Files
fastfetch/src/common/io/io_windows.c
T
apocelipes e85a4b9ff5 refactor(IO): clean up ffAppendFDBuffer
for 2 reasons:

- Simplify the Code.
- ffAppendFDBuffer can't make assumptions about how the read data will
  be processed, so the trim calls are inappropriate.
2023-12-22 11:49:57 +00:00

229 lines
6.5 KiB
C

#include "io.h"
#include "util/stringUtils.h"
#include <windows.h>
static void createSubfolders(const char* fileName)
{
FF_STRBUF_AUTO_DESTROY path = ffStrbufCreate();
char *token = NULL;
while((token = strchr(fileName, '/')) != NULL)
{
ffStrbufAppendNS(&path, (uint32_t)(token - fileName + 1), fileName);
CreateDirectoryA(path.chars, NULL);
fileName = token + 1;
}
}
bool ffWriteFileData(const char* fileName, size_t dataSize, const void* data)
{
HANDLE FF_AUTO_CLOSE_FD handle = CreateFileA(fileName, GENERIC_WRITE, FILE_SHARE_WRITE, NULL, CREATE_ALWAYS, FILE_ATTRIBUTE_NORMAL, NULL);
if (handle == INVALID_HANDLE_VALUE)
{
if (GetLastError() == ERROR_PATH_NOT_FOUND)
{
createSubfolders(fileName);
handle = CreateFileA(fileName, GENERIC_WRITE, FILE_SHARE_WRITE, NULL, CREATE_ALWAYS, FILE_ATTRIBUTE_NORMAL, NULL);
if (handle == INVALID_HANDLE_VALUE)
return false;
}
else
return false;
}
DWORD written;
return !!WriteFile(handle, data, (DWORD)dataSize, &written, NULL);
}
static inline void readWithLength(HANDLE handle, FFstrbuf* buffer, uint32_t length)
{
ffStrbufEnsureFixedLengthFree(buffer, length);
DWORD bytesRead = 0;
while(
length > 0 &&
ReadFile(handle, buffer->chars + buffer->length, length, &bytesRead, NULL) != FALSE &&
bytesRead > 0
) {
buffer->length += (uint32_t) bytesRead;
length -= (uint32_t) bytesRead;
}
}
static inline void readUntilEOF(HANDLE handle, FFstrbuf* buffer)
{
ffStrbufEnsureFree(buffer, 31);
uint32_t available = ffStrbufGetFree(buffer);
DWORD bytesRead = 0;
while(
ReadFile(handle, buffer->chars + buffer->length, available, &bytesRead, NULL) != FALSE &&
bytesRead > 0
) {
buffer->length += (uint32_t) bytesRead;
if((uint32_t) bytesRead == available)
ffStrbufEnsureFree(buffer, buffer->allocated - 1); // Doubles capacity every round. -1 for the null byte.
available = ffStrbufGetFree(buffer);
}
}
bool ffAppendFDBuffer(HANDLE handle, FFstrbuf* buffer)
{
LARGE_INTEGER fileSize;
if(!GetFileSizeEx(handle, &fileSize))
fileSize.QuadPart = 0;
if (fileSize.QuadPart > 0)
readWithLength(handle, buffer, (uint32_t)fileSize.QuadPart);
else
readUntilEOF(handle, buffer);
buffer->chars[buffer->length] = '\0';
return buffer->length > 0;
}
ssize_t ffReadFileData(const char* fileName, size_t dataSize, void* data)
{
HANDLE FF_AUTO_CLOSE_FD handle = CreateFileA(fileName, GENERIC_READ, FILE_SHARE_READ, NULL, OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL, NULL);
if(handle == INVALID_HANDLE_VALUE)
return -1;
return ffReadFDData(handle, dataSize, data);
}
bool ffAppendFileBuffer(const char* fileName, FFstrbuf* buffer)
{
HANDLE FF_AUTO_CLOSE_FD handle = CreateFileA(fileName, GENERIC_READ, FILE_SHARE_READ, NULL, OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL, NULL);
