vello/piet-gpu/shader/gen/coarse.hlsl
Raph Levien 368954a643 Merge branch 'master' into blend_mem
This does the merge and also rebuilds the generated shaders.
2022-05-19 15:42:45 -07:00

1235 lines
37 KiB
HLSL
Generated

struct Alloc
{
uint offset;
};
struct MallocResult
{
Alloc alloc;
bool failed;
};
struct BinInstanceRef
{
uint offset;
};
struct BinInstance
{
uint element_ix;
};
struct PathRef
{
uint offset;
};
struct TileRef
{
uint offset;
};
struct Path
{
uint4 bbox;
TileRef tiles;
};
struct TileSegRef
{
uint offset;
};
struct Tile
{
TileSegRef tile;
int backdrop;
};
struct CmdStrokeRef
{
uint offset;
};
struct CmdStroke
{
uint tile_ref;
float half_width;
};
struct CmdFillRef
{
uint offset;
};
struct CmdFill
{
uint tile_ref;
int backdrop;
};
struct CmdColorRef
{
uint offset;
};
struct CmdColor
{
uint rgba_color;
};
struct CmdLinGradRef
{
uint offset;
};
struct CmdLinGrad
{
uint index;
float line_x;
float line_y;
float line_c;
};
struct CmdRadGradRef
{
uint offset;
};
struct CmdRadGrad
{
uint index;
float4 mat;
float2 xlat;
float2 c1;
float ra;
float roff;
};
struct CmdImageRef
{
uint offset;
};
struct CmdImage
{
uint index;
int2 offset;
};
struct CmdEndClipRef
{
uint offset;
};
struct CmdEndClip
{
uint blend;
};
struct CmdJumpRef
{
uint offset;
};
struct CmdJump
{
uint new_ref;
};
struct CmdRef
{
uint offset;
};
struct Config
{
uint n_elements;
uint n_pathseg;
uint width_in_tiles;
uint height_in_tiles;
Alloc tile_alloc;
Alloc bin_alloc;
Alloc ptcl_alloc;
Alloc pathseg_alloc;
Alloc anno_alloc;
Alloc trans_alloc;
Alloc path_bbox_alloc;
Alloc drawmonoid_alloc;
Alloc clip_alloc;
Alloc clip_bic_alloc;
Alloc clip_stack_alloc;
Alloc clip_bbox_alloc;
Alloc draw_bbox_alloc;
Alloc drawinfo_alloc;
uint n_trans;
uint n_path;
uint n_clip;
uint trans_offset;
uint linewidth_offset;
uint pathtag_offset;
uint pathseg_offset;
uint drawtag_offset;
uint drawdata_offset;
};
static const uint3 gl_WorkGroupSize = uint3(256u, 1u, 1u);
RWByteAddressBuffer _260 : register(u0, space0);
ByteAddressBuffer _1005 : register(t1, space0);
ByteAddressBuffer _1378 : register(t2, space0);
static uint3 gl_WorkGroupID;
static uint3 gl_LocalInvocationID;
struct SPIRV_Cross_Input
{
uint3 gl_WorkGroupID : SV_GroupID;
uint3 gl_LocalInvocationID : SV_GroupThreadID;
};
groupshared uint sh_bitmaps[8][256];
groupshared Alloc sh_part_elements[256];
groupshared uint sh_part_count[256];
groupshared uint sh_elements[256];
groupshared uint sh_tile_stride[256];
groupshared uint sh_tile_width[256];
groupshared uint sh_tile_x0[256];
groupshared uint sh_tile_y0[256];
groupshared uint sh_tile_base[256];
groupshared uint sh_tile_count[256];
Alloc slice_mem(Alloc a, uint offset, uint size)
{
Alloc _337 = { a.offset + offset };
return _337;
}
bool touch_mem(Alloc alloc, uint offset)
{
return true;
}
uint read_mem(Alloc alloc, uint offset)
{
Alloc param = alloc;
uint param_1 = offset;
if (!touch_mem(param, param_1))
{
return 0u;
}
uint v = _260.Load(offset * 4 + 8);
return v;
}
Alloc new_alloc(uint offset, uint size, bool mem_ok)
{
Alloc a;
a.offset = offset;
return a;
}
BinInstanceRef BinInstance_index(BinInstanceRef ref, uint index)
{
BinInstanceRef _346 = { ref.offset + (index * 4u) };
return _346;
}
BinInstance BinInstance_read(Alloc a, BinInstanceRef ref)
{
uint ix = ref.offset >> uint(2);
Alloc param = a;
