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2026-05-02 14:20:50 +02:00

82 lines
3.0 KiB
Zig

const std = @import("std");
const Allocator = std.mem.Allocator;
const parse = @import("../parse.zig");
const fetch = @import("../fetch.zig");
const c = @import("c");
const Result = parse.Result;
const MacFn = *const fn ([*c]u8, [*c]const u8, c_ulonglong, [*c]const u8) callconv(.c) c_int;
fn checkMac(result: *Result, v: parse.MacVector, computed: []const u8) void {
const matches = std.mem.eql(u8, computed, v.mac);
if (v.validity == .valid) {
if (matches) {
result.passed += 1;
} else {
std.debug.print("FAIL tc={d}: mac mismatch\n", .{v.tc_id});
result.failed += 1;
}
} else {
if (!matches) {
result.passed += 1;
} else {
std.debug.print("FAIL tc={d}: invalid mac should not match\n", .{v.tc_id});
result.failed += 1;
}
}
}
fn runHmac256(vectors: []const parse.MacVector) Result {
var result = Result{};
for (vectors) |v| {
var state: c.crypto_auth_hmacsha256_state = undefined;
_ = c.crypto_auth_hmacsha256_init(&state, v.key.ptr, v.key.len);
_ = c.crypto_auth_hmacsha256_update(&state, v.msg.ptr, @intCast(v.msg.len));
var out: [c.crypto_auth_hmacsha256_BYTES]u8 = undefined;
_ = c.crypto_auth_hmacsha256_final(&state, &out);
checkMac(&result, v, &out);
}
return result;
}
fn runHmac512(vectors: []const parse.MacVector) Result {
var result = Result{};
for (vectors) |v| {
var state: c.crypto_auth_hmacsha512_state = undefined;
_ = c.crypto_auth_hmacsha512_init(&state, v.key.ptr, v.key.len);
_ = c.crypto_auth_hmacsha512_update(&state, v.msg.ptr, @intCast(v.msg.len));
var out: [c.crypto_auth_hmacsha512_BYTES]u8 = undefined;
_ = c.crypto_auth_hmacsha512_final(&state, &out);
checkMac(&result, v, &out);
}
return result;
}
fn runOneShot(vectors: []const parse.MacVector, mac_fn: MacFn, comptime mac_len: usize) Result {
var result = Result{};
for (vectors) |v| {
var out: [mac_len]u8 = undefined;
const ret = mac_fn(&out, v.msg.ptr, @intCast(v.msg.len), v.key.ptr);
if (ret != 0) {
std.debug.print("FAIL tc={d}: mac returned {d}\n", .{ v.tc_id, ret });
result.failed += 1;
continue;
}
checkMac(&result, v, &out);
}
return result;
}
pub fn run(allocator: Allocator, data: []const u8, tag: fetch.SuiteTag) !Result {
const vectors = try parse.loadMacVectors(allocator, data);
return switch (tag) {
.mac_hmacsha256 => runHmac256(vectors),
.mac_hmacsha512 => runHmac512(vectors),
.mac_siphash24 => runOneShot(vectors, &c.crypto_shorthash_siphash24, c.crypto_shorthash_siphash24_BYTES),
.mac_siphashx24 => runOneShot(vectors, &c.crypto_shorthash_siphashx24, c.crypto_shorthash_siphashx24_BYTES),
.onetimeauth_poly1305 => runOneShot(vectors, &c.crypto_onetimeauth_poly1305, c.crypto_onetimeauth_poly1305_BYTES),
else => unreachable,
};
}