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std: add gpu namespace
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739108c9f0
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166
lib/std/gpu.zig
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166
lib/std/gpu.zig
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@ -0,0 +1,166 @@
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const std = @import("std.zig");
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const comptimePrint = std.fmt.comptimePrint;
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/// Will make `ptr` contain the location of the current invocation within the
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/// global workgroup. Each component is equal to the index of the local workgroup
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/// multiplied by the size of the local workgroup plus `localInvocationId`.
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/// `ptr` must be a reference to variable or struct field.
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pub fn globalInvocationId(comptime ptr: *addrspace(.input) @Vector(3, u32)) void {
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asm volatile (
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\\OpDecorate %ptr BuiltIn GlobalInvocationId
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:
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: [ptr] "" (ptr),
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);
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}
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/// Will make that variable contain the location of the current cluster
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/// culling, task, mesh, or compute shader invocation within the local
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/// workgroup. Each component ranges from zero through to the size of the
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/// workgroup in that dimension minus one.
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/// `ptr` must be a reference to variable or struct field.
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pub fn localInvocationId(comptime ptr: *addrspace(.input) @Vector(3, u32)) void {
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asm volatile (
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\\OpDecorate %ptr BuiltIn LocalInvocationId
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:
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: [ptr] "" (ptr),
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);
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}
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/// Output vertex position from a `Vertex` entrypoint
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/// `ptr` must be a reference to variable or struct field.
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pub fn position(comptime ptr: *addrspace(.output) @Vector(4, f32)) void {
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asm volatile (
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\\OpDecorate %ptr BuiltIn Position
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:
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: [ptr] "" (ptr),
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);
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}
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/// Will make `ptr` contain the index of the vertex that is
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/// being processed by the current vertex shader invocation.
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/// `ptr` must be a reference to variable or struct field.
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pub fn vertexIndex(comptime ptr: *addrspace(.input) u32) void {
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asm volatile (
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\\OpDecorate %ptr BuiltIn VertexIndex
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:
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: [ptr] "" (ptr),
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);
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}
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/// Output fragment depth from a `Fragment` entrypoint
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/// `ptr` must be a reference to variable or struct field.
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pub fn fragmentCoord(comptime ptr: *addrspace(.input) @Vector(4, f32)) void {
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asm volatile (
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\\OpDecorate %ptr BuiltIn FragCoord
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:
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: [ptr] "" (ptr),
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);
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}
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/// Output fragment depth from a `Fragment` entrypoint
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/// `ptr` must be a reference to variable or struct field.
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pub fn fragmentDepth(comptime ptr: *addrspace(.output) f32) void {
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asm volatile (
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\\OpDecorate %ptr BuiltIn FragDepth
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:
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: [ptr] "" (ptr),
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);
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}
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/// Forms the main linkage for `input` and `output` address spaces.
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/// `ptr` must be a reference to variable or struct field.
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pub fn location(comptime ptr: anytype, comptime loc: u32) void {
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const code = comptimePrint("OpDecorate %ptr Location {}", .{loc});
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asm volatile (code
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:
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: [ptr] "" (ptr),
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);
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}
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/// Forms the main linkage for `input` and `output` address spaces.
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/// `ptr` must be a reference to variable or struct field.
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pub fn binding(comptime ptr: anytype, comptime group: u32, comptime bind: u32) void {
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const code = comptimePrint(
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\\OpDecorate %ptr DescriptorSet {}
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\\OpDecorate %ptr Binding {}
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, .{ group, bind });
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asm volatile (code
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:
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: [ptr] "" (ptr),
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);
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}
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pub const Origin = enum(u32) {
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/// Increase toward the right and downward
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upper_left = 7,
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/// Increase toward the right and upward
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lower_left = 8,
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};
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/// The coordinates appear to originate in the specified `origin`.
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/// Only valid with the `Fragment` calling convention.
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pub fn fragmentOrigin(comptime entry_point: anytype, comptime origin: Origin) void {
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const origin_enum = switch (origin) {
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.upper_left => .OriginUpperLeft,
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.lower_left => .OriginLowerLeft,
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};
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asm volatile ("OpExecutionMode %entry_point " ++ @tagName(origin_enum)
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:
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: [entry_point] "" (entry_point),
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);
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}
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pub const DepthMode = enum(u32) {
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/// Declares that this entry point dynamically writes the
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/// `fragmentDepth` built in-decorated variable.
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replacing = 12,
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/// Indicates that per-fragment tests may assume that
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/// any `fragmentDepth` built in-decorated value written by the shader is
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/// greater-than-or-equal to the fragment’s interpolated depth value
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greater = 14,
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/// Indicates that per-fragment tests may assume that
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/// any `fragmentDepth` built in-decorated value written by the shader is
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/// less-than-or-equal to the fragment’s interpolated depth value
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less = 15,
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/// Indicates that per-fragment tests may assume that
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/// any `fragmentDepth` built in-decorated value written by the shader is
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/// the same as the fragment’s interpolated depth value
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unchanged = 16,
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};
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/// Only valid with the `Fragment` calling convention.
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pub fn depthMode(comptime entry_point: anytype, comptime mode: DepthMode) void {
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const code = comptimePrint("OpExecutionMode %entry_point {}", .{@intFromEnum(mode)});
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asm volatile (code
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:
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: [entry_point] "" (entry_point),
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);
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}
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/// Indicates the workgroup size in the `x`, `y`, and `z` dimensions.
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/// Only valid with the `GLCompute` or `Kernel` calling conventions.
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pub fn workgroupSize(comptime entry_point: anytype, comptime size: @Vector(3, u32)) void {
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const code = comptimePrint("OpExecutionMode %entry_point LocalSize {} {} {}", .{
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size[0],
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size[1],
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size[2],
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});
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asm volatile (code
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:
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: [entry_point] "" (entry_point),
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);
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}
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/// A hint to the client, which indicates the workgroup size in the `x`, `y`, and `z` dimensions.
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/// Only valid with the `GLCompute` or `Kernel` calling conventions.
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pub fn workgroupSizeHint(comptime entry_point: anytype, comptime size: @Vector(3, u32)) void {
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const code = comptimePrint("OpExecutionMode %entry_point LocalSizeHint {} {} {}", .{
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size[0],
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size[1],
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size[2],
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});
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asm volatile (code
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:
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: [entry_point] "" (entry_point),
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);
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}
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@ -104,6 +104,9 @@ pub const fmt = @import("fmt.zig");
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/// File system-related functionality.
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pub const fs = @import("fs.zig");
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/// GPU programming helpers.
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pub const gpu = @import("gpu.zig");
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/// Fast hashing functions (i.e. not cryptographically secure).
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pub const hash = @import("hash.zig");
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pub const hash_map = @import("hash_map.zig");
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