Added system.program_results for controlling the exit code of the program under normal circumstances
Implemented operators like +=, -=, etc for ordinals, floats and string Programs using the UnitTest module will now report the number of failed tests as the exit code of test runs (0 for successful run)
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parent
2bd14f4ba8
commit
489340658e
5 changed files with 58 additions and 13 deletions
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@ -707,13 +707,13 @@ proc genMainProc(m: BModule) =
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CommonMainBody & "}$n"
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CommonMainBody & "}$n"
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PosixCMain = "int main(int argc, char** args, char** env) {$n" &
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PosixCMain = "int main(int argc, char** args, char** env) {$n" &
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" cmdLine = args;$n" & " cmdCount = argc;$n" & " gEnv = env;$n" &
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" cmdLine = args;$n" & " cmdCount = argc;$n" & " gEnv = env;$n" &
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" NimMain();$n" & " return 0;$n" & "}$n"
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" NimMain();$n" & " return nim_program_result;$n" & "}$n"
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WinNimMain = "N_CDECL(void, NimMain)(void) {$n" &
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WinNimMain = "N_CDECL(void, NimMain)(void) {$n" &
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CommonMainBody & "}$n"
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CommonMainBody & "}$n"
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WinCMain = "N_STDCALL(int, WinMain)(HINSTANCE hCurInstance, $n" &
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WinCMain = "N_STDCALL(int, WinMain)(HINSTANCE hCurInstance, $n" &
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" HINSTANCE hPrevInstance, $n" &
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" HINSTANCE hPrevInstance, $n" &
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" LPSTR lpCmdLine, int nCmdShow) {$n" &
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" LPSTR lpCmdLine, int nCmdShow) {$n" &
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" NimMain();$n" & " return 0;$n" & "}$n"
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" NimMain();$n" & " return nim_program_result;$n" & "}$n"
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WinNimDllMain = "N_LIB_EXPORT N_CDECL(void, NimMain)(void) {$n" &
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WinNimDllMain = "N_LIB_EXPORT N_CDECL(void, NimMain)(void) {$n" &
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CommonMainBody & "}$n"
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CommonMainBody & "}$n"
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WinCDllMain =
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WinCDllMain =
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@ -331,6 +331,8 @@ typedef long long int NI64;
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typedef unsigned int NU32;
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typedef unsigned int NU32;
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#endif
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#endif
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extern NI nim_program_result;
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typedef float NF32;
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typedef float NF32;
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typedef double NF64;
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typedef double NF64;
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typedef double NF;
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typedef double NF;
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@ -20,12 +20,14 @@ import
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macros, terminal
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macros, terminal
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type
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type
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TestStatus* = enum OK, FAILED
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TTestStatus* = enum OK, FAILED
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# ETestFailed* = object of ESynch
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TOutputLevel* = enum PRINT_ALL, PRINT_FAILURES, PRINT_NONE
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var
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var
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# XXX: These better be thread-local
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# XXX: These better be thread-local
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AbortOnError* = false
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AbortOnError* = false
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OutputLevel* = PRINT_ALL
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checkpoints: seq[string] = @[]
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checkpoints: seq[string] = @[]
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template TestSetupIMPL*: stmt = nil
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template TestSetupIMPL*: stmt = nil
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@ -36,20 +38,25 @@ proc shouldRun(testName: string): bool =
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template suite*(name: expr, body: stmt): stmt =
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template suite*(name: expr, body: stmt): stmt =
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block:
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block:
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template setup(setupBody: stmt): stmt =
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template setup*(setupBody: stmt): stmt =
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template TestSetupIMPL: stmt = setupBody
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template TestSetupIMPL: stmt = setupBody
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template teardown(teardownBody: stmt): stmt =
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template teardown*(teardownBody: stmt): stmt =
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template TestTeardownIMPL: stmt = teardownBody
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template TestTeardownIMPL: stmt = teardownBody
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body
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body
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proc printStatus*(s: TestStatus, name: string) =
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proc testDone(name: string, s: TTestStatus) =
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var color = (if s == OK: fgGreen else: fgRed)
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if s == FAILED:
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styledEcho styleBright, color, "[", $s, "] ", fgWhite, name, "\n"
