Package evaluation to test Chevie on Julia 1.14.0-DEV.3128 (f573e2bf71*) started at 2026-09-06T17:14:35.755 ################################################################################ # Set-up # Installing PkgEval dependencies (TestEnv)... Activating project at `~/.julia/environments/v1.14` Set-up completed after 11.98s ################################################################################ # Installation # Installing Chevie... Resolving package versions... Updating `~/.julia/environments/v1.14/Project.toml` [367f69f0] + Chevie v0.1.14 Updating `~/.julia/environments/v1.14/Manifest.toml` ⌅ [36d08e8a] + AbstractPermutations v0.3.3 [367f69f0] + Chevie v0.1.14 [a6b051d1] + Combinat v0.1.5 [05fb067e] + CycPols v0.1.4 [c380f8b6] + CyclotomicNumbers v0.1.10 [bbb6641c] + FiniteFields v0.1.3 [580d1d9c] + FinitePosets v0.1.5 [2304d612] + GenLinearAlgebra v0.1.4 [a98d1166] + GenericDecMats v0.1.3 [e70aea02] + GroupPresentations v0.1.1 [d5909c97] + GroupsCore v0.5.2 [18e54dd8] + IntegerMathUtils v0.1.4 [682c06a0] + JSON v1.8.0 [b964fa9f] + LaTeXStrings v1.4.1 [10b2801c] + LaurentPolynomials v0.1.9 [f23b31af] + MatInt v0.1.4 [4249f315] + ModuleElts v0.1.5 ⌅ [bac558e1] + OrderedCollections v1.8.2 [69de0a69] + Parsers v3.0.0 [0b63354f] + PermGroups v0.2.19 [aea7be01] + PrecompileTools v1.3.4 [21216c6a] + Preferences v1.5.2 [27ebfcd6] + Primes v0.5.7 [f53aee1f] + PuiseuxPolynomials v0.1.10 [189a3867] + Reexport v1.2.2 [ae029012] + Requires v1.3.1 [87930f55] + SignedPerms v0.1.3 [ec057cc2] + StructUtils v2.8.5 [b01ca8d2] + UsingMerge v0.0.7 [0dad84c5] + ArgTools v1.2.0 [56f22d72] + Artifacts v1.11.0 [2a0f44e3] + Base64 v1.11.0 [ade2ca70] + Dates v1.11.0 [f43a241f] + Downloads v1.7.0 [7b1f6079] + FileWatching v1.11.0 [ac6e5ff7] + JuliaSyntaxHighlighting v1.13.0 [b27032c2] + LibCURL v1.0.0 [76f85450] + LibGit2 v1.11.0 [8f399da3] + Libdl v1.11.0 [37e2e46d] + LinearAlgebra v1.14.0 [56ddb016] + Logging v1.11.0 [d6f4376e] + Markdown v1.11.0 [ca575930] + NetworkOptions v1.3.0 [44cfe95a] + Pkg v1.14.0 [de0858da] + Printf v1.11.0 [9a3f8284] + Random v1.11.0 [ea8e919c] + SHA v1.13.0 [9e88b42a] + Serialization v1.11.0 [2f01184e] + SparseArrays v1.13.0 [f489334b] + StyledStrings v1.13.0 [fa267f1f] + TOML v1.0.3 [a4e569a6] + Tar v1.10.0 [cf7118a7] + UUIDs v1.11.0 [4ec0a83e] + Unicode v1.11.0 [e66e0078] + CompilerSupportLibraries_jll v1.5.7+0 [deac9b47] + LibCURL_jll v8.21.0+0 [e37daf67] + LibGit2_jll v1.9.7+0 [29816b5a] + LibSSH2_jll v1.11.104+0 [14a3606d] + MozillaCACerts_jll v2026.8.13 [4536629a] + OpenBLAS_jll v0.3.34+0 [458c3c95] + OpenSSL_jll v3.5.8+0 [efcefdf7] + PCRE2_jll v10.48.0+0 [bea87d4a] + SuiteSparse_jll v7.10.1+0 [83775a58] + Zlib_jll v1.3.2+0 [3161d3a3] + Zstd_jll v1.5.7+1 [8e850b90] + libblastrampoline_jll v5.15.0+0 [8e850ede] + nghttp2_jll v1.70.0+0 [3f19e933] + p7zip_jll v17.8.2+0 Info Packages marked with ⌅ have new versions available but compatibility constraints restrict them from upgrading. To see why use `status --outdated -m` Installation completed after 2.92s ################################################################################ # Precompilation # Precompiling PkgEval dependencies... Precompiling package dependencies... Precompiling project... 1.8 s ✓ GenericDecMats # CyclotomicNumbers adds 1 method to LaurentPolynomials.coefficients # CyclotomicNumbers adds 1 method to Perms.order # CyclotomicNumbers adds 8 methods to LaurentPolynomials.root # FiniteFields adds 2 methods to LaurentPolynomials.degree # FiniteFields adds 1 method to Groups.elements # FiniteFields adds 2 methods to Perms.order reading Chevie data: for G(de,e,n) 12.788 seconds for ᵗG(e,e,n) 0.070 seconds for Aₙ 0.078 seconds for ²Aₙ 0.044 seconds for Bₙ and Cₙ 0.136 seconds for Dₙ 0.343 seconds for ³D₄ 1.441 seconds for ²Dₙ 0.077 seconds for E₆ 2.369 seconds for ²E₆ 0.322 seconds for E₇ 1.999 seconds for E₈ 4.215 seconds for F₄ 2.492 seconds for ²F₄ 1.418 seconds for G₂ 0.295 seconds for H₃ 2.147 seconds for H₄ 9.773 seconds for I₂(e) 0.124 seconds for ²I₂(e) 0.130 seconds for G₄-G₂₂ 41.882 seconds for G₂₄ 6.427 seconds for G₂₅ 54.679 seconds for G₂₆ 4.715 seconds for G₂₇ 7.127 seconds for G₂₉ 7.426 seconds for G₃₁ 3.282 seconds for G₃₂ 29.931 seconds for G₃₃ 2.802 seconds for G₃₄ 11.609 seconds for several groups 4.271 seconds 248.8 s ✓ Chevie 2 dependencies successfully precompiled in 251 seconds. 59 already precompiled. 1 dependency had output during precompilation: ┌ Chevie │ # CyclotomicNumbers adds 1 method to LaurentPolynomials.coefficients │ # CyclotomicNumbers adds 1 method to Perms.order │ # CyclotomicNumbers adds 8 methods to LaurentPolynomials.root │ # FiniteFields adds 2 methods to LaurentPolynomials.degree │ # FiniteFields adds 1 method to Groups.elements │ # FiniteFields adds 2 methods to Perms.order │ reading Chevie data: │ for G(de,e,n) 12.788 seconds │ for ᵗG(e,e,n) 0.070 seconds │ for Aₙ 0.078 seconds │ for ²Aₙ 0.044 seconds │ for Bₙ and Cₙ 0.136 seconds │ for Dₙ 0.343 seconds │ for ³D₄ 1.441 seconds │ for ²Dₙ 0.077 seconds │ for E₆ 2.369 seconds │ for ²E₆ 0.322 seconds │ for E₇ 1.999 seconds │ for E₈ 4.215 seconds │ for F₄ 2.492 seconds │ for ²F₄ 1.418 seconds │ for G₂ 0.295 seconds │ for H₃ 2.147 seconds │ for H₄ 9.773 seconds │ for I₂(e) 0.124 seconds │ for ²I₂(e) 0.130 seconds │ for G₄-G₂₂ 41.882 seconds │ for G₂₄ 6.427 seconds │ for G₂₅ 54.679 seconds │ for G₂₆ 4.715 seconds │ for G₂₇ 7.127 seconds │ for G₂₉ 7.426 seconds │ for G₃₁ 3.282 seconds │ for G₃₂ 29.931 seconds │ for G₃₃ 2.802 seconds │ for G₃₄ 11.609 seconds │ for several groups 4.271 seconds └ Precompilation completed after 257.64s ################################################################################ # Testing # Testing Chevie Status `/tmp/jl_5vgSPW/Project.toml` [367f69f0] Chevie v0.1.14 [a6b051d1] Combinat v0.1.5 [05fb067e] CycPols v0.1.4 [c380f8b6] CyclotomicNumbers v0.1.10 [bbb6641c] FiniteFields v0.1.3 [580d1d9c] FinitePosets v0.1.5 [2304d612] GenLinearAlgebra v0.1.4 [a98d1166] GenericDecMats v0.1.3 [e70aea02] GroupPresentations v0.1.1 [b964fa9f] LaTeXStrings v1.4.1 [10b2801c] LaurentPolynomials v0.1.9 [f23b31af] MatInt v0.1.4 [4249f315] ModuleElts v0.1.5 ⌅ [bac558e1] OrderedCollections v1.8.2 [0b63354f] PermGroups v0.2.19 [27ebfcd6] Primes v0.5.7 [f53aee1f] PuiseuxPolynomials v0.1.10 [189a3867] Reexport v1.2.2 [87930f55] SignedPerms v0.1.3 [b01ca8d2] UsingMerge v0.0.7 [37e2e46d] LinearAlgebra v1.14.0 [2f01184e] SparseArrays v1.13.0 [8dfed614] Test v1.11.0 Status `/tmp/jl_5vgSPW/Manifest.toml` ⌅ [36d08e8a] AbstractPermutations v0.3.3 [367f69f0] Chevie v0.1.14 [a6b051d1] Combinat v0.1.5 [05fb067e] CycPols v0.1.4 [c380f8b6] CyclotomicNumbers v0.1.10 [bbb6641c] FiniteFields v0.1.3 [580d1d9c] FinitePosets v0.1.5 [2304d612] GenLinearAlgebra v0.1.4 [a98d1166] GenericDecMats v0.1.3 [e70aea02] GroupPresentations v0.1.1 [d5909c97] GroupsCore v0.5.2 [18e54dd8] IntegerMathUtils v0.1.4 [682c06a0] JSON v1.8.0 [b964fa9f] LaTeXStrings v1.4.1 [10b2801c] LaurentPolynomials v0.1.9 [f23b31af] MatInt v0.1.4 [4249f315] ModuleElts v0.1.5 ⌅ [bac558e1] OrderedCollections v1.8.2 [69de0a69] Parsers v3.0.0 [0b63354f] PermGroups v0.2.19 [aea7be01] PrecompileTools v1.3.4 [21216c6a] Preferences v1.5.2 [27ebfcd6] Primes v0.5.7 [f53aee1f] PuiseuxPolynomials v0.1.10 [189a3867] Reexport v1.2.2 [ae029012] Requires v1.3.1 [87930f55] SignedPerms v0.1.3 [ec057cc2] StructUtils v2.8.5 [b01ca8d2] UsingMerge v0.0.7 [0dad84c5] ArgTools v1.2.0 [56f22d72] Artifacts v1.11.0 [2a0f44e3] Base64 v1.11.0 [ade2ca70] Dates v1.11.0 [f43a241f] Downloads v1.7.0 [7b1f6079] FileWatching v1.11.0 [b77e0a4c] InteractiveUtils v1.11.0 [ac6e5ff7] JuliaSyntaxHighlighting v1.13.0 [b27032c2] LibCURL v1.0.0 [76f85450] LibGit2 v1.11.0 [8f399da3] Libdl v1.11.0 [37e2e46d] LinearAlgebra v1.14.0 [56ddb016] Logging v1.11.0 [d6f4376e] Markdown v1.11.0 [ca575930] NetworkOptions v1.3.0 [44cfe95a] Pkg v1.14.0 [de0858da] Printf v1.11.0 [9a3f8284] Random v1.11.0 [ea8e919c] SHA v1.13.0 [9e88b42a] Serialization v1.11.0 [2f01184e] SparseArrays v1.13.0 [f489334b] StyledStrings v1.13.0 [fa267f1f] TOML v1.0.3 [a4e569a6] Tar v1.10.0 [8dfed614] Test v1.11.0 [cf7118a7] UUIDs v1.11.0 [4ec0a83e] Unicode v1.11.0 [e66e0078] CompilerSupportLibraries_jll v1.5.7+0 [deac9b47] LibCURL_jll v8.21.0+0 [e37daf67] LibGit2_jll v1.9.7+0 [29816b5a] LibSSH2_jll v1.11.104+0 [14a3606d] MozillaCACerts_jll v2026.8.13 [4536629a] OpenBLAS_jll v0.3.34+0 [458c3c95] OpenSSL_jll v3.5.8+0 [efcefdf7] PCRE2_jll v10.48.0+0 [bea87d4a] SuiteSparse_jll v7.10.1+0 [83775a58] Zlib_jll v1.3.2+0 [3161d3a3] Zstd_jll v1.5.7+1 [8e850b90] libblastrampoline_jll v5.15.0+0 [8e850ede] nghttp2_jll v1.70.0+0 [3f19e933] p7zip_jll v17.8.2+0 Info Packages marked with ⌅ have new versions available but compatibility constraints restrict them from upgrading. Testing Running tests... Algebras.jl Algebras.ppart(Perm(1,2,3,4,5,6),2) Algebras.jl Algebras.ppart(Perm(1,2,3,4,5,6),3) Algebras.jl G=symmetric_group(5) Algebras.jl map(x->classreps(G)[x],Algebras.pprimesections(G,2)) Algebras.jl map(x->classreps(G)[x],Algebras.pprimesections(G,3)) Algebras.jl b=basis(Quaternions()) Algebras.jl b*permutedims(b) Algebras.jl A=ZeroHecke(coxsym(3)) Algebras.jl radical(A) Algebras.jl A=PolynomialQuotientAlgebra(Pol(:x)^2+1) Algebras.jl basis(A) Algebras.jl A=GrothendieckRing(coxsym(3)) Algebras.jl basis(A).