Results 251 to 260 of about 30,607,253 (282)
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Static Type Determination for C++

1990
Static type determination involves compile time calculation of the type of object a pointer may point to at a particular program point during some execution. We show that the problem of precise interprocedural type determination is NP-hard in the presence of inheritance, virtual methods and pointers. We highlight the signicance of type determination in
Hemant D. Pande, Barbara G. Ryder
openaire   +1 more source

Type-safe covariance in C++

Proceedings of the 2004 ACM symposium on Applied computing, 2004
We present a programming technique for implementing type safe covariance in C++. In a sense, we implement most of Bruce's matching approach to the covariance dilemma in C++. The appeal in our approach is that it relies on existing mechanisms, specifically templates, and does not require any modification to the existing language.
Vitaly Surazhsky, Joseph Gil
openaire   +1 more source

Coping with type casts in C

ACM SIGSOFT Software Engineering Notes, 1999
The use of type casts is pervasive in C. Although casts provide great flexibility in writing programs, their use obscures the meaning of programs, and can present obstacles during maintenance. Casts involving pointers to structures (C structs) are particularly problematic, because by using them, a programmer can interpret any memory region to be of any
Michael Siff   +4 more
openaire   +1 more source

C-Type Natriuretic Peptide

Peptides, 1996
C-type natriuretic peptide is a 22-amino acid peptide that was initially identified in the central nervous system. The distribution of C-type natriuretic peptide, which has structural homology with atrial and brain natriuretic peptides, is wide and includes the endothelium, myocardium, gastrointestinal, and genitourinary tracts.
Barr, Craig S.   +2 more
openaire   +3 more sources

On understanding type declarations in C

ACM SIGPLAN Notices, 1992
A small set of rules is given to produce and decipher complicated types in C.
openaire   +2 more sources

The C-Type Lectin Receptors

C-type lectins (CTLs) form a broad and diverse protein superfamily with the ability to identify a wide array of ligands with their characteristic C-type lectin-like domains (CTLDs), thus governing a broad spectrum of physiological functions. CTLD-containing proteins (CTLDcps) are now classified into 17 groups based on their phylogeny and overall domain
Kasturi, Ganguly, Taruna, Madan
openaire   +2 more sources

C-type neurons and C-type auto-associator for cognitive modeling

International Joint Conference on Neural Networks, 1989
Summary form only given. C-type (coupled-type) neurons and a C-type neural network model are proposed based on the commonly agreed upon hypothesis that human cognition is accomplished by well-organized neuron clusters. C-type neurons are coupled neurons which, as single units in C-type neural networks, can be used for processing and propagating both ...
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C-Type Lectins

2014
C-type lectins belong to a superfamily of receptors that share structural homology in their carbohydrate recognition domains and often bind to carbohydrates in a Ca-dependent fashion. Whereas endocytic C-type lectin receptors (CLRs) trigger the receptor-mediated endocytosis of soluble ligands, myeloid CLRs in innate immunity act as pattern recognition ...
Timo Johannssen   +3 more
openaire   +1 more source

Xenotropic Type C Viruses

1978
Viruses, now classified as type C RNA viruses (Bernhard, 1960), were first recognized in the early 1900s as the transmissible agents that gave rise to lymphomas and sarcomas in avian species (Ellerman and Bang, 1908; Rous, 1911). This early identification of cancer viruses sparked off the search for similar agents in many animal species including human.
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