uint param_1 = ix + 0u;
uint raw0 = read_mem(param, param_1);
BinInstance s;
s.element_ix = raw0;
return s;
}
Path Path_read(Alloc a, PathRef ref)
{
uint ix = ref.offset >> uint(2);
Alloc param = a;
uint param_1 = ix + 0u;
uint raw0 = read_mem(param, param_1);
Alloc param_2 = a;
uint param_3 = ix + 1u;
uint raw1 = read_mem(param_2, param_3);
Alloc param_4 = a;
uint param_5 = ix + 2u;
uint raw2 = read_mem(param_4, param_5);
Path s;
s.bbox = uint4(raw0 & 65535u, raw0 >> uint(16), raw1 & 65535u, raw1 >> uint(16));
TileRef _409 = { raw2 };
s.tiles = _409;
return s;
}
void write_tile_alloc(uint el_ix, Alloc a)
{
}
Alloc read_tile_alloc(uint el_ix, bool mem_ok)
{
uint _892;
_260.GetDimensions(_892);
_892 = (_892 - 8) / 4;
uint param = 0u;
uint param_1 = uint(int(_892) * 4);
bool param_2 = mem_ok;
return new_alloc(param, param_1, param_2);
}
Tile Tile_read(Alloc a, TileRef ref)
{
uint ix = ref.offset >> uint(2);
Alloc param = a;
uint param_1 = ix + 0u;
uint raw0 = read_mem(param, param_1);
Alloc param_2 = a;
uint param_3 = ix + 1u;
uint raw1 = read_mem(param_2, param_3);
TileSegRef _434 = { raw0 };
Tile s;
s.tile = _434;
s.backdrop = int(raw1);
return s;
}
MallocResult malloc(uint size)
{
uint _266;
_260.InterlockedAdd(0, size, _266);
uint offset = _266;
uint _273;
_260.GetDimensions(_273);
_273 = (_273 - 8) / 4;
MallocResult r;
r.failed = (offset + size) > uint(int(_273) * 4);
uint param = offset;
uint param_1 = size;
bool param_2 = !r.failed;
r.alloc = new_alloc(param, param_1, param_2);
if (r.failed)
{
uint _295;
_260.InterlockedMax(4, 1u, _295);
return r;
}
return r;
}
void write_mem(Alloc alloc, uint offset, uint val)
{
Alloc param = alloc;
uint param_1 = offset;
if (!touch_mem(param, param_1))
{
return;
}
_260.Store(offset * 4 + 8, val);
}
void CmdJump_write(Alloc a, CmdJumpRef ref, CmdJump s)
{
uint ix = ref.offset >> uint(2);
Alloc param = a;
uint param_1 = ix + 0u;
uint param_2 = s.new_ref;
write_mem(param, param_1, param_2);
}
void Cmd_Jump_write(Alloc a, CmdRef ref, CmdJump s)
{
Alloc param = a;
uint param_1 = ref.offset >> uint(2);
uint param_2 = 11u;
write_mem(param, param_1, param_2);
CmdJumpRef _885 = { ref.offset + 4u };
Alloc param_3 = a;
CmdJumpRef param_4 = _885;
CmdJump param_5 = s;
CmdJump_write(param_3, param_4, param_5);
}
bool alloc_cmd(inout Alloc cmd_alloc, inout CmdRef cmd_ref, inout uint cmd_limit)
{
if (cmd_ref.offset < cmd_limit)
{
return true;
}
uint param = 1024u;
MallocResult _913 = malloc(param);
MallocResult new_cmd = _913;
if (new_cmd.failed)
{
return false;
}
CmdJump _923 = { new_cmd.alloc.offset };
CmdJump jump = _923;
Alloc param_1 = cmd_alloc;
CmdRef param_2 = cmd_ref;
CmdJump param_3 = jump;
Cmd_Jump_write(param_1, param_2, param_3);
cmd_alloc = new_cmd.alloc;
CmdRef _935 = { cmd_alloc.offset };
cmd_ref = _935;
cmd_limit = (cmd_alloc.offset + 1024u) - 144u;
return true;
}
void CmdFill_write(Alloc a, CmdFillRef ref, CmdFill s)
{
uint ix = ref.offset >> uint(2);
Alloc param = a;
uint param_1 = ix + 0u;
uint param_2 = s.tile_ref;
write_mem(param, param_1, param_2);
Alloc param_3 = a;
uint param_4 = ix + 1u;
uint param_5 = uint(s.backdrop);
write_mem(param_3, param_4, param_5);
}
void Cmd_Fill_write(Alloc a, CmdRef ref, CmdFill s)
{
Alloc param = a;
uint param_1 = ref.offset >> uint(2);
uint param_2 = 1u;
write_mem(param, param_1, param_2);
