %d:%s",
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__func__, errno, strerror(errno));
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break;
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}
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ret = recv(fd, tmp, SOCK_READ, 0);
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if (ret == 0)
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break;
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if (ret < 0) {
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LOGERR("%s() btc socket recv error %d:%s",
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__func__, errno, strerror(errno));
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break;
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}
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if ((off + ret) > len) {
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len += SOCK_READ;
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*buf = realloc(*buf, len + 1);
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if (!(*buf))
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quithere(1, "realloc (%d) OOM", len);
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}
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memcpy(*buf + off, tmp, ret);
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off += ret;
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}
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if (close(fd)) {
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LOGERR("%s() btc socket close error %d:%s",
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__func__, errno, strerror(errno));
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}
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return off;
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}
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#define btc_io(_cmd, _json) _btc_io(_cmd, _json, WHERE_FFL_HERE)
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static char *_btc_io(__maybe_unused const char *cmd, char *json, WHERE_FFL_ARGS)
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{
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char *ip, *port;
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char *data, *ans, *res, *ptr;
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int fd, ret, red;
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size_t len;
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data = btc_data(json, &len);
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if (!extract_sockaddr(btc_server, &ip, &port)) {
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LOGERR("%s() invalid btc server '%s'",
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__func__, btc_server);
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return NULL;
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}
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fd = connect_socket(ip, port);
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if (fd < 0) {
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LOGERR("%s() failed to connect to btc server %s",
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__func__, btc_server);
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return NULL;
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}
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ret = write_socket(fd, data, len);
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if (ret != (int)len) {
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LOGERR("%s() failed to write to btc server %s",
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__func__, btc_server);
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return NULL;
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}
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red = read_socket(fd, &ans, btc_timeout);
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ans[red] = '\0';
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if (strncasecmp(ans, "HTTP/1.1 200 OK", 15)) {
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char *text = safe_text(ans);
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LOGERR("%s() btc server response not ok: %s",
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__func__, text);
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free(text);
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free(ans);
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res = strdup(EMPTY);
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} else {
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ptr = strstr(ans, "\n{");
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if (ptr)
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res = strdup(ptr+1);
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else
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res = strdup(EMPTY);
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free(ans);
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}
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return res;
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}
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static json_t *single_decode(char *ans, const char *cmd, const char *key)
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{
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json_t *json_data, *btc_ob, *json_ob = NULL;
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json_error_t err_val;
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if (ans && *ans) {
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json_data = json_loads(ans, JSON_DISABLE_EOF_CHECK, &err_val);
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if (!json_data) {
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char *text = safe_text(ans);
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LOGERR("%s() Json %s decode error "
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"json_err=(%d:%d:%d)%s:%s ans='%s'",
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__func__, cmd,
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err_val.line, err_val.column,
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err_val.position, err_val.source,
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err_val.text, text);
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free(text);
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} else {
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btc_ob = json_object_get(json_data, BTCKEY);
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if (!btc_ob) {
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char *text = safe_text(ans);
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LOGERR("%s() Json %s reply missing main key %s "
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"ans='%s'",
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__func__, cmd, key, text);
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free(text);
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} else {
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if (key == NULL)
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json_ob = btc_ob;
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else {
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json_ob = json_object_get(btc_ob, key);
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if (!json_ob) {
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char *text = safe_text(ans);
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LOGERR("%s() Json %s reply missing "
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"sub-key %s ans='%s'",
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__func__, cmd, key, text);
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free(text);
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}
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}
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}
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}
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}
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return json_ob;
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}
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static char *single_decode_str(char *ans, const char *cmd, const char *key)
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{
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const char *json_str;
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char *str = NULL;
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json_t *json_ob;
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json_ob = single_decode(ans, cmd, key);
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if (json_ob) {
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if (!json_is_string(json_ob)) {
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char *text = safe_text(ans);
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if (!key)
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key = BTCKEY;
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LOGERR("%s() Json %s key %s "
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"not a string ans='%s'",
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__func__, cmd, key, text);
