Files
test2/source/blender/blenlib/BLI_array_utils.hh
Hans Goudey 7507251071 Cleanup: Extract attribute function to copy values from group to group
Use the typical combination of an "array utils" function used by an
attribute interpolation function. This helps moves us towards having
a more centralized implementaiton of attribute propagation that can
be changed and optimized more easily.
2023-10-09 15:23:48 +02:00

230 lines
7.1 KiB
C++

/* SPDX-FileCopyrightText: 2023 Blender Authors
*
* SPDX-License-Identifier: GPL-2.0-or-later */
#pragma once
#include <numeric>
#include "BLI_generic_span.hh"
#include "BLI_generic_virtual_array.hh"
#include "BLI_index_mask.hh"
#include "BLI_offset_indices.hh"
#include "BLI_task.hh"
#include "BLI_virtual_array.hh"
namespace blender::array_utils {
/**
* Fill the destination span by copying all values from the `src` array. Threaded based on
* grain-size.
*/
void copy(const GVArray &src, GMutableSpan dst, int64_t grain_size = 4096);
template<typename T>
inline void copy(const VArray<T> &src, MutableSpan<T> dst, const int64_t grain_size = 4096)
{
BLI_assert(src.size() == dst.size());
threading::parallel_for(src.index_range(), grain_size, [&](const IndexRange range) {
src.materialize_to_uninitialized(range, dst);
});
}
/**
* Fill the destination span by copying all values from the `src` array. Threaded based on
* grain-size.
*/
template<typename T>
inline void copy(const Span<T> src, MutableSpan<T> dst, const int64_t grain_size = 4096)
{
BLI_assert(src.size() == dst.size());
threading::parallel_for(src.index_range(), grain_size, [&](const IndexRange range) {
dst.slice(range).copy_from(src.slice(range));
});
}
/**
* Fill the destination span by copying masked values from the `src` array. Threaded based on
* grain-size.
*/
void copy(const GVArray &src,
const IndexMask &selection,
GMutableSpan dst,
int64_t grain_size = 4096);
/**
* Fill the destination span by copying values from the `src` array. Threaded based on
* grain-size.
*/
template<typename T>
inline void copy(const Span<T> src,
const IndexMask &selection,
MutableSpan<T> dst,
const int64_t grain_size = 4096)
{
BLI_assert(src.size() == dst.size());
selection.foreach_index_optimized<int64_t>(GrainSize(grain_size),
[&](const int64_t i) { dst[i] = src[i]; });
}
/**
* Fill the destination span by gathering indexed values from the `src` array.
*/
void gather(const GVArray &src,
const IndexMask &indices,
GMutableSpan dst,
int64_t grain_size = 4096);
/**
* Fill the destination span by gathering indexed values from the `src` array.
*/
void gather(GSpan src, const IndexMask &indices, GMutableSpan dst, int64_t grain_size = 4096);
/**
* Fill the destination span by gathering indexed values from the `src` array.
*/
template<typename T>
inline void gather(const VArray<T> &src,
const IndexMask &indices,
MutableSpan<T> dst,
const int64_t grain_size = 4096)
{
BLI_assert(indices.size() == dst.size());
threading::parallel_for(indices.index_range(), grain_size, [&](const IndexRange range) {
src.materialize_compressed_to_uninitialized(indices.slice(range), dst.slice(range));
});
}
/**
* Fill the destination span by gathering indexed values from the `src` array.
*/
template<typename T, typename IndexT>
inline void gather(const Span<T> src,
const IndexMask &indices,
MutableSpan<T> dst,
const int64_t grain_size = 4096)
{
BLI_assert(indices.size() == dst.size());
indices.foreach_segment(GrainSize(grain_size),
[&](const IndexMaskSegment segment, const int64_t segment_pos) {
for (const int64_t i : segment.index_range()) {
dst[segment_pos + i] = src[segment[i]];
}
});
}
/**
* Fill the destination span by gathering indexed values from the `src` array.
*/
template<typename T, typename IndexT>
inline void gather(const Span<T> src,
const Span<IndexT> indices,
MutableSpan<T> dst,
const int64_t grain_size = 4096)
{
BLI_assert(indices.size() == dst.size());
threading::parallel_for(indices.index_range(), grain_size, [&](const IndexRange range) {
for (const int64_t i : range) {
dst[i] = src[indices[i]];
}
});
}
/**
* Fill the destination span by gathering indexed values from the `src` array.
*/
template<typename T, typename IndexT>
inline void gather(const VArray<T> &src,
const Span<IndexT> indices,
MutableSpan<T> dst,
const int64_t grain_size = 4096)
{
BLI_assert(indices.size() == dst.size());
devirtualize_varray(src, [&](const auto &src) {
threading::parallel_for(indices.index_range(), grain_size, [&](const IndexRange range) {
for (const int64_t i : range) {
dst[i] = src[indices[i]];
}
});
});
}
/**
* Copy the \a src data from the groups defined by \a src_offsets to the groups in \a dst defined
* by \a dst_offsets. Groups to use are masked by \a selection, and it is assumed that the
* corresponding groups have the same size.
*/
void copy_group_to_group(OffsetIndices<int> src_offsets,
OffsetIndices<int> dst_offsets,
const IndexMask &selection,
GSpan src,
GMutableSpan dst);
template<typename T>
void copy_group_to_group(OffsetIndices<int> src_offsets,
OffsetIndices<int> dst_offsets,
const IndexMask &selection,
Span<T> src,
MutableSpan<T> dst)
{
copy_group_to_group(src_offsets, dst_offsets, selection, GSpan(src), GMutableSpan(dst));
}
/**
* Count the number of occurrences of each index.
* \param indices: The indices to count.
* \param counts: The number of occurrences of each index. Typically initialized to zero.
* Must be large enough to contain the maximum index.
*
* \note The memory referenced by the two spans must not overlap.
*/
void count_indices(Span<int> indices, MutableSpan<int> counts);
void invert_booleans(MutableSpan<bool> span);
enum class BooleanMix {
None,
AllFalse,
AllTrue,
Mixed,
};
BooleanMix booleans_mix_calc(const VArray<bool> &varray, IndexRange range_to_check);
inline BooleanMix booleans_mix_calc(const VArray<bool> &varray)
{
return booleans_mix_calc(varray, varray.index_range());
}
/**
* Finds all the index ranges for which consecutive values in \a span equal \a value.
*/
template<typename T> inline Vector<IndexRange> find_all_ranges(const Span<T> span, const T &value)
{
if (span.is_empty()) {
return Vector<IndexRange>();
}
Vector<IndexRange> ranges;
int64_t length = (span.first() == value) ? 1 : 0;
for (const int64_t i : span.index_range().drop_front(1)) {
if (span[i - 1] == value && span[i] != value) {
ranges.append(IndexRange(i - length, length));
length = 0;
}
else if (span[i] == value) {
length++;
}
}
if (length > 0) {
ranges.append(IndexRange(span.size() - length, length));
}
return ranges;
}
/**
* Fill the span with increasing indices: 0, 1, 2, ...
* Optionally, the start value can be provided.
*/
template<typename T> inline void fill_index_range(MutableSpan<T> span, const T start = 0)
{
std::iota(span.begin(), span.end(), start);
}
} // namespace blender::array_utils