mirror of
https://github.com/Unidata/netcdf-c.git
synced 2024-12-09 08:11:38 +08:00
9a478edb06
re: Issue https://github.com/Unidata/netcdf-c/issues/2927 The NC_s3sdkinitialize NC_s3sdkfinalize functions were misplaced. They should have been moved from ds3util.c to ncs3sdk_h5.c. When using ncs3sdl_aws.cpp, this resulted in a duplicate definition. Also, found and fixed a memory leak in the NCZarr S3 code.
837 lines
26 KiB
C++
837 lines
26 KiB
C++
/*
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* Copyright 2018, University Corporation for Atmospheric Research
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* See netcdf/COPYRIGHT file for copying and redistribution conditions.
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*/
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/* WARNING: changes to this file may need to be propagated to libsrc/s3sdk.cpp */
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#undef DEBUG
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/* Use Aws::Transfer instead of direct REST API */
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#undef TRANSFER
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/* Disable bucket creation/deletion */
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#define NOOPBUCKET
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#include "awsincludes.h"
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#include <stdlib.h>
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#include <string.h>
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#include <iostream>
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#include <streambuf>
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#include "netcdf.h"
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#include "ncrc.h"
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#ifdef TRANSFER
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#include <aws/core/utils/memory/AWSMemory.h>
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#include <aws/core/utils/memory/stl/AWSStreamFwd.h>
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#include <aws/core/utils/stream/PreallocatedStreamBuf.h>
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#include <aws/transfer/TransferManager.h>
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#include <aws/transfer/TransferHandle.h>
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#endif
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#include "ncs3sdk.h"
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#undef NCTRACING
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#ifdef NCTRACING
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#define NCTRACE(level,fmt,...) nctrace((level),__func__,fmt,##__VA_ARGS__)
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#define NCTRACEMORE(level,fmt,...) nctracemore((level),fmt,##__VA_ARGS__)
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#define NCUNTRACE(e) ncuntrace(__func__,THROW(e),NULL)
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#define NCUNTRACEX(e,fmt,...) ncuntrace(__func__,THROW(e),fmt,##__VA_ARGS__)
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#define NCUNTRACENOOP(e) NCUNTRACE(e)
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#else
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#define NCTRACE(level,fmt,...)
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#define NCTRACEMORE(level,fmt,...)
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#define NCUNTRACE(e) (e)
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#define NCUNTRACEX(e,fmt,...) (e)
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#define NCUNTRACENOOP(e)
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#endif
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#ifdef __CYGWIN__
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extern char* strdup(const char*);
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#endif
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#define size64_t unsigned long long
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#ifdef TRANSFER
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#define AWSS3CLIENT std::shared_ptr<Aws::S3::S3Client>*
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#define AWSS3GET(x) (((AWSS3CLIENT)(x))->get())
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#else
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#define AWSS3CLIENT Aws::S3::S3Client*
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#define AWSS3GET(x) ((AWSS3CLIENT)(x))
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#endif
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struct KeySet {
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size_t nkeys;
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size_t alloc;
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char** keys;
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KeySet() {nkeys = 0; alloc = 0; keys = NULL;}
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~KeySet() {clear();}
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void push(char* key) {
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if(alloc == 0) {
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keys = (char**)calloc(10,sizeof(char*));
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alloc = 10;
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}
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if(nkeys >= alloc) {
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char** newkeys = (char**)calloc(alloc*2,sizeof(char*));
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memcpy(newkeys,keys,sizeof(char*)*nkeys);
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alloc *= 2;
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free(keys);
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keys = newkeys;
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}
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keys[nkeys++] = key;
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}
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char** extractkeys() {char** outkeys = keys; keys = NULL; clear(); return outkeys;}
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char* extractithkey(size_t i) {
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if(i >= nkeys) return NULL;
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char* k = keys[i];
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keys[i] = NULL;
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return k;
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}
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size_t getnkeys() {return nkeys;}
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void clear() {
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if(keys) {
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for(size_t i=0;i<nkeys;i++)
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{if(keys[i] != NULL) free(keys[i]);}
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free(keys);
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}
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nkeys = 0;
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alloc = 0;
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keys = NULL;
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}
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};
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static int ncs3_initialized = 0;
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static int ncs3_finalized = 0;
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static Aws::SDKOptions ncs3options;
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/* Forward */
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static Aws::S3::Model::BucketLocationConstraint s3findregion(const char* name);
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static int s3objectinfo1(const Aws::S3::Model::Object& s3_object, char** fullkeyp);
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static int s3objectsinfo(Aws::Vector<Aws::S3::Model::Object> list, KeySet* keys);
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static int s3commonprefixes(Aws::Vector<Aws::S3::Model::CommonPrefix> list, KeySet* keys);
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static int makes3key(const char* pathkey, const char** keyp);
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static int makes3keydir(const char* prefix, char** prefixdirp);
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static int mergekeysets(KeySet* keys1, KeySet* keys2, KeySet* merge);
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const char*
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NCS3_dumps3info(NCS3INFO* info)
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{
