L L4D2node

CNetChan::ReadSubChannelData

0x001afd40 · 3188 bytes · __thiscall

_ZN8CNetChan18ReadSubChannelDataER7bf_readi

Decompiled

undefined (3 params)

/* CNetChan::ReadSubChannelData(bf_read&, int) */

undefined4 __thiscall CNetChan::ReadSubChannelData(CNetChan *this,bf_read *param_1,int param_2)

{
  bf_read *pbVar1;
  undefined4 *puVar2;
  uint *puVar3;
  uint uVar4;
  int iVar5;
  undefined4 uVar6;
  void *pvVar7;
  int iVar8;
  uint uVar9;
  uint uVar10;
  uint *puVar11;
  uint uVar12;
  uint local_34;
  char local_29;
  int local_28;
  uint local_24;
  uint local_20;
  
  iVar5 = param_2 * 0x130;
  uVar9 = *(uint *)(param_1 + 0x10) & 1;
  pbVar1 = param_1 + 0x14;
  *(int *)pbVar1 = *(int *)pbVar1 + -1;
  if (*(int *)pbVar1 == 0) {
    puVar2 = *(undefined4 **)(param_1 + 0x18);
    *(undefined4 *)(param_1 + 0x14) = 0x20;
    if (puVar2 == *(undefined4 **)(param_1 + 0x1c)) {
      *(undefined4 *)(param_1 + 0x14) = 1;
      *(undefined4 *)(param_1 + 0x10) = 0;
      *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
      goto LAB_001afe7d;
    }
    if (puVar2 <= *(undefined4 **)(param_1 + 0x1c)) {
      *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
      *(undefined4 *)(param_1 + 0x10) = *puVar2;
      goto LAB_001afe7d;
    }
    uVar9 = uVar9 ^ 1;
    param_1[4] = (bf_read)0x1;
    *(undefined4 *)(param_1 + 0x10) = 0;
    local_29 = (char)uVar9;
    if (uVar9 == 0) goto LAB_001afe8e;
LAB_001afdac:
    this[iVar5 + 0xe8] = (CNetChan)0x0;
    this[iVar5 + 0x1fc] = (CNetChan)0x0;
    *(undefined4 *)(this + iVar5 + 0x1f8) = 0;
    iVar8 = *(int *)(param_1 + 0x14);
    uVar9 = *(uint *)(param_1 + 0x10);
    *(int *)(param_1 + 0x14) = iVar8 + -1;
    if (iVar8 + -1 == 0) {
      puVar2 = *(undefined4 **)(param_1 + 0x18);
      *(undefined4 *)(param_1 + 0x14) = 0x20;
      if (puVar2 == *(undefined4 **)(param_1 + 0x1c)) {
        *(undefined4 *)(param_1 + 0x14) = 1;
        *(undefined4 *)(param_1 + 0x10) = 0;
        *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
      }
      else if (*(undefined4 **)(param_1 + 0x1c) < puVar2) {
        param_1[4] = (bf_read)0x1;
        *(undefined4 *)(param_1 + 0x10) = 0;
      }
      else {
        *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
        *(undefined4 *)(param_1 + 0x10) = *puVar2;
      }
    }
    else {
      *(uint *)(param_1 + 0x10) = uVar9 >> 1;
    }
    if ((uVar9 & 1) == 0) {
      this[iVar5 + 0x1fc] = (CNetChan)0x0;
      iVar8 = *(int *)(param_1 + 0x14);
      if (0x11 < iVar8) goto LAB_001b0153;
LAB_001afe4a:
      uVar9 = *(uint *)(param_1 + 0x10);
      puVar11 = *(uint **)(param_1 + 0x18);
      if (puVar11 == *(uint **)(param_1 + 0x1c)) {
        *(undefined4 *)(param_1 + 0x14) = 1;
        *(uint **)(param_1 + 0x18) = puVar11 + 1;
        uVar9 = 0;
        *(undefined4 *)(param_1 + 0x10) = 0;
        param_1[4] = (bf_read)0x1;
      }
      else {
        if (*(uint **)(param_1 + 0x1c) < puVar11) {
          param_1[4] = (bf_read)0x1;
          *(undefined4 *)(param_1 + 0x10) = 0;
        }
        else {
          *(uint **)(param_1 + 0x18) = puVar11 + 1;
          uVar12 = *puVar11;
          *(uint *)(param_1 + 0x10) = uVar12;