CmdFillRef _742 = { ref.offset + 4u };
Alloc param_3 = a;
CmdFillRef param_4 = _742;
CmdFill param_5 = s;
CmdFill_write(param_3, param_4, param_5);
}
void Cmd_Solid_write(Alloc a, CmdRef ref)
{
Alloc param = a;
uint param_1 = ref.offset >> uint(2);
uint param_2 = 3u;
write_mem(param, param_1, param_2);
}
void CmdStroke_write(Alloc a, CmdStrokeRef ref, CmdStroke s)
{
uint ix = ref.offset >> uint(2);
Alloc param = a;
uint param_1 = ix + 0u;
uint param_2 = s.tile_ref;
write_mem(param, param_1, param_2);
Alloc param_3 = a;
uint param_4 = ix + 1u;
uint param_5 = asuint(s.half_width);
write_mem(param_3, param_4, param_5);
}
void Cmd_Stroke_write(Alloc a, CmdRef ref, CmdStroke s)
{
Alloc param = a;
uint param_1 = ref.offset >> uint(2);
uint param_2 = 2u;
write_mem(param, param_1, param_2);
CmdStrokeRef _760 = { ref.offset + 4u };
Alloc param_3 = a;
CmdStrokeRef param_4 = _760;
CmdStroke param_5 = s;
CmdStroke_write(param_3, param_4, param_5);
}
void write_fill(Alloc alloc, inout CmdRef cmd_ref, Tile tile, float linewidth)
{
if (linewidth < 0.0f)
{
if (tile.tile.offset != 0u)
{
CmdFill _958 = { tile.tile.offset, tile.backdrop };
CmdFill cmd_fill = _958;
Alloc param = alloc;
CmdRef param_1 = cmd_ref;
CmdFill param_2 = cmd_fill;
Cmd_Fill_write(param, param_1, param_2);
cmd_ref.offset += 12u;
}
else
{
Alloc param_3 = alloc;
CmdRef param_4 = cmd_ref;
Cmd_Solid_write(param_3, param_4);
cmd_ref.offset += 4u;
}
}
else
{
CmdStroke _988 = { tile.tile.offset, 0.5f * linewidth };
CmdStroke cmd_stroke = _988;
Alloc param_5 = alloc;
CmdRef param_6 = cmd_ref;
CmdStroke param_7 = cmd_stroke;
Cmd_Stroke_write(param_5, param_6, param_7);
cmd_ref.offset += 12u;
}
}
void CmdColor_write(Alloc a, CmdColorRef ref, CmdColor s)
{
uint ix = ref.offset >> uint(2);
Alloc param = a;
uint param_1 = ix + 0u;
uint param_2 = s.rgba_color;
write_mem(param, param_1, param_2);
}
void Cmd_Color_write(Alloc a, CmdRef ref, CmdColor s)
{
Alloc param = a;
uint param_1 = ref.offset >> uint(2);
uint param_2 = 5u;
write_mem(param, param_1, param_2);
CmdColorRef _786 = { ref.offset + 4u };
Alloc param_3 = a;
CmdColorRef param_4 = _786;
CmdColor param_5 = s;
CmdColor_write(param_3, param_4, param_5);
}
void CmdLinGrad_write(Alloc a, CmdLinGradRef ref, CmdLinGrad s)
{
uint ix = ref.offset >> uint(2);
Alloc param = a;
uint param_1 = ix + 0u;
uint param_2 = s.index;
write_mem(param, param_1, param_2);
Alloc param_3 = a;
uint param_4 = ix + 1u;
uint param_5 = asuint(s.line_x);
write_mem(param_3, param_4, param_5);
Alloc param_6 = a;
uint param_7 = ix + 2u;
uint param_8 = asuint(s.line_y);
write_mem(param_6, param_7, param_8);
Alloc param_9 = a;
uint param_10 = ix + 3u;
uint param_11 = asuint(s.line_c);
write_mem(param_9, param_10, param_11);
}
void Cmd_LinGrad_write(Alloc a, CmdRef ref, CmdLinGrad s)
{
Alloc param = a;
uint param_1 = ref.offset >> uint(2);
uint param_2 = 6u;
write_mem(param, param_1, param_2);
CmdLinGradRef _804 = { ref.offset + 4u };
Alloc param_3 = a;
CmdLinGradRef param_4 = _804;
CmdLinGrad param_5 = s;
CmdLinGrad_write(param_3, param_4, param_5);
}
void CmdRadGrad_write(Alloc a, CmdRadGradRef ref, CmdRadGrad s)
{
uint ix = ref.offset >> uint(2);
Alloc param = a;
uint param_1 = ix + 0u;
uint param_2 = s.index;
write_mem(param, param_1, param_2);
Alloc param_3 = a;