*permutedims(basis(A)) Algebras.jl A=GrothendieckRing(coxsym(3),FFE{2}) Algebras.jl radical(A) Algebras.jl W=Group(Perm(1,2)) Algebras.jl A=GroupAlgebra(W) Algebras.jl basis(A) Algebras.jl W=coxgroup(:B,4) Algebras.jl A=SolomonAlgebra(W) Algebras.jl X=A.xbasis; X(1,2,3)*X(2,4) Algebras.jl W.solomon_subsets Algebras.jl W.solomon_conjugacy Algebras.jl Algebras.injection(A)(X(1,2,3)) Chars.jl CharTable(coxgroup(:A,3)) Chars.jl ct=CharTable(coxgroup(:G,2)) Chars.jl charnames(ct,TeX=true) Chars.jl classnames(ct,TeX=true) Chars.jl m=cartan(:A,3) Chars.jl schur_functor(m,[2,2]) Chars.jl fakedegree(coxgroup(:A,2),[[2,1]],Pol(:q)) Chars.jl fakedegrees(coxgroup(:A,2),Pol(:q)) Chars.jl charinfo(coxgroup(:G,2)).charparams Chars.jl charinfo(coxgroup(:G,2)) Chars.jl charinfo(complex_reflection_group(24)) Chars.jl W=coxgroup(:D,4) Chars.jl detPerm(W) Chars.jl W=complex_reflection_group(4) Chars.jl conjPerm(W) Chars.jl classinfo(coxgroup(:A,2)) Chars.jl W=spets(coxgroup(:D,4),Perm(1,2,4)) Chars.jl CharTable(W) Chars.jl ct=CharTable(coxsym(4)); Chars.jl scalar_product(ct,3*ct.irr[2,:],ct.irr[2,:]) Chars.jl ct=CharTable(coxsym(4)); Chars.jl decompose(ct,ct.irr[2,:].*ct.irr[2,:]) Chars.jl WF=rootdatum("3D4") Chars.jl on_chars(Group(WF),WF.phi) Chars.jl representation(complex_reflection_group(24),3) Chars.jl representations(coxgroup(:B,2)) Chars.jl W=coxgroup(:H,3) Chars.jl g=Wgraph(W,3) Chars.jl WGraphToRepresentation(3,g,Pol(:x)) Chars.jl W=coxgroup(:G,2) Chars.jl charnames(W;limit=true) Chars.jl charnames(W;TeX=true) Chars.jl charnames(W;spaltenstein=true,limit=true) Chars.jl charnames(W;spaltenstein=true,TeX=true) Chars.jl classnames(coxgroup(:G,2),TeX=true) Chars.jl g=coxgroup(:G,2) Chars.jl u=reflection_subgroup(g,[1,6]) Chars.jl t=induction_table(u,g) Chars.jl W=coxgroup(:D,4) Chars.jl H=reflection_subgroup(W,[1,3]) Chars.jl j_induction_table(H,W) Chars.jl W=coxgroup(:D,4) Chars.jl H=reflection_subgroup(W,[1,3]) Chars.jl J_induction_table(H,W) Chars.jl W=complex_reflection_group(4);@Mvp x,y Chars.jl discriminant(W)(x,y) Cosets.jl W=complex_reflection_group(14) Cosets.jl R=reflection_subgroup(W,[2,4]) Cosets.jl RF=spets(R,W(1)) Cosets.jl degrees(RF) Cosets.jl W=coxgroup(:B,2) Cosets.jl W=coxgroup(:Bsym,2) Cosets.jl WF=spets(W,Perm(1,2)) Cosets.jl CharTable(WF) Cosets.jl W=coxgroup(:Bsym,2) Cosets.jl WF=spets(W,Perm(1,2)) Cosets.jl subspets(WF,Int[],W(1)) Cosets.jl W=coxgroup(:B,2) Cosets.jl twistings(W,[1]) Cosets.jl twistings(W,[2]) Cosets.jl W=coxgroup(:B,2) Cosets.jl twistings(W,[2,4]) Cosets.jl W=coxgroup(:E,6) Cosets.jl WF=spets(W,Perm(1,6)*Perm(3,5)) Cosets.jl twistings(W,2:5) Cosets.jl twistings(WF,2:5) Cosets.jl W=coxgroup(:D,4) Cosets.jl graph_automorphisms(refltype(W*W)) Cosets.jl twistings(coxgroup(:A,3)*coxgroup(:A,3)) Cosets.jl twistings(coxgroup(:D,4)) Cosets.jl W=rootdatum(:so,8) Cosets.jl twistings(W) Cosets.jl W=rootdatum(:gl,3) Cosets.jl gu3=spets(W,-reflrep(W,W())) Cosets.jl F4=coxgroup(:F,4);D4=reflection_subgroup(F4,[1,2,16,48]) Cosets.jl spets(D4,[1 0 0 0;0 1 2 0;0 0 0 1;0 0 -1 -1]) Cosets.jl W=coxgroup(:A,3) Cosets.jl spets(W,Perm(1,3)) Cosets.jl torus([0 -1;1 -1]) Cosets.jl W=coxgroup(:A,3) Cosets.jl twistings(W,Int[]) Cosets.jl torus(W,2) Cosets.jl WF=spets(W,Perm(1,3)) Cosets.jl twistings(WF,Int[]) Cosets.jl torus(WF,2) Cosets.jl W=coxgroup(:D,4) Cosets.jl WF=spets(W,Perm(1,2,4)) Cosets.jl u=unichar(W,2) Cosets.jl F=Frobenius(WF);F(u) Cosets.jl F(u,-1) Cosets.jl F(1) Cosets.jl W=coxgroup(:E,6) Cosets.jl WF=spets(W) Cosets.jl phi=W(6,5,4,2,3,1,4,3,5,4,2,6,5,4,3,1); Cosets.jl HF=subspets(WF,2:5,phi) Cosets.jl diagram(HF) Cosets.jl degrees(HF) Cosets.jl WF=spets(coxgroup(:F,4)) Cosets.jl w=transporting_elt(Group(WF),[1,2,9,16],[1,9,16,2],ontuples); Cosets.jl LF=subspets(WF,[1,2,9,16],w) Cosets.jl diagram(LF) Cosets.jl spets("3G422") ##### Warning: cartantypes for crg(4,2,2)=Cyc{Rational{Int64}}[-E(3,2)] exec="(ζ₃²(-1-√-1)/2)₄‚₂‚₂" manl="₄‚₂‚₂" Cosets.jl: Test Failed at /home/pkgeval/.julia/packages/Chevie/ArZ3K/test/runtests.jl:149 Expression: mytest("Cosets.jl", "spets(\"3G422\")", "³G₄‚₂‚₂") Stacktrace: [1] top-level scope @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:17 [2] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [3] macro expansion @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:94 [inlined] [4] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [5] macro expansion @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:149 [inlined] [6] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:784 [inlined] Cosets.jl spets("2G5") Cosets.jl spets("3G333") Cosets.jl spets("3pG333") Cosets.jl spets("4G333") CoxGroups.jl W=coxsym(4) CoxGroups.jl p=W(1,3,2,1,3) CoxGroups.jl word(W,p) CoxGroups.jl word(W,longest(W)) CoxGroups.jl w0=longest(W) CoxGroups.jl length(W,w0) CoxGroups.jl map(w->word(W,w),refls(W,1:nref(W))) CoxGroups.jl [length(elements(W,i)) for i in 0:nref(W)] CoxGroups.jl W=coxsym(3) CoxGroups.jl firstleftdescent(W,Perm(2,3)) CoxGroups.jl W=coxsym(3) CoxGroups.jl leftdescents(W,Perm(1,3)) CoxGroups.jl W=coxgroup(:A,3) CoxGroups.jl w=perm"(1,11)(3,10)(4,9)(5,7)(6,12)" CoxGroups.jl w in W CoxGroups.jl word(W,w) CoxGroups.jl W=coxsym(4) CoxGroups.jl p=W(1,2,3,1,2,3) CoxGroups.jl length(W,p) CoxGroups.jl word(W,p) CoxGroups.jl W=coxgroup(:G,2) CoxGroups.jl H=reflection_subgroup(W,[2,6]) CoxGroups.jl word.(Ref(W),unique(reduced.(Ref(H),elements(W)))) CoxGroups.jl W=coxgroup(:G,2) CoxGroups.jl H=reflection_subgroup(W,[2,6]) CoxGroups.jl [word(W,w) for S in reduced(H,W) for w in S] CoxGroups.jl W=coxgroup(:H,3) CoxGroups.jl w=W(1,2,1,3); CoxGroups.jl b=filter(x->bruhatless(W,x,w),elements(W)); CoxGroups.jl word.(Ref(W),b) CoxGroups.jl W=coxsym(3) CoxGroups.jl bruhatless(W,Perm(1,3)) CoxGroups.jl W=coxsym(3) CoxGroups.jl bruhatPoset(W) CoxGroups.jl p=Poset((x,y)->bruhatless(W,x,y),elements(W)) CoxGroups.jl p.show_element=(io,x,n)->join(io,word(W,x.elements[n])); CoxGroups.jl p CoxGroups.jl W=coxsym(4) CoxGroups.jl bruhatPoset(W,W(1,3)) CoxGroups.jl W=coxgroup(:A,3) CoxGroups.jl words(W,longest(W)) CoxGroups.jl W=coxgroup(:A,3) CoxGroups.jl inversions(W,W(1,2,1)) CoxGroups.jl CoxGroups.standard_parabolic_class(coxgroup(:E,8),[7,8]) CoxGroups.jl C=cartan(:H,3) CoxGroups.jl coxmat(C) CoxGroups.jl W=coxsym(4) CoxGroups.jl coxmat(W) CoxGroups.jl W=complex_reflection_group(29) CoxGroups.jl braid_relations(W) CoxGroups.jl longest(coxsym(4)) CoxGroups.jl longest(coxsym(4)) CoxGroups.jl W=coxsym(3) CoxGroups.jl gens(W) CoxGroups.jl e=elements(W) CoxGroups.jl length.(Ref(W),e) CoxGroups.jl W=coxsym(3) CoxGroups.jl isleftdescent(W,Perm(1,2),1) CoxGroups.jl W=coxsym(3) CoxGroups.jl isrightdescent(W,Perm(1,2),1) CoxGroups.jl elements(coxhyp(2)) CoxGroups.jl W=coxgroup([2 -2;-2 2]) CoxGroups.jl gens(W) Diagrams.jl diagram(coxgroup(:E,8)) Diagrams.jl diagram(crg(33)) Eigenspaces.jl W=coxgroup(:E,8) Eigenspaces.jl relative_degrees(W,4) Eigenspaces.jl regular_eigenvalues(coxgroup(:G,2)) Eigenspaces.jl W=complex_reflection_group(6) Eigenspaces.jl L=twistings(W,[2])[4] Eigenspaces.jl regular_eigenvalues(L) Eigenspaces.jl W=coxgroup(:E,8) Eigenspaces.jl position_regular_class(W,30) Eigenspaces.jl W=complex_reflection_group(6) Eigenspaces.jl L=twistings(W,[2])[4] Eigenspaces.jl position_regular_class(L,7//12) Eigenspaces.jl W=coxgroup(:A,3) Eigenspaces.jl w=W(1:3...) Eigenspaces.jl p=eigenspace_projector(W,w,1//4) Eigenspaces.jl GenLinearAlgebra.rank(p) Eigenspaces.jl W=coxgroup(:A,3) Eigenspaces.jl split_levis(W,4) Eigenspaces.jl W=spets(coxgroup(:D,4),Perm(1,2,4)) Eigenspaces.jl split_levis(W,3) Eigenspaces.jl W=coxgroup(:E,8) Eigenspaces.jl split_levis(W,4,2) Eigenspaces.jl split_levis(complex_reflection_group(5)) Eigenspaces.jl W=coxgroup(:E,8) Eigenspaces.jl relative_group(W,2:5) FFfac.jl @Pol q FFfac.jl f=q^3*(q^4-1)^2*Z(3)^0 FFfac.jl factor(f) FFfac.jl factor(f,GF(9)) Fact.jl factor(Pol(:q)^24-1) Fact.jl Fact.LogInt(1024,2) Fact.jl Fact.LogInt(1,10) Families.jl W=coxgroup(:G,2) Families.jl uc=UnipotentCharacters(W); Families.jl