          if (param_1[4] == (bf_read)0x0) {
            uVar10 = (&CBitBuffer::s_nMaskTable)[0x12 - iVar8];
            *(int *)(param_1 + 0x14) = iVar8 + 0xe;
            uVar9 = (uVar10 & uVar12) << ((byte)iVar8 & 0x1f) | uVar9;
            *(uint *)(param_1 + 0x10) = uVar12 >> ((byte)(0x12 - iVar8) & 0x1f);
            goto LAB_001b0171;
          }
        }
        uVar9 = 0;
      }
    }
    else {
      this[iVar5 + 0x1fc] = (CNetChan)0x1;
      iVar8 = *(int *)(param_1 + 0x14);
      if (iVar8 < 0x1a) {
        uVar9 = *(uint *)(param_1 + 0x10);
        puVar11 = *(uint **)(param_1 + 0x18);
        if (puVar11 == *(uint **)(param_1 + 0x1c)) {
          *(undefined4 *)(param_1 + 0x14) = 1;
          *(uint **)(param_1 + 0x18) = puVar11 + 1;
          uVar9 = 0;
          *(undefined4 *)(param_1 + 0x10) = 0;
          param_1[4] = (bf_read)0x1;
        }
        else {
          if (puVar11 < *(uint **)(param_1 + 0x1c)) {
            *(uint **)(param_1 + 0x18) = puVar11 + 1;
            uVar12 = *puVar11;
            *(uint *)(param_1 + 0x10) = uVar12;
            if (param_1[4] == (bf_read)0x0) {
              uVar10 = (&CBitBuffer::s_nMaskTable)[0x1a - iVar8];
              *(int *)(param_1 + 0x14) = iVar8 + 6;
              uVar9 = (uVar10 & uVar12) << ((byte)iVar8 & 0x1f) | uVar9;
              *(uint *)(param_1 + 0x10) = uVar12 >> ((byte)(0x1a - iVar8) & 0x1f);
              goto LAB_001afe38;
            }
          }
          else {
            param_1[4] = (bf_read)0x1;
            *(undefined4 *)(param_1 + 0x10) = 0;
          }
          uVar9 = 0;
        }
      }
      else {
        *(int *)(param_1 + 0x14) = iVar8 + -0x1a;
        uVar9 = *(uint *)(param_1 + 0x10) & 0x3ffffff;
        if (iVar8 + -0x1a == 0) {
          puVar2 = *(undefined4 **)(param_1 + 0x18);
          *(undefined4 *)(param_1 + 0x14) = 0x20;
          if (puVar2 == *(undefined4 **)(param_1 + 0x1c)) {
            *(undefined4 *)(param_1 + 0x14) = 1;
            *(undefined4 *)(param_1 + 0x10) = 0;
            *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
          }
          else if (*(undefined4 **)(param_1 + 0x1c) < puVar2) {
            param_1[4] = (bf_read)0x1;
            *(undefined4 *)(param_1 + 0x10) = 0;
          }
          else {
            *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
            *(undefined4 *)(param_1 + 0x10) = *puVar2;
          }
        }
        else {
          *(uint *)(param_1 + 0x10) = *(uint *)(param_1 + 0x10) >> 0x1a;
        }
      }
LAB_001afe38:
      *(uint *)(this + iVar5 + 0x200) = uVar9;
      iVar8 = *(int *)(param_1 + 0x14);
      if (iVar8 < 0x12) goto LAB_001afe4a;
LAB_001b0153:
      *(int *)(param_1 + 0x14) = iVar8 + -0x12;
      uVar9 = *(uint *)(param_1 + 0x10) & 0x3ffff;
      if (iVar8 + -0x12 == 0) {
        puVar2 = *(undefined4 **)(param_1 + 0x18);
        *(undefined4 *)(param_1 + 0x14) = 0x20;
        if (puVar2 == *(undefined4 **)(param_1 + 0x1c)) {
          *(undefined4 *)(param_1 + 0x14) = 1;
          *(undefined4 *)(param_1 + 0x10) = 0;
          *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
        }
        else if (*(undefined4 **)(param_1 + 0x1c) < puVar2) {
