intsurv 0.3.0
Major changes
- Simplified the interface of functions 
cox_cure() and
cox_cure_net() through helper functions
cox_cure.control(), cox_cure.mstep(),
cox_cure_net.penalty(). 
Minor changes
- Avoid unnecessary internal data standardization to improve
computation efficiency.
 
intsurv 0.2.2
New features
- Added AIC to outputs of fitted Cox cure models.
 
- Added a new argument named 
cv_nfolds to
cox_cure_net() and cox_cure_net.fit() for
model selection by cross-validation. 
- Added new arguments named 
surv_offset and
cure_offset for optional offset terms in survival model
component and incidence model component, respectively, to
cox_cure(), cox_cure.fit(),
cox_cure_net(), and cox_cure_net.fit(). One or
more offset terms can be also specified via corresponding
formula. 
Bug fixes
- Fixed issue caused by zeros in specified
surv_l1_penalty_factor and
cure_l1_penalty_factor for cox_cure_net() and
cox_cure_net.fit(). Thank Sy Han Chiou for reporting this
issue. 
intsurv 0.2.1
Minor changes
- Moved C++ header files to 
inst/include/ so that they
can be linked by other packages. 
- Added testing suite with help of the tinytest package.
 
- Adjusted default maximum number of iterations in M-steps for
possibly faster convergence in function 
cox_cure and
cox_cure_net. 
Bug fixes
- Fixed weight indices in function 
cIndex. 
intsurv 0.2.0
New features
- Added function 
cox_cure for fitting regular Cox cure
rate model and an extended Cox cure rate model for right-censored data
with uncertain event status. 
- Added function 
cox_cure_net for fitting regularized Cox
cure rate model for right-censored data with possible uncertain event
status. 
- Added function 
cIndex for computing concordance index
with possible weights. 
- Added function 
simData4cure for simulating survival
data with possible uncertain event status. 
intsurv 0.1.0-alpha.2
Major changes
- Added methods for parameters’ initialization.
 
intsurv 0.1.0-alpha.1
New features
- Alpha version of the package for paper submission and ease of
reproducing main simulation results.