uint param_4 = ix + 1u;
uint param_5 = asuint(s.mat.x);
write_mem(param_3, param_4, param_5);
Alloc param_6 = a;
uint param_7 = ix + 2u;
uint param_8 = asuint(s.mat.y);
write_mem(param_6, param_7, param_8);
Alloc param_9 = a;
uint param_10 = ix + 3u;
uint param_11 = asuint(s.mat.z);
write_mem(param_9, param_10, param_11);
Alloc param_12 = a;
uint param_13 = ix + 4u;
uint param_14 = asuint(s.mat.w);
write_mem(param_12, param_13, param_14);
Alloc param_15 = a;
uint param_16 = ix + 5u;
uint param_17 = asuint(s.xlat.x);
write_mem(param_15, param_16, param_17);
Alloc param_18 = a;
uint param_19 = ix + 6u;
uint param_20 = asuint(s.xlat.y);
write_mem(param_18, param_19, param_20);
Alloc param_21 = a;
uint param_22 = ix + 7u;
uint param_23 = asuint(s.c1.x);
write_mem(param_21, param_22, param_23);
Alloc param_24 = a;
uint param_25 = ix + 8u;
uint param_26 = asuint(s.c1.y);
write_mem(param_24, param_25, param_26);
Alloc param_27 = a;
uint param_28 = ix + 9u;
uint param_29 = asuint(s.ra);
write_mem(param_27, param_28, param_29);
Alloc param_30 = a;
uint param_31 = ix + 10u;
uint param_32 = asuint(s.roff);
write_mem(param_30, param_31, param_32);
}
void Cmd_RadGrad_write(Alloc a, CmdRef ref, CmdRadGrad s)
{
Alloc param = a;
uint param_1 = ref.offset >> uint(2);
uint param_2 = 7u;
write_mem(param, param_1, param_2);
CmdRadGradRef _822 = { ref.offset + 4u };
Alloc param_3 = a;
CmdRadGradRef param_4 = _822;
CmdRadGrad param_5 = s;
CmdRadGrad_write(param_3, param_4, param_5);
}
void CmdImage_write(Alloc a, CmdImageRef ref, CmdImage s)
{
uint ix = ref.offset >> uint(2);
Alloc param = a;
uint param_1 = ix + 0u;
uint param_2 = s.index;
write_mem(param, param_1, param_2);
Alloc param_3 = a;
uint param_4 = ix + 1u;
uint param_5 = (uint(s.offset.x) & 65535u) | (uint(s.offset.y) << uint(16));
write_mem(param_3, param_4, param_5);
}
void Cmd_Image_write(Alloc a, CmdRef ref, CmdImage s)
{
Alloc param = a;
uint param_1 = ref.offset >> uint(2);
uint param_2 = 8u;
write_mem(param, param_1, param_2);
CmdImageRef _840 = { ref.offset + 4u };
Alloc param_3 = a;
CmdImageRef param_4 = _840;
CmdImage param_5 = s;
CmdImage_write(param_3, param_4, param_5);
}
void Cmd_BeginClip_write(Alloc a, CmdRef ref)
{
Alloc param = a;
uint param_1 = ref.offset >> uint(2);
uint param_2 = 9u;
write_mem(param, param_1, param_2);
}
void CmdEndClip_write(Alloc a, CmdEndClipRef ref, CmdEndClip s)
{
uint ix = ref.offset >> uint(2);
Alloc param = a;
uint param_1 = ix + 0u;
uint param_2 = s.blend;
write_mem(param, param_1, param_2);
}
void Cmd_EndClip_write(Alloc a, CmdRef ref, CmdEndClip s)
{
Alloc param = a;
uint param_1 = ref.offset >> uint(2);
uint param_2 = 10u;
write_mem(param, param_1, param_2);
CmdEndClipRef _866 = { ref.offset + 4u };
Alloc param_3 = a;
CmdEndClipRef param_4 = _866;
CmdEndClip param_5 = s;
CmdEndClip_write(param_3, param_4, param_5);
}
void Cmd_End_write(Alloc a, CmdRef ref)
{
Alloc param = a;
uint param_1 = ref.offset >> uint(2);
uint param_2 = 0u;
write_mem(param, param_1, param_2);
}
void comp_main()
{
uint width_in_bins = ((_1005.Load(8) + 16u) - 1u) / 16u;
uint bin_ix = (width_in_bins * gl_WorkGroupID.y) + gl_WorkGroupID.x;
uint partition_ix = 0u;
uint n_partitions = ((_1005.Load(0) + 256u) - 1u) / 256u;
uint th_ix = gl_LocalInvocationID.x;
uint bin_tile_x = 16u * gl_WorkGroupID.x;
