| ... | @@ -1,3 +1,7 @@ | ... | @@ -1,3 +1,7 @@ |
| | 1 | //! An set of array and slice types that bit-pack integer elements. A normal [12]u3 |
| | 2 | //! takes up 12 bytes of memory since u3's alignment is 1. PackedArray(u3, 12) only |
| | 3 | //! takes up 4 bytes of memory. |
| | 4 | |
| 1 | const std = @import("std"); | 5 | const std = @import("std"); |
| 2 | const builtin = @import("builtin"); | 6 | const builtin = @import("builtin"); |
| 3 | const debug = std.debug; | 7 | const debug = std.debug; |
| ... | @@ -5,8 +9,10 @@ const testing = std.testing; | ... | @@ -5,8 +9,10 @@ const testing = std.testing; |
| 5 | const native_endian = builtin.target.cpu.arch.endian(); | 9 | const native_endian = builtin.target.cpu.arch.endian(); |
| 6 | const Endian = std.builtin.Endian; | 10 | const Endian = std.builtin.Endian; |
| 7 | | 11 | |
| | 12 | /// Provides a set of functions for reading and writing packed integers from a |
| | 13 | /// slice of bytes. |
| 8 | pub fn PackedIntIo(comptime Int: type, comptime endian: Endian) type { | 14 | pub fn PackedIntIo(comptime Int: type, comptime endian: Endian) type { |
| 9 | //The general technique employed here is to cast bytes in the array to a container | 15 | // The general technique employed here is to cast bytes in the array to a container |
| 10 | // integer (having bits % 8 == 0) large enough to contain the number of bits we want, | 16 | // integer (having bits % 8 == 0) large enough to contain the number of bits we want, |
| 11 | // then we can retrieve or store the new value with a relative minimum of masking | 17 | // then we can retrieve or store the new value with a relative minimum of masking |
| 12 | // and shifting. In this worst case, this means that we'll need an integer that's | 18 | // and shifting. In this worst case, this means that we'll need an integer that's |
| ... | @@ -18,13 +24,13 @@ pub fn PackedIntIo(comptime Int: type, comptime endian: Endian) type { | ... | @@ -18,13 +24,13 @@ pub fn PackedIntIo(comptime Int: type, comptime endian: Endian) type { |
| 18 | // mean the OS fatally kills the program. Thus, we use a larger container (MaxIo) | 24 | // mean the OS fatally kills the program. Thus, we use a larger container (MaxIo) |
| 19 | // most of the time, but a smaller container (MinIo) when touching the last byte | 25 | // most of the time, but a smaller container (MinIo) when touching the last byte |
| 20 | // of the memory. | 26 | // of the memory. |
| 21 | const int_bits = comptime std.meta.bitCount(Int); | 27 | const int_bits = @bitSizeOf(Int); |
| 22 | | 28 | |
| 23 | //in the best case, this is the number of bytes we need to touch | 29 | // In the best case, this is the number of bytes we need to touch |
| 24 | // to read or write a value, as bits | 30 | // to read or write a value, as bits. |
| 25 | const min_io_bits = ((int_bits + 7) / 8) * 8; | 31 | const min_io_bits = ((int_bits + 7) / 8) * 8; |
| 26 | | 32 | |
| 27 | //in the worst case, this is the number of bytes we need to touch | 33 | // In the worst case, this is the number of bytes we need to touch |
| 28 | // to read or write a value, as bits. To calculate for int_bits > 1, | 34 | // to read or write a value, as bits. To calculate for int_bits > 1, |
| 29 | // set aside 2 bits to touch the first and last bytes, then divide | 35 | // set aside 2 bits to touch the first and last bytes, then divide |
| 30 | // by 8 to see how many bytes can be filled up inbetween. | 36 | // by 8 to see how many bytes can be filled up inbetween. |
| ... | @@ -34,30 +40,32 @@ pub fn PackedIntIo(comptime Int: type, comptime endian: Endian) type { | ... | @@ -34,30 +40,32 @@ pub fn PackedIntIo(comptime Int: type, comptime endian: Endian) type { |
| 34 | else => ((int_bits - 2) / 8 + 2) * 8, | 40 | else => ((int_bits - 2) / 8 + 2) * 8, |
| 35 | }; | 41 | }; |
| 36 | | 42 | |
| 37 | //we bitcast the desired Int type to an unsigned version of itself | 43 | // We bitcast the desired Int type to an unsigned version of itself |
| 38 | // to avoid issues with shifting signed ints. | 44 | // to avoid issues with shifting signed ints. |
| 39 | const UnInt = std.meta.Int(.unsigned, int_bits); | 45 | const UnInt = std.meta.Int(.unsigned, int_bits); |
| 40 | | 46 | |
| 41 | //The maximum container int type | 47 | // The maximum container int type |
| 42 | const MinIo = std.meta.Int(.unsigned, min_io_bits); | 48 | const MinIo = std.meta.Int(.unsigned, min_io_bits); |
| 43 | | 49 | |
| 44 | //The minimum container int type | 50 | // The minimum container int type |
| 45 | const MaxIo = std.meta.Int(.unsigned, max_io_bits); | 51 | const MaxIo = std.meta.Int(.unsigned, max_io_bits); |
| 46 | | 52 | |
| 47 | return struct { | 53 | return struct { |
| | 54 | /// Retrieves the integer at `index` from the packed data beginning at `bit_offset` |
| | 55 | /// within `bytes`. |
| 48 | pub fn get(bytes: []const u8, index: usize, bit_offset: u7) Int { | 56 | pub fn get(bytes: []const u8, index: usize, bit_offset: u7) Int { |
| 49 | if (int_bits == 0) return 0; | 57 | if (int_bits == 0) return 0; |
| 50 | | 58 | |
| 51 | const bit_index = (index * int_bits) + bit_offset; | 59 | const bit_index = (index * int_bits) + bit_offset; |
| 52 | const max_end_byte = (bit_index + max_io_bits) / 8; | 60 | const max_end_byte = (bit_index + max_io_bits) / 8; |
| 53 | | 61 | |
| 54 | //Using the larger container size will potentially read out of bounds | 62 | //using the larger container size will potentially read out of bounds |
| 55 | if (max_end_byte > bytes.len) return getBits(bytes, MinIo, bit_index); | 63 | if (max_end_byte > bytes.len) return getBits(bytes, MinIo, bit_index); |