          param_1[4] = (bf_read)0x1;
          *(undefined4 *)(param_1 + 0x10) = 0;
        }
        else {
          *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
          *(undefined4 *)(param_1 + 0x10) = *puVar2;
        }
      }
      else {
        *(uint *)(param_1 + 0x10) = *(uint *)(param_1 + 0x10) >> 0x12;
      }
    }
LAB_001b0171:
    *(uint *)(this + iVar5 + 0x1f0) = uVar9;
    uVar12 = 0;
    local_20 = 0;
    local_24 = 0;
  }
  else {
    *(uint *)(param_1 + 0x10) = *(uint *)(param_1 + 0x10) >> 1;
LAB_001afe7d:
    uVar9 = uVar9 ^ 1;
    local_29 = (char)uVar9;
    if (uVar9 != 0) goto LAB_001afdac;
LAB_001afe8e:
    iVar8 = *(int *)(param_1 + 0x14);
    if (iVar8 < 0x12) {
      puVar11 = *(uint **)(param_1 + 0x18);
      uVar9 = *(uint *)(param_1 + 0x10);
      if (puVar11 == *(uint **)(param_1 + 0x1c)) {
        *(undefined4 *)(param_1 + 0x14) = 1;
        iVar8 = 1;
        *(undefined4 *)(param_1 + 0x10) = 0;
        *(uint **)(param_1 + 0x18) = puVar11 + 1;
        param_1[4] = (bf_read)0x1;
      }
      else {
        if (puVar11 <= *(uint **)(param_1 + 0x1c)) {
          *(uint **)(param_1 + 0x18) = puVar11 + 1;
          uVar12 = *puVar11;
          *(uint *)(param_1 + 0x10) = uVar12;
          if (param_1[4] == (bf_read)0x0) {
            uVar10 = (&CBitBuffer::s_nMaskTable)[0x12 - iVar8];
            *(int *)(param_1 + 0x14) = iVar8 + 0xe;
            local_20._0_1_ = (byte)(0x12 - iVar8);
            uVar9 = (uVar12 & uVar10) << ((byte)iVar8 & 0x1f) | uVar9;
            local_20 = uVar12 >> ((byte)local_20 & 0x1f);
            *(uint *)(param_1 + 0x10) = local_20;
            local_28 = uVar9 << 8;
            iVar8 = iVar8 + 0xe;
          }
          else {
            uVar9 = 0;
            local_28 = 0;
            local_20 = uVar12;
          }
          goto LAB_001aff3a;
        }
        param_1[4] = (bf_read)0x1;
        *(undefined4 *)(param_1 + 0x10) = 0;
      }
      uVar9 = 0;
      local_20 = 0;
      local_28 = 0;
      if (2 < iVar8) {
LAB_001afece:
        *(int *)(param_1 + 0x14) = iVar8 + -3;
        uVar12 = local_20 & 7;
        if (iVar8 + -3 != 0) goto LAB_001b0080;
        puVar11 = *(uint **)(param_1 + 0x18);
        *(undefined4 *)(param_1 + 0x14) = 0x20;
        if (puVar11 == *(uint **)(param_1 + 0x1c)) {
          *(undefined4 *)(param_1 + 0x14) = 1;
          *(undefined4 *)(param_1 + 0x10) = 0;
          *(uint **)(param_1 + 0x18) = puVar11 + 1;
        }
        else {
          if (puVar11 <= *(uint **)(param_1 + 0x1c)) {
            *(uint **)(param_1 + 0x18) = puVar11 + 1;
            local_20 = *puVar11;
            goto LAB_001b0086;
          }
          param_1[4] = (bf_read)0x1;
          *(undefined4 *)(param_1 + 0x10) = 0;
        }
        goto LAB_001b0089;
      }
LAB_001aff3f:
      puVar11 = *(uint **)(param_1 + 0x1c);
LAB_001aff42:
      puVar3 = *(uint **)(param_1 + 0x18);
      if (puVar3 == puVar11) {
        *(undefined4 *)(param_1 + 0x14) = 1;
        *(undefined4 *)(param_1 + 0x10) = 0;
        *(uint **)(param_1 + 0x18) = puVar11 + 1;
        param_1[4] = (bf_read)0x1;
      }
      else if (puVar11 < puVar3) {
        param_1[4] = (bf_read)0x1;
