L L4D2node

ExtractSingleFrame

0x00b9c150 · 2764 bytes · __cdecl

_Z18ExtractSingleFramehPhRS_R10QuaternionR6VectorbPK19mstudiolinearbone_ti

Decompiled

undefined (8 params)

/* ExtractSingleFrame(unsigned char, unsigned char*, unsigned char*&, Quaternion&, Vector&, bool,
   mstudiolinearbone_t const*, int) */

uchar * ExtractSingleFrame(uchar param_1,uchar *param_2,uchar **param_3,Quaternion *param_4,
                          Vector *param_5,bool param_6,mstudiolinearbone_t *param_7,int param_8)

{
  int iVar1;
  undefined4 uVar2;
  undefined4 uVar3;
  undefined4 uVar4;
  uchar uVar5;
  ushort uVar6;
  ushort *puVar7;
  byte bVar8;
  mstudiolinearbone_t *pmVar9;
  float *pfVar10;
  float *pfVar11;
  float fVar12;
  float fVar13;
  float fVar14;
  float fVar15;
  float local_3c [4];
  float local_2c [7];
  
  if ((param_1 & 8) == 0) {
    if ((char)param_1 < '\0') {
      iVar1 = (uint)(param_2[3] >> 7) + (uint)(param_2[1] >> 7) * 2;
      local_3c[iVar1] = (float)(int)((*(ushort *)param_2 & 0x7fff) - 0x4000) * 4.3162985e-05;
      pfVar11 = (float *)((int)local_3c + (iVar1 * 4 + 4U & 0xc));
      uVar6 = *(ushort *)(param_2 + 4);
      *pfVar11 = (float)(int)((*(ushort *)(param_2 + 2) & 0x7fff) - 0x4000) * 4.3162985e-05;
      fVar15 = (float)(int)((uVar6 & 0x7fff) - 0x4000) * 4.3162985e-05;
      local_3c[iVar1 + 2U & 3] = fVar15;
      pfVar10 = (float *)((int)local_3c + (iVar1 * 4 + 0xcU & 0xc));
      fVar13 = *pfVar11;
      uVar5 = param_2[5];
      fVar14 = local_3c[iVar1];
      fVar13 = SQRT(((1.0 - fVar15 * fVar15) - fVar14 * fVar14) - fVar13 * fVar13);
      *pfVar10 = fVar13;
      if ((char)uVar5 < '\0') {
        *pfVar10 = -fVar13;
      }
      param_2 = param_2 + 6;
      *(float *)param_4 = local_3c[0];
      *(float *)(param_4 + 4) = local_3c[1];
      *(float *)(param_4 + 8) = local_3c[2];
      *(float *)(param_4 + 0xc) = local_3c[3];
    }
    else if ((param_1 & 2) == 0) {
      if ((param_1 & 0x40) == 0) {
        if (param_7 != (mstudiolinearbone_t *)0x0) {
          if (param_6) {
            *(undefined4 *)param_4 = 0;
            *(undefined4 *)(param_4 + 4) = 0;
            *(undefined4 *)(param_4 + 8) = 0;
            *(undefined4 *)(param_4 + 0xc) = 0x3f800000;
          }
          else {
            pmVar9 = param_7 + param_8 * 0x10 + *(int *)(param_7 + 0x10);
            uVar2 = *(undefined4 *)(pmVar9 + 4);
            uVar3 = *(undefined4 *)(pmVar9 + 8);
            uVar4 = *(undefined4 *)(pmVar9 + 0xc);
            *(undefined4 *)param_4 = *(undefined4 *)pmVar9;
            *(undefined4 *)(param_4 + 4) = uVar2;
            *(undefined4 *)(param_4 + 8) = uVar3;
            *(undefined4 *)(param_4 + 0xc) = uVar4;
          }
        }
      }
      else {
        puVar7 = (ushort *)*param_3;
        iVar1 = (uint)(*(byte *)((int)puVar7 + 3) >> 7) +
                (uint)(*(byte *)((int)puVar7 + 1) >> 7) * 2;