uint bin_tile_y = 16u * gl_WorkGroupID.y;
uint tile_x = gl_LocalInvocationID.x % 16u;
uint tile_y = gl_LocalInvocationID.x / 16u;
uint this_tile_ix = (((bin_tile_y + tile_y) * _1005.Load(8)) + bin_tile_x) + tile_x;
Alloc _1070;
_1070.offset = _1005.Load(24);
Alloc param;
param.offset = _1070.offset;
uint param_1 = this_tile_ix * 1024u;
uint param_2 = 1024u;
Alloc cmd_alloc = slice_mem(param, param_1, param_2);
CmdRef _1079 = { cmd_alloc.offset };
CmdRef cmd_ref = _1079;
uint cmd_limit = (cmd_ref.offset + 1024u) - 144u;
uint clip_depth = 0u;
uint clip_zero_depth = 0u;
uint rd_ix = 0u;
uint wr_ix = 0u;
uint part_start_ix = 0u;
uint ready_ix = 0u;
cmd_ref.offset += 4u;
uint render_blend_depth = 0u;
uint max_blend_depth = 0u;
uint drawmonoid_start = _1005.Load(44) >> uint(2);
uint drawtag_start = _1005.Load(100) >> uint(2);
uint drawdata_start = _1005.Load(104) >> uint(2);
uint drawinfo_start = _1005.Load(68) >> uint(2);
bool mem_ok = _260.Load(4) == 0u;
Alloc param_3;
Alloc param_5;
uint _1310;
uint element_ix;
Alloc param_14;
uint tile_count;
uint _1611;
float linewidth;
CmdLinGrad cmd_lin;
CmdRadGrad cmd_rad;
while (true)
{
for (uint i = 0u; i < 8u; i++)
{
sh_bitmaps[i][th_ix] = 0u;
}
bool _1362;
for (;;)
{
if ((ready_ix == wr_ix) && (partition_ix < n_partitions))
{
part_start_ix = ready_ix;
uint count = 0u;
bool _1160 = th_ix < 256u;
bool _1168;
if (_1160)
{
_1168 = (partition_ix + th_ix) < n_partitions;
}
else
{
_1168 = _1160;
}
if (_1168)
{
uint in_ix = (_1005.Load(20) >> uint(2)) + ((((partition_ix + th_ix) * 256u) + bin_ix) * 2u);
Alloc _1185;
_1185.offset = _1005.Load(20);
param_3.offset = _1185.offset;
uint param_4 = in_ix;
count = read_mem(param_3, param_4);
Alloc _1196;
_1196.offset = _1005.Load(20);
param_5.offset = _1196.offset;
uint param_6 = in_ix + 1u;
uint offset = read_mem(param_5, param_6);
uint param_7 = offset;
uint param_8 = count * 4u;
bool param_9 = mem_ok;
sh_part_elements[th_ix] = new_alloc(param_7, param_8, param_9);
}
for (uint i_1 = 0u; i_1 < 8u; i_1++)
{
if (th_ix < 256u)
{
sh_part_count[th_ix] = count;
}
GroupMemoryBarrierWithGroupSync();
if (th_ix < 256u)
{
if (th_ix >= (1u << i_1))
{
count += sh_part_count[th_ix - (1u << i_1)];
}
}
GroupMemoryBarrierWithGroupSync();
}
if (th_ix < 256u)
{
sh_part_count[th_ix] = part_start_ix + count;
}
GroupMemoryBarrierWithGroupSync();
ready_ix = sh_part_count[255];
partition_ix += 256u;
}
uint ix = rd_ix + th_ix;
if (((ix >= wr_ix) && (ix < ready_ix)) && mem_ok)
{
uint part_ix = 0u;
for (uint i_2 = 0u; i_2 < 8u; i_2++)
{
uint probe = part_ix + (128u >> i_2);
if (ix >= sh_part_count[probe - 1u])
{
part_ix = probe;
}
}
if (part_ix > 0u)
{
_1310 = sh_part_count[part_ix - 1u];
}
else
{
_1310 = part_start_ix;
}
ix -= _1310;
Alloc bin_alloc = sh_part_elements[part_ix];
BinInstanceRef _1329 = { bin_alloc.offset };
BinInstanceRef inst_ref = _1329;
BinInstanceRef param_10 = inst_ref;
uint param_11 = ix;
Alloc param_12 = bin_alloc;
BinInstanceRef param_13 = BinInstance_index(param_10, param_11);
BinInstance inst = BinInstance_read(param_12, param_13);
sh_elements[th_ix] = inst.element_ix;
}
GroupMemoryBarrierWithGroupSync();
wr_ix = min((rd_ix + 256u), ready_ix);
bool _1352 = (wr_ix - rd_ix) < 256u;
if (_1352)
{
_1362 = (wr_ix < ready_ix) || (partition_ix < n_partitions);
}
else
{
_1362 = _1352;
}
if (_1362)
