mirror of
https://github.com/RPCS3/rpcs3.git
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298 lines
5.6 KiB
C++
298 lines
5.6 KiB
C++
#include "stdafx.h"
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#include "Utilities/Config.h"
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#include "Emu/Memory/Memory.h"
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#include "Emu/System.h"
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#include "Emu/IdManager.h"
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#include "Emu/Cell/ErrorCodes.h"
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#include "sys_memory.h"
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LOG_CHANNEL(sys_memory);
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s32 sys_memory_allocate(u32 size, u64 flags, vm::ptr<u32> alloc_addr)
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{
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sys_memory.warning("sys_memory_allocate(size=0x%x, flags=0x%llx, alloc_addr=*0x%x)", size, flags, alloc_addr);
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LV2_LOCK;
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// Check allocation size
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switch(flags)
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{
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case SYS_MEMORY_PAGE_SIZE_1M:
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{
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if (size % 0x100000)
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{
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return CELL_EALIGN;
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}
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break;
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}
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case SYS_MEMORY_PAGE_SIZE_64K:
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{
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if (size % 0x10000)
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{
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return CELL_EALIGN;
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}
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break;
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}
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default:
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{
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return CELL_EINVAL;
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}
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}
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// Allocate memory
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const u32 addr =
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flags == SYS_MEMORY_PAGE_SIZE_1M ? vm::alloc(size, vm::user_space, 0x100000) :
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flags == SYS_MEMORY_PAGE_SIZE_64K ? vm::alloc(size, vm::user_space, 0x10000) :
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throw EXCEPTION("Unexpected flags");
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if (!addr)
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{
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return CELL_ENOMEM;
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}
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// Write back the start address of the allocated area
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*alloc_addr = addr;
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return CELL_OK;
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}
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s32 sys_memory_allocate_from_container(u32 size, u32 cid, u64 flags, vm::ptr<u32> alloc_addr)
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{
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sys_memory.warning("sys_memory_allocate_from_container(size=0x%x, cid=0x%x, flags=0x%llx, alloc_addr=*0x%x)", size, cid, flags, alloc_addr);
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LV2_LOCK;
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// Check if this container ID is valid
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const auto ct = idm::get<lv2_memory_container_t>(cid);
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if (!ct)
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{
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return CELL_ESRCH;
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}
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// Check allocation size
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switch (flags)
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{
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case SYS_MEMORY_PAGE_SIZE_1M:
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{
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if (size % 0x100000)
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{
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return CELL_EALIGN;
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}
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break;
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}
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case SYS_MEMORY_PAGE_SIZE_64K:
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{
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if (size % 0x10000)
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{
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return CELL_EALIGN;
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}
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break;
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}
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default:
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{
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return CELL_EINVAL;
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}
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}
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if (ct->used > ct->size)
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{
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throw EXCEPTION("Unexpected amount of memory taken (0x%x, size=0x%x)", ct->used.load(), ct->size);
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}
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// Check memory availability
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if (size > ct->size - ct->used)
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{
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return CELL_ENOMEM;
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}
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const auto area = vm::get(vm::user_space);
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// Return "physical" memory required for allocation
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area->used -= size;
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// Allocate memory
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const u32 addr =
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flags == SYS_MEMORY_PAGE_SIZE_1M ? area->alloc(size, 0x100000) :
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flags == SYS_MEMORY_PAGE_SIZE_64K ? area->alloc(size, 0x10000) :
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throw EXCEPTION("Unexpected flags");
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if (!addr)
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{
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throw EXCEPTION("Memory not allocated (ct=0x%x, size=0x%x)", cid, size);
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}
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// Store the address and size in the container
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ct->allocs.emplace(addr, size);
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ct->used += size;
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// Write back the start address of the allocated area.