        *(undefined4 *)(param_1 + 0x10) = 0;
      }
      else {
        *(uint **)(param_1 + 0x18) = puVar3 + 1;
        uVar10 = *puVar3;
        *(uint *)(param_1 + 0x10) = uVar10;
        if (param_1[4] == (bf_read)0x0) {
          uVar12 = (&CBitBuffer::s_nMaskTable)[3 - iVar8];
          uVar6 = *(undefined4 *)(param_1 + 0x14);
          *(int *)(param_1 + 0x14) = iVar8 + 0x1d;
          local_24._0_1_ = (byte)(3 - iVar8);
          uVar12 = (uVar10 & uVar12) << ((byte)uVar6 & 0x1f) | local_20;
          local_20 = uVar10 >> ((byte)local_24 & 0x1f);
          goto LAB_001b0086;
        }
      }
      uVar12 = 0;
      local_20 = 0;
      local_24 = uVar9;
    }
    else {
      iVar8 = iVar8 + -0x12;
      *(int *)(param_1 + 0x14) = iVar8;
      uVar9 = *(uint *)(param_1 + 0x10) & 0x3ffff;
      if (iVar8 != 0) {
        local_20 = *(uint *)(param_1 + 0x10) >> 0x12;
        local_28 = uVar9 << 8;
        *(uint *)(param_1 + 0x10) = local_20;
LAB_001aff3a:
        if (iVar8 < 3) goto LAB_001aff3f;
        goto LAB_001afece;
      }
      puVar3 = *(uint **)(param_1 + 0x18);
      *(undefined4 *)(param_1 + 0x14) = 0x20;
      puVar11 = *(uint **)(param_1 + 0x1c);
      if (puVar3 == puVar11) {
        *(undefined4 *)(param_1 + 0x14) = 1;
        *(uint **)(param_1 + 0x18) = puVar11 + 1;
        local_28 = uVar9 << 8;
        *(undefined4 *)(param_1 + 0x10) = 0;
        iVar8 = 1;
        local_20 = 0;
        goto LAB_001aff42;
      }
      if (puVar11 < puVar3) {
        param_1[4] = (bf_read)0x1;
        local_20 = 0;
      }
      else {
        *(uint **)(param_1 + 0x18) = puVar3 + 1;
        local_20 = *puVar3;
      }
      local_28 = uVar9 << 8;
      *(undefined4 *)(param_1 + 0x14) = 0x1d;
      uVar12 = local_20 & 7;
LAB_001b0080:
      local_20 = local_20 >> 3;
LAB_001b0086:
      *(uint *)(param_1 + 0x10) = local_20;
LAB_001b0089:
      local_20 = uVar12 << 8;
      local_24 = uVar9;
    }
    if (local_28 != 0) {
      if (*(int *)(this + iVar5 + 0x1ec) == 0) {
        return 0;
      }
      goto LAB_001aff86;
    }
    this[iVar5 + 0xe8] = (CNetChan)0x0;
    this[iVar5 + 0x1fc] = (CNetChan)0x0;
    *(undefined4 *)(this + iVar5 + 0x1f8) = 0;
    uVar9 = *(uint *)(param_1 + 0x10) & 1;
    iVar8 = *(int *)(param_1 + 0x14) + -1;
    *(int *)(param_1 + 0x14) = iVar8;
    if (iVar8 == 0) {
      puVar3 = *(uint **)(param_1 + 0x18);
      *(undefined4 *)(param_1 + 0x14) = 0x20;
      puVar11 = *(uint **)(param_1 + 0x1c);
      if (puVar3 == puVar11) {
        *(undefined4 *)(param_1 + 0x14) = 1;
        *(uint **)(param_1 + 0x18) = puVar3 + 1;
        iVar8 = 1;
        *(undefined4 *)(param_1 + 0x10) = 0;
        if (uVar9 != 0) {
          local_34 = 0;
LAB_001b0725:
          puVar3 = *(uint **)(param_1 + 0x18);
          if (puVar3 == puVar11) {
            *(undefined4 *)(param_1 + 0x14) = 1;
            *(uint **)(param_1 + 0x18) = puVar11 + 1;
            local_34 = 0;
            *(undefined4 *)(param_1 + 0x10) = 0;
            param_1[4] = (bf_read)0x1;
          }
          else {
            if (puVar11 < puVar3) {
              param_1[4] = (bf_read)0x1;
              *(undefined4 *)(param_1 + 0x10) = 0;
            }
