Clang-format tests, examples, libraries, benchmarks, etc.

This commit is contained in:
Antonio Sánchez
2023-12-05 21:22:55 +00:00
committed by Rasmus Munk Larsen
parent 3252ecc7a4
commit 46e9cdb7fe
876 changed files with 33453 additions and 37795 deletions

View File

@@ -25,223 +25,178 @@
using namespace std;
template<class real>
class STL_interface{
template <class real>
class STL_interface {
public:
typedef real real_type;
public :
typedef real real_type ;
typedef std::vector<real> stl_vector;
typedef std::vector<stl_vector > stl_matrix;
typedef std::vector<real> stl_vector;
typedef std::vector<stl_vector> stl_matrix;
typedef stl_matrix gene_matrix;
typedef stl_vector gene_vector;
static inline std::string name( void )
{
return "STL";
}
static inline std::string name(void) { return "STL"; }
static void free_matrix(gene_matrix & /*A*/, int /*N*/){}
static void free_matrix(gene_matrix& /*A*/, int /*N*/) {}
static void free_vector(gene_vector & /*B*/){}
static void free_vector(gene_vector& /*B*/) {}
static inline void matrix_from_stl(gene_matrix & A, stl_matrix & A_stl){
A = A_stl;
}
static inline void matrix_from_stl(gene_matrix& A, stl_matrix& A_stl) { A = A_stl; }
static inline void vector_from_stl(gene_vector & B, stl_vector & B_stl){
B = B_stl;
}
static inline void vector_from_stl(gene_vector& B, stl_vector& B_stl) { B = B_stl; }
static inline void vector_to_stl(gene_vector & B, stl_vector & B_stl){
B_stl = B ;
}
static inline void vector_to_stl(gene_vector& B, stl_vector& B_stl) { B_stl = B; }
static inline void matrix_to_stl(gene_matrix& A, stl_matrix& A_stl) { A_stl = A; }
static inline void matrix_to_stl(gene_matrix & A, stl_matrix & A_stl){
A_stl = A ;
}
static inline void copy_vector(const gene_vector & source, gene_vector & cible, int N){
for (int i=0;i<N;i++){
cible[i]=source[i];
static inline void copy_vector(const gene_vector& source, gene_vector& cible, int N) {
for (int i = 0; i < N; i++) {
cible[i] = source[i];
}
}
static inline void copy_matrix(const gene_matrix & source, gene_matrix & cible, int N){
for (int i=0;i<N;i++)
for (int j=0;j<N;j++)
cible[i][j]=source[i][j];
static inline void copy_matrix(const gene_matrix& source, gene_matrix& cible, int N) {
for (int i = 0; i < N; i++)
for (int j = 0; j < N; j++) cible[i][j] = source[i][j];
}
static inline void ata_product(const gene_matrix & A, gene_matrix & X, int N)
{
static inline void ata_product(const gene_matrix& A, gene_matrix& X, int N) {
real somme;
for (int j=0;j<N;j++){
for (int i=0;i<N;i++){
somme=0.0;
if(i>=j)
{
for (int k=0;k<N;k++)
somme += A[i][k]*A[j][k];
X[j][i]=somme;
}
}
}
}
static inline void aat_product(const gene_matrix & A, gene_matrix & X, int N)
{
real somme;
for (int j=0;j<N;j++){
for (int i=0;i<N;i++){
somme=0.0;
if(i>=j)
{
for (int k=0;k<N;k++){
somme+=A[k][i]*A[k][j];
}
X[j][i]=somme;
for (int j = 0; j < N; j++) {
for (int i = 0; i < N; i++) {
somme = 0.0;
if (i >= j) {
for (int k = 0; k < N; k++) somme += A[i][k] * A[j][k];
X[j][i] = somme;
}
}
}
}
static inline void matrix_matrix_product(const gene_matrix & A, const gene_matrix & B, gene_matrix & X, int N)
{
static inline void aat_product(const gene_matrix& A, gene_matrix& X, int N) {
real somme;
for (int j=0;j<N;j++){
for (int i=0;i<N;i++){
somme=0.0;
for (int k=0;k<N;k++)
somme+=A[k][i]*B[j][k];
X[j][i]=somme;
for (int j = 0; j < N; j++) {
for (int i = 0; i < N; i++) {
somme = 0.0;
if (i >= j) {
for (int k = 0; k < N; k++) {
somme += A[k][i] * A[k][j];
}
X[j][i] = somme;
}
}
}
}
static inline void matrix_vector_product(gene_matrix & A, gene_vector & B, gene_vector & X, int N)
{
static inline void matrix_matrix_product(const gene_matrix& A, const gene_matrix& B, gene_matrix& X, int N) {
real somme;
for (int i=0;i<N;i++){
somme=0.0;
for (int j=0;j<N;j++)
somme+=A[j][i]*B[j];
X[i]=somme;
for (int j = 0; j < N; j++) {
for (int i = 0; i < N; i++) {
somme = 0.0;
for (int k = 0; k < N; k++) somme += A[k][i] * B[j][k];
X[j][i] = somme;
}
}
}
static inline void symv(gene_matrix & A, gene_vector & B, gene_vector & X, int N)