uc.families Families.jl uc.families[1] Families.jl charnames(uc)[uc.families[1].charNumbers] Families.jl Family(:C2) Families.jl Family(:C2,4:7;signs=[1,-1,1,-1]) Families.jl f=UnipotentCharacters(complex_reflection_group(3,1,1)).families[2] Families.jl galois(f,-1) Families.jl f=UnipotentCharacters(complex_reflection_group(3,1,1)).families[2] Families.jl invpermute(f,Perm(1,2,3)) Families.jl Families.ndrinfeld_double(complex_reflection_group(5)) Families.jl family_imprimitive([[0,1],[1],[0]]) Families.jl FamiliesClassical(symbols(2,3)) exec="0112233,[4])\n Family(3,[9])\n Family(112,[2])\n Family(01123,[1, 3, 8, 11])\n Family(013,[5, 7, 10, 12])\n Family(022,[6])" manl="112,[2])\n Family(022,[6])\n Family(3,[9])\n Family(01123,[1, 3, 8, 11])\n Family(0112233,[4])\n Family(013,[5, 7, 10, 12])" Families.jl: Test Failed at /home/pkgeval/.julia/packages/Chevie/ArZ3K/test/runtests.jl:275 Expression: mytest("Families.jl", "FamiliesClassical(symbols(2,3))", "6-element Vector{Family}:\n Family(112,[2])\n Family(022,[6])\n Family(3,[9])\n Family(01123,[1, 3, 8, 11])\n Family(0112233,[4])\n Family(013,[5, 7, 10, 12])") Stacktrace: [1] top-level scope @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:17 [2] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [3] macro expansion @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:262 [inlined] [4] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [5] macro expansion @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:275 [inlined] [6] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:784 [inlined] Families.jl W=complex_reflection_group(4) Families.jl uc=UnipotentCharacters(W);f=uc.families[4]; Families.jl A=Zbasedring(fourier(f),1) Families.jl b=basis(A) Families.jl b*permutedims(b) Families.jl CharTable(A) Format.jl s="E_6[\\zeta_3]:\\phi_{1,6}" Format.jl fromTeX(rio(),s) Format.jl fromTeX(stdout,s) Format.jl s="E_6[\\zeta_3]:\\phi_{1,6}" Format.jl fromTeX(rio(),s) Format.jl fromTeX(stdout,s) Format.jl ordinal(201) Format.jl ordinal(202) Format.jl ordinal(203) Format.jl ordinal(204) Format.jl joindigits([1,9,3,5]) Format.jl joindigits([1,10,3,5]) Format.jl joindigits([1,10,3,5],"[]";sep="-") Garside.jl W=coxgroup(:A,4) Garside.jl B=BraidMonoid(W) Garside.jl w=B(1,2,3,4) Garside.jl w*w Garside.jl w*W(1) Garside.jl W(1)*w Garside.jl w^3 Garside.jl B(1,2)\w Garside.jl w/B(3,4) Garside.jl w^B(1) Garside.jl w^W(1) Garside.jl word(α(w^3)) Garside.jl w^4 Garside.jl inv(w) Garside.jl B(-4,-3,-2,-1) Garside.jl xrepr(w^-1,greedy=true,limit=true) Garside.jl repr(w) Garside.jl repr(w^3) Garside.jl repr(w^-1) Garside.jl b=B(2,1,4,1,4) Garside.jl c=B(1,4,1,4,3) Garside.jl d=conjugating_elt(b,c) Garside.jl b^d Garside.jl centralizer_gens(b) exec="21.1\n 321432.213243\n 4" manl="321432.213243\n 21.1\n 4" Garside.jl: Test Failed at /home/pkgeval/.julia/packages/Chevie/ArZ3K/test/runtests.jl:322 Expression: mytest("Garside.jl", "centralizer_gens(b)", "3-element Vector{GarsideElt{Perm{Int16}, BraidMonoid{Perm{Int16}, FiniteCoxeterGroup{Perm{Int16},Int64}}}}:\n 321432.213243\n 21.1\n 4") Stacktrace: [1] top-level scope @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:17 [2] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [3] macro expansion @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:299 [inlined] [4] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [5] macro expansion @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:322 [inlined] [6] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:784 [inlined] Garside.jl C=conjcat(b;ss=Val(:ss)) Garside.jl C.obj Garside.jl word(W,preferred_prefix(b)) Garside.jl b^B(preferred_prefix(b)) Garside.jl C=conjcat(b) Garside.jl C.obj Garside.jl W=coxgroup(:A,3) Garside.jl B=BraidMonoid(W) Garside.jl Pi=B(B.δ)^2 Garside.jl root(Pi,2) Garside.jl root(Pi,3) Garside.jl root(Pi,4) Garside.jl B=BraidMonoid(coxgroup(:A,3)) Garside.jl word(B,B.δ) Garside.jl W=coxgroup(:A,3) Garside.jl B=BraidMonoid(W) Garside.jl map(x->B.(x),left_divisors(B,W(1,3,2))) Garside.jl B=DualBraidMonoid(W) Garside.jl map(x->B.(x),left_divisors(B,W(1,3,2))) Garside.jl W=coxgroup(:A,3) Garside.jl B=BraidMonoid(W) Garside.jl map(x->B.(x),right_divisors(B,W(1,3,2))) Garside.jl M=BraidMonoid(coxgroup(:A,2)) Garside.jl elements(M,4) Garside.jl B=DualBraidMonoid(coxsym(4)) Garside.jl left_divisors(B(1,5,4,3)) Garside.jl left_divisors(B(1,5,4,3),1) Garside.jl B=DualBraidMonoid(coxsym(4)) Garside.jl right_divisors(B(1,5,4,3)) Garside.jl W=coxgroup(:E,8);B=BraidMonoid(W) Garside.jl w=B(2,3,4,2,3,4,5,4,2,3,4,5,6,5,4,2,3,4,5,6,7,6,5,4,2,3,4,5,6,7,8) Garside.jl Brieskorn_normal_form(w) Garside.jl Brieskorn_normal_form(w^2) Garside.jl B=BraidMonoid(coxgroup(:A,3)) Garside.jl b=B( 2, 1, -3, 1, 1) Garside.jl fraction(b) Garside.jl W=coxgroup(:A,3) Garside.jl b=BraidMonoid(W)(2,1,2,1,1) Garside.jl α(b) Garside.jl W=coxgroup(:A,4);B=BraidMonoid(W) Garside.jl w0=B(longest(W)) Garside.jl α(w0,[1,2,3]) Garside.jl B=BraidMonoid(coxgroup(:A,3)) Garside.jl b=B(2,1,2,1,1)*inv(B(2,2)) Garside.jl word(b) Garside.jl W=coxgroup(:A,3) Garside.jl B=BraidMonoid(W) Garside.jl leftgcdc(B(2,1,2)^2,B(3,2)^2) Garside.jl W=coxgroup(:A,3) Garside.jl B=BraidMonoid(W) Garside.jl rightgcdc(B(2,1,2)^2,B(3,2)^2) Garside.jl B=BraidMonoid(coxgroup(:A,3)) Garside.jl leftlcmc(B(2,1,2)^2,B(3,2)^2) Garside.jl B=BraidMonoid(coxgroup(:A,3)) Garside.jl rightlcmc(B(2,1,2)^2,B(3,2)^2) Garside.jl W=coxsym(4) Garside.jl b=BraidMonoid(W)(2,1,2,1,1) Garside.jl p=image(b) Garside.jl word(W,p) Garside.jl W=coxgroup(:A,2) Garside.jl pi=BraidMonoid(W)(longest(W))^2 Garside.jl words(pi) Garside.jl W=coxgroup(:A,3) Garside.jl D=DualBraidMonoid(W) Garside.jl D(2,1,2,1,1) Garside.jl D(-1,-2,-3,1,1) Garside.jl W=crg(4) Garside.jl D=DualBraidMonoid(W) Garside.jl left_divisors(D(D.δ)) Garside.jl W=coxgroup(:E,8);M=DualBraidMonoid(W) Garside.jl s4=left_divisors(M,M.δ,4); Garside.jl s=M(s4[findfirst(x->x*δad(M,x,8)==M.δ,s4)]) Garside.jl "the right-lcms of the `δⁱ`-orbits on `leftdescents(b)`" function satoms(b,i) M=b.M ld=M.atoms[leftdescents(b)] di=Perm(ld,δad.(Ref(M),ld,i)) if isnothing(di) error(b," is not δ^\$i-stable") end map(o->M(rightlcm(M,ld[o]...)),orbits(di,eachindex(ld))) end WARNING: Detected access to binding `Main.satoms` in a world prior to its definition world. Julia 1.12 has introduced more strict world age semantics for global bindings. !!! This code may malfunction under Revise. !!! This code will error in future versions of Julia. Hint: Add an appropriate `invokelatest` around the access to this binding. To make this warning an error, and hence obtain a stack trace, use `julia --depwarn=error`. exec=" (generic function with 1 method)" manl="" Garside.jl: Test Failed at /home/pkgeval/.julia/packages/Chevie/ArZ3K/test/runtests.jl:395 Expression: mytest("Garside.jl", "\"the right-lcms of the `δⁱ`-orbits on `leftdescents(b)`\"\n function satoms(b,i)\n M=b.M\n ld=M.atoms[leftdescents(b)]\n di=Perm(ld,δad.(Ref(M),ld,i))\n if isnothing(di) error(b,\" is not δ^\\\$i-stable\") end\n map(o->M(rightlcm(M,ld[o]...)),orbits(di,eachindex(ld)))\n end", "satoms") Stacktrace: [1] top-level scope @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:17 [2] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [3] macro expansion @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:299 [inlined] [4] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [5] macro expansion @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:395 [inlined] [6] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:784 [inlined] Garside.jl Category(x->satoms(x,15),s;action=(o,m)->inv(m)*o*δad(m,8)) Garside.jl W=coxsym(4);M=BraidMonoid(W) Garside.jl endomorphisms(conjcat(M(1,1,2,2,3)),1) exec="12.213\n 213.1232" manl="213.1232\n 12.213" Garside.jl: Test Failed at /home/pkgeval/.julia/packages/Chevie/ArZ3K/test/runtests.jl:398 Expression: mytest("Garside.jl", "endomorphisms(conjcat(M(1,1,2,2,3)),1)", "2-element Vector{GarsideElt{Perm{Int16}, BraidMonoid{Perm{Int16}, CoxSym{Int16}}}}:\n 213.1232\n 12.213") Stacktrace: [1] top-level scope @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:17 [2] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [3] macro expansion @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:299 [inlined] [4] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [5] macro expansion @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:398 [inlined] [6] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:784 [inlined] Garside.jl W=coxgroup(:A,4) Garside.jl w=BraidMonoid(W)(4,3,3,2,1) Garside.jl C=conjcat(w) Garside.jl C.obj Garside.jl conjcat(w;ss=Val(:ss)).obj Garside.jl