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CustomVisionEncoderDecoderModel init | |
CustomMBartForCausalLM init | |
CustomMBartDecoder init | |
arch_name:unimernet | |
model_type:unimernet | |
checkpoint: | |
==================================================================================================== | |
Device:cuda | |
Load model: 23.643s | |
len_gts:6762, len_preds=6762 | |
norm_gts[0]:S\sim\tilde{\psi}Q_{o}\tilde{\psi}+g_{s}^{1/2}\tilde{\psi}^{3}+\tilde{\phi}Q_{c}\tilde{\phi}+g_{s}\tilde{\phi}^{3}+\tilde{\phi}B(g_{s}^{1/2}\tilde{\psi})+\cdots. | |
norm_preds[0]:S\sim\tilde{\psi}Q_{o}\tilde{\psi}+g_{s}^{1/2}\tilde{\psi}^{3}+\tilde{\phi}Q_{c}\tilde{\phi}+g_{s}\tilde{\phi}^{3}+\tilde{\phi}B(g_{s}^{1/2}\tilde{\psi})+\cdots. | |
Evaluation Set:Simple Print Expression(SPE) | |
Inference Time: 690.366847038269s | |
bleu ⬆ edit ⬇ | |
-------- -------- | |
0.917711 0.058556 | |
==================================================================================================== | |
len_gts:5921, len_preds=5921 | |
norm_gts[0]:\begin{array}{r l}{\mathcal{L}(\{\mathbf{u,v,w,z,x}\},\{\boldsymbol{\kappa,\lambda,\mu,\nu}\})=\frac{1}{2}\|\mathbf{y-Cu}\|_{2}^{2}}&{+\tau_{1}\|\mathbf{v}\|_{1}+\tau_{2}\|\mathbf{w}\|_{1}}\\ &{+\frac{\rho_{1}}{2}\|\mathbf{Ax-u}\|_{2}^{2}+\boldsymbol{\kappa}^{\top}(\mathbf{Ax-u})}\\ &{+\frac{\rho_{2}}{2}\|\mathbf{x-v}\|_{2}^{2}+\boldsymbol{\lambda}^{\top}(\mathbf{x-v})}\\ &{+\frac{\rho_{3}}{2}\|\mathbf{Dx-w}\|_{2}^{2}+\boldsymbol{\mu}^{\top}(\mathbf{Dx-w})}\\ &{+\frac{\rho_{4}}{2}\|\mathbf{x-z}\|_{2}^{2}+\boldsymbol{\nu}^{\top}(\mathbf{x-z})}\\ &{+\mathcal{I}_{+}(\mathbf{z})}\end{array} | |
norm_preds[0]:\begin{array}{r l}{\mathcal{L}(\{\mathbf{u},\mathbf{v},\mathbf{w},\mathbf{z},\mathbf{x}\},\{\kappa,\lambda,\mu,\nu\})=\frac{1}{2}\|\mathbf{y}-\mathbf{Cu}\|_{2}^{2}}&{+\tau_{1}\|\mathbf{v}\|_{1}+\tau_{2}\|\mathbf{w}\|_{1}}\\ &{+\frac{\rho_{1}}{2}\|\mathbf{Ax}-\mathbf{u}\|_{2}^{2}+\kappa^{\top}(\mathbf{Ax}-\mathbf{u})}\\ &{+\frac{\rho_{2}}{2}\|\mathbf{x}-\mathbf{v}\|_{2}^{2}+\boldsymbol{\lambda}^{\top}(\mathbf{x}-\mathbf{v})}\\ &{+\frac{\rho_{3}}{2}\|\mathbf{Dx}-\mathbf{w}\|_{2}^{2}+\mu^{\top}(\mathbf{Dx}-\mathbf{w})}\\ &{+\frac{\rho_{4}}{2}\|\mathbf{x}-\mathbf{z}\|_{2}^{2}+\nu^{\top}(\mathbf{x}-\mathbf{z})}\\ &{+\mathcal{I}_{+}(\mathbf{z})}\end{array} | |
Evaluation Set:Complex Print Expression(CPE) | |
Inference Time: 2109.273235321045s | |
bleu ⬆ edit ⬇ | |
-------- -------- | |
0.913843 0.057546 | |
==================================================================================================== | |
len_gts:4742, len_preds=4742 | |
norm_gts[0]:F_{i}[z](x,y)=f_{i}(x,y,z)\ i=1,\ldots,n, | |
norm_preds[0]:F_{i}[z](x,y)=f_{i}(x,y,z)\ i=1,\ldots,n, | |
Evaluation Set:Screen Capture Expression(SCE) | |
Inference Time: 2425.0937654972076s | |
bleu ⬆ edit ⬇ | |
-------- -------- | |
0.617196 0.22953 | |
==================================================================================================== | |
len_gts:6332, len_preds=6332 | |
norm_gts[0]:b_{n+1}-b_{n}=-1 | |
norm_preds[0]:b_{n+1}-b_{n}=-1 | |
Evaluation Set:Handwritten Expression(HWE) | |
Inference Time: 2543.7626719474792s | |
bleu ⬆ edit ⬇ | |
-------- --------- | |
0.920905 0.0546271 | |
==================================================================================================== | |