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program_result += 1
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if OutputLevel != PRINT_NONE and (OutputLevel == PRINT_ALL or s == FAILED):
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var color = (if s == OK: fgGreen else: fgRed)
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styledEcho styleBright, color, "[", $s, "] ", fgWhite, name, "\n"
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template test*(name: expr, body: stmt): stmt =
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template test*(name: expr, body: stmt): stmt =
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bind shouldRun, checkPoints
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bind shouldRun, checkpoints, testDone
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if shouldRun(name):
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if shouldRun(name):
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checkpoints = @[]
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checkpoints = @[]
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var TestStatusIMPL = OK
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var TestStatusIMPL = OK
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@ -60,7 +67,7 @@ template test*(name: expr, body: stmt): stmt =
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finally:
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finally:
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TestTeardownIMPL()
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TestTeardownIMPL()
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printStatus(TestStatusIMPL, name)
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testDone name, TestStatusIMPL
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proc checkpoint*(msg: string) =
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proc checkpoint*(msg: string) =
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checkpoints.add(msg)
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checkpoints.add(msg)
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@ -85,6 +92,8 @@ macro check*(conditions: stmt): stmt =
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result = getAst(rewrite(e, e.lineinfo, e.toStrLit))
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result = getAst(rewrite(e, e.lineinfo, e.toStrLit))
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echo conditions.lispRepr
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case conditions.kind
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case conditions.kind
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of nnkCall, nnkCommand, nnkMacroStmt:
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of nnkCall, nnkCommand, nnkMacroStmt:
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case conditions[1].kind
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case conditions[1].kind
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@ -124,7 +133,7 @@ macro check*(conditions: stmt): stmt =
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result = standardRewrite(conditions[1])
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result = standardRewrite(conditions[1])
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else:
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else:
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error conditions.lineinfo & ": Malformed check statement"
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error conditions.lineinfo & ": Malformed check statement:"
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template require*(conditions: stmt): stmt =
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template require*(conditions: stmt): stmt =
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block:
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block:
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@ -402,6 +402,9 @@ proc `+` *(x, y: int32): int32 {.magic: "AddI", noSideEffect.}
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proc `+` *(x, y: int64): int64 {.magic: "AddI64", noSideEffect.}
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proc `+` *(x, y: int64): int64 {.magic: "AddI64", noSideEffect.}
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## Binary `+` operator for an integer.
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## Binary `+` operator for an integer.
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proc `+=`*[T](x, y: ordinal[T]) {.magic: "Inc", noSideEffect.}
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## Increments an ordinal
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proc `-` *(x, y: int): int {.magic: "SubI", noSideEffect.}
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proc `-` *(x, y: int): int {.magic: "SubI", noSideEffect.}
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proc `-` *(x, y: int8): int8 {.magic: "SubI", noSideEffect.}
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proc `-` *(x, y: int8): int8 {.magic: "SubI", noSideEffect.}
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proc `-` *(x, y: int16): int16 {.magic: "SubI", noSideEffect.}
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proc `-` *(x, y: int16): int16 {.magic: "SubI", noSideEffect.}
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@ -409,6 +412,9 @@ proc `-` *(x, y: int32): int32 {.magic: "SubI", noSideEffect.}
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proc `-` *(x, y: int64): int64 {.magic: "SubI64", noSideEffect.}
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proc `-` *(x, y: int64): int64 {.magic: "SubI64", noSideEffect.}
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## Binary `-` operator for an integer.
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## Binary `-` operator for an integer.
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proc `-=`*[T](x, y: ordinal[T]) {.magic: "Dec", noSideEffect.}
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## Decrements an ordinal
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proc `*` *(x, y: int): int {.magic: "MulI", noSideEffect.}
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proc `*` *(x, y: int): int {.magic: "MulI", noSideEffect.}
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proc `*` *(x, y: int8): int8 {.magic: "MulI", noSideEffect.}
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proc `*` *(x, y: int8): int8 {.magic: "MulI", noSideEffect.}
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proc `*` *(x, y: int16): int16 {.magic: "MulI", noSideEffect.}
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proc `*` *(x, y: int16): int16 {.magic: "MulI", noSideEffect.}
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@ -416,6 +422,10 @@ proc `*` *(x, y: int32): int32 {.magic: "MulI", noSideEffect.}
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proc `*` *(x, y: int64): int64 {.magic: "MulI64", noSideEffect.}
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proc `*` *(x, y: int64): int64 {.magic: "MulI64", noSideEffect.}
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## Binary `*` operator for an integer.
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## Binary `*` operator for an integer.
