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Topic_Agent/Topic_Blog/Topics/Topics_Biz/Topics_Meeting/Topics_Rag의 마크다운 지식 문서를 Topic_General/Topic_Programming/Topic_Graphic/Topic_Business 4개 카테고리로 재분류. - 중복 제거: frontmatter의 status:duplicate/merged + duplicate_of/redirect_to 필드로 자기 자신을 중복으로 선언한 리다이렉트 stub 1032개 제거, 완전 동일 내용 파일 472개 제거, 동일 파일명·다른 내용 충돌 시 더 큰(완전한) 버전만 유지(162개 제거) — 총 1639개 중복 제거. - 분류: 폴더 단위로 명확한 항목(AI_and_ML/Coding/Architecture 등 → Programming, Comfyui/Visual_Effects → Graphic, Topics_Biz/Topics_Meeting/사업 등 → Business, Poetic_Blog_Writing/창의성/Game_Design 등 → General)은 폴더 우선순위로, 나머지 혼재 폴더(Topic_Agent/Topic_Blog/Topics 루트/Thinking & Reasoning/Other/UI_UX_Assets)는 title/tags 키워드 스코어링으로 파일 단위 분류(불명확한 경우 General로 폴백). 원본 폴더명은 "From_*" 서브폴더로 보존해 추적 가능성 유지. - 최종 배치: Programming 2784 / General 1608 / Graphic 285 / Business 249 = 4926개 문서. - 에이전트 운영 상태(.astra/.agent/.obsidian/sessions/memory/_company/docs/lessons/_shared/src)는 지식 콘텐츠가 아니므로 재분류 대상에서 제외하고 원위치 유지. - Topics/Topic_email(상위 보호 폴더 Topic_email과 파일명 100% 중복) 삭제 — 보호 폴더 자체는 미변경. - 완전히 비게 된 Topic_Agent/Topic_Blog/Topics_Biz/Topics_Rag 폴더 제거.
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5.4 KiB
id, title, category, status, canonical_id, aliases, duplicate_of, source_trust_level, confidence_score, verification_status, tags, raw_sources, last_reinforced, github_commit, tech_stack
| id | title | category | status | canonical_id | aliases | duplicate_of | source_trust_level | confidence_score | verification_status | tags | raw_sources | last_reinforced | github_commit | tech_stack | |||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| wiki-2026-0508-parameter-sharing | Parameter Sharing | 10_Wiki/Topics | verified | self |
|
none | A | 0.9 | applied |
|
2026-05-10 | pending |
|
Parameter Sharing
매 한 줄
"매 same weights, different positions". 매 single parameter set 가 multiple computations 에 reuse — translation invariance (CNN), temporal invariance (RNN), parameter efficiency (transformer FFN tied embeddings). 매 modern DL 의 fundamental design pattern.
매 핵심
매 motivation
- Parameter explosion: 매 fully connected layer on image → billions of params.
- Inductive bias: 매 weight sharing encodes prior (translation/time invariance).
- Generalization: 매 fewer params → better generalization (less overfit).
- Compute: 매 shared weights enable convolution / matmul optimization.
매 forms
- Spatial sharing (CNN): 매 same conv kernel slid across image.
- Temporal sharing (RNN/LSTM/GRU): 매 same recurrent weights at every timestep.
- Cross-layer sharing: 매 ALBERT, Universal Transformer — 매 same layer params reused L times.
- Tied embeddings: 매 input embedding == output projection (LM head).
- Multi-head: 매 NOT shared (each head has own W_q, W_k, W_v).
매 modern usage
- ALBERT (2019): cross-layer sharing for BERT compression (12× param reduction).
- ViT: spatial sharing via patch embedding.
- Mamba/SSM: temporal sharing via state-space recurrence.
- LoRA: 매 single low-rank delta shared across positions.
매 응용
- CNN image classification (ResNet, ConvNeXt).
- Sequence modeling (RNN, Transformer position embeddings).
- Model compression (ALBERT, distillation).
- Multi-task learning (shared encoder).
💻 패턴
CNN spatial sharing
import torch.nn as nn
# Single 3x3 kernel applied to every spatial position
conv = nn.Conv2d(3, 64, kernel_size=3, padding=1)
# Params: 3*64*3*3 + 64 = 1792 (independent of image size)
Tied input/output embeddings
class LanguageModel(nn.Module):
def __init__(self, vocab_size, dim):
super().__init__()
self.embed = nn.Embedding(vocab_size, dim)
# tie: lm_head.weight = embed.weight
self.lm_head = nn.Linear(dim, vocab_size, bias=False)
self.lm_head.weight = self.embed.weight # share!
def forward(self, x):
h = self.embed(x)
return self.lm_head(h) # no extra params
Cross-layer sharing (ALBERT-style)
class SharedTransformer(nn.Module):
def __init__(self, num_layers, dim):
super().__init__()
self.shared_layer = TransformerBlock(dim) # ONE block
self.num_layers = num_layers
def forward(self, x):
for _ in range(self.num_layers):
x = self.shared_layer(x) # reuse same params
return x
RNN temporal sharing (built-in)
rnn = nn.GRU(input_size=128, hidden_size=256, num_layers=2)
# At every timestep t, same W_ih, W_hh applied
# Params independent of sequence length
Detect shared params
# Count unique parameter tensors
seen = set()
unique = 0
for p in model.parameters():
if id(p) not in seen:
seen.add(id(p))
unique += p.numel()
print(f"Unique params: {unique}")
Multi-task shared encoder
class MultiTaskModel(nn.Module):
def __init__(self):
super().__init__()
self.encoder = ResNet50() # SHARED
self.classifier = nn.Linear(2048, 1000)
self.detector = DetectionHead(2048)
def forward(self, x, task):
features = self.encoder(x)
return self.classifier(features) if task == "cls" else self.detector(features)
매 결정 기준
| 상황 | Approach |
|---|---|
| Image input | CNN spatial sharing |
| Sequence input | RNN or Transformer (positional sharing) |
| Memory constrained, many layers | Cross-layer sharing (ALBERT) |
| LM with large vocab | Tied embeddings (saves vocab*dim params) |
| Multi-task related | Shared encoder |
| Tasks unrelated | Don't force sharing — degrades quality |
기본값: tied embeddings + CNN spatial / Transformer positional sharing.
🔗 Graph
- 부모: Inductive-Bias · LLM_Optimization_and_Deployment_Strategies
- 응용: CNN · 데이터 사이언스 및 ML 엔지니어링 · Transformer
🤖 LLM 활용
언제: 매 designing efficient architecture, debugging param count, applying inductive bias. 언제 X: 매 tasks/positions truly independent (forcing sharing hurts quality).
❌ 안티패턴
- Over-sharing: 매 ALL layers shared → severe quality drop on complex tasks.
- No tied embeddings on small LM: 매 vocab=50k, dim=512 → 25M wasted params.
- Sharing across modalities: 매 vision encoder ≠ text encoder weights (use CLIP-style separate).
- Forgetting LayerNorm not shared: 매 cross-layer share W matrices but keep LN per-layer.
🧪 검증 / 중복
- Verified (LeCun 1989 CNN, ALBERT paper, Press & Wolf 2017 tied embeddings).
- 신뢰도 A.
🕓 Changelog
| 날짜 | 변경 |
|---|---|
| 2026-05-08 | Phase 1 |
| 2026-05-10 | Manual cleanup — sharing forms, modern usage, patterns |