            else {
              *(uint **)(param_1 + 0x18) = puVar3 + 1;
              uVar9 = *puVar3;
              *(uint *)(param_1 + 0x10) = uVar9;
              if (param_1[4] == (bf_read)0x0) {
                uVar10 = (&CBitBuffer::s_nMaskTable)[0x20 - iVar8];
                uVar6 = *(undefined4 *)(param_1 + 0x14);
                *(int *)(param_1 + 0x14) = iVar8;
                local_28._0_1_ = (byte)(0x20 - iVar8);
                local_34 = (uVar9 & uVar10) << ((byte)uVar6 & 0x1f) | local_34;
                *(uint *)(param_1 + 0x10) = uVar9 >> ((byte)local_28 & 0x1f);
                goto LAB_001b0628;
              }
            }
            local_34 = 0;
          }
          goto LAB_001b0628;
        }
        local_34 = 0;
      }
      else {
        if (puVar11 < puVar3) {
          param_1[4] = (bf_read)0x1;
          local_34 = 0;
          *(undefined4 *)(param_1 + 0x10) = 0;
        }
        else {
          *(uint **)(param_1 + 0x18) = puVar3 + 1;
          local_34 = *puVar3;
          *(uint *)(param_1 + 0x10) = local_34;
        }
        iVar8 = 0x20;
        if (uVar9 != 0) goto LAB_001b05f0;
      }
    }
    else {
      local_34 = *(uint *)(param_1 + 0x10) >> 1;
      *(uint *)(param_1 + 0x10) = local_34;
      if (uVar9 != 0) {
        if (iVar8 < 0x20) {
          puVar11 = *(uint **)(param_1 + 0x1c);
          goto LAB_001b0725;
        }
LAB_001b05f0:
        *(int *)(param_1 + 0x14) = iVar8 + -0x20;
        if (iVar8 + -0x20 == 0) {
          puVar2 = *(undefined4 **)(param_1 + 0x18);
          *(undefined4 *)(param_1 + 0x14) = 0x20;
          if (puVar2 == *(undefined4 **)(param_1 + 0x1c)) {
            *(undefined4 *)(param_1 + 0x14) = 1;
            *(undefined4 *)(param_1 + 0x10) = 0;
            *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
          }
          else {
            if (*(undefined4 **)(param_1 + 0x1c) < puVar2) {
              param_1[4] = (bf_read)0x1;
              goto LAB_001b061f;
            }
            *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
            *(undefined4 *)(param_1 + 0x10) = *puVar2;
          }
        }
        else {
LAB_001b061f:
          *(undefined4 *)(param_1 + 0x10) = 0;
        }
LAB_001b0628:
        *(uint *)(this + iVar5 + 0x1f8) = local_34;
        CBitRead::ReadString
                  ((CBitRead *)param_1,(char *)(this + iVar5 + 0xe8),0x104,false,(int *)0x0);
        local_34 = *(uint *)(param_1 + 0x10);
        iVar8 = *(int *)(param_1 + 0x14);
      }
    }
    *(int *)(param_1 + 0x14) = iVar8 + -1;
    if (iVar8 + -1 == 0) {
      puVar2 = *(undefined4 **)(param_1 + 0x18);
      *(undefined4 *)(param_1 + 0x14) = 0x20;
      if (puVar2 == *(undefined4 **)(param_1 + 0x1c)) {
        *(undefined4 *)(param_1 + 0x14) = 1;
        *(undefined4 *)(param_1 + 0x10) = 0;
        *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
      }
      else if (*(undefined4 **)(param_1 + 0x1c) < puVar2) {
        param_1[4] = (bf_read)0x1;
        *(undefined4 *)(param_1 + 0x10) = 0;
      }
      else {
        *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
        *(undefined4 *)(param_1 + 0x10) = *puVar2;
      }
    }