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static char text[8192];
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snprintf(text,sizeof(text),"host=%s region=%s bucket=%s rootkey=%s profile=%s",
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(info->host?info->host:"null"),
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(info->region?info->region:"null"),
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(info->bucket?info->bucket:"null"),
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(info->rootkey?info->rootkey:"null"),
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(info->profile?info->profile:"null"));
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return text;
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}
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EXTERNL int
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NC_s3sdkinitialize(void)
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{
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if(!ncs3_initialized) {
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ncs3_initialized = 1;
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ncs3_finalized = 0;
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#ifdef DEBUG
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//ncs3options.loggingOptions.logLevel = Aws::Utils::Logging::LogLevel::Debug;
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ncs3options.loggingOptions.logLevel = Aws::Utils::Logging::LogLevel::Trace;
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ncs3options.httpOptions.installSigPipeHandler = true;
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ncs3options.loggingOptions.logger_create_fn = [] { return std::make_shared<Aws::Utils::Logging::ConsoleLogSystem>(Aws::Utils::Logging::LogLevel::Trace); };
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#endif
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Aws::InitAPI(ncs3options);
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/* Get environment information */
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NC_s3sdkenvironment();
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}
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return NCUNTRACE(NC_NOERR);
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}
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EXTERNL int
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NC_s3sdkfinalize(void)
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{
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if(!ncs3_finalized) {
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ncs3_initialized = 0;
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ncs3_finalized = 1;
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NCTRACE(11,NULL);
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Aws::ShutdownAPI(ncs3options);
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}
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return NCUNTRACE(NC_NOERR);
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}
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static char*
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makeerrmsg(const Aws::Client::AWSError<Aws::S3::S3Errors> err, const char* key="")
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{
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char* errmsg;
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size_t len;
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len = strlen(err.GetExceptionName().c_str()) + strlen(err.GetMessage().c_str()) + strlen(key) + 10;
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if((errmsg = (char*)malloc(len+1))==NULL)
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return NULL;
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snprintf(errmsg,len,"%s %s key=%s",
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err.GetExceptionName().c_str(),
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err.GetMessage().c_str(),
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key);
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return errmsg;
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}
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static Aws::Client::ClientConfiguration
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s3sdkcreateconfig(NCS3INFO* info)
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{
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NCTRACE(11,"info=%s", dumps3info(info));
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Aws::Client::ClientConfiguration config;
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if(info->profile)
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config.profileName = info->profile;
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config.scheme = Aws::Http::Scheme::HTTPS;
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//config.connectTimeoutMs = 1000;
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//config.requestTimeoutMs = 0;
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config.connectTimeoutMs = 300000;
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config.requestTimeoutMs = 600000;
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if(info->region) config.region = info->region;
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if(info->host) config.endpointOverride = info->host;
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config.enableEndpointDiscovery = true;
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config.followRedirects = Aws::Client::FollowRedirectsPolicy::ALWAYS;
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NCUNTRACENOOP(NC_NOERR);
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return config;
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}
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static AWSS3CLIENT
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buildclient(Aws::Client::ClientConfiguration* config, Aws::Auth::AWSCredentials* creds)
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{
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AWSS3CLIENT s3client = NULL;
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#ifdef TRANSFER
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std::shared_ptr<Aws::S3::S3Client> client;
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if(creds != NULL) {
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client = Aws::MakeShared<Aws::S3::S3Client>("S3Client",*creds,*config,
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Aws::Client::AWSAuthV4Signer::PayloadSigningPolicy::RequestDependent,
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false);
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} else {
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client = Aws::MakeShared<Aws::S3::S3Client>("S3Client",*config,
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Aws::Client::AWSAuthV4Signer::PayloadSigningPolicy::RequestDependent,
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false);
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}
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// Create allocated client space
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s3client = new std::shared_ptr<Aws::S3::S3Client>;
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*s3client = client;
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#else
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if(creds != NULL) {
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s3client = new Aws::S3::S3Client(*creds,*config,
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Aws::Client::AWSAuthV4Signer::PayloadSigningPolicy::RequestDependent,
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false);
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} else {
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s3client = new Aws::S3::S3Client(*config,
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Aws::Client::AWSAuthV4Signer::PayloadSigningPolicy::RequestDependent,
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false);
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}
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#endif
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return s3client;
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}
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EXTERNL void*
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NC_s3sdkcreateclient(NCS3INFO* info)
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{
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NCTRACE(11,NULL);
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Aws::Client::ClientConfiguration config = s3sdkcreateconfig(info);
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AWSS3CLIENT s3client;