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*alloc_addr = addr;
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return CELL_OK;
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}
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s32 sys_memory_free(u32 addr)
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{
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sys_memory.warning("sys_memory_free(addr=0x%x)", addr);
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LV2_LOCK;
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const auto area = vm::get(vm::user_space);
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// Check all memory containers
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for (auto& ct : idm::get_all<lv2_memory_container_t>())
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{
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auto found = ct->allocs.find(addr);
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if (found != ct->allocs.end())
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{
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const u32 size = found->second;
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if (!area->dealloc(addr))
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{
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throw EXCEPTION("Memory not deallocated (cid=0x%x, addr=0x%x, size=0x%x)", ct->id, addr, size);
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}
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// Return memory
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ct->used -= size;
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ct->allocs.erase(found);
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// Fix "physical" memory
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area->used += size;
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return CELL_OK;
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}
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}
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if (!area->dealloc(addr))
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{
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return CELL_EINVAL;
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}
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return CELL_OK;
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}
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s32 sys_memory_get_page_attribute(u32 addr, vm::ptr<sys_page_attr_t> attr)
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{
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sys_memory.error("sys_memory_get_page_attribute(addr=0x%x, attr=*0x%x)", addr, attr);
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LV2_LOCK;
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// TODO: Implement per thread page attribute setting.
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attr->attribute = 0x40000ull; // SYS_MEMORY_PROT_READ_WRITE
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attr->access_right = 0xFull; // SYS_MEMORY_ACCESS_RIGHT_ANY
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attr->page_size = 4096;
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return CELL_OK;
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}
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s32 sys_memory_get_user_memory_size(vm::ptr<sys_memory_info_t> mem_info)
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{
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sys_memory.warning("sys_memory_get_user_memory_size(mem_info=*0x%x)", mem_info);
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LV2_LOCK;
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u32 reserved = 0;
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// Check all memory containers
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for (auto& ct : idm::get_all<lv2_memory_container_t>())
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{
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reserved += ct->size;
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}
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const auto area = vm::get(vm::user_space);
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// Fetch the user memory available
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mem_info->total_user_memory = area->size - reserved;
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mem_info->available_user_memory = area->size - area->used;
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return CELL_OK;
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}
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s32 sys_memory_container_create(vm::ptr<u32> cid, u32 size)
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{
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sys_memory.warning("sys_memory_container_create(cid=*0x%x, size=0x%x)", cid, size);
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LV2_LOCK;
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// Round down to 1 MB granularity
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size &= ~0xfffff;
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if (!size)
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{
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return CELL_ENOMEM;
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}
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u32 reserved = 0;
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// Check all memory containers
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for (auto& ct : idm::get_all<lv2_memory_container_t>())
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{
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reserved += ct->size;
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}
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const auto area = vm::get(vm::user_space);
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if (area->size < reserved + size || area->size - area->used < size)
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{
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return CELL_ENOMEM;
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}
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// Create the memory container
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*cid = idm::make<lv2_memory_container_t>(size);
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return CELL_OK;
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}
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s32 sys_memory_container_destroy(u32 cid)
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{
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sys_memory.warning("sys_memory_container_destroy(cid=0x%x)", cid);
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LV2_LOCK;
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const auto ct = idm::get<lv2_memory_container_t>(cid);
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if (!ct)
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{
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return CELL_ESRCH;
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}
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// Check if some memory is not deallocated (the container cannot be destroyed in this case)
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if (ct->used)
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{
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return CELL_EBUSY;
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}
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idm::remove<lv2_memory_container_t>(cid);
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return CELL_OK;
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}
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s32 sys_memory_container_get_size(vm::ptr<sys_memory_info_t> mem_info, u32 cid)
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{
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sys_memory.warning("sys_memory_container_get_size(mem_info=*0x%x, cid=0x%x)", mem_info, cid);
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LV2_LOCK;
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const auto ct = idm::get<lv2_memory_container_t>(cid);
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if (!ct)
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{
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return CELL_ESRCH;
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}
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mem_info->total_user_memory = ct->size; // total container memory
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mem_info->available_user_memory = ct->size - ct->used; // available container memory
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return CELL_OK;
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}
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