| 56 | return getBits(bytes, MaxIo, bit_index); | 64 | return getBits(bytes, MaxIo, bit_index); |
| 57 | } | 65 | } |
| 58 | | 66 | |
| 59 | fn getBits(bytes: []const u8, comptime Container: type, bit_index: usize) Int { | 67 | fn getBits(bytes: []const u8, comptime Container: type, bit_index: usize) Int { |
| 60 | const container_bits = comptime std.meta.bitCount(Container); | 68 | const container_bits = @bitSizeOf(Container); |
| 61 | const Shift = std.math.Log2Int(Container); | 69 | const Shift = std.math.Log2Int(Container); |
| 62 | | 70 | |
| 63 | const start_byte = bit_index / 8; | 71 | const start_byte = bit_index / 8; |
| ... | @@ -86,19 +94,21 @@ pub fn PackedIntIo(comptime Int: type, comptime endian: Endian) type { | ... | @@ -86,19 +94,21 @@ pub fn PackedIntIo(comptime Int: type, comptime endian: Endian) type { |
| 86 | return @bitCast(Int, @truncate(UnInt, value)); | 94 | return @bitCast(Int, @truncate(UnInt, value)); |
| 87 | } | 95 | } |
| 88 | | 96 | |
| | 97 | /// Sets the integer at `index` to `val` within the packed data beginning |
| | 98 | /// at `bit_offset` into `bytes`. |
| 89 | pub fn set(bytes: []u8, index: usize, bit_offset: u3, int: Int) void { | 99 | pub fn set(bytes: []u8, index: usize, bit_offset: u3, int: Int) void { |
| 90 | if (int_bits == 0) return; | 100 | if (int_bits == 0) return; |
| 91 | | 101 | |
| 92 | const bit_index = (index * int_bits) + bit_offset; | 102 | const bit_index = (index * int_bits) + bit_offset; |
| 93 | const max_end_byte = (bit_index + max_io_bits) / 8; | 103 | const max_end_byte = (bit_index + max_io_bits) / 8; |
| 94 | | 104 | |
| 95 | //Using the larger container size will potentially write out of bounds | 105 | //using the larger container size will potentially write out of bounds |
| 96 | if (max_end_byte > bytes.len) return setBits(bytes, MinIo, bit_index, int); | 106 | if (max_end_byte > bytes.len) return setBits(bytes, MinIo, bit_index, int); |
| 97 | setBits(bytes, MaxIo, bit_index, int); | 107 | setBits(bytes, MaxIo, bit_index, int); |
| 98 | } | 108 | } |
| 99 | | 109 | |
| 100 | fn setBits(bytes: []u8, comptime Container: type, bit_index: usize, int: Int) void { | 110 | fn setBits(bytes: []u8, comptime Container: type, bit_index: usize, int: Int) void { |
| 101 | const container_bits = comptime std.meta.bitCount(Container); | 111 | const container_bits = @bitSizeOf(Container); |
| 102 | const Shift = std.math.Log2Int(Container); | 112 | const Shift = std.math.Log2Int(Container); |
| 103 | | 113 | |
| 104 | const start_byte = bit_index / 8; | 114 | const start_byte = bit_index / 8; |
| ... | @@ -132,7 +142,9 @@ pub fn PackedIntIo(comptime Int: type, comptime endian: Endian) type { | ... | @@ -132,7 +142,9 @@ pub fn PackedIntIo(comptime Int: type, comptime endian: Endian) type { |
| 132 | target_ptr.* = target; | 142 | target_ptr.* = target; |
| 133 | } | 143 | } |
| 134 | | 144 | |
| 135 | fn slice(bytes: []u8, bit_offset: u3, start: usize, end: usize) PackedIntSliceEndian(Int, endian) { | 145 | /// Provides a PackedIntSlice of the packed integers in `bytes` (which begins at `bit_offset`) |
| | 146 | /// from the element specified by `start` to the element specified by `end`. |
| | 147 | pub fn slice(bytes: []u8, bit_offset: u3, start: usize, end: usize) PackedIntSliceEndian(Int, endian) { |
| 136 | debug.assert(end >= start); | 148 | debug.assert(end >= start); |
| 137 | | 149 | |
| 138 | const length = end - start; | 150 | const length = end - start; |
| ... | @@ -148,8 +160,11 @@ pub fn PackedIntIo(comptime Int: type, comptime endian: Endian) type { | ... | @@ -148,8 +160,11 @@ pub fn PackedIntIo(comptime Int: type, comptime endian: Endian) type { |
| 148 | return new_slice; | 160 | return new_slice; |
| 149 | } | 161 | } |
| 150 | | 162 | |
| 151 | fn sliceCast(bytes: []u8, comptime NewInt: type, comptime new_endian: Endian, bit_offset: u3, old_len: usize) PackedIntSliceEndian(NewInt, new_endian) { | 163 | /// Recasts a packed slice to a version with elements of type `NewInt` and endianness `new_endian`. |
| 152 | const new_int_bits = comptime std.meta.bitCount(NewInt); | 164 | /// Slice will begin at `bit_offset` within `bytes` and the new length will be automatically |
| | 165 | /// calculated from `old_len` using the sizes of the current integer type and `NewInt`. |
| | 166 | pub fn sliceCast(bytes: []u8, comptime NewInt: type, comptime new_endian: Endian, bit_offset: u3, old_len: usize) PackedIntSliceEndian(NewInt, new_endian) { |
| | 167 | const new_int_bits = @bitSizeOf(NewInt); |
| 153 | const New = PackedIntSliceEndian(NewInt, new_endian); | 168 | const New = PackedIntSliceEndian(NewInt, new_endian); |
| 154 | | 169 | |
| 155 | const total_bits = (old_len * int_bits); | 170 | const total_bits = (old_len * int_bits); |
| ... | @@ -165,18 +180,21 @@ pub fn PackedIntIo(comptime Int: type, comptime endian: Endian) type { | ... | @@ -165,18 +180,21 @@ pub fn PackedIntIo(comptime Int: type, comptime endian: Endian) type { |
| 165 | }; | 180 | }; |
| 166 | } | 181 | } |
| 167 | | 182 | |
| 168 | ///Creates a bit-packed array of integers of type Int. Bits | 183 | /// Creates a bit-packed array of `Int`. Non-byte-multiple integers |
| 169 | /// are packed using native endianess and without storing any meta | 184 | /// will take up less memory in PackedIntArray than in a normal array. |
| 170 | /// data. PackedIntArray(i3, 8) will occupy exactly 3 bytes of memory. | 185 | /// Elements are packed using native endianess and without storing any |
| | 186 | /// meta data. PackedArray(i3, 8) will occupy exactly 3 bytes |
| | 187 | /// of memory. |
