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/******************************************************************************
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* Copyright © 2014-2016 The SuperNET Developers. *
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* *
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* See the AUTHORS, DEVELOPER-AGREEMENT and LICENSE files at *
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* the top-level directory of this distribution for the individual copyright *
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* holder information and the developer policies on copyright and licensing. *
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* *
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* Unless otherwise agreed in a custom licensing agreement, no part of the *
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* SuperNET software, including this file may be copied, modified, propagated *
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* or distributed except according to the terms contained in the LICENSE file *
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* *
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* Removal or modification of this copyright notice is prohibited. *
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* *
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******************************************************************************/
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#include "iguana777.h"
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void iguana_initQ(queue_t *Q,char *name)
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{
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char *tst,*str = "need to init each Q when single threaded";
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queue_enqueue(name,Q,queueitem(str),1);
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if ( (tst= queue_dequeue(Q,1)) != 0 )
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free_queueitem(tst);
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}
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void iguana_initQs(struct iguana_info *coin)
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{
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int32_t i;
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iguana_initQ(&coin->acceptQ,"acceptQ");
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iguana_initQ(&coin->bundlesQ,"bundlesQ");
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iguana_initQ(&coin->hdrsQ,"hdrsQ");
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iguana_initQ(&coin->blocksQ,"blocksQ");
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iguana_initQ(&coin->priorityQ,"priorityQ");
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iguana_initQ(&coin->possibleQ,"possibleQ");
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iguana_initQ(&coin->cacheQ,"cacheQ");
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iguana_initQ(&coin->TerminateQ,"TerminateQ");
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for (i=0; i<IGUANA_MAXPEERS; i++)
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iguana_initQ(&coin->peers.active[i].sendQ,"addrsendQ");
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}
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void iguana_initpeer(struct iguana_info *coin,struct iguana_peer *addr,uint64_t ipbits)
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{
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memset(addr,0,sizeof(*addr));
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addr->ipbits = ipbits;
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addr->usock = -1;
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expand_ipbits(addr->ipaddr,addr->ipbits);
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//addr->pending = (uint32_t)time(NULL);
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strcpy(addr->symbol,coin->symbol);
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strcpy(addr->coinstr,coin->name);
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iguana_initQ(&addr->sendQ,"addrsendQ");
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}
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void iguana_initcoin(struct iguana_info *coin)
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{
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int32_t i;
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portable_mutex_init(&coin->peers_mutex);
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portable_mutex_init(&coin->blocks_mutex);
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iguana_meminit(&coin->blockMEM,"blockMEM",coin->blockspace,sizeof(coin->blockspace),0);
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iguana_initQs(coin);
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coin->bindsock = -1;
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OS_randombytes((unsigned char *)&coin->instance_nonce,sizeof(coin->instance_nonce));
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coin->startutc = (uint32_t)time(NULL);
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while ( time(NULL) == coin->startutc )
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usleep(1);
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coin->startmillis = OS_milliseconds(), coin->starttime = tai_now(coin->startmillis);
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coin->avetime = 1 * 100;
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//coin->R.maxrecvbundles = IGUANA_INITIALBUNDLES;
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for (i=0; i<IGUANA_MAXPEERS; i++)
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coin->peers.active[i].usock = -1;
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// validate blocks!!
