1010
1111#[ tokio:: test]
1212async fn test_precise_sqrt_u64_max ( ) {
13- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
13+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
1414
1515 // This is way too big! It's possible to dial down the numbers to get to
1616 // something reasonable, but the better option is to do everything in u64
@@ -28,7 +28,7 @@ async fn test_precise_sqrt_u64_max() {
2828
2929#[ tokio:: test]
3030async fn test_precise_sqrt_u32_max ( ) {
31- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
31+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
3232
3333 pc. set_compute_max_units ( 170_000 ) ;
3434
@@ -44,7 +44,7 @@ async fn test_precise_sqrt_u32_max() {
4444
4545#[ tokio:: test]
4646async fn test_sqrt_u64 ( ) {
47- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
47+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
4848
4949 // Dial down the BPF compute budget to detect if the operation gets bloated in
5050 // the future
@@ -60,7 +60,7 @@ async fn test_sqrt_u64() {
6060
6161#[ tokio:: test]
6262async fn test_sqrt_u128 ( ) {
63- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
63+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
6464
6565 // Dial down the BPF compute budget to detect if the operation gets bloated in
6666 // the future
@@ -78,7 +78,7 @@ async fn test_sqrt_u128() {
7878
7979#[ tokio:: test]
8080async fn test_sqrt_u128_max ( ) {
81- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
81+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
8282
8383 pc. set_compute_max_units ( 7_000 ) ;
8484
@@ -92,7 +92,7 @@ async fn test_sqrt_u128_max() {
9292
9393#[ tokio:: test]
9494async fn test_u64_multiply ( ) {
95- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
95+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
9696
9797 pc. set_compute_max_units ( 1350 ) ;
9898
@@ -106,7 +106,7 @@ async fn test_u64_multiply() {
106106
107107#[ tokio:: test]
108108async fn test_u64_divide ( ) {
109- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
109+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
110110
111111 pc. set_compute_max_units ( 1650 ) ;
112112
@@ -120,7 +120,7 @@ async fn test_u64_divide() {
120120
121121#[ tokio:: test]
122122async fn test_f32_multiply ( ) {
123- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
123+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
124124
125125 pc. set_compute_max_units ( 1600 ) ;
126126
@@ -136,7 +136,7 @@ async fn test_f32_multiply() {
136136
137137#[ tokio:: test]
138138async fn test_f32_divide ( ) {
139- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
139+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
140140
141141 pc. set_compute_max_units ( 1650 ) ;
142142
@@ -152,7 +152,7 @@ async fn test_f32_divide() {
152152
153153#[ tokio:: test]
154154async fn test_f32_exponentiate ( ) {
155- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
155+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
156156
157157 pc. set_compute_max_units ( 1400 ) ;
158158
@@ -168,7 +168,7 @@ async fn test_f32_exponentiate() {
168168
169169#[ tokio:: test]
170170async fn test_f32_natural_log ( ) {
171- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
171+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
172172
173173 pc. set_compute_max_units ( 3500 ) ;
174174
@@ -184,7 +184,7 @@ async fn test_f32_natural_log() {
184184
185185#[ tokio:: test]
186186async fn test_f32_normal_cdf ( ) {
187- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
187+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
188188
189189 // Dial down the BPF compute budget to detect if the operation gets bloated in
190190 // the future
@@ -200,7 +200,7 @@ async fn test_f32_normal_cdf() {
200200
201201#[ tokio:: test]
202202async fn test_f64_pow ( ) {
203- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
203+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
204204
205205 pc. set_compute_max_units ( 30_000 ) ;
206206
@@ -216,7 +216,7 @@ async fn test_f64_pow() {
216216
217217#[ tokio:: test]
218218async fn test_u128_multiply ( ) {
219- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
219+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
220220
221221 pc. set_compute_max_units ( 10000 ) ;
222222
@@ -232,7 +232,7 @@ async fn test_u128_multiply() {
232232
233233#[ tokio:: test]
234234async fn test_u128_divide ( ) {
235- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
235+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
236236
237237 pc. set_compute_max_units ( 10000 ) ;
238238
@@ -248,7 +248,7 @@ async fn test_u128_divide() {
248248
249249#[ tokio:: test]
250250async fn test_f64_multiply ( ) {
251- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
251+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
252252
253253 pc. set_compute_max_units ( 10000 ) ;
254254
@@ -264,7 +264,7 @@ async fn test_f64_multiply() {
264264
265265#[ tokio:: test]
266266async fn test_f64_divide ( ) {
267- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
267+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
268268
269269 pc. set_compute_max_units ( 10000 ) ;
270270
@@ -280,7 +280,7 @@ async fn test_f64_divide() {
280280
281281#[ tokio:: test]
282282async fn test_noop ( ) {
283- let mut pc = ProgramTest :: new ( "spl_math " , id ( ) , processor ! ( process_instruction) ) ;
283+ let mut pc = ProgramTest :: new ( "spl_math_example " , id ( ) , processor ! ( process_instruction) ) ;
284284
285285 pc. set_compute_max_units ( 1200 ) ;
286286
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