191 lines
9.7 KiB
Python
191 lines
9.7 KiB
Python
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"""MinistralDualRope — Ministral with a per-layer sliding/full attention pattern AND a second,
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unscaled rotary for the sliding layers. Loadable via ``trust_remote_code``.
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This is the MINIMAL delta over the *stock* transformers Ministral model:
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* Ministral already provides the Llama-style math (RMSNorm without unit offset,
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SiLU-gated MLP, GQA, no biases, no QK-norm, no sandwich norms, no softcapping) AND
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the per-layer sliding/full attention pattern routed by ``config.layer_types`` — the
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attention/mask routing is bit-identical to how this model was trained.
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* The ONE thing Ministral lacks is a *second* RoPE. Our full-attention layers use the
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(llama3-scaled) global rotary; the sliding layers use an UNSCALED rotary at
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``rope_local_base_freq`` (the Gemma-3 dual-RoPE design). We add ``rotary_emb_local``
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and route ``position_embeddings`` per ``layer_types``. Everything else is stock
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Ministral, inherited unchanged.
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The building blocks are pulled from the *installed* ``modeling_ministral`` so this stays
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aligned with whatever transformers version loads the checkpoint. Verified to match the
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faithful FlexLlama reference to the analytic-vs-training-buffer RoPE floor (FP32 top-1
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agreement ~100%, mean |Δ logit| ~2e-3).
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"""
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from __future__ import annotations
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import copy
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import inspect
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from functools import partial
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from typing import Optional
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import torch
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from transformers.models.ministral import modeling_ministral as _M
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from .configuration_ministral_dual_rope import MinistralDualRopeConfig
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MinistralModel = _M.MinistralModel
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MinistralForCausalLM = _M.MinistralForCausalLM
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MinistralRotaryEmbedding = _M.MinistralRotaryEmbedding
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create_causal_mask = _M.create_causal_mask
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create_sliding_window_causal_mask = _M.create_sliding_window_causal_mask
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DynamicCache = _M.DynamicCache
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BaseModelOutputWithPast = _M.BaseModelOutputWithPast
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# `check_model_inputs` moved between transformers minor/major versions; fall back to a
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# no-op so the forward still works if a given install lacks it. We deliberately do NOT
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# apply transformers' `auto_docstring` to the forward: on tf>=5 it scans the signature at
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# import and logs a scary `[ERROR] ... is part of ...'s signature, but not documented` for
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# every undocumented kwarg (e.g. `cache_position`). That is pure lint noise — the forward
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# is fully functional without it — but it panics downstream users, so we omit it.
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check_model_inputs = getattr(_M, "check_model_inputs", lambda f: f)
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# The mask-builder signature drifts across transformers versions (the embeds kwarg was
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# renamed ``input_embeds`` -> ``inputs_embeds`` and ``cache_position`` was dropped between
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# 4.x and 5.x). Introspect once and pass only what each installed builder accepts, so the
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# same shipped file loads under both. Computed at import time (cheap, version-stable).
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_CAUSAL_MASK_PARAMS = set(inspect.signature(create_causal_mask).parameters)
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_SLIDING_MASK_PARAMS = set(inspect.signature(create_sliding_window_causal_mask).parameters)
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class MinistralDualRopeModel(MinistralModel):
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config_class = MinistralDualRopeConfig
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def __init__(self, config: MinistralDualRopeConfig):
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super().__init__(config)
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# Second, UNSCALED rotary for the sliding (local) layers. The parent's
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# ``self.rotary_emb`` is the (possibly llama3-scaled) GLOBAL rotary used by the
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# full-attention layers; build a sibling at ``rope_local_base_freq`` with NO
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# scaling. When base == rope_theta and there is no scaling the two are identical.
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local_cfg = copy.deepcopy(config)
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base = float(getattr(config, "rope_local_base_freq", None) or config._global_rope_theta())
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# Configure an UNSCALED rotary. The two transformers major versions expose RoPE
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# differently and the branches MUST be mutually exclusive:
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# * transformers >= 5 stores everything in the unified ``rope_parameters`` dict
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# and exposes ``rope_scaling`` as an ALIAS *onto* it — so setting
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# ``rope_scaling`` here would clobber ``rope_parameters`` back to ``None`` and
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# blow up inside ``MinistralRotaryEmbedding``. Set ONLY ``rope_parameters``.
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# * transformers 4.x has no ``rope_parameters``; the rotary reads ``rope_scaling``
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# (must be None to disable llama3 scaling) + a top-level ``rope_theta``.