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//for (i=0; i<IGUANA_NUMAPPENDS; i++)
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// vupdate_sha256(coin->latest.lhashes[i].bytes,&coin->latest.states[i],0,0);
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}
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bits256 iguana_genesis(struct iguana_info *coin,struct iguana_chain *chain)
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{
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struct iguana_block block,*ptr; struct iguana_msgblock msg; bits256 hash2; char str[65]; uint8_t buf[1024]; int32_t height;
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decode_hex(buf,(int32_t)strlen(chain->genesis_hex)/2,(char *)chain->genesis_hex);
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hash2 = bits256_doublesha256(0,buf,sizeof(struct iguana_msgblockhdr));
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iguana_rwblock(0,&hash2,buf,&msg);
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if ( memcmp(hash2.bytes,chain->genesis_hashdata,sizeof(hash2)) != 0 )
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{
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bits256_str(str,hash2);
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printf("genesis mismatch? calculated %s vs %s\n",str,(char *)chain->genesis_hex);
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memset(hash2.bytes,0,sizeof(hash2));
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return(hash2);
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}
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bits256_str(str,hash2);
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printf("genesis.(%s) len.%d hash.%s\n",chain->genesis_hex,(int32_t)sizeof(msg.H),str);
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iguana_blockconv(&block,&msg,hash2,0);
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//coin->latest.dep.numtxids =
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block.RO.numvouts = 1;
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iguana_gotdata(coin,0,0);
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if ( (ptr= iguana_blockhashset(coin,0,hash2,1)) != 0 )
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{
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ptr->mainchain = 1;
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iguana_blockcopy(coin,ptr,&block);
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coin->blocks.RO[0] = block.RO;
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if ( (height= iguana_chainextend(coin,ptr)) == 0 )
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{
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block = *ptr;
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coin->blocks.recvblocks = coin->blocks.issuedblocks = 1;
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}
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else printf("genesis block doesnt validate for %s ht.%d\n",coin->symbol,height);
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} else printf("couldnt hashset genesis\n");
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if ( coin->blocks.hwmchain.height != 0 || fabs(coin->blocks.hwmchain.PoW - block.PoW) > SMALLVAL || memcmp(coin->blocks.hwmchain.RO.hash2.bytes,hash2.bytes,sizeof(hash2)) != 0 )
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{
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printf("%s genesis values mismatch hwmheight.%d %.15f %.15f %s\n",coin->name,coin->blocks.hwmchain.height,coin->blocks.hwmchain.PoW,block.PoW,bits256_str(str,coin->blocks.hwmchain.RO.hash2));
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getchar();
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}
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int32_t bundlei = -2;
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static bits256 zero;
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iguana_bundlecreate(coin,&bundlei,0,hash2,zero,1);
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_iguana_chainlink(coin,iguana_blockfind(coin,hash2));
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return(hash2);
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}
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int32_t iguana_savehdrs(struct iguana_info *coin)
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{
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int32_t height,i,n,retval = 0; char fname[512],shastr[65],tmpfname[512],str[65],oldfname[512];
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bits256 hash2,sha256all,*hashes; FILE *fp;
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n = coin->blocks.hwmchain.height + 1;
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hashes = mycalloc('h',coin->chain->bundlesize,sizeof(*hashes));
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sprintf(oldfname,"confs/%s_oldhdrs.txt",coin->symbol), OS_compatible_path(oldfname);
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sprintf(tmpfname,"tmp/%s/hdrs.txt",coin->symbol), OS_compatible_path(tmpfname);
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sprintf(fname,"confs/%s_hdrs.txt",coin->symbol), OS_compatible_path(fname);
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if ( (fp= fopen(tmpfname,"w")) != 0 )
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{
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fprintf(fp,"%d\n",n);
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for (height=0; height<=n; height+=coin->chain->bundlesize)
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{
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for (i=0; i<coin->chain->bundlesize; i++)
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{
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hashes[i] = iguana_blockhash(coin,height+i);
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if ( bits256_str(str,hashes[i]) == 0 )
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break;
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}
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if ( i == coin->chain->bundlesize )
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{
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struct iguana_bundle *bp;
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if ( (bp= coin->bundles[height/coin->chain->bundlesize]) != 0 )
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{
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if ( bits256_nonz(bp->allhash) == 0 )
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{
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vcalc_sha256(shastr,sha256all.bytes,hashes[0].bytes,sizeof(*hashes) * coin->chain->bundlesize);
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bp->allhash = sha256all;
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}
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else
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{
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sha256all = bp->allhash;
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bits256_str(shastr,bp->allhash);
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}
