// Copyright (c) the JPEG XL Project Authors. All rights reserved. // // Use of this source code is governed by a BSD-style // license that can be found in the LICENSE file. #include "lib/jxl/enc_aux_out.h" #ifndef __STDC_FORMAT_MACROS #define __STDC_FORMAT_MACROS #endif #include #include #include #include #include // accumulate #include #include "lib/jxl/base/printf_macros.h" #include "lib/jxl/base/status.h" namespace jxl { const char* LayerName(size_t layer) { switch (layer) { case kLayerHeader: return "Headers"; case kLayerTOC: return "TOC"; case kLayerDictionary: return "Patches"; case kLayerSplines: return "Splines"; case kLayerNoise: return "Noise"; case kLayerQuant: return "Quantizer"; case kLayerModularTree: return "ModularTree"; case kLayerModularGlobal: return "ModularGlobal"; case kLayerDC: return "DC"; case kLayerModularDcGroup: return "ModularDcGroup"; case kLayerControlFields: return "ControlFields"; case kLayerOrder: return "CoeffOrder"; case kLayerAC: return "ACHistograms"; case kLayerACTokens: return "ACTokens"; case kLayerModularAcGroup: return "ModularAcGroup"; default: JXL_UNREACHABLE("Invalid layer %d\n", static_cast(layer)); } } void AuxOut::LayerTotals::Print(size_t num_inputs) const { if (JXL_DEBUG_V_LEVEL > 0) { printf("%10" PRId64, static_cast(total_bits)); if (histogram_bits != 0) { printf(" [c/i:%6.2f | hst:%8" PRId64 " | ex:%8" PRId64 " | h+c+e:%12.3f", num_clustered_histograms * 1.0 / num_inputs, static_cast(histogram_bits >> 3), static_cast(extra_bits >> 3), (histogram_bits + clustered_entropy + extra_bits) / 8.0); printf("]"); } printf("\n"); } } void AuxOut::Assimilate(const AuxOut& victim) { for (size_t i = 0; i < layers.size(); ++i) { layers[i].Assimilate(victim.layers[i]); } num_blocks += victim.num_blocks; num_small_blocks += victim.num_small_blocks; num_dct4x8_blocks += victim.num_dct4x8_blocks; num_afv_blocks += victim.num_afv_blocks; num_dct8_blocks += victim.num_dct8_blocks; num_dct8x16_blocks += victim.num_dct8x16_blocks; num_dct8x32_blocks += victim.num_dct8x32_blocks; num_dct16_blocks += victim.num_dct16_blocks; num_dct16x32_blocks += victim.num_dct16x32_blocks; num_dct32_blocks += victim.num_dct32_blocks; num_dct32x64_blocks += victim.num_dct32x64_blocks; num_dct64_blocks += victim.num_dct64_blocks; num_butteraugli_iters += victim.num_butteraugli_iters; } void AuxOut::Print(size_t num_inputs) const { if (JXL_DEBUG_V_LEVEL > 0) { if (num_inputs == 0) return; LayerTotals all_layers; for (size_t i = 0; i < layers.size(); ++i) { all_layers.Assimilate(layers[i]); } printf("Average butteraugli iters: %10.2f\n", num_butteraugli_iters * 1.0 / num_inputs); for (size_t i = 0; i < layers.size(); ++i) { if (layers[i].total_bits != 0) { printf("Total layer bits %-10s\t", LayerName(i)); printf("%10f%%", 100.0 * layers[i].total_bits / all_layers.total_bits); layers[i].Print(num_inputs); } } printf("Total image size "); all_layers.Print(num_inputs); size_t total_blocks = 0; size_t total_positions = 0; if (total_blocks != 0 && total_positions != 0) { printf("\n\t\t Blocks\t\tPositions\t\t\tBlocks/Position\n"); printf(" Total:\t\t %7" PRIuS "\t\t %7" PRIuS " \t\t\t%10f%%\n\n", total_blocks, total_positions, 100.0 * total_blocks / total_positions); } } } } // namespace jxl