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	log: replace all NGLOG with LOG
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					 152 changed files with 1541 additions and 1541 deletions
				
			
		|  | @ -46,7 +46,7 @@ public: | |||
| std::vector<u8> EncryptSignCCM(const std::vector<u8>& pdata, const CCMNonce& nonce, | ||||
|                                size_t slot_id) { | ||||
|     if (!IsNormalKeyAvailable(slot_id)) { | ||||
|         NGLOG_ERROR(HW_AES, "Key slot {} not available. Will use zero key.", slot_id); | ||||
|         LOG_ERROR(HW_AES, "Key slot {} not available. Will use zero key.", slot_id); | ||||
|     } | ||||
|     const AESKey normal = GetNormalKey(slot_id); | ||||
|     std::vector<u8> cipher(pdata.size() + CCM_MAC_SIZE); | ||||
|  | @ -59,7 +59,7 @@ std::vector<u8> EncryptSignCCM(const std::vector<u8>& pdata, const CCMNonce& non | |||
|                                  new CryptoPP::AuthenticatedEncryptionFilter( | ||||
|                                      e, new CryptoPP::ArraySink(cipher.data(), cipher.size()))); | ||||
|     } catch (const CryptoPP::Exception& e) { | ||||
|         NGLOG_ERROR(HW_AES, "FAILED with: {}", e.what()); | ||||
|         LOG_ERROR(HW_AES, "FAILED with: {}", e.what()); | ||||
|     } | ||||
|     return cipher; | ||||
| } | ||||
|  | @ -67,7 +67,7 @@ std::vector<u8> EncryptSignCCM(const std::vector<u8>& pdata, const CCMNonce& non | |||
| std::vector<u8> DecryptVerifyCCM(const std::vector<u8>& cipher, const CCMNonce& nonce, | ||||
|                                  size_t slot_id) { | ||||
|     if (!IsNormalKeyAvailable(slot_id)) { | ||||
|         NGLOG_ERROR(HW_AES, "Key slot {} not available. Will use zero key.", slot_id); | ||||
|         LOG_ERROR(HW_AES, "Key slot {} not available. Will use zero key.", slot_id); | ||||
|     } | ||||
|     const AESKey normal = GetNormalKey(slot_id); | ||||
|     const std::size_t pdata_size = cipher.size() - CCM_MAC_SIZE; | ||||
|  | @ -81,11 +81,11 @@ std::vector<u8> DecryptVerifyCCM(const std::vector<u8>& cipher, const CCMNonce& | |||
|             d, new CryptoPP::ArraySink(pdata.data(), pdata_size)); | ||||
|         CryptoPP::ArraySource as(cipher.data(), cipher.size(), true, new CryptoPP::Redirector(df)); | ||||
|         if (!df.GetLastResult()) { | ||||
|             NGLOG_ERROR(HW_AES, "FAILED"); | ||||
|             LOG_ERROR(HW_AES, "FAILED"); | ||||
|             return {}; | ||||
|         } | ||||
|     } catch (const CryptoPP::Exception& e) { | ||||
|         NGLOG_ERROR(HW_AES, "FAILED with: {}", e.what()); | ||||
|         LOG_ERROR(HW_AES, "FAILED with: {}", e.what()); | ||||
|         return {}; | ||||
|     } | ||||
|     return pdata; | ||||
|  |  | |||
|  | @ -91,7 +91,7 @@ void LoadPresetKeys() { | |||
|         std::vector<std::string> parts; | ||||
|         Common::SplitString(line, '=', parts); | ||||
|         if (parts.size() != 2) { | ||||
|             NGLOG_ERROR(HW_AES, "Failed to parse {}", line); | ||||
|             LOG_ERROR(HW_AES, "Failed to parse {}", line); | ||||
|             continue; | ||||
|         } | ||||
| 
 | ||||
|  | @ -100,7 +100,7 @@ void LoadPresetKeys() { | |||
|         try { | ||||
|             key = HexToKey(parts[1]); | ||||
|         } catch (const std::logic_error& e) { | ||||
|             NGLOG_ERROR(HW_AES, "Invalid key {}: {}", parts[1], e.what()); | ||||
|             LOG_ERROR(HW_AES, "Invalid key {}: {}", parts[1], e.what()); | ||||