W=coxgroup(:D,4) Garside.jl B=BraidMonoid(W) Garside.jl b=B(2,3,1,2,4,3) Garside.jl b1=B(1,4,3,2,2,2) Garside.jl conjugating_elt(b,b1) Garside.jl c=conjugating_elt(b,b1;ss=Val(:cyc)) Garside.jl b^c Garside.jl WF=spets(W,Perm(1,2,4)) Garside.jl F=Frobenius(WF); Garside.jl c=B(3,4,3,1,2,3) Garside.jl conjugating_elt(b,c,F) Garside.jl ^(b,B(1,2,4,3,1,2),F) Garside.jl W=coxgroup(:D,4) Garside.jl B=BraidMonoid(W) Garside.jl w=B(4,4,4) Garside.jl cc=centralizer_gens(w) exec="34.43\n 4\n (31432)⁻¹231432\n 1\n 2\n (2)⁻¹34.432\n (32431)⁻¹132431\n (1)⁻¹34.431" manl="1\n (31432)⁻¹231432\n (1)⁻¹34.431\n (2)⁻¹34.432\n (32431)⁻¹132431\n 4\n 34.43\n 2" Garside.jl: Test Failed at /home/pkgeval/.julia/packages/Chevie/ArZ3K/test/runtests.jl:419 Expression: mytest("Garside.jl", "cc=centralizer_gens(w)", "8-element Vector{GarsideElt{Perm{Int16}, BraidMonoid{Perm{Int16}, FiniteCoxeterGroup{Perm{Int16},Int64}}}}:\n 1\n (31432)⁻¹231432\n (1)⁻¹34.431\n (2)⁻¹34.432\n (32431)⁻¹132431\n 4\n 34.43\n 2") Stacktrace: [1] top-level scope @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:17 [2] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [3] macro expansion @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:299 [inlined] [4] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [5] macro expansion @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:419 [inlined] [6] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:784 [inlined] Garside.jl shrink(cc) #I total length 41 maximal length 11 #I 8:<11÷5>..<10÷5><9÷4>.. eliminated #I 7:<11÷5>...<10÷5><9÷4>... #I 6:<6÷1>..<5÷1> eliminated #I 5:<6÷1>...<5÷1> eliminated #I 4:<4÷0>... #I 3:<1÷0>.. #I 2:<1÷0>. #I total length 16 maximal length 9 #I 5:<9÷4>.... #I 4:<4÷0>. #I 3:<1÷0>. #I 2:<1÷0>. Garside.jl centralizer_gens(w;ss=Val(:cyc)) Garside.jl F=Frobenius(spets(W,Perm(1,2,4))); Garside.jl centralizer_gens(w,F) exec="312343123\n 124" manl="124\n 312343123" Garside.jl: Test Failed at /home/pkgeval/.julia/packages/Chevie/ArZ3K/test/runtests.jl:423 Expression: mytest("Garside.jl", "centralizer_gens(w,F)", "2-element Vector{GarsideElt{Perm{Int16}, BraidMonoid{Perm{Int16}, FiniteCoxeterGroup{Perm{Int16},Int64}}}}:\n 124\n 312343123") Stacktrace: [1] top-level scope @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:17 [2] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [3] macro expansion @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:299 [inlined] [4] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [5] macro expansion @ ~/.julia/packages/Chevie/ArZ3K/test/runtests.jl:423 [inlined] [6] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:784 [inlined] Garside.jl M=DualBraidMonoid(coxgroup(:A,3)) Garside.jl p=Presentation(M,vars=Symbol.(collect("abcdef"))) Garside.jl B=BraidMonoid(coxsym(3)) Garside.jl b=[B(1)^3,B(2)^3,B(-2,-1,-1,2,2,2,2,1,1,2),B(1,1,1,2)] Garside.jl shrink(b) #I total length 20 maximal length 10 #I 4:<10÷3>..<6÷1>. #I 3:<4÷0>..<1÷0> #I 2:<3÷0>. #I total length 13 maximal length 6 #I 4:<6÷1>.<4÷0>..<1÷0> #I 3:<3÷0>...<2÷0> #I 2:<3÷0>.<2÷0> #I total length 6 maximal length 2 #I 4:<2÷0>.. eliminated #I 3:<2÷0>. eliminated #I 2:<1÷0>. #I total length 2 maximal length 1 #I 2:<1÷0>. Gt.jl W=coxgroup(:G,2) Gt.jl closed_subsystemsPoset(W) Gt.jl W=coxgroup(:G,2) Gt.jl closed_subsystems(W) Gt.jl W=coxgroup(:G,2) Gt.jl map(I->reflection_subgroup(W,I),closed_subsystems_reps(W)) Gt.jl t=ClassTypes(rootdatum(:sl,3)) HeckeAlgebras.jl W=coxgroup(:A,2) HeckeAlgebras.jl H=hecke(W,0) HeckeAlgebras.jl T=Tbasis(H); HeckeAlgebras.jl b=T.(elements(W)) HeckeAlgebras.jl b*permutedims(b) HeckeAlgebras.jl H=hecke(W,Pol(:q)) HeckeAlgebras.jl T=Tbasis(H); HeckeAlgebras.jl h=T(1,2)^2 HeckeAlgebras.jl length(h) HeckeAlgebras.jl h[W(2,1)] HeckeAlgebras.jl collect(h) HeckeAlgebras.jl collect(values(h)) HeckeAlgebras.jl collect(keys(h)) HeckeAlgebras.jl h[W(2,1)]=Pol(3) HeckeAlgebras.jl h HeckeAlgebras.jl W=coxgroup(:B,2) HeckeAlgebras.jl @Pol q HeckeAlgebras.jl H=hecke(W,q) HeckeAlgebras.jl H.para HeckeAlgebras.jl H=hecke(W,q^2,rootpara=-q) HeckeAlgebras.jl H=hecke(W,q^2) HeckeAlgebras.jl rootpara(H) HeckeAlgebras.jl H HeckeAlgebras.jl H=hecke(W,[q^2,q^4],rootpara=[q,q^2]) HeckeAlgebras.jl H.para,H.rootpara HeckeAlgebras.jl H=hecke(W,9,rootpara=3) HeckeAlgebras.jl H.para,H.rootpara HeckeAlgebras.jl @Mvp x,y,z,t HeckeAlgebras.jl H=hecke(W,[[x,y]]) HeckeAlgebras.jl rootpara(H);H HeckeAlgebras.jl H=hecke(W,[[x,y],[z,t]]) HeckeAlgebras.jl rootpara(H);H HeckeAlgebras.jl hecke(coxgroup(:F,4),(q,q^2)).para HeckeAlgebras.jl hecke(complex_reflection_group(3,1,2),q).para HeckeAlgebras.jl H=hecke(crg(4),Pol()) HeckeAlgebras.jl CharTable(H) HeckeAlgebras.jl W=crg(24) HeckeAlgebras.jl H=hecke(W,Pol(:q)) HeckeAlgebras.jl representation(H,3) HeckeAlgebras.jl H=hecke(coxgroup(:D,5),Pol(:q)) HeckeAlgebras.jl representation(H,7) HeckeAlgebras.jl H=hecke(coxgroup(:F,4)) HeckeAlgebras.jl isrepresentation(H,reflrep(H)) HeckeAlgebras.jl isrepresentation(H,Tbasis(H).(1:4)) HeckeAlgebras.jl W=coxgroup(:B,2);H=hecke(W,Pol(:q)) HeckeAlgebras.jl reflrep(H) HeckeAlgebras.jl H=hecke(coxgroup(:H,3)) HeckeAlgebras.jl reflrep(H) HeckeAlgebras.jl W=coxgroup(:H,3) HeckeAlgebras.jl H=hecke(W,Pol(:q)^2) HeckeAlgebras.jl g=Wgraph(W,3) HeckeAlgebras.jl WGraphToRepresentation(H,g) HeckeAlgebras.jl H=hecke(coxgroup(:H,3),Pol(:q)) HeckeAlgebras.jl central_monomials(H) HeckeAlgebras.jl H=hecke(coxsym(4),Pol(:q));T=Tbasis(H); HeckeAlgebras.jl representation(T(1,2)^2,2) #I Initialized Murphy basis HeckeAlgebras.jl H=hecke(coxgroup(:A,2),Pol(:q)) HeckeAlgebras.jl T=Tbasis(H);T(longest(H.W))^2 HeckeAlgebras.jl W=crg(3,1,1) HeckeAlgebras.jl H=hecke(crg(3,1,1),Pol(:q)) HeckeAlgebras.jl T=Tbasis(H);T(1)^3 HeckeAlgebras.jl W=coxgroup(:G,2);H=hecke(W,Pol(:q)) HeckeAlgebras.jl T=Tbasis(H);h=T(1,2)*T(2,1) HeckeAlgebras.jl alt(h) HeckeAlgebras.jl W=coxsym(4) HeckeAlgebras.jl H=hecke(W,Pol(:q)) HeckeAlgebras.jl h=Tbasis(H)(longest(W)) HeckeAlgebras.jl p=class_polynomials(h) HeckeAlgebras.jl W=coxgroup(:B,2) HeckeAlgebras.jl H=hecke(W,q^2;rootpara=q) HeckeAlgebras.jl char_values(Cpbasis(H)(1,2,1)) HeckeAlgebras.jl W=crg(4) HeckeAlgebras.jl H=hecke(W,Pol(:q)) HeckeAlgebras.jl char_values(H,[2,1,2]) HeckeAlgebras.jl H=hecke(complex_reflection_group(4),Pol(:q)) HeckeAlgebras.jl s=schur_elements(H) HeckeAlgebras.jl CycPol.(s) HeckeAlgebras.jl @Mvp x,y; W=crg(4); H=hecke(W,[[1,x,y]]) HeckeAlgebras.jl p=factorized_schur_element(H,[[2,5]]) HeckeAlgebras.jl q=p(;x=E(3)) HeckeAlgebras.jl q(;y=2//1) HeckeAlgebras.jl HeckeAlgebras.expand(p) HeckeAlgebras.jl W=complex_reflection_group(4) HeckeAlgebras.jl @Mvp x,y; H=hecke(W,[[1,x,y]]) HeckeAlgebras.jl factorized_schur_element(H,[[2,5]]) HeckeAlgebras.jl W=complex_reflection_group(4) HeckeAlgebras.jl @Mvp x,y; H=hecke(W,[[1,x,y]]) HeckeAlgebras.jl factorized_schur_elements(H) HeckeAlgebras.jl WF=rootdatum(:u,3) HeckeAlgebras.jl HF=hecke(WF,Pol(:v)^2;rootpara=Pol()) HeckeAlgebras.jl CharTable(HF) HeckeAlgebras.jl WF=rootdatum("2B2") HeckeAlgebras.jl H=hecke(WF,Pol(:x)^2;rootpara=Pol()) HeckeAlgebras.jl representations(H) KL.jl W=coxgroup(:H,3) KL.jl c=left_cells(W) KL.jl W=coxgroup(:F,4) KL.jl w=longest(W)*gens(W)[1];length(W,w) KL.jl y=W(1:4...);length(W,y) KL.jl cr=KL.critical_pair(W,y,w);length(W,cr) KL.jl Pol(:x);KLPol(W,y,w) KL.jl KLPol(W,cr,w) KL.jl W=coxgroup(:B,3) KL.jl map(i->map(x->KLPol(W,one(W),x),elements(W,i)),1:nref(W)) KL.jl W=coxgroup(:B,2);@Pol v;H=hecke(W,[v^4,v^2]) KL.jl Cp=Cpbasis(H);h=Cp(1)^2 KL.jl k=Tbasis(H)(h) KL.jl Cp(k) KL.jl W=coxgroup(:B,3) KL.jl @Pol v;H=hecke(W,v^2,rootpara=v) KL.jl C=Cpbasis(H); Tbasis(H)(C(1,2)) KL.jl W=coxgroup(:B,3);H=hecke(W,Pol(:v)^2) KL.jl T=Tbasis(H);C=Cbasis(H);T(C(1)) KL.jl C(T(1)) KL.jl ref=reflrep(H) KL.jl @Pol v;H=hecke(coxgroup(:B,2),v^2) KL.jl T=Tbasis(H);D=Dbasis(H); KL.jl D(T(1)) KL.jl β(D(1)) KL.jl @Pol v;H=hecke(coxgroup(:B,2),v^2) KL.jl T=Tbasis(H);Dp=Dpbasis(H);alt(Dp(1)) KL.jl Dp(1)^3 KL.jl c=left_cells(coxgroup(:G,2))[3] KL.jl character(c) KL.jl W=coxgroup(:H,3) KL.jl c=left_cells(W)[3] KL.jl @Mvp q;H=hecke(W,q) KL.jl representation(c,H) KL.jl W=coxgroup(:G,2) KL.jl left_cells(W) KL.jl W=coxgroup(:G,2); KL.jl left_cells(W,1) KL.jl W=coxgroup(:E,8) KL.jl LeftCell(W,W((1:8)...)) KL.jl W=coxgroup(:G,2) KL.jl l=Lusztigaw(W,W(1)) KL.jl sum(l.*map(i->almostchar(W,i),eachindex(l))) KL.jl W=coxgroup(:G,2) KL.jl l=LusztigAw(W,W(1)) KL.jl sum(l.*map(i->almostchar(W,i),eachindex(l))) KL.jl W=coxgroup(:G,2) KL.jl A=AsymptoticAlgebra(W,1) KL.jl b=basis(A) KL.jl b*permutedims(b) KL.jl CharTable(A) Lusztig.jl W=coxgroup(:B,3) Lusztig.jl t=twistings(W,[1,3]) Lusztig.jl lusztig_induction_table(t[2],W) Murphy.jl W=coxgroup(:A,2) Murphy.jl H=hecke(W,Pol(:q)) Murphy.jl l=Tbasis(H).