        local_2c[iVar1] = (float)(int)((*puVar7 & 0x7fff) - 0x4000) * 4.3162985e-05;
        pfVar11 = (float *)((int)local_2c + (iVar1 * 4 + 4U & 0xc));
        *pfVar11 = (float)(int)((puVar7[1] & 0x7fff) - 0x4000) * 4.3162985e-05;
        fVar15 = (float)(int)((puVar7[2] & 0x7fff) - 0x4000) * 4.3162985e-05;
        local_2c[iVar1 + 2U & 3] = fVar15;
        pfVar10 = (float *)((int)local_2c + (iVar1 * 4 + 0xcU & 0xc));
        fVar13 = *pfVar11;
        fVar14 = local_2c[iVar1];
        fVar13 = SQRT(((1.0 - fVar15 * fVar15) - fVar14 * fVar14) - fVar13 * fVar13);
        *pfVar10 = fVar13;
        if (*(char *)((int)puVar7 + 5) < '\0') {
          *pfVar10 = -fVar13;
        }
        *(float *)param_4 = local_2c[0];
        *(float *)(param_4 + 4) = local_2c[1];
        *(float *)(param_4 + 8) = local_2c[2];
        *(float *)(param_4 + 0xc) = local_2c[3];
        *param_3 = *param_3 + 6;
      }
    }
    else {
      puVar7 = (ushort *)*param_3;
      fVar13 = (float)(int)(*puVar7 - 0x8000) * 3.0517112e-05;
      fVar14 = (float)(int)(puVar7[1] - 0x8000) * 3.0517112e-05;
      fVar15 = (float)(int)((puVar7[2] & 0x7fff) - 0x4000) * 6.1033294e-05;
      fVar12 = SQRT((1.0 - fVar15 * fVar15) - (fVar13 * fVar13 + fVar14 * fVar14));
      if (*(char *)((int)puVar7 + 5) < '\0') {
        fVar12 = -fVar12;
      }
      *(float *)param_4 = fVar13;
      *(float *)(param_4 + 4) = fVar14;
      *(float *)(param_4 + 8) = fVar15;
      *(float *)(param_4 + 0xc) = fVar12;
      *param_3 = *param_3 + 6;
    }
  }
  else {
    fVar13 = (float)(int)(*(ushort *)param_2 - 0x8000) * 3.0517112e-05;
    fVar14 = (float)(int)(*(ushort *)(param_2 + 2) - 0x8000) * 3.0517112e-05;
    fVar15 = (float)(int)((*(ushort *)(param_2 + 4) & 0x7fff) - 0x4000) * 6.1033294e-05;
    fVar12 = SQRT(((1.0 - fVar15 * fVar15) - fVar14 * fVar14) - fVar13 * fVar13);
    if ((char)param_2[5] < '\0') {
      fVar12 = -fVar12;
    }
    *(float *)param_4 = fVar13;
    param_2 = param_2 + 6;
    *(float *)(param_4 + 4) = fVar14;
    *(float *)(param_4 + 8) = fVar15;
    *(float *)(param_4 + 0xc) = fVar12;
  }
  if ((param_1 & 4) != 0) {
    uVar6 = *(ushort *)param_2;
    if ((uVar6 & 0x7fff) == 0x7c00) {
      fVar13 = 65504.0;
      if ((short)uVar6 < 0) {
        fVar13 = -65504.0;
      }
    }
    else {
      bVar8 = (byte)(uVar6 >> 8);
      if ((bVar8 & 0x7c) == 0x7c) {
        fVar13 = 0.0;
        if ((uVar6 & 0x3ff) == 0) goto LAB_00b9c497;
      }
      else if (((uVar6 & 0x7c00) == 0) && ((uVar6 & 0x3ff) != 0)) {
        fVar13 = 1.0;
        if ((short)uVar6 < 0) {
          fVar13 = -1.0;
        }
        fVar13 = ((float)(uVar6 & 0x3ff) + 0.0) * 5.9604645e-08 * fVar13;
      }
      else {
LAB_00b9c497:
        fVar13 = (float)((uVar6 & 0x3ff) << 0xd | (uint)(bVar8 >> 7) << 0x1f |
