11#ifndef ROOT_RDF_RVARIATION
12#define ROOT_RDF_RVARIATION
47bool ResultsSizeEq(
const T &results, std::size_t expected, std::size_t nColumns, std::true_type )
49 assert(nColumns == 1);
52 return results.size() == expected;
58 return results.
size();
64 results.
resize(nVariations);
73 const auto nVariations = resStorage.
size();
75 for (
auto i = 0u; i < nVariations; ++i)
76 resStorage[i] = std::move(tmpResults[i]);
82 return static_cast<void *
>(&
v[varIdx]);
89bool ResultsSizeEq(
const T &results, std::size_t expected, std::size_t , std::false_type )
91 return std::all_of(results.begin(), results.end(),
92 [expected](
const auto &inner) { return inner.size() == expected; });
98 assert(!results.empty());
99 return results[0].size();
105 results.resize(nCols);
106 for (
auto &rvecOverVariations : results)
107 rvecOverVariations.resize(nVariations);
114 const auto nCols = resStorage.size();
115 const auto nVariations = resStorage[0].size();
116 for (
auto colIdx = 0u; colIdx < nCols; ++colIdx)
117 for (
auto varIdx = 0u; varIdx < nVariations; ++varIdx)
118 resStorage[colIdx][varIdx] = std::move(tmpResults[colIdx][varIdx]);
124 return static_cast<void *
>(&
v[colIdx][varIdx]);
128template <
typename VaryExpressionRet_t,
bool IsSingleColumn>
144template <
bool IsSingleColumn,
typename Ret_t>
147template <
typename F,
bool IsSingleColumn>
150 using TypeInd_t = std::make_index_sequence<ColumnTypes_t::list_size>;
153 using Result_t = std::conditional_t<IsSingleColumn, ROOT::RVec<VariedCol_t>, std::vector<ROOT::RVec<VariedCol_t>>>;
160 std::vector<std::array<RColumnReaderBase *, ColumnTypes_t::list_size>>
fValues;
162 template <
typename... ColTypes, std::size_t... S>
166 auto &&results = fExpression(fValues[slot][S]->
template Get<ColTypes>(entry)...);
169 if (!
ResultsSizeEq(results, fVariationNames.size(), fColNames.size(),
170 std::integral_constant<bool, IsSingleColumn>{})) {
171 std::string variationName = fVariationNames[0].substr(0, fVariationNames[0].find_first_of(
':'));
172 throw std::runtime_error(
"The evaluation of the expression for variation \"" + variationName +
173 "\" resulted in " + std::to_string(
GetNVariations(results)) +
" values, but " +
174 std::to_string(fVariationNames.size()) +
" were expected.");
177 AssignResults(fLastResults[slot * CacheLineStep<Result_t>()], std::move(results));
181 RVariation(
const std::vector<std::string> &colNames, std::string_view variationName,
F expression,
182 const std::vector<std::string> &variationTags, std::string_view
type,
const RColumnRegister &defines,
184 :
RVariationBase(colNames, variationName, variationTags,
type, defines, lm, inputColNames),
185 fExpression(std::move(expression)),
189 fLoopManager->Register(
this);
191 for (
auto i = 0u; i < lm.
GetNSlots(); ++i)
192 ResizeResults(fLastResults[i * CacheLineStep<Result_t>()], colNames.size(), variationTags.size());
201 RColumnReadersInfo info{fInputColumns, fColumnRegister, fIsDefine.data(), *fLoopManager};
203 fLastCheckedEntry[slot * CacheLineStep<Long64_t>()] = -1;
207 void *
GetValuePtr(
unsigned int slot,
const std::string &column,
const std::string &variation)
final
209 const auto colIt = std::find(fColNames.begin(), fColNames.end(), column);
210 assert(colIt != fColNames.end());
211 const auto colIdx = std::distance(fColNames.begin(), colIt);
213 const auto varIt = std::find(fVariationNames.begin(), fVariationNames.end(), variation);
214 assert(varIt != fVariationNames.end());
215 const auto varIdx = std::distance(fVariationNames.begin(), varIt);
217 return GetValuePtrHelper(fLastResults[slot * CacheLineStep<Result_t>()], colIdx, varIdx);
223 if (entry != fLastCheckedEntry[slot * CacheLineStep<Long64_t>()]) {
226 fLastCheckedEntry[slot * CacheLineStep<Long64_t>()] = entry;
233 void FinalizeSlot(
unsigned int slot)
final { fValues[slot].fill(
nullptr); }
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t r
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t Float_t Float_t Int_t Int_t UInt_t UInt_t Rectangle_t Int_t Int_t Window_t TString Int_t GCValues_t GetPrimarySelectionOwner GetDisplay GetScreen GetColormap GetNativeEvent const char const char dpyName wid window const char font_name cursor keysym reg const char only_if_exist regb h Point_t winding char text const char depth char const char Int_t count const char ColorStruct_t color const char Pixmap_t Pixmap_t PictureAttributes_t attr const char char ret_data h unsigned char height h Atom_t Int_t ULong_t ULong_t unsigned char prop_list Atom_t Atom_t Atom_t Time_t type
The head node of a RDF computation graph.