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if(info->profile == NULL || strcmp(info->profile,"none")==0) {
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Aws::Auth::AWSCredentials creds;
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creds.SetAWSAccessKeyId(Aws::String(""));
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creds.SetAWSSecretKey(Aws::String(""));
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s3client = buildclient(&config,&creds);
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} else {
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s3client = buildclient(&config,NULL);
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}
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// delete config;
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NCUNTRACENOOP(NC_NOERR);
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return (void*)s3client;
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}
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EXTERNL int
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NC_s3sdkbucketexists(void* s3client0, const char* bucket, int* existsp, char** errmsgp)
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{
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int stat = NC_NOERR;
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int exists = 0;
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AWSS3CLIENT s3client = (AWSS3CLIENT)s3client0;
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NCTRACE(11,"bucket=%s",bucket);
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if(errmsgp) *errmsgp = NULL;
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#if 0
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char* errmsg = NULL;
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auto result = s3client->ListBuckets();
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if(!result.IsSuccess()) {
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auto re = result.GetError();
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errmsg = makeerrmsg(re);
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fprintf(stderr,">>> errmsg=%s\n",errmsg);
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if(errmsgp) {*errmsgp = errmsg; errmsg = NULL;}
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stat = NC_ES3;
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} else {
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Aws::Vector<Aws::S3::Model::Bucket> bucket_list = result.GetResult().GetBuckets();
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for(auto const &awsbucket : bucket_list) {
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auto name = awsbucket.GetName();
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if(name == bucket) {exists = 1; break;}
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}
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}
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#else
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Aws::S3::Model::HeadBucketRequest request;
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request.SetBucket(bucket);
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auto result = AWSS3GET(s3client)->HeadBucket(request);
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exists = result.IsSuccess() ? 1 : 0;
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#endif
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if(existsp) *existsp = exists;
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return NCUNTRACEX(stat,"exists=%d",*existsp);
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}
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EXTERNL int
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NC_s3sdkbucketcreate(void* s3client0, const char* region, const char* bucket, char** errmsgp)
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{
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int stat = NC_NOERR;
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NCTRACE(11,"region=%s bucket=%s",region,bucket);
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AWSS3CLIENT s3client = (AWSS3CLIENT)s3client0;
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if(errmsgp) *errmsgp = NULL;
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const Aws::S3::Model::BucketLocationConstraint &awsregion = s3findregion(region);
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if(awsregion == Aws::S3::Model::BucketLocationConstraint::NOT_SET)
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return NC_EURL;
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/* Set up the request */
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Aws::S3::Model::CreateBucketRequest create_request;
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create_request.SetBucket(bucket);
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if(region) {
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/* Specify the region as a location constraint */
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Aws::S3::Model::CreateBucketConfiguration bucket_config;
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bucket_config.SetLocationConstraint(awsregion);
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create_request.SetCreateBucketConfiguration(bucket_config);
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}
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#ifdef NOOPBUCKET
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/* Create the bucket */
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auto create_result = AWSS3GET(s3client)->CreateBucket(create_request);
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if(!create_result.IsSuccess()) {
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if(errmsgp) *errmsgp = makeerrmsg(create_result.GetError());
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stat = NC_ES3;;
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}
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#else
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fprintf(stderr,"create bucket: %s\n",bucket); fflush(stderr);
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#endif
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return NCUNTRACE(stat);
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}
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EXTERNL int
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NC_s3sdkbucketdelete(void* s3client0, NCS3INFO* info, char** errmsgp)
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{
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int stat = NC_NOERR;
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NCTRACE(11,"info=%s%s",dumps3info(info));
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AWSS3CLIENT s3client = (AWSS3CLIENT)s3client0;
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if(errmsgp) *errmsgp = NULL;
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const Aws::S3::Model::BucketLocationConstraint &awsregion = s3findregion(info->region);
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if(awsregion == Aws::S3::Model::BucketLocationConstraint::NOT_SET)
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return NC_EURL;
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/* Set up the request */
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Aws::S3::Model::DeleteBucketRequest request;
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request.SetBucket(info->bucket);
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#ifdef NOOPBUCKET
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/* Delete the bucket */
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auto result = AWSS3GET(s3client)->DeleteBucket(request);
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if(!result.IsSuccess()) {
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if(errmsgp) *errmsgp = makeerrmsg(result.GetError());
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stat = NC_ES3;;
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}
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#else
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fprintf(stderr,"delete bucket: %s\n",bucket); fflush(stderr);
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#endif
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return NCUNTRACE(stat);
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}
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/**************************************************/
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/* Object API */
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/*
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@return NC_NOERR if key points to a content-bearing object.
