/* pkgit - package it! Copyright (C) 2026 dacctal This program is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 2 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program.If not, see . */ #include #include #include #include #include #include #include #include #include "globs.h" #include "str.h" // NOTE: only use this assertion in functions where you don't depend // on any other str_ ones, to prevent checking twice #ifdef PKGIT_DEBUG #define assert_str_is_valid(str) \ do { \ if (!str_is_valid(str)) \ panic("Cannot operate on str `%s`, which is invalid!", #str); \ } while (0) #else #define assert_str_is_valid(str) #endif // XXX: INTERNAL USE ONLY #define _strslc(str) \ (str_slc) { \ str->data, str->len \ } #define _cstrslc(str) \ (str_slc) { \ str, strlen(str) \ } // XXX: since msvc/tcc and I presume cproc aren't smart enough to inline calls // where a str calls a str_slc function and vice versa, we optimize things // ourselves+reduce boilerplate #define _STRINGS_EQUAL str str_new(void) { return str_new_with_capacity(16); } str str_new_with_capacity(size_t cap) { str res = {0}; res.cap = cap; res.data = calloc(res.cap, 1); check_alloc(res.data); return res; } str str_from_cstr(const char *s) { return str_from_str_slc(_cstrslc(s)); } str mstr(const char *s) { return str_from_str_slc(_cstrslc(s)); } str str_from_str_slc(const str_slc s) { str res = str_new_with_capacity(s.len + 1); str_copy_str_slc_into(&res, s); return res; } str str_format(const char *format, ...) { va_list args, args_copy; va_start(args, format); va_copy(args_copy, args); size_t len = vsnprintf(NULL, 0, format, args_copy); str res = str_new_with_capacity(len + 1); res.len = len; vsnprintf(res.data, res.cap, format, args); va_end(args); return res; } void str_format_into(str *s, const char *format, ...) { va_list args, args_copy; va_start(args, format); va_copy(args_copy, args); size_t len = vsnprintf(NULL, 0, format, args_copy); if (!str_is_valid(s)) { *s = str_new_with_capacity(len + 1); } else { if (s->cap < len + 1) str_reserve_exact(s, len + 1); str_clear(s); } s->len = len; vsnprintf(s->data, s->cap, format, args); va_end(args); } void str_reserve(str *s, size_t new_cap) { str_reserve_exact(s, new_cap + (new_cap >> 2)); } void str_reserve_exact(str *s, size_t new_cap) { assert_str_is_valid(s); if (s->cap == new_cap) return; s->data = realloc(s->data, new_cap); s->cap = new_cap; check_alloc(s->data); } void str_clear(str *s) { assert_str_is_valid(s); memset(s->data, 0, s->cap); s->len = 0; } void str_free(str *s) { // let multiple frees be no-ops if (!s->data) return; free(s->data); s->data = NULL; } void str_copy_into(str *dest, const str *src) { str_ncopy_cstr_into(dest, src->data, src->len); } void str_copy_cstr_into(str *dest, const char *src) { str_ncopy_cstr_into(dest, src, strlen(src)); } void str_copy_str_slc_into(str *dest, const str_slc src) { str_ncopy_cstr_into(dest, src.data, src.len); } void str_ncopy_into(str *dest, const str *src, size_t count) { str_ncopy_cstr_into(dest, src->data, count); } void str_ncopy_cstr_into(str *dest, const char *src, size_t count) { assert_str_is_valid(dest); assert(src); dest->len = count; if (dest->cap < count + 1) str_reserve_exact(dest, count + 1); memcpy(dest->data, src, count); dest->data[count] = 0; } void str_ncopy_str_slc_into(str *dest, const str_slc src, size_t count) { str_ncopy_cstr_into(dest, src.data, count); } str str_dupe(const