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214 lines
8.5 KiB
Python
214 lines
8.5 KiB
Python
from __future__ import annotations
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import torch
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from sglang.jit_kernel.kv_canary import consts
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from sglang.jit_kernel.kv_canary.verify import (
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VerifyOrWriteContext,
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)
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from sglang.jit_kernel.kv_canary.verify_ref import (
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_compute_real_kv_hash_scalar,
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_to_signed_int64,
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compute_slot_hash,
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splitmix64_mix3,
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)
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from sglang.jit_kernel.kv_canary.write import WritePlan
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def launch_canary_write_kernel_torch_reference(
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*,
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context: VerifyOrWriteContext,
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plan: WritePlan,
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input_ids: torch.Tensor,
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positions: torch.Tensor,
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out_cache_loc: torch.Tensor,
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enable_write_input_assert: bool,
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expected_input_tokens: torch.Tensor | None,
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expected_input_positions: torch.Tensor | None,
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) -> None:
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canary_buf = context.canary_buf
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kernel_kind = context.kernel_kind
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violation_ring = context.violation_ring
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violation_write_index = context.violation_write_index
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slot_run_counter = context.slot_run_counter
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kernel_run_counter = context.kernel_run_counter
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real_kv_sources = context.real_kv_sources
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real_kv_hash_mode = context.real_kv_hash_mode
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enable_chain_position_assert_value = int(
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context.enable_chain_position_assert.detach().to("cpu").item()
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)
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work_device = torch.device("cpu")
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kernel_run_counter.add_(1)
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num_valid_reqs = int(plan.write_num_valid_reqs.detach().to("cpu").item())
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req_capacity = int(plan.write_seed_slot_indices.shape[0])
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active_reqs = max(0, min(num_valid_reqs, req_capacity))
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if active_reqs <= 0:
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return
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write_offsets_host = plan.write_offsets.detach().to(
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device=work_device, dtype=torch.int64
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)
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seed_slot_indices_host = plan.write_seed_slot_indices[:active_reqs].to(
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device=work_device, dtype=torch.int64
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)
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input_ids_host = input_ids.detach().to(device=work_device, dtype=torch.int64)
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positions_host = positions.detach().to(device=work_device, dtype=torch.int64)
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out_cache_loc_host = out_cache_loc.detach().to(
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device=work_device, dtype=torch.int64
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)
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total_entries = int(write_offsets_host[active_reqs].item())
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if total_entries <= 0:
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return
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buf_i64 = (
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canary_buf.detach()
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.to(device=work_device)
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.contiguous()
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.view(torch.int64)
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.clone()
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)
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slot_stride_i64 = int(buf_i64.shape[1])
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if slot_stride_i64 < 4:
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raise ValueError(
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f"kv-canary: canary_buf slot stride must hold at least 4 int64 fields, got {slot_stride_i64}"
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)
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if enable_write_input_assert:
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if expected_input_tokens is None or expected_input_positions is None:
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raise ValueError(
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"kv-canary: expected input tensors are required when enable_write_input_assert=True"
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)
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expected_input_tokens_host = expected_input_tokens.detach().to(
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device=work_device, dtype=torch.int64
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)
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expected_input_positions_host = expected_input_positions.detach().to(
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device=work_device, dtype=torch.int64
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)
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else:
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if expected_input_tokens is not None or expected_input_positions is not None:
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raise ValueError(
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"kv-canary: expected input tensors must be None when enable_write_input_assert=False"
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)
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expected_input_tokens_host = None
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expected_input_positions_host = None
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violation_rows: list[list[int]] = []
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total_slots_written = 0
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for r in range(active_reqs):
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entry_start = int(write_offsets_host[r].item())
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entry_end = int(write_offsets_host[r + 1].item())
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entry_count = entry_end - entry_start
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if entry_count <= 0:
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continue
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seed_slot = int(seed_slot_indices_host[r].item())
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running_prev_hash = compute_slot_hash(buf_i64, seed_slot)