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proc `*=`*[T](x: var ordinal[T], y: ordinal[T]) {.inline noSideEffect.} =
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## Binary `*=` operator for oridinals
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x = x * y
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proc `div` *(x, y: int): int {.magic: "DivI", noSideEffect.}
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proc `div` *(x, y: int): int {.magic: "DivI", noSideEffect.}
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proc `div` *(x, y: int8): int8 {.magic: "DivI", noSideEffect.}
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proc `div` *(x, y: int8): int8 {.magic: "DivI", noSideEffect.}
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proc `div` *(x, y: int16): int16 {.magic: "DivI", noSideEffect.}
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proc `div` *(x, y: int16): int16 {.magic: "DivI", noSideEffect.}
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@ -569,6 +579,22 @@ proc `*` *(x, y: float): float {.magic: "MulF64", noSideEffect.}
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proc `/` *(x, y: float): float {.magic: "DivF64", noSideEffect.}
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proc `/` *(x, y: float): float {.magic: "DivF64", noSideEffect.}
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## computes the floating point division
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## computes the floating point division
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proc `+=` *(x: var float, y:float) {.inline noSideEffect.} =
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## Increments in placee a floating point number
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x = x + y
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proc `-=` *(x: var float, y:float) {.inline noSideEffect.} =
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## Decrements in place a floating point number
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x = x - y
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proc `*=` *(x: var float, y:float) {.inline noSideEffect.} =
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## Multiplies in place a floating point number
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x = x * y
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proc `/=` *(x: var float, y:float) {.inline noSideEffect.} =
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## Divides in place a floating point number
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x = x / y
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proc `==` *(x, y: float): bool {.magic: "EqF64", noSideEffect.}
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proc `==` *(x, y: float): bool {.magic: "EqF64", noSideEffect.}
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proc `<=` *(x, y: float): bool {.magic: "LeF64", noSideEffect.}
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proc `<=` *(x, y: float): bool {.magic: "LeF64", noSideEffect.}
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proc `<` *(x, y: float): bool {.magic: "LtF64", noSideEffect.}
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proc `<` *(x, y: float): bool {.magic: "LtF64", noSideEffect.}
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@ -717,6 +743,8 @@ proc `&` * (x: char, y: string): string {.
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proc add*(x: var string, y: char) {.magic: "AppendStrCh", noSideEffect.}
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proc add*(x: var string, y: char) {.magic: "AppendStrCh", noSideEffect.}
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proc add*(x: var string, y: string) {.magic: "AppendStrStr", noSideEffect.}
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proc add*(x: var string, y: string) {.magic: "AppendStrStr", noSideEffect.}
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proc `&=`* (x: var string, y: string) {.magic: "AppendStrStr", noSideEffect.}
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type
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type
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TEndian* = enum ## is a type describing the endianness of a processor.
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TEndian* = enum ## is a type describing the endianness of a processor.
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littleEndian, bigEndian
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littleEndian, bigEndian
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## is the value that should be passed to ``quit`` to indicate
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## is the value that should be passed to ``quit`` to indicate
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## failure.
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## failure.
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var program_result* {.exportc: "nim_$1".} = QuitSuccess
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## modify this varialbe to specify the exit code of the program
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## under normal circumstances. when the program is terminated
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## prematurelly using ``quit``, this value is ignored.
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proc quit*(errorcode: int = QuitSuccess) {.
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proc quit*(errorcode: int = QuitSuccess) {.
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magic: "Exit", importc: "exit", noDecl, noReturn.}
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magic: "Exit", importc: "exit", noDecl, noReturn.}
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## stops the program immediately; before stopping the program the
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## stops the program immediately; before stopping the program the
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@ -102,6 +102,7 @@ Library Additions
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- Added ``strutils.unindent``, ``strutils.countLines``.
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- Added ``strutils.unindent``, ``strutils.countLines``.
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- Added ``system.slurp`` for easy resource embedding.
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- Added ``system.slurp`` for easy resource embedding.
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- Added ``system.running`` for threads.
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- Added ``system.running`` for threads.
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- Added ``system.program_result``.
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- Added ``xmltree.innerText``.
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- Added ``xmltree.innerText``.
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- Added ``os.isAbsolute``, ``os.dynLibFormat``.
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- Added ``os.isAbsolute``, ``os.dynLibFormat``.
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- Added ``parseutils.interpolatedFragments``.
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- Added ``parseutils.interpolatedFragments``.
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