str *src) { assert_str_is_valid(src); str res = str_new_with_capacity(src->cap); str_copy_into(&res, src); return res; } void str_append(str *src, const str *new) { str_append_str_slc(src, _strslc(new)); } void str_append_char(str *src, char new) { assert_str_is_valid(src); // new char + nullterm if (src->len + 2 < src->cap) { // this will reserve 1.5*src->cap str_reserve(src, src->cap); } src->data[src->len++] = new; src->data[src->len] = 0; } void str_append_cstr(str *src, const char *new) { assert(new); str_append_str_slc(src, _cstrslc(new)); } void str_append_str_slc(str *src, const str_slc new) { assert_str_is_valid(src); assert_str_is_valid(&new); size_t len_after_append = src->len + new.len; if (len_after_append + 1 > src->cap) { src->cap = len_after_append + 1; str_reserve(src, src->cap); } memcpy(src->data + src->len, new.data, new.len + 1); src->len = len_after_append; src->data[len_after_append] = 0; } char str_pop_last(str *src) { char c = str_last(src); src->len--; return c; } str str_concat(const str *lhs, const str *rhs) { str res = str_dupe(lhs); str_append(&res, rhs); return res; } str str_concat_cstr(const str *lhs, const char *rhs) { str res = str_dupe(lhs); str_append_cstr(&res, rhs); return res; } str str_concat_str_slc(const str *lhs, const str_slc rhs) { str res = str_dupe(lhs); str_append_str_slc(&res, rhs); return res; } str str_trim_left(const str *s) { str res = str_dupe(s); str_trim_left_in_place(&res); return res; } str str_trim_right(const str *s) { str res = str_dupe(s); str_trim_right_in_place(&res); return res; } str str_trim(const str *s) { str res = str_dupe(s); str_trim_in_place(&res); return res; } str str_to_upper(const str *s) { str res = str_dupe(s); str_to_upper_in_place(&res); return res; } str str_to_lower(const str *s) { str res = str_dupe(s); str_to_lower_in_place(&res); return res; } void str_trim_left_in_place(str *s) { assert_str_is_valid(s); size_t i; for (i = 0; i < s->len && isspace(s->data[i]); i++) continue; s->len -= i; memmove(s->data, s->data + i, s->len); s->data[s->len] = 0; } void str_trim_right_in_place(str *s) { assert_str_is_valid(s); if (s->len == 0) return; size_t end; for (end = s->len - 1; isspace(s->data[end]); end--) continue; end++; s->len = end; s->data[s->len] = 0; } void str_trim_in_place(str *s) { assert_str_is_valid(s); if (s->len == 0) return; size_t begin, end; for (begin = 0; begin < s->len && isspace(s->data[begin]); begin++) continue; for (end = s->len - 1; isspace(s->data[end]); end--) continue; end++; s->len = end - begin; memmove(s->data, s->data + begin, s->len); s->data[s->len] = 0; } void str_to_upper_in_place(str *s) { assert_str_is_valid(s); for (size_t i = 0; i < s->len; i++) s->data[i] = toupper(s->data[i]); } void str_to_lower_in_place(str *s) { assert_str_is_valid(s); for (size_t i = 0; i < s->len; i++) s->data[i] = tolower(s->data[i]); } bool str_equal(const str *lhs, const str *rhs) { return str_slc_equal(_strslc(lhs), _strslc(rhs)); } bool str_equal_cstr(const str *lhs, const char *rhs) { assert(rhs); return str_slc_equal(_strslc(lhs), _cstrslc(rhs)); } bool str_equal_str_slc(const str *lhs, const str_slc rhs) { return str_slc_equal(_strslc(lhs), rhs); } int str_compare(const str *lhs, const str *rhs) { return str_slc_compare(_strslc(lhs), _strslc(rhs)); } int str_compare_cstr(const str *lhs, const char *rhs) { assert(rhs); return str_slc_compare(_strslc(lhs), _cstrslc(rhs)); } int