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https://github.com/RPCS3/rpcs3.git
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Reimplement/fix PRX patches
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48296c2ba6
commit
e26ae9899c
@ -505,39 +505,26 @@ void patch_engine::append_title_patches(const std::string& title_id)
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load(m_map, get_patches_path() + title_id + "_patch.yml");
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}
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std::basic_string<u32> patch_engine::apply(const std::string& name, u8* dst)
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{
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return apply_patch<false>(name, dst, 0, 0);
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}
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std::basic_string<u32> patch_engine::apply_with_ls_check(const std::string& name, u8* dst, u32 filesz, u32 ls_addr)
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{
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return apply_patch<true>(name, dst, filesz, ls_addr);
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}
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template <bool CheckLS>
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static std::basic_string<u32> apply_modification(const patch_engine::patch_info& patch, u8* dst, u32 filesz, u32 ls_addr)
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static std::basic_string<u32> apply_modification(const patch_engine::patch_info& patch, u8* dst, u32 filesz, u32 min_addr)
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{
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std::basic_string<u32> applied;
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for (const auto& p : patch.data_list)
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{
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u32 offset = p.offset;
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u32 resval = 0;
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if constexpr (CheckLS)
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if (offset < min_addr || offset - min_addr >= filesz)
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{
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if (offset < ls_addr || offset >= (ls_addr + filesz))
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{
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// This patch is out of range for this segment
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continue;
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}
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offset -= ls_addr;
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// This patch is out of range for this segment
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continue;
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}
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offset -= min_addr;
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auto ptr = dst + offset;
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u32 resval = -1;
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switch (p.type)
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{
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case patch_type::invalid:
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@ -584,10 +571,7 @@ static std::basic_string<u32> apply_modification(const patch_engine::patch_info&
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case patch_type::be32:
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{
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*reinterpret_cast<be_t<u32, 1>*>(ptr) = static_cast<u32>(p.value.long_value);
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// Possibly an executable instruction
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if constexpr (!CheckLS)
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resval = offset;
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if (offset % 4 == 0) resval = offset;
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break;
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}
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case patch_type::bef32:
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@ -598,6 +582,14 @@ static std::basic_string<u32> apply_modification(const patch_engine::patch_info&
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case patch_type::be64:
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{
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*reinterpret_cast<be_t<u64, 1>*>(ptr) = static_cast<u64>(p.value.long_value);
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if (offset % 4)
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{
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break;
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}
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resval = offset;
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applied.push_back((offset + 7) & -4); // Two 32-bit locations
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break;
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}
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case patch_type::bef64:
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@ -607,14 +599,14 @@ static std::basic_string<u32> apply_modification(const patch_engine::patch_info&
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}
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}
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// Possibly an executable instruction
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applied.push_back(resval);
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}
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return applied;
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}
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template <bool CheckLS>
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std::basic_string<u32> patch_engine::apply_patch(const std::string& name, u8* dst, u32 filesz, u32 ls_addr)
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std::basic_string<u32> patch_engine::apply(const std::string& name, u8* dst, u32 filesz, u32 min_addr)
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{
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if (m_map.find(name) == m_map.cend())
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{
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@ -719,7 +711,7 @@ std::basic_string<u32> patch_engine::apply_patch(const std::string& name, u8* ds
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m_applied_groups.insert(patch.patch_group);
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}
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auto applied = apply_modification<CheckLS>(patch, dst, filesz, ls_addr);
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auto applied = apply_modification(patch, dst, filesz, min_addr);
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applied_total += applied;
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@ -129,16 +129,9 @@ public:
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void append_title_patches(const std::string& title_id);
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// Apply patch (returns the number of entries applied)
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std::basic_string<u32> apply(const std::string& name, u8* dst);
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// Apply patch with a check that the address exists in SPU local storage
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std::basic_string<u32> apply_with_ls_check(const std::string& name, u8* dst, u32 filesz, u32 ls_addr);
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std::basic_string<u32> apply(const std::string& name, u8* dst, u32 filesz = UINT32_MAX, u32 min_addr = 0);
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private:
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// Internal: Apply patch (returns the number of entries applied)
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template <bool CheckLS>
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std::basic_string<u32> apply_patch(const std::string& name, u8* dst, u32 filesz, u32 ls_addr);
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// Database
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patch_map m_map;
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@ -315,18 +315,18 @@ static void ppu_initialize_modules(ppu_linkage_info* link)
