2021-12-04 10:49:58 +11:00
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#pragma clang diagnostic ignored "-Wmissing-prototypes"
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#pragma clang diagnostic ignored "-Wunused-variable"
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#include <metal_stdlib>
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#include <simd/simd.h>
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#include <metal_atomic>
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using namespace metal;
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struct Alloc
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{
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uint offset;
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};
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struct MallocResult
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{
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Alloc alloc;
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bool failed;
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};
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struct AnnoEndClipRef
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{
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uint offset;
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};
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struct AnnoEndClip
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{
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float4 bbox;
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};
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struct AnnotatedRef
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{
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uint offset;
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};
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struct AnnotatedTag
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{
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uint tag;
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uint flags;
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};
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struct BinInstanceRef
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{
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uint offset;
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};
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struct BinInstance
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{
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uint element_ix;
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};
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struct Memory
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{
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uint mem_offset;
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uint mem_error;
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uint memory[1];
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};
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struct Alloc_1
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{
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uint offset;
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};
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struct Config
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{
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uint n_elements;
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uint n_pathseg;
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uint width_in_tiles;
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uint height_in_tiles;
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Alloc_1 tile_alloc;
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Alloc_1 bin_alloc;
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Alloc_1 ptcl_alloc;
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Alloc_1 pathseg_alloc;
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Alloc_1 anno_alloc;
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Alloc_1 trans_alloc;
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Alloc_1 bbox_alloc;
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Alloc_1 drawmonoid_alloc;
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uint n_trans;
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uint n_path;
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uint trans_offset;
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uint linewidth_offset;
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uint pathtag_offset;
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uint pathseg_offset;
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};
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struct ConfigBuf
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{
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Config conf;
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};
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constant uint3 gl_WorkGroupSize [[maybe_unused]] = uint3(256u, 1u, 1u);
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static inline __attribute__((always_inline))
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bool touch_mem(thread const Alloc& alloc, thread const uint& offset)
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{
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return true;
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}
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static inline __attribute__((always_inline))
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uint read_mem(thread const Alloc& alloc, thread const uint& offset, device Memory& v_84, constant uint& v_84BufferSize)
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{
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Alloc param = alloc;
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uint param_1 = offset;
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if (!touch_mem(param, param_1))
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{
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return 0u;
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}
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uint v = v_84.memory[offset];
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return v;
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}
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static inline __attribute__((always_inline))
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AnnotatedTag Annotated_tag(thread const Alloc& a, thread const AnnotatedRef& ref, device Memory& v_84, constant uint& v_84BufferSize)
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{
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Alloc param = a;
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uint param_1 = ref.offset >> uint(2);
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uint tag_and_flags = read_mem(param, param_1, v_84, v_84BufferSize);
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return AnnotatedTag{ tag_and_flags & 65535u, tag_and_flags >> uint(16) };
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}
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static inline __attribute__((always_inline))
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AnnoEndClip AnnoEndClip_read(thread const Alloc& a, thread const AnnoEndClipRef& ref, device Memory& v_84, constant uint& v_84BufferSize)
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{
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uint ix = ref.offset >> uint(2);
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Alloc param = a;
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uint param_1 = ix + 0u;
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uint raw0 = read_mem(param, param_1, v_84, v_84BufferSize);
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Alloc param_2 = a;
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uint param_3 = ix + 1u;
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uint raw1 = read_mem(param_2, param_3, v_84, v_84BufferSize);
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Alloc param_4 = a;
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uint param_5 = ix + 2u;
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uint raw2 = read_mem(param_4, param_5, v_84, v_84BufferSize);
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Alloc param_6 = a;
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uint param_7 = ix + 3u;
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uint raw3 = read_mem(param_6, param_7, v_84, v_84BufferSize);
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AnnoEndClip s;