(elements(W)) Murphy.jl Murphy.SpechtModules(H,false);Murphybasis(H).(l) #I Initialized Murphy basis Nf.jl F=NF(E(5)) Nf.jl K=NF(root(5)) Nf.jl conductor(K) Nf.jl E(5)+E(5,-1) in NF(root(5)) Nf.jl elements(galois(F)) Nf.jl NF(root(3),root(5)) Nf.jl Nf.LenstraBase(24,Group([Mod(19,24)]),Group([Mod(19,24)])) Nf.jl Nf.LenstraBase(24,Group([Mod(19,24)]),Group([Mod(19,24),Mod(5,24)])) Nf.jl Nf.LenstraBase(15,Group([Mod(4,15)]),Group(Mod.(prime_residues(15),15))) Nf.jl NF(E(3),root(5)) Nf.jl NF([E(3),root(5)]) Nf.jl NF(15,[Mod(4,15)]) Nf.jl NF(15,[4]) Nf.jl F=NF(root(5)) Nf.jl s=Aut(F,3) Nf.jl root(5)^s Nf.jl K=CF(5) Nf.jl F=NF(root(5)) Nf.jl galois(K) Nf.jl elements(galois(K)) Nf.jl elements(galois(F)) PermRoot.jl W=complex_reflection_group(4) PermRoot.jl gens(W) PermRoot.jl length(unique(refls(W))) PermRoot.jl length(refls(W)) PermRoot.jl reflrep(W) PermRoot.jl braid_relations(W) PermRoot.jl diagram(W) PermRoot.jl cartan(W) PermRoot.jl simpleroots(W) PermRoot.jl simplecoroots(W) PermRoot.jl degrees(W) PermRoot.jl fakedegrees(W,Pol(:x)) PermRoot.jl reflectionMatrix([1,0,-E(3,2)]) PermRoot.jl asreflection([-1 0 0;1 1 0;0 0 1]) PermRoot.jl asreflection([-1 0 0;1 1 0;0 0 1],[1,0,0]) PermRoot.jl W=coxgroup(:A,3) PermRoot.jl cartan(W) PermRoot.jl rank(complex_reflection_group(31)) PermRoot.jl W=coxgroup(:D,3) PermRoot.jl t=refltype(W) PermRoot.jl indices(t) PermRoot.jl bipartite_decomposition(coxgroup(:E,8)) PermRoot.jl W=coxgroup(:B,3) PermRoot.jl reflchar(W,longest(W)) PermRoot.jl reflchar(coxgroup(:A,3)) PermRoot.jl refleigen(coxgroup(:B,2)) PermRoot.jl W=coxgroup(:A,4) PermRoot.jl reflength(W,longest(W)) PermRoot.jl reflength(W,W(1,2,3,4)) PermRoot.jl W=reflection_subgroup(coxgroup(:A,3),[1,3]) PermRoot.jl semisimplerank(W) PermRoot.jl rank(W) PermRoot.jl W=rootdatum(:gl,4) PermRoot.jl baseX(W) PermRoot.jl E7=rootdatum("E7sc") PermRoot.jl W=reflection_subgroup(E7,1:6) PermRoot.jl PermX(W,reflrep(W,E7(7)))==E7(7) PermRoot.jl parabolic_reps(coxgroup(:A,4)) PermRoot.jl parabolic_reps(complex_reflection_group(3,3,3)) # Extending G₃‚₃‚₃₍₁₎=A₁Φ₁² 8 new subgroups*# changing inclusiongens to <2,22> for A₂₍₁₇₎<12 refs> **# changing inclusiongens to <5,8> for A₂₍₁₇₎<12 refs> *# changing inclusiongens to <6,13> for A₂₍₁₄₎<6 refs> *# changing inclusiongens to <9,29> for A₂₍₁₇₎<12 refs> *# changing inclusiongens to <12,38> for A₂₍₁₇₎<12 refs> **# changing inclusiongens to <20,39> for A₂₍₁₄₎<6 refs> # changing inclusiongens to <1,3> for A₂<6 refs> # changing inclusiongens to <1,10> for A₂₍₁₈₎<12 refs> # changing inclusiongens to <1,32> for A₂₍₁₆₎<12 refs> # changing inclusiongens to <1,15> for A₂<12 refs> # 4 to go # candidates for G₃‚₃‚₃₍₁₃₎=A₂Φ₁ to be conjugate:Any[] # new:G₃‚₃‚₃₍₁₃₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁ # i=2 found:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁] # changing inclusiongens to <1,10> for A₂₍₁₇₎<12 refs> # ****** G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ is not conjugate to a standard parabolic # Extending G₃‚₃‚₃₍₁₎=A₁Φ₁² 8 new subgroups********# 4 to go # candidates for G₃‚₃‚₃₍₁₃₎=A₂Φ₁ to be conjugate:Any[] # new:G₃‚₃‚₃₍₁₃₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁ # i=2 found:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁] # ****** G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ is not conjugate to a standard parabolic # Extending G₃‚₃‚₃₍₁₎=A₁Φ₁² 8 new subgroups********# 4 to go # candidates for G₃‚₃‚₃₍₁₃₎=A₂Φ₁ to be conjugate:Any[] # new:G₃‚₃‚₃₍₁₃₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁ # i=2 found:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁] # ****** G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ is not conjugate to a standard parabolic # Extending G₃‚₃‚₃₍₁₎=A₁Φ₁² 8 new subgroups********# 4 to go # candidates for G₃‚₃‚₃₍₁₃₎=A₂Φ₁ to be conjugate:Any[] # new:G₃‚₃‚₃₍₁₃₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁ # i=2 found:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁] # ****** G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ is not conjugate to a standard parabolic PermRoot.jl parabolic_reps(coxgroup(:A,4),2) PermRoot.jl parabolic_reps(complex_reflection_group(3,3,3),2) # Extending G₃‚₃‚₃₍₁₎=A₁Φ₁² 8 new subgroups*# changing inclusiongens to <2,22> for A₂₍₁₇₎<12 refs> **# changing inclusiongens to <5,8> for A₂₍₁₇₎<12 refs> *# changing inclusiongens to <6,13> for A₂₍₁₄₎<6 refs> *# changing inclusiongens to <9,29> for A₂₍₁₇₎<12 refs> *# changing inclusiongens to <12,38> for A₂₍₁₇₎<12 refs> **# changing inclusiongens to <20,39> for A₂₍₁₄₎<6 refs> # changing inclusiongens to <1,3> for A₂<6 refs> # changing inclusiongens to <1,10> for A₂₍₁₈₎<12 refs> # changing inclusiongens to <1,32> for A₂₍₁₆₎<12 refs> # changing inclusiongens to <1,15> for A₂<12 refs> # 4 to go # candidates for G₃‚₃‚₃₍₁₃₎=A₂Φ₁ to be conjugate:Any[] # new:G₃‚₃‚₃₍₁₃₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ # candidates for G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁ to be conjugate:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁] # new:G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁ # i=2 found:Any[G₃‚₃‚₃₍₁₃₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₀₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁, G₃‚₃‚₃₍₁‚₁₅₎=A₂Φ₁] # changing inclusiongens to <1,10> for A₂₍₁₇₎<12 refs> # ****** G₃‚₃‚₃₍₁‚₃₂₎=A₂Φ₁ is not conjugate to a standard parabolic PermRoot.jl W=reflection_subgroup(rootdatum("E7sc"),1:6) PermRoot.jl reflrep(W,longest(W)) PermRoot.jl W=reflection_subgroup(rootdatum("E7sc"),1:6) PermRoot.jl YMatrix(W,longest(W)) PermRoot.jl W=reflection_subgroup(rootdatum("E7sc"),1:6) PermRoot.jl PermY(W,YMatrix(W,longest(W)))==longest(W) PermRoot.jl W=complex_reflection_group(7) PermRoot.jl isparabolic(reflection_subgroup(W,[1,2])) PermRoot.jl isparabolic(reflection_subgroup(W,[1])) PermRoot.jl W=complex_reflection_group(7) PermRoot.jl parabolic_closure(W,[1]) PermRoot.jl parabolic_closure(W,[1,2]) # changing inclusiongens to <1,2,3> for G₇<168 refs> PermRoot.jl catalan(coxgroup(:A,7)) PermRoot.jl catalan(complex_reflection_group(7),2) PermRoot.jl catalan(complex_reflection_group(7),2;q=Pol()) PermRoot.jl W=complex_reflection_group(4) PermRoot.jl invariant_form(W) PermRoot.jl PermRoot.generic_order(complex_reflection_group(4),Pol(:q)) PermRoot.jl W=coxgroup(:A,2) PermRoot.jl @Mvp x,y,z PermRoot.jl i=invariants(W); PermRoot.jl map(f->f(x,y),i) PermRoot.jl W=complex_reflection_group(24) PermRoot.jl p=invariants(W)[1](x,y,z) PermRoot.jl map(v->^(v,reflrep(W,1);vars=[:x,:y,:z]),(x,y,z)) PermRoot.jl p^reflrep(W,1)-p PermRoot.jl W=coxgroup(:B,2) PermRoot.jl hyperplane_orbits(W) Rootdata.jl W=rootdatum([-1 1 0;0 -1 1],[-1 1 0;0 -1 1]) Rootdata.jl reflrep(W,W(1)) Rootdata.jl rootdatum(:gl,3) Rootdata.jl torus(3) Rootdata.jl W=coxgroup(:A,4) Rootdata.jl SubTorus(W,[1 2 3 4;2 3 4 1;3 4 1 1]) Rootdata.jl weightinfo(coxgroup(:A,2)*coxgroup(:B,2)) Rootdata.jl W=coxgroup(:A,3) Rootdata.jl fundamental_group(W) Rootdata.jl fundamental_group(W;full=true) Rootdata.jl W=rootdatum(:sl,4) Rootdata.jl fundamental_group(W) Rootdata.jl W=coxgroup(:A,3) Rootdata.jl fundamental_group(intermediate_group(W)) Rootdata.jl fundamental_group(intermediate_group(W,2)) Rootdata.jl fundamental_group(intermediate_group(W,1)) Semisimple.jl G=rootdatum(:sl,4) Semisimple.jl ss(G,[1//3,1//4,3//4,2//3]) Semisimple.jl SemisimpleElement(G,[E(3),E(4),E(4,3),E(3,2)]) Semisimple.jl L=reflection_subgroup(G,[1,3]) Semisimple.jl C=algebraic_center(L) Semisimple.jl T=torsion_subgroup(C.Z0,3) Semisimple.jl e=sort(elements(T)) Semisimple.jl e[3]^G(2) Semisimple.jl orbit(G,e[3]) Semisimple.jl G=rootdatum(:sl,4) Semisimple.jl s=SemisimpleElement(G,Z(4).^[1,2,1]) Semisimple.jl s^G(2) Semisimple.jl orbit(G,s) Semisimple.jl G=coxgroup(:A,3) Semisimple.jl s=ss(G,[0,1//2,0]) Semisimple.jl centralizer(G,s) Semisimple.jl ss(rootdatum(:sl,4),[1//3,1//4,3//4,2//3]) Semisimple.jl G=rootdatum(:sl,4) Semisimple.jl L=reflection_subgroup(G,[1,3]) Semisimple.jl C=algebraic_center(L) Semisimple.jl T=torsion_subgroup(C.Z0,3) Semisimple.jl sort(elements(T)) Semisimple.jl G=coxgroup(:A,3) Semisimple.jl s=ss(G,[0,1//2,0]) Semisimple.jl centralizer(G,s) Semisimple.jl W=coxgroup(:E,6);l=quasi_isolated_reps(W) Semisimple.jl map(s->isisolated(W,s),l) Semisimple.jl W=rootdatum(:E6sc);l=quasi_isolated_reps(W) Semisimple.jl map(s->isisolated(W,s),l) Semisimple.jl Semisimple.quasi_isolated_reps(W,3) Semisimple.jl l=twistings(rootdatum(:sl,4),Int[]) Semisimple.jl structure_rational_points_connected_centre.(l,3) Semisimple.jl W=coxgroup(:G,2) Semisimple.jl sscentralizer_reps(W) Semisimple.jl reflection_subgroup.