| 171 | pub fn PackedIntArray(comptime Int: type, comptime int_count: usize) type { | 188 | pub fn PackedIntArray(comptime Int: type, comptime int_count: usize) type { |
| 172 | return PackedIntArrayEndian(Int, native_endian, int_count); | 189 | return PackedIntArrayEndian(Int, native_endian, int_count); |
| 173 | } | 190 | } |
| 174 | | 191 | |
| 175 | ///Creates a bit-packed array of integers of type Int. Bits | 192 | /// Creates a bit-packed array of `Int` with bit order specified by `endian`. |
| 176 | /// are packed using specified endianess and without storing any meta | 193 | /// Non-byte-multiple integers will take up less memory in PackedIntArrayEndian |
| 177 | /// data. | 194 | /// than in a normal array. Elements are packed without storing any meta data. |
| | 195 | /// PackedIntArrayEndian(i3, 8) will occupy exactly 3 bytes of memory. |
| 178 | pub fn PackedIntArrayEndian(comptime Int: type, comptime endian: Endian, comptime int_count: usize) type { | 196 | pub fn PackedIntArrayEndian(comptime Int: type, comptime endian: Endian, comptime int_count: usize) type { |
| 179 | const int_bits = comptime std.meta.bitCount(Int); | 197 | const int_bits = @bitSizeOf(Int); |
| 180 | const total_bits = int_bits * int_count; | 198 | const total_bits = int_bits * int_count; |
| 181 | const total_bytes = (total_bits + 7) / 8; | 199 | const total_bytes = (total_bits + 7) / 8; |
| 182 | | 200 | |
| ... | @@ -185,15 +203,12 @@ pub fn PackedIntArrayEndian(comptime Int: type, comptime endian: Endian, comptim | ... | @@ -185,15 +203,12 @@ pub fn PackedIntArrayEndian(comptime Int: type, comptime endian: Endian, comptim |
| 185 | return struct { | 203 | return struct { |
| 186 | const Self = @This(); | 204 | const Self = @This(); |
| 187 | | 205 | |
| | 206 | /// The byte buffer containing the packed data. |
| 188 | bytes: [total_bytes]u8, | 207 | bytes: [total_bytes]u8, |
| | 208 | /// The number of elements in the packed array. |
| | 209 | comptime len: usize = int_count, |
| 189 | | 210 | |
| 190 | ///Returns the number of elements in the packed array | 211 | /// Initialize a packed array using an unpacked array |
| 191 | pub fn len(self: Self) usize { | | |
| 192 | _ = self; | | |
| 193 | return int_count; | | |
| 194 | } | | |
| 195 | | | |
| 196 | ///Initialize a packed array using an unpacked array | | |
| 197 | /// or, more likely, an array literal. | 212 | /// or, more likely, an array literal. |
| 198 | pub fn init(ints: [int_count]Int) Self { | 213 | pub fn init(ints: [int_count]Int) Self { |
| 199 | var self = @as(Self, undefined); | 214 | var self = @as(Self, undefined); |
| ... | @@ -201,27 +216,27 @@ pub fn PackedIntArrayEndian(comptime Int: type, comptime endian: Endian, comptim | ... | @@ -201,27 +216,27 @@ pub fn PackedIntArrayEndian(comptime Int: type, comptime endian: Endian, comptim |
| 201 | return self; | 216 | return self; |
| 202 | } | 217 | } |
| 203 | | 218 | |
| 204 | ///Initialize all entries of a packed array to the same value | 219 | /// Initialize all entries of a packed array to the same value. |
| 205 | pub fn initAllTo(int: Int) Self { | 220 | pub fn initAllTo(int: Int) Self { |
| 206 | // TODO: use `var self = @as(Self, undefined);` https://github.com/ziglang/zig/issues/7635 | 221 | // TODO: use `var self = @as(Self, undefined);` https://github.com/ziglang/zig/issues/7635 |
| 207 | var self = Self{ .bytes = [_]u8{0} ** total_bytes }; | 222 | var self = Self{ .bytes = [_]u8{0} ** total_bytes, .len = int_count }; |
| 208 | self.setAll(int); | 223 | self.setAll(int); |
| 209 | return self; | 224 | return self; |
| 210 | } | 225 | } |
| 211 | | 226 | |
| 212 | ///Return the Int stored at index | 227 | /// Return the integer stored at `index`. |
| 213 | pub fn get(self: Self, index: usize) Int { | 228 | pub fn get(self: Self, index: usize) Int { |
| 214 | debug.assert(index < int_count); | 229 | debug.assert(index < int_count); |
| 215 | return Io.get(&self.bytes, index, 0); | 230 | return Io.get(&self.bytes, index, 0); |
| 216 | } | 231 | } |
| 217 | | 232 | |
| 218 | ///Copy int into the array at index | 233 | ///Copy the value of `int` into the array at `index`. |
| 219 | pub fn set(self: *Self, index: usize, int: Int) void { | 234 | pub fn set(self: *Self, index: usize, int: Int) void { |
| 220 | debug.assert(index < int_count); | 235 | debug.assert(index < int_count); |
| 221 | return Io.set(&self.bytes, index, 0, int); | 236 | return Io.set(&self.bytes, index, 0, int); |
| 222 | } | 237 | } |
| 223 | | 238 | |
| 224 | ///Set all entries of a packed array to the same value | 239 | /// Set all entries of a packed array to the value of `int`. |
| 225 | pub fn setAll(self: *Self, int: Int) void { | 240 | pub fn setAll(self: *Self, int: Int) void { |
| 226 | var i: usize = 0; | 241 | var i: usize = 0; |
| 227 | while (i < int_count) : (i += 1) { | 242 | while (i < int_count) : (i += 1) { |
| ... | @@ -229,105 +244,96 @@ pub fn PackedIntArrayEndian(comptime Int: type, comptime endian: Endian, comptim | ... | @@ -229,105 +244,96 @@ pub fn PackedIntArrayEndian(comptime Int: type, comptime endian: Endian, comptim |
| 229 | } | 244 | } |
| 230 | } | 245 | } |
| 231 | | 246 | |
| 232 | ///Create a PackedIntSlice of the array from given start to given end | 247 | /// Create a PackedIntSlice of the array from `start` to `end`. |
| 233 | pub fn slice(self: *Self, start: usize, end: usize) PackedIntSliceEndian(Int, endian) { | 248 | pub fn slice(self: *Self, start: usize, end: usize) PackedIntSliceEndian(Int, endian) { |
| 234 | debug.assert(start < int_count); | 249 | debug.assert(start < int_count); |
| 235 | debug.assert(end <= int_count); | 250 | debug.assert(end <= int_count); |