|             continue; | ||||
|         } | ||||
| 
 | ||||
|  | @ -112,12 +112,12 @@ void LoadPresetKeys() { | |||
|         size_t slot_id; | ||||
|         char key_type; | ||||
|         if (std::sscanf(name.c_str(), "slot0x%zXKey%c", &slot_id, &key_type) != 2) { | ||||
|             NGLOG_ERROR(HW_AES, "Invalid key name {}", name); | ||||
|             LOG_ERROR(HW_AES, "Invalid key name {}", name); | ||||
|             continue; | ||||
|         } | ||||
| 
 | ||||
|         if (slot_id >= MaxKeySlotID) { | ||||
|             NGLOG_ERROR(HW_AES, "Out of range slot ID {:#X}", slot_id); | ||||
|             LOG_ERROR(HW_AES, "Out of range slot ID {:#X}", slot_id); | ||||
|             continue; | ||||
|         } | ||||
| 
 | ||||
|  | @ -132,7 +132,7 @@ void LoadPresetKeys() { | |||
|             key_slots.at(slot_id).SetNormalKey(key); | ||||
|             break; | ||||
|         default: | ||||
|             NGLOG_ERROR(HW_AES, "Invalid key type {}", key_type); | ||||
|             LOG_ERROR(HW_AES, "Invalid key type {}", key_type); | ||||
|             break; | ||||
|         } | ||||
|     } | ||||
|  |  | |||
|  | @ -40,7 +40,7 @@ inline void Read(T& var, const u32 raw_addr) { | |||
| 
 | ||||
|     // Reads other than u32 are untested, so I'd rather have them abort than silently fail
 | ||||
|     if (index >= Regs::NumIds() || !std::is_same<T, u32>::value) { | ||||
|         NGLOG_ERROR(HW_GPU, "unknown Read{} @ {:#010X}", sizeof(var) * 8, addr); | ||||
|         LOG_ERROR(HW_GPU, "unknown Read{} @ {:#010X}", sizeof(var) * 8, addr); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|  | @ -65,7 +65,7 @@ static Math::Vec4<u8> DecodePixel(Regs::PixelFormat input_format, const u8* src_ | |||
|         return Color::DecodeRGBA4(src_pixel); | ||||
| 
 | ||||
|     default: | ||||
|         NGLOG_ERROR(HW_GPU, "Unknown source framebuffer format {:x}", | ||||
|         LOG_ERROR(HW_GPU, "Unknown source framebuffer format {:x}", | ||||
|                     static_cast<u32>(input_format)); | ||||
|         return {0, 0, 0, 0}; | ||||
|     } | ||||
|  | @ -80,17 +80,17 @@ static void MemoryFill(const Regs::MemoryFillConfig& config) { | |||
| 
 | ||||
|     // TODO: do hwtest with these cases
 | ||||
|     if (!Memory::IsValidPhysicalAddress(start_addr)) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "invalid start address {:#010X}", start_addr); | ||||
|         LOG_CRITICAL(HW_GPU, "invalid start address {:#010X}", start_addr); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|     if (!Memory::IsValidPhysicalAddress(end_addr)) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "invalid end address {:#010X}", end_addr); | ||||
|         LOG_CRITICAL(HW_GPU, "invalid end address {:#010X}", end_addr); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|     if (end_addr <= start_addr) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "invalid memory range from {:#010X} to {:#010X}", start_addr, | ||||
|         LOG_CRITICAL(HW_GPU, "invalid memory range from {:#010X} to {:#010X}", start_addr, | ||||
|                        end_addr); | ||||
|         return; | ||||
|     } | ||||
|  | @ -133,32 +133,32 @@ static void DisplayTransfer(const Regs::DisplayTransferConfig& config) { | |||
| 
 | ||||
|     // TODO: do hwtest with these cases
 | ||||
|     if (!Memory::IsValidPhysicalAddress(src_addr)) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "invalid input address {:#010X}", src_addr); | ||||
