implementing imulextend and umulextend
Build / build (push) Successful in 1m6s
Test / build_and_test (push) Successful in 32m11s

This commit is contained in:
2026-04-29 23:53:27 +02:00
parent 0ea7281eff
commit b9ce18ca8e
8 changed files with 59 additions and 20 deletions
+8 -2
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@@ -24,6 +24,12 @@ const RunningMode = enum {
valgrind,
};
const LogType = enum {
none,
standard,
verbose,
};
pub fn build(b: *std.Build) !void {
const target = b.standardTargetOptions(.{});
const optimize = b.standardOptimizeOption(.{});
@@ -43,10 +49,10 @@ pub fn build(b: *std.Build) !void {
const zmath = b.dependency("zmath", .{}).module("root");
const logs_option = b.option(bool, "logs", "Driver logs") orelse false;
const logs_option: LogType = b.option(LogType, "logs", "Driver logs") orelse .none;
const options = b.addOptions();
options.addOption(bool, "logs", logs_option);
options.addOption(LogType, "logs", logs_option);
base_mod.addImport("zmath", zmath);
base_mod.addImport("vulkan", vulkan);
+2 -2
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@@ -31,8 +31,8 @@
.hash = "zmath-0.11.0-dev-wjwivdMsAwD-xaLj76YHUq3t9JDH-X16xuMTmnDzqbu2",
},
.SPIRV_Interpreter = .{
.url = "git+https://git.kbz8.me/kbz_8/SPIRV-Interpreter#046b1c8f9e9a6f61498c58fa39fde8ec3d044d58",
.hash = "SPIRV_Interpreter-0.0.1-ajmpn-blBAAmIOGIbqCR3BWWY7QDcrsdZHdse-4OBxNF",
.url = "git+https://git.kbz8.me/kbz_8/SPIRV-Interpreter#ce172090044354d5ea70f1bf79bd077fb6722e29",
.hash = "SPIRV_Interpreter-0.0.1-ajmpn2cbBQA67LOLx5fml7Uf7iRw32jwOZh0ZIX4YJyh",
.lazy = true,
},
//.SPIRV_Interpreter = .{
+12 -4
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@@ -77,7 +77,7 @@ pub fn createCompute(device: *base.Device, allocator: std.mem.Allocator, cache:
soft_module.ref();
shader.module = soft_module;
const runtimes = runtimes_allocator.alloc(spv.Runtime, runtimes_count) catch return VkError.OutOfHostMemory;
const runtimes = runtimes_allocator.alloc(spv.Runtime, runtimes_count) catch return VkError.OutOfDeviceMemory;
for (runtimes) |*runtime| {
runtime.* = spv.Runtime.init(
@@ -97,18 +97,22 @@ pub fn createCompute(device: *base.Device, allocator: std.mem.Allocator, cache:
if (specialization.p_map_entries) |map| {
const data: []const u8 = @as([*]const u8, @ptrCast(@alignCast(specialization.p_data)))[0..specialization.data_size];
for (map[0..], 0..specialization.map_entry_count) |entry, _| {
runtime.addSpecializationInfo(runtimes_allocator, .{
runtime.addSpecializationInfo(
runtimes_allocator,
.{
.id = @intCast(entry.constant_id),
.offset = @intCast(entry.offset),
.size = @intCast(entry.size),
}, data) catch return VkError.OutOfHostMemory;
},
data,
) catch return VkError.OutOfDeviceMemory;
}
}
}
}
shader.runtimes = runtimes;
shader.entry = runtimes_allocator.dupe(u8, std.mem.span(info.stage.p_name)) catch return VkError.OutOfHostMemory;
shader.entry = runtimes_allocator.dupe(u8, std.mem.span(info.stage.p_name)) catch return VkError.OutOfDeviceMemory;
std.log.scoped(.ComputePipeline).debug("Created {d} runtimes for compute stage", .{runtimes_count});
break :blk shader;
@@ -224,6 +228,10 @@ pub fn createGraphics(device: *base.Device, allocator: std.mem.Allocator, cache:
pub fn destroy(interface: *Interface, allocator: std.mem.Allocator) void {
const self: *Self = @alignCast(@fieldParentPtr("interface", interface));
var it = self.stages.iterator();
while (it.next()) |entry| {
entry.value.module.unref(allocator);
}
self.runtimes_allocator.deinit();
allocator.destroy(self);
}
+16 -5
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@@ -7,11 +7,14 @@ const lib = @import("lib.zig");
const VkError = base.VkError;
const Device = base.Device;
const SoftDevice = @import("SoftDevice.zig");
const Self = @This();
pub const Interface = base.ShaderModule;
interface: Interface,
module: spv.Module,
module_allocator: std.heap.ArenaAllocator,
/// Pipelines need SPIR-V module reference so shader module may not
/// be destroy on call to `vkDestroyShaderModule`
@@ -23,6 +26,13 @@ pub fn create(device: *base.Device, allocator: std.mem.Allocator, info: *const v
var interface = try Interface.init(device, allocator, info);
