Some refactoring to allow the creation of shared library
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27a7a64e09
commit
b3e3904356
16
cpp/Makefile
16
cpp/Makefile
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@ -6,20 +6,18 @@ TARGET = libnegentropy.so
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.PHONY: all clean install-deps
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all: negentropy-cpp c-wrapper shared-lib
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all: precompiled-header shared-lib
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#TODO: Need to add compilation flags based on OS
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install-deps:
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brew install lmdb openssl
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shared-lib: negentropy.o
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g++ -shared -fPIC -o $(TARGET) negentropy.o negentropy_wrapper.o
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# Generate 'negentropy.h.gch'
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precompiled-header:
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g++ --std=c++20 -Wall -fexceptions -g negentropy.h -I./ -I./vendor/lmdbxx/include/
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negentropy-cpp:
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g++ negentropy.h --std=c++20 -o negentropy.o $(INCS)
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c-wrapper:
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g++ negentropy_wrapper.h --std=c++20 -o negentropy_wrapper.o $(INCS) -I./vendor/lmdbxx/include/
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shared-lib: negentropy.h.gch
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g++ --std=c++20 -I./ -I./vendor/lmdbxx/include/ -shared -fPIC -o $(TARGET) negentropy_wrapper.c
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clean:
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rm -f negentropy.o negentropy_wrapper.o libnegentropy.so
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rm -f $(TARGET) negentropy.h.gch libnegentropy.so
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@ -0,0 +1,121 @@
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#include "negentropy_wrapper.h"
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//This is a C-wrapper for the C++ library that helps in integrating negentropy with nim code.
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//TODO: Do error handling by catching exceptions
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void* storage_new(const char* db_path, const char* name){
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negentropy::storage::BTreeLMDB* storage;
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/*
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auto env = lmdb::env::create();
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env.set_max_dbs(64);
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env.open(db_path, 0);
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lmdb::dbi btreeDbi;
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{
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auto txn = lmdb::txn::begin(env);
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btreeDbi = negentropy::storage::BTreeLMDB::setupDB(txn, name);
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txn.commit();
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} */
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//TODO: Finish constructor
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//storage = new negentropy::storage::BTreeLMDB();
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return storage;
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}
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void* negentropy_new(void* storage, uint64_t frameSizeLimit){
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//TODO: Make these typecasts into macros??
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negentropy::storage::BTreeLMDB* lmdbStorage;
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//TODO: reinterpret cast is risky, need to use more safe type conversion.
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lmdbStorage = reinterpret_cast<negentropy::storage::BTreeLMDB*>(storage);
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Negentropy<negentropy::storage::BTreeLMDB>* ne;
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try{
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ne = new Negentropy<negentropy::storage::BTreeLMDB>(*lmdbStorage, frameSizeLimit);
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}catch(negentropy::err e){
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//TODO:Find a way to return this error
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return NULL;
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}
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return ne;
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}
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const char* negentropy_initiate(void* negentropy){
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Negentropy<negentropy::storage::BTreeLMDB>* ngn_inst;
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ngn_inst = reinterpret_cast<Negentropy<negentropy::storage::BTreeLMDB>*>(negentropy);
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std::string* output = new std::string();
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try {
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*output = ngn_inst->initiate();
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} catch(negentropy::err e){
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//TODO:Find a way to return this error
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return NULL;
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}
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return output->c_str();
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}
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void negentropy_setinitiator(void* negentropy){
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Negentropy<negentropy::storage::BTreeLMDB> *ngn_inst;
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ngn_inst = reinterpret_cast<Negentropy<negentropy::storage::BTreeLMDB>*>(negentropy);
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ngn_inst->setInitiator();
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}
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bool storage_insert(void* storage, uint64_t createdAt, const char* id){
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negentropy::storage::BTreeLMDB* lmdbStorage;
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lmdbStorage = reinterpret_cast<negentropy::storage::BTreeLMDB*>(storage);
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//TODO: Error handling. Is it required?
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//How does out of memory get handled?
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return lmdbStorage->insert(createdAt, id);
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}
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bool storage_erase(void* storage, uint64_t createdAt, const char* id){
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negentropy::storage::BTreeLMDB* lmdbStorage;
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lmdbStorage = reinterpret_cast<negentropy::storage::BTreeLMDB*>(storage);
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//TODO: Error handling
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return lmdbStorage->erase(createdAt, id);
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}
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const char* reconcile(void* negentropy, const char* query){
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Negentropy<negentropy::storage::BTreeLMDB> *ngn_inst;
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ngn_inst = reinterpret_cast<Negentropy<negentropy::storage::BTreeLMDB>*>(negentropy);
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std::string* output = new std::string();
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try {
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*output = ngn_inst->reconcile(std::string_view(query));
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} catch(negentropy::err e){
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//TODO:Find a way to return this error
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return NULL;
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}
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return output->c_str();
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}
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const char* reconcile_with_ids(void* negentropy, const char* query, const char* have_ids[],
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uint64_t have_ids_len, const char* need_ids[], uint64_t need_ids_len){
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Negentropy<negentropy::storage::BTreeLMDB> *ngn_inst;
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ngn_inst = reinterpret_cast<Negentropy<negentropy::storage::BTreeLMDB>*>(negentropy);
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std::optional<std::string>* output;
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std::vector<std::string> haveIds(have_ids, have_ids+have_ids_len);
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std::vector<std::string> needIds(need_ids, need_ids+need_ids_len);
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try {
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*output = ngn_inst->reconcile(std::string_view(query), haveIds, needIds);
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} catch(negentropy::err e){
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//TODO:Find a way to return this error
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return NULL;
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}
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if (output->has_value()) {
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//TODO: Figure out diff between error and this.