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free(text);
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} else {
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json_str = json_string_value(json_ob);
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if (json_str)
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str = strdup(json_str);
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}
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}
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return str;
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}
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static int64_t single_decode_int(char *ans, const char *cmd, const char *key)
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{
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json_t *json_ob;
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int64_t val = 0;
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json_ob = single_decode(ans, cmd, key);
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if (json_ob) {
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if (!json_is_integer(json_ob)) {
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char *text = safe_text(ans);
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if (!key)
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key = BTCKEY;
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LOGERR("%s() Json %s key %s "
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"not an int ans='%s'",
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__func__, cmd, key, text);
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free(text);
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} else
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val = (int64_t)json_integer_value(json_ob);
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}
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return val;
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}
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static char *btc_blockhash(int32_t height)
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{
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char buf[1024];
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char *ans;
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char *hash;
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snprintf(buf, sizeof(buf), GETBLOCKHASH, height);
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ans = btc_io(GETBLOCKHASHCMD, buf);
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hash = single_decode_str(ans, GETBLOCKHASHCMD, GETBLOCKHASHKEY);
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free(ans);
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return hash;
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}
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static int32_t btc_confirms(char *hash)
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{
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char buf[1024];
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char *ans;
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int32_t conf;
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snprintf(buf, sizeof(buf), GETBLOCK, hash);
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ans = btc_io(GETBLOCKCMD, buf);
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conf = (int32_t)single_decode_int(ans, GETBLOCKCMD, GETBLOCKCONFKEY);
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free(ans);
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return conf;
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}
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// Check for orphan or update confirm count
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void btc_blockstatus(BLOCKS *blocks)
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{
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char hash[TXT_BIG+1];
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char height_str[32];
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char *blockhash;
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int32_t confirms;
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size_t len;
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tv_t now;
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bool ok;
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setnow(&now);
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LOGDEBUG("%s() checking %d %s",
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__func__,
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blocks->height, blocks->blockhash);
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// Caller must check this to avoid resending it every time
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if (blocks->ignore) {
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LOGERR("%s() ignored block %d passed",
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__func__, blocks->height);
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return;
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}
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len = strlen(blocks->blockhash);
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if (len != SHA256SIZHEX) {
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LOGERR("%s() invalid blockhash size %d (%d) for block %d",
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__func__, len, SHA256SIZHEX, blocks->height);
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/* So we don't keep repeating the message
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* This should never happen */
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blocks->ignore = true;
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return;
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}
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dbhash2btchash(blocks->blockhash, hash, sizeof(hash));
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blockhash = btc_blockhash(blocks->height);
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// Something's amiss - let it try again later
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if (!blockhash)
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return;
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if (strcmp(blockhash, hash) != 0) {
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snprintf(height_str, sizeof(height_str), "%d", blocks->height);
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LOGERR("%s() flagging block %d(%s) as %s pool=%s btc=%s",
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__func__,
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blocks->height, height_str,
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blocks_confirmed(BLOCKS_ORPHAN_STR),
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hash, blockhash);
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ok = blocks_add(NULL, height_str,
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blocks->blockhash,
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BLOCKS_ORPHAN_STR,
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EMPTY, EMPTY, EMPTY, EMPTY,
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EMPTY, EMPTY, EMPTY, EMPTY,
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by_default, (char *)__func__, inet_default,
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&now, false, id_default, NULL);
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if (!ok)
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blocks->ignore = true;
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return;
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}
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confirms = btc_confirms(hash);
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if (confirms >= BLOCKS_42_VALUE) {
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snprintf(height_str, sizeof(height_str), "%d", blocks->height);
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LOGERR("%s() flagging block %d(%s) as %s confirms=%d(%d)",
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__func__,
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blocks->height, height_str,
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blocks_confirmed(BLOCKS_42_STR),
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confirms, BLOCKS_42_VALUE);
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ok = blocks_add(NULL, height_str,
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blocks->blockhash,
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BLOCKS_42_STR,
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EMPTY, EMPTY, EMPTY, EMPTY,
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EMPTY, EMPTY, EMPTY, EMPTY,
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by_default, (char *)__func__, inet_default,
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&now, false, id_default, NULL);
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if (!ok)
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blocks->ignore = true;
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}
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}
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