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@return NC_EEMPTY if object at key has no content.
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@return NC_EXXX return true error
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*/
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EXTERNL int
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NC_s3sdkinfo(void* s3client0, const char* bucket, const char* pathkey, size64_t* lenp, char** errmsgp)
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{
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int stat = NC_NOERR;
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const char* key = NULL;
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NCTRACE(11,"bucket=%s pathkey=%s",bucket,pathkey);
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AWSS3CLIENT s3client = (AWSS3CLIENT)s3client0;
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Aws::S3::Model::HeadObjectRequest head_request;
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if(*pathkey != '/') return NC_EINTERNAL;
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/* extract the true s3 key*/
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if((stat = makes3key(pathkey,&key))) return NCUNTRACE(stat);
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if(errmsgp) *errmsgp = NULL;
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head_request.SetBucket(bucket);
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head_request.SetKey(key);
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auto head_outcome = AWSS3GET(s3client)->HeadObject(head_request);
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if(head_outcome.IsSuccess()) {
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long long l = head_outcome.GetResult().GetContentLength();
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if(lenp) *lenp = (size64_t)l;
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} else {
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if(lenp) *lenp = 0;
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/* Distinquish not-found from other errors */
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switch (head_outcome.GetError().GetErrorType()) {
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case Aws::S3::S3Errors::RESOURCE_NOT_FOUND:
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stat = NC_EEMPTY;
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break;
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case Aws::S3::S3Errors::ACCESS_DENIED:
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stat = NC_EACCESS;
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/* fall thru */
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default:
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if(!stat) stat = NC_ES3;
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if(errmsgp) *errmsgp = makeerrmsg(head_outcome.GetError(),key);
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break;
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}
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}
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return NCUNTRACEX(stat,"len=%d",(int)(lenp?*lenp:-1));
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}
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/**
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* In-memory stream implementations
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*/
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class DownLoadStream : public Aws::IOStream
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{
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public:
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using Base = Aws::IOStream;
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// Provide a customer-controlled streambuf to hold data from the bucket.
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explicit DownLoadStream(std::streambuf* buf) : Base(buf) {}
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~DownLoadStream() override = default;
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};
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class UpLoadStream : public Aws::IOStream
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{
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public:
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using Base = Aws::IOStream;
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// Provide a customer-controlled streambuf to hold data from the bucket.
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explicit UpLoadStream(std::streambuf* buf) : Base(buf) {}
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~UpLoadStream() override = default;
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};
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/*
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@return NC_NOERR if success
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@return NC_EXXX if fail
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*/
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EXTERNL int
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NC_s3sdkread(void* s3client0, const char* bucket, const char* pathkey, size64_t start, size64_t count, void* content, char** errmsgp)
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{
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int stat = NC_NOERR;
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const char* key = NULL;
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NCTRACE(11,"bucket=%s pathkey=%s start=%llu count=%llu content=%p",bucket,pathkey,start,count,content);
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AWSS3CLIENT s3client = (AWSS3CLIENT)s3client0;
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if(count == 0) return NCUNTRACE(stat);
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if(errmsgp) *errmsgp = NULL;
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if(*pathkey != '/') return NC_EINTERNAL;
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if((stat = makes3key(pathkey,&key))) return NCUNTRACE(stat);
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#ifdef TRANSFER
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auto executor = Aws::MakeShared<Aws::Utils::Threading::PooledThreadExecutor>("executor", 25);
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Aws::Transfer::TransferManagerConfiguration transfer_config(executor.get());
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transfer_config.s3Client = *s3client;
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// The local variable downloadBuffer' is captured by reference in a lambda.
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// It must persist until all downloading by the 'transfer_manager' is complete.
