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author | Dan Goodliffe <dan@randomdan.homeip.net> | 2023-04-21 23:52:56 +0100 |
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committer | Dan Goodliffe <dan@randomdan.homeip.net> | 2023-04-21 23:52:56 +0100 |
commit | ab5b46dbe58ae0401c24ead55a2627b9a577fc1a (patch) | |
tree | 8c2d20920186a636f33c471bd1bfa515ea9de2af /gfx/gl | |
parent | Switch to render trees in bulk through foliage asset rendering (diff) | |
download | ilt-ab5b46dbe58ae0401c24ead55a2627b9a577fc1a.tar.bz2 ilt-ab5b46dbe58ae0401c24ead55a2627b9a577fc1a.tar.xz ilt-ab5b46dbe58ae0401c24ead55a2627b9a577fc1a.zip |
Instances buffer data needs to be unmapped before use
Here we change quite a bit to support mapping and unmapping the buffer as required. The instance/free
referencing is still broken though. We add several instances of tree in the render.
Diffstat (limited to 'gfx/gl')
-rw-r--r-- | gfx/gl/instanceVertices.h | 66 |
1 files changed, 46 insertions, 20 deletions
diff --git a/gfx/gl/instanceVertices.h b/gfx/gl/instanceVertices.h index dc28a4d..c2ddb1d 100644 --- a/gfx/gl/instanceVertices.h +++ b/gfx/gl/instanceVertices.h @@ -9,11 +9,9 @@ template<typename T> class InstanceVertices { public: - InstanceVertices(size_t initialSize = 16) : data {allocBuffer(buffer, initialSize)}, next {} { } - - ~InstanceVertices() + InstanceVertices(size_t initialSize = 16) { - glUnmapNamedBuffer(buffer); + allocBuffer(initialSize); } class InstanceProxy { @@ -50,17 +48,20 @@ public: T & operator=(U && v) { + instances->map(); return instances->data[index] = std::forward<U>(v); } T * get() { + instances->map(); return &instances->data[index]; } const T * get() const { + instances->map(); return &instances->data[index]; } T * @@ -95,22 +96,24 @@ public: InstanceProxy acquire(Params &&... params) { + map(); if (!unused.empty()) { auto idx = unused.back(); unused.pop_back(); - new (&data[idx]) T(std::forward<Params>(params)...); + new (data + idx) T(std::forward<Params>(params)...); return InstanceProxy {this, idx}; } - if (next >= data.size()) { - resize(data.size() * 2); + if (next >= capacity) { + resize(capacity * 2); } - new (&data[next]) T(std::forward<Params>(params)...); + new (data + next) T(std::forward<Params>(params)...); return InstanceProxy {this, next++}; } void release(const InstanceProxy & p) { + map(); data[p.index].~T(); unused.push_back(p.index); } @@ -118,42 +121,65 @@ public: const auto & bufferName() const { + unmap(); return buffer; } auto count() const { + unmap(); return next; } protected: friend InstanceProxy; - static std::span<T> - allocBuffer(const glBuffer & buffer, std::size_t count) + void + allocBuffer(std::size_t newCapacity) { glBindBuffer(GL_ARRAY_BUFFER, buffer); - glBufferData(GL_ARRAY_BUFFER, static_cast<GLsizeiptr>(sizeof(T) * count), nullptr, GL_DYNAMIC_DRAW); - auto data = static_cast<T *>(glMapNamedBuffer(buffer, GL_READ_WRITE)); + glBufferData(GL_ARRAY_BUFFER, static_cast<GLsizeiptr>(sizeof(T) * newCapacity), nullptr, GL_DYNAMIC_DRAW); glBindBuffer(GL_ARRAY_BUFFER, 0); - return {data, count}; + capacity = newCapacity; + data = nullptr; } void resize(size_t newCapacity) { - const auto maintain = std::min(newCapacity, data.size()); - const auto maintaind = static_cast<typename decltype(data)::difference_type>(maintain); + const auto maintain = std::min(newCapacity, capacity); std::vector<T> existing; + const auto maintaind = static_cast<typename decltype(existing)::difference_type>(maintain); existing.reserve(maintain); - std::move(data.begin(), data.begin() + maintaind, std::back_inserter(existing)); - data = allocBuffer(buffer, newCapacity); - std::move(existing.begin(), existing.begin() + maintaind, data.begin()); + map(); + std::move(data, data + maintain, std::back_inserter(existing)); + allocBuffer(newCapacity); + map(); + std::move(existing.begin(), existing.begin() + maintaind, data); + capacity = newCapacity; + } + + void + map() const + { + if (!data) { + data = static_cast<T *>(glMapNamedBuffer(buffer, GL_READ_WRITE)); + } + } + + void + unmap() const + { + if (data) { + glUnmapNamedBuffer(buffer); + data = nullptr; + } } glBuffer buffer; - std::span<T> data; - std::size_t next; + mutable T * data {}; + std::size_t capacity {}; + std::size_t next {}; std::vector<size_t> unused; }; |