| ... | ... | @@ -0,0 +1,102 @@ |
| 1 | const std = @import("std"); |
| 2 | const extras = @import("./lib.zig"); |
| 3 | |
| 4 | pub fn ManyArrayList(T: type) type { |
| 5 | return struct { |
| 6 | allocator: std.mem.Allocator, |
| 7 | list: std.ArrayListUnmanaged(T), |
| 8 | lengths: std.ArrayListUnmanaged(usize), |
| 9 | |
| 10 | pub fn init(allocator: std.mem.Allocator) @This() { |
| 11 | return .{ |
| 12 | .allocator = allocator, |
| 13 | .list = .{}, |
| 14 | .lengths = .{}, |
| 15 | }; |
| 16 | } |
| 17 | |
| 18 | pub fn deinit(self: *@This()) void { |
| 19 | self.list.deinit(self.allocator); |
| 20 | self.lengths.deinit(self.allocator); |
| 21 | } |
| 22 | |
| 23 | pub fn add(self: *@This()) !usize { |
| 24 | const n = self.lengths.items.len; |
| 25 | try self.lengths.append(self.allocator, 0); |
| 26 | return n; |
| 27 | } |
| 28 | |
| 29 | pub fn appendSlice(self: *@This(), n: usize, slice: []const T) !void { |
| 30 | const real_n = extras.sum(usize, self.lengths.items[0 .. n + 1]); |
| 31 | try self.list.insertSlice(self.allocator, real_n, slice); |
| 32 | self.lengths.items[n] += slice.len; |
| 33 | } |
| 34 | |
| 35 | pub fn items(self: *@This(), n: usize) []T { |
| 36 | const real_n = extras.sum(usize, self.lengths.items[0..n]); |
| 37 | const len = self.lengths.items[n]; |
| 38 | return self.list.items[real_n..][0..len]; |
| 39 | } |
| 40 | |
| 41 | pub fn set(self: *@This(), n: usize, slice: []const T) !void { |
| 42 | const real_n = extras.sum(usize, self.lengths.items[0..n]); |
| 43 | try self.list.replaceRange(self.allocator, real_n, self.lengths.items[n], slice); |
| 44 | self.lengths.items[n] = slice.len; |
| 45 | } |
| 46 | |
| 47 | pub fn clear(self: *@This(), n: usize) void { |
| 48 | const real_n = extras.sum(usize, self.lengths.items[0..n]); |
| 49 | self.list.replaceRangeAssumeCapacity(real_n, self.lengths.items[n], &.{}); |
| 50 | self.lengths.items[n] = 0; |
| 51 | } |
| 52 | |
| 53 | /// Does not reset .lengths so that deinit can still clean it up |
| 54 | pub fn toOwnedSlice(self: *@This()) ![]T { |
| 55 | return self.list.toOwnedSlice(self.allocator); |
| 56 | } |
| 57 | |
| 58 | pub fn swap(self: *@This(), a: usize, b: usize) void { |
| 59 | std.debug.assert(a != b); |
| 60 | if (a < b) return self.swapLR(a, b); |
| 61 | if (a > b) return self.swapLR(b, a); |
| 62 | unreachable; |
| 63 | } |
| 64 | fn swapLR(self: *@This(), a: usize, b: usize) void { |
| 65 | extras.swapManyLR( |
| 66 | u8, |
| 67 | self.list.items, |
| 68 | extras.sum(usize, self.lengths.items[0..a]), |
| 69 | self.lengths.items[a], |
| 70 | extras.sum(usize, self.lengths.items[0..b]), |
| 71 | self.lengths.items[b], |
| 72 | ); |
| 73 | std.mem.swap( |
| 74 | usize, |
| 75 | &self.lengths.items[a], |
| 76 | &self.lengths.items[b], |
| 77 | ); |
| 78 | } |
| 79 | |
| 80 | pub fn remove(self: *@This(), n: usize) void { |
| 81 | const real_n = extras.sum(usize, self.lengths.items[0..n]); |
| 82 | self.list.replaceRangeAssumeCapacity(real_n, self.lengths.items[n], &.{}); |
| 83 | _ = self.lengths.orderedRemove(n); |
| 84 | } |
| 85 | |
| 86 | pub fn replace(self: *@This(), n: usize, o: usize, l: usize, slice: []const T) !void { |
| 87 | std.debug.assert(o + l <= self.lengths.items[n]); |
| 88 | const real_n = extras.sum(usize, self.lengths.items[0..n]); |
| 89 | try self.list.replaceRange(self.allocator, real_n + o, l, slice); |
| 90 | self.lengths.items[n] -= l; |
| 91 | self.lengths.items[n] += slice.len; |
| 92 | } |
| 93 | |
| 94 | pub fn insertAt(self: *@This(), n: usize, slice: []const T) !void { |
| 95 | try self.lengths.ensureUnusedCapacity(self.allocator, 1); |
| 96 | try self.list.ensureUnusedCapacity(self.allocator, slice.len); |
| 97 | const real_n = extras.sum(usize, self.lengths.items[0..n]); |
| 98 | self.lengths.insertAssumeCapacity(n, slice.len); |
| 99 | self.list.insertSlice(self.allocator, real_n, slice) catch unreachable; |
| 100 | } |
| 101 | }; |
| 102 | } |