| 236 | return Io.slice(&self.bytes, 0, start, end); | 251 | return Io.slice(&self.bytes, 0, start, end); |
| 237 | } | 252 | } |
| 238 | | 253 | |
| 239 | ///Create a PackedIntSlice of the array using NewInt as the bit width integer. | 254 | /// Create a PackedIntSlice of the array using `NewInt` as the integer type. |
| 240 | /// NewInt's bit width must fit evenly within the array's Int's total bits. | 255 | /// `NewInt`'s bit width must fit evenly within the array's `Int`'s total bits. |
| 241 | pub fn sliceCast(self: *Self, comptime NewInt: type) PackedIntSlice(NewInt) { | 256 | pub fn sliceCast(self: *Self, comptime NewInt: type) PackedIntSlice(NewInt) { |
| 242 | return self.sliceCastEndian(NewInt, endian); | 257 | return self.sliceCastEndian(NewInt, endian); |
| 243 | } | 258 | } |
| 244 | | 259 | |
| 245 | ///Create a PackedIntSlice of the array using NewInt as the bit width integer | 260 | /// Create a PackedIntSliceEndian of the array using `NewInt` as the integer type |
| 246 | /// and new_endian as the new endianess. NewInt's bit width must fit evenly within | 261 | /// and `new_endian` as the new endianess. `NewInt`'s bit width must fit evenly |
| 247 | /// the array's Int's total bits. | 262 | /// within the array's `Int`'s total bits. |
| 248 | pub fn sliceCastEndian(self: *Self, comptime NewInt: type, comptime new_endian: Endian) PackedIntSliceEndian(NewInt, new_endian) { | 263 | pub fn sliceCastEndian(self: *Self, comptime NewInt: type, comptime new_endian: Endian) PackedIntSliceEndian(NewInt, new_endian) { |
| 249 | return Io.sliceCast(&self.bytes, NewInt, new_endian, 0, int_count); | 264 | return Io.sliceCast(&self.bytes, NewInt, new_endian, 0, int_count); |
| 250 | } | 265 | } |
| 251 | }; | 266 | }; |
| 252 | } | 267 | } |
| 253 | | 268 | |
| 254 | ///Uses a slice as a bit-packed block of int_count integers of type Int. | 269 | /// A type representing a sub range of a PackedIntArray. |
| 255 | /// Bits are packed using native endianess and without storing any meta | | |
| 256 | /// data. | | |
| 257 | pub fn PackedIntSlice(comptime Int: type) type { | 270 | pub fn PackedIntSlice(comptime Int: type) type { |
| 258 | return PackedIntSliceEndian(Int, native_endian); | 271 | return PackedIntSliceEndian(Int, native_endian); |
| 259 | } | 272 | } |
| 260 | | 273 | |
| 261 | ///Uses a slice as a bit-packed block of int_count integers of type Int. | 274 | /// A type representing a sub range of a PackedIntArrayEndian. |
| 262 | /// Bits are packed using specified endianess and without storing any meta | | |
| 263 | /// data. | | |
| 264 | pub fn PackedIntSliceEndian(comptime Int: type, comptime endian: Endian) type { | 275 | pub fn PackedIntSliceEndian(comptime Int: type, comptime endian: Endian) type { |
| 265 | const int_bits = comptime std.meta.bitCount(Int); | 276 | const int_bits = @bitSizeOf(Int); |
| 266 | const Io = PackedIntIo(Int, endian); | 277 | const Io = PackedIntIo(Int, endian); |
| 267 | | 278 | |
| 268 | return struct { | 279 | return struct { |
| 269 | const Self = @This(); | 280 | const Self = @This(); |
| 270 | | 281 | |
| 271 | bytes: []u8, | 282 | bytes: []u8, |
| 272 | int_count: usize, | | |
| 273 | bit_offset: u3, | 283 | bit_offset: u3, |
| | 284 | len: usize, |
| 274 | | 285 | |
| 275 | ///Returns the number of elements in the packed slice | 286 | /// Calculates the number of bytes required to store a desired count |
| 276 | pub fn len(self: Self) usize { | 287 | /// of `Int`s. |
| 277 | return self.int_count; | | |
| 278 | } | | |
| 279 | | | |
| 280 | ///Calculates the number of bytes required to store a desired count | | |
| 281 | /// of Ints | | |
| 282 | pub fn bytesRequired(int_count: usize) usize { | 288 | pub fn bytesRequired(int_count: usize) usize { |
| 283 | const total_bits = int_bits * int_count; | 289 | const total_bits = int_bits * int_count; |
| 284 | const total_bytes = (total_bits + 7) / 8; | 290 | const total_bytes = (total_bits + 7) / 8; |
| 285 | return total_bytes; | 291 | return total_bytes; |
| 286 | } | 292 | } |
| 287 | | 293 | |
| 288 | ///Initialize a packed slice using the memory at bytes, with int_count | 294 | /// Initialize a packed slice using the memory at `bytes`, with `int_count` |
| 289 | /// elements. bytes must be large enough to accomodate the requested | 295 | /// elements. `bytes` must be large enough to accomodate the requested |
| 290 | /// count. | 296 | /// count. |
| 291 | pub fn init(bytes: []u8, int_count: usize) Self { | 297 | pub fn init(bytes: []u8, int_count: usize) Self { |
| 292 | debug.assert(bytes.len >= bytesRequired(int_count)); | 298 | debug.assert(bytes.len >= bytesRequired(int_count)); |
| 293 | | 299 | |
| 294 | return Self{ | 300 | return Self{ |
| 295 | .bytes = bytes, | 301 | .bytes = bytes, |
| 296 | .int_count = int_count, | 302 | .len = int_count, |
| 297 | .bit_offset = 0, | 303 | .bit_offset = 0, |
| 298 | }; | 304 | }; |
| 299 | } | 305 | } |
| 300 | | 306 | |
| 301 | ///Return the Int stored at index | 307 | /// Return the integer stored at `index`. |
| 302 | pub fn get(self: Self, index: usize) Int { | 308 | pub fn get(self: Self, index: usize) Int { |
| 303 | debug.assert(index < self.int_count); | 309 | debug.assert(index < self.len); |
| 304 | return Io.get(self.bytes, index, self.bit_offset); | 310 | return Io.get(self.bytes, index, self.bit_offset); |
| 305 | } | 311 | } |
| 306 | | 312 | |
| 307 | ///Copy int into the array at index | 313 | /// Copy `int` into the slice at `index`. |
| 308 | pub fn set(self: *Self, index: usize, int: Int) void { | 314 | pub fn set(self: *Self, index: usize, int: Int) void { |