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s.bbox = float4(as_type<float>(raw0), as_type<float>(raw1), as_type<float>(raw2), as_type<float>(raw3));
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return s;
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}
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static inline __attribute__((always_inline))
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AnnoEndClip Annotated_EndClip_read(thread const Alloc& a, thread const AnnotatedRef& ref, device Memory& v_84, constant uint& v_84BufferSize)
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{
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Alloc param = a;
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AnnoEndClipRef param_1 = AnnoEndClipRef{ ref.offset + 4u };
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return AnnoEndClip_read(param, param_1, v_84, v_84BufferSize);
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}
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static inline __attribute__((always_inline))
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Alloc new_alloc(thread const uint& offset, thread const uint& size, thread const bool& mem_ok)
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{
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Alloc a;
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a.offset = offset;
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return a;
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}
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static inline __attribute__((always_inline))
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MallocResult malloc(thread const uint& size, device Memory& v_84, constant uint& v_84BufferSize)
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{
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uint _90 = atomic_fetch_add_explicit((device atomic_uint*)&v_84.mem_offset, size, memory_order_relaxed);
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uint offset = _90;
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MallocResult r;
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r.failed = (offset + size) > uint(int((v_84BufferSize - 8) / 4) * 4);
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uint param = offset;
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uint param_1 = size;
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bool param_2 = !r.failed;
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r.alloc = new_alloc(param, param_1, param_2);
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if (r.failed)
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{
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uint _119 = atomic_fetch_max_explicit((device atomic_uint*)&v_84.mem_error, 1u, memory_order_relaxed);
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return r;
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}
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return r;
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}
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static inline __attribute__((always_inline))
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void write_mem(thread const Alloc& alloc, thread const uint& offset, thread const uint& val, device Memory& v_84, constant uint& v_84BufferSize)
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{
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Alloc param = alloc;
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uint param_1 = offset;
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if (!touch_mem(param, param_1))
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{
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return;
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}
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v_84.memory[offset] = val;
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}
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static inline __attribute__((always_inline))
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void BinInstance_write(thread const Alloc& a, thread const BinInstanceRef& ref, thread const BinInstance& s, device Memory& v_84, constant uint& v_84BufferSize)
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{
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uint ix = ref.offset >> uint(2);
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Alloc param = a;
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uint param_1 = ix + 0u;
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uint param_2 = s.element_ix;
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write_mem(param, param_1, param_2, v_84, v_84BufferSize);
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}
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kernel void main0(constant uint* spvBufferSizeConstants [[buffer(25)]], device Memory& v_84 [[buffer(0)]], const device ConfigBuf& _253 [[buffer(1)]], uint3 gl_WorkGroupID [[threadgroup_position_in_grid]], uint3 gl_LocalInvocationID [[thread_position_in_threadgroup]])
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{
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threadgroup uint bitmaps[8][256];
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threadgroup short sh_alloc_failed;
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threadgroup uint count[8][256];
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threadgroup Alloc sh_chunk_alloc[256];
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constant uint& v_84BufferSize = spvBufferSizeConstants[0];
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uint my_n_elements = _253.conf.n_elements;
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uint my_partition = gl_WorkGroupID.x;
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for (uint i = 0u; i < 8u; i++)
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{
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bitmaps[i][gl_LocalInvocationID.x] = 0u;
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}
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if (gl_LocalInvocationID.x == 0u)
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{
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sh_alloc_failed = short(false);
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}
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threadgroup_barrier(mem_flags::mem_threadgroup);
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uint element_ix = (my_partition * 256u) + gl_LocalInvocationID.x;
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AnnotatedRef ref = AnnotatedRef{ _253.conf.anno_alloc.offset + (element_ix * 40u) };
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uint tag = 0u;
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if (element_ix < my_n_elements)
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{
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Alloc param;
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param.offset = _253.conf.anno_alloc.offset;
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AnnotatedRef param_1 = ref;
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tag = Annotated_tag(param, param_1, v_84, v_84BufferSize).tag;
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}
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int x0 = 0;
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int y0 = 0;
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int x1 = 0;
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int y1 = 0;
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switch (tag)
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{
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case 1u:
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case 2u:
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case 3u:
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case 4u:
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case 5u:
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{
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Alloc param_2;
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param_2.offset = _253.conf.anno_alloc.offset;
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AnnotatedRef param_3 = ref;
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AnnoEndClip clip = Annotated_EndClip_read(param_2, param_3, v_84, v_84BufferSize);
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x0 = int(floor(clip.bbox.x * 0.00390625));
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y0 = int(floor(clip.bbox.y * 0.00390625));
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x1 = int(ceil(clip.bbox.z * 0.00390625));
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y1 = int(ceil(clip.bbox.w * 0.00390625));
