L L4D2node

SVC_Sounds::ReadFromBuffer

0x000b3a00 · 1325 bytes · __thiscall

_ZN10SVC_Sounds14ReadFromBufferER7bf_read

Decompiled

undefined (2 params)

/* WARNING: Globals starting with '_' overlap smaller symbols at the same address */
/* SVC_Sounds::ReadFromBuffer(bf_read&) */

undefined4 __thiscall SVC_Sounds::ReadFromBuffer(SVC_Sounds *this,bf_read *param_1)

{
  undefined4 *puVar1;
  uint uVar2;
  SVC_Sounds SVar3;
  char cVar4;
  int iVar5;
  uint uVar6;
  undefined4 uVar7;
  uint *puVar8;
  int iVar9;
  uint uVar10;
  uint local_40;
  undefined4 local_34;
  undefined4 local_30;
  undefined4 local_28;
  undefined4 local_24;
  int local_20;
  
  local_34 = 0;
  local_30 = 0;
  if (_exit == 0) {
    local_20 = 0;
  }
  else {
    (**(code **)(_exit + 0x50))
              (_exit,&local_34,0,0,0,0,"/data/src/engine/../common/netmessages.cpp",0x52e,
               &ReadFromBuffer(bf_read&)::tm_fmt,"(%s)%s","Unaccounted","SVC_Sounds::ReadFromBuffer"
              );
    local_20 = _exit;
  }
  iVar9 = _DAT_0040b9d4;
  local_28 = local_34;
  local_24 = local_30;
                    /* try { // try from 000b3ab5 to 000b3ab9 has its CatchHandler @ 000b3f82 */
  if (((_DAT_0040b028 != 0) || (DAT_0040b02c == '\0')) &&
     (iVar5 = ThreadGetCurrentId(), iVar9 == iVar5)) {
    if ((char *)*_DAT_0040b030 != "SVC_Sounds::ReadFromBuffer") {
                    /* try { // try from 000b3e30 to 000b3e41 has its CatchHandler @ 000b3f82 */
      _DAT_0040b030 =
           (int *)CVProfNode::GetSubNode((char *)_DAT_0040b030,0x2a06b2,&DAT_00000001,0x2a054b);
    }
    CVProfNode::EnterScope();
    DAT_0040b02c = '\0';
  }
  iVar9 = *(int *)(param_1 + 0x14);
  uVar6 = *(uint *)(param_1 + 0x10);
  *(int *)(param_1 + 0x14) = iVar9 + -1;
  SVar3 = (SVC_Sounds)((byte)uVar6 & 1);
  if (iVar9 + -1 == 0) {
    puVar1 = *(undefined4 **)(param_1 + 0x18);
    *(undefined4 *)(param_1 + 0x14) = 0x20;
    if (puVar1 == *(undefined4 **)(param_1 + 0x1c)) {
      *(undefined4 *)(param_1 + 0x14) = 1;
      *(undefined4 *)(param_1 + 0x10) = 0;
      *(undefined4 **)(param_1 + 0x18) = puVar1 + 1;
      goto LAB_000b3bc5;
    }
    if (puVar1 <= *(undefined4 **)(param_1 + 0x1c)) {
      *(undefined4 **)(param_1 + 0x18) = puVar1 + 1;
      *(undefined4 *)(param_1 + 0x10) = *puVar1;
      goto LAB_000b3bc5;
    }
    param_1[4] = (bf_read)0x1;
    *(undefined4 *)(param_1 + 0x10) = 0;
    this[0x4c] = SVar3;
    if ((uVar6 & 1) != 0) goto LAB_000b3bd3;
LAB_000b3b0d:
    iVar9 = *(int *)(param_1 + 0x14);
    if (iVar9 < 8) {
      uVar6 = *(uint *)(param_1 + 0x10);
      puVar8 = *(uint **)(param_1 + 0x18);
      if (puVar8 == *(uint **)(param_1 + 0x1c)) {
        *(undefined4 *)(param_1 + 0x14) = 1;
        *(uint **)(param_1 + 0x18) = puVar8 + 1;
        uVar6 = 0;
        *(undefined4 *)(param_1 + 0x10) = 0;
        param_1[4] = (bf_read)0x1;
        goto LAB_000b3cc0;
      }
      if (*(uint **)(param_1 + 0x1c) <= puVar8) {
        param_1[4] = (bf_read)0x1;
        *(undefined4 *)(param_1 + 0x10) = 0;
