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232 lines
5.9 KiB
V
232 lines
5.9 KiB
V
// Copyright (c) 2019-2023 Alexander Medvednikov. All rights reserved.
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// Use of this source code is governed by an MIT license
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// that can be found in the LICENSE file.
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module strings
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// strings.Builder is used to efficiently append many strings to a large
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// dynamically growing buffer, then use the resulting large string. Using
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// a string builder is much better for performance/memory usage than doing
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// constantly string concatenation.
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pub type Builder = []u8
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// new_builder returns a new string builder, with an initial capacity of `initial_size`
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pub fn new_builder(initial_size int) Builder {
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mut res := Builder([]u8{cap: initial_size})
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unsafe { res.flags.set(.noslices) }
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return res
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}
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// reuse_as_plain_u8_array allows using the Builder instance as a plain []u8 return value.
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// It is useful, when you have accumulated data in the builder, that you want to
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// pass/access as []u8 later, without copying or freeing the buffer.
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// NB: you *should NOT use* the string builder instance after calling this method.
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// Use only the return value after calling this method.
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[unsafe]
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pub fn (mut b Builder) reuse_as_plain_u8_array() []u8 {
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unsafe { b.flags.clear(.noslices) }
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return *b
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}
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// write_ptr writes `len` bytes provided byteptr to the accumulated buffer
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[unsafe]
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pub fn (mut b Builder) write_ptr(ptr &u8, len int) {
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if len == 0 {
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return
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}
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unsafe { b.push_many(ptr, len) }
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}
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// write_rune appends a single rune to the accumulated buffer
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[manualfree]
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pub fn (mut b Builder) write_rune(r rune) {
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mut buffer := [5]u8{}
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res := unsafe { utf32_to_str_no_malloc(u32(r), &buffer[0]) }
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if res.len == 0 {
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return
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}
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unsafe { b.push_many(res.str, res.len) }
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}
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// write_runes appends all the given runes to the accumulated buffer
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pub fn (mut b Builder) write_runes(runes []rune) {
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mut buffer := [5]u8{}
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for r in runes {
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res := unsafe { utf32_to_str_no_malloc(u32(r), &buffer[0]) }
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if res.len == 0 {
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continue
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}
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unsafe { b.push_many(res.str, res.len) }
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}
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}
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// clear clears the buffer contents
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pub fn (mut b Builder) clear() {
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b = []u8{cap: b.cap}
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}
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// write_u8 appends a single `data` byte to the accumulated buffer
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pub fn (mut b Builder) write_u8(data u8) {
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b << data
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}
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// write_byte appends a single `data` byte to the accumulated buffer
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pub fn (mut b Builder) write_byte(data byte) {
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b << data
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}
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// write implements the Writer interface
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pub fn (mut b Builder) write(data []u8) !int {
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if data.len == 0 {
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return 0
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}
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b << data
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return data.len
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}
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// drain_builder writes all of the `other` builder content, then re-initialises
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// `other`, so that the `other` strings builder is ready to receive new content.
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[manualfree]
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pub fn (mut b Builder) drain_builder(mut other Builder, other_new_cap int) {
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if other.len > 0 {
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b << *other
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}
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unsafe { other.free() }
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other = new_builder(other_new_cap)
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}
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// byte_at returns a byte, located at a given index `i`.
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// Note: it can panic, if there are not enough bytes in the strings builder yet.
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[inline]
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pub fn (b &Builder) byte_at(n int) u8 {
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return unsafe { (&[]u8(b))[n] }
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}
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// write appends the string `s` to the buffer
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[inline]
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pub fn (mut b Builder) write_string(s string) {
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if s.len == 0 {
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return
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}
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unsafe { b.push_many(s.str, s.len) }
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// for c in s {
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// b.buf << c
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// }
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// b.buf << []u8(s) // TODO
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}
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// go_back discards the last `n` bytes from the buffer
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pub fn (mut b Builder) go_back(n int) {
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b.trim(b.len - n)
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}
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[inline]
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fn (b &Builder) spart(start_pos int, n int) string {
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unsafe {
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mut x := malloc_noscan(n + 1)
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vmemcpy(x, &u8(b.data) + start_pos, n)
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x[n] = 0
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return tos(x, n)
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}
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}
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// cut_last cuts the last `n` bytes from the buffer and returns them
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pub fn (mut b Builder) cut_last(n int) string {
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cut_pos := b.len - n
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res := b.spart(cut_pos, n)
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b.trim(cut_pos)
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return res
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}
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// cut_to cuts the string after `pos` and returns it.
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// if `pos` is superior to builder length, returns an empty string
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// and cancel further operations
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pub fn (mut b Builder) cut_to(pos int) string {
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if pos > b.len {
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return ''
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}
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return b.cut_last(b.len - pos)
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}
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// go_back_to resets the buffer to the given position `pos`
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// Note: pos should be < than the existing buffer length.
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pub fn (mut b Builder) go_back_to(pos int) {
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b.trim(pos)
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}
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// writeln appends the string `s`, and then a newline character.
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[inline]
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pub fn (mut b Builder) writeln(s string) {
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// for c in s {
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// b.buf << c
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// }
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if s.len > 0 {
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unsafe { b.push_many(s.str, s.len) }
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}
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// b.buf << []u8(s) // TODO
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b << u8(`\n`)
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}
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// last_n(5) returns 'world'
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// buf == 'hello world'
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pub fn (b &Builder) last_n(n int) string {
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if n > b.len {
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return ''
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}
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return b.spart(b.len - n, n)
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}
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// after(6) returns 'world'
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// buf == 'hello world'
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pub fn (b &Builder) after(n int) string {
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if n >= b.len {
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return ''
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}
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return b.spart(n, b.len - n)
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}
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// str returns a copy of all of the accumulated buffer content.
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// Note: after a call to b.str(), the builder b will be empty, and could be used again.
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// The returned string *owns* its own separate copy of the accumulated data that was in
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// the string builder, before the .str() call.
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pub fn (mut b Builder) str() string {
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b << u8(0)
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bcopy := unsafe { &u8(memdup_noscan(b.data, b.len)) }
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s := unsafe { bcopy.vstring_with_len(b.len - 1) }
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b.trim(0)
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return s
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}
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// ensure_cap ensures that the buffer has enough space for at least `n` bytes by growing the buffer if necessary
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pub fn (mut b Builder) ensure_cap(n int) {
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// code adapted from vlib/builtin/array.v
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if n <= b.cap {
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return
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}
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new_data := vcalloc(n * b.element_size)
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if b.data != unsafe { nil } {
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unsafe { vmemcpy(new_data, b.data, b.len * b.element_size) }
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// TODO: the old data may be leaked when no GC is used (ref-counting?)
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if b.flags.has(.noslices) {
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unsafe { free(b.data) }
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}
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}
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unsafe {
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b.data = new_data
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b.offset = 0
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b.cap = n
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}
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}
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// free frees the memory block, used for the buffer.
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// Note: do not use the builder, after a call to free().
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[unsafe]
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pub fn (mut b Builder) free() {
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if b.data != 0 {
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unsafe { free(b.data) }
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unsafe {
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b.data = nil
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}
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}
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}
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