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break;
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}
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}
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uint width_in_bins = ((_253.conf.width_in_tiles + 16u) - 1u) / 16u;
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uint height_in_bins = ((_253.conf.height_in_tiles + 16u) - 1u) / 16u;
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x0 = clamp(x0, 0, int(width_in_bins));
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x1 = clamp(x1, x0, int(width_in_bins));
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y0 = clamp(y0, 0, int(height_in_bins));
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y1 = clamp(y1, y0, int(height_in_bins));
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if (x0 == x1)
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{
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y1 = y0;
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}
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int x = x0;
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int y = y0;
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uint my_slice = gl_LocalInvocationID.x / 32u;
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2021-12-09 05:42:35 +11:00
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uint my_mask = 1u << (gl_LocalInvocationID.x & 31u);
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2021-12-04 10:49:58 +11:00
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while (y < y1)
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{
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2021-12-09 05:42:35 +11:00
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uint _437 = atomic_fetch_or_explicit((threadgroup atomic_uint*)&bitmaps[my_slice][(uint(y) * width_in_bins) + uint(x)], my_mask, memory_order_relaxed);
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x++;
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if (x == x1)
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{
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x = x0;
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y++;
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}
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}
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threadgroup_barrier(mem_flags::mem_threadgroup);
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uint element_count = 0u;
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for (uint i_1 = 0u; i_1 < 8u; i_1++)
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{
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element_count += uint(int(popcount(bitmaps[i_1][gl_LocalInvocationID.x])));
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count[i_1][gl_LocalInvocationID.x] = element_count;
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}
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uint param_4 = 0u;
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uint param_5 = 0u;
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bool param_6 = true;
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Alloc chunk_alloc = new_alloc(param_4, param_5, param_6);
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if (element_count != 0u)
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{
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uint param_7 = element_count * 4u;
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2021-12-09 05:42:35 +11:00
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MallocResult _487 = malloc(param_7, v_84, v_84BufferSize);
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MallocResult chunk = _487;
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2021-12-04 10:49:58 +11:00
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chunk_alloc = chunk.alloc;
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sh_chunk_alloc[gl_LocalInvocationID.x] = chunk_alloc;
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if (chunk.failed)
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{
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sh_alloc_failed = short(true);
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}
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}
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uint out_ix = (_253.conf.bin_alloc.offset >> uint(2)) + (((my_partition * 256u) + gl_LocalInvocationID.x) * 2u);
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Alloc param_8;
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param_8.offset = _253.conf.bin_alloc.offset;
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uint param_9 = out_ix;
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uint param_10 = element_count;
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write_mem(param_8, param_9, param_10, v_84, v_84BufferSize);
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Alloc param_11;
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param_11.offset = _253.conf.bin_alloc.offset;
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uint param_12 = out_ix + 1u;
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uint param_13 = chunk_alloc.offset;
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write_mem(param_11, param_12, param_13, v_84, v_84BufferSize);
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threadgroup_barrier(mem_flags::mem_threadgroup);
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2021-12-09 05:42:35 +11:00
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bool _543;
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2021-12-04 10:49:58 +11:00
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if (!bool(sh_alloc_failed))
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{
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_543 = v_84.mem_error != 0u;
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2021-12-04 10:49:58 +11:00
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}
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else
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{
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_543 = bool(sh_alloc_failed);
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}
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2021-12-09 05:42:35 +11:00
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if (_543)
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2021-12-04 10:49:58 +11:00
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{
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return;
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}
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x = x0;
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y = y0;
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while (y < y1)
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{
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uint bin_ix = (uint(y) * width_in_bins) + uint(x);
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uint out_mask = bitmaps[my_slice][bin_ix];
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if ((out_mask & my_mask) != 0u)
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{
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uint idx = uint(int(popcount(out_mask & (my_mask - 1u))));
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if (my_slice > 0u)
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{
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idx += count[my_slice - 1u][bin_ix];
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}
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Alloc out_alloc = sh_chunk_alloc[bin_ix];
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uint out_offset = out_alloc.offset + (idx * 4u);
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Alloc param_14 = out_alloc;
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BinInstanceRef param_15 = BinInstanceRef{ out_offset };
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BinInstance param_16 = BinInstance{ element_ix };
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BinInstance_write(param_14, param_15, param_16, v_84, v_84BufferSize);
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}
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x++;
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if (x == x1)
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{
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x = x0;
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y++;
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}
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}
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}
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