597 lines
18 KiB
Plaintext
597 lines
18 KiB
Plaintext
// Copyright (C) 2010, Guy Barrand. All rights reserved.
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// See the file tools.license for terms.
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#ifndef tools_wroot_branch
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#define tools_wroot_branch
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#include "leaf"
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#include "basket"
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#include "../forit"
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#include "imutex"
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namespace tools {
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namespace wroot {
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class branch : public virtual ibo {
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//static uint32 kDoNotProcess() {return (1<<10);} // Active bit for branches
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#ifdef TOOLS_MEM
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static const std::string& s_class() {
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static const std::string s_v("tools::wroot::branch");
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return s_v;
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}
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#endif
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public: //ibo
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virtual const std::string& store_cls() const {
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static const std::string s_v("TBranch");
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return s_v;
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}
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virtual bool stream(buffer& a_buffer) const {
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unsigned int c;
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if(!a_buffer.write_version(8,c)) return false;
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if(!Named_stream(a_buffer,m_name,m_title)) return false;
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if(!AttFill_stream(a_buffer)) return false;
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int fEntryOffsetLen = 1000;
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int fOffset = 0;
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int fSplitLevel = 0;
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if(!a_buffer.write(fCompress)) return false;
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if(!a_buffer.write(m_basket_size)) return false;
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if(!a_buffer.write(fEntryOffsetLen)) return false;
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if(!a_buffer.write(m_write_basket)) return false;
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int fEntryNumber = (int)m_entry_number;
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if(!a_buffer.write(fEntryNumber)) return false;
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if(!a_buffer.write(fOffset)) return false;
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if(!a_buffer.write(m_max_baskets)) return false;
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if(!a_buffer.write(fSplitLevel)) return false;
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double fEntries = (double)m_entries;
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if(!a_buffer.write(fEntries)) return false;
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double fTotBytes = (double)m_tot_bytes;
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double fZipBytes = (double)m_zip_bytes;
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if(!a_buffer.write(fTotBytes)) return false;
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if(!a_buffer.write(fZipBytes)) return false;
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if(!m_branches.stream(a_buffer)) return false;
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if(!m_leaves.stream(a_buffer)) return false;
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if(!m_baskets.stream(a_buffer)) return false;
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/*
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{uint32 remaining_baskets = 0;
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for(uint32 i=0;i<m_max_baskets;i++) {
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if(m_baskets[i]) {
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m_out << "debug : remaining basket : index " << i << ", bytes = " << m_baskets[i]->number_of_bytes()
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<< std::endl;
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remaining_baskets++;
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}
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}
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m_out << "tools::wroot::branch::stream :"
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<< " write_basket = " << m_write_basket
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<< ", max_baskets = " << m_max_baskets
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<< ", remaining_baskets = " << remaining_baskets << "."
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<< std::endl;}
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*/
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// See TStreamerInfo::ReadBuffer::WriteBasicPointer
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if(!a_buffer.write((char)1)) return false;
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if(!a_buffer.write_fast_array(fBasketBytes,m_max_baskets)) return false;
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if(!a_buffer.write((char)1)) return false;
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if(!a_buffer.write_fast_array(fBasketEntry,m_max_baskets)) return false;
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char isBigFile = 1;
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//GB : begin
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//if(fTree.directory().file().end()>RIO_START_BIG_FILE()) isBigFile = 2;
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{for(uint32 i=0;i<m_max_baskets;i++) {
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if(fBasketSeek[i]>START_BIG_FILE()) {
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isBigFile = 2;
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break;
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}
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}}
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//GB : end
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if(!a_buffer.write(isBigFile)) return false;
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if(isBigFile==2) {
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if(!a_buffer.write_fast_array(fBasketSeek,m_max_baskets)) return false;
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} else {
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for(uint32 i=0;i<m_max_baskets;i++) {
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if(fBasketSeek[i]>START_BIG_FILE()) { //G.Barrand : add this test.
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m_out << "tools::wroot::branch::stream :"
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<< " attempt to write big Seek "
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<< fBasketSeek[i] << " on 32 bits."
