| ... | ... | @@ -1,5 +1,6 @@ |
| 1 | 1 | const std = @import("std"); |
| 2 | 2 | const builtin = @import("builtin"); |
| 3 | const mem = std.mem; |
| 3 | 4 | const Target = std.Target; |
| 4 | 5 | |
| 5 | 6 | pub const WindowsVersion = std.Target.Os.WindowsVersion; |
| ... | ... | @@ -43,20 +44,68 @@ pub fn detectRuntimeVersion() WindowsVersion { |
| 43 | 44 | return @intToEnum(WindowsVersion, version); |
| 44 | 45 | } |
| 45 | 46 | |
| 47 | const Armv8CpuInfoImpl = struct { |
| 48 | cores: [8]*const Target.Cpu.Model = undefined, |
| 49 | core_no: usize = 0, |
| 50 | |
| 51 | const cpu_family_models = .{ |
| 52 | // Family, Model, Revision |
| 53 | .{ 8, "D4C", 0, &Target.aarch64.cpu.microsoft_sq3 }, |
| 54 | }; |
| 55 | |
| 56 | fn parseOne(self: *Armv8CpuInfoImpl, identifier: []const u8) void { |
| 57 | if (mem.indexOf(u8, identifier, "ARMv8") == null) return; // Sanity check |
| 58 | |
| 59 | var family: ?usize = null; |
| 60 | var model: ?[]const u8 = null; |
| 61 | var revision: ?usize = null; |
| 62 | |
| 63 | var tokens = mem.tokenize(u8, identifier, " "); |
| 64 | while (tokens.next()) |token| { |
| 65 | if (mem.eql(u8, token, "Family")) { |
| 66 | const raw = tokens.next() orelse continue; |
| 67 | family = std.fmt.parseInt(usize, raw, 10) catch null; |
| 68 | } |
| 69 | if (mem.eql(u8, token, "Model")) { |
| 70 | model = tokens.next(); |
| 71 | } |
| 72 | if (mem.eql(u8, token, "Revision")) { |
| 73 | const raw = tokens.next() orelse continue; |
| 74 | revision = std.fmt.parseInt(usize, raw, 10) catch null; |
| 75 | } |
| 76 | } |
| 77 | |
| 78 | if (family == null or model == null or revision == null) return; |
| 79 | |
| 80 | inline for (cpu_family_models) |set| { |
| 81 | if (set[0] == family.? and mem.eql(u8, set[1], model.?) and set[2] == revision.?) { |
| 82 | self.cores[self.core_no] = set[3]; |
| 83 | self.core_no += 1; |
| 84 | break; |
| 85 | } |
| 86 | } |
| 87 | } |
| 88 | |
| 89 | fn finalize(self: Armv8CpuInfoImpl) ?*const Target.Cpu.Model { |
| 90 | if (self.core_no != 8) return null; // Implies we have seen a core we don't know much about |
| 91 | return self.cores[0]; |
| 92 | } |
| 93 | }; |
| 94 | |
| 46 | 95 | fn detectCpuModelArm64() !*const Target.Cpu.Model { |
| 47 | 96 | // Pull the CPU identifier from the registry. |
| 48 | | // Assume max number of cores to be at 128. |
| 49 | | const max_cpu_count = 128; |
| 97 | // Assume max number of cores to be at 8. |
| 98 | const max_cpu_count = 8; |
| 50 | 99 | const cpu_count = getCpuCount(); |
| 51 | 100 | |
| 52 | 101 | if (cpu_count > max_cpu_count) return error.TooManyCpus; |
| 53 | 102 | |
| 54 | | const table_size = max_cpu_count * 3 + 1; |
| 55 | | const actual_table_size = cpu_count * 3 + 1; |
| 56 | | var table: [table_size]std.os.windows.RTL_QUERY_REGISTRY_TABLE = undefined; |
| 103 | const table_size = max_cpu_count * 3; |
| 104 | const actual_table_size = cpu_count * 3; |
| 105 | var table: [table_size + 1]std.os.windows.RTL_QUERY_REGISTRY_TABLE = undefined; |
| 57 | 106 | |
| 58 | 107 | // Table sentinel |
| 59 | | table[actual_table_size - 1] = .{ |
| 108 | table[actual_table_size] = .{ |
| 60 | 109 | .QueryRoutine = null, |
| 61 | 110 | .Flags = 0, |
| 62 | 111 | .Name = null, |
| ... | ... | @@ -86,7 +135,7 @@ fn detectCpuModelArm64() !*const Target.Cpu.Model { |