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Aws::Utils::Stream::PreallocatedStreamBuf downloadBuffer((unsigned char*)content, count - start);
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auto transfer_manager = Aws::Transfer::TransferManager::Create(transfer_config);
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auto creationFunction = [&downloadBuffer]() { //Define a lambda expression for the callback method parameter to stream back the data.
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return Aws::New<DownLoadStream>("downloadHandle", &downloadBuffer);};
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auto downloadHandle = transfer_manager->DownloadFile(bucket, key, start, count, creationFunction);
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downloadHandle->WaitUntilFinished();
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bool success = downloadHandle->GetStatus() == Aws::Transfer::TransferStatus::COMPLETED;
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if (!success) {
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auto err = downloadHandle->GetLastError();
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if(errmsgp) *errmsgp = makeerrmsg(err,key);
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stat = NC_ES3;
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} else {
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size64_t transferred = downloadHandle->GetBytesTransferred();
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size64_t totalsize = downloadHandle->GetBytesTotalSize();
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assert(count == totalsize && transferred == totalsize);
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}
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#else
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char range[1024];
|
|
size64_t rangeend;
|
|
Aws::S3::Model::GetObjectRequest object_request;
|
|
object_request.SetBucket(bucket);
|
|
object_request.SetKey(key);
|
|
rangeend = (start+count)-1;
|
|
snprintf(range,sizeof(range),"bytes=%llu-%llu",start,rangeend);
|
|
object_request.SetRange(range);
|
|
auto get_object_result = AWSS3GET(s3client)->GetObject(object_request);
|
|
if(!get_object_result.IsSuccess()) {
|
|
if(errmsgp) *errmsgp = makeerrmsg(get_object_result.GetError(),key);
|
|
stat = NC_ES3;
|
|
} else {
|
|
/* Get the whole result */
|
|
Aws::IOStream &result = get_object_result.GetResultWithOwnership().GetBody();
|
|
std::string str((std::istreambuf_iterator<char>(result)),std::istreambuf_iterator<char>());
|
|
/* Verify actual result size */
|
|
size_t slen = str.size();
|
|
if(slen > count) return NC_ES3;
|
|
const char* s = str.c_str();
|
|
if(content)
|
|
memcpy(content,s,slen);
|
|
}
|
|
#endif
|
|
return NCUNTRACE(stat);
|
|
}
|
|
|
|
/*
|
|
For S3, I can see no way to do a byterange write;
|
|
so we are effectively writing the whole object
|
|
*/
|
|
EXTERNL int
|
|
NC_s3sdkwriteobject(void* s3client0, const char* bucket, const char* pathkey, size64_t count, const void* content, char** errmsgp)
|
|
{
|
|
int stat = NC_NOERR;
|
|
const char* key = NULL;
|
|
|
|
NCTRACE(11,"bucket=%s pathkey=%s count=%lld content=%p",bucket,pathkey,count,content);
|
|
|
|
AWSS3CLIENT s3client = (AWSS3CLIENT)s3client0;
|
|
|
|
if(errmsgp) *errmsgp = NULL;
|
|
if(*pathkey != '/') return NCUNTRACE(NC_EINTERNAL);