LAB_000b3e7b:
        uVar6 = 0;
        goto LAB_000b3cc0;
      }
      *(uint **)(param_1 + 0x18) = puVar8 + 1;
      uVar10 = *puVar8;
      *(uint *)(param_1 + 0x10) = uVar10;
      if (param_1[4] != (bf_read)0x0) goto LAB_000b3e7b;
      uVar2 = (&CBitBuffer::s_nMaskTable)[8 - iVar9];
      *(int *)(param_1 + 0x14) = iVar9 + 0x18;
      *(uint *)(param_1 + 0x10) = uVar10 >> ((byte)(8 - iVar9) & 0x1f);
      *(uint *)(this + 0x50) = (uVar2 & uVar10) << ((byte)iVar9 & 0x1f) | uVar6;
      iVar9 = *(int *)(param_1 + 0x14);
    }
    else {
      *(int *)(param_1 + 0x14) = iVar9 + -8;
      uVar6 = *(uint *)(param_1 + 0x10) & 0xff;
      if (iVar9 + -8 == 0) {
        puVar1 = *(undefined4 **)(param_1 + 0x18);
        *(undefined4 *)(param_1 + 0x14) = 0x20;
        if (puVar1 == *(undefined4 **)(param_1 + 0x1c)) {
          *(undefined4 *)(param_1 + 0x14) = 1;
          *(undefined4 *)(param_1 + 0x10) = 0;
          *(undefined4 **)(param_1 + 0x18) = puVar1 + 1;
        }
        else if (*(undefined4 **)(param_1 + 0x1c) < puVar1) {
          param_1[4] = (bf_read)0x1;
          *(undefined4 *)(param_1 + 0x10) = 0;
        }
        else {
          *(undefined4 **)(param_1 + 0x18) = puVar1 + 1;
          *(undefined4 *)(param_1 + 0x10) = *puVar1;
        }
      }
      else {
        *(uint *)(param_1 + 0x10) = *(uint *)(param_1 + 0x10) >> 8;
      }
LAB_000b3cc0:
      *(uint *)(this + 0x50) = uVar6;
      iVar9 = *(int *)(param_1 + 0x14);
    }
    if (0xf < iVar9) {
      *(int *)(param_1 + 0x14) = iVar9 + -0x10;
      uVar6 = *(uint *)(param_1 + 0x10) & 0xffff;
      if (iVar9 + -0x10 != 0) {
        *(uint *)(param_1 + 0x10) = *(uint *)(param_1 + 0x10) >> 0x10;
        goto LAB_000b3cfd;
      }
LAB_000b3c58:
      puVar1 = *(undefined4 **)(param_1 + 0x18);
      *(undefined4 *)(param_1 + 0x14) = 0x20;
      if (puVar1 == *(undefined4 **)(param_1 + 0x1c)) {
        *(undefined4 *)(param_1 + 0x14) = 1;
        *(undefined4 *)(param_1 + 0x10) = 0;
        *(undefined4 **)(param_1 + 0x18) = puVar1 + 1;
      }
      else if (*(undefined4 **)(param_1 + 0x1c) < puVar1) {
        param_1[4] = (bf_read)0x1;
        *(undefined4 *)(param_1 + 0x10) = 0;
      }
      else {
        *(undefined4 **)(param_1 + 0x18) = puVar1 + 1;
        *(undefined4 *)(param_1 + 0x10) = *puVar1;
      }
      goto LAB_000b3cfd;
    }
    local_40 = *(uint *)(param_1 + 0x10);
    puVar8 = *(uint **)(param_1 + 0x18);
    if (puVar8 == *(uint **)(param_1 + 0x1c)) {
LAB_000b3f00:
      *(undefined4 *)(param_1 + 0x14) = 1;
      *(undefined4 *)(param_1 + 0x10) = 0;
      *(uint **)(param_1 + 0x18) = puVar8 + 1;
      param_1[4] = (bf_read)0x1;
    }
    else if (puVar8 < *(uint **)(param_1 + 0x1c)) {
      *(uint **)(param_1 + 0x18) = puVar8 + 1;
      uVar10 = *puVar8;
      *(uint *)(param_1 + 0x10) = uVar10;
      if (param_1[4] == (bf_read)0x0) {
        iVar5 = 0x10 - iVar9;
        uVar6 = ((&CBitBuffer::s_nMaskTable)[iVar5] & uVar10) << ((byte)iVar9 & 0x1f);
