| ... | ... | @@ -137,7 +137,14 @@ fn threadSafeAlloc(ctx: *anyopaque, n: usize, alignment: mem.Alignment, ret_addr |
| 137 | 137 | const adjusted_index = cur_end_index + adjust_off; |
| 138 | 138 | const new_end_index = adjusted_index + n; |
| 139 | 139 | if (new_end_index > self.buffer.len) return null; |
| 140 | | cur_end_index = @cmpxchgWeak(usize, &self.end_index, cur_end_index, new_end_index, .monotonic, .monotonic) orelse |
| 140 | cur_end_index = @cmpxchgWeak( |
| 141 | usize, |
| 142 | &self.end_index, |
| 143 | cur_end_index, |
| 144 | new_end_index, |
| 145 | .acquire, // acquire any memory that may have been freed |
| 146 | .monotonic, |
| 147 | ) orelse |
| 141 | 148 | return self.buffer[adjusted_index..new_end_index].ptr; |
| 142 | 149 | } |
| 143 | 150 | } |
| ... | ... | @@ -154,26 +161,36 @@ fn threadSafeResize(ctx: *anyopaque, memory: []u8, alignment: mem.Alignment, new |
| 154 | 161 | return new_len <= memory.len; |
| 155 | 162 | } |
| 156 | 163 | |
| 157 | | const new_end_index: usize = new_end_index: { |
| 158 | | if (memory.len >= new_len) { |
| 159 | | break :new_end_index cur_end_index - (memory.len - new_len); |
| 160 | | } |
| 161 | | if (fba.buffer.len - cur_end_index >= new_len - memory.len) { |
| 162 | | break :new_end_index cur_end_index + (new_len - memory.len); |
| 163 | | } |
| 164 | | return false; |
| 165 | | }; |
| 166 | | assert(fba.buffer.ptr + new_end_index == memory.ptr + new_len); |
| 164 | if (new_len <= memory.len) { |
| 165 | const new_end_index = cur_end_index - (memory.len - new_len); |
| 166 | assert(fba.buffer.ptr + new_end_index == memory.ptr + new_len); |
| 167 | |
| 168 | _ = @cmpxchgStrong( |
| 169 | usize, |
| 170 | &fba.end_index, |
| 171 | cur_end_index, |
| 172 | new_end_index, |
| 173 | .release, // release freed memory |
| 174 | .monotonic, |
| 175 | ); |
| 176 | return true; // Shrinking allocations should always succeed. |
| 177 | } |
| 167 | 178 | |
| 168 | | return null == @cmpxchgStrong( |
| 169 | | usize, |
| 170 | | &fba.end_index, |
| 171 | | cur_end_index, |
| 172 | | new_end_index, |
| 173 | | .monotonic, |
| 174 | | .monotonic, |
| 175 | | ) or |
| 176 | | new_len <= memory.len; // Shrinking allocations should always succeed. |
| 179 | if (fba.buffer.len - cur_end_index >= new_len - memory.len) { |
| 180 | const new_end_index = cur_end_index + (new_len - memory.len); |
| 181 | assert(fba.buffer.ptr + new_end_index == memory.ptr + new_len); |
| 182 | |
| 183 | return null == @cmpxchgStrong( |
| 184 | usize, |
| 185 | &fba.end_index, |
| 186 | cur_end_index, |
| 187 | new_end_index, |
| 188 | .acquire, // acquire any memory that may have been freed |
| 189 | .monotonic, |
| 190 | ); |
| 191 | } |
| 192 | |
| 193 | return false; |
| 177 | 194 | } |
| 178 | 195 | |
| 179 | 196 | fn threadSafeRemap(ctx: *anyopaque, memory: []u8, alignment: mem.Alignment, new_len: usize, ret_addr: usize) ?[*]u8 { |
| ... | ... | @@ -201,7 +218,7 @@ fn threadSafeFree(ctx: *anyopaque, memory: []u8, alignment: mem.Alignment, ret_a |
| 201 | 218 | &fba.end_index, |
| 202 | 219 | cur_end_index, |
| 203 | 220 | new_end_index, |
| 204 | | .monotonic, |
| 221 | .release, // release freed memory |
| 205 | 222 | .monotonic, |
| 206 | 223 | ); |
| 207 | 224 | } |