|
|
if((stat = makes3key(pathkey,&key))) return NCUNTRACE(stat);
|
|
|
|
#ifdef TRANSFER
|
|
auto executor = Aws::MakeShared<Aws::Utils::Threading::PooledThreadExecutor>("executor", 25);
|
|
Aws::Transfer::TransferManagerConfiguration transfer_config(executor.get());
|
|
transfer_config.s3Client = *s3client;
|
|
auto transfer_manager = Aws::Transfer::TransferManager::Create(transfer_config);
|
|
std::shared_ptr<Aws::IOStream> uploadStream = std::shared_ptr<Aws::IOStream>(new Aws::StringStream());
|
|
uploadStream->rdbuf()->pubsetbuf((char*)content,count);
|
|
auto uploadHandle = transfer_manager->UploadFile(uploadStream, bucket, key, "application/octet-stream", Aws::Map<Aws::String, Aws::String>());
|
|
uploadHandle->WaitUntilFinished();
|
|
bool success = uploadHandle->GetStatus() == Aws::Transfer::TransferStatus::COMPLETED;
|
|
if (!success) {
|
|
auto err = uploadHandle->GetLastError();
|
|
if(errmsgp) *errmsgp = makeerrmsg(err,key);
|
|
stat = NC_ES3;
|
|
} else {
|
|
size64_t transferred = uploadHandle->GetBytesTransferred();
|
|
size64_t totalsize = uploadHandle->GetBytesTotalSize();
|
|
assert(count == totalsize && transferred == totalsize);
|
|
}
|
|
#else
|
|
Aws::S3::Model::PutObjectRequest put_request;
|
|
put_request.SetBucket(bucket);
|
|
put_request.SetKey(key);
|
|
put_request.SetContentLength((long long)count);
|
|
|
|
std::shared_ptr<Aws::IOStream> data = std::shared_ptr<Aws::IOStream>(new Aws::StringStream());
|
|
data->rdbuf()->pubsetbuf((char*)content,(std::streamsize)count);
|
|
put_request.SetBody(data);
|
|
auto put_result = AWSS3GET(s3client)->PutObject(put_request);
|
|
if(!put_result.IsSuccess()) {
|
|
if(errmsgp) *errmsgp = makeerrmsg(put_result.GetError(),key);
|
|
stat = NC_ES3;
|
|
}
|
|
#endif
|
|
return NCUNTRACE(stat);
|
|
}
|
|
|
|
EXTERNL int
|
|
NC_s3sdkclose(void* s3client0, NCS3INFO* info, int deleteit, char** errmsgp)
|
|
{
|
|
int stat = NC_NOERR;
|
|
|
|
NCTRACE(11,"info=%s rootkey=%s deleteit=%d",dumps3info(info),deleteit);
|
|
|
|
AWSS3CLIENT s3client = (AWSS3CLIENT)s3client0;
|
|
if(deleteit) {
|
|
/* Delete the root key; ok it if does not exist */
|
|
switch (stat = NC_s3sdkdeletekey(s3client0,info->bucket,info->rootkey,errmsgp)) {
|
|
case NC_NOERR: break;
|
|
case NC_EEMPTY: case NC_ENOTFOUND: stat = NC_NOERR; break;
|
|
default: break;
|
|
}
|
|
}
|
|
#ifdef TRANSFER
|
|
delete s3client;
|
|
#else
|
|
delete s3client;
|
|
#endif
|
|
return NCUNTRACE(stat);
|
|
}
|
|
|
|
/*
|
|
Return a list of names of legal objects immediately below a specified key.
|
|
In theory, the returned list should be sorted in lexical order,
|
|
but it possible that it is not.
|
|
*/
|
|
static int
|
|
getkeys(void* s3client0, const char* bucket, const char* prefixkey0, const char* delim, size_t* nkeysp, char*** keysp, char** errmsgp)
|
|
{
|
|
int stat = NC_NOERR;
|
|
const char* prefix = NULL;
|
|
char* prefixdir = NULL;
|
|
bool istruncated = false;
|
|
char* continuetoken = NULL;
|
|
AWSS3CLIENT s3client = NULL;
|
|
KeySet commonkeys;
|
|
KeySet realkeys;
|
|
KeySet allkeys;
|
|
|
|
NCTRACE(11,"bucket=%s prefixkey0=%s",bucket,prefixkey0);
|
|
|
|
if(*prefixkey0 != '/') {stat = NC_EINTERNAL; goto done;}
|
|
if(errmsgp) *errmsgp = NULL;
|
|
|
|
s3client = (AWSS3CLIENT)s3client0;
|
|
|
|
do {
|
|
Aws::S3::Model::ListObjectsV2Request objects_request;
|
|
if(prefixdir != NULL) free(prefixdir);