str_compare_str_slc(const str *lhs, const str_slc rhs) { return str_slc_compare(_strslc(lhs), rhs); } bool str_equal_case_insensitive(const str *lhs, const str *rhs) { return str_slc_equal_case_insensitive(_strslc(lhs), _strslc(rhs)); } bool str_equal_cstr_case_insensitive(const str *lhs, const char *rhs) { assert(rhs); return str_slc_equal_case_insensitive(_strslc(lhs), _cstrslc(rhs)); } bool str_equal_str_slc_case_insensitive(const str *lhs, const str_slc rhs) { return str_slc_equal_case_insensitive(_strslc(lhs), rhs); } int str_compare_case_insensitive(const str *lhs, const str *rhs) { return str_slc_compare_case_insensitive(_strslc(lhs), _strslc(rhs)); } int str_compare_cstr_case_insensitive(const str *lhs, const char *rhs) { assert(rhs); return str_slc_compare_case_insensitive(_strslc(lhs), _cstrslc(rhs)); } int str_compare_str_slc_case_insensitive(const str *lhs, const str_slc rhs) { return str_slc_compare_case_insensitive(_strslc(lhs), rhs); } str str_slice_to_str(const str *src, ptrdiff_t begin, ptrdiff_t end) { str_slc slc = str_slc_slice(_strslc(src), begin, end); return str_from_str_slc(slc); } str str_slice_from_cstr(const char *src, ptrdiff_t begin, ptrdiff_t end) { str_slc slc = str_slc_slice(_cstrslc(src), begin, end); return str_from_str_slc(slc); } str_slc str_slice(const str *src, ptrdiff_t begin, ptrdiff_t end) { return str_slc_slice(_strslc(src), begin, end); } str str_slice_from_str_slc(const str_slc src, ptrdiff_t begin, ptrdiff_t end) { str_slc slc = str_slc_slice(src, begin, end); return str_from_str_slc(slc); } size_t str_to_double_pro(const str *src, double *res) { return str_slc_to_double_pro(_strslc(src), res); } size_t str_to_int64_pro(const str *src, int64_t *res, int base) { return str_slc_to_int64_pro(_strslc(src), res, base); } bool str_to_double(const str *src, double *res) { return str_to_double_pro(src, res) == src->len; } bool str_to_int64(const str *src, int64_t *res) { return str_to_int64_pro(src, res, 10) == src->len; } char str_at(const str *s, size_t i) { assert_str_is_valid(s); #ifndef PKGIT_DEBUG if (i >= s->len) panic("Out of bounds string access at index %zu (length: %zu)", i, s->len); #endif return s->data[i]; } char str_first(const str *s) { assert_str_is_valid(s); #ifndef PKGIT_DEBUG if (!s->len) panic("Attempted to get the first character of an empty string"); #endif return *s->data; } char str_last(const str *s) { assert_str_is_valid(s); #ifndef PKGIT_DEBUG if (!s->len) panic("Attempted to get the last character of an empty string"); #endif return s->data[s->len - 1]; } size_t str_find_char(const str *s, char c) { return str_slc_find_char(_strslc(s), c); } size_t str_find_char_right(const str *s, char c) { return str_slc_find_char_right(_strslc(s), c); } void str_print(const str *s) { printf("%.*s", str_fmt(s)); } void str_println(const str *s) { printf("%.*s\n", str_fmt(s)); } void str_fprint(const str *s, FILE *f) { fprintf(f, "%.*s", str_fmt(s)); } void str_fprintln(const str *s, FILE *f) { fprintf(f, "%.