{
continue;
}
else
{
break;
}
}
uint tag = 0u;
if ((th_ix + rd_ix) < wr_ix)
{
element_ix = sh_elements[th_ix];
tag = _1378.Load((drawtag_start + element_ix) * 4 + 0);
}
switch (tag)
{
case 68u:
case 72u:
case 276u:
case 732u:
case 5u:
case 37u:
{
uint drawmonoid_base = drawmonoid_start + (4u * element_ix);
uint path_ix = _260.Load(drawmonoid_base * 4 + 8);
PathRef _1403 = { _1005.Load(16) + (path_ix * 12u) };
Alloc _1406;
_1406.offset = _1005.Load(16);
param_14.offset = _1406.offset;
PathRef param_15 = _1403;
Path path = Path_read(param_14, param_15);
uint stride = path.bbox.z - path.bbox.x;
sh_tile_stride[th_ix] = stride;
int dx = int(path.bbox.x) - int(bin_tile_x);
int dy = int(path.bbox.y) - int(bin_tile_y);
int x0 = clamp(dx, 0, 16);
int y0 = clamp(dy, 0, 16);
int x1 = clamp(int(path.bbox.z) - int(bin_tile_x), 0, 16);
int y1 = clamp(int(path.bbox.w) - int(bin_tile_y), 0, 16);
sh_tile_width[th_ix] = uint(x1 - x0);
sh_tile_x0[th_ix] = uint(x0);
sh_tile_y0[th_ix] = uint(y0);
tile_count = uint(x1 - x0) * uint(y1 - y0);
uint base = path.tiles.offset - (((uint(dy) * stride) + uint(dx)) * 8u);
sh_tile_base[th_ix] = base;
uint param_16 = path.tiles.offset;
uint param_17 = ((path.bbox.z - path.bbox.x) * (path.bbox.w - path.bbox.y)) * 8u;
bool param_18 = mem_ok;
Alloc path_alloc = new_alloc(param_16, param_17, param_18);
uint param_19 = th_ix;
Alloc param_20 = path_alloc;
write_tile_alloc(param_19, param_20);
break;
}
default:
{
tile_count = 0u;
break;
}
}
sh_tile_count[th_ix] = tile_count;
for (uint i_3 = 0u; i_3 < 8u; i_3++)
{
GroupMemoryBarrierWithGroupSync();
if (th_ix >= (1u << i_3))
{
tile_count += sh_tile_count[th_ix - (1u << i_3)];
}
GroupMemoryBarrierWithGroupSync();
sh_tile_count[th_ix] = tile_count;
}
GroupMemoryBarrierWithGroupSync();
uint total_tile_count = sh_tile_count[255];
for (uint ix_1 = th_ix; ix_1 < total_tile_count; ix_1 += 256u)
{
uint el_ix = 0u;
for (uint i_4 = 0u; i_4 < 8u; i_4++)
{
uint probe_1 = el_ix + (128u >> i_4);
if (ix_1 >= sh_tile_count[probe_1 - 1u])
{
el_ix = probe_1;
}
}
uint element_ix_1 = sh_elements[el_ix];
uint tag_1 = _1378.Load((drawtag_start + element_ix_1) * 4 + 0);
if (el_ix > 0u)
{
_1611 = sh_tile_count[el_ix - 1u];
}
else
{
_1611 = 0u;
}
uint seq_ix = ix_1 - _1611;
uint width = sh_tile_width[el_ix];
uint x = sh_tile_x0[el_ix] + (seq_ix % width);
uint y = sh_tile_y0[el_ix] + (seq_ix / width);
bool include_tile = false;
if (mem_ok)
{
uint param_21 = el_ix;
bool param_22 = mem_ok;
TileRef _1663 = { sh_tile_base[el_ix] + (((sh_tile_stride[el_ix] * y) + x) * 8u) };
Alloc param_23 = read_tile_alloc(param_21, param_22);
TileRef param_24 = _1663;
Tile tile = Tile_read(param_23, param_24);
bool is_clip = (tag_1 & 1u) != 0u;
bool is_blend = false;
if (is_clip)
{
uint drawmonoid_base_1 = drawmonoid_start + (4u * element_ix_1);
uint scene_offset = _260.Load((drawmonoid_base_1 + 2u) * 4 + 8);
uint dd = drawdata_start + (scene_offset >> uint(2));
uint blend = _1378.Load(dd * 4 + 0);
is_blend = blend != 32771u;
}
bool _1699 = tile.tile.offset != 0u;
bool _1708;
if (!_1699)
{
_1708 = (tile.backdrop == 0) == is_clip;
}
else
{
_1708 = _1699;
}
include_tile = _1708 || is_blend;
}
if (include_tile)
{
uint el_slice = el_ix / 32u;
uint el_mask = 1u << (el_ix & 31u);
uint _1730;
InterlockedOr(sh_bitmaps[el_slice][(y * 16u) + x], el_mask, _1730);