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do_chain_position_assert = (seed_slot >= 0) and (
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enable_chain_position_assert_value != 0
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)
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if do_chain_position_assert:
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running_prev_position = int(
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buf_i64[seed_slot, consts.CANARY_FIELD_POSITION].item()
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)
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else:
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running_prev_position = 0
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for entry_offset in range(entry_count):
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entry_idx = entry_start + entry_offset
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slot = int(out_cache_loc_host[entry_idx].item())
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if slot < 0:
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continue
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token = int(input_ids_host[entry_idx].item())
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position = int(positions_host[entry_idx].item())
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real_kv_hash_u64 = _compute_real_kv_hash_scalar(
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slot_idx=slot,
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real_kv_sources=real_kv_sources,
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real_kv_hash_mode=real_kv_hash_mode,
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work_device=work_device,
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)
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if enable_write_input_assert:
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assert expected_input_tokens_host is not None
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assert expected_input_positions_host is not None
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mismatch_bits = consts.FailReason(0)
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expected_token = int(expected_input_tokens_host[entry_idx].item())
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expected_position = int(expected_input_positions_host[entry_idx].item())
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if token != expected_token:
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mismatch_bits |= consts.FailReason.WRITE_TOKEN_MISMATCH
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if position != expected_position:
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mismatch_bits |= consts.FailReason.WRITE_POSITION_MISMATCH
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if mismatch_bits != consts.FailReason(0):
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row = [0] * consts.VIOLATION_FIELDS
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row[consts.VIOLATION_FIELD_KERNEL_KIND] = int(kernel_kind)
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row[consts.VIOLATION_FIELD_SLOT_IDX] = slot
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row[consts.VIOLATION_FIELD_POSITION] = position
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row[consts.VIOLATION_FIELD_STORED_TOKEN] = token
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row[consts.VIOLATION_FIELD_EXPECTED_TOKEN] = expected_token
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row[consts.VIOLATION_FIELD_STORED_CHAIN_HASH] = _to_signed_int64(
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running_prev_hash
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)
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row[consts.VIOLATION_FIELD_EXPECTED_AUX] = expected_position
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row[consts.VIOLATION_FIELD_FAIL_REASON_BITS] = int(mismatch_bits)
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violation_rows.append(row)
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if do_chain_position_assert:
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expected_position_chain = running_prev_position + 1
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if position != expected_position_chain:
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row = [0] * consts.VIOLATION_FIELDS
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row[consts.VIOLATION_FIELD_KERNEL_KIND] = int(kernel_kind)
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row[consts.VIOLATION_FIELD_SLOT_IDX] = slot
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row[consts.VIOLATION_FIELD_POSITION] = position
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row[consts.VIOLATION_FIELD_STORED_TOKEN] = token
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row[consts.VIOLATION_FIELD_EXPECTED_TOKEN] = token
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row[consts.VIOLATION_FIELD_STORED_CHAIN_HASH] = _to_signed_int64(
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running_prev_hash
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)
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row[consts.VIOLATION_FIELD_EXPECTED_AUX] = expected_position_chain
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row[consts.VIOLATION_FIELD_FAIL_REASON_BITS] = int(
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consts.FailReason.WRITE_POSITION_MISMATCH
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)
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violation_rows.append(row)
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running_prev_position = position
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buf_i64[slot, consts.CANARY_FIELD_TOKEN] = token
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buf_i64[slot, consts.CANARY_FIELD_POSITION] = position
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buf_i64[slot, consts.CANARY_FIELD_PREV_HASH] = _to_signed_int64(
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running_prev_hash
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)
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buf_i64[slot, consts.CANARY_FIELD_REAL_KV_HASH] = _to_signed_int64(
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real_kv_hash_u64
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)
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running_prev_hash = splitmix64_mix3(running_prev_hash, token, position)
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total_slots_written += 1
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canary_buf.view(torch.int64).copy_(
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buf_i64.to(canary_buf.device).view(canary_buf.shape[0], slot_stride_i64)
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)
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slot_run_counter.add_(total_slots_written)
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if len(violation_rows) == 0:
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return
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base_idx = int(violation_write_index.detach().to("cpu").item())
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ring_capacity = int(violation_ring.shape[0])
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new_rows = torch.tensor(violation_rows, dtype=torch.int64, device=work_device)
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write_count_in_ring = max(0, min(len(violation_rows), ring_capacity - base_idx))
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if write_count_in_ring > 0:
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ring_host = violation_ring.detach().to(device=work_device)
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ring_host[base_idx : base_idx + write_count_in_ring, :] = new_rows[
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:write_count_in_ring, :
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]
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violation_ring.copy_(ring_host.to(violation_ring.device))
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violation_write_index[0] = violation_write_index[0] + len(violation_rows)
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