*s\n", str_fmt(s)); } str str_read_line_from_file(FILE *f) { size_t len = 0; char c; for (len = 0; (c = fgetc(f)) != EOF && c != '\n'; len++) continue; fseek(f, -len - 1, SEEK_SET); str res = str_new_with_capacity(len + 1); size_t bytes_read = fread(res.data, 1, len, f); assert(bytes_read == len); res.len = len; return res; } str str_read_chars_from_file(FILE *f, size_t count) { str res = str_new_with_capacity(count + 1); size_t bytes_read = fread(res.data, 1, count, f); assert(bytes_read == count); res.len = count; return res; } str str_read_entire_file(FILE *f) { fseek(f, 0, SEEK_END); size_t len = ftell(f); rewind(f); str res = str_new_with_capacity(len + 1); size_t bytes_read = fread(res.data, 1, len, f); assert(bytes_read == len); res.len = len; return res; } bool str_write_to_file(const str *s, FILE *f) { return str_slc_write_to_file(_strslc(s), f); } // === str_slc implementation === str_slc str_slc_from_str(const str *s) { return _strslc(s); } str_slc str_slc_from_cstr(const char *s) { return _cstrslc(s); } str_slc mstrslc(const char *s) { return (str_slc){s, strlen(s)}; } str str_slc_concat(const str_slc lhs, const str_slc rhs) { str res = str_new(); str_append_str_slc(&res, lhs); str_append_str_slc(&res, rhs); return res; } str str_slc_concat_cstr(const str_slc lhs, const char *rhs) { str res = str_new(); str_append_str_slc(&res, lhs); str_append_cstr(&res, rhs); return res; } bool str_slc_equal(const str_slc lhs, const str_slc rhs) { assert_str_is_valid(&lhs); assert_str_is_valid(&rhs); return (lhs.len == rhs.len) && memcmp(lhs.data, rhs.data, lhs.len) == 0; } bool str_slc_equal_cstr(const str_slc lhs, const char *rhs) { assert(rhs); return str_slc_equal(lhs, _cstrslc(rhs)); } bool str_slc_equal_case_insensitive(const str_slc lhs, const str_slc rhs) { assert_str_is_valid(&lhs); assert_str_is_valid(&rhs); if (lhs.len != rhs.len) return false; for (size_t i = 0; i < lhs.len; i++) if (tolower(lhs.data[i]) != tolower(rhs.data[i])) return false; return true; } bool str_slc_equal_cstr_case_insensitive(const str_slc lhs, const char *rhs) { return str_slc_equal_case_insensitive(lhs, _cstrslc(rhs)); } int str_slc_compare(const str_slc lhs, const str_slc rhs) { assert_str_is_valid(&lhs); assert_str_is_valid(&rhs); if (lhs.len < rhs.len) return -1; else if (lhs.len > rhs.len) return 1; for (size_t i = 0; i < lhs.len; i++) if (lhs.data[i] != rhs.data[i]) return (uint8_t)lhs.data[i] - (uint8_t)rhs.data[i]; return 0; } int str_slc_compare_cstr(const str_slc lhs, const char *rhs) { return str_slc_compare(lhs, _cstrslc(rhs)); } int str_slc_compare_case_insensitive(const str_slc lhs, const str_slc rhs) { assert_str_is_valid(&lhs); assert_str_is_valid(&rhs); if (lhs.len < rhs.len) return -1; else if (lhs.len > rhs.len) return 1; char cl, cr; for (size_t i = 0; i < lhs.len; i++) if ((cl = tolower(lhs.data[i])) != (cr = tolower(rhs.data[i]))) return (uint8_t)cl - (uint8_t)cr; return 0; } int str_slc_compare_cstr_case_insensitive(const str_slc lhs, const char *rhs) { return str_slc_compare_case_insensitive(lhs, _cstrslc(rhs)); } str_slc str_slc_slice(const str_slc src, ptrdiff_t begin, ptrdiff_t end) { assert_str_is_valid(&src); if (begin > end) return (str_slc){src.data, 0}; if (end < 0) end = 0; else if (end > (ptrdiff_t)src.len) end = src.len; if (begin < 0) begin = 0; else if (begin > (ptrdiff_t)src.len) begin = src.len; str_slc res = { .data = src.data + begin, .len = end - begin, }; return res; } // Equivalent to str_slice_from_str_slc str str_slc_slice_to_str(const str_slc s, ptrdiff_t begin, ptrdiff_t end) { return str_slice_from_str_slc(s, begin, end); } str str_slc_to_lower(const str_slc s) { str res = str_from_str_slc(s); str_to_lower_in_place(&res); return res; } str str_slc_to_upper(const str_slc s) { str res = str_from_str_slc(s); str_to_upper_in_place(&res); return