| 309 | debug.assert(index < self.int_count); | 315 | debug.assert(index < self.len); |
| 310 | return Io.set(self.bytes, index, self.bit_offset, int); | 316 | return Io.set(self.bytes, index, self.bit_offset, int); |
| 311 | } | 317 | } |
| 312 | | 318 | |
| 313 | ///Create a PackedIntSlice of this slice from given start to given end | 319 | /// Create a PackedIntSlice of this slice from `start` to `end`. |
| 314 | pub fn slice(self: Self, start: usize, end: usize) PackedIntSliceEndian(Int, endian) { | 320 | pub fn slice(self: Self, start: usize, end: usize) PackedIntSliceEndian(Int, endian) { |
| 315 | debug.assert(start < self.int_count); | 321 | debug.assert(start < self.len); |
| 316 | debug.assert(end <= self.int_count); | 322 | debug.assert(end <= self.len); |
| 317 | return Io.slice(self.bytes, self.bit_offset, start, end); | 323 | return Io.slice(self.bytes, self.bit_offset, start, end); |
| 318 | } | 324 | } |
| 319 | | 325 | |
| 320 | ///Create a PackedIntSlice of this slice using NewInt as the bit width integer. | 326 | /// Create a PackedIntSlice of the sclice using `NewInt` as the integer type. |
| 321 | /// NewInt's bit width must fit evenly within this slice's Int's total bits. | 327 | /// `NewInt`'s bit width must fit evenly within the slice's `Int`'s total bits. |
| 322 | pub fn sliceCast(self: Self, comptime NewInt: type) PackedIntSliceEndian(NewInt, endian) { | 328 | pub fn sliceCast(self: Self, comptime NewInt: type) PackedIntSliceEndian(NewInt, endian) { |
| 323 | return self.sliceCastEndian(NewInt, endian); | 329 | return self.sliceCastEndian(NewInt, endian); |
| 324 | } | 330 | } |
| 325 | | 331 | |
| 326 | ///Create a PackedIntSlice of this slice using NewInt as the bit width integer | 332 | /// Create a PackedIntSliceEndian of the slice using `NewInt` as the integer type |
| 327 | /// and new_endian as the new endianess. NewInt's bit width must fit evenly within | 333 | /// and `new_endian` as the new endianess. `NewInt`'s bit width must fit evenly |
| 328 | /// this slice's Int's total bits. | 334 | /// within the slice's `Int`'s total bits. |
| 329 | pub fn sliceCastEndian(self: Self, comptime NewInt: type, comptime new_endian: Endian) PackedIntSliceEndian(NewInt, new_endian) { | 335 | pub fn sliceCastEndian(self: Self, comptime NewInt: type, comptime new_endian: Endian) PackedIntSliceEndian(NewInt, new_endian) { |
| 330 | return Io.sliceCast(self.bytes, NewInt, new_endian, self.bit_offset, self.int_count); | 336 | return Io.sliceCast(self.bytes, NewInt, new_endian, self.bit_offset, self.len); |
| 331 | } | 337 | } |
| 332 | }; | 338 | }; |
| 333 | } | 339 | } |
| ... | @@ -358,7 +364,7 @@ test "PackedIntArray" { | ... | @@ -358,7 +364,7 @@ test "PackedIntArray" { |
| 358 | //write values, counting up | 364 | //write values, counting up |
| 359 | var i = @as(usize, 0); | 365 | var i = @as(usize, 0); |
| 360 | var count = @as(I, 0); | 366 | var count = @as(I, 0); |
| 361 | while (i < data.len()) : (i += 1) { | 367 | while (i < data.len) : (i += 1) { |
| 362 | data.set(i, count); | 368 | data.set(i, count); |
| 363 | if (bits > 0) count +%= 1; | 369 | if (bits > 0) count +%= 1; |
| 364 | } | 370 | } |
| ... | @@ -366,7 +372,7 @@ test "PackedIntArray" { | ... | @@ -366,7 +372,7 @@ test "PackedIntArray" { |
| 366 | //read and verify values | 372 | //read and verify values |
| 367 | i = 0; | 373 | i = 0; |
| 368 | count = 0; | 374 | count = 0; |
| 369 | while (i < data.len()) : (i += 1) { | 375 | while (i < data.len) : (i += 1) { |
| 370 | const val = data.get(i); | 376 | const val = data.get(i); |
| 371 | try testing.expect(val == count); | 377 | try testing.expect(val == count); |
| 372 | if (bits > 0) count +%= 1; | 378 | if (bits > 0) count +%= 1; |
| ... | @@ -383,19 +389,17 @@ test "PackedIntIo" { | ... | @@ -383,19 +389,17 @@ test "PackedIntIo" { |
| 383 | } | 389 | } |
| 384 | | 390 | |
| 385 | test "PackedIntArray init" { | 391 | test "PackedIntArray init" { |
| 386 | if (we_are_testing_this_with_stage1_which_leaks_comptime_memory) return error.SkipZigTest; | | |
| 387 | const PackedArray = PackedIntArray(u3, 8); | 392 | const PackedArray = PackedIntArray(u3, 8); |
| 388 | var packed_array = PackedArray.init([_]u3{ 0, 1, 2, 3, 4, 5, 6, 7 }); | 393 | var packed_array = PackedArray.init([_]u3{ 0, 1, 2, 3, 4, 5, 6, 7 }); |
| 389 | var i = @as(usize, 0); | 394 | var i = @as(usize, 0); |
| 390 | while (i < packed_array.len()) : (i += 1) try testing.expectEqual(@intCast(u3, i), packed_array.get(i)); | 395 | while (i < packed_array.len) : (i += 1) try testing.expectEqual(@intCast(u3, i), packed_array.get(i)); |
| 391 | } | 396 | } |
| 392 | | 397 | |
| 393 | test "PackedIntArray initAllTo" { | 398 | test "PackedIntArray initAllTo" { |
| 394 | if (we_are_testing_this_with_stage1_which_leaks_comptime_memory) return error.SkipZigTest; | | |
| 395 | const PackedArray = PackedIntArray(u3, 8); | 399 | const PackedArray = PackedIntArray(u3, 8); |
| 396 | var packed_array = PackedArray.initAllTo(5); | 400 | var packed_array = PackedArray.initAllTo(5); |
| 397 | var i = @as(usize, 0); | 401 | var i = @as(usize, 0); |
| 398 | while (i < packed_array.len()) : (i += 1) try testing.expectEqual(@as(u3, 5), packed_array.get(i)); | 402 | while (i < packed_array.len) : (i += 1) try testing.expectEqual(@as(u3, 5), packed_array.get(i)); |
| 399 | } | 403 | } |
| 400 | | 404 | |
| 401 | test "PackedIntSlice" { | 405 | test "PackedIntSlice" { |
| ... | @@ -423,7 +427,7 @@ test "PackedIntSlice" { | ... | @@ -423,7 +427,7 @@ test "PackedIntSlice" { |
| 423 | //write values, counting up | 427 | //write values, counting up |
| 424 | var i = @as(usize, 0); | 428 | var i = @as(usize, 0); |