                        (uint)((uVar6 >> 10 & 0x1f) != 0) * ((uVar6 >> 10 & 0x1f) + 0x70) * 0x800000
                        );
      }
    }
    uVar6 = *(ushort *)((int)param_2 + 2);
    if ((uVar6 & 0x7fff) == 0x7c00) {
      fVar14 = 65504.0;
      if ((short)uVar6 < 0) {
        fVar14 = -65504.0;
      }
    }
    else {
      bVar8 = (byte)(uVar6 >> 8);
      if ((bVar8 & 0x7c) == 0x7c) {
        fVar14 = 0.0;
        if ((uVar6 & 0x3ff) == 0) goto LAB_00b9c505;
      }
      else if (((uVar6 & 0x7c00) == 0) && ((uVar6 & 0x3ff) != 0)) {
        fVar14 = 1.0;
        if ((short)uVar6 < 0) {
          fVar14 = -1.0;
        }
        fVar14 = ((float)(uVar6 & 0x3ff) + 0.0) * 5.9604645e-08 * fVar14;
      }
      else {
LAB_00b9c505:
        fVar14 = (float)((uVar6 & 0x3ff) << 0xd | (uint)(bVar8 >> 7) << 0x1f |
                        (uint)((uVar6 >> 10 & 0x1f) != 0) * ((uVar6 >> 10 & 0x1f) + 0x70) * 0x800000
                        );
      }
    }
    uVar6 = *(ushort *)((int)param_2 + 4);
    if ((uVar6 & 0x7fff) == 0x7c00) {
      fVar15 = 65504.0;
      if ((short)uVar6 < 0) {
        fVar15 = -65504.0;
      }
    }
    else {
      bVar8 = (byte)(uVar6 >> 8);
      if ((bVar8 & 0x7c) == 0x7c) {
        fVar15 = 0.0;
        if ((uVar6 & 0x3ff) != 0) goto LAB_00b9c8fe;
      }
      else if (((uVar6 & 0x7c00) == 0) && ((uVar6 & 0x3ff) != 0)) {
        fVar15 = 1.0;
        if ((short)uVar6 < 0) {
          fVar15 = -1.0;
        }
        fVar15 = ((float)(uVar6 & 0x3ff) + 0.0) * 5.9604645e-08 * fVar15;
        goto LAB_00b9c8fe;
      }
      fVar15 = (float)((uVar6 & 0x3ff) << 0xd | (uint)(bVar8 >> 7) << 0x1f |
                      (uint)((uVar6 >> 10 & 0x1f) != 0) * ((uVar6 >> 10 & 0x1f) + 0x70) * 0x800000);
    }
LAB_00b9c8fe:
    *(float *)param_5 = fVar13;
    *(float *)(param_5 + 4) = fVar14;
    *(float *)(param_5 + 8) = fVar15;
    return (uchar *)((int)param_2 + 6);
  }
  if ((param_1 & 1) == 0) {
    if ((param_1 & 0x10) == 0) {
      if ((param_1 & 0x20) == 0) {
        if (param_7 != (mstudiolinearbone_t *)0x0) {
          if (param_6) {
            *(undefined4 *)param_5 = 0;
            *(undefined4 *)(param_5 + 4) = 0;
            *(undefined4 *)(param_5 + 8) = 0;
          }
          else {
            pmVar9 = param_7 + *(int *)(param_7 + 0xc) + param_8 * 0xc;
            uVar2 = *(undefined4 *)(pmVar9 + 4);
            uVar3 = *(undefined4 *)(pmVar9 + 8);
            *(undefined4 *)param_5 = *(undefined4 *)pmVar9;
            *(undefined4 *)(param_5 + 4) = uVar2;
            *(undefined4 *)(param_5 + 8) = uVar3;
          }
        }
      }
      else {
        _V_memcpy(param_5,*param_3,0xc);
        *param_3 = *param_3 + 0xc;
      }
    }
    else {
      _V_memcpy(param_5,param_2,0xc);
      param_2 = (uchar *)((int)param_2 + 0xc);
    }
    return param_2;
  }
  puVar7 = (ushort *)*param_3;
  uVar6 = *puVar7;
