o
    hb3                     @   s  d dl Z d dlmZ d dlmZmZmZ d dlZd dlm	Z
 d dlmZ d dlmZ d dlmZ d dlmZ d dlmZ d d	lmZ d d
lmZ d dlmZmZmZmZmZmZm Z  d dl!m"Z"m#Z# d dl$m%Z%m&Z& d dl'm(Z( d dl)m*Z* d dl+m,Z,m-Z-m.Z. d dl/m0Z0 d dl1m2Z2 d dl3m4Z4 d dl5m6Z6 e7e8e9eee:  ee: f f Z;dgZ<d0de:de8de8fddZ=	d1dee
j> defddZ?dej@deAfd d!ZB	d0d"ed#ee: de8dej@fd$d%ZCd&ede9e;ee
j> f fd'd(ZDG d)d* d*eZE	d1d+ed,e8d-e*d.ee# def
d/dZFdS )2    N)Sequence)castOptionalUnion)_get_device_module)ShardedTensor)TensorProperties)Shard)ChunkShardingSpec)unflatten_state_dict)DefaultLoadPlanner)BytesStorageMetadataChunkStorageMetadataMetadataMetadataIndexSTATE_DICT_TYPEr   TensorStorageMetadata)LoadPlanLoadPlanner)_create_read_items create_read_items_for_chunk_list)load_state_dict)StorageReader)_element_wise_add_element_wise_sub_normalize_device_info)_get_default_group)_create_chunk_sharded_tensor)_remote_device)DTensor!load_sharded_optimizer_state_dictcudaglobal_rankdevice_typereturnc                 C   s2   |dkrdS t |}| rt|| |  S dS )Ncpu)r   is_availabler   device_count)r"   r#   device_module r)   z/var/www/html/construction_image-detection-poc/venv/lib/python3.10/site-packages/torch/distributed/checkpoint/optimizer.py_gen_rank_device6   s   r+   pgc                    sl   t j j d u rfddtt  D }n fddt  D }tdtt	t
ttf  |dS )Nc                    s"   g | ]}d | dt |  qS rank:/)r+   .0idx)pg_device_typer)   r*   
<listcomp>F   s    z(_create_colwise_spec.<locals>.<listcomp>c              
      s*   g | ]}d | dt t | qS r-   )r+   distget_global_rankr0   r,   r3   r)   r*   r4   K   s    r   dim
placements)r5   distributed_c10d_get_pg_default_devicetyperangeget_world_sizesizer
   r   listr   r   str)r,   r:   r)   r7   r*   _create_colwise_specA   s   


rC   valc                 C   s   t | tu r.t|  dkrdS t |  d jtu rdS t |  d jtu r,tddS t | tu rFt | jtu sBt | jtu rFtddS )Nr   FTz2Cannot handle DTensor nested insided ShardedTensorzCannot handle nested DTensor)r=   r   lenlocal_shardstensorr   
ValueError_local_tensor)rD   r)   r)   r*   _is_nested_tensorU   s   rJ   propsr@   c                 C   sP   |dkrt tjt| }n
t|t| }tj|| j| j| j| j	|dS )Nr%   )r@   dtypelayoutrequires_grad
pin_memorydevice)
r   torchrP   r   current_deviceemptyrL   rM   rN   rO   )rK   r@   r#   rP   r)   r)   r*   _alloc_tensord   s   rT   
state_dictc                 C   s   i }d}|   D ]9\}}d| f||< t|rAt| dks$J dt|ts-J d| d }|jj|jj	f||< |j
j}q||fS )a+  
    Load the right TP slice of the optimizer state.

    This is not easy since the per-tensor slicing can't be inferred from checkpoint metadata.
    We take advantage of the model state_dict producing a sliced ST to figure out what we need to load.
    This is pretty fragile and it might be easier for FSDP to compute this info for us.
    Returns a dictionary where keys are the same of the state_dict and the value is a tuple of
    (offset, size) for the current rank TP slice.
    N.B. The state_dict *MUST* come from FSDP.sharded_state_dict.
    N   z%Cannot handle ST with multiple shardsz$Can only handle nested ShardedTensorr   )itemsr@   rJ   rE   rF   
isinstancer   metadatashard_offsetsshard_sizesrG   _process_group)rU   specsdp_pgkeyvalueshardr)   r)   r*   _get_state_dict_2d_layoutx   s(   rb   c                       sz   e Zd ZU eeef ed< eed< eed< deee	e
 f ddf fddZdefd	d
Zdedejf fddZ  ZS )_ReaderWithOffsettranslationrU   rY   fqn_to_offsetr$   Nc                    s*   t    || _ti | _i | _i | _d S N)super__init__re   r   rY   rU   rd   )selfre   	__class__r)   r*   rh      s
   


z_ReaderWithOffset.__init__c                 C   s   g }i | _ | j D ]\}}| jj| }t|ts"|t|||7 }q
|| jvr0|t|||7 }q
| j| }t	|
 dks?J |
 d }ttt|jj|t|jjdg}t|tt||}|D ]"}	|	jjd usnJ t|	jj|}
tj|	jt|
d}|| j |	j< qd||7 }q
t|S )NrV   r   )offsetssizes)offset)rd   rU   rW   rY   state_dict_metadatarX   r   r   re   rE   rF   r   rQ   Sizer   rZ   r[   r   r   r   
dest_indexrn   r   dataclassesreplacer   )ri   requestsfqnobjmdrn   original_shardlocal_chunksreqsrioriginal_offsetoriginal_indexr)   r)   r*   create_local_plan   s@   