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if hasattr(local_cfg, "rope_parameters"): # transformers >= 5
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local_cfg.rope_parameters = {"rope_type": "default", "rope_theta": base}
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else: # transformers 4.x
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local_cfg.rope_scaling = None
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local_cfg.rope_theta = base
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self.rotary_emb_local = MinistralRotaryEmbedding(config=local_cfg)
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self.post_init()
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@check_model_inputs
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def forward(
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self,
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input_ids: Optional[torch.LongTensor] = None,
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attention_mask: Optional[torch.Tensor] = None,
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position_ids: Optional[torch.LongTensor] = None,
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past_key_values=None,
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inputs_embeds: Optional[torch.FloatTensor] = None,
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use_cache: Optional[bool] = None,
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cache_position: Optional[torch.LongTensor] = None,
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**kwargs,
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) -> BaseModelOutputWithPast:
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# Verbatim from MinistralModel.forward except the two dual-RoPE lines marked (*).
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if (input_ids is None) ^ (inputs_embeds is not None):
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raise ValueError("You must specify exactly one of input_ids or inputs_embeds")
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if inputs_embeds is None:
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inputs_embeds = self.embed_tokens(input_ids)
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if use_cache and past_key_values is None:
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past_key_values = DynamicCache(config=self.config)
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if cache_position is None:
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past_seen = past_key_values.get_seq_length() if past_key_values is not None else 0
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cache_position = torch.arange(
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past_seen, past_seen + inputs_embeds.shape[1], device=inputs_embeds.device
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)
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if position_ids is None:
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position_ids = cache_position.unsqueeze(0)
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# `generate` may already pass a prepared {type: mask} dict; else build both masks.
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if not isinstance(causal_mask_mapping := attention_mask, dict):
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# Superset of every kwarg any transformers version's mask builder wants; the
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# two embeds spellings and cache_position are filtered per the installed
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# signature (see _CAUSAL_MASK_PARAMS above) so this works on 4.x and >=5.
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_mask_src = {
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"config": self.config,
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"input_embeds": inputs_embeds, # transformers 4.x
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"inputs_embeds": inputs_embeds, # transformers >= 5
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"attention_mask": attention_mask,
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"cache_position": cache_position, # transformers 4.x only
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"past_key_values": past_key_values,
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"position_ids": position_ids,
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}
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causal_mask_mapping = {
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"full_attention": create_causal_mask(
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**{k: v for k, v in _mask_src.items() if k in _CAUSAL_MASK_PARAMS}),
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"sliding_attention": create_sliding_window_causal_mask(
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**{k: v for k, v in _mask_src.items() if k in _SLIDING_MASK_PARAMS}),
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}
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hidden_states = inputs_embeds
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# (*) Dual RoPE: full-attention layers get the (scaled) global rotary, sliding
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# layers get the unscaled local rotary — routed by the same layer type as the
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# mask above.
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position_embeddings = {
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"full_attention": self.rotary_emb(hidden_states, position_ids),
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"sliding_attention": self.rotary_emb_local(hidden_states, position_ids),
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}
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for i, decoder_layer in enumerate(self.layers[: self.config.num_hidden_layers]):
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# (*) Route the mask AND the rope by the layer's attention type. Read it from
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# ``config.layer_types`` (stable across versions) rather than the layer
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# attribute, which transformers renamed ``attention_type`` -> ``layer_type``
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# between 4.x and 5.x.
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layer_type = self.config.layer_types[i]
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layer_kwargs = dict(
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attention_mask=causal_mask_mapping[layer_type],
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position_ids=position_ids,
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past_key_values=past_key_values,
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use_cache=use_cache,
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cache_position=cache_position,
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position_embeddings=position_embeddings[layer_type],
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**kwargs,
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)
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if self.gradient_checkpointing and self.training:
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# Honor activation checkpointing. The stock MinistralModel.forward does
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# this; our override MUST replicate it or long-context SFT/RL (this is a
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# 32K model) OOMs — even under LoRA, since activations, not optimizer
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# state, dominate at long sequence length. Bake the per-layer kwargs into
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# a partial so we do NOT depend on the decoder layer's positional arg
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# order, which drifts across transformers versions.
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hidden_states = self._gradient_checkpointing_func(
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partial(decoder_layer.__call__, **layer_kwargs), hidden_states
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)
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else:
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hidden_states = decoder_layer(hidden_states, **layer_kwargs)
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hidden_states = self.norm(hidden_states)
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return BaseModelOutputWithPast(
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last_hidden_state=hidden_states,
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past_key_values=past_key_values if use_cache else None,
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)
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class MinistralDualRopeForCausalLM(MinistralForCausalLM):
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config_class = MinistralDualRopeConfig
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def __init__(self, config: MinistralDualRopeConfig):
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super().__init__(config)
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self.model = MinistralDualRopeModel(config)
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self.post_init()
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__all__ = ["MinistralDualRopeForCausalLM", "MinistralDualRopeModel"]
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