(Ref(W),sscentralizer_reps(W)) Semisimple.jl sscentralizer_reps(W,2) Sscoset.jl WF=rootdatum(:u,6) Sscoset.jl l=quasi_isolated_reps(WF) Sscoset.jl centralizer.(Ref(WF),l) Sscoset.jl isisolated.(Ref(WF),l) Sscoset.jl WF=rootdatum(:u,6) Sscoset.jl s=ss(Group(WF),[1//4,0,0,0,0,3//4]) Sscoset.jl centralizer(WF,s) Sscoset.jl centralizer(WF,one(s)) Sscoset.jl WF=rootdatum("2E6sc") Sscoset.jl quasi_isolated_reps(WF) Sscoset.jl quasi_isolated_reps(WF,2) Sscoset.jl quasi_isolated_reps(WF,3) Sscoset.jl WF=rootdatum(:u,6) Sscoset.jl l=quasi_isolated_reps(WF) Sscoset.jl isisolated.(Ref(WF),l) SymFuncs.jl SymFuncs.p(Partition(3,2,1)) SymFuncs.jl SymFuncs.p([3,2,1]) SymFuncs.jl SymFuncs.p(3,2,1) SymFuncs.jl SymFuncs.s(SymFuncs.p(3,2,1)) SymFuncs.jl SymFuncs.h(SymFuncs.p(3,2,1)) SymFuncs.jl SymFuncs.h(SymFuncs.p(3,2,1))[3,2,1] SymFuncs.jl SymFuncs.s(2,1)*SymFuncs.s(2,1) SymFuncs.jl SymFuncs.s(2,1)⊗SymFuncs.s(2,1) SymFuncs.jl scalar_product(SymFuncs.p(1,1,1),SymFuncs.s(2,1)) SymFuncs.jl SymFuncs.s(2,1)+SymFuncs.p(3) SymFuncs.jl plethysm(SymFuncs.p(2,1),SymFuncs.s(2,1)) SymFuncs.jl SymFuncs.p(2,1)[SymFuncs.s(2,1)] SymFuncs.jl @Mvp u,v SymFuncs.jl SymFuncs.p(2,1)[u*SymFuncs.p(2)+v*SymFuncs.p(3)] SymFuncs.jl Mvp(SymFuncs.p(2)+SymFuncs.p(3)) SymFuncs.jl Mvp(SymFuncs.p(2),[:u,:v,:w]) SymFuncs.jl Pi=SymFuncs.π; SymFuncs.jl SymFuncs.p(2,1)⊠SymFuncs.p(1) SymFuncs.jl SymFuncs.p([[2,1],[1]]) SymFuncs.jl SymFuncs.p(PartitionTuple([2,1],[1])) SymFuncs.jl SymFuncs.p([2,1],[1]) SymFuncs.jl SymFuncs.s(Pi([1],[1])) SymFuncs.jl Pi(SymFuncs.p([2],[1])) SymFuncs.jl Pi(SymFuncs.p([2],[1]))[[2],[1]] SymFuncs.jl Mvp(SymFuncs.p(3)⊠SymFuncs.p(2)) SymFuncs.jl scalar_product(Pi([1],[1]),Pi([1],[1])) SymFuncs.jl scalar_product(SymFuncs.p([1],[1]),SymFuncs.p([1],[1])) SymFuncs.jl @Mvp u,v SymFuncs.jl SymFuncs.p(3)[(u+v^2)SymFuncs.p()] SymFuncs.jl SymFuncs.p(3,2)[(u+v^2)SymFuncs.p()] Symbols.jl symbols(3,3,0) Symbols.jl Partition([2,1,1]) Symbols.jl p=Partition(2,1,1) Symbols.jl length(p) Symbols.jl rank(p) Symbols.jl union(p,p) Symbols.jl p' Symbols.jl p[1] Symbols.jl p[4] Symbols.jl core(Partition(3,3,1),3) Symbols.jl quotient(Partition(3,3,1),3) Symbols.jl partition_core_quotient(Partition(2,1,1),[Int[],Int[],[1]]) Symbols.jl βset([3,3,1]) Symbols.jl shiftβ([2,3],2) Symbols.jl shiftβ([0,1,4,5],-2) Symbols.jl shiftβ([0,1,4,5]) Symbols.jl partβ([0,4,5]) Symbols.jl PartitionTuple([[3,1],Int[]]) Symbols.jl PartitionTuple([3,1],Int[]) Symbols.jl PartitionTuple(Partition(3,1),Partition()) Symbols.jl d=partition_tuples(3,2) Symbols.jl string_partition_tuple.(d) Symbols.jl CharSymbol([[1],Int[],[2]]) Symbols.jl CharSymbol([[1],[1],[1]],3,2) Symbols.jl Symbol_partition_tuple([[2,1],[1]],1) Symbols.jl Symbol_partition_tuple([[2,1],[1]],0) Symbols.jl Symbol_partition_tuple([[2,1],[1]],-1) Symbols.jl rank(CharSymbol([[1,5,6],[1,2]])) Symbols.jl valuation_gendeg(CharSymbol([[1,5,6],[1,2]])) Symbols.jl degree_gendeg(CharSymbol([[1,5,6],[1,2]])) Symbols.jl defectsymbol([[1,5,6],[1,2]]) Symbols.jl defect(CharSymbol([[1,5,6],[1,2]])) Symbols.jl degree_feg(CharSymbol([[1,5,6],[1,2]])) Symbols.jl valuation_feg(CharSymbol([[1,5,6],[1,2]])) Symbols.jl symbols(2,4,0) Symbols.jl symbols(2,4,0,1) Symbols.jl fakedegree(CharSymbol([[1,5,6],[1,2]])) Symbols.jl gendeg(CharSymbol([[1,2],[1,5,6]])) Tools.jl valuation.(24,(2,3,5)) Tools.jl abelian_gens([Perm(1,2),Perm(3,4,5),Perm(6,7)]) Tools.jl abelian_invariants(Group(Perm(1,2),Perm(3,4,5),Perm(6,7))) Tools2.jl W=coxsym(5) Tools2.jl blocks(W,2) Tools2.jl blocks(W,3) Tools2.jl blocks(W,7) Tools2.jl @Mvp x,y Tools2.jl factor(x^2-y^2+x+3y-2) Tools2.jl factor(x^2+x+1) Tools2.jl factor(x*y-1) Truncs.jl @Pol x Truncs.jl p=(x+x^2)^5 Truncs.jl tp=Trunc(p,4) Truncs.jl inv(tp) Truncs.jl inv(tp)*tp Truncs.jl tp*2 Truncs.jl Truncs.varname=:q Truncs.jl tp Truncs.jl length(tp) Truncs.jl tp+1 Truncs.jl tp+Pol()^5 Truncs.jl tp-Trunc(Pol()^5,4) Truncs.jl tp[1] Truncs.jl tp[6] Truncs.jl a=(3Pol()^-2+1)/p Truncs.jl Trunc(a,4) Truncs.jl Trunc(a,4)*tp Truncs.jl @Mvp x,y Truncs.jl den=x-y Truncs.jl frac=(x+y)/den Truncs.jl Truncs.varname=:x Truncs.jl tden=Trunc(den,4,:x) Truncs.jl tfrac=Trunc(frac,4,:x) Truncs.jl tden*tfrac Truncs.jl pade(inv(Trunc(p,10))) Truncs.jl p=Pol([2,0,1],-1) Truncs.jl Trunc(p,4) Truncs.jl @Pol x Truncs.jl f=inv(Trunc(x^3+2x+1,6)) Truncs.jl Truncs.continued_fraction(f) Truncs.jl @Pol x Truncs.jl f=inv(Trunc(x^3+2x+1,6)) Truncs.jl pade(f) Uch.jl W=coxgroup(:G,2) Uch.jl uc=UnipotentCharacters(W) Uch.jl uc.families[1] Uch.jl W=coxgroup(:G,2) Uch.jl T=spets(reflection_subgroup(W,Int[]),W(1,2)) Uch.jl u=unipotent_character(T,1) Uch.jl T=torus(W,position_regular_class(W,6)) Uch.jl lusztig_induce(W,u) Uch.jl v=deligne_lusztig_character(W,[1,2]) Uch.jl degree(v) Uch.jl scalar_product(v,v) Uch.jl UnipotentCharacters(complex_reflection_group(4)) Uch.jl W=coxgroup(:Bsym,2) Uch.jl WF=spets(W,Perm(1,2)) Uch.jl uc=UnipotentCharacters(WF) Uch.jl uc.families Uch.jl uc.families[3] Uch.jl uc=UnipotentCharacters(coxgroup(:G,2)); Uch.jl charnames(uc;limit=true) Uch.jl charnames(uc;TeX=true) Uch.jl W=coxgroup(:B,2) Uch.jl uc=UnipotentCharacters(W) Uch.jl W=coxgroup(:G,2) Uch.jl uc=UnipotentCharacters(W); Uch.jl degrees(uc) Uch.jl W=coxgroup(:G,2) Uch.jl CycPoldegrees(UnipotentCharacters(W)) Uch.jl W=coxgroup(:G,2) Uch.jl u=unichar(W,7) Uch.jl v=unichar(W,"G2[E3]") Uch.jl w=unichar(W,[1,0,0,-1,0,0,2,0,0,1]) Uch.jl unichar(W,fourier(UnipotentCharacters(W))[3,:]) Uch.jl coefficients(u) Uch.jl w-2u Uch.jl scalar_product(w,w) Uch.jl degree(w) Uch.jl W=coxgroup(:G,2) Uch.jl WF=spets(W) Uch.jl T=subspets(WF,Int[],W(1)) Uch.jl u=unichar(T,1) Uch.jl lusztig_induce(WF,u) Uch.jl dlchar(W,W(1)) Uch.jl W=coxgroup(:G,2) Uch.jl WF=spets(W) Uch.jl T=subspets(WF,Int[],W(1)) Uch.jl u=dlchar(W,W(1)) Uch.jl lusztig_restrict(T,u) Uch.jl T=subspets(WF,Int[],W(2)) Uch.jl lusztig_restrict(T,u) Uch.jl dlCharTable(W) Uch.jl W=coxgroup(:G,2) Uch.jl dlchar(W,3) Uch.jl dlchar(W,W(1)) Uch.jl dlchar(W,[1]) Uch.jl dlchar(W,[1,2]) Uch.jl W=coxgroup(:B,2) Uch.jl almostchar(W,3) Uch.jl almostchar(W,1) Uch.jl W=coxgroup(:A,2) Uch.jl H=hecke(W,Pol(:q)) Uch.jl T=Tbasis(H); Uch.jl dllefschetz(T(1,2)) Uch.jl dllefschetz((T(1)+T())*(T(2)+T())) Uch.jl H=hecke(spets(W,Perm(1,2)),Pol(:q)^2) Uch.jl T=Tbasis(H);dllefschetz(T(1)) ====================================================================================== Information request received. A stacktrace will print followed by a 1.0 second profile. --trace-compile is enabled during profile collection. ====================================================================================== cmd: /opt/julia/bin/julia 23 running 1 of 1 signal (10): User defined signal 1 unknown function (ip: 0x773304e00155) at /lib/x86_64-linux-gnu/libc.so.6 __libc_free at /lib/x86_64-linux-gnu/libc.so.6 (unknown line) _ZN4llvm21BranchProbabilityInfo9calculateERKNS_8FunctionERKNS_8LoopInfoEPKNS_17TargetLibraryInfoEPNS_13DominatorTreeEPNS_17PostDominatorTreeE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN12_GLOBAL__N_124CodeGenPrepareLegacyPass13runOnFunctionERN4llvm8FunctionE.part.0 at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm13FPPassManager13runOnFunctionERNS_8FunctionE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm13FPPassManager11runOnModuleERNS_6ModuleE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm6legacy15PassManagerImpl3runERNS_6ModuleE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) operator() at /source/src/jitlayers.cpp:1578:23 compileModule at /source/src/jitlayers.cpp:2702:79 operator() at /source/src/jitlayers.cpp:1052:53 [inlined] CallImpl):: > at /source/usr/include/llvm/ADT/FunctionExtras.h:212:49 operator() at /source/usr/include/llvm/ADT/FunctionExtras.h:366:62 [inlined] operator() at /source/src/objcache.cpp:340:24 [inlined] get at /source/src/objcache.cpp:381:30 materialize at /source/src/jitlayers.cpp:1061:37 _ZN4llvm3orc19MaterializationTask3runEv at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) dispatch at /source/src/julia-task-dispatcher.h:377:13 [inlined] dispatch at /source/src/julia-task-dispatcher.h:366:6 _ZN4llvm3orc16ExecutionSession12dispatchTaskESt10unique_ptrINS0_4TaskESt14default_deleteIS3_EE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm3orc16ExecutionSession22dispatchOutstandingMUsEv