|
|
realkeys.clear();
|
|
commonkeys.clear();
|
|
/* Make sure that the prefix ends with '/' */
|
|
if((stat = makes3keydir(prefixkey0,&prefixdir))) goto done;
|
|
/* remove leading '/' */
|
|
if((stat = makes3key(prefixdir,&prefix))) goto done;
|
|
objects_request.SetBucket(bucket);
|
|
objects_request.SetPrefix(prefix);
|
|
if(delim != NULL) {
|
|
objects_request.SetDelimiter(delim); /* Force return of common prefixes */
|
|
}
|
|
if(istruncated && continuetoken != NULL) {
|
|
objects_request.SetContinuationToken(continuetoken);
|
|
free(continuetoken); continuetoken = NULL;
|
|
}
|
|
auto objects_outcome = AWSS3GET(s3client)->ListObjectsV2(objects_request);
|
|
if(objects_outcome.IsSuccess()) {
|
|
const Aws::S3::Model::ListObjectsV2Result& result = objects_outcome.GetResult();
|
|
istruncated = result.GetIsTruncated();
|
|
if(istruncated)
|
|
continuetoken = strdup(result.GetNextContinuationToken().c_str());
|
|
Aws::Vector<Aws::S3::Model::Object> object_list =
|
|
objects_outcome.GetResult().GetContents();
|
|
if((stat = s3objectsinfo(object_list,&realkeys))) goto done;
|
|
/* Add common prefixes */
|
|
Aws::Vector<Aws::S3::Model::CommonPrefix> common_list =
|
|
objects_outcome.GetResult().GetCommonPrefixes();
|
|
if((stat = s3commonprefixes(common_list,&commonkeys))) goto done;
|
|
/* merge the two lists; target list might not be empty */
|
|
if((stat=mergekeysets(&realkeys, &commonkeys, &allkeys))) goto done;
|
|
} else {
|
|
if(errmsgp) *errmsgp = makeerrmsg(objects_outcome.GetError());
|
|
stat = NC_ES3;
|
|
goto done;
|
|
}
|
|
} while(istruncated);
|
|
if(nkeysp) {*nkeysp = allkeys.getnkeys();}
|
|
if(keysp) {*keysp = allkeys.extractkeys();}
|
|
done:
|
|
realkeys.clear();
|
|
commonkeys.clear();
|
|
allkeys.clear();
|
|
if(prefixdir != NULL) free(prefixdir);
|
|
if(continuetoken != NULL) free(continuetoken);
|
|
if(stat)
|
|
return NCUNTRACE(stat);
|
|
else
|
|
return NCUNTRACEX(stat,"nkeys=%u",(unsigned)*nkeysp);
|
|
}
|
|
|
|
/*
|
|
Return a list of full keys of legal objects immediately below a specified key.
|
|
Not necessarily sorted.
|
|
*/
|
|
EXTERNL int
|
|
NC_s3sdkgetkeys(void* s3client0, const char* bucket, const char* prefixkey0, size_t* nkeysp, char*** keysp, char** errmsgp)
|
|
{
|
|
return getkeys(s3client0, bucket, prefixkey0, "/", nkeysp, keysp, errmsgp);
|
|
}
|
|
|
|
/*
|
|
Return a list of full keys of legal objects immediately below a specified key.
|
|
Not necessarily sorted.
|
|
*/
|
|
EXTERNL int
|
|
NC_s3sdksearch(void* s3client0, const char* bucket, const char* prefixkey0, size_t* nkeysp, char*** keysp, char** errmsgp)
|
|
{
|
|
return getkeys(s3client0, bucket, prefixkey0, NULL, nkeysp, keysp, errmsgp);
|
|
}
|
|
|
|
EXTERNL int
|
|
NC_s3sdkdeletekey(void* s3client0, const char* bucket, const char* pathkey, char** errmsgp)
|
|
{
|
|
int stat = NC_NOERR;
|
|
const char* key = NULL;
|
|
|
|
NCTRACE(11,"bucket=%s pathkey=%s",bucket,pathkey);
|
|
|
|
AWSS3CLIENT s3client = (AWSS3CLIENT)s3client0;
|
|
Aws::S3::Model::DeleteObjectRequest delete_request;
|
|
|
|
assert(pathkey != NULL && *pathkey == '/');
|
|
if((stat = makes3key(pathkey,&key))) return NCUNTRACE(stat);
|
|
/* Delete this key object */
|
|
delete_request.SetBucket(bucket);
|
|
delete_request.SetKey(key);
|
|
auto delete_result = AWSS3GET(s3client)->DeleteObject(delete_request);
|
|
if(!delete_result.IsSuccess()) {