    else {
      *(uint *)(param_1 + 0x10) = local_34 >> 1;
    }
    if ((local_34 & 1) == 0) {
      this[iVar5 + 0x1fc] = (CNetChan)0x0;
    }
    else {
      this[iVar5 + 0x1fc] = (CNetChan)0x1;
      iVar8 = *(int *)(param_1 + 0x14);
      uVar9 = *(uint *)(param_1 + 0x10);
      if (iVar8 < 0x1a) {
        puVar11 = *(uint **)(param_1 + 0x18);
        if (puVar11 == *(uint **)(param_1 + 0x1c)) {
          *(undefined4 *)(param_1 + 0x14) = 1;
          *(uint **)(param_1 + 0x18) = puVar11 + 1;
          uVar10 = 0;
          *(undefined4 *)(param_1 + 0x10) = 0;
          param_1[4] = (bf_read)0x1;
        }
        else {
          if (*(uint **)(param_1 + 0x1c) < puVar11) {
            param_1[4] = (bf_read)0x1;
            *(undefined4 *)(param_1 + 0x10) = 0;
          }
          else {
            *(uint **)(param_1 + 0x18) = puVar11 + 1;
            uVar4 = *puVar11;
            *(uint *)(param_1 + 0x10) = uVar4;
            if (param_1[4] == (bf_read)0x0) {
              uVar10 = (&CBitBuffer::s_nMaskTable)[0x1a - iVar8];
              *(int *)(param_1 + 0x14) = iVar8 + 6;
              local_28._0_1_ = (byte)(0x1a - iVar8);
              uVar10 = (uVar4 & uVar10) << ((byte)iVar8 & 0x1f) | uVar9;
              *(uint *)(param_1 + 0x10) = uVar4 >> ((byte)local_28 & 0x1f);
              goto LAB_001b06ce;
            }
          }
          uVar10 = 0;
        }
      }
      else {
        *(int *)(param_1 + 0x14) = iVar8 + -0x1a;
        uVar10 = uVar9 & 0x3ffffff;
        if (iVar8 + -0x1a == 0) {
          puVar2 = *(undefined4 **)(param_1 + 0x18);
          *(undefined4 *)(param_1 + 0x14) = 0x20;
          if (puVar2 == *(undefined4 **)(param_1 + 0x1c)) {
            *(undefined4 *)(param_1 + 0x14) = 1;
            *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
            *(undefined4 *)(param_1 + 0x10) = 0;
          }
          else if (*(undefined4 **)(param_1 + 0x1c) < puVar2) {
            param_1[4] = (bf_read)0x1;
            *(undefined4 *)(param_1 + 0x10) = 0;
          }
          else {
            *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
            *(undefined4 *)(param_1 + 0x10) = *puVar2;
          }
        }
        else {
          *(uint *)(param_1 + 0x10) = uVar9 >> 0x1a;
        }
      }
LAB_001b06ce:
      *(uint *)(this + iVar5 + 0x200) = uVar10;
    }
    iVar8 = *(int *)(param_1 + 0x14);
    if (iVar8 < 0x1a) {
      uVar9 = *(uint *)(param_1 + 0x10);
      puVar11 = *(uint **)(param_1 + 0x18);
      if (puVar11 == *(uint **)(param_1 + 0x1c)) {
        *(undefined4 *)(param_1 + 0x14) = 1;
        *(uint **)(param_1 + 0x18) = puVar11 + 1;
        uVar9 = 0;
        *(undefined4 *)(param_1 + 0x10) = 0;
        param_1[4] = (bf_read)0x1;
      }
      else {
        if (*(uint **)(param_1 + 0x1c) < puVar11) {
          param_1[4] = (bf_read)0x1;
          *(undefined4 *)(param_1 + 0x10) = 0;
        }
        else {
          *(uint **)(param_1 + 0x18) = puVar11 + 1;
          uVar10 = *puVar11;
          *(uint *)(param_1 + 0x10) = uVar10;
          if (param_1[4] == (bf_read)0x0) {
            uVar4 = (&CBitBuffer::s_nMaskTable)[0x1a - iVar8];
            *(int *)(param_1 + 0x14) = iVar8 + 6;