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}
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} else shastr[0] = 0;
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hash2 = iguana_blockhash(coin,height);
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if ( bits256_nonz(hash2) > 0 )
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{
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fprintf(fp,"%d %s %s\n",height,bits256_str(str,hash2),shastr);
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retval = height;
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}
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}
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//printf("new hdrs.txt %ld vs (%s) %ld\n",ftell(fp),fname,(long)iguana_filesize(fname));
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if ( ftell(fp) > OS_filesize(fname) )
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{
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printf("new hdrs.txt %ld vs (%s) %ld\n",ftell(fp),fname,(long)OS_filesize(fname));
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fclose(fp);
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OS_renamefile(fname,oldfname);
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OS_copyfile(tmpfname,fname,1);
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} else fclose(fp);
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}
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myfree(hashes,coin->chain->bundlesize * sizeof(*hashes));
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return(retval);
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}
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void iguana_parseline(struct iguana_info *coin,int32_t iter,FILE *fp)
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{
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int32_t j,k,m,c,height,flag,bundlei; char checkstr[1024],line[1024];
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struct iguana_peer *addr; struct iguana_bundle *bp; bits256 allhash,hash2,zero,lastbundle;
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struct iguana_block *block;
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memset(&zero,0,sizeof(zero));
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lastbundle = zero;
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if ( iter == 1 )
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{
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int32_t i; FILE *fp; char fname[512]; struct iguana_blockRO blockRO;
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sprintf(fname,"blocks.%s",coin->symbol), OS_compatible_path(fname);
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if ( (fp= fopen(fname,"rb")) != 0 )
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{
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for (i=0; i<100000000; i++)
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{
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if ( fread(&blockRO,1,sizeof(blockRO),fp) != sizeof(blockRO) )
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break;
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if ( i > (coin->blocks.maxbits - 1000) )
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iguana_recvalloc(coin,i + 100000);
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coin->blocks.RO[i] = blockRO;
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char str[65];
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if ( bits256_nonz(blockRO.hash2) > 0 )
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printf("init.%d %s\n",i,bits256_str(str,blockRO.hash2));
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}
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fclose(fp);
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printf("validate.%d blocks that were read in\n",i);
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}
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}
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m = flag = 0;
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allhash = zero;
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while ( fgets(line,sizeof(line),fp) > 0 )
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{
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j = (int32_t)strlen(line) - 1;
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line[j] = 0;
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//printf("parse line.(%s) maxpeers.%d\n",line,coin->MAXPEERS);
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if ( iter == 0 )
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{
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if ( m < 7 )//(2*coin->MAXPEERS)/3 )//&& m < 77.7 )
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{
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if ( 0 && m == 0 )
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{
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addr = &coin->peers.active[m++];
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iguana_initpeer(coin,addr,(uint32_t)calc_ipbits("127.0.0.1"));
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printf("call initpeer.(%s)\n",addr->ipaddr);
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iguana_launch(coin,"connection",iguana_startconnection,addr,IGUANA_CONNTHREAD);
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}
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#ifndef IGUANA_DISABLEPEERS
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addr = &coin->peers.active[m++];
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iguana_initpeer(coin,addr,(uint32_t)calc_ipbits(line));
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printf("call initpeer.(%s)\n",addr->ipaddr);
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iguana_launch(coin,"connection",iguana_startconnection,addr,IGUANA_CONNTHREAD);
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#endif
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}
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}
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else
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{
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for (k=height=0; k<j-1; k++)
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{
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if ( (c= line[k]) == ' ' )
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break;
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else if ( c >= '0' && c <= '9' )
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height = (height * 10) + (line[k] - '0');
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else break;
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}
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//printf("parseline: k.%d %d height.%d m.%d bundlesize.%d (%s)\n",k,line[k],height,m,coin->chain->bundlesize,&line[k+1+65]);// + strlen(line+k+1)]);
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if ( line[k] == ' ' )
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{
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decode_hex(hash2.bytes,sizeof(hash2),line+k+1);