	
z#_ReaderWithOffset.create_local_planindexc                    s   t  | j||S rf   )rg   lookup_tensorrd   get)ri   r   rj   r)   r*   r      s   z_ReaderWithOffset.lookup_tensor)__name__
__module____qualname__dictr   __annotations__r   r   rB   r   intrh   r   r~   rQ   Tensorr   __classcell__r)   r)   rj   r*   rc      s   
 " *rc   model_state_dictoptimizer_keystorage_readerplannerc              	   C   sN  |  }t| \}}tj|j}t|}|du r?g }	tt D ]}
t	||
|
  }|	d|
 d|  q!td|	d}nt|}i }i }|j D ]\}}|j| }|d |kr\qLt|trfd||< qL|j dkrxt|j|j|||< qL|du rtt|j|j|t t |
 t d||< qL|d	 }||d|jfd }t|jj|jj|jj|jj|jj d
}|!t"#||}g }t|}|j$D ]}t%t&|j'( |krq|t)t|j|j*||d qt+j,|||d}||v r
|| d dur
t%t-t. || d ||< |||< qLt/|||durt0|n|d t1||j}|S )a  
    Load a state_dict in conjunction with FSDP sharded optimizer state.

    This is the current recommended way to checkpoint FSDP.
    >>> # xdoctest: +SKIP
    >>> import torch.distributed.checkpoint as dist_cp
    >>> # Save
    >>> model: torch.nn.Model
    >>> optim_params = model.parameters()
    >>> optim = torch.optim.SGD(optim_params, lr=0.01)
    >>> # Save
    >>> with FSDP.state_dict_type(model, StateDictType.SHARDED_STATE_DICT):
    >>>     state_dict = {
    >>>         "optimizer": FSDP.optim_state_dict(model, optim),
    >>>         "model": model.state_dict()
    >>>     }
    >>>     dist_cp.save_state_dict(
    >>>         state_dict=optim_state,
    >>>         storage_writer=dist_cp.FileSystemWriter("checkpoint"),
    >>>         planner=dist_cp.DefaultSavePlanner(),
    >>>     )
    >>>
    >>> # Load
    >>> with FSDP.state_dict_type(model_tp, StateDictType.SHARDED_STATE_DICT):
    >>>     model_state_dict = model_tp.state_dict()
    >>>     checkpoint = {
    >>>         "model": model_state_dict
    >>>     }
    >>>     dist_cp.load_state_dict(
    >>>         state_dict=checkpoint,
    >>>         storage_reader=dist_cp.FileSystemReader(checkpoint_file),
    >>>         planner=dist_cp.DefaultLoadPlanner(),
    >>>     )
    >>>     model.load_state_dict(checkpoint["model_state"])
    >>>
    >>>     optim_state = dist_cp.load_sharded_optimizer_state_dict(
    >>>         model_state_dict,
    >>>         optimizer_key="optimizer",
    >>>         storage_reader=dist_cp.FileSystemReader("checkpoint"),
    >>>     )
    >>>
    >>>     flattened_osd = FSDP.optim_state_dict_to_load(
    >>>        model, optim, optim_state["optimizer"]
    >>>     )
    >>>
    >>>     optim.load_state_dict(flattened_osd)
    Nr.   r/   r   r8   z
<bytes_io>rV   )rank
world_sizenum_devices_per_noder,      )rL   rM   rN   memory_formatrO   )rG   rY   )process_group)rU   r   r   )2read_metadatarb   r5   r;   r<   r=   r   r>   r?   r   r'   appendr
   rC   ro   rW   planner_datarX   r   r@   numelrT   
propertiesr   get_rankr   r   ShardTensorPropertiesrL   rM   rN   r   rO   build_metadatarQ   rp   shards_metadatar   r   	placementr   r	   r[   r   +_init_from_local_shards_and_global_metadatar   r   r   rc   r   )r   r   r   r   rY   layout_specsr^   dp_pg_device_typer(   r:   idevice_infosharding_specrU   re   r_   r`   key_pathspec_key
alloc_sizer   st_mdrF   current_rankshard_mdstr)   r)   r*   r       s   5






	
)r!   rf   )Grr   collections.abcr   typingr   r   r   rQ   torch.distributeddistributedr5   torch._utilsr   +torch.distributed._shard.sharded_tensor.apir   0torch.distributed._shard.sharded_tensor.metadatar   r   -torch.distributed._shard.sharded_tensor.shardr	   :torch.distributed._shard.sharding_spec.chunk_sharding_specr
   )torch.distributed.checkpoint._nested_dictr   ,torch.distributed.checkpoint.default_plannerr   %torch.distributed.checkpoint.metadatar   r   r   r   r   r   $torch.distributed.checkpoint.plannerr   r   ,torch.distributed.checkpoint.planner_helpersr   r   .torch.distributed.checkpoint.state_dict_loaderr   $torch.distributed.checkpoint.storager   "torch.distributed.checkpoint.utilsr   r   r   "torch.distributed.distributed_c10dr   #torch.distributed.fsdp._shard_utilsr   torch.distributed.remote_devicer   torch.distributed.tensorr   r   rB   tupler   STATE_DICT_2D_LAYOUT__all__r+   ProcessGrouprC   r   boolrJ   rT   rb   rc   r    r)   r)   r)   r*   <module>   sz   $	 


%>