const soft_device: *SoftDevice = @alignCast(@fieldParentPtr("interface", device));
const device_allocator = soft_device.device_allocator.allocator();
var module_allocator_arena: std.heap.ArenaAllocator = .init(device_allocator);
errdefer module_allocator_arena.deinit();
const module_allocator = module_allocator_arena.allocator();
interface.vtable = &.{
.destroy = destroy,
};
@@ -31,7 +41,7 @@ pub fn create(device: *base.Device, allocator: std.mem.Allocator, info: *const v
self.* = .{
.interface = interface,
.module = spv.Module.init(allocator, code, .{
.module = spv.Module.init(module_allocator, code, .{
.use_simd_vectors_specializations = base.config.shaders_simd,
}) catch |err| switch (err) {
spv.Module.ModuleError.OutOfMemory => return VkError.OutOfHostMemory,
@@ -43,6 +53,7 @@ pub fn create(device: *base.Device, allocator: std.mem.Allocator, info: *const v
return VkError.ValidationFailed;
},
},
.module_allocator = module_allocator_arena,
.ref_count = std.atomic.Value(usize).init(1),
};
return self;
@@ -53,16 +64,16 @@ pub fn destroy(interface: *Interface, allocator: std.mem.Allocator) void {
self.unref(allocator);
}
pub inline fn drop(self: *Self, allocator: std.mem.Allocator) void {
self.module.deinit(allocator);
pub fn drop(self: *Self, allocator: std.mem.Allocator) void {
self.module_allocator.deinit();
allocator.destroy(self);
}
pub inline fn ref(self: *Self) void {
pub fn ref(self: *Self) void {
_ = self.ref_count.fetchAdd(1, .monotonic);
}
pub inline fn unref(self: *Self, allocator: std.mem.Allocator) void {
pub fn unref(self: *Self, allocator: std.mem.Allocator) void {
if (self.ref_count.fetchSub(1, .release) == 1) {
self.drop(allocator);
}
+1 -1
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@@ -89,7 +89,7 @@ pub fn draw(self: *Self, vertex_count: usize, instance_count: usize, first_verte
const allocator = arena.allocator();
const timer = std.Io.Timestamp.now(io, .real);
defer if (comptime base.config.logs) {
defer if (comptime base.config.logs != .none) {
const duration = timer.untilNow(io, .real);
const ms = duration.toMicroseconds();
std.log.scoped(.SoftwareRenderer).debug("Drawcall stats:\n> Took {d}us\n> Allocated {d} KB", .{ ms, @divTrunc(arena.queryCapacity(), 1000) });
+4 -1
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@@ -62,7 +62,10 @@ fn alloc(context: *anyopaque, len: usize, alignment: Alignment, ret_addr: usize)
if (self.callbacks) |callbacks| {
if (callbacks.pfn_allocation) |pfn_allocation| {
return @ptrCast(pfn_allocation(self.callbacks.?.p_user_data, len, alignment.toByteUnits(), self.scope));
const ptr: ?[*]u8 = @ptrCast(pfn_allocation(self.callbacks.?.p_user_data, len, alignment.toByteUnits(), self.scope));
//std.debug.print("test {*}\n", .{ptr});
//std.debug.dumpCurrentStackTrace(.{});
return ptr;
}
}
+11
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@@ -1,5 +1,6 @@
const std = @import("std");
const vk = @import("vulkan");
const lib = @import("lib.zig");
pub const VkError = error{
NotReady,
@@ -58,10 +59,20 @@ pub const VkError = error{
pub inline fn errorLogger(err: VkError) void {
std.log.scoped(.errorLogger).err("Error logger catched a '{s}'", .{@errorName(err)});
if (comptime lib.config.logs == .verbose) {
if (@errorReturnTrace()) |trace| {
std.debug.dumpErrorReturnTrace(trace);
}
}
}
pub inline fn errorLoggerContext(err: VkError, context: []const u8) void {
std.log.scoped(.errorLogger).err("Error logger catched a '{s}' in {s}", .{ @errorName(err), context });
if (comptime lib.config.logs == .verbose) {
if (@errorReturnTrace()) |trace| {
std.debug.dumpErrorReturnTrace(trace);
}
}
}
pub inline fn toVkResult(err: VkError) vk.Result {
+2 -2
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@@ -14,14 +14,14 @@ comptime {
var mutex: std.Io.Mutex = .init;
pub inline fn fixme(comptime format: []const u8, args: anytype) void {
if (comptime !lib.config.logs) {
if (comptime lib.config.logs == .none) {
return;
}
std.log.scoped(.FIXME).warn("FIXME: " ++ format, args);
}
pub fn log(comptime level: std.log.Level, comptime scope: @EnumLiteral(), comptime format: []const u8, args: anytype) void {
if (comptime !lib.config.logs) {
if (comptime lib.config.logs == .none) {
return;
}