{
for (int j=0; j<N; ++j)
X[j] = 0;
for (int j=0; j<N; ++j)
{
static inline void matrix_vector_product(gene_matrix& A, gene_vector& B, gene_vector& X, int N) {
real somme;
for (int i = 0; i < N; i++) {
somme = 0.0;
for (int j = 0; j < N; j++) somme += A[j][i] * B[j];
X[i] = somme;
}
}
static inline void symv(gene_matrix& A, gene_vector& B, gene_vector& X, int N) {
for (int j = 0; j < N; ++j) X[j] = 0;
for (int j = 0; j < N; ++j) {
real t1 = B[j];
real t2 = 0;
X[j] += t1 * A[j][j];
for (int i=j+1; i<N; ++i) {
for (int i = j + 1; i < N; ++i) {
X[i] += t1 * A[j][i];
t2 += A[j][i] * B[i];
}
X[j] += t2;
}
}
static inline void syr2(gene_matrix & A, gene_vector & B, gene_vector & X, int N)
{
for (int j=0; j<N; ++j)
{
for (int i=j; i<N; ++i)
A[j][i] += B[i]*X[j] + B[j]*X[i];
static inline void syr2(gene_matrix& A, gene_vector& B, gene_vector& X, int N) {
for (int j = 0; j < N; ++j) {
for (int i = j; i < N; ++i) A[j][i] += B[i] * X[j] + B[j] * X[i];
}
}
static inline void ger(gene_matrix & A, gene_vector & X, gene_vector & Y, int N)
{
for (int j=0; j<N; ++j)
{
for (int i=j; i<N; ++i)
A[j][i] += X[i]*Y[j];
static inline void ger(gene_matrix& A, gene_vector& X, gene_vector& Y, int N) {
for (int j = 0; j < N; ++j) {
for (int i = j; i < N; ++i) A[j][i] += X[i] * Y[j];
}
}
static inline void atv_product(gene_matrix & A, gene_vector & B, gene_vector & X, int N)
{
static inline void atv_product(gene_matrix& A, gene_vector& B, gene_vector& X, int N) {
real somme;
for (int i=0;i<N;i++){
for (int i = 0; i < N; i++) {
somme = 0.0;
for (int j=0;j<N;j++)
somme += A[i][j]*B[j];
for (int j = 0; j < N; j++) somme += A[i][j] * B[j];
X[i] = somme;
}
}
static inline void axpy(real coef, const gene_vector & X, gene_vector & Y, int N){
for (int i=0;i<N;i++)
Y[i]+=coef*X[i];
static inline void axpy(real coef, const gene_vector& X, gene_vector& Y, int N) {
for (int i = 0; i < N; i++) Y[i] += coef * X[i];
}
static inline void axpby(real a, const gene_vector & X, real b, gene_vector & Y, int N){
for (int i=0;i<N;i++)
Y[i] = a*X[i] + b*Y[i];
static inline void axpby(real a, const gene_vector& X, real b, gene_vector& Y, int N) {
for (int i = 0; i < N; i++) Y[i] = a * X[i] + b * Y[i];
}
static inline void trisolve_lower(const gene_matrix & L, const gene_vector & B, gene_vector & X, int N){
copy_vector(B,X,N);
for(int i=0; i<N; ++i)
{
static inline void trisolve_lower(const gene_matrix& L, const gene_vector& B, gene_vector& X, int N) {
copy_vector(B, X, N);
for (int i = 0; i < N; ++i) {
X[i] /= L[i][i];
real tmp = X[i];
for (int j=i+1; j<N; ++j)
X[j] -= tmp * L[i][j];
for (int j = i + 1; j < N; ++j) X[j] -= tmp * L[i][j];
}
}
static inline real norm_diff(const stl_vector & A, const stl_vector & B)
{
int N=A.size();
real somme=0.0;
real somme2=0.0;
static inline real norm_diff(const stl_vector& A, const stl_vector& B) {
int N = A.size();
real somme = 0.0;
real somme2 = 0.0;
for (int i=0;i<N;i++){
real diff=A[i]-B[i];
somme+=diff*diff;
somme2+=A[i]*A[i];
for (int i = 0; i < N; i++) {
real diff = A[i] - B[i];
somme += diff * diff;
somme2 += A[i] * A[i];
}
return somme/somme2;
return somme / somme2;
}
static inline real norm_diff(const stl_matrix & A, const stl_matrix & B)
{
int N=A[0].size();
real somme=0.0;
real somme2=0.0;
static inline real norm_diff(const stl_matrix& A, const stl_matrix& B) {
int N = A[0].size();
real somme = 0.0;
real somme2 = 0.0;
for (int i=0;i<N;i++){
for (int j=0;j<N;j++){
real diff=A[i][j] - B[i][j];
somme += diff*diff;
somme2 += A[i][j]*A[i][j];
for (int i = 0; i < N; i++) {
for (int j = 0; j < N; j++) {
real diff = A[i][j] - B[i][j];
somme += diff * diff;
somme2 += A[i][j] * A[i][j];
}
}
return somme/somme2;
return somme / somme2;
}
static inline void display_vector(const stl_vector & A)
{
int N=A.size();
for (int i=0;i<N;i++){
INFOS("A["<<i<<"]="<<A[i]<<endl);
static inline void display_vector(const stl_vector& A) {
int N = A.size();
for (int i = 0; i < N; i++) {
INFOS("A[" << i << "]=" << A[i] << endl);
}
}
};
#endif