mirror of
https://github.com/jart/cosmopolitan.git
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bb815eafaf
We now have implement all of Musl's localization code, the same way that Musl implements localization. You may need setlocale(LC_ALL, "C.UTF-8"), just in case anything stops working as expected.
172 lines
4.9 KiB
C
172 lines
4.9 KiB
C
#include <errno.h>
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#include <iconv.h>
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#include <stdlib.h>
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#include <string.h>
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#include <uchar.h>
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#define INBUF_SIZE 1024
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#define OUTBUF_SIZE 4096
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int g_count;
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int check_conversion(const char* input, size_t input_len,
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const wchar_t* expected_output, size_t expected_len) {
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iconv_t cd;
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char inbuf[INBUF_SIZE];
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char outbuf[OUTBUF_SIZE];
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char* inptr = inbuf;
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char* outptr = outbuf;
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size_t inbytesleft = input_len;
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size_t outbytesleft = OUTBUF_SIZE;
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size_t result;
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++g_count;
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memcpy(inbuf, input, input_len);
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cd = iconv_open("UTF-32LE", "UTF-8");
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if (cd == (iconv_t)-1) {
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return 10 + g_count; // iconv_open failed
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}
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result = iconv(cd, &inptr, &inbytesleft, &outptr, &outbytesleft);
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if (result == (size_t)-1) {
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iconv_close(cd);
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return 20 + g_count; // iconv failed, return 20 + specific errno
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}
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if (inbytesleft != 0) {
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iconv_close(cd);
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return 40 + g_count; // Not all input was converted
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}
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size_t output_len = OUTBUF_SIZE - outbytesleft;
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if (output_len != expected_len) {
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iconv_close(cd);
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return 50 + g_count; // Output length mismatch
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}
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if (memcmp(outbuf, expected_output, output_len) != 0) {
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iconv_close(cd);
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return 60 + g_count; // Output content mismatch
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}
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if (iconv_close(cd) == -1)
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return 70 + g_count; // iconv_close failed
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// Reverse direction check: UTF-32LE back to UTF-8
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cd = iconv_open("UTF-8", "UTF-32LE");
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if (cd == (iconv_t)-1) {
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return 80 + g_count; // iconv_open failed for reverse direction
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}
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char reverse_inbuf[OUTBUF_SIZE];
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char reverse_outbuf[INBUF_SIZE];
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char* reverse_inptr = reverse_inbuf;
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char* reverse_outptr = reverse_outbuf;
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size_t reverse_inbytesleft = output_len;
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size_t reverse_outbytesleft = INBUF_SIZE;
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memcpy(reverse_inbuf, outbuf, output_len);
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result = iconv(cd, &reverse_inptr, &reverse_inbytesleft, &reverse_outptr,
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&reverse_outbytesleft);
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if (result == (size_t)-1) {
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iconv_close(cd);
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return 90 + g_count; // iconv failed for reverse direction
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}
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if (reverse_inbytesleft != 0) {
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iconv_close(cd);
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return 100 + g_count; // Not all input was converted in reverse direction
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}
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size_t reverse_output_len = INBUF_SIZE - reverse_outbytesleft;
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if (reverse_output_len != input_len) {
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iconv_close(cd);
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return 110 + g_count; // Reverse output length mismatch
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}
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if (memcmp(reverse_outbuf, input, input_len) != 0) {
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iconv_close(cd);
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return 120 + g_count; // Reverse output content mismatch
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}
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if (iconv_close(cd) == -1)
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return 130 + g_count; // iconv_close failed for reverse direction
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return 0; // Success
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}
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int main() {
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// Test case 1: Basic ASCII
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const char input1[] = "Hello, world!";
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const wchar_t expected1[] = L"Hello, world!";
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int result = check_conversion(input1, sizeof(input1) - 1, expected1,
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sizeof(expected1) - 4);
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if (result != 0)
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return result;
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// Test case 2: Non-ASCII characters and newline
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const char input2[] = "こんにちは\nWorld! ☺";
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const wchar_t expected2[] = L"こんにちは\nWorld! ☺";
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result = check_conversion(input2, sizeof(input2) - 1, expected2,
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sizeof(expected2) - 4);
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if (result != 0)
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return result;
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// Test case 3: Empty string
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const char input3[] = "";
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const wchar_t expected3[] = L"";
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result = check_conversion(input3, 0, expected3, 0);
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if (result != 0)
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return result;
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// Test case 4: String with null characters
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const char input4[] = "Hello\0World";
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const wchar_t expected4[] = L"Hello\0World";
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result = check_conversion(input4, sizeof(input4) - 1, expected4,
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sizeof(expected4) - 4);
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if (result != 0)
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return result;
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// Test case 5: Long string to test buffer handling
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char input5[INBUF_SIZE];
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wchar_t expected5[INBUF_SIZE];
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memset(input5, 'A', INBUF_SIZE - 1);
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input5[INBUF_SIZE - 1] = '\0';
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for (int i = 0; i < INBUF_SIZE - 1; i++) {
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expected5[i] = u'A';
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}
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result =
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check_conversion(input5, INBUF_SIZE - 1, expected5, (INBUF_SIZE - 1) * 4);
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if (result != 0)
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return result;
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// Test case 6: Invalid UTF-8 sequence
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const char input6[] = {0xC0, 0x80};
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result = check_conversion(input6, sizeof(input6), NULL, 0);
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if (result != 26) {
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if (errno != EILSEQ)
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return 201;
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return 200;
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}
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// Test case 7: Mixing ASCII and non-ASCII
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const char input7[] = "Hello, 世界!";
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const wchar_t expected7[] = L"Hello, 世界!";
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result = check_conversion(input7, sizeof(input7) - 1, expected7,
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sizeof(expected7) - 4);
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if (result != 0)
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return result;
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// Test case 8: Surrogate pairs
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const char input8[] = "𐐷"; // U+10437
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const wchar_t expected8[] = L"𐐷"; // This will be encoded as a surrogate pair
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result = check_conversion(input8, sizeof(input8) - 1, expected8,
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sizeof(expected8) - 4);
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if (result != 0)
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return result;
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return 0; // All tests passed
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}
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