| 425 | var count = @as(I, 0); | 429 | var count = @as(I, 0); |
| 426 | while (i < data.len()) : (i += 1) { | 430 | while (i < data.len) : (i += 1) { |
| 427 | data.set(i, count); | 431 | data.set(i, count); |
| 428 | if (bits > 0) count +%= 1; | 432 | if (bits > 0) count +%= 1; |
| 429 | } | 433 | } |
| ... | @@ -431,7 +435,7 @@ test "PackedIntSlice" { | ... | @@ -431,7 +435,7 @@ test "PackedIntSlice" { |
| 431 | //read and verify values | 435 | //read and verify values |
| 432 | i = 0; | 436 | i = 0; |
| 433 | count = 0; | 437 | count = 0; |
| 434 | while (i < data.len()) : (i += 1) { | 438 | while (i < data.len) : (i += 1) { |
| 435 | const val = data.get(i); | 439 | const val = data.get(i); |
| 436 | try testing.expect(val == count); | 440 | try testing.expect(val == count); |
| 437 | if (bits > 0) count +%= 1; | 441 | if (bits > 0) count +%= 1; |
| ... | @@ -454,14 +458,14 @@ test "PackedIntSlice of PackedInt(Array/Slice)" { | ... | @@ -454,14 +458,14 @@ test "PackedIntSlice of PackedInt(Array/Slice)" { |
| 454 | const limit = (1 << bits); | 458 | const limit = (1 << bits); |
| 455 | | 459 | |
| 456 | var i = @as(usize, 0); | 460 | var i = @as(usize, 0); |
| 457 | while (i < packed_array.len()) : (i += 1) { | 461 | while (i < packed_array.len) : (i += 1) { |
| 458 | packed_array.set(i, @intCast(Int, i % limit)); | 462 | packed_array.set(i, @intCast(Int, i % limit)); |
| 459 | } | 463 | } |
| 460 | | 464 | |
| 461 | //slice of array | 465 | //slice of array |
| 462 | var packed_slice = packed_array.slice(2, 5); | 466 | var packed_slice = packed_array.slice(2, 5); |
| 463 | try testing.expect(packed_slice.len() == 3); | 467 | try testing.expect(packed_slice.len == 3); |
| 464 | const ps_bit_count = (bits * packed_slice.len()) + packed_slice.bit_offset; | 468 | const ps_bit_count = (bits * packed_slice.len) + packed_slice.bit_offset; |
| 465 | const ps_expected_bytes = (ps_bit_count + 7) / 8; | 469 | const ps_expected_bytes = (ps_bit_count + 7) / 8; |
| 466 | try testing.expect(packed_slice.bytes.len == ps_expected_bytes); | 470 | try testing.expect(packed_slice.bytes.len == ps_expected_bytes); |
| 467 | try testing.expect(packed_slice.get(0) == 2 % limit); | 471 | try testing.expect(packed_slice.get(0) == 2 % limit); |
| ... | @@ -475,8 +479,8 @@ test "PackedIntSlice of PackedInt(Array/Slice)" { | ... | @@ -475,8 +479,8 @@ test "PackedIntSlice of PackedInt(Array/Slice)" { |
| 475 | | 479 | |
| 476 | //slice of a slice | 480 | //slice of a slice |
| 477 | const packed_slice_two = packed_slice.slice(0, 3); | 481 | const packed_slice_two = packed_slice.slice(0, 3); |
| 478 | try testing.expect(packed_slice_two.len() == 3); | 482 | try testing.expect(packed_slice_two.len == 3); |
| 479 | const ps2_bit_count = (bits * packed_slice_two.len()) + packed_slice_two.bit_offset; | 483 | const ps2_bit_count = (bits * packed_slice_two.len) + packed_slice_two.bit_offset; |
| 480 | const ps2_expected_bytes = (ps2_bit_count + 7) / 8; | 484 | const ps2_expected_bytes = (ps2_bit_count + 7) / 8; |
| 481 | try testing.expect(packed_slice_two.bytes.len == ps2_expected_bytes); | 485 | try testing.expect(packed_slice_two.bytes.len == ps2_expected_bytes); |
| 482 | try testing.expect(packed_slice_two.get(1) == 7 % limit); | 486 | try testing.expect(packed_slice_two.get(1) == 7 % limit); |
| ... | @@ -484,21 +488,21 @@ test "PackedIntSlice of PackedInt(Array/Slice)" { | ... | @@ -484,21 +488,21 @@ test "PackedIntSlice of PackedInt(Array/Slice)" { |
| 484 | | 488 | |
| 485 | //size one case | 489 | //size one case |
| 486 | const packed_slice_three = packed_slice_two.slice(1, 2); | 490 | const packed_slice_three = packed_slice_two.slice(1, 2); |
| 487 | try testing.expect(packed_slice_three.len() == 1); | 491 | try testing.expect(packed_slice_three.len == 1); |
| 488 | const ps3_bit_count = (bits * packed_slice_three.len()) + packed_slice_three.bit_offset; | 492 | const ps3_bit_count = (bits * packed_slice_three.len) + packed_slice_three.bit_offset; |
| 489 | const ps3_expected_bytes = (ps3_bit_count + 7) / 8; | 493 | const ps3_expected_bytes = (ps3_bit_count + 7) / 8; |
| 490 | try testing.expect(packed_slice_three.bytes.len == ps3_expected_bytes); | 494 | try testing.expect(packed_slice_three.bytes.len == ps3_expected_bytes); |
| 491 | try testing.expect(packed_slice_three.get(0) == 7 % limit); | 495 | try testing.expect(packed_slice_three.get(0) == 7 % limit); |
| 492 | | 496 | |
| 493 | //empty slice case | 497 | //empty slice case |
| 494 | const packed_slice_empty = packed_slice.slice(0, 0); | 498 | const packed_slice_empty = packed_slice.slice(0, 0); |
| 495 | try testing.expect(packed_slice_empty.len() == 0); | 499 | try testing.expect(packed_slice_empty.len == 0); |
| 496 | try testing.expect(packed_slice_empty.bytes.len == 0); | 500 | try testing.expect(packed_slice_empty.bytes.len == 0); |
| 497 | | 501 | |
| 498 | //slicing at byte boundaries | 502 | //slicing at byte boundaries |
| 499 | const packed_slice_edge = packed_array.slice(8, 16); | 503 | const packed_slice_edge = packed_array.slice(8, 16); |
| 500 | try testing.expect(packed_slice_edge.len() == 8); | 504 | try testing.expect(packed_slice_edge.len == 8); |
| 501 | const pse_bit_count = (bits * packed_slice_edge.len()) + packed_slice_edge.bit_offset; | 505 | const pse_bit_count = (bits * packed_slice_edge.len) + packed_slice_edge.bit_offset; |
| 502 | const pse_expected_bytes = (pse_bit_count + 7) / 8; | 506 | const pse_expected_bytes = (pse_bit_count + 7) / 8; |
| 503 | try testing.expect(packed_slice_edge.bytes.len == pse_expected_bytes); | 507 | try testing.expect(packed_slice_edge.bytes.len == pse_expected_bytes); |