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<< std::endl;
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return false;
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}
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if(!a_buffer.write((seek32)fBasketSeek[i])) return false;
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}
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}
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// fFileName
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if(!a_buffer.write(std::string(""))) return false;
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if(!a_buffer.set_byte_count(c)) return false;
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return true;
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}
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public:
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branch(std::ostream& a_out,bool a_byte_swap,uint32 a_compression,
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seek a_seek_directory,const std::string& a_name,const std::string& a_title,bool a_verbose)
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:m_out(a_out)
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,m_byte_swap(a_byte_swap)
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,m_verbose(a_verbose)
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,m_seek_directory(a_seek_directory)
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,m_name(a_name)
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,m_title(a_title)
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,fAutoDelete(false)
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//,m_branches(true)
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//,m_leaves(true)
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,fCompress(a_compression)
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,m_basket_size(32000)
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,m_write_basket(0)
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,m_entry_number(0)
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,m_entries(0)
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,m_tot_bytes(0)
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,m_zip_bytes(0)
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,m_max_baskets(10)
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,fBasketBytes(0)
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,fBasketEntry(0)
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,fBasketSeek(0)
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{
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#ifdef TOOLS_MEM
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mem::increment(s_class().c_str());
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#endif
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m_baskets.resize(m_max_baskets,0);
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fBasketBytes = new uint32[m_max_baskets];
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fBasketEntry = new uint32[m_max_baskets];
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fBasketSeek = new seek[m_max_baskets];
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{for(uint32 i=0;i<m_max_baskets;i++) {
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m_baskets[i] = 0;
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fBasketBytes[i] = 0;
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fBasketEntry[i] = 0;
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fBasketSeek[i] = 0;
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}}
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m_baskets[m_write_basket] = new basket(m_out,m_byte_swap,a_seek_directory,m_name,m_title,"TBasket",m_basket_size,m_verbose);
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fBasketEntry[m_write_basket] = (uint32)m_entry_number;
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}
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virtual ~branch(){
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// {for(uint32 i=0;i<=m_write_basket;i++) {
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// m_out << " " << i << ", " << fBasketEntry[i] << std::endl;
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// }}
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delete [] fBasketBytes;
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delete [] fBasketEntry;
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delete [] fBasketSeek;
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fBasketBytes = 0;
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fBasketEntry = 0;
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fBasketSeek = 0;
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#ifdef TOOLS_MEM
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mem::decrement(s_class().c_str());
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#endif
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}
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protected:
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branch(const branch& a_from)
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:ibo(a_from)
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,m_out(a_from.m_out)
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,m_seek_directory(a_from.m_seek_directory)
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{}
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branch& operator=(const branch&){return *this;}
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public:
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const std::string& name() const {return m_name;}
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const std::string& title() const {return m_title;}
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uint64 entries() const {return m_entries;}
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uint64 tot_bytes() const {return m_tot_bytes;}
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void set_tot_bytes(uint64 a_value) {m_tot_bytes = a_value;}
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uint64 zip_bytes() const {return m_zip_bytes;}
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void set_zip_bytes(uint64 a_value) {m_zip_bytes = a_value;}
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void set_basket_size(uint32 a_size) {m_basket_size = a_size;}
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uint32 basket_size() const {return m_basket_size;}
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////////////////////////////////////////////////
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////////////////////////////////////////////////
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////////////////////////////////////////////////
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template <class T>
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leaf_ref<T>* create_leaf_ref(const std::string& a_name,const T& a_ref){
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leaf_ref<T>* lf = new leaf_ref<T>(m_out,a_name,a_ref);
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m_leaves.push_back(lf);
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return lf;
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}
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leaf_string_ref* create_leaf_string_ref(const std::string& a_name,const std::string& a_ref){
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leaf_string_ref* lf = new leaf_string_ref(m_out,a_name,a_ref);
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m_leaves.push_back(lf);
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return lf;
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}
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////////////////////////////////////////////////
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////////////////////////////////////////////////
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////////////////////////////////////////////////
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template <class T>
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leaf<T>* create_leaf(const std::string& a_name){
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leaf<T>* lf = new leaf<T>(m_out,a_name);
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m_leaves.push_back(lf);
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return lf;
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}
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leaf_string* create_leaf_string(const std::string& a_name){
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leaf_string* lf = new leaf_string(m_out,a_name);
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m_leaves.push_back(lf);
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return lf;
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}
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leaf_element* create_leaf_element(const std::string& a_name,int a_id,int a_type){
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leaf_element* lf = new leaf_element(m_out,a_name,a_id,a_type);