at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm3orc16ExecutionSession17OL_completeLookupESt10unique_ptrINS0_21InProgressLookupStateESt14default_deleteIS3_EESt10shared_ptrINS0_23AsynchronousSymbolQueryEESt8functionIFvRKNS_8DenseMapIPNS0_8JITDylibENS_8DenseSetINS0_15SymbolStringPtrENS_12DenseMapInfoISF_vEEEENSG_ISD_vEENS_6detail12DenseMapPairISD_SI_EEEEEE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm3orc25InProgressFullLookupState8completeESt10unique_ptrINS0_21InProgressLookupStateESt14default_deleteIS3_EE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm3orc16ExecutionSession19OL_applyQueryPhase1ESt10unique_ptrINS0_21InProgressLookupStateESt14default_deleteIS3_EENS_5ErrorE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm3orc16ExecutionSession6lookupENS0_10LookupKindERKSt6vectorISt4pairIPNS0_8JITDylibENS0_19JITDylibLookupFlagsEESaIS8_EENS0_15SymbolLookupSetENS0_11SymbolStateENS_15unique_functionIFvNS_8ExpectedINS_8DenseMapINS0_15SymbolStringPtrENS0_17ExecutorSymbolDefENS_12DenseMapInfoISI_vEENS_6detail12DenseMapPairISI_SJ_EEEEEEEEESt8functionIFvRKNSH_IS6_NS_8DenseSetISI_SL_EENSK_IS6_vEENSN_IS6_SV_EEEEEE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) publishCIs at /source/src/jitlayers.cpp:2247:14 jl_compile_codeinst_impl at /source/src/jitlayers.cpp:521:39 jl_compile_method_very_internal at /source/src/gf.c:4105:27 _jl_invoke at /source/src/gf.c:4582:16 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 #160 at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/tbl/cmplximp.jl:313:0 (pc: 13) mapreduce_first at ./reduce.jl:432:0 [inlined] _mapreduce at ./reduce.jl:443:0 (pc: 27) unknown function (ip: 0x7732e73fc468) at (unknown file) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 _mapreduce_dim at ./reducedim.jl:345:0 (pc: 1) #mapreduce#890 at ./reducedim.jl:328:0 [inlined] mapreduce at ./reducedim.jl:328:0 [inlined] #_sum#900 at ./reducedim.jl:1001:0 [inlined] _sum at ./reducedim.jl:1001:0 [inlined] #sum#898 at ./reducedim.jl:997:0 [inlined] sum at ./reducedim.jl:997:0 (pc: 1) unknown function (ip: 0x7732e73fbf06) at (unknown file) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 #154 at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/tbl/cmplximp.jl:312:0 (pc: 540) get! at ./dict.jl:460:0 (pc: 24) entry at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/tbl/cmplximp.jl:298:0 (pc: 7) unknown function (ip: 0x773256da1409) at (unknown file) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 #162 at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/tbl/cmplximp.jl:320:0 (pc: 8) iterate at ./generator.jl:49:0 [inlined] collect at ./array.jl:839:0 (pc: 113) #130 at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/tbl/cmplximp.jl:320:0 (pc: 401) unknown function (ip: 0x773256d9c30b) at (unknown file) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 #600 at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/tbl/weyla.jl:47:0 (pc: 3) unknown function (ip: 0x773256d99010) at (unknown file) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2535:12 [inlined] jl_f__apply_iterate at /source/src/builtins.c:1041:26 chevieget at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/InitChevie.jl:286:0 (pc: 771) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 #34 at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/HeckeAlgebras.jl:524:0 (pc: 315) iterate at ./generator.jl:49:0 [inlined] _collect at ./array.jl:859:0 (pc: 46) collect_similar at ./array.jl:774:0 [inlined] map at ./abstractarray.jl:3491:0 [inlined] #32 at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/HeckeAlgebras.jl:523:0 (pc: 29) get! at ./dict.jl:460:0 (pc: 24) get! at /home/pkgeval/.julia/packages/PermGroups/FyIxU/src/Groups.jl:128:0 [inlined] #CharTable#29 at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/HeckeAlgebras.jl:519:0 [inlined] CharTable at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/HeckeAlgebras.jl:518:0 (pc: 3) unknown function (ip: 0x773256d8f049) at (unknown file) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 #772 at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/tbl/weyl2a.jl:74:0 (pc: 115) unknown function (ip: 0x773256d8de90) at (unknown file) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2535:12 [inlined] jl_f__apply_iterate at /source/src/builtins.c:1041:26 chevieget at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/InitChevie.jl:286:0 (pc: 771) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 #144 at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/HeckeAlgebras.jl:1627:0 (pc: 216) iterate at ./generator.jl:49:0 [inlined] _collect at ./array.jl:859:0 (pc: 46) collect_similar at ./array.jl:774:0 [inlined] map at ./abstractarray.jl:3491:0 [inlined] #142 at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/HeckeAlgebras.jl:1625:0 (pc: 8) get! at ./dict.jl:460:0 (pc: 24) get! at /home/pkgeval/.julia/packages/PermGroups/FyIxU/src/Groups.jl:128:0 [inlined] #CharTable#139 at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/HeckeAlgebras.jl:1623:0 [inlined] CharTable at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/HeckeAlgebras.jl:1622:0 [inlined] char_values at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/HeckeAlgebras.jl:1189:0 (pc: 4) deligne_lusztig_lefschetz at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/Uch.jl:1225:0 (pc: 125) deligne_lusztig_lefschetz at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/Uch.jl:1222:0 (pc: 1) unknown function (ip: 0x773256d816a6) at (unknown file) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2535:12 [inlined] do_call at /source/src/interpreter.c:123:26 eval_value at /source/src/interpreter.c:259:16 eval_stmt_value at /source/src/interpreter.c:194:23 [inlined] eval_body at /source/src/interpreter.c:829:21 jl_interpret_toplevel_thunk at /source/src/interpreter.c:1052:21 ijl_eval_thunk at /source/src/toplevel.c:772:18 jl_toplevel_eval_flex at /source/src/toplevel.c:716:26 jl_eval_toplevel_stmts at /source/src/toplevel.c:601:15 jl_toplevel_eval_flex at /source/src/toplevel.c:688:27 ijl_toplevel_eval at /source/src/toplevel.c:786:12 ijl_toplevel_eval_in at /source/src/toplevel.c:831:13 eval at ./boot.jl:618:0 (pc: 1) EvalInto at ./boot.jl:624:0 [inlined] mytest at /home/pkgeval/.julia/packages/Chevie/ArZ3K/test/runtests.jl:5:0 (pc: 4) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2535:12 [inlined] jl_f__apply_iterate at /source/src/builtins.c:1041:26 eval_test_function at /source/usr/share/julia/stdlib/v1.14/Test/src/Test.jl:407:0 unknown function (ip: 0x7732ec913c76) at (unknown file) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2535:12 [inlined] do_call at /source/src/interpreter.c:123:26 eval_value at /source/src/interpreter.c:259:16 eval_body at /source/src/interpreter.c:735:35 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:704:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:704:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:712:21 jl_interpret_toplevel_thunk at /source/src/interpreter.c:1052:21 ijl_eval_thunk at /source/src/toplevel.c:772:18 jl_toplevel_eval_flex at /source/src/toplevel.c:716:26 jl_eval_toplevel_stmts at /source/src/toplevel.c:601:15 jl_toplevel_eval_flex at /source/src/toplevel.c:688:27 ijl_toplevel_eval at /source/src/toplevel.c:786:12 ijl_toplevel_eval_in at /source/src/toplevel.c:831:13 eval at ./boot.jl:618:0 (pc: 1) include_string at ./loading.jl:3291:0 (pc: 140) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 _include at ./loading.jl:3353:0 (pc: 123) include at ./Base.jl:335:0 (pc: 1) IncludeInto at ./Base.jl:336:0 (pc: 2) jfptr_IncludeInto_1.1 at /opt/julia/lib/julia/sys.so (unknown line) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2535:12 [inlined] do_call at /source/src/interpreter.c:123:26 eval_value at /source/src/interpreter.c:259:16 eval_stmt_value at /source/src/interpreter.c:194:23 [inlined] eval_body at /source/src/interpreter.c:829:21 jl_interpret_toplevel_thunk at /source/src/interpreter.c:1052:21 ijl_eval_thunk at /source/src/toplevel.c:772:18 jl_toplevel_eval_flex at /source/src/toplevel.c:716:26 jl_eval_toplevel_stmts at /source/src/toplevel.c:601:15 jl_toplevel_eval_flex at /source/src/toplevel.c:688:27 ijl_toplevel_eval at /source/src/toplevel.c:786:12 ijl_toplevel_eval_in at /source/src/toplevel.c:831:13 eval at ./boot.jl:618:0 (pc: 1) __script_entry_eval at ./client.jl:106:0 [inlined] exec_options at ./client.jl:350:0 (pc: 426) _start at ./client.jl:695:0 (pc: 217) jfptr__start_0.1 at /opt/julia/lib/julia/sys.so (unknown line) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2535:12 [inlined] true_main at /source/src/jlapi.c:990:29 jl_repl_entrypoint at /source/src/jlapi.c:1157:15 main at /source/cli/loader_exe.c:117:15 unknown function (ip: 0x773304d91249) at /lib/x86_64-linux-gnu/libc.so.6 __libc_start_main at /lib/x86_64-linux-gnu/libc.so.6 (unknown line) unknown function (ip: 0x4010b8) at /workspace/srcdir/glibc-2.17/csu/../sysdeps/x86_64/start.S