| 86 | 135 | var next_cpu_buf: [std.math.log2(max_cpu_count)]u8 = undefined; |
| 87 | 136 | const next_cpu = try std.fmt.bufPrint(&next_cpu_buf, "{d}", .{i}); |
| 88 | 137 | |
| 89 | | var subkey: [std.math.log2(max_cpu_count) / 2]u16 = undefined; |
| 138 | var subkey: [std.math.log2(max_cpu_count) + 1]u16 = undefined; |
| 90 | 139 | const subkey_len = try std.unicode.utf8ToUtf16Le(&subkey, next_cpu); |
| 91 | 140 | subkey[subkey_len] = 0; |
| 92 | 141 | |
| ... | ... | @@ -137,6 +186,8 @@ fn detectCpuModelArm64() !*const Target.Cpu.Model { |
| 137 | 186 | } |
| 138 | 187 | |
| 139 | 188 | // Parse the models from strings |
| 189 | var parser = Armv8CpuInfoImpl{}; |
| 190 | |
| 140 | 191 | i = 0; |
| 141 | 192 | index = 0; |
| 142 | 193 | while (i < cpu_count) : (i += 1) { |
| ... | ... | @@ -146,10 +197,10 @@ fn detectCpuModelArm64() !*const Target.Cpu.Model { |
| 146 | 197 | var identifier_buf: [max_sz_value * 2]u8 = undefined; |
| 147 | 198 | const len = try std.unicode.utf16leToUtf8(&identifier_buf, entry.Buffer[0 .. entry.Length / 2]); |
| 148 | 199 | const identifier = identifier_buf[0..len]; |
| 149 | | _ = identifier; |
| 200 | parser.parseOne(identifier); |
| 150 | 201 | } |
| 151 | 202 | |
| 152 | | return &Target.aarch64.cpu.microsoft_sq3; |
| 203 | return parser.finalize() orelse Target.Cpu.Model.generic(.aarch64); |
| 153 | 204 | } |
| 154 | 205 | |
| 155 | 206 | fn detectNativeCpuAndFeaturesArm64() Target.Cpu { |
| ... | ... | @@ -163,23 +214,41 @@ fn detectNativeCpuAndFeaturesArm64() Target.Cpu { |
| 163 | 214 | .features = model.features, |
| 164 | 215 | }; |
| 165 | 216 | |
| 217 | // Override any features that are either present or absent |
| 166 | 218 | if (IsProcessorFeaturePresent(PF.ARM_NEON_INSTRUCTIONS_AVAILABLE)) { |
| 167 | 219 | cpu.features.addFeature(@enumToInt(Feature.neon)); |
| 220 | } else { |
| 221 | cpu.features.removeFeature(@enumToInt(Feature.neon)); |
| 168 | 222 | } |
| 223 | |
| 169 | 224 | if (IsProcessorFeaturePresent(PF.ARM_V8_CRC32_INSTRUCTIONS_AVAILABLE)) { |
| 170 | 225 | cpu.features.addFeature(@enumToInt(Feature.crc)); |
| 226 | } else { |
| 227 | cpu.features.removeFeature(@enumToInt(Feature.crc)); |
| 171 | 228 | } |
| 229 | |
| 172 | 230 | if (IsProcessorFeaturePresent(PF.ARM_V8_CRYPTO_INSTRUCTIONS_AVAILABLE)) { |
| 173 | 231 | cpu.features.addFeature(@enumToInt(Feature.crypto)); |
| 232 | } else { |
| 233 | cpu.features.removeFeature(@enumToInt(Feature.crypto)); |
| 174 | 234 | } |
| 235 | |
| 175 | 236 | if (IsProcessorFeaturePresent(PF.ARM_V81_ATOMIC_INSTRUCTIONS_AVAILABLE)) { |
| 176 | 237 | cpu.features.addFeature(@enumToInt(Feature.lse)); |
| 238 | } else { |
| 239 | cpu.features.removeFeature(@enumToInt(Feature.lse)); |
| 177 | 240 | } |
| 241 | |
| 178 | 242 | if (IsProcessorFeaturePresent(PF.ARM_V82_DP_INSTRUCTIONS_AVAILABLE)) { |
| 179 | 243 | cpu.features.addFeature(@enumToInt(Feature.dotprod)); |
| 244 | } else { |
| 245 | cpu.features.removeFeature(@enumToInt(Feature.dotprod)); |
| 180 | 246 | } |
| 247 | |
| 181 | 248 | if (IsProcessorFeaturePresent(PF.ARM_V83_JSCVT_INSTRUCTIONS_AVAILABLE)) { |
| 182 | 249 | cpu.features.addFeature(@enumToInt(Feature.jsconv)); |
| 250 | } else { |
| 251 | cpu.features.removeFeature(@enumToInt(Feature.jsconv)); |
| 183 | 252 | } |
| 184 | 253 | |
| 185 | 254 | return cpu; |