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m_leaves.push_back(lf);
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return lf;
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}
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// for row_wise ntuple :
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template <class T>
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leaf_std_vector_ref<T>* create_leaf_std_vector_ref(const std::string& a_name,
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base_leaf& a_leaf_count,const std::vector<T>& a_ref) {
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leaf_std_vector_ref<T>* lf = new leaf_std_vector_ref<T>(m_out,a_name,a_leaf_count,a_ref);
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m_leaves.push_back(lf);
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return lf;
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}
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const std::vector<base_leaf*>& leaves() const {return m_leaves;}
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void reset() {
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m_baskets.clear_objs();
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delete [] fBasketBytes;
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delete [] fBasketEntry;
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delete [] fBasketSeek;
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fBasketBytes = 0;
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fBasketEntry = 0;
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fBasketSeek = 0;
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m_max_baskets = 10;
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m_write_basket = 0;
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m_entry_number = 0;
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m_entries = 0;
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m_tot_bytes = 0;
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m_zip_bytes = 0;
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m_baskets.resize(m_max_baskets,0);
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fBasketBytes = new uint32[m_max_baskets];
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fBasketEntry = new uint32[m_max_baskets];
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fBasketSeek = new seek[m_max_baskets];
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{for(uint32 i=0;i<m_max_baskets;i++) {
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m_baskets[i] = 0;
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fBasketBytes[i] = 0;
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fBasketEntry[i] = 0;
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fBasketSeek[i] = 0;
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}}
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fBasketEntry[m_write_basket] = (uint32)m_entry_number;
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m_baskets[m_write_basket] = new basket(m_out,m_byte_swap,m_seek_directory,m_name,m_title,"TBasket",m_basket_size,m_verbose);
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{tools_vforit(branch*,m_branches,it) (*it)->reset();}
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}
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bool fill(ifile& a_file,uint32& a_nbytes,uint32& a_add_bytes,uint32& a_nout) {
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a_nbytes = 0;
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a_add_bytes = 0;
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a_nout = 0;
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if(m_write_basket>=m_max_baskets) {
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m_out << "tools::wroot::branch::fill :"
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<< " potential overflow : m_write_basket (" << m_write_basket << ")"
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<< " >= m_max_baskets (" << m_max_baskets << ")."
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<< std::endl;
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return false;
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}
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//FIXME if (TestBit(kDoNotProcess)) return 0;
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basket* bk = m_baskets[m_write_basket];
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if(!bk) {
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m_out << "tools::wroot::branch::fill :"
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<< " m_baskets[m_write_basket] should not be null."
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<< std::endl;
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return false;
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}
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buffer& buf = bk->datbuf();
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buf.reset_objs_map();
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uint32 lold = buf.length();
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bk->update(bk->key_length()+lold);
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m_entries++;
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m_entry_number++;
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if(!fill_leaves(buf)) {
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m_out << "tools::wroot::branch::fill :"
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<< " fill_leaves() failed."
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<< std::endl;
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return false;
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}
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uint32 lnew = buf.length();
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uint32 nbytes = lnew - lold;
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uint32 nsize = 0;
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uint32 add_bytes = 0;
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uint32 nout = 0;
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// Should we create a new basket?
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// Compare expected next size with m_basket_size.
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if((lnew+2*nsize+nbytes)>=m_basket_size) {
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if(!bk->write_on_file(a_file,m_write_basket,nout)) {//it set bk m_seek_key, set a_file.m_END.
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//Does a a_file.set_END().
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m_out << "tools::wroot::branch::fill :"
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<< " basket.write_on_file() failed."
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<< std::endl;
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return false;
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}
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fBasketBytes[m_write_basket] = bk->number_of_bytes();
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//fBasketEntry[m_write_basket] = // not done here since we do not know here the first entry.
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fBasketSeek[m_write_basket] = bk->seek_key();
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add_bytes = bk->object_size() + bk->key_length();
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delete bk;
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m_baskets[m_write_basket] = 0;
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m_tot_bytes += add_bytes;
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m_zip_bytes += nout;
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m_write_basket++;
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if(!check_alloc_fBasketXxx()) return false;
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m_baskets[m_write_basket] = new basket(m_out,m_byte_swap,
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m_seek_directory,m_name,m_title,"TBasket",m_basket_size,
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m_verbose);
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fBasketEntry[m_write_basket] = (uint32)m_entry_number;
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}
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a_nbytes = nbytes;
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a_add_bytes = add_bytes;
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a_nout = nout;
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return true;
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}
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///////////////////////////////////////////////////////////////////////////
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/// for parallelization : /////////////////////////////////////////////////
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///////////////////////////////////////////////////////////////////////////
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bool add_basket(ifile& a_file,basket& a_basket,uint32& a_add_bytes,uint32& a_nout) {
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//done on a (main) ntuple/branch.