  if ((uVar6 & 0x7fff) == 0x7c00) {
    fVar13 = 65504.0;
    if ((short)uVar6 < 0) {
      fVar13 = -65504.0;
    }
  }
  else {
    bVar8 = (byte)(uVar6 >> 8);
    if ((bVar8 & 0x7c) == 0x7c) {
      fVar13 = 0.0;
      if ((uVar6 & 0x3ff) == 0) goto LAB_00b9c98e;
    }
    else if (((uVar6 & 0x7c00) == 0) && ((uVar6 & 0x3ff) != 0)) {
      fVar13 = 1.0;
      if ((short)uVar6 < 0) {
        fVar13 = -1.0;
      }
      fVar13 = ((float)(uVar6 & 0x3ff) + 0.0) * 5.9604645e-08 * fVar13;
    }
    else {
LAB_00b9c98e:
      fVar13 = (float)((uVar6 & 0x3ff) << 0xd | (uint)(bVar8 >> 7) << 0x1f |
                      (uint)((uVar6 >> 10 & 0x1f) != 0) * ((uVar6 >> 10 & 0x1f) + 0x70) * 0x800000);
    }
  }
  uVar6 = puVar7[1];
  if ((uVar6 & 0x7fff) == 0x7c00) {
    fVar14 = 65504.0;
    if ((short)uVar6 < 0) {
      fVar14 = -65504.0;
    }
  }
  else {
    bVar8 = (byte)(uVar6 >> 8);
    if ((bVar8 & 0x7c) == 0x7c) {
      fVar14 = 0.0;
      if ((uVar6 & 0x3ff) == 0) goto LAB_00b9c7fb;
    }
    else if (((uVar6 & 0x7c00) == 0) && ((uVar6 & 0x3ff) != 0)) {
      fVar14 = 1.0;
      if ((short)uVar6 < 0) {
        fVar14 = -1.0;
      }
      fVar14 = ((float)(uVar6 & 0x3ff) + 0.0) * 5.9604645e-08 * fVar14;
    }
    else {
LAB_00b9c7fb:
      fVar14 = (float)((uVar6 & 0x3ff) << 0xd | (uint)(bVar8 >> 7) << 0x1f |
                      (uint)((uVar6 >> 10 & 0x1f) != 0) * ((uVar6 >> 10 & 0x1f) + 0x70) * 0x800000);
    }
  }
  uVar6 = puVar7[2];
  if ((uVar6 & 0x7fff) == 0x7c00) {
    fVar15 = 65504.0;
    if ((short)uVar6 < 0) {
      fVar15 = -65504.0;
    }
  }
  else {
    bVar8 = (byte)(uVar6 >> 8);
    if ((bVar8 & 0x7c) == 0x7c) {
      fVar15 = 0.0;
      if ((uVar6 & 0x3ff) != 0) goto LAB_00b9c95e;
    }
    else if (((uVar6 & 0x7c00) == 0) && ((uVar6 & 0x3ff) != 0)) {
      fVar15 = 1.0;
      if ((short)uVar6 < 0) {
        fVar15 = -1.0;
      }
      fVar15 = ((float)(uVar6 & 0x3ff) + 0.0) * 5.9604645e-08 * fVar15;
      goto LAB_00b9c95e;
    }
    fVar15 = (float)((uVar6 & 0x3ff) << 0xd | (uint)(bVar8 >> 7) << 0x1f |
                    (uint)((uVar6 >> 10 & 0x1f) != 0) * ((uVar6 >> 10 & 0x1f) + 0x70) * 0x800000);
  }
LAB_00b9c95e:
  *(float *)param_5 = fVar13;
  *(float *)(param_5 + 4) = fVar14;
  *(float *)(param_5 + 8) = fVar15;
  *param_3 = *param_3 + 6;
  return param_2;
}

SourceMod gamedata

paste into addons/sourcemod/gamedata/<your_plugin>.txt
used as the SourceMod key — change to fit your plugin's convention
SourceMod library name (server / engine / matchmaking)

Just a Signatures{} block, ready to drop into a gamedata file. Wire it up in your plugin however you like - SDKCall, DHooks, raw memory ops, or anything else.



        

        

          

Type inference is best-effort from the C signature - sanity-check the DHooks types before shipping.

Return-type handling cheatsheet (DHookReturn)