|
|
if(errmsgp) *errmsgp = makeerrmsg(delete_result.GetError(),key);
|
|
stat = NC_ES3;
|
|
}
|
|
return NCUNTRACE(stat);
|
|
}
|
|
|
|
/*
|
|
Get Info about a single object from a vector
|
|
*/
|
|
static int
|
|
s3objectinfo1(const Aws::S3::Model::Object& s3_object, char** fullkeyp)
|
|
{
|
|
int stat = NC_NOERR;
|
|
char* cstr = NULL;
|
|
|
|
if(fullkeyp) {
|
|
const char* key = NULL;
|
|
char* cstr = NULL;
|
|
auto s = s3_object.GetKey();
|
|
key = s.c_str();
|
|
if(key[0] == '/') {
|
|
cstr = strdup(key);
|
|
} else {
|
|
size_t len = strlen(key);
|
|
cstr = (char*)malloc(len+1+1);
|
|
if(cstr != NULL) {
|
|
cstr[0] = '/';
|
|
memcpy((void*)(cstr+1),(void*)key,len);
|
|
cstr[len+1] = '\0';
|
|
}
|
|
}
|
|
if(cstr == NULL) {
|
|
stat = NC_ENOMEM;
|
|
} else if(fullkeyp) {
|
|
*fullkeyp = cstr;
|
|
cstr = NULL;
|
|
}
|
|
}
|
|
if(cstr) free(cstr);
|
|
return stat;
|
|
}
|
|
|
|
/*
|
|
Get Info about a vector of objects; Keys are fixed up to start with a '/'
|
|
*/
|
|
static int
|
|
s3objectsinfo(Aws::Vector<Aws::S3::Model::Object> list, KeySet* keys)
|
|
{
|
|
int stat = NC_NOERR;
|
|
int i;
|
|
|
|
i = 0;
|
|
for (auto const &s3_object : list) {
|
|
char* akey = NULL;
|
|
stat = s3objectinfo1(s3_object,&akey);
|
|
i++;
|
|
if(stat) break;
|
|
keys->push(akey);
|
|
}
|
|
return stat;
|
|
}
|
|
|
|
static int
|
|
s3commonprefixes(Aws::Vector<Aws::S3::Model::CommonPrefix> list, KeySet* keys)
|
|
{
|
|
int stat = NC_NOERR;
|
|
|
|
for (auto const &s3prefix : list) {
|
|
char* p; const char* px; char* p1;
|
|
size_t len, alloc;
|
|
const Aws::String& prefix = s3prefix.GetPrefix();
|
|
len = prefix.length();
|
|
alloc = len + 1 + 1; /* for nul + leading '/' */
|
|
if((p = (char*) malloc(alloc))==NULL)
|
|
stat = NC_ENOMEM;
|
|
if(stat == NC_NOERR) {
|
|
px = prefix.c_str();
|
|
p1 = p;
|
|
if(*px != '/') *p1++ = '/';
|
|
memcpy(p1,px,len);
|
|
p1 += len;
|
|
*p1 = '\0';
|
|
keys->push(p);
|
|
}
|
|
}
|
|
return stat;
|
|
}
|
|
|
|
static Aws::S3::Model::BucketLocationConstraint
|
|
s3findregion(const char* name)
|
|
{
|
|
return Aws::S3::Model::BucketLocationConstraintMapper::GetBucketLocationConstraintForName(name);
|
|
}
|
|
|
|
struct MemBuf: std::streambuf {
|
|
MemBuf(char* base, size_t size) {
|
|
char* p(base);
|
|
this->setg(p, p, p + size);
|
|
}
|
|
};
|
|
|
|
#if 0
|
|
static void
|
|
freestringenvv(char** ss)
|
|
{
|
|
char** p;
|
|
if(ss != NULL) {
|
|
for(p=ss;*p;p++)
|
|
if(*p) free(*p);
|
|
free(ss);
|
|
}
|
|
}
|
|
#endif
|
|
|
|
static int
|
|
makes3key(const char* pathkey, const char** keyp)
|
|
{
|
|
assert(pathkey != NULL && pathkey[0] == '/');
|
|
if(keyp) *keyp = pathkey+1;
|
|
return NC_NOERR;
|
|
}
|
|
|
|
static int
|
|
makes3keydir(const char* prefix, char** prefixdirp)
|
|
{
|
|
size_t plen = strlen(prefix);
|
|
char* prefixdir = (char*)malloc(plen+1+1); /* '/' + nul */
|
|
if(prefixdir == NULL) return NC_ENOMEM;
|
|
memcpy(prefixdir,prefix,plen);
|
|
if(prefixdir[plen-1] != '/') {
|
|
prefixdir[plen++] = '/';
|
|
}
|
|
prefixdir[plen] = '\0';
|
|
*prefixdirp = prefixdir; prefixdir = NULL;
|
|
return NC_NOERR;
|
|
}
|
|
|
|
static int
|
|
mergekeysets(KeySet* keys1, KeySet* keys2, KeySet* merge)
|
|
{
|
|
size_t i;
|
|
for(i=0;i<keys1->getnkeys();i++)
|
|
merge->push(keys1->extractithkey(i));
|
|
for(i=0;i<keys2->getnkeys();i++)
|
|
merge->push(keys2->extractithkey(i));
|
|
return NC_NOERR;
|
|
}
|