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if(m_write_basket>=m_max_baskets) {
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m_out << "tools::wroot::branch::add_basket :"
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<< " potential overflow : m_write_basket (" << m_write_basket << ")"
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<< " >= m_max_baskets (" << m_max_baskets << ")."
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<< std::endl;
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return false;
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}
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uint32 nout;
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if(!a_basket.write_on_file(a_file,m_write_basket,nout)) { //a_file is the main file (a true file).
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//the upper set a_basket.m_seek_key, set a_file.m_END. Does a a_file.set_END().
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m_out << "tools::wroot::branch::add_basket :"
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<< " basket.write_on_file() failed."
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<< std::endl;
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return false;
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}
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fBasketBytes[m_write_basket] = a_basket.number_of_bytes();
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fBasketEntry[m_write_basket] = (uint32)m_entry_number;
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fBasketSeek[m_write_basket] = a_basket.seek_key();
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m_entries += a_basket.nev();
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m_entry_number += a_basket.nev();
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uint32 add_bytes = a_basket.object_size() + a_basket.key_length();
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delete m_baskets[m_write_basket];
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m_baskets[m_write_basket] = 0;
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m_write_basket++;
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if(!check_alloc_fBasketXxx()) return false;
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m_baskets[m_write_basket] = new basket(m_out,m_byte_swap,
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m_seek_directory,m_name,m_title,"TBasket",m_basket_size,
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m_verbose);
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fBasketEntry[m_write_basket] = (uint32)m_entry_number;
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a_add_bytes = add_bytes;
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a_nout = nout;
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return true;
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}
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class iadd_basket {
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public:
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virtual ~iadd_basket() {}
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public:
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virtual bool add_basket(basket*) = 0;
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};
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bool pfill(iadd_basket& a_badd,uint32 a_nev) {
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//done on a pntuple/branch.
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//a_nbytes = 0;
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//a_add_bytes = 0;
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//a_nout = 0;
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// this method uses always m_baskets[0].
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basket* bk = m_baskets[m_write_basket];
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if(!bk) {
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m_out << "tools::wroot::branch::parallel_fill :"
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<< " get_basket failed."
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<< std::endl;
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return false;
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}
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buffer& buf = bk->datbuf();
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uint32 lold = buf.length();
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bk->update(bk->key_length()+lold);
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//m_entries++; //not used by parallel branches.
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//m_entry_number++; //idem.
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if(!fill_leaves(buf)) {
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m_out << "tools::wroot::branch::parallel_fill :"
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<< " fill_leaves() failed."
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<< std::endl;
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return false;
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}
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uint32 lnew = buf.length();
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uint32 nbytes = lnew - lold;
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// Should we create a new basket?
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bool store_basket = false;
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if(a_nev) {
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store_basket = (bk->nev()>=a_nev); // trigger add_basket per number of entries reached.
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} else {
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store_basket = ((lnew+nbytes)>=m_basket_size); // trigger add_basket when reaching m_basket_size.
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}
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if(store_basket) {
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if(!a_badd.add_basket(bk)) { //we give ownership of bk.
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m_out << "tools::wroot::branch::parallel_fill :"
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<< " main_branch.add_basket() failed."
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<< std::endl;
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return false;
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}
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//delete bk; //no, it is deleted by the a_badd.add_basket().
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bool main_branch_byte_swap = m_byte_swap; //NOTE : it assumes that pntuple/branch and main/branch have same byte_swap.
|
|
bool main_branch_verbose = m_verbose;
|
|
m_baskets[m_write_basket] = new basket(m_out,main_branch_byte_swap,
|
|
m_seek_directory,m_name,m_title,"TBasket",m_basket_size,
|
|
main_branch_verbose);
|
|
}
|
|
|
|
return true;
|
|
}
|
|
|
|
bool end_pfill(iadd_basket& a_badd) {
|
|
//done on a pntuple/branch.
|
|
|
|
basket* bk = m_baskets[m_write_basket];
|
|
if(!bk) {
|
|
m_out << "tools::wroot::branch::end_pfill :"
|
|
<< " m_baskets[m_write_basket] should not be null."
|
|
<< std::endl;
|
|
return false;
|
|
}
|
|
|
|
buffer& buf = bk->datbuf();
|
|
uint32 lold = buf.length();
|
|
|
|
if(lold) {
|
|
if(!a_badd.add_basket(bk)) { //we give ownership of bk.