| 504 | try testing.expect(packed_slice_edge.bit_offset == 0); | 508 | try testing.expect(packed_slice_edge.bit_offset == 0); |
| ... | @@ -506,45 +510,40 @@ test "PackedIntSlice of PackedInt(Array/Slice)" { | ... | @@ -506,45 +510,40 @@ test "PackedIntSlice of PackedInt(Array/Slice)" { |
| 506 | } | 510 | } |
| 507 | | 511 | |
| 508 | test "PackedIntSlice accumulating bit offsets" { | 512 | test "PackedIntSlice accumulating bit offsets" { |
| 509 | if (we_are_testing_this_with_stage1_which_leaks_comptime_memory) return error.SkipZigTest; | | |
| 510 | //bit_offset is u3, so standard debugging asserts should catch | 513 | //bit_offset is u3, so standard debugging asserts should catch |
| 511 | // anything | 514 | // anything |
| 512 | { | 515 | { |
| 513 | const PackedArray = PackedIntArray(u3, 16); | 516 | const PackedArray = PackedIntArray(u3, 16); |
| 514 | var packed_array = @as(PackedArray, undefined); | 517 | var packed_array = @as(PackedArray, undefined); |
| 515 | | 518 | |
| 516 | var packed_slice = packed_array.slice(0, packed_array.len()); | 519 | var packed_slice = packed_array.slice(0, packed_array.len); |
| 517 | var i = @as(usize, 0); | 520 | var i = @as(usize, 0); |
| 518 | while (i < packed_array.len() - 1) : (i += 1) { | 521 | while (i < packed_array.len - 1) : (i += 1) { |
| 519 | packed_slice = packed_slice.slice(1, packed_slice.len()); | 522 | packed_slice = packed_slice.slice(1, packed_slice.len); |
| 520 | } | 523 | } |
| 521 | } | 524 | } |
| 522 | { | 525 | { |
| 523 | const PackedArray = PackedIntArray(u11, 88); | 526 | const PackedArray = PackedIntArray(u11, 88); |
| 524 | var packed_array = @as(PackedArray, undefined); | 527 | var packed_array = @as(PackedArray, undefined); |
| 525 | | 528 | |
| 526 | var packed_slice = packed_array.slice(0, packed_array.len()); | 529 | var packed_slice = packed_array.slice(0, packed_array.len); |
| 527 | var i = @as(usize, 0); | 530 | var i = @as(usize, 0); |
| 528 | while (i < packed_array.len() - 1) : (i += 1) { | 531 | while (i < packed_array.len - 1) : (i += 1) { |
| 529 | packed_slice = packed_slice.slice(1, packed_slice.len()); | 532 | packed_slice = packed_slice.slice(1, packed_slice.len); |
| 530 | } | 533 | } |
| 531 | } | 534 | } |
| 532 | } | 535 | } |
| 533 | | 536 | |
| 534 | //@NOTE: As I do not have a big endian system to test this on, | | |
| 535 | // big endian values were not tested | | |
| 536 | test "PackedInt(Array/Slice) sliceCast" { | 537 | test "PackedInt(Array/Slice) sliceCast" { |
| 537 | if (we_are_testing_this_with_stage1_which_leaks_comptime_memory) return error.SkipZigTest; | | |
| 538 | | | |
| 539 | const PackedArray = PackedIntArray(u1, 16); | 538 | const PackedArray = PackedIntArray(u1, 16); |
| 540 | var packed_array = PackedArray.init([_]u1{ 0, 1, 0, 1, 0, 1, 0, 1, 0, 1, 0, 1, 0, 1, 0, 1 }); | 539 | var packed_array = PackedArray.init([_]u1{ 0, 1, 0, 1, 0, 1, 0, 1, 0, 1, 0, 1, 0, 1, 0, 1 }); |
| 541 | const packed_slice_cast_2 = packed_array.sliceCast(u2); | 540 | const packed_slice_cast_2 = packed_array.sliceCast(u2); |
| 542 | const packed_slice_cast_4 = packed_slice_cast_2.sliceCast(u4); | 541 | const packed_slice_cast_4 = packed_slice_cast_2.sliceCast(u4); |
| 543 | var packed_slice_cast_9 = packed_array.slice(0, (packed_array.len() / 9) * 9).sliceCast(u9); | 542 | var packed_slice_cast_9 = packed_array.slice(0, (packed_array.len / 9) * 9).sliceCast(u9); |
| 544 | const packed_slice_cast_3 = packed_slice_cast_9.sliceCast(u3); | 543 | const packed_slice_cast_3 = packed_slice_cast_9.sliceCast(u3); |
| 545 | | 544 | |
| 546 | var i = @as(usize, 0); | 545 | var i = @as(usize, 0); |
| 547 | while (i < packed_slice_cast_2.len()) : (i += 1) { | 546 | while (i < packed_slice_cast_2.len) : (i += 1) { |
| 548 | const val = switch (native_endian) { | 547 | const val = switch (native_endian) { |
| 549 | .Big => 0b01, | 548 | .Big => 0b01, |
| 550 | .Little => 0b10, | 549 | .Little => 0b10, |
| ... | @@ -552,7 +551,7 @@ test "PackedInt(Array/Slice) sliceCast" { | ... | @@ -552,7 +551,7 @@ test "PackedInt(Array/Slice) sliceCast" { |
| 552 | try testing.expect(packed_slice_cast_2.get(i) == val); | 551 | try testing.expect(packed_slice_cast_2.get(i) == val); |
| 553 | } | 552 | } |
| 554 | i = 0; | 553 | i = 0; |
| 555 | while (i < packed_slice_cast_4.len()) : (i += 1) { | 554 | while (i < packed_slice_cast_4.len) : (i += 1) { |
| 556 | const val = switch (native_endian) { | 555 | const val = switch (native_endian) { |
| 557 | .Big => 0b0101, | 556 | .Big => 0b0101, |
| 558 | .Little => 0b1010, | 557 | .Little => 0b1010, |
| ... | @@ -560,13 +559,13 @@ test "PackedInt(Array/Slice) sliceCast" { | ... | @@ -560,13 +559,13 @@ test "PackedInt(Array/Slice) sliceCast" { |
| 560 | try testing.expect(packed_slice_cast_4.get(i) == val); | 559 | try testing.expect(packed_slice_cast_4.get(i) == val); |
| 561 | } | 560 | } |
| 562 | i = 0; | 561 | i = 0; |
| 563 | while (i < packed_slice_cast_9.len()) : (i += 1) { | 562 | while (i < packed_slice_cast_9.len) : (i += 1) { |
| 564 | const val = 0b010101010; | 563 | const val = 0b010101010; |
| 565 | try testing.expect(packed_slice_cast_9.get(i) == val); | 564 | try testing.expect(packed_slice_cast_9.get(i) == val); |
| 566 | packed_slice_cast_9.set(i, 0b111000111); | 565 | packed_slice_cast_9.set(i, 0b111000111); |
| 567 | } | 566 | } |
| 568 | i = 0; | 567 | i = 0; |
| 569 | while (i < packed_slice_cast_3.len()) : (i += 1) { | 568 | while (i < packed_slice_cast_3.len) : (i += 1) { |
| 570 | const val = switch (native_endian) { | 569 | const val = switch (native_endian) { |
