init, fat, display, display-demo, device-manager, input, logger, and the two discovery fillers (acpi, fdt — each exporting an artifact named "discovery"; the root -Ddiscovery picks which ships) convert to binary packages on the pci-bus template. init's serial heartbeat flag rides the dependency options (the root forwards its -Dserial). fat's and display's unit tests move into their packages and the root aggregate delegates to them. Boot-image file list unchanged.
25 lines
1.2 KiB
Zig
25 lines
1.2 KiB
Zig
//! The acpi discovery service as a binary package (docs/build-packages-plan.md,
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//! phase 2). The artifact is named "discovery": one swappable process per
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//! firmware fills the ramdisk's neutral `discovery` slot (docs/discovery.md),
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//! so the device manager never learns which firmware it is on. The root
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//! build's -Ddiscovery picks this package or `fdt`.
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const std = @import("std");
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const build_support = @import("build-support");
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pub fn build(b: *std.Build) void {
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const exe = build_support.userBinary(b, .{
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.name = "discovery",
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.root_source_file = b.path("acpi.zig"),
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.domains = build_support.domains(b),
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});
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const protocol = b.dependency("protocol", .{});
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// The shared AML interpreter (the same parser the kernel runs), the
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// device-manager report channel, and the power protocol (the SCI/power
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// button path, docs/power.md).
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build_support.programModule(exe).addImport("aml", b.dependency("device", .{}).module("aml"));
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build_support.programModule(exe).addImport("device-manager-protocol", protocol.module("device-manager-protocol"));
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build_support.programModule(exe).addImport("power-protocol", protocol.module("power-protocol"));
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b.installArtifact(exe);
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}
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