|         LOG_CRITICAL(HW_GPU, "invalid input address {:#010X}", src_addr); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|     if (!Memory::IsValidPhysicalAddress(dst_addr)) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "invalid output address {:#010X}", dst_addr); | ||||
|         LOG_CRITICAL(HW_GPU, "invalid output address {:#010X}", dst_addr); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|     if (config.input_width == 0) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "zero input width"); | ||||
|         LOG_CRITICAL(HW_GPU, "zero input width"); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|     if (config.input_height == 0) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "zero input height"); | ||||
|         LOG_CRITICAL(HW_GPU, "zero input height"); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|     if (config.output_width == 0) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "zero output width"); | ||||
|         LOG_CRITICAL(HW_GPU, "zero output width"); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|     if (config.output_height == 0) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "zero output height"); | ||||
|         LOG_CRITICAL(HW_GPU, "zero output height"); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|  | @ -169,14 +169,14 @@ static void DisplayTransfer(const Regs::DisplayTransferConfig& config) { | |||
|     u8* dst_pointer = Memory::GetPhysicalPointer(dst_addr); | ||||
| 
 | ||||
|     if (config.scaling > config.ScaleXY) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "Unimplemented display transfer scaling mode {}", | ||||
|         LOG_CRITICAL(HW_GPU, "Unimplemented display transfer scaling mode {}", | ||||
|                        config.scaling.Value()); | ||||
|         UNIMPLEMENTED(); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|     if (config.input_linear && config.scaling != config.NoScale) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "Scaling is only implemented on tiled input"); | ||||
|         LOG_CRITICAL(HW_GPU, "Scaling is only implemented on tiled input"); | ||||
|         UNIMPLEMENTED(); | ||||
|         return; | ||||
|     } | ||||
|  | @ -295,7 +295,7 @@ static void DisplayTransfer(const Regs::DisplayTransferConfig& config) { | |||
|                 break; | ||||
| 
 | ||||
|             default: | ||||
|                 NGLOG_ERROR(HW_GPU, "Unknown destination framebuffer format {:x}", | ||||
|                 LOG_ERROR(HW_GPU, "Unknown destination framebuffer format {:x}", | ||||
|                             static_cast<u32>(config.output_format.Value())); | ||||
|                 break; | ||||
|             } | ||||
|  | @ -309,12 +309,12 @@ static void TextureCopy(const Regs::DisplayTransferConfig& config) { | |||
| 
 | ||||
|     // TODO: do hwtest with invalid addresses
 | ||||
|     if (!Memory::IsValidPhysicalAddress(src_addr)) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "invalid input address {:#010X}", src_addr); | ||||
|         LOG_CRITICAL(HW_GPU, "invalid input address {:#010X}", src_addr); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|     if (!Memory::IsValidPhysicalAddress(dst_addr)) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "invalid output address {:#010X}", dst_addr); | ||||