| 571 | .Big => if (i % 2 == 0) @as(u3, 0b111) else @as(u3, 0b000), | 570 | .Big => if (i % 2 == 0) @as(u3, 0b111) else @as(u3, 0b000), |
| 572 | .Little => if (i % 2 == 0) @as(u3, 0b111) else @as(u3, 0b000), | 571 | .Little => if (i % 2 == 0) @as(u3, 0b111) else @as(u3, 0b000), |
| ... | @@ -576,8 +575,6 @@ test "PackedInt(Array/Slice) sliceCast" { | ... | @@ -576,8 +575,6 @@ test "PackedInt(Array/Slice) sliceCast" { |
| 576 | } | 575 | } |
| 577 | | 576 | |
| 578 | test "PackedInt(Array/Slice)Endian" { | 577 | test "PackedInt(Array/Slice)Endian" { |
| 579 | if (we_are_testing_this_with_stage1_which_leaks_comptime_memory) return error.SkipZigTest; | | |
| 580 | | | |
| 581 | { | 578 | { |
| 582 | const PackedArrayBe = PackedIntArrayEndian(u4, .Big, 8); | 579 | const PackedArrayBe = PackedIntArrayEndian(u4, .Big, 8); |
| 583 | var packed_array_be = PackedArrayBe.init([_]u4{ 0, 1, 2, 3, 4, 5, 6, 7 }); | 580 | var packed_array_be = PackedArrayBe.init([_]u4{ 0, 1, 2, 3, 4, 5, 6, 7 }); |
| ... | @@ -585,20 +582,20 @@ test "PackedInt(Array/Slice)Endian" { | ... | @@ -585,20 +582,20 @@ test "PackedInt(Array/Slice)Endian" { |
| 585 | try testing.expect(packed_array_be.bytes[1] == 0b00100011); | 582 | try testing.expect(packed_array_be.bytes[1] == 0b00100011); |
| 586 | | 583 | |
| 587 | var i = @as(usize, 0); | 584 | var i = @as(usize, 0); |
| 588 | while (i < packed_array_be.len()) : (i += 1) { | 585 | while (i < packed_array_be.len) : (i += 1) { |
| 589 | try testing.expect(packed_array_be.get(i) == i); | 586 | try testing.expect(packed_array_be.get(i) == i); |
| 590 | } | 587 | } |
| 591 | | 588 | |
| 592 | var packed_slice_le = packed_array_be.sliceCastEndian(u4, .Little); | 589 | var packed_slice_le = packed_array_be.sliceCastEndian(u4, .Little); |
| 593 | i = 0; | 590 | i = 0; |
| 594 | while (i < packed_slice_le.len()) : (i += 1) { | 591 | while (i < packed_slice_le.len) : (i += 1) { |
| 595 | const val = if (i % 2 == 0) i + 1 else i - 1; | 592 | const val = if (i % 2 == 0) i + 1 else i - 1; |
| 596 | try testing.expect(packed_slice_le.get(i) == val); | 593 | try testing.expect(packed_slice_le.get(i) == val); |
| 597 | } | 594 | } |
| 598 | | 595 | |
| 599 | var packed_slice_le_shift = packed_array_be.slice(1, 5).sliceCastEndian(u4, .Little); | 596 | var packed_slice_le_shift = packed_array_be.slice(1, 5).sliceCastEndian(u4, .Little); |
| 600 | i = 0; | 597 | i = 0; |
| 601 | while (i < packed_slice_le_shift.len()) : (i += 1) { | 598 | while (i < packed_slice_le_shift.len) : (i += 1) { |
| 602 | const val = if (i % 2 == 0) i else i + 2; | 599 | const val = if (i % 2 == 0) i else i + 2; |
| 603 | try testing.expect(packed_slice_le_shift.get(i) == val); | 600 | try testing.expect(packed_slice_le_shift.get(i) == val); |
| 604 | } | 601 | } |
| ... | @@ -614,7 +611,7 @@ test "PackedInt(Array/Slice)Endian" { | ... | @@ -614,7 +611,7 @@ test "PackedInt(Array/Slice)Endian" { |
| 614 | try testing.expect(packed_array_be.bytes[4] == 0b00000000); | 611 | try testing.expect(packed_array_be.bytes[4] == 0b00000000); |
| 615 | | 612 | |
| 616 | var i = @as(usize, 0); | 613 | var i = @as(usize, 0); |
| 617 | while (i < packed_array_be.len()) : (i += 1) { | 614 | while (i < packed_array_be.len) : (i += 1) { |
| 618 | try testing.expect(packed_array_be.get(i) == i); | 615 | try testing.expect(packed_array_be.get(i) == i); |
| 619 | } | 616 | } |
| 620 | | 617 | |
| ... | @@ -639,14 +636,12 @@ test "PackedInt(Array/Slice)Endian" { | ... | @@ -639,14 +636,12 @@ test "PackedInt(Array/Slice)Endian" { |
| 639 | //@NOTE: Need to manually update this list as more posix os's get | 636 | //@NOTE: Need to manually update this list as more posix os's get |
| 640 | // added to DirectAllocator. | 637 | // added to DirectAllocator. |
| 641 | | 638 | |
| 642 | //These tests prove we aren't accidentally accessing memory past | 639 | // These tests prove we aren't accidentally accessing memory past |
| 643 | // the end of the array/slice by placing it at the end of a page | 640 | // the end of the array/slice by placing it at the end of a page |
| 644 | // and reading the last element. The assumption is that the page | 641 | // and reading the last element. The assumption is that the page |
| 645 | // after this one is not mapped and will cause a segfault if we | 642 | // after this one is not mapped and will cause a segfault if we |
| 646 | // don't account for the bounds. | 643 | // don't account for the bounds. |
| 647 | test "PackedIntArray at end of available memory" { | 644 | test "PackedIntArray at end of available memory" { |
| 648 | if (we_are_testing_this_with_stage1_which_leaks_comptime_memory) return error.SkipZigTest; | | |
| 649 | | | |
| 650 | switch (builtin.target.os.tag) { | 645 | switch (builtin.target.os.tag) { |
| 651 | .linux, .macos, .ios, .freebsd, .netbsd, .openbsd, .windows => {}, | 646 | .linux, .macos, .ios, .freebsd, .netbsd, .openbsd, .windows => {}, |
| 652 | else => return, | 647 | else => return, |
| ... | @@ -666,8 +661,6 @@ test "PackedIntArray at end of available memory" { | ... | @@ -666,8 +661,6 @@ test "PackedIntArray at end of available memory" { |
| 666 | } | 661 | } |
| 667 | | 662 | |
| 668 | test "PackedIntSlice at end of available memory" { | 663 | test "PackedIntSlice at end of available memory" { |
| 669 | if (we_are_testing_this_with_stage1_which_leaks_comptime_memory) return error.SkipZigTest; | | |
| 670 | | | |
| 671 | switch (builtin.target.os.tag) { | 664 | switch (builtin.target.os.tag) { |
| 672 | .linux, .macos, .ios, .freebsd, .netbsd, .openbsd, .windows => {}, | 665 | .linux, .macos, .ios, .freebsd, .netbsd, .openbsd, .windows => {}, |
| 673 | else => return, | 666 | else => return, |