| ... | ... | @@ -5,6 +5,7 @@ const Target = std.Target; |
| 5 | 5 | |
| 6 | 6 | pub const WindowsVersion = std.Target.Os.WindowsVersion; |
| 7 | 7 | pub const PF = std.os.windows.PF; |
| 8 | pub const REG = std.os.windows.REG; |
| 8 | 9 | pub const IsProcessorFeaturePresent = std.os.windows.IsProcessorFeaturePresent; |
| 9 | 10 | |
| 10 | 11 | /// Returns the highest known WindowsVersion deduced from reported runtime information. |
| ... | ... | @@ -92,7 +93,7 @@ const Armv8CpuInfoImpl = struct { |
| 92 | 93 | } |
| 93 | 94 | }; |
| 94 | 95 | |
| 95 | | fn getCpuInfoFromRegistry(comptime T: type, core: usize, comptime key: []const u8) !T { |
| 96 | fn getCpuInfoFromRegistry(core: usize, comptime key: []const u8, value_type: std.os.windows.ULONG) ![]const u8 { |
| 96 | 97 | const key_name = std.unicode.utf8ToUtf16LeStringLiteral(key); |
| 97 | 98 | |
| 98 | 99 | // Originally, I wanted to issue a single call with a more complex table structure such that we |
| ... | ... | @@ -105,37 +106,42 @@ fn getCpuInfoFromRegistry(comptime T: type, core: usize, comptime key: []const u |
| 105 | 106 | |
| 106 | 107 | const topkey = std.unicode.utf8ToUtf16LeStringLiteral("\\Registry\\Machine\\HARDWARE\\DESCRIPTION\\System\\CentralProcessor"); |
| 107 | 108 | |
| 108 | | // Technically, a registry value can be as long as 16k u16s. However, MS recommends storing |
| 109 | | // values larger than 2048 in a file rather than directly in the registry, and since we |
| 109 | // Technically, a registry value can be as long as 1MB. However, MS recommends storing |
| 110 | // values larger than 2048 bytes in a file rather than directly in the registry, and since we |
| 110 | 111 | // are only accessing a system hive \Registry\Machine, we stick to MS guidelines. |
| 111 | 112 | // https://learn.microsoft.com/en-us/windows/win32/sysinfo/registry-element-size-limits |
| 112 | | const max_sz_value = 2048; |
| 113 | const max_value_len = 2048; |
| 113 | 114 | |
| 114 | 115 | const ctx: *anyopaque = blk: { |
| 115 | | switch (@typeInfo(T)) { |
| 116 | | .Int => |int| { |
| 117 | | const bits = int.bits; |
| 118 | | var buf: [bits * 8]u8 = undefined; |
| 116 | switch (value_type) { |
| 117 | REG.NONE => unreachable, |
| 118 | |
| 119 | REG.SZ, |
| 120 | REG.EXPAND_SZ, |
| 121 | REG.MULTI_SZ, |
| 122 | => { |
| 123 | var buf: [max_value_len / 2]u16 = undefined; |
| 124 | var unicode = std.os.windows.UNICODE_STRING{ |
| 125 | .Length = max_value_len, |
| 126 | .MaximumLength = max_value_len, |
| 127 | .Buffer = &buf, |
| 128 | }; |
| 129 | break :blk &unicode; |
| 130 | }, |
| 131 | |
| 132 | REG.DWORD, |
| 133 | REG.DWORD_BIG_ENDIAN, |
| 134 | => { |
| 135 | var buf: [4]u8 = undefined; |
| 119 | 136 | break :blk &buf; |
| 120 | 137 | }, |
| 121 | | .Pointer => |ptr| switch (ptr.size) { |
| 122 | | .Slice => { |
| 123 | | const child = @typeInfo(ptr.child); |
| 124 | | if (child != .Int and child.Int.bits != 8) { |
| 125 | | @compileError("Unsupported type " ++ @typeName(T) ++ " as registry value"); |
| 126 | | } |
| 127 | | |
| 128 | | var buf: [max_sz_value]u16 = undefined; |
| 129 | | var unicode = std.os.windows.UNICODE_STRING{ |
| 130 | | .Length = buf.len * 2, |
| 131 | | .MaximumLength = buf.len * 2, |
| 132 | | .Buffer = &buf, |
| 133 | | }; |
| 134 | | break :blk &unicode; |
| 135 | | }, |
| 136 | | else => @compileError("Unsupported type " ++ @typeName(T) ++ " as registry value"), |
| 138 | |
| 139 | REG.QWORD => { |
| 140 | var buf: [8]u8 = undefined; |
| 141 | break :blk &buf; |
| 137 | 142 | }, |