|         LOG_CRITICAL(HW_GPU, "invalid output address {:#010X}", dst_addr); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|  | @ -327,7 +327,7 @@ static void TextureCopy(const Regs::DisplayTransferConfig& config) { | |||
|     u32 remaining_size = Common::AlignDown(config.texture_copy.size, 16); | ||||
| 
 | ||||
|     if (remaining_size == 0) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "zero size. Real hardware freezes on this."); | ||||
|         LOG_CRITICAL(HW_GPU, "zero size. Real hardware freezes on this."); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|  | @ -340,12 +340,12 @@ static void TextureCopy(const Regs::DisplayTransferConfig& config) { | |||
|     u32 output_width = output_gap == 0 ? remaining_size : config.texture_copy.output_width * 16; | ||||
| 
 | ||||
|     if (input_width == 0) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "zero input width. Real hardware freezes on this."); | ||||
|         LOG_CRITICAL(HW_GPU, "zero input width. Real hardware freezes on this."); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|     if (output_width == 0) { | ||||
|         NGLOG_CRITICAL(HW_GPU, "zero output width. Real hardware freezes on this."); | ||||
|         LOG_CRITICAL(HW_GPU, "zero output width. Real hardware freezes on this."); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|  | @ -392,7 +392,7 @@ inline void Write(u32 addr, const T data) { | |||
| 
 | ||||
|     // Writes other than u32 are untested, so I'd rather have them abort than silently fail
 | ||||
|     if (index >= Regs::NumIds() || !std::is_same<T, u32>::value) { | ||||
|         NGLOG_ERROR(HW_GPU, "unknown Write{} {:#010X} @ {:#010X}", sizeof(data) * 8, (u32)data, | ||||
|         LOG_ERROR(HW_GPU, "unknown Write{} {:#010X} @ {:#010X}", sizeof(data) * 8, (u32)data, | ||||
|                     addr); | ||||
|         return; | ||||
|     } | ||||
|  | @ -409,7 +409,7 @@ inline void Write(u32 addr, const T data) { | |||
| 
 | ||||
|         if (config.trigger) { | ||||
|             MemoryFill(config); | ||||
|             NGLOG_TRACE(HW_GPU, "MemoryFill from {:#010X} to {:#010X}", config.GetStartAddress(), | ||||
|             LOG_TRACE(HW_GPU, "MemoryFill from {:#010X} to {:#010X}", config.GetStartAddress(), | ||||
|                         config.GetEndAddress()); | ||||
| 
 | ||||
|             // It seems that it won't signal interrupt if "address_start" is zero.
 | ||||
|  | @ -442,7 +442,7 @@ inline void Write(u32 addr, const T data) { | |||
| 
 | ||||
|             if (config.is_texture_copy) { | ||||
|                 TextureCopy(config); | ||||
|                 NGLOG_TRACE(HW_GPU, | ||||
|                 LOG_TRACE(HW_GPU, | ||||
|                             "TextureCopy: {:#X} bytes from {:#010X}({}+{})-> " | ||||
|                             "{:#010X}({}+{}), flags {:#010X}", | ||||
|                             config.texture_copy.size, config.GetPhysicalInputAddress(), | ||||
|  | @ -452,7 +452,7 @@ inline void Write(u32 addr, const T data) { | |||
|                             config.texture_copy.output_gap * 16, config.flags); | ||||
|             } else { | ||||
|                 DisplayTransfer(config); | ||||
|                 NGLOG_TRACE(HW_GPU, | ||||
|                 LOG_TRACE(HW_GPU, | ||||
|                             "DisplayTransfer: {:#010X}({}x{})-> " | ||||
|                             "{:#010X}({}x{}), dst format {:x}, flags {:#010X}", | ||||
|                             config.GetPhysicalInputAddress(), config.input_width.Value(), | ||||
