mirror of
https://github.com/AndroidAudioMods/ViPERFX_RE.git
synced 2024-12-22 22:47:25 +08:00
Fixed SoftwareLimiter crash on 64 bit devices
More cleanup is due, but will suffice for now.
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8eed46db09
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@ -2,14 +2,14 @@ cmake_minimum_required(VERSION 3.16.3)
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set(CMAKE_CXX_COMPILER_VERSION 20)
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# NDK Settings
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#set(ANDROID_ABI arm64-v8a)
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set(ANDROID_ABI armeabi-v7a)
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set(ANDROID_ARM_NEON true)
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set(ANDROID_PLATFORM android-24)
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#add_compile_definitions(ANDROID_ABI=arm64-v8a)
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#add_compile_definitions(ANDROID_ABI=armeabi-v7a)
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#add_compile_definitions(ANDROID_ARM_NEON=true)
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#add_compile_definitions(ANDROID_PLATFORM=android-24)
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project("ViPER4Android")
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add_compile_definitions(VERSION_CODE=20221231)
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add_compile_definitions(VERSION_NAME="0.1.0")
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add_compile_definitions(VERSION_CODE=20230311)
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add_compile_definitions(VERSION_NAME="0.3.0")
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# FFTS
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add_subdirectory(src/viper/ffts)
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@ -15,59 +15,47 @@ SoftwareLimiter::SoftwareLimiter() {
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float SoftwareLimiter::Process(float sample) {
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bool bVar1;
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float *pfVar2;
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uint uVar3;
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uint uVar4;
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int iVar5;
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uint uVar6;
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uint *puVar7;
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uint uVar8;
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float fVar9;
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float fVar10;
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float gate;
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float abs_sample;
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gate = this->gate;
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abs_sample = std::abs(sample);
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if (abs_sample < gate) {
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if (abs_sample < this->gate) {
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if (this->ready) goto LAB_0006d86c;
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uVar8 = this->unknown4;
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}
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else {
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if (!this->ready) {
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iVar5 = 0x200;
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pfVar2 = this->arr512;
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do {
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iVar5 = iVar5 + -1;
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*pfVar2 = 0.0;
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pfVar2 = pfVar2 + 1;
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} while (iVar5 != 0);
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}
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memset(this->arr512, 0, sizeof(this->arr512));
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this->ready = true;
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}
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LAB_0006d86c:
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uVar3 = 8;
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puVar7 = &this->unknown4;
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uVar8 = *puVar7;
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uVar8 = this->unknown4;
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uVar4 = uVar8;
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do {
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iVar5 = 2 << (uVar3 & 0xff);
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uVar6 = uVar4 ^ 1;
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puVar7[uVar4 - iVar5] = (uint)abs_sample;
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uVar4 = (int)uVar4 >> 1;
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if (abs_sample < (float)puVar7[uVar6 - iVar5]) {
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abs_sample = (float)puVar7[uVar6 - iVar5];
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this->arr512[512 + uVar4 - iVar5] = abs_sample;
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uVar4 = uVar4 / 2;
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if (abs_sample < this->arr512[512 + uVar6 - iVar5]) {
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abs_sample = this->arr512[512 + uVar6 - iVar5];
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}
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uVar3 = uVar3 - 1;
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} while (uVar3 != 0);
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gate = this->gate;
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if (gate < abs_sample) {
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if (this->gate < abs_sample) {
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bVar1 = this->ready;
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fVar10 = this->unknown1;
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uVar4 = uVar8 + 1 & 0xff;
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uVar4 = (uVar8 + 1) % 256;
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this->arr256[uVar8] = sample;
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this->unknown4 = uVar4;
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if (bVar1) {
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fVar10 = gate / abs_sample;
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fVar10 = this->gate / abs_sample;
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}
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abs_sample = this->arr256[uVar4];
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goto LAB_0006d8fc;
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@ -76,7 +64,7 @@ LAB_0006d86c:
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}
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fVar10 = this->unknown1;
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this->arr256[uVar8] = sample;
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uVar8 = uVar8 + 1 & 0xff;
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uVar8 = (uVar8 + 1) % 256;
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this->unknown4 = uVar8;
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abs_sample = this->arr256[uVar8];
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LAB_0006d8fc:
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@ -95,10 +83,10 @@ LAB_0006d8fc:
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}
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fVar9 = abs_sample * fVar9;
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fVar10 = std::abs(fVar9);
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if (gate <= fVar10) {
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fVar9 = gate / std::abs(abs_sample);
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if (this->gate <= fVar10) {
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fVar9 = this->gate / std::abs(abs_sample);
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}
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if (gate <= fVar10) {
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if (this->gate <= fVar10) {
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this->unknown2 = fVar9;
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fVar9 = abs_sample * fVar9;
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}
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