| 138 | | else => @compileError("Unsupported type " ++ @typeName(T) ++ " as registry value"), |
| 143 | |
| 144 | else => unreachable, |
| 139 | 145 | } |
| 140 | 146 | }; |
| 141 | 147 | |
| ... | ... | @@ -152,7 +158,7 @@ fn getCpuInfoFromRegistry(comptime T: type, core: usize, comptime key: []const u |
| 152 | 158 | .Flags = std.os.windows.RTL_QUERY_REGISTRY_SUBKEY | std.os.windows.RTL_QUERY_REGISTRY_REQUIRED, |
| 153 | 159 | .Name = subkey[0..subkey_len :0], |
| 154 | 160 | .EntryContext = null, |
| 155 | | .DefaultType = std.os.windows.REG_NONE, |
| 161 | .DefaultType = REG.NONE, |
| 156 | 162 | .DefaultData = null, |
| 157 | 163 | .DefaultLength = 0, |
| 158 | 164 | }; |
| ... | ... | @@ -162,7 +168,7 @@ fn getCpuInfoFromRegistry(comptime T: type, core: usize, comptime key: []const u |
| 162 | 168 | .Flags = std.os.windows.RTL_QUERY_REGISTRY_DIRECT | std.os.windows.RTL_QUERY_REGISTRY_REQUIRED, |
| 163 | 169 | .Name = @intToPtr([*:0]u16, @ptrToInt(key_name)), |
| 164 | 170 | .EntryContext = ctx, |
| 165 | | .DefaultType = std.os.windows.REG_NONE, |
| 171 | .DefaultType = REG.NONE, |
| 166 | 172 | .DefaultData = null, |
| 167 | 173 | .DefaultLength = 0, |
| 168 | 174 | }; |
| ... | ... | @@ -186,17 +192,31 @@ fn getCpuInfoFromRegistry(comptime T: type, core: usize, comptime key: []const u |
| 186 | 192 | null, |
| 187 | 193 | ); |
| 188 | 194 | switch (res) { |
| 189 | | .SUCCESS => switch (@typeInfo(T)) { |
| 190 | | .Int => { |
| 191 | | const entry = @ptrCast(*align(1) const T, table[1].EntryContext); |
| 192 | | return entry.*; |
| 193 | | }, |
| 194 | | .Pointer => { |
| 195 | .SUCCESS => switch (value_type) { |
| 196 | REG.NONE => unreachable, |
| 197 | |
| 198 | REG.SZ, |
| 199 | REG.EXPAND_SZ, |
| 200 | REG.MULTI_SZ, |
| 201 | => { |
| 195 | 202 | const entry = @ptrCast(*align(1) const std.os.windows.UNICODE_STRING, table[1].EntryContext); |
| 196 | | var identifier_buf: [max_sz_value * 2]u8 = undefined; |
| 203 | var identifier_buf: [max_value_len]u8 = undefined; |
| 197 | 204 | const len = try std.unicode.utf16leToUtf8(&identifier_buf, entry.Buffer[0 .. entry.Length / 2]); |
| 198 | | return @as(T, identifier_buf[0..len]); |
| 205 | return identifier_buf[0..len]; |
| 199 | 206 | }, |
| 207 | |
| 208 | REG.DWORD, |
| 209 | REG.DWORD_BIG_ENDIAN, |
| 210 | REG.QWORD, |
| 211 | => { |
| 212 | const entry = @ptrCast([*]align(1) const u8, table[1].EntryContext); |
| 213 | switch (value_type) { |
| 214 | REG.DWORD, REG.DWORD_BIG_ENDIAN => return entry[0..4], |
| 215 | REG.QWORD => return entry[0..8], |
| 216 | else => unreachable, |
| 217 | } |
| 218 | }, |
| 219 | |
| 200 | 220 | else => unreachable, |
| 201 | 221 | }, |
| 202 | 222 | else => return std.os.windows.unexpectedStatus(res), |
| ... | ... | @@ -216,11 +236,11 @@ fn detectCpuModelArm64() !*const Target.Cpu.Model { |
| 216 | 236 | |
| 217 | 237 | var i: usize = 0; |
| 218 | 238 | while (i < cpu_count) : (i += 1) { |
| 219 | | const identifier = try getCpuInfoFromRegistry([]const u8, i, "Identifier"); |
| 239 | const identifier = try getCpuInfoFromRegistry(i, "Identifier", REG.SZ); |
| 220 | 240 | parser.parseOne(identifier); |
| 221 | 241 | |
| 222 | | const hex = try getCpuInfoFromRegistry(u64, i, "CP 4000"); |
| 223 | | std.log.warn("{d} => {x}", .{ i, hex }); |
| 242 | const hex = try getCpuInfoFromRegistry(i, "CP 4000", REG.QWORD); |
| 243 | std.log.warn("{d} => {x}", .{ i, std.fmt.fmtSliceHexLower(hex) }); |
| 224 | 244 | } |
| 225 | 245 | |
| 226 | 246 | return parser.finalize() orelse Target.Cpu.Model.generic(.aarch64); |