|  | @ -561,12 +561,12 @@ void Init() { | |||
|     vblank_event = CoreTiming::RegisterEvent("GPU::VBlankCallback", VBlankCallback); | ||||
|     CoreTiming::ScheduleEvent(frame_ticks, vblank_event); | ||||
| 
 | ||||
|     NGLOG_DEBUG(HW_GPU, "initialized OK"); | ||||
|     LOG_DEBUG(HW_GPU, "initialized OK"); | ||||
| } | ||||
| 
 | ||||
| /// Shutdown hardware
 | ||||
| void Shutdown() { | ||||
|     NGLOG_DEBUG(HW_GPU, "shutdown OK"); | ||||
|     LOG_DEBUG(HW_GPU, "shutdown OK"); | ||||
| } | ||||
| 
 | ||||
| } // namespace GPU
 | ||||
|  |  | |||
|  | @ -36,7 +36,7 @@ inline void Read(T& var, const u32 addr) { | |||
|         LCD::Read(var, addr); | ||||
|         break; | ||||
|     default: | ||||
|         NGLOG_ERROR(HW_Memory, "unknown Read{} @ {:#010X}", sizeof(var) * 8, addr); | ||||
|         LOG_ERROR(HW_Memory, "unknown Read{} @ {:#010X}", sizeof(var) * 8, addr); | ||||
|     } | ||||
| } | ||||
| 
 | ||||
|  | @ -65,7 +65,7 @@ inline void Write(u32 addr, const T data) { | |||
|         LCD::Write(addr, data); | ||||
|         break; | ||||
|     default: | ||||
|         NGLOG_ERROR(HW_Memory, "unknown Write{} {:#010X} @ {:#010X}", sizeof(data) * 8, (u32)data, | ||||
|         LOG_ERROR(HW_Memory, "unknown Write{} {:#010X} @ {:#010X}", sizeof(data) * 8, (u32)data, | ||||
|                     addr); | ||||
|     } | ||||
| } | ||||
|  | @ -90,13 +90,13 @@ void Init() { | |||
|     AES::InitKeys(); | ||||
|     GPU::Init(); | ||||
|     LCD::Init(); | ||||
|     NGLOG_DEBUG(HW, "initialized OK"); | ||||
|     LOG_DEBUG(HW, "initialized OK"); | ||||
| } | ||||
| 
 | ||||
| /// Shutdown hardware
 | ||||
| void Shutdown() { | ||||
|     GPU::Shutdown(); | ||||
|     LCD::Shutdown(); | ||||
|     NGLOG_DEBUG(HW, "shutdown OK"); | ||||
|     LOG_DEBUG(HW, "shutdown OK"); | ||||
| } | ||||
| } // namespace HW
 | ||||
|  |  | |||
|  | @ -21,7 +21,7 @@ inline void Read(T& var, const u32 raw_addr) { | |||
| 
 | ||||
|     // Reads other than u32 are untested, so I'd rather have them abort than silently fail
 | ||||
|     if (index >= 0x400 || !std::is_same<T, u32>::value) { | ||||
|         NGLOG_ERROR(HW_LCD, "unknown Read{} @ {:#010X}", sizeof(var) * 8, addr); | ||||
|         LOG_ERROR(HW_LCD, "unknown Read{} @ {:#010X}", sizeof(var) * 8, addr); | ||||
|         return; | ||||
|     } | ||||
| 
 | ||||
|  | @ -35,7 +35,7 @@ inline void Write(u32 addr, const T data) { | |||
| 
 | ||||
|     // Writes other than u32 are untested, so I'd rather have them abort than silently fail
 | ||||
|     if (index >= 0x400 || !std::is_same<T, u32>::value) { | ||||
|         NGLOG_ERROR(HW_LCD, "unknown Write{} {:#010X} @ {:#010X}", sizeof(data) * 8, (u32)data, | ||||
|         LOG_ERROR(HW_LCD, "unknown Write{} {:#010X} @ {:#010X}", sizeof(data) * 8, (u32)data, | ||||
|                     addr); | ||||
|         return; | ||||
|     } | ||||
|  | @ -66,12 +66,12 @@ template void Write<u8>(u32 addr, const u8 data); | |||
| /// Initialize hardware
 | ||||
| void Init() { | ||||
|     memset(&g_regs, 0, sizeof(g_regs)); | ||||
|     NGLOG_DEBUG(HW_LCD, "initialized OK"); | ||||
|     LOG_DEBUG(HW_LCD, "initialized OK"); | ||||
| } | ||||
| 
 | ||||
| /// Shutdown hardware
 | ||||
| void Shutdown() { | ||||
|     NGLOG_DEBUG(HW_LCD, "shutdown OK"); | ||||
|     LOG_DEBUG(HW_LCD, "shutdown OK"); | ||||
| } | ||||
| 
 | ||||
| } // namespace LCD
 | ||||
|  |  | |||
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