|
|
m_out << "tools::wroot::branch::parallel_fill :"
|
|
<< " main_branch.add_basket() failed."
|
|
<< std::endl;
|
|
return false;
|
|
}
|
|
} else {
|
|
delete bk;
|
|
}
|
|
|
|
m_baskets[m_write_basket] = 0; // no need to recreate a basket since it is end of fill.
|
|
|
|
return true;
|
|
}
|
|
|
|
///////////////////////////////////////////////////////////////////////////
|
|
///////////////////////////////////////////////////////////////////////////
|
|
///////////////////////////////////////////////////////////////////////////
|
|
protected:
|
|
bool check_alloc_fBasketXxx() {
|
|
if(m_write_basket>=m_max_baskets) {
|
|
//Increase BasketEntry buffer of a minimum of 10 locations
|
|
// and a maximum of 50 per cent of current size
|
|
uint32 newsize = mx<uint32>(10,uint32(1.5*m_max_baskets));
|
|
if(newsize>=START_BIG_FILE()) {
|
|
//we are going to have pb with uint32[] indexing.
|
|
m_out << "tools::wroot::branch::add_basket :"
|
|
<< " new size for fBasket[Bytes,Entry,Seek] arrays"
|
|
<< " is too close of 32 bits limit."
|
|
<< std::endl;
|
|
m_out << "tools::wroot::branch::add_basket :"
|
|
<< " you have to work with larger basket size."
|
|
<< std::endl;
|
|
return false;
|
|
}
|
|
|
|
m_baskets.resize(newsize,0);
|
|
|
|
if(!realloc<uint32>(fBasketBytes,newsize,m_max_baskets,true)) {
|
|
m_out << "tools::wroot::branch::add_basket : realloc failed." << std::endl;
|
|
return false;
|
|
}
|
|
if(!realloc<uint32>(fBasketEntry,newsize,m_max_baskets,true)){
|
|
m_out << "tools::wroot::branch::add_basket : realloc failed." << std::endl;
|
|
return false;
|
|
}
|
|
if(!realloc<seek>(fBasketSeek,newsize,m_max_baskets,true)){
|
|
m_out << "tools::wroot::branch::add_basket : realloc failed." << std::endl;
|
|
return false;
|
|
}
|
|
m_max_baskets = newsize;
|
|
}
|
|
|
|
m_baskets[m_write_basket] = 0;
|
|
fBasketBytes[m_write_basket] = 0;
|
|
fBasketEntry[m_write_basket] = 0;
|
|
fBasketSeek[m_write_basket] = 0;
|
|
|
|
return true;
|
|
}
|
|
|
|
virtual bool fill_leaves(buffer& a_buffer) { //virtual for branch_element.
|
|
tools_vforit(base_leaf*,m_leaves,it) {
|
|
if(!(*it)->fill_buffer(a_buffer)) return false;
|
|
}
|
|
return true;
|
|
}
|
|
protected:
|
|
std::ostream& m_out;
|
|
bool m_byte_swap;
|
|
bool m_verbose;
|
|
seek m_seek_directory;
|
|
obj_array<basket> m_baskets;
|
|
/// for parallelization :
|
|
public:
|
|
std::vector<basket*> m_parallel_baskets;
|
|
protected:
|
|
//Object
|
|
//uint32 m_bits;
|
|
//Named
|
|
std::string m_name;
|
|
std::string m_title;
|
|
|
|
bool fAutoDelete;
|
|
private: //be sure that sub branches are not used for the moment.
|
|
obj_array<branch> m_branches;
|
|
protected:
|
|
obj_array<base_leaf> m_leaves;
|
|
uint32 fCompress; // Compression level and algorithm
|
|
uint32 m_basket_size; // Initial Size of Basket Buffer
|
|
uint32 m_write_basket; // Last basket number written
|
|
uint64 m_entry_number; // Current entry number (last one filled in this branch)
|
|
uint64 m_entries; // Number of entries
|
|
uint64 m_tot_bytes;
|
|
uint64 m_zip_bytes;
|
|
uint32 m_max_baskets;
|
|
uint32* fBasketBytes; //[m_max_baskets] Length of baskets on file
|
|
uint32* fBasketEntry; //[m_max_baskets] Table of first entry in eack basket
|
|
seek* fBasketSeek; //[m_max_baskets] Addresses of baskets on file
|
|
};
|
|
|
|
}}
|
|
|
|
#endif
|