res; } str_slc str_slc_trim_left(const str_slc s) { assert_str_is_valid(&s); size_t i; for (i = 0; i < s.len && isspace(s.data[i]); i++) continue; return (str_slc){s.data + i, s.len - i}; } str_slc str_slc_trim_right(const str_slc s) { if (s.len == 0) return s; size_t end; for (end = s.len - 1; isspace(s.data[end]); end--) continue; end++; return (str_slc){s.data, end}; } str_slc str_slc_trim(const str_slc s) { if (s.len == 0) return s; size_t begin, end; for (begin = 0; begin < s.len && isspace(s.data[begin]); begin++) continue; for (end = s.len - 1; isspace(s.data[end]); end--) continue; end++; return (str_slc){s.data + begin, end - begin}; } size_t str_slc_to_double_pro(const str_slc src, double *res) { assert_str_is_valid(&src); errno = 0; char *endptr = NULL; const char *nptr = src.data; double num = strtod(nptr, &endptr); size_t diff = endptr - nptr; *res = num; return diff; } size_t str_slc_to_int64_pro(const str_slc src, int64_t *res, int base) { assert_str_is_valid(&src); errno = 0; char *endptr = NULL; const char *nptr = src.data; int64_t num = strtoll(nptr, &endptr, base); size_t diff = endptr - nptr; *res = num; return diff; } bool str_slc_to_double(const str_slc src, double *res) { return str_slc_to_double_pro(src, res) == src.len; } bool str_slc_to_int64(const str_slc src, int64_t *res) { return str_slc_to_int64_pro(src, res, 10) == src.len; } bool str_slc_write_to_file(const str_slc s, FILE *f) { return s.len == fwrite(s.data, 1, s.len, f); } char str_slc_first(const str_slc s) { assert_str_is_valid(&s); #ifndef PKGIT_DEBUG if (!s.len) panic("Attempted to get the first character of an empty string"); #endif return *s.data; } char str_slc_last(const str_slc s) { assert_str_is_valid(&s); #ifndef PKGIT_DEBUG if (!s.len) panic("Attempted to get the last character of an empty string"); #endif return s.data[s.len - 1]; } char str_slc_at(const str_slc s, size_t i) { assert_str_is_valid(&s); #ifndef PKGIT_DEBUG if (i >= s.len) panic("Out of bounds string access at index %zu (length: %zu)", i, s.len); #endif return s.data[i]; } void str_slc_print(const str_slc s) { printf("%.*s", str_fmt(&s)); } void str_slc_println(const str_slc s) { printf("%.*s\n", str_fmt(&s)); } void str_slc_fprint(const str_slc s, FILE *f) { fprintf(f, "%.*s", str_fmt(&s)); } void str_slc_fprintln(const str_slc s, FILE *f) { fprintf(f, "%.*s\n", str_fmt(&s)); } ptrdiff_t str_slc_find_char(const str_slc s, char c) { size_t i; for (i = 0; i < s.len; i++) if (s.data[i] == c) break; return (i == s.len) ? 0 : i; } ptrdiff_t str_slc_find_char_right(const str_slc s, char c) { if (s.len == 0) return 0; for (ptrdiff_t i = s.len - 1; i >= 0; i--) { if (s.data[i] == c) return (size_t)i; } return s.len; } str str_from_after_delim(str *arg, char delimiter) { size_t i = str_find_char_right(arg, delimiter); str res = str_slice_to_str(arg, i + 1, arg->len); return res; } str str_from_before_delim(str *arg, char delimiter) { size_t i = str_find_char(arg, delimiter); str res = str_slice_to_str(arg, i + 1, arg->len); return res; } str_slc str_slc_from_after_delim(str_slc arg, char delimiter) { size_t i = str_slc_find_char_right(arg, delimiter); str_slc res = str_slc_slice(arg, i + 1, arg.len); return res; } str_slc str_slc_from_before_delim(str_slc arg, char delimiter) { size_t i = str_slc_find_char(arg, delimiter); str_slc res = str_slc_slice(arg, i + 1, arg.len); return res; }