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https://github.com/c3lang/c3c.git
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328 lines
7.3 KiB
C
328 lines
7.3 KiB
C
module std::core::string;
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import libc;
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typedef VarString = distinct void*;
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typedef DynStr = VarString;
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typedef DynString = VarString;
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typedef DString = VarString;
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typedef VString = VarString;
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const usz MIN_CAPACITY = 16;
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fn VarString new_with_capacity(usz capacity, Allocator* allocator = mem::current_allocator())
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{
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if (capacity < MIN_CAPACITY) capacity = MIN_CAPACITY;
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StringData* data = allocator.alloc(StringData.sizeof + capacity)!!;
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data.allocator = allocator;
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data.len = 0;
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data.capacity = capacity;
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return (VarString)data;
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}
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fn VarString new(String c)
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{
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usz len = c.len;
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VarString str = new_with_capacity(len);
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StringData* data = str.data();
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if (len)
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{
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data.len = len;
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mem::copy(&data.chars, c.ptr, len);
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}
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return (VarString)data;
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}
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fn ZString VarString.zstr(VarString str)
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{
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StringData* data = str.data();
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if (!data) return (ZString)"";
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if (data.capacity == data.len)
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{
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str.reserve(1);
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data.chars[data.len] = 0;
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}
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else if (data.chars[data.len] != 0)
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{
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data.chars[data.len] = 0;
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}
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return (ZString)&data.chars[0];
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}
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fn usz VarString.capacity(VarString this)
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{
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if (!this) return 0;
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return this.data().capacity;
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}
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fn usz VarString.len(VarString this)
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{
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if (!this) return 0;
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return this.data().len;
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}
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/**
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* @require new_size <= this.len()
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*/
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fn void VarString.chop(VarString this, usz new_size)
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{
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if (!this) return;
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this.data().len = new_size;
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}
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fn String VarString.str(VarString str)
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{
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StringData* data = (StringData*)str;
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if (!data) return String {};
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return (String)data.chars[:data.len];
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}
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fn void VarString.append_utf32(VarString* str, Char32[] chars)
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{
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str.reserve(chars.len);
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foreach (Char32 c : chars)
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{
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str.append_char32(c);
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}
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}
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/**
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* @require index < str.len()
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**/
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fn void VarString.set(VarString str, usz index, char c)
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{
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str.data().chars[index] = c;
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}
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fn void VarString.append_repeat(VarString* str, char c, usz times)
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{
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if (times == 0) return;
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str.reserve(times);
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StringData* data = str.data();
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for (usz i = 0; i < times; i++)
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{
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data.chars[data.len++] = c;
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}
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}
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/**
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* @require c < 0x10ffff
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*/
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fn void VarString.append_char32(VarString* str, Char32 c)
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{
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if (c < 0x7f)
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{
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str.reserve(1);
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StringData* data = str.data();
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data.chars[data.len++] = (char)c;
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return;
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}
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if (c < 0x7ff)
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{
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str.reserve(2);
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StringData* data = str.data();
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data.chars[data.len++] = (char)(0xC0 | c >> 6);
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data.chars[data.len++] = (char)(0x80 | (c & 0x3F));
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return;
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}
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if (c < 0xffff)
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{
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str.reserve(3);
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StringData* data = str.data();
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data.chars[data.len++] = (char)(0xE0 | c >> 12);
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data.chars[data.len++] = (char)(0x80 | (c >> 6 & 0x3F));
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data.chars[data.len++] = (char)(0x80 | (c & 0x3F));
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return;
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}
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str.reserve(4);
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StringData* data = str.data();
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data.chars[data.len++] = (char)(0xF0 | c >> 18);
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data.chars[data.len++] = (char)(0x80 | (c >> 12 & 0x3F));
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data.chars[data.len++] = (char)(0x80 | (c >> 6 & 0x3F));
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data.chars[data.len++] = (char)(0x80 | (c & 0x3F));
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}
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fn VarString VarString.tcopy(VarString* str) => str.copy(mem::temp_allocator());
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fn VarString VarString.copy(VarString* str, Allocator* allocator = null)
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{
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if (!str)
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{
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if (allocator) return new_with_capacity(0, allocator);
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return (VarString)null;
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}
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if (!allocator) allocator = mem::current_allocator();
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StringData* data = str.data();
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VarString new_string = new_with_capacity(data.capacity, allocator);
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mem::copy((char*)new_string.data(), (char*)data, StringData.sizeof + data.len);
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return new_string;
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}
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fn ZString VarString.copy_zstr(VarString* str, Allocator* allocator = mem::current_allocator())
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{
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usz str_len = str.len();
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if (!str_len)