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if ( line[k+1 + 65] != 0 )
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{
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if ( height > (coin->blocks.maxbits - 1000) )
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iguana_recvalloc(coin,height + 100000);
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decode_hex(allhash.bytes,sizeof(allhash),line+k+1 + 64 + 1);
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init_hexbytes_noT(checkstr,allhash.bytes,sizeof(allhash));
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if ( strcmp(checkstr,line+k+1 + 64 + 1) == 0 )
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{
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init_hexbytes_noT(checkstr,hash2.bytes,sizeof(hash2));
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//char str[65],str2[65]; printf(">>>> bundle.%d got (%s)/(%s) allhash.(%s)\n",height,bits256_str(str,hash2),checkstr,bits256_str(str2,allhash));
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if ( (bp= iguana_bundlecreate(coin,&bundlei,height,hash2,allhash,0)) != 0 )
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{
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bp->bundleheight = height;
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lastbundle = hash2;
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if ( (block= iguana_blockfind(coin,hash2)) != 0 )
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block->mainchain = 1, block->height = height;
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if ( iguana_bundleload(coin,bp) != 0 )
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{
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bp->emitfinish = (uint32_t)time(NULL) + 1;
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//printf("LOADED bundle.%d\n",bp->bundleheight);
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}
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else
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{
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char str[65];
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init_hexbytes_noT(str,hash2.bytes,sizeof(hash2));
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bp->emitfinish = 0;
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iguana_blockQ(coin,bp,0,hash2,1);
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queue_enqueue("hdrsQ",&coin->hdrsQ,queueitem(str),1);
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}
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}
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}
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}
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/*init_hexbytes_noT(checkstr,hash2.bytes,sizeof(hash2));
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if ( strncmp(checkstr,line+k+1,64) == 0 )
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{
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if ( (height % coin->chain->bundlesize) == 1 )
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{
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if ( (bp= coin->bundles[height/coin->chain->bundlesize]) != 0 )
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{
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if ( iguana_bundlehash2add(coin,0,bp,1,hash2) == 0 )
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{
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//printf("add bundle.%d:%d (%s)\n",bundleheight,bp->hdrsi,bits256_str(str,hash2));
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if ( (block= iguana_blockfind(coin,hash2)) != 0 )
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block->mainchain = 1, block->height = bundleheight+1;
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}
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}
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}
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}*/
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}
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}
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}
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if ( bits256_nonz(lastbundle) > 0 )
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{
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char hashstr[65];
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init_hexbytes_noT(hashstr,lastbundle.bytes,sizeof(bits256));
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printf("req lastbundle.(%s)\n",hashstr);
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queue_enqueue("hdrsQ",&coin->hdrsQ,queueitem(hashstr),1);
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}
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}
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struct iguana_info *iguana_coinstart(struct iguana_info *coin,int32_t initialheight,int32_t mapflags)
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{
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FILE *fp; char fname[512],*symbol; int32_t iter;
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coin->sleeptime = 10000;
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symbol = coin->symbol;
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if ( initialheight < coin->chain->bundlesize*10 )
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initialheight = coin->chain->bundlesize*10;
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iguana_recvalloc(coin,initialheight);
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coin->longestchain = 1;
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coin->blocks.hwmchain.height = 0;
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if ( (coin->myservices & NODE_NETWORK) != 0 )
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{
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printf("MYSERVICES.%llx\n",(long long)coin->myservices);
|
|
|
|
coin->peers.acceptloop = malloc(sizeof(pthread_t));
|
|
|
|
if ( OS_thread_create(coin->peers.acceptloop,NULL,(void *)iguana_acceptloop,(void *)coin) != 0 )
|
|
|
|
{
|
|
|
|
free(coin->peers.acceptloop);
|
|
|
|
coin->peers.acceptloop = 0;
|
|
|
|
printf("error launching accept thread for port.%u\n",coin->chain->portp2p);
|
|
|
|
}
|
|
|
|
}
|
|
|
|
coin->firstblock = coin->blocks.parsedblocks + 1;
|
|
|
|
iguana_genesis(coin,coin->chain);
|
|
|
|
for (iter=0; iter<2; iter++)
|
|
|
|
{
|
|
|
|
sprintf(fname,"confs/%s_%s.txt",coin->symbol,(iter == 0) ? "peers" : "hdrs");
|
|
|
|
OS_compatible_path(fname);
|
|
|
|
printf("parsefile.%d %s\n",iter,fname);
|
|
|
|
if ( (fp= fopen(fname,"r")) != 0 )
|
|
|
|
{
|
|
|
|
iguana_parseline(coin,iter,fp);
|
|
|
|
fclose(fp);
|
|
|
|
}
|
|
|
|
printf("done parsefile.%d\n",iter);
|
|
|
|
}
|
|
|
|
#ifndef IGUANA_DEDICATED_THREADS
|
|
|
|
coin->peers.peersloop = iguana_launch("peersloop",iguana_peersloop,coin,IGUANA_PERMTHREAD);
|
|
|
|
#endif
|
|
|
|
if ( 0 && (coin->MAXBUNDLES= coin->bundlescount / 4) < _IGUANA_MAXBUNDLES )
|
|
|
|
coin->MAXBUNDLES = _IGUANA_MAXBUNDLES;
|
|
|
|
printf("started.%s\n",coin->symbol);
|
|
|
|
return(coin);
|
|
|
|
}
|