Files
Xenia-Canary/src/xenia/kernel/fs/devices/disc_image_entry.cc
2014-01-19 02:05:51 -08:00

152 lines
4.5 KiB
C++

/**
******************************************************************************
* Xenia : Xbox 360 Emulator Research Project *
******************************************************************************
* Copyright 2013 Ben Vanik. All rights reserved. *
* Released under the BSD license - see LICENSE in the root for more details. *
******************************************************************************
*/
#include <xenia/kernel/fs/devices/disc_image_entry.h>
#include <xenia/kernel/fs/gdfx.h>
#include <xenia/kernel/fs/devices/disc_image_file.h>
using namespace xe;
using namespace xe::kernel;
using namespace xe::kernel::fs;
namespace {
class DiscImageMemoryMapping : public MemoryMapping {
public:
DiscImageMemoryMapping(uint8_t* address, size_t length, xe_mmap_ref mmap) :
MemoryMapping(address, length) {
mmap_ = xe_mmap_retain(mmap);
}
virtual ~DiscImageMemoryMapping() {
xe_mmap_release(mmap_);
}
private:
xe_mmap_ref mmap_;
};
}
DiscImageEntry::DiscImageEntry(Type type, Device* device, const char* path,
xe_mmap_ref mmap, GDFXEntry* gdfx_entry) :
gdfx_entry_(gdfx_entry),
gdfx_entry_iterator_(gdfx_entry->children.end()),
Entry(type, device, path) {
mmap_ = xe_mmap_retain(mmap);
}
DiscImageEntry::~DiscImageEntry() {
xe_mmap_release(mmap_);
}
X_STATUS DiscImageEntry::QueryInfo(XFileInfo* out_info) {
XEASSERTNOTNULL(out_info);
out_info->creation_time = 0;
out_info->last_access_time = 0;
out_info->last_write_time = 0;
out_info->change_time = 0;
out_info->allocation_size = 2048;
out_info->file_length = gdfx_entry_->size;
out_info->attributes = gdfx_entry_->attributes;
return X_STATUS_SUCCESS;
}
X_STATUS DiscImageEntry::QueryDirectory(
XDirectoryInfo* out_info, size_t length, const char* file_name, bool restart) {
XEASSERTNOTNULL(out_info);
if (restart == true && gdfx_entry_iterator_ != gdfx_entry_->children.end()) {
gdfx_entry_iterator_ = gdfx_entry_->children.end();
}
if (gdfx_entry_iterator_ == gdfx_entry_->children.end()) {
gdfx_entry_iterator_ = gdfx_entry_->children.begin();
if (gdfx_entry_iterator_ == gdfx_entry_->children.end()) {
return X_STATUS_UNSUCCESSFUL;
}
} else {
++gdfx_entry_iterator_;
if (gdfx_entry_iterator_ == gdfx_entry_->children.end()) {
return X_STATUS_UNSUCCESSFUL;
}
}
auto current_buf = (uint8_t*)out_info;
auto end = current_buf + length;
XDirectoryInfo* current = (XDirectoryInfo*)current_buf;
if (((uint8_t*)&current->file_name[0]) + xestrlena((*gdfx_entry_iterator_)->name.c_str()) > end) {
gdfx_entry_iterator_ = gdfx_entry_->children.end();
return X_STATUS_UNSUCCESSFUL;
}
do {
auto entry = *gdfx_entry_iterator_;
auto file_name = entry->name.c_str();
size_t file_name_length = xestrlena(file_name);
if (((uint8_t*)&((XDirectoryInfo*)current_buf)->file_name[0]) + file_name_length > end) {
break;
}
current = (XDirectoryInfo*)current_buf;
current->file_index = 0xCDCDCDCD;
current->creation_time = 0;
current->last_access_time = 0;
current->last_write_time = 0;
current->change_time = 0;
current->end_of_file = entry->size;
current->allocation_size = 2048;
current->attributes = (X_FILE_ATTRIBUTES)entry->attributes;
current->file_name_length = (uint32_t)file_name_length;
memcpy(current->file_name, file_name, file_name_length);
auto next_buf = (((uint8_t*)&current->file_name[0]) + file_name_length);
next_buf += 8 - ((uint8_t)next_buf % 8);
current->next_entry_offset = (uint32_t)(next_buf - current_buf);
current_buf = next_buf;
} while (current_buf < end &&
(++gdfx_entry_iterator_) != gdfx_entry_->children.end());
current->next_entry_offset = 0;
return X_STATUS_SUCCESS;
}
MemoryMapping* DiscImageEntry::CreateMemoryMapping(
xe_file_mode file_mode, const size_t offset, const size_t length) {
if (file_mode & kXEFileModeWrite) {
// Only allow reads.
return NULL;
}
size_t real_offset = gdfx_entry_->offset + offset;
size_t real_length = length ?
MIN(length, gdfx_entry_->size) : gdfx_entry_->size;
return new DiscImageMemoryMapping(
xe_mmap_get_addr(mmap_) + real_offset,
real_length,
mmap_);
}
X_STATUS DiscImageEntry::Open(
KernelState* kernel_state,
uint32_t desired_access, bool async,
XFile** out_file) {
*out_file = new DiscImageFile(kernel_state, desired_access, this);
return X_STATUS_SUCCESS;
}