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ppu_loader.trace("** &0x%08X: %s (size=0x%x, align=0x%x)", variable.first, variable.second.name, variable.second.size, variable.second.align);
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// Allocate HLE variable
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if (variable.second.size >= 4096 || variable.second.align >= 4096)
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if (variable.second.size >= 0x10000 || variable.second.align >= 0x10000)
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{
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variable.second.addr = vm::alloc(variable.second.size, vm::main, std::max<u32>(variable.second.align, 0x10000));
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}
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else
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{
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const u32 next = utils::align(alloc_addr, variable.second.align);
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const u32 end = next + variable.second.size;
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const u32 end = next + variable.second.size - 1;
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if (!next || (end >> 12 != alloc_addr >> 12))
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if (!next || (end >> 16 != alloc_addr >> 16))
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{
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alloc_addr = vm::alloc(4096, vm::main);
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alloc_addr = vm::alloc(0x10000, vm::main);
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}
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else
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{
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@ -773,12 +773,12 @@ static void ppu_check_patch_spu_images(const ppu_segment& seg)
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for (const auto& prog : obj.progs)
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{
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// Apply the patch
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applied += g_fxo->get<patch_engine>()->apply_with_ls_check(hash, (elf_header + prog.p_offset), prog.p_filesz, prog.p_vaddr);
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applied += g_fxo->get<patch_engine>()->apply(hash, (elf_header + prog.p_offset), prog.p_filesz, prog.p_vaddr);
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if (!Emu.GetTitleID().empty())
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{
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// Alternative patch
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applied += g_fxo->get<patch_engine>()->apply_with_ls_check(Emu.GetTitleID() + '-' + hash, (elf_header + prog.p_offset), prog.p_filesz, prog.p_vaddr);
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applied += g_fxo->get<patch_engine>()->apply(Emu.GetTitleID() + '-' + hash, (elf_header + prog.p_offset), prog.p_filesz, prog.p_vaddr);
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}
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}
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@ -1084,21 +1084,33 @@ std::shared_ptr<lv2_prx> ppu_load_prx(const ppu_prx_object& elf, const std::stri
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sha1_finish(&sha, prx->sha1);
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// Format patch name
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std::string hash("PRX-0000000000000000000000000000000000000000");
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for (u32 i = 0; i < 20; i++)
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{
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constexpr auto pal = "0123456789abcdef";
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hash[4 + i * 2] = pal[prx->sha1[i] >> 4];
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hash[5 + i * 2] = pal[prx->sha1[i] & 15];
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}
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std::string hash = fmt::format("PRX-%s", fmt::base57(prx->sha1));
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// Apply the patch
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auto applied = g_fxo->get<patch_engine>()->apply(hash, vm::g_base_addr);
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std::basic_string<u32> applied;
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if (!Emu.GetTitleID().empty())
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for (usz i = 0; i < prx->segs.size(); i++)
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{
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// Alternative patch
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applied += g_fxo->get<patch_engine>()->apply(Emu.GetTitleID() + '-' + hash, vm::g_base_addr);
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const auto& seg = prx->segs[i];
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if (!seg.size) continue;
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const std::string hash_seg = fmt::format("%s-%u", hash, i);
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// Apply the patch
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auto _applied = g_fxo->get<patch_engine>()->apply(hash_seg, vm::get_super_ptr(seg.addr), seg.size);
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if (!Emu.GetTitleID().empty())
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{
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// Alternative patch
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_applied += g_fxo->get<patch_engine>()->apply(Emu.GetTitleID() + '-' + hash_seg, vm::get_super_ptr(seg.addr), seg.size);
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}
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// Rebase patch offsets
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std::for_each(_applied.begin(), _applied.end(), [&](u32& res) { if (res != umax) res += seg.addr; });
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applied += _applied;
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ppu_loader.success("PRX library hash: %s (<- %u)", hash_seg, _applied.size());
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}
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// Embedded SPU elf patching
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@ -1109,8 +1121,6 @@ std::shared_ptr<lv2_prx> ppu_load_prx(const ppu_prx_object& elf, const std::stri
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prx->analyse(toc, 0, end, applied);
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ppu_loader.success("PRX library hash: %s (<- %u)", hash, applied.size());
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try_spawn_ppu_if_exclusive_program(*prx);
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return prx;
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@ -385,15 +385,16 @@ extern void ppu_register_range(u32 addr, u32 size)
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return;
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}
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size = utils::align(size + addr % 0x10000, 0x10000);
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addr &= -0x10000;
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// Register executable range at
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utils::memory_commit(&ppu_ref(addr), size * 2, utils::protection::rw);
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vm::page_protect(addr, utils::align(size, 0x10000), 0, vm::page_executable);
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utils::memory_commit(&ppu_ref(addr), u64{size} * 2, utils::protection::rw);
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vm::page_protect(addr, size, 0, vm::page_executable);
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const u64 fallback = reinterpret_cast<uptr>(ppu_fallback);
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const u64 seg_base = addr;
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size &= ~3; // Loop assumes `size = n * 4`, enforce that by rounding down
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while (size)
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{
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if (g_cfg.core.ppu_decoder == ppu_decoder_type::llvm)
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