unknown function (ip: (nil)) at (unknown file) ============================================================== Profile collected. A report will print at the next yield point. Disabling --trace-compile ============================================================== ====================================================================================== Information request received. A stacktrace will print followed by a 1.0 second profile. --trace-compile is enabled during profile collection. ====================================================================================== cmd: /opt/julia/bin/julia 1 running 0 of 1 signal (10): User defined signal 1 epoll_pwait at /lib/x86_64-linux-gnu/libc.so.6 (unknown line) uv__io_poll at /workspace/srcdir/libuv/src/unix/linux.c:1404:0 uv_run at /workspace/srcdir/libuv/src/unix/core.c:430:0 ijl_task_get_next at /source/src/scheduler.c:573:34 wait at ./task.jl:1652:0 (pc: 108) wait_forever at ./task.jl:1528:0 (pc: 4) jfptr_wait_forever_0.1 at /opt/julia/lib/julia/sys.so (unknown line) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2535:12 [inlined] start_task at /source/src/task.c:1280:23 unknown function (ip: (nil)) at (unknown file) ============================================================== Profile collected. A report will print at the next yield point. Disabling --trace-compile ============================================================== Overhead ╎ [+additional indent] Count File:Line Function ========================================================= Thread 1 (default) Task 0x000076b64bf33730 Total snapshots: 356. Utilization: 0% ╎356 @Base/task.jl:1528 wait_forever() 355╎ 356 @Base/task.jl:? wait() [23] signal 15: Terminated in expression starting at none:1 _ZN4llvm28PostDominatorTreeWrapperPass13releaseMemoryEv at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm13PMDataManager8freePassEPNS_4PassENS_9StringRefENS_19PassDebuggingStringE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm13PMDataManager16removeDeadPassesEPNS_4PassENS_9StringRefENS_19PassDebuggingStringE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm13FPPassManager13runOnFunctionERNS_8FunctionE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm13FPPassManager11runOnModuleERNS_6ModuleE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm6legacy15PassManagerImpl3runERNS_6ModuleE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) operator() at /source/src/jitlayers.cpp:1578:23 compileModule at /source/src/jitlayers.cpp:2702:79 operator() at /source/src/jitlayers.cpp:1052:53 [inlined] CallImpl):: > at /source/usr/include/llvm/ADT/FunctionExtras.h:212:49 operator() at /source/usr/include/llvm/ADT/FunctionExtras.h:366:62 [inlined] operator() at /source/src/objcache.cpp:340:24 [inlined] get at /source/src/objcache.cpp:381:30 materialize at /source/src/jitlayers.cpp:1061:37 _ZN4llvm3orc19MaterializationTask3runEv at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) dispatch at /source/src/julia-task-dispatcher.h:377:13 [inlined] dispatch at /source/src/julia-task-dispatcher.h:366:6 _ZN4llvm3orc16ExecutionSession12dispatchTaskESt10unique_ptrINS0_4TaskESt14default_deleteIS3_EE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm3orc16ExecutionSession22dispatchOutstandingMUsEv at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm3orc16ExecutionSession17OL_completeLookupESt10unique_ptrINS0_21InProgressLookupStateESt14default_deleteIS3_EESt10shared_ptrINS0_23AsynchronousSymbolQueryEESt8functionIFvRKNS_8DenseMapIPNS0_8JITDylibENS_8DenseSetINS0_15SymbolStringPtrENS_12DenseMapInfoISF_vEEEENSG_ISD_vEENS_6detail12DenseMapPairISD_SI_EEEEEE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm3orc25InProgressFullLookupState8completeESt10unique_ptrINS0_21InProgressLookupStateESt14default_deleteIS3_EE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm3orc16ExecutionSession19OL_applyQueryPhase1ESt10unique_ptrINS0_21InProgressLookupStateESt14default_deleteIS3_EENS_5ErrorE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) _ZN4llvm3orc16ExecutionSession6lookupENS0_10LookupKindERKSt6vectorISt4pairIPNS0_8JITDylibENS0_19JITDylibLookupFlagsEESaIS8_EENS0_15SymbolLookupSetENS0_11SymbolStateENS_15unique_functionIFvNS_8ExpectedINS_8DenseMapINS0_15SymbolStringPtrENS0_17ExecutorSymbolDefENS_12DenseMapInfoISI_vEENS_6detail12DenseMapPairISI_SJ_EEEEEEEEESt8functionIFvRKNSH_IS6_NS_8DenseSetISI_SL_EENSK_IS6_vEENSN_IS6_SV_EEEEEE at /opt/julia/bin/../lib/julia/libLLVM.so.22.1jl (unknown line) publishCIs at /source/src/jitlayers.cpp:2247:14 jl_compile_codeinst_impl at /source/src/jitlayers.cpp:521:39 jl_compile_method_very_internal at /source/src/gf.c:4105:27 _jl_invoke at /source/src/gf.c:4582:16 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 deligne_lusztig_lefschetz at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/Uch.jl:1225:0 (pc: 141) deligne_lusztig_lefschetz at /home/pkgeval/.julia/packages/Chevie/ArZ3K/src/Uch.jl:1222:0 (pc: 1) unknown function (ip: 0x773256d816a6) at (unknown file) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2535:12 [inlined] do_call at /source/src/interpreter.c:123:26 eval_value at /source/src/interpreter.c:259:16 eval_stmt_value at /source/src/interpreter.c:194:23 [inlined] eval_body at /source/src/interpreter.c:829:21 jl_interpret_toplevel_thunk at /source/src/interpreter.c:1052:21 ijl_eval_thunk at /source/src/toplevel.c:772:18 jl_toplevel_eval_flex at /source/src/toplevel.c:716:26 jl_eval_toplevel_stmts at /source/src/toplevel.c:601:15 jl_toplevel_eval_flex at /source/src/toplevel.c:688:27 ijl_toplevel_eval at /source/src/toplevel.c:786:12 ijl_toplevel_eval_in at /source/src/toplevel.c:831:13 eval at ./boot.jl:618:0 (pc: 1) EvalInto at ./boot.jl:624:0 [inlined] mytest at /home/pkgeval/.julia/packages/Chevie/ArZ3K/test/runtests.jl:5:0 (pc: 4) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2535:12 [inlined] jl_f__apply_iterate at /source/src/builtins.c:1041:26 eval_test_function at /source/usr/share/julia/stdlib/v1.14/Test/src/Test.jl:407:0 unknown function (ip: 0x7732ec913c76) at (unknown file) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2535:12 [inlined] do_call at /source/src/interpreter.c:123:26 eval_value at /source/src/interpreter.c:259:16 eval_body at /source/src/interpreter.c:735:35 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:704:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:704:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:712:21 jl_interpret_toplevel_thunk at /source/src/interpreter.c:1052:21 ijl_eval_thunk at /source/src/toplevel.c:772:18 jl_toplevel_eval_flex at /source/src/toplevel.c:716:26 jl_eval_toplevel_stmts at /source/src/toplevel.c:601:15 jl_toplevel_eval_flex at /source/src/toplevel.c:688:27 ijl_toplevel_eval at /source/src/toplevel.c:786:12 ijl_toplevel_eval_in at /source/src/toplevel.c:831:13 eval at ./boot.jl:618:0 (pc: 1) include_string at ./loading.jl:3291:0 (pc: 140) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 _include at ./loading.jl:3353:0 (pc: 123) include at ./Base.jl:335:0 (pc: 1) IncludeInto at ./Base.jl:336:0 (pc: 2) jfptr_IncludeInto_1.1 at /opt/julia/lib/julia/sys.so (unknown line) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2535:12 [inlined] do_call at /source/src/interpreter.c:123:26 eval_value at /source/src/interpreter.c:259:16 eval_stmt_value at /source/src/interpreter.c:194:23 [inlined] eval_body at /source/src/interpreter.c:829:21 jl_interpret_toplevel_thunk at /source/src/interpreter.c:1052:21 ijl_eval_thunk at /source/src/toplevel.c:772:18 jl_toplevel_eval_flex at /source/src/toplevel.c:716:26 jl_eval_toplevel_stmts at /source/src/toplevel.c:601:15 jl_toplevel_eval_flex at /source/src/toplevel.c:688:27 ijl_toplevel_eval at /source/src/toplevel.c:786:12 ijl_toplevel_eval_in at /source/src/toplevel.c:831:13 eval at ./boot.jl:618:0 (pc: 1) __script_entry_eval at ./client.jl:106:0 [inlined] exec_options at ./client.jl:350:0 (pc: 426) _start at ./client.jl:695:0 (pc: 217) jfptr__start_0.1 at /opt/julia/lib/julia/sys.so (unknown line) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2535:12 [inlined] true_main at /source/src/jlapi.c:990:29 jl_repl_entrypoint at /source/src/jlapi.c:1157:15 main at /source/cli/loader_exe.c:117:15 unknown function (ip: 0x773304d91249) at /lib/x86_64-linux-gnu/libc.so.6 __libc_start_main at /lib/x86_64-linux-gnu/libc.so.6 (unknown line) unknown function (ip: 0x4010b8) at /workspace/srcdir/glibc-2.17/csu/../sysdeps/x86_64/start.S unknown function (ip: (nil)) at (unknown file) Allocations: 893477697 (Pool: 893466823; Big: 10874); GC: 285 PkgEval terminated after 2728.14s: test duration exceeded the time limit