if(handle == INVALID_HANDLE_VALUE)
return false;
return ffAppendFDBuffer(handle, buffer);
}
bool ffPathExpandEnv(const char* in, FFstrbuf* out)
{
DWORD length = ExpandEnvironmentStringsA(in, NULL, 0);
if (length <= 1) return false;
ffStrbufClear(out);
ffStrbufEnsureFree(out, (uint32_t)length);
ExpandEnvironmentStringsA(in, out->chars, length);
out->length = (uint32_t)length - 1;
return true;
}
bool ffSuppressIO(bool suppress)
{
(void) suppress; //Not implemented.
return false;
}
void listFilesRecursively(uint32_t baseLength, FFstrbuf* folder, uint8_t indentation, const char* folderName, bool pretty)
{
uint32_t folderLength = folder->length;
if(pretty && folderName != NULL)
{
for(uint8_t i = 0; i < indentation - 1; i++)
fputs(" | ", stdout);
printf("%s/\n", folderName);
}
ffStrbufAppendC(folder, '*');
WIN32_FIND_DATAA entry;
HANDLE hFind = FindFirstFileA(folder->chars, &entry);
ffStrbufTrimRight(folder, '*');
if(hFind == INVALID_HANDLE_VALUE)
return;
do
{
if (entry.dwFileAttributes & FILE_ATTRIBUTE_DIRECTORY)
{
if(ffStrEquals(entry.cFileName, ".") || ffStrEquals(entry.cFileName, ".."))
continue;
ffStrbufSubstrBefore(folder, folderLength);
ffStrbufAppendS(folder, entry.cFileName);
ffStrbufAppendC(folder, '/');
listFilesRecursively(baseLength, folder, (uint8_t) (indentation + 1), entry.cFileName, pretty);
ffStrbufSubstrBefore(folder, folderLength);
continue;
}
if (pretty)
{
for(uint8_t i = 0; i < indentation; i++)
fputs(" | ", stdout);
}
else
{
fputs(folder->chars + baseLength, stdout);
}
puts(entry.cFileName);
} while (FindNextFileA(hFind, &entry));
FindClose(hFind);
}
void ffListFilesRecursively(const char* path, bool pretty)
{
FF_STRBUF_AUTO_DESTROY folder = ffStrbufCreateS(path);
ffStrbufEnsureEndsWithC(&folder, '/');
listFilesRecursively(folder.length, &folder, 0, NULL, pretty);
}
const char* ffGetTerminalResponse(const char* request, const char* format, ...)
{
HANDLE hInput = GetStdHandle(STD_INPUT_HANDLE);
DWORD prev_mode;
GetConsoleMode(hInput, &prev_mode);
SetConsoleMode(hInput, 0);
FlushConsoleInputBuffer(hInput);
DWORD bytes = 0;
WriteFile(GetStdHandle(STD_OUTPUT_HANDLE), request, (DWORD) strlen(request), &bytes, NULL);
while (true)
{
if (WaitForSingleObjectEx(hInput, FF_IO_TERM_RESP_WAIT_MS, TRUE) != WAIT_OBJECT_0)
{
SetConsoleMode(hInput, prev_mode);
return "WaitForSingleObject() failed or timeout";
}
// Ignore all unexpected input events
INPUT_RECORD record;
DWORD len = 0;
if (!PeekConsoleInputW(hInput, &record, 1, &len))
break;
if (
record.EventType == KEY_EVENT &&
record.Event.KeyEvent.uChar.UnicodeChar != L'\r' &&
record.Event.KeyEvent.uChar.UnicodeChar != L'\n'
)
break;
else
ReadConsoleInputW(hInput, &record, 1, &len);
}
char buffer[512];
bytes = 0;
ReadFile(hInput, buffer, sizeof(buffer) - 1, &bytes, NULL);
SetConsoleMode(hInput, prev_mode);
if(bytes <= 0)
return "ReadFile() failed";
buffer[bytes] = '\0';
va_list args;
va_start(args, format);
vsscanf(buffer, format, args);
va_end(args);
return NULL;
}