}
}
GroupMemoryBarrierWithGroupSync();
uint slice_ix = 0u;
uint bitmap = sh_bitmaps[0][th_ix];
while (mem_ok)
{
if (bitmap == 0u)
{
slice_ix++;
if (slice_ix == 8u)
{
break;
}
bitmap = sh_bitmaps[slice_ix][th_ix];
if (bitmap == 0u)
{
continue;
}
}
uint element_ref_ix = (slice_ix * 32u) + uint(int(firstbitlow(bitmap)));
uint element_ix_2 = sh_elements[element_ref_ix];
bitmap &= (bitmap - 1u);
uint drawtag = _1378.Load((drawtag_start + element_ix_2) * 4 + 0);
if (clip_zero_depth == 0u)
{
uint param_25 = element_ref_ix;
bool param_26 = mem_ok;
TileRef _1807 = { sh_tile_base[element_ref_ix] + (((sh_tile_stride[element_ref_ix] * tile_y) + tile_x) * 8u) };
Alloc param_27 = read_tile_alloc(param_25, param_26);
TileRef param_28 = _1807;
Tile tile_1 = Tile_read(param_27, param_28);
uint drawmonoid_base_2 = drawmonoid_start + (4u * element_ix_2);
uint scene_offset_1 = _260.Load((drawmonoid_base_2 + 2u) * 4 + 8);
uint info_offset = _260.Load((drawmonoid_base_2 + 3u) * 4 + 8);
uint dd_1 = drawdata_start + (scene_offset_1 >> uint(2));
uint di = drawinfo_start + (info_offset >> uint(2));
switch (drawtag)
{
case 68u:
{
linewidth = asfloat(_260.Load(di * 4 + 8));
Alloc param_29 = cmd_alloc;
CmdRef param_30 = cmd_ref;
uint param_31 = cmd_limit;
bool _1855 = alloc_cmd(param_29, param_30, param_31);
cmd_alloc = param_29;
cmd_ref = param_30;
cmd_limit = param_31;
if (!_1855)
{
break;
}
Alloc param_32 = cmd_alloc;
CmdRef param_33 = cmd_ref;
Tile param_34 = tile_1;
float param_35 = linewidth;
write_fill(param_32, param_33, param_34, param_35);
cmd_ref = param_33;
uint rgba = _1378.Load(dd_1 * 4 + 0);
CmdColor _1878 = { rgba };
Alloc param_36 = cmd_alloc;
CmdRef param_37 = cmd_ref;
CmdColor param_38 = _1878;
Cmd_Color_write(param_36, param_37, param_38);
cmd_ref.offset += 8u;
break;
}
case 276u:
{
Alloc param_39 = cmd_alloc;
CmdRef param_40 = cmd_ref;
uint param_41 = cmd_limit;
bool _1896 = alloc_cmd(param_39, param_40, param_41);
cmd_alloc = param_39;
cmd_ref = param_40;
cmd_limit = param_41;
if (!_1896)
{
break;
}
linewidth = asfloat(_260.Load(di * 4 + 8));
Alloc param_42 = cmd_alloc;
CmdRef param_43 = cmd_ref;
Tile param_44 = tile_1;
float param_45 = linewidth;
write_fill(param_42, param_43, param_44, param_45);
cmd_ref = param_43;
cmd_lin.index = _1378.Load(dd_1 * 4 + 0);
cmd_lin.line_x = asfloat(_260.Load((di + 1u) * 4 + 8));
cmd_lin.line_y = asfloat(_260.Load((di + 2u) * 4 + 8));
cmd_lin.line_c = asfloat(_260.Load((di + 3u) * 4 + 8));
Alloc param_46 = cmd_alloc;
CmdRef param_47 = cmd_ref;
CmdLinGrad param_48 = cmd_lin;
Cmd_LinGrad_write(param_46, param_47, param_48);
cmd_ref.offset += 20u;
break;
}
case 732u:
{
Alloc param_49 = cmd_alloc;
CmdRef param_50 = cmd_ref;
uint param_51 = cmd_limit;
bool _1960 = alloc_cmd(param_49, param_50, param_51);
cmd_alloc = param_49;
cmd_ref = param_50;
cmd_limit = param_51;
if (!_1960)
{
break;
}
linewidth = asfloat(_260.Load(di * 4 + 8));
Alloc param_52 = cmd_alloc;
CmdRef param_53 = cmd_ref;
Tile param_54 = tile_1;
float param_55 = linewidth;
write_fill(param_52, param_53, param_54, param_55);
cmd_ref = param_53;
cmd_rad.index = _1378.Load(dd_1 * 4 + 0);
cmd_rad.mat = asfloat(uint4(_260.Load((di + 1u) * 4 + 8), _260.Load((di + 2u) * 4 + 8), _260.Load((di + 3u) * 4 + 8), _260.Load((di + 4u) * 4 + 8)));