        iVar9 = iVar9 + 0x10;
LAB_000b3c24:
        *(int *)(param_1 + 0x14) = iVar9;
        uVar6 = uVar6 | local_40;
        *(uint *)(param_1 + 0x10) = uVar10 >> ((byte)iVar5 & 0x1f);
        goto LAB_000b3cfd;
      }
    }
    else {
LAB_000b3cf0:
      param_1[4] = (bf_read)0x1;
      *(undefined4 *)(param_1 + 0x10) = 0;
    }
  }
  else {
    *(uint *)(param_1 + 0x10) = uVar6 >> 1;
LAB_000b3bc5:
    this[0x4c] = SVar3;
    if ((uVar6 & 1) == 0) goto LAB_000b3b0d;
LAB_000b3bd3:
    *(undefined4 *)(this + 0x50) = 1;
    iVar9 = *(int *)(param_1 + 0x14);
    if (7 < iVar9) {
      *(int *)(param_1 + 0x14) = iVar9 + -8;
      uVar6 = *(uint *)(param_1 + 0x10) & 0xff;
      if (iVar9 + -8 != 0) {
        *(uint *)(param_1 + 0x10) = *(uint *)(param_1 + 0x10) >> 8;
        goto LAB_000b3cfd;
      }
      goto LAB_000b3c58;
    }
    local_40 = *(uint *)(param_1 + 0x10);
    puVar8 = *(uint **)(param_1 + 0x18);
    if (puVar8 == *(uint **)(param_1 + 0x1c)) goto LAB_000b3f00;
    if (*(uint **)(param_1 + 0x1c) <= puVar8) goto LAB_000b3cf0;
    *(uint **)(param_1 + 0x18) = puVar8 + 1;
    uVar10 = *puVar8;
    *(uint *)(param_1 + 0x10) = uVar10;
    if (param_1[4] == (bf_read)0x0) {
      iVar5 = 8 - iVar9;
      uVar6 = ((&CBitBuffer::s_nMaskTable)[iVar5] & uVar10) << ((byte)iVar9 & 0x1f);
      iVar9 = iVar9 + 0x18;
      goto LAB_000b3c24;
    }
  }
  uVar6 = 0;
LAB_000b3cfd:
  *(uint *)(this + 0x54) = uVar6;
  *(undefined4 *)(this + 0x58) = *(undefined4 *)param_1;
  *(undefined4 *)(this + 0x5c) = *(undefined4 *)(param_1 + 4);
  *(undefined4 *)(this + 0x60) = *(undefined4 *)(param_1 + 8);
  *(undefined4 *)(this + 100) = *(undefined4 *)(param_1 + 0xc);
  *(undefined4 *)(this + 0x68) = *(undefined4 *)(param_1 + 0x10);
  *(undefined4 *)(this + 0x6c) = *(undefined4 *)(param_1 + 0x14);
  *(undefined4 *)(this + 0x70) = *(undefined4 *)(param_1 + 0x18);
  *(undefined4 *)(this + 0x74) = *(undefined4 *)(param_1 + 0x1c);
  *(undefined4 *)(this + 0x78) = *(undefined4 *)(param_1 + 0x20);
  if (*(int *)(param_1 + 0x20) == 0) {
    iVar9 = 0;
  }
  else {
    iVar5 = (((uint)(*(int *)(param_1 + 0x18) - *(int *)(param_1 + 0x20)) >> 2) * 0x20 -
            *(int *)(param_1 + 0x14)) + (*(uint *)(param_1 + 0xc) & 3) * 8;
    iVar9 = *(int *)(param_1 + 8);
    if (iVar5 <= *(int *)(param_1 + 8)) {
      iVar9 = iVar5;
    }
  }
                    /* try { // try from 000b3d68 to 000b3d6c has its CatchHandler @ 000b3f97 */
  uVar7 = CBitRead::Seek((CBitRead *)param_1,uVar6 + iVar9);
  iVar9 = _DAT_0040b9d4;
  if (((DAT_0040b02c == '\0') || (_DAT_0040b028 != 0)) &&
     (iVar5 = ThreadGetCurrentId(), iVar9 == iVar5)) {
    cVar4 = CVProfNode::ExitScope();
    if (cVar4 != '\0') {
      _DAT_0040b030 = (int *)_DAT_0040b030[0x19];
    }
    DAT_0040b02c = _DAT_0040b030 == (int *)0x40b034;
  }
  if (local_20 != 0) {
    (**(code **)(local_20 + 0x54))(local_20,local_28,local_24,0,0,0);
  }
  return uVar7;
}

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)