unsigned int GetNSlots() const
A binder for user-defined columns, variations and aliases.
This type includes all parts of RVariation that do not depend on the callable signature.
void Update(unsigned int slot, Long64_t entry) final
Update the value at the address returned by GetValuePtr with the content corresponding to the given e...
std::conditional_t< IsSingleColumn, ROOT::RVec< VariedCol_t >, std::vector< ROOT::RVec< VariedCol_t > > > Result_t
const std::type_info & GetTypeId() const final
void FinalizeSlot(unsigned int slot) final
Clean-up operations to be performed at the end of a task.
void * GetValuePtr(unsigned int slot, const std::string &column, const std::string &variation) final
Return the (type-erased) address of the value for the given processing slot.
std::make_index_sequence< ColumnTypes_t::list_size > TypeInd_t
ColumnType_t< IsSingleColumn, Ret_t > VariedCol_t
RVariation(const std::vector< std::string > &colNames, std::string_view variationName, F expression, const std::vector< std::string > &variationTags, std::string_view type, const RColumnRegister &defines, RLoopManager &lm, const ColumnNames_t &inputColNames)
void InitSlot(TTreeReader *r, unsigned int slot) final
RVariation & operator=(const RVariation &)=delete
typename CallableTraits< F >::ret_type Ret_t
std::vector< std::array< RColumnReaderBase *, ColumnTypes_t::list_size > > fValues
Column readers per slot and per input column.
void UpdateHelper(unsigned int slot, Long64_t entry, TypeList< ColTypes... >, std::index_sequence< S... >)
typename CallableTraits< F >::arg_types ColumnTypes_t
std::vector< Result_t > fLastResults
Per-slot storage for varied column values (for one or multiple columns depending on IsSingleColumn).
RVariation(const RVariation &)=delete
A "std::vector"-like collection of values implementing handy operation to analyse them.
A simple, robust and fast interface to read values from ROOT columnar datasets such as TTree,...
typename ColumnType< Ret_t, IsSingleColumn >::type ColumnType_t
When varying a single column, Ret_t is RVec<T> and ColumnType_t is T.
std::size_t GetNVariations(const RVec< T > &results)
void ResizeResults(ROOT::RVec< T > &results, std::size_t, std::size_t nVariations)
void * GetValuePtrHelper(ROOT::RVec< T > &v, std::size_t, std::size_t varIdx)
constexpr std::size_t CacheLineStep()
Stepping through CacheLineStep<T> values in a vector<T> brings you to a new cache line.
void AssignResults(ROOT::RVec< T > &resStorage, ROOT::RVec< T > &&tmpResults)
Assign into fLastResults[slot] without changing the addresses of its elements (we gave those addresse...
std::array< RDFDetail::RColumnReaderBase *, sizeof...(ColTypes)> GetColumnReaders(unsigned int slot, TTreeReader *r, TypeList< ColTypes... >, const RColumnReadersInfo &colInfo, const std::string &variationName="nominal")
Create a group of column readers, one per type in the parameter pack.
bool ResultsSizeEq(const T &results, std::size_t expected, std::size_t nColumns, std::true_type)
std::vector< std::string > ColumnNames_t
ROOT type_traits extensions.
tbb::task_arena is an alias of tbb::interface7::task_arena, which doesn't allow to forward declare tb...
Extract types from the signature of a callable object. See CallableTraits.
This type aggregates some of the arguments passed to GetColumnReaders.
Lightweight storage for a collection of types.