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{
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return (ZString)allocator.calloc(1)!!;
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}
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char* zstr = allocator.alloc(str_len + 1)!!;
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StringData* data = str.data();
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mem::copy(zstr, &data.chars, str_len);
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zstr[str_len] = 0;
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return (ZString)zstr;
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}
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fn String VarString.copy_str(VarString* str, Allocator* allocator = mem::current_allocator())
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{
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return (String)str.copy_zstr(allocator)[:str.len()];
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}
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fn String VarString.tcopy_str(VarString* str) => str.copy_str(mem::temp_allocator()) @inline;
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fn bool VarString.equals(VarString str, VarString other_string)
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{
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StringData *str1 = str.data();
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StringData *str2 = other_string.data();
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if (str1 == str2) return true;
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if (!str1) return str2.len == 0;
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if (!str2) return str1.len == 0;
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usz str1_len = str1.len;
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if (str1_len != str2.len) return false;
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for (int i = 0; i < str1_len; i++)
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{
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if (str1.chars[i] != str2.chars[i]) return false;
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}
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return true;
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}
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fn void VarString.destroy(VarString* str)
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{
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if (!*str) return;
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StringData* data = str.data();
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if (!data) return;
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data.allocator.free(data)!!;
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*str = (VarString)null;
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}
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fn bool VarString.less(VarString str, VarString other_string)
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{
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StringData* str1 = str.data();
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StringData* str2 = other_string.data();
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if (str1 == str2) return false;
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if (!str1) return str2.len != 0;
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if (!str2) return str1.len == 0;
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usz str1_len = str1.len;
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usz str2_len = str2.len;
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if (str1_len != str2_len) return str1_len < str2_len;
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for (int i = 0; i < str1_len; i++)
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{
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if (str1.chars[i] >= str2.chars[i]) return false;
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}
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return true;
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}
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fn void VarString.append_chars(VarString* this, String str)
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{
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usz other_len = str.len;
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if (!other_len) return;
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if (!*this)
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{
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*this = new(str);
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return;
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}
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this.reserve(other_len);
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StringData* data = (StringData*)*this;
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mem::copy(&data.chars[data.len], str.ptr, other_len);
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data.len += other_len;
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}
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fn Char32[] VarString.copy_utf32(VarString* this, Allocator* allocator = mem::current_allocator())
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{
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return str::utf8to32(this.str(), allocator) @inline!!;
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}
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fn void VarString.append_string(VarString* this, VarString str)
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{
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StringData* other = (StringData*)str;
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if (!other) return;
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this.append(str.str());
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}
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fn void VarString.clear(VarString* str)
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{
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str.data().len = 0;
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}
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fn void VarString.append_char(VarString* str, char c)
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{
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if (!*str)
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{
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*str = new_with_capacity(MIN_CAPACITY);
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}
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str.reserve(1);
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StringData* data = (StringData*)*str;
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data.chars[data.len++] = c;
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}
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macro void VarString.append(VarString* str, value)
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{
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var $Type = $typeof(value);
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$switch ($Type):
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$case char:
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$case ichar:
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str.append_char(value);
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$case VarString:
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str.append_string(value);
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$case String:
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str.append_chars(value);
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$case Char32:
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str.append_char32(value);
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$default:
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$if (@convertible(value, Char32)):
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str.append_char32(value);
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$elif (@convertible(value, String)):
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str.append_chars(value);
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$else:
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$assert(false, "Unsupported type for append – use printf instead.");
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$endif;
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$endswitch;
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}
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fn StringData* VarString.data(VarString str) @inline @private
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{
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return (StringData*)str;
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}
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fn void VarString.reserve(VarString* str, usz addition) @private
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{
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StringData* data = str.data();
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if (!data)
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{
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*str = string::new_with_capacity(addition);
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return;
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}
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usz len = data.len + addition;
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if (data.capacity >= len) return;
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usz new_capacity = data.capacity *= 2;
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if (new_capacity < MIN_CAPACITY) new_capacity = MIN_CAPACITY;
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*str = (VarString)data.allocator.realloc(data, StringData.sizeof + new_capacity)!!;
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}
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fn VarString VarString.new_concat(VarString a, VarString b, Allocator* allocator = mem::current_allocator())
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{
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VarString string = new_with_capacity(a.len() + b.len(), allocator);
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string.append(a);
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string.append(b);
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return string;
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}
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struct StringData @private
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{
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Allocator* allocator;
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usz len;
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usz capacity;
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char[*] chars;
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}
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