cmd_rad.xlat = asfloat(uint2(_260.Load((di + 5u) * 4 + 8), _260.Load((di + 6u) * 4 + 8)));
cmd_rad.c1 = asfloat(uint2(_260.Load((di + 7u) * 4 + 8), _260.Load((di + 8u) * 4 + 8)));
cmd_rad.ra = asfloat(_260.Load((di + 9u) * 4 + 8));
cmd_rad.roff = asfloat(_260.Load((di + 10u) * 4 + 8));
Alloc param_56 = cmd_alloc;
CmdRef param_57 = cmd_ref;
CmdRadGrad param_58 = cmd_rad;
Cmd_RadGrad_write(param_56, param_57, param_58);
cmd_ref.offset += 48u;
break;
}
case 72u:
{
linewidth = asfloat(_260.Load(di * 4 + 8));
Alloc param_59 = cmd_alloc;
CmdRef param_60 = cmd_ref;
uint param_61 = cmd_limit;
bool _2066 = alloc_cmd(param_59, param_60, param_61);
cmd_alloc = param_59;
cmd_ref = param_60;
cmd_limit = param_61;
if (!_2066)
{
break;
}
Alloc param_62 = cmd_alloc;
CmdRef param_63 = cmd_ref;
Tile param_64 = tile_1;
float param_65 = linewidth;
write_fill(param_62, param_63, param_64, param_65);
cmd_ref = param_63;
uint index = _1378.Load(dd_1 * 4 + 0);
uint raw1 = _1378.Load((dd_1 + 1u) * 4 + 0);
int2 offset_1 = int2(int(raw1 << uint(16)) >> 16, int(raw1) >> 16);
CmdImage _2105 = { index, offset_1 };
Alloc param_66 = cmd_alloc;
CmdRef param_67 = cmd_ref;
CmdImage param_68 = _2105;
Cmd_Image_write(param_66, param_67, param_68);
cmd_ref.offset += 12u;
break;
}
case 5u:
{
bool _2119 = tile_1.tile.offset == 0u;
bool _2125;
if (_2119)
{
_2125 = tile_1.backdrop == 0;
}
else
{
_2125 = _2119;
}
if (_2125)
{
clip_zero_depth = clip_depth + 1u;
}
else
{
Alloc param_69 = cmd_alloc;
CmdRef param_70 = cmd_ref;
uint param_71 = cmd_limit;
bool _2137 = alloc_cmd(param_69, param_70, param_71);
cmd_alloc = param_69;
cmd_ref = param_70;
cmd_limit = param_71;
if (!_2137)
{
break;
}
Alloc param_72 = cmd_alloc;
CmdRef param_73 = cmd_ref;
Cmd_BeginClip_write(param_72, param_73);
cmd_ref.offset += 4u;
render_blend_depth++;
max_blend_depth = max(max_blend_depth, render_blend_depth);
}
clip_depth++;
break;
}
case 37u:
{
clip_depth--;
Alloc param_74 = cmd_alloc;
CmdRef param_75 = cmd_ref;
uint param_76 = cmd_limit;
bool _2170 = alloc_cmd(param_74, param_75, param_76);
cmd_alloc = param_74;
cmd_ref = param_75;
cmd_limit = param_76;
if (!_2170)
{
break;
}
Alloc param_77 = cmd_alloc;
CmdRef param_78 = cmd_ref;
Tile param_79 = tile_1;
float param_80 = -1.0f;
write_fill(param_77, param_78, param_79, param_80);
cmd_ref = param_78;
uint blend_1 = _1378.Load(dd_1 * 4 + 0);
CmdEndClip _2193 = { blend_1 };
Alloc param_81 = cmd_alloc;
CmdRef param_82 = cmd_ref;
CmdEndClip param_83 = _2193;
Cmd_EndClip_write(param_81, param_82, param_83);
cmd_ref.offset += 8u;
render_blend_depth--;
break;
}
}
}
else
{
switch (drawtag)
{
case 5u:
{
clip_depth++;
break;
}
case 37u:
{
if (clip_depth == clip_zero_depth)
{
clip_zero_depth = 0u;
}
clip_depth--;
break;
}
}
}
}
GroupMemoryBarrierWithGroupSync();
rd_ix += 256u;
if ((rd_ix >= ready_ix) && (partition_ix >= n_partitions))
{
break;
}
}
bool _2242 = (bin_tile_x + tile_x) < _1005.Load(8);
bool _2251;
if (_2242)
{
_2251 = (bin_tile_y + tile_y) < _1005.Load(12);
}
else
{
_2251 = _2242;
}
if (_2251)
{
Alloc param_84 = cmd_alloc;
CmdRef param_85 = cmd_ref;
Cmd_End_write(param_84, param_85);
if (max_blend_depth > 4u)
{
}
}
}
[numthreads(256, 1, 1)]
void main(SPIRV_Cross_Input stage_input)
{
gl_WorkGroupID = stage_input.gl_WorkGroupID;
gl_LocalInvocationID = stage_input.gl_LocalInvocationID;
comp_main();
}