            local_28._0_1_ = (byte)(0x1a - iVar8);
            uVar9 = (uVar10 & uVar4) << ((byte)iVar8 & 0x1f) | uVar9;
            *(uint *)(param_1 + 0x10) = uVar10 >> ((byte)local_28 & 0x1f);
            goto LAB_001b06fa;
          }
        }
        uVar9 = 0;
      }
    }
    else {
      *(int *)(param_1 + 0x14) = iVar8 + -0x1a;
      uVar9 = *(uint *)(param_1 + 0x10) & 0x3ffffff;
      if (iVar8 + -0x1a == 0) {
        puVar2 = *(undefined4 **)(param_1 + 0x18);
        *(undefined4 *)(param_1 + 0x14) = 0x20;
        if (puVar2 == *(undefined4 **)(param_1 + 0x1c)) {
          *(undefined4 *)(param_1 + 0x14) = 1;
          *(undefined4 *)(param_1 + 0x10) = 0;
          *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
        }
        else if (*(undefined4 **)(param_1 + 0x1c) < puVar2) {
          param_1[4] = (bf_read)0x1;
          *(undefined4 *)(param_1 + 0x10) = 0;
        }
        else {
          *(undefined4 **)(param_1 + 0x18) = puVar2 + 1;
          *(undefined4 *)(param_1 + 0x10) = *puVar2;
        }
      }
      else {
        *(uint *)(param_1 + 0x10) = *(uint *)(param_1 + 0x10) >> 0x1a;
      }
    }
LAB_001b06fa:
    *(uint *)(this + iVar5 + 0x1f0) = uVar9;
  }
  if (*(void **)(this + iVar5 + 0x1ec) != (void *)0x0) {
    operator_delete__(*(void **)(this + iVar5 + 0x1ec));
    *(undefined4 *)(this + iVar5 + 0x1ec) = 0;
    uVar6 = (**(code **)(*(int *)this + 4))(this);
    ConDMsg("Fragment transmission aborted at %i/%i from %s.\n",
            *(undefined4 *)(this + iVar5 + 0x20c),*(undefined4 *)(this + iVar5 + 0x208),uVar6);
  }
  uVar9 = *(uint *)(this + iVar5 + 0x1f0);
  this[iVar5 + 0x204] = (CNetChan)0x0;
  *(undefined4 *)(this + iVar5 + 0x20c) = 0;
  *(uint *)(this + iVar5 + 500) = uVar9 * 8;
  uVar10 = uVar9 + 0xff >> 8;
  *(uint *)(this + iVar5 + 0x208) = uVar10;
  *(undefined4 *)(this + iVar5 + 0xe4) = 0;
  if (local_29 != '\0') {
    local_20 = uVar10 << 8;
    uVar12 = uVar10;
  }
  if (0x3ffffff < uVar9) {
    Warning("Net message exceeds max size (%u / %u)\n",0x3ffffff,uVar9);
    return 0;
  }
  pvVar7 = operator_new__(uVar9 + 3 & 0xfffffffc);
  *(void **)(this + iVar5 + 0x1ec) = pvVar7;
  local_28 = 0;
LAB_001aff86:
  if (local_24 + uVar12 == *(int *)(this + iVar5 + 0x208)) {
    uVar9 = local_20 - (0x100 - (uint)(byte)this[iVar5 + 0x1f0]);
    if (0x100 - (uint)(byte)this[iVar5 + 0x1f0] == 0x100) {
      uVar9 = local_20;
    }
  }
  else {
    uVar9 = local_20;
    if (*(int *)(this + iVar5 + 0x208) <= (int)(local_24 + uVar12)) {
      uVar6 = (**(code **)(*(int *)this + 4))(this);
      ConDMsg("Received fragment chunk out of bounds: %i+%i>%i from %s\n",local_24,uVar12,
              *(undefined4 *)(this + iVar5 + 0x208),uVar6);
      return 0;
    }
  }
  local_20 = uVar9;
  CBitRead::ReadBytes((CBitRead *)param_1,(void *)(local_28 + *(int *)(this + iVar5 + 0x1ec)),
                      local_20);
  uVar6 = net_showfragments._28_4_;
  *(uint *)(this + iVar5 + 0x20c) = *(int *)(this + iVar5 + 0x20c) + uVar12;
  if (*(int *)(uVar6 + 0x30) != 0) {
    ConMsg("Received fragments: start %i, num %i\n",local_24,uVar12);
  }
  return 1;
}

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)