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return NULL;
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}else {
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return output->value().c_str();
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}
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}
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@ -1,132 +1,31 @@
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#pragma once
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#ifdef __cplusplus
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#define EXTERNC extern "C"
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#else
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#define EXTERNC
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#endif
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#ifndef _NEGENTROPY_WRAPPER_H
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#define _NEGENTROPY_WRAPPER_H
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#include "negentropy.h"
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#include "negentropy/storage/BTreeLMDB.h"
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#define length(array) ((sizeof(array)) / (sizeof(array[0])))
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//This is a C-wrapper for the C++ library that helps in integrating negentropy with nim code.
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//TODO: Do error handling by catching exceptions
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EXTERNC void* storage_new(const char* db_path, const char* name){
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negentropy::storage::BTreeLMDB* storage;
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/*
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auto env = lmdb::env::create();
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env.set_max_dbs(64);
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env.open(db_path, 0);
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void* storage_new(const char* db_path, const char* name);
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lmdb::dbi btreeDbi;
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void* negentropy_new(void* storage, uint64_t frameSizeLimit);
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{
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auto txn = lmdb::txn::begin(env);
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btreeDbi = negentropy::storage::BTreeLMDB::setupDB(txn, name);
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txn.commit();
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} */
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//TODO: Finish constructor
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//storage = new negentropy::storage::BTreeLMDB();
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return storage;
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}
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const char* negentropy_initiate(void* negentropy);
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EXTERNC void* negentropy_new(void* storage, uint64_t frameSizeLimit){
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//TODO: Make these typecasts into macros??
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negentropy::storage::BTreeLMDB* lmdbStorage;
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//TODO: reinterpret cast is risky, need to use more safe type conversion.
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lmdbStorage = reinterpret_cast<negentropy::storage::BTreeLMDB*>(storage);
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void negentropy_setinitiator(void* negentropy);
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Negentropy<negentropy::storage::BTreeLMDB>* ne;
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try{
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ne = new Negentropy<negentropy::storage::BTreeLMDB>(*lmdbStorage, frameSizeLimit);
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}catch(negentropy::err e){
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//TODO:Find a way to return this error
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return NULL;
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}
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return ne;
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}
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bool storage_insert(void* storage, uint64_t createdAt, const char* id);
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EXTERNC const char* negentropy_initiate(void* negentropy){
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Negentropy<negentropy::storage::BTreeLMDB>* ngn_inst;
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ngn_inst = reinterpret_cast<Negentropy<negentropy::storage::BTreeLMDB>*>(negentropy);
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bool storage_erase(void* storage, uint64_t createdAt, const char* id);
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std::string* output = new std::string();
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try {
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*output = ngn_inst->initiate();
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} catch(negentropy::err e){
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//TODO:Find a way to return this error
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return NULL;
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}
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return output->c_str();
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}
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const char* reconcile(void* negentropy, const char* query);
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EXTERNC void negentropy_setinitiator(void* negentropy){
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Negentropy<negentropy::storage::BTreeLMDB> *ngn_inst;
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ngn_inst = reinterpret_cast<Negentropy<negentropy::storage::BTreeLMDB>*>(negentropy);
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const char* reconcile_with_ids(void* negentropy, const char* query, const char* have_ids[],
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uint64_t have_ids_len, const char* need_ids[], uint64_t need_ids_len);
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ngn_inst->setInitiator();
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#endif
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}
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EXTERNC bool storage_insert(void* storage, uint64_t createdAt, const char* id){
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negentropy::storage::BTreeLMDB* lmdbStorage;
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lmdbStorage = reinterpret_cast<negentropy::storage::BTreeLMDB*>(storage);
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//TODO: Error handling. Is it required?
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//How does out of memory get handled?
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return lmdbStorage->insert(createdAt, id);
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}
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EXTERNC bool storage_erase(void* storage, uint64_t createdAt, const char* id){
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negentropy::storage::BTreeLMDB* lmdbStorage;
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lmdbStorage = reinterpret_cast<negentropy::storage::BTreeLMDB*>(storage);
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//TODO: Error handling
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return lmdbStorage->erase(createdAt, id);
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}
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EXTERNC const char* reconcile(void* negentropy, const char* query){
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Negentropy<negentropy::storage::BTreeLMDB> *ngn_inst;
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ngn_inst = reinterpret_cast<Negentropy<negentropy::storage::BTreeLMDB>*>(negentropy);
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std::string* output = new std::string();
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try {
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*output = ngn_inst->reconcile(std::string_view(query));
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} catch(negentropy::err e){
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//TODO:Find a way to return this error
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return NULL;
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}
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return output->c_str();
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}
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EXTERNC const char* reconcile_with_ids(void* negentropy, const char* query, const char* have_ids[],
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uint64_t have_ids_len, const char* need_ids[], uint64_t need_ids_len){
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Negentropy<negentropy::storage::BTreeLMDB> *ngn_inst;
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ngn_inst = reinterpret_cast<Negentropy<negentropy::storage::BTreeLMDB>*>(negentropy);
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std::optional<std::string>* output;
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std::vector<std::string> haveIds(have_ids, have_ids+have_ids_len);
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std::vector<std::string> needIds(need_ids, need_ids+need_ids_len);
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try {
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*output = ngn_inst->reconcile(std::string_view(query), haveIds, needIds);
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} catch(negentropy::err e){
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//TODO:Find a way to return this error
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return NULL;
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}
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if (output->has_value()) {
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//TODO: Figure out diff between error and this.
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return NULL;
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}else {
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return output->value().c_str();
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}
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}
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